From 4c510c12b1d0a0bfb0726c0100ff22cd892aa1e8 Mon Sep 17 00:00:00 2001 From: Gunar Schorcht Date: Mon, 27 Feb 2023 09:54:45 +0100 Subject: synopsys/dwc2: fix SOF interrupt handling SOF is not a flag of the GOTGINT register but of the GINTSTS register. Therefore the flag must be written in the GINTSTS register instead of the GOTGINT register to clear the interrupt. --- src/portable/synopsys/dwc2/dcd_dwc2.c | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dcd_dwc2.c b/src/portable/synopsys/dwc2/dcd_dwc2.c index c6132a1f5..7d4f31c48 100644 --- a/src/portable/synopsys/dwc2/dcd_dwc2.c +++ b/src/portable/synopsys/dwc2/dcd_dwc2.c @@ -1288,7 +1288,7 @@ void dcd_int_handler(uint8_t rhport) if(int_status & GINTSTS_SOF) { - dwc2->gotgint = GINTSTS_SOF; + dwc2->gintsts = GINTSTS_SOF; if (_sof_en) { -- cgit v1.3.1 From 9257a0f562a1cb939a902e7c41de5032b0f7de19 Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 18 Aug 2023 12:48:12 +0700 Subject: - update nrf52 bsp for cmake - add empty tuh_int_handler/tud_int_handler if corresponidng stack not enabled - add hcd_template.c --- hw/bsp/nrf/boards/adafruit_clue/board.cmake | 5 + hw/bsp/nrf/boards/arduino_nano33_ble/board.cmake | 5 + .../boards/circuitplayground_bluefruit/board.cmake | 5 + .../boards/feather_nrf52840_express/board.cmake | 6 + .../nrf/boards/feather_nrf52840_sense/board.cmake | 5 + hw/bsp/nrf/boards/itsybitsy_nrf52840/board.cmake | 5 + hw/bsp/nrf/boards/nrf52840_mdk_dongle/board.cmake | 5 + hw/bsp/nrf/boards/pca10056/board.cmake | 3 - hw/bsp/nrf/boards/pca10059/board.cmake | 5 + hw/bsp/nrf/boards/pca10095/board.cmake | 4 - hw/bsp/nrf/boards/pca10100/board.cmake | 5 + hw/bsp/nrf/boards/raytac_mdbt50q_rx/board.cmake | 5 + hw/bsp/nrf/family.cmake | 14 +- src/device/usbd.h | 6 +- src/host/hcd.h | 12 +- src/portable/template/dcd_template.c | 4 +- src/portable/template/hcd_template.c | 162 +++++++++++++++++++++ src/tusb.h | 9 +- 18 files changed, 241 insertions(+), 24 deletions(-) create mode 100644 hw/bsp/nrf/boards/adafruit_clue/board.cmake create mode 100644 hw/bsp/nrf/boards/arduino_nano33_ble/board.cmake create mode 100644 hw/bsp/nrf/boards/circuitplayground_bluefruit/board.cmake create mode 100644 hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake create mode 100644 hw/bsp/nrf/boards/feather_nrf52840_sense/board.cmake create mode 100644 hw/bsp/nrf/boards/itsybitsy_nrf52840/board.cmake create mode 100644 hw/bsp/nrf/boards/nrf52840_mdk_dongle/board.cmake create mode 100644 hw/bsp/nrf/boards/pca10059/board.cmake create mode 100644 hw/bsp/nrf/boards/pca10100/board.cmake create mode 100644 hw/bsp/nrf/boards/raytac_mdbt50q_rx/board.cmake create mode 100644 src/portable/template/hcd_template.c (limited to 'src/portable') diff --git a/hw/bsp/nrf/boards/adafruit_clue/board.cmake b/hw/bsp/nrf/boards/adafruit_clue/board.cmake new file mode 100644 index 000000000..eb97e5c55 --- /dev/null +++ b/hw/bsp/nrf/boards/adafruit_clue/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/../../linker/nrf52840_s140_v6.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/arduino_nano33_ble/board.cmake b/hw/bsp/nrf/boards/arduino_nano33_ble/board.cmake new file mode 100644 index 000000000..93647063a --- /dev/null +++ b/hw/bsp/nrf/boards/arduino_nano33_ble/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/arduino_nano33_ble.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/circuitplayground_bluefruit/board.cmake b/hw/bsp/nrf/boards/circuitplayground_bluefruit/board.cmake new file mode 100644 index 000000000..eb97e5c55 --- /dev/null +++ b/hw/bsp/nrf/boards/circuitplayground_bluefruit/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/../../linker/nrf52840_s140_v6.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake b/hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake new file mode 100644 index 000000000..0acbecf7a --- /dev/null +++ b/hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake @@ -0,0 +1,6 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/../../linker/nrf52840_s140_v6.ld) +# set(LD_FILE_GNU ${NRFX_DIR}/mdk/nrf52840_xxaa.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/feather_nrf52840_sense/board.cmake b/hw/bsp/nrf/boards/feather_nrf52840_sense/board.cmake new file mode 100644 index 000000000..eb97e5c55 --- /dev/null +++ b/hw/bsp/nrf/boards/feather_nrf52840_sense/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/../../linker/nrf52840_s140_v6.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/itsybitsy_nrf52840/board.cmake b/hw/bsp/nrf/boards/itsybitsy_nrf52840/board.cmake new file mode 100644 index 000000000..eb97e5c55 --- /dev/null +++ b/hw/bsp/nrf/boards/itsybitsy_nrf52840/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/../../linker/nrf52840_s140_v6.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/nrf52840_mdk_dongle/board.cmake b/hw/bsp/nrf/boards/nrf52840_mdk_dongle/board.cmake new file mode 100644 index 000000000..ffa5932c1 --- /dev/null +++ b/hw/bsp/nrf/boards/nrf52840_mdk_dongle/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/nrf52840_mdk_dongle.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/pca10056/board.cmake b/hw/bsp/nrf/boards/pca10056/board.cmake index b4fe39fc0..693d7beed 100644 --- a/hw/bsp/nrf/boards/pca10056/board.cmake +++ b/hw/bsp/nrf/boards/pca10056/board.cmake @@ -2,7 +2,4 @@ set(MCU_VARIANT nrf52840) set(LD_FILE_GNU ${NRFX_DIR}/mdk/nrf52840_xxaa.ld) function(update_board TARGET) - target_compile_definitions(${TARGET} PUBLIC - NRF52840_XXAA - ) endfunction() diff --git a/hw/bsp/nrf/boards/pca10059/board.cmake b/hw/bsp/nrf/boards/pca10059/board.cmake new file mode 100644 index 000000000..c79eb5964 --- /dev/null +++ b/hw/bsp/nrf/boards/pca10059/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/pca10059.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/pca10095/board.cmake b/hw/bsp/nrf/boards/pca10095/board.cmake index 1e72243c9..ca5399a3a 100644 --- a/hw/bsp/nrf/boards/pca10095/board.cmake +++ b/hw/bsp/nrf/boards/pca10095/board.cmake @@ -2,10 +2,6 @@ set(MCU_VARIANT nrf5340_application) set(LD_FILE_GNU ${NRFX_DIR}/mdk/nrf5340_xxaa_application.ld) function(update_board TARGET) - target_compile_definitions(${TARGET} PUBLIC - NRF5340_XXAA - NRF5340_XXAA_APPLICATION - ) target_sources(${TARGET} PRIVATE ${NRFX_DIR}/drivers/src/nrfx_usbreg.c ) diff --git a/hw/bsp/nrf/boards/pca10100/board.cmake b/hw/bsp/nrf/boards/pca10100/board.cmake new file mode 100644 index 000000000..c30026815 --- /dev/null +++ b/hw/bsp/nrf/boards/pca10100/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52833) +set(LD_FILE_GNU ${NRFX_DIR}/mdk/nrf52833_xxaa.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/boards/raytac_mdbt50q_rx/board.cmake b/hw/bsp/nrf/boards/raytac_mdbt50q_rx/board.cmake new file mode 100644 index 000000000..693d7beed --- /dev/null +++ b/hw/bsp/nrf/boards/raytac_mdbt50q_rx/board.cmake @@ -0,0 +1,5 @@ +set(MCU_VARIANT nrf52840) +set(LD_FILE_GNU ${NRFX_DIR}/mdk/nrf52840_xxaa.ld) + +function(update_board TARGET) +endfunction() diff --git a/hw/bsp/nrf/family.cmake b/hw/bsp/nrf/family.cmake index 2b13249f4..6c24d3658 100644 --- a/hw/bsp/nrf/family.cmake +++ b/hw/bsp/nrf/family.cmake @@ -33,13 +33,20 @@ function(add_board_target BOARD_TARGET) add_library(${BOARD_TARGET} STATIC # driver ${NRFX_DIR}/drivers/src/nrfx_power.c + ${NRFX_DIR}/drivers/src/nrfx_spim.c ${NRFX_DIR}/drivers/src/nrfx_uarte.c # mcu ${NRFX_DIR}/mdk/system_${MCU_VARIANT}.c ) - target_compile_definitions(${BOARD_TARGET} PUBLIC - CONFIG_GPIO_AS_PINRESET - ) + target_compile_definitions(${BOARD_TARGET} PUBLIC CONFIG_GPIO_AS_PINRESET) + + if (MCU_VARIANT STREQUAL "nrf52840") + target_compile_definitions(${BOARD_TARGET} PUBLIC NRF52840_XXAA) + elseif (MCU_VARIANT STREQUAL "nrf52833") + target_compile_definitions(${BOARD_TARGET} PUBLIC NRF52833_XXAA) + elseif (MCU_VARIANT STREQUAL "nrf5340_application") + target_compile_definitions(${BOARD_TARGET} PUBLIC NRF5340_XXAA NRF5340_XXAA_APPLICATION) + endif () if (TRACE_ETM STREQUAL "1") # ENABLE_TRACE will cause system_nrf5x.c to set up ETM trace @@ -115,6 +122,7 @@ function(family_configure_example TARGET RTOS) family_add_tinyusb(${TARGET} OPT_MCU_NRF5X ${RTOS}) target_sources(${TARGET}-tinyusb PUBLIC ${TOP}/src/portable/nordic/nrf5x/dcd_nrf5x.c + #${TOP}/src/portable/analog/max3421e/hcd_max3421e.c ) target_link_libraries(${TARGET}-tinyusb PUBLIC board_${BOARD}) diff --git a/src/device/usbd.h b/src/device/usbd.h index b11c1a09d..782f538fd 100644 --- a/src/device/usbd.h +++ b/src/device/usbd.h @@ -50,8 +50,7 @@ void tud_task_ext(uint32_t timeout_ms, bool in_isr); // Task function should be called in main/rtos loop TU_ATTR_ALWAYS_INLINE static inline -void tud_task (void) -{ +void tud_task (void) { tud_task_ext(UINT32_MAX, false); } @@ -80,8 +79,7 @@ bool tud_suspended(void); // Check if device is ready to transfer TU_ATTR_ALWAYS_INLINE static inline -bool tud_ready(void) -{ +bool tud_ready(void) { return tud_mounted() && !tud_suspended(); } diff --git a/src/host/hcd.h b/src/host/hcd.h index 9bcc1c6df..1b5038ef4 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -198,8 +198,7 @@ extern void hcd_event_handler(hcd_event_t const* event, bool in_isr); // Helper to send device attach event TU_ATTR_ALWAYS_INLINE static inline -void hcd_event_device_attach(uint8_t rhport, bool in_isr) -{ +void hcd_event_device_attach(uint8_t rhport, bool in_isr) { hcd_event_t event; event.rhport = rhport; event.event_id = HCD_EVENT_DEVICE_ATTACH; @@ -211,8 +210,7 @@ void hcd_event_device_attach(uint8_t rhport, bool in_isr) // Helper to send device removal event TU_ATTR_ALWAYS_INLINE static inline -void hcd_event_device_remove(uint8_t rhport, bool in_isr) -{ +void hcd_event_device_remove(uint8_t rhport, bool in_isr) { hcd_event_t event; event.rhport = rhport; event.event_id = HCD_EVENT_DEVICE_REMOVE; @@ -224,10 +222,8 @@ void hcd_event_device_remove(uint8_t rhport, bool in_isr) // Helper to send USB transfer event TU_ATTR_ALWAYS_INLINE static inline -void hcd_event_xfer_complete(uint8_t dev_addr, uint8_t ep_addr, uint32_t xferred_bytes, xfer_result_t result, bool in_isr) -{ - hcd_event_t event = - { +void hcd_event_xfer_complete(uint8_t dev_addr, uint8_t ep_addr, uint32_t xferred_bytes, xfer_result_t result, bool in_isr) { + hcd_event_t event = { .rhport = 0, // TODO correct rhport .event_id = HCD_EVENT_XFER_COMPLETE, .dev_addr = dev_addr, diff --git a/src/portable/template/dcd_template.c b/src/portable/template/dcd_template.c index 590dd9fcf..12d610bd6 100644 --- a/src/portable/template/dcd_template.c +++ b/src/portable/template/dcd_template.c @@ -26,7 +26,7 @@ #include "tusb_option.h" -#if CFG_TUSB_MCU == OPT_MCU_NONE +#if CFG_TUD_ENABLED && CFG_TUSB_MCU == OPT_MCU_NONE #include "device/dcd.h" @@ -141,4 +141,6 @@ void dcd_edpt_clear_stall (uint8_t rhport, uint8_t ep_addr) (void) ep_addr; } + + #endif diff --git a/src/portable/template/hcd_template.c b/src/portable/template/hcd_template.c new file mode 100644 index 000000000..3e3b91558 --- /dev/null +++ b/src/portable/template/hcd_template.c @@ -0,0 +1,162 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Ha Thach (tinyusb.org) + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#include "tusb_option.h" + +#if CFG_TUH_ENABLED && CFG_TUSB_MCU == OPT_MCU_NONE + +#include "host/hcd.h" + +//--------------------------------------------------------------------+ +// Controller API +//--------------------------------------------------------------------+ + +// optional hcd configuration, called by tuh_configure() +bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { + (void) rhport; + (void) cfg_id; + (void) cfg_param; + + return false; +} + +// Initialize controller to host mode +bool hcd_init(uint8_t rhport) { + (void) rhport; + + return false; +} + +// Interrupt Handler +void hcd_int_handler(uint8_t rhport) { + (void) rhport; +} + +// Enable USB interrupt +void hcd_int_enable (uint8_t rhport) { + (void) rhport; +} + +// Disable USB interrupt +void hcd_int_disable(uint8_t rhport) { + (void) rhport; +} + +// Get frame number (1ms) +uint32_t hcd_frame_number(uint8_t rhport) { + (void) rhport; + + return 0; +} + +//--------------------------------------------------------------------+ +// Port API +//--------------------------------------------------------------------+ + +// Get the current connect status of roothub port +bool hcd_port_connect_status(uint8_t rhport) { + (void) rhport; + + return false; +} + +// Reset USB bus on the port. Return immediately, bus reset sequence may not be complete. +// Some port would require hcd_port_reset_end() to be invoked after 10ms to complete the reset sequence. +void hcd_port_reset(uint8_t rhport) { + (void) rhport; +} + +// Complete bus reset sequence, may be required by some controllers +void hcd_port_reset_end(uint8_t rhport) { + (void) rhport; +} + +// Get port link speed +tusb_speed_t hcd_port_speed_get(uint8_t rhport) { + (void) rhport; + + return TUSB_SPEED_FULL; +} + +// HCD closes all opened endpoints belong to this device +void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { + (void) rhport; + (void) dev_addr; +} + +//--------------------------------------------------------------------+ +// Endpoints API +//--------------------------------------------------------------------+ + +// Open an endpoint +bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { + (void) rhport; + (void) dev_addr; + (void) ep_desc; + + return false; +} + +// Submit a transfer, when complete hcd_event_xfer_complete() must be invoked +bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + (void) buffer; + (void) buflen; + + return false; +} + +// Abort a queued transfer. Note: it can only abort transfer that has not been started +// Return true if a queued transfer is aborted, false if there is no transfer to abort +bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + + return false; +} + +// Submit a special transfer to send 8-byte Setup Packet, when complete hcd_event_xfer_complete() must be invoked +bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) { + (void) rhport; + (void) dev_addr; + (void) setup_packet; + + return false; +} + +// clear stall, data toggle is also reset to DATA0 +bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + + return false; +} + +#endif diff --git a/src/tusb.h b/src/tusb.h index 37a521fa8..d6534ca28 100644 --- a/src/tusb.h +++ b/src/tusb.h @@ -64,7 +64,10 @@ #if CFG_TUH_VENDOR #include "class/vendor/vendor_host.h" #endif - +#else + #ifndef tuh_int_handler + #define tuh_int_handler(_x) + #endif #endif //------------- DEVICE -------------// @@ -118,6 +121,10 @@ #if CFG_TUD_BTH #include "class/bth/bth_device.h" #endif +#else + #ifndef tud_int_handler + #define tud_int_handler(_x) + #endif #endif -- cgit v1.3.1 From 824e585e2b1f62d1ed03f480439e62e5410636b6 Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 18 Aug 2023 14:06:57 +0700 Subject: ground works for hcd max3421e --- .../boards/feather_nrf52840_express/board.cmake | 4 +- hw/bsp/nrf/boards/feather_nrf52840_express/board.h | 7 + hw/bsp/nrf/family.c | 80 ++++-- hw/bsp/nrf/family.cmake | 2 +- hw/bsp/nrf/nrfx_config.h | 5 +- src/portable/analog/max3421e/hcd_max3421e.c | 302 +++++++++++++++++++++ 6 files changed, 369 insertions(+), 31 deletions(-) create mode 100644 src/portable/analog/max3421e/hcd_max3421e.c (limited to 'src/portable') diff --git a/hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake b/hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake index 0acbecf7a..78ed98225 100644 --- a/hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake +++ b/hw/bsp/nrf/boards/feather_nrf52840_express/board.cmake @@ -1,6 +1,6 @@ set(MCU_VARIANT nrf52840) -set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/../../linker/nrf52840_s140_v6.ld) -# set(LD_FILE_GNU ${NRFX_DIR}/mdk/nrf52840_xxaa.ld) +#set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/../../linker/nrf52840_s140_v6.ld) +set(LD_FILE_GNU ${NRFX_DIR}/mdk/nrf52840_xxaa.ld) function(update_board TARGET) endfunction() diff --git a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h index 8e6ce3230..e19f88a3c 100644 --- a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h +++ b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h @@ -45,6 +45,13 @@ #define UART_RX_PIN 24 #define UART_TX_PIN 25 +// SPI for USB host shield +#define SPI_SCK_PIN 14 +#define SPI_MOSI_PIN 13 +#define SPI_MISO_PIN 15 +#define SPI_CS_PIN 27 +#define MAX3241E_INT_PIN 26 + #ifdef __cplusplus } #endif diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 9ca666e36..b6ed15122 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -40,6 +40,7 @@ #include "hal/nrf_gpio.h" #include "drivers/include/nrfx_power.h" #include "drivers/include/nrfx_uarte.h" +#include "drivers/include/nrfx_spim.h" #ifdef SOFTDEVICE_PRESENT #include "nrf_sdm.h" @@ -54,8 +55,7 @@ //--------------------------------------------------------------------+ // Forward USB interrupt events to TinyUSB IRQ Handler //--------------------------------------------------------------------+ -void USBD_IRQHandler(void) -{ +void USBD_IRQHandler(void) { tud_int_handler(0); } @@ -81,6 +81,7 @@ enum { #endif static nrfx_uarte_t _uart_id = NRFX_UARTE_INSTANCE(0); +static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(0); // tinyusb function that handles power event (detected, ready, removed) // We must call it within SD's SOC event handler, or set it as power event handler if SD is not enabled. @@ -88,13 +89,11 @@ extern void tusb_hal_nrf_power_event(uint32_t event); // nrf power callback, could be unused if SD is enabled or usb is disabled (board_test example) -TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) -{ +TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { tusb_hal_nrf_power_event((uint32_t) event); } -void board_init(void) -{ +void board_init(void) { // stop LF clock just in case we jump from application without reset NRF_CLOCK->TASKS_LFCLKSTOP = 1UL; @@ -113,8 +112,7 @@ void board_init(void) SysTick_Config(SystemCoreClock/1000); // UART - nrfx_uarte_config_t uart_cfg = - { + nrfx_uarte_config_t uart_cfg = { .pseltxd = UART_TX_PIN, .pselrxd = UART_RX_PIN, .pselcts = NRF_UARTE_PSEL_DISCONNECTED, @@ -175,45 +173,78 @@ void board_init(void) if ( usb_reg & VBUSDETECT_Msk ) tusb_hal_nrf_power_event(USB_EVT_DETECTED); if ( usb_reg & OUTPUTRDY_Msk ) tusb_hal_nrf_power_event(USB_EVT_READY); #endif + + (void) _spi; +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E + // USB host using max3421e usb controller via SPI + nrfx_spim_config_t cfg = { + .sck_pin = SPI_SCK_PIN, + .mosi_pin = SPI_MOSI_PIN, + .miso_pin = SPI_MISO_PIN, + .ss_pin = SPI_CS_PIN, + .ss_active_high = false, + .irq_priority = 3, + .orc = 0xFF, + // default setting 4 Mhz, Mode 0, MSB first + .frequency = NRF_SPIM_FREQ_4M, + .mode = NRF_SPIM_MODE_0, + .bit_order = NRF_SPIM_BIT_ORDER_MSB_FIRST, + }; + + // no handler --> blocking + nrfx_spim_init(&_spi, &cfg, NULL, NULL); +#endif + } //--------------------------------------------------------------------+ // Board porting API //--------------------------------------------------------------------+ -void board_led_write(bool state) -{ - nrf_gpio_pin_write(LED_PIN, state ? LED_STATE_ON : (1-LED_STATE_ON)); +void board_led_write(bool state) { + nrf_gpio_pin_write(LED_PIN, state ? LED_STATE_ON : (1 - LED_STATE_ON)); } -uint32_t board_button_read(void) -{ +uint32_t board_button_read(void) { return BUTTON_STATE_ACTIVE == nrf_gpio_pin_read(BUTTON_PIN); } -int board_uart_read(uint8_t* buf, int len) -{ - (void) buf; (void) len; +int board_uart_read(uint8_t *buf, int len) { + (void) buf; + (void) len; return 0; // return NRFX_SUCCESS == nrfx_uart_rx(&_uart_id, buf, (size_t) len) ? len : 0; } -int board_uart_write(void const * buf, int len) -{ - return (NRFX_SUCCESS == nrfx_uarte_tx(&_uart_id, (uint8_t const*) buf, (size_t) len)) ? len : 0; +int board_uart_write(void const *buf, int len) { + return (NRFX_SUCCESS == nrfx_uarte_tx(&_uart_id, (uint8_t const *) buf, (size_t) len)) ? len : 0; } #if CFG_TUSB_OS == OPT_OS_NONE volatile uint32_t system_ticks = 0; -void SysTick_Handler (void) -{ + +void SysTick_Handler(void) { system_ticks++; } -uint32_t board_millis(void) -{ +uint32_t board_millis(void) { return system_ticks; } + +#endif + +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E +// API: SPI transfer with MAX3421E, must be implemented by application +bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len) { + (void) rhport; + nrfx_spim_xfer_desc_t xfer = { + .p_tx_buffer = tx_buf, + .tx_length = tx_len, + .p_rx_buffer = rx_buf, + .rx_length = rx_len, + }; + return nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS; +} #endif #ifdef SOFTDEVICE_PRESENT @@ -251,8 +282,7 @@ void SD_EVT_IRQHandler(void) } } -void nrf_error_cb(uint32_t id, uint32_t pc, uint32_t info) -{ +void nrf_error_cb(uint32_t id, uint32_t pc, uint32_t info) { (void) id; (void) pc; (void) info; diff --git a/hw/bsp/nrf/family.cmake b/hw/bsp/nrf/family.cmake index 6c24d3658..527251e71 100644 --- a/hw/bsp/nrf/family.cmake +++ b/hw/bsp/nrf/family.cmake @@ -122,7 +122,7 @@ function(family_configure_example TARGET RTOS) family_add_tinyusb(${TARGET} OPT_MCU_NRF5X ${RTOS}) target_sources(${TARGET}-tinyusb PUBLIC ${TOP}/src/portable/nordic/nrf5x/dcd_nrf5x.c - #${TOP}/src/portable/analog/max3421e/hcd_max3421e.c + ${TOP}/src/portable/analog/max3421e/hcd_max3421e.c ) target_link_libraries(${TARGET}-tinyusb PUBLIC board_${BOARD}) diff --git a/hw/bsp/nrf/nrfx_config.h b/hw/bsp/nrf/nrfx_config.h index 696a3fb04..d0f718c6c 100644 --- a/hw/bsp/nrf/nrfx_config.h +++ b/hw/bsp/nrf/nrfx_config.h @@ -9,9 +9,8 @@ #define NRFX_UARTE_ENABLED 1 #define NRFX_UARTE0_ENABLED 1 -#define NRFX_UARTE1_ENABLED 0 -#define NRFX_UARTE2_ENABLED 0 -#define NRFX_UARTE3_ENABLED 0 +#define NRFX_SPIM_ENABLED 1 +#define NRFX_SPIM0_ENABLED 1 #define NRFX_PRS_ENABLED 0 #define NRFX_USBREG_ENABLED 1 diff --git a/src/portable/analog/max3421e/hcd_max3421e.c b/src/portable/analog/max3421e/hcd_max3421e.c new file mode 100644 index 000000000..7b9d73e4e --- /dev/null +++ b/src/portable/analog/max3421e/hcd_max3421e.c @@ -0,0 +1,302 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Ha Thach (tinyusb.org) + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#include "tusb_option.h" + +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E + +#include "host/hcd.h" + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + +// Command format is +// Reg [7:3] | 0 [2] | Dir [1] | Ack [0] + +enum { + CMDBYTE_WRITE = 0x02, +}; + +enum { + RCVVFIFO_ADDR = 1u << 3, // 0x08 + SNDFIFO_ADDR = 2u << 3, // 0x10 + SUDFIFO_ADDR = 4u << 3, // 0x20 + RCVBC_ADDR = 6u << 3, // 0x30 + SNDBC_ADDR = 7u << 3, // 0x38 + USBIRQ_ADDR = 13u << 3, // 0x68 + USBIEN_ADDR = 14u << 3, // 0x70 + USBCTL_ADDR = 15u << 3, // 0x78 + CPUCTL_ADDR = 16u << 3, // 0x80 + PINCTL_ADDR = 17u << 3, // 0x88 + REVISION_ADDR = 18u << 3, // 0x90 + HIRQ_ADDR = 25u << 3, // 0xC8 + HIEN_ADDR = 26u << 3, // 0xD0 + MODE_ADDR = 27u << 3, // 0xD8 + PERADDR_ADDR = 28u << 3, // 0xE0 + HCTL_ADDR = 29u << 3, // 0xE8 + HXFR_ADDR = 30u << 3, // 0xF0 + HRSL_ADDR = 31u << 3, // 0xF8 +}; + +enum { + USBIRQ_OSCOK_IRQ = 1u << 0, + USBIRQ_NOVBUS_IRQ = 1u << 5, + USBIRQ_VBUS_IRQ = 1u << 6, +}; + +enum { + USBCTL_PWRDOWN = 1u << 4, + USBCTL_CHIPRES = 1u << 5, +}; + +enum { + CPUCTL_IE = 1u << 0, + CPUCTL_PULSEWID0 = 1u << 6, + CPUCTL_PULSEWID1 = 1u << 7, +}; + +enum { + PINCTL_GPXA = 1u << 0, + PINCTL_GPXB = 1u << 1, + PINCTL_POSINT = 1u << 2, + PINCTL_INTLEVEL = 1u << 3, + PINCTL_FDUPSPI = 1u << 4, +}; + +enum { + HIRQ_BUSEVENT_IRQ = 1u << 0, + HIRQ_RWU_IRQ = 1u << 1, + HIRQ_RCVDAV_IRQ = 1u << 2, + HIRQ_SNDBAV_IRQ = 1u << 3, + HIRQ_SUSDN_IRQ = 1u << 4, + HIRQ_CONDET_IRQ = 1u << 5, + HIRQ_FRAME_IRQ = 1u << 6, + HIRQ_HXFRDN_IRQ = 1u << 7, +}; + +enum { + MODE_HOST = 1u << 0, + MODE_LOWSPEED = 1u << 1, + MODE_HUBPRE = 1u << 2, + MODE_SOFKAENAB = 1u << 3, + MODE_SEPIRQ = 1u << 4, + MODE_DELAYISO = 1u << 5, + MODE_DMPULLDN = 1u << 6, + MODE_DPPULLDN = 1u << 7, +}; + +enum { + HCTL_BUSRST = 1u << 1, + HCTL_FRMRST = 1u << 2, + HCTL_SAMPLEBUS = 1u << 3, + HCTL_SIGRSM = 1u << 4, + HCTL_RCVTOG0 = 1u << 5, + HCTL_RCVTOG1 = 1u << 6, + HCTL_SNDTOG0 = 1u << 7, + HCTL_SNDTOG1 = 1u << 8, +}; + +enum { + HXFR_EPNUM_MASK = 0x0f, + HXFR_SETUP = 1u << 4, + HXFR_OUT_NIN = 1u << 5, + HXFR_ISO = 1u << 6, + HXFR_HS = 1u << 7, +}; + +enum { + HRSL_RESULT_MASK = 0x0f, + HRSL_RCVTOGRD = 1u << 4, + HRSL_SNDTOGRD = 1u << 5, + HRSL_KSTATUS = 1u << 6, + HRSL_JSTATUS = 1u << 7, +}; + +// API: SPI transfer with MAX3421E, must be implemented by application +bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); + +// return HIRQ register since we are in full-duplex mode +static uint8_t reg_write(uint8_t reg, uint8_t data) { + uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; + uint8_t rx_buf[2] = {0, 0}; + tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2); + return rx_buf[0]; +} + +static uint8_t reg_read(uint8_t reg) { + uint8_t tx_buf[2] = {reg, 0}; + uint8_t rx_buf[2] = {0, 0}; + return tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2) ? rx_buf[1] : 0; +} + + +//--------------------------------------------------------------------+ +// Controller API +//--------------------------------------------------------------------+ + +// optional hcd configuration, called by tuh_configure() +bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { + (void) rhport; + (void) cfg_id; + (void) cfg_param; + + return false; +} + +// Initialize controller to host mode +bool hcd_init(uint8_t rhport) { + (void) rhport; + + // full duplex, interrupt level (should be configurable) + reg_write(PINCTL_ADDR, PINCTL_FDUPSPI | PINCTL_INTLEVEL); + + // reset + reg_write(USBCTL_ADDR, USBCTL_CHIPRES); + reg_write(USBCTL_ADDR, 0); + while( !(reg_read(USBIRQ_ADDR) & USBIRQ_OSCOK_IRQ) ) { + // wait for oscillator to stabilize + } + + // Mode: Host and DP/DM pull down + reg_write(MODE_ADDR, MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); + + // Connection detection + reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ /*| HIRQ_FRAME_IRQ */); + + return false; +} + +// Interrupt Handler +void hcd_int_handler(uint8_t rhport) { + (void) rhport; +} + +// Enable USB interrupt +void hcd_int_enable (uint8_t rhport) { + (void) rhport; +} + +// Disable USB interrupt +void hcd_int_disable(uint8_t rhport) { + (void) rhport; +} + +// Get frame number (1ms) +uint32_t hcd_frame_number(uint8_t rhport) { + (void) rhport; + + return 0; +} + +//--------------------------------------------------------------------+ +// Port API +//--------------------------------------------------------------------+ + +// Get the current connect status of roothub port +bool hcd_port_connect_status(uint8_t rhport) { + (void) rhport; + + return false; +} + +// Reset USB bus on the port. Return immediately, bus reset sequence may not be complete. +// Some port would require hcd_port_reset_end() to be invoked after 10ms to complete the reset sequence. +void hcd_port_reset(uint8_t rhport) { + (void) rhport; +} + +// Complete bus reset sequence, may be required by some controllers +void hcd_port_reset_end(uint8_t rhport) { + (void) rhport; +} + +// Get port link speed +tusb_speed_t hcd_port_speed_get(uint8_t rhport) { + (void) rhport; + + return TUSB_SPEED_FULL; +} + +// HCD closes all opened endpoints belong to this device +void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { + (void) rhport; + (void) dev_addr; +} + +//--------------------------------------------------------------------+ +// Endpoints API +//--------------------------------------------------------------------+ + +// Open an endpoint +bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { + (void) rhport; + (void) dev_addr; + (void) ep_desc; + + return false; +} + +// Submit a transfer, when complete hcd_event_xfer_complete() must be invoked +bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + (void) buffer; + (void) buflen; + + return false; +} + +// Abort a queued transfer. Note: it can only abort transfer that has not been started +// Return true if a queued transfer is aborted, false if there is no transfer to abort +bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + + return false; +} + +// Submit a special transfer to send 8-byte Setup Packet, when complete hcd_event_xfer_complete() must be invoked +bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) { + (void) rhport; + (void) dev_addr; + (void) setup_packet; + + return false; +} + +// clear stall, data toggle is also reset to DATA0 +bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + + return false; +} + +#endif -- cgit v1.3.1 From cacc96b25dc04865389357467b7a6d92d040ef36 Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 18 Aug 2023 17:39:10 +0700 Subject: adding connection event handling, add nrf gpio interrupt for max2341e interrupt pin --- hw/bsp/nrf/boards/feather_nrf52840_express/board.h | 2 +- hw/bsp/nrf/family.c | 55 +++++++++++----- hw/bsp/nrf/family.cmake | 2 + hw/bsp/nrf/nrfx_config.h | 2 +- hw/bsp/nrf/nrfx_glue.h | 69 ++++++++++++++++++++ src/portable/analog/max3421e/hcd_max3421e.c | 76 +++++++++++++++++++++- 6 files changed, 184 insertions(+), 22 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h index e19f88a3c..7f042142e 100644 --- a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h +++ b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h @@ -50,7 +50,7 @@ #define SPI_MOSI_PIN 13 #define SPI_MISO_PIN 15 #define SPI_CS_PIN 27 -#define MAX3241E_INT_PIN 26 +#define MAX3241E_INTR_PIN 26 #ifdef __cplusplus } diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index b6ed15122..e58ee845b 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -38,6 +38,7 @@ #include "nrfx.h" #include "hal/nrf_gpio.h" +#include "drivers/include/nrfx_gpiote.h" #include "drivers/include/nrfx_power.h" #include "drivers/include/nrfx_uarte.h" #include "drivers/include/nrfx_spim.h" @@ -81,18 +82,45 @@ enum { #endif static nrfx_uarte_t _uart_id = NRFX_UARTE_INSTANCE(0); -static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(0); // tinyusb function that handles power event (detected, ready, removed) // We must call it within SD's SOC event handler, or set it as power event handler if SD is not enabled. extern void tusb_hal_nrf_power_event(uint32_t event); - // nrf power callback, could be unused if SD is enabled or usb is disabled (board_test example) TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { tusb_hal_nrf_power_event((uint32_t) event); } +//------------- Host using MAX2341E -------------// +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E +static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(0); + +void max2342e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { + if ( !(pin == MAX3241E_INTR_PIN && action == NRF_GPIOTE_POLARITY_HITOLO) ) return; + + tuh_int_handler(1); +} + +// API: SPI transfer with MAX3421E, must be implemented by application +bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len) { + (void) rhport; + nrfx_spim_xfer_desc_t xfer = { + .p_tx_buffer = tx_buf, + .tx_length = tx_len, + .p_rx_buffer = rx_buf, + .rx_length = rx_len, + }; + return nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS; +} + +#endif + + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + void board_init(void) { // stop LF clock just in case we jump from application without reset NRF_CLOCK->TASKS_LFCLKSTOP = 1UL; @@ -174,7 +202,6 @@ void board_init(void) { if ( usb_reg & OUTPUTRDY_Msk ) tusb_hal_nrf_power_event(USB_EVT_READY); #endif - (void) _spi; #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E // USB host using max3421e usb controller via SPI nrfx_spim_config_t cfg = { @@ -193,6 +220,14 @@ void board_init(void) { // no handler --> blocking nrfx_spim_init(&_spi, &cfg, NULL, NULL); + + // max3421e interrupt pin + nrfx_gpiote_init(1); + nrfx_gpiote_in_config_t in_config = NRFX_GPIOTE_CONFIG_IN_SENSE_HITOLO(true); + in_config.pull = NRF_GPIO_PIN_PULLUP; + + nrfx_gpiote_in_init(MAX3241E_INTR_PIN, &in_config, max2342e_int_handler); + nrfx_gpiote_in_event_enable(MAX3241E_INTR_PIN, true); #endif } @@ -233,20 +268,6 @@ uint32_t board_millis(void) { #endif -#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E -// API: SPI transfer with MAX3421E, must be implemented by application -bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len) { - (void) rhport; - nrfx_spim_xfer_desc_t xfer = { - .p_tx_buffer = tx_buf, - .tx_length = tx_len, - .p_rx_buffer = rx_buf, - .rx_length = rx_len, - }; - return nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS; -} -#endif - #ifdef SOFTDEVICE_PRESENT // process SOC event from SD uint32_t proc_soc(void) diff --git a/hw/bsp/nrf/family.cmake b/hw/bsp/nrf/family.cmake index 527251e71..8bf7bcb52 100644 --- a/hw/bsp/nrf/family.cmake +++ b/hw/bsp/nrf/family.cmake @@ -32,6 +32,8 @@ function(add_board_target BOARD_TARGET) if (NOT TARGET ${BOARD_TARGET}) add_library(${BOARD_TARGET} STATIC # driver + ${NRFX_DIR}/helpers/nrfx_flag32_allocator.c + ${NRFX_DIR}/drivers/src/nrfx_gpiote.c ${NRFX_DIR}/drivers/src/nrfx_power.c ${NRFX_DIR}/drivers/src/nrfx_spim.c ${NRFX_DIR}/drivers/src/nrfx_uarte.c diff --git a/hw/bsp/nrf/nrfx_config.h b/hw/bsp/nrf/nrfx_config.h index d0f718c6c..e3d0ea91b 100644 --- a/hw/bsp/nrf/nrfx_config.h +++ b/hw/bsp/nrf/nrfx_config.h @@ -5,6 +5,7 @@ #define NRFX_POWER_DEFAULT_CONFIG_IRQ_PRIORITY 7 #define NRFX_CLOCK_ENABLED 0 +#define NRFX_GPIOTE_ENABLED 1 #define NRFX_UARTE_ENABLED 1 #define NRFX_UARTE0_ENABLED 1 @@ -41,5 +42,4 @@ #error "Unknown device." #endif - #endif // NRFX_CONFIG_H__ diff --git a/hw/bsp/nrf/nrfx_glue.h b/hw/bsp/nrf/nrfx_glue.h index cdf49b4ab..ef756c670 100644 --- a/hw/bsp/nrf/nrfx_glue.h +++ b/hw/bsp/nrf/nrfx_glue.h @@ -220,6 +220,75 @@ static inline bool _NRFX_IRQ_IS_PENDING(IRQn_Type irq_number) /** @} */ +//------------------------------------------------------------------------------ + +#include + +/** + * @brief Atomic 32 bit unsigned type. + */ +#define nrfx_atomic_t nrfx_atomic_u32_t + +/** + * @brief Stores value to an atomic object and returns previously stored value. + * + * @param[in] p_data Atomic memory pointer. + * @param[in] value Value to store. + * + * @return Old value stored into atomic object. + */ +#define NRFX_ATOMIC_FETCH_STORE(p_data, value) nrfx_atomic_u32_fetch_store(p_data, value) + +/** + * @brief Performs logical OR operation on an atomic object and returns previously stored value. + * + * @param[in] p_data Atomic memory pointer. + * @param[in] value Value of second operand of OR operation. + * + * @return Old value stored into atomic object. + */ +#define NRFX_ATOMIC_FETCH_OR(p_data, value) nrfx_atomic_u32_fetch_or(p_data, value) + +/** + * @brief Performs logical AND operation on an atomic object and returns previously stored value. + * + * @param[in] p_data Atomic memory pointer. + * @param[in] value Value of second operand of AND operation. + * + * @return Old value stored into atomic object. + */ +#define NRFX_ATOMIC_FETCH_AND(p_data, value) nrfx_atomic_u32_fetch_and(p_data, value) + +/** + * @brief Performs logical XOR operation on an atomic object and returns previously stored value. + * + * @param[in] p_data Atomic memory pointer. + * @param[in] value Value of second operand of XOR operation. + * + * @return Old value stored into atomic object. + */ +#define NRFX_ATOMIC_FETCH_XOR(p_data, value) nrfx_atomic_u32_fetch_xor(p_data, value) + +/** + * @brief Performs logical ADD operation on an atomic object and returns previously stored value. + * + * @param[in] p_data Atomic memory pointer. + * @param[in] value Value of second operand of ADD operation. + * + * @return Old value stored into atomic object. + */ +#define NRFX_ATOMIC_FETCH_ADD(p_data, value) nrfx_atomic_u32_fetch_add(p_data, value) + +/** + * @brief Performs logical SUB operation on an atomic object and returns previously stored value. + * + * @param[in] p_data Atomic memory pointer. + * @param[in] value Value of second operand of SUB operation. + * + * @return Old value stored into atomic object. + */ +#define NRFX_ATOMIC_FETCH_SUB(p_data, value) nrfx_atomic_u32_fetch_sub(p_data, value) + #ifdef __cplusplus } #endif diff --git a/src/portable/analog/max3421e/hcd_max3421e.c b/src/portable/analog/max3421e/hcd_max3421e.c index 7b9d73e4e..a89581b9c 100644 --- a/src/portable/analog/max3421e/hcd_max3421e.c +++ b/src/portable/analog/max3421e/hcd_max3421e.c @@ -136,6 +136,20 @@ enum { HRSL_JSTATUS = 1u << 7, }; +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + +//typedef struct { +// uint8_t mode +//} max2341e_data_t; +// +//max2341e_data_t max2341e_data; + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + // API: SPI transfer with MAX3421E, must be implemented by application bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); @@ -144,6 +158,7 @@ static uint8_t reg_write(uint8_t reg, uint8_t data) { uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; uint8_t rx_buf[2] = {0, 0}; tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2); + TU_LOG2("HIRQ: %02X\r\n", rx_buf[0]); return rx_buf[0]; } @@ -167,6 +182,48 @@ bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { return false; } +tusb_speed_t handle_connect_irq(uint8_t rhport) { + (void) rhport; + + uint8_t const hrsl = reg_read(HRSL_ADDR); + uint8_t const jk = hrsl & (HRSL_JSTATUS | HRSL_KSTATUS); + + tusb_speed_t speed; + uint8_t new_mode = MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST; + + switch(jk) { + case 0x00: + // SEO is disconnected + speed = TUSB_SPEED_INVALID; + break; + + case (HRSL_JSTATUS | HRSL_KSTATUS): + // SE1 is illegal + speed = TUSB_SPEED_INVALID; + break; + + default: { + // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) + uint8_t const mode = reg_read(MODE_ADDR); + uint8_t const ls_bit = mode & MODE_LOWSPEED; + + if ( (ls_bit && (jk == HRSL_JSTATUS)) || (!ls_bit && (jk == HRSL_KSTATUS)) ) { + speed = TUSB_SPEED_LOW; + new_mode |= MODE_LOWSPEED; + } else { + speed = TUSB_SPEED_FULL; + } + + new_mode |= MODE_SOFKAENAB; // enable SOF since there is new device + + break; + } + } + + reg_write(MODE_ADDR, new_mode); + return speed; +} + // Initialize controller to host mode bool hcd_init(uint8_t rhport) { (void) rhport; @@ -184,15 +241,28 @@ bool hcd_init(uint8_t rhport) { // Mode: Host and DP/DM pull down reg_write(MODE_ADDR, MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); - // Connection detection - reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ /*| HIRQ_FRAME_IRQ */); + // Enable Connection IRQ + reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ); - return false; + // Note: if device is already connected, CONDET IRQ may not be triggered. We need to detect it by sampling bus signal + reg_write(HCTL_ADDR, HCTL_SAMPLEBUS); + while( !(reg_read(HCTL_ADDR) & HCTL_SAMPLEBUS) ) {} + + handle_connect_irq(rhport); + reg_write(HIRQ_ADDR, HIRQ_CONDET_IRQ); + + // Enable Interrupt pin + reg_write(CPUCTL_ADDR, CPUCTL_IE); + + return true; } // Interrupt Handler void hcd_int_handler(uint8_t rhport) { (void) rhport; + + uint8_t hirq = reg_read(HIRQ_ADDR); + TU_LOG3_INT(hirq); } // Enable USB interrupt -- cgit v1.3.1 From b4134394166c1f77463b5cb62f28cff465fde174 Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 22 Aug 2023 19:57:59 +0700 Subject: able to detect new device and start enumerating --- src/portable/analog/max3421e/hcd_max3421e.c | 70 +++++++++++++++++++++-------- 1 file changed, 51 insertions(+), 19 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421e/hcd_max3421e.c b/src/portable/analog/max3421e/hcd_max3421e.c index a89581b9c..870c616a9 100644 --- a/src/portable/analog/max3421e/hcd_max3421e.c +++ b/src/portable/analog/max3421e/hcd_max3421e.c @@ -140,11 +140,13 @@ enum { // //--------------------------------------------------------------------+ -//typedef struct { -// uint8_t mode -//} max2341e_data_t; -// -//max2341e_data_t max2341e_data; +typedef struct { + uint8_t mode; + + volatile uint16_t frame_count; +} max2341e_data_t; + +static max2341e_data_t _hcd_data; //--------------------------------------------------------------------+ // @@ -168,6 +170,11 @@ static uint8_t reg_read(uint8_t reg) { return tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2) ? rx_buf[1] : 0; } +static inline uint8_t mode_write(uint8_t data) { + _hcd_data.mode = data; + return reg_write(MODE_ADDR, data); +} + //--------------------------------------------------------------------+ // Controller API @@ -220,7 +227,8 @@ tusb_speed_t handle_connect_irq(uint8_t rhport) { } } - reg_write(MODE_ADDR, new_mode); + mode_write(new_mode); + TU_LOG2_INT(speed); return speed; } @@ -228,6 +236,8 @@ tusb_speed_t handle_connect_irq(uint8_t rhport) { bool hcd_init(uint8_t rhport) { (void) rhport; + tu_memclr(&_hcd_data, sizeof(_hcd_data)); + // full duplex, interrupt level (should be configurable) reg_write(PINCTL_ADDR, PINCTL_FDUPSPI | PINCTL_INTLEVEL); @@ -239,17 +249,21 @@ bool hcd_init(uint8_t rhport) { } // Mode: Host and DP/DM pull down - reg_write(MODE_ADDR, MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); + mode_write(MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); // Enable Connection IRQ - reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ); + reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ | HIRQ_FRAME_IRQ); - // Note: if device is already connected, CONDET IRQ may not be triggered. We need to detect it by sampling bus signal + #if 0 + // Note: if device is already connected, CONDET IRQ may not be triggered. + // We need to detect it by sampling bus signal. FIXME not working reg_write(HCTL_ADDR, HCTL_SAMPLEBUS); - while( !(reg_read(HCTL_ADDR) & HCTL_SAMPLEBUS) ) {} + while ( reg_read(HCTL_ADDR) & HCTL_SAMPLEBUS ) {} - handle_connect_irq(rhport); - reg_write(HIRQ_ADDR, HIRQ_CONDET_IRQ); + if ( TUSB_SPEED_INVALID != handle_connect_irq(rhport) ) { + reg_write(HIRQ_ADDR, HIRQ_CONDET_IRQ); // clear connect irq + } + #endif // Enable Interrupt pin reg_write(CPUCTL_ADDR, CPUCTL_IE); @@ -262,7 +276,26 @@ void hcd_int_handler(uint8_t rhport) { (void) rhport; uint8_t hirq = reg_read(HIRQ_ADDR); - TU_LOG3_INT(hirq); + TU_LOG3_HEX(hirq); + + if (hirq & HIRQ_CONDET_IRQ) { + tusb_speed_t speed = handle_connect_irq(rhport); + + if (speed == TUSB_SPEED_INVALID) { + hcd_event_device_remove(rhport, true); + }else { + hcd_event_device_attach(rhport, true); + } + } + + if (hirq & HIRQ_FRAME_IRQ) { + _hcd_data.frame_count++; + } + + // clear all interrupt + if ( hirq ) { + reg_write(HIRQ_ADDR, hirq); + } } // Enable USB interrupt @@ -278,8 +311,7 @@ void hcd_int_disable(uint8_t rhport) { // Get frame number (1ms) uint32_t hcd_frame_number(uint8_t rhport) { (void) rhport; - - return 0; + return (uint32_t ) _hcd_data.frame_count; } //--------------------------------------------------------------------+ @@ -289,26 +321,26 @@ uint32_t hcd_frame_number(uint8_t rhport) { // Get the current connect status of roothub port bool hcd_port_connect_status(uint8_t rhport) { (void) rhport; - - return false; + return (_hcd_data.mode & MODE_SOFKAENAB) ? true : false; } // Reset USB bus on the port. Return immediately, bus reset sequence may not be complete. // Some port would require hcd_port_reset_end() to be invoked after 10ms to complete the reset sequence. void hcd_port_reset(uint8_t rhport) { (void) rhport; + reg_write(HCTL_ADDR, HCTL_BUSRST); } // Complete bus reset sequence, may be required by some controllers void hcd_port_reset_end(uint8_t rhport) { (void) rhport; + reg_write(HCTL_ADDR, 0); } // Get port link speed tusb_speed_t hcd_port_speed_get(uint8_t rhport) { (void) rhport; - - return TUSB_SPEED_FULL; + return (_hcd_data.mode & MODE_LOWSPEED) ? TUSB_SPEED_LOW : TUSB_SPEED_FULL; } // HCD closes all opened endpoints belong to this device -- cgit v1.3.1 From 274578ff46c31b231b3553dc9a20895646313130 Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 22 Aug 2023 23:17:12 +0700 Subject: able to send setup packet --- hw/bsp/nrf/boards/feather_nrf52840_express/board.h | 8 +- hw/bsp/nrf/family.c | 36 ++++- src/host/hcd.h | 2 +- src/host/usbh.c | 32 ++-- src/portable/analog/max3421e/hcd_max3421e.c | 173 ++++++++++++++++----- 5 files changed, 179 insertions(+), 72 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h index 7f042142e..e6e7590ac 100644 --- a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h +++ b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h @@ -46,10 +46,10 @@ #define UART_TX_PIN 25 // SPI for USB host shield -#define SPI_SCK_PIN 14 -#define SPI_MOSI_PIN 13 -#define SPI_MISO_PIN 15 -#define SPI_CS_PIN 27 +#define MAX3421E_SCK_PIN 14 +#define MAX3421E_MOSI_PIN 13 +#define MAX3421E_MISO_PIN 15 +#define MAX3421E_CS_PIN 27 #define MAX3241E_INTR_PIN 26 #ifdef __cplusplus diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index e58ee845b..862f67bc7 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -96,22 +96,38 @@ TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(0); -void max2342e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { +void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { if ( !(pin == MAX3241E_INTR_PIN && action == NRF_GPIOTE_POLARITY_HITOLO) ) return; tuh_int_handler(1); } +static inline void max3421e_cs_assert(bool active) { + nrf_gpio_pin_write(MAX3421E_CS_PIN, active ? 0 : 1); +} + +//--------------------------------------------------------------------+ // API: SPI transfer with MAX3421E, must be implemented by application -bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len) { +//--------------------------------------------------------------------+ + +bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, + uint8_t * rx_buf, size_t rx_len, bool keep_cs) { (void) rhport; + + max3421e_cs_assert(true); + nrfx_spim_xfer_desc_t xfer = { .p_tx_buffer = tx_buf, .tx_length = tx_len, .p_rx_buffer = rx_buf, .rx_length = rx_len, }; - return nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS; + + bool ret = (nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS); + + if ( !keep_cs ) max3421e_cs_assert(false); + + return ret; } #endif @@ -203,12 +219,16 @@ void board_init(void) { #endif #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E + // manually manage CS + nrf_gpio_cfg_output(MAX3421E_CS_PIN); + max3421e_cs_assert(false); + // USB host using max3421e usb controller via SPI nrfx_spim_config_t cfg = { - .sck_pin = SPI_SCK_PIN, - .mosi_pin = SPI_MOSI_PIN, - .miso_pin = SPI_MISO_PIN, - .ss_pin = SPI_CS_PIN, + .sck_pin = MAX3421E_SCK_PIN, + .mosi_pin = MAX3421E_MOSI_PIN, + .miso_pin = MAX3421E_MISO_PIN, + .ss_pin = NRFX_SPIM_PIN_NOT_USED, .ss_active_high = false, .irq_priority = 3, .orc = 0xFF, @@ -226,7 +246,7 @@ void board_init(void) { nrfx_gpiote_in_config_t in_config = NRFX_GPIOTE_CONFIG_IN_SENSE_HITOLO(true); in_config.pull = NRF_GPIO_PIN_PULLUP; - nrfx_gpiote_in_init(MAX3241E_INTR_PIN, &in_config, max2342e_int_handler); + nrfx_gpiote_in_init(MAX3241E_INTR_PIN, &in_config, max3421e_int_handler); nrfx_gpiote_in_event_enable(MAX3241E_INTR_PIN, true); #endif diff --git a/src/host/hcd.h b/src/host/hcd.h index 1b5038ef4..079877b79 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -177,7 +177,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr); // Submit a special transfer to send 8-byte Setup Packet, when complete hcd_event_xfer_complete() must be invoked -bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]); +bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8]); // clear stall, data toggle is also reset to DATA0 bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr); diff --git a/src/host/usbh.c b/src/host/usbh.c index 5423df669..7a09f5b6e 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -552,8 +552,7 @@ static void _control_blocking_complete_cb(tuh_xfer_t* xfer) } // TODO timeout_ms is not supported yet -bool tuh_control_xfer (tuh_xfer_t* xfer) -{ +bool tuh_control_xfer (tuh_xfer_t* xfer) { // EP0 with setup packet TU_VERIFY(xfer->ep_addr == 0 && xfer->setup); @@ -565,8 +564,7 @@ bool tuh_control_xfer (tuh_xfer_t* xfer) (void) osal_mutex_lock(_usbh_mutex, OSAL_TIMEOUT_WAIT_FOREVER); bool const is_idle = (_ctrl_xfer.stage == CONTROL_STAGE_IDLE); - if (is_idle) - { + if (is_idle) { _ctrl_xfer.stage = CONTROL_STAGE_SETUP; _ctrl_xfer.daddr = daddr; _ctrl_xfer.actual_len = 0; @@ -588,11 +586,9 @@ bool tuh_control_xfer (tuh_xfer_t* xfer) TU_LOG_PTR(CFG_TUH_LOG_LEVEL, xfer->setup); TU_LOG_USBH("\r\n"); - if (xfer->complete_cb) - { + if (xfer->complete_cb) { TU_ASSERT( hcd_setup_send(rhport, daddr, (uint8_t const*) &_ctrl_xfer.request) ); - }else - { + }else { // blocking if complete callback is not provided // change callback to internal blocking, and result as user argument volatile xfer_result_t result = XFER_RESULT_INVALID; @@ -656,15 +652,13 @@ static void _xfer_complete(uint8_t daddr, xfer_result_t result) } } -static bool usbh_control_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) -{ +static bool usbh_control_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { (void) ep_addr; const uint8_t rhport = usbh_get_rhport(dev_addr); tusb_control_request_t const * request = &_ctrl_xfer.request; - if (XFER_RESULT_SUCCESS != result) - { + if (XFER_RESULT_SUCCESS != result) { TU_LOG1("[%u:%u] Control %s, xferred_bytes = %lu\r\n", rhport, dev_addr, result == XFER_RESULT_STALLED ? "STALLED" : "FAILED", xferred_bytes); #if CFG_TUSB_DEBUG == 1 TU_LOG1_PTR(request); @@ -673,13 +667,10 @@ static bool usbh_control_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result // terminate transfer if any stage failed _xfer_complete(dev_addr, result); - }else - { - switch(_ctrl_xfer.stage) - { + }else { + switch(_ctrl_xfer.stage) { case CONTROL_STAGE_SETUP: - if (request->wLength) - { + if (request->wLength) { // DATA stage: initial data toggle is always 1 _set_control_xfer_stage(CONTROL_STAGE_DATA); TU_ASSERT( hcd_edpt_xfer(rhport, dev_addr, tu_edpt_addr(0, request->bmRequestType_bit.direction), _ctrl_xfer.buffer, request->wLength) ); @@ -688,8 +679,7 @@ static bool usbh_control_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result TU_ATTR_FALLTHROUGH; case CONTROL_STAGE_DATA: - if (request->wLength) - { + if (request->wLength) { TU_LOG_USBH("[%u:%u] Control data:\r\n", rhport, dev_addr); TU_LOG_MEM(CFG_TUH_LOG_LEVEL, _ctrl_xfer.buffer, xferred_bytes, 2); } @@ -1538,9 +1528,7 @@ static bool enum_new_device(hcd_event_t* event) xfer.result = XFER_RESULT_SUCCESS; xfer.user_data = ENUM_ADDR0_DEVICE_DESC; - process_enumeration(&xfer); - } #if CFG_TUH_HUB else diff --git a/src/portable/analog/max3421e/hcd_max3421e.c b/src/portable/analog/max3421e/hcd_max3421e.c index 870c616a9..c9596f695 100644 --- a/src/portable/analog/max3421e/hcd_max3421e.c +++ b/src/portable/analog/max3421e/hcd_max3421e.c @@ -136,30 +136,64 @@ enum { HRSL_JSTATUS = 1u << 7, }; +enum { + HRSL_SUCCESS = 0, + HRSL_BUSY, + HRSL_BAD_REQ, + HRSL_UNDEF, + HRSL_NAK, + HRSL_STALL, + HRSL_TOG_ERR, + HRSL_WRONG_PID, + HRSL_BAD_BYTECOUNT, + HRSL_PID_ERR, + HRSL_PKT_ERR, + HRSL_CRC_ERR, + HRSL_K_ERR, + HRSL_J_ERR, + HRSL_TIMEOUT, + HRSL_BABBLE, +}; + + //--------------------------------------------------------------------+ // //--------------------------------------------------------------------+ typedef struct { + // cached register uint8_t mode; + uint8_t peraddr; + uint8_t hxfr; volatile uint16_t frame_count; + + struct { + uint16_t packet_size; + uint16_t total_len; + uint8_t xfer_type; + }ep[8][2]; } max2341e_data_t; static max2341e_data_t _hcd_data; //--------------------------------------------------------------------+ -// +// API: SPI transfer with MAX3421E, must be implemented by application //--------------------------------------------------------------------+ -// API: SPI transfer with MAX3421E, must be implemented by application -bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); +bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, + uint8_t * rx_buf, size_t rx_len, bool keep_cs); +//void tuh_max3421e_int_enable(uint8_t rhport, bool enabled); + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ // return HIRQ register since we are in full-duplex mode static uint8_t reg_write(uint8_t reg, uint8_t data) { uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; uint8_t rx_buf[2] = {0, 0}; - tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2); + tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2, false); TU_LOG2("HIRQ: %02X\r\n", rx_buf[0]); return rx_buf[0]; } @@ -167,7 +201,7 @@ static uint8_t reg_write(uint8_t reg, uint8_t data) { static uint8_t reg_read(uint8_t reg) { uint8_t tx_buf[2] = {reg, 0}; uint8_t rx_buf[2] = {0, 0}; - return tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2) ? rx_buf[1] : 0; + return tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2, false) ? rx_buf[1] : 0; } static inline uint8_t mode_write(uint8_t data) { @@ -175,6 +209,24 @@ static inline uint8_t mode_write(uint8_t data) { return reg_write(MODE_ADDR, data); } +static inline uint8_t peraddr_write(uint8_t data) { + if ( _hcd_data.peraddr == data ) return 0; // no need to change address + + _hcd_data.peraddr = data; + return reg_write(PERADDR_ADDR, data); +} + +static inline uint8_t hxfr_write(uint8_t data) { + _hcd_data.hxfr = data; + return reg_write(HXFR_ADDR, data); +} + +static void fifo_write(uint8_t reg, uint8_t const * buffer, uint16_t len) { + uint8_t tx_buf[1] = {reg | CMDBYTE_WRITE}; + tuh_max3421e_spi_xfer_api(0, tx_buf, 1, NULL, 0, true); + tuh_max3421e_spi_xfer_api(0, buffer, len, NULL, 0, false); +} + //--------------------------------------------------------------------+ // Controller API @@ -252,7 +304,7 @@ bool hcd_init(uint8_t rhport) { mode_write(MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); // Enable Connection IRQ - reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ | HIRQ_FRAME_IRQ); + reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ | HIRQ_FRAME_IRQ | HIRQ_HXFRDN_IRQ); #if 0 // Note: if device is already connected, CONDET IRQ may not be triggered. @@ -271,33 +323,6 @@ bool hcd_init(uint8_t rhport) { return true; } -// Interrupt Handler -void hcd_int_handler(uint8_t rhport) { - (void) rhport; - - uint8_t hirq = reg_read(HIRQ_ADDR); - TU_LOG3_HEX(hirq); - - if (hirq & HIRQ_CONDET_IRQ) { - tusb_speed_t speed = handle_connect_irq(rhport); - - if (speed == TUSB_SPEED_INVALID) { - hcd_event_device_remove(rhport, true); - }else { - hcd_event_device_attach(rhport, true); - } - } - - if (hirq & HIRQ_FRAME_IRQ) { - _hcd_data.frame_count++; - } - - // clear all interrupt - if ( hirq ) { - reg_write(HIRQ_ADDR, hirq); - } -} - // Enable USB interrupt void hcd_int_enable (uint8_t rhport) { (void) rhport; @@ -359,7 +384,12 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const (void) dev_addr; (void) ep_desc; - return false; + uint8_t ep_num = tu_edpt_number(ep_desc->bEndpointAddress); + uint8_t ep_dir = tu_edpt_dir(ep_desc->bEndpointAddress); + + _hcd_data.ep[ep_num][ep_dir].packet_size = tu_edpt_packet_size(ep_desc); + + return true; } // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked @@ -384,12 +414,18 @@ bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { } // Submit a special transfer to send 8-byte Setup Packet, when complete hcd_event_xfer_complete() must be invoked -bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) { +bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8]) { (void) rhport; - (void) dev_addr; + (void) daddr; (void) setup_packet; - return false; + _hcd_data.ep[0][0].total_len = 8; + + peraddr_write(daddr); + fifo_write(SUDFIFO_ADDR, setup_packet, 8); + hxfr_write(HXFR_SETUP); + + return true; } // clear stall, data toggle is also reset to DATA0 @@ -401,4 +437,67 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { return false; } +// Interrupt Handler +void hcd_int_handler(uint8_t rhport) { + uint8_t hirq = reg_read(HIRQ_ADDR); + TU_LOG3_HEX(hirq); + + if (hirq & HIRQ_CONDET_IRQ) { + tusb_speed_t speed = handle_connect_irq(rhport); + + if (speed == TUSB_SPEED_INVALID) { + hcd_event_device_remove(rhport, true); + }else { + hcd_event_device_attach(rhport, true); + } + } + + if (hirq & HIRQ_FRAME_IRQ) { + _hcd_data.frame_count++; + } + + if (hirq & HIRQ_HXFRDN_IRQ) { + uint8_t const hrsl = reg_read(HRSL_ADDR); + uint8_t const result = hrsl & HRSL_RESULT_MASK; + uint8_t xfer_result; + + TU_LOG3("HRSL: %02X\r\n", hrsl); + switch(result) { + case HRSL_SUCCESS: + xfer_result = XFER_RESULT_SUCCESS; + break; + + case HRSL_STALL: + xfer_result = XFER_RESULT_STALLED; + break; + + default: + xfer_result = XFER_RESULT_FAILED; + break; + } + + uint8_t ep_dir = 0; + uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; + uint8_t const xfer_type = _hcd_data.hxfr & 0xf0; + + if ( xfer_type & HXFR_SETUP ) { + // SETUP transfer + ep_dir = 0; + }else if ( !(xfer_type & HXFR_OUT_NIN) ) { + // IN transfer + ep_dir = 1; + } + + uint8_t const ep_addr = tu_edpt_addr(ep_num, ep_dir); + uint16_t xferred_len = _hcd_data.ep[ep_num][ep_dir].total_len; + + hcd_event_xfer_complete(_hcd_data.peraddr, ep_addr, xferred_len, xfer_result, true); + } + + // clear all interrupt + if ( hirq ) { + reg_write(HIRQ_ADDR, hirq); + } +} + #endif -- cgit v1.3.1 From e3f3179924f7c84c4bb3e69234720f9afc178727 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 23 Aug 2023 15:08:12 +0700 Subject: able to get 8 byte descriptor, but read(RCVBC) always return 0 - rename max3421e to max3421 - fix incorrect bitmask for HCTL, fix initial device connect - fix bus reset cause connect IRQ --- hw/bsp/nrf/family.c | 24 +- hw/bsp/nrf/family.cmake | 2 +- src/host/hcd.h | 2 +- src/portable/analog/max3421/hcd_max3421.c | 613 ++++++++++++++++++++++++++++ src/portable/analog/max3421e/hcd_max3421e.c | 503 ----------------------- 5 files changed, 624 insertions(+), 520 deletions(-) create mode 100644 src/portable/analog/max3421/hcd_max3421.c delete mode 100644 src/portable/analog/max3421e/hcd_max3421e.c (limited to 'src/portable') diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 862f67bc7..45a5166a7 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -93,7 +93,7 @@ TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { } //------------- Host using MAX2341E -------------// -#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(0); void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { @@ -102,19 +102,17 @@ void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { tuh_int_handler(1); } -static inline void max3421e_cs_assert(bool active) { - nrf_gpio_pin_write(MAX3421E_CS_PIN, active ? 0 : 1); -} - //--------------------------------------------------------------------+ // API: SPI transfer with MAX3421E, must be implemented by application //--------------------------------------------------------------------+ -bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, - uint8_t * rx_buf, size_t rx_len, bool keep_cs) { +void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { (void) rhport; + nrf_gpio_pin_write(MAX3421E_CS_PIN, active ? 0 : 1); +} - max3421e_cs_assert(true); +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len) { + (void) rhport; nrfx_spim_xfer_desc_t xfer = { .p_tx_buffer = tx_buf, @@ -123,11 +121,7 @@ bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx .rx_length = rx_len, }; - bool ret = (nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS); - - if ( !keep_cs ) max3421e_cs_assert(false); - - return ret; + return (nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS); } #endif @@ -218,10 +212,10 @@ void board_init(void) { if ( usb_reg & OUTPUTRDY_Msk ) tusb_hal_nrf_power_event(USB_EVT_READY); #endif -#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 // manually manage CS nrf_gpio_cfg_output(MAX3421E_CS_PIN); - max3421e_cs_assert(false); + tuh_max3421_spi_cs_api(0, false); // USB host using max3421e usb controller via SPI nrfx_spim_config_t cfg = { diff --git a/hw/bsp/nrf/family.cmake b/hw/bsp/nrf/family.cmake index 8bf7bcb52..ff6b882ce 100644 --- a/hw/bsp/nrf/family.cmake +++ b/hw/bsp/nrf/family.cmake @@ -124,7 +124,7 @@ function(family_configure_example TARGET RTOS) family_add_tinyusb(${TARGET} OPT_MCU_NRF5X ${RTOS}) target_sources(${TARGET}-tinyusb PUBLIC ${TOP}/src/portable/nordic/nrf5x/dcd_nrf5x.c - ${TOP}/src/portable/analog/max3421e/hcd_max3421e.c + ${TOP}/src/portable/analog/max3421/hcd_max3421.c ) target_link_libraries(${TARGET}-tinyusb PUBLIC board_${BOARD}) diff --git a/src/host/hcd.h b/src/host/hcd.h index 079877b79..1f01a1a2f 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -170,7 +170,7 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr); bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc); // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked -bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen); +bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen); // Abort a queued transfer. Note: it can only abort transfer that has not been started // Return true if a queued transfer is aborted, false if there is no transfer to abort diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c new file mode 100644 index 000000000..edcb6ca6f --- /dev/null +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -0,0 +1,613 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Ha Thach (tinyusb.org) + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#include "tusb_option.h" + +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 + +#include "host/hcd.h" + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + +// Command format is +// Reg [7:3] | 0 [2] | Dir [1] | Ack [0] + +enum { + CMDBYTE_WRITE = 0x02, +}; + +enum { + RCVVFIFO_ADDR = 1u << 3, // 0x08 + SNDFIFO_ADDR = 2u << 3, // 0x10 + SUDFIFO_ADDR = 4u << 3, // 0x20 + RCVBC_ADDR = 6u << 3, // 0x30 + SNDBC_ADDR = 7u << 3, // 0x38 + USBIRQ_ADDR = 13u << 3, // 0x68 + USBIEN_ADDR = 14u << 3, // 0x70 + USBCTL_ADDR = 15u << 3, // 0x78 + CPUCTL_ADDR = 16u << 3, // 0x80 + PINCTL_ADDR = 17u << 3, // 0x88 + REVISION_ADDR = 18u << 3, // 0x90 + HIRQ_ADDR = 25u << 3, // 0xC8 + HIEN_ADDR = 26u << 3, // 0xD0 + MODE_ADDR = 27u << 3, // 0xD8 + PERADDR_ADDR = 28u << 3, // 0xE0 + HCTL_ADDR = 29u << 3, // 0xE8 + HXFR_ADDR = 30u << 3, // 0xF0 + HRSL_ADDR = 31u << 3, // 0xF8 +}; + +enum { + USBIRQ_OSCOK_IRQ = 1u << 0, + USBIRQ_NOVBUS_IRQ = 1u << 5, + USBIRQ_VBUS_IRQ = 1u << 6, +}; + +enum { + USBCTL_PWRDOWN = 1u << 4, + USBCTL_CHIPRES = 1u << 5, +}; + +enum { + CPUCTL_IE = 1u << 0, + CPUCTL_PULSEWID0 = 1u << 6, + CPUCTL_PULSEWID1 = 1u << 7, +}; + +enum { + PINCTL_GPXA = 1u << 0, + PINCTL_GPXB = 1u << 1, + PINCTL_POSINT = 1u << 2, + PINCTL_INTLEVEL = 1u << 3, + PINCTL_FDUPSPI = 1u << 4, +}; + +enum { + HIRQ_BUSEVENT_IRQ = 1u << 0, + HIRQ_RWU_IRQ = 1u << 1, + HIRQ_RCVDAV_IRQ = 1u << 2, + HIRQ_SNDBAV_IRQ = 1u << 3, + HIRQ_SUSDN_IRQ = 1u << 4, + HIRQ_CONDET_IRQ = 1u << 5, + HIRQ_FRAME_IRQ = 1u << 6, + HIRQ_HXFRDN_IRQ = 1u << 7, +}; + +enum { + MODE_HOST = 1u << 0, + MODE_LOWSPEED = 1u << 1, + MODE_HUBPRE = 1u << 2, + MODE_SOFKAENAB = 1u << 3, + MODE_SEPIRQ = 1u << 4, + MODE_DELAYISO = 1u << 5, + MODE_DMPULLDN = 1u << 6, + MODE_DPPULLDN = 1u << 7, +}; + +enum { + HCTL_BUSRST = 1u << 0, + HCTL_FRMRST = 1u << 1, + HCTL_SAMPLEBUS = 1u << 2, + HCTL_SIGRSM = 1u << 3, + HCTL_RCVTOG0 = 1u << 4, + HCTL_RCVTOG1 = 1u << 5, + HCTL_SNDTOG0 = 1u << 6, + HCTL_SNDTOG1 = 1u << 7, +}; + +enum { + HXFR_EPNUM_MASK = 0x0f, + HXFR_SETUP = 1u << 4, + HXFR_OUT_NIN = 1u << 5, + HXFR_ISO = 1u << 6, + HXFR_HS = 1u << 7, +}; + +enum { + HRSL_RESULT_MASK = 0x0f, + HRSL_RCVTOGRD = 1u << 4, + HRSL_SNDTOGRD = 1u << 5, + HRSL_KSTATUS = 1u << 6, + HRSL_JSTATUS = 1u << 7, +}; + +enum { + HRSL_SUCCESS = 0, + HRSL_BUSY, + HRSL_BAD_REQ, + HRSL_UNDEF, + HRSL_NAK, + HRSL_STALL, + HRSL_TOG_ERR, + HRSL_WRONG_PID, + HRSL_BAD_BYTECOUNT, + HRSL_PID_ERR, + HRSL_PKT_ERR, + HRSL_CRC_ERR, + HRSL_K_ERR, + HRSL_J_ERR, + HRSL_TIMEOUT, + HRSL_BABBLE, +}; + +enum { + DEFAULT_HIEN = HIRQ_CONDET_IRQ | HIRQ_FRAME_IRQ | HIRQ_HXFRDN_IRQ +}; + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + +typedef struct { + uint8_t xfer_type; + uint8_t data_toggle; + uint16_t packet_size; + + uint16_t total_len; + uint16_t xferred_len; + uint8_t* buf; +} hcd_ep_t; + +typedef struct { + bool inited; + + // cached register + uint8_t sndbc; + uint8_t mode; + uint8_t peraddr; + uint8_t hxfr; + + volatile uint16_t frame_count; + + hcd_ep_t ep[8][2]; +} max2341_data_t; + +static max2341_data_t _hcd_data; + +//--------------------------------------------------------------------+ +// API: SPI transfer with MAX3421E, must be implemented by application +//--------------------------------------------------------------------+ + +void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); + +//void tuh_max3421e_int_enable(uint8_t rhport, bool enabled); + +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ + +static void fifo_write(uint8_t reg, uint8_t const * buffer, uint16_t len) { + reg |= CMDBYTE_WRITE; + + tuh_max3421_spi_cs_api(0, true); + + tuh_max3421_spi_xfer_api(0, ®, 1, NULL, 0); + tuh_max3421_spi_xfer_api(0, buffer, len, NULL, 0); + + tuh_max3421_spi_cs_api(0, false); +} + +// return HIRQ register since we are in full-duplex mode +static uint8_t reg_write(uint8_t reg, uint8_t data) { + uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; + uint8_t rx_buf[2] = {0, 0}; + + tuh_max3421_spi_cs_api(0, true); + tuh_max3421_spi_xfer_api(0, tx_buf, 2, rx_buf, 2); + tuh_max3421_spi_cs_api(0, false); + + TU_LOG2("HIRQ: %02X\r\n", rx_buf[0]); + return rx_buf[0]; +} + +static uint8_t reg_read(uint8_t reg) { + uint8_t tx_buf[2] = {reg, 0}; + uint8_t rx_buf[2] = {0, 0}; + + tuh_max3421_spi_cs_api(0, true); + bool ret = tuh_max3421_spi_xfer_api(0, tx_buf, 2, rx_buf, 2); + tuh_max3421_spi_cs_api(0, false); + + return ret ? rx_buf[1] : 0; +} + +static inline uint8_t mode_write(uint8_t data) { + _hcd_data.mode = data; + return reg_write(MODE_ADDR, data); +} + +static inline uint8_t peraddr_write(uint8_t data) { + if ( _hcd_data.peraddr == data ) return 0; // no need to change address + + _hcd_data.peraddr = data; + return reg_write(PERADDR_ADDR, data); +} + +static inline uint8_t hxfr_write(uint8_t data) { + _hcd_data.hxfr = data; + return reg_write(HXFR_ADDR, data); +} + +static inline uint8_t sndbc_write(uint8_t data) { + _hcd_data.sndbc = data; + return reg_write(SNDBC_ADDR, data); +} + + +//--------------------------------------------------------------------+ +// Controller API +//--------------------------------------------------------------------+ + +// optional hcd configuration, called by tuh_configure() +bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { + (void) rhport; + (void) cfg_id; + (void) cfg_param; + + return false; +} + +tusb_speed_t handle_connect_irq(uint8_t rhport) { + (void) rhport; + + uint8_t const hrsl = reg_read(HRSL_ADDR); + uint8_t const jk = hrsl & (HRSL_JSTATUS | HRSL_KSTATUS); + + tusb_speed_t speed; + uint8_t new_mode = MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST; + + switch(jk) { + case 0x00: + // SEO is disconnected + speed = TUSB_SPEED_INVALID; + break; + + case (HRSL_JSTATUS | HRSL_KSTATUS): + // SE1 is illegal + speed = TUSB_SPEED_INVALID; + break; + + default: { + // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) + uint8_t const mode = reg_read(MODE_ADDR); + uint8_t const ls_bit = mode & MODE_LOWSPEED; + + if ( (ls_bit && (jk == HRSL_JSTATUS)) || (!ls_bit && (jk == HRSL_KSTATUS)) ) { + speed = TUSB_SPEED_LOW; + new_mode |= MODE_LOWSPEED; + } else { + speed = TUSB_SPEED_FULL; + } + + new_mode |= MODE_SOFKAENAB; // enable SOF since there is new device + + break; + } + } + + mode_write(new_mode); + TU_LOG2_INT(speed); + return speed; +} + +// Initialize controller to host mode +bool hcd_init(uint8_t rhport) { + (void) rhport; + + tu_memclr(&_hcd_data, sizeof(_hcd_data)); + + // full duplex, interrupt negative edge + reg_write(PINCTL_ADDR, PINCTL_FDUPSPI); + + // reset + reg_write(USBCTL_ADDR, USBCTL_CHIPRES); + reg_write(USBCTL_ADDR, 0); + while( !(reg_read(USBIRQ_ADDR) & USBIRQ_OSCOK_IRQ) ) { + // wait for oscillator to stabilize + } + + // Mode: Host and DP/DM pull down + mode_write(MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); + + // bus reset, this will trigger CONDET IRQ if device is already connected + reg_write(HCTL_ADDR, HCTL_BUSRST); + + // clear all previously pending IRQ + reg_write(HIRQ_ADDR, 0xff); + + _hcd_data.inited = true; + + // Enable Connection IRQ + reg_write(HIEN_ADDR, DEFAULT_HIEN); + + // Enable Interrupt pin + reg_write(CPUCTL_ADDR, CPUCTL_IE); + + return true; +} + +// Enable USB interrupt +void hcd_int_enable (uint8_t rhport) { + (void) rhport; +} + +// Disable USB interrupt +void hcd_int_disable(uint8_t rhport) { + (void) rhport; +} + +// Get frame number (1ms) +uint32_t hcd_frame_number(uint8_t rhport) { + (void) rhport; + return (uint32_t ) _hcd_data.frame_count; +} + +//--------------------------------------------------------------------+ +// Port API +//--------------------------------------------------------------------+ + +// Get the current connect status of roothub port +bool hcd_port_connect_status(uint8_t rhport) { + (void) rhport; + return (_hcd_data.mode & MODE_SOFKAENAB) ? true : false; +} + +// Reset USB bus on the port. Return immediately, bus reset sequence may not be complete. +// Some port would require hcd_port_reset_end() to be invoked after 10ms to complete the reset sequence. +void hcd_port_reset(uint8_t rhport) { + (void) rhport; + // Bus reset will also trigger CONDET IRQ, disable it + uint8_t hien = DEFAULT_HIEN & ~HIRQ_CONDET_IRQ; + reg_write(HIEN_ADDR, hien); + + reg_write(HCTL_ADDR, HCTL_BUSRST); +} + +// Complete bus reset sequence, may be required by some controllers +void hcd_port_reset_end(uint8_t rhport) { + (void) rhport; + reg_write(HCTL_ADDR, 0); + + // Bus reset will also trigger CONDET IRQ, clear and re-enable it after reset + reg_write(HIRQ_ADDR, HIRQ_CONDET_IRQ); + reg_write(HIEN_ADDR, DEFAULT_HIEN); +} + +// Get port link speed +tusb_speed_t hcd_port_speed_get(uint8_t rhport) { + (void) rhport; + return (_hcd_data.mode & MODE_LOWSPEED) ? TUSB_SPEED_LOW : TUSB_SPEED_FULL; +} + +// HCD closes all opened endpoints belong to this device +void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { + (void) rhport; + (void) dev_addr; +} + +//--------------------------------------------------------------------+ +// Endpoints API +//--------------------------------------------------------------------+ + +// Open an endpoint +bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { + (void) rhport; + (void) dev_addr; + (void) ep_desc; + + uint8_t ep_num = tu_edpt_number(ep_desc->bEndpointAddress); + uint8_t ep_dir = tu_edpt_dir(ep_desc->bEndpointAddress); + + _hcd_data.ep[ep_num][ep_dir].packet_size = tu_edpt_packet_size(ep_desc); + + return true; +} + +// Submit a transfer, when complete hcd_event_xfer_complete() must be invoked +bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { + (void) rhport; + + uint8_t const ep_num = tu_edpt_number(ep_addr); + uint8_t const ep_dir = tu_edpt_dir(ep_addr); + + hcd_ep_t* ep = &_hcd_data.ep[ep_num][ep_dir]; + + ep->buf = buffer; + ep->total_len = buflen; + ep->xferred_len = 0; + + uint8_t hirq = peraddr_write(daddr); + + uint8_t hctl = 0; + uint8_t hxfr = ep_num; + if ( ep_num == 0 ) { + ep->data_toggle = 1; + if ( buffer == NULL || buflen == 0 ) { + // ZLP for ACK stage + hxfr |= HXFR_HS; + } + } else if ( ep->xfer_type == TUSB_XFER_ISOCHRONOUS ) { + hxfr |= HXFR_ISO; + } + + if ( 0 == ep_dir ) { + // Page 12: Programming BULK-OUT Transfers + TU_ASSERT(hirq & HIRQ_RCVDAV_IRQ); + + uint8_t const xact_len = (uint8_t) tu_min16(buflen, ep->packet_size); + fifo_write(SNDFIFO_ADDR, buffer, xact_len); + reg_write(SNDBC_ADDR, xact_len); + + hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); + hxfr |= HXFR_OUT_NIN; + } else { + // Page 13: Programming BULK-IN Transfers + hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); + } + + reg_write(HCTL_ADDR, hctl); + hxfr_write(hxfr); + + return true; +} + +// Abort a queued transfer. Note: it can only abort transfer that has not been started +// Return true if a queued transfer is aborted, false if there is no transfer to abort +bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + + return false; +} + +// Submit a special transfer to send 8-byte Setup Packet, when complete hcd_event_xfer_complete() must be invoked +bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8]) { + (void) rhport; + + hcd_ep_t* ep = &_hcd_data.ep[0][0]; + ep->total_len = 8; + ep->xferred_len = 0; + + peraddr_write(daddr); + fifo_write(SUDFIFO_ADDR, setup_packet, 8); + hxfr_write(HXFR_SETUP); + + return true; +} + +// clear stall, data toggle is also reset to DATA0 +bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + + return false; +} + +static void handle_xfer_done(uint8_t rhport) { + (void) rhport; + + uint8_t const hrsl = reg_read(HRSL_ADDR); + uint8_t const result = hrsl & HRSL_RESULT_MASK; + uint8_t xfer_result; + + TU_LOG3("HRSL: %02X\r\n", hrsl); + switch(result) { + case HRSL_SUCCESS: + xfer_result = XFER_RESULT_SUCCESS; + break; + + case HRSL_STALL: + xfer_result = XFER_RESULT_STALLED; + break; + + case HRSL_BAD_REQ: + // occurred when initialized without any pending transfer. Skip for now + return; + + default: + xfer_result = XFER_RESULT_FAILED; + break; + } + + uint8_t ep_dir = 0; + uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; + uint8_t const xfer_type = _hcd_data.hxfr & 0xf0; + + hcd_ep_t * ep; + + if ( (xfer_type & HXFR_SETUP) || (xfer_type & HXFR_OUT_NIN) ) { + // SETUP or OUT transfer + ep_dir = 0; + ep = &_hcd_data.ep[ep_num][ep_dir]; + + uint8_t const xact_len = (xfer_type & HXFR_SETUP) ? 8 : _hcd_data.sndbc; + ep->xferred_len += xact_len; + + if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { + hcd_event_xfer_complete(_hcd_data.peraddr, ep_num, ep->xferred_len, xfer_result, true); + }else { + // more to transfer + } + } else { + // IN transfer + ep_dir = 1; + ep = &_hcd_data.ep[ep_num][ep_dir]; + uint8_t const xact_len = reg_read(RCVBC_ADDR); + ep->xferred_len += xact_len; + + // short packet or all bytes transferred + if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { + hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); + }else { + // more to transfer + } + } +} + +// Interrupt Handler +void hcd_int_handler(uint8_t rhport) { + // not initialized, do nothing + if ( !_hcd_data.inited ) return; + + uint8_t hirq = reg_read(HIRQ_ADDR); + TU_LOG3_HEX(hirq); + + if (hirq & HIRQ_FRAME_IRQ) { + _hcd_data.frame_count++; + } + + if (hirq & HIRQ_CONDET_IRQ) { + tusb_speed_t speed = handle_connect_irq(rhport); + + if (speed == TUSB_SPEED_INVALID) { + hcd_event_device_remove(rhport, true); + }else { + hcd_event_device_attach(rhport, true); + } + } + + if (hirq & HIRQ_HXFRDN_IRQ) { + handle_xfer_done(rhport); + } + + if ( hirq & HIRQ_RCVDAV_IRQ ) { + TU_LOG3("RCVDAV\r\n"); + TU_LOG3_INT(reg_read(RCVBC_ADDR)); + } + + // clear all interrupt execept SNDBAV_IRQ + hirq &= ~HIRQ_SNDBAV_IRQ; + if ( hirq ) { + reg_write(HIRQ_ADDR, hirq); + } +} + +#endif diff --git a/src/portable/analog/max3421e/hcd_max3421e.c b/src/portable/analog/max3421e/hcd_max3421e.c deleted file mode 100644 index c9596f695..000000000 --- a/src/portable/analog/max3421e/hcd_max3421e.c +++ /dev/null @@ -1,503 +0,0 @@ -/* - * The MIT License (MIT) - * - * Copyright (c) 2023 Ha Thach (tinyusb.org) - * - * Permission is hereby granted, free of charge, to any person obtaining a copy - * of this software and associated documentation files (the "Software"), to deal - * in the Software without restriction, including without limitation the rights - * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell - * copies of the Software, and to permit persons to whom the Software is - * furnished to do so, subject to the following conditions: - * - * The above copyright notice and this permission notice shall be included in - * all copies or substantial portions of the Software. - * - * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN - * THE SOFTWARE. - * - * This file is part of the TinyUSB stack. - */ - -#include "tusb_option.h" - -#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421E) && CFG_TUH_MAX3421E - -#include "host/hcd.h" - -//--------------------------------------------------------------------+ -// -//--------------------------------------------------------------------+ - -// Command format is -// Reg [7:3] | 0 [2] | Dir [1] | Ack [0] - -enum { - CMDBYTE_WRITE = 0x02, -}; - -enum { - RCVVFIFO_ADDR = 1u << 3, // 0x08 - SNDFIFO_ADDR = 2u << 3, // 0x10 - SUDFIFO_ADDR = 4u << 3, // 0x20 - RCVBC_ADDR = 6u << 3, // 0x30 - SNDBC_ADDR = 7u << 3, // 0x38 - USBIRQ_ADDR = 13u << 3, // 0x68 - USBIEN_ADDR = 14u << 3, // 0x70 - USBCTL_ADDR = 15u << 3, // 0x78 - CPUCTL_ADDR = 16u << 3, // 0x80 - PINCTL_ADDR = 17u << 3, // 0x88 - REVISION_ADDR = 18u << 3, // 0x90 - HIRQ_ADDR = 25u << 3, // 0xC8 - HIEN_ADDR = 26u << 3, // 0xD0 - MODE_ADDR = 27u << 3, // 0xD8 - PERADDR_ADDR = 28u << 3, // 0xE0 - HCTL_ADDR = 29u << 3, // 0xE8 - HXFR_ADDR = 30u << 3, // 0xF0 - HRSL_ADDR = 31u << 3, // 0xF8 -}; - -enum { - USBIRQ_OSCOK_IRQ = 1u << 0, - USBIRQ_NOVBUS_IRQ = 1u << 5, - USBIRQ_VBUS_IRQ = 1u << 6, -}; - -enum { - USBCTL_PWRDOWN = 1u << 4, - USBCTL_CHIPRES = 1u << 5, -}; - -enum { - CPUCTL_IE = 1u << 0, - CPUCTL_PULSEWID0 = 1u << 6, - CPUCTL_PULSEWID1 = 1u << 7, -}; - -enum { - PINCTL_GPXA = 1u << 0, - PINCTL_GPXB = 1u << 1, - PINCTL_POSINT = 1u << 2, - PINCTL_INTLEVEL = 1u << 3, - PINCTL_FDUPSPI = 1u << 4, -}; - -enum { - HIRQ_BUSEVENT_IRQ = 1u << 0, - HIRQ_RWU_IRQ = 1u << 1, - HIRQ_RCVDAV_IRQ = 1u << 2, - HIRQ_SNDBAV_IRQ = 1u << 3, - HIRQ_SUSDN_IRQ = 1u << 4, - HIRQ_CONDET_IRQ = 1u << 5, - HIRQ_FRAME_IRQ = 1u << 6, - HIRQ_HXFRDN_IRQ = 1u << 7, -}; - -enum { - MODE_HOST = 1u << 0, - MODE_LOWSPEED = 1u << 1, - MODE_HUBPRE = 1u << 2, - MODE_SOFKAENAB = 1u << 3, - MODE_SEPIRQ = 1u << 4, - MODE_DELAYISO = 1u << 5, - MODE_DMPULLDN = 1u << 6, - MODE_DPPULLDN = 1u << 7, -}; - -enum { - HCTL_BUSRST = 1u << 1, - HCTL_FRMRST = 1u << 2, - HCTL_SAMPLEBUS = 1u << 3, - HCTL_SIGRSM = 1u << 4, - HCTL_RCVTOG0 = 1u << 5, - HCTL_RCVTOG1 = 1u << 6, - HCTL_SNDTOG0 = 1u << 7, - HCTL_SNDTOG1 = 1u << 8, -}; - -enum { - HXFR_EPNUM_MASK = 0x0f, - HXFR_SETUP = 1u << 4, - HXFR_OUT_NIN = 1u << 5, - HXFR_ISO = 1u << 6, - HXFR_HS = 1u << 7, -}; - -enum { - HRSL_RESULT_MASK = 0x0f, - HRSL_RCVTOGRD = 1u << 4, - HRSL_SNDTOGRD = 1u << 5, - HRSL_KSTATUS = 1u << 6, - HRSL_JSTATUS = 1u << 7, -}; - -enum { - HRSL_SUCCESS = 0, - HRSL_BUSY, - HRSL_BAD_REQ, - HRSL_UNDEF, - HRSL_NAK, - HRSL_STALL, - HRSL_TOG_ERR, - HRSL_WRONG_PID, - HRSL_BAD_BYTECOUNT, - HRSL_PID_ERR, - HRSL_PKT_ERR, - HRSL_CRC_ERR, - HRSL_K_ERR, - HRSL_J_ERR, - HRSL_TIMEOUT, - HRSL_BABBLE, -}; - - -//--------------------------------------------------------------------+ -// -//--------------------------------------------------------------------+ - -typedef struct { - // cached register - uint8_t mode; - uint8_t peraddr; - uint8_t hxfr; - - volatile uint16_t frame_count; - - struct { - uint16_t packet_size; - uint16_t total_len; - uint8_t xfer_type; - }ep[8][2]; -} max2341e_data_t; - -static max2341e_data_t _hcd_data; - -//--------------------------------------------------------------------+ -// API: SPI transfer with MAX3421E, must be implemented by application -//--------------------------------------------------------------------+ - -bool tuh_max3421e_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, - uint8_t * rx_buf, size_t rx_len, bool keep_cs); -//void tuh_max3421e_int_enable(uint8_t rhport, bool enabled); - -//--------------------------------------------------------------------+ -// -//--------------------------------------------------------------------+ - -// return HIRQ register since we are in full-duplex mode -static uint8_t reg_write(uint8_t reg, uint8_t data) { - uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; - uint8_t rx_buf[2] = {0, 0}; - tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2, false); - TU_LOG2("HIRQ: %02X\r\n", rx_buf[0]); - return rx_buf[0]; -} - -static uint8_t reg_read(uint8_t reg) { - uint8_t tx_buf[2] = {reg, 0}; - uint8_t rx_buf[2] = {0, 0}; - return tuh_max3421e_spi_xfer_api(0, tx_buf, 2, rx_buf, 2, false) ? rx_buf[1] : 0; -} - -static inline uint8_t mode_write(uint8_t data) { - _hcd_data.mode = data; - return reg_write(MODE_ADDR, data); -} - -static inline uint8_t peraddr_write(uint8_t data) { - if ( _hcd_data.peraddr == data ) return 0; // no need to change address - - _hcd_data.peraddr = data; - return reg_write(PERADDR_ADDR, data); -} - -static inline uint8_t hxfr_write(uint8_t data) { - _hcd_data.hxfr = data; - return reg_write(HXFR_ADDR, data); -} - -static void fifo_write(uint8_t reg, uint8_t const * buffer, uint16_t len) { - uint8_t tx_buf[1] = {reg | CMDBYTE_WRITE}; - tuh_max3421e_spi_xfer_api(0, tx_buf, 1, NULL, 0, true); - tuh_max3421e_spi_xfer_api(0, buffer, len, NULL, 0, false); -} - - -//--------------------------------------------------------------------+ -// Controller API -//--------------------------------------------------------------------+ - -// optional hcd configuration, called by tuh_configure() -bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { - (void) rhport; - (void) cfg_id; - (void) cfg_param; - - return false; -} - -tusb_speed_t handle_connect_irq(uint8_t rhport) { - (void) rhport; - - uint8_t const hrsl = reg_read(HRSL_ADDR); - uint8_t const jk = hrsl & (HRSL_JSTATUS | HRSL_KSTATUS); - - tusb_speed_t speed; - uint8_t new_mode = MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST; - - switch(jk) { - case 0x00: - // SEO is disconnected - speed = TUSB_SPEED_INVALID; - break; - - case (HRSL_JSTATUS | HRSL_KSTATUS): - // SE1 is illegal - speed = TUSB_SPEED_INVALID; - break; - - default: { - // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) - uint8_t const mode = reg_read(MODE_ADDR); - uint8_t const ls_bit = mode & MODE_LOWSPEED; - - if ( (ls_bit && (jk == HRSL_JSTATUS)) || (!ls_bit && (jk == HRSL_KSTATUS)) ) { - speed = TUSB_SPEED_LOW; - new_mode |= MODE_LOWSPEED; - } else { - speed = TUSB_SPEED_FULL; - } - - new_mode |= MODE_SOFKAENAB; // enable SOF since there is new device - - break; - } - } - - mode_write(new_mode); - TU_LOG2_INT(speed); - return speed; -} - -// Initialize controller to host mode -bool hcd_init(uint8_t rhport) { - (void) rhport; - - tu_memclr(&_hcd_data, sizeof(_hcd_data)); - - // full duplex, interrupt level (should be configurable) - reg_write(PINCTL_ADDR, PINCTL_FDUPSPI | PINCTL_INTLEVEL); - - // reset - reg_write(USBCTL_ADDR, USBCTL_CHIPRES); - reg_write(USBCTL_ADDR, 0); - while( !(reg_read(USBIRQ_ADDR) & USBIRQ_OSCOK_IRQ) ) { - // wait for oscillator to stabilize - } - - // Mode: Host and DP/DM pull down - mode_write(MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); - - // Enable Connection IRQ - reg_write(HIEN_ADDR, HIRQ_CONDET_IRQ | HIRQ_FRAME_IRQ | HIRQ_HXFRDN_IRQ); - - #if 0 - // Note: if device is already connected, CONDET IRQ may not be triggered. - // We need to detect it by sampling bus signal. FIXME not working - reg_write(HCTL_ADDR, HCTL_SAMPLEBUS); - while ( reg_read(HCTL_ADDR) & HCTL_SAMPLEBUS ) {} - - if ( TUSB_SPEED_INVALID != handle_connect_irq(rhport) ) { - reg_write(HIRQ_ADDR, HIRQ_CONDET_IRQ); // clear connect irq - } - #endif - - // Enable Interrupt pin - reg_write(CPUCTL_ADDR, CPUCTL_IE); - - return true; -} - -// Enable USB interrupt -void hcd_int_enable (uint8_t rhport) { - (void) rhport; -} - -// Disable USB interrupt -void hcd_int_disable(uint8_t rhport) { - (void) rhport; -} - -// Get frame number (1ms) -uint32_t hcd_frame_number(uint8_t rhport) { - (void) rhport; - return (uint32_t ) _hcd_data.frame_count; -} - -//--------------------------------------------------------------------+ -// Port API -//--------------------------------------------------------------------+ - -// Get the current connect status of roothub port -bool hcd_port_connect_status(uint8_t rhport) { - (void) rhport; - return (_hcd_data.mode & MODE_SOFKAENAB) ? true : false; -} - -// Reset USB bus on the port. Return immediately, bus reset sequence may not be complete. -// Some port would require hcd_port_reset_end() to be invoked after 10ms to complete the reset sequence. -void hcd_port_reset(uint8_t rhport) { - (void) rhport; - reg_write(HCTL_ADDR, HCTL_BUSRST); -} - -// Complete bus reset sequence, may be required by some controllers -void hcd_port_reset_end(uint8_t rhport) { - (void) rhport; - reg_write(HCTL_ADDR, 0); -} - -// Get port link speed -tusb_speed_t hcd_port_speed_get(uint8_t rhport) { - (void) rhport; - return (_hcd_data.mode & MODE_LOWSPEED) ? TUSB_SPEED_LOW : TUSB_SPEED_FULL; -} - -// HCD closes all opened endpoints belong to this device -void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { - (void) rhport; - (void) dev_addr; -} - -//--------------------------------------------------------------------+ -// Endpoints API -//--------------------------------------------------------------------+ - -// Open an endpoint -bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { - (void) rhport; - (void) dev_addr; - (void) ep_desc; - - uint8_t ep_num = tu_edpt_number(ep_desc->bEndpointAddress); - uint8_t ep_dir = tu_edpt_dir(ep_desc->bEndpointAddress); - - _hcd_data.ep[ep_num][ep_dir].packet_size = tu_edpt_packet_size(ep_desc); - - return true; -} - -// Submit a transfer, when complete hcd_event_xfer_complete() must be invoked -bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { - (void) rhport; - (void) dev_addr; - (void) ep_addr; - (void) buffer; - (void) buflen; - - return false; -} - -// Abort a queued transfer. Note: it can only abort transfer that has not been started -// Return true if a queued transfer is aborted, false if there is no transfer to abort -bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { - (void) rhport; - (void) dev_addr; - (void) ep_addr; - - return false; -} - -// Submit a special transfer to send 8-byte Setup Packet, when complete hcd_event_xfer_complete() must be invoked -bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8]) { - (void) rhport; - (void) daddr; - (void) setup_packet; - - _hcd_data.ep[0][0].total_len = 8; - - peraddr_write(daddr); - fifo_write(SUDFIFO_ADDR, setup_packet, 8); - hxfr_write(HXFR_SETUP); - - return true; -} - -// clear stall, data toggle is also reset to DATA0 -bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { - (void) rhport; - (void) dev_addr; - (void) ep_addr; - - return false; -} - -// Interrupt Handler -void hcd_int_handler(uint8_t rhport) { - uint8_t hirq = reg_read(HIRQ_ADDR); - TU_LOG3_HEX(hirq); - - if (hirq & HIRQ_CONDET_IRQ) { - tusb_speed_t speed = handle_connect_irq(rhport); - - if (speed == TUSB_SPEED_INVALID) { - hcd_event_device_remove(rhport, true); - }else { - hcd_event_device_attach(rhport, true); - } - } - - if (hirq & HIRQ_FRAME_IRQ) { - _hcd_data.frame_count++; - } - - if (hirq & HIRQ_HXFRDN_IRQ) { - uint8_t const hrsl = reg_read(HRSL_ADDR); - uint8_t const result = hrsl & HRSL_RESULT_MASK; - uint8_t xfer_result; - - TU_LOG3("HRSL: %02X\r\n", hrsl); - switch(result) { - case HRSL_SUCCESS: - xfer_result = XFER_RESULT_SUCCESS; - break; - - case HRSL_STALL: - xfer_result = XFER_RESULT_STALLED; - break; - - default: - xfer_result = XFER_RESULT_FAILED; - break; - } - - uint8_t ep_dir = 0; - uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; - uint8_t const xfer_type = _hcd_data.hxfr & 0xf0; - - if ( xfer_type & HXFR_SETUP ) { - // SETUP transfer - ep_dir = 0; - }else if ( !(xfer_type & HXFR_OUT_NIN) ) { - // IN transfer - ep_dir = 1; - } - - uint8_t const ep_addr = tu_edpt_addr(ep_num, ep_dir); - uint16_t xferred_len = _hcd_data.ep[ep_num][ep_dir].total_len; - - hcd_event_xfer_complete(_hcd_data.peraddr, ep_addr, xferred_len, xfer_result, true); - } - - // clear all interrupt - if ( hirq ) { - reg_write(HIRQ_ADDR, hirq); - } -} - -#endif -- cgit v1.3.1 From 2c237b1ae4b3ffd38fc74df29da63b01348afd1d Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 23 Aug 2023 17:49:28 +0700 Subject: able to complete 1st get device descriptor and set address --- src/portable/analog/max3421/hcd_max3421.c | 180 +++++++++++++++++++++--------- 1 file changed, 126 insertions(+), 54 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index edcb6ca6f..467d7410a 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -156,7 +156,7 @@ enum { }; enum { - DEFAULT_HIEN = HIRQ_CONDET_IRQ | HIRQ_FRAME_IRQ | HIRQ_HXFRDN_IRQ + DEFAULT_HIEN = HIRQ_CONDET_IRQ | HIRQ_FRAME_IRQ | HIRQ_HXFRDN_IRQ | HIRQ_RCVDAV_IRQ }; //--------------------------------------------------------------------+ @@ -178,6 +178,8 @@ typedef struct { // cached register uint8_t sndbc; + uint8_t hirq; + uint8_t hien; uint8_t mode; uint8_t peraddr; uint8_t hxfr; @@ -203,60 +205,86 @@ bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_ //--------------------------------------------------------------------+ static void fifo_write(uint8_t reg, uint8_t const * buffer, uint16_t len) { + uint8_t const rhport = 0; + uint8_t hirq; reg |= CMDBYTE_WRITE; - tuh_max3421_spi_cs_api(0, true); + tuh_max3421_spi_cs_api(rhport, true); - tuh_max3421_spi_xfer_api(0, ®, 1, NULL, 0); - tuh_max3421_spi_xfer_api(0, buffer, len, NULL, 0); + tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 1); + _hcd_data.hirq = hirq; + tuh_max3421_spi_xfer_api(rhport, buffer, len, NULL, 0); + + tuh_max3421_spi_cs_api(rhport, false); - tuh_max3421_spi_cs_api(0, false); } -// return HIRQ register since we are in full-duplex mode -static uint8_t reg_write(uint8_t reg, uint8_t data) { +static void fifo_read(uint8_t * buffer, uint16_t len) { + uint8_t const rhport = 0; + uint8_t hirq; + uint8_t const reg = RCVVFIFO_ADDR; + + tuh_max3421_spi_cs_api(rhport, true); + + tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 0); + _hcd_data.hirq = hirq; + tuh_max3421_spi_xfer_api(rhport, NULL, 0, buffer, len); + + tuh_max3421_spi_cs_api(rhport, false); +} + +static void reg_write(uint8_t reg, uint8_t data) { + uint8_t const rhport = 0; uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; uint8_t rx_buf[2] = {0, 0}; - tuh_max3421_spi_cs_api(0, true); - tuh_max3421_spi_xfer_api(0, tx_buf, 2, rx_buf, 2); - tuh_max3421_spi_cs_api(0, false); + tuh_max3421_spi_cs_api(rhport, true); + tuh_max3421_spi_xfer_api(rhport, tx_buf, 2, rx_buf, 2); + tuh_max3421_spi_cs_api(rhport, false); - TU_LOG2("HIRQ: %02X\r\n", rx_buf[0]); - return rx_buf[0]; + // HIRQ register since we are in full-duplex mode + _hcd_data.hirq = rx_buf[0]; + TU_LOG3_HEX(_hcd_data.hirq); } static uint8_t reg_read(uint8_t reg) { + uint8_t const rhport = 0; uint8_t tx_buf[2] = {reg, 0}; uint8_t rx_buf[2] = {0, 0}; - tuh_max3421_spi_cs_api(0, true); - bool ret = tuh_max3421_spi_xfer_api(0, tx_buf, 2, rx_buf, 2); - tuh_max3421_spi_cs_api(0, false); + tuh_max3421_spi_cs_api(rhport, true); + bool ret = tuh_max3421_spi_xfer_api(rhport, tx_buf, 2, rx_buf, 2); + tuh_max3421_spi_cs_api(rhport, false); + _hcd_data.hirq = rx_buf[0]; return ret ? rx_buf[1] : 0; } -static inline uint8_t mode_write(uint8_t data) { +static inline void hien_write(uint8_t data) { + _hcd_data.hien = data; + reg_write(HIEN_ADDR, data); +} + +static inline void mode_write(uint8_t data) { _hcd_data.mode = data; - return reg_write(MODE_ADDR, data); + reg_write(MODE_ADDR, data); } -static inline uint8_t peraddr_write(uint8_t data) { - if ( _hcd_data.peraddr == data ) return 0; // no need to change address +static inline void peraddr_write(uint8_t data) { + if ( _hcd_data.peraddr == data ) return; // no need to change address _hcd_data.peraddr = data; - return reg_write(PERADDR_ADDR, data); + reg_write(PERADDR_ADDR, data); } -static inline uint8_t hxfr_write(uint8_t data) { +static inline void hxfr_write(uint8_t data) { _hcd_data.hxfr = data; - return reg_write(HXFR_ADDR, data); + reg_write(HXFR_ADDR, data); } -static inline uint8_t sndbc_write(uint8_t data) { +static inline void sndbc_write(uint8_t data) { _hcd_data.sndbc = data; - return reg_write(SNDBC_ADDR, data); + reg_write(SNDBC_ADDR, data); } @@ -335,16 +363,16 @@ bool hcd_init(uint8_t rhport) { // Mode: Host and DP/DM pull down mode_write(MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); - // bus reset, this will trigger CONDET IRQ if device is already connected - reg_write(HCTL_ADDR, HCTL_BUSRST); + // frame reset & bus reset, this will trigger CONDET IRQ if device is already connected + reg_write(HCTL_ADDR, HCTL_BUSRST | HCTL_FRMRST); // clear all previously pending IRQ reg_write(HIRQ_ADDR, 0xff); _hcd_data.inited = true; - // Enable Connection IRQ - reg_write(HIEN_ADDR, DEFAULT_HIEN); + // Enable IRQ + hien_write(DEFAULT_HIEN); // Enable Interrupt pin reg_write(CPUCTL_ADDR, CPUCTL_IE); @@ -383,8 +411,8 @@ bool hcd_port_connect_status(uint8_t rhport) { void hcd_port_reset(uint8_t rhport) { (void) rhport; // Bus reset will also trigger CONDET IRQ, disable it - uint8_t hien = DEFAULT_HIEN & ~HIRQ_CONDET_IRQ; - reg_write(HIEN_ADDR, hien); + uint8_t const hien = DEFAULT_HIEN & ~HIRQ_CONDET_IRQ; + hien_write(hien); reg_write(HCTL_ADDR, HCTL_BUSRST); } @@ -396,7 +424,7 @@ void hcd_port_reset_end(uint8_t rhport) { // Bus reset will also trigger CONDET IRQ, clear and re-enable it after reset reg_write(HIRQ_ADDR, HIRQ_CONDET_IRQ); - reg_write(HIEN_ADDR, DEFAULT_HIEN); + hien_write(DEFAULT_HIEN); } // Get port link speed @@ -426,6 +454,10 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const _hcd_data.ep[ep_num][ep_dir].packet_size = tu_edpt_packet_size(ep_desc); + if (ep_desc->bEndpointAddress == 0) { + _hcd_data.ep[ep_num][1].packet_size = tu_edpt_packet_size(ep_desc); + } + return true; } @@ -442,15 +474,18 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf ep->total_len = buflen; ep->xferred_len = 0; - uint8_t hirq = peraddr_write(daddr); + peraddr_write(daddr); uint8_t hctl = 0; uint8_t hxfr = ep_num; if ( ep_num == 0 ) { ep->data_toggle = 1; if ( buffer == NULL || buflen == 0 ) { - // ZLP for ACK stage + // ZLP for ACK stage, use HS hxfr |= HXFR_HS; + hxfr |= (ep_dir ? 0 : HXFR_OUT_NIN); + hxfr_write(hxfr); + return true; } } else if ( ep->xfer_type == TUSB_XFER_ISOCHRONOUS ) { hxfr |= HXFR_ISO; @@ -458,7 +493,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf if ( 0 == ep_dir ) { // Page 12: Programming BULK-OUT Transfers - TU_ASSERT(hirq & HIRQ_RCVDAV_IRQ); + TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ); uint8_t const xact_len = (uint8_t) tu_min16(buflen, ep->packet_size); fifo_write(SNDFIFO_ADDR, buffer, xact_len); @@ -516,7 +551,7 @@ static void handle_xfer_done(uint8_t rhport) { uint8_t const hrsl = reg_read(HRSL_ADDR); uint8_t const result = hrsl & HRSL_RESULT_MASK; - uint8_t xfer_result; + xfer_result_t xfer_result; TU_LOG3("HRSL: %02X\r\n", hrsl); switch(result) { @@ -537,18 +572,21 @@ static void handle_xfer_done(uint8_t rhport) { break; } - uint8_t ep_dir = 0; uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; uint8_t const xfer_type = _hcd_data.hxfr & 0xf0; - hcd_ep_t * ep; - if ( (xfer_type & HXFR_SETUP) || (xfer_type & HXFR_OUT_NIN) ) { // SETUP or OUT transfer - ep_dir = 0; - ep = &_hcd_data.ep[ep_num][ep_dir]; + hcd_ep_t *ep = &_hcd_data.ep[ep_num][0]; + uint8_t xact_len; + if (xfer_type & HXFR_SETUP) { + xact_len = 8; + } else if ( xfer_type & HXFR_HS ) { + xact_len = 0; + } else { + xact_len = _hcd_data.sndbc; + } - uint8_t const xact_len = (xfer_type & HXFR_SETUP) ? 8 : _hcd_data.sndbc; ep->xferred_len += xact_len; if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { @@ -558,10 +596,27 @@ static void handle_xfer_done(uint8_t rhport) { } } else { // IN transfer - ep_dir = 1; - ep = &_hcd_data.ep[ep_num][ep_dir]; - uint8_t const xact_len = reg_read(RCVBC_ADDR); - ep->xferred_len += xact_len; + hcd_ep_t *ep = &_hcd_data.ep[ep_num][1]; + uint8_t xact_len; + + if ( xfer_type & HXFR_HS ) { + xact_len = 0; + } else { + // RCVDAV_IRQ can trigger 2 times (dual buffered) + while ( _hcd_data.hirq & HIRQ_RCVDAV_IRQ ) { + uint8_t rcvbc = reg_read(RCVBC_ADDR); + xact_len = (uint8_t) tu_min16(rcvbc, ep->total_len - ep->xferred_len); + if ( xact_len ) { + fifo_read(ep->buf, xact_len); + ep->buf += xact_len; + ep->xferred_len += xact_len; + } + + // ack RCVDVAV IRQ + reg_write(HIRQ_ADDR, HIRQ_RCVDAV_IRQ); + _hcd_data.hirq = reg_read(HIRQ_ADDR); + } + } // short packet or all bytes transferred if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { @@ -572,13 +627,35 @@ static void handle_xfer_done(uint8_t rhport) { } } +#if CFG_TUSB_DEBUG >= 3 +void print_hirq(uint8_t hirq) { + TU_LOG3_HEX(hirq); + + if (hirq & HIRQ_HXFRDN_IRQ) TU_LOG3(" HXFRDN"); + if (hirq & HIRQ_FRAME_IRQ) TU_LOG3(" FRAME"); + if (hirq & HIRQ_CONDET_IRQ) TU_LOG3(" CONDET"); + if (hirq & HIRQ_SUSDN_IRQ) TU_LOG3(" SUSDN"); + if (hirq & HIRQ_SNDBAV_IRQ) TU_LOG3(" SNDBAV"); + if (hirq & HIRQ_RCVDAV_IRQ) TU_LOG3(" RCVDAV"); + if (hirq & HIRQ_RWU_IRQ) TU_LOG3(" RWU"); + if (hirq & HIRQ_BUSEVENT_IRQ) TU_LOG3(" BUSEVENT"); + + TU_LOG3("\r\n"); +} + +#else + #define print_hirq(hirq) +#endif + // Interrupt Handler void hcd_int_handler(uint8_t rhport) { // not initialized, do nothing if ( !_hcd_data.inited ) return; - uint8_t hirq = reg_read(HIRQ_ADDR); - TU_LOG3_HEX(hirq); + uint8_t hirq = reg_read(HIRQ_ADDR) & _hcd_data.hien; + if (!hirq) return; + + print_hirq(hirq); if (hirq & HIRQ_FRAME_IRQ) { _hcd_data.frame_count++; @@ -598,13 +675,8 @@ void hcd_int_handler(uint8_t rhport) { handle_xfer_done(rhport); } - if ( hirq & HIRQ_RCVDAV_IRQ ) { - TU_LOG3("RCVDAV\r\n"); - TU_LOG3_INT(reg_read(RCVBC_ADDR)); - } - - // clear all interrupt execept SNDBAV_IRQ - hirq &= ~HIRQ_SNDBAV_IRQ; + // clear all interrupt except SNDBAV_IRQ and RCVDAV_IRQ must be clear after pulling data from FIFO + hirq &= ~ (HIRQ_SNDBAV_IRQ | HIRQ_RCVDAV_IRQ); if ( hirq ) { reg_write(HIRQ_ADDR, hirq); } -- cgit v1.3.1 From 3ed5d6c3724cfa9699d403a76a00f1b04672e2b5 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 24 Aug 2023 16:27:12 +0700 Subject: complete enumeration --- hw/bsp/nrf/family.c | 5 ++- src/portable/analog/max3421/hcd_max3421.c | 68 +++++++++++++++++++------------ 2 files changed, 47 insertions(+), 26 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 45a5166a7..368763b84 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -105,6 +105,10 @@ void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { //--------------------------------------------------------------------+ // API: SPI transfer with MAX3421E, must be implemented by application //--------------------------------------------------------------------+ +void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { + (void) rhport; + nrfx_gpiote_trigger_enable(MAX3241E_INTR_PIN, enabled); +} void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { (void) rhport; @@ -241,7 +245,6 @@ void board_init(void) { in_config.pull = NRF_GPIO_PIN_PULLUP; nrfx_gpiote_in_init(MAX3241E_INTR_PIN, &in_config, max3421e_int_handler); - nrfx_gpiote_in_event_enable(MAX3241E_INTR_PIN, true); #endif } diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 467d7410a..514cf34b7 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -166,6 +166,7 @@ enum { typedef struct { uint8_t xfer_type; uint8_t data_toggle; + uint8_t xfer_complete; uint16_t packet_size; uint16_t total_len; @@ -244,7 +245,6 @@ static void reg_write(uint8_t reg, uint8_t data) { // HIRQ register since we are in full-duplex mode _hcd_data.hirq = rx_buf[0]; - TU_LOG3_HEX(_hcd_data.hirq); } static uint8_t reg_read(uint8_t reg) { @@ -473,6 +473,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf ep->buf = buffer; ep->total_len = buflen; ep->xferred_len = 0; + ep->xfer_complete = 0; peraddr_write(daddr); @@ -595,34 +596,19 @@ static void handle_xfer_done(uint8_t rhport) { // more to transfer } } else { - // IN transfer + // IN transfer: fifo data is already received in RCVDAV IRQ hcd_ep_t *ep = &_hcd_data.ep[ep_num][1]; - uint8_t xact_len; if ( xfer_type & HXFR_HS ) { - xact_len = 0; - } else { - // RCVDAV_IRQ can trigger 2 times (dual buffered) - while ( _hcd_data.hirq & HIRQ_RCVDAV_IRQ ) { - uint8_t rcvbc = reg_read(RCVBC_ADDR); - xact_len = (uint8_t) tu_min16(rcvbc, ep->total_len - ep->xferred_len); - if ( xact_len ) { - fifo_read(ep->buf, xact_len); - ep->buf += xact_len; - ep->xferred_len += xact_len; - } - - // ack RCVDVAV IRQ - reg_write(HIRQ_ADDR, HIRQ_RCVDAV_IRQ); - _hcd_data.hirq = reg_read(HIRQ_ADDR); - } + ep->xfer_complete = 1; } // short packet or all bytes transferred - if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { + if ( ep->xfer_complete ) { hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer + hxfr_write(_hcd_data.hxfr); } } } @@ -655,7 +641,7 @@ void hcd_int_handler(uint8_t rhport) { uint8_t hirq = reg_read(HIRQ_ADDR) & _hcd_data.hien; if (!hirq) return; - print_hirq(hirq); +// print_hirq(hirq); if (hirq & HIRQ_FRAME_IRQ) { _hcd_data.frame_count++; @@ -671,12 +657,44 @@ void hcd_int_handler(uint8_t rhport) { } } - if (hirq & HIRQ_HXFRDN_IRQ) { - handle_xfer_done(rhport); + // queue more transfer in handle_xfer_done() can cause hirq to be set again while external IRQ may not catch and/or + // not call this handler again. So we need to loop until all IRQ are cleared + while ( hirq & (HIRQ_RCVDAV_IRQ | HIRQ_HXFRDN_IRQ) ) { + if ( hirq & HIRQ_RCVDAV_IRQ ) { + uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; + hcd_ep_t *ep = &_hcd_data.ep[ep_num][1]; + uint8_t xact_len; + + // RCVDAV_IRQ can trigger 2 times (dual buffered) + while ( hirq & HIRQ_RCVDAV_IRQ ) { + uint8_t rcvbc = reg_read(RCVBC_ADDR); + xact_len = (uint8_t) tu_min16(rcvbc, ep->total_len - ep->xferred_len); + if ( xact_len ) { + fifo_read(ep->buf, xact_len); + ep->buf += xact_len; + ep->xferred_len += xact_len; + } + + // ack RCVDVAV IRQ + reg_write(HIRQ_ADDR, HIRQ_RCVDAV_IRQ); + hirq = reg_read(HIRQ_ADDR); + } + + if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { + ep->xfer_complete = 1; + } + } + + if ( hirq & HIRQ_HXFRDN_IRQ ) { + reg_write(HIRQ_ADDR, HIRQ_HXFRDN_IRQ); + handle_xfer_done(rhport); + } + + hirq = reg_read(HIRQ_ADDR); } - // clear all interrupt except SNDBAV_IRQ and RCVDAV_IRQ must be clear after pulling data from FIFO - hirq &= ~ (HIRQ_SNDBAV_IRQ | HIRQ_RCVDAV_IRQ); + // clear all interrupt except SNDBAV_IRQ (never clear by us). Note RCVDAV_IRQ, HXFRDN_IRQ already clear while processing + hirq &= ~HIRQ_SNDBAV_IRQ; if ( hirq ) { reg_write(HIRQ_ADDR, hirq); } -- cgit v1.3.1 From 344932d27e1f65932ce922b639370ecc4fff2153 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 24 Aug 2023 16:27:32 +0700 Subject: add tuh_max3421e_int_api(), retry control if received NAK --- src/portable/analog/max3421/hcd_max3421.c | 60 ++++++++++++++++++++----------- 1 file changed, 40 insertions(+), 20 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 514cf34b7..b4f75e392 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -28,6 +28,7 @@ #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 +#include #include "host/hcd.h" //--------------------------------------------------------------------+ @@ -164,11 +165,15 @@ enum { //--------------------------------------------------------------------+ typedef struct { - uint8_t xfer_type; - uint8_t data_toggle; - uint8_t xfer_complete; uint16_t packet_size; + struct TU_ATTR_PACKED { + uint8_t is_iso : 1; + uint8_t data_toggle : 1; + uint8_t xfer_queued : 1; + uint8_t xfer_complete : 1; + }; + uint16_t total_len; uint16_t xferred_len; uint8_t* buf; @@ -176,6 +181,7 @@ typedef struct { typedef struct { bool inited; + atomic_bool busy; // busy transferring // cached register uint8_t sndbc; @@ -198,8 +204,7 @@ static max2341_data_t _hcd_data; void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); - -//void tuh_max3421e_int_enable(uint8_t rhport, bool enabled); +void tuh_max3421e_int_api(uint8_t rhport, bool enabled); //--------------------------------------------------------------------+ // @@ -348,6 +353,9 @@ tusb_speed_t handle_connect_irq(uint8_t rhport) { bool hcd_init(uint8_t rhport) { (void) rhport; + TU_LOG2_INT(sizeof(hcd_ep_t)); + TU_LOG2_INT(sizeof(max2341_data_t)); + tu_memclr(&_hcd_data, sizeof(_hcd_data)); // full duplex, interrupt negative edge @@ -382,12 +390,12 @@ bool hcd_init(uint8_t rhport) { // Enable USB interrupt void hcd_int_enable (uint8_t rhport) { - (void) rhport; + tuh_max3421e_int_api(rhport, true); } // Disable USB interrupt void hcd_int_disable(uint8_t rhport) { - (void) rhport; + tuh_max3421e_int_api(rhport, false); } // Get frame number (1ms) @@ -447,17 +455,20 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { (void) rhport; (void) dev_addr; - (void) ep_desc; uint8_t ep_num = tu_edpt_number(ep_desc->bEndpointAddress); uint8_t ep_dir = tu_edpt_dir(ep_desc->bEndpointAddress); - _hcd_data.ep[ep_num][ep_dir].packet_size = tu_edpt_packet_size(ep_desc); + hcd_ep_t * ep = &_hcd_data.ep[ep_num][ep_dir]; + + ep->packet_size = tu_edpt_packet_size(ep_desc); if (ep_desc->bEndpointAddress == 0) { - _hcd_data.ep[ep_num][1].packet_size = tu_edpt_packet_size(ep_desc); + _hcd_data.ep[0][1].packet_size = ep->packet_size; } + ep->is_iso = (TUSB_XFER_ISOCHRONOUS == ep_desc->bmAttributes.xfer) ? 1 : 0; + return true; } @@ -474,11 +485,13 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf ep->total_len = buflen; ep->xferred_len = 0; ep->xfer_complete = 0; + ep->xfer_queued = 1; peraddr_write(daddr); uint8_t hctl = 0; uint8_t hxfr = ep_num; + if ( ep_num == 0 ) { ep->data_toggle = 1; if ( buffer == NULL || buflen == 0 ) { @@ -488,7 +501,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf hxfr_write(hxfr); return true; } - } else if ( ep->xfer_type == TUSB_XFER_ISOCHRONOUS ) { + } else if ( ep->is_iso ) { hxfr |= HXFR_ISO; } @@ -551,11 +564,13 @@ static void handle_xfer_done(uint8_t rhport) { (void) rhport; uint8_t const hrsl = reg_read(HRSL_ADDR); - uint8_t const result = hrsl & HRSL_RESULT_MASK; + uint8_t const hresult = hrsl & HRSL_RESULT_MASK; + uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; + xfer_result_t xfer_result; - TU_LOG3("HRSL: %02X\r\n", hrsl); - switch(result) { + //TU_LOG3("HRSL: %02X\r\n", hrsl); + switch(hresult) { case HRSL_SUCCESS: xfer_result = XFER_RESULT_SUCCESS; break; @@ -568,21 +583,26 @@ static void handle_xfer_done(uint8_t rhport) { // occurred when initialized without any pending transfer. Skip for now return; + case HRSL_NAK: + // NAK on control, retry immediately + if (ep_num == 0) hxfr_write(_hcd_data.hxfr); + return; + default: xfer_result = XFER_RESULT_FAILED; break; } - uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; - uint8_t const xfer_type = _hcd_data.hxfr & 0xf0; + uint8_t const hxfr_type = _hcd_data.hxfr & 0xf0; - if ( (xfer_type & HXFR_SETUP) || (xfer_type & HXFR_OUT_NIN) ) { + if ( (hxfr_type & HXFR_SETUP) || (hxfr_type & HXFR_OUT_NIN) ) { // SETUP or OUT transfer hcd_ep_t *ep = &_hcd_data.ep[ep_num][0]; uint8_t xact_len; - if (xfer_type & HXFR_SETUP) { + + if ( hxfr_type & HXFR_SETUP) { xact_len = 8; - } else if ( xfer_type & HXFR_HS ) { + } else if ( hxfr_type & HXFR_HS ) { xact_len = 0; } else { xact_len = _hcd_data.sndbc; @@ -599,7 +619,7 @@ static void handle_xfer_done(uint8_t rhport) { // IN transfer: fifo data is already received in RCVDAV IRQ hcd_ep_t *ep = &_hcd_data.ep[ep_num][1]; - if ( xfer_type & HXFR_HS ) { + if ( hxfr_type & HXFR_HS ) { ep->xfer_complete = 1; } -- cgit v1.3.1 From e6cf125e537125fc7303afc7d0703a3de6b8b334 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 24 Aug 2023 16:46:20 +0700 Subject: save data toggle, always retry NAK. work with msc device --- src/portable/analog/max3421/hcd_max3421.c | 24 +++++++++++++++++++----- 1 file changed, 19 insertions(+), 5 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index b4f75e392..9579409c5 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -492,7 +492,9 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf uint8_t hctl = 0; uint8_t hxfr = ep_num; - if ( ep_num == 0 ) { + if ( ep->is_iso ) { + hxfr |= HXFR_ISO; + } else if ( ep_num == 0 ) { ep->data_toggle = 1; if ( buffer == NULL || buflen == 0 ) { // ZLP for ACK stage, use HS @@ -501,8 +503,6 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf hxfr_write(hxfr); return true; } - } else if ( ep->is_iso ) { - hxfr |= HXFR_ISO; } if ( 0 == ep_dir ) { @@ -511,7 +511,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf uint8_t const xact_len = (uint8_t) tu_min16(buflen, ep->packet_size); fifo_write(SNDFIFO_ADDR, buffer, xact_len); - reg_write(SNDBC_ADDR, xact_len); + sndbc_write(xact_len); hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); hxfr |= HXFR_OUT_NIN; @@ -585,7 +585,10 @@ static void handle_xfer_done(uint8_t rhport) { case HRSL_NAK: // NAK on control, retry immediately - if (ep_num == 0) hxfr_write(_hcd_data.hxfr); + //if (ep_num == 0) + { + hxfr_write(_hcd_data.hxfr); + } return; default: @@ -609,8 +612,14 @@ static void handle_xfer_done(uint8_t rhport) { } ep->xferred_len += xact_len; + ep->buf += xact_len; if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { + if ( ep_num ) { + // save data toggle for non-control + ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; + } + hcd_event_xfer_complete(_hcd_data.peraddr, ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer @@ -625,6 +634,11 @@ static void handle_xfer_done(uint8_t rhport) { // short packet or all bytes transferred if ( ep->xfer_complete ) { + if ( ep_num ) { + // save data toggle for non-control + ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; + } + hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer -- cgit v1.3.1 From f5ebc1700f4bde1cc166bf5f3d8eb69d8832722a Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 25 Aug 2023 12:12:44 +0700 Subject: add spi lock with interrupt enable/disable --- src/portable/analog/max3421/hcd_max3421.c | 176 +++++++++++++++--------------- 1 file changed, 91 insertions(+), 85 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 9579409c5..0144deca6 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -180,7 +180,6 @@ typedef struct { } hcd_ep_t; typedef struct { - bool inited; atomic_bool busy; // busy transferring // cached register @@ -194,6 +193,8 @@ typedef struct { volatile uint16_t frame_count; hcd_ep_t ep[8][2]; + + OSAL_MUTEX_DEF(spi_mutex); } max2341_data_t; static max2341_data_t _hcd_data; @@ -210,86 +211,106 @@ void tuh_max3421e_int_api(uint8_t rhport, bool enabled); // //--------------------------------------------------------------------+ -static void fifo_write(uint8_t reg, uint8_t const * buffer, uint16_t len) { - uint8_t const rhport = 0; +static void max3421_spi_lock(uint8_t rhport, bool in_isr) { + // disable interrupt and mutex lock (for pre-emptive RTOS) if not in_isr + if (!in_isr) { + tuh_max3421e_int_api(rhport, false); + } + + // assert CS + tuh_max3421_spi_cs_api(rhport, true); +} + +static void max3421_spi_unlock(uint8_t rhport, bool in_isr) { + // de-assert CS + tuh_max3421_spi_cs_api(rhport, false); + + // mutex unlock and re-enable interrupt + if (!in_isr) { + tuh_max3421e_int_api(rhport, true); + } +} + +static void fifo_write(uint8_t rhport, uint8_t reg, uint8_t const * buffer, uint16_t len, bool in_isr) { uint8_t hirq; reg |= CMDBYTE_WRITE; - tuh_max3421_spi_cs_api(rhport, true); + max3421_spi_lock(rhport, in_isr); tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 1); _hcd_data.hirq = hirq; tuh_max3421_spi_xfer_api(rhport, buffer, len, NULL, 0); - tuh_max3421_spi_cs_api(rhport, false); + max3421_spi_unlock(rhport, in_isr); } -static void fifo_read(uint8_t * buffer, uint16_t len) { - uint8_t const rhport = 0; +static void fifo_read(uint8_t rhport, uint8_t * buffer, uint16_t len, bool in_isr) { uint8_t hirq; uint8_t const reg = RCVVFIFO_ADDR; - tuh_max3421_spi_cs_api(rhport, true); + max3421_spi_lock(rhport, in_isr); tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 0); _hcd_data.hirq = hirq; tuh_max3421_spi_xfer_api(rhport, NULL, 0, buffer, len); - tuh_max3421_spi_cs_api(rhport, false); + max3421_spi_unlock(rhport, in_isr); } -static void reg_write(uint8_t reg, uint8_t data) { - uint8_t const rhport = 0; +static void reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr) { uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; uint8_t rx_buf[2] = {0, 0}; - tuh_max3421_spi_cs_api(rhport, true); + max3421_spi_lock(rhport, in_isr); + tuh_max3421_spi_xfer_api(rhport, tx_buf, 2, rx_buf, 2); - tuh_max3421_spi_cs_api(rhport, false); + + max3421_spi_unlock(rhport, in_isr); // HIRQ register since we are in full-duplex mode _hcd_data.hirq = rx_buf[0]; } -static uint8_t reg_read(uint8_t reg) { - uint8_t const rhport = 0; +static uint8_t reg_read(uint8_t rhport, uint8_t reg, bool in_isr) { uint8_t tx_buf[2] = {reg, 0}; uint8_t rx_buf[2] = {0, 0}; - tuh_max3421_spi_cs_api(rhport, true); + max3421_spi_lock(rhport, in_isr); + bool ret = tuh_max3421_spi_xfer_api(rhport, tx_buf, 2, rx_buf, 2); - tuh_max3421_spi_cs_api(rhport, false); + + max3421_spi_unlock(rhport, in_isr); _hcd_data.hirq = rx_buf[0]; return ret ? rx_buf[1] : 0; } -static inline void hien_write(uint8_t data) { +static inline void hien_write(uint8_t rhport, uint8_t data, bool in_isr) { _hcd_data.hien = data; - reg_write(HIEN_ADDR, data); + reg_write(rhport, HIEN_ADDR, data, in_isr); } -static inline void mode_write(uint8_t data) { +static inline void mode_write(uint8_t rhport, uint8_t data, bool in_isr) { _hcd_data.mode = data; - reg_write(MODE_ADDR, data); + reg_write(rhport, MODE_ADDR, data, in_isr); } -static inline void peraddr_write(uint8_t data) { +static inline void peraddr_write(uint8_t rhport, uint8_t data, bool in_isr) { if ( _hcd_data.peraddr == data ) return; // no need to change address _hcd_data.peraddr = data; - reg_write(PERADDR_ADDR, data); + reg_write(rhport, PERADDR_ADDR, data, in_isr); } -static inline void hxfr_write(uint8_t data) { +static inline void hxfr_write(uint8_t rhport, uint8_t data, bool in_isr) { _hcd_data.hxfr = data; - reg_write(HXFR_ADDR, data); + reg_write(rhport, HXFR_ADDR, data, in_isr); } -static inline void sndbc_write(uint8_t data) { +static inline void sndbc_write(uint8_t rhport, uint8_t data, bool in_isr) { _hcd_data.sndbc = data; - reg_write(SNDBC_ADDR, data); + reg_write(rhport, SNDBC_ADDR, data, in_isr); } @@ -307,9 +328,7 @@ bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { } tusb_speed_t handle_connect_irq(uint8_t rhport) { - (void) rhport; - - uint8_t const hrsl = reg_read(HRSL_ADDR); + uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, true); uint8_t const jk = hrsl & (HRSL_JSTATUS | HRSL_KSTATUS); tusb_speed_t speed; @@ -328,7 +347,7 @@ tusb_speed_t handle_connect_irq(uint8_t rhport) { default: { // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) - uint8_t const mode = reg_read(MODE_ADDR); + uint8_t const mode = reg_read(rhport, MODE_ADDR, true); uint8_t const ls_bit = mode & MODE_LOWSPEED; if ( (ls_bit && (jk == HRSL_JSTATUS)) || (!ls_bit && (jk == HRSL_KSTATUS)) ) { @@ -344,7 +363,7 @@ tusb_speed_t handle_connect_irq(uint8_t rhport) { } } - mode_write(new_mode); + mode_write(rhport, new_mode, true); TU_LOG2_INT(speed); return speed; } @@ -358,32 +377,32 @@ bool hcd_init(uint8_t rhport) { tu_memclr(&_hcd_data, sizeof(_hcd_data)); + hcd_int_disable(rhport); + // full duplex, interrupt negative edge - reg_write(PINCTL_ADDR, PINCTL_FDUPSPI); + reg_write(rhport, PINCTL_ADDR, PINCTL_FDUPSPI, false); // reset - reg_write(USBCTL_ADDR, USBCTL_CHIPRES); - reg_write(USBCTL_ADDR, 0); - while( !(reg_read(USBIRQ_ADDR) & USBIRQ_OSCOK_IRQ) ) { + reg_write(rhport, USBCTL_ADDR, USBCTL_CHIPRES, false); + reg_write(rhport, USBCTL_ADDR, 0, false); + while( !(reg_read(rhport, USBIRQ_ADDR, false) & USBIRQ_OSCOK_IRQ) ) { // wait for oscillator to stabilize } // Mode: Host and DP/DM pull down - mode_write(MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST); + mode_write(rhport, MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST, false); // frame reset & bus reset, this will trigger CONDET IRQ if device is already connected - reg_write(HCTL_ADDR, HCTL_BUSRST | HCTL_FRMRST); + reg_write(rhport, HCTL_ADDR, HCTL_BUSRST | HCTL_FRMRST, false); // clear all previously pending IRQ - reg_write(HIRQ_ADDR, 0xff); - - _hcd_data.inited = true; + reg_write(rhport, HIRQ_ADDR, 0xff, false); // Enable IRQ - hien_write(DEFAULT_HIEN); + hien_write(rhport, DEFAULT_HIEN, false); // Enable Interrupt pin - reg_write(CPUCTL_ADDR, CPUCTL_IE); + reg_write(rhport, CPUCTL_ADDR, CPUCTL_IE, false); return true; } @@ -417,22 +436,20 @@ bool hcd_port_connect_status(uint8_t rhport) { // Reset USB bus on the port. Return immediately, bus reset sequence may not be complete. // Some port would require hcd_port_reset_end() to be invoked after 10ms to complete the reset sequence. void hcd_port_reset(uint8_t rhport) { - (void) rhport; // Bus reset will also trigger CONDET IRQ, disable it uint8_t const hien = DEFAULT_HIEN & ~HIRQ_CONDET_IRQ; - hien_write(hien); + hien_write(rhport, hien, false); - reg_write(HCTL_ADDR, HCTL_BUSRST); + reg_write(rhport, HCTL_ADDR, HCTL_BUSRST, false); } // Complete bus reset sequence, may be required by some controllers void hcd_port_reset_end(uint8_t rhport) { - (void) rhport; - reg_write(HCTL_ADDR, 0); + reg_write(rhport, HCTL_ADDR, 0, false); // Bus reset will also trigger CONDET IRQ, clear and re-enable it after reset - reg_write(HIRQ_ADDR, HIRQ_CONDET_IRQ); - hien_write(DEFAULT_HIEN); + reg_write(rhport, HIRQ_ADDR, HIRQ_CONDET_IRQ, false); + hien_write(rhport, DEFAULT_HIEN, false); } // Get port link speed @@ -487,7 +504,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf ep->xfer_complete = 0; ep->xfer_queued = 1; - peraddr_write(daddr); + peraddr_write(rhport, daddr, false); uint8_t hctl = 0; uint8_t hxfr = ep_num; @@ -500,7 +517,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf // ZLP for ACK stage, use HS hxfr |= HXFR_HS; hxfr |= (ep_dir ? 0 : HXFR_OUT_NIN); - hxfr_write(hxfr); + hxfr_write(rhport, hxfr, false); return true; } } @@ -510,8 +527,8 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ); uint8_t const xact_len = (uint8_t) tu_min16(buflen, ep->packet_size); - fifo_write(SNDFIFO_ADDR, buffer, xact_len); - sndbc_write(xact_len); + fifo_write(rhport, SNDFIFO_ADDR, buffer, xact_len, false); + sndbc_write(rhport, xact_len, false); hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); hxfr |= HXFR_OUT_NIN; @@ -520,8 +537,8 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); } - reg_write(HCTL_ADDR, hctl); - hxfr_write(hxfr); + reg_write(rhport, HCTL_ADDR, hctl, false); + hxfr_write(rhport, hxfr, false); return true; } @@ -544,9 +561,9 @@ bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8] ep->total_len = 8; ep->xferred_len = 0; - peraddr_write(daddr); - fifo_write(SUDFIFO_ADDR, setup_packet, 8); - hxfr_write(HXFR_SETUP); + peraddr_write(rhport, daddr, false); + fifo_write(rhport, SUDFIFO_ADDR, setup_packet, 8, false); + hxfr_write(rhport, HXFR_SETUP, false); return true; } @@ -561,9 +578,7 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { } static void handle_xfer_done(uint8_t rhport) { - (void) rhport; - - uint8_t const hrsl = reg_read(HRSL_ADDR); + uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, true); uint8_t const hresult = hrsl & HRSL_RESULT_MASK; uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; @@ -587,7 +602,7 @@ static void handle_xfer_done(uint8_t rhport) { // NAK on control, retry immediately //if (ep_num == 0) { - hxfr_write(_hcd_data.hxfr); + hxfr_write(rhport, _hcd_data.hxfr, true); } return; @@ -615,11 +630,8 @@ static void handle_xfer_done(uint8_t rhport) { ep->buf += xact_len; if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { - if ( ep_num ) { - // save data toggle for non-control - ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; - } - + // save data toggle + ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; hcd_event_xfer_complete(_hcd_data.peraddr, ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer @@ -634,15 +646,12 @@ static void handle_xfer_done(uint8_t rhport) { // short packet or all bytes transferred if ( ep->xfer_complete ) { - if ( ep_num ) { - // save data toggle for non-control - ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; - } - + // save data toggle + ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer - hxfr_write(_hcd_data.hxfr); + hxfr_write(rhport, _hcd_data.hxfr, true); } } } @@ -669,10 +678,7 @@ void print_hirq(uint8_t hirq) { // Interrupt Handler void hcd_int_handler(uint8_t rhport) { - // not initialized, do nothing - if ( !_hcd_data.inited ) return; - - uint8_t hirq = reg_read(HIRQ_ADDR) & _hcd_data.hien; + uint8_t hirq = reg_read(rhport, HIRQ_ADDR, true) & _hcd_data.hien; if (!hirq) return; // print_hirq(hirq); @@ -701,17 +707,17 @@ void hcd_int_handler(uint8_t rhport) { // RCVDAV_IRQ can trigger 2 times (dual buffered) while ( hirq & HIRQ_RCVDAV_IRQ ) { - uint8_t rcvbc = reg_read(RCVBC_ADDR); + uint8_t rcvbc = reg_read(rhport, RCVBC_ADDR, true); xact_len = (uint8_t) tu_min16(rcvbc, ep->total_len - ep->xferred_len); if ( xact_len ) { - fifo_read(ep->buf, xact_len); + fifo_read(rhport, ep->buf, xact_len, true); ep->buf += xact_len; ep->xferred_len += xact_len; } // ack RCVDVAV IRQ - reg_write(HIRQ_ADDR, HIRQ_RCVDAV_IRQ); - hirq = reg_read(HIRQ_ADDR); + reg_write(rhport, HIRQ_ADDR, HIRQ_RCVDAV_IRQ, true); + hirq = reg_read(rhport, HIRQ_ADDR, true); } if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { @@ -720,17 +726,17 @@ void hcd_int_handler(uint8_t rhport) { } if ( hirq & HIRQ_HXFRDN_IRQ ) { - reg_write(HIRQ_ADDR, HIRQ_HXFRDN_IRQ); + reg_write(rhport, HIRQ_ADDR, HIRQ_HXFRDN_IRQ, true); handle_xfer_done(rhport); } - hirq = reg_read(HIRQ_ADDR); + hirq = reg_read(rhport, HIRQ_ADDR, true); } // clear all interrupt except SNDBAV_IRQ (never clear by us). Note RCVDAV_IRQ, HXFRDN_IRQ already clear while processing hirq &= ~HIRQ_SNDBAV_IRQ; if ( hirq ) { - reg_write(HIRQ_ADDR, hirq); + reg_write(rhport, HIRQ_ADDR, hirq, true); } } -- cgit v1.3.1 From 09ceaa6cf37d29e605495716fc2497ed5228a37f Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 25 Aug 2023 13:18:47 +0700 Subject: add osal mutex for spi --- src/portable/analog/max3421/hcd_max3421.c | 13 +++++++++++-- 1 file changed, 11 insertions(+), 2 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 0144deca6..09845ffe4 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -194,7 +194,10 @@ typedef struct { hcd_ep_t ep[8][2]; - OSAL_MUTEX_DEF(spi_mutex); + OSAL_MUTEX_DEF(spi_mutexdef); +#if OSAL_MUTEX_REQUIRED + osal_mutex_t spi_mutex; +#endif } max2341_data_t; static max2341_data_t _hcd_data; @@ -215,6 +218,7 @@ static void max3421_spi_lock(uint8_t rhport, bool in_isr) { // disable interrupt and mutex lock (for pre-emptive RTOS) if not in_isr if (!in_isr) { tuh_max3421e_int_api(rhport, false); + (void) osal_mutex_lock(_hcd_data.spi_mutex, OSAL_TIMEOUT_WAIT_FOREVER); } // assert CS @@ -228,6 +232,7 @@ static void max3421_spi_unlock(uint8_t rhport, bool in_isr) { // mutex unlock and re-enable interrupt if (!in_isr) { tuh_max3421e_int_api(rhport, true); + (void) osal_mutex_unlock(_hcd_data.spi_mutex); } } @@ -372,12 +377,16 @@ tusb_speed_t handle_connect_irq(uint8_t rhport) { bool hcd_init(uint8_t rhport) { (void) rhport; + hcd_int_disable(rhport); + TU_LOG2_INT(sizeof(hcd_ep_t)); TU_LOG2_INT(sizeof(max2341_data_t)); tu_memclr(&_hcd_data, sizeof(_hcd_data)); - hcd_int_disable(rhport); +#if OSAL_MUTEX_REQUIRED + _hcd_data.spi_mutex = osal_mutex_create(&_hcd_data.spi_mutexdef); +#endif // full duplex, interrupt negative edge reg_write(rhport, PINCTL_ADDR, PINCTL_FDUPSPI, false); -- cgit v1.3.1 From ecf2f910424b53fecc3ca82ae410f054518cc752 Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 25 Aug 2023 16:36:28 +0700 Subject: use endpoint pool for more flexible multiple devices support --- src/portable/analog/max3421/hcd_max3421.c | 178 ++++++++++++++++++++---------- 1 file changed, 121 insertions(+), 57 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 09845ffe4..b0325f240 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -165,22 +165,26 @@ enum { //--------------------------------------------------------------------+ typedef struct { - uint16_t packet_size; - struct TU_ATTR_PACKED { + uint8_t ep_dir : 1; uint8_t is_iso : 1; uint8_t data_toggle : 1; - uint8_t xfer_queued : 1; + uint8_t xfer_pending : 1; uint8_t xfer_complete : 1; }; + struct TU_ATTR_PACKED { + uint8_t daddr : 4; + uint8_t ep_num : 4; + }; + uint16_t packet_size; uint16_t total_len; uint16_t xferred_len; uint8_t* buf; -} hcd_ep_t; +} max3421_ep_t; typedef struct { - atomic_bool busy; // busy transferring + atomic_flag busy; // busy transferring // cached register uint8_t sndbc; @@ -192,15 +196,16 @@ typedef struct { volatile uint16_t frame_count; - hcd_ep_t ep[8][2]; + max3421_ep_t ep0_addr0; // control endpoint for addr0 + max3421_ep_t ep[CFG_TUH_MAX3421_ENDPOINT_TOTAL]; OSAL_MUTEX_DEF(spi_mutexdef); #if OSAL_MUTEX_REQUIRED osal_mutex_t spi_mutex; #endif -} max2341_data_t; +} max3421_data_t; -static max2341_data_t _hcd_data; +static max3421_data_t _hcd_data; //--------------------------------------------------------------------+ // API: SPI transfer with MAX3421E, must be implemented by application @@ -211,7 +216,7 @@ bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_ void tuh_max3421e_int_api(uint8_t rhport, bool enabled); //--------------------------------------------------------------------+ -// +// SPI Helper //--------------------------------------------------------------------+ static void max3421_spi_lock(uint8_t rhport, bool in_isr) { @@ -318,6 +323,44 @@ static inline void sndbc_write(uint8_t rhport, uint8_t data, bool in_isr) { reg_write(rhport, SNDBC_ADDR, data, in_isr); } +//--------------------------------------------------------------------+ +// Endpoint helper +//--------------------------------------------------------------------+ + +static max3421_ep_t* find_ep_not_addr0(uint8_t daddr, uint8_t ep_num, uint8_t ep_dir) { + for(size_t i=0; idaddr && ep_num == ep->ep_num && (ep_dir == ep->ep_dir || ep_num == 0) ) { + return ep; + } + } + + return NULL; +} + +// daddr = 0 and ep_num = 0 means find a free (allocate) endpoint +TU_ATTR_ALWAYS_INLINE static inline max3421_ep_t * allocate_ep(void) { + return find_ep_not_addr0(0, 0, 0); +} + +// free all endpoints belong to device address +static void free_ep(uint8_t daddr) { + for (size_t i=0; idaddr == daddr) { + tu_memclr(ep, sizeof(max3421_ep_t)); + } + } +} + +TU_ATTR_ALWAYS_INLINE static inline max3421_ep_t * find_opened_ep(uint8_t daddr, uint8_t ep_num, uint8_t ep_dir) { + if (daddr == 0 && ep_num == 0) { + return &_hcd_data.ep0_addr0; + }else{ + return find_ep_not_addr0(daddr, ep_num, ep_dir); + } +} //--------------------------------------------------------------------+ // Controller API @@ -379,8 +422,8 @@ bool hcd_init(uint8_t rhport) { hcd_int_disable(rhport); - TU_LOG2_INT(sizeof(hcd_ep_t)); - TU_LOG2_INT(sizeof(max2341_data_t)); + TU_LOG2_INT(sizeof(max3421_ep_t)); + TU_LOG2_INT(sizeof(max3421_data_t)); tu_memclr(&_hcd_data, sizeof(_hcd_data)); @@ -478,22 +521,29 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr) { //--------------------------------------------------------------------+ // Open an endpoint -bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc) { +bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * ep_desc) { (void) rhport; - (void) dev_addr; + (void) daddr; uint8_t ep_num = tu_edpt_number(ep_desc->bEndpointAddress); uint8_t ep_dir = tu_edpt_dir(ep_desc->bEndpointAddress); - hcd_ep_t * ep = &_hcd_data.ep[ep_num][ep_dir]; - - ep->packet_size = tu_edpt_packet_size(ep_desc); + max3421_ep_t * ep; + if (daddr == 0 && ep_num == 0) { + ep = &_hcd_data.ep0_addr0; + }else { + ep = allocate_ep(); + TU_ASSERT(ep); + ep->daddr = daddr; + ep->ep_num = ep_num; + ep->ep_dir = ep_dir; + } - if (ep_desc->bEndpointAddress == 0) { - _hcd_data.ep[0][1].packet_size = ep->packet_size; + if ( TUSB_XFER_ISOCHRONOUS == ep_desc->bmAttributes.xfer ) { + ep->is_iso = 1; } - ep->is_iso = (TUSB_XFER_ISOCHRONOUS == ep_desc->bmAttributes.xfer) ? 1 : 0; + ep->packet_size = tu_edpt_packet_size(ep_desc); return true; } @@ -505,49 +555,54 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf uint8_t const ep_num = tu_edpt_number(ep_addr); uint8_t const ep_dir = tu_edpt_dir(ep_addr); - hcd_ep_t* ep = &_hcd_data.ep[ep_num][ep_dir]; + max3421_ep_t* ep = find_opened_ep(daddr, ep_num, ep_dir); + TU_ASSERT(ep); ep->buf = buffer; ep->total_len = buflen; ep->xferred_len = 0; ep->xfer_complete = 0; - ep->xfer_queued = 1; - - peraddr_write(rhport, daddr, false); - - uint8_t hctl = 0; - uint8_t hxfr = ep_num; - - if ( ep->is_iso ) { - hxfr |= HXFR_ISO; - } else if ( ep_num == 0 ) { - ep->data_toggle = 1; - if ( buffer == NULL || buflen == 0 ) { - // ZLP for ACK stage, use HS - hxfr |= HXFR_HS; - hxfr |= (ep_dir ? 0 : HXFR_OUT_NIN); - hxfr_write(rhport, hxfr, false); - return true; + ep->xfer_pending = 1; + + // carry out transfer if not busy +// if ( atomic_flag_test_and_set(&_hcd_data.busy) ) + { + peraddr_write(rhport, daddr, false); + + uint8_t hctl = 0; + uint8_t hxfr = ep_num; + + if ( ep->is_iso ) { + hxfr |= HXFR_ISO; + } else if ( ep_num == 0 ) { + ep->data_toggle = 1; + if ( buffer == NULL || buflen == 0 ) { + // ZLP for ACK stage, use HS + hxfr |= HXFR_HS; + hxfr |= (ep_dir ? 0 : HXFR_OUT_NIN); + hxfr_write(rhport, hxfr, false); + return true; + } } - } - if ( 0 == ep_dir ) { - // Page 12: Programming BULK-OUT Transfers - TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ); + if ( 0 == ep_dir ) { + // Page 12: Programming BULK-OUT Transfers + TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ); - uint8_t const xact_len = (uint8_t) tu_min16(buflen, ep->packet_size); - fifo_write(rhport, SNDFIFO_ADDR, buffer, xact_len, false); - sndbc_write(rhport, xact_len, false); + uint8_t const xact_len = (uint8_t) tu_min16(buflen, ep->packet_size); + fifo_write(rhport, SNDFIFO_ADDR, buffer, xact_len, false); + sndbc_write(rhport, xact_len, false); - hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); - hxfr |= HXFR_OUT_NIN; - } else { - // Page 13: Programming BULK-IN Transfers - hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); - } + hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); + hxfr |= HXFR_OUT_NIN; + } else { + // Page 13: Programming BULK-IN Transfers + hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); + } - reg_write(rhport, HCTL_ADDR, hctl, false); - hxfr_write(rhport, hxfr, false); + reg_write(rhport, HCTL_ADDR, hctl, false); + hxfr_write(rhport, hxfr, false); + } return true; } @@ -566,7 +621,7 @@ bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8]) { (void) rhport; - hcd_ep_t* ep = &_hcd_data.ep[0][0]; + max3421_ep_t* ep = find_opened_ep(daddr, 0, 0); ep->total_len = 8; ep->xferred_len = 0; @@ -624,7 +679,7 @@ static void handle_xfer_done(uint8_t rhport) { if ( (hxfr_type & HXFR_SETUP) || (hxfr_type & HXFR_OUT_NIN) ) { // SETUP or OUT transfer - hcd_ep_t *ep = &_hcd_data.ep[ep_num][0]; + max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, 0); uint8_t xact_len; if ( hxfr_type & HXFR_SETUP) { @@ -644,10 +699,15 @@ static void handle_xfer_done(uint8_t rhport) { hcd_event_xfer_complete(_hcd_data.peraddr, ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer + xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); + fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, true); + sndbc_write(rhport, xact_len, true); + + hxfr_write(rhport, _hcd_data.hxfr, true); } } else { // IN transfer: fifo data is already received in RCVDAV IRQ - hcd_ep_t *ep = &_hcd_data.ep[ep_num][1]; + max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, 1); if ( hxfr_type & HXFR_HS ) { ep->xfer_complete = 1; @@ -702,6 +762,10 @@ void hcd_int_handler(uint8_t rhport) { if (speed == TUSB_SPEED_INVALID) { hcd_event_device_remove(rhport, true); }else { + // FIXME multiple MAX3421 rootdevice address is not 1 + uint8_t const daddr = 1; + free_ep(daddr); + hcd_event_device_attach(rhport, true); } } @@ -710,8 +774,8 @@ void hcd_int_handler(uint8_t rhport) { // not call this handler again. So we need to loop until all IRQ are cleared while ( hirq & (HIRQ_RCVDAV_IRQ | HIRQ_HXFRDN_IRQ) ) { if ( hirq & HIRQ_RCVDAV_IRQ ) { - uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; - hcd_ep_t *ep = &_hcd_data.ep[ep_num][1]; + uint8_t const ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; + max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, 1); uint8_t xact_len; // RCVDAV_IRQ can trigger 2 times (dual buffered) -- cgit v1.3.1 From ac00b9147298184ca0bd1eadac3a02e7e867085d Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 25 Aug 2023 17:26:57 +0700 Subject: add xact_out(), xact_in() to manage transfer --- src/portable/analog/max3421/hcd_max3421.c | 143 +++++++++++++++++++----------- 1 file changed, 89 insertions(+), 54 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index b0325f240..00b36201c 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -331,7 +331,7 @@ static max3421_ep_t* find_ep_not_addr0(uint8_t daddr, uint8_t ep_num, uint8_t ep for(size_t i=0; idaddr && ep_num == ep->ep_num && (ep_dir == ep->ep_dir || ep_num == 0) ) { + if (daddr == ep->daddr && ep_num == ep->ep_num && (ep_dir == ep->ep_dir || ep_num == 0)) { return ep; } } @@ -362,6 +362,28 @@ TU_ATTR_ALWAYS_INLINE static inline max3421_ep_t * find_opened_ep(uint8_t daddr, } } +//static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { +// size_t idx = cur_ep - _hcd_data.ep; +// +// // starting from next endpoint +// for (size_t i = idx + 1; i < CFG_TUH_MAX3421_ENDPOINT_TOTAL; i++) { +// max3421_ep_t* ep = &_hcd_data.ep[i]; +// if (ep->xfer_pending) { +// return ep; +// } +// } +// +// // wrap around including current endpoint +// for (size_t i = 0; i <= idx; i++) { +// max3421_ep_t* ep = &_hcd_data.ep[i]; +// if (ep->xfer_pending) { +// return ep; +// } +// } +// +// return NULL; +//} + //--------------------------------------------------------------------+ // Controller API //--------------------------------------------------------------------+ @@ -548,6 +570,37 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e return true; } +void xact_out(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { + // Page 12: Programming BULK-OUT Transfers + // TODO double buffered + if (switch_ep) { + peraddr_write(rhport, ep->daddr, in_isr); + + uint8_t const hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); + reg_write(rhport, HCTL_ADDR, hctl, in_isr); + } + + uint8_t const xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); + fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, in_isr); + sndbc_write(rhport, xact_len, in_isr); + + uint8_t const hxfr = ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0); + hxfr_write(rhport, hxfr, in_isr); +} + +void xact_in(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { + // Page 13: Programming BULK-IN Transfers + if (switch_ep) { + peraddr_write(rhport, ep->daddr, in_isr); + + uint8_t const hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); + reg_write(rhport, HCTL_ADDR, hctl, in_isr); + } + + uint8_t const hxfr = ep->ep_num | (ep->is_iso ? HXFR_ISO : 0); + hxfr_write(rhport, hxfr, in_isr); +} + // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { (void) rhport; @@ -567,17 +620,14 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf // carry out transfer if not busy // if ( atomic_flag_test_and_set(&_hcd_data.busy) ) { - peraddr_write(rhport, daddr, false); - - uint8_t hctl = 0; uint8_t hxfr = ep_num; - if ( ep->is_iso ) { - hxfr |= HXFR_ISO; - } else if ( ep_num == 0 ) { + if ( ep_num == 0 ) { ep->data_toggle = 1; if ( buffer == NULL || buflen == 0 ) { // ZLP for ACK stage, use HS + peraddr_write(rhport, daddr, false); + hxfr |= HXFR_HS; hxfr |= (ep_dir ? 0 : HXFR_OUT_NIN); hxfr_write(rhport, hxfr, false); @@ -586,22 +636,11 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf } if ( 0 == ep_dir ) { - // Page 12: Programming BULK-OUT Transfers TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ); - - uint8_t const xact_len = (uint8_t) tu_min16(buflen, ep->packet_size); - fifo_write(rhport, SNDFIFO_ADDR, buffer, xact_len, false); - sndbc_write(rhport, xact_len, false); - - hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); - hxfr |= HXFR_OUT_NIN; + xact_out(rhport, ep, true, false); } else { - // Page 13: Programming BULK-IN Transfers - hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); + xact_in(rhport, ep, true, false); } - - reg_write(rhport, HCTL_ADDR, hctl, false); - hxfr_write(rhport, hxfr, false); } return true; @@ -644,7 +683,12 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { static void handle_xfer_done(uint8_t rhport) { uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, true); uint8_t const hresult = hrsl & HRSL_RESULT_MASK; - uint8_t ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; + + uint8_t const ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; + uint8_t const hxfr_type = _hcd_data.hxfr & 0xf0; + uint8_t const ep_dir = ((hxfr_type & HXFR_SETUP) || (hxfr_type & HXFR_OUT_NIN)) ? 0 : 1; + + max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, ep_dir); xfer_result_t xfer_result; @@ -663,10 +707,11 @@ static void handle_xfer_done(uint8_t rhport) { return; case HRSL_NAK: - // NAK on control, retry immediately - //if (ep_num == 0) - { + if (ep_num == 0) { + // NAK on control, retry immediately hxfr_write(rhport, _hcd_data.hxfr, true); + }else { + // NAK on non-control, find next pending to switch } return; @@ -675,16 +720,28 @@ static void handle_xfer_done(uint8_t rhport) { break; } - uint8_t const hxfr_type = _hcd_data.hxfr & 0xf0; + if (ep_dir) { + // IN transfer: fifo data is already received in RCVDAV IRQ + if ( hxfr_type & HXFR_HS ) { + ep->xfer_complete = 1; + } - if ( (hxfr_type & HXFR_SETUP) || (hxfr_type & HXFR_OUT_NIN) ) { + // short packet or all bytes transferred + if ( ep->xfer_complete ) { + // save data toggle + ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; + hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); + }else { + // more to transfer + hxfr_write(rhport, _hcd_data.hxfr, true); + } + } else { // SETUP or OUT transfer - max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, 0); uint8_t xact_len; - if ( hxfr_type & HXFR_SETUP) { + if (hxfr_type & HXFR_SETUP) { xact_len = 8; - } else if ( hxfr_type & HXFR_HS ) { + } else if (hxfr_type & HXFR_HS) { xact_len = 0; } else { xact_len = _hcd_data.sndbc; @@ -693,34 +750,12 @@ static void handle_xfer_done(uint8_t rhport) { ep->xferred_len += xact_len; ep->buf += xact_len; - if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { + if (xact_len < ep->packet_size || ep->xferred_len >= ep->total_len) { // save data toggle ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; hcd_event_xfer_complete(_hcd_data.peraddr, ep_num, ep->xferred_len, xfer_result, true); - }else { - // more to transfer - xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); - fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, true); - sndbc_write(rhport, xact_len, true); - - hxfr_write(rhport, _hcd_data.hxfr, true); - } - } else { - // IN transfer: fifo data is already received in RCVDAV IRQ - max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, 1); - - if ( hxfr_type & HXFR_HS ) { - ep->xfer_complete = 1; - } - - // short packet or all bytes transferred - if ( ep->xfer_complete ) { - // save data toggle - ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; - hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); - }else { - // more to transfer - hxfr_write(rhport, _hcd_data.hxfr, true); + } else { + xact_out(rhport, ep, false, true); } } } -- cgit v1.3.1 From cd7464a8847db5efa14f568bdf8746d898fc7eb4 Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 25 Aug 2023 17:37:09 +0700 Subject: try next endpoint when received NAK --- src/portable/analog/max3421/hcd_max3421.c | 58 ++++++++++++++++++++----------- 1 file changed, 37 insertions(+), 21 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 00b36201c..e546f99ce 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -362,27 +362,27 @@ TU_ATTR_ALWAYS_INLINE static inline max3421_ep_t * find_opened_ep(uint8_t daddr, } } -//static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { -// size_t idx = cur_ep - _hcd_data.ep; -// -// // starting from next endpoint -// for (size_t i = idx + 1; i < CFG_TUH_MAX3421_ENDPOINT_TOTAL; i++) { -// max3421_ep_t* ep = &_hcd_data.ep[i]; -// if (ep->xfer_pending) { -// return ep; -// } -// } -// -// // wrap around including current endpoint -// for (size_t i = 0; i <= idx; i++) { -// max3421_ep_t* ep = &_hcd_data.ep[i]; -// if (ep->xfer_pending) { -// return ep; -// } -// } -// -// return NULL; -//} +static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { + size_t idx = cur_ep - _hcd_data.ep; + + // starting from next endpoint + for (size_t i = idx + 1; i < CFG_TUH_MAX3421_ENDPOINT_TOTAL; i++) { + max3421_ep_t* ep = &_hcd_data.ep[i]; + if (ep->xfer_pending) { + return ep; + } + } + + // wrap around including current endpoint + for (size_t i = 0; i <= idx; i++) { + max3421_ep_t* ep = &_hcd_data.ep[i]; + if (ep->xfer_pending) { + return ep; + } + } + + return NULL; +} //--------------------------------------------------------------------+ // Controller API @@ -443,6 +443,7 @@ bool hcd_init(uint8_t rhport) { (void) rhport; hcd_int_disable(rhport); + tuh_max3421_spi_cs_api(rhport, false); TU_LOG2_INT(sizeof(max3421_ep_t)); TU_LOG2_INT(sizeof(max3421_data_t)); @@ -689,6 +690,7 @@ static void handle_xfer_done(uint8_t rhport) { uint8_t const ep_dir = ((hxfr_type & HXFR_SETUP) || (hxfr_type & HXFR_OUT_NIN)) ? 0 : 1; max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, ep_dir); + TU_ASSERT(ep, ); xfer_result_t xfer_result; @@ -712,6 +714,20 @@ static void handle_xfer_done(uint8_t rhport) { hxfr_write(rhport, _hcd_data.hxfr, true); }else { // NAK on non-control, find next pending to switch + max3421_ep_t *next_ep = find_next_pending_ep(ep); + TU_ASSERT(next_ep, ); + + if (ep == next_ep) { + // only one pending, retry immediately + hxfr_write(rhport, _hcd_data.hxfr, true); + }else { + // switch to next pending TODO could have issue with double buffered if not clear previously out data + if ( ep_dir ) { + xact_in(rhport, next_ep, true, true); + } else { + xact_out(rhport, next_ep, true, true); + } + } } return; -- cgit v1.3.1 From 502b1bdda62f0f207d9a51daf134574e455f3aa2 Mon Sep 17 00:00:00 2001 From: hathach Date: Sun, 27 Aug 2023 23:45:34 +0700 Subject: more update to transaction --- examples/host/cdc_msc_hid/src/tusb_config.h | 9 ++-- examples/host/msc_file_explorer/src/tusb_config.h | 10 +++-- src/common/tusb_mcu.h | 12 ++++++ src/host/hcd.h | 4 +- src/host/usbh.c | 1 + src/portable/analog/max3421/hcd_max3421.c | 51 +++++++++++++++-------- 6 files changed, 62 insertions(+), 25 deletions(-) (limited to 'src/portable') diff --git a/examples/host/cdc_msc_hid/src/tusb_config.h b/examples/host/cdc_msc_hid/src/tusb_config.h index abb75f068..7d621d466 100644 --- a/examples/host/cdc_msc_hid/src/tusb_config.h +++ b/examples/host/cdc_msc_hid/src/tusb_config.h @@ -35,9 +35,12 @@ //--------------------------------------------------------------------+ #if CFG_TUSB_MCU == OPT_MCU_RP2040 -// change to 1 if using pico-pio-usb as host controller for raspberry rp2040 -#define CFG_TUH_RPI_PIO_USB 0 -#define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB + // change to 1 if using pico-pio-usb as host controller for raspberry rp2040 + #define CFG_TUH_RPI_PIO_USB 0 + #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB +#elif CFG_TUSB_MCU == OPT_MCU_NRF5X + // Use external USB controller (via SPI) MAX3421E (aka usb host shield) + #define CFG_TUH_MAX3421 1 #endif // RHPort number used for host can be defined by board.mk, default to port 0 diff --git a/examples/host/msc_file_explorer/src/tusb_config.h b/examples/host/msc_file_explorer/src/tusb_config.h index 1e0d067bf..bb2fd4cf5 100644 --- a/examples/host/msc_file_explorer/src/tusb_config.h +++ b/examples/host/msc_file_explorer/src/tusb_config.h @@ -35,11 +35,15 @@ //--------------------------------------------------------------------+ #if CFG_TUSB_MCU == OPT_MCU_RP2040 -// change to 1 if using pico-pio-usb as host controller for raspberry rp2040 -#define CFG_TUH_RPI_PIO_USB 0 -#define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB + // change to 1 if using pico-pio-usb as host controller for raspberry rp2040 + #define CFG_TUH_RPI_PIO_USB 0 + #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_US +#elif CFG_TUSB_MCU == OPT_MCU_NRF5X + // Use external USB controller (via SPI) MAX3421E (aka usb host shield) + #define CFG_TUH_MAX3421 1 #endif + // RHPort number used for host can be defined by board.mk, default to port 0 #ifndef BOARD_TUH_RHPORT #define BOARD_TUH_RHPORT 0 diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index 35f94efbc..21939df7c 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -385,6 +385,18 @@ #define TUP_RHPORT_HIGHSPEED 1 #endif + +//--------------------------------------------------------------------+ +// External USB controller +//--------------------------------------------------------------------+ + +#if defined(CFG_TUH_MAX3421) & CFG_TUH_MAX3421 + #ifndef CFG_TUH_MAX3421_ENDPOINT_TOTAL + #define CFG_TUH_MAX3421_ENDPOINT_TOTAL (8 + 4*(CFG_TUH_DEVICE_MAX-1)) + #endif +#endif + + //--------------------------------------------------------------------+ // Default Values //--------------------------------------------------------------------+ diff --git a/src/host/hcd.h b/src/host/hcd.h index 1f01a1a2f..e25b20ea3 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -39,7 +39,7 @@ // Configuration //--------------------------------------------------------------------+ -// Max number of endpoints per device +// Max number of endpoints pair per device // TODO optimize memory usage #ifndef CFG_TUH_ENDPOINT_MAX #define CFG_TUH_ENDPOINT_MAX 16 @@ -167,7 +167,7 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr); //--------------------------------------------------------------------+ // Open an endpoint -bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const * ep_desc); +bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * ep_desc); // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen); diff --git a/src/host/usbh.c b/src/host/usbh.c index 7a09f5b6e..12a7f5839 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -919,6 +919,7 @@ TU_ATTR_FAST_FUNC void hcd_event_handler(hcd_event_t const* event, bool in_isr) switch (event->event_id) { // case HCD_EVENT_DEVICE_REMOVE: +// // FIXME device remove from a hub need an HCD API for hcd to free up endpoint // // mark device as removing to prevent further xfer before the event is processed in usbh task // break; diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index e546f99ce..574cca788 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -582,6 +582,7 @@ void xact_out(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { } uint8_t const xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); + TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ, ); fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, in_isr); sndbc_write(rhport, xact_len, in_isr); @@ -602,6 +603,28 @@ void xact_in(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { hxfr_write(rhport, hxfr, in_isr); } +TU_ATTR_ALWAYS_INLINE static inline void xact_inout(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { + if (ep->ep_dir) { + xact_in(rhport, ep, switch_ep, in_isr); + }else { + xact_out(rhport, ep, switch_ep, in_isr); + } +} + +void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t data_toggle) { + (void) rhport; + (void) result; + ep->xfer_pending = 0; + ep->data_toggle = data_toggle; + //uint8_t const ep_addr = tu_edpt_addr(ep->ep_num, ep->ep_dir); + //hcd_event_xfer_complete(rhport, ep_addr, ep->xferred_len, result, true); + +// max3421_ep_t *next_ep = find_next_pending_ep(ep); +// if (next_ep) { +// xact_inout(rhport, next_ep, true, true); +// } +} + // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { (void) rhport; @@ -612,6 +635,9 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf max3421_ep_t* ep = find_opened_ep(daddr, ep_num, ep_dir); TU_ASSERT(ep); + // control transfer can switch direction + ep->ep_dir = ep_dir; + ep->buf = buffer; ep->total_len = buflen; ep->xferred_len = 0; @@ -636,12 +662,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf } } - if ( 0 == ep_dir ) { - TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ); - xact_out(rhport, ep, true, false); - } else { - xact_in(rhport, ep, true, false); - } + xact_inout(rhport, ep, true, false); } return true; @@ -662,6 +683,7 @@ bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8] (void) rhport; max3421_ep_t* ep = find_opened_ep(daddr, 0, 0); + ep->ep_dir = 0; ep->total_len = 8; ep->xferred_len = 0; @@ -715,18 +737,13 @@ static void handle_xfer_done(uint8_t rhport) { }else { // NAK on non-control, find next pending to switch max3421_ep_t *next_ep = find_next_pending_ep(ep); - TU_ASSERT(next_ep, ); if (ep == next_ep) { // only one pending, retry immediately hxfr_write(rhport, _hcd_data.hxfr, true); - }else { + }else if (next_ep) { // switch to next pending TODO could have issue with double buffered if not clear previously out data - if ( ep_dir ) { - xact_in(rhport, next_ep, true, true); - } else { - xact_out(rhport, next_ep, true, true); - } + xact_inout(rhport, next_ep, true, true); } } return; @@ -744,8 +761,8 @@ static void handle_xfer_done(uint8_t rhport) { // short packet or all bytes transferred if ( ep->xfer_complete ) { - // save data toggle - ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; + uint8_t const dt = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; // save data toggle + xfer_complete_isr(rhport, ep, xfer_result, dt); hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer @@ -767,8 +784,8 @@ static void handle_xfer_done(uint8_t rhport) { ep->buf += xact_len; if (xact_len < ep->packet_size || ep->xferred_len >= ep->total_len) { - // save data toggle - ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; + uint8_t const dt = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; // save data toggle + xfer_complete_isr(rhport, ep, xfer_result, dt); hcd_event_xfer_complete(_hcd_data.peraddr, ep_num, ep->xferred_len, xfer_result, true); } else { xact_out(rhport, ep, false, true); -- cgit v1.3.1 From b31924e13edff0f29829056152348a9255e72169 Mon Sep 17 00:00:00 2001 From: hathach Date: Mon, 28 Aug 2023 12:41:44 +0700 Subject: - add xfer_complete_isr() - merge addr0 ep to pool - add control status to xact in/out - use atomic flag busy to ensure only 1 transfer is active at any time - execute pending transfer after one is complete (or clear busy flag) - change rtt mode to block if full --- hw/bsp/family_support.cmake | 1 + src/portable/analog/max3421/hcd_max3421.c | 118 +++++++++++++++--------------- 2 files changed, 62 insertions(+), 57 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/family_support.cmake b/hw/bsp/family_support.cmake index 7c89427c0..1cbcfb2a7 100644 --- a/hw/bsp/family_support.cmake +++ b/hw/bsp/family_support.cmake @@ -216,6 +216,7 @@ function(family_configure_common TARGET RTOS) if (NOT TARGET segger_rtt) add_library(segger_rtt STATIC ${TOP}/lib/SEGGER_RTT/RTT/SEGGER_RTT.c) target_include_directories(segger_rtt PUBLIC ${TOP}/lib/SEGGER_RTT/RTT) + target_compile_definitions(segger_rtt PUBLIC SEGGER_RTT_MODE_DEFAULT=SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) endif() target_link_libraries(${TARGET} PUBLIC segger_rtt) endif () diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 574cca788..262dbca0f 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -195,9 +195,7 @@ typedef struct { uint8_t hxfr; volatile uint16_t frame_count; - - max3421_ep_t ep0_addr0; // control endpoint for addr0 - max3421_ep_t ep[CFG_TUH_MAX3421_ENDPOINT_TOTAL]; + max3421_ep_t ep[CFG_TUH_MAX3421_ENDPOINT_TOTAL]; // [0] is reserved for addr0 OSAL_MUTEX_DEF(spi_mutexdef); #if OSAL_MUTEX_REQUIRED @@ -328,7 +326,7 @@ static inline void sndbc_write(uint8_t rhport, uint8_t data, bool in_isr) { //--------------------------------------------------------------------+ static max3421_ep_t* find_ep_not_addr0(uint8_t daddr, uint8_t ep_num, uint8_t ep_dir) { - for(size_t i=0; idaddr && ep_num == ep->ep_num && (ep_dir == ep->ep_dir || ep_num == 0)) { @@ -344,9 +342,17 @@ TU_ATTR_ALWAYS_INLINE static inline max3421_ep_t * allocate_ep(void) { return find_ep_not_addr0(0, 0, 0); } +TU_ATTR_ALWAYS_INLINE static inline max3421_ep_t * find_opened_ep(uint8_t daddr, uint8_t ep_num, uint8_t ep_dir) { + if (daddr == 0 && ep_num == 0) { + return &_hcd_data.ep[0]; + }else{ + return find_ep_not_addr0(daddr, ep_num, ep_dir); + } +} + // free all endpoints belong to device address static void free_ep(uint8_t daddr) { - for (size_t i=0; idaddr == daddr) { tu_memclr(ep, sizeof(max3421_ep_t)); @@ -354,16 +360,8 @@ static void free_ep(uint8_t daddr) { } } -TU_ATTR_ALWAYS_INLINE static inline max3421_ep_t * find_opened_ep(uint8_t daddr, uint8_t ep_num, uint8_t ep_dir) { - if (daddr == 0 && ep_num == 0) { - return &_hcd_data.ep0_addr0; - }else{ - return find_ep_not_addr0(daddr, ep_num, ep_dir); - } -} - static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { - size_t idx = cur_ep - _hcd_data.ep; + size_t const idx = cur_ep - _hcd_data.ep; // starting from next endpoint for (size_t i = idx + 1; i < CFG_TUH_MAX3421_ENDPOINT_TOTAL; i++) { @@ -553,7 +551,7 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e max3421_ep_t * ep; if (daddr == 0 && ep_num == 0) { - ep = &_hcd_data.ep0_addr0; + ep = &_hcd_data.ep[0]; }else { ep = allocate_ep(); TU_ASSERT(ep); @@ -581,12 +579,20 @@ void xact_out(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { reg_write(rhport, HCTL_ADDR, hctl, in_isr); } - uint8_t const xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); - TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ, ); - fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, in_isr); - sndbc_write(rhport, xact_len, in_isr); + uint8_t hxfr = ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0); + + if (ep->ep_num == 0 && (ep->buf == NULL || ep->total_len == 0)) { + // Control ZLP status use HS + hxfr |= HXFR_HS; + } else { + uint8_t const xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); + TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ,); + if (xact_len) { + fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, in_isr); + } + sndbc_write(rhport, xact_len, in_isr); + } - uint8_t const hxfr = ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0); hxfr_write(rhport, hxfr, in_isr); } @@ -599,7 +605,12 @@ void xact_in(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { reg_write(rhport, HCTL_ADDR, hctl, in_isr); } - uint8_t const hxfr = ep->ep_num | (ep->is_iso ? HXFR_ISO : 0); + uint8_t hxfr = ep->ep_num | (ep->is_iso ? HXFR_ISO : 0); + if (ep->ep_num == 0 && (ep->buf == NULL || ep->total_len == 0)) { + // Control ZLP status use HS + hxfr |= HXFR_HS; + } + hxfr_write(rhport, hxfr, in_isr); } @@ -611,24 +622,8 @@ TU_ATTR_ALWAYS_INLINE static inline void xact_inout(uint8_t rhport, max3421_ep_t } } -void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t data_toggle) { - (void) rhport; - (void) result; - ep->xfer_pending = 0; - ep->data_toggle = data_toggle; - //uint8_t const ep_addr = tu_edpt_addr(ep->ep_num, ep->ep_dir); - //hcd_event_xfer_complete(rhport, ep_addr, ep->xferred_len, result, true); - -// max3421_ep_t *next_ep = find_next_pending_ep(ep); -// if (next_ep) { -// xact_inout(rhport, next_ep, true, true); -// } -} - // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { - (void) rhport; - uint8_t const ep_num = tu_edpt_number(ep_addr); uint8_t const ep_dir = tu_edpt_dir(ep_addr); @@ -644,24 +639,12 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf ep->xfer_complete = 0; ep->xfer_pending = 1; - // carry out transfer if not busy -// if ( atomic_flag_test_and_set(&_hcd_data.busy) ) - { - uint8_t hxfr = ep_num; - - if ( ep_num == 0 ) { - ep->data_toggle = 1; - if ( buffer == NULL || buflen == 0 ) { - // ZLP for ACK stage, use HS - peraddr_write(rhport, daddr, false); - - hxfr |= HXFR_HS; - hxfr |= (ep_dir ? 0 : HXFR_OUT_NIN); - hxfr_write(rhport, hxfr, false); - return true; - } - } + if ( ep_num == 0 ) { + ep->data_toggle = 1; + } + // carry out transfer if not busy + if ( !atomic_flag_test_and_set(&_hcd_data.busy) ) { xact_inout(rhport, ep, true, false); } @@ -683,6 +666,8 @@ bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8] (void) rhport; max3421_ep_t* ep = find_opened_ep(daddr, 0, 0); + TU_ASSERT(ep); + ep->ep_dir = 0; ep->total_len = 8; ep->xferred_len = 0; @@ -703,6 +688,26 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { return false; } +//--------------------------------------------------------------------+ +// Interrupt Handler +//--------------------------------------------------------------------+ + +static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t data_toggle) { + uint8_t const ep_addr = tu_edpt_addr(ep->ep_num, ep->ep_dir); + ep->data_toggle = data_toggle; + ep->xfer_pending = 0; + hcd_event_xfer_complete(ep->daddr, ep_addr, ep->xferred_len, result, true); + + // Find next pending endpoint + max3421_ep_t *next_ep = find_next_pending_ep(ep); + if (next_ep) { + xact_inout(rhport, next_ep, true, true); + }else { + // no more pending + atomic_flag_clear(&_hcd_data.busy); + } +} + static void handle_xfer_done(uint8_t rhport) { uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, true); uint8_t const hresult = hrsl & HRSL_RESULT_MASK; @@ -739,7 +744,7 @@ static void handle_xfer_done(uint8_t rhport) { max3421_ep_t *next_ep = find_next_pending_ep(ep); if (ep == next_ep) { - // only one pending, retry immediately + // this endpoint is only one pending, retry immediately hxfr_write(rhport, _hcd_data.hxfr, true); }else if (next_ep) { // switch to next pending TODO could have issue with double buffered if not clear previously out data @@ -763,7 +768,6 @@ static void handle_xfer_done(uint8_t rhport) { if ( ep->xfer_complete ) { uint8_t const dt = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; // save data toggle xfer_complete_isr(rhport, ep, xfer_result, dt); - hcd_event_xfer_complete(_hcd_data.peraddr, TUSB_DIR_IN_MASK | ep_num, ep->xferred_len, xfer_result, true); }else { // more to transfer hxfr_write(rhport, _hcd_data.hxfr, true); @@ -786,8 +790,8 @@ static void handle_xfer_done(uint8_t rhport) { if (xact_len < ep->packet_size || ep->xferred_len >= ep->total_len) { uint8_t const dt = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; // save data toggle xfer_complete_isr(rhport, ep, xfer_result, dt); - hcd_event_xfer_complete(_hcd_data.peraddr, ep_num, ep->xferred_len, xfer_result, true); } else { + // more to transfer xact_out(rhport, ep, false, true); } } -- cgit v1.3.1 From 3740a3287ad5965df34639e90bfa890b36c0fd60 Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 29 Aug 2023 18:22:21 +0700 Subject: - correct tuh_max3421e_int_api() for nrf52 - hcd_int_disable/enable is software only to reduce interrupt lag --- hw/bsp/nrf/boards/pca10056/board.h | 9 ++++ hw/bsp/nrf/family.c | 20 ++++++- src/portable/analog/max3421/hcd_max3421.c | 86 +++++++++++++++++++++---------- 3 files changed, 87 insertions(+), 28 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/nrf/boards/pca10056/board.h b/hw/bsp/nrf/boards/pca10056/board.h index f4368f830..16d31addb 100644 --- a/hw/bsp/nrf/boards/pca10056/board.h +++ b/hw/bsp/nrf/boards/pca10056/board.h @@ -31,6 +31,8 @@ extern "C" { #endif +#define _PINNUM(port, pin) ((port)*32 + (pin)) + // LED #define LED_PIN 13 #define LED_STATE_ON 0 @@ -43,6 +45,13 @@ #define UART_RX_PIN 8 #define UART_TX_PIN 6 +// SPI for USB host shield +#define MAX3421E_SCK_PIN _PINNUM(1, 15) +#define MAX3421E_MOSI_PIN _PINNUM(1, 13) +#define MAX3421E_MISO_PIN _PINNUM(1, 14) +#define MAX3421E_CS_PIN _PINNUM(1, 12) +#define MAX3241E_INTR_PIN _PINNUM(1, 11) + #ifdef __cplusplus } #endif diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 368763b84..083efc235 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -107,7 +107,12 @@ void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { //--------------------------------------------------------------------+ void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { (void) rhport; - nrfx_gpiote_trigger_enable(MAX3241E_INTR_PIN, enabled); + + if (enabled) { + nrfx_gpiote_trigger_enable(MAX3241E_INTR_PIN, true); + }else { + nrfx_gpiote_trigger_disable(MAX3241E_INTR_PIN); + } } void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { @@ -217,6 +222,19 @@ void board_init(void) { #endif #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 + // MAX3421 need 3.3v signal + if ((NRF_UICR->REGOUT0 & UICR_REGOUT0_VOUT_Msk) != UICR_REGOUT0_VOUT_3V3) { + NRF_NVMC->CONFIG = NVMC_CONFIG_WEN_Wen << NVMC_CONFIG_WEN_Pos; + while (NRF_NVMC->READY == NVMC_READY_READY_Busy){} + + NRF_UICR->REGOUT0 = (NRF_UICR->REGOUT0 & ~UICR_REGOUT0_VOUT_Msk) | UICR_REGOUT0_VOUT_3V3; + + NRF_NVMC->CONFIG = NVMC_CONFIG_WEN_Ren << NVMC_CONFIG_WEN_Pos; + while (NRF_NVMC->READY == NVMC_READY_READY_Busy){} + + NVIC_SystemReset(); + } + // manually manage CS nrf_gpio_cfg_output(MAX3421E_CS_PIN); tuh_max3421_spi_cs_api(0, false); diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 262dbca0f..cb7911992 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -184,8 +184,6 @@ typedef struct { } max3421_ep_t; typedef struct { - atomic_flag busy; // busy transferring - // cached register uint8_t sndbc; uint8_t hirq; @@ -194,7 +192,10 @@ typedef struct { uint8_t peraddr; uint8_t hxfr; + atomic_flag busy; // busy transferring + volatile uint8_t intr_disable_count; volatile uint16_t frame_count; + max3421_ep_t ep[CFG_TUH_MAX3421_ENDPOINT_TOTAL]; // [0] is reserved for addr0 OSAL_MUTEX_DEF(spi_mutexdef); @@ -220,8 +221,8 @@ void tuh_max3421e_int_api(uint8_t rhport, bool enabled); static void max3421_spi_lock(uint8_t rhport, bool in_isr) { // disable interrupt and mutex lock (for pre-emptive RTOS) if not in_isr if (!in_isr) { - tuh_max3421e_int_api(rhport, false); (void) osal_mutex_lock(_hcd_data.spi_mutex, OSAL_TIMEOUT_WAIT_FOREVER); + tuh_max3421e_int_api(rhport, false); } // assert CS @@ -294,6 +295,12 @@ static uint8_t reg_read(uint8_t rhport, uint8_t reg, bool in_isr) { return ret ? rx_buf[1] : 0; } +static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr) { + reg_write(rhport, HIRQ_ADDR, data, in_isr); + // HIRQ write 1 is clear + _hcd_data.hirq &= ~data; +} + static inline void hien_write(uint8_t rhport, uint8_t data, bool in_isr) { _hcd_data.hien = data; reg_write(rhport, HIEN_ADDR, data, in_isr); @@ -440,13 +447,14 @@ tusb_speed_t handle_connect_irq(uint8_t rhport) { bool hcd_init(uint8_t rhport) { (void) rhport; - hcd_int_disable(rhport); + tuh_max3421e_int_api(rhport, false); tuh_max3421_spi_cs_api(rhport, false); TU_LOG2_INT(sizeof(max3421_ep_t)); TU_LOG2_INT(sizeof(max3421_data_t)); tu_memclr(&_hcd_data, sizeof(_hcd_data)); + _hcd_data.peraddr = 0xff; // invalid #if OSAL_MUTEX_REQUIRED _hcd_data.spi_mutex = osal_mutex_create(&_hcd_data.spi_mutexdef); @@ -469,11 +477,13 @@ bool hcd_init(uint8_t rhport) { reg_write(rhport, HCTL_ADDR, HCTL_BUSRST | HCTL_FRMRST, false); // clear all previously pending IRQ - reg_write(rhport, HIRQ_ADDR, 0xff, false); + hirq_write(rhport, 0xff, false); // Enable IRQ hien_write(rhport, DEFAULT_HIEN, false); + tuh_max3421e_int_api(rhport, true); + // Enable Interrupt pin reg_write(rhport, CPUCTL_ADDR, CPUCTL_IE, false); @@ -481,13 +491,21 @@ bool hcd_init(uint8_t rhport) { } // Enable USB interrupt +// Not actually enable GPIO interrupt, just set variable to prevent handler to process void hcd_int_enable (uint8_t rhport) { - tuh_max3421e_int_api(rhport, true); + (void) rhport; + // tuh_max3421e_int_api(rhport, true); + if (_hcd_data.intr_disable_count) { + _hcd_data.intr_disable_count--; + } } // Disable USB interrupt +// Not actually disable GPIO interrupt, just set variable to prevent handler to process void hcd_int_disable(uint8_t rhport) { - tuh_max3421e_int_api(rhport, false); + (void) rhport; + //tuh_max3421e_int_api(rhport, false); + _hcd_data.intr_disable_count++; } // Get frame number (1ms) @@ -521,7 +539,7 @@ void hcd_port_reset_end(uint8_t rhport) { reg_write(rhport, HCTL_ADDR, 0, false); // Bus reset will also trigger CONDET IRQ, clear and re-enable it after reset - reg_write(rhport, HIRQ_ADDR, HIRQ_CONDET_IRQ, false); + hirq_write(rhport, HIRQ_CONDET_IRQ, false); hien_write(rhport, DEFAULT_HIEN, false); } @@ -572,19 +590,23 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e void xact_out(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { // Page 12: Programming BULK-OUT Transfers // TODO double buffered - if (switch_ep) { - peraddr_write(rhport, ep->daddr, in_isr); - - uint8_t const hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); - reg_write(rhport, HCTL_ADDR, hctl, in_isr); - } uint8_t hxfr = ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0); - if (ep->ep_num == 0 && (ep->buf == NULL || ep->total_len == 0)) { // Control ZLP status use HS hxfr |= HXFR_HS; - } else { + } + + if (switch_ep) { + peraddr_write(rhport, ep->daddr, in_isr); + + if ( 0 == (hxfr & HXFR_HS) ) { + uint8_t const hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); + reg_write(rhport, HCTL_ADDR, hctl, in_isr); + } + } + + if ( 0 == (hxfr & HXFR_HS) ) { uint8_t const xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ,); if (xact_len) { @@ -598,12 +620,6 @@ void xact_out(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { void xact_in(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { // Page 13: Programming BULK-IN Transfers - if (switch_ep) { - peraddr_write(rhport, ep->daddr, in_isr); - - uint8_t const hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); - reg_write(rhport, HCTL_ADDR, hctl, in_isr); - } uint8_t hxfr = ep->ep_num | (ep->is_iso ? HXFR_ISO : 0); if (ep->ep_num == 0 && (ep->buf == NULL || ep->total_len == 0)) { @@ -611,6 +627,15 @@ void xact_in(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { hxfr |= HXFR_HS; } + if (switch_ep) { + peraddr_write(rhport, ep->daddr, in_isr); + + if ( 0 == (hxfr & HXFR_HS) ) { + uint8_t const hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); + reg_write(rhport, HCTL_ADDR, hctl, in_isr); + } + } + hxfr_write(rhport, hxfr, in_isr); } @@ -721,7 +746,7 @@ static void handle_xfer_done(uint8_t rhport) { xfer_result_t xfer_result; - //TU_LOG3("HRSL: %02X\r\n", hrsl); +// TU_LOG3("HRSL: %02X\r\n", hrsl); switch(hresult) { case HRSL_SUCCESS: xfer_result = XFER_RESULT_SUCCESS; @@ -821,13 +846,20 @@ void print_hirq(uint8_t hirq) { void hcd_int_handler(uint8_t rhport) { uint8_t hirq = reg_read(rhport, HIRQ_ADDR, true) & _hcd_data.hien; if (!hirq) return; - // print_hirq(hirq); if (hirq & HIRQ_FRAME_IRQ) { _hcd_data.frame_count++; } + // interrupt is disabled, only ack FRAME IRQ and skip the rest + if (_hcd_data.intr_disable_count) { + if (hirq & HIRQ_FRAME_IRQ) { + hirq_write(rhport, HIRQ_FRAME_IRQ, true); + } + return; + } + if (hirq & HIRQ_CONDET_IRQ) { tusb_speed_t speed = handle_connect_irq(rhport); @@ -861,7 +893,7 @@ void hcd_int_handler(uint8_t rhport) { } // ack RCVDVAV IRQ - reg_write(rhport, HIRQ_ADDR, HIRQ_RCVDAV_IRQ, true); + hirq_write(rhport, HIRQ_RCVDAV_IRQ, true); hirq = reg_read(rhport, HIRQ_ADDR, true); } @@ -871,7 +903,7 @@ void hcd_int_handler(uint8_t rhport) { } if ( hirq & HIRQ_HXFRDN_IRQ ) { - reg_write(rhport, HIRQ_ADDR, HIRQ_HXFRDN_IRQ, true); + hirq_write(rhport, HIRQ_HXFRDN_IRQ, true); handle_xfer_done(rhport); } @@ -881,7 +913,7 @@ void hcd_int_handler(uint8_t rhport) { // clear all interrupt except SNDBAV_IRQ (never clear by us). Note RCVDAV_IRQ, HXFRDN_IRQ already clear while processing hirq &= ~HIRQ_SNDBAV_IRQ; if ( hirq ) { - reg_write(rhport, HIRQ_ADDR, hirq, true); + hirq_write(rhport, hirq, true); } } -- cgit v1.3.1 From 2a814a99af32bf084cbb730d97e3c9cb31a3fa85 Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 29 Aug 2023 20:27:37 +0700 Subject: - hcd_setup_send() also check for busy flag - xact_inout() to support send setup --- src/portable/analog/max3421/hcd_max3421.c | 71 +++++++++++++++++-------------- 1 file changed, 39 insertions(+), 32 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index cb7911992..461e02593 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -168,6 +168,7 @@ typedef struct { struct TU_ATTR_PACKED { uint8_t ep_dir : 1; uint8_t is_iso : 1; + uint8_t is_setup : 1; uint8_t data_toggle : 1; uint8_t xfer_pending : 1; uint8_t xfer_complete : 1; @@ -590,56 +591,55 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e void xact_out(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { // Page 12: Programming BULK-OUT Transfers // TODO double buffered - - uint8_t hxfr = ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0); - if (ep->ep_num == 0 && (ep->buf == NULL || ep->total_len == 0)) { - // Control ZLP status use HS - hxfr |= HXFR_HS; - } - if (switch_ep) { peraddr_write(rhport, ep->daddr, in_isr); - if ( 0 == (hxfr & HXFR_HS) ) { - uint8_t const hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); - reg_write(rhport, HCTL_ADDR, hctl, in_isr); - } + uint8_t const hctl = (ep->data_toggle ? HCTL_SNDTOG1 : HCTL_SNDTOG0); + reg_write(rhport, HCTL_ADDR, hctl, in_isr); } - if ( 0 == (hxfr & HXFR_HS) ) { - uint8_t const xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); - TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ,); - if (xact_len) { - fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, in_isr); - } - sndbc_write(rhport, xact_len, in_isr); + uint8_t const xact_len = (uint8_t) tu_min16(ep->total_len - ep->xferred_len, ep->packet_size); + TU_ASSERT(_hcd_data.hirq & HIRQ_SNDBAV_IRQ,); + if (xact_len) { + fifo_write(rhport, SNDFIFO_ADDR, ep->buf, xact_len, in_isr); } + sndbc_write(rhport, xact_len, in_isr); + uint8_t hxfr = ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0); hxfr_write(rhport, hxfr, in_isr); } void xact_in(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { // Page 13: Programming BULK-IN Transfers - - uint8_t hxfr = ep->ep_num | (ep->is_iso ? HXFR_ISO : 0); - if (ep->ep_num == 0 && (ep->buf == NULL || ep->total_len == 0)) { - // Control ZLP status use HS - hxfr |= HXFR_HS; - } - if (switch_ep) { peraddr_write(rhport, ep->daddr, in_isr); - if ( 0 == (hxfr & HXFR_HS) ) { - uint8_t const hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); - reg_write(rhport, HCTL_ADDR, hctl, in_isr); - } + uint8_t const hctl = (ep->data_toggle ? HCTL_RCVTOG1 : HCTL_RCVTOG0); + reg_write(rhport, HCTL_ADDR, hctl, in_isr); } + uint8_t hxfr = ep->ep_num | (ep->is_iso ? HXFR_ISO : 0); hxfr_write(rhport, hxfr, in_isr); } TU_ATTR_ALWAYS_INLINE static inline void xact_inout(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { + if (ep->ep_num == 0 ) { + // setup + if (ep->is_setup) { + peraddr_write(rhport, ep->daddr, in_isr); + hxfr_write(rhport, HXFR_SETUP, in_isr); + return; + } + + // status + if (ep->buf == NULL || ep->total_len == 0) { + uint8_t const hxfr = HXFR_HS | (ep->ep_dir ? 0 : HXFR_OUT_NIN); + peraddr_write(rhport, ep->daddr, in_isr); + hxfr_write(rhport, hxfr, in_isr); + return; + } + } + if (ep->ep_dir) { xact_in(rhport, ep, switch_ep, in_isr); }else { @@ -665,12 +665,15 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf ep->xfer_pending = 1; if ( ep_num == 0 ) { + ep->is_setup = 0; ep->data_toggle = 1; } // carry out transfer if not busy if ( !atomic_flag_test_and_set(&_hcd_data.busy) ) { xact_inout(rhport, ep, true, false); + } else { + return true; } return true; @@ -694,12 +697,16 @@ bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8] TU_ASSERT(ep); ep->ep_dir = 0; - ep->total_len = 8; + ep->total_len = 8; ep->xferred_len = 0; + ep->is_setup = 1; - peraddr_write(rhport, daddr, false); fifo_write(rhport, SUDFIFO_ADDR, setup_packet, 8, false); - hxfr_write(rhport, HXFR_SETUP, false); + + // carry out transfer if not busy + if ( !atomic_flag_test_and_set(&_hcd_data.busy) ) { + xact_inout(rhport, ep, true, false); + } return true; } -- cgit v1.3.1 From 1ab488eb06ef4cb8ad9c0cff91e6b0caf76f73c4 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 30 Aug 2023 16:04:18 +0700 Subject: call xfer_complete_isr() when result is not successful (stalled or failed) --- hw/bsp/nrf/boards/pca10095/board.h | 9 +++++++ hw/bsp/nrf/family.c | 7 +++-- hw/bsp/nrf/nrfx_config.h | 2 +- src/common/tusb_mcu.h | 2 +- src/portable/analog/max3421/hcd_max3421.c | 43 ++++++++++++++++++++++--------- 5 files changed, 47 insertions(+), 16 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/nrf/boards/pca10095/board.h b/hw/bsp/nrf/boards/pca10095/board.h index fd3c63d6a..b9d3a19dc 100644 --- a/hw/bsp/nrf/boards/pca10095/board.h +++ b/hw/bsp/nrf/boards/pca10095/board.h @@ -31,6 +31,8 @@ extern "C" { #endif +#define _PINNUM(port, pin) ((port)*32 + (pin)) + // LED #define LED_PIN 28 #define LED_STATE_ON 0 @@ -43,6 +45,13 @@ #define UART_RX_PIN 32 #define UART_TX_PIN 33 +// SPI for USB host shield +#define MAX3421E_SCK_PIN _PINNUM(1, 15) +#define MAX3421E_MOSI_PIN _PINNUM(1, 13) +#define MAX3421E_MISO_PIN _PINNUM(1, 14) +#define MAX3421E_CS_PIN _PINNUM(1, 12) +#define MAX3241E_INTR_PIN _PINNUM(1, 11) + #ifdef __cplusplus } #endif diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 083efc235..2b4260083 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -34,6 +34,7 @@ #pragma GCC diagnostic ignored "-Wcast-align" #pragma GCC diagnostic ignored "-Wunused-parameter" #pragma GCC diagnostic ignored "-Wundef" +#pragma GCC diagnostic ignored "-Wredundant-decls" #endif #include "nrfx.h" @@ -94,7 +95,7 @@ TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { //------------- Host using MAX2341E -------------// #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 -static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(0); +static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(1); void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { if ( !(pin == MAX3241E_INTR_PIN && action == NRF_GPIOTE_POLARITY_HITOLO) ) return; @@ -222,7 +223,8 @@ void board_init(void) { #endif #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 - // MAX3421 need 3.3v signal + // MAX3421 need 3.3v signal (may not be needed) + #if defined(UICR_REGOUT0_VOUT_Msk) && 0 if ((NRF_UICR->REGOUT0 & UICR_REGOUT0_VOUT_Msk) != UICR_REGOUT0_VOUT_3V3) { NRF_NVMC->CONFIG = NVMC_CONFIG_WEN_Wen << NVMC_CONFIG_WEN_Pos; while (NRF_NVMC->READY == NVMC_READY_READY_Busy){} @@ -234,6 +236,7 @@ void board_init(void) { NVIC_SystemReset(); } + #endif // manually manage CS nrf_gpio_cfg_output(MAX3421E_CS_PIN); diff --git a/hw/bsp/nrf/nrfx_config.h b/hw/bsp/nrf/nrfx_config.h index e3d0ea91b..95ef33ce4 100644 --- a/hw/bsp/nrf/nrfx_config.h +++ b/hw/bsp/nrf/nrfx_config.h @@ -11,7 +11,7 @@ #define NRFX_UARTE0_ENABLED 1 #define NRFX_SPIM_ENABLED 1 -#define NRFX_SPIM0_ENABLED 1 +#define NRFX_SPIM1_ENABLED 1 // use SPI1 since nrf5340 share uart with spi #define NRFX_PRS_ENABLED 0 #define NRFX_USBREG_ENABLED 1 diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index 21939df7c..8807ff8aa 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -390,7 +390,7 @@ // External USB controller //--------------------------------------------------------------------+ -#if defined(CFG_TUH_MAX3421) & CFG_TUH_MAX3421 +#if defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 #ifndef CFG_TUH_MAX3421_ENDPOINT_TOTAL #define CFG_TUH_MAX3421_ENDPOINT_TOTAL (8 + 4*(CFG_TUH_DEVICE_MAX-1)) #endif diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 461e02593..705bb5bfd 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -374,7 +374,8 @@ static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { // starting from next endpoint for (size_t i = idx + 1; i < CFG_TUH_MAX3421_ENDPOINT_TOTAL; i++) { max3421_ep_t* ep = &_hcd_data.ep[i]; - if (ep->xfer_pending) { + if (ep->xfer_pending && ep->packet_size) { +// TU_LOG3("next pending i = %u\n", i); return ep; } } @@ -382,7 +383,8 @@ static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { // wrap around including current endpoint for (size_t i = 0; i <= idx; i++) { max3421_ep_t* ep = &_hcd_data.ep[i]; - if (ep->xfer_pending) { + if (ep->xfer_pending && ep->packet_size) { +// TU_LOG3("next pending i = %u\n", i); return ep; } } @@ -464,6 +466,10 @@ bool hcd_init(uint8_t rhport) { // full duplex, interrupt negative edge reg_write(rhport, PINCTL_ADDR, PINCTL_FDUPSPI, false); + // V1 is 0x01, V2 is 0x12, V3 is 0x13 + // uint8_t const revision = reg_read(rhport, REVISION_ADDR, false); + // TU_LOG2_HEX(revision); + // reset reg_write(rhport, USBCTL_ADDR, USBCTL_CHIPRES, false); reg_write(rhport, USBCTL_ADDR, 0, false); @@ -699,6 +705,7 @@ bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8] ep->ep_dir = 0; ep->total_len = 8; ep->xferred_len = 0; + ep->xfer_pending = 1; ep->is_setup = 1; fifo_write(rhport, SUDFIFO_ADDR, setup_packet, 8, false); @@ -724,9 +731,16 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { // Interrupt Handler //--------------------------------------------------------------------+ -static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t data_toggle) { +static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t hrsl) { uint8_t const ep_addr = tu_edpt_addr(ep->ep_num, ep->ep_dir); - ep->data_toggle = data_toggle; + + // save data toggle + if (ep->ep_dir) { + ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; + }else { + ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; + } + ep->xfer_pending = 0; hcd_event_xfer_complete(ep->daddr, ep_addr, ep->xferred_len, result, true); @@ -763,10 +777,6 @@ static void handle_xfer_done(uint8_t rhport) { xfer_result = XFER_RESULT_STALLED; break; - case HRSL_BAD_REQ: - // occurred when initialized without any pending transfer. Skip for now - return; - case HRSL_NAK: if (ep_num == 0) { // NAK on control, retry immediately @@ -781,15 +791,26 @@ static void handle_xfer_done(uint8_t rhport) { }else if (next_ep) { // switch to next pending TODO could have issue with double buffered if not clear previously out data xact_inout(rhport, next_ep, true, true); + }else { + TU_ASSERT(false,); } } return; + case HRSL_BAD_REQ: + // occurred when initialized without any pending transfer. Skip for now + return; + default: xfer_result = XFER_RESULT_FAILED; break; } + if (xfer_result != XFER_RESULT_SUCCESS) { + xfer_complete_isr(rhport, ep, xfer_result, hrsl); + return; + } + if (ep_dir) { // IN transfer: fifo data is already received in RCVDAV IRQ if ( hxfr_type & HXFR_HS ) { @@ -798,8 +819,7 @@ static void handle_xfer_done(uint8_t rhport) { // short packet or all bytes transferred if ( ep->xfer_complete ) { - uint8_t const dt = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; // save data toggle - xfer_complete_isr(rhport, ep, xfer_result, dt); + xfer_complete_isr(rhport, ep, xfer_result, hrsl); }else { // more to transfer hxfr_write(rhport, _hcd_data.hxfr, true); @@ -820,8 +840,7 @@ static void handle_xfer_done(uint8_t rhport) { ep->buf += xact_len; if (xact_len < ep->packet_size || ep->xferred_len >= ep->total_len) { - uint8_t const dt = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; // save data toggle - xfer_complete_isr(rhport, ep, xfer_result, dt); + xfer_complete_isr(rhport, ep, xfer_result, hrsl); } else { // more to transfer xact_out(rhport, ep, false, true); -- cgit v1.3.1 From 41493426b38c8ce44b1f7720b907538bc5402f98 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 30 Aug 2023 16:21:43 +0700 Subject: use ep buf to keep setup packet, work well with hid device --- examples/host/msc_file_explorer/src/tusb_config.h | 2 +- src/portable/analog/max3421/hcd_max3421.c | 7 ++++--- 2 files changed, 5 insertions(+), 4 deletions(-) (limited to 'src/portable') diff --git a/examples/host/msc_file_explorer/src/tusb_config.h b/examples/host/msc_file_explorer/src/tusb_config.h index 28e130c0e..e6186ba46 100644 --- a/examples/host/msc_file_explorer/src/tusb_config.h +++ b/examples/host/msc_file_explorer/src/tusb_config.h @@ -37,7 +37,7 @@ #if CFG_TUSB_MCU == OPT_MCU_RP2040 // change to 1 if using pico-pio-usb as host controller for raspberry rp2040 #define CFG_TUH_RPI_PIO_USB 0 - #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_US + #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB //#elif CFG_TUSB_MCU == OPT_MCU_NRF5X // // Use external USB controller (via SPI) MAX3421E (aka usb host shield) // #define CFG_TUH_MAX3421 1 diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 705bb5bfd..d644390da 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -633,6 +633,7 @@ TU_ATTR_ALWAYS_INLINE static inline void xact_inout(uint8_t rhport, max3421_ep_t // setup if (ep->is_setup) { peraddr_write(rhport, ep->daddr, in_isr); + fifo_write(rhport, SUDFIFO_ADDR, ep->buf, 8, in_isr); hxfr_write(rhport, HXFR_SETUP, in_isr); return; } @@ -703,12 +704,12 @@ bool hcd_setup_send(uint8_t rhport, uint8_t daddr, uint8_t const setup_packet[8] TU_ASSERT(ep); ep->ep_dir = 0; + ep->is_setup = 1; + ep->buf = (uint8_t*)(uintptr_t) setup_packet; ep->total_len = 8; ep->xferred_len = 0; + ep->xfer_complete = 0; ep->xfer_pending = 1; - ep->is_setup = 1; - - fifo_write(rhport, SUDFIFO_ADDR, setup_packet, 8, false); // carry out transfer if not busy if ( !atomic_flag_test_and_set(&_hcd_data.busy) ) { -- cgit v1.3.1 From 3b7d5aa0421f3d3a7ac199de0138dc40141fbddd Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 31 Aug 2023 16:52:09 +0700 Subject: improve connection & disconnection detection. But there is still issue when CONDETIRQ occurs but we are disabled interrupt (for osal queue access). --- hw/bsp/board.c | 26 ++++------ hw/bsp/nrf/family.c | 49 ++++++++---------- src/host/usbh.c | 2 +- src/portable/analog/max3421/hcd_max3421.c | 85 ++++++++++++++----------------- 4 files changed, 72 insertions(+), 90 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/board.c b/hw/bsp/board.c index 417630a03..562792625 100644 --- a/hw/bsp/board.c +++ b/hw/bsp/board.c @@ -44,17 +44,16 @@ // If using SES IDE, use the Syscalls/SEGGER_RTT_Syscalls_SES.c instead #if !(defined __SES_ARM) && !(defined __SES_RISCV) && !(defined __CROSSWORKS_ARM) + #include "SEGGER_RTT.h" -TU_ATTR_USED int sys_write (int fhdl, const void *buf, size_t count) -{ +TU_ATTR_USED int sys_write(int fhdl, const void *buf, size_t count) { (void) fhdl; - SEGGER_RTT_Write(0, (const char*) buf, (int) count); + SEGGER_RTT_Write(0, (const char *) buf, (int) count); return count; } -TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) -{ +TU_ATTR_USED int sys_read(int fhdl, char *buf, size_t count) { (void) fhdl; int rd = (int) SEGGER_RTT_Read(0, buf, count); return (rd > 0) ? rd : -1; @@ -67,8 +66,7 @@ TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) #include "board_mcu.h" -TU_ATTR_USED int sys_write (int fhdl, const void *buf, size_t count) -{ +TU_ATTR_USED int sys_write (int fhdl, const void *buf, size_t count) { (void) fhdl; uint8_t const* buf8 = (uint8_t const*) buf; @@ -79,8 +77,7 @@ TU_ATTR_USED int sys_write (int fhdl, const void *buf, size_t count) return (int) count; } -TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) -{ +TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) { (void) fhdl; (void) buf; (void) count; @@ -90,14 +87,12 @@ TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) #else // Default logging with on-board UART -TU_ATTR_USED int sys_write (int fhdl, const void *buf, size_t count) -{ +TU_ATTR_USED int sys_write (int fhdl, const void *buf, size_t count) { (void) fhdl; return board_uart_write(buf, (int) count); } -TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) -{ +TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) { (void) fhdl; int rd = board_uart_read((uint8_t*) buf, (int) count); return (rd > 0) ? rd : -1; @@ -105,8 +100,7 @@ TU_ATTR_USED int sys_read (int fhdl, char *buf, size_t count) #endif -int board_getchar(void) -{ +int board_getchar(void) { char c; - return ( sys_read(0, &c, 1) > 0 ) ? (int) c : (-1); + return (sys_read(0, &c, 1) > 0) ? (int) c : (-1); } diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 2b4260083..7358458ce 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -98,7 +98,7 @@ TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(1); void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { - if ( !(pin == MAX3241E_INTR_PIN && action == NRF_GPIOTE_POLARITY_HITOLO) ) return; + if (!(pin == MAX3241E_INTR_PIN && action == NRF_GPIOTE_POLARITY_HITOLO)) return; tuh_int_handler(1); } @@ -111,7 +111,7 @@ void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { if (enabled) { nrfx_gpiote_trigger_enable(MAX3241E_INTR_PIN, true); - }else { + } else { nrfx_gpiote_trigger_disable(MAX3241E_INTR_PIN); } } @@ -121,7 +121,7 @@ void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { nrf_gpio_pin_write(MAX3421E_CS_PIN, active ? 0 : 1); } -bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len) { +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { (void) rhport; nrfx_spim_xfer_desc_t xfer = { @@ -157,21 +157,21 @@ void board_init(void) { nrf_gpio_cfg_input(BUTTON_PIN, NRF_GPIO_PIN_PULLUP); // 1ms tick timer - SysTick_Config(SystemCoreClock/1000); + SysTick_Config(SystemCoreClock / 1000); // UART nrfx_uarte_config_t uart_cfg = { - .pseltxd = UART_TX_PIN, - .pselrxd = UART_RX_PIN, - .pselcts = NRF_UARTE_PSEL_DISCONNECTED, - .pselrts = NRF_UARTE_PSEL_DISCONNECTED, - .p_context = NULL, - .baudrate = NRF_UARTE_BAUDRATE_115200, // CFG_BOARD_UART_BAUDRATE - .interrupt_priority = 7, - .hal_cfg = { - .hwfc = NRF_UARTE_HWFC_DISABLED, - .parity = NRF_UARTE_PARITY_EXCLUDED, - } + .pseltxd = UART_TX_PIN, + .pselrxd = UART_RX_PIN, + .pselcts = NRF_UARTE_PSEL_DISCONNECTED, + .pselrts = NRF_UARTE_PSEL_DISCONNECTED, + .p_context = NULL, + .baudrate = NRF_UARTE_BAUDRATE_115200, // CFG_BOARD_UART_BAUDRATE + .interrupt_priority = 7, + .hal_cfg = { + .hwfc = NRF_UARTE_HWFC_DISABLED, + .parity = NRF_UARTE_PARITY_EXCLUDED, + } }; nrfx_uarte_init(&_uart_id, &uart_cfg, NULL); //uart_handler); @@ -211,11 +211,11 @@ void board_init(void) { // USB power may already be ready at this time -> no event generated // We need to invoke the handler based on the status initially - #ifdef NRF5340_XXAA +#ifdef NRF5340_XXAA usb_reg = NRF_USBREGULATOR->USBREGSTATUS; - #else +#else usb_reg = NRF_POWER->USBREGSTATUS; - #endif +#endif } if ( usb_reg & VBUSDETECT_Msk ) tusb_hal_nrf_power_event(USB_EVT_DETECTED); @@ -308,8 +308,7 @@ uint32_t board_millis(void) { #ifdef SOFTDEVICE_PRESENT // process SOC event from SD -uint32_t proc_soc(void) -{ +uint32_t proc_soc(void) { uint32_t soc_evt; uint32_t err = sd_evt_get(&soc_evt); @@ -326,18 +325,14 @@ uint32_t proc_soc(void) return err; } -uint32_t proc_ble(void) -{ +uint32_t proc_ble(void) { // do nothing with ble return NRF_ERROR_NOT_FOUND; } -void SD_EVT_IRQHandler(void) -{ +void SD_EVT_IRQHandler(void) { // process BLE and SOC until there is no more events - while( (NRF_ERROR_NOT_FOUND != proc_ble()) || (NRF_ERROR_NOT_FOUND != proc_soc()) ) - { - + while( (NRF_ERROR_NOT_FOUND != proc_ble()) || (NRF_ERROR_NOT_FOUND != proc_soc()) ) { } } diff --git a/src/host/usbh.c b/src/host/usbh.c index 12a7f5839..bacb3a719 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -852,7 +852,7 @@ bool usbh_edpt_xfer_with_callback(uint8_t dev_addr, uint8_t ep_addr, uint8_t * b ep_state->busy = 0; ep_state->claimed = 0; TU_LOG1("Failed\r\n"); - TU_BREAKPOINT(); +// TU_BREAKPOINT(); return false; } } diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index d644390da..56d3aea45 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -405,45 +405,46 @@ bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { return false; } -tusb_speed_t handle_connect_irq(uint8_t rhport) { +static void handle_connect_irq(uint8_t rhport) { uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, true); uint8_t const jk = hrsl & (HRSL_JSTATUS | HRSL_KSTATUS); - tusb_speed_t speed; uint8_t new_mode = MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST; + TU_LOG2_HEX(jk); switch(jk) { - case 0x00: - // SEO is disconnected - speed = TUSB_SPEED_INVALID; - break; - - case (HRSL_JSTATUS | HRSL_KSTATUS): - // SE1 is illegal - speed = TUSB_SPEED_INVALID; + case 0x00: // SEO is disconnected + case (HRSL_JSTATUS | HRSL_KSTATUS): // SE1 is illegal + mode_write(rhport, new_mode, true); + hcd_event_device_remove(rhport, true); break; default: { - // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) - uint8_t const mode = reg_read(rhport, MODE_ADDR, true); - uint8_t const ls_bit = mode & MODE_LOWSPEED; + // Bus Reset also cause CONDET IRQ, skip if we are already connected and doing bus reset + if ((_hcd_data.hirq & HIRQ_BUSEVENT_IRQ) && (_hcd_data.mode & MODE_SOFKAENAB)) { + break; + } - if ( (ls_bit && (jk == HRSL_JSTATUS)) || (!ls_bit && (jk == HRSL_KSTATUS)) ) { - speed = TUSB_SPEED_LOW; + // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) + // However, since we are always in full speed mode, we can just check J-state + if (jk == HRSL_KSTATUS) { new_mode |= MODE_LOWSPEED; - } else { - speed = TUSB_SPEED_FULL; + TU_LOG3("Low speed\n"); + }else { + TU_LOG3("Full speed\n"); } + new_mode |= MODE_SOFKAENAB; + mode_write(rhport, new_mode, true); - new_mode |= MODE_SOFKAENAB; // enable SOF since there is new device + // FIXME multiple MAX3421 rootdevice address is not 1 + uint8_t const daddr = 1; + free_ep(daddr); + + hcd_event_device_attach(rhport, true); break; } } - - mode_write(rhport, new_mode, true); - TU_LOG2_INT(speed); - return speed; } // Initialize controller to host mode @@ -500,8 +501,9 @@ bool hcd_init(uint8_t rhport) { // Enable USB interrupt // Not actually enable GPIO interrupt, just set variable to prevent handler to process void hcd_int_enable (uint8_t rhport) { +// tuh_max3421e_int_api(rhport, true); + (void) rhport; - // tuh_max3421e_int_api(rhport, true); if (_hcd_data.intr_disable_count) { _hcd_data.intr_disable_count--; } @@ -510,8 +512,8 @@ void hcd_int_enable (uint8_t rhport) { // Disable USB interrupt // Not actually disable GPIO interrupt, just set variable to prevent handler to process void hcd_int_disable(uint8_t rhport) { - (void) rhport; //tuh_max3421e_int_api(rhport, false); + (void) rhport; _hcd_data.intr_disable_count++; } @@ -534,20 +536,12 @@ bool hcd_port_connect_status(uint8_t rhport) { // Reset USB bus on the port. Return immediately, bus reset sequence may not be complete. // Some port would require hcd_port_reset_end() to be invoked after 10ms to complete the reset sequence. void hcd_port_reset(uint8_t rhport) { - // Bus reset will also trigger CONDET IRQ, disable it - uint8_t const hien = DEFAULT_HIEN & ~HIRQ_CONDET_IRQ; - hien_write(rhport, hien, false); - reg_write(rhport, HCTL_ADDR, HCTL_BUSRST, false); } // Complete bus reset sequence, may be required by some controllers void hcd_port_reset_end(uint8_t rhport) { reg_write(rhport, HCTL_ADDR, 0, false); - - // Bus reset will also trigger CONDET IRQ, clear and re-enable it after reset - hirq_write(rhport, HIRQ_CONDET_IRQ, false); - hien_write(rhport, DEFAULT_HIEN, false); } // Get port link speed @@ -660,7 +654,7 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buf uint8_t const ep_dir = tu_edpt_dir(ep_addr); max3421_ep_t* ep = find_opened_ep(daddr, ep_num, ep_dir); - TU_ASSERT(ep); + TU_VERIFY(ep); // control transfer can switch direction ep->ep_dir = ep_dir; @@ -767,8 +761,6 @@ static void handle_xfer_done(uint8_t rhport) { TU_ASSERT(ep, ); xfer_result_t xfer_result; - -// TU_LOG3("HRSL: %02X\r\n", hrsl); switch(hresult) { case HRSL_SUCCESS: xfer_result = XFER_RESULT_SUCCESS; @@ -803,6 +795,7 @@ static void handle_xfer_done(uint8_t rhport) { return; default: + TU_LOG3("HRSL: %02X\r\n", hrsl); xfer_result = XFER_RESULT_FAILED; break; } @@ -875,30 +868,30 @@ void hcd_int_handler(uint8_t rhport) { if (!hirq) return; // print_hirq(hirq); +// uint8_t hirq = reg_read(rhport, HIRQ_ADDR, true); + if (hirq & HIRQ_FRAME_IRQ) { _hcd_data.frame_count++; } + #if 1 // interrupt is disabled, only ack FRAME IRQ and skip the rest if (_hcd_data.intr_disable_count) { if (hirq & HIRQ_FRAME_IRQ) { hirq_write(rhport, HIRQ_FRAME_IRQ, true); } + + if ((hirq & HIRQ_CONDET_IRQ) && !(_hcd_data.mode & MODE_SOFKAENAB)) { + // connection when interrupt is disabled + TU_LOG3_INT(_hcd_data.intr_disable_count); + return; + } return; } + #endif if (hirq & HIRQ_CONDET_IRQ) { - tusb_speed_t speed = handle_connect_irq(rhport); - - if (speed == TUSB_SPEED_INVALID) { - hcd_event_device_remove(rhport, true); - }else { - // FIXME multiple MAX3421 rootdevice address is not 1 - uint8_t const daddr = 1; - free_ep(daddr); - - hcd_event_device_attach(rhport, true); - } + handle_connect_irq(rhport); } // queue more transfer in handle_xfer_done() can cause hirq to be set again while external IRQ may not catch and/or -- cgit v1.3.1 From ed0a233d4830baa8a767fcc20dcbfedbb09b7b41 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 31 Aug 2023 21:28:27 +0700 Subject: vastly improve attach/detach device, still have issue where thing is still hanged occasionally. --- src/portable/analog/max3421/hcd_max3421.c | 126 +++++++++++++++++------------- 1 file changed, 70 insertions(+), 56 deletions(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 56d3aea45..c61389cb9 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -215,6 +215,9 @@ void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); void tuh_max3421e_int_api(uint8_t rhport, bool enabled); +static void handle_connect_irq(uint8_t rhport, bool in_isr); +static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr); + //--------------------------------------------------------------------+ // SPI Helper //--------------------------------------------------------------------+ @@ -238,6 +241,14 @@ static void max3421_spi_unlock(uint8_t rhport, bool in_isr) { if (!in_isr) { tuh_max3421e_int_api(rhport, true); (void) osal_mutex_unlock(_hcd_data.spi_mutex); + + // when re-enable interrupt, we may miss INTR edge (usually via GPIO detection interrupt). + // It would be ok if we are operating since SOF will re-trigger interrupt. + // However, for CONDET_IRQ i.e host not operating therefore we need to manually handle it here. + if (_hcd_data.hirq & HIRQ_CONDET_IRQ) { + handle_connect_irq(rhport, false); + hirq_write(rhport, HIRQ_CONDET_IRQ, false); + } } } @@ -405,48 +416,6 @@ bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { return false; } -static void handle_connect_irq(uint8_t rhport) { - uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, true); - uint8_t const jk = hrsl & (HRSL_JSTATUS | HRSL_KSTATUS); - - uint8_t new_mode = MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST; - TU_LOG2_HEX(jk); - - switch(jk) { - case 0x00: // SEO is disconnected - case (HRSL_JSTATUS | HRSL_KSTATUS): // SE1 is illegal - mode_write(rhport, new_mode, true); - hcd_event_device_remove(rhport, true); - break; - - default: { - // Bus Reset also cause CONDET IRQ, skip if we are already connected and doing bus reset - if ((_hcd_data.hirq & HIRQ_BUSEVENT_IRQ) && (_hcd_data.mode & MODE_SOFKAENAB)) { - break; - } - - // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) - // However, since we are always in full speed mode, we can just check J-state - if (jk == HRSL_KSTATUS) { - new_mode |= MODE_LOWSPEED; - TU_LOG3("Low speed\n"); - }else { - TU_LOG3("Full speed\n"); - } - new_mode |= MODE_SOFKAENAB; - mode_write(rhport, new_mode, true); - - // FIXME multiple MAX3421 rootdevice address is not 1 - uint8_t const daddr = 1; - free_ep(daddr); - - hcd_event_device_attach(rhport, true); - - break; - } - } -} - // Initialize controller to host mode bool hcd_init(uint8_t rhport) { (void) rhport; @@ -507,6 +476,14 @@ void hcd_int_enable (uint8_t rhport) { if (_hcd_data.intr_disable_count) { _hcd_data.intr_disable_count--; } + + // when re-enable interrupt, we may miss INTR edge (usually via GPIO detection interrupt). + // It would be ok if we are operating since SOF will re-trigger interrupt. + // However, for CONDET_IRQ i.e host not operating therefore we need to manually handle it here. +// if (_hcd_data.hirq & HIRQ_CONDET_IRQ) { +// handle_connect_irq(rhport, false); +// hirq_write(rhport, HIRQ_CONDET_IRQ, false); +// } } // Disable USB interrupt @@ -726,6 +703,54 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { // Interrupt Handler //--------------------------------------------------------------------+ +static void handle_connect_irq(uint8_t rhport, bool in_isr) { + uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, in_isr); + uint8_t const jk = hrsl & (HRSL_JSTATUS | HRSL_KSTATUS); + + uint8_t new_mode = MODE_DPPULLDN | MODE_DMPULLDN | MODE_HOST; + TU_LOG2_HEX(jk); + + switch(jk) { + case 0x00: // SEO is disconnected + case (HRSL_JSTATUS | HRSL_KSTATUS): // SE1 is illegal + mode_write(rhport, new_mode, in_isr); + + // port reset anyway, this will help to stable bus signal for next connection + reg_write(rhport, HCTL_ADDR, HCTL_BUSRST, in_isr); + + hcd_event_device_remove(rhport, in_isr); + + reg_write(rhport, HCTL_ADDR, 0, in_isr); + break; + + default: { + // Bus Reset also cause CONDET IRQ, skip if we are already connected and doing bus reset + if ((_hcd_data.hirq & HIRQ_BUSEVENT_IRQ) && (_hcd_data.mode & MODE_SOFKAENAB)) { + break; + } + + // Low speed if (LS = 1 and J-state) or (LS = 0 and K-State) + // However, since we are always in full speed mode, we can just check J-state + if (jk == HRSL_KSTATUS) { + new_mode |= MODE_LOWSPEED; + TU_LOG3("Low speed\n"); + }else { + TU_LOG3("Full speed\n"); + } + new_mode |= MODE_SOFKAENAB; + mode_write(rhport, new_mode, in_isr); + + // FIXME multiple MAX3421 rootdevice address is not 1 + uint8_t const daddr = 1; + free_ep(daddr); + + hcd_event_device_attach(rhport, in_isr); + + break; + } + } +} + static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t hrsl) { uint8_t const ep_addr = tu_edpt_addr(ep->ep_num, ep->ep_dir); @@ -758,7 +783,7 @@ static void handle_xfer_done(uint8_t rhport) { uint8_t const ep_dir = ((hxfr_type & HXFR_SETUP) || (hxfr_type & HXFR_OUT_NIN)) ? 0 : 1; max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, ep_dir); - TU_ASSERT(ep, ); + TU_VERIFY(ep, ); xfer_result_t xfer_result; switch(hresult) { @@ -857,7 +882,6 @@ void print_hirq(uint8_t hirq) { TU_LOG3("\r\n"); } - #else #define print_hirq(hirq) #endif @@ -868,30 +892,20 @@ void hcd_int_handler(uint8_t rhport) { if (!hirq) return; // print_hirq(hirq); -// uint8_t hirq = reg_read(rhport, HIRQ_ADDR, true); - if (hirq & HIRQ_FRAME_IRQ) { _hcd_data.frame_count++; } - #if 1 - // interrupt is disabled, only ack FRAME IRQ and skip the rest + // interrupt is disabled by usbh task: only ack FRAME IRQ and skip the rest if (_hcd_data.intr_disable_count) { if (hirq & HIRQ_FRAME_IRQ) { hirq_write(rhport, HIRQ_FRAME_IRQ, true); } - - if ((hirq & HIRQ_CONDET_IRQ) && !(_hcd_data.mode & MODE_SOFKAENAB)) { - // connection when interrupt is disabled - TU_LOG3_INT(_hcd_data.intr_disable_count); - return; - } return; } - #endif if (hirq & HIRQ_CONDET_IRQ) { - handle_connect_irq(rhport); + handle_connect_irq(rhport, true); } // queue more transfer in handle_xfer_done() can cause hirq to be set again while external IRQ may not catch and/or -- cgit v1.3.1 From 21ab40bab2e2fee28fa595f648a17944696c3d65 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 7 Sep 2023 12:38:18 +0700 Subject: - wrap up hcd max3421, work well with nrf52840 - also add usbh_defer_func() --- hw/bsp/nrf/family.c | 7 ++++-- src/host/usbh.c | 26 ++++++++++++---------- src/host/usbh_pvt.h | 10 ++++----- src/portable/analog/max3421/hcd_max3421.c | 36 ++----------------------------- 4 files changed, 27 insertions(+), 52 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 7358458ce..39ce179e8 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -109,10 +109,12 @@ void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { (void) rhport; + // use NVIC_Enable/Disable instead since nrfx_gpiote_trigger_enable/disable clear pending and can miss interrupt + // when disabled if (enabled) { - nrfx_gpiote_trigger_enable(MAX3241E_INTR_PIN, true); + NVIC_EnableIRQ(GPIOTE_IRQn); } else { - nrfx_gpiote_trigger_disable(MAX3241E_INTR_PIN); + NVIC_DisableIRQ(GPIOTE_IRQn); } } @@ -266,6 +268,7 @@ void board_init(void) { in_config.pull = NRF_GPIO_PIN_PULLUP; nrfx_gpiote_in_init(MAX3241E_INTR_PIN, &in_config, max3421e_int_handler); + nrfx_gpiote_trigger_enable(MAX3241E_INTR_PIN, true); #endif } diff --git a/src/host/usbh.c b/src/host/usbh.c index e60e680c2..e332f35cc 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -753,29 +753,33 @@ bool tuh_edpt_abort_xfer(uint8_t daddr, uint8_t ep_addr) { // USBH API For Class Driver //--------------------------------------------------------------------+ -uint8_t usbh_get_rhport(uint8_t dev_addr) -{ - usbh_device_t* dev = get_device(dev_addr); +uint8_t usbh_get_rhport(uint8_t dev_addr) { + usbh_device_t *dev = get_device(dev_addr); return dev ? dev->rhport : _dev0.rhport; } -uint8_t* usbh_get_enum_buf(void) -{ +uint8_t *usbh_get_enum_buf(void) { return _usbh_ctrl_buf; } -void usbh_int_set(bool enabled) -{ +void usbh_int_set(bool enabled) { // TODO all host controller if multiple are used since they shared the same event queue - if (enabled) - { + if (enabled) { hcd_int_enable(_usbh_controller); - }else - { + } else { hcd_int_disable(_usbh_controller); } } +void usbh_defer_func(osal_task_func_t func, void *param, bool in_isr) { + hcd_event_t event = { 0 }; + event.event_id = USBH_EVENT_FUNC_CALL; + event.func_call.func = func; + event.func_call.param = param; + + osal_queue_send(_usbh_q, &event, in_isr); +} + //--------------------------------------------------------------------+ // Endpoint API //--------------------------------------------------------------------+ diff --git a/src/host/usbh_pvt.h b/src/host/usbh_pvt.h index 0b58a91bc..2b61a77db 100644 --- a/src/host/usbh_pvt.h +++ b/src/host/usbh_pvt.h @@ -24,8 +24,8 @@ * This file is part of the TinyUSB stack. */ -#ifndef _TUSB_USBH_CLASSDRIVER_H_ -#define _TUSB_USBH_CLASSDRIVER_H_ +#ifndef _TUSB_USBH_PVT_H_ +#define _TUSB_USBH_PVT_H_ #include "osal/osal.h" #include "common/tusb_fifo.h" @@ -76,6 +76,8 @@ uint8_t* usbh_get_enum_buf(void); void usbh_int_set(bool enabled); +void usbh_defer_func(osal_task_func_t func, void *param, bool in_isr); + //--------------------------------------------------------------------+ // USBH Endpoint API //--------------------------------------------------------------------+ @@ -85,12 +87,10 @@ bool usbh_edpt_xfer_with_callback(uint8_t dev_addr, uint8_t ep_addr, uint8_t * b tuh_xfer_cb_t complete_cb, uintptr_t user_data); TU_ATTR_ALWAYS_INLINE -static inline bool usbh_edpt_xfer(uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t total_bytes) -{ +static inline bool usbh_edpt_xfer(uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t total_bytes) { return usbh_edpt_xfer_with_callback(dev_addr, ep_addr, buffer, total_bytes, NULL, 0); } - // Claim an endpoint before submitting a transfer. // If caller does not make any transfer, it must release endpoint for others. bool usbh_edpt_claim(uint8_t dev_addr, uint8_t ep_addr); diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index c61389cb9..95cf5516e 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -194,7 +194,6 @@ typedef struct { uint8_t hxfr; atomic_flag busy; // busy transferring - volatile uint8_t intr_disable_count; volatile uint16_t frame_count; max3421_ep_t ep[CFG_TUH_MAX3421_ENDPOINT_TOTAL]; // [0] is reserved for addr0 @@ -241,14 +240,6 @@ static void max3421_spi_unlock(uint8_t rhport, bool in_isr) { if (!in_isr) { tuh_max3421e_int_api(rhport, true); (void) osal_mutex_unlock(_hcd_data.spi_mutex); - - // when re-enable interrupt, we may miss INTR edge (usually via GPIO detection interrupt). - // It would be ok if we are operating since SOF will re-trigger interrupt. - // However, for CONDET_IRQ i.e host not operating therefore we need to manually handle it here. - if (_hcd_data.hirq & HIRQ_CONDET_IRQ) { - handle_connect_irq(rhport, false); - hirq_write(rhport, HIRQ_CONDET_IRQ, false); - } } } @@ -470,28 +461,13 @@ bool hcd_init(uint8_t rhport) { // Enable USB interrupt // Not actually enable GPIO interrupt, just set variable to prevent handler to process void hcd_int_enable (uint8_t rhport) { -// tuh_max3421e_int_api(rhport, true); - - (void) rhport; - if (_hcd_data.intr_disable_count) { - _hcd_data.intr_disable_count--; - } - - // when re-enable interrupt, we may miss INTR edge (usually via GPIO detection interrupt). - // It would be ok if we are operating since SOF will re-trigger interrupt. - // However, for CONDET_IRQ i.e host not operating therefore we need to manually handle it here. -// if (_hcd_data.hirq & HIRQ_CONDET_IRQ) { -// handle_connect_irq(rhport, false); -// hirq_write(rhport, HIRQ_CONDET_IRQ, false); -// } + tuh_max3421e_int_api(rhport, true); } // Disable USB interrupt // Not actually disable GPIO interrupt, just set variable to prevent handler to process void hcd_int_disable(uint8_t rhport) { - //tuh_max3421e_int_api(rhport, false); - (void) rhport; - _hcd_data.intr_disable_count++; + tuh_max3421e_int_api(rhport, false); } // Get frame number (1ms) @@ -896,14 +872,6 @@ void hcd_int_handler(uint8_t rhport) { _hcd_data.frame_count++; } - // interrupt is disabled by usbh task: only ack FRAME IRQ and skip the rest - if (_hcd_data.intr_disable_count) { - if (hirq & HIRQ_FRAME_IRQ) { - hirq_write(rhport, HIRQ_FRAME_IRQ, true); - } - return; - } - if (hirq & HIRQ_CONDET_IRQ) { handle_connect_irq(rhport, true); } -- cgit v1.3.1 From 7ce4cfa638a86bfabd7ce8147ea5468d69c1af21 Mon Sep 17 00:00:00 2001 From: maidnl Date: Fri, 8 Sep 2023 10:12:03 +0200 Subject: renesas: added wait function for IN transaction This fixes a problem found on MSD class where data read from from disks were sometimes partially overwritten by the status MSD message ("USBS..."). The function introduced wait for the hw fifo pipe to be empty, that prevent that new writing in the fife overwrite data which are not yet be transmitted by hw. --- src/portable/renesas/rusb2/dcd_rusb2.c | 8 ++++++++ 1 file changed, 8 insertions(+) (limited to 'src/portable') diff --git a/src/portable/renesas/rusb2/dcd_rusb2.c b/src/portable/renesas/rusb2/dcd_rusb2.c index 3ec1b70b5..68ef5890f 100644 --- a/src/portable/renesas/rusb2/dcd_rusb2.c +++ b/src/portable/renesas/rusb2/dcd_rusb2.c @@ -266,6 +266,13 @@ static void pipe_read_packet_ff(rusb2_reg_t * rusb, tu_fifo_t *f, volatile void tu_fifo_advance_write_pointer(f, count); } + +static void wait_pipe_fifo_empty(rusb2_reg_t* rusb, uint8_t num) { + TU_ASSERT(num); + while( (rusb->PIPE_CTR[num-1] & RUSB2_PIPE_CTR_INBUFM_Msk) > 0 ) {} +} + + //--------------------------------------------------------------------+ // Pipe Transfer //--------------------------------------------------------------------+ @@ -339,6 +346,7 @@ static bool pipe_xfer_in(rusb2_reg_t* rusb, unsigned num) const unsigned rem = pipe->remaining; if (!rem) { + wait_pipe_fifo_empty(rusb, num); pipe->buf = NULL; return true; } -- cgit v1.3.1 From 228acbeac2642534753beffd866db2a7eab45e31 Mon Sep 17 00:00:00 2001 From: maidnl Date: Fri, 8 Sep 2023 15:48:05 +0200 Subject: wait_pipe_fifo_empty() now returns bool (as expected using TU_ASSERT macro) --- src/portable/renesas/rusb2/dcd_rusb2.c | 3 ++- 1 file changed, 2 insertions(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/renesas/rusb2/dcd_rusb2.c b/src/portable/renesas/rusb2/dcd_rusb2.c index 68ef5890f..24edc30e7 100644 --- a/src/portable/renesas/rusb2/dcd_rusb2.c +++ b/src/portable/renesas/rusb2/dcd_rusb2.c @@ -267,9 +267,10 @@ static void pipe_read_packet_ff(rusb2_reg_t * rusb, tu_fifo_t *f, volatile void } -static void wait_pipe_fifo_empty(rusb2_reg_t* rusb, uint8_t num) { +static bool wait_pipe_fifo_empty(rusb2_reg_t* rusb, uint8_t num) { TU_ASSERT(num); while( (rusb->PIPE_CTR[num-1] & RUSB2_PIPE_CTR_INBUFM_Msk) > 0 ) {} + return true; } -- cgit v1.3.1 From c074488f75522c7c29dc7853aa2d8597b4858f89 Mon Sep 17 00:00:00 2001 From: hathach Date: Sat, 9 Sep 2023 12:20:16 +0700 Subject: minor rename --- hw/bsp/nrf/boards/feather_nrf52840_express/board.h | 10 +- hw/bsp/nrf/boards/pca10056/board.h | 10 +- hw/bsp/nrf/boards/pca10095/board.h | 10 +- hw/bsp/nrf/family.c | 22 +-- hw/bsp/samd51/boards/metro_m4_express/board.h | 12 +- hw/bsp/samd51/family.c | 183 +++++++++++---------- src/portable/analog/max3421/hcd_max3421.c | 14 +- 7 files changed, 131 insertions(+), 130 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h index e6e7590ac..76100a14a 100644 --- a/hw/bsp/nrf/boards/feather_nrf52840_express/board.h +++ b/hw/bsp/nrf/boards/feather_nrf52840_express/board.h @@ -46,11 +46,11 @@ #define UART_TX_PIN 25 // SPI for USB host shield -#define MAX3421E_SCK_PIN 14 -#define MAX3421E_MOSI_PIN 13 -#define MAX3421E_MISO_PIN 15 -#define MAX3421E_CS_PIN 27 -#define MAX3241E_INTR_PIN 26 +#define MAX3421_SCK_PIN 14 +#define MAX3421_MOSI_PIN 13 +#define MAX3421_MISO_PIN 15 +#define MAX3421_CS_PIN 27 +#define MAX3421_INTR_PIN 26 #ifdef __cplusplus } diff --git a/hw/bsp/nrf/boards/pca10056/board.h b/hw/bsp/nrf/boards/pca10056/board.h index 16d31addb..9459e7911 100644 --- a/hw/bsp/nrf/boards/pca10056/board.h +++ b/hw/bsp/nrf/boards/pca10056/board.h @@ -46,11 +46,11 @@ #define UART_TX_PIN 6 // SPI for USB host shield -#define MAX3421E_SCK_PIN _PINNUM(1, 15) -#define MAX3421E_MOSI_PIN _PINNUM(1, 13) -#define MAX3421E_MISO_PIN _PINNUM(1, 14) -#define MAX3421E_CS_PIN _PINNUM(1, 12) -#define MAX3241E_INTR_PIN _PINNUM(1, 11) +#define MAX3421_SCK_PIN _PINNUM(1, 15) +#define MAX3421_MOSI_PIN _PINNUM(1, 13) +#define MAX3421_MISO_PIN _PINNUM(1, 14) +#define MAX3421_CS_PIN _PINNUM(1, 12) +#define MAX3421_INTR_PIN _PINNUM(1, 11) #ifdef __cplusplus } diff --git a/hw/bsp/nrf/boards/pca10095/board.h b/hw/bsp/nrf/boards/pca10095/board.h index b9d3a19dc..ad3379bf6 100644 --- a/hw/bsp/nrf/boards/pca10095/board.h +++ b/hw/bsp/nrf/boards/pca10095/board.h @@ -46,11 +46,11 @@ #define UART_TX_PIN 33 // SPI for USB host shield -#define MAX3421E_SCK_PIN _PINNUM(1, 15) -#define MAX3421E_MOSI_PIN _PINNUM(1, 13) -#define MAX3421E_MISO_PIN _PINNUM(1, 14) -#define MAX3421E_CS_PIN _PINNUM(1, 12) -#define MAX3241E_INTR_PIN _PINNUM(1, 11) +#define MAX3421_SCK_PIN _PINNUM(1, 15) +#define MAX3421_MOSI_PIN _PINNUM(1, 13) +#define MAX3421_MISO_PIN _PINNUM(1, 14) +#define MAX3421_CS_PIN _PINNUM(1, 12) +#define MAX3421_INTR_PIN _PINNUM(1, 11) #ifdef __cplusplus } diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 47c765a96..6fcfd9476 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -97,8 +97,8 @@ TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(1); -void max3421e_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { - if (!(pin == MAX3241E_INTR_PIN && action == NRF_GPIOTE_POLARITY_HITOLO)) return; +void max3421_int_handler(nrfx_gpiote_pin_t pin, nrf_gpiote_polarity_t action) { + if (!(pin == MAX3421_INTR_PIN && action == NRF_GPIOTE_POLARITY_HITOLO)) return; tuh_int_handler(1); } @@ -207,14 +207,14 @@ void board_init(void) { #endif // manually manage CS - nrf_gpio_cfg_output(MAX3421E_CS_PIN); - nrf_gpio_pin_write(MAX3421E_CS_PIN, 1); + nrf_gpio_cfg_output(MAX3421_CS_PIN); + nrf_gpio_pin_write(MAX3421_CS_PIN, 1); // USB host using max3421e usb controller via SPI nrfx_spim_config_t cfg = { - .sck_pin = MAX3421E_SCK_PIN, - .mosi_pin = MAX3421E_MOSI_PIN, - .miso_pin = MAX3421E_MISO_PIN, + .sck_pin = MAX3421_SCK_PIN, + .mosi_pin = MAX3421_MOSI_PIN, + .miso_pin = MAX3421_MISO_PIN, .ss_pin = NRFX_SPIM_PIN_NOT_USED, .ss_active_high = false, .irq_priority = 3, @@ -233,8 +233,8 @@ void board_init(void) { nrfx_gpiote_in_config_t in_config = NRFX_GPIOTE_CONFIG_IN_SENSE_HITOLO(true); in_config.pull = NRF_GPIO_PIN_PULLUP; - nrfx_gpiote_in_init(MAX3241E_INTR_PIN, &in_config, max3421e_int_handler); - nrfx_gpiote_trigger_enable(MAX3241E_INTR_PIN, true); + nrfx_gpiote_in_init(MAX3421_INTR_PIN, &in_config, max3421_int_handler); + nrfx_gpiote_trigger_enable(MAX3421_INTR_PIN, true); #endif } @@ -317,7 +317,7 @@ void nrf_error_cb(uint32_t id, uint32_t pc, uint32_t info) { //--------------------------------------------------------------------+ #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 -void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { +void tuh_max3421_int_api(uint8_t rhport, bool enabled) { (void) rhport; // use NVIC_Enable/Disable instead since nrfx_gpiote_trigger_enable/disable clear pending and can miss interrupt @@ -331,7 +331,7 @@ void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { (void) rhport; - nrf_gpio_pin_write(MAX3421E_CS_PIN, active ? 0 : 1); + nrf_gpio_pin_write(MAX3421_CS_PIN, active ? 0 : 1); } bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { diff --git a/hw/bsp/samd51/boards/metro_m4_express/board.h b/hw/bsp/samd51/boards/metro_m4_express/board.h index 3441d03e9..fe2a867a4 100644 --- a/hw/bsp/samd51/boards/metro_m4_express/board.h +++ b/hw/bsp/samd51/boards/metro_m4_express/board.h @@ -44,12 +44,12 @@ #define UART_RX_PIN 22 // SPI for USB host shield -#define MAX3421E_SERCOM SERCOM2 -#define MAX3421E_SCK_PIN 13 -#define MAX3421E_MOSI_PIN 12 -#define MAX3421E_MISO_PIN 14 -#define MAX3421E_CS_PIN 18 // D10 -#define MAX3241E_INTR_PIN 20 // D9 +#define MAX3421_SERCOM 2 // SERCOM2 +#define MAX3421_SCK_PIN 13 +#define MAX3421_MOSI_PIN 12 +#define MAX3421_MISO_PIN 14 +#define MAX3421_CS_PIN 18 // D10 +#define MAX3421_INTR_PIN 20 // D9 #ifdef __cplusplus diff --git a/hw/bsp/samd51/family.c b/hw/bsp/samd51/family.c index 51cfd19ba..34dd93cef 100644 --- a/hw/bsp/samd51/family.c +++ b/hw/bsp/samd51/family.c @@ -73,58 +73,14 @@ void USB_3_Handler(void) { } //--------------------------------------------------------------------+ -// +// Implementation //--------------------------------------------------------------------+ #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 -void max3421_init(void) -{ - //------------- SPI Init -------------// - - // Enable the APB clock for SERCOM2 - MCLK->APBBMASK.reg |= MCLK_APBBMASK_SERCOM2; - - // Configure GCLK for SERCOM2, initClockNVIC() - GCLK->PCHCTRL[SERCOM2_GCLK_ID_CORE].reg = GCLK_PCHCTRL_GEN_GCLK0_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); - GCLK->PCHCTRL[SERCOM2_GCLK_ID_SLOW].reg = GCLK_PCHCTRL_GEN_GCLK3_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); +static void max3421_init(void); - // Disable the SPI module - SERCOM2->SPI.CTRLA.bit.ENABLE = 0; - - // Reset the SPI module - SERCOM2->SPI.CTRLA.bit.SWRST = 1; - while (SERCOM2->SPI.SYNCBUSY.bit.SWRST); +//#define - // Set up SPI in master mode, MSB first, SPI mode 0 - uint8_t const mosi_pad = 0; - uint8_t const miso_pad = 2; - SERCOM2->SPI.CTRLA.reg = SERCOM_SPI_CTRLA_MODE(3) | SERCOM_SPI_CTRLA_DOPO(mosi_pad) | SERCOM_SPI_CTRLA_DIPO(miso_pad); - - SERCOM2->SPI.CTRLB.reg = SERCOM_SPI_CTRLB_CHSIZE(0) | SERCOM_SPI_CTRLB_RXEN; - while( SERCOM2->SPI.SYNCBUSY.bit.CTRLB == 1 ); - - // Set the baud rate - uint32_t baudrate = 4000000u; - SERCOM2->SPI.BAUD.reg = (uint8_t)(SystemCoreClock / (2 * baudrate) - 1); // Replace 1000000 with your desired baud rate - - // Configure PA12 as MOSI (PAD0), PA13 as SCK (PAD1), PA14 as MISO (PAD2) - // 2 function C: PIO_SERCOM - gpio_set_pin_direction(MAX3421E_SCK_PIN, GPIO_DIRECTION_OUT); - gpio_set_pin_pull_mode(MAX3421E_SCK_PIN, GPIO_PULL_OFF); - gpio_set_pin_function(MAX3421E_SCK_PIN, 2); - - gpio_set_pin_direction(MAX3421E_MOSI_PIN, GPIO_DIRECTION_OUT); - gpio_set_pin_pull_mode(MAX3421E_MOSI_PIN, GPIO_PULL_OFF); - gpio_set_pin_function(MAX3421E_MOSI_PIN, 2); - - gpio_set_pin_direction(MAX3421E_MISO_PIN, GPIO_DIRECTION_IN); - gpio_set_pin_pull_mode(MAX3421E_MISO_PIN, GPIO_PULL_OFF); - gpio_set_pin_function(MAX3421E_MISO_PIN, 2); - - // Enable the SPI module - SERCOM2->SPI.CTRLA.bit.ENABLE = 1; - while (SERCOM2->SPI.SYNCBUSY.bit.ENABLE); -} #endif void board_init(void) { @@ -180,46 +136,7 @@ void board_init(void) { gpio_set_pin_function(PIN_PA25, PINMUX_PA25H_USB_DP); #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 - // CS pin - gpio_set_pin_direction(MAX3421E_CS_PIN, GPIO_DIRECTION_OUT); - gpio_set_pin_level(MAX3421E_CS_PIN, 1); - - // SPI max3421_init(); - - // INT pin with external interrupt - gpio_set_pin_direction(MAX3241E_INTR_PIN, GPIO_DIRECTION_IN); - gpio_set_pin_pull_mode(MAX3241E_INTR_PIN, GPIO_PULL_UP); - - // Enable the APB clock for EIC (External Interrupt Controller) - MCLK->APBAMASK.reg |= MCLK_APBAMASK_EIC; - - // Configure GCLK for EIC - GCLK->PCHCTRL[EIC_GCLK_ID].reg = GCLK_PCHCTRL_GEN_GCLK0_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); - - // Configure PA20 as an input - PORT->Group[0].DIRCLR.reg = PORT_PA20; - PORT->Group[0].PINCFG[20].reg = PORT_PINCFG_INEN | PORT_PINCFG_PULLEN; - PORT->Group[0].OUTSET.reg = PORT_PA20; // Enable pull-up - - // Configure PA20 to use EIC - PORT->Group[0].PMUX[10].bit.PMUXE = MUX_PA20A_EIC_EXTINT4; - PORT->Group[0].PINCFG[20].bit.PMUXEN = 1; - - // Disable EIC - EIC->CTRLA.bit.ENABLE = 0; - while (EIC->SYNCBUSY.bit.ENABLE); - - // Configure EXTINT4 (PA20) to trigger on falling edge - EIC->CONFIG[0].reg |= EIC_CONFIG_SENSE4_FALL; - - // Enable EXTINT4 - EIC->INTENSET.reg = EIC_INTENSET_EXTINT(1 << 4); - - // Enable EIC - EIC->CTRLA.bit.ENABLE = 1; - while (EIC->SYNCBUSY.bit.ENABLE); - #endif } @@ -264,8 +181,91 @@ uint32_t board_millis(void) { //--------------------------------------------------------------------+ #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 -void EIC_4_Handler(void) -{ +static void max3421_init(void) { + // CS pin + gpio_set_pin_direction(MAX3421_CS_PIN, GPIO_DIRECTION_OUT); + gpio_set_pin_level(MAX3421_CS_PIN, 1); + + //------------- SPI Init -------------// + + // Enable the APB clock for SERCOM2 + MCLK->APBBMASK.reg |= MCLK_APBBMASK_SERCOM2; + + // Configure GCLK for SERCOM2, initClockNVIC() + GCLK->PCHCTRL[SERCOM2_GCLK_ID_CORE].reg = GCLK_PCHCTRL_GEN_GCLK0_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); + GCLK->PCHCTRL[SERCOM2_GCLK_ID_SLOW].reg = GCLK_PCHCTRL_GEN_GCLK3_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); + + // Disable the SPI module + SERCOM2->SPI.CTRLA.bit.ENABLE = 0; + + // Reset the SPI module + SERCOM2->SPI.CTRLA.bit.SWRST = 1; + while (SERCOM2->SPI.SYNCBUSY.bit.SWRST); + + // Set up SPI in master mode, MSB first, SPI mode 0 + uint8_t const mosi_pad = 0; + uint8_t const miso_pad = 2; + SERCOM2->SPI.CTRLA.reg = SERCOM_SPI_CTRLA_MODE(3) | SERCOM_SPI_CTRLA_DOPO(mosi_pad) | SERCOM_SPI_CTRLA_DIPO(miso_pad); + + SERCOM2->SPI.CTRLB.reg = SERCOM_SPI_CTRLB_CHSIZE(0) | SERCOM_SPI_CTRLB_RXEN; + while (SERCOM2->SPI.SYNCBUSY.bit.CTRLB == 1); + + // Set the baud rate + uint32_t baudrate = 4000000u; + SERCOM2->SPI.BAUD.reg = (uint8_t) (SystemCoreClock / (2 * baudrate) - + 1); // Replace 1000000 with your desired baud rate + + // Configure PA12 as MOSI (PAD0), PA13 as SCK (PAD1), PA14 as MISO (PAD2) + // 2 function C: PIO_SERCOM + gpio_set_pin_direction(MAX3421_SCK_PIN, GPIO_DIRECTION_OUT); + gpio_set_pin_pull_mode(MAX3421_SCK_PIN, GPIO_PULL_OFF); + gpio_set_pin_function(MAX3421_SCK_PIN, 2); + + gpio_set_pin_direction(MAX3421_MOSI_PIN, GPIO_DIRECTION_OUT); + gpio_set_pin_pull_mode(MAX3421_MOSI_PIN, GPIO_PULL_OFF); + gpio_set_pin_function(MAX3421_MOSI_PIN, 2); + + gpio_set_pin_direction(MAX3421_MISO_PIN, GPIO_DIRECTION_IN); + gpio_set_pin_pull_mode(MAX3421_MISO_PIN, GPIO_PULL_OFF); + gpio_set_pin_function(MAX3421_MISO_PIN, 2); + + // Enable the SPI module + SERCOM2->SPI.CTRLA.bit.ENABLE = 1; + while (SERCOM2->SPI.SYNCBUSY.bit.ENABLE); + + //------------- External Interrupt -------------// + + // INT pin with external interrupt + gpio_set_pin_direction(MAX3421_INTR_PIN, GPIO_DIRECTION_IN); + gpio_set_pin_pull_mode(MAX3421_INTR_PIN, GPIO_PULL_UP); + + // Enable the APB clock for EIC (External Interrupt Controller) + MCLK->APBAMASK.reg |= MCLK_APBAMASK_EIC; + + // Configure GCLK for EIC + GCLK->PCHCTRL[EIC_GCLK_ID].reg = GCLK_PCHCTRL_GEN_GCLK0_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); + + // Configure PA20 as an input with function A (external interrupt) + gpio_set_pin_direction(MAX3421_INTR_PIN, GPIO_DIRECTION_IN); + gpio_set_pin_pull_mode(MAX3421_INTR_PIN, GPIO_PULL_UP); + gpio_set_pin_function(MAX3421_INTR_PIN, 0); + + // Disable EIC + EIC->CTRLA.bit.ENABLE = 0; + while (EIC->SYNCBUSY.bit.ENABLE); + + // Configure EXTINT4 (PA20) to trigger on falling edge + EIC->CONFIG[0].reg |= EIC_CONFIG_SENSE4_FALL; + + // Enable EXTINT4 + EIC->INTENSET.reg = EIC_INTENSET_EXTINT(1 << 4); + + // Enable EIC + EIC->CTRLA.bit.ENABLE = 1; + while (EIC->SYNCBUSY.bit.ENABLE); +} + +void EIC_4_Handler(void) { // Clear the interrupt flag EIC->INTFLAG.reg = EIC_INTFLAG_EXTINT(1 << 4); @@ -273,7 +273,7 @@ void EIC_4_Handler(void) tuh_int_handler(1); } -void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { +void tuh_max3421_int_api(uint8_t rhport, bool enabled) { (void) rhport; if (enabled) { @@ -285,7 +285,7 @@ void tuh_max3421e_int_api(uint8_t rhport, bool enabled) { void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { (void) rhport; - gpio_set_pin_level(MAX3421E_CS_PIN, active ? 0 : 1); + gpio_set_pin_level(MAX3421_CS_PIN, active ? 0 : 1); } bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { @@ -299,7 +299,7 @@ bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_l // Write data to be transmitted uint8_t data = 0x00; if (count < tx_len) { - data = tx_buf[count]; + data = tx_buf[count]; } SERCOM2->SPI.DATA.reg = (uint32_t) data; @@ -322,6 +322,7 @@ bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_l return true; } + #endif #endif diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 95cf5516e..238b518a0 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -212,7 +212,7 @@ static max3421_data_t _hcd_data; void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); -void tuh_max3421e_int_api(uint8_t rhport, bool enabled); +void tuh_max3421_int_api(uint8_t rhport, bool enabled); static void handle_connect_irq(uint8_t rhport, bool in_isr); static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr); @@ -225,7 +225,7 @@ static void max3421_spi_lock(uint8_t rhport, bool in_isr) { // disable interrupt and mutex lock (for pre-emptive RTOS) if not in_isr if (!in_isr) { (void) osal_mutex_lock(_hcd_data.spi_mutex, OSAL_TIMEOUT_WAIT_FOREVER); - tuh_max3421e_int_api(rhport, false); + tuh_max3421_int_api(rhport, false); } // assert CS @@ -238,7 +238,7 @@ static void max3421_spi_unlock(uint8_t rhport, bool in_isr) { // mutex unlock and re-enable interrupt if (!in_isr) { - tuh_max3421e_int_api(rhport, true); + tuh_max3421_int_api(rhport, true); (void) osal_mutex_unlock(_hcd_data.spi_mutex); } } @@ -411,7 +411,7 @@ bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) { bool hcd_init(uint8_t rhport) { (void) rhport; - tuh_max3421e_int_api(rhport, false); + tuh_max3421_int_api(rhport, false); tuh_max3421_spi_cs_api(rhport, false); TU_LOG2_INT(sizeof(max3421_ep_t)); @@ -450,7 +450,7 @@ bool hcd_init(uint8_t rhport) { // Enable IRQ hien_write(rhport, DEFAULT_HIEN, false); - tuh_max3421e_int_api(rhport, true); + tuh_max3421_int_api(rhport, true); // Enable Interrupt pin reg_write(rhport, CPUCTL_ADDR, CPUCTL_IE, false); @@ -461,13 +461,13 @@ bool hcd_init(uint8_t rhport) { // Enable USB interrupt // Not actually enable GPIO interrupt, just set variable to prevent handler to process void hcd_int_enable (uint8_t rhport) { - tuh_max3421e_int_api(rhport, true); + tuh_max3421_int_api(rhport, true); } // Disable USB interrupt // Not actually disable GPIO interrupt, just set variable to prevent handler to process void hcd_int_disable(uint8_t rhport) { - tuh_max3421e_int_api(rhport, false); + tuh_max3421_int_api(rhport, false); } // Get frame number (1ms) -- cgit v1.3.1 From 81cd9951080181234f20d81c831ca0595d499577 Mon Sep 17 00:00:00 2001 From: hathach Date: Mon, 18 Sep 2023 22:15:31 +0700 Subject: add default CFG_TUH_MAX3421 = 0, default spi speed for samd21/samd51 to 12Mhz --- hw/bsp/samd21/family.c | 3 ++- hw/bsp/samd51/family.c | 11 +++++++++-- src/portable/analog/max3421/hcd_max3421.c | 2 +- src/tusb_option.h | 22 +++++++++++++--------- 4 files changed, 25 insertions(+), 13 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/samd21/family.c b/hw/bsp/samd21/family.c index cfe66b8dc..395155548 100644 --- a/hw/bsp/samd21/family.c +++ b/hw/bsp/samd21/family.c @@ -269,7 +269,8 @@ uint32_t board_millis(void) { static void max3421_init(void) { //------------- SPI Init -------------// - uint32_t const baudrate = 4000000u; + // MAX3421E max SPI clock is 26MHz however SAMD can only work reliably at 12 Mhz + uint32_t const baudrate = 12000000u; // Enable the APB clock for SERCOM PM->APBCMASK.reg |= 1u << (PM_APBCMASK_SERCOM0_Pos + MAX3421_SERCOM_ID); diff --git a/hw/bsp/samd51/family.c b/hw/bsp/samd51/family.c index 2cf00c7af..c1b914a02 100644 --- a/hw/bsp/samd51/family.c +++ b/hw/bsp/samd51/family.c @@ -183,7 +183,9 @@ uint32_t board_millis(void) { static void max3421_init(void) { //------------- SPI Init -------------// - uint32_t const baudrate = 4000000u; + + // MAX3421E max SPI clock is 26MHz however SAMD can only work reliably at 12 Mhz + uint32_t const baudrate = 12000000u; struct { volatile uint32_t *mck_apb; @@ -229,7 +231,12 @@ static void max3421_init(void) { while (sercom->SPI.SYNCBUSY.bit.CTRLB == 1); // Set the baud rate - sercom->SPI.BAUD.reg = (uint8_t) (SystemCoreClock / (2 * baudrate) - 1); + uint8_t baud_reg = (uint8_t) (SystemCoreClock / (2 * baudrate)); + if (baud_reg) { + baud_reg--; + } + + sercom->SPI.BAUD.reg = baud_reg; // Configure PA12 as MOSI (PAD0), PA13 as SCK (PAD1), PA14 as MISO (PAD2), function C (sercom) gpio_set_pin_direction(MAX3421_SCK_PIN, GPIO_DIRECTION_OUT); diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 238b518a0..f3f76fd58 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -263,7 +263,7 @@ static void fifo_read(uint8_t rhport, uint8_t * buffer, uint16_t len, bool in_is max3421_spi_lock(rhport, in_isr); - tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 0); + tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 1); _hcd_data.hirq = hirq; tuh_max3421_spi_xfer_api(rhport, NULL, 0, buffer, len); diff --git a/src/tusb_option.h b/src/tusb_option.h index c72117850..a41f5a07e 100644 --- a/src/tusb_option.h +++ b/src/tusb_option.h @@ -424,11 +424,11 @@ //------------- CLASS -------------// #ifndef CFG_TUH_HUB -#define CFG_TUH_HUB 0 + #define CFG_TUH_HUB 0 #endif #ifndef CFG_TUH_CDC -#define CFG_TUH_CDC 0 + #define CFG_TUH_CDC 0 #endif #ifndef CFG_TUH_CDC_FTDI @@ -442,34 +442,38 @@ #endif #ifndef CFG_TUH_HID -#define CFG_TUH_HID 0 + #define CFG_TUH_HID 0 #endif #ifndef CFG_TUH_MIDI -#define CFG_TUH_MIDI 0 + #define CFG_TUH_MIDI 0 #endif #ifndef CFG_TUH_MSC -#define CFG_TUH_MSC 0 + #define CFG_TUH_MSC 0 #endif #ifndef CFG_TUH_VENDOR -#define CFG_TUH_VENDOR 0 + #define CFG_TUH_VENDOR 0 #endif #ifndef CFG_TUH_API_EDPT_XFER -#define CFG_TUH_API_EDPT_XFER 0 + #define CFG_TUH_API_EDPT_XFER 0 #endif // Enable PIO-USB software host controller #ifndef CFG_TUH_RPI_PIO_USB -#define CFG_TUH_RPI_PIO_USB 0 + #define CFG_TUH_RPI_PIO_USB 0 #endif #ifndef CFG_TUD_RPI_PIO_USB -#define CFG_TUD_RPI_PIO_USB 0 + #define CFG_TUD_RPI_PIO_USB 0 #endif +// MAX3421 Host controller option +#ifndef CFG_TUH_MAX3421 + #define CFG_TUH_MAX3421 0 +#endif //--------------------------------------------------------------------+ // TypeC Options (Default) -- cgit v1.3.1 From a7c136c03f0c4a057f8b49c10ed9cddcecf52879 Mon Sep 17 00:00:00 2001 From: hathach Date: Mon, 25 Sep 2023 16:53:11 +0700 Subject: adding host/cdc_msc_hid_freertos example --- .idea/cmake.xml | 19 +-- examples/device/cdc_msc_freertos/Makefile | 2 +- examples/device/cdc_msc_freertos/src/main.c | 70 ++++----- examples/host/bare_api/CMakeLists.txt | 5 + examples/host/cdc_msc_hid/CMakeLists.txt | 5 + examples/host/cdc_msc_hid_freertos/CMakeLists.txt | 36 +++++ .../host/cdc_msc_hid_freertos/src/CMakeLists.txt | 4 + examples/host/cdc_msc_hid_freertos/src/main.c | 170 +++++++++++++++++++++ .../host/cdc_msc_hid_freertos/src/tusb_config.h | 133 ++++++++++++++++ examples/host/hid_controller/CMakeLists.txt | 5 + examples/host/msc_file_explorer/CMakeLists.txt | 5 + examples/make.mk | 3 - .../boards/adafruit_metro_esp32s2/board.h | 8 + hw/bsp/espressif/boards/espressif_kaluga_1/board.h | 8 + .../boards/espressif_s2_devkitc/board.cmake | 2 + .../espressif/boards/espressif_s2_devkitc/board.h | 45 ++++++ hw/bsp/espressif/boards/family.c | 130 +++++++++++++--- .../components/tinyusb_src/CMakeLists.txt | 79 ++++++---- src/host/usbh.c | 2 +- src/portable/analog/max3421/hcd_max3421.c | 2 +- 20 files changed, 622 insertions(+), 111 deletions(-) create mode 100644 examples/host/cdc_msc_hid_freertos/CMakeLists.txt create mode 100644 examples/host/cdc_msc_hid_freertos/src/CMakeLists.txt create mode 100644 examples/host/cdc_msc_hid_freertos/src/main.c create mode 100644 examples/host/cdc_msc_hid_freertos/src/tusb_config.h create mode 100644 hw/bsp/espressif/boards/espressif_s2_devkitc/board.cmake create mode 100644 hw/bsp/espressif/boards/espressif_s2_devkitc/board.h (limited to 'src/portable') diff --git a/.idea/cmake.xml b/.idea/cmake.xml index 89ec1066c..747f0fb58 100644 --- a/.idea/cmake.xml +++ b/.idea/cmake.xml @@ -2,23 +2,24 @@ - + - - - - + + + + + + + + - - - @@ -53,7 +54,7 @@ - + diff --git a/examples/device/cdc_msc_freertos/Makefile b/examples/device/cdc_msc_freertos/Makefile index 0bee668b7..3ac62a79c 100644 --- a/examples/device/cdc_msc_freertos/Makefile +++ b/examples/device/cdc_msc_freertos/Makefile @@ -10,7 +10,7 @@ INC += \ src/FreeRTOSConfig \ $(TOP)/hw \ $(TOP)/$(FREERTOS_SRC)/include \ - $(TOP)/$(FREERTOS_PORTABLE_SRC) + $(TOP)/$(FREERTOS_PORTABLE_SRC) \ # Example source EXAMPLE_SOURCE = \ diff --git a/examples/device/cdc_msc_freertos/src/main.c b/examples/device/cdc_msc_freertos/src/main.c index 0b115a595..1dadc4513 100644 --- a/examples/device/cdc_msc_freertos/src/main.c +++ b/examples/device/cdc_msc_freertos/src/main.c @@ -41,6 +41,7 @@ #define USBD_STACK_SIZE 4096 #else + #include "FreeRTOS.h" #include "semphr.h" #include "queue.h" @@ -54,7 +55,7 @@ #define CDC_STACK_SZIE configMINIMAL_STACK_SIZE //--------------------------------------------------------------------+ -// MACRO CONSTANT TYPEDEF PROTYPES +// MACRO CONSTANT TYPEDEF PROTOTYPES //--------------------------------------------------------------------+ /* Blink pattern @@ -62,7 +63,7 @@ * - 1000 ms : device mounted * - 2500 ms : device is suspended */ -enum { +enum { BLINK_NOT_MOUNTED = 250, BLINK_MOUNTED = 1000, BLINK_SUSPENDED = 2500, @@ -81,16 +82,15 @@ StaticTask_t cdc_taskdef; TimerHandle_t blinky_tm; -void led_blinky_cb(TimerHandle_t xTimer); -void usb_device_task(void* param); -void cdc_task(void* params); +static void led_blinky_cb(TimerHandle_t xTimer); +static void usb_device_task(void *param); +void cdc_task(void *params); //--------------------------------------------------------------------+ // Main //--------------------------------------------------------------------+ -int main(void) -{ +int main(void) { board_init(); #if configSUPPORT_STATIC_ALLOCATION @@ -104,8 +104,8 @@ int main(void) xTaskCreateStatic(cdc_task, "cdc", CDC_STACK_SZIE, NULL, configMAX_PRIORITIES-2, cdc_stack, &cdc_taskdef); #else blinky_tm = xTimerCreate(NULL, pdMS_TO_TICKS(BLINK_NOT_MOUNTED), true, NULL, led_blinky_cb); - xTaskCreate( usb_device_task, "usbd", USBD_STACK_SIZE, NULL, configMAX_PRIORITIES-1, NULL); - xTaskCreate( cdc_task, "cdc", CDC_STACK_SZIE, NULL, configMAX_PRIORITIES-2, NULL); + xTaskCreate(usb_device_task, "usbd", USBD_STACK_SIZE, NULL, configMAX_PRIORITIES - 1, NULL); + xTaskCreate(cdc_task, "cdc", CDC_STACK_SZIE, NULL, configMAX_PRIORITIES - 2, NULL); #endif xTimerStart(blinky_tm, 0); @@ -119,16 +119,14 @@ int main(void) } #if TU_CHECK_MCU(OPT_MCU_ESP32S2, OPT_MCU_ESP32S3) -void app_main(void) -{ +void app_main(void) { main(); } #endif // USB Device Driver task // This top level thread process all usb events and invoke callbacks -void usb_device_task(void* param) -{ +static void usb_device_task(void *param) { (void) param; // init device stack on configured roothub port @@ -141,8 +139,7 @@ void usb_device_task(void* param) } // RTOS forever loop - while (1) - { + while (1) { // put this thread to waiting state until there is new events tud_task(); @@ -156,35 +153,28 @@ void usb_device_task(void* param) //--------------------------------------------------------------------+ // Invoked when device is mounted -void tud_mount_cb(void) -{ +void tud_mount_cb(void) { xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_MOUNTED), 0); } // Invoked when device is unmounted -void tud_umount_cb(void) -{ +void tud_umount_cb(void) { xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_NOT_MOUNTED), 0); } // Invoked when usb bus is suspended // remote_wakeup_en : if host allow us to perform remote wakeup // Within 7ms, device must draw an average of current less than 2.5 mA from bus -void tud_suspend_cb(bool remote_wakeup_en) -{ +void tud_suspend_cb(bool remote_wakeup_en) { (void) remote_wakeup_en; xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_SUSPENDED), 0); } // Invoked when usb bus is resumed -void tud_resume_cb(void) -{ - if (tud_mounted()) - { +void tud_resume_cb(void) { + if (tud_mounted()) { xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_MOUNTED), 0); - } - else - { + } else { xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_NOT_MOUNTED), 0); } } @@ -192,20 +182,17 @@ void tud_resume_cb(void) //--------------------------------------------------------------------+ // USB CDC //--------------------------------------------------------------------+ -void cdc_task(void* params) -{ +void cdc_task(void *params) { (void) params; // RTOS forever loop - while ( 1 ) - { + while (1) { // connected() check for DTR bit // Most but not all terminal client set this when making connection // if ( tud_cdc_connected() ) { // There are data available - while ( tud_cdc_available() ) - { + while (tud_cdc_available()) { uint8_t buf[64]; // read and echo back @@ -228,32 +215,27 @@ void cdc_task(void* params) } // Invoked when cdc when line state changed e.g connected/disconnected -void tud_cdc_line_state_cb(uint8_t itf, bool dtr, bool rts) -{ +void tud_cdc_line_state_cb(uint8_t itf, bool dtr, bool rts) { (void) itf; (void) rts; // TODO set some indicator - if ( dtr ) - { + if (dtr) { // Terminal connected - }else - { + } else { // Terminal disconnected } } // Invoked when CDC interface received data from host -void tud_cdc_rx_cb(uint8_t itf) -{ +void tud_cdc_rx_cb(uint8_t itf) { (void) itf; } //--------------------------------------------------------------------+ // BLINKING TASK //--------------------------------------------------------------------+ -void led_blinky_cb(TimerHandle_t xTimer) -{ +static void led_blinky_cb(TimerHandle_t xTimer) { (void) xTimer; static bool led_state = false; diff --git a/examples/host/bare_api/CMakeLists.txt b/examples/host/bare_api/CMakeLists.txt index 05398b079..76182d6fa 100644 --- a/examples/host/bare_api/CMakeLists.txt +++ b/examples/host/bare_api/CMakeLists.txt @@ -10,6 +10,11 @@ project(${PROJECT} C CXX ASM) # Checks this example is valid for the family and initializes the project family_initialize_project(${PROJECT} ${CMAKE_CURRENT_LIST_DIR}) +# Espressif has its own cmake build system +if(FAMILY STREQUAL "espressif") + return() +endif() + add_executable(${PROJECT}) # Example source diff --git a/examples/host/cdc_msc_hid/CMakeLists.txt b/examples/host/cdc_msc_hid/CMakeLists.txt index ad5751705..a7c372a34 100644 --- a/examples/host/cdc_msc_hid/CMakeLists.txt +++ b/examples/host/cdc_msc_hid/CMakeLists.txt @@ -10,6 +10,11 @@ project(${PROJECT} C CXX ASM) # Checks this example is valid for the family and initializes the project family_initialize_project(${PROJECT} ${CMAKE_CURRENT_LIST_DIR}) +# Espressif has its own cmake build system +if(FAMILY STREQUAL "espressif") + return() +endif() + add_executable(${PROJECT}) # Example source diff --git a/examples/host/cdc_msc_hid_freertos/CMakeLists.txt b/examples/host/cdc_msc_hid_freertos/CMakeLists.txt new file mode 100644 index 000000000..2e95a18e0 --- /dev/null +++ b/examples/host/cdc_msc_hid_freertos/CMakeLists.txt @@ -0,0 +1,36 @@ +cmake_minimum_required(VERSION 3.17) + +include(${CMAKE_CURRENT_SOURCE_DIR}/../../../hw/bsp/family_support.cmake) + +# gets PROJECT name for the example (e.g. -) +family_get_project_name(PROJECT ${CMAKE_CURRENT_LIST_DIR}) + +project(${PROJECT} C CXX ASM) + +# Checks this example is valid for the family and initializes the project +family_initialize_project(${PROJECT} ${CMAKE_CURRENT_LIST_DIR}) + +# Espressif has its own cmake build system +if(FAMILY STREQUAL "espressif") + return() +endif() + +add_executable(${PROJECT}) + +# Example source +target_sources(${PROJECT} PUBLIC + ${CMAKE_CURRENT_SOURCE_DIR}/src/cdc_app.c + ${CMAKE_CURRENT_SOURCE_DIR}/src/freertos_hook.c + ${CMAKE_CURRENT_SOURCE_DIR}/src/hid_app.c + ${CMAKE_CURRENT_SOURCE_DIR}/src/main.c + ${CMAKE_CURRENT_SOURCE_DIR}/src/msc_app.c + ) + +# Example include +target_include_directories(${PROJECT} PUBLIC + ${CMAKE_CURRENT_SOURCE_DIR}/src + ) + +# Configure compilation flags and libraries for the example without RTOS. +# See the corresponding function in hw/bsp/FAMILY/family.cmake for details. +family_configure_host_example(${PROJECT} freertos) diff --git a/examples/host/cdc_msc_hid_freertos/src/CMakeLists.txt b/examples/host/cdc_msc_hid_freertos/src/CMakeLists.txt new file mode 100644 index 000000000..dd7ec8e58 --- /dev/null +++ b/examples/host/cdc_msc_hid_freertos/src/CMakeLists.txt @@ -0,0 +1,4 @@ +# This file is for ESP-IDF only +idf_component_register(SRCS "hid_app.c" "main.c" + INCLUDE_DIRS "." + REQUIRES boards tinyusb_src) diff --git a/examples/host/cdc_msc_hid_freertos/src/main.c b/examples/host/cdc_msc_hid_freertos/src/main.c new file mode 100644 index 000000000..e2ddd52eb --- /dev/null +++ b/examples/host/cdc_msc_hid_freertos/src/main.c @@ -0,0 +1,170 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2019 Ha Thach (tinyusb.org) + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + */ + +#include +#include +#include + +#include "bsp/board_api.h" +#include "tusb.h" + +#if TU_CHECK_MCU(OPT_MCU_ESP32S2, OPT_MCU_ESP32S3) + // ESP-IDF need "freertos/" prefix in include path. + // CFG_TUSB_OS_INC_PATH should be defined accordingly. + #include "freertos/FreeRTOS.h" + #include "freertos/semphr.h" + #include "freertos/queue.h" + #include "freertos/task.h" + #include "freertos/timers.h" + + #define USBH_STACK_SIZE 4096 +#else + #include "FreeRTOS.h" + #include "semphr.h" + #include "queue.h" + #include "task.h" + #include "timers.h" + + // Increase stack size when debug log is enabled + #define USBH_STACK_SIZE (3*configMINIMAL_STACK_SIZE/2) * (CFG_TUSB_DEBUG ? 2 : 1) +#endif + +//--------------------------------------------------------------------+ +// MACRO CONSTANT TYPEDEF PROTOTYPES +//--------------------------------------------------------------------+ +/* Blink pattern + * - 250 ms : device not mounted + * - 1000 ms : device mounted + * - 2500 ms : device is suspended + */ +enum { + BLINK_NOT_MOUNTED = 250, + BLINK_MOUNTED = 1000, + BLINK_SUSPENDED = 2500, +}; + +// static timer & task +#if configSUPPORT_STATIC_ALLOCATION +StaticTimer_t blinky_tmdef; + +StackType_t usb_host_stack[USBH_STACK_SIZE]; +StaticTask_t usb_host_taskdef; + +//StackType_t cdc_stack[CDC_STACK_SZIE]; +//StaticTask_t cdc_taskdef; +#endif + + +TimerHandle_t blinky_tm; + +static void led_blinky_cb(TimerHandle_t xTimer); +static void usb_host_task(void* param); + +extern void cdc_app_task(void); +extern void hid_app_task(void); + +/*------------- MAIN -------------*/ +int main(void) { + board_init(); + + printf("TinyUSB Host CDC MSC HID with FreeRTOS Example\r\n"); + +#if configSUPPORT_STATIC_ALLOCATION + // soft timer for blinky + blinky_tm = xTimerCreateStatic(NULL, pdMS_TO_TICKS(BLINK_MOUNTED), true, NULL, led_blinky_cb, &blinky_tmdef); + + // Create a task for tinyusb device stack + xTaskCreateStatic(usb_host_task, "usbh", USBH_STACK_SIZE, NULL, configMAX_PRIORITIES-1, usb_host_stack, &usb_host_taskdef); + + // Create CDC task + //xTaskCreateStatic(cdc_task, "cdc", CDC_STACK_SZIE, NULL, configMAX_PRIORITIES-2, cdc_stack, &cdc_taskdef); +#else + blinky_tm = xTimerCreate(NULL, pdMS_TO_TICKS(BLINK_NOT_MOUNTED), true, NULL, led_blinky_cb); + xTaskCreate( usb_device_task, "usbd", USBH_STACK_SIZE, NULL, configMAX_PRIORITIES-1, NULL); + //xTaskCreate( cdc_task, "cdc", CDC_STACK_SZIE, NULL, configMAX_PRIORITIES-2, NULL); +#endif + + xTimerStart(blinky_tm, 0); + + // skip starting scheduler (and return) for ESP32-S2 or ESP32-S3 +#if !TU_CHECK_MCU(OPT_MCU_ESP32S2, OPT_MCU_ESP32S3) + vTaskStartScheduler(); +#endif + + return 0; +} + +#if TU_CHECK_MCU(OPT_MCU_ESP32S2, OPT_MCU_ESP32S3) +void app_main(void) { + main(); +} +#endif + +// USB Host task +// This top level thread process all usb events and invoke callbacks +static void usb_host_task(void *param) { + (void) param; + + // init host stack on configured roothub port + tuh_init(BOARD_TUH_RHPORT); + + if (board_init_after_tusb) { + board_init_after_tusb(); + } + + // RTOS forever loop + while (1) { + // put this thread to waiting state until there is new events + tuh_task(); + + // following code only run if tuh_task() process at least 1 event + } +} + +//--------------------------------------------------------------------+ +// TinyUSB Callbacks +//--------------------------------------------------------------------+ + +void tuh_mount_cb(uint8_t dev_addr) { + // application set-up + printf("A device with address %d is mounted\r\n", dev_addr); +} + +void tuh_umount_cb(uint8_t dev_addr) { + // application tear-down + printf("A device with address %d is unmounted \r\n", dev_addr); +} + + +//--------------------------------------------------------------------+ +// BLINKING TASK +//--------------------------------------------------------------------+ +static void led_blinky_cb(TimerHandle_t xTimer) { + (void) xTimer; + static bool led_state = false; + + board_led_write(led_state); + led_state = 1 - led_state; // toggle +} diff --git a/examples/host/cdc_msc_hid_freertos/src/tusb_config.h b/examples/host/cdc_msc_hid_freertos/src/tusb_config.h new file mode 100644 index 000000000..1bed9a9b3 --- /dev/null +++ b/examples/host/cdc_msc_hid_freertos/src/tusb_config.h @@ -0,0 +1,133 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2019 Ha Thach (tinyusb.org) + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + */ + +#ifndef _TUSB_CONFIG_H_ +#define _TUSB_CONFIG_H_ + +#ifdef __cplusplus + extern "C" { +#endif + +//--------------------------------------------------------------------+ +// Board Specific Configuration +//--------------------------------------------------------------------+ + +#if CFG_TUSB_MCU == OPT_MCU_RP2040 + // change to 1 if using pico-pio-usb as host controller for raspberry rp2040 + #define CFG_TUH_RPI_PIO_USB 0 + #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB +#endif + +// RHPort number used for host can be defined by board.mk, default to port 0 +#ifndef BOARD_TUH_RHPORT +#define BOARD_TUH_RHPORT 0 +#endif + +// RHPort max operational speed can defined by board.mk +#ifndef BOARD_TUH_MAX_SPEED +#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED +#endif + +//-------------------------------------------------------------------- +// COMMON CONFIGURATION +//-------------------------------------------------------------------- + +// defined by compiler flags for flexibility +#ifndef CFG_TUSB_MCU +#error CFG_TUSB_MCU must be defined +#endif + +#ifndef CFG_TUSB_OS +#define CFG_TUSB_OS OPT_OS_FREERTOS +#endif + +// Espressif IDF requires "freertos/" prefix in include path +#if TU_CHECK_MCU(OPT_MCU_ESP32S2, OPT_MCU_ESP32S3) +#define CFG_TUSB_OS_INC_PATH freertos/ +#endif + +#ifndef CFG_TUSB_DEBUG +#define CFG_TUSB_DEBUG 0 +#endif + +// Enable Host stack +#define CFG_TUH_ENABLED 1 + +// Default is max speed that hardware controller could support with on-chip PHY +#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED + +/* USB DMA on some MCUs can only access a specific SRAM region with restriction on alignment. + * Tinyusb use follows macros to declare transferring memory so that they can be put + * into those specific section. + * e.g + * - CFG_TUSB_MEM SECTION : __attribute__ (( section(".usb_ram") )) + * - CFG_TUSB_MEM_ALIGN : __attribute__ ((aligned(4))) + */ +#ifndef CFG_TUH_MEM_SECTION +#define CFG_TUH_MEM_SECTION +#endif + +#ifndef CFG_TUH_MEM_ALIGN +#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#endif + +//-------------------------------------------------------------------- +// CONFIGURATION +//-------------------------------------------------------------------- + +// Size of buffer to hold descriptors and other data used for enumeration +#define CFG_TUH_ENUMERATION_BUFSIZE 256 + +#define CFG_TUH_HUB 1 // number of supported hubs +#define CFG_TUH_CDC 1 // CDC ACM +#define CFG_TUH_CDC_FTDI 1 // FTDI Serial. FTDI is not part of CDC class, only to re-use CDC driver API +#define CFG_TUH_CDC_CP210X 1 // CP210x Serial. CP210X is not part of CDC class, only to re-use CDC driver API +#define CFG_TUH_HID (3*CFG_TUH_DEVICE_MAX) // typical keyboard + mouse device can have 3-4 HID interfaces +#define CFG_TUH_MSC 1 +#define CFG_TUH_VENDOR 0 + +// max device support (excluding hub device): 1 hub typically has 4 ports +#define CFG_TUH_DEVICE_MAX (3*CFG_TUH_HUB + 1) + +//------------- HID -------------// +#define CFG_TUH_HID_EPIN_BUFSIZE 64 +#define CFG_TUH_HID_EPOUT_BUFSIZE 64 + +//------------- CDC -------------// + +// Set Line Control state on enumeration/mounted: +// DTR ( bit 0), RTS (bit 1) +#define CFG_TUH_CDC_LINE_CONTROL_ON_ENUM 0x03 + +// Set Line Coding on enumeration/mounted, value for cdc_line_coding_t +// bit rate = 115200, 1 stop bit, no parity, 8 bit data width +#define CFG_TUH_CDC_LINE_CODING_ON_ENUM { 115200, CDC_LINE_CONDING_STOP_BITS_1, CDC_LINE_CODING_PARITY_NONE, 8 } + + +#ifdef __cplusplus + } +#endif + +#endif /* _TUSB_CONFIG_H_ */ diff --git a/examples/host/hid_controller/CMakeLists.txt b/examples/host/hid_controller/CMakeLists.txt index 3fb630aaa..c1b500dd8 100644 --- a/examples/host/hid_controller/CMakeLists.txt +++ b/examples/host/hid_controller/CMakeLists.txt @@ -10,6 +10,11 @@ project(${PROJECT} C CXX ASM) # Checks this example is valid for the family and initializes the project family_initialize_project(${PROJECT} ${CMAKE_CURRENT_LIST_DIR}) +# Espressif has its own cmake build system +if(FAMILY STREQUAL "espressif") + return() +endif() + add_executable(${PROJECT}) # Example source diff --git a/examples/host/msc_file_explorer/CMakeLists.txt b/examples/host/msc_file_explorer/CMakeLists.txt index 1868b632e..1a57c7466 100644 --- a/examples/host/msc_file_explorer/CMakeLists.txt +++ b/examples/host/msc_file_explorer/CMakeLists.txt @@ -10,6 +10,11 @@ project(${PROJECT} C CXX ASM) # Checks this example is valid for the family and initializes the project family_initialize_project(${PROJECT} ${CMAKE_CURRENT_LIST_DIR}) +# Espressif has its own cmake build system +if(FAMILY STREQUAL "espressif") + return() +endif() + add_executable(${PROJECT}) # Example source diff --git a/examples/make.mk b/examples/make.mk index 8fe4a3486..448d7883d 100644 --- a/examples/make.mk +++ b/examples/make.mk @@ -26,9 +26,6 @@ ifeq '$(findstring ;,$(PATH))' ';' CMDEXE := 1 # makefile shell commands should use syntax for DOS CMD, not unix sh -# Unfortunately, SHELL may point to sh or bash, which can't accept DOS syntax. -# We can't just use sh, because while sh and/or bash shell may be available, -# many Windows environments won't have utilities like realpath used below, so... # Force DOS command shell on Windows. SHELL := cmd.exe endif diff --git a/hw/bsp/espressif/boards/adafruit_metro_esp32s2/board.h b/hw/bsp/espressif/boards/adafruit_metro_esp32s2/board.h index 2ec80ef47..44ff11aa0 100644 --- a/hw/bsp/espressif/boards/adafruit_metro_esp32s2/board.h +++ b/hw/bsp/espressif/boards/adafruit_metro_esp32s2/board.h @@ -36,6 +36,14 @@ #define BUTTON_PIN 0 #define BUTTON_STATE_ACTIVE 0 +// SPI for USB host shield +#define MAX3421_SPI_HOST SPI2_HOST +#define MAX3421_SCK_PIN 36 +#define MAX3421_MOSI_PIN 35 +#define MAX3421_MISO_PIN 37 +#define MAX3421_CS_PIN 15 +#define MAX3421_INTR_PIN 14 + #ifdef __cplusplus } #endif diff --git a/hw/bsp/espressif/boards/espressif_kaluga_1/board.h b/hw/bsp/espressif/boards/espressif_kaluga_1/board.h index 0acb9c439..613e6ae0c 100644 --- a/hw/bsp/espressif/boards/espressif_kaluga_1/board.h +++ b/hw/bsp/espressif/boards/espressif_kaluga_1/board.h @@ -37,6 +37,14 @@ #define BUTTON_PIN 0 #define BUTTON_STATE_ACTIVE 0 +// SPI for USB host shield +#define MAX3421_SPI_HOST SPI2_HOST +#define MAX3421_SCK_PIN 36 +#define MAX3421_MOSI_PIN 35 +#define MAX3421_MISO_PIN 37 +#define MAX3421_CS_PIN 15 +#define MAX3421_INTR_PIN 14 + #ifdef __cplusplus } #endif diff --git a/hw/bsp/espressif/boards/espressif_s2_devkitc/board.cmake b/hw/bsp/espressif/boards/espressif_s2_devkitc/board.cmake new file mode 100644 index 000000000..abbdf7abc --- /dev/null +++ b/hw/bsp/espressif/boards/espressif_s2_devkitc/board.cmake @@ -0,0 +1,2 @@ +# Apply board specific content here +set(IDF_TARGET "esp32s2") diff --git a/hw/bsp/espressif/boards/espressif_s2_devkitc/board.h b/hw/bsp/espressif/boards/espressif_s2_devkitc/board.h new file mode 100644 index 000000000..e068efef9 --- /dev/null +++ b/hw/bsp/espressif/boards/espressif_s2_devkitc/board.h @@ -0,0 +1,45 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2020, Ha Thach (tinyusb.org) + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#ifndef BOARD_H_ +#define BOARD_H_ + +#ifdef __cplusplus + extern "C" { +#endif + +// Note: On the production version (v1.2) WS2812 is connected to GPIO 18, +// however earlier revision v1.1 WS2812 is connected to GPIO 17 +#define NEOPIXEL_PIN 18 + +#define BUTTON_PIN 0 +#define BUTTON_STATE_ACTIVE 0 + +#ifdef __cplusplus + } +#endif + +#endif /* BOARD_H_ */ diff --git a/hw/bsp/espressif/boards/family.c b/hw/bsp/espressif/boards/family.c index 8f857fb71..250b7001e 100644 --- a/hw/bsp/espressif/boards/family.c +++ b/hw/bsp/espressif/boards/family.c @@ -45,16 +45,19 @@ static led_strip_t *strip; #endif -//--------------------------------------------------------------------+ -// MACRO TYPEDEF CONSTANT ENUM DECLARATION -//--------------------------------------------------------------------+ +#if CFG_TUH_ENABLED && CFG_TUH_MAX3421 +#include "driver/spi_master.h" +static void max3421_init(void); +#endif static void configure_pins(usb_hal_context_t *usb); -// Initialize on-board peripherals : led, button, uart and USB -void board_init(void) -{ +//--------------------------------------------------------------------+ +// Implementation +//--------------------------------------------------------------------+ +// Initialize on-board peripherals : led, button, uart and USB +void board_init(void) { #ifdef NEOPIXEL_PIN #ifdef NEOPIXEL_POWER_PIN gpio_reset_pin(NEOPIXEL_POWER_PIN); @@ -79,23 +82,27 @@ void board_init(void) gpio_set_direction(BUTTON_PIN, GPIO_MODE_INPUT); gpio_set_pull_mode(BUTTON_PIN, BUTTON_STATE_ACTIVE ? GPIO_PULLDOWN_ONLY : GPIO_PULLUP_ONLY); +#if CFG_TUD_ENABLED // USB Controller Hal init periph_module_reset(PERIPH_USB_MODULE); periph_module_enable(PERIPH_USB_MODULE); usb_hal_context_t hal = { - .use_external_phy = false // use built-in PHY + .use_external_phy = false // use built-in PHY }; usb_hal_init(&hal); configure_pins(&hal); +#endif + +#if CFG_TUH_ENABLED && CFG_TUH_MAX3421 + max3421_init(); +#endif } -static void configure_pins(usb_hal_context_t *usb) -{ +static void configure_pins(usb_hal_context_t *usb) { /* usb_periph_iopins currently configures USB_OTG as USB Device. * Introduce additional parameters in usb_hal_context_t when adding support - * for USB Host. - */ + * for USB Host. */ for (const usb_iopin_dsc_t *iopin = usb_periph_iopins; iopin->pin != -1; ++iopin) { if ((usb->use_external_phy) || (iopin->ext_phy_only == 0)) { esp_rom_gpio_pad_select_gpio(iopin->pin); @@ -115,6 +122,7 @@ static void configure_pins(usb_hal_context_t *usb) esp_rom_gpio_pad_unhold(iopin->pin); } } + if (!usb->use_external_phy) { gpio_set_drive_capability(USBPHY_DM_NUM, GPIO_DRIVE_CAP_3); gpio_set_drive_capability(USBPHY_DP_NUM, GPIO_DRIVE_CAP_3); @@ -122,8 +130,7 @@ static void configure_pins(usb_hal_context_t *usb) } // Turn LED on or off -void board_led_write(bool state) -{ +void board_led_write(bool state) { #ifdef NEOPIXEL_PIN strip->set_pixel(strip, 0, (state ? 0x88 : 0x00), 0x00, 0x00); strip->refresh(strip, 100); @@ -132,21 +139,102 @@ void board_led_write(bool state) // Get the current state of button // a '1' means active (pressed), a '0' means inactive. -uint32_t board_button_read(void) -{ +uint32_t board_button_read(void) { return gpio_get_level(BUTTON_PIN) == BUTTON_STATE_ACTIVE; } // Get characters from UART -int board_uart_read(uint8_t* buf, int len) -{ - (void) buf; (void) len; +int board_uart_read(uint8_t *buf, int len) { + (void) buf; + (void) len; return 0; } // Send characters to UART -int board_uart_write(void const * buf, int len) -{ - (void) buf; (void) len; +int board_uart_write(void const *buf, int len) { + (void) buf; + (void) len; return 0; } + +//--------------------------------------------------------------------+ +// API: SPI transfer with MAX3421E, must be implemented by application +//--------------------------------------------------------------------+ +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 + +static spi_device_handle_t max3421_spi; + +static void IRAM_ATTR max3421_isr_handler(void* arg) +{ + (void) arg; + //uint32_t gpio_num = (uint32_t) arg; + //xQueueSendFromISR(gpio_evt_queue, &gpio_num, NULL); + tuh_int_handler(1); +} + +static void max3421_init(void) { + // CS pin + gpio_set_direction(MAX3421_CS_PIN, GPIO_MODE_OUTPUT); + gpio_set_level(MAX3421_CS_PIN, 1); + + // SPI + spi_bus_config_t buscfg={ + .miso_io_num = MAX3421_MISO_PIN, + .mosi_io_num = MAX3421_MOSI_PIN, + .sclk_io_num = MAX3421_SCK_PIN, + .quadwp_io_num = -1, + .quadhd_io_num = -1, + .data4_io_num = -1, + .data5_io_num = -1, + .data6_io_num = -1, + .data7_io_num = -1, + .max_transfer_sz = 128 + }; + ESP_ERROR_CHECK( spi_bus_initialize(MAX3421_SPI_HOST, &buscfg, SPI_DMA_CH_AUTO) ); + + spi_device_interface_config_t max3421_cfg = { + .command_bits = 8, + .mode = 0, + .clock_speed_hz = 4000000, // 26000000 + .spics_io_num = -1, // manual control CS + .queue_size = 1 + }; + ESP_ERROR_CHECK( spi_bus_add_device(MAX3421_SPI_HOST, &max3421_cfg, &max3421_spi) ); + + // Interrupt pin +// gpio_set_direction(MAX3421_INTR_PIN, GPIO_MODE_INPUT); +// gpio_set_intr_type(MAX3421_INTR_PIN, GPIO_INTR_NEGEDGE); +// +// gpio_install_isr_service(ESP_INTR_FLAG_EDGE); +// gpio_isr_handler_add(MAX3421_INTR_PIN, max3421_isr_handler, NULL); +} + +void tuh_max3421_int_api(uint8_t rhport, bool enabled) { + (void) rhport; + if (enabled) { + gpio_intr_enable(MAX3421_INTR_PIN); + } else { + gpio_intr_disable(MAX3421_INTR_PIN); + } +} + +void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { + (void) rhport; + gpio_set_level(MAX3421_CS_PIN, active ? 0 : 1); +} + +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { + (void) rhport; + + spi_transaction_t xact = { + .length = tx_len, + .rxlength = rx_len, + .tx_buffer = tx_buf, + .rx_buffer = rx_buf + }; + + ESP_ERROR_CHECK(spi_device_transmit(max3421_spi, &xact)); + return true; +} + +#endif diff --git a/hw/bsp/espressif/components/tinyusb_src/CMakeLists.txt b/hw/bsp/espressif/components/tinyusb_src/CMakeLists.txt index bf8e45be2..2a154a8ff 100644 --- a/hw/bsp/espressif/components/tinyusb_src/CMakeLists.txt +++ b/hw/bsp/espressif/components/tinyusb_src/CMakeLists.txt @@ -16,40 +16,57 @@ else() return() endif() -list(APPEND compile_options - "-DCFG_TUSB_MCU=${tusb_mcu}" - "-DCFG_TUSB_OS=OPT_OS_FREERTOS" - #"-DCFG_TUSB_DEBUG=1" - ) +list(APPEND compile_definitions + CFG_TUSB_MCU=${tusb_mcu} + CFG_TUSB_OS=OPT_OS_FREERTOS + ) -idf_component_get_property(freertos_component_dir freertos COMPONENT_DIR) +list(APPEND srcs + # common + ${tusb_src}/tusb.c + ${tusb_src}/common/tusb_fifo.c + # device + ${tusb_src}/device/usbd.c + ${tusb_src}/device/usbd_control.c + ${tusb_src}/class/audio/audio_device.c + ${tusb_src}/class/cdc/cdc_device.c + ${tusb_src}/class/dfu/dfu_device.c + ${tusb_src}/class/dfu/dfu_rt_device.c + ${tusb_src}/class/hid/hid_device.c + ${tusb_src}/class/midi/midi_device.c + ${tusb_src}/class/msc/msc_device.c + ${tusb_src}/class/net/ecm_rndis_device.c + ${tusb_src}/class/net/ncm_device.c + ${tusb_src}/class/usbtmc/usbtmc_device.c + ${tusb_src}/class/vendor/vendor_device.c + ${tusb_src}/class/video/video_device.c + ${tusb_src}/portable/synopsys/dwc2/dcd_dwc2.c + # host + ${tusb_src}/host/usbh.c + ${tusb_src}/host/hub.c + ${tusb_src}/class/cdc/cdc_host.c + ${tusb_src}/class/hid/hid_host.c + ${tusb_src}/class/msc/msc_host.c + ${tusb_src}/class/vendor/vendor_host.c + ) -list(APPEND includes_public - "${tusb_src}" - # The FreeRTOS API include convention in tinyusb is different from esp-idf - #"${freertos_component_dir}/include/freertos" - ) +# use max3421 as host controller +if (MAX3421_HOST STREQUAL "1") + list(APPEND srcs ${tusb_src}/portable/analog/max3421/hcd_max3421.c) + list(APPEND compile_definitions CFG_TUH_MAX3421=1) +endif () -list(APPEND srcs - "${tusb_src}/tusb.c" - "${tusb_src}/common/tusb_fifo.c" - "${tusb_src}/device/usbd.c" - "${tusb_src}/device/usbd_control.c" - "${tusb_src}/class/cdc/cdc_device.c" - "${tusb_src}/class/dfu/dfu_rt_device.c" - "${tusb_src}/class/hid/hid_device.c" - "${tusb_src}/class/midi/midi_device.c" - "${tusb_src}/class/msc/msc_device.c" - "${tusb_src}/class/net/ecm_rndis_device.c" - "${tusb_src}/class/net/ncm_device.c" - "${tusb_src}/class/usbtmc/usbtmc_device.c" - "${tusb_src}/class/vendor/vendor_device.c" - "${tusb_src}/portable/synopsys/dwc2/dcd_dwc2.c" - ) +if (DEFINED LOG) + list(APPEND compile_definitions CFG_TUSB_DEBUG=${LOG}) + if (LOG STREQUAL "4") + # no inline for debug level 4 + list(APPEND compile_definitions TU_ATTR_ALWAYS_INLINE=) + endif () +endif() idf_component_register(SRCS ${srcs} - INCLUDE_DIRS ${includes_public} - REQUIRES src - ) + INCLUDE_DIRS ${tusb_src} + REQUIRES src + ) -target_compile_options(${COMPONENT_LIB} PUBLIC ${compile_options}) +target_compile_definitions(${COMPONENT_LIB} PUBLIC ${compile_definitions}) diff --git a/src/host/usbh.c b/src/host/usbh.c index e332f35cc..dc2831da3 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -659,7 +659,7 @@ static bool usbh_control_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result tusb_control_request_t const * request = &_ctrl_xfer.request; if (XFER_RESULT_SUCCESS != result) { - TU_LOG1("[%u:%u] Control %s, xferred_bytes = %lu\r\n", rhport, dev_addr, result == XFER_RESULT_STALLED ? "STALLED" : "FAILED", xferred_bytes); + TU_LOG1("[%u:%u] Control %s, xferred_bytes = %u\r\n", rhport, dev_addr, result == XFER_RESULT_STALLED ? "STALLED" : "FAILED", xferred_bytes); TU_LOG1_BUF(request, 8); TU_LOG1("\r\n"); diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index f3f76fd58..3f6747404 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -882,7 +882,7 @@ void hcd_int_handler(uint8_t rhport) { if ( hirq & HIRQ_RCVDAV_IRQ ) { uint8_t const ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; max3421_ep_t *ep = find_opened_ep(_hcd_data.peraddr, ep_num, 1); - uint8_t xact_len; + uint8_t xact_len = 0; // RCVDAV_IRQ can trigger 2 times (dual buffered) while ( hirq & HIRQ_RCVDAV_IRQ ) { -- cgit v1.3.1 From 1168e4e16343cc0a6d958899460f1b841624974f Mon Sep 17 00:00:00 2001 From: bac Date: Tue, 26 Sep 2023 15:27:17 +0100 Subject: Added support for USB2 HS peripheral (with integrated HS PHY) on STM32U59x chips --- src/portable/synopsys/dwc2/dwc2_stm32.h | 12 +++++++++++- 1 file changed, 11 insertions(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dwc2_stm32.h b/src/portable/synopsys/dwc2/dwc2_stm32.h index cb455bd90..aa77511fa 100644 --- a/src/portable/synopsys/dwc2/dwc2_stm32.h +++ b/src/portable/synopsys/dwc2/dwc2_stm32.h @@ -84,7 +84,17 @@ #elif CFG_TUSB_MCU == OPT_MCU_STM32U5 #include "stm32u5xx.h" - #define USB_OTG_FS_PERIPH_BASE USB_OTG_FS_BASE + // NOTE: STM595/5A5/599/5A9 only have 1 USB port (with integrated HS PHY) + // USB_OTG_FS_BASE and OTG_FS_IRQn not defined + #if (! defined USB_OTG_FS) + #define USB_OTG_HS_PERIPH_BASE USB_OTG_HS_BASE + #define EP_MAX_HS 9 + #define EP_FIFO_SIZE_HS 4096 + #define USB_OTG_FS_PERIPH_BASE USB_OTG_HS_BASE + #define OTG_FS_IRQn OTG_HS_IRQn + #else + #define USB_OTG_FS_PERIPH_BASE USB_OTG_FS_BASE + #endif #define EP_MAX_FS 6 #define EP_FIFO_SIZE_FS 1280 -- cgit v1.3.1 From 2f6592de7f94851cfcca411242398c5da7b792de Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 27 Sep 2023 11:30:18 +0700 Subject: update max3421 to have hcd_int_handler_ext() --- hw/bsp/espressif/boards/family.c | 22 ++++++++++- src/host/hcd.h | 3 ++ src/portable/analog/max3421/hcd_max3421.c | 62 ++++++++++++++++--------------- 3 files changed, 55 insertions(+), 32 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/espressif/boards/family.c b/hw/bsp/espressif/boards/family.c index d96d86670..a04e1e7c5 100644 --- a/hw/bsp/espressif/boards/family.c +++ b/hw/bsp/espressif/boards/family.c @@ -167,15 +167,30 @@ int board_getchar(void) { #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 static spi_device_handle_t max3421_spi; +SemaphoreHandle_t max3421_intr_sem; static void IRAM_ATTR max3421_isr_handler(void* arg) { (void) arg; // arg is gpio num - //xQueueSendFromISR(gpio_evt_queue, &gpio_num, NULL); gpio_set_level(13, 1); - tuh_int_handler(1); + + BaseType_t xHigherPriorityTaskWoken = pdFALSE; + xSemaphoreGiveFromISR(max3421_intr_sem, &xHigherPriorityTaskWoken); + if (xHigherPriorityTaskWoken) { + portYIELD_FROM_ISR(); + } + gpio_set_level(13, 0); } +static void max3421_intr_task(void* param) { + (void) param; + + while (1) { + xSemaphoreTake(max3421_intr_sem, portMAX_DELAY); + tuh_int_handler(BOARD_TUH_RHPORT); + } +} + static void max3421_init(void) { // CS pin gpio_set_direction(MAX3421_CS_PIN, GPIO_MODE_OUTPUT); @@ -209,6 +224,9 @@ static void max3421_init(void) { gpio_set_level(13, 0); // Interrupt pin + max3421_intr_sem = xSemaphoreCreateBinary(); + xTaskCreate(max3421_intr_task, "max3421 intr", 2048, NULL, configMAX_PRIORITIES-1, NULL); + gpio_set_direction(MAX3421_INTR_PIN, GPIO_MODE_INPUT); gpio_set_intr_type(MAX3421_INTR_PIN, GPIO_INTR_NEGEDGE); diff --git a/src/host/hcd.h b/src/host/hcd.h index e25b20ea3..a2d4da85d 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -133,6 +133,9 @@ bool hcd_init(uint8_t rhport); // Interrupt Handler void hcd_int_handler(uint8_t rhport); +// Interrupt Hanndler (extended version) +void hcd_int_handler_ext(uint8_t rhport, bool in_isr); + // Enable USB interrupt void hcd_int_enable (uint8_t rhport); diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 3f6747404..652a971ee 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -428,8 +428,8 @@ bool hcd_init(uint8_t rhport) { reg_write(rhport, PINCTL_ADDR, PINCTL_FDUPSPI, false); // V1 is 0x01, V2 is 0x12, V3 is 0x13 - // uint8_t const revision = reg_read(rhport, REVISION_ADDR, false); - // TU_LOG2_HEX(revision); + uint8_t const revision = reg_read(rhport, REVISION_ADDR, false); + TU_LOG2_HEX(revision); // reset reg_write(rhport, USBCTL_ADDR, USBCTL_CHIPRES, false); @@ -693,9 +693,7 @@ static void handle_connect_irq(uint8_t rhport, bool in_isr) { // port reset anyway, this will help to stable bus signal for next connection reg_write(rhport, HCTL_ADDR, HCTL_BUSRST, in_isr); - hcd_event_device_remove(rhport, in_isr); - reg_write(rhport, HCTL_ADDR, 0, in_isr); break; @@ -721,13 +719,12 @@ static void handle_connect_irq(uint8_t rhport, bool in_isr) { free_ep(daddr); hcd_event_device_attach(rhport, in_isr); - break; } } } -static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t hrsl) { +static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t result, uint8_t hrsl, bool in_isr) { uint8_t const ep_addr = tu_edpt_addr(ep->ep_num, ep->ep_dir); // save data toggle @@ -738,20 +735,20 @@ static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t re } ep->xfer_pending = 0; - hcd_event_xfer_complete(ep->daddr, ep_addr, ep->xferred_len, result, true); + hcd_event_xfer_complete(ep->daddr, ep_addr, ep->xferred_len, result, in_isr); // Find next pending endpoint max3421_ep_t *next_ep = find_next_pending_ep(ep); if (next_ep) { - xact_inout(rhport, next_ep, true, true); + xact_inout(rhport, next_ep, true, in_isr); }else { // no more pending atomic_flag_clear(&_hcd_data.busy); } } -static void handle_xfer_done(uint8_t rhport) { - uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, true); +static void handle_xfer_done(uint8_t rhport, bool in_isr) { + uint8_t const hrsl = reg_read(rhport, HRSL_ADDR, in_isr); uint8_t const hresult = hrsl & HRSL_RESULT_MASK; uint8_t const ep_num = _hcd_data.hxfr & HXFR_EPNUM_MASK; @@ -774,17 +771,17 @@ static void handle_xfer_done(uint8_t rhport) { case HRSL_NAK: if (ep_num == 0) { // NAK on control, retry immediately - hxfr_write(rhport, _hcd_data.hxfr, true); + hxfr_write(rhport, _hcd_data.hxfr, in_isr); }else { // NAK on non-control, find next pending to switch max3421_ep_t *next_ep = find_next_pending_ep(ep); if (ep == next_ep) { // this endpoint is only one pending, retry immediately - hxfr_write(rhport, _hcd_data.hxfr, true); + hxfr_write(rhport, _hcd_data.hxfr, in_isr); }else if (next_ep) { // switch to next pending TODO could have issue with double buffered if not clear previously out data - xact_inout(rhport, next_ep, true, true); + xact_inout(rhport, next_ep, true, in_isr); }else { TU_ASSERT(false,); } @@ -802,7 +799,7 @@ static void handle_xfer_done(uint8_t rhport) { } if (xfer_result != XFER_RESULT_SUCCESS) { - xfer_complete_isr(rhport, ep, xfer_result, hrsl); + xfer_complete_isr(rhport, ep, xfer_result, hrsl, in_isr); return; } @@ -814,10 +811,10 @@ static void handle_xfer_done(uint8_t rhport) { // short packet or all bytes transferred if ( ep->xfer_complete ) { - xfer_complete_isr(rhport, ep, xfer_result, hrsl); + xfer_complete_isr(rhport, ep, xfer_result, hrsl, in_isr); }else { // more to transfer - hxfr_write(rhport, _hcd_data.hxfr, true); + hxfr_write(rhport, _hcd_data.hxfr, in_isr); } } else { // SETUP or OUT transfer @@ -835,10 +832,10 @@ static void handle_xfer_done(uint8_t rhport) { ep->buf += xact_len; if (xact_len < ep->packet_size || ep->xferred_len >= ep->total_len) { - xfer_complete_isr(rhport, ep, xfer_result, hrsl); + xfer_complete_isr(rhport, ep, xfer_result, hrsl, in_isr); } else { // more to transfer - xact_out(rhport, ep, false, true); + xact_out(rhport, ep, false, in_isr); } } } @@ -862,9 +859,9 @@ void print_hirq(uint8_t hirq) { #define print_hirq(hirq) #endif -// Interrupt Handler -void hcd_int_handler(uint8_t rhport) { - uint8_t hirq = reg_read(rhport, HIRQ_ADDR, true) & _hcd_data.hien; +// Interrupt handler (extended) +void hcd_int_handler_ext(uint8_t rhport, bool in_isr) { + uint8_t hirq = reg_read(rhport, HIRQ_ADDR, in_isr) & _hcd_data.hien; if (!hirq) return; // print_hirq(hirq); @@ -873,7 +870,7 @@ void hcd_int_handler(uint8_t rhport) { } if (hirq & HIRQ_CONDET_IRQ) { - handle_connect_irq(rhport, true); + handle_connect_irq(rhport, in_isr); } // queue more transfer in handle_xfer_done() can cause hirq to be set again while external IRQ may not catch and/or @@ -886,17 +883,17 @@ void hcd_int_handler(uint8_t rhport) { // RCVDAV_IRQ can trigger 2 times (dual buffered) while ( hirq & HIRQ_RCVDAV_IRQ ) { - uint8_t rcvbc = reg_read(rhport, RCVBC_ADDR, true); + uint8_t rcvbc = reg_read(rhport, RCVBC_ADDR, in_isr); xact_len = (uint8_t) tu_min16(rcvbc, ep->total_len - ep->xferred_len); if ( xact_len ) { - fifo_read(rhport, ep->buf, xact_len, true); + fifo_read(rhport, ep->buf, xact_len, in_isr); ep->buf += xact_len; ep->xferred_len += xact_len; } // ack RCVDVAV IRQ - hirq_write(rhport, HIRQ_RCVDAV_IRQ, true); - hirq = reg_read(rhport, HIRQ_ADDR, true); + hirq_write(rhport, HIRQ_RCVDAV_IRQ, in_isr); + hirq = reg_read(rhport, HIRQ_ADDR, in_isr); } if ( xact_len < ep->packet_size || ep->xferred_len >= ep->total_len ) { @@ -905,18 +902,23 @@ void hcd_int_handler(uint8_t rhport) { } if ( hirq & HIRQ_HXFRDN_IRQ ) { - hirq_write(rhport, HIRQ_HXFRDN_IRQ, true); - handle_xfer_done(rhport); + hirq_write(rhport, HIRQ_HXFRDN_IRQ, in_isr); + handle_xfer_done(rhport, in_isr); } - hirq = reg_read(rhport, HIRQ_ADDR, true); + hirq = reg_read(rhport, HIRQ_ADDR, in_isr); } // clear all interrupt except SNDBAV_IRQ (never clear by us). Note RCVDAV_IRQ, HXFRDN_IRQ already clear while processing hirq &= ~HIRQ_SNDBAV_IRQ; if ( hirq ) { - hirq_write(rhport, hirq, true); + hirq_write(rhport, hirq, in_isr); } } +// Interrupt Handler +void hcd_int_handler(uint8_t rhport) { + hcd_int_handler_ext(rhport, true); +} + #endif -- cgit v1.3.1 From 3b0ffd0f488671f1bafa4bcd9e22dd51f8bb6dee Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 27 Sep 2023 15:51:03 +0700 Subject: change hcd_int_handler(rhport, in_isr) signature: add in_isr change tuh_int_handler() to take in_isr as optional parameter (default = true) --- examples/host/bare_api/only.txt | 1 + examples/host/cdc_msc_hid/only.txt | 1 + examples/host/hid_controller/only.txt | 1 + examples/host/msc_file_explorer/only.txt | 1 + hw/bsp/imxrt/family.c | 4 +- hw/bsp/kinetis_kl/family.c | 2 +- hw/bsp/kinetis_kl/family.cmake | 75 ++++++++++---------- .../lpc17/boards/lpcxpresso1769/lpcxpresso1769.c | 2 +- hw/bsp/lpc17/boards/mbed1768/mbed1768.c | 2 +- hw/bsp/lpc18/family.c | 55 ++++++--------- hw/bsp/lpc40/family.c | 2 +- hw/bsp/lpc43/family.c | 4 +- hw/bsp/msp432e4/family.c | 2 +- hw/bsp/ngx4330/ngx4330.c | 4 +- hw/bsp/nrf/family.c | 2 +- hw/bsp/ra/family.c | 6 +- hw/bsp/rx/boards/rx65n_target/rx65n_target.c | 2 +- hw/bsp/samd21/family.c | 2 +- hw/bsp/samd51/family.c | 2 +- hw/bsp/stm32g4/family.cmake | 81 +++++++++++----------- hw/bsp/tm4c123/family.c | 2 +- src/common/tusb_common.h | 2 - src/common/tusb_timeout.h | 80 --------------------- src/common/tusb_verify.h | 52 +++++--------- src/host/hcd.h | 2 +- src/host/usbh.h | 11 ++- src/portable/analog/max3421/hcd_max3421.c | 3 +- src/portable/ehci/ehci.c | 4 +- src/portable/mentor/musb/hcd_musb.c | 4 +- src/portable/nxp/khci/hcd_khci.c | 7 +- src/portable/ohci/ohci.c | 5 +- src/portable/raspberrypi/rp2040/hcd_rp2040.c | 4 +- src/portable/renesas/rusb2/hcd_rusb2.c | 5 +- src/portable/template/hcd_template.c | 3 +- src/tusb.h | 4 +- 35 files changed, 172 insertions(+), 267 deletions(-) delete mode 100644 src/common/tusb_timeout.h (limited to 'src/portable') diff --git a/examples/host/bare_api/only.txt b/examples/host/bare_api/only.txt index 3837ac8a2..fee10f9e2 100644 --- a/examples/host/bare_api/only.txt +++ b/examples/host/bare_api/only.txt @@ -1,3 +1,4 @@ +mcu:KINETIS_KL mcu:LPC175X_6X mcu:LPC177X_8X mcu:LPC18XX diff --git a/examples/host/cdc_msc_hid/only.txt b/examples/host/cdc_msc_hid/only.txt index 3837ac8a2..fee10f9e2 100644 --- a/examples/host/cdc_msc_hid/only.txt +++ b/examples/host/cdc_msc_hid/only.txt @@ -1,3 +1,4 @@ +mcu:KINETIS_KL mcu:LPC175X_6X mcu:LPC177X_8X mcu:LPC18XX diff --git a/examples/host/hid_controller/only.txt b/examples/host/hid_controller/only.txt index 3837ac8a2..fee10f9e2 100644 --- a/examples/host/hid_controller/only.txt +++ b/examples/host/hid_controller/only.txt @@ -1,3 +1,4 @@ +mcu:KINETIS_KL mcu:LPC175X_6X mcu:LPC177X_8X mcu:LPC18XX diff --git a/examples/host/msc_file_explorer/only.txt b/examples/host/msc_file_explorer/only.txt index 3837ac8a2..fee10f9e2 100644 --- a/examples/host/msc_file_explorer/only.txt +++ b/examples/host/msc_file_explorer/only.txt @@ -1,3 +1,4 @@ +mcu:KINETIS_KL mcu:LPC175X_6X mcu:LPC177X_8X mcu:LPC18XX diff --git a/hw/bsp/imxrt/family.c b/hw/bsp/imxrt/family.c index ec95a8b24..32d89f794 100644 --- a/hw/bsp/imxrt/family.c +++ b/hw/bsp/imxrt/family.c @@ -188,7 +188,7 @@ void USB_OTG1_IRQHandler(void) #endif #if PORT_SUPPORT_HOST(0) - tuh_int_handler(0); + tuh_int_handler(0, true); #endif } @@ -199,7 +199,7 @@ void USB_OTG2_IRQHandler(void) #endif #if PORT_SUPPORT_HOST(1) - tuh_int_handler(1); + tuh_int_handler(1, true); #endif } diff --git a/hw/bsp/kinetis_kl/family.c b/hw/bsp/kinetis_kl/family.c index 3e9aa83a4..c436be3e6 100644 --- a/hw/bsp/kinetis_kl/family.c +++ b/hw/bsp/kinetis_kl/family.c @@ -39,7 +39,7 @@ void USB0_IRQHandler(void) { #if CFG_TUH_ENABLED - tuh_int_handler(0); + tuh_int_handler(0, true); #endif #if CFG_TUD_ENABLED tud_int_handler(0); diff --git a/hw/bsp/kinetis_kl/family.cmake b/hw/bsp/kinetis_kl/family.cmake index 793ef1783..4151979a0 100644 --- a/hw/bsp/kinetis_kl/family.cmake +++ b/hw/bsp/kinetis_kl/family.cmake @@ -22,48 +22,47 @@ set(FAMILY_MCUS KINETIS_KL CACHE INTERNAL "") #------------------------------------ # only need to be built ONCE for all examples function(add_board_target BOARD_TARGET) - if (NOT TARGET ${BOARD_TARGET}) - add_library(${BOARD_TARGET} STATIC - ${SDK_DIR}/drivers/gpio/fsl_gpio.c - ${SDK_DIR}/drivers/lpsci/fsl_lpsci.c - ${SDK_DIR}/drivers/uart/fsl_uart.c - ${SDK_DIR}/devices/${MCU_VARIANT}/drivers/fsl_clock.c - ${SDK_DIR}/devices/${MCU_VARIANT}/system_${MCU_VARIANT}.c - ) - target_compile_definitions(${BOARD_TARGET} PUBLIC - ) - target_include_directories(${BOARD_TARGET} PUBLIC - ${CMSIS_DIR}/CMSIS/Core/Include - ${SDK_DIR}/devices/${MCU_VARIANT} - ${SDK_DIR}/devices/${MCU_VARIANT}/drivers - ${SDK_DIR}/drivers/common - ${SDK_DIR}/drivers/gpio - ${SDK_DIR}/drivers/lpsci - ${SDK_DIR}/drivers/port - ${SDK_DIR}/drivers/smc - ${SDK_DIR}/drivers/uart - ) + if (TARGET ${BOARD_TARGET}) + return() + endif () - update_board(${BOARD_TARGET}) + add_library(${BOARD_TARGET} STATIC + ${SDK_DIR}/drivers/gpio/fsl_gpio.c + ${SDK_DIR}/drivers/lpsci/fsl_lpsci.c + ${SDK_DIR}/drivers/uart/fsl_uart.c + ${SDK_DIR}/devices/${MCU_VARIANT}/drivers/fsl_clock.c + ${SDK_DIR}/devices/${MCU_VARIANT}/system_${MCU_VARIANT}.c + ) + target_compile_definitions(${BOARD_TARGET} PUBLIC + ) + target_include_directories(${BOARD_TARGET} PUBLIC + ${CMSIS_DIR}/CMSIS/Core/Include + ${SDK_DIR}/devices/${MCU_VARIANT} + ${SDK_DIR}/devices/${MCU_VARIANT}/drivers + ${SDK_DIR}/drivers/common + ${SDK_DIR}/drivers/gpio + ${SDK_DIR}/drivers/lpsci + ${SDK_DIR}/drivers/port + ${SDK_DIR}/drivers/smc + ${SDK_DIR}/drivers/uart + ) + update_board(${BOARD_TARGET}) - # LD_FILE and STARTUP_FILE can be defined in board.cmake + # LD_FILE and STARTUP_FILE can be defined in board.cmake + target_sources(${BOARD_TARGET} PUBLIC + ${STARTUP_FILE_${CMAKE_C_COMPILER_ID}} + ) - target_sources(${BOARD_TARGET} PUBLIC - ${STARTUP_FILE_${CMAKE_C_COMPILER_ID}} + if (CMAKE_C_COMPILER_ID STREQUAL "GNU") + target_link_options(${BOARD_TARGET} PUBLIC + "LINKER:--script=${LD_FILE_GNU}" + # nanolib + --specs=nosys.specs --specs=nano.specs + ) + elseif (CMAKE_C_COMPILER_ID STREQUAL "IAR") + target_link_options(${BOARD_TARGET} PUBLIC + "LINKER:--config=${LD_FILE_IAR}" ) - - if (CMAKE_C_COMPILER_ID STREQUAL "GNU") - target_link_options(${BOARD_TARGET} PUBLIC - "LINKER:--script=${LD_FILE_GNU}" - # nanolib - --specs=nosys.specs - --specs=nano.specs - ) - elseif (CMAKE_C_COMPILER_ID STREQUAL "IAR") - target_link_options(${BOARD_TARGET} PUBLIC - "LINKER:--config=${LD_FILE_IAR}" - ) - endif () endif () endfunction() diff --git a/hw/bsp/lpc17/boards/lpcxpresso1769/lpcxpresso1769.c b/hw/bsp/lpc17/boards/lpcxpresso1769/lpcxpresso1769.c index c7d655368..8c26b906f 100644 --- a/hw/bsp/lpc17/boards/lpcxpresso1769/lpcxpresso1769.c +++ b/hw/bsp/lpc17/boards/lpcxpresso1769/lpcxpresso1769.c @@ -37,7 +37,7 @@ void USB_IRQHandler(void) #endif #if CFG_TUH_ENABLED - tuh_int_handler(0); + tuh_int_handler(0, true); #endif } diff --git a/hw/bsp/lpc17/boards/mbed1768/mbed1768.c b/hw/bsp/lpc17/boards/mbed1768/mbed1768.c index b2c92d640..613dcb570 100644 --- a/hw/bsp/lpc17/boards/mbed1768/mbed1768.c +++ b/hw/bsp/lpc17/boards/mbed1768/mbed1768.c @@ -151,7 +151,7 @@ void USB_IRQHandler(void) #endif #if CFG_TUH_ENABLED - tuh_int_handler(0); + tuh_int_handler(0, true); #endif } diff --git a/hw/bsp/lpc18/family.c b/hw/bsp/lpc18/family.c index b11f4fe0e..e6abecb4b 100644 --- a/hw/bsp/lpc18/family.c +++ b/hw/bsp/lpc18/family.c @@ -43,25 +43,23 @@ //--------------------------------------------------------------------+ // USB Interrupt Handler //--------------------------------------------------------------------+ -void USB0_IRQHandler(void) -{ +void USB0_IRQHandler(void) { #if PORT_SUPPORT_DEVICE(0) - tud_int_handler(0); + tud_int_handler(0); #endif #if PORT_SUPPORT_HOST(0) - tuh_int_handler(0); + tuh_int_handler(0, true); #endif } -void USB1_IRQHandler(void) -{ +void USB1_IRQHandler(void) { #if PORT_SUPPORT_DEVICE(1) - tud_int_handler(1); + tud_int_handler(1); #endif #if PORT_SUPPORT_HOST(1) - tuh_int_handler(1); + tuh_int_handler(1, true); #endif } @@ -74,28 +72,26 @@ const uint32_t OscRateIn = 12000000; const uint32_t ExtRateIn = 0; // Invoked by startup code -void SystemInit(void) -{ +void SystemInit(void) { #ifdef __USE_LPCOPEN - extern void (* const g_pfnVectors[])(void); + extern void (*const g_pfnVectors[])(void); unsigned int *pSCB_VTOR = (unsigned int *) 0xE000ED08; - *pSCB_VTOR = (unsigned int) g_pfnVectors; + *pSCB_VTOR = (unsigned int) g_pfnVectors; #endif board_lpc18_pinmux(); - #ifdef TRACE_ETM +#ifdef TRACE_ETM // Trace clock is limited to 60MHz, limit CPU clock to 120MHz Chip_SetupCoreClock(CLKIN_CRYSTAL, 120000000UL, true); - #else +#else // CPU clock max to 180 Mhz Chip_SetupCoreClock(CLKIN_CRYSTAL, MAX_CLOCK_FREQ, true); - #endif +#endif } -void board_init(void) -{ +void board_init(void) { SystemCoreClockUpdate(); #if CFG_TUSB_OS == OPT_OS_NONE @@ -135,27 +131,22 @@ void board_init(void) // Board porting API //--------------------------------------------------------------------+ -void board_led_write(bool state) -{ +void board_led_write(bool state) { Chip_GPIO_SetPinState(LPC_GPIO_PORT, LED_PORT, LED_PIN, state); } -uint32_t board_button_read(void) -{ +uint32_t board_button_read(void) { // active low return Chip_GPIO_GetPinState(LPC_GPIO_PORT, BUTTON_PORT, BUTTON_PIN) ? 0 : 1; } -int board_uart_read(uint8_t* buf, int len) -{ +int board_uart_read(uint8_t *buf, int len) { return Chip_UART_Read(UART_DEV, buf, len); } -int board_uart_write(void const * buf, int len) -{ - uint8_t const* buf8 = (uint8_t const*) buf; - for(int i=0; iINTFLAG.reg = EIC_INTFLAG_EXTINT(1 << MAX3421_INTR_EIC_ID); // Call the TinyUSB interrupt handler - tuh_int_handler(1); + tuh_int_handler(1, true); } void tuh_max3421_int_api(uint8_t rhport, bool enabled) { diff --git a/hw/bsp/samd51/family.c b/hw/bsp/samd51/family.c index 2cf00c7af..268d60e48 100644 --- a/hw/bsp/samd51/family.c +++ b/hw/bsp/samd51/family.c @@ -296,7 +296,7 @@ void MAX3421_EIC_Handler(void) { EIC->INTFLAG.reg = EIC_INTFLAG_EXTINT(1 << MAX3421_INTR_EIC_ID); // Call the TinyUSB interrupt handler - tuh_int_handler(1); + tuh_int_handler(1, true); } void tuh_max3421_int_api(uint8_t rhport, bool enabled) { diff --git a/hw/bsp/stm32g4/family.cmake b/hw/bsp/stm32g4/family.cmake index 675a96c74..f8cabcbe5 100644 --- a/hw/bsp/stm32g4/family.cmake +++ b/hw/bsp/stm32g4/family.cmake @@ -26,50 +26,47 @@ set(FAMILY_MCUS STM32G4 CACHE INTERNAL "") #------------------------------------ # only need to be built ONCE for all examples function(add_board_target BOARD_TARGET) - if (NOT TARGET ${BOARD_TARGET}) - # Startup & Linker script - set(STARTUP_FILE_GNU ${ST_CMSIS}/Source/Templates/gcc/startup_${MCU_VARIANT}.s) - set(STARTUP_FILE_IAR ${ST_CMSIS}/Source/Templates/iar/startup_${MCU_VARIANT}.s) - set(LD_FILE_IAR ${ST_CMSIS}/Source/Templates/iar/linker/${MCU_VARIANT}_flash.icf) - - add_library(${BOARD_TARGET} STATIC - ${ST_CMSIS}/Source/Templates/system_${ST_PREFIX}.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_cortex.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_pwr_ex.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_rcc.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_rcc_ex.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_gpio.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_uart.c - ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_uart_ex.c - ${STARTUP_FILE_${CMAKE_C_COMPILER_ID}} - ) - target_include_directories(${BOARD_TARGET} PUBLIC - ${CMAKE_CURRENT_FUNCTION_LIST_DIR} - ${CMSIS_5}/CMSIS/Core/Include - ${ST_CMSIS}/Include - ${ST_HAL_DRIVER}/Inc - ) - target_compile_options(${BOARD_TARGET} PUBLIC + if (TARGET ${BOARD_TARGET}) + return() + endif () + + # Startup & Linker script + set(STARTUP_FILE_GNU ${ST_CMSIS}/Source/Templates/gcc/startup_${MCU_VARIANT}.s) + set(STARTUP_FILE_IAR ${ST_CMSIS}/Source/Templates/iar/startup_${MCU_VARIANT}.s) + set(LD_FILE_IAR ${ST_CMSIS}/Source/Templates/iar/linker/${MCU_VARIANT}_flash.icf) + + add_library(${BOARD_TARGET} STATIC + ${ST_CMSIS}/Source/Templates/system_${ST_PREFIX}.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_cortex.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_pwr_ex.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_rcc.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_rcc_ex.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_gpio.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_uart.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_uart_ex.c + ${STARTUP_FILE_${CMAKE_C_COMPILER_ID}} + ) + target_include_directories(${BOARD_TARGET} PUBLIC + ${CMAKE_CURRENT_FUNCTION_LIST_DIR} + ${CMSIS_5}/CMSIS/Core/Include + ${ST_CMSIS}/Include + ${ST_HAL_DRIVER}/Inc + ) + update_board(${BOARD_TARGET}) + + if (CMAKE_C_COMPILER_ID STREQUAL "GNU") + target_link_options(${BOARD_TARGET} PUBLIC + "LINKER:--script=${LD_FILE_GNU}" + -nostartfiles + # nanolib + --specs=nosys.specs + --specs=nano.specs ) - target_compile_definitions(${BOARD_TARGET} PUBLIC + elseif (CMAKE_C_COMPILER_ID STREQUAL "IAR") + target_link_options(${BOARD_TARGET} PUBLIC + "LINKER:--config=${LD_FILE_IAR}" ) - - update_board(${BOARD_TARGET}) - - if (CMAKE_C_COMPILER_ID STREQUAL "GNU") - target_link_options(${BOARD_TARGET} PUBLIC - "LINKER:--script=${LD_FILE_GNU}" - -nostartfiles - # nanolib - --specs=nosys.specs - --specs=nano.specs - ) - elseif (CMAKE_C_COMPILER_ID STREQUAL "IAR") - target_link_options(${BOARD_TARGET} PUBLIC - "LINKER:--config=${LD_FILE_IAR}" - ) - endif () endif () endfunction() diff --git a/hw/bsp/tm4c123/family.c b/hw/bsp/tm4c123/family.c index ad5ae505f..738bc3fa0 100644 --- a/hw/bsp/tm4c123/family.c +++ b/hw/bsp/tm4c123/family.c @@ -8,7 +8,7 @@ void USB0_Handler(void) { #if CFG_TUH_ENABLED - tuh_int_handler(0); + tuh_int_handler(0, true); #endif #if CFG_TUD_ENABLED diff --git a/src/common/tusb_common.h b/src/common/tusb_common.h index 6fffed11c..caeb5f2ef 100644 --- a/src/common/tusb_common.h +++ b/src/common/tusb_common.h @@ -75,8 +75,6 @@ #include "tusb_types.h" #include "tusb_debug.h" -#include "tusb_timeout.h" // TODO remove - //--------------------------------------------------------------------+ // Optional API implemented by application if needed // TODO move to a more ovious place/file diff --git a/src/common/tusb_timeout.h b/src/common/tusb_timeout.h deleted file mode 100644 index 533e67ab8..000000000 --- a/src/common/tusb_timeout.h +++ /dev/null @@ -1,80 +0,0 @@ -/* - * The MIT License (MIT) - * - * Copyright (c) 2019 Ha Thach (tinyusb.org) - * - * Permission is hereby granted, free of charge, to any person obtaining a copy - * of this software and associated documentation files (the "Software"), to deal - * in the Software without restriction, including without limitation the rights - * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell - * copies of the Software, and to permit persons to whom the Software is - * furnished to do so, subject to the following conditions: - * - * The above copyright notice and this permission notice shall be included in - * all copies or substantial portions of the Software. - * - * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN - * THE SOFTWARE. - * - * This file is part of the TinyUSB stack. - */ - -/** \ingroup Group_Common Common Files - * \defgroup Group_TimeoutTimer timeout timer - * @{ */ - -#ifndef _TUSB_TIMEOUT_H_ -#define _TUSB_TIMEOUT_H_ - -#include -#include - -#ifdef __cplusplus -extern "C" { -#endif - -typedef struct { - uint32_t start; - uint32_t interval; -}tu_timeout_t; - -#if 0 - -extern uint32_t tusb_hal_millis(void); - -static inline void tu_timeout_set(tu_timeout_t* tt, uint32_t msec) -{ - tt->interval = msec; - tt->start = tusb_hal_millis(); -} - -static inline bool tu_timeout_expired(tu_timeout_t* tt) -{ - return ( tusb_hal_millis() - tt->start ) >= tt->interval; -} - -// For used with periodic event to prevent drift -static inline void tu_timeout_reset(tu_timeout_t* tt) -{ - tt->start += tt->interval; -} - -static inline void tu_timeout_restart(tu_timeout_t* tt) -{ - tt->start = tusb_hal_millis(); -} - -#endif - -#ifdef __cplusplus - } -#endif - -#endif /* _TUSB_TIMEOUT_H_ */ - -/** @} */ diff --git a/src/common/tusb_verify.h b/src/common/tusb_verify.h index 12355e8be..1b5f53dfc 100644 --- a/src/common/tusb_verify.h +++ b/src/common/tusb_verify.h @@ -56,12 +56,8 @@ * #define TU_VERIFY(cond) if(cond) return false; * #define TU_VERIFY(cond,ret) if(cond) return ret; * - * #define TU_VERIFY_HDLR(cond,handler) if(cond) {handler; return false;} - * #define TU_VERIFY_HDLR(cond,ret,handler) if(cond) {handler; return ret;} - * * #define TU_ASSERT(cond) if(cond) {_MESS_FAILED(); TU_BREAKPOINT(), return false;} * #define TU_ASSERT(cond,ret) if(cond) {_MESS_FAILED(); TU_BREAKPOINT(), return ret;} - * *------------------------------------------------------------------*/ #ifdef __cplusplus @@ -97,40 +93,23 @@ #define TU_BREAKPOINT() do {} while (0) #endif -/*------------------------------------------------------------------*/ -/* Macro Generator - *------------------------------------------------------------------*/ - // Helper to implement optional parameter for TU_VERIFY Macro family #define _GET_3RD_ARG(arg1, arg2, arg3, ...) arg3 -#define _GET_4TH_ARG(arg1, arg2, arg3, arg4, ...) arg4 - -/*------------- Generator for TU_VERIFY and TU_VERIFY_HDLR -------------*/ -#define TU_VERIFY_DEFINE(_cond, _handler, _ret) do \ -{ \ - if ( !(_cond) ) { _handler; return _ret; } \ -} while(0) /*------------------------------------------------------------------*/ /* TU_VERIFY * - TU_VERIFY_1ARGS : return false if failed * - TU_VERIFY_2ARGS : return provided value if failed *------------------------------------------------------------------*/ -#define TU_VERIFY_1ARGS(_cond) TU_VERIFY_DEFINE(_cond, , false) -#define TU_VERIFY_2ARGS(_cond, _ret) TU_VERIFY_DEFINE(_cond, , _ret) +#define TU_VERIFY_DEFINE(_cond, _ret) \ + do { \ + if ( !(_cond) ) { return _ret; } \ + } while(0) -#define TU_VERIFY(...) _GET_3RD_ARG(__VA_ARGS__, TU_VERIFY_2ARGS, TU_VERIFY_1ARGS, UNUSED)(__VA_ARGS__) +#define TU_VERIFY_1ARGS(_cond) TU_VERIFY_DEFINE(_cond, false) +#define TU_VERIFY_2ARGS(_cond, _ret) TU_VERIFY_DEFINE(_cond, _ret) - -/*------------------------------------------------------------------*/ -/* TU_VERIFY WITH HANDLER - * - TU_VERIFY_HDLR_2ARGS : execute handler, return false if failed - * - TU_VERIFY_HDLR_3ARGS : execute handler, return provided error if failed - *------------------------------------------------------------------*/ -#define TU_VERIFY_HDLR_2ARGS(_cond, _handler) TU_VERIFY_DEFINE(_cond, _handler, false) -#define TU_VERIFY_HDLR_3ARGS(_cond, _handler, _ret) TU_VERIFY_DEFINE(_cond, _handler, _ret) - -#define TU_VERIFY_HDLR(...) _GET_4TH_ARG(__VA_ARGS__, TU_VERIFY_HDLR_3ARGS, TU_VERIFY_HDLR_2ARGS,UNUSED)(__VA_ARGS__) +#define TU_VERIFY(...) _GET_3RD_ARG(__VA_ARGS__, TU_VERIFY_2ARGS, TU_VERIFY_1ARGS, _dummy)(__VA_ARGS__) /*------------------------------------------------------------------*/ /* ASSERT @@ -138,19 +117,20 @@ * - 1 arg : return false if failed * - 2 arg : return error if failed *------------------------------------------------------------------*/ -#define ASSERT_1ARGS(_cond) TU_VERIFY_DEFINE(_cond, _MESS_FAILED(); TU_BREAKPOINT(), false) -#define ASSERT_2ARGS(_cond, _ret) TU_VERIFY_DEFINE(_cond, _MESS_FAILED(); TU_BREAKPOINT(), _ret) +#define TU_ASSERT_DEFINE(_cond, _ret) \ + do { \ + if ( !(_cond) ) { _MESS_FAILED(); TU_BREAKPOINT(); return _ret; } \ + } while(0) + +#define TU_ASSERT_1ARGS(_cond) TU_ASSERT_DEFINE(_cond, false) +#define TU_ASSERT_2ARGS(_cond, _ret) TU_ASSERT_DEFINE(_cond, _ret) #ifndef TU_ASSERT -#define TU_ASSERT(...) _GET_3RD_ARG(__VA_ARGS__, ASSERT_2ARGS, ASSERT_1ARGS,UNUSED)(__VA_ARGS__) +#define TU_ASSERT(...) _GET_3RD_ARG(__VA_ARGS__, TU_ASSERT_2ARGS, TU_ASSERT_1ARGS, _dummy)(__VA_ARGS__) #endif -/*------------------------------------------------------------------*/ -/* ASSERT HDLR - *------------------------------------------------------------------*/ - #ifdef __cplusplus } #endif -#endif /* TUSB_VERIFY_H_ */ +#endif diff --git a/src/host/hcd.h b/src/host/hcd.h index e25b20ea3..2bde289df 100644 --- a/src/host/hcd.h +++ b/src/host/hcd.h @@ -131,7 +131,7 @@ bool hcd_configure(uint8_t rhport, uint32_t cfg_id, const void* cfg_param) TU_AT bool hcd_init(uint8_t rhport); // Interrupt Handler -void hcd_int_handler(uint8_t rhport); +void hcd_int_handler(uint8_t rhport, bool in_isr); // Enable USB interrupt void hcd_int_enable (uint8_t rhport); diff --git a/src/host/usbh.h b/src/host/usbh.h index 684e8240e..770d70dfe 100644 --- a/src/host/usbh.h +++ b/src/host/usbh.h @@ -124,11 +124,16 @@ void tuh_task(void) { bool tuh_task_event_ready(void); #ifndef _TUSB_HCD_H_ -extern void hcd_int_handler(uint8_t rhport); +extern void hcd_int_handler(uint8_t rhport, bool in_isr); #endif -// Interrupt handler, name alias to HCD -#define tuh_int_handler hcd_int_handler +// Interrupt handler alias to HCD with in_isr as optional parameter +// - tuh_int_handler(rhport) --> hcd_int_handler(rhport, true) +// - tuh_int_handler(rhport, in_isr) --> hcd_int_handler(rhport, in_isr) +// Note: this is similar to TU_VERIFY(), _GET_3RD_ARG() is defined in tusb_verify.h +#define _tuh_int_handler_1arg(_rhport) hcd_int_handler(_rhport, true) +#define _tuh_int_hanlder_2arg(_rhport, _in_isr) hcd_int_handler(_rhport, _in_isr) +#define tuh_int_handler(...) _GET_3RD_ARG(__VA_ARGS__, _tuh_int_hanlder_2arg, _tuh_int_handler_1arg, _dummy)(__VA_ARGS__) // Check if roothub port is initialized and active as a host bool tuh_rhport_is_active(uint8_t rhport); diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 238b518a0..d013d6179 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -863,7 +863,8 @@ void print_hirq(uint8_t hirq) { #endif // Interrupt Handler -void hcd_int_handler(uint8_t rhport) { +void hcd_int_handler(uint8_t rhport, bool in_isr) { + (void) in_isr; uint8_t hirq = reg_read(rhport, HIRQ_ADDR, true) & _hcd_data.hien; if (!hirq) return; // print_hirq(hirq); diff --git a/src/portable/ehci/ehci.c b/src/portable/ehci/ehci.c index c93c33fc0..572b9826c 100644 --- a/src/portable/ehci/ehci.c +++ b/src/portable/ehci/ehci.c @@ -656,8 +656,8 @@ void process_period_xfer_isr(uint8_t rhport, uint32_t interval_ms) } //------------- Host Controller Driver's Interrupt Handler -------------// -void hcd_int_handler(uint8_t rhport) -{ +void hcd_int_handler(uint8_t rhport, bool in_isr) { + (void) in_isr; ehci_registers_t* regs = ehci_data.regs; uint32_t const int_status = regs->status; diff --git a/src/portable/mentor/musb/hcd_musb.c b/src/portable/mentor/musb/hcd_musb.c index 02090df85..5312c2812 100644 --- a/src/portable/mentor/musb/hcd_musb.c +++ b/src/portable/mentor/musb/hcd_musb.c @@ -847,8 +847,10 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { /*------------------------------------------------------------------- * ISR *-------------------------------------------------------------------*/ -void hcd_int_handler(uint8_t rhport) +void hcd_int_handler(uint8_t rhport, bool in_isr) { + (void) in_isr; + uint_fast8_t is, txis, rxis; is = USB0->IS; /* read and clear interrupt status */ diff --git a/src/portable/nxp/khci/hcd_khci.c b/src/portable/nxp/khci/hcd_khci.c index 55327e02d..57684b259 100644 --- a/src/portable/nxp/khci/hcd_khci.c +++ b/src/portable/nxp/khci/hcd_khci.c @@ -447,6 +447,10 @@ void hcd_port_reset(uint8_t rhport) _hcd.need_reset = false; } +void hcd_port_reset_end(uint8_t rhport) { + (void) rhport; +} + tusb_speed_t hcd_port_speed_get(uint8_t rhport) { (void)rhport; @@ -583,8 +587,9 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { /*--------------------------------------------------------------------+ * ISR *--------------------------------------------------------------------+*/ -void hcd_int_handler(uint8_t rhport) +void hcd_int_handler(uint8_t rhport, bool in_isr) { + (void) in_isr; uint32_t is = KHCI->ISTAT; uint32_t msk = KHCI->INTEN; diff --git a/src/portable/ohci/ohci.c b/src/portable/ohci/ohci.c index 413e72037..f978b0965 100644 --- a/src/portable/ohci/ohci.c +++ b/src/portable/ohci/ohci.c @@ -667,8 +667,9 @@ static void done_queue_isr(uint8_t hostid) } } -void hcd_int_handler(uint8_t hostid) -{ +void hcd_int_handler(uint8_t hostid, bool in_isr) { + (void) in_isr; + uint32_t const int_en = OHCI_REG->interrupt_enable; uint32_t const int_status = OHCI_REG->interrupt_status & int_en; diff --git a/src/portable/raspberrypi/rp2040/hcd_rp2040.c b/src/portable/raspberrypi/rp2040/hcd_rp2040.c index 21dc3f67d..4ed6d36bb 100644 --- a/src/portable/raspberrypi/rp2040/hcd_rp2040.c +++ b/src/portable/raspberrypi/rp2040/hcd_rp2040.c @@ -252,9 +252,9 @@ static void __tusb_irq_path_func(hcd_rp2040_irq)(void) } } -void __tusb_irq_path_func(hcd_int_handler)(uint8_t rhport) -{ +void __tusb_irq_path_func(hcd_int_handler)(uint8_t rhport, bool in_isr) { (void) rhport; + (void) in_isr; hcd_rp2040_irq(); } diff --git a/src/portable/renesas/rusb2/hcd_rusb2.c b/src/portable/renesas/rusb2/hcd_rusb2.c index 790cd6b32..bf95be707 100644 --- a/src/portable/renesas/rusb2/hcd_rusb2.c +++ b/src/portable/renesas/rusb2/hcd_rusb2.c @@ -771,8 +771,9 @@ bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { //--------------------------------------------------------------------+ // ISR //--------------------------------------------------------------------+ -void hcd_int_handler(uint8_t rhport) -{ +void hcd_int_handler(uint8_t rhport, bool in_isr) { + (void) in_isr; + rusb2_reg_t* rusb = RUSB2_REG(rhport); unsigned is0 = rusb->INTSTS0; unsigned is1 = rusb->INTSTS1; diff --git a/src/portable/template/hcd_template.c b/src/portable/template/hcd_template.c index 3e3b91558..b073d6057 100644 --- a/src/portable/template/hcd_template.c +++ b/src/portable/template/hcd_template.c @@ -51,8 +51,9 @@ bool hcd_init(uint8_t rhport) { } // Interrupt Handler -void hcd_int_handler(uint8_t rhport) { +void hcd_int_handler(uint8_t rhport, bool in_isr) { (void) rhport; + (void) in_isr; } // Enable USB interrupt diff --git a/src/tusb.h b/src/tusb.h index d6534ca28..c9d56d3c3 100644 --- a/src/tusb.h +++ b/src/tusb.h @@ -66,7 +66,7 @@ #endif #else #ifndef tuh_int_handler - #define tuh_int_handler(_x) + #define tuh_int_handler(...) #endif #endif @@ -123,7 +123,7 @@ #endif #else #ifndef tud_int_handler - #define tud_int_handler(_x) + #define tud_int_handler(...) #endif #endif -- cgit v1.3.1 From 6b8933cfe838b369c58d4fc9ced8aa5c9382a6d6 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 28 Sep 2023 12:55:59 +0700 Subject: fix build with new freertos host example --- examples/device/cdc_msc_freertos/Makefile | 2 - examples/host/bare_api/Makefile | 10 - examples/host/cdc_msc_hid/Makefile | 10 - examples/host/cdc_msc_hid_freertos/Makefile | 18 +- .../src/FreeRTOSConfig/FreeRTOSConfig.h | 215 +++++++++++++++++++++ examples/host/hid_controller/Makefile | 10 - examples/host/msc_file_explorer/Makefile | 10 - hw/bsp/lpc17/family.mk | 4 +- src/portable/analog/max3421/hcd_max3421.c | 4 +- src/tinyusb.mk | 7 + 10 files changed, 237 insertions(+), 53 deletions(-) create mode 100644 examples/host/cdc_msc_hid_freertos/src/FreeRTOSConfig/FreeRTOSConfig.h (limited to 'src/portable') diff --git a/examples/device/cdc_msc_freertos/Makefile b/examples/device/cdc_msc_freertos/Makefile index 3ac62a79c..84c833fb5 100644 --- a/examples/device/cdc_msc_freertos/Makefile +++ b/examples/device/cdc_msc_freertos/Makefile @@ -1,5 +1,3 @@ -DEPS_SUBMODULES += lib/FreeRTOS-Kernel - include ../../make.mk FREERTOS_SRC = lib/FreeRTOS-Kernel diff --git a/examples/host/bare_api/Makefile b/examples/host/bare_api/Makefile index 058307c40..161f8c774 100644 --- a/examples/host/bare_api/Makefile +++ b/examples/host/bare_api/Makefile @@ -10,14 +10,4 @@ EXAMPLE_SOURCE += \ SRC_C += $(addprefix $(CURRENT_PATH)/, $(EXAMPLE_SOURCE)) -# TinyUSB Host Stack source -SRC_C += \ - src/class/cdc/cdc_host.c \ - src/class/hid/hid_host.c \ - src/class/msc/msc_host.c \ - src/host/hub.c \ - src/host/usbh.c \ - src/portable/ohci/ohci.c \ - src/portable/nxp/lpc17_40/hcd_lpc17_40.c - include ../../rules.mk diff --git a/examples/host/cdc_msc_hid/Makefile b/examples/host/cdc_msc_hid/Makefile index 7c16b39d3..15b8a5b31 100644 --- a/examples/host/cdc_msc_hid/Makefile +++ b/examples/host/cdc_msc_hid/Makefile @@ -13,14 +13,4 @@ EXAMPLE_SOURCE = \ SRC_C += $(addprefix $(CURRENT_PATH)/, $(EXAMPLE_SOURCE)) -# TinyUSB Host Stack source -SRC_C += \ - src/class/cdc/cdc_host.c \ - src/class/hid/hid_host.c \ - src/class/msc/msc_host.c \ - src/host/hub.c \ - src/host/usbh.c \ - src/portable/ohci/ohci.c \ - src/portable/nxp/lpc17_40/hcd_lpc17_40.c - include ../../rules.mk diff --git a/examples/host/cdc_msc_hid_freertos/Makefile b/examples/host/cdc_msc_hid_freertos/Makefile index 67bb6da55..a9670b4f2 100644 --- a/examples/host/cdc_msc_hid_freertos/Makefile +++ b/examples/host/cdc_msc_hid_freertos/Makefile @@ -5,6 +5,7 @@ FREERTOS_PORTABLE_PATH= $(FREERTOS_SRC)/portable/$(if $(USE_IAR),IAR,GCC) INC += \ src \ + src/FreeRTOSConfig \ $(TOP)/hw \ $(TOP)/$(FREERTOS_SRC)/include \ $(TOP)/$(FREERTOS_PORTABLE_SRC) \ @@ -19,14 +20,15 @@ EXAMPLE_SOURCE = \ SRC_C += $(addprefix $(CURRENT_PATH)/, $(EXAMPLE_SOURCE)) -# TinyUSB Host Stack source +# FreeRTOS source, all files in port folder SRC_C += \ - src/class/cdc/cdc_host.c \ - src/class/hid/hid_host.c \ - src/class/msc/msc_host.c \ - src/host/hub.c \ - src/host/usbh.c \ - src/portable/ohci/ohci.c \ - src/portable/nxp/lpc17_40/hcd_lpc17_40.c + $(FREERTOS_SRC)/list.c \ + $(FREERTOS_SRC)/queue.c \ + $(FREERTOS_SRC)/tasks.c \ + $(FREERTOS_SRC)/timers.c \ + $(subst $(TOP)/,,$(wildcard $(TOP)/$(FREERTOS_PORTABLE_SRC)/*.c)) + +SRC_S += \ + $(subst $(TOP)/,,$(wildcard $(TOP)/$(FREERTOS_PORTABLE_SRC)/*.s)) include ../../rules.mk diff --git a/examples/host/cdc_msc_hid_freertos/src/FreeRTOSConfig/FreeRTOSConfig.h b/examples/host/cdc_msc_hid_freertos/src/FreeRTOSConfig/FreeRTOSConfig.h new file mode 100644 index 000000000..a1fc8bb09 --- /dev/null +++ b/examples/host/cdc_msc_hid_freertos/src/FreeRTOSConfig/FreeRTOSConfig.h @@ -0,0 +1,215 @@ +/* + * FreeRTOS Kernel V10.0.0 + * Copyright (C) 2017 Amazon.com, Inc. or its affiliates. All Rights Reserved. + * + * Permission is hereby granted, free of charge, to any person obtaining a copy of + * this software and associated documentation files (the "Software"), to deal in + * the Software without restriction, including without limitation the rights to + * use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of + * the Software, and to permit persons to whom the Software is furnished to do so, + * subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in all + * copies or substantial portions of the Software. If you wish to use our Amazon + * FreeRTOS name, please do so in a fair use way that does not cause confusion. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS + * FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR + * COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER + * IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN + * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. + * + * http://www.FreeRTOS.org + * http://aws.amazon.com/freertos + * + * 1 tab == 4 spaces! + */ + + +#ifndef FREERTOS_CONFIG_H +#define FREERTOS_CONFIG_H + +/*----------------------------------------------------------- + * Application specific definitions. + * + * These definitions should be adjusted for your particular hardware and + * application requirements. + * + * THESE PARAMETERS ARE DESCRIBED WITHIN THE 'CONFIGURATION' SECTION OF THE + * FreeRTOS API DOCUMENTATION AVAILABLE ON THE FreeRTOS.org WEB SITE. + * + * See http://www.freertos.org/a00110.html. + *----------------------------------------------------------*/ + +// skip if included from IAR assembler +#ifndef __IASMARM__ + +// Include MCU header +#include "bsp/board_mcu.h" + +#if CFG_TUSB_MCU == OPT_MCU_ESP32S2 || CFG_TUSB_MCU == OPT_MCU_ESP32S3 + #error "ESP32-Sx should use IDF's FreeRTOSConfig.h" +#endif + +#ifdef __GNUC__ +#pragma GCC diagnostic push +#pragma GCC diagnostic ignored "-Wredundant-decls" +#endif + +// TODO fix later +// FIXME cause redundant-decls warnings +#if CFG_TUSB_MCU == OPT_MCU_MM32F327X + extern u32 SystemCoreClock; +#else + extern uint32_t SystemCoreClock; +#endif + +#ifdef __GNUC__ +#pragma GCC diagnostic pop +#endif + +#endif + +/* Cortex M23/M33 port configuration. */ +#define configENABLE_MPU 0 +#define configENABLE_FPU 1 +#define configENABLE_TRUSTZONE 0 +#define configMINIMAL_SECURE_STACK_SIZE ( 1024 ) + +#define configUSE_PREEMPTION 1 +#define configUSE_PORT_OPTIMISED_TASK_SELECTION 0 +#define configCPU_CLOCK_HZ SystemCoreClock +#define configTICK_RATE_HZ ( 1000 ) +#define configMAX_PRIORITIES ( 5 ) +#define configMINIMAL_STACK_SIZE ( 128 ) +#define configTOTAL_HEAP_SIZE ( configSUPPORT_DYNAMIC_ALLOCATION*4*1024 ) +#define configMAX_TASK_NAME_LEN 16 +#define configUSE_16_BIT_TICKS 0 +#define configIDLE_SHOULD_YIELD 1 +#define configUSE_MUTEXES 1 +#define configUSE_RECURSIVE_MUTEXES 1 +#define configUSE_COUNTING_SEMAPHORES 1 +#define configQUEUE_REGISTRY_SIZE 4 +#define configUSE_QUEUE_SETS 0 +#define configUSE_TIME_SLICING 0 +#define configUSE_NEWLIB_REENTRANT 0 +#define configENABLE_BACKWARD_COMPATIBILITY 1 +#define configSTACK_ALLOCATION_FROM_SEPARATE_HEAP 0 + +#define configSUPPORT_STATIC_ALLOCATION 1 +#define configSUPPORT_DYNAMIC_ALLOCATION 0 + +/* Hook function related definitions. */ +#define configUSE_IDLE_HOOK 0 +#define configUSE_TICK_HOOK 0 +#define configUSE_MALLOC_FAILED_HOOK 0 // cause nested extern warning +#define configCHECK_FOR_STACK_OVERFLOW 2 + +/* Run time and task stats gathering related definitions. */ +#define configGENERATE_RUN_TIME_STATS 0 +#define configUSE_TRACE_FACILITY 1 // legacy trace +#define configUSE_STATS_FORMATTING_FUNCTIONS 0 + +/* Co-routine definitions. */ +#define configUSE_CO_ROUTINES 0 +#define configMAX_CO_ROUTINE_PRIORITIES 2 + +/* Software timer related definitions. */ +#define configUSE_TIMERS 1 +#define configTIMER_TASK_PRIORITY (configMAX_PRIORITIES-2) +#define configTIMER_QUEUE_LENGTH 32 +#define configTIMER_TASK_STACK_DEPTH configMINIMAL_STACK_SIZE + +/* Optional functions - most linkers will remove unused functions anyway. */ +#define INCLUDE_vTaskPrioritySet 0 +#define INCLUDE_uxTaskPriorityGet 0 +#define INCLUDE_vTaskDelete 0 +#define INCLUDE_vTaskSuspend 1 // required for queue, semaphore, mutex to be blocked indefinitely with portMAX_DELAY +#define INCLUDE_xResumeFromISR 0 +#define INCLUDE_vTaskDelayUntil 1 +#define INCLUDE_vTaskDelay 1 +#define INCLUDE_xTaskGetSchedulerState 0 +#define INCLUDE_xTaskGetCurrentTaskHandle 0 +#define INCLUDE_uxTaskGetStackHighWaterMark 0 +#define INCLUDE_xTaskGetIdleTaskHandle 0 +#define INCLUDE_xTimerGetTimerDaemonTaskHandle 0 +#define INCLUDE_pcTaskGetTaskName 0 +#define INCLUDE_eTaskGetState 0 +#define INCLUDE_xEventGroupSetBitFromISR 0 +#define INCLUDE_xTimerPendFunctionCall 0 + +/* Define to trap errors during development. */ +// Halt CPU (breakpoint) when hitting error, only apply for Cortex M3, M4, M7 +#if defined(__ARM_ARCH_7M__) || defined (__ARM_ARCH_7EM__) + #define configASSERT(_exp) \ + do {\ + if ( !(_exp) ) { \ + volatile uint32_t* ARM_CM_DHCSR = ((volatile uint32_t*) 0xE000EDF0UL); /* Cortex M CoreDebug->DHCSR */ \ + if ( (*ARM_CM_DHCSR) & 1UL ) { /* Only halt mcu if debugger is attached */ \ + taskDISABLE_INTERRUPTS(); \ + __asm("BKPT #0\n"); \ + }\ + }\ + } while(0) +#else + #define configASSERT( x ) +#endif + +#ifdef __RX__ +/* Renesas RX series */ +#define vSoftwareInterruptISR INT_Excep_ICU_SWINT +#define vTickISR INT_Excep_CMT0_CMI0 +#define configPERIPHERAL_CLOCK_HZ (configCPU_CLOCK_HZ/2) +#define configKERNEL_INTERRUPT_PRIORITY 1 +#define configMAX_SYSCALL_INTERRUPT_PRIORITY 4 + +#else + +/* FreeRTOS hooks to NVIC vectors */ +#define xPortPendSVHandler PendSV_Handler +#define xPortSysTickHandler SysTick_Handler +#define vPortSVCHandler SVC_Handler + +//--------------------------------------------------------------------+ +// Interrupt nesting behavior configuration. +//--------------------------------------------------------------------+ +#if defined(__NVIC_PRIO_BITS) + // For Cortex-M specific: __NVIC_PRIO_BITS is defined in core_cmx.h + #define configPRIO_BITS __NVIC_PRIO_BITS + +#elif defined(__ECLIC_INTCTLBITS) + // RISC-V Bumblebee core from nuclei + #define configPRIO_BITS __ECLIC_INTCTLBITS + +#elif defined(__IASMARM__) + // FIXME: IAR Assembler cannot include mcu header directly to get __NVIC_PRIO_BITS. + // Therefore we will hard coded it to minimum value of 2 to get pass ci build. + // IAR user must update this to correct value of the target MCU + #message "configPRIO_BITS is hard coded to 2 to pass IAR build only. User should update it per MCU" + #define configPRIO_BITS 2 + +#else + #error "FreeRTOS configPRIO_BITS to be defined" +#endif + +/* The lowest interrupt priority that can be used in a call to a "set priority" function. */ +#define configLIBRARY_LOWEST_INTERRUPT_PRIORITY ((1< Date: Wed, 4 Oct 2023 18:00:32 +0700 Subject: change tuh_max3421_spi_xfer_api() signature tested working with sam d21 and d51, not tested with nrf52, seem not working with esp32 --- hw/bsp/espressif/boards/family.c | 39 +++++++++++++++++++------------ hw/bsp/nrf/family.c | 20 ++++++++++------ hw/bsp/samd21/family.c | 27 +++++++++++---------- hw/bsp/samd51/family.c | 35 +++++++++++++++------------ src/portable/analog/max3421/hcd_max3421.c | 27 ++++++++++++--------- 5 files changed, 88 insertions(+), 60 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/espressif/boards/family.c b/hw/bsp/espressif/boards/family.c index c6a592627..912ca5f35 100644 --- a/hw/bsp/espressif/boards/family.c +++ b/hw/bsp/espressif/boards/family.c @@ -38,7 +38,9 @@ #if ESP_IDF_VERSION_MAJOR > 4 #include "esp_private/periph_ctrl.h" #else + #include "driver/periph_ctrl.h" + #endif // Note; current code use UART0 can cause device to reset while monitoring @@ -46,16 +48,21 @@ #define UART_ID UART_NUM_0 #ifdef NEOPIXEL_PIN + #include "led_strip.h" -static led_strip_t *strip; + +static led_strip_t* strip; #endif #if CFG_TUH_ENABLED && CFG_TUH_MAX3421 + #include "driver/spi_master.h" + static void max3421_init(void); + #endif -static void configure_pins(usb_hal_context_t *usb); +static void configure_pins(usb_hal_context_t* usb); //--------------------------------------------------------------------+ // Implementation @@ -115,11 +122,11 @@ void board_init(void) { #endif } -static void configure_pins(usb_hal_context_t *usb) { +static void configure_pins(usb_hal_context_t* usb) { /* usb_periph_iopins currently configures USB_OTG as USB Device. * Introduce additional parameters in usb_hal_context_t when adding support * for USB Host. */ - for (const usb_iopin_dsc_t *iopin = usb_periph_iopins; iopin->pin != -1; ++iopin) { + for (const usb_iopin_dsc_t* iopin = usb_periph_iopins; iopin->pin != -1; ++iopin) { if ((usb->use_external_phy) || (iopin->ext_phy_only == 0)) { esp_rom_gpio_pad_select_gpio(iopin->pin); if (iopin->is_output) { @@ -160,7 +167,7 @@ uint32_t board_button_read(void) { } // Get characters from UART -int board_uart_read(uint8_t *buf, int len) { +int board_uart_read(uint8_t* buf, int len) { #if USE_UART return uart_read_bytes(UART_ID, buf, len, 0); #else @@ -169,7 +176,7 @@ int board_uart_read(uint8_t *buf, int len) { } // Send characters to UART -int board_uart_write(void const *buf, int len) { +int board_uart_write(void const* buf, int len) { (void) buf; (void) len; return 0; @@ -216,7 +223,7 @@ static void max3421_init(void) { gpio_set_level(MAX3421_CS_PIN, 1); // SPI - spi_bus_config_t buscfg={ + spi_bus_config_t buscfg = { .miso_io_num = MAX3421_MISO_PIN, .mosi_io_num = MAX3421_MOSI_PIN, .sclk_io_num = MAX3421_SCK_PIN, @@ -228,7 +235,7 @@ static void max3421_init(void) { .data7_io_num = -1, .max_transfer_sz = 1024 }; - ESP_ERROR_CHECK( spi_bus_initialize(MAX3421_SPI_HOST, &buscfg, SPI_DMA_CH_AUTO) ); + ESP_ERROR_CHECK(spi_bus_initialize(MAX3421_SPI_HOST, &buscfg, SPI_DMA_CH_AUTO)); spi_device_interface_config_t max3421_cfg = { .mode = 0, @@ -236,7 +243,7 @@ static void max3421_init(void) { .spics_io_num = -1, // manual control CS .queue_size = 1 }; - ESP_ERROR_CHECK( spi_bus_add_device(MAX3421_SPI_HOST, &max3421_cfg, &max3421_spi) ); + ESP_ERROR_CHECK(spi_bus_add_device(MAX3421_SPI_HOST, &max3421_cfg, &max3421_spi)); // debug gpio_set_direction(13, GPIO_MODE_OUTPUT); @@ -244,7 +251,7 @@ static void max3421_init(void) { // Interrupt pin max3421_intr_sem = xSemaphoreCreateBinary(); - xTaskCreate(max3421_intr_task, "max3421 intr", 2048, NULL, configMAX_PRIORITIES-2, NULL); + xTaskCreate(max3421_intr_task, "max3421 intr", 2048, NULL, configMAX_PRIORITIES - 2, NULL); gpio_set_direction(MAX3421_INTR_PIN, GPIO_MODE_INPUT); gpio_set_intr_type(MAX3421_INTR_PIN, GPIO_INTR_NEGEDGE); @@ -267,18 +274,20 @@ void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { gpio_set_level(MAX3421_CS_PIN, active ? 0 : 1); } -bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes) { (void) rhport; - if (tx_len == 0) { + if (tx_buf == NULL) { // fifo read, transmit rx_buf as dummy tx_buf = rx_buf; - tx_len = rx_len; } + // length in bits + size_t const len_bits = xfer_bytes << 3; + spi_transaction_t xact = { - .length = tx_len << 3, // length in bits - .rxlength = rx_len << 3, // length in bits + .length = len_bits, + .rxlength = rx_buf ? len_bits : 0, .tx_buffer = tx_buf, .rx_buffer = rx_buf }; diff --git a/hw/bsp/nrf/family.c b/hw/bsp/nrf/family.c index 631f53fcd..c431389f3 100644 --- a/hw/bsp/nrf/family.c +++ b/hw/bsp/nrf/family.c @@ -95,7 +95,9 @@ TU_ATTR_UNUSED static void power_event_handler(nrfx_power_usb_evt_t event) { //------------- Host using MAX2341E -------------// #if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 + static void max3421_init(void); + static nrfx_spim_t _spi = NRFX_SPIM_INSTANCE(1); #endif @@ -203,15 +205,15 @@ uint32_t board_button_read(void) { return BUTTON_STATE_ACTIVE == nrf_gpio_pin_read(BUTTON_PIN); } -int board_uart_read(uint8_t *buf, int len) { +int board_uart_read(uint8_t* buf, int len) { (void) buf; (void) len; return 0; // return NRFX_SUCCESS == nrfx_uart_rx(&_uart_id, buf, (size_t) len) ? len : 0; } -int board_uart_write(void const *buf, int len) { - return (NRFX_SUCCESS == nrfx_uarte_tx(&_uart_id, (uint8_t const *) buf, (size_t) len)) ? len : 0; +int board_uart_write(void const* buf, int len) { + return (NRFX_SUCCESS == nrfx_uarte_tx(&_uart_id, (uint8_t const*) buf, (size_t) len)) ? len : 0; } #if CFG_TUSB_OS == OPT_OS_NONE @@ -323,6 +325,7 @@ static void max3421_init(void) { nrfx_gpiote_trigger_enable(MAX3421_INTR_PIN, true); } +// API to enable/disable MAX3421 INTR pin interrupt void tuh_max3421_int_api(uint8_t rhport, bool enabled) { (void) rhport; @@ -335,22 +338,25 @@ void tuh_max3421_int_api(uint8_t rhport, bool enabled) { } } +// API to control MAX3421 SPI CS void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { (void) rhport; nrf_gpio_pin_write(MAX3421_CS_PIN, active ? 0 : 1); } -bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { +// API to transfer data with MAX3421 SPI +// Either tx_buf or rx_buf can be NULL, which means transfer is write or read only +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes) { (void) rhport; nrfx_spim_xfer_desc_t xfer = { .p_tx_buffer = tx_buf, - .tx_length = tx_len, + .tx_length = tx_buf ? xfer_bytes : 0, .p_rx_buffer = rx_buf, - .rx_length = rx_len, + .rx_length = rx_buf ? xfer_bytes : 0, }; - return (nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS); + return nrfx_spim_xfer(&_spi, &xfer, 0) == NRFX_SUCCESS; } #endif diff --git a/hw/bsp/samd21/family.c b/hw/bsp/samd21/family.c index b9365fc3f..ccb2c99b1 100644 --- a/hw/bsp/samd21/family.c +++ b/hw/bsp/samd21/family.c @@ -72,6 +72,7 @@ static void uart_init(void); #define MAX3421_SERCOM TU_XSTRCAT(SERCOM, MAX3421_SERCOM_ID) static void max3421_init(void); + #endif void board_init(void) { @@ -237,13 +238,13 @@ int board_uart_write(void const * buf, int len) static void uart_init(void) { } -int board_uart_read(uint8_t *buf, int len) { +int board_uart_read(uint8_t* buf, int len) { (void) buf; (void) len; return 0; } -int board_uart_write(void const *buf, int len) { +int board_uart_write(void const* buf, int len) { (void) buf; (void) len; return 0; @@ -261,6 +262,7 @@ void SysTick_Handler(void) { uint32_t board_millis(void) { return system_ticks; } + #endif //--------------------------------------------------------------------+ @@ -278,8 +280,8 @@ static void max3421_init(void) { // Configure GCLK for SERCOM // GCLK->CLKCTRL.reg = GCLK_CLKCTRL_ID_SERCOM4_CORE | GCLK_CLKCTRL_GEN_GCLK0 | GCLK_CLKCTRL_CLKEN; - GCLK->CLKCTRL.reg = GCLK_CLKCTRL_ID(GCLK_CLKCTRL_ID_SERCOM0_CORE_Val+MAX3421_SERCOM_ID) | - GCLK_CLKCTRL_GEN_GCLK0 | GCLK_CLKCTRL_CLKEN; + GCLK->CLKCTRL.reg = GCLK_CLKCTRL_ID(GCLK_CLKCTRL_ID_SERCOM0_CORE_Val + MAX3421_SERCOM_ID) | + GCLK_CLKCTRL_GEN_GCLK0 | GCLK_CLKCTRL_CLKEN; while (GCLK->STATUS.bit.SYNCBUSY); Sercom* sercom = MAX3421_SERCOM; @@ -293,7 +295,7 @@ static void max3421_init(void) { // Set up SPI in master mode, MSB first, SPI mode 0 sercom->SPI.CTRLA.reg = SERCOM_SPI_CTRLA_DOPO(MAX3421_TX_PAD) | SERCOM_SPI_CTRLA_DIPO(MAX3421_RX_PAD) | - SERCOM_SPI_CTRLA_MODE(3); + SERCOM_SPI_CTRLA_MODE(3); sercom->SPI.CTRLB.reg = SERCOM_SPI_CTRLB_CHSIZE(0) | SERCOM_SPI_CTRLB_RXEN; while (sercom->SPI.SYNCBUSY.bit.CTRLB == 1); @@ -366,6 +368,7 @@ void EIC_Handler(void) { tuh_int_handler(1, true); } +// API to enable/disable MAX3421 INTR pin interrupt void tuh_max3421_int_api(uint8_t rhport, bool enabled) { (void) rhport; @@ -376,24 +379,26 @@ void tuh_max3421_int_api(uint8_t rhport, bool enabled) { } } +// API to control MAX3421 SPI CS void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { (void) rhport; gpio_set_pin_level(MAX3421_CS_PIN, active ? 0 : 1); } -bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { +// API to transfer data with MAX3421 SPI +// Either tx_buf or rx_buf can be NULL, which means transfer is write or read only +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes) { (void) rhport; Sercom* sercom = MAX3421_SERCOM; - size_t count = 0; - while (count < tx_len || count < rx_len) { + for (size_t count = 0; count < xfer_bytes; count++) { // Wait for the transmit buffer to be empty while (!sercom->SPI.INTFLAG.bit.DRE); // Write data to be transmitted uint8_t data = 0x00; - if (count < tx_len) { + if (tx_buf) { data = tx_buf[count]; } @@ -404,11 +409,9 @@ bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_l // Read received data data = (uint8_t) sercom->SPI.DATA.reg; - if (count < rx_len) { + if (rx_buf) { rx_buf[count] = data; } - - count++; } // wait for bus idle and clear flags diff --git a/hw/bsp/samd51/family.c b/hw/bsp/samd51/family.c index 4d43c7745..bca18e1a2 100644 --- a/hw/bsp/samd51/family.c +++ b/hw/bsp/samd51/family.c @@ -81,6 +81,7 @@ void USB_3_Handler(void) { #define MAX3421_EIC_Handler TU_XSTRCAT3(EIC_, MAX3421_INTR_EIC_ID, _Handler) static void max3421_init(void); + #endif void board_init(void) { @@ -153,13 +154,13 @@ uint32_t board_button_read(void) { return gpio_get_pin_level(BUTTON_PIN) ? 0 : 1; } -int board_uart_read(uint8_t *buf, int len) { +int board_uart_read(uint8_t* buf, int len) { (void) buf; (void) len; return 0; } -int board_uart_write(void const *buf, int len) { +int board_uart_write(void const* buf, int len) { (void) buf; (void) len; return 0; @@ -175,6 +176,7 @@ void SysTick_Handler(void) { uint32_t board_millis(void) { return system_ticks; } + #endif //--------------------------------------------------------------------+ @@ -189,7 +191,7 @@ static void max3421_init(void) { uint32_t const baudrate = 12000000u; struct { - volatile uint32_t *mck_apb; + volatile uint32_t* mck_apb; uint32_t mask; uint8_t gclk_id_core; uint8_t gclk_id_slow; @@ -214,8 +216,10 @@ static void max3421_init(void) { *sercom_clock[MAX3421_SERCOM_ID].mck_apb |= sercom_clock[MAX3421_SERCOM_ID].mask; // Configure GCLK for SERCOM - GCLK->PCHCTRL[sercom_clock[MAX3421_SERCOM_ID].gclk_id_core].reg = GCLK_PCHCTRL_GEN_GCLK0_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); - GCLK->PCHCTRL[sercom_clock[MAX3421_SERCOM_ID].gclk_id_slow].reg = GCLK_PCHCTRL_GEN_GCLK3_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); + GCLK->PCHCTRL[sercom_clock[MAX3421_SERCOM_ID].gclk_id_core].reg = + GCLK_PCHCTRL_GEN_GCLK0_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); + GCLK->PCHCTRL[sercom_clock[MAX3421_SERCOM_ID].gclk_id_slow].reg = + GCLK_PCHCTRL_GEN_GCLK3_Val | (1 << GCLK_PCHCTRL_CHEN_Pos); // Disable the SPI module sercom->SPI.CTRLA.bit.ENABLE = 0; @@ -226,7 +230,7 @@ static void max3421_init(void) { // Set up SPI in master mode, MSB first, SPI mode 0 sercom->SPI.CTRLA.reg = SERCOM_SPI_CTRLA_DOPO(MAX3421_TX_PAD) | SERCOM_SPI_CTRLA_DIPO(MAX3421_RX_PAD) | - SERCOM_SPI_CTRLA_MODE(3); + SERCOM_SPI_CTRLA_MODE(3); sercom->SPI.CTRLB.reg = SERCOM_SPI_CTRLB_CHSIZE(0) | SERCOM_SPI_CTRLB_RXEN; while (sercom->SPI.SYNCBUSY.bit.CTRLB == 1); @@ -278,9 +282,9 @@ static void max3421_init(void) { while (EIC->SYNCBUSY.bit.ENABLE); // Configure EIC to trigger on falling edge - volatile uint32_t * eic_config; + volatile uint32_t* eic_config; uint8_t sense_shift; - if ( MAX3421_INTR_EIC_ID < 8 ) { + if (MAX3421_INTR_EIC_ID < 8) { eic_config = &EIC->CONFIG[0].reg; sense_shift = MAX3421_INTR_EIC_ID * 4; } else { @@ -312,6 +316,7 @@ void MAX3421_EIC_Handler(void) { tuh_int_handler(1, true); } +// API to enable/disable MAX3421 INTR pin interrupt void tuh_max3421_int_api(uint8_t rhport, bool enabled) { (void) rhport; @@ -323,24 +328,26 @@ void tuh_max3421_int_api(uint8_t rhport, bool enabled) { } } +// API to control MAX3421 SPI CS void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { (void) rhport; gpio_set_pin_level(MAX3421_CS_PIN, active ? 0 : 1); } -bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_len, uint8_t *rx_buf, size_t rx_len) { +// API to transfer data with MAX3421 SPI +// Either tx_buf or rx_buf can be NULL, which means transfer is write or read only +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes) { (void) rhport; Sercom* sercom = MAX3421_SERCOM; - size_t count = 0; - while (count < tx_len || count < rx_len) { + for (size_t count = 0; count < xfer_bytes; count++) { // Wait for the transmit buffer to be empty while (!sercom->SPI.INTFLAG.bit.DRE); // Write data to be transmitted uint8_t data = 0x00; - if (count < tx_len) { + if (tx_buf) { data = tx_buf[count]; } @@ -351,11 +358,9 @@ bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const *tx_buf, size_t tx_l // Read received data data = (uint8_t) sercom->SPI.DATA.reg; - if (count < rx_len) { + if (rx_buf) { rx_buf[count] = data; } - - count++; } // wait for bus idle and clear flags diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 77912a4c9..787c1e511 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -210,16 +210,21 @@ static max3421_data_t _hcd_data; // API: SPI transfer with MAX3421E, must be implemented by application //--------------------------------------------------------------------+ -void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); -bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const * tx_buf, size_t tx_len, uint8_t * rx_buf, size_t rx_len); -void tuh_max3421_int_api(uint8_t rhport, bool enabled); +// API to control MAX3421 SPI CS +extern void tuh_max3421_spi_cs_api(uint8_t rhport, bool active); -static void handle_connect_irq(uint8_t rhport, bool in_isr); -static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr); +// API to transfer data with MAX3421 SPI +// Either tx_buf or rx_buf can be NULL, which means transfer is write or read only +extern bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes); + +// API to enable/disable MAX3421 INTR pin interrupt +extern void tuh_max3421_int_api(uint8_t rhport, bool enabled); //--------------------------------------------------------------------+ // SPI Helper //--------------------------------------------------------------------+ +static void handle_connect_irq(uint8_t rhport, bool in_isr); +static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr); static void max3421_spi_lock(uint8_t rhport, bool in_isr) { // disable interrupt and mutex lock (for pre-emptive RTOS) if not in_isr @@ -249,9 +254,9 @@ static void fifo_write(uint8_t rhport, uint8_t reg, uint8_t const * buffer, uint max3421_spi_lock(rhport, in_isr); - tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 1); + tuh_max3421_spi_xfer_api(rhport, ®, &hirq, 1); _hcd_data.hirq = hirq; - tuh_max3421_spi_xfer_api(rhport, buffer, len, NULL, 0); + tuh_max3421_spi_xfer_api(rhport, buffer, NULL, len); max3421_spi_unlock(rhport, in_isr); @@ -263,9 +268,9 @@ static void fifo_read(uint8_t rhport, uint8_t * buffer, uint16_t len, bool in_is max3421_spi_lock(rhport, in_isr); - tuh_max3421_spi_xfer_api(rhport, ®, 1, &hirq, 1); + tuh_max3421_spi_xfer_api(rhport, ®, &hirq, 1); _hcd_data.hirq = hirq; - tuh_max3421_spi_xfer_api(rhport, NULL, 0, buffer, len); + tuh_max3421_spi_xfer_api(rhport, NULL, buffer, len); max3421_spi_unlock(rhport, in_isr); } @@ -276,7 +281,7 @@ static void reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr) { max3421_spi_lock(rhport, in_isr); - tuh_max3421_spi_xfer_api(rhport, tx_buf, 2, rx_buf, 2); + tuh_max3421_spi_xfer_api(rhport, tx_buf, rx_buf, 2); max3421_spi_unlock(rhport, in_isr); @@ -290,7 +295,7 @@ static uint8_t reg_read(uint8_t rhport, uint8_t reg, bool in_isr) { max3421_spi_lock(rhport, in_isr); - bool ret = tuh_max3421_spi_xfer_api(rhport, tx_buf, 2, rx_buf, 2); + bool ret = tuh_max3421_spi_xfer_api(rhport, tx_buf, rx_buf, 2); max3421_spi_unlock(rhport, in_isr); -- cgit v1.3.1 From ce627f431831e1fbaa3bb7bad35a489b8006b749 Mon Sep 17 00:00:00 2001 From: "denis.krasutski" Date: Fri, 6 Oct 2023 13:04:54 +0300 Subject: feat(ch32f20x): add support of ch32f20x --- .gitignore | 1 + README.rst | 2 +- docs/reference/dependencies.rst | 1 + docs/reference/supported.rst | 5 +- hw/bsp/board_mcu.h | 3 + hw/bsp/ch32f20x/boards/ch32f205r-r0/board.h | 59 ++ hw/bsp/ch32f20x/boards/ch32f205r-r0/board.mk | 7 + hw/bsp/ch32f20x/ch32f205.ld | 111 +++ hw/bsp/ch32f20x/ch32f20x_conf.h | 40 + hw/bsp/ch32f20x/ch32f20x_it.c | 35 + hw/bsp/ch32f20x/ch32f20x_it.h | 25 + hw/bsp/ch32f20x/core_cm3.h | 11 + hw/bsp/ch32f20x/debug_uart.c | 105 +++ hw/bsp/ch32f20x/debug_uart.h | 31 + hw/bsp/ch32f20x/family.c | 141 ++++ hw/bsp/ch32f20x/family.mk | 30 + hw/bsp/ch32f20x/startup_gcc_ch32f20x_d8c.s | 493 +++++++++++ hw/bsp/ch32f20x/system_ch32f20x.c | 1122 ++++++++++++++++++++++++++ hw/bsp/ch32f20x/system_ch32f20x.h | 28 + hw/bsp/ch32v307/family.mk | 2 +- src/common/tusb_mcu.h | 4 + src/portable/wch/ch32_usbhs_reg.h | 349 ++++++++ src/portable/wch/ch32v307/ch32_usbhs_reg.h | 345 -------- src/portable/wch/ch32v307/dcd_usbhs.c | 391 --------- src/portable/wch/dcd_ch32_usbhs.c | 391 +++++++++ src/tusb_option.h | 1 + tools/get_deps.py | 3 + tools/iar_template.ipcf | 4 +- 28 files changed, 2999 insertions(+), 741 deletions(-) create mode 100644 hw/bsp/ch32f20x/boards/ch32f205r-r0/board.h create mode 100644 hw/bsp/ch32f20x/boards/ch32f205r-r0/board.mk create mode 100644 hw/bsp/ch32f20x/ch32f205.ld create mode 100644 hw/bsp/ch32f20x/ch32f20x_conf.h create mode 100644 hw/bsp/ch32f20x/ch32f20x_it.c create mode 100644 hw/bsp/ch32f20x/ch32f20x_it.h create mode 100644 hw/bsp/ch32f20x/core_cm3.h create mode 100644 hw/bsp/ch32f20x/debug_uart.c create mode 100644 hw/bsp/ch32f20x/debug_uart.h create mode 100644 hw/bsp/ch32f20x/family.c create mode 100644 hw/bsp/ch32f20x/family.mk create mode 100644 hw/bsp/ch32f20x/startup_gcc_ch32f20x_d8c.s create mode 100644 hw/bsp/ch32f20x/system_ch32f20x.c create mode 100644 hw/bsp/ch32f20x/system_ch32f20x.h create mode 100644 src/portable/wch/ch32_usbhs_reg.h delete mode 100644 src/portable/wch/ch32v307/ch32_usbhs_reg.h delete mode 100644 src/portable/wch/ch32v307/dcd_usbhs.c create mode 100644 src/portable/wch/dcd_ch32_usbhs.c (limited to 'src/portable') diff --git a/.gitignore b/.gitignore index c665d6c73..e6ccec736 100644 --- a/.gitignore +++ b/.gitignore @@ -81,6 +81,7 @@ hw/mcu/st/stm32u5xx_hal_driver hw/mcu/st/stm32wbxx_hal_driver hw/mcu/ti hw/mcu/wch/ch32v307 +hw/mcu/wch/ch32f20x lib/CMSIS_5 lib/FreeRTOS-Kernel lib/lwip diff --git a/README.rst b/README.rst index aef310b98..919596e67 100644 --- a/README.rst +++ b/README.rst @@ -60,7 +60,7 @@ The stack supports the following MCUs: - **ST:** STM32 series: F0, F1, F2, F3, F4, F7, H7, G0, G4, L0, L1, L4, L4+, WB - **TI:** MSP430, MSP432E4, TM4C123 - **ValentyUSB:** eptri -- **WCH:** CH32V307 +- **WCH:** CH32V307, CH32F20x Here is the list of `Supported Devices`_ that can be used with provided examples. diff --git a/docs/reference/dependencies.rst b/docs/reference/dependencies.rst index 130527e2c..d532a3a1e 100644 --- a/docs/reference/dependencies.rst +++ b/docs/reference/dependencies.rst @@ -56,6 +56,7 @@ hw/mcu/st/stm32u5xx_hal_driver https://github.com/STMicroelectronics/ hw/mcu/st/stm32wbxx_hal_driver https://github.com/STMicroelectronics/stm32wbxx_hal_driver.git 2c5f06638be516c1b772f768456ba637f077bac8 hw/mcu/ti https://github.com/hathach/ti_driver.git 143ed6cc20a7615d042b03b21e070197d473e6e5 hw/mcu/wch/ch32v307 https://github.com/openwch/ch32v307.git 17761f5cf9dbbf2dcf665b7c04934188add20082 +hw/mcu/wch/ch32f20x https://github.com/openwch/ch32f20x.git 77c4095087e5ed2c548ec9058e655d0b8757663b lib/CMSIS_5 https://github.com/ARM-software/CMSIS_5.git 20285262657d1b482d132d20d755c8c330d55c1f lib/FreeRTOS-Kernel https://github.com/FreeRTOS/FreeRTOS-Kernel.git def7d2df2b0506d3d249334974f51e427c17a41c lib/lwip https://github.com/lwip-tcpip/lwip.git 159e31b689577dbf69cf0683bbaffbd71fa5ee10 diff --git a/docs/reference/supported.rst b/docs/reference/supported.rst index aed64782c..8843dd405 100644 --- a/docs/reference/supported.rst +++ b/docs/reference/supported.rst @@ -109,6 +109,8 @@ Supported MCUs | ValentyUSB | eptri | ✔ | ✖ | ✖ | eptri | | +--------------+-----------------------+--------+------+-----------+-------------------+--------------+ | WCH | CH32V307 | ✔ | | ✔ | ch32v307 | | +| +-----------------------+--------+------+-----------+-------------------+--------------+ +| | CH32F20x | ✔ | | ✔ | ch32f205 | | +--------------+-----------------------+--------+------+-----------+-------------------+--------------+ @@ -415,4 +417,5 @@ Tomu WCH --- -- `CH32V307V-R1-1v0 ` +- `CH32V307V-R1-1v0 `__ +- `CH32F205R-R0-1v0 `__ diff --git a/hw/bsp/board_mcu.h b/hw/bsp/board_mcu.h index e5d2bb608..4ce5c4139 100644 --- a/hw/bsp/board_mcu.h +++ b/hw/bsp/board_mcu.h @@ -161,6 +161,9 @@ #elif CFG_TUSB_MCU == OPT_MCU_TM4C123 #include "TM4C123.h" +#elif CFG_TUSB_MCU == OPT_MCU_CH32F20X + #include "ch32f20x.h" + #elif TU_CHECK_MCU(OPT_MCU_BCM2711, OPT_MCU_BCM2835, OPT_MCU_BCM2837) // no header needed diff --git a/hw/bsp/ch32f20x/boards/ch32f205r-r0/board.h b/hw/bsp/ch32f20x/boards/ch32f205r-r0/board.h new file mode 100644 index 000000000..d5849bddb --- /dev/null +++ b/hw/bsp/ch32f20x/boards/ch32f205r-r0/board.h @@ -0,0 +1,59 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023, Denis Krasutski + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + */ + +#ifndef BOARD_H_ +#define BOARD_H_ + +#ifdef __cplusplus + extern "C" { +#endif + +// LED: need to wire pin LED1 to PC0 in the P1 header +#define LED_PORT GPIOC +#define LED_PIN GPIO_Pin_1 +#define LED_STATE_ON 0 +#define LED_CLOCK_EN() RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC, ENABLE) + +// Button: need to wire pin KEY to PC1 in the P1 header +#define BUTTON_PORT GPIOC +#define BUTTON_PIN GPIO_Pin_0 +#define BUTTON_STATE_ACTIVE 0 +#define BUTTON_CLOCK_EN() RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC, ENABLE) + +// UART +#define UART_DEV USART2 +#define UART_DEV_IRQn USART2_IRQn +#define UART_DEV_IRQHandler USART2_IRQHandler +#define UART_DEV_GPIO_PORT GPIOA +#define UART_DEV_TX_PIN GPIO_Pin_2 +#define UART_DEV_CLK_EN() do { \ + RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA, ENABLE); \ + RCC_APB1PeriphClockCmd(RCC_APB1Periph_USART2, ENABLE); \ + } while(0) + +#ifdef __cplusplus + } +#endif + +#endif diff --git a/hw/bsp/ch32f20x/boards/ch32f205r-r0/board.mk b/hw/bsp/ch32f20x/boards/ch32f205r-r0/board.mk new file mode 100644 index 000000000..f0e9bf30f --- /dev/null +++ b/hw/bsp/ch32f20x/boards/ch32f205r-r0/board.mk @@ -0,0 +1,7 @@ +LD_FILE = $(FAMILY_PATH)/ch32f205.ld + +SRC_S += \ + $(FAMILY_PATH)/startup_gcc_ch32f20x_d8c.s + +CFLAGS += \ + -DCH32F20x_D8C diff --git a/hw/bsp/ch32f20x/ch32f205.ld b/hw/bsp/ch32f20x/ch32f205.ld new file mode 100644 index 000000000..7c8d04cc5 --- /dev/null +++ b/hw/bsp/ch32f20x/ch32f205.ld @@ -0,0 +1,111 @@ +ENTRY(Reset_Handler) + +_Min_Heap_Size = 0x200; +_Min_Stack_Size = 0x400; + +MEMORY +{ + FLASH (rx) : ORIGIN = 0x08000000, LENGTH = 128K + RAM (xrw) : ORIGIN = 0x20000000, LENGTH = 32K +} +SECTIONS +{ + .isr_vector : + { + . = ALIGN(4); + KEEP(*(.isr_vector)) + . = ALIGN(4); + } >FLASH + + .text : + { + . = ALIGN(4); + _stext = .; + *(.text) + *(.text*) + *(.glue_7) + *(.glue_7t) + *(.eh_frame) + KEEP (*(.init)) + KEEP (*(.fini)) + . = ALIGN(4); + _etext = .; + } >FLASH + .rodata : + { + . = ALIGN(4); + *(.rodata) + *(.rodata*) + . = ALIGN(4); + } >FLASH + .ARM.extab : { *(.ARM.extab* .gnu.linkonce.armextab.*) } >FLASH + .ARM : { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } >FLASH + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } >FLASH + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } >FLASH + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } >FLASH + _sidata = LOADADDR(.data); + .data : + { + . = ALIGN(4); + _sdata = .; + *(.data) + *(.data*) + . = ALIGN(4); + _edata = .; + } >RAM AT> FLASH + . = ALIGN(4); + .bss : + { + _sbss = .; + __bss_start__ = _sbss; + *(.bss) + *(.bss*) + *(COMMON) + . = ALIGN(4); + _ebss = .; + __bss_end__ = _ebss; + } >RAM + ._user_heap_stack : + { + . = ALIGN(4); + PROVIDE ( end = . ); + PROVIDE ( _end = . ); + __HeapStart = .; + . = . + _Min_Heap_Size; + __HeapEnd = .; + __StackLimit = .; + . = . + _Min_Stack_Size; + __StackTop = .; + . = ALIGN(4); + } >RAM +_estack = __StackTop; +_sstack = __StackLimit; + /DISCARD/ : + { + libc.a ( * ) + libm.a ( * ) + libgcc.a ( * ) + } + .ARM.attributes 0 : { *(.ARM.attributes) } +} diff --git a/hw/bsp/ch32f20x/ch32f20x_conf.h b/hw/bsp/ch32f20x/ch32f20x_conf.h new file mode 100644 index 000000000..f94da5dec --- /dev/null +++ b/hw/bsp/ch32f20x/ch32f20x_conf.h @@ -0,0 +1,40 @@ +/********************************** (C) COPYRIGHT ******************************* + * File Name : ch32f20x_conf.h + * Author : WCH + * Version : V1.0.0 + * Date : 2021/08/08 + * Description : Library configuration file. + ********************************************************************************* + * Copyright (c) 2021 Nanjing Qinheng Microelectronics Co., Ltd. + * Attention: This software (modified or not) and binary are used for + * microcontroller manufactured by Nanjing Qinheng Microelectronics. + *******************************************************************************/ +#ifndef __CH32F20x_CONF_H +#define __CH32F20x_CONF_H + +#include "ch32f20x_adc.h" +#include "ch32f20x_bkp.h" +#include "ch32f20x_can.h" +#include "ch32f20x_crc.h" +#include "ch32f20x_dac.h" +#include "ch32f20x_dbgmcu.h" +#include "ch32f20x_dma.h" +#include "ch32f20x_exti.h" +#include "ch32f20x_flash.h" +#include "ch32f20x_fsmc.h" +#include "ch32f20x_gpio.h" +#include "ch32f20x_i2c.h" +#include "ch32f20x_iwdg.h" +#include "ch32f20x_pwr.h" +#include "ch32f20x_rcc.h" +#include "ch32f20x_rtc.h" +#include "ch32f20x_sdio.h" +#include "ch32f20x_spi.h" +#include "ch32f20x_tim.h" +#include "ch32f20x_usart.h" +#include "ch32f20x_wwdg.h" +#include "ch32f20x_it.h" +#include "ch32f20x_misc.h" + +#endif /* __CH32F20x_CONF_H */ + diff --git a/hw/bsp/ch32f20x/ch32f20x_it.c b/hw/bsp/ch32f20x/ch32f20x_it.c new file mode 100644 index 000000000..94e28e380 --- /dev/null +++ b/hw/bsp/ch32f20x/ch32f20x_it.c @@ -0,0 +1,35 @@ +#include "ch32f20x_it.h" + +#include "ch32f20x.h" + +/* -------------------------------------------------------------------------- */ + +void NMI_Handler(void) { + +} + +/* -------------------------------------------------------------------------- */ + +void MemManage_Handler(void) { + +} + +/* -------------------------------------------------------------------------- */ + +void BusFault_Handler(void) { + +} + +/* -------------------------------------------------------------------------- */ + +void UsageFault_Handler(void) { + +} + +/* -------------------------------------------------------------------------- */ + +void DebugMon_Handler(void) { + +} + +/* -------------------------------------------------------------------------- */ diff --git a/hw/bsp/ch32f20x/ch32f20x_it.h b/hw/bsp/ch32f20x/ch32f20x_it.h new file mode 100644 index 000000000..34f3bbf96 --- /dev/null +++ b/hw/bsp/ch32f20x/ch32f20x_it.h @@ -0,0 +1,25 @@ +/********************************** (C) COPYRIGHT ******************************* +* File Name : ch32f20x_it.h +* Author : WCH +* Version : V1.0.0 +* Date : 2021/08/08 +* Description : This file contains the headers of the interrupt handlers. +********************************************************************************* +* Copyright (c) 2021 Nanjing Qinheng Microelectronics Co., Ltd. +* Attention: This software (modified or not) and binary are used for +* microcontroller manufactured by Nanjing Qinheng Microelectronics. +*******************************************************************************/ +#ifndef __CH32F20xIT_H +#define __CH32F20xIT_H + +#include "ch32f20x.h" + +void NMI_Handler(void); +void HardFault_Handler(void); +void MemManage_Handler(void); +void BusFault_Handler(void); +void UsageFault_Handler(void); +void DebugMon_Handler(void); + + +#endif /* __CH32F20xIT_H */ diff --git a/hw/bsp/ch32f20x/core_cm3.h b/hw/bsp/ch32f20x/core_cm3.h new file mode 100644 index 000000000..c35a4eec3 --- /dev/null +++ b/hw/bsp/ch32f20x/core_cm3.h @@ -0,0 +1,11 @@ +/* There is core_cm3.h wrapper just to avoid warnings from CMSIS headers */ +/* if you want use original file add to make file: + INC += \ + $(TOP)/$(CH32F20X_SDK_SRC)/CMSIS +*/ +#pragma GCC diagnostic push +#pragma GCC diagnostic ignored "-Wstrict-prototypes" + +#include <../../CMSIS/core_cm3.h> + +#pragma GCC diagnostic pop diff --git a/hw/bsp/ch32f20x/debug_uart.c b/hw/bsp/ch32f20x/debug_uart.c new file mode 100644 index 000000000..a595eb6f7 --- /dev/null +++ b/hw/bsp/ch32f20x/debug_uart.c @@ -0,0 +1,105 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Denis Krasutski + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ +#include + +#include "board.h" +#include "debug_uart.h" + +#define UART_RINGBUFFER_SIZE_TX 64 +#define UART_RINGBUFFER_MASK_TX (UART_RINGBUFFER_SIZE_TX-1) + +static char tx_buf[UART_RINGBUFFER_SIZE_TX]; +static unsigned int tx_produce = 0; +static volatile unsigned int tx_consume = 0; + +void UART_DEV_IRQHandler(void) +{ + if(USART_GetITStatus(UART_DEV, USART_IT_TC) != RESET) { + USART_ClearITPendingBit(UART_DEV, USART_IT_TC); + + if(tx_consume != tx_produce) { + USART_SendData(UART_DEV, tx_buf[tx_consume]); + tx_consume = (tx_consume + 1) & UART_RINGBUFFER_MASK_TX; + } + } +} + +void uart_write(char c) +{ + unsigned int tx_produce_next = (tx_produce + 1) & UART_RINGBUFFER_MASK_TX; + + NVIC_DisableIRQ(UART_DEV_IRQn); + if((tx_consume != tx_produce) || (USART_GetFlagStatus(UART_DEV, USART_FLAG_TXE) == RESET)) { + tx_buf[tx_produce] = c; + tx_produce = tx_produce_next; + } else { + USART_SendData(UART_DEV, c); + } + NVIC_EnableIRQ(UART_DEV_IRQn); +} + +void uart_sync(void) +{ + while(tx_consume != tx_produce) { + //Waiting for transfer complete + } +} + +void usart_printf_init(uint32_t baudrate) +{ + tx_produce = 0; + tx_consume = 0; + + UART_DEV_CLK_EN(); + + GPIO_InitTypeDef gpio_config = { + .GPIO_Pin = UART_DEV_TX_PIN, + .GPIO_Speed = GPIO_Speed_50MHz, + .GPIO_Mode = GPIO_Mode_AF_PP, + }; + GPIO_Init(UART_DEV_GPIO_PORT, &gpio_config); + + USART_InitTypeDef uart_config = { + .USART_BaudRate = baudrate, + .USART_WordLength = USART_WordLength_8b, + .USART_StopBits = USART_StopBits_1, + .USART_Parity = USART_Parity_No, + .USART_HardwareFlowControl = USART_HardwareFlowControl_None, + .USART_Mode = USART_Mode_Tx, + }; + + USART_Init(UART_DEV, &uart_config); + USART_ITConfig(UART_DEV, USART_IT_TC, ENABLE); + USART_Cmd(UART_DEV, ENABLE); + + NVIC_InitTypeDef nvic_config = { + .NVIC_IRQChannel = UART_DEV_IRQn, + .NVIC_IRQChannelPreemptionPriority = 1, + .NVIC_IRQChannelSubPriority = 3, + .NVIC_IRQChannelCmd = ENABLE, + }; + NVIC_Init(&nvic_config); +} diff --git a/hw/bsp/ch32f20x/debug_uart.h b/hw/bsp/ch32f20x/debug_uart.h new file mode 100644 index 000000000..10284cf6f --- /dev/null +++ b/hw/bsp/ch32f20x/debug_uart.h @@ -0,0 +1,31 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Denis Krasutski + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#include + +void uart_write(char c); +void uart_sync(void); +void usart_printf_init(uint32_t baudrate); diff --git a/hw/bsp/ch32f20x/family.c b/hw/bsp/ch32f20x/family.c new file mode 100644 index 000000000..9717832d6 --- /dev/null +++ b/hw/bsp/ch32f20x/family.c @@ -0,0 +1,141 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Denis Krasutski + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#include "stdio.h" +#include "debug_uart.h" + +#include "ch32f20x.h" + +#include "bsp/board_api.h" +#include "board.h" + +//--------------------------------------------------------------------+ +// Forward USB interrupt events to TinyUSB IRQ Handler +//--------------------------------------------------------------------+ + +void USBHS_IRQHandler(void) +{ + tud_int_handler(0); +} + +void board_init(void) { + + /* Disable interrupts during init */ + __disable_irq(); + +#if CFG_TUSB_OS == OPT_OS_NONE + SysTick_Config(SystemCoreClock / 1000); +#endif + +#if CFG_TUSB_OS == OPT_OS_FREERTOS + // If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher ) + NVIC_SetPriority(USBHS_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY); +#endif + + usart_printf_init(115200); + + // USB HS Clock config + RCC_USBCLK48MConfig(RCC_USBCLK48MCLKSource_USBPHY); + RCC_USBHSPLLCLKConfig(RCC_HSBHSPLLCLKSource_HSE); + RCC_USBHSConfig(RCC_USBPLL_Div2); + RCC_USBHSPLLCKREFCLKConfig(RCC_USBHSPLLCKREFCLK_4M); + RCC_USBHSPHYPLLALIVEcmd(ENABLE); + RCC_AHBPeriphClockCmd(RCC_AHBPeriph_USBHS, ENABLE); + + // LED + LED_CLOCK_EN(); + GPIO_InitTypeDef led_pin_config = { + .GPIO_Pin = LED_PIN, + .GPIO_Mode = GPIO_Mode_Out_OD, + .GPIO_Speed = GPIO_Speed_50MHz, + }; + GPIO_Init(LED_PORT, &led_pin_config); + + // Button + BUTTON_CLOCK_EN(); + GPIO_InitTypeDef button_pin_config = { + .GPIO_Pin = BUTTON_PIN, + .GPIO_Mode = GPIO_Mode_IPU, + .GPIO_Speed = GPIO_Speed_50MHz, + }; + GPIO_Init(BUTTON_PORT, &button_pin_config); + + /* Enable interrupts globally */ + __enable_irq(); +} + +#if CFG_TUSB_OS == OPT_OS_NONE + +volatile uint32_t system_ticks = 0; + +void SysTick_Handler(void) +{ + system_ticks++; +} + +uint32_t board_millis(void) +{ + return system_ticks; +} + +#endif + +void HardFault_Handler(void) +{ + __asm("BKPT #0\n"); +} + +//--------------------------------------------------------------------+ +// Board porting API +//--------------------------------------------------------------------+ + +void board_led_write(bool state) +{ + GPIO_WriteBit(LED_PORT, LED_PIN, state); +} + +uint32_t board_button_read(void) +{ + return BUTTON_STATE_ACTIVE == GPIO_ReadInputDataBit(BUTTON_PORT, BUTTON_PIN); +} + +int board_uart_read(uint8_t *buf, int len) +{ + (void) buf; + (void) len; + return 0; +} + +int board_uart_write(void const *buf, int len) +{ + int txsize = len; + while ( txsize-- ) + { + uart_write(*(uint8_t const*) buf); + buf++; + } + return len; +} diff --git a/hw/bsp/ch32f20x/family.mk b/hw/bsp/ch32f20x/family.mk new file mode 100644 index 000000000..c08451b9c --- /dev/null +++ b/hw/bsp/ch32f20x/family.mk @@ -0,0 +1,30 @@ +# Submodules +CH32F20X_SDK = hw/mcu/wch/ch32f20x +DEPS_SUBMODULES += $(CH32F20X_SDK) + +# WCH-SDK paths +CH32F20X_SDK_SRC = $(CH32F20X_SDK)/EVT/EXAM/SRC + +include $(TOP)/$(BOARD_PATH)/board.mk + +CPU_CORE ?= cortex-m3 + +CFLAGS += \ + -DCFG_TUSB_MCU=OPT_MCU_CH32F20X \ + -DBOARD_TUD_MAX_SPEED=OPT_MODE_HIGH_SPEED + +SRC_C += \ + src/portable/wch/dcd_ch32_usbhs.c \ + $(CH32F20X_SDK_SRC)/StdPeriphDriver/src/ch32f20x_gpio.c \ + $(CH32F20X_SDK_SRC)/StdPeriphDriver/src/ch32f20x_misc.c \ + $(CH32F20X_SDK_SRC)/StdPeriphDriver/src/ch32f20x_rcc.c \ + $(CH32F20X_SDK_SRC)/StdPeriphDriver/src/ch32f20x_usart.c + +INC += \ + $(TOP)/$(BOARD_PATH) \ + $(TOP)/$(CH32F20X_SDK_SRC)/StdPeriphDriver/inc + +# For freeRTOS port source +FREERTOS_PORTABLE_SRC = $(FREERTOS_PORTABLE_PATH)/ARM_CM3 + +flash: flash-stlink diff --git a/hw/bsp/ch32f20x/startup_gcc_ch32f20x_d8c.s b/hw/bsp/ch32f20x/startup_gcc_ch32f20x_d8c.s new file mode 100644 index 000000000..2ecac2ac1 --- /dev/null +++ b/hw/bsp/ch32f20x/startup_gcc_ch32f20x_d8c.s @@ -0,0 +1,493 @@ +/** + ****************************************************************************** + * @file startup_gcc_ch32f20x_d8c.s + * @author Denis Krasutski + * @brief CH32F205 Devices vector table + * This module performs: + * - Set the initial SP + * - Set the initial PC == Reset_Handler, + * - Set the vector table entries with the exceptions ISR address + * - Branches to main in the C library (which eventually + * calls main()). + * After Reset the Cortex-M3 processor is in Thread mode, + * priority is Privileged, and the Stack is set to Main. + ****************************************************************************** + */ + +.syntax unified +.cpu cortex-m3 +.thumb +.global g_pfnVectors +.global Default_Handler + +/* start address for the initialization values of the .data section. defined in linker script */ +.word _sidata +/* start address for the .data section. defined in linker script */ +.word _sdata +/* end address for the .data section. defined in linker script */ +.word _edata +/* start address for the .bss section. defined in linker script */ +.word _sbss +/* end address for the .bss section. defined in linker script */ +.word _ebss + +.section .text.Reset_Handler +.weak Reset_Handler +.type Reset_Handler, %function +Reset_Handler: + /* set stack pointer */ + ldr sp, =_estack + /* Call the clock system initialization function.*/ + bl SystemInit + /* Copy the data segment initializers from flash to SRAM */ + ldr r0, =_sdata + ldr r1, =_edata + ldr r2, =_sidata + movs r3, #0 + b LoopCopyDataInit +CopyDataInit: + ldr r4, [r2, r3] + str r4, [r0, r3] + adds r3, r3, #4 +LoopCopyDataInit: + adds r4, r0, r3 + cmp r4, r1 + bcc CopyDataInit + + /* Zero fill the bss segment. */ + ldr r2, =_sbss + ldr r4, =_ebss + movs r3, #0 + b LoopFillZerobss +FillZerobss: + str r3, [r2] + adds r2, r2, #4 +LoopFillZerobss: + cmp r2, r4 + bcc FillZerobss + /* Call static constructors */ + bl __libc_init_array + /* Call the application's entry point.*/ + bl main + bx lr + .size Reset_Handler, .-Reset_Handler + +.section .text.Default_Handler,"ax",%progbits +Default_Handler: +Infinite_Loop: + b Infinite_Loop + .size Default_Handler, .-Default_Handler + +/****************************************************************************** +* +* The minimal vector table for a Cortex M3. Note that the proper constructs +* must be placed on this to ensure that it ends up at physical address +* 0x0000.0000. +* +*******************************************************************************/ + .section .isr_vector,"a",%progbits + .type g_pfnVectors, %object + .size g_pfnVectors, .-g_pfnVectors + +g_pfnVectors: + .word _estack + .word Reset_Handler + .word NMI_Handler + .word HardFault_Handler + .word MemManage_Handler + .word BusFault_Handler + .word UsageFault_Handler + .word 0 + .word 0 + .word 0 + .word 0 + .word SVC_Handler + .word DebugMon_Handler + .word 0 + .word PendSV_Handler + .word SysTick_Handler + +/******************************************************************************* + External Interrupts +*******************************************************************************/ +.word WWDG_IRQHandler +.word PVD_IRQHandler +.word TAMPER_IRQHandler +.word RTC_IRQHandler +.word FLASH_IRQHandler +.word RCC_IRQHandler +.word EXTI0_IRQHandler +.word EXTI1_IRQHandler +.word EXTI2_IRQHandler +.word EXTI3_IRQHandler +.word EXTI4_IRQHandler +.word DMA1_Channel1_IRQHandler +.word DMA1_Channel2_IRQHandler +.word DMA1_Channel3_IRQHandler +.word DMA1_Channel4_IRQHandler +.word DMA1_Channel5_IRQHandler +.word DMA1_Channel6_IRQHandler +.word DMA1_Channel7_IRQHandler +.word ADC1_2_IRQHandler +.word USB_HP_CAN1_TX_IRQHandler +.word USB_LP_CAN1_RX0_IRQHandler +.word CAN1_RX1_IRQHandler +.word CAN1_SCE_IRQHandler +.word EXTI9_5_IRQHandler +.word TIM1_BRK_IRQHandler +.word TIM1_UP_IRQHandler +.word TIM1_TRG_COM_IRQHandler +.word TIM1_CC_IRQHandler +.word TIM2_IRQHandler +.word TIM3_IRQHandler +.word TIM4_IRQHandler +.word I2C1_EV_IRQHandler +.word I2C1_ER_IRQHandler +.word I2C2_EV_IRQHandler +.word I2C2_ER_IRQHandler +.word SPI1_IRQHandler +.word SPI2_IRQHandler +.word USART1_IRQHandler +.word USART2_IRQHandler +.word USART3_IRQHandler +.word EXTI15_10_IRQHandler +.word RTCAlarm_IRQHandler +.word 0 +.word TIM8_BRK_IRQHandler +.word TIM8_UP_IRQHandler +.word TIM8_TRG_COM_IRQHandler +.word TIM8_CC_IRQHandler +.word RNG_IRQHandler +.word FSMC_IRQHandler +.word SDIO_IRQHandler +.word TIM5_IRQHandler +.word SPI3_IRQHandler +.word UART4_IRQHandler +.word UART5_IRQHandler +.word TIM6_IRQHandler +.word TIM7_IRQHandler +.word DMA2_Channel1_IRQHandler +.word DMA2_Channel2_IRQHandler +.word DMA2_Channel3_IRQHandler +.word DMA2_Channel4_IRQHandler +.word DMA2_Channel5_IRQHandler +.word ETH_IRQHandler +.word ETH_WKUP_IRQHandler +.word CAN2_TX_IRQHandler +.word CAN2_RX0_IRQHandler +.word CAN2_RX1_IRQHandler +.word CAN2_SCE_IRQHandler +.word OTG_FS_IRQHandler +.word USBHSWakeup_IRQHandler +.word USBHS_IRQHandler +.word DVP_IRQHandler +.word UART6_IRQHandler +.word UART7_IRQHandler +.word UART8_IRQHandler +.word TIM9_BRK_IRQHandler +.word TIM9_UP_IRQHandler +.word TIM9_TRG_COM_IRQHandler +.word TIM9_CC_IRQHandler +.word TIM10_BRK_IRQHandler +.word TIM10_UP_IRQHandler +.word TIM10_TRG_COM_IRQHandler +.word TIM10_CC_IRQHandler +.word DMA2_Channel6_IRQHandler +.word DMA2_Channel7_IRQHandler +.word DMA2_Channel8_IRQHandler +.word DMA2_Channel9_IRQHandler +.word DMA2_Channel10_IRQHandler +.word DMA2_Channel11_IRQHandler + +/******************************************************************************* +* +* Provide weak aliases +* +*******************************************************************************/ +.weak NMI_Handler +.thumb_set NMI_Handler,Default_Handler + +.weak HardFault_Handler +.thumb_set HardFault_Handler,Default_Handler + +.weak MemManage_Handler +.thumb_set MemManage_Handler,Default_Handler + +.weak BusFault_Handler +.thumb_set BusFault_Handler,Default_Handler + +.weak UsageFault_Handler +.thumb_set UsageFault_Handler,Default_Handler + +.weak SVC_Handler +.thumb_set SVC_Handler,Default_Handler + +.weak DebugMon_Handler +.thumb_set DebugMon_Handler,Default_Handler + +.weak PendSV_Handler +.thumb_set PendSV_Handler,Default_Handler + +.weak SysTick_Handler +.thumb_set SysTick_Handler,Default_Handler + +.weak WWDG_IRQHandler +.thumb_set WWDG_IRQHandler,Default_Handler + +.weak PVD_IRQHandler +.thumb_set PVD_IRQHandler,Default_Handler + +.weak TAMPER_IRQHandler +.thumb_set TAMPER_IRQHandler,Default_Handler + +.weak RTC_IRQHandler +.thumb_set RTC_IRQHandler,Default_Handler + +.weak FLASH_IRQHandler +.thumb_set FLASH_IRQHandler,Default_Handler + +.weak RCC_IRQHandler +.thumb_set RCC_IRQHandler,Default_Handler + +.weak EXTI0_IRQHandler +.thumb_set EXTI0_IRQHandler,Default_Handler + +.weak EXTI1_IRQHandler +.thumb_set EXTI1_IRQHandler,Default_Handler + +.weak EXTI2_IRQHandler +.thumb_set EXTI2_IRQHandler,Default_Handler + +.weak EXTI3_IRQHandler +.thumb_set EXTI3_IRQHandler,Default_Handler + +.weak EXTI4_IRQHandler +.thumb_set EXTI4_IRQHandler,Default_Handler + +.weak DMA1_Channel1_IRQHandler +.thumb_set DMA1_Channel1_IRQHandler,Default_Handler + +.weak DMA1_Channel2_IRQHandler +.thumb_set DMA1_Channel2_IRQHandler,Default_Handler + +.weak DMA1_Channel3_IRQHandler +.thumb_set DMA1_Channel3_IRQHandler,Default_Handler + +.weak DMA1_Channel4_IRQHandler +.thumb_set DMA1_Channel4_IRQHandler,Default_Handler + +.weak DMA1_Channel5_IRQHandler +.thumb_set DMA1_Channel5_IRQHandler,Default_Handler + +.weak DMA1_Channel6_IRQHandler +.thumb_set DMA1_Channel6_IRQHandler,Default_Handler + +.weak DMA1_Channel7_IRQHandler +.thumb_set DMA1_Channel7_IRQHandler,Default_Handler + +.weak ADC1_2_IRQHandler +.thumb_set ADC1_2_IRQHandler,Default_Handler + +.weak USB_HP_CAN1_TX_IRQHandler +.thumb_set USB_HP_CAN1_TX_IRQHandler,Default_Handler + +.weak USB_LP_CAN1_RX0_IRQHandler +.thumb_set USB_LP_CAN1_RX0_IRQHandler,Default_Handler + +.weak CAN1_RX1_IRQHandler +.thumb_set CAN1_RX1_IRQHandler,Default_Handler + +.weak CAN1_SCE_IRQHandler +.thumb_set CAN1_SCE_IRQHandler,Default_Handler + +.weak EXTI9_5_IRQHandler +.thumb_set EXTI9_5_IRQHandler,Default_Handler + +.weak TIM1_BRK_IRQHandler +.thumb_set TIM1_BRK_IRQHandler,Default_Handler + +.weak TIM1_UP_IRQHandler +.thumb_set TIM1_UP_IRQHandler,Default_Handler + +.weak TIM1_TRG_COM_IRQHandler +.thumb_set TIM1_TRG_COM_IRQHandler,Default_Handler + +.weak TIM1_CC_IRQHandler +.thumb_set TIM1_CC_IRQHandler,Default_Handler + +.weak TIM2_IRQHandler +.thumb_set TIM2_IRQHandler,Default_Handler + +.weak TIM3_IRQHandler +.thumb_set TIM3_IRQHandler,Default_Handler + +.weak TIM4_IRQHandler +.thumb_set TIM4_IRQHandler,Default_Handler + +.weak I2C1_EV_IRQHandler +.thumb_set I2C1_EV_IRQHandler,Default_Handler + +.weak I2C1_ER_IRQHandler +.thumb_set I2C1_ER_IRQHandler,Default_Handler + +.weak I2C2_EV_IRQHandler +.thumb_set I2C2_EV_IRQHandler,Default_Handler + +.weak I2C2_ER_IRQHandler +.thumb_set I2C2_ER_IRQHandler,Default_Handler + +.weak SPI1_IRQHandler +.thumb_set SPI1_IRQHandler,Default_Handler + +.weak SPI2_IRQHandler +.thumb_set SPI2_IRQHandler,Default_Handler + +.weak USART1_IRQHandler +.thumb_set USART1_IRQHandler,Default_Handler + +.weak USART2_IRQHandler +.thumb_set USART2_IRQHandler,Default_Handler + +.weak USART3_IRQHandler +.thumb_set USART3_IRQHandler,Default_Handler + +.weak EXTI15_10_IRQHandler +.thumb_set EXTI15_10_IRQHandler,Default_Handler + +.weak RTCAlarm_IRQHandler +.thumb_set RTCAlarm_IRQHandler,Default_Handler + +.weak TIM8_BRK_IRQHandler +.thumb_set TIM8_BRK_IRQHandler,Default_Handler + +.weak TIM8_UP_IRQHandler +.thumb_set TIM8_UP_IRQHandler,Default_Handler + +.weak TIM8_TRG_COM_IRQHandler +.thumb_set TIM8_TRG_COM_IRQHandler,Default_Handler + +.weak TIM8_CC_IRQHandler +.thumb_set TIM8_CC_IRQHandler,Default_Handler + +.weak RNG_IRQHandler +.thumb_set RNG_IRQHandler,Default_Handler + +.weak FSMC_IRQHandler +.thumb_set FSMC_IRQHandler,Default_Handler + +.weak SDIO_IRQHandler +.thumb_set SDIO_IRQHandler,Default_Handler + +.weak TIM5_IRQHandler +.thumb_set TIM5_IRQHandler,Default_Handler + +.weak SPI3_IRQHandler +.thumb_set SPI3_IRQHandler,Default_Handler + +.weak UART4_IRQHandler +.thumb_set UART4_IRQHandler,Default_Handler + +.weak UART5_IRQHandler +.thumb_set UART5_IRQHandler,Default_Handler + +.weak TIM6_IRQHandler +.thumb_set TIM6_IRQHandler,Default_Handler + +.weak TIM7_IRQHandler +.thumb_set TIM7_IRQHandler,Default_Handler + +.weak DMA2_Channel1_IRQHandler +.thumb_set DMA2_Channel1_IRQHandler,Default_Handler + +.weak DMA2_Channel2_IRQHandler +.thumb_set DMA2_Channel2_IRQHandler,Default_Handler + +.weak DMA2_Channel3_IRQHandler +.thumb_set DMA2_Channel3_IRQHandler,Default_Handler + +.weak DMA2_Channel4_IRQHandler +.thumb_set DMA2_Channel4_IRQHandler,Default_Handler + +.weak DMA2_Channel5_IRQHandler +.thumb_set DMA2_Channel5_IRQHandler,Default_Handler + +.weak ETH_IRQHandler +.thumb_set ETH_IRQHandler,Default_Handler + +.weak ETH_WKUP_IRQHandler +.thumb_set ETH_WKUP_IRQHandler,Default_Handler + +.weak CAN2_TX_IRQHandler +.thumb_set CAN2_TX_IRQHandler,Default_Handler + +.weak CAN2_RX0_IRQHandler +.thumb_set CAN2_RX0_IRQHandler,Default_Handler + +.weak CAN2_RX1_IRQHandler +.thumb_set CAN2_RX1_IRQHandler,Default_Handler + +.weak CAN2_SCE_IRQHandler +.thumb_set CAN2_SCE_IRQHandler,Default_Handler + +.weak OTG_FS_IRQHandler +.thumb_set OTG_FS_IRQHandler,Default_Handler + +.weak USBHSWakeup_IRQHandler +.thumb_set USBHSWakeup_IRQHandler,Default_Handler + +.weak USBHS_IRQHandler +.thumb_set USBHS_IRQHandler,Default_Handler + +.weak DVP_IRQHandler +.thumb_set DVP_IRQHandler,Default_Handler + +.weak UART6_IRQHandler +.thumb_set UART6_IRQHandler,Default_Handler + +.weak UART7_IRQHandler +.thumb_set UART7_IRQHandler,Default_Handler + +.weak UART8_IRQHandler +.thumb_set UART8_IRQHandler,Default_Handler + +.weak TIM9_BRK_IRQHandler +.thumb_set TIM9_BRK_IRQHandler,Default_Handler + +.weak TIM9_UP_IRQHandler +.thumb_set TIM9_UP_IRQHandler,Default_Handler + +.weak TIM9_TRG_COM_IRQHandler +.thumb_set TIM9_TRG_COM_IRQHandler,Default_Handler + +.weak TIM9_CC_IRQHandler +.thumb_set TIM9_CC_IRQHandler,Default_Handler + +.weak TIM10_BRK_IRQHandler +.thumb_set TIM10_BRK_IRQHandler,Default_Handler + +.weak TIM10_UP_IRQHandler +.thumb_set TIM10_UP_IRQHandler,Default_Handler + +.weak TIM10_TRG_COM_IRQHandler +.thumb_set TIM10_TRG_COM_IRQHandler,Default_Handler + +.weak TIM10_CC_IRQHandler +.thumb_set TIM10_CC_IRQHandler,Default_Handler + +.weak DMA2_Channel6_IRQHandler +.thumb_set DMA2_Channel6_IRQHandler,Default_Handler + +.weak DMA2_Channel7_IRQHandler +.thumb_set DMA2_Channel7_IRQHandler,Default_Handler + +.weak DMA2_Channel8_IRQHandler +.thumb_set DMA2_Channel8_IRQHandler,Default_Handler + +.weak DMA2_Channel9_IRQHandler +.thumb_set DMA2_Channel9_IRQHandler,Default_Handler + +.weak DMA2_Channel10_IRQHandler +.thumb_set DMA2_Channel10_IRQHandler,Default_Handler + +.weak DMA2_Channel11_IRQHandler +.thumb_set DMA2_Channel11_IRQHandler,Default_Handler diff --git a/hw/bsp/ch32f20x/system_ch32f20x.c b/hw/bsp/ch32f20x/system_ch32f20x.c new file mode 100644 index 000000000..0a59b9287 --- /dev/null +++ b/hw/bsp/ch32f20x/system_ch32f20x.c @@ -0,0 +1,1122 @@ +/********************************** (C) COPYRIGHT ******************************* +* File Name : system_ch32f20x.c +* Author : WCH +* Version : V1.0.0 +* Date : 2021/08/08 +* Description : CH32F20x Device Peripheral Access Layer System Source File. +* For CH32F208 HSE = 32Mhz +* For others HSE = 8Mhz +********************************************************************************* +* Copyright (c) 2021 Nanjing Qinheng Microelectronics Co., Ltd. +* Attention: This software (modified or not) and binary are used for +* microcontroller manufactured by Nanjing Qinheng Microelectronics. +*******************************************************************************/ +#include "ch32f20x.h" + +/* +* Uncomment the line corresponding to the desired System clock (SYSCLK) frequency (after +* reset the HSI is used as SYSCLK source). +* If none of the define below is enabled, the HSI is used as System clock source. +*/ + +//#define SYSCLK_FREQ_HSE HSE_VALUE +//#define SYSCLK_FREQ_48MHz_HSE 48000000 +//#define SYSCLK_FREQ_56MHz_HSE 56000000 +//#define SYSCLK_FREQ_72MHz_HSE 72000000 +#define SYSCLK_FREQ_96MHz_HSE 96000000 +//#define SYSCLK_FREQ_120MHz_HSE 120000000 +//#define SYSCLK_FREQ_144MHz_HSE 144000000 +//#define SYSCLK_FREQ_HSI HSI_VALUE +//#define SYSCLK_FREQ_48MHz_HSI 48000000 +//#define SYSCLK_FREQ_56MHz_HSI 56000000 +//#define SYSCLK_FREQ_72MHz_HSI 72000000 +//#define SYSCLK_FREQ_96MHz_HSI 96000000 +//#define SYSCLK_FREQ_120MHz_HSI 120000000 +//#define SYSCLK_FREQ_144MHz_HSI 144000000 + + +/* Uncomment the following line if you need to relocate your vector Table in Internal SRAM */ +/* #define VECT_TAB_SRAM */ + +/* Vector Table base offset field This value must be a multiple of 0x200 */ +#define VECT_TAB_OFFSET 0x0 + +/* Clock Definitions */ +#ifdef SYSCLK_FREQ_HSE +uint32_t SystemCoreClock = SYSCLK_FREQ_HSE; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_48MHz_HSE +uint32_t SystemCoreClock = SYSCLK_FREQ_48MHz_HSE; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_56MHz_HSE +uint32_t SystemCoreClock = SYSCLK_FREQ_56MHz_HSE; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_72MHz_HSE +uint32_t SystemCoreClock = SYSCLK_FREQ_72MHz_HSE; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_96MHz_HSE +uint32_t SystemCoreClock = SYSCLK_FREQ_96MHz_HSE; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_120MHz_HSE +uint32_t SystemCoreClock = SYSCLK_FREQ_120MHz_HSE; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_144MHz_HSE +uint32_t SystemCoreClock = SYSCLK_FREQ_144MHz_HSE; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_48MHz_HSI +uint32_t SystemCoreClock = SYSCLK_FREQ_48MHz_HSI; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_56MHz_HSI +uint32_t SystemCoreClock = SYSCLK_FREQ_56MHz_HSI; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_72MHz_HSI +uint32_t SystemCoreClock = SYSCLK_FREQ_72MHz_HSI; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_96MHz_HSI +uint32_t SystemCoreClock = SYSCLK_FREQ_96MHz_HSI; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_120MHz_HSI +uint32_t SystemCoreClock = SYSCLK_FREQ_120MHz_HSI; /* System Clock Frequency (Core Clock) */ +#elif defined SYSCLK_FREQ_144MHz_HSI +uint32_t SystemCoreClock = SYSCLK_FREQ_144MHz_HSI; /* System Clock Frequency (Core Clock) */ +#else +uint32_t SystemCoreClock = HSI_VALUE; /* System Clock Frequency (Core Clock) */ + +#endif + +__I uint8_t AHBPrescTable[16] = {0, 0, 0, 0, 0, 0, 0, 0, 1, 2, 3, 4, 6, 7, 8, 9}; + +/* system_private_function_proto_types */ +static void SetSysClock( void ); + +#ifdef SYSCLK_FREQ_HSE +static void SetSysClockToHSE( void ); +#elif defined SYSCLK_FREQ_48MHz_HSE +static void SetSysClockTo48_HSE( void ); +#elif defined SYSCLK_FREQ_56MHz_HSE +static void SetSysClockTo56_HSE( void ); +#elif defined SYSCLK_FREQ_72MHz_HSE +static void SetSysClockTo72_HSE( void ); +#elif defined SYSCLK_FREQ_96MHz_HSE +static void SetSysClockTo96_HSE( void ); +#elif defined SYSCLK_FREQ_120MHz_HSE +static void SetSysClockTo120_HSE( void ); +#elif defined SYSCLK_FREQ_144MHz_HSE +static void SetSysClockTo144_HSE( void ); +#elif defined SYSCLK_FREQ_48MHz_HSI +static void SetSysClockTo48_HSI( void ); +#elif defined SYSCLK_FREQ_56MHz_HSI +static void SetSysClockTo56_HSI( void ); +#elif defined SYSCLK_FREQ_72MHz_HSI +static void SetSysClockTo72_HSI( void ); +#elif defined SYSCLK_FREQ_96MHz_HSI +static void SetSysClockTo96_HSI( void ); +#elif defined SYSCLK_FREQ_120MHz_HSI +static void SetSysClockTo120_HSI( void ); +#elif defined SYSCLK_FREQ_144MHz_HSI +static void SetSysClockTo144_HSI( void ); + +#endif + + +/********************************************************************* + * @fn SystemInit + * + * @brief Setup the microcontroller system Initialize the Embedded Flash Interface, + * the PLL and update the SystemCoreClock variable. + * + * @return none + */ +void SystemInit( void ) +{ + RCC->CTLR |= ( uint32_t )0x00000001; + +#ifdef CH32F20x_D8C + RCC->CFGR0 &= ( uint32_t )0xF8FF0000; +#else + RCC->CFGR0 &= ( uint32_t )0xF0FF0000; +#endif + + RCC->CTLR &= ( uint32_t )0xFEF6FFFF; + RCC->CTLR &= ( uint32_t )0xFFFBFFFF; + RCC->CFGR0 &= ( uint32_t )0xFF80FFFF; +#ifdef CH32F20x_D8C + RCC->CTLR &= ( uint32_t )0xEBFFFFFF; + RCC->INTR = 0x00FF0000; + RCC->CFGR2 = 0x00000000; +#else + RCC->INTR = 0x009F0000; +#endif + + SetSysClock(); + +#ifdef VECT_TAB_SRAM + SCB->VTOR = SRAM_BASE | VECT_TAB_OFFSET; /* Vector Table Relocation in Internal SRAM. */ +#else + SCB->VTOR = FLASH_BASE | VECT_TAB_OFFSET; /* Vector Table Relocation in Internal FLASH. */ +#endif +} + +/********************************************************************* + * @fn SystemCoreClockUpdate + * + * @brief Update SystemCoreClock variable according to Clock Register Values. + * + * @return none + */ +void SystemCoreClockUpdate( void ) +{ + uint32_t tmp = 0, pllmull = 0, pllsource = 0; + uint8_t Pll_6_5 = 0; + +#if defined (CH32F20x_D8C) + uint8_t Pll2mull = 0; + +#endif + + tmp = RCC->CFGR0 & RCC_SWS; + + switch( tmp ) + { + case 0x00: + SystemCoreClock = HSI_VALUE; + break; + case 0x04: + SystemCoreClock = HSE_VALUE; + break; + case 0x08: + pllmull = RCC->CFGR0 & RCC_PLLMULL; + pllsource = RCC->CFGR0 & RCC_PLLSRC; + pllmull = ( pllmull >> 18 ) + 2; + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + if( pllmull == 17 ) + { + pllmull = 18; + } +#else + if( pllmull == 2 ) + { + pllmull = 18; + } + if( pllmull == 15 ) + { + pllmull = 13; /* *6.5 */ + Pll_6_5 = 1; + } + if( pllmull == 16 ) + { + pllmull = 15; + } + if( pllmull == 17 ) + { + pllmull = 16; + } +#endif + + if( pllsource == 0x00 ) + { + if(EXTEN->EXTEN_CTR & EXTEN_PLL_HSI_PRE) SystemCoreClock = HSI_VALUE * pllmull; + else SystemCoreClock = (HSI_VALUE >> 1) * pllmull; + } + else + { +#if defined (CH32F20x_D8C) + if(RCC->CFGR2 & (1<<16)){ /* PLL2 */ + SystemCoreClock = HSE_VALUE/(((RCC->CFGR2 & 0xF0)>>4) + 1); /* PREDIV2 */ + + Pll2mull = (uint8_t)((RCC->CFGR2 & 0xF00)>>8); + + if(Pll2mull == 0) SystemCoreClock = (SystemCoreClock * 5)>>1; + else if(Pll2mull == 1) SystemCoreClock = (SystemCoreClock * 25)>>1; + else if(Pll2mull == 15) SystemCoreClock = SystemCoreClock * 20; + else SystemCoreClock = SystemCoreClock * (Pll2mull + 2); + + SystemCoreClock = SystemCoreClock/((RCC->CFGR2 & 0xF) + 1); /* PREDIV1 */ + } + else{/* HSE */ + SystemCoreClock = HSE_VALUE/((RCC->CFGR2 & 0xF) + 1); /* PREDIV1 */ + } + + SystemCoreClock = SystemCoreClock * pllmull; +#else + +#if defined (CH32F20x_D8W) + if((RCC->CFGR0 & (3<<22)) == (3<<22)) + { + SystemCoreClock = ((HSE_VALUE>>1)) * pllmull; + } + else +#endif + if( ( RCC->CFGR0 & RCC_PLLXTPRE ) != ( uint32_t )RESET ) + { +#ifdef CH32F20x_D8W + SystemCoreClock = ( ( HSE_VALUE >> 2 ) >> 1 ) * pllmull; +#else + SystemCoreClock = ( HSE_VALUE >> 1 ) * pllmull; +#endif + } + else + { +#ifdef CH32F20x_D8W + SystemCoreClock = ( HSE_VALUE >> 2 ) * pllmull; +#else + SystemCoreClock = HSE_VALUE * pllmull; +#endif + + } +#endif + } + + if( Pll_6_5 == 1 ) SystemCoreClock = ( SystemCoreClock / 2 ); + + break; + default: + SystemCoreClock = HSI_VALUE; + break; + } + + tmp = AHBPrescTable[( ( RCC->CFGR0 & RCC_HPRE ) >> 4 )]; + SystemCoreClock >>= tmp; +} + + + +/********************************************************************* + * @fn SetSysClock + * + * @brief Configures the System clock frequency, HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClock( void ) +{ +#ifdef SYSCLK_FREQ_HSE + SetSysClockToHSE(); +#elif defined SYSCLK_FREQ_48MHz_HSE + SetSysClockTo48_HSE(); +#elif defined SYSCLK_FREQ_56MHz_HSE + SetSysClockTo56_HSE(); +#elif defined SYSCLK_FREQ_72MHz_HSE + SetSysClockTo72_HSE(); +#elif defined SYSCLK_FREQ_96MHz_HSE + SetSysClockTo96_HSE(); +#elif defined SYSCLK_FREQ_120MHz_HSE + SetSysClockTo120_HSE(); +#elif defined SYSCLK_FREQ_144MHz_HSE + SetSysClockTo144_HSE(); +#elif defined SYSCLK_FREQ_48MHz_HSI + SetSysClockTo48_HSI(); +#elif defined SYSCLK_FREQ_56MHz_HSI + SetSysClockTo56_HSI(); +#elif defined SYSCLK_FREQ_72MHz_HSI + SetSysClockTo72_HSI(); +#elif defined SYSCLK_FREQ_96MHz_HSI + SetSysClockTo96_HSI(); +#elif defined SYSCLK_FREQ_120MHz_HSI + SetSysClockTo120_HSI(); +#elif defined SYSCLK_FREQ_144MHz_HSI + SetSysClockTo144_HSI(); + +#endif + + /* If none of the define above is enabled, the HSI is used as System clock + * source (default after reset) + */ +} + + +#ifdef SYSCLK_FREQ_HSE + +/********************************************************************* + * @fn SetSysClockToHSE + * + * @brief Sets HSE as System clock source and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockToHSE( void ) +{ + __IO uint32_t StartUpCounter = 0, HSEStatus = 0; + + + RCC->CTLR |= ( ( uint32_t )RCC_HSEON ); + + /* Wait till HSE is ready and if Time out is reached exit */ + do + { + HSEStatus = RCC->CTLR & RCC_HSERDY; + StartUpCounter++; + } + while( ( HSEStatus == 0 ) && ( StartUpCounter != HSE_STARTUP_TIMEOUT ) ); + + if( ( RCC->CTLR & RCC_HSERDY ) != RESET ) + { + HSEStatus = ( uint32_t )0x01; + } + else + { + HSEStatus = ( uint32_t )0x00; + } + + if( HSEStatus == ( uint32_t )0x01 ) + { + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV1; + + /* Select HSE as system clock source + * CH32F20x_D6 (HSE=8Mhz) + * CH32F20x_D8 (HSE=8Mhz) + * CH32F20x_D8W (HSE=32Mhz) + */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_HSE; + + /* Wait till HSE is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x04 ) + { + } + } + else + { + /* If HSE fails to start-up, the application will have wrong clock + * configuration. User can add here some code to deal with this error + */ + } +} + +#elif defined SYSCLK_FREQ_48MHz_HSE + +/********************************************************************* + * @fn SetSysClockTo48_HSE + * + * @brief Sets System clock frequency to 48MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo48_HSE( void ) +{ + __IO uint32_t StartUpCounter = 0, HSEStatus = 0; + + + RCC->CTLR |= ( ( uint32_t )RCC_HSEON ); + /* Wait till HSE is ready and if Time out is reached exit */ + do + { + HSEStatus = RCC->CTLR & RCC_HSERDY; + StartUpCounter++; + } + while( ( HSEStatus == 0 ) && ( StartUpCounter != HSE_STARTUP_TIMEOUT ) ); + + if( ( RCC->CTLR & RCC_HSERDY ) != RESET ) + { + HSEStatus = ( uint32_t )0x01; + } + else + { + HSEStatus = ( uint32_t )0x00; + } + + if( HSEStatus == ( uint32_t )0x01 ) + { + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* CH32F20x_D6-PLL configuration: PLLCLK = HSE * 6 = 48 MHz (HSE=8Mhz) + * CH32F20x_D8-PLL configuration: PLLCLK = HSE * 6 = 48 MHz (HSE=8Mhz) + * CH32F20x_D8W-PLL configuration: PLLCLK = HSE/4 * 6 = 48 MHz(HSE=32Mhz) + */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL6 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL6_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } + } + else + { + /* + * If HSE fails to start-up, the application will have wrong clock + * configuration. User can add here some code to deal with this error + */ + } +} + +#elif defined SYSCLK_FREQ_56MHz_HSE + +/********************************************************************* + * @fn SetSysClockTo56_HSE + * + * @brief Sets System clock frequency to 56MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo56_HSE( void ) +{ + __IO uint32_t StartUpCounter = 0, HSEStatus = 0; + + RCC->CTLR |= ( ( uint32_t )RCC_HSEON ); + + /* Wait till HSE is ready and if Time out is reached exit */ + do + { + HSEStatus = RCC->CTLR & RCC_HSERDY; + StartUpCounter++; + } + while( ( HSEStatus == 0 ) && ( StartUpCounter != HSE_STARTUP_TIMEOUT ) ); + + if( ( RCC->CTLR & RCC_HSERDY ) != RESET ) + { + HSEStatus = ( uint32_t )0x01; + } + else + { + HSEStatus = ( uint32_t )0x00; + } + + if( HSEStatus == ( uint32_t )0x01 ) + { + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* CH32F20x_D6-PLL configuration: PLLCLK = HSE * 7 = 56 MHz (HSE=8Mhz) + * CH32F20x_D8-PLL configuration: PLLCLK = HSE * 7 = 56 MHz (HSE=8Mhz) + * CH32F20x_D8W-PLL configuration: PLLCLK = HSE/4 * 7 = 56 MHz(HSE=32Mhz) + */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL7 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL7_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } + } + else + { + /* + * If HSE fails to start-up, the application will have wrong clock + * configuration. User can add here some code to deal with this error + */ + } +} + +#elif defined SYSCLK_FREQ_72MHz_HSE + +/********************************************************************* + * @fn SetSysClockTo72_HSE + * + * @brief Sets System clock frequency to 72MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo72_HSE( void ) +{ + __IO uint32_t StartUpCounter = 0, HSEStatus = 0; + + RCC->CTLR |= ( ( uint32_t )RCC_HSEON ); + + /* Wait till HSE is ready and if Time out is reached exit */ + do + { + HSEStatus = RCC->CTLR & RCC_HSERDY; + StartUpCounter++; + } + while( ( HSEStatus == 0 ) && ( StartUpCounter != HSE_STARTUP_TIMEOUT ) ); + + if( ( RCC->CTLR & RCC_HSERDY ) != RESET ) + { + HSEStatus = ( uint32_t )0x01; + } + else + { + HSEStatus = ( uint32_t )0x00; + } + + if( HSEStatus == ( uint32_t )0x01 ) + { + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* CH32F20x_D6-PLL configuration: PLLCLK = HSE * 9 = 72 MHz (HSE=8Mhz) + * CH32F20x_D8-PLL configuration: PLLCLK = HSE * 9 = 72 MHz (HSE=8Mhz) + * CH32F20x_D8W-PLL configuration: PLLCLK = HSE/4 * 9 = 72 MHz(HSE=32Mhz) + */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | + RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL9 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL9_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } + } + else + { + /* + * If HSE fails to start-up, the application will have wrong clock + * configuration. User can add here some code to deal with this error + */ + } +} + + +#elif defined SYSCLK_FREQ_96MHz_HSE + +/********************************************************************* + * @fn SetSysClockTo96_HSE + * + * @brief Sets System clock frequency to 96MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo96_HSE( void ) +{ + __IO uint32_t StartUpCounter = 0, HSEStatus = 0; + + RCC->CTLR |= ( ( uint32_t )RCC_HSEON ); + + /* Wait till HSE is ready and if Time out is reached exit */ + do + { + HSEStatus = RCC->CTLR & RCC_HSERDY; + StartUpCounter++; + } + while( ( HSEStatus == 0 ) && ( StartUpCounter != HSE_STARTUP_TIMEOUT ) ); + + if( ( RCC->CTLR & RCC_HSERDY ) != RESET ) + { + HSEStatus = ( uint32_t )0x01; + } + else + { + HSEStatus = ( uint32_t )0x00; + } + + if( HSEStatus == ( uint32_t )0x01 ) + { + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* CH32F20x_D6-PLL configuration: PLLCLK = HSE * 12 = 96 MHz (HSE=8Mhz) + * CH32F20x_D8-PLL configuration: PLLCLK = HSE * 12 = 96 MHz (HSE=8Mhz) + * CH32F20x_D8W-PLL configuration: PLLCLK = HSE/4 * 12 = 96 MHz(HSE=32Mhz) + */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | + RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL12 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL12_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } + } + else + { + /* + * If HSE fails to start-up, the application will have wrong clock + * configuration. User can add here some code to deal with this error + */ + } +} + + +#elif defined SYSCLK_FREQ_120MHz_HSE + +/********************************************************************* + * @fn SetSysClockTo120_HSE + * + * @brief Sets System clock frequency to 120MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo120_HSE(void) +{ + __IO uint32_t StartUpCounter = 0, HSEStatus = 0; + + RCC->CTLR |= ((uint32_t)RCC_HSEON); + + /* Wait till HSE is ready and if Time out is reached exit */ + do + { + HSEStatus = RCC->CTLR & RCC_HSERDY; + StartUpCounter++; + } while((HSEStatus == 0) && (StartUpCounter != HSE_STARTUP_TIMEOUT)); + + if ((RCC->CTLR & RCC_HSERDY) != RESET) + { + HSEStatus = (uint32_t)0x01; + } + else + { + HSEStatus = (uint32_t)0x00; + } + + if (HSEStatus == (uint32_t)0x01) + { +#if defined (CH32F20x_D8W) + RCC->CFGR0 |= (uint32_t)(3<<22); + /* HCLK = SYSCLK */ + RCC->CFGR0 |= (uint32_t)RCC_HPRE_DIV2; +#else + /* HCLK = SYSCLK */ + RCC->CFGR0 |= (uint32_t)RCC_HPRE_DIV1; +#endif + + /* PCLK2 = HCLK */ + RCC->CFGR0 |= (uint32_t)RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= (uint32_t)RCC_PPRE1_DIV2; + + /* CH32F20x_D6-PLL configuration: PLLCLK = HSE * 15 = 120 MHz (HSE=8Mhz) + * CH32F20x_D8-PLL configuration: PLLCLK = HSE * 15 = 120 MHz (HSE=8Mhz) + * CH32F20x_D8W-PLL configuration: PLLCLK = HSE/2 * 15 = 240 MHz(HSE=32Mhz) + */ + RCC->CFGR0 &= (uint32_t)((uint32_t)~(RCC_PLLSRC | RCC_PLLXTPRE | + RCC_PLLMULL)); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= (uint32_t)(RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL15); +#else + RCC->CFGR0 |= (uint32_t)(RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL15_EXTEN); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while((RCC->CTLR & RCC_PLLRDY) == 0) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= (uint32_t)((uint32_t)~(RCC_SW)); + RCC->CFGR0 |= (uint32_t)RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while ((RCC->CFGR0 & (uint32_t)RCC_SWS) != (uint32_t)0x08) + { + } + } + else + { + /* + * If HSE fails to start-up, the application will have wrong clock + * configuration. User can add here some code to deal with this error + */ + } +} + + + +#elif defined SYSCLK_FREQ_144MHz_HSE + +/********************************************************************* + * @fn SetSysClockTo144_HSE + * + * @brief Sets System clock frequency to 144MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo144_HSE( void ) +{ + __IO uint32_t StartUpCounter = 0, HSEStatus = 0; + + RCC->CTLR |= ( ( uint32_t )RCC_HSEON ); + + /* Wait till HSE is ready and if Time out is reached exit */ + do + { + HSEStatus = RCC->CTLR & RCC_HSERDY; + StartUpCounter++; + } + while( ( HSEStatus == 0 ) && ( StartUpCounter != HSE_STARTUP_TIMEOUT ) ); + + if( ( RCC->CTLR & RCC_HSERDY ) != RESET ) + { + HSEStatus = ( uint32_t )0x01; + } + else + { + HSEStatus = ( uint32_t )0x00; + } + + if( HSEStatus == ( uint32_t )0x01 ) + { + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* CH32F20x_D6-PLL configuration: PLLCLK = HSE * 18 = 144 MHz (HSE=8Mhz) + * CH32F20x_D8-PLL configuration: PLLCLK = HSE * 18 = 144 MHz (HSE=8Mhz) + * CH32F20x_D8W-PLL configuration: PLLCLK = HSE/4 * 18 = 144 MHz(HSE=32Mhz) + */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | + RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL18 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSE | RCC_PLLXTPRE_HSE | RCC_PLLMULL18_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } + } + else + { + /* + * If HSE fails to start-up, the application will have wrong clock + * configuration. User can add here some code to deal with this error + */ + } +} + +#elif defined SYSCLK_FREQ_48MHz_HSI + +/********************************************************************* + * @fn SetSysClockTo48_HSI + * + * @brief Sets System clock frequency to 48MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo48_HSI( void ) +{ + EXTEN->EXTEN_CTR |= EXTEN_PLL_HSI_PRE; + + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* PLL configuration: PLLCLK = HSI * 6 = 48 MHz */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL6 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL6_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } +} + +#elif defined SYSCLK_FREQ_56MHz_HSI + +/********************************************************************* + * @fn SetSysClockTo56_HSI + * + * @brief Sets System clock frequency to 56MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo56_HSI( void ) +{ + EXTEN->EXTEN_CTR |= EXTEN_PLL_HSI_PRE; + + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* PLL configuration: PLLCLK = HSI * 7 = 56 MHz */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL7 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL7_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } +} + +#elif defined SYSCLK_FREQ_72MHz_HSI + +/********************************************************************* + * @fn SetSysClockTo72_HSI + * + * @brief Sets System clock frequency to 72MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo72_HSI( void ) +{ + EXTEN->EXTEN_CTR |= EXTEN_PLL_HSI_PRE; + + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* PLL configuration: PLLCLK = HSI * 9 = 72 MHz */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL9 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL9_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } +} + + +#elif defined SYSCLK_FREQ_96MHz_HSI + +/********************************************************************* + * @fn SetSysClockTo96_HSI + * + * @brief Sets System clock frequency to 96MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo96_HSI( void ) +{ + EXTEN->EXTEN_CTR |= EXTEN_PLL_HSI_PRE; + + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* PLL configuration: PLLCLK = HSI * 12 = 96 MHz */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL12 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL12_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } +} + + +#elif defined SYSCLK_FREQ_120MHz_HSI + +/********************************************************************* + * @fn SetSysClockTo120_HSI + * + * @brief Sets System clock frequency to 120MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo120_HSI(void) +{ + EXTEN->EXTEN_CTR |= EXTEN_PLL_HSI_PRE; + + /* HCLK = SYSCLK */ + RCC->CFGR0 |= (uint32_t)RCC_HPRE_DIV1; + + /* PCLK2 = HCLK */ + RCC->CFGR0 |= (uint32_t)RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= (uint32_t)RCC_PPRE1_DIV2; + + /* PLL configuration: PLLCLK = HSI * 15 = 120 MHz */ + RCC->CFGR0 &= (uint32_t)((uint32_t)~(RCC_PLLSRC | RCC_PLLXTPRE | + RCC_PLLMULL)); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL15 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL15_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while((RCC->CTLR & RCC_PLLRDY) == 0) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= (uint32_t)((uint32_t)~(RCC_SW)); + RCC->CFGR0 |= (uint32_t)RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while ((RCC->CFGR0 & (uint32_t)RCC_SWS) != (uint32_t)0x08) + { + } +} + + +#elif defined SYSCLK_FREQ_144MHz_HSI + +/********************************************************************* + * @fn SetSysClockTo144_HSI + * + * @brief Sets System clock frequency to 144MHz and configure HCLK, PCLK2 and PCLK1 prescalers. + * + * @return none + */ +static void SetSysClockTo144_HSI( void ) +{ + EXTEN->EXTEN_CTR |= EXTEN_PLL_HSI_PRE; + + /* HCLK = SYSCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_HPRE_DIV1; + /* PCLK2 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE2_DIV1; + /* PCLK1 = HCLK */ + RCC->CFGR0 |= ( uint32_t )RCC_PPRE1_DIV2; + + /* PLL configuration: PLLCLK = HSI * 18 = 144 MHz */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_PLLSRC | RCC_PLLXTPRE | RCC_PLLMULL ) ); + +#if defined (CH32F20x_D6) || defined (CH32F20x_D8) || defined (CH32F20x_D8W) + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL18 ); +#else + RCC->CFGR0 |= ( uint32_t )( RCC_PLLSRC_HSI_Div2 | RCC_PLLMULL18_EXTEN ); +#endif + + /* Enable PLL */ + RCC->CTLR |= RCC_PLLON; + /* Wait till PLL is ready */ + while( ( RCC->CTLR & RCC_PLLRDY ) == 0 ) + { + } + /* Select PLL as system clock source */ + RCC->CFGR0 &= ( uint32_t )( ( uint32_t )~( RCC_SW ) ); + RCC->CFGR0 |= ( uint32_t )RCC_SW_PLL; + /* Wait till PLL is used as system clock source */ + while( ( RCC->CFGR0 & ( uint32_t )RCC_SWS ) != ( uint32_t )0x08 ) + { + } +} + + +#endif diff --git a/hw/bsp/ch32f20x/system_ch32f20x.h b/hw/bsp/ch32f20x/system_ch32f20x.h new file mode 100644 index 000000000..734c80a5a --- /dev/null +++ b/hw/bsp/ch32f20x/system_ch32f20x.h @@ -0,0 +1,28 @@ +/********************************** (C) COPYRIGHT ******************************* +* File Name : system_ch32f20x.h +* Author : WCH +* Version : V1.0.0 +* Date : 2021/08/08 +* Description : CH32F20x Device Peripheral Access Layer System Header File. +*******************************************************************************/ +#ifndef __SYSTEM_CH32F20x_H +#define __SYSTEM_CH32F20x_H + +#ifdef __cplusplus + extern "C" { +#endif + +extern uint32_t SystemCoreClock; /* System Clock Frequency (Core Clock) */ + +/* System_Exported_Functions */ +extern void SystemInit(void); +extern void SystemCoreClockUpdate(void); + +#ifdef __cplusplus +} +#endif + +#endif /*__CH32F20x_SYSTEM_H */ + + + diff --git a/hw/bsp/ch32v307/family.mk b/hw/bsp/ch32v307/family.mk index 4b06cf429..45f0317ee 100644 --- a/hw/bsp/ch32v307/family.mk +++ b/hw/bsp/ch32v307/family.mk @@ -29,7 +29,7 @@ CFLAGS += \ -DBOARD_TUD_MAX_SPEED=OPT_MODE_HIGH_SPEED SRC_C += \ - src/portable/wch/ch32v307/dcd_usbhs.c \ + src/portable/wch/dcd_ch32_usbhs.c \ $(CH32V307_SDK_SRC)/Core/core_riscv.c \ $(CH32V307_SDK_SRC)/Peripheral/src/ch32v30x_gpio.c \ $(CH32V307_SDK_SRC)/Peripheral/src/ch32v30x_misc.c \ diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index 8807ff8aa..a72976ae9 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -383,6 +383,10 @@ #elif TU_CHECK_MCU(OPT_MCU_CH32V307) #define TUP_DCD_ENDPOINT_MAX 16 #define TUP_RHPORT_HIGHSPEED 1 + +#elif TU_CHECK_MCU(OPT_MCU_CH32F20X) + #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_RHPORT_HIGHSPEED 1 #endif diff --git a/src/portable/wch/ch32_usbhs_reg.h b/src/portable/wch/ch32_usbhs_reg.h new file mode 100644 index 000000000..9b956231f --- /dev/null +++ b/src/portable/wch/ch32_usbhs_reg.h @@ -0,0 +1,349 @@ +#ifndef _USB_CH32_USBHS_REG_H +#define _USB_CH32_USBHS_REG_H + +#if (CFG_TUSB_MCU == OPT_MCU_CH32V307) +#include +#elif (CFG_TUSB_MCU == OPT_MCU_CH32F20X) +#include +#endif + +/******************* GLOBAL ******************/ + +// USB CONTROL +#define USBHS_CONTROL_OFFSET 0x00 +#define USBHS_DMA_EN (1 << 0) +#define USBHS_ALL_CLR (1 << 1) +#define USBHS_FORCE_RST (1 << 2) +#define USBHS_INT_BUSY_EN (1 << 3) +#define USBHS_DEV_PU_EN (1 << 4) +#define USBHS_SPEED_MASK (3 << 5) +#define USBHS_FULL_SPEED (0 << 5) +#define USBHS_HIGH_SPEED (1 << 5) +#define USBHS_LOW_SPEED (2 << 5) +#define USBHS_HOST_MODE (1 << 7) + +// USB_INT_EN +#define USBHS_INT_EN_OFFSET 0x02 +#define USBHS_BUS_RST_EN (1 << 0) +#define USBHS_DETECT_EN (1 << 0) +#define USBHS_TRANSFER_EN (1 << 1) +#define USBHS_SUSPEND_EN (1 << 2) +#define USBHS_SOF_ACT_EN (1 << 3) +#define USBHS_FIFO_OV_EN (1 << 4) +#define USBHS_SETUP_ACT_EN (1 << 5) +#define USBHS_ISO_ACT_EN (1 << 6) +#define USBHS_DEV_NAK_EN (1 << 7) + +// USB DEV AD +#define USBHS_DEV_AD_OFFSET 0x03 +// USB FRAME_NO +#define USBHS_FRAME_NO_OFFSET 0x04 +// USB SUSPEND +#define USBHS_SUSPEND_OFFSET 0x06 +#define USBHS_DEV_REMOTE_WAKEUP (1 << 2) +#define USBHS_LINESTATE_MASK (2 << 4) /* Read Only */ + +// RESERVED0 + +// USB SPEED TYPE +#define USBHS_SPEED_TYPE_OFFSET 0x08 +#define USBSPEED_MASK (0x03) + +// USB_MIS_ST +#define USBHS_MIS_ST_OFFSET 0x09 +#define USBHS_SPLIT_CAN (1 << 0) +#define USBHS_ATTACH (1 << 1) +#define USBHS_SUSPEND (1 << 2) +#define USBHS_BUS_RESET (1 << 3) +#define USBHS_R_FIFO_RDY (1 << 4) +#define USBHS_SIE_FREE (1 << 5) +#define USBHS_SOF_ACT (1 << 6) +#define USBHS_SOF_PRES (1 << 7) + +// INT_FLAG +#define USBHS_INT_FLAG_OFFSET 0x0A +#define USBHS_BUS_RST_FLAG (1 << 0) +#define USBHS_DETECT_FLAG (1 << 0) +#define USBHS_TRANSFER_FLAG (1 << 1) +#define USBHS_SUSPEND_FLAG (1 << 2) +#define USBHS_HST_SOF_FLAG (1 << 3) +#define USBHS_FIFO_OV_FLAG (1 << 4) +#define USBHS_SETUP_FLAG (1 << 5) +#define USBHS_ISO_ACT_FLAG (1 << 6) + +// INT_ST +#define USBHS_INT_ST_OFFSET 0x0B +#define USBHS_DEV_UIS_IS_NAK (1 << 7) +#define USBHS_DEV_UIS_TOG_OK (1 << 6) +#define MASK_UIS_TOKEN (3 << 4) +#define MASK_UIS_ENDP (0x0F) +#define MASK_UIS_H_RES (0x0F) + +#define USBHS_TOGGLE_OK (0x40) +#define USBHS_HOST_RES (0x0f) + +//USB_RX_LEN +#define USBHS_RX_LEN_OFFSET 0x0C +/******************* DEVICE ******************/ + +//UEP_CONFIG +#define USBHS_UEP_CONFIG_OFFSET 0x10 +#define USBHS_EP0_T_EN (1 << 0) +#define USBHS_EP0_R_EN (1 << 16) + +#define USBHS_EP1_T_EN (1 << 1) +#define USBHS_EP1_R_EN (1 << 17) + +#define USBHS_EP2_T_EN (1 << 2) +#define USBHS_EP2_R_EN (1 << 18) + +#define USBHS_EP3_T_EN (1 << 3) +#define USBHS_EP3_R_EN (1 << 19) + +#define USBHS_EP4_T_EN (1 << 4) +#define USBHS_EP4_R_EN (1 << 20) + +#define USBHS_EP5_T_EN (1 << 5) +#define USBHS_EP5_R_EN (1 << 21) + +#define USBHS_EP6_T_EN (1 << 6) +#define USBHS_EP6_R_EN (1 << 22) + +#define USBHS_EP7_T_EN (1 << 7) +#define USBHS_EP7_R_EN (1 << 23) + +#define USBHS_EP8_T_EN (1 << 8) +#define USBHS_EP8_R_EN (1 << 24) + +#define USBHS_EP9_T_EN (1 << 9) +#define USBHS_EP9_R_EN (1 << 25) + +#define USBHS_EP10_T_EN (1 << 10) +#define USBHS_EP10_R_EN (1 << 26) + +#define USBHS_EP11_T_EN (1 << 11) +#define USBHS_EP11_R_EN (1 << 27) + +#define USBHS_EP12_T_EN (1 << 12) +#define USBHS_EP12_R_EN (1 << 28) + +#define USBHS_EP13_T_EN (1 << 13) +#define USBHS_EP13_R_EN (1 << 29) + +#define USBHS_EP14_T_EN (1 << 14) +#define USBHS_EP14_R_EN (1 << 30) + +#define USBHS_EP15_T_EN (1 << 15) +#define USBHS_EP15_R_EN (1 << 31) + +//UEP_TYPE +#define USBHS_UEP_TYPE_OFFSET 0x14 +#define USBHS_EP0_T_TYP (1 << 0) +#define USBHS_EP0_R_TYP (1 << 16) + +#define USBHS_EP1_T_TYP (1 << 1) +#define USBHS_EP1_R_TYP (1 << 17) + +#define USBHS_EP2_T_TYP (1 << 2) +#define USBHS_EP2_R_TYP (1 << 18) + +#define USBHS_EP3_T_TYP (1 << 3) +#define USBHS_EP3_R_TYP (1 << 19) + +#define USBHS_EP4_T_TYP (1 << 4) +#define USBHS_EP4_R_TYP (1 << 20) + +#define USBHS_EP5_T_TYP (1 << 5) +#define USBHS_EP5_R_TYP (1 << 21) + +#define USBHS_EP6_T_TYP (1 << 6) +#define USBHS_EP6_R_TYP (1 << 22) + +#define USBHS_EP7_T_TYP (1 << 7) +#define USBHS_EP7_R_TYP (1 << 23) + +#define USBHS_EP8_T_TYP (1 << 8) +#define USBHS_EP8_R_TYP (1 << 24) + +#define USBHS_EP9_T_TYP (1 << 8) +#define USBHS_EP9_R_TYP (1 << 25) + +#define USBHS_EP10_T_TYP (1 << 10) +#define USBHS_EP10_R_TYP (1 << 26) + +#define USBHS_EP11_T_TYP (1 << 11) +#define USBHS_EP11_R_TYP (1 << 27) + +#define USBHS_EP12_T_TYP (1 << 12) +#define USBHS_EP12_R_TYP (1 << 28) + +#define USBHS_EP13_T_TYP (1 << 13) +#define USBHS_EP13_R_TYP (1 << 29) + +#define USBHS_EP14_T_TYP (1 << 14) +#define USBHS_EP14_R_TYP (1 << 30) + +#define USBHS_EP15_T_TYP (1 << 15) +#define USBHS_EP15_R_TYP (1 << 31) + +/* BUF_MOD UEP1~15 */ +#define USBHS_BUF_MOD_OFFSET 0x18 +#define USBHS_EP0_BUF_MOD (1 << 0) +#define USBHS_EP0_ISO_BUF_MOD (1 << 16) + +#define USBHS_EP1_BUF_MOD (1 << 1) +#define USBHS_EP1_ISO_BUF_MOD (1 << 17) + +#define USBHS_EP2_BUF_MOD (1 << 2) +#define USBHS_EP2_ISO_BUF_MOD (1 << 18) + +#define USBHS_EP3_BUF_MOD (1 << 3) +#define USBHS_EP3_ISO_BUF_MOD (1 << 19) + +#define USBHS_EP4_BUF_MOD (1 << 4) +#define USBHS_EP4_ISO_BUF_MOD (1 << 20) + +#define USBHS_EP5_BUF_MOD (1 << 5) +#define USBHS_EP5_ISO_BUF_MOD (1 << 21) + +#define USBHS_EP6_BUF_MOD (1 << 6) +#define USBHS_EP6_ISO_BUF_MOD (1 << 22) + +#define USBHS_EP7_BUF_MOD (1 << 7) +#define USBHS_EP7_ISO_BUF_MOD (1 << 23) + +#define USBHS_EP8_BUF_MOD (1 << 8) +#define USBHS_EP8_ISO_BUF_MOD (1 << 24) + +#define USBHS_EP9_BUF_MOD (1 << 9) +#define USBHS_EP9_ISO_BUF_MOD (1 << 25) + +#define USBHS_EP10_BUF_MOD (1 << 10) +#define USBHS_EP10_ISO_BUF_MOD (1 << 26) + +#define USBHS_EP11_BUF_MOD (1 << 11) +#define USBHS_EP11_ISO_BUF_MOD (1 << 27) + +#define USBHS_EP12_BUF_MOD (1 << 12) +#define USBHS_EP12_ISO_BUF_MOD (1 << 28) + +#define USBHS_EP13_BUF_MOD (1 << 13) +#define USBHS_EP13_ISO_BUF_MOD (1 << 29) + +#define USBHS_EP14_BUF_MOD (1 << 14) +#define USBHS_EP14_ISO_BUF_MOD (1 << 30) + +#define USBHS_EP15_BUF_MOD (1 << 15) +#define USBHS_EP15_ISO_BUF_MOD (1 << 31) +//USBHS_EPn_T_EN USBHS_EPn_R_EN USBHS_EPn_BUF_MOD Description: Arrange from low to high with UEPn_DMA as the starting address +// 0 0 x The endpoint is disabled and the UEPn_*_DMA buffers are not used. +// 1 0 0 The first address of the receive (OUT) buffer is UEPn_RX_DMA +// 1 0 1 RB_UEPn_RX_TOG[0]=0, use buffer UEPn_RX_DMA RB_UEPn_RX_TOG[0]=1, use buffer UEPn_TX_DMA +// 0 1 0 The first address of the transmit (IN) buffer is UEPn_TX_DMA. +// 0 1 1 RB_UEPn_TX_TOG[0]=0, use buffer UEPn_TX_DMA RB_UEPn_TX_TOG[0]=1, use buffer UEPn_RX_DMA + +/* USB0_DMA */ +#define USBHS_UEP0_DMA_OFFSET(n) (0x1C) // endpoint 0 DMA buffer address + +/* USBX_RX_DMA */ +#define USBHS_UEPx_RX_DMA_OFFSET(n) (0x1C + 4 * (n)) // endpoint x DMA buffer address + +#define USBHS_UEPx_TX_DMA_OFFSET(n) (0x58 + 4 * (n)) // endpoint x DMA buffer address + +#define USBHS_UEPx_MAX_LEN_OFFSET(n) (0x98 + 4 * (n)) // endpoint x DMA buffer address + +#define USBHS_UEPx_T_LEN_OFFSET(n) (0xD8 + 4 * (n)) // endpoint x DMA buffer address +#define USBHS_UEPx_TX_CTRL_OFFSET(n) (0xD8 + 4 * (n) + 2) // endpoint x DMA buffer address +#define USBHS_UEPx_RX_CTRL_OFFSET(n) (0xD8 + 4 * (n) + 3) // endpoint x DMA buffer address + +// UEPn_T_LEN +#define USBHS_EP_T_LEN_MASK (0x7FF) + +//UEPn_TX_CTRL +#define USBHS_EP_T_RES_MASK (3 << 0) +#define USBHS_EP_T_RES_ACK (0 << 0) +#define USBHS_EP_T_RES_NYET (1 << 0) +#define USBHS_EP_T_RES_NAK (2 << 0) +#define USBHS_EP_T_RES_STALL (3 << 0) + +#define USBHS_EP_T_TOG_MASK (3 << 3) +#define USBHS_EP_T_TOG_0 (0 << 3) +#define USBHS_EP_T_TOG_1 (1 << 3) +#define USBHS_EP_T_TOG_2 (2 << 3) +#define USBHS_EP_T_TOG_M (3 << 3) + +#define USBHS_EP_T_AUTOTOG (1 << 5) + +//UEPn_RX_CTRL +#define USBHS_EP_R_RES_MASK (3 << 0) +#define USBHS_EP_R_RES_ACK (0 << 0) +#define USBHS_EP_R_RES_NYET (1 << 0) +#define USBHS_EP_R_RES_NAK (2 << 0) +#define USBHS_EP_R_RES_STALL (3 << 0) + +#define USBHS_EP_R_TOG_MASK (3 << 3) +#define USBHS_EP_R_TOG_0 (0 << 3) +#define USBHS_EP_R_TOG_1 (1 << 3) +#define USBHS_EP_R_TOG_2 (2 << 3) +#define USBHS_EP_R_TOG_M (3 << 3) + +#define USBHS_EP_R_AUTOTOG (1 << 5) + +#define USBHS_TOG_MATCH (1 << 6) + +/******************* HOST ******************/ +// USB HOST_CTRL +#define USBHS_SEND_BUS_RESET (1 << 0) +#define USBHS_SEND_BUS_SUSPEND (1 << 1) +#define USBHS_SEND_BUS_RESUME (1 << 2) +#define USBHS_REMOTE_WAKE (1 << 3) +#define USBHS_PHY_SUSPENDM (1 << 4) +#define USBHS_UH_SOFT_FREE (1 << 6) +#define USBHS_SEND_SOF_EN (1 << 7) + +//UH_CONFIG +#define USBHS_HOST_TX_EN (1 << 3) +#define USBHS_HOST_RX_EN (1 << 18) + +// HOST_EP_TYPE +#define USBHS_ENDP_TX_ISO (1 << 3) +#define USBHS_ENDP_RX_ISO (1 << (16 + 2)) + +// R32_UH_EP_PID +#define USBHS_HOST_MASK_TOKEN (0x0f) +#define USBHS_HOST_MASK_ENDP (0x0f << 4) + +//R8_UH_RX_CTRL +#define USBHS_EP_R_RES_MASK (3 << 0) +#define USBHS_EP_R_RES_ACK (0 << 0) +#define USBHS_EP_R_RES_NYET (1 << 0) +#define USBHS_EP_R_RES_NAK (2 << 0) +#define USBHS_EP_R_RES_STALL (3 << 0) + +#define USBHS_UH_R_RES_NO (1 << 2) +#define USBHS_UH_R_TOG_1 (1 << 3) +#define USBHS_UH_R_TOG_2 (2 << 3) +#define USBHS_UH_R_TOG_3 (3 << 3) +#define USBHS_UH_R_TOG_AUTO (1 << 5) +#define USBHS_UH_R_DATA_NO (1 << 6) +//R8_UH_TX_CTRL +#define USBHS_UH_T_RES_MASK (3 << 0) +#define USBHS_UH_T_RES_ACK (0 << 0) +#define USBHS_UH_T_RES_NYET (1 << 0) +#define USBHS_UH_T_RES_NAK (2 << 0) +#define USBHS_UH_T_RES_STALL (3 << 0) + +#define USBHS_UH_T_RES_NO (1 << 2) +#define USBHS_UH_T_TOG_1 (1 << 3) +#define USBHS_UH_T_TOG_2 (2 << 3) +#define USBHS_UH_T_TOG_3 (3 << 3) +#define USBHS_UH_T_TOG_AUTO (1 << 5) +#define USBHS_UH_T_DATA_NO (1 << 6) + +// 00: OUT, 01:SOF, 10:IN, 11:SETUP +#define PID_OUT 0 +#define PID_SOF 1 +#define PID_IN 2 +#define PID_SETUP 3 + +#endif diff --git a/src/portable/wch/ch32v307/ch32_usbhs_reg.h b/src/portable/wch/ch32v307/ch32_usbhs_reg.h deleted file mode 100644 index 5a2c1fbc9..000000000 --- a/src/portable/wch/ch32v307/ch32_usbhs_reg.h +++ /dev/null @@ -1,345 +0,0 @@ -#ifndef _USB_CH32_USBHS_REG_H -#define _USB_CH32_USBHS_REG_H - -#include - -/******************* GLOBAL ******************/ - -// USB CONTROL -#define USBHS_CONTROL_OFFSET 0x00 -#define USBHS_DMA_EN (1 << 0) -#define USBHS_ALL_CLR (1 << 1) -#define USBHS_FORCE_RST (1 << 2) -#define USBHS_INT_BUSY_EN (1 << 3) -#define USBHS_DEV_PU_EN (1 << 4) -#define USBHS_SPEED_MASK (3 << 5) -#define USBHS_FULL_SPEED (0 << 5) -#define USBHS_HIGH_SPEED (1 << 5) -#define USBHS_LOW_SPEED (2 << 5) -#define USBHS_HOST_MODE (1 << 7) - -// USB_INT_EN -#define USBHS_INT_EN_OFFSET 0x02 -#define USBHS_BUS_RST_EN (1 << 0) -#define USBHS_DETECT_EN (1 << 0) -#define USBHS_TRANSFER_EN (1 << 1) -#define USBHS_SUSPEND_EN (1 << 2) -#define USBHS_SOF_ACT_EN (1 << 3) -#define USBHS_FIFO_OV_EN (1 << 4) -#define USBHS_SETUP_ACT_EN (1 << 5) -#define USBHS_ISO_ACT_EN (1 << 6) -#define USBHS_DEV_NAK_EN (1 << 7) - -// USB DEV AD -#define USBHS_DEV_AD_OFFSET 0x03 -// USB FRAME_NO -#define USBHS_FRAME_NO_OFFSET 0x04 -// USB SUSPEND -#define USBHS_SUSPEND_OFFSET 0x06 -#define USBHS_DEV_REMOTE_WAKEUP (1 << 2) -#define USBHS_LINESTATE_MASK (2 << 4) /* Read Only */ - -// RESERVED0 - -// USB SPEED TYPE -#define USBHS_SPEED_TYPE_OFFSET 0x08 -#define USBSPEED_MASK (0x03) - -// USB_MIS_ST -#define USBHS_MIS_ST_OFFSET 0x09 -#define USBHS_SPLIT_CAN (1 << 0) -#define USBHS_ATTACH (1 << 1) -#define USBHS_SUSPEND (1 << 2) -#define USBHS_BUS_RESET (1 << 3) -#define USBHS_R_FIFO_RDY (1 << 4) -#define USBHS_SIE_FREE (1 << 5) -#define USBHS_SOF_ACT (1 << 6) -#define USBHS_SOF_PRES (1 << 7) - -// INT_FLAG -#define USBHS_INT_FLAG_OFFSET 0x0A -#define USBHS_BUS_RST_FLAG (1 << 0) -#define USBHS_DETECT_FLAG (1 << 0) -#define USBHS_TRANSFER_FLAG (1 << 1) -#define USBHS_SUSPEND_FLAG (1 << 2) -#define USBHS_HST_SOF_FLAG (1 << 3) -#define USBHS_FIFO_OV_FLAG (1 << 4) -#define USBHS_SETUP_FLAG (1 << 5) -#define USBHS_ISO_ACT_FLAG (1 << 6) - -// INT_ST -#define USBHS_INT_ST_OFFSET 0x0B -#define USBHS_DEV_UIS_IS_NAK (1 << 7) -#define USBHS_DEV_UIS_TOG_OK (1 << 6) -#define MASK_UIS_TOKEN (3 << 4) -#define MASK_UIS_ENDP (0x0F) -#define MASK_UIS_H_RES (0x0F) - -#define USBHS_TOGGLE_OK (0x40) -#define USBHS_HOST_RES (0x0f) - -//USB_RX_LEN -#define USBHS_RX_LEN_OFFSET 0x0C -/******************* DEVICE ******************/ - -//UEP_CONFIG -#define USBHS_UEP_CONFIG_OFFSET 0x10 -#define USBHS_EP0_T_EN (1 << 0) -#define USBHS_EP0_R_EN (1 << 16) - -#define USBHS_EP1_T_EN (1 << 1) -#define USBHS_EP1_R_EN (1 << 17) - -#define USBHS_EP2_T_EN (1 << 2) -#define USBHS_EP2_R_EN (1 << 18) - -#define USBHS_EP3_T_EN (1 << 3) -#define USBHS_EP3_R_EN (1 << 19) - -#define USBHS_EP4_T_EN (1 << 4) -#define USBHS_EP4_R_EN (1 << 20) - -#define USBHS_EP5_T_EN (1 << 5) -#define USBHS_EP5_R_EN (1 << 21) - -#define USBHS_EP6_T_EN (1 << 6) -#define USBHS_EP6_R_EN (1 << 22) - -#define USBHS_EP7_T_EN (1 << 7) -#define USBHS_EP7_R_EN (1 << 23) - -#define USBHS_EP8_T_EN (1 << 8) -#define USBHS_EP8_R_EN (1 << 24) - -#define USBHS_EP9_T_EN (1 << 9) -#define USBHS_EP9_R_EN (1 << 25) - -#define USBHS_EP10_T_EN (1 << 10) -#define USBHS_EP10_R_EN (1 << 26) - -#define USBHS_EP11_T_EN (1 << 11) -#define USBHS_EP11_R_EN (1 << 27) - -#define USBHS_EP12_T_EN (1 << 12) -#define USBHS_EP12_R_EN (1 << 28) - -#define USBHS_EP13_T_EN (1 << 13) -#define USBHS_EP13_R_EN (1 << 29) - -#define USBHS_EP14_T_EN (1 << 14) -#define USBHS_EP14_R_EN (1 << 30) - -#define USBHS_EP15_T_EN (1 << 15) -#define USBHS_EP15_R_EN (1 << 31) - -//UEP_TYPE -#define USBHS_UEP_TYPE_OFFSET 0x14 -#define USBHS_EP0_T_TYP (1 << 0) -#define USBHS_EP0_R_TYP (1 << 16) - -#define USBHS_EP1_T_TYP (1 << 1) -#define USBHS_EP1_R_TYP (1 << 17) - -#define USBHS_EP2_T_TYP (1 << 2) -#define USBHS_EP2_R_TYP (1 << 18) - -#define USBHS_EP3_T_TYP (1 << 3) -#define USBHS_EP3_R_TYP (1 << 19) - -#define USBHS_EP4_T_TYP (1 << 4) -#define USBHS_EP4_R_TYP (1 << 20) - -#define USBHS_EP5_T_TYP (1 << 5) -#define USBHS_EP5_R_TYP (1 << 21) - -#define USBHS_EP6_T_TYP (1 << 6) -#define USBHS_EP6_R_TYP (1 << 22) - -#define USBHS_EP7_T_TYP (1 << 7) -#define USBHS_EP7_R_TYP (1 << 23) - -#define USBHS_EP8_T_TYP (1 << 8) -#define USBHS_EP8_R_TYP (1 << 24) - -#define USBHS_EP9_T_TYP (1 << 8) -#define USBHS_EP9_R_TYP (1 << 25) - -#define USBHS_EP10_T_TYP (1 << 10) -#define USBHS_EP10_R_TYP (1 << 26) - -#define USBHS_EP11_T_TYP (1 << 11) -#define USBHS_EP11_R_TYP (1 << 27) - -#define USBHS_EP12_T_TYP (1 << 12) -#define USBHS_EP12_R_TYP (1 << 28) - -#define USBHS_EP13_T_TYP (1 << 13) -#define USBHS_EP13_R_TYP (1 << 29) - -#define USBHS_EP14_T_TYP (1 << 14) -#define USBHS_EP14_R_TYP (1 << 30) - -#define USBHS_EP15_T_TYP (1 << 15) -#define USBHS_EP15_R_TYP (1 << 31) - -/* BUF_MOD UEP1~15 */ -#define USBHS_BUF_MOD_OFFSET 0x18 -#define USBHS_EP0_BUF_MOD (1 << 0) -#define USBHS_EP0_ISO_BUF_MOD (1 << 16) - -#define USBHS_EP1_BUF_MOD (1 << 1) -#define USBHS_EP1_ISO_BUF_MOD (1 << 17) - -#define USBHS_EP2_BUF_MOD (1 << 2) -#define USBHS_EP2_ISO_BUF_MOD (1 << 18) - -#define USBHS_EP3_BUF_MOD (1 << 3) -#define USBHS_EP3_ISO_BUF_MOD (1 << 19) - -#define USBHS_EP4_BUF_MOD (1 << 4) -#define USBHS_EP4_ISO_BUF_MOD (1 << 20) - -#define USBHS_EP5_BUF_MOD (1 << 5) -#define USBHS_EP5_ISO_BUF_MOD (1 << 21) - -#define USBHS_EP6_BUF_MOD (1 << 6) -#define USBHS_EP6_ISO_BUF_MOD (1 << 22) - -#define USBHS_EP7_BUF_MOD (1 << 7) -#define USBHS_EP7_ISO_BUF_MOD (1 << 23) - -#define USBHS_EP8_BUF_MOD (1 << 8) -#define USBHS_EP8_ISO_BUF_MOD (1 << 24) - -#define USBHS_EP9_BUF_MOD (1 << 9) -#define USBHS_EP9_ISO_BUF_MOD (1 << 25) - -#define USBHS_EP10_BUF_MOD (1 << 10) -#define USBHS_EP10_ISO_BUF_MOD (1 << 26) - -#define USBHS_EP11_BUF_MOD (1 << 11) -#define USBHS_EP11_ISO_BUF_MOD (1 << 27) - -#define USBHS_EP12_BUF_MOD (1 << 12) -#define USBHS_EP12_ISO_BUF_MOD (1 << 28) - -#define USBHS_EP13_BUF_MOD (1 << 13) -#define USBHS_EP13_ISO_BUF_MOD (1 << 29) - -#define USBHS_EP14_BUF_MOD (1 << 14) -#define USBHS_EP14_ISO_BUF_MOD (1 << 30) - -#define USBHS_EP15_BUF_MOD (1 << 15) -#define USBHS_EP15_ISO_BUF_MOD (1 << 31) -//USBHS_EPn_T_EN USBHS_EPn_R_EN USBHS_EPn_BUF_MOD Description: Arrange from low to high with UEPn_DMA as the starting address -// 0 0 x The endpoint is disabled and the UEPn_*_DMA buffers are not used. -// 1 0 0 The first address of the receive (OUT) buffer is UEPn_RX_DMA -// 1 0 1 RB_UEPn_RX_TOG[0]=0, use buffer UEPn_RX_DMA RB_UEPn_RX_TOG[0]=1, use buffer UEPn_TX_DMA -// 0 1 0 The first address of the transmit (IN) buffer is UEPn_TX_DMA. -// 0 1 1 RB_UEPn_TX_TOG[0]=0, use buffer UEPn_TX_DMA RB_UEPn_TX_TOG[0]=1, use buffer UEPn_RX_DMA - -/* USB0_DMA */ -#define USBHS_UEP0_DMA_OFFSET(n) (0x1C) // endpoint 0 DMA buffer address - -/* USBX_RX_DMA */ -#define USBHS_UEPx_RX_DMA_OFFSET(n) (0x1C + 4 * (n)) // endpoint x DMA buffer address - -#define USBHS_UEPx_TX_DMA_OFFSET(n) (0x58 + 4 * (n)) // endpoint x DMA buffer address - -#define USBHS_UEPx_MAX_LEN_OFFSET(n) (0x98 + 4 * (n)) // endpoint x DMA buffer address - -#define USBHS_UEPx_T_LEN_OFFSET(n) (0xD8 + 4 * (n)) // endpoint x DMA buffer address -#define USBHS_UEPx_TX_CTRL_OFFSET(n) (0xD8 + 4 * (n) + 2) // endpoint x DMA buffer address -#define USBHS_UEPx_RX_CTRL_OFFSET(n) (0xD8 + 4 * (n) + 3) // endpoint x DMA buffer address - -// UEPn_T_LEN -#define USBHS_EP_T_LEN_MASK (0x7FF) - -//UEPn_TX_CTRL -#define USBHS_EP_T_RES_MASK (3 << 0) -#define USBHS_EP_T_RES_ACK (0 << 0) -#define USBHS_EP_T_RES_NYET (1 << 0) -#define USBHS_EP_T_RES_NAK (2 << 0) -#define USBHS_EP_T_RES_STALL (3 << 0) - -#define USBHS_EP_T_TOG_MASK (3 << 3) -#define USBHS_EP_T_TOG_0 (0 << 3) -#define USBHS_EP_T_TOG_1 (1 << 3) -#define USBHS_EP_T_TOG_2 (2 << 3) -#define USBHS_EP_T_TOG_M (3 << 3) - -#define USBHS_EP_T_AUTOTOG (1 << 5) - -//UEPn_RX_CTRL -#define USBHS_EP_R_RES_MASK (3 << 0) -#define USBHS_EP_R_RES_ACK (0 << 0) -#define USBHS_EP_R_RES_NYET (1 << 0) -#define USBHS_EP_R_RES_NAK (2 << 0) -#define USBHS_EP_R_RES_STALL (3 << 0) - -#define USBHS_EP_R_TOG_MASK (3 << 3) -#define USBHS_EP_R_TOG_0 (0 << 3) -#define USBHS_EP_R_TOG_1 (1 << 3) -#define USBHS_EP_R_TOG_2 (2 << 3) -#define USBHS_EP_R_TOG_M (3 << 3) - -#define USBHS_EP_R_AUTOTOG (1 << 5) - -#define USBHS_TOG_MATCH (1 << 6) - -/******************* HOST ******************/ -// USB HOST_CTRL -#define USBHS_SEND_BUS_RESET (1 << 0) -#define USBHS_SEND_BUS_SUSPEND (1 << 1) -#define USBHS_SEND_BUS_RESUME (1 << 2) -#define USBHS_REMOTE_WAKE (1 << 3) -#define USBHS_PHY_SUSPENDM (1 << 4) -#define USBHS_UH_SOFT_FREE (1 << 6) -#define USBHS_SEND_SOF_EN (1 << 7) - -//UH_CONFIG -#define USBHS_HOST_TX_EN (1 << 3) -#define USBHS_HOST_RX_EN (1 << 18) - -// HOST_EP_TYPE -#define USBHS_ENDP_TX_ISO (1 << 3) -#define USBHS_ENDP_RX_ISO (1 << (16 + 2)) - -// R32_UH_EP_PID -#define USBHS_HOST_MASK_TOKEN (0x0f) -#define USBHS_HOST_MASK_ENDP (0x0f << 4) - -//R8_UH_RX_CTRL -#define USBHS_EP_R_RES_MASK (3 << 0) -#define USBHS_EP_R_RES_ACK (0 << 0) -#define USBHS_EP_R_RES_NYET (1 << 0) -#define USBHS_EP_R_RES_NAK (2 << 0) -#define USBHS_EP_R_RES_STALL (3 << 0) - -#define USBHS_UH_R_RES_NO (1 << 2) -#define USBHS_UH_R_TOG_1 (1 << 3) -#define USBHS_UH_R_TOG_2 (2 << 3) -#define USBHS_UH_R_TOG_3 (3 << 3) -#define USBHS_UH_R_TOG_AUTO (1 << 5) -#define USBHS_UH_R_DATA_NO (1 << 6) -//R8_UH_TX_CTRL -#define USBHS_UH_T_RES_MASK (3 << 0) -#define USBHS_UH_T_RES_ACK (0 << 0) -#define USBHS_UH_T_RES_NYET (1 << 0) -#define USBHS_UH_T_RES_NAK (2 << 0) -#define USBHS_UH_T_RES_STALL (3 << 0) - -#define USBHS_UH_T_RES_NO (1 << 2) -#define USBHS_UH_T_TOG_1 (1 << 3) -#define USBHS_UH_T_TOG_2 (2 << 3) -#define USBHS_UH_T_TOG_3 (3 << 3) -#define USBHS_UH_T_TOG_AUTO (1 << 5) -#define USBHS_UH_T_DATA_NO (1 << 6) - -// 00: OUT, 01:SOF, 10:IN, 11:SETUP -#define PID_OUT 0 -#define PID_SOF 1 -#define PID_IN 2 -#define PID_SETUP 3 - -#endif diff --git a/src/portable/wch/ch32v307/dcd_usbhs.c b/src/portable/wch/ch32v307/dcd_usbhs.c deleted file mode 100644 index 3ad011cff..000000000 --- a/src/portable/wch/ch32v307/dcd_usbhs.c +++ /dev/null @@ -1,391 +0,0 @@ -/* - * The MIT License (MIT) - * - * Copyright (c) 2022 Greg Davill - * - * Permission is hereby granted, free of charge, to any person obtaining a copy - * of this software and associated documentation files (the "Software"), to deal - * in the Software without restriction, including without limitation the rights - * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell - * copies of the Software, and to permit persons to whom the Software is - * furnished to do so, subject to the following conditions: - * - * The above copyright notice and this permission notice shall be included in - * all copies or substantial portions of the Software. - * - * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN - * THE SOFTWARE. - * - * This file is part of the TinyUSB stack. - */ - -#include "tusb_option.h" - -#if CFG_TUD_ENABLED && (CFG_TUSB_MCU == OPT_MCU_CH32V307) -#include "device/dcd.h" - -#include "ch32_usbhs_reg.h" -#include "core_riscv.h" - -// Max number of bi-directional endpoints including EP0 -#define EP_MAX 16 - -typedef struct { - uint8_t *buffer; - // tu_fifo_t * ff; // TODO support dcd_edpt_xfer_fifo API - uint16_t total_len; - uint16_t queued_len; - uint16_t max_size; - bool short_packet; -} xfer_ctl_t; - -#define XFER_CTL_BASE(_ep, _dir) &xfer_status[_ep][_dir] -static xfer_ctl_t xfer_status[EP_MAX][2]; - -#define EP_TX_LEN(ep) *(volatile uint16_t *)((volatile uint16_t *)&(USBHSD->UEP0_TX_LEN) + (ep)*2) -#define EP_TX_CTRL(ep) *(volatile uint8_t *)((volatile uint8_t *)&(USBHSD->UEP0_TX_CTRL) + (ep)*4) -#define EP_RX_CTRL(ep) *(volatile uint8_t *)((volatile uint8_t *)&(USBHSD->UEP0_RX_CTRL) + (ep)*4) -#define EP_RX_MAX_LEN(ep) *(volatile uint16_t *)((volatile uint16_t *)&(USBHSD->UEP0_MAX_LEN) + (ep)*2) - -#define EP_TX_DMA_ADDR(ep) *(volatile uint32_t *)((volatile uint32_t *)&(USBHSD->UEP1_TX_DMA) + (ep - 1)) -#define EP_RX_DMA_ADDR(ep) *(volatile uint32_t *)((volatile uint32_t *)&(USBHSD->UEP1_RX_DMA) + (ep - 1)) - -/* Endpoint Buffer */ -TU_ATTR_ALIGNED(4) uint8_t EP0_DatabufHD[64]; // ep0(64) - -volatile uint8_t USBHS_Dev_Endp0_Tog = 0x01; - -void dcd_init(uint8_t rhport) { - (void)rhport; - - memset(&xfer_status, 0, sizeof(xfer_status)); - - USBHSD->HOST_CTRL = 0x00; - USBHSD->HOST_CTRL = USBHS_PHY_SUSPENDM; - - USBHSD->CONTROL = 0; - -#if TUD_OPT_HIGH_SPEED - USBHSD->CONTROL = USBHS_DMA_EN | USBHS_INT_BUSY_EN | USBHS_HIGH_SPEED; -#else - #error OPT_MODE_FULL_SPEED not currently supported on CH32V307 - USBHSD->CONTROL = USBHS_DMA_EN | USBHS_INT_BUSY_EN | USBHS_FULL_SPEED; -#endif - - USBHSD->INT_EN = 0; - USBHSD->INT_EN = USBHS_SETUP_ACT_EN | USBHS_TRANSFER_EN | USBHS_DETECT_EN | USBHS_SUSPEND_EN; - - /* ALL endpoint enable */ - USBHSD->ENDP_CONFIG = 0xffffffff; - - USBHSD->ENDP_CONFIG = USBHS_EP0_T_EN | USBHS_EP0_R_EN; - USBHSD->ENDP_TYPE = 0x00; - USBHSD->BUF_MODE = 0x00; - - USBHSD->UEP0_MAX_LEN = 64; - - USBHSD->UEP0_DMA = (uint32_t)EP0_DatabufHD; - - USBHSD->UEP0_TX_LEN = 0; - USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_NAK; - USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK; - - for (int ep = 1; ep < EP_MAX; ep++) { - EP_TX_LEN(ep) = 0; - EP_TX_CTRL(ep) = USBHS_EP_T_AUTOTOG | USBHS_EP_T_RES_NAK; - EP_RX_CTRL(ep) = USBHS_EP_R_AUTOTOG | USBHS_EP_R_RES_NAK; - - EP_RX_MAX_LEN(ep) = 512; - } - - USBHSD->DEV_AD = 0; - USBHSD->CONTROL |= USBHS_DEV_PU_EN; -} - -void dcd_int_enable(uint8_t rhport) { - (void)rhport; - - NVIC_EnableIRQ(USBHS_IRQn); -} - -void dcd_int_disable(uint8_t rhport) { - (void)rhport; - - NVIC_DisableIRQ(USBHS_IRQn); -} - -void dcd_edpt_close_all(uint8_t rhport) { - (void)rhport; -} - -void dcd_set_address(uint8_t rhport, uint8_t dev_addr) { - (void)dev_addr; - - // Response with zlp status - dcd_edpt_xfer(rhport, 0x80, NULL, 0); -} - -void dcd_remote_wakeup(uint8_t rhport) -{ - (void) rhport; -} - -void dcd_edpt0_status_complete(uint8_t rhport, tusb_control_request_t const *request) { - (void)rhport; - - if (request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_DEVICE && - request->bmRequestType_bit.type == TUSB_REQ_TYPE_STANDARD && - request->bRequest == TUSB_REQ_SET_ADDRESS) { - USBHSD->DEV_AD = (uint8_t)request->wValue; - } - - EP_TX_CTRL(0) = USBHS_EP_T_RES_NAK; - EP_RX_CTRL(0) = USBHS_EP_R_RES_ACK; -} - -bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const *desc_edpt) { - (void)rhport; - - uint8_t const epnum = tu_edpt_number(desc_edpt->bEndpointAddress); - uint8_t const dir = tu_edpt_dir(desc_edpt->bEndpointAddress); - - TU_ASSERT(epnum < EP_MAX); - - xfer_ctl_t *xfer = XFER_CTL_BASE(epnum, dir); - xfer->max_size = tu_edpt_packet_size(desc_edpt); - - if (epnum != 0) { - if (tu_edpt_dir(desc_edpt->bEndpointAddress) == TUSB_DIR_OUT) { - EP_RX_CTRL(epnum) = USBHS_EP_R_AUTOTOG | USBHS_EP_R_RES_ACK; - } else { - EP_TX_LEN(epnum) = 0; - EP_TX_CTRL(epnum) = USBHS_EP_T_AUTOTOG | USBHS_EP_T_RES_NAK | USBHS_EP_T_TOG_0; - } - } - - return true; -} - -int usbd_ep_close(const uint8_t ep) { - (void)ep; - - return 0; -} -void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) { - (void)rhport; - - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - if (epnum == 0) { - if (dir == TUSB_DIR_OUT) { - USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_STALL; - } else { - USBHSD->UEP0_TX_LEN = 0; - USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_STALL; - } - } else { - if (dir == TUSB_DIR_OUT) { - EP_RX_CTRL(epnum) = (EP_RX_CTRL(epnum) & ~USBHS_EP_R_RES_MASK) | USBHS_EP_R_RES_STALL; - - } else { - EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~USBHS_EP_T_RES_MASK) | USBHS_EP_T_RES_STALL; - } - } -} - -void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) { - (void)rhport; - - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - if (epnum == 0) { - if (dir == TUSB_DIR_OUT) { - USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK; - } else { - } - } else { - if (dir == TUSB_DIR_OUT) { - EP_RX_CTRL(epnum) = (EP_RX_CTRL(epnum) & ~(USBHS_EP_R_RES_MASK | USBHS_EP_T_TOG_MASK)) | USBHS_EP_T_RES_ACK; - - } else { - EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~(USBHS_EP_T_RES_MASK | USBHS_EP_T_TOG_MASK)) | USBHS_EP_T_RES_NAK; - } - } -} - -bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t *buffer, uint16_t total_bytes) { - (void)rhport; - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - xfer_ctl_t *xfer = XFER_CTL_BASE(epnum, dir); - xfer->buffer = buffer; - // xfer->ff = NULL; // TODO support dcd_edpt_xfer_fifo API - xfer->total_len = total_bytes; - xfer->queued_len = 0; - xfer->short_packet = false; - - // uint16_t num_packets = (total_bytes / xfer->max_size); - uint16_t short_packet_size = total_bytes % (xfer->max_size + 1); - - // Zero-size packet is special case. - if (short_packet_size == 0 || (total_bytes == 0)) { - xfer->short_packet = true; - } - - if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN) { - if (!total_bytes) { - xfer->short_packet = true; - if (epnum == 0) { - USBHSD->UEP0_TX_LEN = 0; - USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_ACK | (USBHS_Dev_Endp0_Tog ? USBHS_EP_T_TOG_1 : USBHS_EP_T_TOG_0); - USBHS_Dev_Endp0_Tog ^= 1; - } else { - EP_TX_LEN(epnum) = 0; - EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~(USBHS_EP_T_RES_MASK)) | USBHS_EP_T_RES_ACK; - } - } else { - if (epnum == 0) { - xfer->queued_len += short_packet_size; - memcpy(&EP0_DatabufHD[0], buffer, short_packet_size); - - USBHSD->UEP0_TX_LEN = short_packet_size; - USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_ACK | (USBHS_Dev_Endp0_Tog ? USBHS_EP_T_TOG_1 : USBHS_EP_T_TOG_0); - USBHS_Dev_Endp0_Tog ^= 1; - } else { - xfer->queued_len += short_packet_size; - - EP_TX_DMA_ADDR(epnum) = (uint32_t)buffer; - USBHSD->ENDP_CONFIG |= (USBHS_EP0_T_EN << epnum); - EP_TX_LEN(epnum) = short_packet_size; - EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~(USBHS_EP_T_RES_MASK)) | USBHS_EP_T_RES_ACK; - } - } - } else { /* TUSB_DIR_OUT */ - if (epnum == 0) { - uint32_t read_count = USBHSD->RX_LEN; - read_count = TU_MIN(read_count, total_bytes); - - if ((total_bytes == 8)) { - read_count = 8; - memcpy(buffer, &EP0_DatabufHD[0], 8); - } else { - memcpy(buffer, &EP0_DatabufHD[0], read_count); - } - } else { - EP_RX_DMA_ADDR(epnum) = (uint32_t)xfer->buffer; - USBHSD->ENDP_CONFIG |= (USBHS_EP0_R_EN << epnum); - } - - // usbd_ep_read(ep_addr, buffer, total_bytes, &ret_bytes); - } - return true; -} - - -static void receive_packet(xfer_ctl_t *xfer, uint16_t xfer_size) { - // xfer->queued_len = xfer->total_len - remaining; - - uint16_t remaining = xfer->total_len - xfer->queued_len; - uint16_t to_recv_size; - - if (remaining <= xfer->max_size) { - // Avoid buffer overflow. - to_recv_size = (xfer_size > remaining) ? remaining : xfer_size; - } else { - // Room for full packet, choose recv_size based on what the microcontroller - // claims. - to_recv_size = (xfer_size > xfer->max_size) ? xfer->max_size : xfer_size; - } - - if (to_recv_size) { - } - - xfer->queued_len += xfer_size; - - // Per USB spec, a short OUT packet (including length 0) is always - // indicative of the end of a transfer (at least for ctl, bulk, int). - xfer->short_packet = (xfer_size < xfer->max_size); -} - -void dcd_int_handler(uint8_t rhport) { - (void)rhport; - - uint32_t end_num, rx_token; - uint8_t intflag = 0; - - intflag = USBHSD->INT_FG; - - if (intflag & USBHS_TRANSFER_FLAG) { - - end_num = (USBHSD->INT_ST) & MASK_UIS_ENDP; - rx_token = (((USBHSD->INT_ST) & MASK_UIS_TOKEN) >> 4) & 0x03; - - uint8_t endp = end_num | (rx_token == PID_IN ? TUSB_DIR_IN_MASK : 0); - - xfer_ctl_t *xfer = XFER_CTL_BASE(end_num, tu_edpt_dir(endp)); - - if (rx_token == PID_OUT) { - uint16_t rx_len = USBHSD->RX_LEN; - - receive_packet(xfer, rx_len); - - if (xfer->short_packet || (xfer->queued_len == xfer->total_len)) { - xfer->short_packet = false; - - dcd_event_xfer_complete(0, endp, xfer->queued_len, XFER_RESULT_SUCCESS, true); - } - - if (end_num == 0) { - USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK | USBHS_EP_R_TOG_0; - } - - } else if (rx_token == PID_IN) { - if (xfer->short_packet || (xfer->queued_len == xfer->total_len)) { - xfer->short_packet = false; - xfer->total_len = 0; - dcd_event_xfer_complete(0, endp, xfer->queued_len, XFER_RESULT_SUCCESS, true); - - EP_TX_CTRL(end_num) = (EP_TX_CTRL(end_num) & ~(USBHS_EP_T_RES_MASK)) | USBHS_EP_T_RES_NAK; - - if (end_num == 0) { - } - } else { - dcd_edpt_xfer(0, endp, xfer->buffer + xfer->queued_len, xfer->total_len - xfer->queued_len); - } - } - - USBHSD->INT_FG = USBHS_TRANSFER_FLAG; /* Clear flag */ - } else if (intflag & USBHS_SETUP_FLAG) { - USBHS_Dev_Endp0_Tog = 1; - dcd_event_setup_received(0, EP0_DatabufHD, true); - - USBHSD->INT_FG = USBHS_SETUP_FLAG; /* Clear flag */ - } else if (intflag & USBHS_DETECT_FLAG) { - USBHS_Dev_Endp0_Tog = 1; - - xfer_status[0][TUSB_DIR_OUT].max_size = 64; - xfer_status[0][TUSB_DIR_IN].max_size = 64; - - dcd_event_bus_reset(0, TUSB_SPEED_HIGH, true); - - USBHSD->DEV_AD = 0; - USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK | USBHS_EP_R_TOG_0; - - USBHSD->INT_FG = USBHS_DETECT_FLAG; /* Clear flag */ - } else if (intflag & USBHS_SUSPEND_FLAG) { - dcd_event_t event = { .rhport = rhport, .event_id = DCD_EVENT_SUSPEND }; - dcd_event_handler(&event, true); - - USBHSD->INT_FG = USBHS_SUSPEND_FLAG; /* Clear flag */ - } -} - -#endif diff --git a/src/portable/wch/dcd_ch32_usbhs.c b/src/portable/wch/dcd_ch32_usbhs.c new file mode 100644 index 000000000..1f1c0b876 --- /dev/null +++ b/src/portable/wch/dcd_ch32_usbhs.c @@ -0,0 +1,391 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2022 Greg Davill + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#include "tusb_option.h" + +#if CFG_TUD_ENABLED && ((CFG_TUSB_MCU == OPT_MCU_CH32V307) || (CFG_TUSB_MCU == OPT_MCU_CH32F20X)) +#include "device/dcd.h" + +#include "ch32_usbhs_reg.h" + + +// Max number of bi-directional endpoints including EP0 +#define EP_MAX 16 + +typedef struct { + uint8_t *buffer; + // tu_fifo_t * ff; // TODO support dcd_edpt_xfer_fifo API + uint16_t total_len; + uint16_t queued_len; + uint16_t max_size; + bool short_packet; +} xfer_ctl_t; + +#define XFER_CTL_BASE(_ep, _dir) &xfer_status[_ep][_dir] +static xfer_ctl_t xfer_status[EP_MAX][2]; + +#define EP_TX_LEN(ep) *(volatile uint16_t *)((volatile uint16_t *)&(USBHSD->UEP0_TX_LEN) + (ep)*2) +#define EP_TX_CTRL(ep) *(volatile uint8_t *)((volatile uint8_t *)&(USBHSD->UEP0_TX_CTRL) + (ep)*4) +#define EP_RX_CTRL(ep) *(volatile uint8_t *)((volatile uint8_t *)&(USBHSD->UEP0_RX_CTRL) + (ep)*4) +#define EP_RX_MAX_LEN(ep) *(volatile uint16_t *)((volatile uint16_t *)&(USBHSD->UEP0_MAX_LEN) + (ep)*2) + +#define EP_TX_DMA_ADDR(ep) *(volatile uint32_t *)((volatile uint32_t *)&(USBHSD->UEP1_TX_DMA) + (ep - 1)) +#define EP_RX_DMA_ADDR(ep) *(volatile uint32_t *)((volatile uint32_t *)&(USBHSD->UEP1_RX_DMA) + (ep - 1)) + +/* Endpoint Buffer */ +TU_ATTR_ALIGNED(4) uint8_t EP0_DatabufHD[64]; // ep0(64) + +volatile uint8_t USBHS_Dev_Endp0_Tog = 0x01; + +void dcd_init(uint8_t rhport) { + (void)rhport; + + memset(&xfer_status, 0, sizeof(xfer_status)); + + USBHSD->HOST_CTRL = 0x00; + USBHSD->HOST_CTRL = USBHS_PHY_SUSPENDM; + + USBHSD->CONTROL = 0; + +#if TUD_OPT_HIGH_SPEED + USBHSD->CONTROL = USBHS_DMA_EN | USBHS_INT_BUSY_EN | USBHS_HIGH_SPEED; +#else + #error OPT_MODE_FULL_SPEED not currently supported on CH32 + USBHSD->CONTROL = USBHS_DMA_EN | USBHS_INT_BUSY_EN | USBHS_FULL_SPEED; +#endif + + USBHSD->INT_EN = 0; + USBHSD->INT_EN = USBHS_SETUP_ACT_EN | USBHS_TRANSFER_EN | USBHS_DETECT_EN | USBHS_SUSPEND_EN; + + /* ALL endpoint enable */ + USBHSD->ENDP_CONFIG = 0xffffffff; + + USBHSD->ENDP_CONFIG = USBHS_EP0_T_EN | USBHS_EP0_R_EN; + USBHSD->ENDP_TYPE = 0x00; + USBHSD->BUF_MODE = 0x00; + + USBHSD->UEP0_MAX_LEN = 64; + + USBHSD->UEP0_DMA = (uint32_t)EP0_DatabufHD; + + USBHSD->UEP0_TX_LEN = 0; + USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_NAK; + USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK; + + for (int ep = 1; ep < EP_MAX; ep++) { + EP_TX_LEN(ep) = 0; + EP_TX_CTRL(ep) = USBHS_EP_T_AUTOTOG | USBHS_EP_T_RES_NAK; + EP_RX_CTRL(ep) = USBHS_EP_R_AUTOTOG | USBHS_EP_R_RES_NAK; + + EP_RX_MAX_LEN(ep) = 512; + } + + USBHSD->DEV_AD = 0; + USBHSD->CONTROL |= USBHS_DEV_PU_EN; +} + +void dcd_int_enable(uint8_t rhport) { + (void)rhport; + + NVIC_EnableIRQ(USBHS_IRQn); +} + +void dcd_int_disable(uint8_t rhport) { + (void)rhport; + + NVIC_DisableIRQ(USBHS_IRQn); +} + +void dcd_edpt_close_all(uint8_t rhport) { + (void)rhport; +} + +void dcd_set_address(uint8_t rhport, uint8_t dev_addr) { + (void)dev_addr; + + // Response with zlp status + dcd_edpt_xfer(rhport, 0x80, NULL, 0); +} + +void dcd_remote_wakeup(uint8_t rhport) +{ + (void) rhport; +} + +void dcd_edpt0_status_complete(uint8_t rhport, tusb_control_request_t const *request) { + (void)rhport; + + if (request->bmRequestType_bit.recipient == TUSB_REQ_RCPT_DEVICE && + request->bmRequestType_bit.type == TUSB_REQ_TYPE_STANDARD && + request->bRequest == TUSB_REQ_SET_ADDRESS) { + USBHSD->DEV_AD = (uint8_t)request->wValue; + } + + EP_TX_CTRL(0) = USBHS_EP_T_RES_NAK; + EP_RX_CTRL(0) = USBHS_EP_R_RES_ACK; +} + +bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const *desc_edpt) { + (void)rhport; + + uint8_t const epnum = tu_edpt_number(desc_edpt->bEndpointAddress); + uint8_t const dir = tu_edpt_dir(desc_edpt->bEndpointAddress); + + TU_ASSERT(epnum < EP_MAX); + + xfer_ctl_t *xfer = XFER_CTL_BASE(epnum, dir); + xfer->max_size = tu_edpt_packet_size(desc_edpt); + + if (epnum != 0) { + if (tu_edpt_dir(desc_edpt->bEndpointAddress) == TUSB_DIR_OUT) { + EP_RX_CTRL(epnum) = USBHS_EP_R_AUTOTOG | USBHS_EP_R_RES_ACK; + } else { + EP_TX_LEN(epnum) = 0; + EP_TX_CTRL(epnum) = USBHS_EP_T_AUTOTOG | USBHS_EP_T_RES_NAK | USBHS_EP_T_TOG_0; + } + } + + return true; +} + +int usbd_ep_close(const uint8_t ep) { + (void)ep; + + return 0; +} +void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) { + (void)rhport; + + uint8_t const epnum = tu_edpt_number(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); + + if (epnum == 0) { + if (dir == TUSB_DIR_OUT) { + USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_STALL; + } else { + USBHSD->UEP0_TX_LEN = 0; + USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_STALL; + } + } else { + if (dir == TUSB_DIR_OUT) { + EP_RX_CTRL(epnum) = (EP_RX_CTRL(epnum) & ~USBHS_EP_R_RES_MASK) | USBHS_EP_R_RES_STALL; + + } else { + EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~USBHS_EP_T_RES_MASK) | USBHS_EP_T_RES_STALL; + } + } +} + +void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) { + (void)rhport; + + uint8_t const epnum = tu_edpt_number(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); + + if (epnum == 0) { + if (dir == TUSB_DIR_OUT) { + USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK; + } else { + } + } else { + if (dir == TUSB_DIR_OUT) { + EP_RX_CTRL(epnum) = (EP_RX_CTRL(epnum) & ~(USBHS_EP_R_RES_MASK | USBHS_EP_T_TOG_MASK)) | USBHS_EP_T_RES_ACK; + + } else { + EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~(USBHS_EP_T_RES_MASK | USBHS_EP_T_TOG_MASK)) | USBHS_EP_T_RES_NAK; + } + } +} + +bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t *buffer, uint16_t total_bytes) { + (void)rhport; + uint8_t const epnum = tu_edpt_number(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); + + xfer_ctl_t *xfer = XFER_CTL_BASE(epnum, dir); + xfer->buffer = buffer; + // xfer->ff = NULL; // TODO support dcd_edpt_xfer_fifo API + xfer->total_len = total_bytes; + xfer->queued_len = 0; + xfer->short_packet = false; + + // uint16_t num_packets = (total_bytes / xfer->max_size); + uint16_t short_packet_size = total_bytes % (xfer->max_size + 1); + + // Zero-size packet is special case. + if (short_packet_size == 0 || (total_bytes == 0)) { + xfer->short_packet = true; + } + + if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN) { + if (!total_bytes) { + xfer->short_packet = true; + if (epnum == 0) { + USBHSD->UEP0_TX_LEN = 0; + USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_ACK | (USBHS_Dev_Endp0_Tog ? USBHS_EP_T_TOG_1 : USBHS_EP_T_TOG_0); + USBHS_Dev_Endp0_Tog ^= 1; + } else { + EP_TX_LEN(epnum) = 0; + EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~(USBHS_EP_T_RES_MASK)) | USBHS_EP_T_RES_ACK; + } + } else { + if (epnum == 0) { + xfer->queued_len += short_packet_size; + memcpy(&EP0_DatabufHD[0], buffer, short_packet_size); + + USBHSD->UEP0_TX_LEN = short_packet_size; + USBHSD->UEP0_TX_CTRL = USBHS_EP_T_RES_ACK | (USBHS_Dev_Endp0_Tog ? USBHS_EP_T_TOG_1 : USBHS_EP_T_TOG_0); + USBHS_Dev_Endp0_Tog ^= 1; + } else { + xfer->queued_len += short_packet_size; + + EP_TX_DMA_ADDR(epnum) = (uint32_t)buffer; + USBHSD->ENDP_CONFIG |= (USBHS_EP0_T_EN << epnum); + EP_TX_LEN(epnum) = short_packet_size; + EP_TX_CTRL(epnum) = (EP_TX_CTRL(epnum) & ~(USBHS_EP_T_RES_MASK)) | USBHS_EP_T_RES_ACK; + } + } + } else { /* TUSB_DIR_OUT */ + if (epnum == 0) { + uint32_t read_count = USBHSD->RX_LEN; + read_count = TU_MIN(read_count, total_bytes); + + if ((total_bytes == 8)) { + read_count = 8; + memcpy(buffer, &EP0_DatabufHD[0], 8); + } else { + memcpy(buffer, &EP0_DatabufHD[0], read_count); + } + } else { + EP_RX_DMA_ADDR(epnum) = (uint32_t)xfer->buffer; + USBHSD->ENDP_CONFIG |= (USBHS_EP0_R_EN << epnum); + } + + // usbd_ep_read(ep_addr, buffer, total_bytes, &ret_bytes); + } + return true; +} + + +static void receive_packet(xfer_ctl_t *xfer, uint16_t xfer_size) { + // xfer->queued_len = xfer->total_len - remaining; + + uint16_t remaining = xfer->total_len - xfer->queued_len; + uint16_t to_recv_size; + + if (remaining <= xfer->max_size) { + // Avoid buffer overflow. + to_recv_size = (xfer_size > remaining) ? remaining : xfer_size; + } else { + // Room for full packet, choose recv_size based on what the microcontroller + // claims. + to_recv_size = (xfer_size > xfer->max_size) ? xfer->max_size : xfer_size; + } + + if (to_recv_size) { + } + + xfer->queued_len += xfer_size; + + // Per USB spec, a short OUT packet (including length 0) is always + // indicative of the end of a transfer (at least for ctl, bulk, int). + xfer->short_packet = (xfer_size < xfer->max_size); +} + +void dcd_int_handler(uint8_t rhport) { + (void)rhport; + + uint32_t end_num, rx_token; + uint8_t intflag = 0; + + intflag = USBHSD->INT_FG; + + if (intflag & USBHS_TRANSFER_FLAG) { + + end_num = (USBHSD->INT_ST) & MASK_UIS_ENDP; + rx_token = (((USBHSD->INT_ST) & MASK_UIS_TOKEN) >> 4) & 0x03; + + uint8_t endp = end_num | (rx_token == PID_IN ? TUSB_DIR_IN_MASK : 0); + + xfer_ctl_t *xfer = XFER_CTL_BASE(end_num, tu_edpt_dir(endp)); + + if (rx_token == PID_OUT) { + uint16_t rx_len = USBHSD->RX_LEN; + + receive_packet(xfer, rx_len); + + if (xfer->short_packet || (xfer->queued_len == xfer->total_len)) { + xfer->short_packet = false; + + dcd_event_xfer_complete(0, endp, xfer->queued_len, XFER_RESULT_SUCCESS, true); + } + + if (end_num == 0) { + USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK | USBHS_EP_R_TOG_0; + } + + } else if (rx_token == PID_IN) { + if (xfer->short_packet || (xfer->queued_len == xfer->total_len)) { + xfer->short_packet = false; + xfer->total_len = 0; + dcd_event_xfer_complete(0, endp, xfer->queued_len, XFER_RESULT_SUCCESS, true); + + EP_TX_CTRL(end_num) = (EP_TX_CTRL(end_num) & ~(USBHS_EP_T_RES_MASK)) | USBHS_EP_T_RES_NAK; + + if (end_num == 0) { + } + } else { + dcd_edpt_xfer(0, endp, xfer->buffer + xfer->queued_len, xfer->total_len - xfer->queued_len); + } + } + + USBHSD->INT_FG = USBHS_TRANSFER_FLAG; /* Clear flag */ + } else if (intflag & USBHS_SETUP_FLAG) { + USBHS_Dev_Endp0_Tog = 1; + dcd_event_setup_received(0, EP0_DatabufHD, true); + + USBHSD->INT_FG = USBHS_SETUP_FLAG; /* Clear flag */ + } else if (intflag & USBHS_DETECT_FLAG) { + USBHS_Dev_Endp0_Tog = 1; + + xfer_status[0][TUSB_DIR_OUT].max_size = 64; + xfer_status[0][TUSB_DIR_IN].max_size = 64; + + dcd_event_bus_reset(0, TUSB_SPEED_HIGH, true); + + USBHSD->DEV_AD = 0; + USBHSD->UEP0_RX_CTRL = USBHS_EP_R_RES_ACK | USBHS_EP_R_TOG_0; + + USBHSD->INT_FG = USBHS_DETECT_FLAG; /* Clear flag */ + } else if (intflag & USBHS_SUSPEND_FLAG) { + dcd_event_t event = { .rhport = rhport, .event_id = DCD_EVENT_SUSPEND }; + dcd_event_handler(&event, true); + + USBHSD->INT_FG = USBHS_SUSPEND_FLAG; /* Clear flag */ + } +} + +#endif diff --git a/src/tusb_option.h b/src/tusb_option.h index a41f5a07e..f4b1a1dd4 100644 --- a/src/tusb_option.h +++ b/src/tusb_option.h @@ -169,6 +169,7 @@ // WCH #define OPT_MCU_CH32V307 2200 ///< WCH CH32V307 +#define OPT_MCU_CH32F20X 2210 ///< WCH CH32F20x // NXP LPC MCX diff --git a/tools/get_deps.py b/tools/get_deps.py index 1fac291a3..af3043e4e 100644 --- a/tools/get_deps.py +++ b/tools/get_deps.py @@ -164,6 +164,9 @@ deps_optional = { 'hw/mcu/wch/ch32v307': ['https://github.com/openwch/ch32v307.git', '17761f5cf9dbbf2dcf665b7c04934188add20082', 'ch32v307'], + 'hw/mcu/wch/ch32f20x': ['https://github.com/openwch/ch32f20x.git', + '77c4095087e5ed2c548ec9058e655d0b8757663b', + 'ch32f20x'], 'lib/CMSIS_5': ['https://github.com/ARM-software/CMSIS_5.git', '20285262657d1b482d132d20d755c8c330d55c1f', 'imxrt kinetis_k32l2 kinetis_kl lpc51 lpc54 lpc55 mcx mm32 msp432e4 nrf ra saml2x' diff --git a/tools/iar_template.ipcf b/tools/iar_template.ipcf index 4919fe7b4..c3683c3d7 100644 --- a/tools/iar_template.ipcf +++ b/tools/iar_template.ipcf @@ -164,8 +164,8 @@ $TUSB_DIR$/src/portable/valentyusb/eptri/dcd_eptri.c - - $TUSB_DIR$/src/portable/wch/ch32v307/dcd_usbhs.c + + $TUSB_DIR$/src/portable/wch/dcd_ch32_usbhs.c $TUSB_DIR$/src/typec/usbc.c -- cgit v1.3.1 From 27a2c8cba4dc7c56509bb3d9b6415a6fe8f638ac Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 18 Oct 2023 18:43:07 +0700 Subject: adding nulceo stm32u5a5, fix clock configure issue dwc2 core stuck at reset --- hw/bsp/stm32u5/boards/stm32u575eval/board.h | 15 +- hw/bsp/stm32u5/boards/stm32u575nucleo/board.h | 15 +- .../boards/stm32u5a5nucleo/STM32U5A5ZJTXQ_FLASH.ld | 167 ++++++++++ hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake | 2 +- hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h | 57 ++-- hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk | 2 +- .../stm32u5a5nucleo/cubemx/stm32u5a5nucleo.ioc | 352 +++++++++++++++++++++ hw/bsp/stm32u5/family.c | 53 +++- src/common/tusb_mcu.h | 13 +- src/portable/synopsys/dwc2/dwc2_stm32.h | 10 +- src/tusb_option.h | 6 +- tools/get_deps.py | 21 +- 12 files changed, 643 insertions(+), 70 deletions(-) create mode 100644 hw/bsp/stm32u5/boards/stm32u5a5nucleo/STM32U5A5ZJTXQ_FLASH.ld create mode 100644 hw/bsp/stm32u5/boards/stm32u5a5nucleo/cubemx/stm32u5a5nucleo.ioc (limited to 'src/portable') diff --git a/hw/bsp/stm32u5/boards/stm32u575eval/board.h b/hw/bsp/stm32u5/boards/stm32u575eval/board.h index 5562b95a8..bd91502af 100644 --- a/hw/bsp/stm32u5/boards/stm32u575eval/board.h +++ b/hw/bsp/stm32u5/boards/stm32u575eval/board.h @@ -55,12 +55,10 @@ extern "C" // RCC Clock //--------------------------------------------------------------------+ -static inline void board_clock_init(void) -{ - - RCC_OscInitTypeDef RCC_OscInitStruct = {0}; - RCC_ClkInitTypeDef RCC_ClkInitStruct = {0}; - RCC_PeriphCLKInitTypeDef PeriphClkInit = {0}; +static void SystemClock_Config(void) { + RCC_OscInitTypeDef RCC_OscInitStruct = { 0 }; + RCC_ClkInitTypeDef RCC_ClkInitStruct = { 0 }; + RCC_PeriphCLKInitTypeDef PeriphClkInit = { 0 }; /* Enable Power Clock*/ __HAL_RCC_PWR_CLK_ENABLE(); @@ -94,7 +92,8 @@ static inline void board_clock_init(void) /** Initializes the CPU, AHB and APB buses clocks */ - RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_SYSCLK | RCC_CLOCKTYPE_PCLK1 | RCC_CLOCKTYPE_PCLK2 | RCC_CLOCKTYPE_PCLK3; + RCC_ClkInitStruct.ClockType = + RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_SYSCLK | RCC_CLOCKTYPE_PCLK1 | RCC_CLOCKTYPE_PCLK2 | RCC_CLOCKTYPE_PCLK3; RCC_ClkInitStruct.SYSCLKSource = RCC_SYSCLKSOURCE_PLLCLK; RCC_ClkInitStruct.AHBCLKDivider = RCC_SYSCLK_DIV1; RCC_ClkInitStruct.APB1CLKDivider = RCC_HCLK_DIV1; @@ -104,6 +103,8 @@ static inline void board_clock_init(void) HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_4); } +static void SystemPower_Config(void) { +} #ifdef __cplusplus } diff --git a/hw/bsp/stm32u5/boards/stm32u575nucleo/board.h b/hw/bsp/stm32u5/boards/stm32u575nucleo/board.h index 54a6d4cd7..6d244d418 100644 --- a/hw/bsp/stm32u5/boards/stm32u575nucleo/board.h +++ b/hw/bsp/stm32u5/boards/stm32u575nucleo/board.h @@ -54,12 +54,10 @@ extern "C" // RCC Clock //--------------------------------------------------------------------+ -static inline void board_clock_init(void) -{ - - RCC_OscInitTypeDef RCC_OscInitStruct = {0}; - RCC_ClkInitTypeDef RCC_ClkInitStruct = {0}; - RCC_PeriphCLKInitTypeDef PeriphClkInit = {0}; +static void SystemClock_Config(void) { + RCC_OscInitTypeDef RCC_OscInitStruct = { 0 }; + RCC_ClkInitTypeDef RCC_ClkInitStruct = { 0 }; + RCC_PeriphCLKInitTypeDef PeriphClkInit = { 0 }; /* Enable Power Clock */ __HAL_RCC_PWR_CLK_ENABLE(); @@ -93,7 +91,8 @@ static inline void board_clock_init(void) /** Initializes the CPU, AHB and APB buses clocks */ - RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_SYSCLK | RCC_CLOCKTYPE_PCLK1 | RCC_CLOCKTYPE_PCLK2 | RCC_CLOCKTYPE_PCLK3; + RCC_ClkInitStruct.ClockType = + RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_SYSCLK | RCC_CLOCKTYPE_PCLK1 | RCC_CLOCKTYPE_PCLK2 | RCC_CLOCKTYPE_PCLK3; RCC_ClkInitStruct.SYSCLKSource = RCC_SYSCLKSOURCE_PLLCLK; RCC_ClkInitStruct.AHBCLKDivider = RCC_SYSCLK_DIV1; RCC_ClkInitStruct.APB1CLKDivider = RCC_HCLK_DIV1; @@ -103,6 +102,8 @@ static inline void board_clock_init(void) HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_4); } +static void SystemPower_Config(void) { +} #ifdef __cplusplus } diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/STM32U5A5ZJTXQ_FLASH.ld b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/STM32U5A5ZJTXQ_FLASH.ld new file mode 100644 index 000000000..8aa68a6a6 --- /dev/null +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/STM32U5A5ZJTXQ_FLASH.ld @@ -0,0 +1,167 @@ +/* +****************************************************************************** +** +** File : LinkerScript.ld +** +** Author : STM32CubeIDE +** +** Abstract : Linker script for STM32U5A5xJ Device from STM32U5 series +** 4096Kbytes FLASH +** 2512Kbytes RAM +** +** Set heap size, stack size and stack location according +** to application requirements. +** +** Set memory bank area and size if external memory is used. +** +** Target : STMicroelectronics STM32 +** +** Distribution: The file is distributed as is without any warranty +** of any kind. +** +***************************************************************************** +** @attention +** +** Copyright (c) 2023 STMicroelectronics. +** All rights reserved. +** +** This software is licensed under terms that can be found in the LICENSE file +** in the root directory of this software component. +** If no LICENSE file comes with this software, it is provided AS-IS. +** +***************************************************************************** +*/ + +/* Entry Point */ +ENTRY(Reset_Handler) + +/* Highest address of the user mode stack */ +_estack = ORIGIN(RAM) + LENGTH(RAM); /* end of "RAM" Ram type memory */ + +_Min_Heap_Size = 0x200; /* required amount of heap */ +_Min_Stack_Size = 0x400; /* required amount of stack */ + +/* Memories definition */ +MEMORY +{ + RAM (xrw) : ORIGIN = 0x20000000, LENGTH = 2496K + SRAM4 (xrw) : ORIGIN = 0x28000000, LENGTH = 16K + FLASH (rx) : ORIGIN = 0x08000000, LENGTH = 4096K +} + +/* Sections */ +SECTIONS +{ + /* The startup code into "FLASH" Rom type memory */ + .isr_vector : + { + KEEP(*(.isr_vector)) /* Startup code */ + } >FLASH + + /* The program code and other data into "FLASH" Rom type memory */ + .text : + { + *(.text) /* .text sections (code) */ + *(.text*) /* .text* sections (code) */ + *(.glue_7) /* glue arm to thumb code */ + *(.glue_7t) /* glue thumb to arm code */ + *(.eh_frame) + + KEEP (*(.init)) + KEEP (*(.fini)) + + _etext = .; /* define a global symbols at end of code */ + } >FLASH + + /* Constant data into "FLASH" Rom type memory */ + .rodata : + { + *(.rodata) /* .rodata sections (constants, strings, etc.) */ + *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ + } >FLASH + + .ARM.extab : + { + *(.ARM.extab* .gnu.linkonce.armextab.*) + } >FLASH + + .ARM : + { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } >FLASH + + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } >FLASH + + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } >FLASH + + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } >FLASH + + /* Used by the startup to initialize data */ + _sidata = LOADADDR(.data); + + /* Initialized data sections into "RAM" Ram type memory */ + .data : + { + _sdata = .; /* create a global symbol at data start */ + *(.data) /* .data sections */ + *(.data*) /* .data* sections */ + *(.RamFunc) /* .RamFunc sections */ + *(.RamFunc*) /* .RamFunc* sections */ + + _edata = .; /* define a global symbol at data end */ + } >RAM AT> FLASH + + /* Uninitialized data section into "RAM" Ram type memory */ + .bss : + { + /* This is used by the startup in order to initialize the .bss section */ + _sbss = .; /* define a global symbol at bss start */ + __bss_start__ = _sbss; + *(.bss) + *(.bss*) + *(COMMON) + + _ebss = .; /* define a global symbol at bss end */ + __bss_end__ = _ebss; + } >RAM + + /* User_heap_stack section, used to check that there is enough "RAM" Ram type memory left */ + ._user_heap_stack : + { + . = ALIGN(8); + PROVIDE ( end = . ); + PROVIDE ( _end = . ); + . = . + _Min_Heap_Size; + . = . + _Min_Stack_Size; + . = ALIGN(8); + } >RAM + + /* Remove information from the compiler libraries */ + /DISCARD/ : + { + libc.a ( * ) + libm.a ( * ) + libgcc.a ( * ) + } + + .ARM.attributes 0 : { *(.ARM.attributes) } +} diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake index eea16213b..24d4ef95a 100644 --- a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake @@ -1,7 +1,7 @@ set(MCU_VARIANT stm32u5a5xx) set(JLINK_DEVICE stm32u5a5zj) -set(LD_FILE_GNU ${ST_CMSIS}/Source/Templates/gcc/linker/STM32U5A9xx_FLASH.ld) +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/STM32U5A5ZJTXQ_FLASH.ld) function(update_board TARGET) target_compile_definitions(${TARGET} PUBLIC diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h index 54a6d4cd7..37b008727 100644 --- a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h @@ -54,46 +54,44 @@ extern "C" // RCC Clock //--------------------------------------------------------------------+ -static inline void board_clock_init(void) -{ - - RCC_OscInitTypeDef RCC_OscInitStruct = {0}; - RCC_ClkInitTypeDef RCC_ClkInitStruct = {0}; - RCC_PeriphCLKInitTypeDef PeriphClkInit = {0}; +static void SystemClock_Config(void) { + RCC_OscInitTypeDef RCC_OscInitStruct = { 0 }; + RCC_ClkInitTypeDef RCC_ClkInitStruct = { 0 }; - /* Enable Power Clock */ __HAL_RCC_PWR_CLK_ENABLE(); + HAL_PWREx_EnableVddA(); /** Configure the main internal regulator output voltage - */ - HAL_PWREx_ControlVoltageScaling(PWR_REGULATOR_VOLTAGE_SCALE1); + */ + if (HAL_PWREx_ControlVoltageScaling(PWR_REGULATOR_VOLTAGE_SCALE1) != HAL_OK) { + Error_Handler(); + } /** Initializes the CPU, AHB and APB buses clocks */ - RCC_OscInitStruct.OscillatorType = RCC_OSCILLATORTYPE_HSI48 | RCC_OSCILLATORTYPE_HSI; + RCC_OscInitStruct.OscillatorType = RCC_OSCILLATORTYPE_HSI | RCC_OSCILLATORTYPE_HSE; + RCC_OscInitStruct.HSEState = RCC_HSE_ON; RCC_OscInitStruct.HSIState = RCC_HSI_ON; - RCC_OscInitStruct.HSI48State = RCC_HSI48_ON; RCC_OscInitStruct.HSICalibrationValue = RCC_HSICALIBRATION_DEFAULT; RCC_OscInitStruct.PLL.PLLState = RCC_PLL_ON; - RCC_OscInitStruct.PLL.PLLSource = RCC_PLLSOURCE_HSI; + RCC_OscInitStruct.PLL.PLLSource = RCC_PLLSOURCE_HSE; RCC_OscInitStruct.PLL.PLLMBOOST = RCC_PLLMBOOST_DIV1; RCC_OscInitStruct.PLL.PLLM = 1; - RCC_OscInitStruct.PLL.PLLN = 10; - RCC_OscInitStruct.PLL.PLLP = 2; + RCC_OscInitStruct.PLL.PLLN = 20; + RCC_OscInitStruct.PLL.PLLP = 8; RCC_OscInitStruct.PLL.PLLQ = 2; - RCC_OscInitStruct.PLL.PLLR = 1; + RCC_OscInitStruct.PLL.PLLR = 2; RCC_OscInitStruct.PLL.PLLRGE = RCC_PLLVCIRANGE_1; RCC_OscInitStruct.PLL.PLLFRACN = 0; - HAL_RCC_OscConfig(&RCC_OscInitStruct); - - PeriphClkInit.PeriphClockSelection = RCC_PERIPHCLK_CLK48; - PeriphClkInit.IclkClockSelection = RCC_CLK48CLKSOURCE_HSI48; - - HAL_RCCEx_PeriphCLKConfig(&PeriphClkInit); + if (HAL_RCC_OscConfig(&RCC_OscInitStruct) != HAL_OK) { + Error_Handler(); + } /** Initializes the CPU, AHB and APB buses clocks - */ - RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_SYSCLK | RCC_CLOCKTYPE_PCLK1 | RCC_CLOCKTYPE_PCLK2 | RCC_CLOCKTYPE_PCLK3; + */ + RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_SYSCLK + | RCC_CLOCKTYPE_PCLK1 | RCC_CLOCKTYPE_PCLK2 + | RCC_CLOCKTYPE_PCLK3; RCC_ClkInitStruct.SYSCLKSource = RCC_SYSCLKSOURCE_PLLCLK; RCC_ClkInitStruct.AHBCLKDivider = RCC_SYSCLK_DIV1; RCC_ClkInitStruct.APB1CLKDivider = RCC_HCLK_DIV1; @@ -103,6 +101,19 @@ static inline void board_clock_init(void) HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_4); } +static void SystemPower_Config(void) { + HAL_PWREx_EnableVddIO2(); + + /* + * Switch to SMPS regulator instead of LDO + */ + if (HAL_PWREx_ConfigSupply(PWR_SMPS_SUPPLY) != HAL_OK) { + Error_Handler(); + } +/* USER CODE BEGIN PWR */ +/* USER CODE END PWR */ +} + #ifdef __cplusplus } diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk index 48a4206a6..13025efa6 100644 --- a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk @@ -2,7 +2,7 @@ CFLAGS += \ -DSTM32U5A5xx \ # All source paths should be relative to the top level. -LD_FILE = ${ST_CMSIS}/Source/Templates/gcc/linker/STM32U5A9xx_FLASH.ld +LD_FILE = ${BOARD_PATH}/STM32U5A5ZJTXQ_FLASH.ld SRC_S += $(ST_CMSIS)/Source/Templates/gcc/startup_stm32u5a5xx.s diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/cubemx/stm32u5a5nucleo.ioc b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/cubemx/stm32u5a5nucleo.ioc new file mode 100644 index 000000000..289734040 --- /dev/null +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/cubemx/stm32u5a5nucleo.ioc @@ -0,0 +1,352 @@ +#MicroXplorer Configuration settings - do not modify +ADC1.Channel-1\#ChannelRegularConversion=ADC_CHANNEL_2 +ADC1.IPParameters=Rank-1\#ChannelRegularConversion,master,Channel-1\#ChannelRegularConversion,SamplingTime-1\#ChannelRegularConversion,OffsetNumber-1\#ChannelRegularConversion,MonitoredBy-1\#ChannelRegularConversion,NbrOfConversionFlag +ADC1.MonitoredBy-1\#ChannelRegularConversion=__NULL +ADC1.NbrOfConversionFlag=1 +ADC1.OffsetNumber-1\#ChannelRegularConversion=ADC_OFFSET_NONE +ADC1.Rank-1\#ChannelRegularConversion=1 +ADC1.SamplingTime-1\#ChannelRegularConversion=ADC_SAMPLETIME_5CYCLE +ADC1.master=1 +CAD.formats= +CAD.pinconfig= +CAD.provider= +CORTEX_M33_NS.userName=CORTEX_M33 +File.Version=6 +GPDMA1.DIRECTION_GPDMACH0=DMA_MEMORY_TO_PERIPH +GPDMA1.DIRECTION_GPDMACH3=DMA_MEMORY_TO_PERIPH +GPDMA1.IPHANDLE_GPDMACH0-SIMPLEREQUEST_GPDMACH0=__NULL +GPDMA1.IPHANDLE_GPDMACH3-SIMPLEREQUEST_GPDMACH3=__NULL +GPDMA1.IPHANDLE_GPDMACH5-SIMPLEREQUEST_GPDMACH5=__NULL +GPDMA1.IPParameters=IPHANDLE_GPDMACH5-SIMPLEREQUEST_GPDMACH5,REQUEST_GPDMACH5,IPHANDLE_GPDMACH3-SIMPLEREQUEST_GPDMACH3,REQUEST_GPDMACH3,DIRECTION_GPDMACH3,IPHANDLE_GPDMACH0-SIMPLEREQUEST_GPDMACH0,REQUEST_GPDMACH0,DIRECTION_GPDMACH0,SRCINC_GPDMACH0 +GPDMA1.REQUEST_GPDMACH0=GPDMA1_REQUEST_USART1_TX +GPDMA1.REQUEST_GPDMACH3=GPDMA1_REQUEST_UCPD1_TX +GPDMA1.REQUEST_GPDMACH5=GPDMA1_REQUEST_UCPD1_RX +GPDMA1.SRCINC_GPDMACH0=DMA_SINC_INCREMENTED +GPIO.groupedBy=Group By Peripherals +KeepUserPlacement=false +MMTAppReg1.MEMORYMAP.AP=RW_priv_only +MMTAppReg1.MEMORYMAP.AppRegionName=RAM +MMTAppReg1.MEMORYMAP.ContextName=CortexM33 +MMTAppReg1.MEMORYMAP.CoreName=ARM Cortex-M33 +MMTAppReg1.MEMORYMAP.DefaultDataRegion=true +MMTAppReg1.MEMORYMAP.IPParameters=StartAddress,Size,CoreName,DefaultDataRegion,ContextName,Name,AP +MMTAppReg1.MEMORYMAP.Name=RAM +MMTAppReg1.MEMORYMAP.Size=2555904 +MMTAppReg1.MEMORYMAP.StartAddress=0x20000000 +MMTAppReg2.MEMORYMAP.AppRegionName=RAM Reserved Alias Region +MMTAppReg2.MEMORYMAP.CoreName=ARM Cortex-M33 +MMTAppReg2.MEMORYMAP.DefaultDataRegion=false +MMTAppReg2.MEMORYMAP.IPParameters=StartAddress,Size,CoreName,DefaultDataRegion,ReservedRegion,Name +MMTAppReg2.MEMORYMAP.Name=RAM Reserved Alias Region +MMTAppReg2.MEMORYMAP.ReservedRegion=true +MMTAppReg2.MEMORYMAP.Size=2555904 +MMTAppReg2.MEMORYMAP.StartAddress=0x0A000000 +MMTAppReg3.MEMORYMAP.AP=RO_priv_only +MMTAppReg3.MEMORYMAP.AppRegionName=FLASH +MMTAppReg3.MEMORYMAP.Cacheability=WTRA +MMTAppReg3.MEMORYMAP.ContextName=CortexM33 +MMTAppReg3.MEMORYMAP.CoreName=ARM Cortex-M33 +MMTAppReg3.MEMORYMAP.DefaultCodeRegion=true +MMTAppReg3.MEMORYMAP.DefaultDataRegion=false +MMTAppReg3.MEMORYMAP.IPParameters=StartAddress,Size,CoreName,DefaultDataRegion,MemType,ContextName,Name,AP,Cacheability,DefaultCodeRegion +MMTAppReg3.MEMORYMAP.MemType=ROM +MMTAppReg3.MEMORYMAP.Name=FLASH +MMTAppReg3.MEMORYMAP.Size=4194304 +MMTAppReg3.MEMORYMAP.StartAddress=0x08000000 +MMTAppRegionsCount=3 +MMTConfigApplied=false +Mcu.CPN=STM32U5A5ZJT6Q +Mcu.ContextProject=TrustZoneDisabled +Mcu.Family=STM32U5 +Mcu.IP0=ADC1 +Mcu.IP1=CORTEX_M33_NS +Mcu.IP10=UCPD1 +Mcu.IP11=USART1 +Mcu.IP12=USBPD +Mcu.IP13=USBX +Mcu.IP14=USB_OTG_HS +Mcu.IP2=GPDMA1 +Mcu.IP3=ICACHE +Mcu.IP4=MEMORYMAP +Mcu.IP5=NVIC +Mcu.IP6=PWR +Mcu.IP7=RCC +Mcu.IP8=SYS +Mcu.IP9=THREADX +Mcu.IPNb=15 +Mcu.Name=STM32U5A5ZJTxQ +Mcu.Package=LQFP144 +Mcu.Pin0=PH0-OSC_IN (PH0) +Mcu.Pin1=PH1-OSC_OUT (PH1) +Mcu.Pin10=VP_GPDMA1_VS_GPDMACH0 +Mcu.Pin11=VP_GPDMA1_VS_GPDMACH3 +Mcu.Pin12=VP_GPDMA1_VS_GPDMACH5 +Mcu.Pin13=VP_ICACHE_VS_ICACHE +Mcu.Pin14=VP_PWR_VS_DBSignals +Mcu.Pin15=VP_PWR_VS_SECSignals +Mcu.Pin16=VP_PWR_VS_LPOM +Mcu.Pin17=VP_SYS_VS_tim6 +Mcu.Pin18=VP_THREADX_VS_RTOSJjThreadXJjCoreJjDefault +Mcu.Pin19=VP_USBPD_VS_USBPD1 +Mcu.Pin2=PC1 +Mcu.Pin20=VP_USBPD_VS_PD3TYPEC +Mcu.Pin21=VP_USBPD_VS_usbpd_tim2 +Mcu.Pin22=VP_USBPD_VS_usbpd_usb_cohabitation +Mcu.Pin23=VP_USBX_Core_System +Mcu.Pin24=VP_USBX_UX Device CoreStack_HS +Mcu.Pin25=VP_USBX_UX Device Controller_HS +Mcu.Pin26=VP_USBX_UX Device CDC ACM Class_HS +Mcu.Pin27=VP_MEMORYMAP_VS_MEMORYMAP +Mcu.Pin3=PB15 +Mcu.Pin4=PG2 +Mcu.Pin5=PA9 +Mcu.Pin6=PA10 +Mcu.Pin7=PA11 +Mcu.Pin8=PA12 +Mcu.Pin9=PA15 (JTDI) +Mcu.PinsNb=28 +Mcu.ThirdPartyNb=0 +Mcu.UserConstants= +Mcu.UserName=STM32U5A5ZJTxQ +MxCube.Version=6.9.2 +MxDb.Version=DB.6.0.92 +NVIC.BusFault_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false\:false +NVIC.DebugMonitor_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false\:false +NVIC.ForceEnableDMAVector=true +NVIC.GPDMA1_Channel0_IRQn=true\:0\:0\:false\:false\:true\:true\:true\:true\:true +NVIC.GPDMA1_Channel3_IRQn=true\:0\:0\:false\:false\:true\:true\:true\:true\:true +NVIC.GPDMA1_Channel5_IRQn=true\:0\:0\:false\:false\:true\:true\:true\:true\:true +NVIC.HardFault_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false\:false +NVIC.MemoryManagement_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false\:false +NVIC.NonMaskableInt_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false\:false +NVIC.OTG_HS_IRQn=true\:7\:0\:true\:false\:true\:false\:true\:true\:true +NVIC.PendSV_IRQn=true\:0\:0\:false\:false\:false\:false\:false\:false\:false +NVIC.PriorityGroup=NVIC_PRIORITYGROUP_4 +NVIC.SVCall_IRQn=true\:0\:0\:false\:false\:false\:false\:false\:false\:false +NVIC.SavedPendsvIrqHandlerGenerated=true +NVIC.SavedSvcallIrqHandlerGenerated=true +NVIC.SavedSystickIrqHandlerGenerated=true +NVIC.SysTick_IRQn=true\:0\:0\:true\:false\:false\:false\:false\:true\:false +NVIC.TIM6_IRQn=true\:15\:0\:false\:false\:true\:false\:false\:true\:true +NVIC.TimeBase=TIM6_IRQn +NVIC.TimeBaseIP=TIM6 +NVIC.UCPD1_IRQn=true\:5\:0\:true\:false\:true\:false\:true\:false\:true +NVIC.USART1_IRQn=true\:6\:0\:true\:false\:true\:false\:true\:true\:true +NVIC.UsageFault_IRQn=true\:0\:0\:false\:false\:true\:false\:false\:false\:false +PA10.GPIOParameters=GPIO_Speed,GPIO_PuPd +PA10.GPIO_PuPd=GPIO_PULLUP +PA10.GPIO_Speed=GPIO_SPEED_FREQ_HIGH +PA10.Mode=Asynchronous +PA10.Signal=USART1_RX +PA11.GPIOParameters=GPIO_Speed +PA11.GPIO_Speed=GPIO_SPEED_FREQ_LOW +PA11.Mode=Internal_Phy_Device +PA11.Signal=USB_OTG_HS_DM +PA12.GPIOParameters=GPIO_Speed +PA12.GPIO_Speed=GPIO_SPEED_FREQ_LOW +PA12.Mode=Internal_Phy_Device +PA12.Signal=USB_OTG_HS_DP +PA15\ (JTDI).Mode=Sink_AllSignals +PA15\ (JTDI).Signal=UCPD1_CC1 +PA9.GPIOParameters=GPIO_Speed,GPIO_PuPd +PA9.GPIO_PuPd=GPIO_PULLUP +PA9.GPIO_Speed=GPIO_SPEED_FREQ_HIGH +PA9.Mode=Asynchronous +PA9.Signal=USART1_TX +PB15.Mode=Sink_AllSignals +PB15.Signal=UCPD1_CC2 +PC1.Mode=IN2-Single-Ended +PC1.Signal=ADC1_IN2 +PG2.GPIOParameters=GPIO_Label +PG2.GPIO_Label=LED_RED +PG2.Locked=true +PG2.Signal=GPIO_Output +PH0-OSC_IN\ (PH0).Mode=HSE-External-Oscillator +PH0-OSC_IN\ (PH0).Signal=RCC_OSC_IN +PH1-OSC_OUT\ (PH1).Mode=HSE-External-Oscillator +PH1-OSC_OUT\ (PH1).Signal=RCC_OSC_OUT +PWR.IPParameters=PowerMode +PWR.PowerMode=PWR_SMPS_SUPPLY +PinOutPanel.RotationAngle=0 +ProjectManager.AskForMigrate=true +ProjectManager.BackupPrevious=false +ProjectManager.CompilerOptimize=6 +ProjectManager.ComputerToolchain=false +ProjectManager.CoupleFile=false +ProjectManager.CustomerFirmwarePackage= +ProjectManager.DefaultFWLocation=true +ProjectManager.DeletePrevious=true +ProjectManager.DeviceId=STM32U5A5ZJTxQ +ProjectManager.Example=Ux_Device_CDC_ACM +ProjectManager.ExampleSource=MxCubeFw +ProjectManager.FirmwarePackage=STM32Cube FW_U5 V1.3.0 +ProjectManager.FreePins=false +ProjectManager.HalAssertFull=false +ProjectManager.HeapSize=0x200 +ProjectManager.KeepUserCode=true +ProjectManager.LPBAM.generateCode= +ProjectManager.LastFirmware=true +ProjectManager.LibraryCopy=1 +ProjectManager.MainLocation=Core/Src +ProjectManager.NoMain=false +ProjectManager.PreviousToolchain= +ProjectManager.ProjectBuild=false +ProjectManager.ProjectFileName=stm32u5a5nucleo.ioc +ProjectManager.ProjectName=stm32u5a5nucleo +ProjectManager.ProjectStructure= +ProjectManager.RegisterCallBack= +ProjectManager.StackSize=0x400 +ProjectManager.TargetToolchain=STM32CubeIDE +ProjectManager.ToolChainLocation= +ProjectManager.UAScriptAfterPath= +ProjectManager.UAScriptBeforePath= +ProjectManager.UnderRoot=false +ProjectManager.functionlistsort=1-SystemClock_Config-RCC-false-HAL-false,2-MX_GPIO_Init-GPIO-false-HAL-true,3-MX_GPDMA1_Init-GPDMA1-false-HAL-true,4-MX_ICACHE_Init-ICACHE-false-HAL-true,5-MX_USART1_UART_Init-USART1-false-HAL-false,6-MX_UCPD1_Init-UCPD1-false-LL-true,7-MX_USB_OTG_HS_PCD_Init-USB_OTG_HS-true-HAL-false,8-MX_USBPD_Init-USBPD-false-HAL-false,9-MX_USBX_Init-USBX-false-HAL-false,10-MX_ADC1_Init-ADC1-false-HAL-true,11-MX_MEMORYMAP_Init-MEMORYMAP-false-HAL-true,0-MX_CORTEX_M33_NS_Init-CORTEX_M33_NS-false-HAL-true,0-MX_PWR_Init-PWR-false-HAL-true +RCC.ADCFreq_Value=16000000 +RCC.ADF1Freq_Value=160000000 +RCC.AHBFreq_Value=160000000 +RCC.APB1Freq_Value=160000000 +RCC.APB1TimFreq_Value=160000000 +RCC.APB2Freq_Value=160000000 +RCC.APB2TimFreq_Value=160000000 +RCC.APB3Freq_Value=160000000 +RCC.CK48Freq_Value=48000000 +RCC.CRSFreq_Value=48000000 +RCC.CortexFreq_Value=160000000 +RCC.DACCLockSelectionVirtual=RCC_DAC1CLKSOURCE_LSI +RCC.DACFreq_Value=32000 +RCC.EPOD_VALUE=16000000 +RCC.FCLKCortexFreq_Value=160000000 +RCC.FDCANFreq_Value=160000000 +RCC.FamilyName=M +RCC.HCLKFreq_Value=160000000 +RCC.HSE_VALUE=16000000 +RCC.HSI48_VALUE=48000000 +RCC.HSI_VALUE=16000000 +RCC.I2C1Freq_Value=160000000 +RCC.I2C2Freq_Value=160000000 +RCC.I2C3Freq_Value=160000000 +RCC.I2C4Freq_Value=160000000 +RCC.I2C5Freq_Value=160000000 +RCC.I2C6Freq_Value=160000000 +RCC.IPParameters=ADCFreq_Value,ADF1Freq_Value,AHBFreq_Value,APB1Freq_Value,APB1TimFreq_Value,APB2Freq_Value,APB2TimFreq_Value,APB3Freq_Value,CK48Freq_Value,CRSFreq_Value,CortexFreq_Value,DACCLockSelectionVirtual,DACFreq_Value,EPOD_VALUE,FCLKCortexFreq_Value,FDCANFreq_Value,FamilyName,HCLKFreq_Value,HSE_VALUE,HSI48_VALUE,HSI_VALUE,I2C1Freq_Value,I2C2Freq_Value,I2C3Freq_Value,I2C4Freq_Value,I2C5Freq_Value,I2C6Freq_Value,LPTIM2Freq_Value,LPUART1Freq_Value,LSCOPinFreq_Value,LSE_VALUE,LSIDIV_VALUE,LSI_VALUE,MCO1PinFreq_Value,MDF1Freq_Value,MSIClockRange,MSI_VALUE,OCTOSPIMFreq_Value,PLL1P,PLL2FRACN,PLL2PoutputFreq_Value,PLL2QoutputFreq_Value,PLL2RoutputFreq_Value,PLL3FRACN,PLL3PoutputFreq_Value,PLL3QoutputFreq_Value,PLL3RoutputFreq_Value,PLLFRACN,PLLN,PLLPoutputFreq_Value,PLLQoutputFreq_Value,PLLRCLKFreq_Value,PLLSourceVirtual,RNGFreq_Value,SAESFreq_Value,SAI1Freq_Value,SAI2Freq_Value,SDMMCFreq_Value,SPI1Freq_Value,SPI2Freq_Value,SPI3Freq_Value,SYSCLKFreq_VALUE,SYSCLKSource,UART4Freq_Value,UART5Freq_Value,USART1Freq_Value,USART2Freq_Value,USART3Freq_Value,USART6Freq_Value,USBPHYCLockSelection,USBPHYFreq_Value,VCOInput2Freq_Value,VCOInput3Freq_Value,VCOInputFreq_Value,VCOOutputFreq_Value,VCOPLL2OutputFreq_Value,VCOPLL3OutputFreq_Value +RCC.LPTIM2Freq_Value=160000000 +RCC.LPUART1Freq_Value=160000000 +RCC.LSCOPinFreq_Value=32000 +RCC.LSE_VALUE=32768 +RCC.LSIDIV_VALUE=32000 +RCC.LSI_VALUE=32000 +RCC.MCO1PinFreq_Value=160000000 +RCC.MDF1Freq_Value=160000000 +RCC.MSIClockRange=RCC_MSIRANGE_0 +RCC.MSI_VALUE=48000000 +RCC.OCTOSPIMFreq_Value=160000000 +RCC.PLL1P=8 +RCC.PLL2FRACN=0 +RCC.PLL2PoutputFreq_Value=3096000000 +RCC.PLL2QoutputFreq_Value=3096000000 +RCC.PLL2RoutputFreq_Value=3096000000 +RCC.PLL3FRACN=0 +RCC.PLL3PoutputFreq_Value=3096000000 +RCC.PLL3QoutputFreq_Value=3096000000 +RCC.PLL3RoutputFreq_Value=3096000000 +RCC.PLLFRACN=0 +RCC.PLLN=20 +RCC.PLLPoutputFreq_Value=40000000 +RCC.PLLQoutputFreq_Value=160000000 +RCC.PLLRCLKFreq_Value=160000000 +RCC.PLLSourceVirtual=RCC_PLLSOURCE_HSE +RCC.RNGFreq_Value=48000000 +RCC.SAESFreq_Value=48000000 +RCC.SAI1Freq_Value=3096000000 +RCC.SAI2Freq_Value=3096000000 +RCC.SDMMCFreq_Value=40000000 +RCC.SPI1Freq_Value=160000000 +RCC.SPI2Freq_Value=160000000 +RCC.SPI3Freq_Value=160000000 +RCC.SYSCLKFreq_VALUE=160000000 +RCC.SYSCLKSource=RCC_SYSCLKSOURCE_PLLCLK +RCC.UART4Freq_Value=160000000 +RCC.UART5Freq_Value=160000000 +RCC.USART1Freq_Value=160000000 +RCC.USART2Freq_Value=160000000 +RCC.USART3Freq_Value=160000000 +RCC.USART6Freq_Value=160000000 +RCC.USBPHYCLockSelection=RCC_USBPHYCLKSOURCE_HSE +RCC.USBPHYFreq_Value=16000000 +RCC.VCOInput2Freq_Value=48000000 +RCC.VCOInput3Freq_Value=48000000 +RCC.VCOInputFreq_Value=16000000 +RCC.VCOOutputFreq_Value=320000000 +RCC.VCOPLL2OutputFreq_Value=6192000000 +RCC.VCOPLL3OutputFreq_Value=6192000000 +USART1.IPParameters=VirtualMode-Asynchronous +USART1.VirtualMode-Asynchronous=VM_ASYNC +USBX.BSP.number=1 +USBX.Core_System=1 +USBX.IPParameters=Core_System,UX_Device_CoreStack,UX_Device_Controller,UX_DEVICE_CDC_ACM,USBD_CDCACM_EPIN_ADDR,USBD_CDCACM_EPOUT_HS_MPS,USBD_CDCACM_EPIN_HS_MPS,UX_DEVICE_APP_MEM_POOL_SIZE,USBD_PRODUCT_STRING,UX_SLAVE_REQUEST_DATA_MAX_LENGTH,USBX_DEVICE_SYS_SIZE,USBD_PID,USBD_SERIAL_NUMBER,UX_SLAVE_REQUEST_CONTROL_MAX_LENGTH,USBD_CDCACM_EPINCMD_ADDR,MAX_POWER_IN_MILLI_AMPER +USBX.MAX_POWER_IN_MILLI_AMPER=0 +USBX.USBD_CDCACM_EPINCMD_ADDR=2 +USBX.USBD_CDCACM_EPIN_ADDR=1 +USBX.USBD_CDCACM_EPIN_HS_MPS=512 +USBX.USBD_CDCACM_EPOUT_HS_MPS=512 +USBX.USBD_PID=22336 +USBX.USBD_PRODUCT_STRING=STM32 Virtual ComPort +USBX.USBD_SERIAL_NUMBER=CDC_ACM001 +USBX.USBX_DEVICE_SYS_SIZE=4*1024 +USBX.UX_DEVICE_APP_MEM_POOL_SIZE=8192 +USBX.UX_DEVICE_CDC_ACM=1 +USBX.UX_Device_Controller=1 +USBX.UX_Device_CoreStack=1 +USBX.UX_SLAVE_REQUEST_CONTROL_MAX_LENGTH=256 +USBX.UX_SLAVE_REQUEST_DATA_MAX_LENGTH=512 +USBX0.BSP.STBoard=false +USBX0.BSP.api=Unknown +USBX0.BSP.component= +USBX0.BSP.condition= +USBX0.BSP.instance=USB_OTG_HS +USBX0.BSP.ip=USB_OTG_HS +USBX0.BSP.mode=Device_Only +USBX0.BSP.name=USBDevice +USBX0.BSP.semaphore= +USBX0.BSP.solution=USB_OTG_HS +USB_OTG_HS.IPParameters=VirtualMode +USB_OTG_HS.VirtualMode=Device_HS +VP_GPDMA1_VS_GPDMACH0.Mode=SIMPLEREQUEST_GPDMACH0 +VP_GPDMA1_VS_GPDMACH0.Signal=GPDMA1_VS_GPDMACH0 +VP_GPDMA1_VS_GPDMACH3.Mode=SIMPLEREQUEST_GPDMACH3 +VP_GPDMA1_VS_GPDMACH3.Signal=GPDMA1_VS_GPDMACH3 +VP_GPDMA1_VS_GPDMACH5.Mode=SIMPLEREQUEST_GPDMACH5 +VP_GPDMA1_VS_GPDMACH5.Signal=GPDMA1_VS_GPDMACH5 +VP_ICACHE_VS_ICACHE.Mode=DirectMappedCache +VP_ICACHE_VS_ICACHE.Signal=ICACHE_VS_ICACHE +VP_MEMORYMAP_VS_MEMORYMAP.Mode=CurAppReg +VP_MEMORYMAP_VS_MEMORYMAP.Signal=MEMORYMAP_VS_MEMORYMAP +VP_PWR_VS_DBSignals.Mode=DisableDeadBatterySignals +VP_PWR_VS_DBSignals.Signal=PWR_VS_DBSignals +VP_PWR_VS_LPOM.Mode=PowerOptimisation +VP_PWR_VS_LPOM.Signal=PWR_VS_LPOM +VP_PWR_VS_SECSignals.Mode=Security/Privilege +VP_PWR_VS_SECSignals.Signal=PWR_VS_SECSignals +VP_SYS_VS_tim6.Mode=TIM6 +VP_SYS_VS_tim6.Signal=SYS_VS_tim6 +VP_THREADX_VS_RTOSJjThreadXJjCoreJjDefault.Mode=Core_Default +VP_THREADX_VS_RTOSJjThreadXJjCoreJjDefault.Signal=THREADX_VS_RTOSJjThreadXJjCoreJjDefault +VP_USBPD_VS_PD3TYPEC.Mode=PD3_TypeC +VP_USBPD_VS_PD3TYPEC.Signal=USBPD_VS_PD3TYPEC +VP_USBPD_VS_USBPD1.Mode=USBPD_P0 +VP_USBPD_VS_USBPD1.Signal=USBPD_VS_USBPD1 +VP_USBPD_VS_usbpd_tim2.Mode=TIM2 +VP_USBPD_VS_usbpd_tim2.Signal=USBPD_VS_usbpd_tim2 +VP_USBPD_VS_usbpd_usb_cohabitation.Mode=Enable USB Support +VP_USBPD_VS_usbpd_usb_cohabitation.Signal=USBPD_VS_usbpd_usb_cohabitation +VP_USBX_Core_System.Mode=Core_System +VP_USBX_Core_System.Signal=USBX_Core_System +VP_USBX_UX\ Device\ CDC\ ACM\ Class_HS.Mode=UX_Device_class_CDC_ACM_HS +VP_USBX_UX\ Device\ CDC\ ACM\ Class_HS.Signal=USBX_UX Device CDC ACM Class_HS +VP_USBX_UX\ Device\ Controller_HS.Mode=UX_Device_Controller_HS +VP_USBX_UX\ Device\ Controller_HS.Signal=USBX_UX Device Controller_HS +VP_USBX_UX\ Device\ CoreStack_HS.Mode=UX_Device_CoreStack_HS +VP_USBX_UX\ Device\ CoreStack_HS.Signal=USBX_UX Device CoreStack_HS +board=NUCLEO-U5A5ZJ-Q +boardIOC=true diff --git a/hw/bsp/stm32u5/family.c b/hw/bsp/stm32u5/family.c index ab4194623..16a86cbbb 100644 --- a/hw/bsp/stm32u5/family.c +++ b/hw/bsp/stm32u5/family.c @@ -37,6 +37,9 @@ #pragma GCC diagnostic pop #endif +static void Error_Handler(void) { +} + #include "bsp/board_api.h" #include "board.h" @@ -47,6 +50,10 @@ void OTG_FS_IRQHandler(void) { tud_int_handler(0); } +void OTG_HS_IRQHandler(void) { + tud_int_handler(0); +} + //--------------------------------------------------------------------+ // MACRO TYPEDEF CONSTANT ENUM //--------------------------------------------------------------------+ @@ -54,8 +61,9 @@ void OTG_FS_IRQHandler(void) { UART_HandleTypeDef UartHandle; void board_init(void) { - - board_clock_init(); + // Init clock, implemented in board.h + SystemClock_Config(); + SystemPower_Config(); // Enable All GPIOs clocks __HAL_RCC_GPIOA_CLK_ENABLE(); @@ -75,9 +83,6 @@ void board_init(void) { #if CFG_TUSB_OS == OPT_OS_NONE // 1ms tick timer SysTick_Config(SystemCoreClock / 1000); -#elif CFG_TUSB_OS == OPT_OS_FREERTOS - // If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher ) - NVIC_SetPriority(OTG_FS_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY); #endif GPIO_InitTypeDef GPIO_InitStruct; @@ -135,7 +140,13 @@ void board_init(void) { GPIO_InitStruct.Alternate = GPIO_AF10_USB; HAL_GPIO_Init(GPIOA, &GPIO_InitStruct); -#if defined(OTG_FS_VBUS_SENSE) && OTG_FS_VBUS_SENSE +#ifdef USB_OTG_FS + #if CFG_TUSB_OS == OPT_OS_FREERTOS + // If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher ) + NVIC_SetPriority(OTG_FS_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY); + #endif + + #if defined(OTG_FS_VBUS_SENSE) && OTG_FS_VBUS_SENSE // Configure VBUS Pin OTG_FS_VBUS_SENSE GPIO_InitStruct.Pin = GPIO_PIN_9; GPIO_InitStruct.Mode = GPIO_MODE_INPUT; @@ -144,20 +155,44 @@ void board_init(void) { // Enable VBUS sense (B device) via pin PA9 USB_OTG_FS->GCCFG |= USB_OTG_GCCFG_VBDEN; -#else + #else // Disable VBUS sense (B device) via pin PA9 USB_OTG_FS->GCCFG &= ~USB_OTG_GCCFG_VBDEN; // B-peripheral session valid override enable USB_OTG_FS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOEN; USB_OTG_FS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOVAL; -#endif // vbus sense + #endif // vbus sense /* Enable USB power on Pwrctrl CR2 register */ HAL_PWREx_EnableVddUSB(); - /* USB_OTG_FS clock enable */ + /* USB clock enable */ __HAL_RCC_USB_OTG_FS_CLK_ENABLE(); +#else + // STM59x/Ax/Fx/Gx only have 1 USB HS port + + #if CFG_TUSB_OS == OPT_OS_FREERTOS + // If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher ) + NVIC_SetPriority(OTG_HS_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY); + #endif + + + // Disable VBUS sense (B device) + USB_OTG_HS->GCCFG &= ~USB_OTG_GCCFG_VBDEN; + + // B-peripheral session valid override enable + USB_OTG_HS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOEN; + USB_OTG_HS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOVAL; + + /* Enable USB power on Pwrctrl CR2 register */ + HAL_PWREx_EnableVddUSB(); + + /* USB clock enable */ + __HAL_RCC_USB_OTG_HS_CLK_ENABLE(); +#endif // USB_OTG_FS + + } //--------------------------------------------------------------------+ diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index 8807ff8aa..1797f0bc4 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -217,9 +217,7 @@ // TypeC controller #define TUP_USBIP_TYPEC_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 - #define TUP_TYPEC_RHPORTS_NUM 1 #elif TU_CHECK_MCU(OPT_MCU_STM32G0) @@ -261,14 +259,21 @@ #elif TU_CHECK_MCU(OPT_MCU_STM32U5) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 - #define TUP_DCD_ENDPOINT_MAX 6 + + // U59x/5Ax/5Fx/5Gx are highspeed with built-in HS PHY + #if defined(STM32U595xx) || defined(STM32U599xx) || defined(STM32U5A5xx) || defined(STM32U5A9xx) || \ + defined(STM32U5F7xx) || defined(STM32U5F9xx) || defined(STM32U5G7xx) || defined(STM32U5G9xx) + #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_RHPORT_HIGHSPEED 1 + #else + #define TUP_DCD_ENDPOINT_MAX 6 + #endif #elif TU_CHECK_MCU(OPT_MCU_STM32L5) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 #define TUP_DCD_ENDPOINT_MAX 8 - //--------------------------------------------------------------------+ // Sony //--------------------------------------------------------------------+ diff --git a/src/portable/synopsys/dwc2/dwc2_stm32.h b/src/portable/synopsys/dwc2/dwc2_stm32.h index aa77511fa..a97a10223 100644 --- a/src/portable/synopsys/dwc2/dwc2_stm32.h +++ b/src/portable/synopsys/dwc2/dwc2_stm32.h @@ -86,18 +86,16 @@ #include "stm32u5xx.h" // NOTE: STM595/5A5/599/5A9 only have 1 USB port (with integrated HS PHY) // USB_OTG_FS_BASE and OTG_FS_IRQn not defined - #if (! defined USB_OTG_FS) + #if !defined(USB_OTG_FS) #define USB_OTG_HS_PERIPH_BASE USB_OTG_HS_BASE #define EP_MAX_HS 9 #define EP_FIFO_SIZE_HS 4096 - #define USB_OTG_FS_PERIPH_BASE USB_OTG_HS_BASE - #define OTG_FS_IRQn OTG_HS_IRQn + //#define OTG_FS_IRQn OTG_HS_IRQn #else #define USB_OTG_FS_PERIPH_BASE USB_OTG_FS_BASE + #define EP_MAX_FS 6 + #define EP_FIFO_SIZE_FS 1280 #endif - #define EP_MAX_FS 6 - #define EP_FIFO_SIZE_FS 1280 - #else #error "Unsupported MCUs" #endif diff --git a/src/tusb_option.h b/src/tusb_option.h index a41f5a07e..a29eb8a3a 100644 --- a/src/tusb_option.h +++ b/src/tusb_option.h @@ -174,10 +174,10 @@ // NXP LPC MCX #define OPT_MCU_MCXN9 2300 ///< NXP MCX N9 Series -// Helper to check if configured MCU is one of listed +// Check if configured MCU is one of listed // Apply _TU_CHECK_MCU with || as separator to list of input -#define _TU_CHECK_MCU(_m) (CFG_TUSB_MCU == _m) -#define TU_CHECK_MCU(...) (TU_ARGS_APPLY(_TU_CHECK_MCU, ||, __VA_ARGS__)) +#define _TU_CHECK_MCU(_m) (CFG_TUSB_MCU == _m) +#define TU_CHECK_MCU(...) (TU_ARGS_APPLY(_TU_CHECK_MCU, ||, __VA_ARGS__)) //--------------------------------------------------------------------+ // Supported OS diff --git a/tools/get_deps.py b/tools/get_deps.py index 9fdefac9d..8f93ca61f 100644 --- a/tools/get_deps.py +++ b/tools/get_deps.py @@ -181,6 +181,10 @@ deps_all = {**deps_mandatory, **deps_optional} TOP = Path(__file__).parent.parent.resolve() +def run_cmd(cmd): + return subprocess.run(cmd, shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT) + + def get_a_dep(d): if d not in deps_all.keys(): print('{} is not found in dependency list') @@ -189,25 +193,24 @@ def get_a_dep(d): commit = deps_all[d][1] families = deps_all[d][2] - print('cloning {} with {}'.format(d, url)) + print(f'cloning {d} with {url}') p = Path(TOP / d) - git_cmd = "git -C {}".format(p) + git_cmd = f"git -C {p}" # Init git deps if not existed if not p.exists(): p.mkdir(parents=True) - subprocess.run("{} init".format(git_cmd), shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT) - subprocess.run("{} remote add origin {}".format(git_cmd, url), shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT) + run_cmd(f"git -C {p} init") + run_cmd(f"git -C {p} remote add origin {url}") # Check if commit is already fetched - result = subprocess.run("{} rev-parse HEAD".format(git_cmd, commit), shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT) + result = run_cmd(f"git -C {p} rev-parse HEAD") head = result.stdout.decode("utf-8").splitlines()[0] - + run_cmd(f"git -C {p} reset --hard") if commit != head: - subprocess.run("{} reset --hard".format(git_cmd, commit), shell=True) - subprocess.run("{} fetch --depth 1 origin {}".format(git_cmd, commit), shell=True) - subprocess.run("{} checkout FETCH_HEAD".format(git_cmd), shell=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT) + run_cmd(f"git -C {p} fetch --depth 1 origin {commit}") + run_cmd(f"git -C {p} checkout FETCH_HEAD") return 0 -- cgit v1.3.1 From 9cba9a753b2d8a8c06f1dacc5c16d656397f5d79 Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 27 Oct 2023 17:40:53 +0700 Subject: update s3 devkitm with max3421 pin following metro s3, check max3421 version to make sure it is valid --- .idea/cmake.xml | 2 +- hw/bsp/espressif/boards/espressif_s3_devkitm/board.h | 6 +++--- src/portable/analog/max3421/hcd_max3421.c | 5 +++-- 3 files changed, 7 insertions(+), 6 deletions(-) (limited to 'src/portable') diff --git a/.idea/cmake.xml b/.idea/cmake.xml index 88e0e27ad..9f17c805c 100644 --- a/.idea/cmake.xml +++ b/.idea/cmake.xml @@ -16,7 +16,7 @@ - + diff --git a/hw/bsp/espressif/boards/espressif_s3_devkitm/board.h b/hw/bsp/espressif/boards/espressif_s3_devkitm/board.h index 4b4151e72..a319fbc61 100644 --- a/hw/bsp/espressif/boards/espressif_s3_devkitm/board.h +++ b/hw/bsp/espressif/boards/espressif_s3_devkitm/board.h @@ -38,9 +38,9 @@ // SPI for USB host shield #define MAX3421_SPI_HOST SPI2_HOST -#define MAX3421_SCK_PIN 36 -#define MAX3421_MOSI_PIN 35 -#define MAX3421_MISO_PIN 37 +#define MAX3421_SCK_PIN 39 +#define MAX3421_MOSI_PIN 42 +#define MAX3421_MISO_PIN 21 #define MAX3421_CS_PIN 15 #define MAX3421_INTR_PIN 14 diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 787c1e511..4665c1b06 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -433,8 +433,9 @@ bool hcd_init(uint8_t rhport) { reg_write(rhport, PINCTL_ADDR, PINCTL_FDUPSPI, false); // V1 is 0x01, V2 is 0x12, V3 is 0x13 -// uint8_t const revision = reg_read(rhport, REVISION_ADDR, false); -// TU_LOG2_HEX(revision); + uint8_t const revision = reg_read(rhport, REVISION_ADDR, false); + TU_ASSERT(revision == 0x01 || revision == 0x12 || revision == 0x13, false); + TU_LOG2_HEX(revision); // reset reg_write(rhport, USBCTL_ADDR, USBCTL_CHIPRES, false); -- cgit v1.3.1 From a4c542a7b4e753997864b129a4d5fd5b9b77f4e3 Mon Sep 17 00:00:00 2001 From: hathach Date: Mon, 30 Oct 2023 22:21:58 +0700 Subject: addd dwc2_info.py/md update stm32u5a5 board clock & power configure, able to get passed otg clock reset --- hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h | 12 ++ hw/bsp/stm32u5/family.c | 11 +- src/portable/synopsys/dwc2/dwc2_info.md | 54 +++++++++ src/portable/synopsys/dwc2/dwc2_info.py | 158 ++++++++++++++++++++++++++ src/portable/synopsys/dwc2/dwc2_stm32.h | 95 ++++++++-------- src/portable/synopsys/dwc2/dwc2_type.h | 1 + 6 files changed, 278 insertions(+), 53 deletions(-) create mode 100644 src/portable/synopsys/dwc2/dwc2_info.md create mode 100644 src/portable/synopsys/dwc2/dwc2_info.py (limited to 'src/portable') diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h index 37b008727..c4eb94dd8 100644 --- a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h @@ -99,6 +99,18 @@ static void SystemClock_Config(void) { RCC_ClkInitStruct.APB3CLKDivider = RCC_HCLK_DIV1; HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_4); + + // USB Clock + RCC_PeriphCLKInitTypeDef PeriphClkInit = {0}; + PeriphClkInit.PeriphClockSelection = RCC_PERIPHCLK_USBPHY; + PeriphClkInit.UsbPhyClockSelection = RCC_USBPHYCLKSOURCE_HSE; + if (HAL_RCCEx_PeriphCLKConfig(&PeriphClkInit) != HAL_OK) { + Error_Handler(); + } + + /** Set the OTG PHY reference clock selection + */ + HAL_SYSCFG_SetOTGPHYReferenceClockSelection(SYSCFG_OTG_HS_PHY_CLK_SELECT_1); } static void SystemPower_Config(void) { diff --git a/hw/bsp/stm32u5/family.c b/hw/bsp/stm32u5/family.c index 16a86cbbb..3fbc50d93 100644 --- a/hw/bsp/stm32u5/family.c +++ b/hw/bsp/stm32u5/family.c @@ -177,7 +177,6 @@ void board_init(void) { NVIC_SetPriority(OTG_HS_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY); #endif - // Disable VBUS sense (B device) USB_OTG_HS->GCCFG &= ~USB_OTG_GCCFG_VBDEN; @@ -185,11 +184,17 @@ void board_init(void) { USB_OTG_HS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOEN; USB_OTG_HS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOVAL; + /* USB clock enable */ + __HAL_RCC_SYSCFG_CLK_ENABLE(); + __HAL_RCC_USB_OTG_HS_CLK_ENABLE(); + __HAL_RCC_USBPHYC_CLK_ENABLE(); + /* Enable USB power on Pwrctrl CR2 register */ HAL_PWREx_EnableVddUSB(); + HAL_PWREx_EnableUSBHSTranceiverSupply(); - /* USB clock enable */ - __HAL_RCC_USB_OTG_HS_CLK_ENABLE(); + /*Configuring the SYSCFG registers OTG_HS PHY*/ + HAL_SYSCFG_EnableOTGPHY(SYSCFG_OTG_HS_PHY_ENABLE); #endif // USB_OTG_FS diff --git a/src/portable/synopsys/dwc2/dwc2_info.md b/src/portable/synopsys/dwc2/dwc2_info.md new file mode 100644 index 000000000..2d8ab067f --- /dev/null +++ b/src/portable/synopsys/dwc2/dwc2_info.md @@ -0,0 +1,54 @@ +| | BCM2711 (Pi4) | EFM32GG FullSpeed | ESP32-S2 | STM32F407 Fullspeed | STM32F407 Highspeed | STM32F411 Fullspeed | STM32F412 Fullspeed | STM32F723 Fullspeed | STM32F723 HighSpeed | STM32F767 Fullspeed | STM32H743 Highspeed | STM32L476 Fullspeed | STM32U5A5 Highspeed | GD32VF103 Fullspeed | XMC4500 | +|:----------------------------|:----------------|:--------------------|:-----------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:-----------| +| guid | 0x2708A000 | 0x00000000 | 0x00000000 | 0x00001200 | 0x00001100 | 0x00001200 | 0x00002000 | 0x00003000 | 0x00003100 | 0x00002000 | 0x00002300 | 0x00002000 | 0x00005000 | 0x00001000 | 0x00AEC000 | +| gsnpsid | 0x4F54280A | 0x4F54330A | 0x4F54400A | 0x4F54281A | 0x4F54281A | 0x4F54281A | 0x4F54320A | 0x4F54330A | 0x4F54330A | 0x4F54320A | 0x4F54330A | 0x4F54310A | 0x4F54411A | 0x00000000 | 0x4F54292A | +| ghwcfg1 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | +| ghwcfg2 | 0x228DDD50 | 0x228F5910 | 0x224DD930 | 0x229DCD20 | 0x229ED590 | 0x229DCD20 | 0x229ED520 | 0x229ED520 | 0x229FE1D0 | 0x229ED520 | 0x229FE190 | 0x229ED520 | 0x228FE052 | 0x00000000 | 0x228F5930 | +| - op_mode | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 2 | 0 | 0 | +| - arch | 2 | 2 | 2 | 0 | 2 | 0 | 0 | 0 | 2 | 0 | 2 | 0 | 2 | 0 | 2 | +| - point2point | 0 | 0 | 1 | 1 | 0 | 1 | 1 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | 1 | +| - hs_phy_type | 1 | 0 | 0 | 0 | 2 | 0 | 0 | 0 | 3 | 0 | 2 | 0 | 1 | 0 | 0 | +| - fs_phy_type | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - num_dev_ep | 7 | 6 | 6 | 3 | 5 | 3 | 5 | 5 | 8 | 5 | 8 | 5 | 8 | 0 | 6 | +| - num_host_ch | 7 | 13 | 7 | 7 | 11 | 7 | 11 | 11 | 15 | 11 | 15 | 11 | 15 | 0 | 13 | +| - period_channel_support | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - enable_dynamic_fifo | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - mul_cpu_int | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | +| - reserved21 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - nperiod_tx_q_depth | 2 | 2 | 1 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 0 | 2 | +| - host_period_tx_q_depth | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 0 | 2 | +| - dev_token_q_depth | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 0 | 8 | +| - otg_enable_ic_usb | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| ghwcfg3 | 0x0FF000E8 | 0x01F204E8 | 0x00C804B5 | 0x020001E8 | 0x03F403E8 | 0x020001E8 | 0x0200D1E8 | 0x0200D1E8 | 0x03EED2E8 | 0x0200D1E8 | 0x03B8D2E8 | 0x0200D1E8 | 0x03B882E8 | 0x00000000 | 0x027A01E5 | +| - xfer_size_width | 8 | 8 | 5 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 0 | 5 | +| - packet_size_width | 6 | 6 | 3 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 0 | 6 | +| - otg_enable | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - i2c_enable | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | 1 | +| - vendor_ctrl_itf | 0 | 0 | 0 | 0 | 1 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | +| - optional_feature_removed | 0 | 1 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - synch_reset | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - otg_adp_support | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | +| - otg_enable_hsic | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - battery_charger_support | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | +| - lpm_mode | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | +| - total_fifo_size | 4080 | 498 | 200 | 512 | 1012 | 512 | 512 | 512 | 1006 | 512 | 952 | 512 | 952 | 0 | 634 | +| ghwcfg4 | 0x1FF00020 | 0x1BF08030 | 0xD3F0A030 | 0x0FF08030 | 0x17F00030 | 0x0FF08030 | 0x17F08030 | 0x17F08030 | 0x23F00030 | 0x17F08030 | 0xE3F00030 | 0x17F08030 | 0xE2103E30 | 0x00000000 | 0xDBF08030 | +| - num_dev_period_in_ep | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - power_optimized | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - ahb_freq_min | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - hibernation | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - reserved7 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 4 | 0 | 0 | +| - service_interval_mode | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - ipg_isoc_en | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - acg_enable | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - reserved13 | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - utmi_phy_data_width | 0 | 2 | 2 | 2 | 0 | 2 | 2 | 2 | 0 | 2 | 0 | 2 | 0 | 0 | 2 | +| - dev_ctrl_ep_num | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - iddg_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - vbus_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - a_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - b_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - dedicated_fifos | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - num_dev_in_eps | 15 | 13 | 9 | 7 | 11 | 7 | 11 | 11 | 1 | 11 | 1 | 11 | 1 | 0 | 13 | +| - dma_desc_enable | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | +| - dma_dynamic | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | diff --git a/src/portable/synopsys/dwc2/dwc2_info.py b/src/portable/synopsys/dwc2/dwc2_info.py new file mode 100644 index 000000000..0af6c4c77 --- /dev/null +++ b/src/portable/synopsys/dwc2/dwc2_info.py @@ -0,0 +1,158 @@ +import click +import ctypes +import pandas as pd + +# hex value for register: guid, gsnpsid, ghwcfg1, ghwcfg2, ghwcfg3, ghwcfg4 +dwc2_reg_list = ['guid', 'gsnpsid', 'ghwcfg1', 'ghwcfg2', 'ghwcfg3', 'ghwcfg4'] +dwc2_reg_value = { + 'BCM2711 (Pi4)': [0x2708A000, 0x4F54280A, 0, 0x228DDD50, 0xFF000E8, 0x1FF00020], + 'EFM32GG FullSpeed': [0, 0x4F54330A, 0, 0x228F5910, 0x1F204E8, 0x1BF08030], + 'ESP32-S2': [0, 0x4F54400A, 0, 0x224DD930, 0xC804B5, 0xD3F0A030], + 'STM32F407 Fullspeed': [0x1200, 0x4F54281A, 0, 0x229DCD20, 0x20001E8, 0xFF08030], + 'STM32F407 Highspeed': [0x1100, 0x4F54281A, 0, 0x229ED590, 0x3F403E8, 0x17F00030], + 'STM32F411 Fullspeed': [0x1200, 0x4F54281A, 0, 0x229DCD20, 0x20001E8, 0xFF08030], + 'STM32F412 Fullspeed': [0x2000, 0x4F54320A, 0, 0x229ED520, 0x200D1E8, 0x17F08030], + 'STM32F723 Fullspeed': [0x3000, 0x4F54330A, 0, 0x229ED520, 0x200D1E8, 0x17F08030], + 'STM32F723 HighSpeed': [0x3100, 0x4F54330A, 0, 0x229FE1D0, 0x3EED2E8, 0x23F00030], + 'STM32F767 Fullspeed': [0x2000, 0x4F54320A, 0, 0x229ED520, 0x200D1E8, 0x17F08030], + 'STM32H743 Highspeed': [0x2300, 0x4F54330A, 0, 0x229FE190, 0x3B8D2E8, 0xE3F00030], # both HS cores + 'STM32L476 Fullspeed': [0x2000, 0x4F54310A, 0, 0x229ED520, 0x200D1E8, 0x17F08030], + 'STM32U5A5 Highspeed': [0x00005000, 0x4F54411A, 0x00000000, 0x228FE052, 0x03B882E8, 0xE2103E30], + 'GD32VF103 Fullspeed': [0x1000, 0, 0, 0, 0, 0], + 'XMC4500': [0xAEC000, 0x4F54292A, 0, 0x228F5930, 0x27A01E5, 0xDBF08030] +} + +# Combine dwc2_info with dwc2_reg_list +# dwc2_info = { +# 'BCM2711 (Pi4)': { +# 'guid': 0x2708A000, +# 'gsnpsid': 0x4F54280A, +# 'ghwcfg1': 0, +# 'ghwcfg2': 0x228DDD50, +# 'ghwcfg3': 0xFF000E8, +# 'ghwcfg4': 0x1FF00020 +# }, +dwc2_info = {key: {field: value for field, value in zip(dwc2_reg_list, values)} for key, values in dwc2_reg_value.items()} + +class GHWCFG2(ctypes.LittleEndianStructure): + _fields_ = [ + ("op_mode", ctypes.c_uint32, 3), + ("arch", ctypes.c_uint32, 2), + ("point2point", ctypes.c_uint32, 1), + ("hs_phy_type", ctypes.c_uint32, 2), + ("fs_phy_type", ctypes.c_uint32, 2), + ("num_dev_ep", ctypes.c_uint32, 4), + ("num_host_ch", ctypes.c_uint32, 4), + ("period_channel_support", ctypes.c_uint32, 1), + ("enable_dynamic_fifo", ctypes.c_uint32, 1), + ("mul_cpu_int", ctypes.c_uint32, 1), + ("reserved21", ctypes.c_uint32, 1), + ("nperiod_tx_q_depth", ctypes.c_uint32, 2), + ("host_period_tx_q_depth", ctypes.c_uint32, 2), + ("dev_token_q_depth", ctypes.c_uint32, 5), + ("otg_enable_ic_usb", ctypes.c_uint32, 1) + ] + + +class GHWCFG3(ctypes.LittleEndianStructure): + _fields_ = [ + ("xfer_size_width", ctypes.c_uint32, 4), + ("packet_size_width", ctypes.c_uint32, 3), + ("otg_enable", ctypes.c_uint32, 1), + ("i2c_enable", ctypes.c_uint32, 1), + ("vendor_ctrl_itf", ctypes.c_uint32, 1), + ("optional_feature_removed", ctypes.c_uint32, 1), + ("synch_reset", ctypes.c_uint32, 1), + ("otg_adp_support", ctypes.c_uint32, 1), + ("otg_enable_hsic", ctypes.c_uint32, 1), + ("battery_charger_support", ctypes.c_uint32, 1), + ("lpm_mode", ctypes.c_uint32, 1), + ("total_fifo_size", ctypes.c_uint32, 16) + ] + + +class GHWCFG4(ctypes.LittleEndianStructure): + _fields_ = [ + ("num_dev_period_in_ep", ctypes.c_uint32, 4), + ("power_optimized", ctypes.c_uint32, 1), + ("ahb_freq_min", ctypes.c_uint32, 1), + ("hibernation", ctypes.c_uint32, 1), + ("reserved7", ctypes.c_uint32, 3), + ("service_interval_mode", ctypes.c_uint32, 1), + ("ipg_isoc_en", ctypes.c_uint32, 1), + ("acg_enable", ctypes.c_uint32, 1), + ("reserved13", ctypes.c_uint32, 1), + ("utmi_phy_data_width", ctypes.c_uint32, 2), + ("dev_ctrl_ep_num", ctypes.c_uint32, 4), + ("iddg_filter_enabled", ctypes.c_uint32, 1), + ("vbus_valid_filter_enabled", ctypes.c_uint32, 1), + ("a_valid_filter_enabled", ctypes.c_uint32, 1), + ("b_valid_filter_enabled", ctypes.c_uint32, 1), + ("dedicated_fifos", ctypes.c_uint32, 1), + ("num_dev_in_eps", ctypes.c_uint32, 4), + ("dma_desc_enable", ctypes.c_uint32, 1), + ("dma_dynamic", ctypes.c_uint32, 1) + ] + + +@click.group() +def cli(): + pass + + +@cli.command() +@click.argument('mcus', nargs=-1) +@click.option('-a', '--all', is_flag=True, help='Print all bit-field values') +def info(mcus, all): + """Print DWC2 register values for given MCU(s)""" + if len(mcus) == 0: + mcus = dwc2_info + + for mcu in mcus: + for entry in dwc2_info: + if mcu.lower() in entry.lower(): + print(f"## {entry}") + for r_name, r_value in dwc2_info[entry].items(): + print(f"{r_name} = 0x{r_value:08X}") + # Print bit-field values + if all and r_name.upper() in globals(): + class_name = globals()[r_name.upper()] + ghwcfg = class_name.from_buffer_copy(r_value.to_bytes(4, byteorder='little')) + for field_name, field_type, _ in class_name._fields_: + print(f" {field_name} = {getattr(ghwcfg, field_name)}") + + +@cli.command() +def render_md(): + """Render dwc2_info to Markdown table""" + # Create an empty list to hold the dictionaries + dwc2_info_list = [] + + #Iterate over the dwc2_info dictionary and extract fields + for device, reg_values in dwc2_info.items(): + entry_dict = {"Device": device} + for r_name, r_value in reg_values.items(): + entry_dict[r_name] = f"0x{r_value:08X}" + # Print bit-field values + if r_name.upper() in globals(): + class_name = globals()[r_name.upper()] + ghwcfg = class_name.from_buffer_copy(r_value.to_bytes(4, byteorder='little')) + for field_name, field_type, _ in class_name._fields_: + entry_dict[f' - {field_name}'] = getattr(ghwcfg, field_name) + + dwc2_info_list.append(entry_dict) + + # Create a Pandas DataFrame from the list of dictionaries + df = pd.DataFrame(dwc2_info_list).set_index('Device') + + # Transpose the DataFrame to switch rows and columns + df = df.T + #print(df) + + # Write the Markdown table to a file + with open('dwc2_info.md', 'w') as md_file: + md_file.write(df.to_markdown()) + + +if __name__ == '__main__': + cli() diff --git a/src/portable/synopsys/dwc2/dwc2_stm32.h b/src/portable/synopsys/dwc2/dwc2_stm32.h index a97a10223..57df4e941 100644 --- a/src/portable/synopsys/dwc2/dwc2_stm32.h +++ b/src/portable/synopsys/dwc2/dwc2_stm32.h @@ -28,7 +28,7 @@ #define _DWC2_STM32_H_ #ifdef __cplusplus - extern "C" { +extern "C" { #endif // EP_MAX : Max number of bi-directional endpoints including EP0 @@ -84,17 +84,15 @@ #elif CFG_TUSB_MCU == OPT_MCU_STM32U5 #include "stm32u5xx.h" - // NOTE: STM595/5A5/599/5A9 only have 1 USB port (with integrated HS PHY) - // USB_OTG_FS_BASE and OTG_FS_IRQn not defined - #if !defined(USB_OTG_FS) + // U59x/5Ax/5Fx/5Gx are highspeed with built-in HS PHY + #ifdef USB_OTG_FS + #define USB_OTG_FS_PERIPH_BASE USB_OTG_FS_BASE + #define EP_MAX_FS 6 + #define EP_FIFO_SIZE_FS 1280 + #else #define USB_OTG_HS_PERIPH_BASE USB_OTG_HS_BASE #define EP_MAX_HS 9 #define EP_FIFO_SIZE_HS 4096 - //#define OTG_FS_IRQn OTG_HS_IRQn - #else - #define USB_OTG_FS_PERIPH_BASE USB_OTG_FS_BASE - #define EP_MAX_FS 6 - #define EP_FIFO_SIZE_FS 1280 #endif #else #error "Unsupported MCUs" @@ -109,15 +107,14 @@ // On STM32 for consistency we associate // - Port0 to OTG_FS, and Port1 to OTG_HS -static const dwc2_controller_t _dwc2_controller[] = -{ -#ifdef USB_OTG_FS_PERIPH_BASE - { .reg_base = USB_OTG_FS_PERIPH_BASE, .irqnum = OTG_FS_IRQn, .ep_count = EP_MAX_FS, .ep_fifo_size = EP_FIFO_SIZE_FS }, -#endif - -#ifdef USB_OTG_HS_PERIPH_BASE - { .reg_base = USB_OTG_HS_PERIPH_BASE, .irqnum = OTG_HS_IRQn, .ep_count = EP_MAX_HS, .ep_fifo_size = EP_FIFO_SIZE_HS }, -#endif +static const dwc2_controller_t _dwc2_controller[] = { + #ifdef USB_OTG_FS_PERIPH_BASE + { .reg_base = USB_OTG_FS_PERIPH_BASE, .irqnum = OTG_FS_IRQn, .ep_count = EP_MAX_FS, .ep_fifo_size = EP_FIFO_SIZE_FS }, + #endif + + #ifdef USB_OTG_HS_PERIPH_BASE + { .reg_base = USB_OTG_HS_PERIPH_BASE, .irqnum = OTG_HS_IRQn, .ep_count = EP_MAX_HS, .ep_fifo_size = EP_FIFO_SIZE_HS }, + #endif }; //--------------------------------------------------------------------+ @@ -128,40 +125,33 @@ static const dwc2_controller_t _dwc2_controller[] = // extern uint32_t SystemCoreClock; TU_ATTR_ALWAYS_INLINE -static inline void dwc2_dcd_int_enable(uint8_t rhport) -{ - NVIC_EnableIRQ((IRQn_Type)_dwc2_controller[rhport].irqnum); +static inline void dwc2_dcd_int_enable(uint8_t rhport) { + NVIC_EnableIRQ((IRQn_Type) _dwc2_controller[rhport].irqnum); } TU_ATTR_ALWAYS_INLINE -static inline void dwc2_dcd_int_disable (uint8_t rhport) -{ - NVIC_DisableIRQ((IRQn_Type)_dwc2_controller[rhport].irqnum); +static inline void dwc2_dcd_int_disable(uint8_t rhport) { + NVIC_DisableIRQ((IRQn_Type) _dwc2_controller[rhport].irqnum); } TU_ATTR_ALWAYS_INLINE -static inline void dwc2_remote_wakeup_delay(void) -{ +static inline void dwc2_remote_wakeup_delay(void) { // try to delay for 1 ms uint32_t count = SystemCoreClock / 1000; - while ( count-- ) __NOP(); + while (count--) __NOP(); } // MCU specific PHY init, called BEFORE core reset -static inline void dwc2_phy_init(dwc2_regs_t * dwc2, uint8_t hs_phy_type) -{ - if ( hs_phy_type == HS_PHY_TYPE_NONE ) - { +static inline void dwc2_phy_init(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { + if (hs_phy_type == HS_PHY_TYPE_NONE) { // Enable on-chip FS PHY dwc2->stm32_gccfg |= STM32_GCCFG_PWRDWN; - }else - { - // Disable FS PHY + } else { + // Disable FS PHY, TODO on U5A5 (dwc2 4.11a) 16th bit is 'Host CDP behavior enable' dwc2->stm32_gccfg &= ~STM32_GCCFG_PWRDWN; // Enable on-chip HS PHY - if (hs_phy_type == HS_PHY_TYPE_UTMI || hs_phy_type == HS_PHY_TYPE_UTMI_ULPI) - { + if (hs_phy_type == HS_PHY_TYPE_UTMI || hs_phy_type == HS_PHY_TYPE_UTMI_ULPI) { #ifdef USB_HS_PHYC // Enable UTMI HS PHY dwc2->stm32_gccfg |= STM32_GCCFG_PHYHSEN; @@ -200,34 +190,39 @@ static inline void dwc2_phy_init(dwc2_regs_t * dwc2, uint8_t hs_phy_type) } // MCU specific PHY update, it is called AFTER init() and core reset -static inline void dwc2_phy_update(dwc2_regs_t * dwc2, uint8_t hs_phy_type) -{ +static inline void dwc2_phy_update(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { // used to set turnaround time for fullspeed, nothing to do in highspeed mode - if ( hs_phy_type == HS_PHY_TYPE_NONE ) - { + if (hs_phy_type == HS_PHY_TYPE_NONE) { // Turnaround timeout depends on the AHB clock dictated by STM32 Reference Manual uint32_t turnaround; - if ( SystemCoreClock >= 32000000u ) + if (SystemCoreClock >= 32000000u) { turnaround = 0x6u; - else if ( SystemCoreClock >= 27500000u ) + } else if (SystemCoreClock >= 27500000u) { turnaround = 0x7u; - else if ( SystemCoreClock >= 24000000u ) + } else if (SystemCoreClock >= 24000000u) { turnaround = 0x8u; - else if ( SystemCoreClock >= 21800000u ) + } else if (SystemCoreClock >= 21800000u) { turnaround = 0x9u; - else if ( SystemCoreClock >= 20000000u ) + } + else if (SystemCoreClock >= 20000000u) { turnaround = 0xAu; - else if ( SystemCoreClock >= 18500000u ) + } + else if (SystemCoreClock >= 18500000u) { turnaround = 0xBu; - else if ( SystemCoreClock >= 17200000u ) + } + else if (SystemCoreClock >= 17200000u) { turnaround = 0xCu; - else if ( SystemCoreClock >= 16000000u ) + } + else if (SystemCoreClock >= 16000000u) { turnaround = 0xDu; - else if ( SystemCoreClock >= 15000000u ) + } + else if (SystemCoreClock >= 15000000u) { turnaround = 0xEu; - else + } + else { turnaround = 0xFu; + } dwc2->gusbcfg = (dwc2->gusbcfg & ~GUSBCFG_TRDT_Msk) | (turnaround << GUSBCFG_TRDT_Pos); } diff --git a/src/portable/synopsys/dwc2/dwc2_type.h b/src/portable/synopsys/dwc2/dwc2_type.h index 3fc979337..6516882da 100644 --- a/src/portable/synopsys/dwc2/dwc2_type.h +++ b/src/portable/synopsys/dwc2/dwc2_type.h @@ -43,6 +43,7 @@ typedef struct #define DWC2_CORE_REV_3_00a 0x4f54300a #define DWC2_CORE_REV_3_10a 0x4f54310a #define DWC2_CORE_REV_4_00a 0x4f54400a +#define DWC2_CORE_REV_4_11a 0x4f54411a #define DWC2_CORE_REV_4_20a 0x4f54420a #define DWC2_FS_IOT_REV_1_00a 0x5531100a #define DWC2_HS_IOT_REV_1_00a 0x5532100a -- cgit v1.3.1 From 305ef5d48a083f2052351a8a325310168c420c0e Mon Sep 17 00:00:00 2001 From: hathach Date: Mon, 30 Oct 2023 22:22:27 +0700 Subject: minor space format dwc2 driver --- src/portable/synopsys/dwc2/dcd_dwc2.c | 648 +++++++++++++--------------------- 1 file changed, 237 insertions(+), 411 deletions(-) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dcd_dwc2.c b/src/portable/synopsys/dwc2/dcd_dwc2.c index c6132a1f5..7b50a7d54 100644 --- a/src/portable/synopsys/dwc2/dcd_dwc2.c +++ b/src/portable/synopsys/dwc2/dcd_dwc2.c @@ -82,8 +82,8 @@ static TU_ATTR_ALIGNED(4) uint32_t _setup_packet[2]; typedef struct { - uint8_t * buffer; - tu_fifo_t * ff; + uint8_t* buffer; + tu_fifo_t* ff; uint16_t total_len; uint16_t max_size; uint8_t interval; @@ -93,30 +93,27 @@ static xfer_ctl_t xfer_status[DWC2_EP_MAX][2]; #define XFER_CTL_BASE(_ep, _dir) (&xfer_status[_ep][_dir]) // EP0 transfers are limited to 1 packet - larger sizes has to be split -static uint16_t ep0_pending[2]; // Index determines direction as tusb_dir_t type +static uint16_t ep0_pending[2]; // Index determines direction as tusb_dir_t type // TX FIFO RAM allocation so far in words - RX FIFO size is readily available from dwc2->grxfsiz -static uint16_t _allocated_fifo_words_tx; // TX FIFO size in words (IN EPs) -static bool _out_ep_closed; // Flag to check if RX FIFO size needs an update (reduce its size) +static uint16_t _allocated_fifo_words_tx; // TX FIFO size in words (IN EPs) +static bool _out_ep_closed; // Flag to check if RX FIFO size needs an update (reduce its size) // SOF enabling flag - required for SOF to not get disabled in ISR when SOF was enabled by static bool _sof_en; // Calculate the RX FIFO size according to recommendations from reference manual -static inline uint16_t calc_grxfsiz(uint16_t max_ep_size, uint8_t ep_count) -{ - return 15 + 2*(max_ep_size/4) + 2*ep_count; +static inline uint16_t calc_grxfsiz(uint16_t max_ep_size, uint8_t ep_count) { + return 15 + 2 * (max_ep_size / 4) + 2 * ep_count; } -static void update_grxfsiz(uint8_t rhport) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); +static void update_grxfsiz(uint8_t rhport) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const ep_count = _dwc2_controller[rhport].ep_count; // Determine largest EP size for RX FIFO uint16_t max_epsize = 0; - for (uint8_t epnum = 0; epnum < ep_count; epnum++) - { + for (uint8_t epnum = 0; epnum < ep_count; epnum++) { max_epsize = tu_max16(max_epsize, xfer_status[epnum][TUSB_DIR_OUT].max_size); } @@ -125,9 +122,8 @@ static void update_grxfsiz(uint8_t rhport) } // Start of Bus Reset -static void bus_reset(uint8_t rhport) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); +static void bus_reset(uint8_t rhport) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const ep_count = _dwc2_controller[rhport].ep_count; tu_memclr(xfer_status, sizeof(xfer_status)); @@ -139,15 +135,14 @@ static void bus_reset(uint8_t rhport) dwc2->dcfg &= ~DCFG_DAD_Msk; // 1. NAK for all OUT endpoints - for ( uint8_t n = 0; n < ep_count; n++ ) - { + for (uint8_t n = 0; n < ep_count; n++) { dwc2->epout[n].doepctl |= DOEPCTL_SNAK; } // 2. Set up interrupt mask dwc2->daintmsk = TU_BIT(DAINTMSK_OEPM_Pos) | TU_BIT(DAINTMSK_IEPM_Pos); - dwc2->doepmsk = DOEPMSK_STUPM | DOEPMSK_XFRCM; - dwc2->diepmsk = DIEPMSK_TOM | DIEPMSK_XFRCM; + dwc2->doepmsk = DOEPMSK_STUPM | DOEPMSK_XFRCM; + dwc2->diepmsk = DIEPMSK_TOM | DIEPMSK_XFRCM; // "USB Data FIFOs" section in reference manual // Peripheral FIFO architecture @@ -206,36 +201,34 @@ static void bus_reset(uint8_t rhport) _allocated_fifo_words_tx = 16; // Control IN uses FIFO 0 with 64 bytes ( 16 32-bit word ) - dwc2->dieptxf0 = (16 << DIEPTXF0_TX0FD_Pos) | (_dwc2_controller[rhport].ep_fifo_size/4 - _allocated_fifo_words_tx); + dwc2->dieptxf0 = (16 << DIEPTXF0_TX0FD_Pos) | (_dwc2_controller[rhport].ep_fifo_size / 4 - _allocated_fifo_words_tx); // Fixed control EP0 size to 64 bytes dwc2->epin[0].diepctl &= ~(0x03 << DIEPCTL_MPSIZ_Pos); xfer_status[0][TUSB_DIR_OUT].max_size = 64; - xfer_status[0][TUSB_DIR_IN ].max_size = 64; + xfer_status[0][TUSB_DIR_IN].max_size = 64; dwc2->epout[0].doeptsiz |= (3 << DOEPTSIZ_STUPCNT_Pos); dwc2->gintmsk |= GINTMSK_OEPINT | GINTMSK_IEPINT; } -static void edpt_schedule_packets(uint8_t rhport, uint8_t const epnum, uint8_t const dir, uint16_t const num_packets, uint16_t total_bytes) -{ +static void edpt_schedule_packets(uint8_t rhport, uint8_t const epnum, uint8_t const dir, uint16_t const num_packets, + uint16_t total_bytes) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); // EP0 is limited to one packet each xfer // We use multiple transaction of xfer->max_size length to get a whole transfer done - if ( epnum == 0 ) - { - xfer_ctl_t *const xfer = XFER_CTL_BASE(epnum, dir); + if (epnum == 0) { + xfer_ctl_t* const xfer = XFER_CTL_BASE(epnum, dir); total_bytes = tu_min16(ep0_pending[dir], xfer->max_size); ep0_pending[dir] -= total_bytes; } // IN and OUT endpoint xfers are interrupt-driven, we just schedule them here. - if ( dir == TUSB_DIR_IN ) - { + if (dir == TUSB_DIR_IN) { dwc2_epin_t* epin = dwc2->epin; // A full IN transfer (multiple packets, possibly) triggers XFRC. @@ -245,20 +238,16 @@ static void edpt_schedule_packets(uint8_t rhport, uint8_t const epnum, uint8_t c epin[epnum].diepctl |= DIEPCTL_EPENA | DIEPCTL_CNAK; // For ISO endpoint set correct odd/even bit for next frame. - if ( (epin[epnum].diepctl & DIEPCTL_EPTYP) == DIEPCTL_EPTYP_0 && (XFER_CTL_BASE(epnum, dir))->interval == 1 ) - { + if ((epin[epnum].diepctl & DIEPCTL_EPTYP) == DIEPCTL_EPTYP_0 && (XFER_CTL_BASE(epnum, dir))->interval == 1) { // Take odd/even bit from frame counter. uint32_t const odd_frame_now = (dwc2->dsts & (1u << DSTS_FNSOF_Pos)); epin[epnum].diepctl |= (odd_frame_now ? DIEPCTL_SD0PID_SEVNFRM_Msk : DIEPCTL_SODDFRM_Msk); } // Enable fifo empty interrupt only if there are something to put in the fifo. - if ( total_bytes != 0 ) - { + if (total_bytes != 0) { dwc2->diepempmsk |= (1 << epnum); } - } - else - { + } else { dwc2_epout_t* epout = dwc2->epout; // A full OUT transfer (multiple packets, possibly) triggers XFRC. @@ -267,9 +256,8 @@ static void edpt_schedule_packets(uint8_t rhport, uint8_t const epnum, uint8_t c ((total_bytes << DOEPTSIZ_XFRSIZ_Pos) & DOEPTSIZ_XFRSIZ_Msk); epout[epnum].doepctl |= DOEPCTL_EPENA | DOEPCTL_CNAK; - if ( (epout[epnum].doepctl & DOEPCTL_EPTYP) == DOEPCTL_EPTYP_0 && - XFER_CTL_BASE(epnum, dir)->interval == 1 ) - { + if ((epout[epnum].doepctl & DOEPCTL_EPTYP) == DOEPCTL_EPTYP_0 && + XFER_CTL_BASE(epnum, dir)->interval == 1) { // Take odd/even bit from frame counter. uint32_t const odd_frame_now = (dwc2->dsts & (1u << DSTS_FNSOF_Pos)); epout[epnum].doepctl |= (odd_frame_now ? DOEPCTL_SD0PID_SEVNFRM_Msk : DOEPCTL_SODDFRM_Msk); @@ -281,93 +269,35 @@ static void edpt_schedule_packets(uint8_t rhport, uint8_t const epnum, uint8_t c /* Controller API *------------------------------------------------------------------*/ #if CFG_TUSB_DEBUG >= DWC2_DEBUG -void print_dwc2_info(dwc2_regs_t * dwc2) -{ - dwc2_ghwcfg2_t const * hw_cfg2 = &dwc2->ghwcfg2_bm; - dwc2_ghwcfg3_t const * hw_cfg3 = &dwc2->ghwcfg3_bm; - dwc2_ghwcfg4_t const * hw_cfg4 = &dwc2->ghwcfg4_bm; -// TU_LOG_HEX(DWC2_DEBUG, dwc2->gotgctl); -// TU_LOG_HEX(DWC2_DEBUG, dwc2->gusbcfg); -// TU_LOG_HEX(DWC2_DEBUG, dwc2->dcfg); - TU_LOG_HEX(DWC2_DEBUG, dwc2->guid); - TU_LOG_HEX(DWC2_DEBUG, dwc2->gsnpsid); - TU_LOG_HEX(DWC2_DEBUG, dwc2->ghwcfg1); - - // HW configure 2 - TU_LOG(DWC2_DEBUG, "\r\n"); - TU_LOG_HEX(DWC2_DEBUG, dwc2->ghwcfg2); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->op_mode ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->arch ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->point2point ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->hs_phy_type ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->fs_phy_type ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->num_dev_ep ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->num_host_ch ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->period_channel_support ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->enable_dynamic_fifo ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->mul_cpu_int ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->nperiod_tx_q_depth ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->host_period_tx_q_depth ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->dev_token_q_depth ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg2->otg_enable_ic_usb ); - - // HW configure 3 - TU_LOG(DWC2_DEBUG, "\r\n"); - TU_LOG_HEX(DWC2_DEBUG, dwc2->ghwcfg3); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->xfer_size_width ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->packet_size_width ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->otg_enable ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->i2c_enable ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->vendor_ctrl_itf ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->optional_feature_removed ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->synch_reset ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->otg_adp_support ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->otg_enable_hsic ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->battery_charger_support ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->lpm_mode ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg3->total_fifo_size ); - - // HW configure 4 - TU_LOG(DWC2_DEBUG, "\r\n"); - TU_LOG_HEX(DWC2_DEBUG, dwc2->ghwcfg4); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->num_dev_period_in_ep ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->power_optimized ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->ahb_freq_min ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->hibernation ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->service_interval_mode ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->ipg_isoc_en ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->acg_enable ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->utmi_phy_data_width ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->dev_ctrl_ep_num ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->iddg_filter_enabled ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->vbus_valid_filter_enabled ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->a_valid_filter_enabled ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->b_valid_filter_enabled ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->dedicated_fifos ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->num_dev_in_eps ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->dma_desc_enable ); - TU_LOG_INT(DWC2_DEBUG, hw_cfg4->dma_dynamic ); +void print_dwc2_info(dwc2_regs_t* dwc2) { + // print guid, gsnpsid, ghwcfg1, ghwcfg2, ghwcfg3, ghwcfg4 + // use dwc2_info.py/md for bit-field value and comparison with other ports + volatile uint32_t const* p = (volatile uint32_t const*) &dwc2->guid; + TU_LOG(DWC2_DEBUG, "guid, gsnpsid, ghwcfg1, ghwcfg2, ghwcfg3, ghwcfg4\r\n"); + for (size_t i = 0; i < 5; i++) { + TU_LOG(DWC2_DEBUG, "0x%08lX, ", p[i]); + } + TU_LOG(DWC2_DEBUG, "0x%08lX\r\n", p[5]); } + #endif -static void reset_core(dwc2_regs_t * dwc2) -{ +static void reset_core(dwc2_regs_t* dwc2) { // reset core dwc2->grstctl |= GRSTCTL_CSRST; // wait for reset bit is cleared // TODO version 4.20a should wait for RESET DONE mask - while (dwc2->grstctl & GRSTCTL_CSRST) { } + while (dwc2->grstctl & GRSTCTL_CSRST) {} // wait for AHB master IDLE - while ( !(dwc2->grstctl & GRSTCTL_AHBIDL) ) { } + while (!(dwc2->grstctl & GRSTCTL_AHBIDL)) {} // wait for device mode ? } -static bool phy_hs_supported(dwc2_regs_t * dwc2) -{ +static bool phy_hs_supported(dwc2_regs_t* dwc2) { // note: esp32 incorrect report its hs_phy_type as utmi #if TU_CHECK_MCU(OPT_MCU_ESP32S2, OPT_MCU_ESP32S3) return false; @@ -376,8 +306,7 @@ static bool phy_hs_supported(dwc2_regs_t * dwc2) #endif } -static void phy_fs_init(dwc2_regs_t * dwc2) -{ +static void phy_fs_init(dwc2_regs_t* dwc2) { TU_LOG(DWC2_DEBUG, "Fullspeed PHY init\r\n"); // Select FS PHY @@ -401,15 +330,13 @@ static void phy_fs_init(dwc2_regs_t * dwc2) dwc2->dcfg = (dwc2->dcfg & ~DCFG_DSPD_Msk) | (DCFG_DSPD_FS << DCFG_DSPD_Pos); } -static void phy_hs_init(dwc2_regs_t * dwc2) -{ +static void phy_hs_init(dwc2_regs_t* dwc2) { uint32_t gusbcfg = dwc2->gusbcfg; // De-select FS PHY gusbcfg &= ~GUSBCFG_PHYSEL; - if (dwc2->ghwcfg2_bm.hs_phy_type == HS_PHY_TYPE_ULPI) - { + if (dwc2->ghwcfg2_bm.hs_phy_type == HS_PHY_TYPE_ULPI) { TU_LOG(DWC2_DEBUG, "Highspeed ULPI PHY init\r\n"); // Select ULPI @@ -423,8 +350,7 @@ static void phy_hs_init(dwc2_regs_t * dwc2) // Disable FS/LS ULPI gusbcfg &= ~(GUSBCFG_ULPIFSLS | GUSBCFG_ULPICSM); - }else - { + } else { TU_LOG(DWC2_DEBUG, "Highspeed UTMI+ PHY init\r\n"); // Select UTMI+ with 8-bit interface @@ -465,8 +391,7 @@ static void phy_hs_init(dwc2_regs_t * dwc2) dwc2->dcfg = dcfg; } -static bool check_dwc2(dwc2_regs_t * dwc2) -{ +static bool check_dwc2(dwc2_regs_t* dwc2) { #if CFG_TUSB_DEBUG >= DWC2_DEBUG print_dwc2_info(dwc2); #endif @@ -481,41 +406,35 @@ static bool check_dwc2(dwc2_regs_t * dwc2) return true; } -void dcd_init (uint8_t rhport) -{ +void dcd_init(uint8_t rhport) { // Programming model begins in the last section of the chapter on the USB // peripheral in each Reference Manual. - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); // Check Synopsys ID register, failed if controller clock/power is not enabled - TU_VERIFY(check_dwc2(dwc2), ); - + if (!check_dwc2(dwc2)) return; dcd_disconnect(rhport); // max number of endpoints & total_fifo_size are: // hw_cfg2->num_dev_ep, hw_cfg2->total_fifo_size - if( phy_hs_supported(dwc2) ) - { - // Highspeed - phy_hs_init(dwc2); - }else - { - // core does not support highspeed or hs-phy is not present - phy_fs_init(dwc2); + if (phy_hs_supported(dwc2)) { + phy_hs_init(dwc2); // Highspeed + } else { + phy_fs_init(dwc2); // core does not support highspeed or hs phy is not present } // Restart PHY clock dwc2->pcgctl &= ~(PCGCTL_STOPPCLK | PCGCTL_GATEHCLK | PCGCTL_PWRCLMP | PCGCTL_RSTPDWNMODULE); - /* Set HS/FS Timeout Calibration to 7 (max available value). - * The number of PHY clocks that the application programs in - * this field is added to the high/full speed interpacket timeout - * duration in the core to account for any additional delays - * introduced by the PHY. This can be required, because the delay - * introduced by the PHY in generating the linestate condition - * can vary from one PHY to another. - */ + /* Set HS/FS Timeout Calibration to 7 (max available value). + * The number of PHY clocks that the application programs in + * this field is added to the high/full speed interpacket timeout + * duration in the core to account for any additional delays + * introduced by the PHY. This can be required, because the delay + * introduced by the PHY in generating the linestate condition + * can vary from one PHY to another. + */ dwc2->gusbcfg |= (7ul << GUSBCFG_TOCAL_Pos); // Force device mode @@ -537,7 +456,7 @@ void dcd_init (uint8_t rhport) // Required as part of core initialization. // TODO: How should mode mismatch be handled? It will cause // the core to stop working/require reset. - dwc2->gintmsk = GINTMSK_OTGINT | GINTMSK_MMISM | GINTMSK_RXFLVLM | + dwc2->gintmsk = GINTMSK_OTGINT | GINTMSK_MMISM | GINTMSK_RXFLVLM | GINTMSK_USBSUSPM | GINTMSK_USBRST | GINTMSK_ENUMDNEM | GINTMSK_WUIM; // Enable global interrupt @@ -554,30 +473,26 @@ void dcd_init (uint8_t rhport) dcd_connect(rhport); } -void dcd_int_enable (uint8_t rhport) -{ +void dcd_int_enable(uint8_t rhport) { dwc2_dcd_int_enable(rhport); } -void dcd_int_disable (uint8_t rhport) -{ +void dcd_int_disable(uint8_t rhport) { dwc2_dcd_int_disable(rhport); } -void dcd_set_address (uint8_t rhport, uint8_t dev_addr) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); +void dcd_set_address(uint8_t rhport, uint8_t dev_addr) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); dwc2->dcfg = (dwc2->dcfg & ~DCFG_DAD_Msk) | (dev_addr << DCFG_DAD_Pos); // Response with status after changing device address dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_IN), NULL, 0); } -void dcd_remote_wakeup(uint8_t rhport) -{ +void dcd_remote_wakeup(uint8_t rhport) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); // set remote wakeup dwc2->dctl |= DCTL_RWUSIG; @@ -592,35 +507,29 @@ void dcd_remote_wakeup(uint8_t rhport) dwc2->dctl &= ~DCTL_RWUSIG; } -void dcd_connect(uint8_t rhport) -{ +void dcd_connect(uint8_t rhport) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); dwc2->dctl &= ~DCTL_SDIS; } -void dcd_disconnect(uint8_t rhport) -{ +void dcd_disconnect(uint8_t rhport) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); dwc2->dctl |= DCTL_SDIS; } // Be advised: audio, video and possibly other iso-ep classes use dcd_sof_enable() to enable/disable its corresponding ISR on purpose! -void dcd_sof_enable(uint8_t rhport, bool en) -{ +void dcd_sof_enable(uint8_t rhport, bool en) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); _sof_en = en; - if (en) - { + if (en) { dwc2->gintsts = GINTSTS_SOF; dwc2->gintmsk |= GINTMSK_SOFM; - } - else - { + } else { dwc2->gintmsk &= ~GINTMSK_SOFM; } } @@ -629,33 +538,30 @@ void dcd_sof_enable(uint8_t rhport, bool en) /* DCD Endpoint port *------------------------------------------------------------------*/ -bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) -{ +bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const* desc_edpt) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const ep_count = _dwc2_controller[rhport].ep_count; uint8_t const epnum = tu_edpt_number(desc_edpt->bEndpointAddress); - uint8_t const dir = tu_edpt_dir(desc_edpt->bEndpointAddress); + uint8_t const dir = tu_edpt_dir(desc_edpt->bEndpointAddress); TU_ASSERT(epnum < ep_count); - xfer_ctl_t * xfer = XFER_CTL_BASE(epnum, dir); + xfer_ctl_t* xfer = XFER_CTL_BASE(epnum, dir); xfer->max_size = tu_edpt_packet_size(desc_edpt); xfer->interval = desc_edpt->bInterval; uint16_t const fifo_size = tu_div_ceil(xfer->max_size, 4); - if(dir == TUSB_DIR_OUT) - { + if (dir == TUSB_DIR_OUT) { // Calculate required size of RX FIFO - uint16_t const sz = calc_grxfsiz(4*fifo_size, ep_count); + uint16_t const sz = calc_grxfsiz(4 * fifo_size, ep_count); // If size_rx needs to be extended check if possible and if so enlarge it - if (dwc2->grxfsiz < sz) - { - TU_ASSERT(sz + _allocated_fifo_words_tx <= _dwc2_controller[rhport].ep_fifo_size/4); + if (dwc2->grxfsiz < sz) { + TU_ASSERT(sz + _allocated_fifo_words_tx <= _dwc2_controller[rhport].ep_fifo_size / 4); // Enlarge RX FIFO dwc2->grxfsiz = sz; @@ -667,9 +573,7 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) (xfer->max_size << DOEPCTL_MPSIZ_Pos); dwc2->daintmsk |= TU_BIT(DAINTMSK_OEPM_Pos + epnum); - } - else - { + } else { // "USB Data FIFOs" section in reference manual // Peripheral FIFO architecture // @@ -692,15 +596,17 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) // - IN EP 1 gets FIFO 1, IN EP "n" gets FIFO "n". // Check if free space is available - TU_ASSERT(_allocated_fifo_words_tx + fifo_size + dwc2->grxfsiz <= _dwc2_controller[rhport].ep_fifo_size/4); + TU_ASSERT(_allocated_fifo_words_tx + fifo_size + dwc2->grxfsiz <= _dwc2_controller[rhport].ep_fifo_size / 4); _allocated_fifo_words_tx += fifo_size; - TU_LOG(DWC2_DEBUG, " Allocated %u bytes at offset %lu", fifo_size*4, _dwc2_controller[rhport].ep_fifo_size-_allocated_fifo_words_tx*4); + TU_LOG(DWC2_DEBUG, " Allocated %u bytes at offset %lu", fifo_size * 4, + _dwc2_controller[rhport].ep_fifo_size - _allocated_fifo_words_tx * 4); // DIEPTXF starts at FIFO #1. // Both TXFD and TXSA are in unit of 32-bit words. - dwc2->dieptxf[epnum - 1] = (fifo_size << DIEPTXF_INEPTXFD_Pos) | (_dwc2_controller[rhport].ep_fifo_size/4 - _allocated_fifo_words_tx); + dwc2->dieptxf[epnum - 1] = (fifo_size << DIEPTXF_INEPTXFD_Pos) | + (_dwc2_controller[rhport].ep_fifo_size / 4 - _allocated_fifo_words_tx); dwc2->epin[epnum].diepctl |= (1 << DIEPCTL_USBAEP_Pos) | (epnum << DIEPCTL_TXFNUM_Pos) | @@ -715,16 +621,14 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) } // Close all non-control endpoints, cancel all pending transfers if any. -void dcd_edpt_close_all (uint8_t rhport) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); +void dcd_edpt_close_all(uint8_t rhport) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const ep_count = _dwc2_controller[rhport].ep_count; // Disable non-control interrupt dwc2->daintmsk = (1 << DAINTMSK_OEPM_Pos) | (1 << DAINTMSK_IEPM_Pos); - for(uint8_t n = 1; n < ep_count; n++) - { + for (uint8_t n = 1; n < ep_count; n++) { // disable OUT endpoint dwc2->epout[n].doepctl = 0; xfer_status[n][TUSB_DIR_OUT].max_size = 0; @@ -738,31 +642,27 @@ void dcd_edpt_close_all (uint8_t rhport) _allocated_fifo_words_tx = 16; } -bool dcd_edpt_xfer (uint8_t rhport, uint8_t ep_addr, uint8_t * buffer, uint16_t total_bytes) -{ +bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); - xfer_ctl_t * xfer = XFER_CTL_BASE(epnum, dir); - xfer->buffer = buffer; - xfer->ff = NULL; - xfer->total_len = total_bytes; + xfer_ctl_t* xfer = XFER_CTL_BASE(epnum, dir); + xfer->buffer = buffer; + xfer->ff = NULL; + xfer->total_len = total_bytes; // EP0 can only handle one packet - if(epnum == 0) - { + if (epnum == 0) { ep0_pending[dir] = total_bytes; // Schedule the first transaction for EP0 transfer edpt_schedule_packets(rhport, epnum, dir, 1, ep0_pending[dir]); - } - else - { + } else { uint16_t num_packets = (total_bytes / xfer->max_size); uint16_t const short_packet_size = total_bytes % xfer->max_size; // Zero-size packet is special case. - if ( (short_packet_size > 0) || (total_bytes == 0) ) num_packets++; + if ((short_packet_size > 0) || (total_bytes == 0)) num_packets++; // Schedule packets to be sent within interrupt edpt_schedule_packets(rhport, epnum, dir, num_packets, total_bytes); @@ -775,24 +675,23 @@ bool dcd_edpt_xfer (uint8_t rhport, uint8_t ep_addr, uint8_t * buffer, uint16_t // bytes should be written and second to keep the return value free to give back a boolean // success message. If total_bytes is too big, the FIFO will copy only what is available // into the USB buffer! -bool dcd_edpt_xfer_fifo (uint8_t rhport, uint8_t ep_addr, tu_fifo_t * ff, uint16_t total_bytes) -{ +bool dcd_edpt_xfer_fifo(uint8_t rhport, uint8_t ep_addr, tu_fifo_t* ff, uint16_t total_bytes) { // USB buffers always work in bytes so to avoid unnecessary divisions we demand item_size = 1 TU_ASSERT(ff->item_size == 1); uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); - xfer_ctl_t * xfer = XFER_CTL_BASE(epnum, dir); - xfer->buffer = NULL; - xfer->ff = ff; - xfer->total_len = total_bytes; + xfer_ctl_t* xfer = XFER_CTL_BASE(epnum, dir); + xfer->buffer = NULL; + xfer->ff = ff; + xfer->total_len = total_bytes; uint16_t num_packets = (total_bytes / xfer->max_size); uint16_t const short_packet_size = total_bytes % xfer->max_size; // Zero-size packet is special case. - if ( short_packet_size > 0 || (total_bytes == 0) ) num_packets++; + if (short_packet_size > 0 || (total_bytes == 0)) num_packets++; // Schedule packets to be sent within interrupt edpt_schedule_packets(rhport, epnum, dir, num_packets, total_bytes); @@ -800,62 +699,52 @@ bool dcd_edpt_xfer_fifo (uint8_t rhport, uint8_t ep_addr, tu_fifo_t * ff, uint16 return true; } -static void dcd_edpt_disable (uint8_t rhport, uint8_t ep_addr, bool stall) -{ +static void dcd_edpt_disable(uint8_t rhport, uint8_t ep_addr, bool stall) { (void) rhport; - dwc2_regs_t *dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); - if ( dir == TUSB_DIR_IN ) - { + if (dir == TUSB_DIR_IN) { dwc2_epin_t* epin = dwc2->epin; // Only disable currently enabled non-control endpoint - if ( (epnum == 0) || !(epin[epnum].diepctl & DIEPCTL_EPENA) ) - { + if ((epnum == 0) || !(epin[epnum].diepctl & DIEPCTL_EPENA)) { epin[epnum].diepctl |= DIEPCTL_SNAK | (stall ? DIEPCTL_STALL : 0); - } - else - { + } else { // Stop transmitting packets and NAK IN xfers. epin[epnum].diepctl |= DIEPCTL_SNAK; - while ( (epin[epnum].diepint & DIEPINT_INEPNE) == 0 ) {} + while ((epin[epnum].diepint & DIEPINT_INEPNE) == 0) {} // Disable the endpoint. epin[epnum].diepctl |= DIEPCTL_EPDIS | (stall ? DIEPCTL_STALL : 0); - while ( (epin[epnum].diepint & DIEPINT_EPDISD_Msk) == 0 ) {} + while ((epin[epnum].diepint & DIEPINT_EPDISD_Msk) == 0) {} epin[epnum].diepint = DIEPINT_EPDISD; } // Flush the FIFO, and wait until we have confirmed it cleared. dwc2->grstctl = ((epnum << GRSTCTL_TXFNUM_Pos) | GRSTCTL_TXFFLSH); - while ( (dwc2->grstctl & GRSTCTL_TXFFLSH_Msk) != 0 ) {} - } - else - { + while ((dwc2->grstctl & GRSTCTL_TXFFLSH_Msk) != 0) {} + } else { dwc2_epout_t* epout = dwc2->epout; // Only disable currently enabled non-control endpoint - if ( (epnum == 0) || !(epout[epnum].doepctl & DOEPCTL_EPENA) ) - { + if ((epnum == 0) || !(epout[epnum].doepctl & DOEPCTL_EPENA)) { epout[epnum].doepctl |= stall ? DOEPCTL_STALL : 0; - } - else - { + } else { // Asserting GONAK is required to STALL an OUT endpoint. // Simpler to use polling here, we don't use the "B"OUTNAKEFF interrupt // anyway, and it can't be cleared by user code. If this while loop never // finishes, we have bigger problems than just the stack. dwc2->dctl |= DCTL_SGONAK; - while ( (dwc2->gintsts & GINTSTS_BOUTNAKEFF_Msk) == 0 ) {} + while ((dwc2->gintsts & GINTSTS_BOUTNAKEFF_Msk) == 0) {} // Ditto here- disable the endpoint. epout[epnum].doepctl |= DOEPCTL_EPDIS | (stall ? DOEPCTL_STALL : 0); - while ( (epout[epnum].doepint & DOEPINT_EPDISD_Msk) == 0 ) {} + while ((epout[epnum].doepint & DOEPINT_EPDISD_Msk) == 0) {} epout[epnum].doepint = DOEPINT_EPDISD; @@ -868,55 +757,46 @@ static void dcd_edpt_disable (uint8_t rhport, uint8_t ep_addr, bool stall) /** * Close an endpoint. */ -void dcd_edpt_close (uint8_t rhport, uint8_t ep_addr) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); +void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); dcd_edpt_disable(rhport, ep_addr, false); // Update max_size xfer_status[epnum][dir].max_size = 0; // max_size = 0 marks a disabled EP - required for changing FIFO allocation - if (dir == TUSB_DIR_IN) - { + if (dir == TUSB_DIR_IN) { uint16_t const fifo_size = (dwc2->dieptxf[epnum - 1] & DIEPTXF_INEPTXFD_Msk) >> DIEPTXF_INEPTXFD_Pos; uint16_t const fifo_start = (dwc2->dieptxf[epnum - 1] & DIEPTXF_INEPTXSA_Msk) >> DIEPTXF_INEPTXSA_Pos; // For now only the last opened endpoint can be closed without fuss. - TU_ASSERT(fifo_start == _dwc2_controller[rhport].ep_fifo_size/4 - _allocated_fifo_words_tx,); + TU_ASSERT(fifo_start == _dwc2_controller[rhport].ep_fifo_size / 4 - _allocated_fifo_words_tx,); _allocated_fifo_words_tx -= fifo_size; - } - else - { + } else { _out_ep_closed = true; // Set flag such that RX FIFO gets reduced in size once RX FIFO is empty } } -void dcd_edpt_stall (uint8_t rhport, uint8_t ep_addr) -{ +void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) { dcd_edpt_disable(rhport, ep_addr, true); } -void dcd_edpt_clear_stall (uint8_t rhport, uint8_t ep_addr) -{ +void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); + uint8_t const dir = tu_edpt_dir(ep_addr); // Clear stall and reset data toggle - if ( dir == TUSB_DIR_IN ) - { + if (dir == TUSB_DIR_IN) { dwc2->epin[epnum].diepctl &= ~DIEPCTL_STALL; dwc2->epin[epnum].diepctl |= DIEPCTL_SD0PID_SEVNFRM; - } - else - { + } else { dwc2->epout[epnum].doepctl &= ~DOEPCTL_STALL; dwc2->epout[epnum].doepctl |= DOEPCTL_SD0PID_SEVNFRM; } @@ -925,70 +805,63 @@ void dcd_edpt_clear_stall (uint8_t rhport, uint8_t ep_addr) /*------------------------------------------------------------------*/ // Read a single data packet from receive FIFO -static void read_fifo_packet(uint8_t rhport, uint8_t * dst, uint16_t len) -{ +static void read_fifo_packet(uint8_t rhport, uint8_t* dst, uint16_t len) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); - volatile const uint32_t * rx_fifo = dwc2->fifo[0]; + dwc2_regs_t* dwc2 = DWC2_REG(rhport); + volatile const uint32_t* rx_fifo = dwc2->fifo[0]; // Reading full available 32 bit words from fifo uint16_t full_words = len >> 2; - while(full_words--) - { + while (full_words--) { tu_unaligned_write32(dst, *rx_fifo); dst += 4; } // Read the remaining 1-3 bytes from fifo uint8_t const bytes_rem = len & 0x03; - if ( bytes_rem != 0 ) - { + if (bytes_rem != 0) { uint32_t const tmp = *rx_fifo; dst[0] = tu_u32_byte0(tmp); - if ( bytes_rem > 1 ) dst[1] = tu_u32_byte1(tmp); - if ( bytes_rem > 2 ) dst[2] = tu_u32_byte2(tmp); + if (bytes_rem > 1) dst[1] = tu_u32_byte1(tmp); + if (bytes_rem > 2) dst[2] = tu_u32_byte2(tmp); } } // Write a single data packet to EPIN FIFO -static void write_fifo_packet(uint8_t rhport, uint8_t fifo_num, uint8_t const * src, uint16_t len) -{ +static void write_fifo_packet(uint8_t rhport, uint8_t fifo_num, uint8_t const* src, uint16_t len) { (void) rhport; - dwc2_regs_t * dwc2 = DWC2_REG(rhport); - volatile uint32_t * tx_fifo = dwc2->fifo[fifo_num]; + dwc2_regs_t* dwc2 = DWC2_REG(rhport); + volatile uint32_t* tx_fifo = dwc2->fifo[fifo_num]; // Pushing full available 32 bit words to fifo uint16_t full_words = len >> 2; - while(full_words--) - { + while (full_words--) { *tx_fifo = tu_unaligned_read32(src); src += 4; } // Write the remaining 1-3 bytes into fifo uint8_t const bytes_rem = len & 0x03; - if ( bytes_rem ) - { + if (bytes_rem) { uint32_t tmp_word = src[0]; - if ( bytes_rem > 1 ) tmp_word |= (src[1] << 8); - if ( bytes_rem > 2 ) tmp_word |= (src[2] << 16); + if (bytes_rem > 1) tmp_word |= (src[1] << 8); + if (bytes_rem > 2) tmp_word |= (src[2] << 16); *tx_fifo = tmp_word; } } -static void handle_rxflvl_irq(uint8_t rhport) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); - volatile uint32_t const * rx_fifo = dwc2->fifo[0]; +static void handle_rxflvl_irq(uint8_t rhport) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); + volatile uint32_t const* rx_fifo = dwc2->fifo[0]; // Pop control word off FIFO uint32_t const ctl_word = dwc2->grxstsp; - uint8_t const pktsts = (ctl_word & GRXSTSP_PKTSTS_Msk ) >> GRXSTSP_PKTSTS_Pos; - uint8_t const epnum = (ctl_word & GRXSTSP_EPNUM_Msk ) >> GRXSTSP_EPNUM_Pos; - uint16_t const bcnt = (ctl_word & GRXSTSP_BCNT_Msk ) >> GRXSTSP_BCNT_Pos; + uint8_t const pktsts = (ctl_word & GRXSTSP_PKTSTS_Msk) >> GRXSTSP_PKTSTS_Pos; + uint8_t const epnum = (ctl_word & GRXSTSP_EPNUM_Msk) >> GRXSTSP_EPNUM_Pos; + uint16_t const bcnt = (ctl_word & GRXSTSP_BCNT_Msk) >> GRXSTSP_BCNT_Pos; dwc2_epout_t* epout = &dwc2->epout[epnum]; @@ -1003,10 +876,10 @@ static void handle_rxflvl_irq(uint8_t rhport) // TU_LOG(DWC2_DEBUG, " daint = %08lX, doepint = %04X\r\n", (unsigned long) dwc2->daint, (unsigned int) epout->doepint); //#endif - switch ( pktsts ) - { + switch (pktsts) { // Global OUT NAK: do nothing - case GRXSTS_PKTSTS_GLOBALOUTNAK: break; + case GRXSTS_PKTSTS_GLOBALOUTNAK: + break; case GRXSTS_PKTSTS_SETUPRX: // Setup packet received @@ -1015,26 +888,22 @@ static void handle_rxflvl_irq(uint8_t rhport) // only the last one is valid. _setup_packet[0] = (*rx_fifo); _setup_packet[1] = (*rx_fifo); - break; + break; case GRXSTS_PKTSTS_SETUPDONE: // Setup packet done (Interrupt) epout->doeptsiz |= (3 << DOEPTSIZ_STUPCNT_Pos); - break; + break; - case GRXSTS_PKTSTS_OUTRX: - { + case GRXSTS_PKTSTS_OUTRX: { // Out packet received - xfer_ctl_t *xfer = XFER_CTL_BASE(epnum, TUSB_DIR_OUT); + xfer_ctl_t* xfer = XFER_CTL_BASE(epnum, TUSB_DIR_OUT); // Read packet off RxFIFO - if ( xfer->ff ) - { + if (xfer->ff) { // Ring buffer tu_fifo_write_n_const_addr_full_words(xfer->ff, (const void*) (uintptr_t) rx_fifo, bcnt); - } - else - { + } else { // Linear buffer read_fifo_packet(rhport, xfer->buffer, bcnt); @@ -1043,73 +912,64 @@ static void handle_rxflvl_irq(uint8_t rhport) } // Truncate transfer length in case of short packet - if ( bcnt < xfer->max_size ) - { + if (bcnt < xfer->max_size) { xfer->total_len -= (epout->doeptsiz & DOEPTSIZ_XFRSIZ_Msk) >> DOEPTSIZ_XFRSIZ_Pos; - if ( epnum == 0 ) - { + if (epnum == 0) { xfer->total_len -= ep0_pending[TUSB_DIR_OUT]; ep0_pending[TUSB_DIR_OUT] = 0; } } } - break; + break; - // Out packet done (Interrupt) + // Out packet done (Interrupt) case GRXSTS_PKTSTS_OUTDONE: - // Occurred on STM32L47 with dwc2 version 3.10a but not found on other version like 2.80a or 3.30a - // May (or not) be 3.10a specific feature/bug or depending on MCU configuration - // XFRC complete is additionally generated when - // - setup packet is received - // - complete the data stage of control write is complete - if ((epnum == 0) && (bcnt == 0) && (dwc2->gsnpsid >= DWC2_CORE_REV_3_00a)) - { - uint32_t doepint = epout->doepint; - - if (doepint & (DOEPINT_STPKTRX | DOEPINT_OTEPSPR)) - { - // skip this "no-data" transfer complete event - // Note: STPKTRX will be clear later by setup received handler - uint32_t clear_flags = DOEPINT_XFRC; - - if (doepint & DOEPINT_OTEPSPR) clear_flags |= DOEPINT_OTEPSPR; - - epout->doepint = clear_flags; - - // TU_LOG(DWC2_DEBUG, " FIX extra transfer complete on setup/data compete\r\n"); - } + // Occurred on STM32L47 with dwc2 version 3.10a but not found on other version like 2.80a or 3.30a + // May (or not) be 3.10a specific feature/bug or depending on MCU configuration + // XFRC complete is additionally generated when + // - setup packet is received + // - complete the data stage of control write is complete + if ((epnum == 0) && (bcnt == 0) && (dwc2->gsnpsid >= DWC2_CORE_REV_3_00a)) { + uint32_t doepint = epout->doepint; + + if (doepint & (DOEPINT_STPKTRX | DOEPINT_OTEPSPR)) { + // skip this "no-data" transfer complete event + // Note: STPKTRX will be clear later by setup received handler + uint32_t clear_flags = DOEPINT_XFRC; + + if (doepint & DOEPINT_OTEPSPR) clear_flags |= DOEPINT_OTEPSPR; + + epout->doepint = clear_flags; + + // TU_LOG(DWC2_DEBUG, " FIX extra transfer complete on setup/data compete\r\n"); } - break; + } + break; default: // Invalid TU_BREAKPOINT(); - break; + break; } } -static void handle_epout_irq (uint8_t rhport) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); +static void handle_epout_irq(uint8_t rhport) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const ep_count = _dwc2_controller[rhport].ep_count; // DAINT for a given EP clears when DOEPINTx is cleared. // OEPINT will be cleared when DAINT's out bits are cleared. - for ( uint8_t n = 0; n < ep_count; n++ ) - { - if ( dwc2->daint & TU_BIT(DAINT_OEPINT_Pos + n) ) - { + for (uint8_t n = 0; n < ep_count; n++) { + if (dwc2->daint & TU_BIT(DAINT_OEPINT_Pos + n)) { dwc2_epout_t* epout = &dwc2->epout[n]; uint32_t const doepint = epout->doepint; // SETUP packet Setup Phase done. - if ( doepint & DOEPINT_STUP ) - { + if (doepint & DOEPINT_STUP) { uint32_t clear_flag = DOEPINT_STUP; // STPKTRX is only available for version from 3_00a - if ((doepint & DOEPINT_STPKTRX) && (dwc2->gsnpsid >= DWC2_CORE_REV_3_00a)) - { + if ((doepint & DOEPINT_STPKTRX) && (dwc2->gsnpsid >= DWC2_CORE_REV_3_00a)) { clear_flag |= DOEPINT_STPKTRX; } @@ -1118,20 +978,16 @@ static void handle_epout_irq (uint8_t rhport) } // OUT XFER complete - if ( epout->doepint & DOEPINT_XFRC ) - { + if (epout->doepint & DOEPINT_XFRC) { epout->doepint = DOEPINT_XFRC; - xfer_ctl_t *xfer = XFER_CTL_BASE(n, TUSB_DIR_OUT); + xfer_ctl_t* xfer = XFER_CTL_BASE(n, TUSB_DIR_OUT); // EP0 can only handle one packet - if ( (n == 0) && ep0_pending[TUSB_DIR_OUT] ) - { + if ((n == 0) && ep0_pending[TUSB_DIR_OUT]) { // Schedule another packet to be received. edpt_schedule_packets(rhport, n, TUSB_DIR_OUT, 1, ep0_pending[TUSB_DIR_OUT]); - } - else - { + } else { dcd_event_xfer_complete(rhport, n, xfer->total_len, XFER_RESULT_SUCCESS, true); } } @@ -1139,40 +995,32 @@ static void handle_epout_irq (uint8_t rhport) } } -static void handle_epin_irq (uint8_t rhport) -{ - dwc2_regs_t * dwc2 = DWC2_REG(rhport); +static void handle_epin_irq(uint8_t rhport) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint8_t const ep_count = _dwc2_controller[rhport].ep_count; - dwc2_epin_t* epin = dwc2->epin; + dwc2_epin_t* epin = dwc2->epin; // DAINT for a given EP clears when DIEPINTx is cleared. // IEPINT will be cleared when DAINT's out bits are cleared. - for ( uint8_t n = 0; n < ep_count; n++ ) - { - if ( dwc2->daint & TU_BIT(DAINT_IEPINT_Pos + n) ) - { + for (uint8_t n = 0; n < ep_count; n++) { + if (dwc2->daint & TU_BIT(DAINT_IEPINT_Pos + n)) { // IN XFER complete (entire xfer). - xfer_ctl_t *xfer = XFER_CTL_BASE(n, TUSB_DIR_IN); + xfer_ctl_t* xfer = XFER_CTL_BASE(n, TUSB_DIR_IN); - if ( epin[n].diepint & DIEPINT_XFRC ) - { + if (epin[n].diepint & DIEPINT_XFRC) { epin[n].diepint = DIEPINT_XFRC; // EP0 can only handle one packet - if ( (n == 0) && ep0_pending[TUSB_DIR_IN] ) - { + if ((n == 0) && ep0_pending[TUSB_DIR_IN]) { // Schedule another packet to be transmitted. edpt_schedule_packets(rhport, n, TUSB_DIR_IN, 1, ep0_pending[TUSB_DIR_IN]); - } - else - { + } else { dcd_event_xfer_complete(rhport, n | TUSB_DIR_IN_MASK, xfer->total_len, XFER_RESULT_SUCCESS, true); } } // XFER FIFO empty - if ( (epin[n].diepint & DIEPINT_TXFE) && (dwc2->diepempmsk & (1 << n)) ) - { + if ((epin[n].diepint & DIEPINT_TXFE) && (dwc2->diepempmsk & (1 << n))) { // diepint's TXFE bit is read-only, software cannot clear it. // It will only be cleared by hardware when written bytes is more than // - 64 bytes or @@ -1181,8 +1029,7 @@ static void handle_epin_irq (uint8_t rhport) uint16_t remaining_packets = (epin[n].dieptsiz & DIEPTSIZ_PKTCNT_Msk) >> DIEPTSIZ_PKTCNT_Pos; // Process every single packet (only whole packets can be written to fifo) - for ( uint16_t i = 0; i < remaining_packets; i++ ) - { + for (uint16_t i = 0; i < remaining_packets; i++) { uint16_t const remaining_bytes = (epin[n].dieptsiz & DIEPTSIZ_XFRSIZ_Msk) >> DIEPTSIZ_XFRSIZ_Pos; // Packet can not be larger than ep max size @@ -1190,16 +1037,13 @@ static void handle_epin_irq (uint8_t rhport) // It's only possible to write full packets into FIFO. Therefore DTXFSTS register of current // EP has to be checked if the buffer can take another WHOLE packet - if ( packet_size > ((epin[n].dtxfsts & DTXFSTS_INEPTFSAV_Msk) << 2) ) break; + if (packet_size > ((epin[n].dtxfsts & DTXFSTS_INEPTFSAV_Msk) << 2)) break; // Push packet to Tx-FIFO - if ( xfer->ff ) - { - volatile uint32_t *tx_fifo = dwc2->fifo[n]; + if (xfer->ff) { + volatile uint32_t* tx_fifo = dwc2->fifo[n]; tu_fifo_read_n_const_addr_full_words(xfer->ff, (void*) (uintptr_t) tx_fifo, packet_size); - } - else - { + } else { write_fifo_packet(rhport, n, xfer->buffer, packet_size); // Increment pointer to xfer data @@ -1208,8 +1052,7 @@ static void handle_epin_irq (uint8_t rhport) } // Turn off TXFE if all bytes are written. - if ( ((epin[n].dieptsiz & DIEPTSIZ_XFRSIZ_Msk) >> DIEPTSIZ_XFRSIZ_Pos) == 0 ) - { + if (((epin[n].dieptsiz & DIEPTSIZ_XFRSIZ_Msk) >> DIEPTSIZ_XFRSIZ_Pos) == 0) { dwc2->diepempmsk &= ~(1 << n); } } @@ -1217,55 +1060,49 @@ static void handle_epin_irq (uint8_t rhport) } } -void dcd_int_handler(uint8_t rhport) -{ - dwc2_regs_t *dwc2 = DWC2_REG(rhport); +void dcd_int_handler(uint8_t rhport) { + dwc2_regs_t* dwc2 = DWC2_REG(rhport); uint32_t const int_mask = dwc2->gintmsk; uint32_t const int_status = dwc2->gintsts & int_mask; - if(int_status & GINTSTS_USBRST) - { + if (int_status & GINTSTS_USBRST) { // USBRST is start of reset. dwc2->gintsts = GINTSTS_USBRST; bus_reset(rhport); } - if(int_status & GINTSTS_ENUMDNE) - { + if (int_status & GINTSTS_ENUMDNE) { // ENUMDNE is the end of reset where speed of the link is detected dwc2->gintsts = GINTSTS_ENUMDNE; tusb_speed_t speed; - switch ((dwc2->dsts & DSTS_ENUMSPD_Msk) >> DSTS_ENUMSPD_Pos) - { + switch ((dwc2->dsts & DSTS_ENUMSPD_Msk) >> DSTS_ENUMSPD_Pos) { case DSTS_ENUMSPD_HS: speed = TUSB_SPEED_HIGH; - break; + break; case DSTS_ENUMSPD_LS: speed = TUSB_SPEED_LOW; - break; + break; case DSTS_ENUMSPD_FS_HSPHY: case DSTS_ENUMSPD_FS: default: speed = TUSB_SPEED_FULL; - break; + break; } dcd_event_bus_reset(rhport, speed, true); } - if(int_status & GINTSTS_USBSUSP) - { + if (int_status & GINTSTS_USBSUSP) { dwc2->gintsts = GINTSTS_USBSUSP; dcd_event_bus_signal(rhport, DCD_EVENT_SUSPEND, true); } - if(int_status & GINTSTS_WKUINT) - { + if (int_status & GINTSTS_WKUINT) { dwc2->gintsts = GINTSTS_WKUINT; dcd_event_bus_signal(rhport, DCD_EVENT_RESUME, true); } @@ -1273,30 +1110,24 @@ void dcd_int_handler(uint8_t rhport) // TODO check GINTSTS_DISCINT for disconnect detection // if(int_status & GINTSTS_DISCINT) - if(int_status & GINTSTS_OTGINT) - { + if (int_status & GINTSTS_OTGINT) { // OTG INT bit is read-only uint32_t const otg_int = dwc2->gotgint; - if (otg_int & GOTGINT_SEDET) - { + if (otg_int & GOTGINT_SEDET) { dcd_event_bus_signal(rhport, DCD_EVENT_UNPLUGGED, true); } dwc2->gotgint = otg_int; } - if(int_status & GINTSTS_SOF) - { + if (int_status & GINTSTS_SOF) { dwc2->gotgint = GINTSTS_SOF; - if (_sof_en) - { + if (_sof_en) { uint32_t frame = (dwc2->dsts & (DSTS_FNSOF)) >> 8; dcd_event_sof(rhport, frame, true); - } - else - { + } else { // Disable SOF interrupt if SOF was not explicitly enabled. SOF was used for remote wakeup detection dwc2->gintmsk &= ~GINTMSK_SOFM; } @@ -1305,22 +1136,19 @@ void dcd_int_handler(uint8_t rhport) } // RxFIFO non-empty interrupt handling. - if(int_status & GINTSTS_RXFLVL) - { + if (int_status & GINTSTS_RXFLVL) { // RXFLVL bit is read-only // Mask out RXFLVL while reading data from FIFO dwc2->gintmsk &= ~GINTMSK_RXFLVLM; // Loop until all available packets were handled - do - { + do { handle_rxflvl_irq(rhport); - } while(dwc2->gotgint & GINTSTS_RXFLVL); + } while (dwc2->gotgint & GINTSTS_RXFLVL); // Manage RX FIFO size - if (_out_ep_closed) - { + if (_out_ep_closed) { update_grxfsiz(rhport); // Disable flag @@ -1331,15 +1159,13 @@ void dcd_int_handler(uint8_t rhport) } // OUT endpoint interrupt handling. - if(int_status & GINTSTS_OEPINT) - { + if (int_status & GINTSTS_OEPINT) { // OEPINT is read-only, clear using DOEPINTn handle_epout_irq(rhport); } // IN endpoint interrupt handling. - if(int_status & GINTSTS_IEPINT) - { + if (int_status & GINTSTS_IEPINT) { // IEPINT bit read-only, clear using DIEPINTn handle_epin_irq(rhport); } -- cgit v1.3.1 From 9f0223dccd9992f936054bae3c6256280af7f26a Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 31 Oct 2023 10:58:15 +0700 Subject: minor clean up --- hw/bsp/stm32f7/family.c | 2 +- src/portable/synopsys/dwc2/dwc2_type.h | 1790 ++++++++++++++++---------------- 2 files changed, 911 insertions(+), 881 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/stm32f7/family.c b/hw/bsp/stm32f7/family.c index b504c435a..18cee073d 100644 --- a/hw/bsp/stm32f7/family.c +++ b/hw/bsp/stm32f7/family.c @@ -199,7 +199,7 @@ void board_init(void) { __HAL_RCC_OTGPHYC_CLK_ENABLE(); #else - // MUC with external ULPI PHY + // MCU with external ULPI PHY /* ULPI CLK */ GPIO_InitStruct.Pin = GPIO_PIN_5; diff --git a/src/portable/synopsys/dwc2/dwc2_type.h b/src/portable/synopsys/dwc2/dwc2_type.h index 6516882da..c15771237 100644 --- a/src/portable/synopsys/dwc2/dwc2_type.h +++ b/src/portable/synopsys/dwc2/dwc2_type.h @@ -32,7 +32,7 @@ typedef struct uint32_t ep_fifo_size; }dwc2_controller_t; -/* DWC OTG HW Release versions */ +// DWC OTG HW Release versions #define DWC2_CORE_REV_2_71a 0x4f54271a #define DWC2_CORE_REV_2_72a 0x4f54272a #define DWC2_CORE_REV_2_80a 0x4f54280a @@ -49,7 +49,7 @@ typedef struct #define DWC2_HS_IOT_REV_1_00a 0x5532100a #define DWC2_CORE_REV_MASK 0x0000ffff -/* DWC OTG HW Core ID */ +// DWC OTG HW Core ID #define DWC2_OTG_ID 0x4f540000 #define DWC2_FS_IOT_ID 0x55310000 #define DWC2_HS_IOT_ID 0x55320000 @@ -58,13 +58,13 @@ typedef struct // HS PHY typedef struct { - volatile uint32_t HS_PHYC_PLL; // This register is used to control the PLL of the HS PHY. 000h */ - volatile uint32_t Reserved04; // Reserved 004h */ - volatile uint32_t Reserved08; // Reserved 008h */ - volatile uint32_t HS_PHYC_TUNE; // This register is used to control the tuning interface of the High Speed PHY. 00Ch */ - volatile uint32_t Reserved10; // Reserved 010h */ - volatile uint32_t Reserved14; // Reserved 014h */ - volatile uint32_t HS_PHYC_LDO; // This register is used to control the regulator (LDO). 018h */ + volatile uint32_t HS_PHYC_PLL; // 000h This register is used to control the PLL of the HS PHY. + volatile uint32_t Reserved04; // 004h Reserved + volatile uint32_t Reserved08; // 008h Reserved + volatile uint32_t HS_PHYC_TUNE; // 00Ch This register is used to control the tuning interface of the High Speed PHY. + volatile uint32_t Reserved10; // 010h Reserved + volatile uint32_t Reserved14; // 014h Reserved + volatile uint32_t HS_PHYC_LDO; // 018h This register is used to control the regulator (LDO). } HS_PHYC_GlobalTypeDef; #endif @@ -299,103 +299,103 @@ TU_VERIFY_STATIC(offsetof(dwc2_regs_t, fifo ) == 0x1000, "incorrect size"); /******************** Bit definition for GOTGCTL register ********************/ #define GOTGCTL_SRQSCS_Pos (0U) -#define GOTGCTL_SRQSCS_Msk (0x1UL << GOTGCTL_SRQSCS_Pos) // 0x00000001 */ -#define GOTGCTL_SRQSCS GOTGCTL_SRQSCS_Msk // Session request success */ +#define GOTGCTL_SRQSCS_Msk (0x1UL << GOTGCTL_SRQSCS_Pos) // 0x00000001 +#define GOTGCTL_SRQSCS GOTGCTL_SRQSCS_Msk // Session request success #define GOTGCTL_SRQ_Pos (1U) -#define GOTGCTL_SRQ_Msk (0x1UL << GOTGCTL_SRQ_Pos) // 0x00000002 */ -#define GOTGCTL_SRQ GOTGCTL_SRQ_Msk // Session request */ +#define GOTGCTL_SRQ_Msk (0x1UL << GOTGCTL_SRQ_Pos) // 0x00000002 +#define GOTGCTL_SRQ GOTGCTL_SRQ_Msk // Session request #define GOTGCTL_VBVALOEN_Pos (2U) -#define GOTGCTL_VBVALOEN_Msk (0x1UL << GOTGCTL_VBVALOEN_Pos) // 0x00000004 */ -#define GOTGCTL_VBVALOEN GOTGCTL_VBVALOEN_Msk // VBUS valid override enable */ +#define GOTGCTL_VBVALOEN_Msk (0x1UL << GOTGCTL_VBVALOEN_Pos) // 0x00000004 +#define GOTGCTL_VBVALOEN GOTGCTL_VBVALOEN_Msk // VBUS valid override enable #define GOTGCTL_VBVALOVAL_Pos (3U) -#define GOTGCTL_VBVALOVAL_Msk (0x1UL << GOTGCTL_VBVALOVAL_Pos) // 0x00000008 */ -#define GOTGCTL_VBVALOVAL GOTGCTL_VBVALOVAL_Msk // VBUS valid override value */ +#define GOTGCTL_VBVALOVAL_Msk (0x1UL << GOTGCTL_VBVALOVAL_Pos) // 0x00000008 +#define GOTGCTL_VBVALOVAL GOTGCTL_VBVALOVAL_Msk // VBUS valid override value #define GOTGCTL_AVALOEN_Pos (4U) -#define GOTGCTL_AVALOEN_Msk (0x1UL << GOTGCTL_AVALOEN_Pos) // 0x00000010 */ -#define GOTGCTL_AVALOEN GOTGCTL_AVALOEN_Msk // A-peripheral session valid override enable */ +#define GOTGCTL_AVALOEN_Msk (0x1UL << GOTGCTL_AVALOEN_Pos) // 0x00000010 +#define GOTGCTL_AVALOEN GOTGCTL_AVALOEN_Msk // A-peripheral session valid override enable #define GOTGCTL_AVALOVAL_Pos (5U) -#define GOTGCTL_AVALOVAL_Msk (0x1UL << GOTGCTL_AVALOVAL_Pos) // 0x00000020 */ -#define GOTGCTL_AVALOVAL GOTGCTL_AVALOVAL_Msk // A-peripheral session valid override value */ +#define GOTGCTL_AVALOVAL_Msk (0x1UL << GOTGCTL_AVALOVAL_Pos) // 0x00000020 +#define GOTGCTL_AVALOVAL GOTGCTL_AVALOVAL_Msk // A-peripheral session valid override value #define GOTGCTL_BVALOEN_Pos (6U) -#define GOTGCTL_BVALOEN_Msk (0x1UL << GOTGCTL_BVALOEN_Pos) // 0x00000040 */ -#define GOTGCTL_BVALOEN GOTGCTL_BVALOEN_Msk // B-peripheral session valid override enable */ +#define GOTGCTL_BVALOEN_Msk (0x1UL << GOTGCTL_BVALOEN_Pos) // 0x00000040 +#define GOTGCTL_BVALOEN GOTGCTL_BVALOEN_Msk // B-peripheral session valid override enable #define GOTGCTL_BVALOVAL_Pos (7U) -#define GOTGCTL_BVALOVAL_Msk (0x1UL << GOTGCTL_BVALOVAL_Pos) // 0x00000080 */ -#define GOTGCTL_BVALOVAL GOTGCTL_BVALOVAL_Msk // B-peripheral session valid override value */ +#define GOTGCTL_BVALOVAL_Msk (0x1UL << GOTGCTL_BVALOVAL_Pos) // 0x00000080 +#define GOTGCTL_BVALOVAL GOTGCTL_BVALOVAL_Msk // B-peripheral session valid override value #define GOTGCTL_HNGSCS_Pos (8U) -#define GOTGCTL_HNGSCS_Msk (0x1UL << GOTGCTL_HNGSCS_Pos) // 0x00000100 */ -#define GOTGCTL_HNGSCS GOTGCTL_HNGSCS_Msk // Host set HNP enable */ +#define GOTGCTL_HNGSCS_Msk (0x1UL << GOTGCTL_HNGSCS_Pos) // 0x00000100 +#define GOTGCTL_HNGSCS GOTGCTL_HNGSCS_Msk // Host set HNP enable #define GOTGCTL_HNPRQ_Pos (9U) -#define GOTGCTL_HNPRQ_Msk (0x1UL << GOTGCTL_HNPRQ_Pos) // 0x00000200 */ -#define GOTGCTL_HNPRQ GOTGCTL_HNPRQ_Msk // HNP request */ +#define GOTGCTL_HNPRQ_Msk (0x1UL << GOTGCTL_HNPRQ_Pos) // 0x00000200 +#define GOTGCTL_HNPRQ GOTGCTL_HNPRQ_Msk // HNP request #define GOTGCTL_HSHNPEN_Pos (10U) -#define GOTGCTL_HSHNPEN_Msk (0x1UL << GOTGCTL_HSHNPEN_Pos) // 0x00000400 */ -#define GOTGCTL_HSHNPEN GOTGCTL_HSHNPEN_Msk // Host set HNP enable */ +#define GOTGCTL_HSHNPEN_Msk (0x1UL << GOTGCTL_HSHNPEN_Pos) // 0x00000400 +#define GOTGCTL_HSHNPEN GOTGCTL_HSHNPEN_Msk // Host set HNP enable #define GOTGCTL_DHNPEN_Pos (11U) -#define GOTGCTL_DHNPEN_Msk (0x1UL << GOTGCTL_DHNPEN_Pos) // 0x00000800 */ -#define GOTGCTL_DHNPEN GOTGCTL_DHNPEN_Msk // Device HNP enabled */ +#define GOTGCTL_DHNPEN_Msk (0x1UL << GOTGCTL_DHNPEN_Pos) // 0x00000800 +#define GOTGCTL_DHNPEN GOTGCTL_DHNPEN_Msk // Device HNP enabled #define GOTGCTL_EHEN_Pos (12U) -#define GOTGCTL_EHEN_Msk (0x1UL << GOTGCTL_EHEN_Pos) // 0x00001000 */ -#define GOTGCTL_EHEN GOTGCTL_EHEN_Msk // Embedded host enable */ +#define GOTGCTL_EHEN_Msk (0x1UL << GOTGCTL_EHEN_Pos) // 0x00001000 +#define GOTGCTL_EHEN GOTGCTL_EHEN_Msk // Embedded host enable #define GOTGCTL_CIDSTS_Pos (16U) -#define GOTGCTL_CIDSTS_Msk (0x1UL << GOTGCTL_CIDSTS_Pos) // 0x00010000 */ -#define GOTGCTL_CIDSTS GOTGCTL_CIDSTS_Msk // Connector ID status */ +#define GOTGCTL_CIDSTS_Msk (0x1UL << GOTGCTL_CIDSTS_Pos) // 0x00010000 +#define GOTGCTL_CIDSTS GOTGCTL_CIDSTS_Msk // Connector ID status #define GOTGCTL_DBCT_Pos (17U) -#define GOTGCTL_DBCT_Msk (0x1UL << GOTGCTL_DBCT_Pos) // 0x00020000 */ -#define GOTGCTL_DBCT GOTGCTL_DBCT_Msk // Long/short debounce time */ +#define GOTGCTL_DBCT_Msk (0x1UL << GOTGCTL_DBCT_Pos) // 0x00020000 +#define GOTGCTL_DBCT GOTGCTL_DBCT_Msk // Long/short debounce time #define GOTGCTL_ASVLD_Pos (18U) -#define GOTGCTL_ASVLD_Msk (0x1UL << GOTGCTL_ASVLD_Pos) // 0x00040000 */ -#define GOTGCTL_ASVLD GOTGCTL_ASVLD_Msk // A-session valid */ +#define GOTGCTL_ASVLD_Msk (0x1UL << GOTGCTL_ASVLD_Pos) // 0x00040000 +#define GOTGCTL_ASVLD GOTGCTL_ASVLD_Msk // A-session valid #define GOTGCTL_BSESVLD_Pos (19U) -#define GOTGCTL_BSESVLD_Msk (0x1UL << GOTGCTL_BSESVLD_Pos) // 0x00080000 */ -#define GOTGCTL_BSESVLD GOTGCTL_BSESVLD_Msk // B-session valid */ +#define GOTGCTL_BSESVLD_Msk (0x1UL << GOTGCTL_BSESVLD_Pos) // 0x00080000 +#define GOTGCTL_BSESVLD GOTGCTL_BSESVLD_Msk // B-session valid #define GOTGCTL_OTGVER_Pos (20U) -#define GOTGCTL_OTGVER_Msk (0x1UL << GOTGCTL_OTGVER_Pos) // 0x00100000 */ -#define GOTGCTL_OTGVER GOTGCTL_OTGVER_Msk // OTG version */ +#define GOTGCTL_OTGVER_Msk (0x1UL << GOTGCTL_OTGVER_Pos) // 0x00100000 +#define GOTGCTL_OTGVER GOTGCTL_OTGVER_Msk // OTG version /******************** Bit definition for HCFG register ********************/ #define HCFG_FSLSPCS_Pos (0U) -#define HCFG_FSLSPCS_Msk (0x3UL << HCFG_FSLSPCS_Pos) // 0x00000003 */ -#define HCFG_FSLSPCS HCFG_FSLSPCS_Msk // FS/LS PHY clock select */ -#define HCFG_FSLSPCS_0 (0x1UL << HCFG_FSLSPCS_Pos) // 0x00000001 */ -#define HCFG_FSLSPCS_1 (0x2UL << HCFG_FSLSPCS_Pos) // 0x00000002 */ +#define HCFG_FSLSPCS_Msk (0x3UL << HCFG_FSLSPCS_Pos) // 0x00000003 +#define HCFG_FSLSPCS HCFG_FSLSPCS_Msk // FS/LS PHY clock select +#define HCFG_FSLSPCS_0 (0x1UL << HCFG_FSLSPCS_Pos) // 0x00000001 +#define HCFG_FSLSPCS_1 (0x2UL << HCFG_FSLSPCS_Pos) // 0x00000002 #define HCFG_FSLSS_Pos (2U) -#define HCFG_FSLSS_Msk (0x1UL << HCFG_FSLSS_Pos) // 0x00000004 */ -#define HCFG_FSLSS HCFG_FSLSS_Msk // FS- and LS-only support */ +#define HCFG_FSLSS_Msk (0x1UL << HCFG_FSLSS_Pos) // 0x00000004 +#define HCFG_FSLSS HCFG_FSLSS_Msk // FS- and LS-only support /******************** Bit definition for PCGCR register ********************/ #define PCGCR_STPPCLK_Pos (0U) -#define PCGCR_STPPCLK_Msk (0x1UL << PCGCR_STPPCLK_Pos) // 0x00000001 */ -#define PCGCR_STPPCLK PCGCR_STPPCLK_Msk // Stop PHY clock */ +#define PCGCR_STPPCLK_Msk (0x1UL << PCGCR_STPPCLK_Pos) // 0x00000001 +#define PCGCR_STPPCLK PCGCR_STPPCLK_Msk // Stop PHY clock #define PCGCR_GATEHCLK_Pos (1U) -#define PCGCR_GATEHCLK_Msk (0x1UL << PCGCR_GATEHCLK_Pos) // 0x00000002 */ -#define PCGCR_GATEHCLK PCGCR_GATEHCLK_Msk // Gate HCLK */ +#define PCGCR_GATEHCLK_Msk (0x1UL << PCGCR_GATEHCLK_Pos) // 0x00000002 +#define PCGCR_GATEHCLK PCGCR_GATEHCLK_Msk // Gate HCLK #define PCGCR_PHYSUSP_Pos (4U) -#define PCGCR_PHYSUSP_Msk (0x1UL << PCGCR_PHYSUSP_Pos) // 0x00000010 */ -#define PCGCR_PHYSUSP PCGCR_PHYSUSP_Msk // PHY suspended */ +#define PCGCR_PHYSUSP_Msk (0x1UL << PCGCR_PHYSUSP_Pos) // 0x00000010 +#define PCGCR_PHYSUSP PCGCR_PHYSUSP_Msk // PHY suspended /******************** Bit definition for GOTGINT register ********************/ #define GOTGINT_SEDET_Pos (2U) -#define GOTGINT_SEDET_Msk (0x1UL << GOTGINT_SEDET_Pos) // 0x00000004 */ -#define GOTGINT_SEDET GOTGINT_SEDET_Msk // Session end detected */ +#define GOTGINT_SEDET_Msk (0x1UL << GOTGINT_SEDET_Pos) // 0x00000004 +#define GOTGINT_SEDET GOTGINT_SEDET_Msk // Session end detected #define GOTGINT_SRSSCHG_Pos (8U) -#define GOTGINT_SRSSCHG_Msk (0x1UL << GOTGINT_SRSSCHG_Pos) // 0x00000100 */ -#define GOTGINT_SRSSCHG GOTGINT_SRSSCHG_Msk // Session request success status change */ +#define GOTGINT_SRSSCHG_Msk (0x1UL << GOTGINT_SRSSCHG_Pos) // 0x00000100 +#define GOTGINT_SRSSCHG GOTGINT_SRSSCHG_Msk // Session request success status change #define GOTGINT_HNSSCHG_Pos (9U) -#define GOTGINT_HNSSCHG_Msk (0x1UL << GOTGINT_HNSSCHG_Pos) // 0x00000200 */ -#define GOTGINT_HNSSCHG GOTGINT_HNSSCHG_Msk // Host negotiation success status change */ +#define GOTGINT_HNSSCHG_Msk (0x1UL << GOTGINT_HNSSCHG_Pos) // 0x00000200 +#define GOTGINT_HNSSCHG GOTGINT_HNSSCHG_Msk // Host negotiation success status change #define GOTGINT_HNGDET_Pos (17U) -#define GOTGINT_HNGDET_Msk (0x1UL << GOTGINT_HNGDET_Pos) // 0x00020000 */ -#define GOTGINT_HNGDET GOTGINT_HNGDET_Msk // Host negotiation detected */ +#define GOTGINT_HNGDET_Msk (0x1UL << GOTGINT_HNGDET_Pos) // 0x00020000 +#define GOTGINT_HNGDET GOTGINT_HNGDET_Msk // Host negotiation detected #define GOTGINT_ADTOCHG_Pos (18U) -#define GOTGINT_ADTOCHG_Msk (0x1UL << GOTGINT_ADTOCHG_Pos) // 0x00040000 */ -#define GOTGINT_ADTOCHG GOTGINT_ADTOCHG_Msk // A-device timeout change */ +#define GOTGINT_ADTOCHG_Msk (0x1UL << GOTGINT_ADTOCHG_Pos) // 0x00040000 +#define GOTGINT_ADTOCHG GOTGINT_ADTOCHG_Msk // A-device timeout change #define GOTGINT_DBCDNE_Pos (19U) -#define GOTGINT_DBCDNE_Msk (0x1UL << GOTGINT_DBCDNE_Pos) // 0x00080000 */ -#define GOTGINT_DBCDNE GOTGINT_DBCDNE_Msk // Debounce done */ +#define GOTGINT_DBCDNE_Msk (0x1UL << GOTGINT_DBCDNE_Pos) // 0x00080000 +#define GOTGINT_DBCDNE GOTGINT_DBCDNE_Msk // Debounce done #define GOTGINT_IDCHNG_Pos (20U) -#define GOTGINT_IDCHNG_Msk (0x1UL << GOTGINT_IDCHNG_Pos) // 0x00100000 */ -#define GOTGINT_IDCHNG GOTGINT_IDCHNG_Msk // Change in ID pin input value */ +#define GOTGINT_IDCHNG_Msk (0x1UL << GOTGINT_IDCHNG_Pos) // 0x00100000 +#define GOTGINT_IDCHNG GOTGINT_IDCHNG_Msk // Change in ID pin input value /******************** Bit definition for DCFG register ********************/ #define DCFG_DSPD_Pos (0U) @@ -406,92 +406,92 @@ TU_VERIFY_STATIC(offsetof(dwc2_regs_t, fifo ) == 0x1000, "incorrect size"); #define DCFG_DSPD_FS 3 // Fullspeed on FS PHY #define DCFG_NZLSOHSK_Pos (2U) -#define DCFG_NZLSOHSK_Msk (0x1UL << DCFG_NZLSOHSK_Pos) // 0x00000004 */ -#define DCFG_NZLSOHSK DCFG_NZLSOHSK_Msk // Nonzero-length status OUT handshake */ +#define DCFG_NZLSOHSK_Msk (0x1UL << DCFG_NZLSOHSK_Pos) // 0x00000004 +#define DCFG_NZLSOHSK DCFG_NZLSOHSK_Msk // Nonzero-length status OUT handshake #define DCFG_DAD_Pos (4U) -#define DCFG_DAD_Msk (0x7FUL << DCFG_DAD_Pos) // 0x000007F0 */ -#define DCFG_DAD DCFG_DAD_Msk // Device address */ -#define DCFG_DAD_0 (0x01UL << DCFG_DAD_Pos) // 0x00000010 */ -#define DCFG_DAD_1 (0x02UL << DCFG_DAD_Pos) // 0x00000020 */ -#define DCFG_DAD_2 (0x04UL << DCFG_DAD_Pos) // 0x00000040 */ -#define DCFG_DAD_3 (0x08UL << DCFG_DAD_Pos) // 0x00000080 */ -#define DCFG_DAD_4 (0x10UL << DCFG_DAD_Pos) // 0x00000100 */ -#define DCFG_DAD_5 (0x20UL << DCFG_DAD_Pos) // 0x00000200 */ -#define DCFG_DAD_6 (0x40UL << DCFG_DAD_Pos) // 0x00000400 */ +#define DCFG_DAD_Msk (0x7FUL << DCFG_DAD_Pos) // 0x000007F0 +#define DCFG_DAD DCFG_DAD_Msk // Device address +#define DCFG_DAD_0 (0x01UL << DCFG_DAD_Pos) // 0x00000010 +#define DCFG_DAD_1 (0x02UL << DCFG_DAD_Pos) // 0x00000020 +#define DCFG_DAD_2 (0x04UL << DCFG_DAD_Pos) // 0x00000040 +#define DCFG_DAD_3 (0x08UL << DCFG_DAD_Pos) // 0x00000080 +#define DCFG_DAD_4 (0x10UL << DCFG_DAD_Pos) // 0x00000100 +#define DCFG_DAD_5 (0x20UL << DCFG_DAD_Pos) // 0x00000200 +#define DCFG_DAD_6 (0x40UL << DCFG_DAD_Pos) // 0x00000400 #define DCFG_PFIVL_Pos (11U) -#define DCFG_PFIVL_Msk (0x3UL << DCFG_PFIVL_Pos) // 0x00001800 */ -#define DCFG_PFIVL DCFG_PFIVL_Msk // Periodic (micro)frame interval */ -#define DCFG_PFIVL_0 (0x1UL << DCFG_PFIVL_Pos) // 0x00000800 */ -#define DCFG_PFIVL_1 (0x2UL << DCFG_PFIVL_Pos) // 0x00001000 */ +#define DCFG_PFIVL_Msk (0x3UL << DCFG_PFIVL_Pos) // 0x00001800 +#define DCFG_PFIVL DCFG_PFIVL_Msk // Periodic (micro)frame interval +#define DCFG_PFIVL_0 (0x1UL << DCFG_PFIVL_Pos) // 0x00000800 +#define DCFG_PFIVL_1 (0x2UL << DCFG_PFIVL_Pos) // 0x00001000 #define DCFG_XCVRDLY_Pos (14U) -#define DCFG_XCVRDLY_Msk (0x1UL << DCFG_XCVRDLY_Pos) /*!< 0x00004000 */ +#define DCFG_XCVRDLY_Msk (0x1UL << DCFG_XCVRDLY_Pos) // 0x00004000 #define DCFG_XCVRDLY DCFG_XCVRDLY_Msk // Enables delay between xcvr_sel and txvalid during device chirp #define DCFG_PERSCHIVL_Pos (24U) -#define DCFG_PERSCHIVL_Msk (0x3UL << DCFG_PERSCHIVL_Pos) // 0x03000000 */ -#define DCFG_PERSCHIVL DCFG_PERSCHIVL_Msk // Periodic scheduling interval */ -#define DCFG_PERSCHIVL_0 (0x1UL << DCFG_PERSCHIVL_Pos) // 0x01000000 */ -#define DCFG_PERSCHIVL_1 (0x2UL << DCFG_PERSCHIVL_Pos) // 0x02000000 */ +#define DCFG_PERSCHIVL_Msk (0x3UL << DCFG_PERSCHIVL_Pos) // 0x03000000 +#define DCFG_PERSCHIVL DCFG_PERSCHIVL_Msk // Periodic scheduling interval +#define DCFG_PERSCHIVL_0 (0x1UL << DCFG_PERSCHIVL_Pos) // 0x01000000 +#define DCFG_PERSCHIVL_1 (0x2UL << DCFG_PERSCHIVL_Pos) // 0x02000000 /******************** Bit definition for DCTL register ********************/ #define DCTL_RWUSIG_Pos (0U) -#define DCTL_RWUSIG_Msk (0x1UL << DCTL_RWUSIG_Pos) // 0x00000001 */ -#define DCTL_RWUSIG DCTL_RWUSIG_Msk // Remote wakeup signaling */ +#define DCTL_RWUSIG_Msk (0x1UL << DCTL_RWUSIG_Pos) // 0x00000001 +#define DCTL_RWUSIG DCTL_RWUSIG_Msk // Remote wakeup signaling #define DCTL_SDIS_Pos (1U) -#define DCTL_SDIS_Msk (0x1UL << DCTL_SDIS_Pos) // 0x00000002 */ -#define DCTL_SDIS DCTL_SDIS_Msk // Soft disconnect */ +#define DCTL_SDIS_Msk (0x1UL << DCTL_SDIS_Pos) // 0x00000002 +#define DCTL_SDIS DCTL_SDIS_Msk // Soft disconnect #define DCTL_GINSTS_Pos (2U) -#define DCTL_GINSTS_Msk (0x1UL << DCTL_GINSTS_Pos) // 0x00000004 */ -#define DCTL_GINSTS DCTL_GINSTS_Msk // Global IN NAK status */ +#define DCTL_GINSTS_Msk (0x1UL << DCTL_GINSTS_Pos) // 0x00000004 +#define DCTL_GINSTS DCTL_GINSTS_Msk // Global IN NAK status #define DCTL_GONSTS_Pos (3U) -#define DCTL_GONSTS_Msk (0x1UL << DCTL_GONSTS_Pos) // 0x00000008 */ -#define DCTL_GONSTS DCTL_GONSTS_Msk // Global OUT NAK status */ +#define DCTL_GONSTS_Msk (0x1UL << DCTL_GONSTS_Pos) // 0x00000008 +#define DCTL_GONSTS DCTL_GONSTS_Msk // Global OUT NAK status #define DCTL_TCTL_Pos (4U) -#define DCTL_TCTL_Msk (0x7UL << DCTL_TCTL_Pos) // 0x00000070 */ -#define DCTL_TCTL DCTL_TCTL_Msk // Test control */ -#define DCTL_TCTL_0 (0x1UL << DCTL_TCTL_Pos) // 0x00000010 */ -#define DCTL_TCTL_1 (0x2UL << DCTL_TCTL_Pos) // 0x00000020 */ -#define DCTL_TCTL_2 (0x4UL << DCTL_TCTL_Pos) // 0x00000040 */ +#define DCTL_TCTL_Msk (0x7UL << DCTL_TCTL_Pos) // 0x00000070 +#define DCTL_TCTL DCTL_TCTL_Msk // Test control +#define DCTL_TCTL_0 (0x1UL << DCTL_TCTL_Pos) // 0x00000010 +#define DCTL_TCTL_1 (0x2UL << DCTL_TCTL_Pos) // 0x00000020 +#define DCTL_TCTL_2 (0x4UL << DCTL_TCTL_Pos) // 0x00000040 #define DCTL_SGINAK_Pos (7U) -#define DCTL_SGINAK_Msk (0x1UL << DCTL_SGINAK_Pos) // 0x00000080 */ -#define DCTL_SGINAK DCTL_SGINAK_Msk // Set global IN NAK */ +#define DCTL_SGINAK_Msk (0x1UL << DCTL_SGINAK_Pos) // 0x00000080 +#define DCTL_SGINAK DCTL_SGINAK_Msk // Set global IN NAK #define DCTL_CGINAK_Pos (8U) -#define DCTL_CGINAK_Msk (0x1UL << DCTL_CGINAK_Pos) // 0x00000100 */ -#define DCTL_CGINAK DCTL_CGINAK_Msk // Clear global IN NAK */ +#define DCTL_CGINAK_Msk (0x1UL << DCTL_CGINAK_Pos) // 0x00000100 +#define DCTL_CGINAK DCTL_CGINAK_Msk // Clear global IN NAK #define DCTL_SGONAK_Pos (9U) -#define DCTL_SGONAK_Msk (0x1UL << DCTL_SGONAK_Pos) // 0x00000200 */ -#define DCTL_SGONAK DCTL_SGONAK_Msk // Set global OUT NAK */ +#define DCTL_SGONAK_Msk (0x1UL << DCTL_SGONAK_Pos) // 0x00000200 +#define DCTL_SGONAK DCTL_SGONAK_Msk // Set global OUT NAK #define DCTL_CGONAK_Pos (10U) -#define DCTL_CGONAK_Msk (0x1UL << DCTL_CGONAK_Pos) // 0x00000400 */ -#define DCTL_CGONAK DCTL_CGONAK_Msk // Clear global OUT NAK */ +#define DCTL_CGONAK_Msk (0x1UL << DCTL_CGONAK_Pos) // 0x00000400 +#define DCTL_CGONAK DCTL_CGONAK_Msk // Clear global OUT NAK #define DCTL_POPRGDNE_Pos (11U) -#define DCTL_POPRGDNE_Msk (0x1UL << DCTL_POPRGDNE_Pos) // 0x00000800 */ -#define DCTL_POPRGDNE DCTL_POPRGDNE_Msk // Power-on programming done */ +#define DCTL_POPRGDNE_Msk (0x1UL << DCTL_POPRGDNE_Pos) // 0x00000800 +#define DCTL_POPRGDNE DCTL_POPRGDNE_Msk // Power-on programming done /******************** Bit definition for HFIR register ********************/ #define HFIR_FRIVL_Pos (0U) -#define HFIR_FRIVL_Msk (0xFFFFUL << HFIR_FRIVL_Pos) // 0x0000FFFF */ -#define HFIR_FRIVL HFIR_FRIVL_Msk // Frame interval */ +#define HFIR_FRIVL_Msk (0xFFFFUL << HFIR_FRIVL_Pos) // 0x0000FFFF +#define HFIR_FRIVL HFIR_FRIVL_Msk // Frame interval /******************** Bit definition for HFNUM register ********************/ #define HFNUM_FRNUM_Pos (0U) -#define HFNUM_FRNUM_Msk (0xFFFFUL << HFNUM_FRNUM_Pos) // 0x0000FFFF */ -#define HFNUM_FRNUM HFNUM_FRNUM_Msk // Frame number */ +#define HFNUM_FRNUM_Msk (0xFFFFUL << HFNUM_FRNUM_Pos) // 0x0000FFFF +#define HFNUM_FRNUM HFNUM_FRNUM_Msk // Frame number #define HFNUM_FTREM_Pos (16U) -#define HFNUM_FTREM_Msk (0xFFFFUL << HFNUM_FTREM_Pos) // 0xFFFF0000 */ -#define HFNUM_FTREM HFNUM_FTREM_Msk // Frame time remaining */ +#define HFNUM_FTREM_Msk (0xFFFFUL << HFNUM_FTREM_Pos) // 0xFFFF0000 +#define HFNUM_FTREM HFNUM_FTREM_Msk // Frame time remaining /******************** Bit definition for DSTS register ********************/ #define DSTS_SUSPSTS_Pos (0U) -#define DSTS_SUSPSTS_Msk (0x1UL << DSTS_SUSPSTS_Pos) // 0x00000001 */ -#define DSTS_SUSPSTS DSTS_SUSPSTS_Msk // Suspend status */ +#define DSTS_SUSPSTS_Msk (0x1UL << DSTS_SUSPSTS_Pos) // 0x00000001 +#define DSTS_SUSPSTS DSTS_SUSPSTS_Msk // Suspend status #define DSTS_ENUMSPD_Pos (1U) -#define DSTS_ENUMSPD_Msk (0x3UL << DSTS_ENUMSPD_Pos) // 0x00000006 */ -#define DSTS_ENUMSPD DSTS_ENUMSPD_Msk // Enumerated speed */ +#define DSTS_ENUMSPD_Msk (0x3UL << DSTS_ENUMSPD_Pos) // 0x00000006 +#define DSTS_ENUMSPD DSTS_ENUMSPD_Msk // Enumerated speed #define DSTS_ENUMSPD_HS 0 // Highspeed #define DSTS_ENUMSPD_FS_HSPHY 1 // Fullspeed on HS PHY #define DSTS_ENUMSPD_LS 2 // Lowspeed @@ -499,427 +499,427 @@ TU_VERIFY_STATIC(offsetof(dwc2_regs_t, fifo ) == 0x1000, "incorrect size"); #define DSTS_EERR_Pos (3U) -#define DSTS_EERR_Msk (0x1UL << DSTS_EERR_Pos) // 0x00000008 */ -#define DSTS_EERR DSTS_EERR_Msk // Erratic error */ +#define DSTS_EERR_Msk (0x1UL << DSTS_EERR_Pos) // 0x00000008 +#define DSTS_EERR DSTS_EERR_Msk // Erratic error #define DSTS_FNSOF_Pos (8U) -#define DSTS_FNSOF_Msk (0x3FFFUL << DSTS_FNSOF_Pos) // 0x003FFF00 */ -#define DSTS_FNSOF DSTS_FNSOF_Msk // Frame number of the received SOF */ +#define DSTS_FNSOF_Msk (0x3FFFUL << DSTS_FNSOF_Pos) // 0x003FFF00 +#define DSTS_FNSOF DSTS_FNSOF_Msk // Frame number of the received SOF /******************** Bit definition for GAHBCFG register ********************/ #define GAHBCFG_GINT_Pos (0U) -#define GAHBCFG_GINT_Msk (0x1UL << GAHBCFG_GINT_Pos) // 0x00000001 */ -#define GAHBCFG_GINT GAHBCFG_GINT_Msk // Global interrupt mask */ +#define GAHBCFG_GINT_Msk (0x1UL << GAHBCFG_GINT_Pos) // 0x00000001 +#define GAHBCFG_GINT GAHBCFG_GINT_Msk // Global interrupt mask #define GAHBCFG_HBSTLEN_Pos (1U) -#define GAHBCFG_HBSTLEN_Msk (0xFUL << GAHBCFG_HBSTLEN_Pos) // 0x0000001E */ -#define GAHBCFG_HBSTLEN GAHBCFG_HBSTLEN_Msk // Burst length/type */ -#define GAHBCFG_HBSTLEN_0 (0x0UL << GAHBCFG_HBSTLEN_Pos) // Single */ -#define GAHBCFG_HBSTLEN_1 (0x1UL << GAHBCFG_HBSTLEN_Pos) // INCR */ -#define GAHBCFG_HBSTLEN_2 (0x3UL << GAHBCFG_HBSTLEN_Pos) // INCR4 */ -#define GAHBCFG_HBSTLEN_3 (0x5UL << GAHBCFG_HBSTLEN_Pos) // INCR8 */ -#define GAHBCFG_HBSTLEN_4 (0x7UL << GAHBCFG_HBSTLEN_Pos) // INCR16 */ +#define GAHBCFG_HBSTLEN_Msk (0xFUL << GAHBCFG_HBSTLEN_Pos) // 0x0000001E +#define GAHBCFG_HBSTLEN GAHBCFG_HBSTLEN_Msk // Burst length/type +#define GAHBCFG_HBSTLEN_0 (0x0UL << GAHBCFG_HBSTLEN_Pos) // Single +#define GAHBCFG_HBSTLEN_1 (0x1UL << GAHBCFG_HBSTLEN_Pos) // INCR +#define GAHBCFG_HBSTLEN_2 (0x3UL << GAHBCFG_HBSTLEN_Pos) // INCR4 +#define GAHBCFG_HBSTLEN_3 (0x5UL << GAHBCFG_HBSTLEN_Pos) // INCR8 +#define GAHBCFG_HBSTLEN_4 (0x7UL << GAHBCFG_HBSTLEN_Pos) // INCR16 #define GAHBCFG_DMAEN_Pos (5U) -#define GAHBCFG_DMAEN_Msk (0x1UL << GAHBCFG_DMAEN_Pos) // 0x00000020 */ -#define GAHBCFG_DMAEN GAHBCFG_DMAEN_Msk // DMA enable */ +#define GAHBCFG_DMAEN_Msk (0x1UL << GAHBCFG_DMAEN_Pos) // 0x00000020 +#define GAHBCFG_DMAEN GAHBCFG_DMAEN_Msk // DMA enable #define GAHBCFG_TXFELVL_Pos (7U) -#define GAHBCFG_TXFELVL_Msk (0x1UL << GAHBCFG_TXFELVL_Pos) // 0x00000080 */ -#define GAHBCFG_TXFELVL GAHBCFG_TXFELVL_Msk // TxFIFO empty level */ +#define GAHBCFG_TXFELVL_Msk (0x1UL << GAHBCFG_TXFELVL_Pos) // 0x00000080 +#define GAHBCFG_TXFELVL GAHBCFG_TXFELVL_Msk // TxFIFO empty level #define GAHBCFG_PTXFELVL_Pos (8U) -#define GAHBCFG_PTXFELVL_Msk (0x1UL << GAHBCFG_PTXFELVL_Pos) // 0x00000100 */ -#define GAHBCFG_PTXFELVL GAHBCFG_PTXFELVL_Msk // Periodic TxFIFO empty level */ +#define GAHBCFG_PTXFELVL_Msk (0x1UL << GAHBCFG_PTXFELVL_Pos) // 0x00000100 +#define GAHBCFG_PTXFELVL GAHBCFG_PTXFELVL_Msk // Periodic TxFIFO empty level #define GSNPSID_ID_MASK TU_GENMASK(31, 16) /******************** Bit definition for GUSBCFG register ********************/ #define GUSBCFG_TOCAL_Pos (0U) -#define GUSBCFG_TOCAL_Msk (0x7UL << GUSBCFG_TOCAL_Pos) // 0x00000007 */ -#define GUSBCFG_TOCAL GUSBCFG_TOCAL_Msk // FS timeout calibration */ +#define GUSBCFG_TOCAL_Msk (0x7UL << GUSBCFG_TOCAL_Pos) // 0x00000007 +#define GUSBCFG_TOCAL GUSBCFG_TOCAL_Msk // FS timeout calibration #define GUSBCFG_PHYIF16_Pos (3U) -#define GUSBCFG_PHYIF16_Msk (0x1UL << GUSBCFG_PHYIF16_Pos) // 0x00000008 */ -#define GUSBCFG_PHYIF16 GUSBCFG_PHYIF16_Msk // PHY Interface (PHYIf) */ +#define GUSBCFG_PHYIF16_Msk (0x1UL << GUSBCFG_PHYIF16_Pos) // 0x00000008 +#define GUSBCFG_PHYIF16 GUSBCFG_PHYIF16_Msk // PHY Interface (PHYIf) #define GUSBCFG_ULPI_UTMI_SEL_Pos (4U) -#define GUSBCFG_ULPI_UTMI_SEL_Msk (0x1UL << GUSBCFG_ULPI_UTMI_SEL_Pos) // 0x00000010 */ -#define GUSBCFG_ULPI_UTMI_SEL GUSBCFG_ULPI_UTMI_SEL_Msk // ULPI or UTMI+ Select (ULPI_UTMI_Sel) */ +#define GUSBCFG_ULPI_UTMI_SEL_Msk (0x1UL << GUSBCFG_ULPI_UTMI_SEL_Pos) // 0x00000010 +#define GUSBCFG_ULPI_UTMI_SEL GUSBCFG_ULPI_UTMI_SEL_Msk // ULPI or UTMI+ Select (ULPI_UTMI_Sel) #define GUSBCFG_PHYSEL_Pos (6U) -#define GUSBCFG_PHYSEL_Msk (0x1UL << GUSBCFG_PHYSEL_Pos) // 0x00000040 */ -#define GUSBCFG_PHYSEL GUSBCFG_PHYSEL_Msk // USB 2.0 high-speed ULPI PHY or USB 1.1 full-speed serial transceiver select */ +#define GUSBCFG_PHYSEL_Msk (0x1UL << GUSBCFG_PHYSEL_Pos) // 0x00000040 +#define GUSBCFG_PHYSEL GUSBCFG_PHYSEL_Msk // USB 2.0 high-speed ULPI PHY or USB 1.1 full-speed serial transceiver select #define GUSBCFG_DDRSEL TU_BIT(7) // Single Data Rate (SDR) or Double Data Rate (DDR) or ULPI interface. #define GUSBCFG_SRPCAP_Pos (8U) -#define GUSBCFG_SRPCAP_Msk (0x1UL << GUSBCFG_SRPCAP_Pos) // 0x00000100 */ -#define GUSBCFG_SRPCAP GUSBCFG_SRPCAP_Msk // SRP-capable */ +#define GUSBCFG_SRPCAP_Msk (0x1UL << GUSBCFG_SRPCAP_Pos) // 0x00000100 +#define GUSBCFG_SRPCAP GUSBCFG_SRPCAP_Msk // SRP-capable #define GUSBCFG_HNPCAP_Pos (9U) -#define GUSBCFG_HNPCAP_Msk (0x1UL << GUSBCFG_HNPCAP_Pos) // 0x00000200 */ -#define GUSBCFG_HNPCAP GUSBCFG_HNPCAP_Msk // HNP-capable */ +#define GUSBCFG_HNPCAP_Msk (0x1UL << GUSBCFG_HNPCAP_Pos) // 0x00000200 +#define GUSBCFG_HNPCAP GUSBCFG_HNPCAP_Msk // HNP-capable #define GUSBCFG_TRDT_Pos (10U) -#define GUSBCFG_TRDT_Msk (0xFUL << GUSBCFG_TRDT_Pos) // 0x00003C00 */ -#define GUSBCFG_TRDT GUSBCFG_TRDT_Msk // USB turnaround time */ +#define GUSBCFG_TRDT_Msk (0xFUL << GUSBCFG_TRDT_Pos) // 0x00003C00 +#define GUSBCFG_TRDT GUSBCFG_TRDT_Msk // USB turnaround time #define GUSBCFG_PHYLPCS_Pos (15U) -#define GUSBCFG_PHYLPCS_Msk (0x1UL << GUSBCFG_PHYLPCS_Pos) // 0x00008000 */ -#define GUSBCFG_PHYLPCS GUSBCFG_PHYLPCS_Msk // PHY Low-power clock select */ +#define GUSBCFG_PHYLPCS_Msk (0x1UL << GUSBCFG_PHYLPCS_Pos) // 0x00008000 +#define GUSBCFG_PHYLPCS GUSBCFG_PHYLPCS_Msk // PHY Low-power clock select #define GUSBCFG_ULPIFSLS_Pos (17U) -#define GUSBCFG_ULPIFSLS_Msk (0x1UL << GUSBCFG_ULPIFSLS_Pos) // 0x00020000 */ -#define GUSBCFG_ULPIFSLS GUSBCFG_ULPIFSLS_Msk // ULPI FS/LS select */ +#define GUSBCFG_ULPIFSLS_Msk (0x1UL << GUSBCFG_ULPIFSLS_Pos) // 0x00020000 +#define GUSBCFG_ULPIFSLS GUSBCFG_ULPIFSLS_Msk // ULPI FS/LS select #define GUSBCFG_ULPIAR_Pos (18U) -#define GUSBCFG_ULPIAR_Msk (0x1UL << GUSBCFG_ULPIAR_Pos) // 0x00040000 */ -#define GUSBCFG_ULPIAR GUSBCFG_ULPIAR_Msk // ULPI Auto-resume */ +#define GUSBCFG_ULPIAR_Msk (0x1UL << GUSBCFG_ULPIAR_Pos) // 0x00040000 +#define GUSBCFG_ULPIAR GUSBCFG_ULPIAR_Msk // ULPI Auto-resume #define GUSBCFG_ULPICSM_Pos (19U) -#define GUSBCFG_ULPICSM_Msk (0x1UL << GUSBCFG_ULPICSM_Pos) // 0x00080000 */ -#define GUSBCFG_ULPICSM GUSBCFG_ULPICSM_Msk // ULPI Clock SuspendM */ +#define GUSBCFG_ULPICSM_Msk (0x1UL << GUSBCFG_ULPICSM_Pos) // 0x00080000 +#define GUSBCFG_ULPICSM GUSBCFG_ULPICSM_Msk // ULPI Clock SuspendM #define GUSBCFG_ULPIEVBUSD_Pos (20U) -#define GUSBCFG_ULPIEVBUSD_Msk (0x1UL << GUSBCFG_ULPIEVBUSD_Pos) // 0x00100000 */ -#define GUSBCFG_ULPIEVBUSD GUSBCFG_ULPIEVBUSD_Msk // ULPI External VBUS Drive */ +#define GUSBCFG_ULPIEVBUSD_Msk (0x1UL << GUSBCFG_ULPIEVBUSD_Pos) // 0x00100000 +#define GUSBCFG_ULPIEVBUSD GUSBCFG_ULPIEVBUSD_Msk // ULPI External VBUS Drive #define GUSBCFG_ULPIEVBUSI_Pos (21U) -#define GUSBCFG_ULPIEVBUSI_Msk (0x1UL << GUSBCFG_ULPIEVBUSI_Pos) // 0x00200000 */ -#define GUSBCFG_ULPIEVBUSI GUSBCFG_ULPIEVBUSI_Msk // ULPI external VBUS indicator */ +#define GUSBCFG_ULPIEVBUSI_Msk (0x1UL << GUSBCFG_ULPIEVBUSI_Pos) // 0x00200000 +#define GUSBCFG_ULPIEVBUSI GUSBCFG_ULPIEVBUSI_Msk // ULPI external VBUS indicator #define GUSBCFG_TSDPS_Pos (22U) -#define GUSBCFG_TSDPS_Msk (0x1UL << GUSBCFG_TSDPS_Pos) // 0x00400000 */ -#define GUSBCFG_TSDPS GUSBCFG_TSDPS_Msk // TermSel DLine pulsing selection */ +#define GUSBCFG_TSDPS_Msk (0x1UL << GUSBCFG_TSDPS_Pos) // 0x00400000 +#define GUSBCFG_TSDPS GUSBCFG_TSDPS_Msk // TermSel DLine pulsing selection #define GUSBCFG_PCCI_Pos (23U) -#define GUSBCFG_PCCI_Msk (0x1UL << GUSBCFG_PCCI_Pos) // 0x00800000 */ -#define GUSBCFG_PCCI GUSBCFG_PCCI_Msk // Indicator complement */ +#define GUSBCFG_PCCI_Msk (0x1UL << GUSBCFG_PCCI_Pos) // 0x00800000 +#define GUSBCFG_PCCI GUSBCFG_PCCI_Msk // Indicator complement #define GUSBCFG_PTCI_Pos (24U) -#define GUSBCFG_PTCI_Msk (0x1UL << GUSBCFG_PTCI_Pos) // 0x01000000 */ -#define GUSBCFG_PTCI GUSBCFG_PTCI_Msk // Indicator pass through */ +#define GUSBCFG_PTCI_Msk (0x1UL << GUSBCFG_PTCI_Pos) // 0x01000000 +#define GUSBCFG_PTCI GUSBCFG_PTCI_Msk // Indicator pass through #define GUSBCFG_ULPIIPD_Pos (25U) -#define GUSBCFG_ULPIIPD_Msk (0x1UL << GUSBCFG_ULPIIPD_Pos) // 0x02000000 */ -#define GUSBCFG_ULPIIPD GUSBCFG_ULPIIPD_Msk // ULPI interface protect disable */ +#define GUSBCFG_ULPIIPD_Msk (0x1UL << GUSBCFG_ULPIIPD_Pos) // 0x02000000 +#define GUSBCFG_ULPIIPD GUSBCFG_ULPIIPD_Msk // ULPI interface protect disable #define GUSBCFG_FHMOD_Pos (29U) -#define GUSBCFG_FHMOD_Msk (0x1UL << GUSBCFG_FHMOD_Pos) // 0x20000000 */ -#define GUSBCFG_FHMOD GUSBCFG_FHMOD_Msk // Forced host mode */ +#define GUSBCFG_FHMOD_Msk (0x1UL << GUSBCFG_FHMOD_Pos) // 0x20000000 +#define GUSBCFG_FHMOD GUSBCFG_FHMOD_Msk // Forced host mode #define GUSBCFG_FDMOD_Pos (30U) -#define GUSBCFG_FDMOD_Msk (0x1UL << GUSBCFG_FDMOD_Pos) // 0x40000000 */ -#define GUSBCFG_FDMOD GUSBCFG_FDMOD_Msk // Forced peripheral mode */ +#define GUSBCFG_FDMOD_Msk (0x1UL << GUSBCFG_FDMOD_Pos) // 0x40000000 +#define GUSBCFG_FDMOD GUSBCFG_FDMOD_Msk // Forced peripheral mode #define GUSBCFG_CTXPKT_Pos (31U) -#define GUSBCFG_CTXPKT_Msk (0x1UL << GUSBCFG_CTXPKT_Pos) // 0x80000000 */ -#define GUSBCFG_CTXPKT GUSBCFG_CTXPKT_Msk // Corrupt Tx packet */ +#define GUSBCFG_CTXPKT_Msk (0x1UL << GUSBCFG_CTXPKT_Pos) // 0x80000000 +#define GUSBCFG_CTXPKT GUSBCFG_CTXPKT_Msk // Corrupt Tx packet /******************** Bit definition for GRSTCTL register ********************/ #define GRSTCTL_CSRST_Pos (0U) -#define GRSTCTL_CSRST_Msk (0x1UL << GRSTCTL_CSRST_Pos) // 0x00000001 */ -#define GRSTCTL_CSRST GRSTCTL_CSRST_Msk // Core soft reset */ +#define GRSTCTL_CSRST_Msk (0x1UL << GRSTCTL_CSRST_Pos) // 0x00000001 +#define GRSTCTL_CSRST GRSTCTL_CSRST_Msk // Core soft reset #define GRSTCTL_HSRST_Pos (1U) -#define GRSTCTL_HSRST_Msk (0x1UL << GRSTCTL_HSRST_Pos) // 0x00000002 */ -#define GRSTCTL_HSRST GRSTCTL_HSRST_Msk // HCLK soft reset */ +#define GRSTCTL_HSRST_Msk (0x1UL << GRSTCTL_HSRST_Pos) // 0x00000002 +#define GRSTCTL_HSRST GRSTCTL_HSRST_Msk // HCLK soft reset #define GRSTCTL_FCRST_Pos (2U) -#define GRSTCTL_FCRST_Msk (0x1UL << GRSTCTL_FCRST_Pos) // 0x00000004 */ -#define GRSTCTL_FCRST GRSTCTL_FCRST_Msk // Host frame counter reset */ +#define GRSTCTL_FCRST_Msk (0x1UL << GRSTCTL_FCRST_Pos) // 0x00000004 +#define GRSTCTL_FCRST GRSTCTL_FCRST_Msk // Host frame counter reset #define GRSTCTL_RXFFLSH_Pos (4U) -#define GRSTCTL_RXFFLSH_Msk (0x1UL << GRSTCTL_RXFFLSH_Pos) // 0x00000010 */ -#define GRSTCTL_RXFFLSH GRSTCTL_RXFFLSH_Msk // RxFIFO flush */ +#define GRSTCTL_RXFFLSH_Msk (0x1UL << GRSTCTL_RXFFLSH_Pos) // 0x00000010 +#define GRSTCTL_RXFFLSH GRSTCTL_RXFFLSH_Msk // RxFIFO flush #define GRSTCTL_TXFFLSH_Pos (5U) -#define GRSTCTL_TXFFLSH_Msk (0x1UL << GRSTCTL_TXFFLSH_Pos) // 0x00000020 */ -#define GRSTCTL_TXFFLSH GRSTCTL_TXFFLSH_Msk // TxFIFO flush */ +#define GRSTCTL_TXFFLSH_Msk (0x1UL << GRSTCTL_TXFFLSH_Pos) // 0x00000020 +#define GRSTCTL_TXFFLSH GRSTCTL_TXFFLSH_Msk // TxFIFO flush #define GRSTCTL_TXFNUM_Pos (6U) -#define GRSTCTL_TXFNUM_Msk (0x1FUL << GRSTCTL_TXFNUM_Pos) // 0x000007C0 */ -#define GRSTCTL_TXFNUM GRSTCTL_TXFNUM_Msk // TxFIFO number */ -#define GRSTCTL_TXFNUM_0 (0x01UL << GRSTCTL_TXFNUM_Pos) // 0x00000040 */ -#define GRSTCTL_TXFNUM_1 (0x02UL << GRSTCTL_TXFNUM_Pos) // 0x00000080 */ -#define GRSTCTL_TXFNUM_2 (0x04UL << GRSTCTL_TXFNUM_Pos) // 0x00000100 */ -#define GRSTCTL_TXFNUM_3 (0x08UL << GRSTCTL_TXFNUM_Pos) // 0x00000200 */ -#define GRSTCTL_TXFNUM_4 (0x10UL << GRSTCTL_TXFNUM_Pos) // 0x00000400 */ +#define GRSTCTL_TXFNUM_Msk (0x1FUL << GRSTCTL_TXFNUM_Pos) // 0x000007C0 +#define GRSTCTL_TXFNUM GRSTCTL_TXFNUM_Msk // TxFIFO number +#define GRSTCTL_TXFNUM_0 (0x01UL << GRSTCTL_TXFNUM_Pos) // 0x00000040 +#define GRSTCTL_TXFNUM_1 (0x02UL << GRSTCTL_TXFNUM_Pos) // 0x00000080 +#define GRSTCTL_TXFNUM_2 (0x04UL << GRSTCTL_TXFNUM_Pos) // 0x00000100 +#define GRSTCTL_TXFNUM_3 (0x08UL << GRSTCTL_TXFNUM_Pos) // 0x00000200 +#define GRSTCTL_TXFNUM_4 (0x10UL << GRSTCTL_TXFNUM_Pos) // 0x00000400 #define GRSTCTL_CSFTRST_DONE_Pos (29) #define GRSTCTL_CSFTRST_DONE (1u << GRSTCTL_CSFTRST_DONE_Pos) // Reset Done, only available from v4.20a #define GRSTCTL_DMAREQ_Pos (30U) -#define GRSTCTL_DMAREQ_Msk (0x1UL << GRSTCTL_DMAREQ_Pos) // 0x40000000 */ -#define GRSTCTL_DMAREQ GRSTCTL_DMAREQ_Msk // DMA request signal */ +#define GRSTCTL_DMAREQ_Msk (0x1UL << GRSTCTL_DMAREQ_Pos) // 0x40000000 +#define GRSTCTL_DMAREQ GRSTCTL_DMAREQ_Msk // DMA request signal #define GRSTCTL_AHBIDL_Pos (31U) -#define GRSTCTL_AHBIDL_Msk (0x1UL << GRSTCTL_AHBIDL_Pos) // 0x80000000 */ -#define GRSTCTL_AHBIDL GRSTCTL_AHBIDL_Msk // AHB master idle */ +#define GRSTCTL_AHBIDL_Msk (0x1UL << GRSTCTL_AHBIDL_Pos) // 0x80000000 +#define GRSTCTL_AHBIDL GRSTCTL_AHBIDL_Msk // AHB master idle /******************** Bit definition for DIEPMSK register ********************/ #define DIEPMSK_XFRCM_Pos (0U) -#define DIEPMSK_XFRCM_Msk (0x1UL << DIEPMSK_XFRCM_Pos) // 0x00000001 */ -#define DIEPMSK_XFRCM DIEPMSK_XFRCM_Msk // Transfer completed interrupt mask */ +#define DIEPMSK_XFRCM_Msk (0x1UL << DIEPMSK_XFRCM_Pos) // 0x00000001 +#define DIEPMSK_XFRCM DIEPMSK_XFRCM_Msk // Transfer completed interrupt mask #define DIEPMSK_EPDM_Pos (1U) -#define DIEPMSK_EPDM_Msk (0x1UL << DIEPMSK_EPDM_Pos) // 0x00000002 */ -#define DIEPMSK_EPDM DIEPMSK_EPDM_Msk // Endpoint disabled interrupt mask */ +#define DIEPMSK_EPDM_Msk (0x1UL << DIEPMSK_EPDM_Pos) // 0x00000002 +#define DIEPMSK_EPDM DIEPMSK_EPDM_Msk // Endpoint disabled interrupt mask #define DIEPMSK_TOM_Pos (3U) -#define DIEPMSK_TOM_Msk (0x1UL << DIEPMSK_TOM_Pos) // 0x00000008 */ -#define DIEPMSK_TOM DIEPMSK_TOM_Msk // Timeout condition mask (nonisochronous endpoints) */ +#define DIEPMSK_TOM_Msk (0x1UL << DIEPMSK_TOM_Pos) // 0x00000008 +#define DIEPMSK_TOM DIEPMSK_TOM_Msk // Timeout condition mask (nonisochronous endpoints) #define DIEPMSK_ITTXFEMSK_Pos (4U) -#define DIEPMSK_ITTXFEMSK_Msk (0x1UL << DIEPMSK_ITTXFEMSK_Pos) // 0x00000010 */ -#define DIEPMSK_ITTXFEMSK DIEPMSK_ITTXFEMSK_Msk // IN token received when TxFIFO empty mask */ +#define DIEPMSK_ITTXFEMSK_Msk (0x1UL << DIEPMSK_ITTXFEMSK_Pos) // 0x00000010 +#define DIEPMSK_ITTXFEMSK DIEPMSK_ITTXFEMSK_Msk // IN token received when TxFIFO empty mask #define DIEPMSK_INEPNMM_Pos (5U) -#define DIEPMSK_INEPNMM_Msk (0x1UL << DIEPMSK_INEPNMM_Pos) // 0x00000020 */ -#define DIEPMSK_INEPNMM DIEPMSK_INEPNMM_Msk // IN token received with EP mismatch mask */ +#define DIEPMSK_INEPNMM_Msk (0x1UL << DIEPMSK_INEPNMM_Pos) // 0x00000020 +#define DIEPMSK_INEPNMM DIEPMSK_INEPNMM_Msk // IN token received with EP mismatch mask #define DIEPMSK_INEPNEM_Pos (6U) -#define DIEPMSK_INEPNEM_Msk (0x1UL << DIEPMSK_INEPNEM_Pos) // 0x00000040 */ -#define DIEPMSK_INEPNEM DIEPMSK_INEPNEM_Msk // IN endpoint NAK effective mask */ +#define DIEPMSK_INEPNEM_Msk (0x1UL << DIEPMSK_INEPNEM_Pos) // 0x00000040 +#define DIEPMSK_INEPNEM DIEPMSK_INEPNEM_Msk // IN endpoint NAK effective mask #define DIEPMSK_TXFURM_Pos (8U) -#define DIEPMSK_TXFURM_Msk (0x1UL << DIEPMSK_TXFURM_Pos) // 0x00000100 */ -#define DIEPMSK_TXFURM DIEPMSK_TXFURM_Msk // FIFO underrun mask */ +#define DIEPMSK_TXFURM_Msk (0x1UL << DIEPMSK_TXFURM_Pos) // 0x00000100 +#define DIEPMSK_TXFURM DIEPMSK_TXFURM_Msk // FIFO underrun mask #define DIEPMSK_BIM_Pos (9U) -#define DIEPMSK_BIM_Msk (0x1UL << DIEPMSK_BIM_Pos) // 0x00000200 */ -#define DIEPMSK_BIM DIEPMSK_BIM_Msk // BNA interrupt mask */ +#define DIEPMSK_BIM_Msk (0x1UL << DIEPMSK_BIM_Pos) // 0x00000200 +#define DIEPMSK_BIM DIEPMSK_BIM_Msk // BNA interrupt mask /******************** Bit definition for HPTXSTS register ********************/ #define HPTXSTS_PTXFSAVL_Pos (0U) -#define HPTXSTS_PTXFSAVL_Msk (0xFFFFUL << HPTXSTS_PTXFSAVL_Pos) // 0x0000FFFF */ -#define HPTXSTS_PTXFSAVL HPTXSTS_PTXFSAVL_Msk // Periodic transmit data FIFO space available */ +#define HPTXSTS_PTXFSAVL_Msk (0xFFFFUL << HPTXSTS_PTXFSAVL_Pos) // 0x0000FFFF +#define HPTXSTS_PTXFSAVL HPTXSTS_PTXFSAVL_Msk // Periodic transmit data FIFO space available #define HPTXSTS_PTXQSAV_Pos (16U) -#define HPTXSTS_PTXQSAV_Msk (0xFFUL << HPTXSTS_PTXQSAV_Pos) // 0x00FF0000 */ -#define HPTXSTS_PTXQSAV HPTXSTS_PTXQSAV_Msk // Periodic transmit request queue space available */ -#define HPTXSTS_PTXQSAV_0 (0x01UL << HPTXSTS_PTXQSAV_Pos) // 0x00010000 */ -#define HPTXSTS_PTXQSAV_1 (0x02UL << HPTXSTS_PTXQSAV_Pos) // 0x00020000 */ -#define HPTXSTS_PTXQSAV_2 (0x04UL << HPTXSTS_PTXQSAV_Pos) // 0x00040000 */ -#define HPTXSTS_PTXQSAV_3 (0x08UL << HPTXSTS_PTXQSAV_Pos) // 0x00080000 */ -#define HPTXSTS_PTXQSAV_4 (0x10UL << HPTXSTS_PTXQSAV_Pos) // 0x00100000 */ -#define HPTXSTS_PTXQSAV_5 (0x20UL << HPTXSTS_PTXQSAV_Pos) // 0x00200000 */ -#define HPTXSTS_PTXQSAV_6 (0x40UL << HPTXSTS_PTXQSAV_Pos) // 0x00400000 */ -#define HPTXSTS_PTXQSAV_7 (0x80UL << HPTXSTS_PTXQSAV_Pos) // 0x00800000 */ +#define HPTXSTS_PTXQSAV_Msk (0xFFUL << HPTXSTS_PTXQSAV_Pos) // 0x00FF0000 +#define HPTXSTS_PTXQSAV HPTXSTS_PTXQSAV_Msk // Periodic transmit request queue space available +#define HPTXSTS_PTXQSAV_0 (0x01UL << HPTXSTS_PTXQSAV_Pos) // 0x00010000 +#define HPTXSTS_PTXQSAV_1 (0x02UL << HPTXSTS_PTXQSAV_Pos) // 0x00020000 +#define HPTXSTS_PTXQSAV_2 (0x04UL << HPTXSTS_PTXQSAV_Pos) // 0x00040000 +#define HPTXSTS_PTXQSAV_3 (0x08UL << HPTXSTS_PTXQSAV_Pos) // 0x00080000 +#define HPTXSTS_PTXQSAV_4 (0x10UL << HPTXSTS_PTXQSAV_Pos) // 0x00100000 +#define HPTXSTS_PTXQSAV_5 (0x20UL << HPTXSTS_PTXQSAV_Pos) // 0x00200000 +#define HPTXSTS_PTXQSAV_6 (0x40UL << HPTXSTS_PTXQSAV_Pos) // 0x00400000 +#define HPTXSTS_PTXQSAV_7 (0x80UL << HPTXSTS_PTXQSAV_Pos) // 0x00800000 #define HPTXSTS_PTXQTOP_Pos (24U) -#define HPTXSTS_PTXQTOP_Msk (0xFFUL << HPTXSTS_PTXQTOP_Pos) // 0xFF000000 */ -#define HPTXSTS_PTXQTOP HPTXSTS_PTXQTOP_Msk // Top of the periodic transmit request queue */ -#define HPTXSTS_PTXQTOP_0 (0x01UL << HPTXSTS_PTXQTOP_Pos) // 0x01000000 */ -#define HPTXSTS_PTXQTOP_1 (0x02UL << HPTXSTS_PTXQTOP_Pos) // 0x02000000 */ -#define HPTXSTS_PTXQTOP_2 (0x04UL << HPTXSTS_PTXQTOP_Pos) // 0x04000000 */ -#define HPTXSTS_PTXQTOP_3 (0x08UL << HPTXSTS_PTXQTOP_Pos) // 0x08000000 */ -#define HPTXSTS_PTXQTOP_4 (0x10UL << HPTXSTS_PTXQTOP_Pos) // 0x10000000 */ -#define HPTXSTS_PTXQTOP_5 (0x20UL << HPTXSTS_PTXQTOP_Pos) // 0x20000000 */ -#define HPTXSTS_PTXQTOP_6 (0x40UL << HPTXSTS_PTXQTOP_Pos) // 0x40000000 */ -#define HPTXSTS_PTXQTOP_7 (0x80UL << HPTXSTS_PTXQTOP_Pos) // 0x80000000 */ +#define HPTXSTS_PTXQTOP_Msk (0xFFUL << HPTXSTS_PTXQTOP_Pos) // 0xFF000000 +#define HPTXSTS_PTXQTOP HPTXSTS_PTXQTOP_Msk // Top of the periodic transmit request queue +#define HPTXSTS_PTXQTOP_0 (0x01UL << HPTXSTS_PTXQTOP_Pos) // 0x01000000 +#define HPTXSTS_PTXQTOP_1 (0x02UL << HPTXSTS_PTXQTOP_Pos) // 0x02000000 +#define HPTXSTS_PTXQTOP_2 (0x04UL << HPTXSTS_PTXQTOP_Pos) // 0x04000000 +#define HPTXSTS_PTXQTOP_3 (0x08UL << HPTXSTS_PTXQTOP_Pos) // 0x08000000 +#define HPTXSTS_PTXQTOP_4 (0x10UL << HPTXSTS_PTXQTOP_Pos) // 0x10000000 +#define HPTXSTS_PTXQTOP_5 (0x20UL << HPTXSTS_PTXQTOP_Pos) // 0x20000000 +#define HPTXSTS_PTXQTOP_6 (0x40UL << HPTXSTS_PTXQTOP_Pos) // 0x40000000 +#define HPTXSTS_PTXQTOP_7 (0x80UL << HPTXSTS_PTXQTOP_Pos) // 0x80000000 /******************** Bit definition for HAINT register ********************/ #define HAINT_HAINT_Pos (0U) -#define HAINT_HAINT_Msk (0xFFFFUL << HAINT_HAINT_Pos) // 0x0000FFFF */ -#define HAINT_HAINT HAINT_HAINT_Msk // Channel interrupts */ +#define HAINT_HAINT_Msk (0xFFFFUL << HAINT_HAINT_Pos) // 0x0000FFFF +#define HAINT_HAINT HAINT_HAINT_Msk // Channel interrupts /******************** Bit definition for DOEPMSK register ********************/ #define DOEPMSK_XFRCM_Pos (0U) -#define DOEPMSK_XFRCM_Msk (0x1UL << DOEPMSK_XFRCM_Pos) // 0x00000001 */ -#define DOEPMSK_XFRCM DOEPMSK_XFRCM_Msk // Transfer completed interrupt mask */ +#define DOEPMSK_XFRCM_Msk (0x1UL << DOEPMSK_XFRCM_Pos) // 0x00000001 +#define DOEPMSK_XFRCM DOEPMSK_XFRCM_Msk // Transfer completed interrupt mask #define DOEPMSK_EPDM_Pos (1U) -#define DOEPMSK_EPDM_Msk (0x1UL << DOEPMSK_EPDM_Pos) // 0x00000002 */ -#define DOEPMSK_EPDM DOEPMSK_EPDM_Msk // Endpoint disabled interrupt mask */ +#define DOEPMSK_EPDM_Msk (0x1UL << DOEPMSK_EPDM_Pos) // 0x00000002 +#define DOEPMSK_EPDM DOEPMSK_EPDM_Msk // Endpoint disabled interrupt mask #define DOEPMSK_AHBERRM_Pos (2U) -#define DOEPMSK_AHBERRM_Msk (0x1UL << DOEPMSK_AHBERRM_Pos) // 0x00000004 */ -#define DOEPMSK_AHBERRM DOEPMSK_AHBERRM_Msk // OUT transaction AHB Error interrupt mask */ +#define DOEPMSK_AHBERRM_Msk (0x1UL << DOEPMSK_AHBERRM_Pos) // 0x00000004 +#define DOEPMSK_AHBERRM DOEPMSK_AHBERRM_Msk // OUT transaction AHB Error interrupt mask #define DOEPMSK_STUPM_Pos (3U) -#define DOEPMSK_STUPM_Msk (0x1UL << DOEPMSK_STUPM_Pos) // 0x00000008 */ -#define DOEPMSK_STUPM DOEPMSK_STUPM_Msk // SETUP phase done mask */ +#define DOEPMSK_STUPM_Msk (0x1UL << DOEPMSK_STUPM_Pos) // 0x00000008 +#define DOEPMSK_STUPM DOEPMSK_STUPM_Msk // SETUP phase done mask #define DOEPMSK_OTEPDM_Pos (4U) -#define DOEPMSK_OTEPDM_Msk (0x1UL << DOEPMSK_OTEPDM_Pos) // 0x00000010 */ -#define DOEPMSK_OTEPDM DOEPMSK_OTEPDM_Msk // OUT token received when endpoint disabled mask */ +#define DOEPMSK_OTEPDM_Msk (0x1UL << DOEPMSK_OTEPDM_Pos) // 0x00000010 +#define DOEPMSK_OTEPDM DOEPMSK_OTEPDM_Msk // OUT token received when endpoint disabled mask #define DOEPMSK_OTEPSPRM_Pos (5U) -#define DOEPMSK_OTEPSPRM_Msk (0x1UL << DOEPMSK_OTEPSPRM_Pos) // 0x00000020 */ -#define DOEPMSK_OTEPSPRM DOEPMSK_OTEPSPRM_Msk // Status Phase Received mask */ +#define DOEPMSK_OTEPSPRM_Msk (0x1UL << DOEPMSK_OTEPSPRM_Pos) // 0x00000020 +#define DOEPMSK_OTEPSPRM DOEPMSK_OTEPSPRM_Msk // Status Phase Received mask #define DOEPMSK_B2BSTUP_Pos (6U) -#define DOEPMSK_B2BSTUP_Msk (0x1UL << DOEPMSK_B2BSTUP_Pos) // 0x00000040 */ -#define DOEPMSK_B2BSTUP DOEPMSK_B2BSTUP_Msk // Back-to-back SETUP packets received mask */ +#define DOEPMSK_B2BSTUP_Msk (0x1UL << DOEPMSK_B2BSTUP_Pos) // 0x00000040 +#define DOEPMSK_B2BSTUP DOEPMSK_B2BSTUP_Msk // Back-to-back SETUP packets received mask #define DOEPMSK_OPEM_Pos (8U) -#define DOEPMSK_OPEM_Msk (0x1UL << DOEPMSK_OPEM_Pos) // 0x00000100 */ -#define DOEPMSK_OPEM DOEPMSK_OPEM_Msk // OUT packet error mask */ +#define DOEPMSK_OPEM_Msk (0x1UL << DOEPMSK_OPEM_Pos) // 0x00000100 +#define DOEPMSK_OPEM DOEPMSK_OPEM_Msk // OUT packet error mask #define DOEPMSK_BOIM_Pos (9U) -#define DOEPMSK_BOIM_Msk (0x1UL << DOEPMSK_BOIM_Pos) // 0x00000200 */ -#define DOEPMSK_BOIM DOEPMSK_BOIM_Msk // BNA interrupt mask */ +#define DOEPMSK_BOIM_Msk (0x1UL << DOEPMSK_BOIM_Pos) // 0x00000200 +#define DOEPMSK_BOIM DOEPMSK_BOIM_Msk // BNA interrupt mask #define DOEPMSK_BERRM_Pos (12U) -#define DOEPMSK_BERRM_Msk (0x1UL << DOEPMSK_BERRM_Pos) // 0x00001000 */ -#define DOEPMSK_BERRM DOEPMSK_BERRM_Msk // Babble error interrupt mask */ +#define DOEPMSK_BERRM_Msk (0x1UL << DOEPMSK_BERRM_Pos) // 0x00001000 +#define DOEPMSK_BERRM DOEPMSK_BERRM_Msk // Babble error interrupt mask #define DOEPMSK_NAKM_Pos (13U) -#define DOEPMSK_NAKM_Msk (0x1UL << DOEPMSK_NAKM_Pos) // 0x00002000 */ -#define DOEPMSK_NAKM DOEPMSK_NAKM_Msk // OUT Packet NAK interrupt mask */ +#define DOEPMSK_NAKM_Msk (0x1UL << DOEPMSK_NAKM_Pos) // 0x00002000 +#define DOEPMSK_NAKM DOEPMSK_NAKM_Msk // OUT Packet NAK interrupt mask #define DOEPMSK_NYETM_Pos (14U) -#define DOEPMSK_NYETM_Msk (0x1UL << DOEPMSK_NYETM_Pos) // 0x00004000 */ -#define DOEPMSK_NYETM DOEPMSK_NYETM_Msk // NYET interrupt mask */ +#define DOEPMSK_NYETM_Msk (0x1UL << DOEPMSK_NYETM_Pos) // 0x00004000 +#define DOEPMSK_NYETM DOEPMSK_NYETM_Msk // NYET interrupt mask /******************** Bit definition for GINTSTS register ********************/ #define GINTSTS_CMOD_Pos (0U) -#define GINTSTS_CMOD_Msk (0x1UL << GINTSTS_CMOD_Pos) // 0x00000001 */ -#define GINTSTS_CMOD GINTSTS_CMOD_Msk // Current mode of operation */ +#define GINTSTS_CMOD_Msk (0x1UL << GINTSTS_CMOD_Pos) // 0x00000001 +#define GINTSTS_CMOD GINTSTS_CMOD_Msk // Current mode of operation #define GINTSTS_MMIS_Pos (1U) -#define GINTSTS_MMIS_Msk (0x1UL << GINTSTS_MMIS_Pos) // 0x00000002 */ -#define GINTSTS_MMIS GINTSTS_MMIS_Msk // Mode mismatch interrupt */ +#define GINTSTS_MMIS_Msk (0x1UL << GINTSTS_MMIS_Pos) // 0x00000002 +#define GINTSTS_MMIS GINTSTS_MMIS_Msk // Mode mismatch interrupt #define GINTSTS_OTGINT_Pos (2U) -#define GINTSTS_OTGINT_Msk (0x1UL << GINTSTS_OTGINT_Pos) // 0x00000004 */ -#define GINTSTS_OTGINT GINTSTS_OTGINT_Msk // OTG interrupt */ +#define GINTSTS_OTGINT_Msk (0x1UL << GINTSTS_OTGINT_Pos) // 0x00000004 +#define GINTSTS_OTGINT GINTSTS_OTGINT_Msk // OTG interrupt #define GINTSTS_SOF_Pos (3U) -#define GINTSTS_SOF_Msk (0x1UL << GINTSTS_SOF_Pos) // 0x00000008 */ -#define GINTSTS_SOF GINTSTS_SOF_Msk // Start of frame */ +#define GINTSTS_SOF_Msk (0x1UL << GINTSTS_SOF_Pos) // 0x00000008 +#define GINTSTS_SOF GINTSTS_SOF_Msk // Start of frame #define GINTSTS_RXFLVL_Pos (4U) -#define GINTSTS_RXFLVL_Msk (0x1UL << GINTSTS_RXFLVL_Pos) // 0x00000010 */ -#define GINTSTS_RXFLVL GINTSTS_RXFLVL_Msk // RxFIFO nonempty */ +#define GINTSTS_RXFLVL_Msk (0x1UL << GINTSTS_RXFLVL_Pos) // 0x00000010 +#define GINTSTS_RXFLVL GINTSTS_RXFLVL_Msk // RxFIFO nonempty #define GINTSTS_NPTXFE_Pos (5U) -#define GINTSTS_NPTXFE_Msk (0x1UL << GINTSTS_NPTXFE_Pos) // 0x00000020 */ -#define GINTSTS_NPTXFE GINTSTS_NPTXFE_Msk // Nonperiodic TxFIFO empty */ +#define GINTSTS_NPTXFE_Msk (0x1UL << GINTSTS_NPTXFE_Pos) // 0x00000020 +#define GINTSTS_NPTXFE GINTSTS_NPTXFE_Msk // Nonperiodic TxFIFO empty #define GINTSTS_GINAKEFF_Pos (6U) -#define GINTSTS_GINAKEFF_Msk (0x1UL << GINTSTS_GINAKEFF_Pos) // 0x00000040 */ -#define GINTSTS_GINAKEFF GINTSTS_GINAKEFF_Msk // Global IN nonperiodic NAK effective */ +#define GINTSTS_GINAKEFF_Msk (0x1UL << GINTSTS_GINAKEFF_Pos) // 0x00000040 +#define GINTSTS_GINAKEFF GINTSTS_GINAKEFF_Msk // Global IN nonperiodic NAK effective #define GINTSTS_BOUTNAKEFF_Pos (7U) -#define GINTSTS_BOUTNAKEFF_Msk (0x1UL << GINTSTS_BOUTNAKEFF_Pos) // 0x00000080 */ -#define GINTSTS_BOUTNAKEFF GINTSTS_BOUTNAKEFF_Msk // Global OUT NAK effective */ +#define GINTSTS_BOUTNAKEFF_Msk (0x1UL << GINTSTS_BOUTNAKEFF_Pos) // 0x00000080 +#define GINTSTS_BOUTNAKEFF GINTSTS_BOUTNAKEFF_Msk // Global OUT NAK effective #define GINTSTS_ESUSP_Pos (10U) -#define GINTSTS_ESUSP_Msk (0x1UL << GINTSTS_ESUSP_Pos) // 0x00000400 */ -#define GINTSTS_ESUSP GINTSTS_ESUSP_Msk // Early suspend */ +#define GINTSTS_ESUSP_Msk (0x1UL << GINTSTS_ESUSP_Pos) // 0x00000400 +#define GINTSTS_ESUSP GINTSTS_ESUSP_Msk // Early suspend #define GINTSTS_USBSUSP_Pos (11U) -#define GINTSTS_USBSUSP_Msk (0x1UL << GINTSTS_USBSUSP_Pos) // 0x00000800 */ -#define GINTSTS_USBSUSP GINTSTS_USBSUSP_Msk // USB suspend */ +#define GINTSTS_USBSUSP_Msk (0x1UL << GINTSTS_USBSUSP_Pos) // 0x00000800 +#define GINTSTS_USBSUSP GINTSTS_USBSUSP_Msk // USB suspend #define GINTSTS_USBRST_Pos (12U) -#define GINTSTS_USBRST_Msk (0x1UL << GINTSTS_USBRST_Pos) // 0x00001000 */ -#define GINTSTS_USBRST GINTSTS_USBRST_Msk // USB reset */ +#define GINTSTS_USBRST_Msk (0x1UL << GINTSTS_USBRST_Pos) // 0x00001000 +#define GINTSTS_USBRST GINTSTS_USBRST_Msk // USB reset #define GINTSTS_ENUMDNE_Pos (13U) -#define GINTSTS_ENUMDNE_Msk (0x1UL << GINTSTS_ENUMDNE_Pos) // 0x00002000 */ -#define GINTSTS_ENUMDNE GINTSTS_ENUMDNE_Msk // Enumeration done */ +#define GINTSTS_ENUMDNE_Msk (0x1UL << GINTSTS_ENUMDNE_Pos) // 0x00002000 +#define GINTSTS_ENUMDNE GINTSTS_ENUMDNE_Msk // Enumeration done #define GINTSTS_ISOODRP_Pos (14U) -#define GINTSTS_ISOODRP_Msk (0x1UL << GINTSTS_ISOODRP_Pos) // 0x00004000 */ -#define GINTSTS_ISOODRP GINTSTS_ISOODRP_Msk // Isochronous OUT packet dropped interrupt */ +#define GINTSTS_ISOODRP_Msk (0x1UL << GINTSTS_ISOODRP_Pos) // 0x00004000 +#define GINTSTS_ISOODRP GINTSTS_ISOODRP_Msk // Isochronous OUT packet dropped interrupt #define GINTSTS_EOPF_Pos (15U) -#define GINTSTS_EOPF_Msk (0x1UL << GINTSTS_EOPF_Pos) // 0x00008000 */ -#define GINTSTS_EOPF GINTSTS_EOPF_Msk // End of periodic frame interrupt */ +#define GINTSTS_EOPF_Msk (0x1UL << GINTSTS_EOPF_Pos) // 0x00008000 +#define GINTSTS_EOPF GINTSTS_EOPF_Msk // End of periodic frame interrupt #define GINTSTS_IEPINT_Pos (18U) -#define GINTSTS_IEPINT_Msk (0x1UL << GINTSTS_IEPINT_Pos) // 0x00040000 */ -#define GINTSTS_IEPINT GINTSTS_IEPINT_Msk // IN endpoint interrupt */ +#define GINTSTS_IEPINT_Msk (0x1UL << GINTSTS_IEPINT_Pos) // 0x00040000 +#define GINTSTS_IEPINT GINTSTS_IEPINT_Msk // IN endpoint interrupt #define GINTSTS_OEPINT_Pos (19U) -#define GINTSTS_OEPINT_Msk (0x1UL << GINTSTS_OEPINT_Pos) // 0x00080000 */ -#define GINTSTS_OEPINT GINTSTS_OEPINT_Msk // OUT endpoint interrupt */ +#define GINTSTS_OEPINT_Msk (0x1UL << GINTSTS_OEPINT_Pos) // 0x00080000 +#define GINTSTS_OEPINT GINTSTS_OEPINT_Msk // OUT endpoint interrupt #define GINTSTS_IISOIXFR_Pos (20U) -#define GINTSTS_IISOIXFR_Msk (0x1UL << GINTSTS_IISOIXFR_Pos) // 0x00100000 */ -#define GINTSTS_IISOIXFR GINTSTS_IISOIXFR_Msk // Incomplete isochronous IN transfer */ +#define GINTSTS_IISOIXFR_Msk (0x1UL << GINTSTS_IISOIXFR_Pos) // 0x00100000 +#define GINTSTS_IISOIXFR GINTSTS_IISOIXFR_Msk // Incomplete isochronous IN transfer #define GINTSTS_PXFR_INCOMPISOOUT_Pos (21U) -#define GINTSTS_PXFR_INCOMPISOOUT_Msk (0x1UL << GINTSTS_PXFR_INCOMPISOOUT_Pos) // 0x00200000 */ -#define GINTSTS_PXFR_INCOMPISOOUT GINTSTS_PXFR_INCOMPISOOUT_Msk // Incomplete periodic transfer */ +#define GINTSTS_PXFR_INCOMPISOOUT_Msk (0x1UL << GINTSTS_PXFR_INCOMPISOOUT_Pos) // 0x00200000 +#define GINTSTS_PXFR_INCOMPISOOUT GINTSTS_PXFR_INCOMPISOOUT_Msk // Incomplete periodic transfer #define GINTSTS_DATAFSUSP_Pos (22U) -#define GINTSTS_DATAFSUSP_Msk (0x1UL << GINTSTS_DATAFSUSP_Pos) // 0x00400000 */ -#define GINTSTS_DATAFSUSP GINTSTS_DATAFSUSP_Msk // Data fetch suspended */ +#define GINTSTS_DATAFSUSP_Msk (0x1UL << GINTSTS_DATAFSUSP_Pos) // 0x00400000 +#define GINTSTS_DATAFSUSP GINTSTS_DATAFSUSP_Msk // Data fetch suspended #define GINTSTS_RSTDET_Pos (23U) -#define GINTSTS_RSTDET_Msk (0x1UL << GINTSTS_RSTDET_Pos) // 0x00800000 */ -#define GINTSTS_RSTDET GINTSTS_RSTDET_Msk // Reset detected interrupt */ +#define GINTSTS_RSTDET_Msk (0x1UL << GINTSTS_RSTDET_Pos) // 0x00800000 +#define GINTSTS_RSTDET GINTSTS_RSTDET_Msk // Reset detected interrupt #define GINTSTS_HPRTINT_Pos (24U) -#define GINTSTS_HPRTINT_Msk (0x1UL << GINTSTS_HPRTINT_Pos) // 0x01000000 */ -#define GINTSTS_HPRTINT GINTSTS_HPRTINT_Msk // Host port interrupt */ +#define GINTSTS_HPRTINT_Msk (0x1UL << GINTSTS_HPRTINT_Pos) // 0x01000000 +#define GINTSTS_HPRTINT GINTSTS_HPRTINT_Msk // Host port interrupt #define GINTSTS_HCINT_Pos (25U) -#define GINTSTS_HCINT_Msk (0x1UL << GINTSTS_HCINT_Pos) // 0x02000000 */ -#define GINTSTS_HCINT GINTSTS_HCINT_Msk // Host channels interrupt */ +#define GINTSTS_HCINT_Msk (0x1UL << GINTSTS_HCINT_Pos) // 0x02000000 +#define GINTSTS_HCINT GINTSTS_HCINT_Msk // Host channels interrupt #define GINTSTS_PTXFE_Pos (26U) -#define GINTSTS_PTXFE_Msk (0x1UL << GINTSTS_PTXFE_Pos) // 0x04000000 */ -#define GINTSTS_PTXFE GINTSTS_PTXFE_Msk // Periodic TxFIFO empty */ +#define GINTSTS_PTXFE_Msk (0x1UL << GINTSTS_PTXFE_Pos) // 0x04000000 +#define GINTSTS_PTXFE GINTSTS_PTXFE_Msk // Periodic TxFIFO empty #define GINTSTS_LPMINT_Pos (27U) -#define GINTSTS_LPMINT_Msk (0x1UL << GINTSTS_LPMINT_Pos) // 0x08000000 */ -#define GINTSTS_LPMINT GINTSTS_LPMINT_Msk // LPM interrupt */ +#define GINTSTS_LPMINT_Msk (0x1UL << GINTSTS_LPMINT_Pos) // 0x08000000 +#define GINTSTS_LPMINT GINTSTS_LPMINT_Msk // LPM interrupt #define GINTSTS_CIDSCHG_Pos (28U) -#define GINTSTS_CIDSCHG_Msk (0x1UL << GINTSTS_CIDSCHG_Pos) // 0x10000000 */ -#define GINTSTS_CIDSCHG GINTSTS_CIDSCHG_Msk // Connector ID status change */ +#define GINTSTS_CIDSCHG_Msk (0x1UL << GINTSTS_CIDSCHG_Pos) // 0x10000000 +#define GINTSTS_CIDSCHG GINTSTS_CIDSCHG_Msk // Connector ID status change #define GINTSTS_DISCINT_Pos (29U) -#define GINTSTS_DISCINT_Msk (0x1UL << GINTSTS_DISCINT_Pos) // 0x20000000 */ -#define GINTSTS_DISCINT GINTSTS_DISCINT_Msk // Disconnect detected interrupt */ +#define GINTSTS_DISCINT_Msk (0x1UL << GINTSTS_DISCINT_Pos) // 0x20000000 +#define GINTSTS_DISCINT GINTSTS_DISCINT_Msk // Disconnect detected interrupt #define GINTSTS_SRQINT_Pos (30U) -#define GINTSTS_SRQINT_Msk (0x1UL << GINTSTS_SRQINT_Pos) // 0x40000000 */ -#define GINTSTS_SRQINT GINTSTS_SRQINT_Msk // Session request/new session detected interrupt */ +#define GINTSTS_SRQINT_Msk (0x1UL << GINTSTS_SRQINT_Pos) // 0x40000000 +#define GINTSTS_SRQINT GINTSTS_SRQINT_Msk // Session request/new session detected interrupt #define GINTSTS_WKUINT_Pos (31U) -#define GINTSTS_WKUINT_Msk (0x1UL << GINTSTS_WKUINT_Pos) // 0x80000000 */ -#define GINTSTS_WKUINT GINTSTS_WKUINT_Msk // Resume/remote wakeup detected interrupt */ +#define GINTSTS_WKUINT_Msk (0x1UL << GINTSTS_WKUINT_Pos) // 0x80000000 +#define GINTSTS_WKUINT GINTSTS_WKUINT_Msk // Resume/remote wakeup detected interrupt /******************** Bit definition for GINTMSK register ********************/ #define GINTMSK_MMISM_Pos (1U) -#define GINTMSK_MMISM_Msk (0x1UL << GINTMSK_MMISM_Pos) // 0x00000002 */ -#define GINTMSK_MMISM GINTMSK_MMISM_Msk // Mode mismatch interrupt mask */ +#define GINTMSK_MMISM_Msk (0x1UL << GINTMSK_MMISM_Pos) // 0x00000002 +#define GINTMSK_MMISM GINTMSK_MMISM_Msk // Mode mismatch interrupt mask #define GINTMSK_OTGINT_Pos (2U) -#define GINTMSK_OTGINT_Msk (0x1UL << GINTMSK_OTGINT_Pos) // 0x00000004 */ -#define GINTMSK_OTGINT GINTMSK_OTGINT_Msk // OTG interrupt mask */ +#define GINTMSK_OTGINT_Msk (0x1UL << GINTMSK_OTGINT_Pos) // 0x00000004 +#define GINTMSK_OTGINT GINTMSK_OTGINT_Msk // OTG interrupt mask #define GINTMSK_SOFM_Pos (3U) -#define GINTMSK_SOFM_Msk (0x1UL << GINTMSK_SOFM_Pos) // 0x00000008 */ -#define GINTMSK_SOFM GINTMSK_SOFM_Msk // Start of frame mask */ +#define GINTMSK_SOFM_Msk (0x1UL << GINTMSK_SOFM_Pos) // 0x00000008 +#define GINTMSK_SOFM GINTMSK_SOFM_Msk // Start of frame mask #define GINTMSK_RXFLVLM_Pos (4U) -#define GINTMSK_RXFLVLM_Msk (0x1UL << GINTMSK_RXFLVLM_Pos) // 0x00000010 */ -#define GINTMSK_RXFLVLM GINTMSK_RXFLVLM_Msk // Receive FIFO nonempty mask */ +#define GINTMSK_RXFLVLM_Msk (0x1UL << GINTMSK_RXFLVLM_Pos) // 0x00000010 +#define GINTMSK_RXFLVLM GINTMSK_RXFLVLM_Msk // Receive FIFO nonempty mask #define GINTMSK_NPTXFEM_Pos (5U) -#define GINTMSK_NPTXFEM_Msk (0x1UL << GINTMSK_NPTXFEM_Pos) // 0x00000020 */ -#define GINTMSK_NPTXFEM GINTMSK_NPTXFEM_Msk // Nonperiodic TxFIFO empty mask */ +#define GINTMSK_NPTXFEM_Msk (0x1UL << GINTMSK_NPTXFEM_Pos) // 0x00000020 +#define GINTMSK_NPTXFEM GINTMSK_NPTXFEM_Msk // Nonperiodic TxFIFO empty mask #define GINTMSK_GINAKEFFM_Pos (6U) -#define GINTMSK_GINAKEFFM_Msk (0x1UL << GINTMSK_GINAKEFFM_Pos) // 0x00000040 */ -#define GINTMSK_GINAKEFFM GINTMSK_GINAKEFFM_Msk // Global nonperiodic IN NAK effective mask */ +#define GINTMSK_GINAKEFFM_Msk (0x1UL << GINTMSK_GINAKEFFM_Pos) // 0x00000040 +#define GINTMSK_GINAKEFFM GINTMSK_GINAKEFFM_Msk // Global nonperiodic IN NAK effective mask #define GINTMSK_GONAKEFFM_Pos (7U) -#define GINTMSK_GONAKEFFM_Msk (0x1UL << GINTMSK_GONAKEFFM_Pos) // 0x00000080 */ -#define GINTMSK_GONAKEFFM GINTMSK_GONAKEFFM_Msk // Global OUT NAK effective mask */ +#define GINTMSK_GONAKEFFM_Msk (0x1UL << GINTMSK_GONAKEFFM_Pos) // 0x00000080 +#define GINTMSK_GONAKEFFM GINTMSK_GONAKEFFM_Msk // Global OUT NAK effective mask #define GINTMSK_ESUSPM_Pos (10U) -#define GINTMSK_ESUSPM_Msk (0x1UL << GINTMSK_ESUSPM_Pos) // 0x00000400 */ -#define GINTMSK_ESUSPM GINTMSK_ESUSPM_Msk // Early suspend mask */ +#define GINTMSK_ESUSPM_Msk (0x1UL << GINTMSK_ESUSPM_Pos) // 0x00000400 +#define GINTMSK_ESUSPM GINTMSK_ESUSPM_Msk // Early suspend mask #define GINTMSK_USBSUSPM_Pos (11U) -#define GINTMSK_USBSUSPM_Msk (0x1UL << GINTMSK_USBSUSPM_Pos) // 0x00000800 */ -#define GINTMSK_USBSUSPM GINTMSK_USBSUSPM_Msk // USB suspend mask */ +#define GINTMSK_USBSUSPM_Msk (0x1UL << GINTMSK_USBSUSPM_Pos) // 0x00000800 +#define GINTMSK_USBSUSPM GINTMSK_USBSUSPM_Msk // USB suspend mask #define GINTMSK_USBRST_Pos (12U) -#define GINTMSK_USBRST_Msk (0x1UL << GINTMSK_USBRST_Pos) // 0x00001000 */ -#define GINTMSK_USBRST GINTMSK_USBRST_Msk // USB reset mask */ +#define GINTMSK_USBRST_Msk (0x1UL << GINTMSK_USBRST_Pos) // 0x00001000 +#define GINTMSK_USBRST GINTMSK_USBRST_Msk // USB reset mask #define GINTMSK_ENUMDNEM_Pos (13U) -#define GINTMSK_ENUMDNEM_Msk (0x1UL << GINTMSK_ENUMDNEM_Pos) // 0x00002000 */ -#define GINTMSK_ENUMDNEM GINTMSK_ENUMDNEM_Msk // Enumeration done mask */ +#define GINTMSK_ENUMDNEM_Msk (0x1UL << GINTMSK_ENUMDNEM_Pos) // 0x00002000 +#define GINTMSK_ENUMDNEM GINTMSK_ENUMDNEM_Msk // Enumeration done mask #define GINTMSK_ISOODRPM_Pos (14U) -#define GINTMSK_ISOODRPM_Msk (0x1UL << GINTMSK_ISOODRPM_Pos) // 0x00004000 */ -#define GINTMSK_ISOODRPM GINTMSK_ISOODRPM_Msk // Isochronous OUT packet dropped interrupt mask */ +#define GINTMSK_ISOODRPM_Msk (0x1UL << GINTMSK_ISOODRPM_Pos) // 0x00004000 +#define GINTMSK_ISOODRPM GINTMSK_ISOODRPM_Msk // Isochronous OUT packet dropped interrupt mask #define GINTMSK_EOPFM_Pos (15U) -#define GINTMSK_EOPFM_Msk (0x1UL << GINTMSK_EOPFM_Pos) // 0x00008000 */ -#define GINTMSK_EOPFM GINTMSK_EOPFM_Msk // End of periodic frame interrupt mask */ +#define GINTMSK_EOPFM_Msk (0x1UL << GINTMSK_EOPFM_Pos) // 0x00008000 +#define GINTMSK_EOPFM GINTMSK_EOPFM_Msk // End of periodic frame interrupt mask #define GINTMSK_EPMISM_Pos (17U) -#define GINTMSK_EPMISM_Msk (0x1UL << GINTMSK_EPMISM_Pos) // 0x00020000 */ -#define GINTMSK_EPMISM GINTMSK_EPMISM_Msk // Endpoint mismatch interrupt mask */ +#define GINTMSK_EPMISM_Msk (0x1UL << GINTMSK_EPMISM_Pos) // 0x00020000 +#define GINTMSK_EPMISM GINTMSK_EPMISM_Msk // Endpoint mismatch interrupt mask #define GINTMSK_IEPINT_Pos (18U) -#define GINTMSK_IEPINT_Msk (0x1UL << GINTMSK_IEPINT_Pos) // 0x00040000 */ -#define GINTMSK_IEPINT GINTMSK_IEPINT_Msk // IN endpoints interrupt mask */ +#define GINTMSK_IEPINT_Msk (0x1UL << GINTMSK_IEPINT_Pos) // 0x00040000 +#define GINTMSK_IEPINT GINTMSK_IEPINT_Msk // IN endpoints interrupt mask #define GINTMSK_OEPINT_Pos (19U) -#define GINTMSK_OEPINT_Msk (0x1UL << GINTMSK_OEPINT_Pos) // 0x00080000 */ -#define GINTMSK_OEPINT GINTMSK_OEPINT_Msk // OUT endpoints interrupt mask */ +#define GINTMSK_OEPINT_Msk (0x1UL << GINTMSK_OEPINT_Pos) // 0x00080000 +#define GINTMSK_OEPINT GINTMSK_OEPINT_Msk // OUT endpoints interrupt mask #define GINTMSK_IISOIXFRM_Pos (20U) -#define GINTMSK_IISOIXFRM_Msk (0x1UL << GINTMSK_IISOIXFRM_Pos) // 0x00100000 */ -#define GINTMSK_IISOIXFRM GINTMSK_IISOIXFRM_Msk // Incomplete isochronous IN transfer mask */ +#define GINTMSK_IISOIXFRM_Msk (0x1UL << GINTMSK_IISOIXFRM_Pos) // 0x00100000 +#define GINTMSK_IISOIXFRM GINTMSK_IISOIXFRM_Msk // Incomplete isochronous IN transfer mask #define GINTMSK_PXFRM_IISOOXFRM_Pos (21U) -#define GINTMSK_PXFRM_IISOOXFRM_Msk (0x1UL << GINTMSK_PXFRM_IISOOXFRM_Pos) // 0x00200000 */ -#define GINTMSK_PXFRM_IISOOXFRM GINTMSK_PXFRM_IISOOXFRM_Msk // Incomplete periodic transfer mask */ +#define GINTMSK_PXFRM_IISOOXFRM_Msk (0x1UL << GINTMSK_PXFRM_IISOOXFRM_Pos) // 0x00200000 +#define GINTMSK_PXFRM_IISOOXFRM GINTMSK_PXFRM_IISOOXFRM_Msk // Incomplete periodic transfer mask #define GINTMSK_FSUSPM_Pos (22U) -#define GINTMSK_FSUSPM_Msk (0x1UL << GINTMSK_FSUSPM_Pos) // 0x00400000 */ -#define GINTMSK_FSUSPM GINTMSK_FSUSPM_Msk // Data fetch suspended mask */ +#define GINTMSK_FSUSPM_Msk (0x1UL << GINTMSK_FSUSPM_Pos) // 0x00400000 +#define GINTMSK_FSUSPM GINTMSK_FSUSPM_Msk // Data fetch suspended mask #define GINTMSK_RSTDEM_Pos (23U) -#define GINTMSK_RSTDEM_Msk (0x1UL << GINTMSK_RSTDEM_Pos) // 0x00800000 */ -#define GINTMSK_RSTDEM GINTMSK_RSTDEM_Msk // Reset detected interrupt mask */ +#define GINTMSK_RSTDEM_Msk (0x1UL << GINTMSK_RSTDEM_Pos) // 0x00800000 +#define GINTMSK_RSTDEM GINTMSK_RSTDEM_Msk // Reset detected interrupt mask #define GINTMSK_PRTIM_Pos (24U) -#define GINTMSK_PRTIM_Msk (0x1UL << GINTMSK_PRTIM_Pos) // 0x01000000 */ -#define GINTMSK_PRTIM GINTMSK_PRTIM_Msk // Host port interrupt mask */ +#define GINTMSK_PRTIM_Msk (0x1UL << GINTMSK_PRTIM_Pos) // 0x01000000 +#define GINTMSK_PRTIM GINTMSK_PRTIM_Msk // Host port interrupt mask #define GINTMSK_HCIM_Pos (25U) -#define GINTMSK_HCIM_Msk (0x1UL << GINTMSK_HCIM_Pos) // 0x02000000 */ -#define GINTMSK_HCIM GINTMSK_HCIM_Msk // Host channels interrupt mask */ +#define GINTMSK_HCIM_Msk (0x1UL << GINTMSK_HCIM_Pos) // 0x02000000 +#define GINTMSK_HCIM GINTMSK_HCIM_Msk // Host channels interrupt mask #define GINTMSK_PTXFEM_Pos (26U) -#define GINTMSK_PTXFEM_Msk (0x1UL << GINTMSK_PTXFEM_Pos) // 0x04000000 */ -#define GINTMSK_PTXFEM GINTMSK_PTXFEM_Msk // Periodic TxFIFO empty mask */ +#define GINTMSK_PTXFEM_Msk (0x1UL << GINTMSK_PTXFEM_Pos) // 0x04000000 +#define GINTMSK_PTXFEM GINTMSK_PTXFEM_Msk // Periodic TxFIFO empty mask #define GINTMSK_LPMINTM_Pos (27U) -#define GINTMSK_LPMINTM_Msk (0x1UL << GINTMSK_LPMINTM_Pos) // 0x08000000 */ -#define GINTMSK_LPMINTM GINTMSK_LPMINTM_Msk // LPM interrupt Mask */ +#define GINTMSK_LPMINTM_Msk (0x1UL << GINTMSK_LPMINTM_Pos) // 0x08000000 +#define GINTMSK_LPMINTM GINTMSK_LPMINTM_Msk // LPM interrupt Mask #define GINTMSK_CIDSCHGM_Pos (28U) -#define GINTMSK_CIDSCHGM_Msk (0x1UL << GINTMSK_CIDSCHGM_Pos) // 0x10000000 */ -#define GINTMSK_CIDSCHGM GINTMSK_CIDSCHGM_Msk // Connector ID status change mask */ +#define GINTMSK_CIDSCHGM_Msk (0x1UL << GINTMSK_CIDSCHGM_Pos) // 0x10000000 +#define GINTMSK_CIDSCHGM GINTMSK_CIDSCHGM_Msk // Connector ID status change mask #define GINTMSK_DISCINT_Pos (29U) -#define GINTMSK_DISCINT_Msk (0x1UL << GINTMSK_DISCINT_Pos) // 0x20000000 */ -#define GINTMSK_DISCINT GINTMSK_DISCINT_Msk // Disconnect detected interrupt mask */ +#define GINTMSK_DISCINT_Msk (0x1UL << GINTMSK_DISCINT_Pos) // 0x20000000 +#define GINTMSK_DISCINT GINTMSK_DISCINT_Msk // Disconnect detected interrupt mask #define GINTMSK_SRQIM_Pos (30U) -#define GINTMSK_SRQIM_Msk (0x1UL << GINTMSK_SRQIM_Pos) // 0x40000000 */ -#define GINTMSK_SRQIM GINTMSK_SRQIM_Msk // Session request/new session detected interrupt mask */ +#define GINTMSK_SRQIM_Msk (0x1UL << GINTMSK_SRQIM_Pos) // 0x40000000 +#define GINTMSK_SRQIM GINTMSK_SRQIM_Msk // Session request/new session detected interrupt mask #define GINTMSK_WUIM_Pos (31U) -#define GINTMSK_WUIM_Msk (0x1UL << GINTMSK_WUIM_Pos) // 0x80000000 */ -#define GINTMSK_WUIM GINTMSK_WUIM_Msk // Resume/remote wakeup detected interrupt mask */ +#define GINTMSK_WUIM_Msk (0x1UL << GINTMSK_WUIM_Pos) // 0x80000000 +#define GINTMSK_WUIM GINTMSK_WUIM_Msk // Resume/remote wakeup detected interrupt mask /******************** Bit definition for DAINT register ********************/ #define DAINT_IEPINT_Pos (0U) -#define DAINT_IEPINT_Msk (0xFFFFUL << DAINT_IEPINT_Pos) // 0x0000FFFF */ -#define DAINT_IEPINT DAINT_IEPINT_Msk // IN endpoint interrupt bits */ +#define DAINT_IEPINT_Msk (0xFFFFUL << DAINT_IEPINT_Pos) // 0x0000FFFF +#define DAINT_IEPINT DAINT_IEPINT_Msk // IN endpoint interrupt bits #define DAINT_OEPINT_Pos (16U) -#define DAINT_OEPINT_Msk (0xFFFFUL << DAINT_OEPINT_Pos) // 0xFFFF0000 */ -#define DAINT_OEPINT DAINT_OEPINT_Msk // OUT endpoint interrupt bits */ +#define DAINT_OEPINT_Msk (0xFFFFUL << DAINT_OEPINT_Pos) // 0xFFFF0000 +#define DAINT_OEPINT DAINT_OEPINT_Msk // OUT endpoint interrupt bits /******************** Bit definition for HAINTMSK register ********************/ #define HAINTMSK_HAINTM_Pos (0U) -#define HAINTMSK_HAINTM_Msk (0xFFFFUL << HAINTMSK_HAINTM_Pos) // 0x0000FFFF */ -#define HAINTMSK_HAINTM HAINTMSK_HAINTM_Msk // Channel interrupt mask */ +#define HAINTMSK_HAINTM_Msk (0xFFFFUL << HAINTMSK_HAINTM_Pos) // 0x0000FFFF +#define HAINTMSK_HAINTM HAINTMSK_HAINTM_Msk // Channel interrupt mask /******************** Bit definition for GRXSTSP register ********************/ #define GRXSTSP_EPNUM_Pos (0U) -#define GRXSTSP_EPNUM_Msk (0xFUL << GRXSTSP_EPNUM_Pos) // 0x0000000F */ -#define GRXSTSP_EPNUM GRXSTSP_EPNUM_Msk // IN EP interrupt mask bits */ +#define GRXSTSP_EPNUM_Msk (0xFUL << GRXSTSP_EPNUM_Pos) // 0x0000000F +#define GRXSTSP_EPNUM GRXSTSP_EPNUM_Msk // IN EP interrupt mask bits #define GRXSTSP_BCNT_Pos (4U) -#define GRXSTSP_BCNT_Msk (0x7FFUL << GRXSTSP_BCNT_Pos) // 0x00007FF0 */ -#define GRXSTSP_BCNT GRXSTSP_BCNT_Msk // OUT EP interrupt mask bits */ +#define GRXSTSP_BCNT_Msk (0x7FFUL << GRXSTSP_BCNT_Pos) // 0x00007FF0 +#define GRXSTSP_BCNT GRXSTSP_BCNT_Msk // OUT EP interrupt mask bits #define GRXSTSP_DPID_Pos (15U) -#define GRXSTSP_DPID_Msk (0x3UL << GRXSTSP_DPID_Pos) // 0x00018000 */ -#define GRXSTSP_DPID GRXSTSP_DPID_Msk // OUT EP interrupt mask bits */ +#define GRXSTSP_DPID_Msk (0x3UL << GRXSTSP_DPID_Pos) // 0x00018000 +#define GRXSTSP_DPID GRXSTSP_DPID_Msk // OUT EP interrupt mask bits #define GRXSTSP_PKTSTS_Pos (17U) -#define GRXSTSP_PKTSTS_Msk (0xFUL << GRXSTSP_PKTSTS_Pos) // 0x001E0000 */ -#define GRXSTSP_PKTSTS GRXSTSP_PKTSTS_Msk // OUT EP interrupt mask bits */ +#define GRXSTSP_PKTSTS_Msk (0xFUL << GRXSTSP_PKTSTS_Pos) // 0x001E0000 +#define GRXSTSP_PKTSTS GRXSTSP_PKTSTS_Msk // OUT EP interrupt mask bits #define GRXSTS_PKTSTS_GLOBALOUTNAK 1 #define GRXSTS_PKTSTS_OUTRX 2 @@ -934,773 +934,803 @@ TU_VERIFY_STATIC(offsetof(dwc2_regs_t, fifo ) == 0x1000, "incorrect size"); /******************** Bit definition for DAINTMSK register ********************/ #define DAINTMSK_IEPM_Pos (0U) -#define DAINTMSK_IEPM_Msk (0xFFFFUL << DAINTMSK_IEPM_Pos) // 0x0000FFFF */ -#define DAINTMSK_IEPM DAINTMSK_IEPM_Msk // IN EP interrupt mask bits */ +#define DAINTMSK_IEPM_Msk (0xFFFFUL << DAINTMSK_IEPM_Pos) // 0x0000FFFF +#define DAINTMSK_IEPM DAINTMSK_IEPM_Msk // IN EP interrupt mask bits #define DAINTMSK_OEPM_Pos (16U) -#define DAINTMSK_OEPM_Msk (0xFFFFUL << DAINTMSK_OEPM_Pos) // 0xFFFF0000 */ -#define DAINTMSK_OEPM DAINTMSK_OEPM_Msk // OUT EP interrupt mask bits */ +#define DAINTMSK_OEPM_Msk (0xFFFFUL << DAINTMSK_OEPM_Pos) // 0xFFFF0000 +#define DAINTMSK_OEPM DAINTMSK_OEPM_Msk // OUT EP interrupt mask bits #if 0 /******************** Bit definition for OTG register ********************/ #define CHNUM_Pos (0U) -#define CHNUM_Msk (0xFUL << CHNUM_Pos) // 0x0000000F */ -#define CHNUM CHNUM_Msk // Channel number */ -#define CHNUM_0 (0x1UL << CHNUM_Pos) // 0x00000001 */ -#define CHNUM_1 (0x2UL << CHNUM_Pos) // 0x00000002 */ -#define CHNUM_2 (0x4UL << CHNUM_Pos) // 0x00000004 */ -#define CHNUM_3 (0x8UL << CHNUM_Pos) // 0x00000008 */ +#define CHNUM_Msk (0xFUL << CHNUM_Pos) // 0x0000000F +#define CHNUM CHNUM_Msk // Channel number +#define CHNUM_0 (0x1UL << CHNUM_Pos) // 0x00000001 +#define CHNUM_1 (0x2UL << CHNUM_Pos) // 0x00000002 +#define CHNUM_2 (0x4UL << CHNUM_Pos) // 0x00000004 +#define CHNUM_3 (0x8UL << CHNUM_Pos) // 0x00000008 #define BCNT_Pos (4U) -#define BCNT_Msk (0x7FFUL << BCNT_Pos) // 0x00007FF0 */ -#define BCNT BCNT_Msk // Byte count */ +#define BCNT_Msk (0x7FFUL << BCNT_Pos) // 0x00007FF0 +#define BCNT BCNT_Msk // Byte count #define DPID_Pos (15U) -#define DPID_Msk (0x3UL << DPID_Pos) // 0x00018000 */ -#define DPID DPID_Msk // Data PID */ -#define DPID_0 (0x1UL << DPID_Pos) // 0x00008000 */ -#define DPID_1 (0x2UL << DPID_Pos) // 0x00010000 */ +#define DPID_Msk (0x3UL << DPID_Pos) // 0x00018000 +#define DPID DPID_Msk // Data PID +#define DPID_0 (0x1UL << DPID_Pos) // 0x00008000 +#define DPID_1 (0x2UL << DPID_Pos) // 0x00010000 #define PKTSTS_Pos (17U) -#define PKTSTS_Msk (0xFUL << PKTSTS_Pos) // 0x001E0000 */ -#define PKTSTS PKTSTS_Msk // Packet status */ -#define PKTSTS_0 (0x1UL << PKTSTS_Pos) // 0x00020000 */ -#define PKTSTS_1 (0x2UL << PKTSTS_Pos) // 0x00040000 */ -#define PKTSTS_2 (0x4UL << PKTSTS_Pos) // 0x00080000 */ -#define PKTSTS_3 (0x8UL << PKTSTS_Pos) // 0x00100000 */ +#define PKTSTS_Msk (0xFUL << PKTSTS_Pos) // 0x001E0000 +#define PKTSTS PKTSTS_Msk // Packet status +#define PKTSTS_0 (0x1UL << PKTSTS_Pos) // 0x00020000 +#define PKTSTS_1 (0x2UL << PKTSTS_Pos) // 0x00040000 +#define PKTSTS_2 (0x4UL << PKTSTS_Pos) // 0x00080000 +#define PKTSTS_3 (0x8UL << PKTSTS_Pos) // 0x00100000 #define EPNUM_Pos (0U) -#define EPNUM_Msk (0xFUL << EPNUM_Pos) // 0x0000000F */ -#define EPNUM EPNUM_Msk // Endpoint number */ -#define EPNUM_0 (0x1UL << EPNUM_Pos) // 0x00000001 */ -#define EPNUM_1 (0x2UL << EPNUM_Pos) // 0x00000002 */ -#define EPNUM_2 (0x4UL << EPNUM_Pos) // 0x00000004 */ -#define EPNUM_3 (0x8UL << EPNUM_Pos) // 0x00000008 */ +#define EPNUM_Msk (0xFUL << EPNUM_Pos) // 0x0000000F +#define EPNUM EPNUM_Msk // Endpoint number +#define EPNUM_0 (0x1UL << EPNUM_Pos) // 0x00000001 +#define EPNUM_1 (0x2UL << EPNUM_Pos) // 0x00000002 +#define EPNUM_2 (0x4UL << EPNUM_Pos) // 0x00000004 +#define EPNUM_3 (0x8UL << EPNUM_Pos) // 0x00000008 #define FRMNUM_Pos (21U) -#define FRMNUM_Msk (0xFUL << FRMNUM_Pos) // 0x01E00000 */ -#define FRMNUM FRMNUM_Msk // Frame number */ -#define FRMNUM_0 (0x1UL << FRMNUM_Pos) // 0x00200000 */ -#define FRMNUM_1 (0x2UL << FRMNUM_Pos) // 0x00400000 */ -#define FRMNUM_2 (0x4UL << FRMNUM_Pos) // 0x00800000 */ -#define FRMNUM_3 (0x8UL << FRMNUM_Pos) // 0x01000000 */ +#define FRMNUM_Msk (0xFUL << FRMNUM_Pos) // 0x01E00000 +#define FRMNUM FRMNUM_Msk // Frame number +#define FRMNUM_0 (0x1UL << FRMNUM_Pos) // 0x00200000 +#define FRMNUM_1 (0x2UL << FRMNUM_Pos) // 0x00400000 +#define FRMNUM_2 (0x4UL << FRMNUM_Pos) // 0x00800000 +#define FRMNUM_3 (0x8UL << FRMNUM_Pos) // 0x01000000 #endif /******************** Bit definition for GRXFSIZ register ********************/ #define GRXFSIZ_RXFD_Pos (0U) -#define GRXFSIZ_RXFD_Msk (0xFFFFUL << GRXFSIZ_RXFD_Pos) // 0x0000FFFF */ -#define GRXFSIZ_RXFD GRXFSIZ_RXFD_Msk // RxFIFO depth */ +#define GRXFSIZ_RXFD_Msk (0xFFFFUL << GRXFSIZ_RXFD_Pos) // 0x0000FFFF +#define GRXFSIZ_RXFD GRXFSIZ_RXFD_Msk // RxFIFO depth /******************** Bit definition for DVBUSDIS register ********************/ #define DVBUSDIS_VBUSDT_Pos (0U) -#define DVBUSDIS_VBUSDT_Msk (0xFFFFUL << DVBUSDIS_VBUSDT_Pos) // 0x0000FFFF */ -#define DVBUSDIS_VBUSDT DVBUSDIS_VBUSDT_Msk // Device VBUS discharge time */ +#define DVBUSDIS_VBUSDT_Msk (0xFFFFUL << DVBUSDIS_VBUSDT_Pos) // 0x0000FFFF +#define DVBUSDIS_VBUSDT DVBUSDIS_VBUSDT_Msk // Device VBUS discharge time /******************** Bit definition for OTG register ********************/ #define GNPTXFSIZ_NPTXFSA_Pos (0U) -#define GNPTXFSIZ_NPTXFSA_Msk (0xFFFFUL << GNPTXFSIZ_NPTXFSA_Pos) // 0x0000FFFF */ -#define GNPTXFSIZ_NPTXFSA GNPTXFSIZ_NPTXFSA_Msk // Nonperiodic transmit RAM start address */ +#define GNPTXFSIZ_NPTXFSA_Msk (0xFFFFUL << GNPTXFSIZ_NPTXFSA_Pos) // 0x0000FFFF +#define GNPTXFSIZ_NPTXFSA GNPTXFSIZ_NPTXFSA_Msk // Nonperiodic transmit RAM start address #define GNPTXFSIZ_NPTXFD_Pos (16U) -#define GNPTXFSIZ_NPTXFD_Msk (0xFFFFUL << GNPTXFSIZ_NPTXFD_Pos) // 0xFFFF0000 */ -#define GNPTXFSIZ_NPTXFD GNPTXFSIZ_NPTXFD_Msk // Nonperiodic TxFIFO depth */ +#define GNPTXFSIZ_NPTXFD_Msk (0xFFFFUL << GNPTXFSIZ_NPTXFD_Pos) // 0xFFFF0000 +#define GNPTXFSIZ_NPTXFD GNPTXFSIZ_NPTXFD_Msk // Nonperiodic TxFIFO depth #define DIEPTXF0_TX0FSA_Pos (0U) -#define DIEPTXF0_TX0FSA_Msk (0xFFFFUL << DIEPTXF0_TX0FSA_Pos) // 0x0000FFFF */ -#define DIEPTXF0_TX0FSA DIEPTXF0_TX0FSA_Msk // Endpoint 0 transmit RAM start address */ +#define DIEPTXF0_TX0FSA_Msk (0xFFFFUL << DIEPTXF0_TX0FSA_Pos) // 0x0000FFFF +#define DIEPTXF0_TX0FSA DIEPTXF0_TX0FSA_Msk // Endpoint 0 transmit RAM start address #define DIEPTXF0_TX0FD_Pos (16U) -#define DIEPTXF0_TX0FD_Msk (0xFFFFUL << DIEPTXF0_TX0FD_Pos) // 0xFFFF0000 */ -#define DIEPTXF0_TX0FD DIEPTXF0_TX0FD_Msk // Endpoint 0 TxFIFO depth */ +#define DIEPTXF0_TX0FD_Msk (0xFFFFUL << DIEPTXF0_TX0FD_Pos) // 0xFFFF0000 +#define DIEPTXF0_TX0FD DIEPTXF0_TX0FD_Msk // Endpoint 0 TxFIFO depth /******************** Bit definition for DVBUSPULSE register ********************/ #define DVBUSPULSE_DVBUSP_Pos (0U) -#define DVBUSPULSE_DVBUSP_Msk (0xFFFUL << DVBUSPULSE_DVBUSP_Pos) // 0x00000FFF */ -#define DVBUSPULSE_DVBUSP DVBUSPULSE_DVBUSP_Msk // Device VBUS pulsing time */ +#define DVBUSPULSE_DVBUSP_Msk (0xFFFUL << DVBUSPULSE_DVBUSP_Pos) // 0x00000FFF +#define DVBUSPULSE_DVBUSP DVBUSPULSE_DVBUSP_Msk // Device VBUS pulsing time /******************** Bit definition for GNPTXSTS register ********************/ #define GNPTXSTS_NPTXFSAV_Pos (0U) -#define GNPTXSTS_NPTXFSAV_Msk (0xFFFFUL << GNPTXSTS_NPTXFSAV_Pos) // 0x0000FFFF */ -#define GNPTXSTS_NPTXFSAV GNPTXSTS_NPTXFSAV_Msk // Nonperiodic TxFIFO space available */ +#define GNPTXSTS_NPTXFSAV_Msk (0xFFFFUL << GNPTXSTS_NPTXFSAV_Pos) // 0x0000FFFF +#define GNPTXSTS_NPTXFSAV GNPTXSTS_NPTXFSAV_Msk // Nonperiodic TxFIFO space available #define GNPTXSTS_NPTQXSAV_Pos (16U) -#define GNPTXSTS_NPTQXSAV_Msk (0xFFUL << GNPTXSTS_NPTQXSAV_Pos) // 0x00FF0000 */ -#define GNPTXSTS_NPTQXSAV GNPTXSTS_NPTQXSAV_Msk // Nonperiodic transmit request queue space available */ -#define GNPTXSTS_NPTQXSAV_0 (0x01UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00010000 */ -#define GNPTXSTS_NPTQXSAV_1 (0x02UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00020000 */ -#define GNPTXSTS_NPTQXSAV_2 (0x04UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00040000 */ -#define GNPTXSTS_NPTQXSAV_3 (0x08UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00080000 */ -#define GNPTXSTS_NPTQXSAV_4 (0x10UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00100000 */ -#define GNPTXSTS_NPTQXSAV_5 (0x20UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00200000 */ -#define GNPTXSTS_NPTQXSAV_6 (0x40UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00400000 */ -#define GNPTXSTS_NPTQXSAV_7 (0x80UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00800000 */ +#define GNPTXSTS_NPTQXSAV_Msk (0xFFUL << GNPTXSTS_NPTQXSAV_Pos) // 0x00FF0000 +#define GNPTXSTS_NPTQXSAV GNPTXSTS_NPTQXSAV_Msk // Nonperiodic transmit request queue space available +#define GNPTXSTS_NPTQXSAV_0 (0x01UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00010000 +#define GNPTXSTS_NPTQXSAV_1 (0x02UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00020000 +#define GNPTXSTS_NPTQXSAV_2 (0x04UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00040000 +#define GNPTXSTS_NPTQXSAV_3 (0x08UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00080000 +#define GNPTXSTS_NPTQXSAV_4 (0x10UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00100000 +#define GNPTXSTS_NPTQXSAV_5 (0x20UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00200000 +#define GNPTXSTS_NPTQXSAV_6 (0x40UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00400000 +#define GNPTXSTS_NPTQXSAV_7 (0x80UL << GNPTXSTS_NPTQXSAV_Pos) // 0x00800000 #define GNPTXSTS_NPTXQTOP_Pos (24U) -#define GNPTXSTS_NPTXQTOP_Msk (0x7FUL << GNPTXSTS_NPTXQTOP_Pos) // 0x7F000000 */ -#define GNPTXSTS_NPTXQTOP GNPTXSTS_NPTXQTOP_Msk // Top of the nonperiodic transmit request queue */ -#define GNPTXSTS_NPTXQTOP_0 (0x01UL << GNPTXSTS_NPTXQTOP_Pos) // 0x01000000 */ -#define GNPTXSTS_NPTXQTOP_1 (0x02UL << GNPTXSTS_NPTXQTOP_Pos) // 0x02000000 */ -#define GNPTXSTS_NPTXQTOP_2 (0x04UL << GNPTXSTS_NPTXQTOP_Pos) // 0x04000000 */ -#define GNPTXSTS_NPTXQTOP_3 (0x08UL << GNPTXSTS_NPTXQTOP_Pos) // 0x08000000 */ -#define GNPTXSTS_NPTXQTOP_4 (0x10UL << GNPTXSTS_NPTXQTOP_Pos) // 0x10000000 */ -#define GNPTXSTS_NPTXQTOP_5 (0x20UL << GNPTXSTS_NPTXQTOP_Pos) // 0x20000000 */ -#define GNPTXSTS_NPTXQTOP_6 (0x40UL << GNPTXSTS_NPTXQTOP_Pos) // 0x40000000 */ +#define GNPTXSTS_NPTXQTOP_Msk (0x7FUL << GNPTXSTS_NPTXQTOP_Pos) // 0x7F000000 +#define GNPTXSTS_NPTXQTOP GNPTXSTS_NPTXQTOP_Msk // Top of the nonperiodic transmit request queue +#define GNPTXSTS_NPTXQTOP_0 (0x01UL << GNPTXSTS_NPTXQTOP_Pos) // 0x01000000 +#define GNPTXSTS_NPTXQTOP_1 (0x02UL << GNPTXSTS_NPTXQTOP_Pos) // 0x02000000 +#define GNPTXSTS_NPTXQTOP_2 (0x04UL << GNPTXSTS_NPTXQTOP_Pos) // 0x04000000 +#define GNPTXSTS_NPTXQTOP_3 (0x08UL << GNPTXSTS_NPTXQTOP_Pos) // 0x08000000 +#define GNPTXSTS_NPTXQTOP_4 (0x10UL << GNPTXSTS_NPTXQTOP_Pos) // 0x10000000 +#define GNPTXSTS_NPTXQTOP_5 (0x20UL << GNPTXSTS_NPTXQTOP_Pos) // 0x20000000 +#define GNPTXSTS_NPTXQTOP_6 (0x40UL << GNPTXSTS_NPTXQTOP_Pos) // 0x40000000 /******************** Bit definition for DTHRCTL register ********************/ #define DTHRCTL_NONISOTHREN_Pos (0U) -#define DTHRCTL_NONISOTHREN_Msk (0x1UL << DTHRCTL_NONISOTHREN_Pos) // 0x00000001 */ -#define DTHRCTL_NONISOTHREN DTHRCTL_NONISOTHREN_Msk // Nonisochronous IN endpoints threshold enable */ +#define DTHRCTL_NONISOTHREN_Msk (0x1UL << DTHRCTL_NONISOTHREN_Pos) // 0x00000001 +#define DTHRCTL_NONISOTHREN DTHRCTL_NONISOTHREN_Msk // Nonisochronous IN endpoints threshold enable #define DTHRCTL_ISOTHREN_Pos (1U) -#define DTHRCTL_ISOTHREN_Msk (0x1UL << DTHRCTL_ISOTHREN_Pos) // 0x00000002 */ -#define DTHRCTL_ISOTHREN DTHRCTL_ISOTHREN_Msk // ISO IN endpoint threshold enable */ +#define DTHRCTL_ISOTHREN_Msk (0x1UL << DTHRCTL_ISOTHREN_Pos) // 0x00000002 +#define DTHRCTL_ISOTHREN DTHRCTL_ISOTHREN_Msk // ISO IN endpoint threshold enable #define DTHRCTL_TXTHRLEN_Pos (2U) -#define DTHRCTL_TXTHRLEN_Msk (0x1FFUL << DTHRCTL_TXTHRLEN_Pos) // 0x000007FC */ -#define DTHRCTL_TXTHRLEN DTHRCTL_TXTHRLEN_Msk // Transmit threshold length */ -#define DTHRCTL_TXTHRLEN_0 (0x001UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000004 */ -#define DTHRCTL_TXTHRLEN_1 (0x002UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000008 */ -#define DTHRCTL_TXTHRLEN_2 (0x004UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000010 */ -#define DTHRCTL_TXTHRLEN_3 (0x008UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000020 */ -#define DTHRCTL_TXTHRLEN_4 (0x010UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000040 */ -#define DTHRCTL_TXTHRLEN_5 (0x020UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000080 */ -#define DTHRCTL_TXTHRLEN_6 (0x040UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000100 */ -#define DTHRCTL_TXTHRLEN_7 (0x080UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000200 */ -#define DTHRCTL_TXTHRLEN_8 (0x100UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000400 */ +#define DTHRCTL_TXTHRLEN_Msk (0x1FFUL << DTHRCTL_TXTHRLEN_Pos) // 0x000007FC +#define DTHRCTL_TXTHRLEN DTHRCTL_TXTHRLEN_Msk // Transmit threshold length +#define DTHRCTL_TXTHRLEN_0 (0x001UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000004 +#define DTHRCTL_TXTHRLEN_1 (0x002UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000008 +#define DTHRCTL_TXTHRLEN_2 (0x004UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000010 +#define DTHRCTL_TXTHRLEN_3 (0x008UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000020 +#define DTHRCTL_TXTHRLEN_4 (0x010UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000040 +#define DTHRCTL_TXTHRLEN_5 (0x020UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000080 +#define DTHRCTL_TXTHRLEN_6 (0x040UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000100 +#define DTHRCTL_TXTHRLEN_7 (0x080UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000200 +#define DTHRCTL_TXTHRLEN_8 (0x100UL << DTHRCTL_TXTHRLEN_Pos) // 0x00000400 #define DTHRCTL_RXTHREN_Pos (16U) -#define DTHRCTL_RXTHREN_Msk (0x1UL << DTHRCTL_RXTHREN_Pos) // 0x00010000 */ -#define DTHRCTL_RXTHREN DTHRCTL_RXTHREN_Msk // Receive threshold enable */ +#define DTHRCTL_RXTHREN_Msk (0x1UL << DTHRCTL_RXTHREN_Pos) // 0x00010000 +#define DTHRCTL_RXTHREN DTHRCTL_RXTHREN_Msk // Receive threshold enable #define DTHRCTL_RXTHRLEN_Pos (17U) -#define DTHRCTL_RXTHRLEN_Msk (0x1FFUL << DTHRCTL_RXTHRLEN_Pos) // 0x03FE0000 */ -#define DTHRCTL_RXTHRLEN DTHRCTL_RXTHRLEN_Msk // Receive threshold length */ -#define DTHRCTL_RXTHRLEN_0 (0x001UL << DTHRCTL_RXTHRLEN_Pos) // 0x00020000 */ -#define DTHRCTL_RXTHRLEN_1 (0x002UL << DTHRCTL_RXTHRLEN_Pos) // 0x00040000 */ -#define DTHRCTL_RXTHRLEN_2 (0x004UL << DTHRCTL_RXTHRLEN_Pos) // 0x00080000 */ -#define DTHRCTL_RXTHRLEN_3 (0x008UL << DTHRCTL_RXTHRLEN_Pos) // 0x00100000 */ -#define DTHRCTL_RXTHRLEN_4 (0x010UL << DTHRCTL_RXTHRLEN_Pos) // 0x00200000 */ -#define DTHRCTL_RXTHRLEN_5 (0x020UL << DTHRCTL_RXTHRLEN_Pos) // 0x00400000 */ -#define DTHRCTL_RXTHRLEN_6 (0x040UL << DTHRCTL_RXTHRLEN_Pos) // 0x00800000 */ -#define DTHRCTL_RXTHRLEN_7 (0x080UL << DTHRCTL_RXTHRLEN_Pos) // 0x01000000 */ -#define DTHRCTL_RXTHRLEN_8 (0x100UL << DTHRCTL_RXTHRLEN_Pos) // 0x02000000 */ +#define DTHRCTL_RXTHRLEN_Msk (0x1FFUL << DTHRCTL_RXTHRLEN_Pos) // 0x03FE0000 +#define DTHRCTL_RXTHRLEN DTHRCTL_RXTHRLEN_Msk // Receive threshold length +#define DTHRCTL_RXTHRLEN_0 (0x001UL << DTHRCTL_RXTHRLEN_Pos) // 0x00020000 +#define DTHRCTL_RXTHRLEN_1 (0x002UL << DTHRCTL_RXTHRLEN_Pos) // 0x00040000 +#define DTHRCTL_RXTHRLEN_2 (0x004UL << DTHRCTL_RXTHRLEN_Pos) // 0x00080000 +#define DTHRCTL_RXTHRLEN_3 (0x008UL << DTHRCTL_RXTHRLEN_Pos) // 0x00100000 +#define DTHRCTL_RXTHRLEN_4 (0x010UL << DTHRCTL_RXTHRLEN_Pos) // 0x00200000 +#define DTHRCTL_RXTHRLEN_5 (0x020UL << DTHRCTL_RXTHRLEN_Pos) // 0x00400000 +#define DTHRCTL_RXTHRLEN_6 (0x040UL << DTHRCTL_RXTHRLEN_Pos) // 0x00800000 +#define DTHRCTL_RXTHRLEN_7 (0x080UL << DTHRCTL_RXTHRLEN_Pos) // 0x01000000 +#define DTHRCTL_RXTHRLEN_8 (0x100UL << DTHRCTL_RXTHRLEN_Pos) // 0x02000000 #define DTHRCTL_ARPEN_Pos (27U) -#define DTHRCTL_ARPEN_Msk (0x1UL << DTHRCTL_ARPEN_Pos) // 0x08000000 */ -#define DTHRCTL_ARPEN DTHRCTL_ARPEN_Msk // Arbiter parking enable */ +#define DTHRCTL_ARPEN_Msk (0x1UL << DTHRCTL_ARPEN_Pos) // 0x08000000 +#define DTHRCTL_ARPEN DTHRCTL_ARPEN_Msk // Arbiter parking enable /******************** Bit definition for DIEPEMPMSK register ********************/ #define DIEPEMPMSK_INEPTXFEM_Pos (0U) -#define DIEPEMPMSK_INEPTXFEM_Msk (0xFFFFUL << DIEPEMPMSK_INEPTXFEM_Pos) // 0x0000FFFF */ -#define DIEPEMPMSK_INEPTXFEM DIEPEMPMSK_INEPTXFEM_Msk // IN EP Tx FIFO empty interrupt mask bits */ +#define DIEPEMPMSK_INEPTXFEM_Msk (0xFFFFUL << DIEPEMPMSK_INEPTXFEM_Pos) // 0x0000FFFF +#define DIEPEMPMSK_INEPTXFEM DIEPEMPMSK_INEPTXFEM_Msk // IN EP Tx FIFO empty interrupt mask bits /******************** Bit definition for DEACHINT register ********************/ #define DEACHINT_IEP1INT_Pos (1U) -#define DEACHINT_IEP1INT_Msk (0x1UL << DEACHINT_IEP1INT_Pos) // 0x00000002 */ -#define DEACHINT_IEP1INT DEACHINT_IEP1INT_Msk // IN endpoint 1interrupt bit */ +#define DEACHINT_IEP1INT_Msk (0x1UL << DEACHINT_IEP1INT_Pos) // 0x00000002 +#define DEACHINT_IEP1INT DEACHINT_IEP1INT_Msk // IN endpoint 1interrupt bit #define DEACHINT_OEP1INT_Pos (17U) -#define DEACHINT_OEP1INT_Msk (0x1UL << DEACHINT_OEP1INT_Pos) // 0x00020000 */ -#define DEACHINT_OEP1INT DEACHINT_OEP1INT_Msk // OUT endpoint 1 interrupt bit */ +#define DEACHINT_OEP1INT_Msk (0x1UL << DEACHINT_OEP1INT_Pos) // 0x00020000 +#define DEACHINT_OEP1INT DEACHINT_OEP1INT_Msk // OUT endpoint 1 interrupt bit /******************** Bit definition for GCCFG register ********************/ #define STM32_GCCFG_DCDET_Pos (0U) -#define STM32_GCCFG_DCDET_Msk (0x1UL << STM32_GCCFG_DCDET_Pos) // 0x00000001 */ -#define STM32_GCCFG_DCDET STM32_GCCFG_DCDET_Msk // Data contact detection (DCD) status */ +#define STM32_GCCFG_DCDET_Msk (0x1UL << STM32_GCCFG_DCDET_Pos) // 0x00000001 +#define STM32_GCCFG_DCDET STM32_GCCFG_DCDET_Msk // Data contact detection (DCD) status + #define STM32_GCCFG_PDET_Pos (1U) -#define STM32_GCCFG_PDET_Msk (0x1UL << STM32_GCCFG_PDET_Pos) // 0x00000002 */ -#define STM32_GCCFG_PDET STM32_GCCFG_PDET_Msk // Primary detection (PD) status */ +#define STM32_GCCFG_PDET_Msk (0x1UL << STM32_GCCFG_PDET_Pos) // 0x00000002 +#define STM32_GCCFG_PDET STM32_GCCFG_PDET_Msk // Primary detection (PD) status + #define STM32_GCCFG_SDET_Pos (2U) -#define STM32_GCCFG_SDET_Msk (0x1UL << STM32_GCCFG_SDET_Pos) // 0x00000004 */ -#define STM32_GCCFG_SDET STM32_GCCFG_SDET_Msk // Secondary detection (SD) status */ +#define STM32_GCCFG_SDET_Msk (0x1UL << STM32_GCCFG_SDET_Pos) // 0x00000004 +#define STM32_GCCFG_SDET STM32_GCCFG_SDET_Msk // Secondary detection (SD) status + #define STM32_GCCFG_PS2DET_Pos (3U) -#define STM32_GCCFG_PS2DET_Msk (0x1UL << STM32_GCCFG_PS2DET_Pos) // 0x00000008 */ -#define STM32_GCCFG_PS2DET STM32_GCCFG_PS2DET_Msk // DM pull-up detection status */ +#define STM32_GCCFG_PS2DET_Msk (0x1UL << STM32_GCCFG_PS2DET_Pos) // 0x00000008 +#define STM32_GCCFG_PS2DET STM32_GCCFG_PS2DET_Msk // DM pull-up detection status + #define STM32_GCCFG_PWRDWN_Pos (16U) -#define STM32_GCCFG_PWRDWN_Msk (0x1UL << STM32_GCCFG_PWRDWN_Pos) // 0x00010000 */ -#define STM32_GCCFG_PWRDWN STM32_GCCFG_PWRDWN_Msk // Power down */ +#define STM32_GCCFG_PWRDWN_Msk (0x1UL << STM32_GCCFG_PWRDWN_Pos) // 0x00010000 +#define STM32_GCCFG_PWRDWN STM32_GCCFG_PWRDWN_Msk // Power down + #define STM32_GCCFG_BCDEN_Pos (17U) -#define STM32_GCCFG_BCDEN_Msk (0x1UL << STM32_GCCFG_BCDEN_Pos) // 0x00020000 */ -#define STM32_GCCFG_BCDEN STM32_GCCFG_BCDEN_Msk // Battery charging detector (BCD) enable */ +#define STM32_GCCFG_BCDEN_Msk (0x1UL << STM32_GCCFG_BCDEN_Pos) // 0x00020000 +#define STM32_GCCFG_BCDEN STM32_GCCFG_BCDEN_Msk // Battery charging detector (BCD) enable + #define STM32_GCCFG_DCDEN_Pos (18U) -#define STM32_GCCFG_DCDEN_Msk (0x1UL << STM32_GCCFG_DCDEN_Pos) // 0x00040000 */ +#define STM32_GCCFG_DCDEN_Msk (0x1UL << STM32_GCCFG_DCDEN_Pos) // 0x00040000 #define STM32_GCCFG_DCDEN STM32_GCCFG_DCDEN_Msk // Data contact detection (DCD) mode enable*/ + #define STM32_GCCFG_PDEN_Pos (19U) -#define STM32_GCCFG_PDEN_Msk (0x1UL << STM32_GCCFG_PDEN_Pos) // 0x00080000 */ +#define STM32_GCCFG_PDEN_Msk (0x1UL << STM32_GCCFG_PDEN_Pos) // 0x00080000 #define STM32_GCCFG_PDEN STM32_GCCFG_PDEN_Msk // Primary detection (PD) mode enable*/ + #define STM32_GCCFG_SDEN_Pos (20U) -#define STM32_GCCFG_SDEN_Msk (0x1UL << STM32_GCCFG_SDEN_Pos) // 0x00100000 */ -#define STM32_GCCFG_SDEN STM32_GCCFG_SDEN_Msk // Secondary detection (SD) mode enable */ +#define STM32_GCCFG_SDEN_Msk (0x1UL << STM32_GCCFG_SDEN_Pos) // 0x00100000 +#define STM32_GCCFG_SDEN STM32_GCCFG_SDEN_Msk // Secondary detection (SD) mode enable + #define STM32_GCCFG_VBDEN_Pos (21U) -#define STM32_GCCFG_VBDEN_Msk (0x1UL << STM32_GCCFG_VBDEN_Pos) // 0x00200000 */ -#define STM32_GCCFG_VBDEN STM32_GCCFG_VBDEN_Msk // VBUS mode enable */ +#define STM32_GCCFG_VBDEN_Msk (0x1UL << STM32_GCCFG_VBDEN_Pos) // 0x00200000 +#define STM32_GCCFG_VBDEN STM32_GCCFG_VBDEN_Msk // VBUS mode enable + #define STM32_GCCFG_OTGIDEN_Pos (22U) -#define STM32_GCCFG_OTGIDEN_Msk (0x1UL << STM32_GCCFG_OTGIDEN_Pos) // 0x00400000 */ -#define STM32_GCCFG_OTGIDEN STM32_GCCFG_OTGIDEN_Msk // OTG Id enable */ +#define STM32_GCCFG_OTGIDEN_Msk (0x1UL << STM32_GCCFG_OTGIDEN_Pos) // 0x00400000 +#define STM32_GCCFG_OTGIDEN STM32_GCCFG_OTGIDEN_Msk // OTG Id enable + #define STM32_GCCFG_PHYHSEN_Pos (23U) -#define STM32_GCCFG_PHYHSEN_Msk (0x1UL << STM32_GCCFG_PHYHSEN_Pos) // 0x00800000 */ -#define STM32_GCCFG_PHYHSEN STM32_GCCFG_PHYHSEN_Msk // HS PHY enable */ +#define STM32_GCCFG_PHYHSEN_Msk (0x1UL << STM32_GCCFG_PHYHSEN_Pos) // 0x00800000 +#define STM32_GCCFG_PHYHSEN STM32_GCCFG_PHYHSEN_Msk // HS PHY enable + +// TODO stm32u5a5 SDEN is 22nd bit, conflict with 20th bit above +//#define STM32_GCCFG_SDEN_Pos (22U) +//#define STM32_GCCFG_SDEN_Msk (0x1U << STM32_GCCFG_SDEN_Pos) // 0x00400000 +//#define STM32_GCCFG_SDEN STM32_GCCFG_SDEN_Msk // Secondary detection (PD) mode enable + +// TODO stm32u5a5 VBVALOVA is 23rd bit, conflict with PHYHSEN bit above +#define STM32_GCCFG_VBVALOVAL_Pos (23U) +#define STM32_GCCFG_VBVALOVAL_Msk (0x1U << STM32_GCCFG_VBVALOVAL_Pos) // 0x00800000 +#define STM32_GCCFG_VBVALOVAL STM32_GCCFG_VBVALOVAL_Msk // Value of VBUSVLDEXT0 femtoPHY input + +#define STM32_GCCFG_VBVALEXTOEN_Pos (24U) +#define STM32_GCCFG_VBVALEXTOEN_Msk (0x1U << STM32_GCCFG_VBVALEXTOEN_Pos) // 0x01000000 +#define STM32_GCCFG_VBVALEXTOEN STM32_GCCFG_VBVALEXTOEN_Msk // Enables of VBUSVLDEXT0 femtoPHY input override + +#define STM32_GCCFG_PULLDOWNEN_Pos (25U) +#define STM32_GCCFG_PULLDOWNEN_Msk (0x1U << STM32_GCCFG_PULLDOWNEN_Pos) // 0x02000000 +#define STM32_GCCFG_PULLDOWNEN STM32_GCCFG_PULLDOWNEN_Msk // Enables of femtoPHY pulldown resistors, used when ID PAD is disabled + /******************** Bit definition for DEACHINTMSK register ********************/ #define DEACHINTMSK_IEP1INTM_Pos (1U) -#define DEACHINTMSK_IEP1INTM_Msk (0x1UL << DEACHINTMSK_IEP1INTM_Pos) // 0x00000002 */ -#define DEACHINTMSK_IEP1INTM DEACHINTMSK_IEP1INTM_Msk // IN Endpoint 1 interrupt mask bit */ +#define DEACHINTMSK_IEP1INTM_Msk (0x1UL << DEACHINTMSK_IEP1INTM_Pos) // 0x00000002 +#define DEACHINTMSK_IEP1INTM DEACHINTMSK_IEP1INTM_Msk // IN Endpoint 1 interrupt mask bit #define DEACHINTMSK_OEP1INTM_Pos (17U) -#define DEACHINTMSK_OEP1INTM_Msk (0x1UL << DEACHINTMSK_OEP1INTM_Pos) // 0x00020000 */ -#define DEACHINTMSK_OEP1INTM DEACHINTMSK_OEP1INTM_Msk // OUT Endpoint 1 interrupt mask bit */ +#define DEACHINTMSK_OEP1INTM_Msk (0x1UL << DEACHINTMSK_OEP1INTM_Pos) // 0x00020000 +#define DEACHINTMSK_OEP1INTM DEACHINTMSK_OEP1INTM_Msk // OUT Endpoint 1 interrupt mask bit /******************** Bit definition for CID register ********************/ #define CID_PRODUCT_ID_Pos (0U) -#define CID_PRODUCT_ID_Msk (0xFFFFFFFFUL << CID_PRODUCT_ID_Pos) // 0xFFFFFFFF */ -#define CID_PRODUCT_ID CID_PRODUCT_ID_Msk // Product ID field */ +#define CID_PRODUCT_ID_Msk (0xFFFFFFFFUL << CID_PRODUCT_ID_Pos) // 0xFFFFFFFF +#define CID_PRODUCT_ID CID_PRODUCT_ID_Msk // Product ID field /******************** Bit definition for GLPMCFG register ********************/ #define GLPMCFG_LPMEN_Pos (0U) -#define GLPMCFG_LPMEN_Msk (0x1UL << GLPMCFG_LPMEN_Pos) // 0x00000001 */ -#define GLPMCFG_LPMEN GLPMCFG_LPMEN_Msk // LPM support enable */ +#define GLPMCFG_LPMEN_Msk (0x1UL << GLPMCFG_LPMEN_Pos) // 0x00000001 +#define GLPMCFG_LPMEN GLPMCFG_LPMEN_Msk // LPM support enable #define GLPMCFG_LPMACK_Pos (1U) -#define GLPMCFG_LPMACK_Msk (0x1UL << GLPMCFG_LPMACK_Pos) // 0x00000002 */ -#define GLPMCFG_LPMACK GLPMCFG_LPMACK_Msk // LPM Token acknowledge enable */ +#define GLPMCFG_LPMACK_Msk (0x1UL << GLPMCFG_LPMACK_Pos) // 0x00000002 +#define GLPMCFG_LPMACK GLPMCFG_LPMACK_Msk // LPM Token acknowledge enable #define GLPMCFG_BESL_Pos (2U) -#define GLPMCFG_BESL_Msk (0xFUL << GLPMCFG_BESL_Pos) // 0x0000003C */ -#define GLPMCFG_BESL GLPMCFG_BESL_Msk // BESL value received with last ACKed LPM Token */ +#define GLPMCFG_BESL_Msk (0xFUL << GLPMCFG_BESL_Pos) // 0x0000003C +#define GLPMCFG_BESL GLPMCFG_BESL_Msk // BESL value received with last ACKed LPM Token #define GLPMCFG_REMWAKE_Pos (6U) -#define GLPMCFG_REMWAKE_Msk (0x1UL << GLPMCFG_REMWAKE_Pos) // 0x00000040 */ -#define GLPMCFG_REMWAKE GLPMCFG_REMWAKE_Msk // bRemoteWake value received with last ACKed LPM Token */ +#define GLPMCFG_REMWAKE_Msk (0x1UL << GLPMCFG_REMWAKE_Pos) // 0x00000040 +#define GLPMCFG_REMWAKE GLPMCFG_REMWAKE_Msk // bRemoteWake value received with last ACKed LPM Token #define GLPMCFG_L1SSEN_Pos (7U) -#define GLPMCFG_L1SSEN_Msk (0x1UL << GLPMCFG_L1SSEN_Pos) // 0x00000080 */ -#define GLPMCFG_L1SSEN GLPMCFG_L1SSEN_Msk // L1 shallow sleep enable */ +#define GLPMCFG_L1SSEN_Msk (0x1UL << GLPMCFG_L1SSEN_Pos) // 0x00000080 +#define GLPMCFG_L1SSEN GLPMCFG_L1SSEN_Msk // L1 shallow sleep enable #define GLPMCFG_BESLTHRS_Pos (8U) -#define GLPMCFG_BESLTHRS_Msk (0xFUL << GLPMCFG_BESLTHRS_Pos) // 0x00000F00 */ -#define GLPMCFG_BESLTHRS GLPMCFG_BESLTHRS_Msk // BESL threshold */ +#define GLPMCFG_BESLTHRS_Msk (0xFUL << GLPMCFG_BESLTHRS_Pos) // 0x00000F00 +#define GLPMCFG_BESLTHRS GLPMCFG_BESLTHRS_Msk // BESL threshold #define GLPMCFG_L1DSEN_Pos (12U) -#define GLPMCFG_L1DSEN_Msk (0x1UL << GLPMCFG_L1DSEN_Pos) // 0x00001000 */ -#define GLPMCFG_L1DSEN GLPMCFG_L1DSEN_Msk // L1 deep sleep enable */ +#define GLPMCFG_L1DSEN_Msk (0x1UL << GLPMCFG_L1DSEN_Pos) // 0x00001000 +#define GLPMCFG_L1DSEN GLPMCFG_L1DSEN_Msk // L1 deep sleep enable #define GLPMCFG_LPMRSP_Pos (13U) -#define GLPMCFG_LPMRSP_Msk (0x3UL << GLPMCFG_LPMRSP_Pos) // 0x00006000 */ -#define GLPMCFG_LPMRSP GLPMCFG_LPMRSP_Msk // LPM response */ +#define GLPMCFG_LPMRSP_Msk (0x3UL << GLPMCFG_LPMRSP_Pos) // 0x00006000 +#define GLPMCFG_LPMRSP GLPMCFG_LPMRSP_Msk // LPM response #define GLPMCFG_SLPSTS_Pos (15U) -#define GLPMCFG_SLPSTS_Msk (0x1UL << GLPMCFG_SLPSTS_Pos) // 0x00008000 */ -#define GLPMCFG_SLPSTS GLPMCFG_SLPSTS_Msk // Port sleep status */ +#define GLPMCFG_SLPSTS_Msk (0x1UL << GLPMCFG_SLPSTS_Pos) // 0x00008000 +#define GLPMCFG_SLPSTS GLPMCFG_SLPSTS_Msk // Port sleep status #define GLPMCFG_L1RSMOK_Pos (16U) -#define GLPMCFG_L1RSMOK_Msk (0x1UL << GLPMCFG_L1RSMOK_Pos) // 0x00010000 */ -#define GLPMCFG_L1RSMOK GLPMCFG_L1RSMOK_Msk // Sleep State Resume OK */ +#define GLPMCFG_L1RSMOK_Msk (0x1UL << GLPMCFG_L1RSMOK_Pos) // 0x00010000 +#define GLPMCFG_L1RSMOK GLPMCFG_L1RSMOK_Msk // Sleep State Resume OK #define GLPMCFG_LPMCHIDX_Pos (17U) -#define GLPMCFG_LPMCHIDX_Msk (0xFUL << GLPMCFG_LPMCHIDX_Pos) // 0x001E0000 */ -#define GLPMCFG_LPMCHIDX GLPMCFG_LPMCHIDX_Msk // LPM Channel Index */ +#define GLPMCFG_LPMCHIDX_Msk (0xFUL << GLPMCFG_LPMCHIDX_Pos) // 0x001E0000 +#define GLPMCFG_LPMCHIDX GLPMCFG_LPMCHIDX_Msk // LPM Channel Index #define GLPMCFG_LPMRCNT_Pos (21U) -#define GLPMCFG_LPMRCNT_Msk (0x7UL << GLPMCFG_LPMRCNT_Pos) // 0x00E00000 */ -#define GLPMCFG_LPMRCNT GLPMCFG_LPMRCNT_Msk // LPM retry count */ +#define GLPMCFG_LPMRCNT_Msk (0x7UL << GLPMCFG_LPMRCNT_Pos) // 0x00E00000 +#define GLPMCFG_LPMRCNT GLPMCFG_LPMRCNT_Msk // LPM retry count #define GLPMCFG_SNDLPM_Pos (24U) -#define GLPMCFG_SNDLPM_Msk (0x1UL << GLPMCFG_SNDLPM_Pos) // 0x01000000 */ -#define GLPMCFG_SNDLPM GLPMCFG_SNDLPM_Msk // Send LPM transaction */ +#define GLPMCFG_SNDLPM_Msk (0x1UL << GLPMCFG_SNDLPM_Pos) // 0x01000000 +#define GLPMCFG_SNDLPM GLPMCFG_SNDLPM_Msk // Send LPM transaction #define GLPMCFG_LPMRCNTSTS_Pos (25U) -#define GLPMCFG_LPMRCNTSTS_Msk (0x7UL << GLPMCFG_LPMRCNTSTS_Pos) // 0x0E000000 */ -#define GLPMCFG_LPMRCNTSTS GLPMCFG_LPMRCNTSTS_Msk // LPM retry count status */ +#define GLPMCFG_LPMRCNTSTS_Msk (0x7UL << GLPMCFG_LPMRCNTSTS_Pos) // 0x0E000000 +#define GLPMCFG_LPMRCNTSTS GLPMCFG_LPMRCNTSTS_Msk // LPM retry count status #define GLPMCFG_ENBESL_Pos (28U) -#define GLPMCFG_ENBESL_Msk (0x1UL << GLPMCFG_ENBESL_Pos) // 0x10000000 */ -#define GLPMCFG_ENBESL GLPMCFG_ENBESL_Msk // Enable best effort service latency */ +#define GLPMCFG_ENBESL_Msk (0x1UL << GLPMCFG_ENBESL_Pos) // 0x10000000 +#define GLPMCFG_ENBESL GLPMCFG_ENBESL_Msk // Enable best effort service latency /******************** Bit definition for DIEPEACHMSK1 register ********************/ #define DIEPEACHMSK1_XFRCM_Pos (0U) -#define DIEPEACHMSK1_XFRCM_Msk (0x1UL << DIEPEACHMSK1_XFRCM_Pos) // 0x00000001 */ -#define DIEPEACHMSK1_XFRCM DIEPEACHMSK1_XFRCM_Msk // Transfer completed interrupt mask */ +#define DIEPEACHMSK1_XFRCM_Msk (0x1UL << DIEPEACHMSK1_XFRCM_Pos) // 0x00000001 +#define DIEPEACHMSK1_XFRCM DIEPEACHMSK1_XFRCM_Msk // Transfer completed interrupt mask #define DIEPEACHMSK1_EPDM_Pos (1U) -#define DIEPEACHMSK1_EPDM_Msk (0x1UL << DIEPEACHMSK1_EPDM_Pos) // 0x00000002 */ -#define DIEPEACHMSK1_EPDM DIEPEACHMSK1_EPDM_Msk // Endpoint disabled interrupt mask */ +#define DIEPEACHMSK1_EPDM_Msk (0x1UL << DIEPEACHMSK1_EPDM_Pos) // 0x00000002 +#define DIEPEACHMSK1_EPDM DIEPEACHMSK1_EPDM_Msk // Endpoint disabled interrupt mask #define DIEPEACHMSK1_TOM_Pos (3U) -#define DIEPEACHMSK1_TOM_Msk (0x1UL << DIEPEACHMSK1_TOM_Pos) // 0x00000008 */ -#define DIEPEACHMSK1_TOM DIEPEACHMSK1_TOM_Msk // Timeout condition mask (nonisochronous endpoints) */ +#define DIEPEACHMSK1_TOM_Msk (0x1UL << DIEPEACHMSK1_TOM_Pos) // 0x00000008 +#define DIEPEACHMSK1_TOM DIEPEACHMSK1_TOM_Msk // Timeout condition mask (nonisochronous endpoints) #define DIEPEACHMSK1_ITTXFEMSK_Pos (4U) -#define DIEPEACHMSK1_ITTXFEMSK_Msk (0x1UL << DIEPEACHMSK1_ITTXFEMSK_Pos) // 0x00000010 */ -#define DIEPEACHMSK1_ITTXFEMSK DIEPEACHMSK1_ITTXFEMSK_Msk // IN token received when TxFIFO empty mask */ +#define DIEPEACHMSK1_ITTXFEMSK_Msk (0x1UL << DIEPEACHMSK1_ITTXFEMSK_Pos) // 0x00000010 +#define DIEPEACHMSK1_ITTXFEMSK DIEPEACHMSK1_ITTXFEMSK_Msk // IN token received when TxFIFO empty mask #define DIEPEACHMSK1_INEPNMM_Pos (5U) -#define DIEPEACHMSK1_INEPNMM_Msk (0x1UL << DIEPEACHMSK1_INEPNMM_Pos) // 0x00000020 */ -#define DIEPEACHMSK1_INEPNMM DIEPEACHMSK1_INEPNMM_Msk // IN token received with EP mismatch mask */ +#define DIEPEACHMSK1_INEPNMM_Msk (0x1UL << DIEPEACHMSK1_INEPNMM_Pos) // 0x00000020 +#define DIEPEACHMSK1_INEPNMM DIEPEACHMSK1_INEPNMM_Msk // IN token received with EP mismatch mask #define DIEPEACHMSK1_INEPNEM_Pos (6U) -#define DIEPEACHMSK1_INEPNEM_Msk (0x1UL << DIEPEACHMSK1_INEPNEM_Pos) // 0x00000040 */ -#define DIEPEACHMSK1_INEPNEM DIEPEACHMSK1_INEPNEM_Msk // IN endpoint NAK effective mask */ +#define DIEPEACHMSK1_INEPNEM_Msk (0x1UL << DIEPEACHMSK1_INEPNEM_Pos) // 0x00000040 +#define DIEPEACHMSK1_INEPNEM DIEPEACHMSK1_INEPNEM_Msk // IN endpoint NAK effective mask #define DIEPEACHMSK1_TXFURM_Pos (8U) -#define DIEPEACHMSK1_TXFURM_Msk (0x1UL << DIEPEACHMSK1_TXFURM_Pos) // 0x00000100 */ -#define DIEPEACHMSK1_TXFURM DIEPEACHMSK1_TXFURM_Msk // FIFO underrun mask */ +#define DIEPEACHMSK1_TXFURM_Msk (0x1UL << DIEPEACHMSK1_TXFURM_Pos) // 0x00000100 +#define DIEPEACHMSK1_TXFURM DIEPEACHMSK1_TXFURM_Msk // FIFO underrun mask #define DIEPEACHMSK1_BIM_Pos (9U) -#define DIEPEACHMSK1_BIM_Msk (0x1UL << DIEPEACHMSK1_BIM_Pos) // 0x00000200 */ -#define DIEPEACHMSK1_BIM DIEPEACHMSK1_BIM_Msk // BNA interrupt mask */ +#define DIEPEACHMSK1_BIM_Msk (0x1UL << DIEPEACHMSK1_BIM_Pos) // 0x00000200 +#define DIEPEACHMSK1_BIM DIEPEACHMSK1_BIM_Msk // BNA interrupt mask #define DIEPEACHMSK1_NAKM_Pos (13U) -#define DIEPEACHMSK1_NAKM_Msk (0x1UL << DIEPEACHMSK1_NAKM_Pos) // 0x00002000 */ -#define DIEPEACHMSK1_NAKM DIEPEACHMSK1_NAKM_Msk // NAK interrupt mask */ +#define DIEPEACHMSK1_NAKM_Msk (0x1UL << DIEPEACHMSK1_NAKM_Pos) // 0x00002000 +#define DIEPEACHMSK1_NAKM DIEPEACHMSK1_NAKM_Msk // NAK interrupt mask /******************** Bit definition for HPRT register ********************/ #define HPRT_PCSTS_Pos (0U) -#define HPRT_PCSTS_Msk (0x1UL << HPRT_PCSTS_Pos) // 0x00000001 */ -#define HPRT_PCSTS HPRT_PCSTS_Msk // Port connect status */ +#define HPRT_PCSTS_Msk (0x1UL << HPRT_PCSTS_Pos) // 0x00000001 +#define HPRT_PCSTS HPRT_PCSTS_Msk // Port connect status #define HPRT_PCDET_Pos (1U) -#define HPRT_PCDET_Msk (0x1UL << HPRT_PCDET_Pos) // 0x00000002 */ -#define HPRT_PCDET HPRT_PCDET_Msk // Port connect detected */ +#define HPRT_PCDET_Msk (0x1UL << HPRT_PCDET_Pos) // 0x00000002 +#define HPRT_PCDET HPRT_PCDET_Msk // Port connect detected #define HPRT_PENA_Pos (2U) -#define HPRT_PENA_Msk (0x1UL << HPRT_PENA_Pos) // 0x00000004 */ -#define HPRT_PENA HPRT_PENA_Msk // Port enable */ +#define HPRT_PENA_Msk (0x1UL << HPRT_PENA_Pos) // 0x00000004 +#define HPRT_PENA HPRT_PENA_Msk // Port enable #define HPRT_PENCHNG_Pos (3U) -#define HPRT_PENCHNG_Msk (0x1UL << HPRT_PENCHNG_Pos) // 0x00000008 */ -#define HPRT_PENCHNG HPRT_PENCHNG_Msk // Port enable/disable change */ +#define HPRT_PENCHNG_Msk (0x1UL << HPRT_PENCHNG_Pos) // 0x00000008 +#define HPRT_PENCHNG HPRT_PENCHNG_Msk // Port enable/disable change #define HPRT_POCA_Pos (4U) -#define HPRT_POCA_Msk (0x1UL << HPRT_POCA_Pos) // 0x00000010 */ -#define HPRT_POCA HPRT_POCA_Msk // Port overcurrent active */ +#define HPRT_POCA_Msk (0x1UL << HPRT_POCA_Pos) // 0x00000010 +#define HPRT_POCA HPRT_POCA_Msk // Port overcurrent active #define HPRT_POCCHNG_Pos (5U) -#define HPRT_POCCHNG_Msk (0x1UL << HPRT_POCCHNG_Pos) // 0x00000020 */ -#define HPRT_POCCHNG HPRT_POCCHNG_Msk // Port overcurrent change */ +#define HPRT_POCCHNG_Msk (0x1UL << HPRT_POCCHNG_Pos) // 0x00000020 +#define HPRT_POCCHNG HPRT_POCCHNG_Msk // Port overcurrent change #define HPRT_PRES_Pos (6U) -#define HPRT_PRES_Msk (0x1UL << HPRT_PRES_Pos) // 0x00000040 */ -#define HPRT_PRES HPRT_PRES_Msk // Port resume */ +#define HPRT_PRES_Msk (0x1UL << HPRT_PRES_Pos) // 0x00000040 +#define HPRT_PRES HPRT_PRES_Msk // Port resume #define HPRT_PSUSP_Pos (7U) -#define HPRT_PSUSP_Msk (0x1UL << HPRT_PSUSP_Pos) // 0x00000080 */ -#define HPRT_PSUSP HPRT_PSUSP_Msk // Port suspend */ +#define HPRT_PSUSP_Msk (0x1UL << HPRT_PSUSP_Pos) // 0x00000080 +#define HPRT_PSUSP HPRT_PSUSP_Msk // Port suspend #define HPRT_PRST_Pos (8U) -#define HPRT_PRST_Msk (0x1UL << HPRT_PRST_Pos) // 0x00000100 */ -#define HPRT_PRST HPRT_PRST_Msk // Port reset */ +#define HPRT_PRST_Msk (0x1UL << HPRT_PRST_Pos) // 0x00000100 +#define HPRT_PRST HPRT_PRST_Msk // Port reset #define HPRT_PLSTS_Pos (10U) -#define HPRT_PLSTS_Msk (0x3UL << HPRT_PLSTS_Pos) // 0x00000C00 */ -#define HPRT_PLSTS HPRT_PLSTS_Msk // Port line status */ -#define HPRT_PLSTS_0 (0x1UL << HPRT_PLSTS_Pos) // 0x00000400 */ -#define HPRT_PLSTS_1 (0x2UL << HPRT_PLSTS_Pos) // 0x00000800 */ +#define HPRT_PLSTS_Msk (0x3UL << HPRT_PLSTS_Pos) // 0x00000C00 +#define HPRT_PLSTS HPRT_PLSTS_Msk // Port line status +#define HPRT_PLSTS_0 (0x1UL << HPRT_PLSTS_Pos) // 0x00000400 +#define HPRT_PLSTS_1 (0x2UL << HPRT_PLSTS_Pos) // 0x00000800 #define HPRT_PPWR_Pos (12U) -#define HPRT_PPWR_Msk (0x1UL << HPRT_PPWR_Pos) // 0x00001000 */ -#define HPRT_PPWR HPRT_PPWR_Msk // Port power */ +#define HPRT_PPWR_Msk (0x1UL << HPRT_PPWR_Pos) // 0x00001000 +#define HPRT_PPWR HPRT_PPWR_Msk // Port power #define HPRT_PTCTL_Pos (13U) -#define HPRT_PTCTL_Msk (0xFUL << HPRT_PTCTL_Pos) // 0x0001E000 */ -#define HPRT_PTCTL HPRT_PTCTL_Msk // Port test control */ -#define HPRT_PTCTL_0 (0x1UL << HPRT_PTCTL_Pos) // 0x00002000 */ -#define HPRT_PTCTL_1 (0x2UL << HPRT_PTCTL_Pos) // 0x00004000 */ -#define HPRT_PTCTL_2 (0x4UL << HPRT_PTCTL_Pos) // 0x00008000 */ -#define HPRT_PTCTL_3 (0x8UL << HPRT_PTCTL_Pos) // 0x00010000 */ +#define HPRT_PTCTL_Msk (0xFUL << HPRT_PTCTL_Pos) // 0x0001E000 +#define HPRT_PTCTL HPRT_PTCTL_Msk // Port test control +#define HPRT_PTCTL_0 (0x1UL << HPRT_PTCTL_Pos) // 0x00002000 +#define HPRT_PTCTL_1 (0x2UL << HPRT_PTCTL_Pos) // 0x00004000 +#define HPRT_PTCTL_2 (0x4UL << HPRT_PTCTL_Pos) // 0x00008000 +#define HPRT_PTCTL_3 (0x8UL << HPRT_PTCTL_Pos) // 0x00010000 #define HPRT_PSPD_Pos (17U) -#define HPRT_PSPD_Msk (0x3UL << HPRT_PSPD_Pos) // 0x00060000 */ -#define HPRT_PSPD HPRT_PSPD_Msk // Port speed */ -#define HPRT_PSPD_0 (0x1UL << HPRT_PSPD_Pos) // 0x00020000 */ -#define HPRT_PSPD_1 (0x2UL << HPRT_PSPD_Pos) // 0x00040000 */ +#define HPRT_PSPD_Msk (0x3UL << HPRT_PSPD_Pos) // 0x00060000 +#define HPRT_PSPD HPRT_PSPD_Msk // Port speed +#define HPRT_PSPD_0 (0x1UL << HPRT_PSPD_Pos) // 0x00020000 +#define HPRT_PSPD_1 (0x2UL << HPRT_PSPD_Pos) // 0x00040000 /******************** Bit definition for DOEPEACHMSK1 register ********************/ #define DOEPEACHMSK1_XFRCM_Pos (0U) -#define DOEPEACHMSK1_XFRCM_Msk (0x1UL << DOEPEACHMSK1_XFRCM_Pos) // 0x00000001 */ -#define DOEPEACHMSK1_XFRCM DOEPEACHMSK1_XFRCM_Msk // Transfer completed interrupt mask */ +#define DOEPEACHMSK1_XFRCM_Msk (0x1UL << DOEPEACHMSK1_XFRCM_Pos) // 0x00000001 +#define DOEPEACHMSK1_XFRCM DOEPEACHMSK1_XFRCM_Msk // Transfer completed interrupt mask #define DOEPEACHMSK1_EPDM_Pos (1U) -#define DOEPEACHMSK1_EPDM_Msk (0x1UL << DOEPEACHMSK1_EPDM_Pos) // 0x00000002 */ -#define DOEPEACHMSK1_EPDM DOEPEACHMSK1_EPDM_Msk // Endpoint disabled interrupt mask */ +#define DOEPEACHMSK1_EPDM_Msk (0x1UL << DOEPEACHMSK1_EPDM_Pos) // 0x00000002 +#define DOEPEACHMSK1_EPDM DOEPEACHMSK1_EPDM_Msk // Endpoint disabled interrupt mask #define DOEPEACHMSK1_TOM_Pos (3U) -#define DOEPEACHMSK1_TOM_Msk (0x1UL << DOEPEACHMSK1_TOM_Pos) // 0x00000008 */ -#define DOEPEACHMSK1_TOM DOEPEACHMSK1_TOM_Msk // Timeout condition mask */ +#define DOEPEACHMSK1_TOM_Msk (0x1UL << DOEPEACHMSK1_TOM_Pos) // 0x00000008 +#define DOEPEACHMSK1_TOM DOEPEACHMSK1_TOM_Msk // Timeout condition mask #define DOEPEACHMSK1_ITTXFEMSK_Pos (4U) -#define DOEPEACHMSK1_ITTXFEMSK_Msk (0x1UL << DOEPEACHMSK1_ITTXFEMSK_Pos) // 0x00000010 */ -#define DOEPEACHMSK1_ITTXFEMSK DOEPEACHMSK1_ITTXFEMSK_Msk // IN token received when TxFIFO empty mask */ +#define DOEPEACHMSK1_ITTXFEMSK_Msk (0x1UL << DOEPEACHMSK1_ITTXFEMSK_Pos) // 0x00000010 +#define DOEPEACHMSK1_ITTXFEMSK DOEPEACHMSK1_ITTXFEMSK_Msk // IN token received when TxFIFO empty mask #define DOEPEACHMSK1_INEPNMM_Pos (5U) -#define DOEPEACHMSK1_INEPNMM_Msk (0x1UL << DOEPEACHMSK1_INEPNMM_Pos) // 0x00000020 */ -#define DOEPEACHMSK1_INEPNMM DOEPEACHMSK1_INEPNMM_Msk // IN token received with EP mismatch mask */ +#define DOEPEACHMSK1_INEPNMM_Msk (0x1UL << DOEPEACHMSK1_INEPNMM_Pos) // 0x00000020 +#define DOEPEACHMSK1_INEPNMM DOEPEACHMSK1_INEPNMM_Msk // IN token received with EP mismatch mask #define DOEPEACHMSK1_INEPNEM_Pos (6U) -#define DOEPEACHMSK1_INEPNEM_Msk (0x1UL << DOEPEACHMSK1_INEPNEM_Pos) // 0x00000040 */ -#define DOEPEACHMSK1_INEPNEM DOEPEACHMSK1_INEPNEM_Msk // IN endpoint NAK effective mask */ +#define DOEPEACHMSK1_INEPNEM_Msk (0x1UL << DOEPEACHMSK1_INEPNEM_Pos) // 0x00000040 +#define DOEPEACHMSK1_INEPNEM DOEPEACHMSK1_INEPNEM_Msk // IN endpoint NAK effective mask #define DOEPEACHMSK1_TXFURM_Pos (8U) -#define DOEPEACHMSK1_TXFURM_Msk (0x1UL << DOEPEACHMSK1_TXFURM_Pos) // 0x00000100 */ -#define DOEPEACHMSK1_TXFURM DOEPEACHMSK1_TXFURM_Msk // OUT packet error mask */ +#define DOEPEACHMSK1_TXFURM_Msk (0x1UL << DOEPEACHMSK1_TXFURM_Pos) // 0x00000100 +#define DOEPEACHMSK1_TXFURM DOEPEACHMSK1_TXFURM_Msk // OUT packet error mask #define DOEPEACHMSK1_BIM_Pos (9U) -#define DOEPEACHMSK1_BIM_Msk (0x1UL << DOEPEACHMSK1_BIM_Pos) // 0x00000200 */ -#define DOEPEACHMSK1_BIM DOEPEACHMSK1_BIM_Msk // BNA interrupt mask */ +#define DOEPEACHMSK1_BIM_Msk (0x1UL << DOEPEACHMSK1_BIM_Pos) // 0x00000200 +#define DOEPEACHMSK1_BIM DOEPEACHMSK1_BIM_Msk // BNA interrupt mask #define DOEPEACHMSK1_BERRM_Pos (12U) -#define DOEPEACHMSK1_BERRM_Msk (0x1UL << DOEPEACHMSK1_BERRM_Pos) // 0x00001000 */ -#define DOEPEACHMSK1_BERRM DOEPEACHMSK1_BERRM_Msk // Bubble error interrupt mask */ +#define DOEPEACHMSK1_BERRM_Msk (0x1UL << DOEPEACHMSK1_BERRM_Pos) // 0x00001000 +#define DOEPEACHMSK1_BERRM DOEPEACHMSK1_BERRM_Msk // Bubble error interrupt mask #define DOEPEACHMSK1_NAKM_Pos (13U) -#define DOEPEACHMSK1_NAKM_Msk (0x1UL << DOEPEACHMSK1_NAKM_Pos) // 0x00002000 */ -#define DOEPEACHMSK1_NAKM DOEPEACHMSK1_NAKM_Msk // NAK interrupt mask */ +#define DOEPEACHMSK1_NAKM_Msk (0x1UL << DOEPEACHMSK1_NAKM_Pos) // 0x00002000 +#define DOEPEACHMSK1_NAKM DOEPEACHMSK1_NAKM_Msk // NAK interrupt mask #define DOEPEACHMSK1_NYETM_Pos (14U) -#define DOEPEACHMSK1_NYETM_Msk (0x1UL << DOEPEACHMSK1_NYETM_Pos) // 0x00004000 */ -#define DOEPEACHMSK1_NYETM DOEPEACHMSK1_NYETM_Msk // NYET interrupt mask */ +#define DOEPEACHMSK1_NYETM_Msk (0x1UL << DOEPEACHMSK1_NYETM_Pos) // 0x00004000 +#define DOEPEACHMSK1_NYETM DOEPEACHMSK1_NYETM_Msk // NYET interrupt mask /******************** Bit definition for HPTXFSIZ register ********************/ #define HPTXFSIZ_PTXSA_Pos (0U) -#define HPTXFSIZ_PTXSA_Msk (0xFFFFUL << HPTXFSIZ_PTXSA_Pos) // 0x0000FFFF */ -#define HPTXFSIZ_PTXSA HPTXFSIZ_PTXSA_Msk // Host periodic TxFIFO start address */ +#define HPTXFSIZ_PTXSA_Msk (0xFFFFUL << HPTXFSIZ_PTXSA_Pos) // 0x0000FFFF +#define HPTXFSIZ_PTXSA HPTXFSIZ_PTXSA_Msk // Host periodic TxFIFO start address #define HPTXFSIZ_PTXFD_Pos (16U) -#define HPTXFSIZ_PTXFD_Msk (0xFFFFUL << HPTXFSIZ_PTXFD_Pos) // 0xFFFF0000 */ -#define HPTXFSIZ_PTXFD HPTXFSIZ_PTXFD_Msk // Host periodic TxFIFO depth */ +#define HPTXFSIZ_PTXFD_Msk (0xFFFFUL << HPTXFSIZ_PTXFD_Pos) // 0xFFFF0000 +#define HPTXFSIZ_PTXFD HPTXFSIZ_PTXFD_Msk // Host periodic TxFIFO depth /******************** Bit definition for DIEPCTL register ********************/ #define DIEPCTL_MPSIZ_Pos (0U) -#define DIEPCTL_MPSIZ_Msk (0x7FFUL << DIEPCTL_MPSIZ_Pos) // 0x000007FF */ -#define DIEPCTL_MPSIZ DIEPCTL_MPSIZ_Msk // Maximum packet size */ +#define DIEPCTL_MPSIZ_Msk (0x7FFUL << DIEPCTL_MPSIZ_Pos) // 0x000007FF +#define DIEPCTL_MPSIZ DIEPCTL_MPSIZ_Msk // Maximum packet size #define DIEPCTL_USBAEP_Pos (15U) -#define DIEPCTL_USBAEP_Msk (0x1UL << DIEPCTL_USBAEP_Pos) // 0x00008000 */ -#define DIEPCTL_USBAEP DIEPCTL_USBAEP_Msk // USB active endpoint */ +#define DIEPCTL_USBAEP_Msk (0x1UL << DIEPCTL_USBAEP_Pos) // 0x00008000 +#define DIEPCTL_USBAEP DIEPCTL_USBAEP_Msk // USB active endpoint #define DIEPCTL_EONUM_DPID_Pos (16U) -#define DIEPCTL_EONUM_DPID_Msk (0x1UL << DIEPCTL_EONUM_DPID_Pos) // 0x00010000 */ -#define DIEPCTL_EONUM_DPID DIEPCTL_EONUM_DPID_Msk // Even/odd frame */ +#define DIEPCTL_EONUM_DPID_Msk (0x1UL << DIEPCTL_EONUM_DPID_Pos) // 0x00010000 +#define DIEPCTL_EONUM_DPID DIEPCTL_EONUM_DPID_Msk // Even/odd frame #define DIEPCTL_NAKSTS_Pos (17U) -#define DIEPCTL_NAKSTS_Msk (0x1UL << DIEPCTL_NAKSTS_Pos) // 0x00020000 */ -#define DIEPCTL_NAKSTS DIEPCTL_NAKSTS_Msk // NAK status */ +#define DIEPCTL_NAKSTS_Msk (0x1UL << DIEPCTL_NAKSTS_Pos) // 0x00020000 +#define DIEPCTL_NAKSTS DIEPCTL_NAKSTS_Msk // NAK status #define DIEPCTL_EPTYP_Pos (18U) -#define DIEPCTL_EPTYP_Msk (0x3UL << DIEPCTL_EPTYP_Pos) // 0x000C0000 */ -#define DIEPCTL_EPTYP DIEPCTL_EPTYP_Msk // Endpoint type */ -#define DIEPCTL_EPTYP_0 (0x1UL << DIEPCTL_EPTYP_Pos) // 0x00040000 */ -#define DIEPCTL_EPTYP_1 (0x2UL << DIEPCTL_EPTYP_Pos) // 0x00080000 */ +#define DIEPCTL_EPTYP_Msk (0x3UL << DIEPCTL_EPTYP_Pos) // 0x000C0000 +#define DIEPCTL_EPTYP DIEPCTL_EPTYP_Msk // Endpoint type +#define DIEPCTL_EPTYP_0 (0x1UL << DIEPCTL_EPTYP_Pos) // 0x00040000 +#define DIEPCTL_EPTYP_1 (0x2UL << DIEPCTL_EPTYP_Pos) // 0x00080000 #define DIEPCTL_STALL_Pos (21U) -#define DIEPCTL_STALL_Msk (0x1UL << DIEPCTL_STALL_Pos) // 0x00200000 */ -#define DIEPCTL_STALL DIEPCTL_STALL_Msk // STALL handshake */ +#define DIEPCTL_STALL_Msk (0x1UL << DIEPCTL_STALL_Pos) // 0x00200000 +#define DIEPCTL_STALL DIEPCTL_STALL_Msk // STALL handshake #define DIEPCTL_TXFNUM_Pos (22U) -#define DIEPCTL_TXFNUM_Msk (0xFUL << DIEPCTL_TXFNUM_Pos) // 0x03C00000 */ -#define DIEPCTL_TXFNUM DIEPCTL_TXFNUM_Msk // TxFIFO number */ -#define DIEPCTL_TXFNUM_0 (0x1UL << DIEPCTL_TXFNUM_Pos) // 0x00400000 */ -#define DIEPCTL_TXFNUM_1 (0x2UL << DIEPCTL_TXFNUM_Pos) // 0x00800000 */ -#define DIEPCTL_TXFNUM_2 (0x4UL << DIEPCTL_TXFNUM_Pos) // 0x01000000 */ -#define DIEPCTL_TXFNUM_3 (0x8UL << DIEPCTL_TXFNUM_Pos) // 0x02000000 */ +#define DIEPCTL_TXFNUM_Msk (0xFUL << DIEPCTL_TXFNUM_Pos) // 0x03C00000 +#define DIEPCTL_TXFNUM DIEPCTL_TXFNUM_Msk // TxFIFO number +#define DIEPCTL_TXFNUM_0 (0x1UL << DIEPCTL_TXFNUM_Pos) // 0x00400000 +#define DIEPCTL_TXFNUM_1 (0x2UL << DIEPCTL_TXFNUM_Pos) // 0x00800000 +#define DIEPCTL_TXFNUM_2 (0x4UL << DIEPCTL_TXFNUM_Pos) // 0x01000000 +#define DIEPCTL_TXFNUM_3 (0x8UL << DIEPCTL_TXFNUM_Pos) // 0x02000000 #define DIEPCTL_CNAK_Pos (26U) -#define DIEPCTL_CNAK_Msk (0x1UL << DIEPCTL_CNAK_Pos) // 0x04000000 */ -#define DIEPCTL_CNAK DIEPCTL_CNAK_Msk // Clear NAK */ +#define DIEPCTL_CNAK_Msk (0x1UL << DIEPCTL_CNAK_Pos) // 0x04000000 +#define DIEPCTL_CNAK DIEPCTL_CNAK_Msk // Clear NAK #define DIEPCTL_SNAK_Pos (27U) -#define DIEPCTL_SNAK_Msk (0x1UL << DIEPCTL_SNAK_Pos) // 0x08000000 */ -#define DIEPCTL_SNAK DIEPCTL_SNAK_Msk // Set NAK */ +#define DIEPCTL_SNAK_Msk (0x1UL << DIEPCTL_SNAK_Pos) // 0x08000000 +#define DIEPCTL_SNAK DIEPCTL_SNAK_Msk // Set NAK #define DIEPCTL_SD0PID_SEVNFRM_Pos (28U) -#define DIEPCTL_SD0PID_SEVNFRM_Msk (0x1UL << DIEPCTL_SD0PID_SEVNFRM_Pos) // 0x10000000 */ -#define DIEPCTL_SD0PID_SEVNFRM DIEPCTL_SD0PID_SEVNFRM_Msk // Set DATA0 PID */ +#define DIEPCTL_SD0PID_SEVNFRM_Msk (0x1UL << DIEPCTL_SD0PID_SEVNFRM_Pos) // 0x10000000 +#define DIEPCTL_SD0PID_SEVNFRM DIEPCTL_SD0PID_SEVNFRM_Msk // Set DATA0 PID #define DIEPCTL_SODDFRM_Pos (29U) -#define DIEPCTL_SODDFRM_Msk (0x1UL << DIEPCTL_SODDFRM_Pos) // 0x20000000 */ -#define DIEPCTL_SODDFRM DIEPCTL_SODDFRM_Msk // Set odd frame */ +#define DIEPCTL_SODDFRM_Msk (0x1UL << DIEPCTL_SODDFRM_Pos) // 0x20000000 +#define DIEPCTL_SODDFRM DIEPCTL_SODDFRM_Msk // Set odd frame #define DIEPCTL_EPDIS_Pos (30U) -#define DIEPCTL_EPDIS_Msk (0x1UL << DIEPCTL_EPDIS_Pos) // 0x40000000 */ -#define DIEPCTL_EPDIS DIEPCTL_EPDIS_Msk // Endpoint disable */ +#define DIEPCTL_EPDIS_Msk (0x1UL << DIEPCTL_EPDIS_Pos) // 0x40000000 +#define DIEPCTL_EPDIS DIEPCTL_EPDIS_Msk // Endpoint disable #define DIEPCTL_EPENA_Pos (31U) -#define DIEPCTL_EPENA_Msk (0x1UL << DIEPCTL_EPENA_Pos) // 0x80000000 */ -#define DIEPCTL_EPENA DIEPCTL_EPENA_Msk // Endpoint enable */ +#define DIEPCTL_EPENA_Msk (0x1UL << DIEPCTL_EPENA_Pos) // 0x80000000 +#define DIEPCTL_EPENA DIEPCTL_EPENA_Msk // Endpoint enable /******************** Bit definition for HCCHAR register ********************/ #define HCCHAR_MPSIZ_Pos (0U) -#define HCCHAR_MPSIZ_Msk (0x7FFUL << HCCHAR_MPSIZ_Pos) // 0x000007FF */ -#define HCCHAR_MPSIZ HCCHAR_MPSIZ_Msk // Maximum packet size */ +#define HCCHAR_MPSIZ_Msk (0x7FFUL << HCCHAR_MPSIZ_Pos) // 0x000007FF +#define HCCHAR_MPSIZ HCCHAR_MPSIZ_Msk // Maximum packet size #define HCCHAR_EPNUM_Pos (11U) -#define HCCHAR_EPNUM_Msk (0xFUL << HCCHAR_EPNUM_Pos) // 0x00007800 */ -#define HCCHAR_EPNUM HCCHAR_EPNUM_Msk // Endpoint number */ -#define HCCHAR_EPNUM_0 (0x1UL << HCCHAR_EPNUM_Pos) // 0x00000800 */ -#define HCCHAR_EPNUM_1 (0x2UL << HCCHAR_EPNUM_Pos) // 0x00001000 */ -#define HCCHAR_EPNUM_2 (0x4UL << HCCHAR_EPNUM_Pos) // 0x00002000 */ -#define HCCHAR_EPNUM_3 (0x8UL << HCCHAR_EPNUM_Pos) // 0x00004000 */ +#define HCCHAR_EPNUM_Msk (0xFUL << HCCHAR_EPNUM_Pos) // 0x00007800 +#define HCCHAR_EPNUM HCCHAR_EPNUM_Msk // Endpoint number +#define HCCHAR_EPNUM_0 (0x1UL << HCCHAR_EPNUM_Pos) // 0x00000800 +#define HCCHAR_EPNUM_1 (0x2UL << HCCHAR_EPNUM_Pos) // 0x00001000 +#define HCCHAR_EPNUM_2 (0x4UL << HCCHAR_EPNUM_Pos) // 0x00002000 +#define HCCHAR_EPNUM_3 (0x8UL << HCCHAR_EPNUM_Pos) // 0x00004000 #define HCCHAR_EPDIR_Pos (15U) -#define HCCHAR_EPDIR_Msk (0x1UL << HCCHAR_EPDIR_Pos) // 0x00008000 */ -#define HCCHAR_EPDIR HCCHAR_EPDIR_Msk // Endpoint direction */ +#define HCCHAR_EPDIR_Msk (0x1UL << HCCHAR_EPDIR_Pos) // 0x00008000 +#define HCCHAR_EPDIR HCCHAR_EPDIR_Msk // Endpoint direction #define HCCHAR_LSDEV_Pos (17U) -#define HCCHAR_LSDEV_Msk (0x1UL << HCCHAR_LSDEV_Pos) // 0x00020000 */ -#define HCCHAR_LSDEV HCCHAR_LSDEV_Msk // Low-speed device */ +#define HCCHAR_LSDEV_Msk (0x1UL << HCCHAR_LSDEV_Pos) // 0x00020000 +#define HCCHAR_LSDEV HCCHAR_LSDEV_Msk // Low-speed device #define HCCHAR_EPTYP_Pos (18U) -#define HCCHAR_EPTYP_Msk (0x3UL << HCCHAR_EPTYP_Pos) // 0x000C0000 */ -#define HCCHAR_EPTYP HCCHAR_EPTYP_Msk // Endpoint type */ -#define HCCHAR_EPTYP_0 (0x1UL << HCCHAR_EPTYP_Pos) // 0x00040000 */ -#define HCCHAR_EPTYP_1 (0x2UL << HCCHAR_EPTYP_Pos) // 0x00080000 */ +#define HCCHAR_EPTYP_Msk (0x3UL << HCCHAR_EPTYP_Pos) // 0x000C0000 +#define HCCHAR_EPTYP HCCHAR_EPTYP_Msk // Endpoint type +#define HCCHAR_EPTYP_0 (0x1UL << HCCHAR_EPTYP_Pos) // 0x00040000 +#define HCCHAR_EPTYP_1 (0x2UL << HCCHAR_EPTYP_Pos) // 0x00080000 #define HCCHAR_MC_Pos (20U) -#define HCCHAR_MC_Msk (0x3UL << HCCHAR_MC_Pos) // 0x00300000 */ -#define HCCHAR_MC HCCHAR_MC_Msk // Multi Count (MC) / Error Count (EC) */ -#define HCCHAR_MC_0 (0x1UL << HCCHAR_MC_Pos) // 0x00100000 */ -#define HCCHAR_MC_1 (0x2UL << HCCHAR_MC_Pos) // 0x00200000 */ +#define HCCHAR_MC_Msk (0x3UL << HCCHAR_MC_Pos) // 0x00300000 +#define HCCHAR_MC HCCHAR_MC_Msk // Multi Count (MC) / Error Count (EC) +#define HCCHAR_MC_0 (0x1UL << HCCHAR_MC_Pos) // 0x00100000 +#define HCCHAR_MC_1 (0x2UL << HCCHAR_MC_Pos) // 0x00200000 #define HCCHAR_DAD_Pos (22U) -#define HCCHAR_DAD_Msk (0x7FUL << HCCHAR_DAD_Pos) // 0x1FC00000 */ -#define HCCHAR_DAD HCCHAR_DAD_Msk // Device address */ -#define HCCHAR_DAD_0 (0x01UL << HCCHAR_DAD_Pos) // 0x00400000 */ -#define HCCHAR_DAD_1 (0x02UL << HCCHAR_DAD_Pos) // 0x00800000 */ -#define HCCHAR_DAD_2 (0x04UL << HCCHAR_DAD_Pos) // 0x01000000 */ -#define HCCHAR_DAD_3 (0x08UL << HCCHAR_DAD_Pos) // 0x02000000 */ -#define HCCHAR_DAD_4 (0x10UL << HCCHAR_DAD_Pos) // 0x04000000 */ -#define HCCHAR_DAD_5 (0x20UL << HCCHAR_DAD_Pos) // 0x08000000 */ -#define HCCHAR_DAD_6 (0x40UL << HCCHAR_DAD_Pos) // 0x10000000 */ +#define HCCHAR_DAD_Msk (0x7FUL << HCCHAR_DAD_Pos) // 0x1FC00000 +#define HCCHAR_DAD HCCHAR_DAD_Msk // Device address +#define HCCHAR_DAD_0 (0x01UL << HCCHAR_DAD_Pos) // 0x00400000 +#define HCCHAR_DAD_1 (0x02UL << HCCHAR_DAD_Pos) // 0x00800000 +#define HCCHAR_DAD_2 (0x04UL << HCCHAR_DAD_Pos) // 0x01000000 +#define HCCHAR_DAD_3 (0x08UL << HCCHAR_DAD_Pos) // 0x02000000 +#define HCCHAR_DAD_4 (0x10UL << HCCHAR_DAD_Pos) // 0x04000000 +#define HCCHAR_DAD_5 (0x20UL << HCCHAR_DAD_Pos) // 0x08000000 +#define HCCHAR_DAD_6 (0x40UL << HCCHAR_DAD_Pos) // 0x10000000 #define HCCHAR_ODDFRM_Pos (29U) -#define HCCHAR_ODDFRM_Msk (0x1UL << HCCHAR_ODDFRM_Pos) // 0x20000000 */ -#define HCCHAR_ODDFRM HCCHAR_ODDFRM_Msk // Odd frame */ +#define HCCHAR_ODDFRM_Msk (0x1UL << HCCHAR_ODDFRM_Pos) // 0x20000000 +#define HCCHAR_ODDFRM HCCHAR_ODDFRM_Msk // Odd frame #define HCCHAR_CHDIS_Pos (30U) -#define HCCHAR_CHDIS_Msk (0x1UL << HCCHAR_CHDIS_Pos) // 0x40000000 */ -#define HCCHAR_CHDIS HCCHAR_CHDIS_Msk // Channel disable */ +#define HCCHAR_CHDIS_Msk (0x1UL << HCCHAR_CHDIS_Pos) // 0x40000000 +#define HCCHAR_CHDIS HCCHAR_CHDIS_Msk // Channel disable #define HCCHAR_CHENA_Pos (31U) -#define HCCHAR_CHENA_Msk (0x1UL << HCCHAR_CHENA_Pos) // 0x80000000 */ -#define HCCHAR_CHENA HCCHAR_CHENA_Msk // Channel enable */ +#define HCCHAR_CHENA_Msk (0x1UL << HCCHAR_CHENA_Pos) // 0x80000000 +#define HCCHAR_CHENA HCCHAR_CHENA_Msk // Channel enable /******************** Bit definition for HCSPLT register ********************/ #define HCSPLT_PRTADDR_Pos (0U) -#define HCSPLT_PRTADDR_Msk (0x7FUL << HCSPLT_PRTADDR_Pos) // 0x0000007F */ -#define HCSPLT_PRTADDR HCSPLT_PRTADDR_Msk // Port address */ -#define HCSPLT_PRTADDR_0 (0x01UL << HCSPLT_PRTADDR_Pos) // 0x00000001 */ -#define HCSPLT_PRTADDR_1 (0x02UL << HCSPLT_PRTADDR_Pos) // 0x00000002 */ -#define HCSPLT_PRTADDR_2 (0x04UL << HCSPLT_PRTADDR_Pos) // 0x00000004 */ -#define HCSPLT_PRTADDR_3 (0x08UL << HCSPLT_PRTADDR_Pos) // 0x00000008 */ -#define HCSPLT_PRTADDR_4 (0x10UL << HCSPLT_PRTADDR_Pos) // 0x00000010 */ -#define HCSPLT_PRTADDR_5 (0x20UL << HCSPLT_PRTADDR_Pos) // 0x00000020 */ -#define HCSPLT_PRTADDR_6 (0x40UL << HCSPLT_PRTADDR_Pos) // 0x00000040 */ +#define HCSPLT_PRTADDR_Msk (0x7FUL << HCSPLT_PRTADDR_Pos) // 0x0000007F +#define HCSPLT_PRTADDR HCSPLT_PRTADDR_Msk // Port address +#define HCSPLT_PRTADDR_0 (0x01UL << HCSPLT_PRTADDR_Pos) // 0x00000001 +#define HCSPLT_PRTADDR_1 (0x02UL << HCSPLT_PRTADDR_Pos) // 0x00000002 +#define HCSPLT_PRTADDR_2 (0x04UL << HCSPLT_PRTADDR_Pos) // 0x00000004 +#define HCSPLT_PRTADDR_3 (0x08UL << HCSPLT_PRTADDR_Pos) // 0x00000008 +#define HCSPLT_PRTADDR_4 (0x10UL << HCSPLT_PRTADDR_Pos) // 0x00000010 +#define HCSPLT_PRTADDR_5 (0x20UL << HCSPLT_PRTADDR_Pos) // 0x00000020 +#define HCSPLT_PRTADDR_6 (0x40UL << HCSPLT_PRTADDR_Pos) // 0x00000040 #define HCSPLT_HUBADDR_Pos (7U) -#define HCSPLT_HUBADDR_Msk (0x7FUL << HCSPLT_HUBADDR_Pos) // 0x00003F80 */ -#define HCSPLT_HUBADDR HCSPLT_HUBADDR_Msk // Hub address */ -#define HCSPLT_HUBADDR_0 (0x01UL << HCSPLT_HUBADDR_Pos) // 0x00000080 */ -#define HCSPLT_HUBADDR_1 (0x02UL << HCSPLT_HUBADDR_Pos) // 0x00000100 */ -#define HCSPLT_HUBADDR_2 (0x04UL << HCSPLT_HUBADDR_Pos) // 0x00000200 */ -#define HCSPLT_HUBADDR_3 (0x08UL << HCSPLT_HUBADDR_Pos) // 0x00000400 */ -#define HCSPLT_HUBADDR_4 (0x10UL << HCSPLT_HUBADDR_Pos) // 0x00000800 */ -#define HCSPLT_HUBADDR_5 (0x20UL << HCSPLT_HUBADDR_Pos) // 0x00001000 */ -#define HCSPLT_HUBADDR_6 (0x40UL << HCSPLT_HUBADDR_Pos) // 0x00002000 */ +#define HCSPLT_HUBADDR_Msk (0x7FUL << HCSPLT_HUBADDR_Pos) // 0x00003F80 +#define HCSPLT_HUBADDR HCSPLT_HUBADDR_Msk // Hub address +#define HCSPLT_HUBADDR_0 (0x01UL << HCSPLT_HUBADDR_Pos) // 0x00000080 +#define HCSPLT_HUBADDR_1 (0x02UL << HCSPLT_HUBADDR_Pos) // 0x00000100 +#define HCSPLT_HUBADDR_2 (0x04UL << HCSPLT_HUBADDR_Pos) // 0x00000200 +#define HCSPLT_HUBADDR_3 (0x08UL << HCSPLT_HUBADDR_Pos) // 0x00000400 +#define HCSPLT_HUBADDR_4 (0x10UL << HCSPLT_HUBADDR_Pos) // 0x00000800 +#define HCSPLT_HUBADDR_5 (0x20UL << HCSPLT_HUBADDR_Pos) // 0x00001000 +#define HCSPLT_HUBADDR_6 (0x40UL << HCSPLT_HUBADDR_Pos) // 0x00002000 #define HCSPLT_XACTPOS_Pos (14U) -#define HCSPLT_XACTPOS_Msk (0x3UL << HCSPLT_XACTPOS_Pos) // 0x0000C000 */ -#define HCSPLT_XACTPOS HCSPLT_XACTPOS_Msk // XACTPOS */ -#define HCSPLT_XACTPOS_0 (0x1UL << HCSPLT_XACTPOS_Pos) // 0x00004000 */ -#define HCSPLT_XACTPOS_1 (0x2UL << HCSPLT_XACTPOS_Pos) // 0x00008000 */ +#define HCSPLT_XACTPOS_Msk (0x3UL << HCSPLT_XACTPOS_Pos) // 0x0000C000 +#define HCSPLT_XACTPOS HCSPLT_XACTPOS_Msk // XACTPOS +#define HCSPLT_XACTPOS_0 (0x1UL << HCSPLT_XACTPOS_Pos) // 0x00004000 +#define HCSPLT_XACTPOS_1 (0x2UL << HCSPLT_XACTPOS_Pos) // 0x00008000 #define HCSPLT_COMPLSPLT_Pos (16U) -#define HCSPLT_COMPLSPLT_Msk (0x1UL << HCSPLT_COMPLSPLT_Pos) // 0x00010000 */ -#define HCSPLT_COMPLSPLT HCSPLT_COMPLSPLT_Msk // Do complete split */ +#define HCSPLT_COMPLSPLT_Msk (0x1UL << HCSPLT_COMPLSPLT_Pos) // 0x00010000 +#define HCSPLT_COMPLSPLT HCSPLT_COMPLSPLT_Msk // Do complete split #define HCSPLT_SPLITEN_Pos (31U) -#define HCSPLT_SPLITEN_Msk (0x1UL << HCSPLT_SPLITEN_Pos) // 0x80000000 */ -#define HCSPLT_SPLITEN HCSPLT_SPLITEN_Msk // Split enable */ +#define HCSPLT_SPLITEN_Msk (0x1UL << HCSPLT_SPLITEN_Pos) // 0x80000000 +#define HCSPLT_SPLITEN HCSPLT_SPLITEN_Msk // Split enable /******************** Bit definition for HCINT register ********************/ #define HCINT_XFRC_Pos (0U) -#define HCINT_XFRC_Msk (0x1UL << HCINT_XFRC_Pos) // 0x00000001 */ -#define HCINT_XFRC HCINT_XFRC_Msk // Transfer completed */ +#define HCINT_XFRC_Msk (0x1UL << HCINT_XFRC_Pos) // 0x00000001 +#define HCINT_XFRC HCINT_XFRC_Msk // Transfer completed #define HCINT_CHH_Pos (1U) -#define HCINT_CHH_Msk (0x1UL << HCINT_CHH_Pos) // 0x00000002 */ -#define HCINT_CHH HCINT_CHH_Msk // Channel halted */ +#define HCINT_CHH_Msk (0x1UL << HCINT_CHH_Pos) // 0x00000002 +#define HCINT_CHH HCINT_CHH_Msk // Channel halted #define HCINT_AHBERR_Pos (2U) -#define HCINT_AHBERR_Msk (0x1UL << HCINT_AHBERR_Pos) // 0x00000004 */ -#define HCINT_AHBERR HCINT_AHBERR_Msk // AHB error */ +#define HCINT_AHBERR_Msk (0x1UL << HCINT_AHBERR_Pos) // 0x00000004 +#define HCINT_AHBERR HCINT_AHBERR_Msk // AHB error #define HCINT_STALL_Pos (3U) -#define HCINT_STALL_Msk (0x1UL << HCINT_STALL_Pos) // 0x00000008 */ -#define HCINT_STALL HCINT_STALL_Msk // STALL response received interrupt */ +#define HCINT_STALL_Msk (0x1UL << HCINT_STALL_Pos) // 0x00000008 +#define HCINT_STALL HCINT_STALL_Msk // STALL response received interrupt #define HCINT_NAK_Pos (4U) -#define HCINT_NAK_Msk (0x1UL << HCINT_NAK_Pos) // 0x00000010 */ -#define HCINT_NAK HCINT_NAK_Msk // NAK response received interrupt */ +#define HCINT_NAK_Msk (0x1UL << HCINT_NAK_Pos) // 0x00000010 +#define HCINT_NAK HCINT_NAK_Msk // NAK response received interrupt #define HCINT_ACK_Pos (5U) -#define HCINT_ACK_Msk (0x1UL << HCINT_ACK_Pos) // 0x00000020 */ -#define HCINT_ACK HCINT_ACK_Msk // ACK response received/transmitted interrupt */ +#define HCINT_ACK_Msk (0x1UL << HCINT_ACK_Pos) // 0x00000020 +#define HCINT_ACK HCINT_ACK_Msk // ACK response received/transmitted interrupt #define HCINT_NYET_Pos (6U) -#define HCINT_NYET_Msk (0x1UL << HCINT_NYET_Pos) // 0x00000040 */ -#define HCINT_NYET HCINT_NYET_Msk // Response received interrupt */ +#define HCINT_NYET_Msk (0x1UL << HCINT_NYET_Pos) // 0x00000040 +#define HCINT_NYET HCINT_NYET_Msk // Response received interrupt #define HCINT_TXERR_Pos (7U) -#define HCINT_TXERR_Msk (0x1UL << HCINT_TXERR_Pos) // 0x00000080 */ -#define HCINT_TXERR HCINT_TXERR_Msk // Transaction error */ +#define HCINT_TXERR_Msk (0x1UL << HCINT_TXERR_Pos) // 0x00000080 +#define HCINT_TXERR HCINT_TXERR_Msk // Transaction error #define HCINT_BBERR_Pos (8U) -#define HCINT_BBERR_Msk (0x1UL << HCINT_BBERR_Pos) // 0x00000100 */ -#define HCINT_BBERR HCINT_BBERR_Msk // Babble error */ +#define HCINT_BBERR_Msk (0x1UL << HCINT_BBERR_Pos) // 0x00000100 +#define HCINT_BBERR HCINT_BBERR_Msk // Babble error #define HCINT_FRMOR_Pos (9U) -#define HCINT_FRMOR_Msk (0x1UL << HCINT_FRMOR_Pos) // 0x00000200 */ -#define HCINT_FRMOR HCINT_FRMOR_Msk // Frame overrun */ +#define HCINT_FRMOR_Msk (0x1UL << HCINT_FRMOR_Pos) // 0x00000200 +#define HCINT_FRMOR HCINT_FRMOR_Msk // Frame overrun #define HCINT_DTERR_Pos (10U) -#define HCINT_DTERR_Msk (0x1UL << HCINT_DTERR_Pos) // 0x00000400 */ -#define HCINT_DTERR HCINT_DTERR_Msk // Data toggle error */ +#define HCINT_DTERR_Msk (0x1UL << HCINT_DTERR_Pos) // 0x00000400 +#define HCINT_DTERR HCINT_DTERR_Msk // Data toggle error /******************** Bit definition for DIEPINT register ********************/ #define DIEPINT_XFRC_Pos (0U) -#define DIEPINT_XFRC_Msk (0x1UL << DIEPINT_XFRC_Pos) // 0x00000001 */ -#define DIEPINT_XFRC DIEPINT_XFRC_Msk // Transfer completed interrupt */ +#define DIEPINT_XFRC_Msk (0x1UL << DIEPINT_XFRC_Pos) // 0x00000001 +#define DIEPINT_XFRC DIEPINT_XFRC_Msk // Transfer completed interrupt #define DIEPINT_EPDISD_Pos (1U) -#define DIEPINT_EPDISD_Msk (0x1UL << DIEPINT_EPDISD_Pos) // 0x00000002 */ -#define DIEPINT_EPDISD DIEPINT_EPDISD_Msk // Endpoint disabled interrupt */ +#define DIEPINT_EPDISD_Msk (0x1UL << DIEPINT_EPDISD_Pos) // 0x00000002 +#define DIEPINT_EPDISD DIEPINT_EPDISD_Msk // Endpoint disabled interrupt #define DIEPINT_AHBERR_Pos (2U) -#define DIEPINT_AHBERR_Msk (0x1UL << DIEPINT_AHBERR_Pos) // 0x00000004 */ -#define DIEPINT_AHBERR DIEPINT_AHBERR_Msk // AHB Error (AHBErr) during an IN transaction */ +#define DIEPINT_AHBERR_Msk (0x1UL << DIEPINT_AHBERR_Pos) // 0x00000004 +#define DIEPINT_AHBERR DIEPINT_AHBERR_Msk // AHB Error (AHBErr) during an IN transaction #define DIEPINT_TOC_Pos (3U) -#define DIEPINT_TOC_Msk (0x1UL << DIEPINT_TOC_Pos) // 0x00000008 */ -#define DIEPINT_TOC DIEPINT_TOC_Msk // Timeout condition */ +#define DIEPINT_TOC_Msk (0x1UL << DIEPINT_TOC_Pos) // 0x00000008 +#define DIEPINT_TOC DIEPINT_TOC_Msk // Timeout condition #define DIEPINT_ITTXFE_Pos (4U) -#define DIEPINT_ITTXFE_Msk (0x1UL << DIEPINT_ITTXFE_Pos) // 0x00000010 */ -#define DIEPINT_ITTXFE DIEPINT_ITTXFE_Msk // IN token received when TxFIFO is empty */ +#define DIEPINT_ITTXFE_Msk (0x1UL << DIEPINT_ITTXFE_Pos) // 0x00000010 +#define DIEPINT_ITTXFE DIEPINT_ITTXFE_Msk // IN token received when TxFIFO is empty #define DIEPINT_INEPNM_Pos (5U) -#define DIEPINT_INEPNM_Msk (0x1UL << DIEPINT_INEPNM_Pos) // 0x00000020 */ -#define DIEPINT_INEPNM DIEPINT_INEPNM_Msk // IN token received with EP mismatch */ +#define DIEPINT_INEPNM_Msk (0x1UL << DIEPINT_INEPNM_Pos) // 0x00000020 +#define DIEPINT_INEPNM DIEPINT_INEPNM_Msk // IN token received with EP mismatch #define DIEPINT_INEPNE_Pos (6U) -#define DIEPINT_INEPNE_Msk (0x1UL << DIEPINT_INEPNE_Pos) // 0x00000040 */ -#define DIEPINT_INEPNE DIEPINT_INEPNE_Msk // IN endpoint NAK effective */ +#define DIEPINT_INEPNE_Msk (0x1UL << DIEPINT_INEPNE_Pos) // 0x00000040 +#define DIEPINT_INEPNE DIEPINT_INEPNE_Msk // IN endpoint NAK effective #define DIEPINT_TXFE_Pos (7U) -#define DIEPINT_TXFE_Msk (0x1UL << DIEPINT_TXFE_Pos) // 0x00000080 */ -#define DIEPINT_TXFE DIEPINT_TXFE_Msk // Transmit FIFO empty */ +#define DIEPINT_TXFE_Msk (0x1UL << DIEPINT_TXFE_Pos) // 0x00000080 +#define DIEPINT_TXFE DIEPINT_TXFE_Msk // Transmit FIFO empty #define DIEPINT_TXFIFOUDRN_Pos (8U) -#define DIEPINT_TXFIFOUDRN_Msk (0x1UL << DIEPINT_TXFIFOUDRN_Pos) // 0x00000100 */ -#define DIEPINT_TXFIFOUDRN DIEPINT_TXFIFOUDRN_Msk // Transmit Fifo Underrun */ +#define DIEPINT_TXFIFOUDRN_Msk (0x1UL << DIEPINT_TXFIFOUDRN_Pos) // 0x00000100 +#define DIEPINT_TXFIFOUDRN DIEPINT_TXFIFOUDRN_Msk // Transmit Fifo Underrun #define DIEPINT_BNA_Pos (9U) -#define DIEPINT_BNA_Msk (0x1UL << DIEPINT_BNA_Pos) // 0x00000200 */ -#define DIEPINT_BNA DIEPINT_BNA_Msk // Buffer not available interrupt */ +#define DIEPINT_BNA_Msk (0x1UL << DIEPINT_BNA_Pos) // 0x00000200 +#define DIEPINT_BNA DIEPINT_BNA_Msk // Buffer not available interrupt #define DIEPINT_PKTDRPSTS_Pos (11U) -#define DIEPINT_PKTDRPSTS_Msk (0x1UL << DIEPINT_PKTDRPSTS_Pos) // 0x00000800 */ -#define DIEPINT_PKTDRPSTS DIEPINT_PKTDRPSTS_Msk // Packet dropped status */ +#define DIEPINT_PKTDRPSTS_Msk (0x1UL << DIEPINT_PKTDRPSTS_Pos) // 0x00000800 +#define DIEPINT_PKTDRPSTS DIEPINT_PKTDRPSTS_Msk // Packet dropped status #define DIEPINT_BERR_Pos (12U) -#define DIEPINT_BERR_Msk (0x1UL << DIEPINT_BERR_Pos) // 0x00001000 */ -#define DIEPINT_BERR DIEPINT_BERR_Msk // Babble error interrupt */ +#define DIEPINT_BERR_Msk (0x1UL << DIEPINT_BERR_Pos) // 0x00001000 +#define DIEPINT_BERR DIEPINT_BERR_Msk // Babble error interrupt #define DIEPINT_NAK_Pos (13U) -#define DIEPINT_NAK_Msk (0x1UL << DIEPINT_NAK_Pos) // 0x00002000 */ -#define DIEPINT_NAK DIEPINT_NAK_Msk // NAK interrupt */ +#define DIEPINT_NAK_Msk (0x1UL << DIEPINT_NAK_Pos) // 0x00002000 +#define DIEPINT_NAK DIEPINT_NAK_Msk // NAK interrupt /******************** Bit definition for HCINTMSK register ********************/ #define HCINTMSK_XFRCM_Pos (0U) -#define HCINTMSK_XFRCM_Msk (0x1UL << HCINTMSK_XFRCM_Pos) // 0x00000001 */ -#define HCINTMSK_XFRCM HCINTMSK_XFRCM_Msk // Transfer completed mask */ +#define HCINTMSK_XFRCM_Msk (0x1UL << HCINTMSK_XFRCM_Pos) // 0x00000001 +#define HCINTMSK_XFRCM HCINTMSK_XFRCM_Msk // Transfer completed mask #define HCINTMSK_CHHM_Pos (1U) -#define HCINTMSK_CHHM_Msk (0x1UL << HCINTMSK_CHHM_Pos) // 0x00000002 */ -#define HCINTMSK_CHHM HCINTMSK_CHHM_Msk // Channel halted mask */ +#define HCINTMSK_CHHM_Msk (0x1UL << HCINTMSK_CHHM_Pos) // 0x00000002 +#define HCINTMSK_CHHM HCINTMSK_CHHM_Msk // Channel halted mask #define HCINTMSK_AHBERR_Pos (2U) -#define HCINTMSK_AHBERR_Msk (0x1UL << HCINTMSK_AHBERR_Pos) // 0x00000004 */ -#define HCINTMSK_AHBERR HCINTMSK_AHBERR_Msk // AHB error */ +#define HCINTMSK_AHBERR_Msk (0x1UL << HCINTMSK_AHBERR_Pos) // 0x00000004 +#define HCINTMSK_AHBERR HCINTMSK_AHBERR_Msk // AHB error #define HCINTMSK_STALLM_Pos (3U) -#define HCINTMSK_STALLM_Msk (0x1UL << HCINTMSK_STALLM_Pos) // 0x00000008 */ -#define HCINTMSK_STALLM HCINTMSK_STALLM_Msk // STALL response received interrupt mask */ +#define HCINTMSK_STALLM_Msk (0x1UL << HCINTMSK_STALLM_Pos) // 0x00000008 +#define HCINTMSK_STALLM HCINTMSK_STALLM_Msk // STALL response received interrupt mask #define HCINTMSK_NAKM_Pos (4U) -#define HCINTMSK_NAKM_Msk (0x1UL << HCINTMSK_NAKM_Pos) // 0x00000010 */ -#define HCINTMSK_NAKM HCINTMSK_NAKM_Msk // NAK response received interrupt mask */ +#define HCINTMSK_NAKM_Msk (0x1UL << HCINTMSK_NAKM_Pos) // 0x00000010 +#define HCINTMSK_NAKM HCINTMSK_NAKM_Msk // NAK response received interrupt mask #define HCINTMSK_ACKM_Pos (5U) -#define HCINTMSK_ACKM_Msk (0x1UL << HCINTMSK_ACKM_Pos) // 0x00000020 */ -#define HCINTMSK_ACKM HCINTMSK_ACKM_Msk // ACK response received/transmitted interrupt mask */ +#define HCINTMSK_ACKM_Msk (0x1UL << HCINTMSK_ACKM_Pos) // 0x00000020 +#define HCINTMSK_ACKM HCINTMSK_ACKM_Msk // ACK response received/transmitted interrupt mask #define HCINTMSK_NYET_Pos (6U) -#define HCINTMSK_NYET_Msk (0x1UL << HCINTMSK_NYET_Pos) // 0x00000040 */ -#define HCINTMSK_NYET HCINTMSK_NYET_Msk // response received interrupt mask */ +#define HCINTMSK_NYET_Msk (0x1UL << HCINTMSK_NYET_Pos) // 0x00000040 +#define HCINTMSK_NYET HCINTMSK_NYET_Msk // response received interrupt mask #define HCINTMSK_TXERRM_Pos (7U) -#define HCINTMSK_TXERRM_Msk (0x1UL << HCINTMSK_TXERRM_Pos) // 0x00000080 */ -#define HCINTMSK_TXERRM HCINTMSK_TXERRM_Msk // Transaction error mask */ +#define HCINTMSK_TXERRM_Msk (0x1UL << HCINTMSK_TXERRM_Pos) // 0x00000080 +#define HCINTMSK_TXERRM HCINTMSK_TXERRM_Msk // Transaction error mask #define HCINTMSK_BBERRM_Pos (8U) -#define HCINTMSK_BBERRM_Msk (0x1UL << HCINTMSK_BBERRM_Pos) // 0x00000100 */ -#define HCINTMSK_BBERRM HCINTMSK_BBERRM_Msk // Babble error mask */ +#define HCINTMSK_BBERRM_Msk (0x1UL << HCINTMSK_BBERRM_Pos) // 0x00000100 +#define HCINTMSK_BBERRM HCINTMSK_BBERRM_Msk // Babble error mask #define HCINTMSK_FRMORM_Pos (9U) -#define HCINTMSK_FRMORM_Msk (0x1UL << HCINTMSK_FRMORM_Pos) // 0x00000200 */ -#define HCINTMSK_FRMORM HCINTMSK_FRMORM_Msk // Frame overrun mask */ +#define HCINTMSK_FRMORM_Msk (0x1UL << HCINTMSK_FRMORM_Pos) // 0x00000200 +#define HCINTMSK_FRMORM HCINTMSK_FRMORM_Msk // Frame overrun mask #define HCINTMSK_DTERRM_Pos (10U) -#define HCINTMSK_DTERRM_Msk (0x1UL << HCINTMSK_DTERRM_Pos) // 0x00000400 */ -#define HCINTMSK_DTERRM HCINTMSK_DTERRM_Msk // Data toggle error mask */ +#define HCINTMSK_DTERRM_Msk (0x1UL << HCINTMSK_DTERRM_Pos) // 0x00000400 +#define HCINTMSK_DTERRM HCINTMSK_DTERRM_Msk // Data toggle error mask /******************** Bit definition for DIEPTSIZ register ********************/ #define DIEPTSIZ_XFRSIZ_Pos (0U) -#define DIEPTSIZ_XFRSIZ_Msk (0x7FFFFUL << DIEPTSIZ_XFRSIZ_Pos) // 0x0007FFFF */ -#define DIEPTSIZ_XFRSIZ DIEPTSIZ_XFRSIZ_Msk // Transfer size */ +#define DIEPTSIZ_XFRSIZ_Msk (0x7FFFFUL << DIEPTSIZ_XFRSIZ_Pos) // 0x0007FFFF +#define DIEPTSIZ_XFRSIZ DIEPTSIZ_XFRSIZ_Msk // Transfer size #define DIEPTSIZ_PKTCNT_Pos (19U) -#define DIEPTSIZ_PKTCNT_Msk (0x3FFUL << DIEPTSIZ_PKTCNT_Pos) // 0x1FF80000 */ -#define DIEPTSIZ_PKTCNT DIEPTSIZ_PKTCNT_Msk // Packet count */ +#define DIEPTSIZ_PKTCNT_Msk (0x3FFUL << DIEPTSIZ_PKTCNT_Pos) // 0x1FF80000 +#define DIEPTSIZ_PKTCNT DIEPTSIZ_PKTCNT_Msk // Packet count #define DIEPTSIZ_MULCNT_Pos (29U) -#define DIEPTSIZ_MULCNT_Msk (0x3UL << DIEPTSIZ_MULCNT_Pos) // 0x60000000 */ -#define DIEPTSIZ_MULCNT DIEPTSIZ_MULCNT_Msk // Packet count */ +#define DIEPTSIZ_MULCNT_Msk (0x3UL << DIEPTSIZ_MULCNT_Pos) // 0x60000000 +#define DIEPTSIZ_MULCNT DIEPTSIZ_MULCNT_Msk // Packet count /******************** Bit definition for HCTSIZ register ********************/ #define HCTSIZ_XFRSIZ_Pos (0U) -#define HCTSIZ_XFRSIZ_Msk (0x7FFFFUL << HCTSIZ_XFRSIZ_Pos) // 0x0007FFFF */ -#define HCTSIZ_XFRSIZ HCTSIZ_XFRSIZ_Msk // Transfer size */ +#define HCTSIZ_XFRSIZ_Msk (0x7FFFFUL << HCTSIZ_XFRSIZ_Pos) // 0x0007FFFF +#define HCTSIZ_XFRSIZ HCTSIZ_XFRSIZ_Msk // Transfer size #define HCTSIZ_PKTCNT_Pos (19U) -#define HCTSIZ_PKTCNT_Msk (0x3FFUL << HCTSIZ_PKTCNT_Pos) // 0x1FF80000 */ -#define HCTSIZ_PKTCNT HCTSIZ_PKTCNT_Msk // Packet count */ +#define HCTSIZ_PKTCNT_Msk (0x3FFUL << HCTSIZ_PKTCNT_Pos) // 0x1FF80000 +#define HCTSIZ_PKTCNT HCTSIZ_PKTCNT_Msk // Packet count #define HCTSIZ_DOPING_Pos (31U) -#define HCTSIZ_DOPING_Msk (0x1UL << HCTSIZ_DOPING_Pos) // 0x80000000 */ -#define HCTSIZ_DOPING HCTSIZ_DOPING_Msk // Do PING */ +#define HCTSIZ_DOPING_Msk (0x1UL << HCTSIZ_DOPING_Pos) // 0x80000000 +#define HCTSIZ_DOPING HCTSIZ_DOPING_Msk // Do PING #define HCTSIZ_DPID_Pos (29U) -#define HCTSIZ_DPID_Msk (0x3UL << HCTSIZ_DPID_Pos) // 0x60000000 */ -#define HCTSIZ_DPID HCTSIZ_DPID_Msk // Data PID */ -#define HCTSIZ_DPID_0 (0x1UL << HCTSIZ_DPID_Pos) // 0x20000000 */ -#define HCTSIZ_DPID_1 (0x2UL << HCTSIZ_DPID_Pos) // 0x40000000 */ +#define HCTSIZ_DPID_Msk (0x3UL << HCTSIZ_DPID_Pos) // 0x60000000 +#define HCTSIZ_DPID HCTSIZ_DPID_Msk // Data PID +#define HCTSIZ_DPID_0 (0x1UL << HCTSIZ_DPID_Pos) // 0x20000000 +#define HCTSIZ_DPID_1 (0x2UL << HCTSIZ_DPID_Pos) // 0x40000000 /******************** Bit definition for DIEPDMA register ********************/ #define DIEPDMA_DMAADDR_Pos (0U) -#define DIEPDMA_DMAADDR_Msk (0xFFFFFFFFUL << DIEPDMA_DMAADDR_Pos) // 0xFFFFFFFF */ -#define DIEPDMA_DMAADDR DIEPDMA_DMAADDR_Msk // DMA address */ +#define DIEPDMA_DMAADDR_Msk (0xFFFFFFFFUL << DIEPDMA_DMAADDR_Pos) // 0xFFFFFFFF +#define DIEPDMA_DMAADDR DIEPDMA_DMAADDR_Msk // DMA address /******************** Bit definition for HCDMA register ********************/ #define HCDMA_DMAADDR_Pos (0U) -#define HCDMA_DMAADDR_Msk (0xFFFFFFFFUL << HCDMA_DMAADDR_Pos) // 0xFFFFFFFF */ -#define HCDMA_DMAADDR HCDMA_DMAADDR_Msk // DMA address */ +#define HCDMA_DMAADDR_Msk (0xFFFFFFFFUL << HCDMA_DMAADDR_Pos) // 0xFFFFFFFF +#define HCDMA_DMAADDR HCDMA_DMAADDR_Msk // DMA address /******************** Bit definition for DTXFSTS register ********************/ #define DTXFSTS_INEPTFSAV_Pos (0U) -#define DTXFSTS_INEPTFSAV_Msk (0xFFFFUL << DTXFSTS_INEPTFSAV_Pos) // 0x0000FFFF */ -#define DTXFSTS_INEPTFSAV DTXFSTS_INEPTFSAV_Msk // IN endpoint TxFIFO space available */ +#define DTXFSTS_INEPTFSAV_Msk (0xFFFFUL << DTXFSTS_INEPTFSAV_Pos) // 0x0000FFFF +#define DTXFSTS_INEPTFSAV DTXFSTS_INEPTFSAV_Msk // IN endpoint TxFIFO space available /******************** Bit definition for DIEPTXF register ********************/ #define DIEPTXF_INEPTXSA_Pos (0U) -#define DIEPTXF_INEPTXSA_Msk (0xFFFFUL << DIEPTXF_INEPTXSA_Pos) // 0x0000FFFF */ -#define DIEPTXF_INEPTXSA DIEPTXF_INEPTXSA_Msk // IN endpoint FIFOx transmit RAM start address */ +#define DIEPTXF_INEPTXSA_Msk (0xFFFFUL << DIEPTXF_INEPTXSA_Pos) // 0x0000FFFF +#define DIEPTXF_INEPTXSA DIEPTXF_INEPTXSA_Msk // IN endpoint FIFOx transmit RAM start address #define DIEPTXF_INEPTXFD_Pos (16U) -#define DIEPTXF_INEPTXFD_Msk (0xFFFFUL << DIEPTXF_INEPTXFD_Pos) // 0xFFFF0000 */ -#define DIEPTXF_INEPTXFD DIEPTXF_INEPTXFD_Msk // IN endpoint TxFIFO depth */ +#define DIEPTXF_INEPTXFD_Msk (0xFFFFUL << DIEPTXF_INEPTXFD_Pos) // 0xFFFF0000 +#define DIEPTXF_INEPTXFD DIEPTXF_INEPTXFD_Msk // IN endpoint TxFIFO depth /******************** Bit definition for DOEPCTL register ********************/ #define DOEPCTL_MPSIZ_Pos (0U) -#define DOEPCTL_MPSIZ_Msk (0x7FFUL << DOEPCTL_MPSIZ_Pos) // 0x000007FF */ -#define DOEPCTL_MPSIZ DOEPCTL_MPSIZ_Msk // Maximum packet size */ //Bit 1 */ +#define DOEPCTL_MPSIZ_Msk (0x7FFUL << DOEPCTL_MPSIZ_Pos) // 0x000007FF +#define DOEPCTL_MPSIZ DOEPCTL_MPSIZ_Msk // Maximum packet size //Bit 1 #define DOEPCTL_USBAEP_Pos (15U) -#define DOEPCTL_USBAEP_Msk (0x1UL << DOEPCTL_USBAEP_Pos) // 0x00008000 */ -#define DOEPCTL_USBAEP DOEPCTL_USBAEP_Msk // USB active endpoint */ +#define DOEPCTL_USBAEP_Msk (0x1UL << DOEPCTL_USBAEP_Pos) // 0x00008000 +#define DOEPCTL_USBAEP DOEPCTL_USBAEP_Msk // USB active endpoint #define DOEPCTL_NAKSTS_Pos (17U) -#define DOEPCTL_NAKSTS_Msk (0x1UL << DOEPCTL_NAKSTS_Pos) // 0x00020000 */ -#define DOEPCTL_NAKSTS DOEPCTL_NAKSTS_Msk // NAK status */ +#define DOEPCTL_NAKSTS_Msk (0x1UL << DOEPCTL_NAKSTS_Pos) // 0x00020000 +#define DOEPCTL_NAKSTS DOEPCTL_NAKSTS_Msk // NAK status #define DOEPCTL_SD0PID_SEVNFRM_Pos (28U) -#define DOEPCTL_SD0PID_SEVNFRM_Msk (0x1UL << DOEPCTL_SD0PID_SEVNFRM_Pos) // 0x10000000 */ -#define DOEPCTL_SD0PID_SEVNFRM DOEPCTL_SD0PID_SEVNFRM_Msk // Set DATA0 PID */ +#define DOEPCTL_SD0PID_SEVNFRM_Msk (0x1UL << DOEPCTL_SD0PID_SEVNFRM_Pos) // 0x10000000 +#define DOEPCTL_SD0PID_SEVNFRM DOEPCTL_SD0PID_SEVNFRM_Msk // Set DATA0 PID #define DOEPCTL_SODDFRM_Pos (29U) -#define DOEPCTL_SODDFRM_Msk (0x1UL << DOEPCTL_SODDFRM_Pos) // 0x20000000 */ -#define DOEPCTL_SODDFRM DOEPCTL_SODDFRM_Msk // Set odd frame */ +#define DOEPCTL_SODDFRM_Msk (0x1UL << DOEPCTL_SODDFRM_Pos) // 0x20000000 +#define DOEPCTL_SODDFRM DOEPCTL_SODDFRM_Msk // Set odd frame #define DOEPCTL_EPTYP_Pos (18U) -#define DOEPCTL_EPTYP_Msk (0x3UL << DOEPCTL_EPTYP_Pos) // 0x000C0000 */ -#define DOEPCTL_EPTYP DOEPCTL_EPTYP_Msk // Endpoint type */ -#define DOEPCTL_EPTYP_0 (0x1UL << DOEPCTL_EPTYP_Pos) // 0x00040000 */ -#define DOEPCTL_EPTYP_1 (0x2UL << DOEPCTL_EPTYP_Pos) // 0x00080000 */ +#define DOEPCTL_EPTYP_Msk (0x3UL << DOEPCTL_EPTYP_Pos) // 0x000C0000 +#define DOEPCTL_EPTYP DOEPCTL_EPTYP_Msk // Endpoint type +#define DOEPCTL_EPTYP_0 (0x1UL << DOEPCTL_EPTYP_Pos) // 0x00040000 +#define DOEPCTL_EPTYP_1 (0x2UL << DOEPCTL_EPTYP_Pos) // 0x00080000 #define DOEPCTL_SNPM_Pos (20U) -#define DOEPCTL_SNPM_Msk (0x1UL << DOEPCTL_SNPM_Pos) // 0x00100000 */ -#define DOEPCTL_SNPM DOEPCTL_SNPM_Msk // Snoop mode */ +#define DOEPCTL_SNPM_Msk (0x1UL << DOEPCTL_SNPM_Pos) // 0x00100000 +#define DOEPCTL_SNPM DOEPCTL_SNPM_Msk // Snoop mode #define DOEPCTL_STALL_Pos (21U) -#define DOEPCTL_STALL_Msk (0x1UL << DOEPCTL_STALL_Pos) // 0x00200000 */ -#define DOEPCTL_STALL DOEPCTL_STALL_Msk // STALL handshake */ +#define DOEPCTL_STALL_Msk (0x1UL << DOEPCTL_STALL_Pos) // 0x00200000 +#define DOEPCTL_STALL DOEPCTL_STALL_Msk // STALL handshake #define DOEPCTL_CNAK_Pos (26U) -#define DOEPCTL_CNAK_Msk (0x1UL << DOEPCTL_CNAK_Pos) // 0x04000000 */ -#define DOEPCTL_CNAK DOEPCTL_CNAK_Msk // Clear NAK */ +#define DOEPCTL_CNAK_Msk (0x1UL << DOEPCTL_CNAK_Pos) // 0x04000000 +#define DOEPCTL_CNAK DOEPCTL_CNAK_Msk // Clear NAK #define DOEPCTL_SNAK_Pos (27U) -#define DOEPCTL_SNAK_Msk (0x1UL << DOEPCTL_SNAK_Pos) // 0x08000000 */ -#define DOEPCTL_SNAK DOEPCTL_SNAK_Msk // Set NAK */ +#define DOEPCTL_SNAK_Msk (0x1UL << DOEPCTL_SNAK_Pos) // 0x08000000 +#define DOEPCTL_SNAK DOEPCTL_SNAK_Msk // Set NAK #define DOEPCTL_EPDIS_Pos (30U) -#define DOEPCTL_EPDIS_Msk (0x1UL << DOEPCTL_EPDIS_Pos) // 0x40000000 */ -#define DOEPCTL_EPDIS DOEPCTL_EPDIS_Msk // Endpoint disable */ +#define DOEPCTL_EPDIS_Msk (0x1UL << DOEPCTL_EPDIS_Pos) // 0x40000000 +#define DOEPCTL_EPDIS DOEPCTL_EPDIS_Msk // Endpoint disable #define DOEPCTL_EPENA_Pos (31U) -#define DOEPCTL_EPENA_Msk (0x1UL << DOEPCTL_EPENA_Pos) // 0x80000000 */ -#define DOEPCTL_EPENA DOEPCTL_EPENA_Msk // Endpoint enable */ +#define DOEPCTL_EPENA_Msk (0x1UL << DOEPCTL_EPENA_Pos) // 0x80000000 +#define DOEPCTL_EPENA DOEPCTL_EPENA_Msk // Endpoint enable /******************** Bit definition for DOEPINT register ********************/ #define DOEPINT_XFRC_Pos (0U) -#define DOEPINT_XFRC_Msk (0x1UL << DOEPINT_XFRC_Pos) // 0x00000001 */ -#define DOEPINT_XFRC DOEPINT_XFRC_Msk // Transfer completed interrupt */ +#define DOEPINT_XFRC_Msk (0x1UL << DOEPINT_XFRC_Pos) // 0x00000001 +#define DOEPINT_XFRC DOEPINT_XFRC_Msk // Transfer completed interrupt #define DOEPINT_EPDISD_Pos (1U) -#define DOEPINT_EPDISD_Msk (0x1UL << DOEPINT_EPDISD_Pos) // 0x00000002 */ -#define DOEPINT_EPDISD DOEPINT_EPDISD_Msk // Endpoint disabled interrupt */ +#define DOEPINT_EPDISD_Msk (0x1UL << DOEPINT_EPDISD_Pos) // 0x00000002 +#define DOEPINT_EPDISD DOEPINT_EPDISD_Msk // Endpoint disabled interrupt #define DOEPINT_AHBERR_Pos (2U) -#define DOEPINT_AHBERR_Msk (0x1UL << DOEPINT_AHBERR_Pos) // 0x00000004 */ -#define DOEPINT_AHBERR DOEPINT_AHBERR_Msk // AHB Error (AHBErr) during an OUT transaction */ +#define DOEPINT_AHBERR_Msk (0x1UL << DOEPINT_AHBERR_Pos) // 0x00000004 +#define DOEPINT_AHBERR DOEPINT_AHBERR_Msk // AHB Error (AHBErr) during an OUT transaction #define DOEPINT_STUP_Pos (3U) -#define DOEPINT_STUP_Msk (0x1UL << DOEPINT_STUP_Pos) // 0x00000008 */ -#define DOEPINT_STUP DOEPINT_STUP_Msk // SETUP phase done */ +#define DOEPINT_STUP_Msk (0x1UL << DOEPINT_STUP_Pos) // 0x00000008 +#define DOEPINT_STUP DOEPINT_STUP_Msk // SETUP phase done #define DOEPINT_OTEPDIS_Pos (4U) -#define DOEPINT_OTEPDIS_Msk (0x1UL << DOEPINT_OTEPDIS_Pos) // 0x00000010 */ -#define DOEPINT_OTEPDIS DOEPINT_OTEPDIS_Msk // OUT token received when endpoint disabled */ +#define DOEPINT_OTEPDIS_Msk (0x1UL << DOEPINT_OTEPDIS_Pos) // 0x00000010 +#define DOEPINT_OTEPDIS DOEPINT_OTEPDIS_Msk // OUT token received when endpoint disabled #define DOEPINT_OTEPSPR_Pos (5U) -#define DOEPINT_OTEPSPR_Msk (0x1UL << DOEPINT_OTEPSPR_Pos) // 0x00000020 */ -#define DOEPINT_OTEPSPR DOEPINT_OTEPSPR_Msk // Status Phase Received For Control Write */ +#define DOEPINT_OTEPSPR_Msk (0x1UL << DOEPINT_OTEPSPR_Pos) // 0x00000020 +#define DOEPINT_OTEPSPR DOEPINT_OTEPSPR_Msk // Status Phase Received For Control Write #define DOEPINT_B2BSTUP_Pos (6U) -#define DOEPINT_B2BSTUP_Msk (0x1UL << DOEPINT_B2BSTUP_Pos) // 0x00000040 */ -#define DOEPINT_B2BSTUP DOEPINT_B2BSTUP_Msk // Back-to-back SETUP packets received */ +#define DOEPINT_B2BSTUP_Msk (0x1UL << DOEPINT_B2BSTUP_Pos) // 0x00000040 +#define DOEPINT_B2BSTUP DOEPINT_B2BSTUP_Msk // Back-to-back SETUP packets received #define DOEPINT_OUTPKTERR_Pos (8U) -#define DOEPINT_OUTPKTERR_Msk (0x1UL << DOEPINT_OUTPKTERR_Pos) // 0x00000100 */ -#define DOEPINT_OUTPKTERR DOEPINT_OUTPKTERR_Msk // OUT packet error */ +#define DOEPINT_OUTPKTERR_Msk (0x1UL << DOEPINT_OUTPKTERR_Pos) // 0x00000100 +#define DOEPINT_OUTPKTERR DOEPINT_OUTPKTERR_Msk // OUT packet error #define DOEPINT_NAK_Pos (13U) -#define DOEPINT_NAK_Msk (0x1UL << DOEPINT_NAK_Pos) // 0x00002000 */ -#define DOEPINT_NAK DOEPINT_NAK_Msk // NAK Packet is transmitted by the device */ +#define DOEPINT_NAK_Msk (0x1UL << DOEPINT_NAK_Pos) // 0x00002000 +#define DOEPINT_NAK DOEPINT_NAK_Msk // NAK Packet is transmitted by the device #define DOEPINT_NYET_Pos (14U) -#define DOEPINT_NYET_Msk (0x1UL << DOEPINT_NYET_Pos) // 0x00004000 */ -#define DOEPINT_NYET DOEPINT_NYET_Msk // NYET interrupt */ +#define DOEPINT_NYET_Msk (0x1UL << DOEPINT_NYET_Pos) // 0x00004000 +#define DOEPINT_NYET DOEPINT_NYET_Msk // NYET interrupt #define DOEPINT_STPKTRX_Pos (15U) -#define DOEPINT_STPKTRX_Msk (0x1UL << DOEPINT_STPKTRX_Pos) // 0x00008000 */ -#define DOEPINT_STPKTRX DOEPINT_STPKTRX_Msk // Setup Packet Received */ +#define DOEPINT_STPKTRX_Msk (0x1UL << DOEPINT_STPKTRX_Pos) // 0x00008000 +#define DOEPINT_STPKTRX DOEPINT_STPKTRX_Msk // Setup Packet Received /******************** Bit definition for DOEPTSIZ register ********************/ #define DOEPTSIZ_XFRSIZ_Pos (0U) -#define DOEPTSIZ_XFRSIZ_Msk (0x7FFFFUL << DOEPTSIZ_XFRSIZ_Pos) // 0x0007FFFF */ -#define DOEPTSIZ_XFRSIZ DOEPTSIZ_XFRSIZ_Msk // Transfer size */ +#define DOEPTSIZ_XFRSIZ_Msk (0x7FFFFUL << DOEPTSIZ_XFRSIZ_Pos) // 0x0007FFFF +#define DOEPTSIZ_XFRSIZ DOEPTSIZ_XFRSIZ_Msk // Transfer size #define DOEPTSIZ_PKTCNT_Pos (19U) -#define DOEPTSIZ_PKTCNT_Msk (0x3FFUL << DOEPTSIZ_PKTCNT_Pos) // 0x1FF80000 */ -#define DOEPTSIZ_PKTCNT DOEPTSIZ_PKTCNT_Msk // Packet count */ +#define DOEPTSIZ_PKTCNT_Msk (0x3FFUL << DOEPTSIZ_PKTCNT_Pos) // 0x1FF80000 +#define DOEPTSIZ_PKTCNT DOEPTSIZ_PKTCNT_Msk // Packet count #define DOEPTSIZ_STUPCNT_Pos (29U) -#define DOEPTSIZ_STUPCNT_Msk (0x3UL << DOEPTSIZ_STUPCNT_Pos) // 0x60000000 */ -#define DOEPTSIZ_STUPCNT DOEPTSIZ_STUPCNT_Msk // SETUP packet count */ -#define DOEPTSIZ_STUPCNT_0 (0x1UL << DOEPTSIZ_STUPCNT_Pos) // 0x20000000 */ -#define DOEPTSIZ_STUPCNT_1 (0x2UL << DOEPTSIZ_STUPCNT_Pos) // 0x40000000 */ +#define DOEPTSIZ_STUPCNT_Msk (0x3UL << DOEPTSIZ_STUPCNT_Pos) // 0x60000000 +#define DOEPTSIZ_STUPCNT DOEPTSIZ_STUPCNT_Msk // SETUP packet count +#define DOEPTSIZ_STUPCNT_0 (0x1UL << DOEPTSIZ_STUPCNT_Pos) // 0x20000000 +#define DOEPTSIZ_STUPCNT_1 (0x2UL << DOEPTSIZ_STUPCNT_Pos) // 0x40000000 /******************** Bit definition for PCGCTL register ********************/ #define PCGCTL_IF_DEV_MODE TU_BIT(31) -- cgit v1.3.1 From db3ff4b3527b9b81d381ecc21a74e76e81b2a8e9 Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 31 Oct 2023 11:26:31 +0700 Subject: usb on u5a5 hs work well with correct VBVALEXTOEN/VBVALOVAL set --- hw/bsp/family_support.cmake | 2 +- hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake | 1 + hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h | 6 +++-- hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk | 1 + hw/bsp/stm32u5/family.c | 28 +++++++++++------------ src/portable/synopsys/dwc2/dcd_dwc2.c | 3 ++- src/portable/synopsys/dwc2/dwc2_stm32.h | 25 +++++++++++--------- 7 files changed, 37 insertions(+), 29 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/family_support.cmake b/hw/bsp/family_support.cmake index 9c625b58e..eec42160e 100644 --- a/hw/bsp/family_support.cmake +++ b/hw/bsp/family_support.cmake @@ -217,7 +217,7 @@ function(family_configure_common TARGET RTOS) if (NOT TARGET segger_rtt) add_library(segger_rtt STATIC ${TOP}/lib/SEGGER_RTT/RTT/SEGGER_RTT.c) target_include_directories(segger_rtt PUBLIC ${TOP}/lib/SEGGER_RTT/RTT) - target_compile_definitions(segger_rtt PUBLIC SEGGER_RTT_MODE_DEFAULT=SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) + #target_compile_definitions(segger_rtt PUBLIC SEGGER_RTT_MODE_DEFAULT=SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL) endif() target_link_libraries(${TARGET} PUBLIC segger_rtt) endif () diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake index 24d4ef95a..230c3b722 100644 --- a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.cmake @@ -6,5 +6,6 @@ set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/STM32U5A5ZJTXQ_FLASH.ld) function(update_board TARGET) target_compile_definitions(${TARGET} PUBLIC STM32U5A5xx + HSE_VALUE=16000000UL ) endfunction() diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h index c4eb94dd8..1cc61d6bb 100644 --- a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.h @@ -38,8 +38,8 @@ extern "C" #define LED_STATE_ON 1 // BUTTON -#define BUTTON_PORT GPIOA -#define BUTTON_PIN GPIO_PIN_0 +#define BUTTON_PORT GPIOC +#define BUTTON_PIN GPIO_PIN_13 #define BUTTON_STATE_ACTIVE 1 // UART Enable for STLink VCOM @@ -101,6 +101,8 @@ static void SystemClock_Config(void) { HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_4); // USB Clock + __HAL_RCC_SYSCFG_CLK_ENABLE(); + RCC_PeriphCLKInitTypeDef PeriphClkInit = {0}; PeriphClkInit.PeriphClockSelection = RCC_PERIPHCLK_USBPHY; PeriphClkInit.UsbPhyClockSelection = RCC_USBPHYCLKSOURCE_HSE; diff --git a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk index 13025efa6..e759cec24 100644 --- a/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk +++ b/hw/bsp/stm32u5/boards/stm32u5a5nucleo/board.mk @@ -1,5 +1,6 @@ CFLAGS += \ -DSTM32U5A5xx \ + -DHSE_VALUE=16000000UL \ # All source paths should be relative to the top level. LD_FILE = ${BOARD_PATH}/STM32U5A5ZJTXQ_FLASH.ld diff --git a/hw/bsp/stm32u5/family.c b/hw/bsp/stm32u5/family.c index 3fbc50d93..94294b25d 100644 --- a/hw/bsp/stm32u5/family.c +++ b/hw/bsp/stm32u5/family.c @@ -124,7 +124,7 @@ void board_init(void) { HAL_UART_Init(&UartHandle); - /* Configure USB FS GPIOs */ + /* Configure USB GPIOs */ /* Configure DM DP Pins */ GPIO_InitStruct.Pin = (GPIO_PIN_11 | GPIO_PIN_12); GPIO_InitStruct.Mode = GPIO_MODE_AF_PP; @@ -153,6 +153,12 @@ void board_init(void) { GPIO_InitStruct.Pull = GPIO_NOPULL; HAL_GPIO_Init(GPIOA, &GPIO_InitStruct); + /* Enable USB power on Pwrctrl CR2 register */ + HAL_PWREx_EnableVddUSB(); + + /* USB clock enable */ + __HAL_RCC_USB_OTG_FS_CLK_ENABLE(); + // Enable VBUS sense (B device) via pin PA9 USB_OTG_FS->GCCFG |= USB_OTG_GCCFG_VBDEN; #else @@ -164,11 +170,6 @@ void board_init(void) { USB_OTG_FS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOVAL; #endif // vbus sense - /* Enable USB power on Pwrctrl CR2 register */ - HAL_PWREx_EnableVddUSB(); - - /* USB clock enable */ - __HAL_RCC_USB_OTG_FS_CLK_ENABLE(); #else // STM59x/Ax/Fx/Gx only have 1 USB HS port @@ -177,15 +178,7 @@ void board_init(void) { NVIC_SetPriority(OTG_HS_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY); #endif - // Disable VBUS sense (B device) - USB_OTG_HS->GCCFG &= ~USB_OTG_GCCFG_VBDEN; - - // B-peripheral session valid override enable - USB_OTG_HS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOEN; - USB_OTG_HS->GOTGCTL |= USB_OTG_GOTGCTL_BVALOVAL; - /* USB clock enable */ - __HAL_RCC_SYSCFG_CLK_ENABLE(); __HAL_RCC_USB_OTG_HS_CLK_ENABLE(); __HAL_RCC_USBPHYC_CLK_ENABLE(); @@ -195,6 +188,13 @@ void board_init(void) { /*Configuring the SYSCFG registers OTG_HS PHY*/ HAL_SYSCFG_EnableOTGPHY(SYSCFG_OTG_HS_PHY_ENABLE); + + // Disable VBUS sense (B device) + USB_OTG_HS->GCCFG &= ~USB_OTG_GCCFG_VBDEN; + + // B-peripheral session valid override enable + USB_OTG_HS->GCCFG |= USB_OTG_GCCFG_VBVALEXTOEN; + USB_OTG_HS->GCCFG |= USB_OTG_GCCFG_VBVALOVAL; #endif // USB_OTG_FS diff --git a/src/portable/synopsys/dwc2/dcd_dwc2.c b/src/portable/synopsys/dwc2/dcd_dwc2.c index 7b50a7d54..5c5450ac2 100644 --- a/src/portable/synopsys/dwc2/dcd_dwc2.c +++ b/src/portable/synopsys/dwc2/dcd_dwc2.c @@ -1074,7 +1074,6 @@ void dcd_int_handler(uint8_t rhport) { if (int_status & GINTSTS_ENUMDNE) { // ENUMDNE is the end of reset where speed of the link is detected - dwc2->gintsts = GINTSTS_ENUMDNE; tusb_speed_t speed; @@ -1094,6 +1093,8 @@ void dcd_int_handler(uint8_t rhport) { break; } + // TODO must update GUSBCFG_TRDT according to link speed + dcd_event_bus_reset(rhport, speed, true); } diff --git a/src/portable/synopsys/dwc2/dwc2_stm32.h b/src/portable/synopsys/dwc2/dwc2_stm32.h index 57df4e941..2070c3943 100644 --- a/src/portable/synopsys/dwc2/dwc2_stm32.h +++ b/src/portable/synopsys/dwc2/dwc2_stm32.h @@ -24,8 +24,8 @@ * This file is part of the TinyUSB stack. */ -#ifndef _DWC2_STM32_H_ -#define _DWC2_STM32_H_ +#ifndef DWC2_STM32_H_ +#define DWC2_STM32_H_ #ifdef __cplusplus extern "C" { @@ -124,35 +124,36 @@ static const dwc2_controller_t _dwc2_controller[] = { // SystemCoreClock is already included by family header // extern uint32_t SystemCoreClock; -TU_ATTR_ALWAYS_INLINE -static inline void dwc2_dcd_int_enable(uint8_t rhport) { +TU_ATTR_ALWAYS_INLINE static inline void dwc2_dcd_int_enable(uint8_t rhport) { NVIC_EnableIRQ((IRQn_Type) _dwc2_controller[rhport].irqnum); } -TU_ATTR_ALWAYS_INLINE -static inline void dwc2_dcd_int_disable(uint8_t rhport) { +TU_ATTR_ALWAYS_INLINE static inline void dwc2_dcd_int_disable(uint8_t rhport) { NVIC_DisableIRQ((IRQn_Type) _dwc2_controller[rhport].irqnum); } -TU_ATTR_ALWAYS_INLINE -static inline void dwc2_remote_wakeup_delay(void) { +TU_ATTR_ALWAYS_INLINE static inline void dwc2_remote_wakeup_delay(void) { // try to delay for 1 ms uint32_t count = SystemCoreClock / 1000; while (count--) __NOP(); } // MCU specific PHY init, called BEFORE core reset +// - dwc2 3.30a (H5) use USB_HS_PHYC +// - dwc2 4.11a (U5) use femtoPHY static inline void dwc2_phy_init(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { if (hs_phy_type == HS_PHY_TYPE_NONE) { // Enable on-chip FS PHY dwc2->stm32_gccfg |= STM32_GCCFG_PWRDWN; } else { +#if CFG_TUSB_MCU != OPT_MCU_STM32U5 // Disable FS PHY, TODO on U5A5 (dwc2 4.11a) 16th bit is 'Host CDP behavior enable' dwc2->stm32_gccfg &= ~STM32_GCCFG_PWRDWN; +#endif // Enable on-chip HS PHY if (hs_phy_type == HS_PHY_TYPE_UTMI || hs_phy_type == HS_PHY_TYPE_UTMI_ULPI) { -#ifdef USB_HS_PHYC + #ifdef USB_HS_PHYC // Enable UTMI HS PHY dwc2->stm32_gccfg |= STM32_GCCFG_PHYHSEN; @@ -184,7 +185,9 @@ static inline void dwc2_phy_init(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { // Enable PLL internal PHY USB_HS_PHYC->USB_HS_PHYC_PLL |= USB_HS_PHYC_PLL_PLLEN; -#endif + #else + + #endif } } } @@ -232,4 +235,4 @@ static inline void dwc2_phy_update(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { } #endif -#endif /* _DWC2_STM32_H_ */ +#endif -- cgit v1.3.1 From 214a4afa6aafe9daac6c1c304eb305b44e8cf86d Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 31 Oct 2023 11:53:40 +0700 Subject: dwc2 flush tx,rx fifo in dcd_init() --- src/portable/synopsys/dwc2/dcd_dwc2.c | 8 ++++++++ 1 file changed, 8 insertions(+) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dcd_dwc2.c b/src/portable/synopsys/dwc2/dcd_dwc2.c index 5c5450ac2..ac93632be 100644 --- a/src/portable/synopsys/dwc2/dcd_dwc2.c +++ b/src/portable/synopsys/dwc2/dcd_dwc2.c @@ -447,6 +447,14 @@ void dcd_init(uint8_t rhport) { // (non zero-length packet), send STALL back and discard. dwc2->dcfg |= DCFG_NZLSOHSK; + // flush all TX fifo and wait for it cleared + dwc2->grstctl = GRSTCTL_TXFFLSH | (0x10u << GRSTCTL_TXFNUM_Pos); + while (dwc2->grstctl & GRSTCTL_TXFFLSH_Msk) {} + + // flush RX fifo and wait for it cleared + dwc2->grstctl = GRSTCTL_RXFFLSH; + while (dwc2->grstctl & GRSTCTL_RXFFLSH_Msk) {} + // Clear all interrupts uint32_t int_mask = dwc2->gintsts; dwc2->gintsts |= int_mask; -- cgit v1.3.1 From 06c9d9a79a4426ece73052edca885f890b997fc4 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 1 Nov 2023 16:36:28 +0700 Subject: remove legacy driver st/synopsys --- src/portable/st/synopsys/dcd_synopsys.c | 1240 ----------------------- src/portable/st/synopsys/synopsys_common.h | 1465 ---------------------------- 2 files changed, 2705 deletions(-) delete mode 100644 src/portable/st/synopsys/dcd_synopsys.c delete mode 100644 src/portable/st/synopsys/synopsys_common.h (limited to 'src/portable') diff --git a/src/portable/st/synopsys/dcd_synopsys.c b/src/portable/st/synopsys/dcd_synopsys.c deleted file mode 100644 index 2fc3adb4f..000000000 --- a/src/portable/st/synopsys/dcd_synopsys.c +++ /dev/null @@ -1,1240 +0,0 @@ -/* - * The MIT License (MIT) - * - * Copyright (c) 2018 Scott Shawcroft, 2019 William D. Jones for Adafruit Industries - * Copyright (c) 2019 Ha Thach (tinyusb.org) - * Copyright (c) 2020 Jan Duempelmann - * Copyright (c) 2020 Reinhard Panhuber - * - * Permission is hereby granted, free of charge, to any person obtaining a copy - * of this software and associated documentation files (the "Software"), to deal - * in the Software without restriction, including without limitation the rights - * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell - * copies of the Software, and to permit persons to whom the Software is - * furnished to do so, subject to the following conditions: - * - * The above copyright notice and this permission notice shall be included in - * all copies or substantial portions of the Software. - * - * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN - * THE SOFTWARE. - * - * This file is part of the TinyUSB stack. - */ - -#include "tusb_option.h" - -// Since TinyUSB doesn't use SOF for now, and this interrupt too often (1ms interval) -// We disable SOF for now until needed later on -#define USE_SOF 0 - -#if defined (STM32F105x8) || defined (STM32F105xB) || defined (STM32F105xC) || \ - defined (STM32F107xB) || defined (STM32F107xC) -#define STM32F1_SYNOPSYS -#endif - -#if defined (STM32L475xx) || defined (STM32L476xx) || \ - defined (STM32L485xx) || defined (STM32L486xx) || defined (STM32L496xx) || \ - defined (STM32L4R5xx) || defined (STM32L4R7xx) || defined (STM32L4R9xx) || \ - defined (STM32L4S5xx) || defined (STM32L4S7xx) || defined (STM32L4S9xx) -#define STM32L4_SYNOPSYS -#endif - -#if CFG_TUD_ENABLED && \ - ( (CFG_TUSB_MCU == OPT_MCU_STM32F1 && defined(STM32F1_SYNOPSYS)) || \ - CFG_TUSB_MCU == OPT_MCU_STM32F2 || \ - CFG_TUSB_MCU == OPT_MCU_STM32F4 || \ - CFG_TUSB_MCU == OPT_MCU_STM32F7 || \ - CFG_TUSB_MCU == OPT_MCU_STM32H7 || \ - (CFG_TUSB_MCU == OPT_MCU_STM32L4 && defined(STM32L4_SYNOPSYS) || \ - CFG_TUSB_MCU == OPT_MCU_GD32VF103 ) \ - ) - -// EP_MAX : Max number of bi-directional endpoints including EP0 -// EP_FIFO_SIZE : Size of dedicated USB SRAM -#if CFG_TUSB_MCU == OPT_MCU_STM32F1 -#include "stm32f1xx.h" -#define EP_MAX_FS 4 -#define EP_FIFO_SIZE_FS 1280 - -#elif CFG_TUSB_MCU == OPT_MCU_STM32F2 -#include "stm32f2xx.h" -#define EP_MAX_FS USB_OTG_FS_MAX_IN_ENDPOINTS -#define EP_FIFO_SIZE_FS USB_OTG_FS_TOTAL_FIFO_SIZE - -#elif CFG_TUSB_MCU == OPT_MCU_STM32F4 -#include "stm32f4xx.h" -#define EP_MAX_FS USB_OTG_FS_MAX_IN_ENDPOINTS -#define EP_FIFO_SIZE_FS USB_OTG_FS_TOTAL_FIFO_SIZE -#define EP_MAX_HS USB_OTG_HS_MAX_IN_ENDPOINTS -#define EP_FIFO_SIZE_HS USB_OTG_HS_TOTAL_FIFO_SIZE - -#elif CFG_TUSB_MCU == OPT_MCU_STM32H7 -#include "stm32h7xx.h" -#define EP_MAX_FS 9 -#define EP_FIFO_SIZE_FS 4096 -#define EP_MAX_HS 9 -#define EP_FIFO_SIZE_HS 4096 - -#elif CFG_TUSB_MCU == OPT_MCU_STM32F7 -#include "stm32f7xx.h" -#define EP_MAX_FS 6 -#define EP_FIFO_SIZE_FS 1280 -#define EP_MAX_HS 9 -#define EP_FIFO_SIZE_HS 4096 - -#elif CFG_TUSB_MCU == OPT_MCU_STM32L4 -#include "stm32l4xx.h" -#define EP_MAX_FS 6 -#define EP_FIFO_SIZE_FS 1280 - -#elif CFG_TUSB_MCU == OPT_MCU_GD32VF103 -#include "synopsys_common.h" - -// for remote wakeup delay -#define __NOP() __asm volatile ("nop") - -// These numbers are the same for the whole GD32VF103 family. -#define OTG_FS_IRQn 86 -#define EP_MAX_FS 4 -#define EP_FIFO_SIZE_FS 1280 - -// The GD32VF103 is a RISC-V MCU, which implements the ECLIC Core-Local -// Interrupt Controller by Nuclei. It is nearly API compatible to the -// NVIC used by ARM MCUs. -#define ECLIC_INTERRUPT_ENABLE_BASE 0xD2001001UL - -#define NVIC_EnableIRQ __eclic_enable_interrupt -#define NVIC_DisableIRQ __eclic_disable_interrupt - -static inline void __eclic_enable_interrupt (uint32_t irq) { - *(volatile uint8_t*)(ECLIC_INTERRUPT_ENABLE_BASE + (irq * 4)) = 1; -} - -static inline void __eclic_disable_interrupt (uint32_t irq){ - *(volatile uint8_t*)(ECLIC_INTERRUPT_ENABLE_BASE + (irq * 4)) = 0; -} - -#else -#error "Unsupported MCUs" -#endif - -#include "device/dcd.h" - -//--------------------------------------------------------------------+ -// MACRO TYPEDEF CONSTANT ENUM -//--------------------------------------------------------------------+ - -// On STM32 we associate Port0 to OTG_FS, and Port1 to OTG_HS -#if TUD_OPT_RHPORT == 0 -#define EP_MAX EP_MAX_FS -#define EP_FIFO_SIZE EP_FIFO_SIZE_FS -#define RHPORT_REGS_BASE USB_OTG_FS_PERIPH_BASE -#define RHPORT_IRQn OTG_FS_IRQn - -#else -#define EP_MAX EP_MAX_HS -#define EP_FIFO_SIZE EP_FIFO_SIZE_HS -#define RHPORT_REGS_BASE USB_OTG_HS_PERIPH_BASE -#define RHPORT_IRQn OTG_HS_IRQn - -#endif - -#define GLOBAL_BASE(_port) ((USB_OTG_GlobalTypeDef*) RHPORT_REGS_BASE) -#define DEVICE_BASE(_port) (USB_OTG_DeviceTypeDef *) (RHPORT_REGS_BASE + USB_OTG_DEVICE_BASE) -#define OUT_EP_BASE(_port) (USB_OTG_OUTEndpointTypeDef *) (RHPORT_REGS_BASE + USB_OTG_OUT_ENDPOINT_BASE) -#define IN_EP_BASE(_port) (USB_OTG_INEndpointTypeDef *) (RHPORT_REGS_BASE + USB_OTG_IN_ENDPOINT_BASE) -#define FIFO_BASE(_port, _x) ((volatile uint32_t *) (RHPORT_REGS_BASE + USB_OTG_FIFO_BASE + (_x) * USB_OTG_FIFO_SIZE)) - -enum -{ - DCD_HIGH_SPEED = 0, // Highspeed mode - DCD_FULL_SPEED_USE_HS = 1, // Full speed in Highspeed port (probably with internal PHY) - DCD_FULL_SPEED = 3, // Full speed with internal PHY -}; - -static TU_ATTR_ALIGNED(4) uint32_t _setup_packet[2]; - -typedef struct { - uint8_t * buffer; - tu_fifo_t * ff; - uint16_t total_len; - uint16_t max_size; - uint8_t interval; -} xfer_ctl_t; - -typedef volatile uint32_t * usb_fifo_t; - -xfer_ctl_t xfer_status[EP_MAX][2]; -#define XFER_CTL_BASE(_ep, _dir) &xfer_status[_ep][_dir] - -// EP0 transfers are limited to 1 packet - larger sizes has to be split -static uint16_t ep0_pending[2]; // Index determines direction as tusb_dir_t type - -// TX FIFO RAM allocation so far in words - RX FIFO size is readily available from usb_otg->GRXFSIZ -static uint16_t _allocated_fifo_words_tx; // TX FIFO size in words (IN EPs) -static bool _out_ep_closed; // Flag to check if RX FIFO size needs an update (reduce its size) - -// Calculate the RX FIFO size according to recommendations from reference manual -static inline uint16_t calc_rx_ff_size(uint16_t ep_size) -{ - return 15 + 2*(ep_size/4) + 2*EP_MAX; -} - -static void update_grxfsiz(uint8_t rhport) -{ - (void) rhport; - - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - - // Determine largest EP size for RX FIFO - uint16_t max_epsize = 0; - for (uint8_t epnum = 0; epnum < EP_MAX; epnum++) - { - max_epsize = tu_max16(max_epsize, xfer_status[epnum][TUSB_DIR_OUT].max_size); - } - - // Update size of RX FIFO - usb_otg->GRXFSIZ = calc_rx_ff_size(max_epsize); -} - -// Setup the control endpoint 0. -static void bus_reset(uint8_t rhport) -{ - (void) rhport; - - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - USB_OTG_OUTEndpointTypeDef * out_ep = OUT_EP_BASE(rhport); - USB_OTG_INEndpointTypeDef * in_ep = IN_EP_BASE(rhport); - - tu_memclr(xfer_status, sizeof(xfer_status)); - _out_ep_closed = false; - - // clear device address - dev->DCFG &= ~USB_OTG_DCFG_DAD_Msk; - - // 1. NAK for all OUT endpoints - for(uint8_t n = 0; n < EP_MAX; n++) { - out_ep[n].DOEPCTL |= USB_OTG_DOEPCTL_SNAK; - } - - // 2. Un-mask interrupt bits - dev->DAINTMSK = (1 << USB_OTG_DAINTMSK_OEPM_Pos) | (1 << USB_OTG_DAINTMSK_IEPM_Pos); - dev->DOEPMSK = USB_OTG_DOEPMSK_STUPM | USB_OTG_DOEPMSK_XFRCM; - dev->DIEPMSK = USB_OTG_DIEPMSK_TOM | USB_OTG_DIEPMSK_XFRCM; - - // "USB Data FIFOs" section in reference manual - // Peripheral FIFO architecture - // - // The FIFO is split up in a lower part where the RX FIFO is located and an upper part where the TX FIFOs start. - // We do this to allow the RX FIFO to grow dynamically which is possible since the free space is located - // between the RX and TX FIFOs. This is required by ISO OUT EPs which need a bigger FIFO than the standard - // configuration done below. - // - // Dynamically FIFO sizes are of interest only for ISO EPs since all others are usually not opened and closed. - // All EPs other than ISO are opened as soon as the driver starts up i.e. when the host sends a - // configure interface command. Hence, all IN EPs other the ISO will be located at the top. IN ISO EPs are usually - // opened when the host sends an additional command: setInterface. At this point in time - // the ISO EP will be located next to the free space and can change its size. In case more IN EPs change its size - // an additional memory - // - // --------------- 320 or 1024 ( 1280 or 4096 bytes ) - // | IN FIFO 0 | - // --------------- (320 or 1024) - 16 - // | IN FIFO 1 | - // --------------- (320 or 1024) - 16 - x - // | . . . . | - // --------------- (320 or 1024) - 16 - x - y - ... - z - // | IN FIFO MAX | - // --------------- - // | FREE | - // --------------- GRXFSIZ - // | OUT FIFO | - // | ( Shared ) | - // --------------- 0 - // - // According to "FIFO RAM allocation" section in RM, FIFO RAM are allocated as follows (each word 32-bits): - // - Each EP IN needs at least max packet size, 16 words is sufficient for EP0 IN - // - // - All EP OUT shared a unique OUT FIFO which uses - // - 13 for setup packets + control words (up to 3 setup packets). - // - 1 for global NAK (not required/used here). - // - Largest-EPsize / 4 + 1. ( FS: 64 bytes, HS: 512 bytes). Recommended is "2 x (Largest-EPsize/4) + 1" - // - 2 for each used OUT endpoint - // - // Therefore GRXFSIZ = 13 + 1 + 1 + 2 x (Largest-EPsize/4) + 2 x EPOUTnum - // - FullSpeed (64 Bytes ): GRXFSIZ = 15 + 2 x 16 + 2 x EP_MAX = 47 + 2 x EP_MAX - // - Highspeed (512 bytes): GRXFSIZ = 15 + 2 x 128 + 2 x EP_MAX = 271 + 2 x EP_MAX - // - // NOTE: Largest-EPsize & EPOUTnum is actual used endpoints in configuration. Since DCD has no knowledge - // of the overall picture yet. We will use the worst scenario: largest possible + EP_MAX - // - // For Isochronous, largest EP size can be 1023/1024 for FS/HS respectively. In addition if multiple ISO - // are enabled at least "2 x (Largest-EPsize/4) + 1" are recommended. Maybe provide a macro for application to - // overwrite this. - - usb_otg->GRXFSIZ = calc_rx_ff_size(TUD_OPT_HIGH_SPEED ? 512 : 64); - - _allocated_fifo_words_tx = 16; - - // Control IN uses FIFO 0 with 64 bytes ( 16 32-bit word ) - usb_otg->DIEPTXF0_HNPTXFSIZ = (16 << USB_OTG_TX0FD_Pos) | (EP_FIFO_SIZE/4 - _allocated_fifo_words_tx); - - // Fixed control EP0 size to 64 bytes - in_ep[0].DIEPCTL &= ~(0x03 << USB_OTG_DIEPCTL_MPSIZ_Pos); - xfer_status[0][TUSB_DIR_OUT].max_size = xfer_status[0][TUSB_DIR_IN].max_size = 64; - - out_ep[0].DOEPTSIZ |= (3 << USB_OTG_DOEPTSIZ_STUPCNT_Pos); - - usb_otg->GINTMSK |= USB_OTG_GINTMSK_OEPINT | USB_OTG_GINTMSK_IEPINT; -} - -// Set turn-around timeout according to link speed -extern uint32_t SystemCoreClock; -static void set_turnaround(USB_OTG_GlobalTypeDef * usb_otg, tusb_speed_t speed) -{ - usb_otg->GUSBCFG &= ~USB_OTG_GUSBCFG_TRDT; - - if ( speed == TUSB_SPEED_HIGH ) - { - // Use fixed 0x09 for Highspeed - usb_otg->GUSBCFG |= (0x09 << USB_OTG_GUSBCFG_TRDT_Pos); - } - else - { - // Turnaround timeout depends on the MCU clock - uint32_t turnaround; - - if ( SystemCoreClock >= 32000000U ) - turnaround = 0x6U; - else if ( SystemCoreClock >= 27500000U ) - turnaround = 0x7U; - else if ( SystemCoreClock >= 24000000U ) - turnaround = 0x8U; - else if ( SystemCoreClock >= 21800000U ) - turnaround = 0x9U; - else if ( SystemCoreClock >= 20000000U ) - turnaround = 0xAU; - else if ( SystemCoreClock >= 18500000U ) - turnaround = 0xBU; - else if ( SystemCoreClock >= 17200000U ) - turnaround = 0xCU; - else if ( SystemCoreClock >= 16000000U ) - turnaround = 0xDU; - else if ( SystemCoreClock >= 15000000U ) - turnaround = 0xEU; - else - turnaround = 0xFU; - - // Fullspeed depends on MCU clocks, but we will use 0x06 for 32+ Mhz - usb_otg->GUSBCFG |= (turnaround << USB_OTG_GUSBCFG_TRDT_Pos); - } -} - -static tusb_speed_t get_speed(uint8_t rhport) -{ - (void) rhport; - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - uint32_t const enum_spd = (dev->DSTS & USB_OTG_DSTS_ENUMSPD_Msk) >> USB_OTG_DSTS_ENUMSPD_Pos; - return (enum_spd == DCD_HIGH_SPEED) ? TUSB_SPEED_HIGH : TUSB_SPEED_FULL; -} - -static void set_speed(uint8_t rhport, tusb_speed_t speed) -{ - uint32_t bitvalue; - - if ( rhport == 1 ) - { - bitvalue = ((TUSB_SPEED_HIGH == speed) ? DCD_HIGH_SPEED : DCD_FULL_SPEED_USE_HS); - } - else - { - bitvalue = DCD_FULL_SPEED; - } - - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - - // Clear and set speed bits - dev->DCFG &= ~(3 << USB_OTG_DCFG_DSPD_Pos); - dev->DCFG |= (bitvalue << USB_OTG_DCFG_DSPD_Pos); -} - -#if defined(USB_HS_PHYC) -static bool USB_HS_PHYCInit(void) -{ - USB_HS_PHYC_GlobalTypeDef *usb_hs_phyc = (USB_HS_PHYC_GlobalTypeDef*) USB_HS_PHYC_CONTROLLER_BASE; - - // Enable LDO: Note STM32F72/3xx Reference Manual rev 3 June 2018 incorrectly defined this bit as Disabled !! - usb_hs_phyc->USB_HS_PHYC_LDO |= USB_HS_PHYC_LDO_ENABLE; - - // Wait until LDO ready - while ( 0 == (usb_hs_phyc->USB_HS_PHYC_LDO & USB_HS_PHYC_LDO_STATUS) ) {} - - uint32_t phyc_pll = 0; - - // TODO Try to get HSE_VALUE from registers instead of depending CFLAGS - switch ( HSE_VALUE ) - { - case 12000000: phyc_pll = USB_HS_PHYC_PLL1_PLLSEL_12MHZ ; break; - case 12500000: phyc_pll = USB_HS_PHYC_PLL1_PLLSEL_12_5MHZ ; break; - case 16000000: phyc_pll = USB_HS_PHYC_PLL1_PLLSEL_16MHZ ; break; - case 24000000: phyc_pll = USB_HS_PHYC_PLL1_PLLSEL_24MHZ ; break; - case 25000000: phyc_pll = USB_HS_PHYC_PLL1_PLLSEL_25MHZ ; break; - case 32000000: phyc_pll = USB_HS_PHYC_PLL1_PLLSEL_Msk ; break; // Value not defined in header - default: - TU_ASSERT(0); - } - usb_hs_phyc->USB_HS_PHYC_PLL = phyc_pll; - - // Control the tuning interface of the High Speed PHY - // Use magic value (USB_HS_PHYC_TUNE_VALUE) from ST driver - usb_hs_phyc->USB_HS_PHYC_TUNE |= 0x00000F13U; - - // Enable PLL internal PHY - usb_hs_phyc->USB_HS_PHYC_PLL |= USB_HS_PHYC_PLL_PLLEN; - - // Original ST code has 2 ms delay for PLL stabilization. - // Primitive test shows that more than 10 USB un/replug cycle showed no error with enumeration - - return true; -} -#endif - -static void edpt_schedule_packets(uint8_t rhport, uint8_t const epnum, uint8_t const dir, uint16_t const num_packets, uint16_t total_bytes) -{ - (void) rhport; - - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - USB_OTG_OUTEndpointTypeDef * out_ep = OUT_EP_BASE(rhport); - USB_OTG_INEndpointTypeDef * in_ep = IN_EP_BASE(rhport); - - // EP0 is limited to one packet each xfer - // We use multiple transaction of xfer->max_size length to get a whole transfer done - if(epnum == 0) { - xfer_ctl_t * const xfer = XFER_CTL_BASE(epnum, dir); - total_bytes = tu_min16(ep0_pending[dir], xfer->max_size); - ep0_pending[dir] -= total_bytes; - } - - // IN and OUT endpoint xfers are interrupt-driven, we just schedule them here. - if(dir == TUSB_DIR_IN) { - // A full IN transfer (multiple packets, possibly) triggers XFRC. - in_ep[epnum].DIEPTSIZ = (num_packets << USB_OTG_DIEPTSIZ_PKTCNT_Pos) | - ((total_bytes << USB_OTG_DIEPTSIZ_XFRSIZ_Pos) & USB_OTG_DIEPTSIZ_XFRSIZ_Msk); - - in_ep[epnum].DIEPCTL |= USB_OTG_DIEPCTL_EPENA | USB_OTG_DIEPCTL_CNAK; - // For ISO endpoint set correct odd/even bit for next frame. - if ((in_ep[epnum].DIEPCTL & USB_OTG_DIEPCTL_EPTYP) == USB_OTG_DIEPCTL_EPTYP_0 && (XFER_CTL_BASE(epnum, dir))->interval == 1) - { - // Take odd/even bit from frame counter. - uint32_t const odd_frame_now = (dev->DSTS & (1u << USB_OTG_DSTS_FNSOF_Pos)); - in_ep[epnum].DIEPCTL |= (odd_frame_now ? USB_OTG_DIEPCTL_SD0PID_SEVNFRM_Msk : USB_OTG_DIEPCTL_SODDFRM_Msk); - } - // Enable fifo empty interrupt only if there are something to put in the fifo. - if(total_bytes != 0) { - dev->DIEPEMPMSK |= (1 << epnum); - } - } else { - // A full OUT transfer (multiple packets, possibly) triggers XFRC. - out_ep[epnum].DOEPTSIZ &= ~(USB_OTG_DOEPTSIZ_PKTCNT_Msk | USB_OTG_DOEPTSIZ_XFRSIZ); - out_ep[epnum].DOEPTSIZ |= (num_packets << USB_OTG_DOEPTSIZ_PKTCNT_Pos) | - ((total_bytes << USB_OTG_DOEPTSIZ_XFRSIZ_Pos) & USB_OTG_DOEPTSIZ_XFRSIZ_Msk); - - out_ep[epnum].DOEPCTL |= USB_OTG_DOEPCTL_EPENA | USB_OTG_DOEPCTL_CNAK; - if ((out_ep[epnum].DOEPCTL & USB_OTG_DOEPCTL_EPTYP) == USB_OTG_DOEPCTL_EPTYP_0 && (XFER_CTL_BASE(epnum, dir))->interval == 1) - { - // Take odd/even bit from frame counter. - uint32_t const odd_frame_now = (dev->DSTS & (1u << USB_OTG_DSTS_FNSOF_Pos)); - out_ep[epnum].DOEPCTL |= (odd_frame_now ? USB_OTG_DOEPCTL_SD0PID_SEVNFRM_Msk : USB_OTG_DOEPCTL_SODDFRM_Msk); - } - } -} - -/*------------------------------------------------------------------*/ -/* Controller API - *------------------------------------------------------------------*/ -void dcd_init (uint8_t rhport) -{ - // Programming model begins in the last section of the chapter on the USB - // peripheral in each Reference Manual. - - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - - // No HNP/SRP (no OTG support), program timeout later. - if ( rhport == 1 ) - { - // On selected MCUs HS port1 can be used with external PHY via ULPI interface -#if CFG_TUSB_RHPORT1_MODE & OPT_MODE_HIGH_SPEED - // deactivate internal PHY - usb_otg->GCCFG &= ~USB_OTG_GCCFG_PWRDWN; - - // Init The UTMI Interface - usb_otg->GUSBCFG &= ~(USB_OTG_GUSBCFG_TSDPS | USB_OTG_GUSBCFG_ULPIFSLS | USB_OTG_GUSBCFG_PHYSEL); - - // Select default internal VBUS Indicator and Drive for ULPI - usb_otg->GUSBCFG &= ~(USB_OTG_GUSBCFG_ULPIEVBUSD | USB_OTG_GUSBCFG_ULPIEVBUSI); -#else - usb_otg->GUSBCFG |= USB_OTG_GUSBCFG_PHYSEL; -#endif - -#if defined(USB_HS_PHYC) - // Highspeed with embedded UTMI PHYC - - // Select UTMI Interface - usb_otg->GUSBCFG &= ~USB_OTG_GUSBCFG_ULPI_UTMI_SEL; - usb_otg->GCCFG |= USB_OTG_GCCFG_PHYHSEN; - - // Enables control of a High Speed USB PHY - USB_HS_PHYCInit(); -#endif - } else - { - // Enable internal PHY - usb_otg->GUSBCFG |= USB_OTG_GUSBCFG_PHYSEL; - } - - // Reset core after selecting PHY - // Wait AHB IDLE, reset then wait until it is cleared - while ((usb_otg->GRSTCTL & USB_OTG_GRSTCTL_AHBIDL) == 0U) {} - usb_otg->GRSTCTL |= USB_OTG_GRSTCTL_CSRST; - while ((usb_otg->GRSTCTL & USB_OTG_GRSTCTL_CSRST) == USB_OTG_GRSTCTL_CSRST) {} - - // Restart PHY clock - *((volatile uint32_t *)(RHPORT_REGS_BASE + USB_OTG_PCGCCTL_BASE)) = 0; - - // Clear all interrupts - usb_otg->GINTSTS |= usb_otg->GINTSTS; - - // Required as part of core initialization. - // TODO: How should mode mismatch be handled? It will cause - // the core to stop working/require reset. - usb_otg->GINTMSK |= USB_OTG_GINTMSK_OTGINT | USB_OTG_GINTMSK_MMISM; - - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - - // If USB host misbehaves during status portion of control xfer - // (non zero-length packet), send STALL back and discard. - dev->DCFG |= USB_OTG_DCFG_NZLSOHSK; - - set_speed(rhport, TUD_OPT_HIGH_SPEED ? TUSB_SPEED_HIGH : TUSB_SPEED_FULL); - - // Enable internal USB transceiver, unless using HS core (port 1) with external PHY. - if (!(rhport == 1 && (CFG_TUSB_RHPORT1_MODE & OPT_MODE_HIGH_SPEED))) usb_otg->GCCFG |= USB_OTG_GCCFG_PWRDWN; - - usb_otg->GINTMSK |= USB_OTG_GINTMSK_USBRST | USB_OTG_GINTMSK_ENUMDNEM | - USB_OTG_GINTMSK_USBSUSPM | USB_OTG_GINTMSK_WUIM | - USB_OTG_GINTMSK_RXFLVLM | (USE_SOF ? USB_OTG_GINTMSK_SOFM : 0); - - // Enable global interrupt - usb_otg->GAHBCFG |= USB_OTG_GAHBCFG_GINT; - - dcd_connect(rhport); -} - -void dcd_int_enable (uint8_t rhport) -{ - (void) rhport; - NVIC_EnableIRQ(RHPORT_IRQn); -} - -void dcd_int_disable (uint8_t rhport) -{ - (void) rhport; - NVIC_DisableIRQ(RHPORT_IRQn); -} - -void dcd_set_address (uint8_t rhport, uint8_t dev_addr) -{ - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - dev->DCFG = (dev->DCFG & ~USB_OTG_DCFG_DAD_Msk) | (dev_addr << USB_OTG_DCFG_DAD_Pos); - - // Response with status after changing device address - dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_IN), NULL, 0); -} - -static void remote_wakeup_delay(void) -{ - // try to delay for 1 ms - uint32_t count = SystemCoreClock / 1000; - while ( count-- ) - { - __NOP(); - } -} - -void dcd_remote_wakeup(uint8_t rhport) -{ - (void) rhport; - - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - - // set remote wakeup - dev->DCTL |= USB_OTG_DCTL_RWUSIG; - - // enable SOF to detect bus resume - usb_otg->GINTSTS = USB_OTG_GINTSTS_SOF; - usb_otg->GINTMSK |= USB_OTG_GINTMSK_SOFM; - - // Per specs: remote wakeup signal bit must be clear within 1-15ms - remote_wakeup_delay(); - - dev->DCTL &= ~USB_OTG_DCTL_RWUSIG; -} - -void dcd_connect(uint8_t rhport) -{ - (void) rhport; - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - dev->DCTL &= ~USB_OTG_DCTL_SDIS; -} - -void dcd_disconnect(uint8_t rhport) -{ - (void) rhport; - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - dev->DCTL |= USB_OTG_DCTL_SDIS; -} - -void dcd_sof_enable(uint8_t rhport, bool en) -{ - (void) rhport; - (void) en; - - // TODO implement later -} - -/*------------------------------------------------------------------*/ -/* DCD Endpoint port - *------------------------------------------------------------------*/ - -bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) -{ - (void) rhport; - - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - USB_OTG_OUTEndpointTypeDef * out_ep = OUT_EP_BASE(rhport); - USB_OTG_INEndpointTypeDef * in_ep = IN_EP_BASE(rhport); - - uint8_t const epnum = tu_edpt_number(desc_edpt->bEndpointAddress); - uint8_t const dir = tu_edpt_dir(desc_edpt->bEndpointAddress); - - TU_ASSERT(epnum < EP_MAX); - - xfer_ctl_t * xfer = XFER_CTL_BASE(epnum, dir); - xfer->max_size = tu_edpt_packet_size(desc_edpt); - xfer->interval = desc_edpt->bInterval; - - uint16_t const fifo_size = (xfer->max_size + 3) / 4; // Round up to next full word - - if(dir == TUSB_DIR_OUT) - { - // Calculate required size of RX FIFO - uint16_t const sz = calc_rx_ff_size(4*fifo_size); - - // If size_rx needs to be extended check if possible and if so enlarge it - if (usb_otg->GRXFSIZ < sz) - { - TU_ASSERT(sz + _allocated_fifo_words_tx <= EP_FIFO_SIZE/4); - - // Enlarge RX FIFO - usb_otg->GRXFSIZ = sz; - } - - out_ep[epnum].DOEPCTL |= (1 << USB_OTG_DOEPCTL_USBAEP_Pos) | - (desc_edpt->bmAttributes.xfer << USB_OTG_DOEPCTL_EPTYP_Pos) | - (desc_edpt->bmAttributes.xfer != TUSB_XFER_ISOCHRONOUS ? USB_OTG_DOEPCTL_SD0PID_SEVNFRM : 0) | - (xfer->max_size << USB_OTG_DOEPCTL_MPSIZ_Pos); - - dev->DAINTMSK |= (1 << (USB_OTG_DAINTMSK_OEPM_Pos + epnum)); - } - else - { - // "USB Data FIFOs" section in reference manual - // Peripheral FIFO architecture - // - // --------------- 320 or 1024 ( 1280 or 4096 bytes ) - // | IN FIFO 0 | - // --------------- (320 or 1024) - 16 - // | IN FIFO 1 | - // --------------- (320 or 1024) - 16 - x - // | . . . . | - // --------------- (320 or 1024) - 16 - x - y - ... - z - // | IN FIFO MAX | - // --------------- - // | FREE | - // --------------- GRXFSIZ - // | OUT FIFO | - // | ( Shared ) | - // --------------- 0 - // - // In FIFO is allocated by following rules: - // - IN EP 1 gets FIFO 1, IN EP "n" gets FIFO "n". - - // Check if free space is available - TU_ASSERT(_allocated_fifo_words_tx + fifo_size + usb_otg->GRXFSIZ <= EP_FIFO_SIZE/4); - - _allocated_fifo_words_tx += fifo_size; - - TU_LOG(2, " Allocated %u bytes at offset %u", fifo_size*4, EP_FIFO_SIZE-_allocated_fifo_words_tx*4); - - // DIEPTXF starts at FIFO #1. - // Both TXFD and TXSA are in unit of 32-bit words. - usb_otg->DIEPTXF[epnum - 1] = (fifo_size << USB_OTG_DIEPTXF_INEPTXFD_Pos) | (EP_FIFO_SIZE/4 - _allocated_fifo_words_tx); - - in_ep[epnum].DIEPCTL |= (1 << USB_OTG_DIEPCTL_USBAEP_Pos) | - (epnum << USB_OTG_DIEPCTL_TXFNUM_Pos) | - (desc_edpt->bmAttributes.xfer << USB_OTG_DIEPCTL_EPTYP_Pos) | - (desc_edpt->bmAttributes.xfer != TUSB_XFER_ISOCHRONOUS ? USB_OTG_DIEPCTL_SD0PID_SEVNFRM : 0) | - (xfer->max_size << USB_OTG_DIEPCTL_MPSIZ_Pos); - - dev->DAINTMSK |= (1 << (USB_OTG_DAINTMSK_IEPM_Pos + epnum)); - } - - return true; -} - -// Close all non-control endpoints, cancel all pending transfers if any. -void dcd_edpt_close_all (uint8_t rhport) -{ - (void) rhport; - -// USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - USB_OTG_OUTEndpointTypeDef * out_ep = OUT_EP_BASE(rhport); - USB_OTG_INEndpointTypeDef * in_ep = IN_EP_BASE(rhport); - - // Disable non-control interrupt - dev->DAINTMSK = (1 << USB_OTG_DAINTMSK_OEPM_Pos) | (1 << USB_OTG_DAINTMSK_IEPM_Pos); - - for(uint8_t n = 1; n < EP_MAX; n++) - { - // disable OUT endpoint - out_ep[n].DOEPCTL = 0; - xfer_status[n][TUSB_DIR_OUT].max_size = 0; - - // disable IN endpoint - in_ep[n].DIEPCTL = 0; - xfer_status[n][TUSB_DIR_IN].max_size = 0; - } - - // reset allocated fifo IN - _allocated_fifo_words_tx = 16; -} - -bool dcd_edpt_xfer (uint8_t rhport, uint8_t ep_addr, uint8_t * buffer, uint16_t total_bytes) -{ - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - xfer_ctl_t * xfer = XFER_CTL_BASE(epnum, dir); - xfer->buffer = buffer; - xfer->ff = NULL; - xfer->total_len = total_bytes; - - // EP0 can only handle one packet - if(epnum == 0) { - ep0_pending[dir] = total_bytes; - // Schedule the first transaction for EP0 transfer - edpt_schedule_packets(rhport, epnum, dir, 1, ep0_pending[dir]); - return true; - } - - uint16_t num_packets = (total_bytes / xfer->max_size); - uint16_t const short_packet_size = total_bytes % xfer->max_size; - - // Zero-size packet is special case. - if(short_packet_size > 0 || (total_bytes == 0)) { - num_packets++; - } - - // Schedule packets to be sent within interrupt - edpt_schedule_packets(rhport, epnum, dir, num_packets, total_bytes); - - return true; -} - -// The number of bytes has to be given explicitly to allow more flexible control of how many -// bytes should be written and second to keep the return value free to give back a boolean -// success message. If total_bytes is too big, the FIFO will copy only what is available -// into the USB buffer! -bool dcd_edpt_xfer_fifo (uint8_t rhport, uint8_t ep_addr, tu_fifo_t * ff, uint16_t total_bytes) -{ - // USB buffers always work in bytes so to avoid unnecessary divisions we demand item_size = 1 - TU_ASSERT(ff->item_size == 1); - - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - xfer_ctl_t * xfer = XFER_CTL_BASE(epnum, dir); - xfer->buffer = NULL; - xfer->ff = ff; - xfer->total_len = total_bytes; - - uint16_t num_packets = (total_bytes / xfer->max_size); - uint16_t const short_packet_size = total_bytes % xfer->max_size; - - // Zero-size packet is special case. - if(short_packet_size > 0 || (total_bytes == 0)) num_packets++; - - // Schedule packets to be sent within interrupt - edpt_schedule_packets(rhport, epnum, dir, num_packets, total_bytes); - - return true; -} - -static void dcd_edpt_disable (uint8_t rhport, uint8_t ep_addr, bool stall) -{ - (void) rhport; - - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - USB_OTG_OUTEndpointTypeDef * out_ep = OUT_EP_BASE(rhport); - USB_OTG_INEndpointTypeDef * in_ep = IN_EP_BASE(rhport); - - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - if(dir == TUSB_DIR_IN) { - // Only disable currently enabled non-control endpoint - if ( (epnum == 0) || !(in_ep[epnum].DIEPCTL & USB_OTG_DIEPCTL_EPENA) ){ - in_ep[epnum].DIEPCTL |= USB_OTG_DIEPCTL_SNAK | (stall ? USB_OTG_DIEPCTL_STALL : 0); - } else { - // Stop transmitting packets and NAK IN xfers. - in_ep[epnum].DIEPCTL |= USB_OTG_DIEPCTL_SNAK; - while((in_ep[epnum].DIEPINT & USB_OTG_DIEPINT_INEPNE) == 0); - - // Disable the endpoint. - in_ep[epnum].DIEPCTL |= USB_OTG_DIEPCTL_EPDIS | (stall ? USB_OTG_DIEPCTL_STALL : 0); - while((in_ep[epnum].DIEPINT & USB_OTG_DIEPINT_EPDISD_Msk) == 0); - in_ep[epnum].DIEPINT = USB_OTG_DIEPINT_EPDISD; - } - - // Flush the FIFO, and wait until we have confirmed it cleared. - usb_otg->GRSTCTL |= (epnum << USB_OTG_GRSTCTL_TXFNUM_Pos); - usb_otg->GRSTCTL |= USB_OTG_GRSTCTL_TXFFLSH; - while((usb_otg->GRSTCTL & USB_OTG_GRSTCTL_TXFFLSH_Msk) != 0); - } else { - // Only disable currently enabled non-control endpoint - if ( (epnum == 0) || !(out_ep[epnum].DOEPCTL & USB_OTG_DOEPCTL_EPENA) ){ - out_ep[epnum].DOEPCTL |= stall ? USB_OTG_DOEPCTL_STALL : 0; - } else { - // Asserting GONAK is required to STALL an OUT endpoint. - // Simpler to use polling here, we don't use the "B"OUTNAKEFF interrupt - // anyway, and it can't be cleared by user code. If this while loop never - // finishes, we have bigger problems than just the stack. - dev->DCTL |= USB_OTG_DCTL_SGONAK; - while((usb_otg->GINTSTS & USB_OTG_GINTSTS_BOUTNAKEFF_Msk) == 0); - - // Ditto here- disable the endpoint. - out_ep[epnum].DOEPCTL |= USB_OTG_DOEPCTL_EPDIS | (stall ? USB_OTG_DOEPCTL_STALL : 0); - while((out_ep[epnum].DOEPINT & USB_OTG_DOEPINT_EPDISD_Msk) == 0); - out_ep[epnum].DOEPINT = USB_OTG_DOEPINT_EPDISD; - - // Allow other OUT endpoints to keep receiving. - dev->DCTL |= USB_OTG_DCTL_CGONAK; - } - } -} - -/** - * Close an endpoint. - */ -void dcd_edpt_close (uint8_t rhport, uint8_t ep_addr) -{ - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - dcd_edpt_disable(rhport, ep_addr, false); - - // Update max_size - xfer_status[epnum][dir].max_size = 0; // max_size = 0 marks a disabled EP - required for changing FIFO allocation - - if (dir == TUSB_DIR_IN) - { - uint16_t const fifo_size = (usb_otg->DIEPTXF[epnum - 1] & USB_OTG_DIEPTXF_INEPTXFD_Msk) >> USB_OTG_DIEPTXF_INEPTXFD_Pos; - uint16_t const fifo_start = (usb_otg->DIEPTXF[epnum - 1] & USB_OTG_DIEPTXF_INEPTXSA_Msk) >> USB_OTG_DIEPTXF_INEPTXSA_Pos; - // For now only the last opened endpoint can be closed without fuss. - TU_ASSERT(fifo_start == EP_FIFO_SIZE/4 - _allocated_fifo_words_tx,); - _allocated_fifo_words_tx -= fifo_size; - } - else - { - _out_ep_closed = true; // Set flag such that RX FIFO gets reduced in size once RX FIFO is empty - } -} - -void dcd_edpt_stall (uint8_t rhport, uint8_t ep_addr) -{ - dcd_edpt_disable(rhport, ep_addr, true); -} - -void dcd_edpt_clear_stall (uint8_t rhport, uint8_t ep_addr) -{ - (void) rhport; - - USB_OTG_OUTEndpointTypeDef * out_ep = OUT_EP_BASE(rhport); - USB_OTG_INEndpointTypeDef * in_ep = IN_EP_BASE(rhport); - - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - // Clear stall and reset data toggle - if(dir == TUSB_DIR_IN) { - in_ep[epnum].DIEPCTL &= ~USB_OTG_DIEPCTL_STALL; - in_ep[epnum].DIEPCTL |= USB_OTG_DIEPCTL_SD0PID_SEVNFRM; - } else { - out_ep[epnum].DOEPCTL &= ~USB_OTG_DOEPCTL_STALL; - out_ep[epnum].DOEPCTL |= USB_OTG_DOEPCTL_SD0PID_SEVNFRM; - } -} - -/*------------------------------------------------------------------*/ - -// Read a single data packet from receive FIFO -static void read_fifo_packet(uint8_t rhport, uint8_t * dst, uint16_t len) -{ - (void) rhport; - - usb_fifo_t rx_fifo = FIFO_BASE(rhport, 0); - - // Reading full available 32 bit words from fifo - uint16_t full_words = len >> 2; - for(uint16_t i = 0; i < full_words; i++) { - uint32_t tmp = *rx_fifo; - dst[0] = tmp & 0x000000FF; - dst[1] = (tmp & 0x0000FF00) >> 8; - dst[2] = (tmp & 0x00FF0000) >> 16; - dst[3] = (tmp & 0xFF000000) >> 24; - dst += 4; - } - - // Read the remaining 1-3 bytes from fifo - uint8_t bytes_rem = len & 0x03; - if(bytes_rem != 0) { - uint32_t tmp = *rx_fifo; - dst[0] = tmp & 0x000000FF; - if(bytes_rem > 1) { - dst[1] = (tmp & 0x0000FF00) >> 8; - } - if(bytes_rem > 2) { - dst[2] = (tmp & 0x00FF0000) >> 16; - } - } -} - -// Write a single data packet to EPIN FIFO -static void write_fifo_packet(uint8_t rhport, uint8_t fifo_num, uint8_t * src, uint16_t len) -{ - (void) rhport; - - usb_fifo_t tx_fifo = FIFO_BASE(rhport, fifo_num); - - // Pushing full available 32 bit words to fifo - uint16_t full_words = len >> 2; - for(uint16_t i = 0; i < full_words; i++){ - *tx_fifo = (src[3] << 24) | (src[2] << 16) | (src[1] << 8) | src[0]; - src += 4; - } - - // Write the remaining 1-3 bytes into fifo - uint8_t bytes_rem = len & 0x03; - if(bytes_rem){ - uint32_t tmp_word = 0; - tmp_word |= src[0]; - if(bytes_rem > 1){ - tmp_word |= src[1] << 8; - } - if(bytes_rem > 2){ - tmp_word |= src[2] << 16; - } - *tx_fifo = tmp_word; - } -} - -static void handle_rxflvl_ints(uint8_t rhport, USB_OTG_OUTEndpointTypeDef * out_ep) { - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - usb_fifo_t rx_fifo = FIFO_BASE(rhport, 0); - - // Pop control word off FIFO - uint32_t ctl_word = usb_otg->GRXSTSP; - uint8_t pktsts = (ctl_word & USB_OTG_GRXSTSP_PKTSTS_Msk) >> USB_OTG_GRXSTSP_PKTSTS_Pos; - uint8_t epnum = (ctl_word & USB_OTG_GRXSTSP_EPNUM_Msk) >> USB_OTG_GRXSTSP_EPNUM_Pos; - uint16_t bcnt = (ctl_word & USB_OTG_GRXSTSP_BCNT_Msk) >> USB_OTG_GRXSTSP_BCNT_Pos; - - switch(pktsts) { - case 0x01: // Global OUT NAK (Interrupt) - break; - - case 0x02: // Out packet recvd - { - xfer_ctl_t * xfer = XFER_CTL_BASE(epnum, TUSB_DIR_OUT); - - // Read packet off RxFIFO - if (xfer->ff) - { - // Ring buffer - tu_fifo_write_n_const_addr_full_words(xfer->ff, (const void *)(uintptr_t) rx_fifo, bcnt); - } - else - { - // Linear buffer - read_fifo_packet(rhport, xfer->buffer, bcnt); - - // Increment pointer to xfer data - xfer->buffer += bcnt; - } - - // Truncate transfer length in case of short packet - if(bcnt < xfer->max_size) { - xfer->total_len -= (out_ep[epnum].DOEPTSIZ & USB_OTG_DOEPTSIZ_XFRSIZ_Msk) >> USB_OTG_DOEPTSIZ_XFRSIZ_Pos; - if(epnum == 0) { - xfer->total_len -= ep0_pending[TUSB_DIR_OUT]; - ep0_pending[TUSB_DIR_OUT] = 0; - } - } - } - break; - - case 0x03: // Out packet done (Interrupt) - break; - - case 0x04: // Setup packet done (Interrupt) - out_ep[epnum].DOEPTSIZ |= (3 << USB_OTG_DOEPTSIZ_STUPCNT_Pos); - break; - - case 0x06: // Setup packet recvd - // We can receive up to three setup packets in succession, but - // only the last one is valid. - _setup_packet[0] = (* rx_fifo); - _setup_packet[1] = (* rx_fifo); - break; - - default: // Invalid - TU_BREAKPOINT(); - break; - } -} - -static void handle_epout_ints(uint8_t rhport, USB_OTG_DeviceTypeDef * dev, USB_OTG_OUTEndpointTypeDef * out_ep) { - // DAINT for a given EP clears when DOEPINTx is cleared. - // OEPINT will be cleared when DAINT's out bits are cleared. - for(uint8_t n = 0; n < EP_MAX; n++) { - xfer_ctl_t * xfer = XFER_CTL_BASE(n, TUSB_DIR_OUT); - - if(dev->DAINT & (1 << (USB_OTG_DAINT_OEPINT_Pos + n))) { - // SETUP packet Setup Phase done. - if(out_ep[n].DOEPINT & USB_OTG_DOEPINT_STUP) { - out_ep[n].DOEPINT = USB_OTG_DOEPINT_STUP; - dcd_event_setup_received(rhport, (uint8_t*) &_setup_packet[0], true); - } - - // OUT XFER complete - if(out_ep[n].DOEPINT & USB_OTG_DOEPINT_XFRC) { - out_ep[n].DOEPINT = USB_OTG_DOEPINT_XFRC; - - // EP0 can only handle one packet - if((n == 0) && ep0_pending[TUSB_DIR_OUT]) { - // Schedule another packet to be received. - edpt_schedule_packets(rhport, n, TUSB_DIR_OUT, 1, ep0_pending[TUSB_DIR_OUT]); - } else { - dcd_event_xfer_complete(rhport, n, xfer->total_len, XFER_RESULT_SUCCESS, true); - } - } - } - } -} - -static void handle_epin_ints(uint8_t rhport, USB_OTG_DeviceTypeDef * dev, USB_OTG_INEndpointTypeDef * in_ep) { - // DAINT for a given EP clears when DIEPINTx is cleared. - // IEPINT will be cleared when DAINT's out bits are cleared. - for ( uint8_t n = 0; n < EP_MAX; n++ ) - { - xfer_ctl_t *xfer = XFER_CTL_BASE(n, TUSB_DIR_IN); - - if ( dev->DAINT & (1 << (USB_OTG_DAINT_IEPINT_Pos + n)) ) - { - // IN XFER complete (entire xfer). - if ( in_ep[n].DIEPINT & USB_OTG_DIEPINT_XFRC ) - { - in_ep[n].DIEPINT = USB_OTG_DIEPINT_XFRC; - - // EP0 can only handle one packet - if((n == 0) && ep0_pending[TUSB_DIR_IN]) { - // Schedule another packet to be transmitted. - edpt_schedule_packets(rhport, n, TUSB_DIR_IN, 1, ep0_pending[TUSB_DIR_IN]); - } else { - dcd_event_xfer_complete(rhport, n | TUSB_DIR_IN_MASK, xfer->total_len, XFER_RESULT_SUCCESS, true); - } - } - - // XFER FIFO empty - if ( (in_ep[n].DIEPINT & USB_OTG_DIEPINT_TXFE) && (dev->DIEPEMPMSK & (1 << n)) ) - { - // DIEPINT's TXFE bit is read-only, software cannot clear it. - // It will only be cleared by hardware when written bytes is more than - // - 64 bytes or - // - Half of TX FIFO size (configured by DIEPTXF) - - uint16_t remaining_packets = (in_ep[n].DIEPTSIZ & USB_OTG_DIEPTSIZ_PKTCNT_Msk) >> USB_OTG_DIEPTSIZ_PKTCNT_Pos; - - // Process every single packet (only whole packets can be written to fifo) - for(uint16_t i = 0; i < remaining_packets; i++) - { - uint16_t const remaining_bytes = (in_ep[n].DIEPTSIZ & USB_OTG_DIEPTSIZ_XFRSIZ_Msk) >> USB_OTG_DIEPTSIZ_XFRSIZ_Pos; - - // Packet can not be larger than ep max size - uint16_t const packet_size = tu_min16(remaining_bytes, xfer->max_size); - - // It's only possible to write full packets into FIFO. Therefore DTXFSTS register of current - // EP has to be checked if the buffer can take another WHOLE packet - if(packet_size > ((in_ep[n].DTXFSTS & USB_OTG_DTXFSTS_INEPTFSAV_Msk) << 2)) break; - - // Push packet to Tx-FIFO - if (xfer->ff) - { - usb_fifo_t tx_fifo = FIFO_BASE(rhport, n); - tu_fifo_read_n_const_addr_full_words(xfer->ff, (void *)(uintptr_t) tx_fifo, packet_size); - } - else - { - write_fifo_packet(rhport, n, xfer->buffer, packet_size); - - // Increment pointer to xfer data - xfer->buffer += packet_size; - } - } - - // Turn off TXFE if all bytes are written. - if (((in_ep[n].DIEPTSIZ & USB_OTG_DIEPTSIZ_XFRSIZ_Msk) >> USB_OTG_DIEPTSIZ_XFRSIZ_Pos) == 0) - { - dev->DIEPEMPMSK &= ~(1 << n); - } - } - } - } -} - -void dcd_int_handler(uint8_t rhport) -{ - USB_OTG_GlobalTypeDef * usb_otg = GLOBAL_BASE(rhport); - USB_OTG_DeviceTypeDef * dev = DEVICE_BASE(rhport); - USB_OTG_OUTEndpointTypeDef * out_ep = OUT_EP_BASE(rhport); - USB_OTG_INEndpointTypeDef * in_ep = IN_EP_BASE(rhport); - - uint32_t const int_status = usb_otg->GINTSTS & usb_otg->GINTMSK; - - if(int_status & USB_OTG_GINTSTS_USBRST) - { - // USBRST is start of reset. - usb_otg->GINTSTS = USB_OTG_GINTSTS_USBRST; - bus_reset(rhport); - } - - if(int_status & USB_OTG_GINTSTS_ENUMDNE) - { - // ENUMDNE is the end of reset where speed of the link is detected - - usb_otg->GINTSTS = USB_OTG_GINTSTS_ENUMDNE; - - tusb_speed_t const speed = get_speed(rhport); - - set_turnaround(usb_otg, speed); - dcd_event_bus_reset(rhport, speed, true); - } - - if(int_status & USB_OTG_GINTSTS_USBSUSP) - { - usb_otg->GINTSTS = USB_OTG_GINTSTS_USBSUSP; - dcd_event_bus_signal(rhport, DCD_EVENT_SUSPEND, true); - } - - if(int_status & USB_OTG_GINTSTS_WKUINT) - { - usb_otg->GINTSTS = USB_OTG_GINTSTS_WKUINT; - dcd_event_bus_signal(rhport, DCD_EVENT_RESUME, true); - } - - // TODO check USB_OTG_GINTSTS_DISCINT for disconnect detection - // if(int_status & USB_OTG_GINTSTS_DISCINT) - - if(int_status & USB_OTG_GINTSTS_OTGINT) - { - // OTG INT bit is read-only - uint32_t const otg_int = usb_otg->GOTGINT; - - if (otg_int & USB_OTG_GOTGINT_SEDET) - { - dcd_event_bus_signal(rhport, DCD_EVENT_UNPLUGGED, true); - } - - usb_otg->GOTGINT = otg_int; - } - - if(int_status & USB_OTG_GINTSTS_SOF) - { - usb_otg->GINTSTS = USB_OTG_GINTSTS_SOF; - - // Disable SOF interrupt since currently only used for remote wakeup detection - usb_otg->GINTMSK &= ~USB_OTG_GINTMSK_SOFM; - - dcd_event_bus_signal(rhport, DCD_EVENT_SOF, true); - } - - // RxFIFO non-empty interrupt handling. - if(int_status & USB_OTG_GINTSTS_RXFLVL) - { - // RXFLVL bit is read-only - - // Mask out RXFLVL while reading data from FIFO - usb_otg->GINTMSK &= ~USB_OTG_GINTMSK_RXFLVLM; - - // Loop until all available packets were handled - do - { - handle_rxflvl_ints(rhport, out_ep); - } while(usb_otg->GINTSTS & USB_OTG_GINTSTS_RXFLVL); - - // Manage RX FIFO size - if (_out_ep_closed) - { - update_grxfsiz(rhport); - - // Disable flag - _out_ep_closed = false; - } - - usb_otg->GINTMSK |= USB_OTG_GINTMSK_RXFLVLM; - } - - // OUT endpoint interrupt handling. - if(int_status & USB_OTG_GINTSTS_OEPINT) - { - // OEPINT is read-only - handle_epout_ints(rhport, dev, out_ep); - } - - // IN endpoint interrupt handling. - if(int_status & USB_OTG_GINTSTS_IEPINT) - { - // IEPINT bit read-only - handle_epin_ints(rhport, dev, in_ep); - } - - // // Check for Incomplete isochronous IN transfer - // if(int_status & USB_OTG_GINTSTS_IISOIXFR) { - // printf(" IISOIXFR!\r\n"); - //// TU_LOG2(" IISOIXFR!\r\n"); - // } -} - -#endif diff --git a/src/portable/st/synopsys/synopsys_common.h b/src/portable/st/synopsys/synopsys_common.h deleted file mode 100644 index ce3195b23..000000000 --- a/src/portable/st/synopsys/synopsys_common.h +++ /dev/null @@ -1,1465 +0,0 @@ -/** - ****************************************************************************** - * @file synopsys_common.h - * @author MCD Application Team - * @brief CMSIS Cortex-M3 Device USB OTG peripheral Header File. - * This file contains the USB OTG peripheral register's definitions, bits - * definitions and memory mapping for STM32F1xx devices. - * - * This file contains: - * - Data structures and the address mapping for the USB OTG peripheral - * - The Peripheral's registers declarations and bits definition - * - Macros to access the peripheral's registers hardware - * - ****************************************************************************** - * @attention - * - *

© Copyright (c) 2017 STMicroelectronics. - * All rights reserved.

- * - * This software component is licensed by ST under BSD 3-Clause license, - * the "License"; You may not use this file except in compliance with the - * License. You may obtain a copy of the License at: - * opensource.org/licenses/BSD-3-Clause - * - ****************************************************************************** - */ - -#include "stdint.h" - -#pragma once - -#ifdef __cplusplus - #define __I volatile -#else - #define __I volatile const -#endif -#define __O volatile -#define __IO volatile -#define __IM volatile const -#define __OM volatile -#define __IOM volatile - -/** - * @brief __USB_OTG_Core_register - */ - -typedef struct -{ - __IO uint32_t GOTGCTL; /*!< USB_OTG Control and Status Register Address offset: 000h */ - __IO uint32_t GOTGINT; /*!< USB_OTG Interrupt Register Address offset: 004h */ - __IO uint32_t GAHBCFG; /*!< Core AHB Configuration Register Address offset: 008h */ - __IO uint32_t GUSBCFG; /*!< Core USB Configuration Register Address offset: 00Ch */ - __IO uint32_t GRSTCTL; /*!< Core Reset Register Address offset: 010h */ - __IO uint32_t GINTSTS; /*!< Core Interrupt Register Address offset: 014h */ - __IO uint32_t GINTMSK; /*!< Core Interrupt Mask Register Address offset: 018h */ - __IO uint32_t GRXSTSR; /*!< Receive Sts Q Read Register Address offset: 01Ch */ - __IO uint32_t GRXSTSP; /*!< Receive Sts Q Read & POP Register Address offset: 020h */ - __IO uint32_t GRXFSIZ; /*!< Receive FIFO Size Register Address offset: 024h */ - __IO uint32_t DIEPTXF0_HNPTXFSIZ; /*!< EP0 / Non Periodic Tx FIFO Size Register Address offset: 028h */ - __IO uint32_t HNPTXSTS; /*!< Non Periodic Tx FIFO/Queue Sts reg Address offset: 02Ch */ - uint32_t Reserved30[2]; /*!< Reserved 030h*/ - __IO uint32_t GCCFG; /*!< General Purpose IO Register Address offset: 038h */ - __IO uint32_t CID; /*!< User ID Register Address offset: 03Ch */ - uint32_t Reserved40[48]; /*!< Reserved 040h-0FFh */ - __IO uint32_t HPTXFSIZ; /*!< Host Periodic Tx FIFO Size Reg Address offset: 100h */ - __IO uint32_t DIEPTXF[0x0F]; /*!< dev Periodic Transmit FIFO Address offset: 0x104 */ -} USB_OTG_GlobalTypeDef; - -/** - * @brief __device_Registers - */ - -typedef struct -{ - __IO uint32_t DCFG; /*!< dev Configuration Register Address offset: 800h*/ - __IO uint32_t DCTL; /*!< dev Control Register Address offset: 804h*/ - __IO uint32_t DSTS; /*!< dev Status Register (RO) Address offset: 808h*/ - uint32_t Reserved0C; /*!< Reserved 80Ch*/ - __IO uint32_t DIEPMSK; /*!< dev IN Endpoint Mask Address offset: 810h*/ - __IO uint32_t DOEPMSK; /*!< dev OUT Endpoint Mask Address offset: 814h*/ - __IO uint32_t DAINT; /*!< dev All Endpoints Itr Reg Address offset: 818h*/ - __IO uint32_t DAINTMSK; /*!< dev All Endpoints Itr Mask Address offset: 81Ch*/ - uint32_t Reserved20; /*!< Reserved 820h*/ - uint32_t Reserved9; /*!< Reserved 824h*/ - __IO uint32_t DVBUSDIS; /*!< dev VBUS discharge Register Address offset: 828h*/ - __IO uint32_t DVBUSPULSE; /*!< dev VBUS Pulse Register Address offset: 82Ch*/ - __IO uint32_t DTHRCTL; /*!< dev thr Address offset: 830h*/ - __IO uint32_t DIEPEMPMSK; /*!< dev empty msk Address offset: 834h*/ - __IO uint32_t DEACHINT; /*!< dedicated EP interrupt Address offset: 838h*/ - __IO uint32_t DEACHMSK; /*!< dedicated EP msk Address offset: 83Ch*/ - uint32_t Reserved40; /*!< dedicated EP mask Address offset: 840h*/ - __IO uint32_t DINEP1MSK; /*!< dedicated EP mask Address offset: 844h*/ - uint32_t Reserved44[15]; /*!< Reserved 844-87Ch*/ - __IO uint32_t DOUTEP1MSK; /*!< dedicated EP msk Address offset: 884h*/ -} USB_OTG_DeviceTypeDef; - -/** - * @brief __IN_Endpoint-Specific_Register - */ - -typedef struct -{ - __IO uint32_t DIEPCTL; /*!< dev IN Endpoint Control Reg 900h + (ep_num * 20h) + 00h*/ - uint32_t Reserved04; /*!< Reserved 900h + (ep_num * 20h) + 04h*/ - __IO uint32_t DIEPINT; /*!< dev IN Endpoint Itr Reg 900h + (ep_num * 20h) + 08h*/ - uint32_t Reserved0C; /*!< Reserved 900h + (ep_num * 20h) + 0Ch*/ - __IO uint32_t DIEPTSIZ; /*!< IN Endpoint Txfer Size 900h + (ep_num * 20h) + 10h*/ - __IO uint32_t DIEPDMA; /*!< IN Endpoint DMA Address Reg 900h + (ep_num * 20h) + 14h*/ - __IO uint32_t DTXFSTS; /*!< IN Endpoint Tx FIFO Status Reg 900h + (ep_num * 20h) + 18h*/ - uint32_t Reserved18; /*!< Reserved 900h+(ep_num*20h)+1Ch-900h+ (ep_num * 20h) + 1Ch*/ -} USB_OTG_INEndpointTypeDef; - -/** - * @brief __OUT_Endpoint-Specific_Registers - */ - -typedef struct -{ - __IO uint32_t DOEPCTL; /*!< dev OUT Endpoint Control Reg B00h + (ep_num * 20h) + 00h*/ - uint32_t Reserved04; /*!< Reserved B00h + (ep_num * 20h) + 04h*/ - __IO uint32_t DOEPINT; /*!< dev OUT Endpoint Itr Reg B00h + (ep_num * 20h) + 08h*/ - uint32_t Reserved0C; /*!< Reserved B00h + (ep_num * 20h) + 0Ch*/ - __IO uint32_t DOEPTSIZ; /*!< dev OUT Endpoint Txfer Size B00h + (ep_num * 20h) + 10h*/ - __IO uint32_t DOEPDMA; /*!< dev OUT Endpoint DMA Address B00h + (ep_num * 20h) + 14h*/ - uint32_t Reserved18[2]; /*!< Reserved B00h + (ep_num * 20h) + 18h - B00h + (ep_num * 20h) + 1Ch*/ -} USB_OTG_OUTEndpointTypeDef; - -/** - * @brief __Host_Mode_Register_Structures - */ - -typedef struct -{ - __IO uint32_t HCFG; /*!< Host Configuration Register 400h*/ - __IO uint32_t HFIR; /*!< Host Frame Interval Register 404h*/ - __IO uint32_t HFNUM; /*!< Host Frame Nbr/Frame Remaining 408h*/ - uint32_t Reserved40C; /*!< Reserved 40Ch*/ - __IO uint32_t HPTXSTS; /*!< Host Periodic Tx FIFO/ Queue Status 410h*/ - __IO uint32_t HAINT; /*!< Host All Channels Interrupt Register 414h*/ - __IO uint32_t HAINTMSK; /*!< Host All Channels Interrupt Mask 418h*/ -} USB_OTG_HostTypeDef; - -/** - * @brief __Host_Channel_Specific_Registers - */ - -typedef struct -{ - __IO uint32_t HCCHAR; - __IO uint32_t HCSPLT; - __IO uint32_t HCINT; - __IO uint32_t HCINTMSK; - __IO uint32_t HCTSIZ; - __IO uint32_t HCDMA; - uint32_t Reserved[2]; -} USB_OTG_HostChannelTypeDef; - -/*!< USB registers base address */ -#define USB_OTG_FS_PERIPH_BASE 0x50000000UL - -#define USB_OTG_GLOBAL_BASE 0x00000000UL -#define USB_OTG_DEVICE_BASE 0x00000800UL -#define USB_OTG_IN_ENDPOINT_BASE 0x00000900UL -#define USB_OTG_OUT_ENDPOINT_BASE 0x00000B00UL -#define USB_OTG_EP_REG_SIZE 0x00000020UL -#define USB_OTG_HOST_BASE 0x00000400UL -#define USB_OTG_HOST_PORT_BASE 0x00000440UL -#define USB_OTG_HOST_CHANNEL_BASE 0x00000500UL -#define USB_OTG_HOST_CHANNEL_SIZE 0x00000020UL -#define USB_OTG_PCGCCTL_BASE 0x00000E00UL -#define USB_OTG_FIFO_BASE 0x00001000UL -#define USB_OTG_FIFO_SIZE 0x00001000UL - -/******************************************************************************/ -/* */ -/* USB_OTG */ -/* */ -/******************************************************************************/ -/******************** Bit definition for USB_OTG_GOTGCTL register ***********/ -#define USB_OTG_GOTGCTL_SRQSCS_Pos (0U) -#define USB_OTG_GOTGCTL_SRQSCS_Msk (0x1UL << USB_OTG_GOTGCTL_SRQSCS_Pos) /*!< 0x00000001 */ -#define USB_OTG_GOTGCTL_SRQSCS USB_OTG_GOTGCTL_SRQSCS_Msk /*!< Session request success */ -#define USB_OTG_GOTGCTL_SRQ_Pos (1U) -#define USB_OTG_GOTGCTL_SRQ_Msk (0x1UL << USB_OTG_GOTGCTL_SRQ_Pos) /*!< 0x00000002 */ -#define USB_OTG_GOTGCTL_SRQ USB_OTG_GOTGCTL_SRQ_Msk /*!< Session request */ -#define USB_OTG_GOTGCTL_HNGSCS_Pos (8U) -#define USB_OTG_GOTGCTL_HNGSCS_Msk (0x1UL << USB_OTG_GOTGCTL_HNGSCS_Pos) /*!< 0x00000100 */ -#define USB_OTG_GOTGCTL_HNGSCS USB_OTG_GOTGCTL_HNGSCS_Msk /*!< Host set HNP enable */ -#define USB_OTG_GOTGCTL_HNPRQ_Pos (9U) -#define USB_OTG_GOTGCTL_HNPRQ_Msk (0x1UL << USB_OTG_GOTGCTL_HNPRQ_Pos) /*!< 0x00000200 */ -#define USB_OTG_GOTGCTL_HNPRQ USB_OTG_GOTGCTL_HNPRQ_Msk /*!< HNP request */ -#define USB_OTG_GOTGCTL_HSHNPEN_Pos (10U) -#define USB_OTG_GOTGCTL_HSHNPEN_Msk (0x1UL << USB_OTG_GOTGCTL_HSHNPEN_Pos) /*!< 0x00000400 */ -#define USB_OTG_GOTGCTL_HSHNPEN USB_OTG_GOTGCTL_HSHNPEN_Msk /*!< Host set HNP enable */ -#define USB_OTG_GOTGCTL_DHNPEN_Pos (11U) -#define USB_OTG_GOTGCTL_DHNPEN_Msk (0x1UL << USB_OTG_GOTGCTL_DHNPEN_Pos) /*!< 0x00000800 */ -#define USB_OTG_GOTGCTL_DHNPEN USB_OTG_GOTGCTL_DHNPEN_Msk /*!< Device HNP enabled */ -#define USB_OTG_GOTGCTL_CIDSTS_Pos (16U) -#define USB_OTG_GOTGCTL_CIDSTS_Msk (0x1UL << USB_OTG_GOTGCTL_CIDSTS_Pos) /*!< 0x00010000 */ -#define USB_OTG_GOTGCTL_CIDSTS USB_OTG_GOTGCTL_CIDSTS_Msk /*!< Connector ID status */ -#define USB_OTG_GOTGCTL_DBCT_Pos (17U) -#define USB_OTG_GOTGCTL_DBCT_Msk (0x1UL << USB_OTG_GOTGCTL_DBCT_Pos) /*!< 0x00020000 */ -#define USB_OTG_GOTGCTL_DBCT USB_OTG_GOTGCTL_DBCT_Msk /*!< Long/short debounce time */ -#define USB_OTG_GOTGCTL_ASVLD_Pos (18U) -#define USB_OTG_GOTGCTL_ASVLD_Msk (0x1UL << USB_OTG_GOTGCTL_ASVLD_Pos) /*!< 0x00040000 */ -#define USB_OTG_GOTGCTL_ASVLD USB_OTG_GOTGCTL_ASVLD_Msk /*!< A-session valid */ -#define USB_OTG_GOTGCTL_BSVLD_Pos (19U) -#define USB_OTG_GOTGCTL_BSVLD_Msk (0x1UL << USB_OTG_GOTGCTL_BSVLD_Pos) /*!< 0x00080000 */ -#define USB_OTG_GOTGCTL_BSVLD USB_OTG_GOTGCTL_BSVLD_Msk /*!< B-session valid */ - -/******************** Bit definition for USB_OTG_HCFG register ********************/ - -#define USB_OTG_HCFG_FSLSPCS_Pos (0U) -#define USB_OTG_HCFG_FSLSPCS_Msk (0x3UL << USB_OTG_HCFG_FSLSPCS_Pos) /*!< 0x00000003 */ -#define USB_OTG_HCFG_FSLSPCS USB_OTG_HCFG_FSLSPCS_Msk /*!< FS/LS PHY clock select */ -#define USB_OTG_HCFG_FSLSPCS_0 (0x1UL << USB_OTG_HCFG_FSLSPCS_Pos) /*!< 0x00000001 */ -#define USB_OTG_HCFG_FSLSPCS_1 (0x2UL << USB_OTG_HCFG_FSLSPCS_Pos) /*!< 0x00000002 */ -#define USB_OTG_HCFG_FSLSS_Pos (2U) -#define USB_OTG_HCFG_FSLSS_Msk (0x1UL << USB_OTG_HCFG_FSLSS_Pos) /*!< 0x00000004 */ -#define USB_OTG_HCFG_FSLSS USB_OTG_HCFG_FSLSS_Msk /*!< FS- and LS-only support */ - -/******************** Bit definition for USB_OTG_DCFG register ********************/ - -#define USB_OTG_DCFG_DSPD_Pos (0U) -#define USB_OTG_DCFG_DSPD_Msk (0x3UL << USB_OTG_DCFG_DSPD_Pos) /*!< 0x00000003 */ -#define USB_OTG_DCFG_DSPD USB_OTG_DCFG_DSPD_Msk /*!< Device speed */ -#define USB_OTG_DCFG_DSPD_0 (0x1UL << USB_OTG_DCFG_DSPD_Pos) /*!< 0x00000001 */ -#define USB_OTG_DCFG_DSPD_1 (0x2UL << USB_OTG_DCFG_DSPD_Pos) /*!< 0x00000002 */ -#define USB_OTG_DCFG_NZLSOHSK_Pos (2U) -#define USB_OTG_DCFG_NZLSOHSK_Msk (0x1UL << USB_OTG_DCFG_NZLSOHSK_Pos) /*!< 0x00000004 */ -#define USB_OTG_DCFG_NZLSOHSK USB_OTG_DCFG_NZLSOHSK_Msk /*!< Nonzero-length status OUT handshake */ - -#define USB_OTG_DCFG_DAD_Pos (4U) -#define USB_OTG_DCFG_DAD_Msk (0x7FUL << USB_OTG_DCFG_DAD_Pos) /*!< 0x000007F0 */ -#define USB_OTG_DCFG_DAD USB_OTG_DCFG_DAD_Msk /*!< Device address */ -#define USB_OTG_DCFG_DAD_0 (0x01UL << USB_OTG_DCFG_DAD_Pos) /*!< 0x00000010 */ -#define USB_OTG_DCFG_DAD_1 (0x02UL << USB_OTG_DCFG_DAD_Pos) /*!< 0x00000020 */ -#define USB_OTG_DCFG_DAD_2 (0x04UL << USB_OTG_DCFG_DAD_Pos) /*!< 0x00000040 */ -#define USB_OTG_DCFG_DAD_3 (0x08UL << USB_OTG_DCFG_DAD_Pos) /*!< 0x00000080 */ -#define USB_OTG_DCFG_DAD_4 (0x10UL << USB_OTG_DCFG_DAD_Pos) /*!< 0x00000100 */ -#define USB_OTG_DCFG_DAD_5 (0x20UL << USB_OTG_DCFG_DAD_Pos) /*!< 0x00000200 */ -#define USB_OTG_DCFG_DAD_6 (0x40UL << USB_OTG_DCFG_DAD_Pos) /*!< 0x00000400 */ - -#define USB_OTG_DCFG_PFIVL_Pos (11U) -#define USB_OTG_DCFG_PFIVL_Msk (0x3UL << USB_OTG_DCFG_PFIVL_Pos) /*!< 0x00001800 */ -#define USB_OTG_DCFG_PFIVL USB_OTG_DCFG_PFIVL_Msk /*!< Periodic (micro)frame interval */ -#define USB_OTG_DCFG_PFIVL_0 (0x1UL << USB_OTG_DCFG_PFIVL_Pos) /*!< 0x00000800 */ -#define USB_OTG_DCFG_PFIVL_1 (0x2UL << USB_OTG_DCFG_PFIVL_Pos) /*!< 0x00001000 */ - -#define USB_OTG_DCFG_PERSCHIVL_Pos (24U) -#define USB_OTG_DCFG_PERSCHIVL_Msk (0x3UL << USB_OTG_DCFG_PERSCHIVL_Pos) /*!< 0x03000000 */ -#define USB_OTG_DCFG_PERSCHIVL USB_OTG_DCFG_PERSCHIVL_Msk /*!< Periodic scheduling interval */ -#define USB_OTG_DCFG_PERSCHIVL_0 (0x1UL << USB_OTG_DCFG_PERSCHIVL_Pos) /*!< 0x01000000 */ -#define USB_OTG_DCFG_PERSCHIVL_1 (0x2UL << USB_OTG_DCFG_PERSCHIVL_Pos) /*!< 0x02000000 */ - -/******************** Bit definition for USB_OTG_PCGCR register ********************/ -#define USB_OTG_PCGCR_STPPCLK_Pos (0U) -#define USB_OTG_PCGCR_STPPCLK_Msk (0x1UL << USB_OTG_PCGCR_STPPCLK_Pos) /*!< 0x00000001 */ -#define USB_OTG_PCGCR_STPPCLK USB_OTG_PCGCR_STPPCLK_Msk /*!< Stop PHY clock */ -#define USB_OTG_PCGCR_GATEHCLK_Pos (1U) -#define USB_OTG_PCGCR_GATEHCLK_Msk (0x1UL << USB_OTG_PCGCR_GATEHCLK_Pos) /*!< 0x00000002 */ -#define USB_OTG_PCGCR_GATEHCLK USB_OTG_PCGCR_GATEHCLK_Msk /*!< Gate HCLK */ -#define USB_OTG_PCGCR_PHYSUSP_Pos (4U) -#define USB_OTG_PCGCR_PHYSUSP_Msk (0x1UL << USB_OTG_PCGCR_PHYSUSP_Pos) /*!< 0x00000010 */ -#define USB_OTG_PCGCR_PHYSUSP USB_OTG_PCGCR_PHYSUSP_Msk /*!< PHY suspended */ - -/******************** Bit definition for USB_OTG_GOTGINT register ********************/ -#define USB_OTG_GOTGINT_SEDET_Pos (2U) -#define USB_OTG_GOTGINT_SEDET_Msk (0x1UL << USB_OTG_GOTGINT_SEDET_Pos) /*!< 0x00000004 */ -#define USB_OTG_GOTGINT_SEDET USB_OTG_GOTGINT_SEDET_Msk /*!< Session end detected */ -#define USB_OTG_GOTGINT_SRSSCHG_Pos (8U) -#define USB_OTG_GOTGINT_SRSSCHG_Msk (0x1UL << USB_OTG_GOTGINT_SRSSCHG_Pos) /*!< 0x00000100 */ -#define USB_OTG_GOTGINT_SRSSCHG USB_OTG_GOTGINT_SRSSCHG_Msk /*!< Session request success status change */ -#define USB_OTG_GOTGINT_HNSSCHG_Pos (9U) -#define USB_OTG_GOTGINT_HNSSCHG_Msk (0x1UL << USB_OTG_GOTGINT_HNSSCHG_Pos) /*!< 0x00000200 */ -#define USB_OTG_GOTGINT_HNSSCHG USB_OTG_GOTGINT_HNSSCHG_Msk /*!< Host negotiation success status change */ -#define USB_OTG_GOTGINT_HNGDET_Pos (17U) -#define USB_OTG_GOTGINT_HNGDET_Msk (0x1UL << USB_OTG_GOTGINT_HNGDET_Pos) /*!< 0x00020000 */ -#define USB_OTG_GOTGINT_HNGDET USB_OTG_GOTGINT_HNGDET_Msk /*!< Host negotiation detected */ -#define USB_OTG_GOTGINT_ADTOCHG_Pos (18U) -#define USB_OTG_GOTGINT_ADTOCHG_Msk (0x1UL << USB_OTG_GOTGINT_ADTOCHG_Pos) /*!< 0x00040000 */ -#define USB_OTG_GOTGINT_ADTOCHG USB_OTG_GOTGINT_ADTOCHG_Msk /*!< A-device timeout change */ -#define USB_OTG_GOTGINT_DBCDNE_Pos (19U) -#define USB_OTG_GOTGINT_DBCDNE_Msk (0x1UL << USB_OTG_GOTGINT_DBCDNE_Pos) /*!< 0x00080000 */ -#define USB_OTG_GOTGINT_DBCDNE USB_OTG_GOTGINT_DBCDNE_Msk /*!< Debounce done */ - -/******************** Bit definition for USB_OTG_DCTL register ********************/ -#define USB_OTG_DCTL_RWUSIG_Pos (0U) -#define USB_OTG_DCTL_RWUSIG_Msk (0x1UL << USB_OTG_DCTL_RWUSIG_Pos) /*!< 0x00000001 */ -#define USB_OTG_DCTL_RWUSIG USB_OTG_DCTL_RWUSIG_Msk /*!< Remote wakeup signaling */ -#define USB_OTG_DCTL_SDIS_Pos (1U) -#define USB_OTG_DCTL_SDIS_Msk (0x1UL << USB_OTG_DCTL_SDIS_Pos) /*!< 0x00000002 */ -#define USB_OTG_DCTL_SDIS USB_OTG_DCTL_SDIS_Msk /*!< Soft disconnect */ -#define USB_OTG_DCTL_GINSTS_Pos (2U) -#define USB_OTG_DCTL_GINSTS_Msk (0x1UL << USB_OTG_DCTL_GINSTS_Pos) /*!< 0x00000004 */ -#define USB_OTG_DCTL_GINSTS USB_OTG_DCTL_GINSTS_Msk /*!< Global IN NAK status */ -#define USB_OTG_DCTL_GONSTS_Pos (3U) -#define USB_OTG_DCTL_GONSTS_Msk (0x1UL << USB_OTG_DCTL_GONSTS_Pos) /*!< 0x00000008 */ -#define USB_OTG_DCTL_GONSTS USB_OTG_DCTL_GONSTS_Msk /*!< Global OUT NAK status */ - -#define USB_OTG_DCTL_TCTL_Pos (4U) -#define USB_OTG_DCTL_TCTL_Msk (0x7UL << USB_OTG_DCTL_TCTL_Pos) /*!< 0x00000070 */ -#define USB_OTG_DCTL_TCTL USB_OTG_DCTL_TCTL_Msk /*!< Test control */ -#define USB_OTG_DCTL_TCTL_0 (0x1UL << USB_OTG_DCTL_TCTL_Pos) /*!< 0x00000010 */ -#define USB_OTG_DCTL_TCTL_1 (0x2UL << USB_OTG_DCTL_TCTL_Pos) /*!< 0x00000020 */ -#define USB_OTG_DCTL_TCTL_2 (0x4UL << USB_OTG_DCTL_TCTL_Pos) /*!< 0x00000040 */ -#define USB_OTG_DCTL_SGINAK_Pos (7U) -#define USB_OTG_DCTL_SGINAK_Msk (0x1UL << USB_OTG_DCTL_SGINAK_Pos) /*!< 0x00000080 */ -#define USB_OTG_DCTL_SGINAK USB_OTG_DCTL_SGINAK_Msk /*!< Set global IN NAK */ -#define USB_OTG_DCTL_CGINAK_Pos (8U) -#define USB_OTG_DCTL_CGINAK_Msk (0x1UL << USB_OTG_DCTL_CGINAK_Pos) /*!< 0x00000100 */ -#define USB_OTG_DCTL_CGINAK USB_OTG_DCTL_CGINAK_Msk /*!< Clear global IN NAK */ -#define USB_OTG_DCTL_SGONAK_Pos (9U) -#define USB_OTG_DCTL_SGONAK_Msk (0x1UL << USB_OTG_DCTL_SGONAK_Pos) /*!< 0x00000200 */ -#define USB_OTG_DCTL_SGONAK USB_OTG_DCTL_SGONAK_Msk /*!< Set global OUT NAK */ -#define USB_OTG_DCTL_CGONAK_Pos (10U) -#define USB_OTG_DCTL_CGONAK_Msk (0x1UL << USB_OTG_DCTL_CGONAK_Pos) /*!< 0x00000400 */ -#define USB_OTG_DCTL_CGONAK USB_OTG_DCTL_CGONAK_Msk /*!< Clear global OUT NAK */ -#define USB_OTG_DCTL_POPRGDNE_Pos (11U) -#define USB_OTG_DCTL_POPRGDNE_Msk (0x1UL << USB_OTG_DCTL_POPRGDNE_Pos) /*!< 0x00000800 */ -#define USB_OTG_DCTL_POPRGDNE USB_OTG_DCTL_POPRGDNE_Msk /*!< Power-on programming done */ - -/******************** Bit definition for USB_OTG_HFIR register ********************/ -#define USB_OTG_HFIR_FRIVL_Pos (0U) -#define USB_OTG_HFIR_FRIVL_Msk (0xFFFFUL << USB_OTG_HFIR_FRIVL_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_HFIR_FRIVL USB_OTG_HFIR_FRIVL_Msk /*!< Frame interval */ - -/******************** Bit definition for USB_OTG_HFNUM register ********************/ -#define USB_OTG_HFNUM_FRNUM_Pos (0U) -#define USB_OTG_HFNUM_FRNUM_Msk (0xFFFFUL << USB_OTG_HFNUM_FRNUM_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_HFNUM_FRNUM USB_OTG_HFNUM_FRNUM_Msk /*!< Frame number */ -#define USB_OTG_HFNUM_FTREM_Pos (16U) -#define USB_OTG_HFNUM_FTREM_Msk (0xFFFFUL << USB_OTG_HFNUM_FTREM_Pos) /*!< 0xFFFF0000 */ -#define USB_OTG_HFNUM_FTREM USB_OTG_HFNUM_FTREM_Msk /*!< Frame time remaining */ - -/******************** Bit definition for USB_OTG_DSTS register ********************/ -#define USB_OTG_DSTS_SUSPSTS_Pos (0U) -#define USB_OTG_DSTS_SUSPSTS_Msk (0x1UL << USB_OTG_DSTS_SUSPSTS_Pos) /*!< 0x00000001 */ -#define USB_OTG_DSTS_SUSPSTS USB_OTG_DSTS_SUSPSTS_Msk /*!< Suspend status */ - -#define USB_OTG_DSTS_ENUMSPD_Pos (1U) -#define USB_OTG_DSTS_ENUMSPD_Msk (0x3UL << USB_OTG_DSTS_ENUMSPD_Pos) /*!< 0x00000006 */ -#define USB_OTG_DSTS_ENUMSPD USB_OTG_DSTS_ENUMSPD_Msk /*!< Enumerated speed */ -#define USB_OTG_DSTS_ENUMSPD_0 (0x1UL << USB_OTG_DSTS_ENUMSPD_Pos) /*!< 0x00000002 */ -#define USB_OTG_DSTS_ENUMSPD_1 (0x2UL << USB_OTG_DSTS_ENUMSPD_Pos) /*!< 0x00000004 */ -#define USB_OTG_DSTS_EERR_Pos (3U) -#define USB_OTG_DSTS_EERR_Msk (0x1UL << USB_OTG_DSTS_EERR_Pos) /*!< 0x00000008 */ -#define USB_OTG_DSTS_EERR USB_OTG_DSTS_EERR_Msk /*!< Erratic error */ -#define USB_OTG_DSTS_FNSOF_Pos (8U) -#define USB_OTG_DSTS_FNSOF_Msk (0x3FFFUL << USB_OTG_DSTS_FNSOF_Pos) /*!< 0x003FFF00 */ -#define USB_OTG_DSTS_FNSOF USB_OTG_DSTS_FNSOF_Msk /*!< Frame number of the received SOF */ - -/******************** Bit definition for USB_OTG_GAHBCFG register ********************/ -#define USB_OTG_GAHBCFG_GINT_Pos (0U) -#define USB_OTG_GAHBCFG_GINT_Msk (0x1UL << USB_OTG_GAHBCFG_GINT_Pos) /*!< 0x00000001 */ -#define USB_OTG_GAHBCFG_GINT USB_OTG_GAHBCFG_GINT_Msk /*!< Global interrupt mask */ -#define USB_OTG_GAHBCFG_HBSTLEN_Pos (1U) -#define USB_OTG_GAHBCFG_HBSTLEN_Msk (0xFUL << USB_OTG_GAHBCFG_HBSTLEN_Pos) /*!< 0x0000001E */ -#define USB_OTG_GAHBCFG_HBSTLEN USB_OTG_GAHBCFG_HBSTLEN_Msk /*!< Burst length/type */ -#define USB_OTG_GAHBCFG_HBSTLEN_0 (0x0UL << USB_OTG_GAHBCFG_HBSTLEN_Pos) /*!< Single */ -#define USB_OTG_GAHBCFG_HBSTLEN_1 (0x1UL << USB_OTG_GAHBCFG_HBSTLEN_Pos) /*!< INCR */ -#define USB_OTG_GAHBCFG_HBSTLEN_2 (0x3UL << USB_OTG_GAHBCFG_HBSTLEN_Pos) /*!< INCR4 */ -#define USB_OTG_GAHBCFG_HBSTLEN_3 (0x5UL << USB_OTG_GAHBCFG_HBSTLEN_Pos) /*!< INCR8 */ -#define USB_OTG_GAHBCFG_HBSTLEN_4 (0x7UL << USB_OTG_GAHBCFG_HBSTLEN_Pos) /*!< INCR16 */ -#define USB_OTG_GAHBCFG_DMAEN_Pos (5U) -#define USB_OTG_GAHBCFG_DMAEN_Msk (0x1UL << USB_OTG_GAHBCFG_DMAEN_Pos) /*!< 0x00000020 */ -#define USB_OTG_GAHBCFG_DMAEN USB_OTG_GAHBCFG_DMAEN_Msk /*!< DMA enable */ -#define USB_OTG_GAHBCFG_TXFELVL_Pos (7U) -#define USB_OTG_GAHBCFG_TXFELVL_Msk (0x1UL << USB_OTG_GAHBCFG_TXFELVL_Pos) /*!< 0x00000080 */ -#define USB_OTG_GAHBCFG_TXFELVL USB_OTG_GAHBCFG_TXFELVL_Msk /*!< TxFIFO empty level */ -#define USB_OTG_GAHBCFG_PTXFELVL_Pos (8U) -#define USB_OTG_GAHBCFG_PTXFELVL_Msk (0x1UL << USB_OTG_GAHBCFG_PTXFELVL_Pos) /*!< 0x00000100 */ -#define USB_OTG_GAHBCFG_PTXFELVL USB_OTG_GAHBCFG_PTXFELVL_Msk /*!< Periodic TxFIFO empty level */ - -/******************** Bit definition for USB_OTG_GUSBCFG register ********************/ - -#define USB_OTG_GUSBCFG_TOCAL_Pos (0U) -#define USB_OTG_GUSBCFG_TOCAL_Msk (0x7UL << USB_OTG_GUSBCFG_TOCAL_Pos) /*!< 0x00000007 */ -#define USB_OTG_GUSBCFG_TOCAL USB_OTG_GUSBCFG_TOCAL_Msk /*!< FS timeout calibration */ -#define USB_OTG_GUSBCFG_TOCAL_0 (0x1UL << USB_OTG_GUSBCFG_TOCAL_Pos) /*!< 0x00000001 */ -#define USB_OTG_GUSBCFG_TOCAL_1 (0x2UL << USB_OTG_GUSBCFG_TOCAL_Pos) /*!< 0x00000002 */ -#define USB_OTG_GUSBCFG_TOCAL_2 (0x4UL << USB_OTG_GUSBCFG_TOCAL_Pos) /*!< 0x00000004 */ -#define USB_OTG_GUSBCFG_PHYSEL_Pos (6U) -#define USB_OTG_GUSBCFG_PHYSEL_Msk (0x1UL << USB_OTG_GUSBCFG_PHYSEL_Pos) /*!< 0x00000040 */ -#define USB_OTG_GUSBCFG_PHYSEL USB_OTG_GUSBCFG_PHYSEL_Msk /*!< USB 2.0 high-speed ULPI PHY or USB 1.1 full-speed serial transceiver select */ -#define USB_OTG_GUSBCFG_SRPCAP_Pos (8U) -#define USB_OTG_GUSBCFG_SRPCAP_Msk (0x1UL << USB_OTG_GUSBCFG_SRPCAP_Pos) /*!< 0x00000100 */ -#define USB_OTG_GUSBCFG_SRPCAP USB_OTG_GUSBCFG_SRPCAP_Msk /*!< SRP-capable */ -#define USB_OTG_GUSBCFG_HNPCAP_Pos (9U) -#define USB_OTG_GUSBCFG_HNPCAP_Msk (0x1UL << USB_OTG_GUSBCFG_HNPCAP_Pos) /*!< 0x00000200 */ -#define USB_OTG_GUSBCFG_HNPCAP USB_OTG_GUSBCFG_HNPCAP_Msk /*!< HNP-capable */ -#define USB_OTG_GUSBCFG_TRDT_Pos (10U) -#define USB_OTG_GUSBCFG_TRDT_Msk (0xFUL << USB_OTG_GUSBCFG_TRDT_Pos) /*!< 0x00003C00 */ -#define USB_OTG_GUSBCFG_TRDT USB_OTG_GUSBCFG_TRDT_Msk /*!< USB turnaround time */ -#define USB_OTG_GUSBCFG_TRDT_0 (0x1UL << USB_OTG_GUSBCFG_TRDT_Pos) /*!< 0x00000400 */ -#define USB_OTG_GUSBCFG_TRDT_1 (0x2UL << USB_OTG_GUSBCFG_TRDT_Pos) /*!< 0x00000800 */ -#define USB_OTG_GUSBCFG_TRDT_2 (0x4UL << USB_OTG_GUSBCFG_TRDT_Pos) /*!< 0x00001000 */ -#define USB_OTG_GUSBCFG_TRDT_3 (0x8UL << USB_OTG_GUSBCFG_TRDT_Pos) /*!< 0x00002000 */ -#define USB_OTG_GUSBCFG_PHYLPCS_Pos (15U) -#define USB_OTG_GUSBCFG_PHYLPCS_Msk (0x1UL << USB_OTG_GUSBCFG_PHYLPCS_Pos) /*!< 0x00008000 */ -#define USB_OTG_GUSBCFG_PHYLPCS USB_OTG_GUSBCFG_PHYLPCS_Msk /*!< PHY Low-power clock select */ -#define USB_OTG_GUSBCFG_ULPIFSLS_Pos (17U) -#define USB_OTG_GUSBCFG_ULPIFSLS_Msk (0x1UL << USB_OTG_GUSBCFG_ULPIFSLS_Pos) /*!< 0x00020000 */ -#define USB_OTG_GUSBCFG_ULPIFSLS USB_OTG_GUSBCFG_ULPIFSLS_Msk /*!< ULPI FS/LS select */ -#define USB_OTG_GUSBCFG_ULPIAR_Pos (18U) -#define USB_OTG_GUSBCFG_ULPIAR_Msk (0x1UL << USB_OTG_GUSBCFG_ULPIAR_Pos) /*!< 0x00040000 */ -#define USB_OTG_GUSBCFG_ULPIAR USB_OTG_GUSBCFG_ULPIAR_Msk /*!< ULPI Auto-resume */ -#define USB_OTG_GUSBCFG_ULPICSM_Pos (19U) -#define USB_OTG_GUSBCFG_ULPICSM_Msk (0x1UL << USB_OTG_GUSBCFG_ULPICSM_Pos) /*!< 0x00080000 */ -#define USB_OTG_GUSBCFG_ULPICSM USB_OTG_GUSBCFG_ULPICSM_Msk /*!< ULPI Clock SuspendM */ -#define USB_OTG_GUSBCFG_ULPIEVBUSD_Pos (20U) -#define USB_OTG_GUSBCFG_ULPIEVBUSD_Msk (0x1UL << USB_OTG_GUSBCFG_ULPIEVBUSD_Pos) /*!< 0x00100000 */ -#define USB_OTG_GUSBCFG_ULPIEVBUSD USB_OTG_GUSBCFG_ULPIEVBUSD_Msk /*!< ULPI External VBUS Drive */ -#define USB_OTG_GUSBCFG_ULPIEVBUSI_Pos (21U) -#define USB_OTG_GUSBCFG_ULPIEVBUSI_Msk (0x1UL << USB_OTG_GUSBCFG_ULPIEVBUSI_Pos) /*!< 0x00200000 */ -#define USB_OTG_GUSBCFG_ULPIEVBUSI USB_OTG_GUSBCFG_ULPIEVBUSI_Msk /*!< ULPI external VBUS indicator */ -#define USB_OTG_GUSBCFG_TSDPS_Pos (22U) -#define USB_OTG_GUSBCFG_TSDPS_Msk (0x1UL << USB_OTG_GUSBCFG_TSDPS_Pos) /*!< 0x00400000 */ -#define USB_OTG_GUSBCFG_TSDPS USB_OTG_GUSBCFG_TSDPS_Msk /*!< TermSel DLine pulsing selection */ -#define USB_OTG_GUSBCFG_PCCI_Pos (23U) -#define USB_OTG_GUSBCFG_PCCI_Msk (0x1UL << USB_OTG_GUSBCFG_PCCI_Pos) /*!< 0x00800000 */ -#define USB_OTG_GUSBCFG_PCCI USB_OTG_GUSBCFG_PCCI_Msk /*!< Indicator complement */ -#define USB_OTG_GUSBCFG_PTCI_Pos (24U) -#define USB_OTG_GUSBCFG_PTCI_Msk (0x1UL << USB_OTG_GUSBCFG_PTCI_Pos) /*!< 0x01000000 */ -#define USB_OTG_GUSBCFG_PTCI USB_OTG_GUSBCFG_PTCI_Msk /*!< Indicator pass through */ -#define USB_OTG_GUSBCFG_ULPIIPD_Pos (25U) -#define USB_OTG_GUSBCFG_ULPIIPD_Msk (0x1UL << USB_OTG_GUSBCFG_ULPIIPD_Pos) /*!< 0x02000000 */ -#define USB_OTG_GUSBCFG_ULPIIPD USB_OTG_GUSBCFG_ULPIIPD_Msk /*!< ULPI interface protect disable */ -#define USB_OTG_GUSBCFG_FHMOD_Pos (29U) -#define USB_OTG_GUSBCFG_FHMOD_Msk (0x1UL << USB_OTG_GUSBCFG_FHMOD_Pos) /*!< 0x20000000 */ -#define USB_OTG_GUSBCFG_FHMOD USB_OTG_GUSBCFG_FHMOD_Msk /*!< Forced host mode */ -#define USB_OTG_GUSBCFG_FDMOD_Pos (30U) -#define USB_OTG_GUSBCFG_FDMOD_Msk (0x1UL << USB_OTG_GUSBCFG_FDMOD_Pos) /*!< 0x40000000 */ -#define USB_OTG_GUSBCFG_FDMOD USB_OTG_GUSBCFG_FDMOD_Msk /*!< Forced peripheral mode */ -#define USB_OTG_GUSBCFG_CTXPKT_Pos (31U) -#define USB_OTG_GUSBCFG_CTXPKT_Msk (0x1UL << USB_OTG_GUSBCFG_CTXPKT_Pos) /*!< 0x80000000 */ -#define USB_OTG_GUSBCFG_CTXPKT USB_OTG_GUSBCFG_CTXPKT_Msk /*!< Corrupt Tx packet */ - -/******************** Bit definition for USB_OTG_GRSTCTL register ********************/ -#define USB_OTG_GRSTCTL_CSRST_Pos (0U) -#define USB_OTG_GRSTCTL_CSRST_Msk (0x1UL << USB_OTG_GRSTCTL_CSRST_Pos) /*!< 0x00000001 */ -#define USB_OTG_GRSTCTL_CSRST USB_OTG_GRSTCTL_CSRST_Msk /*!< Core soft reset */ -#define USB_OTG_GRSTCTL_HSRST_Pos (1U) -#define USB_OTG_GRSTCTL_HSRST_Msk (0x1UL << USB_OTG_GRSTCTL_HSRST_Pos) /*!< 0x00000002 */ -#define USB_OTG_GRSTCTL_HSRST USB_OTG_GRSTCTL_HSRST_Msk /*!< HCLK soft reset */ -#define USB_OTG_GRSTCTL_FCRST_Pos (2U) -#define USB_OTG_GRSTCTL_FCRST_Msk (0x1UL << USB_OTG_GRSTCTL_FCRST_Pos) /*!< 0x00000004 */ -#define USB_OTG_GRSTCTL_FCRST USB_OTG_GRSTCTL_FCRST_Msk /*!< Host frame counter reset */ -#define USB_OTG_GRSTCTL_RXFFLSH_Pos (4U) -#define USB_OTG_GRSTCTL_RXFFLSH_Msk (0x1UL << USB_OTG_GRSTCTL_RXFFLSH_Pos) /*!< 0x00000010 */ -#define USB_OTG_GRSTCTL_RXFFLSH USB_OTG_GRSTCTL_RXFFLSH_Msk /*!< RxFIFO flush */ -#define USB_OTG_GRSTCTL_TXFFLSH_Pos (5U) -#define USB_OTG_GRSTCTL_TXFFLSH_Msk (0x1UL << USB_OTG_GRSTCTL_TXFFLSH_Pos) /*!< 0x00000020 */ -#define USB_OTG_GRSTCTL_TXFFLSH USB_OTG_GRSTCTL_TXFFLSH_Msk /*!< TxFIFO flush */ - - -#define USB_OTG_GRSTCTL_TXFNUM_Pos (6U) -#define USB_OTG_GRSTCTL_TXFNUM_Msk (0x1FUL << USB_OTG_GRSTCTL_TXFNUM_Pos) /*!< 0x000007C0 */ -#define USB_OTG_GRSTCTL_TXFNUM USB_OTG_GRSTCTL_TXFNUM_Msk /*!< TxFIFO number */ -#define USB_OTG_GRSTCTL_TXFNUM_0 (0x01UL << USB_OTG_GRSTCTL_TXFNUM_Pos) /*!< 0x00000040 */ -#define USB_OTG_GRSTCTL_TXFNUM_1 (0x02UL << USB_OTG_GRSTCTL_TXFNUM_Pos) /*!< 0x00000080 */ -#define USB_OTG_GRSTCTL_TXFNUM_2 (0x04UL << USB_OTG_GRSTCTL_TXFNUM_Pos) /*!< 0x00000100 */ -#define USB_OTG_GRSTCTL_TXFNUM_3 (0x08UL << USB_OTG_GRSTCTL_TXFNUM_Pos) /*!< 0x00000200 */ -#define USB_OTG_GRSTCTL_TXFNUM_4 (0x10UL << USB_OTG_GRSTCTL_TXFNUM_Pos) /*!< 0x00000400 */ -#define USB_OTG_GRSTCTL_DMAREQ_Pos (30U) -#define USB_OTG_GRSTCTL_DMAREQ_Msk (0x1UL << USB_OTG_GRSTCTL_DMAREQ_Pos) /*!< 0x40000000 */ -#define USB_OTG_GRSTCTL_DMAREQ USB_OTG_GRSTCTL_DMAREQ_Msk /*!< DMA request signal */ -#define USB_OTG_GRSTCTL_AHBIDL_Pos (31U) -#define USB_OTG_GRSTCTL_AHBIDL_Msk (0x1UL << USB_OTG_GRSTCTL_AHBIDL_Pos) /*!< 0x80000000 */ -#define USB_OTG_GRSTCTL_AHBIDL USB_OTG_GRSTCTL_AHBIDL_Msk /*!< AHB master idle */ - -/******************** Bit definition for USB_OTG_DIEPMSK register ********************/ -#define USB_OTG_DIEPMSK_XFRCM_Pos (0U) -#define USB_OTG_DIEPMSK_XFRCM_Msk (0x1UL << USB_OTG_DIEPMSK_XFRCM_Pos) /*!< 0x00000001 */ -#define USB_OTG_DIEPMSK_XFRCM USB_OTG_DIEPMSK_XFRCM_Msk /*!< Transfer completed interrupt mask */ -#define USB_OTG_DIEPMSK_EPDM_Pos (1U) -#define USB_OTG_DIEPMSK_EPDM_Msk (0x1UL << USB_OTG_DIEPMSK_EPDM_Pos) /*!< 0x00000002 */ -#define USB_OTG_DIEPMSK_EPDM USB_OTG_DIEPMSK_EPDM_Msk /*!< Endpoint disabled interrupt mask */ -#define USB_OTG_DIEPMSK_TOM_Pos (3U) -#define USB_OTG_DIEPMSK_TOM_Msk (0x1UL << USB_OTG_DIEPMSK_TOM_Pos) /*!< 0x00000008 */ -#define USB_OTG_DIEPMSK_TOM USB_OTG_DIEPMSK_TOM_Msk /*!< Timeout condition mask (nonisochronous endpoints) */ -#define USB_OTG_DIEPMSK_ITTXFEMSK_Pos (4U) -#define USB_OTG_DIEPMSK_ITTXFEMSK_Msk (0x1UL << USB_OTG_DIEPMSK_ITTXFEMSK_Pos) /*!< 0x00000010 */ -#define USB_OTG_DIEPMSK_ITTXFEMSK USB_OTG_DIEPMSK_ITTXFEMSK_Msk /*!< IN token received when TxFIFO empty mask */ -#define USB_OTG_DIEPMSK_INEPNMM_Pos (5U) -#define USB_OTG_DIEPMSK_INEPNMM_Msk (0x1UL << USB_OTG_DIEPMSK_INEPNMM_Pos) /*!< 0x00000020 */ -#define USB_OTG_DIEPMSK_INEPNMM USB_OTG_DIEPMSK_INEPNMM_Msk /*!< IN token received with EP mismatch mask */ -#define USB_OTG_DIEPMSK_INEPNEM_Pos (6U) -#define USB_OTG_DIEPMSK_INEPNEM_Msk (0x1UL << USB_OTG_DIEPMSK_INEPNEM_Pos) /*!< 0x00000040 */ -#define USB_OTG_DIEPMSK_INEPNEM USB_OTG_DIEPMSK_INEPNEM_Msk /*!< IN endpoint NAK effective mask */ -#define USB_OTG_DIEPMSK_TXFURM_Pos (8U) -#define USB_OTG_DIEPMSK_TXFURM_Msk (0x1UL << USB_OTG_DIEPMSK_TXFURM_Pos) /*!< 0x00000100 */ -#define USB_OTG_DIEPMSK_TXFURM USB_OTG_DIEPMSK_TXFURM_Msk /*!< FIFO underrun mask */ -#define USB_OTG_DIEPMSK_BIM_Pos (9U) -#define USB_OTG_DIEPMSK_BIM_Msk (0x1UL << USB_OTG_DIEPMSK_BIM_Pos) /*!< 0x00000200 */ -#define USB_OTG_DIEPMSK_BIM USB_OTG_DIEPMSK_BIM_Msk /*!< BNA interrupt mask */ - -/******************** Bit definition for USB_OTG_HPTXSTS register ********************/ -#define USB_OTG_HPTXSTS_PTXFSAVL_Pos (0U) -#define USB_OTG_HPTXSTS_PTXFSAVL_Msk (0xFFFFUL << USB_OTG_HPTXSTS_PTXFSAVL_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_HPTXSTS_PTXFSAVL USB_OTG_HPTXSTS_PTXFSAVL_Msk /*!< Periodic transmit data FIFO space available */ -#define USB_OTG_HPTXSTS_PTXQSAV_Pos (16U) -#define USB_OTG_HPTXSTS_PTXQSAV_Msk (0xFFUL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00FF0000 */ -#define USB_OTG_HPTXSTS_PTXQSAV USB_OTG_HPTXSTS_PTXQSAV_Msk /*!< Periodic transmit request queue space available */ -#define USB_OTG_HPTXSTS_PTXQSAV_0 (0x01UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00010000 */ -#define USB_OTG_HPTXSTS_PTXQSAV_1 (0x02UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00020000 */ -#define USB_OTG_HPTXSTS_PTXQSAV_2 (0x04UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00040000 */ -#define USB_OTG_HPTXSTS_PTXQSAV_3 (0x08UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00080000 */ -#define USB_OTG_HPTXSTS_PTXQSAV_4 (0x10UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00100000 */ -#define USB_OTG_HPTXSTS_PTXQSAV_5 (0x20UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00200000 */ -#define USB_OTG_HPTXSTS_PTXQSAV_6 (0x40UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00400000 */ -#define USB_OTG_HPTXSTS_PTXQSAV_7 (0x80UL << USB_OTG_HPTXSTS_PTXQSAV_Pos) /*!< 0x00800000 */ - -#define USB_OTG_HPTXSTS_PTXQTOP_Pos (24U) -#define USB_OTG_HPTXSTS_PTXQTOP_Msk (0xFFUL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0xFF000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP USB_OTG_HPTXSTS_PTXQTOP_Msk /*!< Top of the periodic transmit request queue */ -#define USB_OTG_HPTXSTS_PTXQTOP_0 (0x01UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x01000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP_1 (0x02UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x02000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP_2 (0x04UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x04000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP_3 (0x08UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x08000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP_4 (0x10UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x10000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP_5 (0x20UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x20000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP_6 (0x40UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x40000000 */ -#define USB_OTG_HPTXSTS_PTXQTOP_7 (0x80UL << USB_OTG_HPTXSTS_PTXQTOP_Pos) /*!< 0x80000000 */ - -/******************** Bit definition for USB_OTG_HAINT register ********************/ -#define USB_OTG_HAINT_HAINT_Pos (0U) -#define USB_OTG_HAINT_HAINT_Msk (0xFFFFUL << USB_OTG_HAINT_HAINT_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_HAINT_HAINT USB_OTG_HAINT_HAINT_Msk /*!< Channel interrupts */ - -/******************** Bit definition for USB_OTG_DOEPMSK register ********************/ -#define USB_OTG_DOEPMSK_XFRCM_Pos (0U) -#define USB_OTG_DOEPMSK_XFRCM_Msk (0x1UL << USB_OTG_DOEPMSK_XFRCM_Pos) /*!< 0x00000001 */ -#define USB_OTG_DOEPMSK_XFRCM USB_OTG_DOEPMSK_XFRCM_Msk /*!< Transfer completed interrupt mask */ -#define USB_OTG_DOEPMSK_EPDM_Pos (1U) -#define USB_OTG_DOEPMSK_EPDM_Msk (0x1UL << USB_OTG_DOEPMSK_EPDM_Pos) /*!< 0x00000002 */ -#define USB_OTG_DOEPMSK_EPDM USB_OTG_DOEPMSK_EPDM_Msk /*!< Endpoint disabled interrupt mask */ -#define USB_OTG_DOEPMSK_AHBERRM_Pos (2U) -#define USB_OTG_DOEPMSK_AHBERRM_Msk (0x1UL << USB_OTG_DOEPMSK_AHBERRM_Pos) /*!< 0x00000004 */ -#define USB_OTG_DOEPMSK_AHBERRM USB_OTG_DOEPMSK_AHBERRM_Msk /*!< OUT transaction AHB Error interrupt mask */ -#define USB_OTG_DOEPMSK_STUPM_Pos (3U) -#define USB_OTG_DOEPMSK_STUPM_Msk (0x1UL << USB_OTG_DOEPMSK_STUPM_Pos) /*!< 0x00000008 */ -#define USB_OTG_DOEPMSK_STUPM USB_OTG_DOEPMSK_STUPM_Msk /*!< SETUP phase done mask */ -#define USB_OTG_DOEPMSK_OTEPDM_Pos (4U) -#define USB_OTG_DOEPMSK_OTEPDM_Msk (0x1UL << USB_OTG_DOEPMSK_OTEPDM_Pos) /*!< 0x00000010 */ -#define USB_OTG_DOEPMSK_OTEPDM USB_OTG_DOEPMSK_OTEPDM_Msk /*!< OUT token received when endpoint disabled mask */ -#define USB_OTG_DOEPMSK_OTEPSPRM_Pos (5U) -#define USB_OTG_DOEPMSK_OTEPSPRM_Msk (0x1UL << USB_OTG_DOEPMSK_OTEPSPRM_Pos) /*!< 0x00000020 */ -#define USB_OTG_DOEPMSK_OTEPSPRM USB_OTG_DOEPMSK_OTEPSPRM_Msk /*!< Status Phase Received mask */ -#define USB_OTG_DOEPMSK_B2BSTUP_Pos (6U) -#define USB_OTG_DOEPMSK_B2BSTUP_Msk (0x1UL << USB_OTG_DOEPMSK_B2BSTUP_Pos) /*!< 0x00000040 */ -#define USB_OTG_DOEPMSK_B2BSTUP USB_OTG_DOEPMSK_B2BSTUP_Msk /*!< Back-to-back SETUP packets received mask */ -#define USB_OTG_DOEPMSK_OPEM_Pos (8U) -#define USB_OTG_DOEPMSK_OPEM_Msk (0x1UL << USB_OTG_DOEPMSK_OPEM_Pos) /*!< 0x00000100 */ -#define USB_OTG_DOEPMSK_OPEM USB_OTG_DOEPMSK_OPEM_Msk /*!< OUT packet error mask */ -#define USB_OTG_DOEPMSK_BOIM_Pos (9U) -#define USB_OTG_DOEPMSK_BOIM_Msk (0x1UL << USB_OTG_DOEPMSK_BOIM_Pos) /*!< 0x00000200 */ -#define USB_OTG_DOEPMSK_BOIM USB_OTG_DOEPMSK_BOIM_Msk /*!< BNA interrupt mask */ -#define USB_OTG_DOEPMSK_BERRM_Pos (12U) -#define USB_OTG_DOEPMSK_BERRM_Msk (0x1UL << USB_OTG_DOEPMSK_BERRM_Pos) /*!< 0x00001000 */ -#define USB_OTG_DOEPMSK_BERRM USB_OTG_DOEPMSK_BERRM_Msk /*!< Babble error interrupt mask */ -#define USB_OTG_DOEPMSK_NAKM_Pos (13U) -#define USB_OTG_DOEPMSK_NAKM_Msk (0x1UL << USB_OTG_DOEPMSK_NAKM_Pos) /*!< 0x00002000 */ -#define USB_OTG_DOEPMSK_NAKM USB_OTG_DOEPMSK_NAKM_Msk /*!< OUT Packet NAK interrupt mask */ -#define USB_OTG_DOEPMSK_NYETM_Pos (14U) -#define USB_OTG_DOEPMSK_NYETM_Msk (0x1UL << USB_OTG_DOEPMSK_NYETM_Pos) /*!< 0x00004000 */ -#define USB_OTG_DOEPMSK_NYETM USB_OTG_DOEPMSK_NYETM_Msk /*!< NYET interrupt mask */ -/******************** Bit definition for USB_OTG_GINTSTS register ********************/ -#define USB_OTG_GINTSTS_CMOD_Pos (0U) -#define USB_OTG_GINTSTS_CMOD_Msk (0x1UL << USB_OTG_GINTSTS_CMOD_Pos) /*!< 0x00000001 */ -#define USB_OTG_GINTSTS_CMOD USB_OTG_GINTSTS_CMOD_Msk /*!< Current mode of operation */ -#define USB_OTG_GINTSTS_MMIS_Pos (1U) -#define USB_OTG_GINTSTS_MMIS_Msk (0x1UL << USB_OTG_GINTSTS_MMIS_Pos) /*!< 0x00000002 */ -#define USB_OTG_GINTSTS_MMIS USB_OTG_GINTSTS_MMIS_Msk /*!< Mode mismatch interrupt */ -#define USB_OTG_GINTSTS_OTGINT_Pos (2U) -#define USB_OTG_GINTSTS_OTGINT_Msk (0x1UL << USB_OTG_GINTSTS_OTGINT_Pos) /*!< 0x00000004 */ -#define USB_OTG_GINTSTS_OTGINT USB_OTG_GINTSTS_OTGINT_Msk /*!< OTG interrupt */ -#define USB_OTG_GINTSTS_SOF_Pos (3U) -#define USB_OTG_GINTSTS_SOF_Msk (0x1UL << USB_OTG_GINTSTS_SOF_Pos) /*!< 0x00000008 */ -#define USB_OTG_GINTSTS_SOF USB_OTG_GINTSTS_SOF_Msk /*!< Start of frame */ -#define USB_OTG_GINTSTS_RXFLVL_Pos (4U) -#define USB_OTG_GINTSTS_RXFLVL_Msk (0x1UL << USB_OTG_GINTSTS_RXFLVL_Pos) /*!< 0x00000010 */ -#define USB_OTG_GINTSTS_RXFLVL USB_OTG_GINTSTS_RXFLVL_Msk /*!< RxFIFO nonempty */ -#define USB_OTG_GINTSTS_NPTXFE_Pos (5U) -#define USB_OTG_GINTSTS_NPTXFE_Msk (0x1UL << USB_OTG_GINTSTS_NPTXFE_Pos) /*!< 0x00000020 */ -#define USB_OTG_GINTSTS_NPTXFE USB_OTG_GINTSTS_NPTXFE_Msk /*!< Nonperiodic TxFIFO empty */ -#define USB_OTG_GINTSTS_GINAKEFF_Pos (6U) -#define USB_OTG_GINTSTS_GINAKEFF_Msk (0x1UL << USB_OTG_GINTSTS_GINAKEFF_Pos) /*!< 0x00000040 */ -#define USB_OTG_GINTSTS_GINAKEFF USB_OTG_GINTSTS_GINAKEFF_Msk /*!< Global IN nonperiodic NAK effective */ -#define USB_OTG_GINTSTS_BOUTNAKEFF_Pos (7U) -#define USB_OTG_GINTSTS_BOUTNAKEFF_Msk (0x1UL << USB_OTG_GINTSTS_BOUTNAKEFF_Pos) /*!< 0x00000080 */ -#define USB_OTG_GINTSTS_BOUTNAKEFF USB_OTG_GINTSTS_BOUTNAKEFF_Msk /*!< Global OUT NAK effective */ -#define USB_OTG_GINTSTS_ESUSP_Pos (10U) -#define USB_OTG_GINTSTS_ESUSP_Msk (0x1UL << USB_OTG_GINTSTS_ESUSP_Pos) /*!< 0x00000400 */ -#define USB_OTG_GINTSTS_ESUSP USB_OTG_GINTSTS_ESUSP_Msk /*!< Early suspend */ -#define USB_OTG_GINTSTS_USBSUSP_Pos (11U) -#define USB_OTG_GINTSTS_USBSUSP_Msk (0x1UL << USB_OTG_GINTSTS_USBSUSP_Pos) /*!< 0x00000800 */ -#define USB_OTG_GINTSTS_USBSUSP USB_OTG_GINTSTS_USBSUSP_Msk /*!< USB suspend */ -#define USB_OTG_GINTSTS_USBRST_Pos (12U) -#define USB_OTG_GINTSTS_USBRST_Msk (0x1UL << USB_OTG_GINTSTS_USBRST_Pos) /*!< 0x00001000 */ -#define USB_OTG_GINTSTS_USBRST USB_OTG_GINTSTS_USBRST_Msk /*!< USB reset */ -#define USB_OTG_GINTSTS_ENUMDNE_Pos (13U) -#define USB_OTG_GINTSTS_ENUMDNE_Msk (0x1UL << USB_OTG_GINTSTS_ENUMDNE_Pos) /*!< 0x00002000 */ -#define USB_OTG_GINTSTS_ENUMDNE USB_OTG_GINTSTS_ENUMDNE_Msk /*!< Enumeration done */ -#define USB_OTG_GINTSTS_ISOODRP_Pos (14U) -#define USB_OTG_GINTSTS_ISOODRP_Msk (0x1UL << USB_OTG_GINTSTS_ISOODRP_Pos) /*!< 0x00004000 */ -#define USB_OTG_GINTSTS_ISOODRP USB_OTG_GINTSTS_ISOODRP_Msk /*!< Isochronous OUT packet dropped interrupt */ -#define USB_OTG_GINTSTS_EOPF_Pos (15U) -#define USB_OTG_GINTSTS_EOPF_Msk (0x1UL << USB_OTG_GINTSTS_EOPF_Pos) /*!< 0x00008000 */ -#define USB_OTG_GINTSTS_EOPF USB_OTG_GINTSTS_EOPF_Msk /*!< End of periodic frame interrupt */ -#define USB_OTG_GINTSTS_IEPINT_Pos (18U) -#define USB_OTG_GINTSTS_IEPINT_Msk (0x1UL << USB_OTG_GINTSTS_IEPINT_Pos) /*!< 0x00040000 */ -#define USB_OTG_GINTSTS_IEPINT USB_OTG_GINTSTS_IEPINT_Msk /*!< IN endpoint interrupt */ -#define USB_OTG_GINTSTS_OEPINT_Pos (19U) -#define USB_OTG_GINTSTS_OEPINT_Msk (0x1UL << USB_OTG_GINTSTS_OEPINT_Pos) /*!< 0x00080000 */ -#define USB_OTG_GINTSTS_OEPINT USB_OTG_GINTSTS_OEPINT_Msk /*!< OUT endpoint interrupt */ -#define USB_OTG_GINTSTS_IISOIXFR_Pos (20U) -#define USB_OTG_GINTSTS_IISOIXFR_Msk (0x1UL << USB_OTG_GINTSTS_IISOIXFR_Pos) /*!< 0x00100000 */ -#define USB_OTG_GINTSTS_IISOIXFR USB_OTG_GINTSTS_IISOIXFR_Msk /*!< Incomplete isochronous IN transfer */ -#define USB_OTG_GINTSTS_PXFR_INCOMPISOOUT_Pos (21U) -#define USB_OTG_GINTSTS_PXFR_INCOMPISOOUT_Msk (0x1UL << USB_OTG_GINTSTS_PXFR_INCOMPISOOUT_Pos) /*!< 0x00200000 */ -#define USB_OTG_GINTSTS_PXFR_INCOMPISOOUT USB_OTG_GINTSTS_PXFR_INCOMPISOOUT_Msk /*!< Incomplete periodic transfer */ -#define USB_OTG_GINTSTS_DATAFSUSP_Pos (22U) -#define USB_OTG_GINTSTS_DATAFSUSP_Msk (0x1UL << USB_OTG_GINTSTS_DATAFSUSP_Pos) /*!< 0x00400000 */ -#define USB_OTG_GINTSTS_DATAFSUSP USB_OTG_GINTSTS_DATAFSUSP_Msk /*!< Data fetch suspended */ -#define USB_OTG_GINTSTS_HPRTINT_Pos (24U) -#define USB_OTG_GINTSTS_HPRTINT_Msk (0x1UL << USB_OTG_GINTSTS_HPRTINT_Pos) /*!< 0x01000000 */ -#define USB_OTG_GINTSTS_HPRTINT USB_OTG_GINTSTS_HPRTINT_Msk /*!< Host port interrupt */ -#define USB_OTG_GINTSTS_HCINT_Pos (25U) -#define USB_OTG_GINTSTS_HCINT_Msk (0x1UL << USB_OTG_GINTSTS_HCINT_Pos) /*!< 0x02000000 */ -#define USB_OTG_GINTSTS_HCINT USB_OTG_GINTSTS_HCINT_Msk /*!< Host channels interrupt */ -#define USB_OTG_GINTSTS_PTXFE_Pos (26U) -#define USB_OTG_GINTSTS_PTXFE_Msk (0x1UL << USB_OTG_GINTSTS_PTXFE_Pos) /*!< 0x04000000 */ -#define USB_OTG_GINTSTS_PTXFE USB_OTG_GINTSTS_PTXFE_Msk /*!< Periodic TxFIFO empty */ -#define USB_OTG_GINTSTS_CIDSCHG_Pos (28U) -#define USB_OTG_GINTSTS_CIDSCHG_Msk (0x1UL << USB_OTG_GINTSTS_CIDSCHG_Pos) /*!< 0x10000000 */ -#define USB_OTG_GINTSTS_CIDSCHG USB_OTG_GINTSTS_CIDSCHG_Msk /*!< Connector ID status change */ -#define USB_OTG_GINTSTS_DISCINT_Pos (29U) -#define USB_OTG_GINTSTS_DISCINT_Msk (0x1UL << USB_OTG_GINTSTS_DISCINT_Pos) /*!< 0x20000000 */ -#define USB_OTG_GINTSTS_DISCINT USB_OTG_GINTSTS_DISCINT_Msk /*!< Disconnect detected interrupt */ -#define USB_OTG_GINTSTS_SRQINT_Pos (30U) -#define USB_OTG_GINTSTS_SRQINT_Msk (0x1UL << USB_OTG_GINTSTS_SRQINT_Pos) /*!< 0x40000000 */ -#define USB_OTG_GINTSTS_SRQINT USB_OTG_GINTSTS_SRQINT_Msk /*!< Session request/new session detected interrupt */ -#define USB_OTG_GINTSTS_WKUINT_Pos (31U) -#define USB_OTG_GINTSTS_WKUINT_Msk (0x1UL << USB_OTG_GINTSTS_WKUINT_Pos) /*!< 0x80000000 */ -#define USB_OTG_GINTSTS_WKUINT USB_OTG_GINTSTS_WKUINT_Msk /*!< Resume/remote wakeup detected interrupt */ - -/******************** Bit definition for USB_OTG_GINTMSK register ********************/ -#define USB_OTG_GINTMSK_MMISM_Pos (1U) -#define USB_OTG_GINTMSK_MMISM_Msk (0x1UL << USB_OTG_GINTMSK_MMISM_Pos) /*!< 0x00000002 */ -#define USB_OTG_GINTMSK_MMISM USB_OTG_GINTMSK_MMISM_Msk /*!< Mode mismatch interrupt mask */ -#define USB_OTG_GINTMSK_OTGINT_Pos (2U) -#define USB_OTG_GINTMSK_OTGINT_Msk (0x1UL << USB_OTG_GINTMSK_OTGINT_Pos) /*!< 0x00000004 */ -#define USB_OTG_GINTMSK_OTGINT USB_OTG_GINTMSK_OTGINT_Msk /*!< OTG interrupt mask */ -#define USB_OTG_GINTMSK_SOFM_Pos (3U) -#define USB_OTG_GINTMSK_SOFM_Msk (0x1UL << USB_OTG_GINTMSK_SOFM_Pos) /*!< 0x00000008 */ -#define USB_OTG_GINTMSK_SOFM USB_OTG_GINTMSK_SOFM_Msk /*!< Start of frame mask */ -#define USB_OTG_GINTMSK_RXFLVLM_Pos (4U) -#define USB_OTG_GINTMSK_RXFLVLM_Msk (0x1UL << USB_OTG_GINTMSK_RXFLVLM_Pos) /*!< 0x00000010 */ -#define USB_OTG_GINTMSK_RXFLVLM USB_OTG_GINTMSK_RXFLVLM_Msk /*!< Receive FIFO nonempty mask */ -#define USB_OTG_GINTMSK_NPTXFEM_Pos (5U) -#define USB_OTG_GINTMSK_NPTXFEM_Msk (0x1UL << USB_OTG_GINTMSK_NPTXFEM_Pos) /*!< 0x00000020 */ -#define USB_OTG_GINTMSK_NPTXFEM USB_OTG_GINTMSK_NPTXFEM_Msk /*!< Nonperiodic TxFIFO empty mask */ -#define USB_OTG_GINTMSK_GINAKEFFM_Pos (6U) -#define USB_OTG_GINTMSK_GINAKEFFM_Msk (0x1UL << USB_OTG_GINTMSK_GINAKEFFM_Pos) /*!< 0x00000040 */ -#define USB_OTG_GINTMSK_GINAKEFFM USB_OTG_GINTMSK_GINAKEFFM_Msk /*!< Global nonperiodic IN NAK effective mask */ -#define USB_OTG_GINTMSK_GONAKEFFM_Pos (7U) -#define USB_OTG_GINTMSK_GONAKEFFM_Msk (0x1UL << USB_OTG_GINTMSK_GONAKEFFM_Pos) /*!< 0x00000080 */ -#define USB_OTG_GINTMSK_GONAKEFFM USB_OTG_GINTMSK_GONAKEFFM_Msk /*!< Global OUT NAK effective mask */ -#define USB_OTG_GINTMSK_ESUSPM_Pos (10U) -#define USB_OTG_GINTMSK_ESUSPM_Msk (0x1UL << USB_OTG_GINTMSK_ESUSPM_Pos) /*!< 0x00000400 */ -#define USB_OTG_GINTMSK_ESUSPM USB_OTG_GINTMSK_ESUSPM_Msk /*!< Early suspend mask */ -#define USB_OTG_GINTMSK_USBSUSPM_Pos (11U) -#define USB_OTG_GINTMSK_USBSUSPM_Msk (0x1UL << USB_OTG_GINTMSK_USBSUSPM_Pos) /*!< 0x00000800 */ -#define USB_OTG_GINTMSK_USBSUSPM USB_OTG_GINTMSK_USBSUSPM_Msk /*!< USB suspend mask */ -#define USB_OTG_GINTMSK_USBRST_Pos (12U) -#define USB_OTG_GINTMSK_USBRST_Msk (0x1UL << USB_OTG_GINTMSK_USBRST_Pos) /*!< 0x00001000 */ -#define USB_OTG_GINTMSK_USBRST USB_OTG_GINTMSK_USBRST_Msk /*!< USB reset mask */ -#define USB_OTG_GINTMSK_ENUMDNEM_Pos (13U) -#define USB_OTG_GINTMSK_ENUMDNEM_Msk (0x1UL << USB_OTG_GINTMSK_ENUMDNEM_Pos) /*!< 0x00002000 */ -#define USB_OTG_GINTMSK_ENUMDNEM USB_OTG_GINTMSK_ENUMDNEM_Msk /*!< Enumeration done mask */ -#define USB_OTG_GINTMSK_ISOODRPM_Pos (14U) -#define USB_OTG_GINTMSK_ISOODRPM_Msk (0x1UL << USB_OTG_GINTMSK_ISOODRPM_Pos) /*!< 0x00004000 */ -#define USB_OTG_GINTMSK_ISOODRPM USB_OTG_GINTMSK_ISOODRPM_Msk /*!< Isochronous OUT packet dropped interrupt mask */ -#define USB_OTG_GINTMSK_EOPFM_Pos (15U) -#define USB_OTG_GINTMSK_EOPFM_Msk (0x1UL << USB_OTG_GINTMSK_EOPFM_Pos) /*!< 0x00008000 */ -#define USB_OTG_GINTMSK_EOPFM USB_OTG_GINTMSK_EOPFM_Msk /*!< End of periodic frame interrupt mask */ -#define USB_OTG_GINTMSK_EPMISM_Pos (17U) -#define USB_OTG_GINTMSK_EPMISM_Msk (0x1UL << USB_OTG_GINTMSK_EPMISM_Pos) /*!< 0x00020000 */ -#define USB_OTG_GINTMSK_EPMISM USB_OTG_GINTMSK_EPMISM_Msk /*!< Endpoint mismatch interrupt mask */ -#define USB_OTG_GINTMSK_IEPINT_Pos (18U) -#define USB_OTG_GINTMSK_IEPINT_Msk (0x1UL << USB_OTG_GINTMSK_IEPINT_Pos) /*!< 0x00040000 */ -#define USB_OTG_GINTMSK_IEPINT USB_OTG_GINTMSK_IEPINT_Msk /*!< IN endpoints interrupt mask */ -#define USB_OTG_GINTMSK_OEPINT_Pos (19U) -#define USB_OTG_GINTMSK_OEPINT_Msk (0x1UL << USB_OTG_GINTMSK_OEPINT_Pos) /*!< 0x00080000 */ -#define USB_OTG_GINTMSK_OEPINT USB_OTG_GINTMSK_OEPINT_Msk /*!< OUT endpoints interrupt mask */ -#define USB_OTG_GINTMSK_IISOIXFRM_Pos (20U) -#define USB_OTG_GINTMSK_IISOIXFRM_Msk (0x1UL << USB_OTG_GINTMSK_IISOIXFRM_Pos) /*!< 0x00100000 */ -#define USB_OTG_GINTMSK_IISOIXFRM USB_OTG_GINTMSK_IISOIXFRM_Msk /*!< Incomplete isochronous IN transfer mask */ -#define USB_OTG_GINTMSK_PXFRM_IISOOXFRM_Pos (21U) -#define USB_OTG_GINTMSK_PXFRM_IISOOXFRM_Msk (0x1UL << USB_OTG_GINTMSK_PXFRM_IISOOXFRM_Pos) /*!< 0x00200000 */ -#define USB_OTG_GINTMSK_PXFRM_IISOOXFRM USB_OTG_GINTMSK_PXFRM_IISOOXFRM_Msk /*!< Incomplete periodic transfer mask */ -#define USB_OTG_GINTMSK_FSUSPM_Pos (22U) -#define USB_OTG_GINTMSK_FSUSPM_Msk (0x1UL << USB_OTG_GINTMSK_FSUSPM_Pos) /*!< 0x00400000 */ -#define USB_OTG_GINTMSK_FSUSPM USB_OTG_GINTMSK_FSUSPM_Msk /*!< Data fetch suspended mask */ -#define USB_OTG_GINTMSK_PRTIM_Pos (24U) -#define USB_OTG_GINTMSK_PRTIM_Msk (0x1UL << USB_OTG_GINTMSK_PRTIM_Pos) /*!< 0x01000000 */ -#define USB_OTG_GINTMSK_PRTIM USB_OTG_GINTMSK_PRTIM_Msk /*!< Host port interrupt mask */ -#define USB_OTG_GINTMSK_HCIM_Pos (25U) -#define USB_OTG_GINTMSK_HCIM_Msk (0x1UL << USB_OTG_GINTMSK_HCIM_Pos) /*!< 0x02000000 */ -#define USB_OTG_GINTMSK_HCIM USB_OTG_GINTMSK_HCIM_Msk /*!< Host channels interrupt mask */ -#define USB_OTG_GINTMSK_PTXFEM_Pos (26U) -#define USB_OTG_GINTMSK_PTXFEM_Msk (0x1UL << USB_OTG_GINTMSK_PTXFEM_Pos) /*!< 0x04000000 */ -#define USB_OTG_GINTMSK_PTXFEM USB_OTG_GINTMSK_PTXFEM_Msk /*!< Periodic TxFIFO empty mask */ -#define USB_OTG_GINTMSK_CIDSCHGM_Pos (28U) -#define USB_OTG_GINTMSK_CIDSCHGM_Msk (0x1UL << USB_OTG_GINTMSK_CIDSCHGM_Pos) /*!< 0x10000000 */ -#define USB_OTG_GINTMSK_CIDSCHGM USB_OTG_GINTMSK_CIDSCHGM_Msk /*!< Connector ID status change mask */ -#define USB_OTG_GINTMSK_DISCINT_Pos (29U) -#define USB_OTG_GINTMSK_DISCINT_Msk (0x1UL << USB_OTG_GINTMSK_DISCINT_Pos) /*!< 0x20000000 */ -#define USB_OTG_GINTMSK_DISCINT USB_OTG_GINTMSK_DISCINT_Msk /*!< Disconnect detected interrupt mask */ -#define USB_OTG_GINTMSK_SRQIM_Pos (30U) -#define USB_OTG_GINTMSK_SRQIM_Msk (0x1UL << USB_OTG_GINTMSK_SRQIM_Pos) /*!< 0x40000000 */ -#define USB_OTG_GINTMSK_SRQIM USB_OTG_GINTMSK_SRQIM_Msk /*!< Session request/new session detected interrupt mask */ -#define USB_OTG_GINTMSK_WUIM_Pos (31U) -#define USB_OTG_GINTMSK_WUIM_Msk (0x1UL << USB_OTG_GINTMSK_WUIM_Pos) /*!< 0x80000000 */ -#define USB_OTG_GINTMSK_WUIM USB_OTG_GINTMSK_WUIM_Msk /*!< Resume/remote wakeup detected interrupt mask */ - -/******************** Bit definition for USB_OTG_DAINT register ********************/ -#define USB_OTG_DAINT_IEPINT_Pos (0U) -#define USB_OTG_DAINT_IEPINT_Msk (0xFFFFUL << USB_OTG_DAINT_IEPINT_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_DAINT_IEPINT USB_OTG_DAINT_IEPINT_Msk /*!< IN endpoint interrupt bits */ -#define USB_OTG_DAINT_OEPINT_Pos (16U) -#define USB_OTG_DAINT_OEPINT_Msk (0xFFFFUL << USB_OTG_DAINT_OEPINT_Pos) /*!< 0xFFFF0000 */ -#define USB_OTG_DAINT_OEPINT USB_OTG_DAINT_OEPINT_Msk /*!< OUT endpoint interrupt bits */ - -/******************** Bit definition for USB_OTG_HAINTMSK register ********************/ -#define USB_OTG_HAINTMSK_HAINTM_Pos (0U) -#define USB_OTG_HAINTMSK_HAINTM_Msk (0xFFFFUL << USB_OTG_HAINTMSK_HAINTM_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_HAINTMSK_HAINTM USB_OTG_HAINTMSK_HAINTM_Msk /*!< Channel interrupt mask */ - -/******************** Bit definition for USB_OTG_GRXSTSP register ********************/ -#define USB_OTG_GRXSTSP_EPNUM_Pos (0U) -#define USB_OTG_GRXSTSP_EPNUM_Msk (0xFUL << USB_OTG_GRXSTSP_EPNUM_Pos) /*!< 0x0000000F */ -#define USB_OTG_GRXSTSP_EPNUM USB_OTG_GRXSTSP_EPNUM_Msk /*!< IN EP interrupt mask bits */ -#define USB_OTG_GRXSTSP_BCNT_Pos (4U) -#define USB_OTG_GRXSTSP_BCNT_Msk (0x7FFUL << USB_OTG_GRXSTSP_BCNT_Pos) /*!< 0x00007FF0 */ -#define USB_OTG_GRXSTSP_BCNT USB_OTG_GRXSTSP_BCNT_Msk /*!< OUT EP interrupt mask bits */ -#define USB_OTG_GRXSTSP_DPID_Pos (15U) -#define USB_OTG_GRXSTSP_DPID_Msk (0x3UL << USB_OTG_GRXSTSP_DPID_Pos) /*!< 0x00018000 */ -#define USB_OTG_GRXSTSP_DPID USB_OTG_GRXSTSP_DPID_Msk /*!< OUT EP interrupt mask bits */ -#define USB_OTG_GRXSTSP_PKTSTS_Pos (17U) -#define USB_OTG_GRXSTSP_PKTSTS_Msk (0xFUL << USB_OTG_GRXSTSP_PKTSTS_Pos) /*!< 0x001E0000 */ -#define USB_OTG_GRXSTSP_PKTSTS USB_OTG_GRXSTSP_PKTSTS_Msk /*!< OUT EP interrupt mask bits */ - -/******************** Bit definition for USB_OTG_DAINTMSK register ********************/ -#define USB_OTG_DAINTMSK_IEPM_Pos (0U) -#define USB_OTG_DAINTMSK_IEPM_Msk (0xFFFFUL << USB_OTG_DAINTMSK_IEPM_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_DAINTMSK_IEPM USB_OTG_DAINTMSK_IEPM_Msk /*!< IN EP interrupt mask bits */ -#define USB_OTG_DAINTMSK_OEPM_Pos (16U) -#define USB_OTG_DAINTMSK_OEPM_Msk (0xFFFFUL << USB_OTG_DAINTMSK_OEPM_Pos) /*!< 0xFFFF0000 */ -#define USB_OTG_DAINTMSK_OEPM USB_OTG_DAINTMSK_OEPM_Msk /*!< OUT EP interrupt mask bits */ - -/******************** Bit definition for USB_OTG_GRXFSIZ register ********************/ -#define USB_OTG_GRXFSIZ_RXFD_Pos (0U) -#define USB_OTG_GRXFSIZ_RXFD_Msk (0xFFFFUL << USB_OTG_GRXFSIZ_RXFD_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_GRXFSIZ_RXFD USB_OTG_GRXFSIZ_RXFD_Msk /*!< RxFIFO depth */ - -/******************** Bit definition for USB_OTG_DVBUSDIS register ********************/ -#define USB_OTG_DVBUSDIS_VBUSDT_Pos (0U) -#define USB_OTG_DVBUSDIS_VBUSDT_Msk (0xFFFFUL << USB_OTG_DVBUSDIS_VBUSDT_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_DVBUSDIS_VBUSDT USB_OTG_DVBUSDIS_VBUSDT_Msk /*!< Device VBUS discharge time */ - -/******************** Bit definition for OTG register ********************/ -#define USB_OTG_NPTXFSA_Pos (0U) -#define USB_OTG_NPTXFSA_Msk (0xFFFFUL << USB_OTG_NPTXFSA_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_NPTXFSA USB_OTG_NPTXFSA_Msk /*!< Nonperiodic transmit RAM start address */ -#define USB_OTG_NPTXFD_Pos (16U) -#define USB_OTG_NPTXFD_Msk (0xFFFFUL << USB_OTG_NPTXFD_Pos) /*!< 0xFFFF0000 */ -#define USB_OTG_NPTXFD USB_OTG_NPTXFD_Msk /*!< Nonperiodic TxFIFO depth */ -#define USB_OTG_TX0FSA_Pos (0U) -#define USB_OTG_TX0FSA_Msk (0xFFFFUL << USB_OTG_TX0FSA_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_TX0FSA USB_OTG_TX0FSA_Msk /*!< Endpoint 0 transmit RAM start address */ -#define USB_OTG_TX0FD_Pos (16U) -#define USB_OTG_TX0FD_Msk (0xFFFFUL << USB_OTG_TX0FD_Pos) /*!< 0xFFFF0000 */ -#define USB_OTG_TX0FD USB_OTG_TX0FD_Msk /*!< Endpoint 0 TxFIFO depth */ - -/******************** Bit definition for USB_OTG_DVBUSPULSE register ********************/ -#define USB_OTG_DVBUSPULSE_DVBUSP_Pos (0U) -#define USB_OTG_DVBUSPULSE_DVBUSP_Msk (0xFFFUL << USB_OTG_DVBUSPULSE_DVBUSP_Pos) /*!< 0x00000FFF */ -#define USB_OTG_DVBUSPULSE_DVBUSP USB_OTG_DVBUSPULSE_DVBUSP_Msk /*!< Device VBUS pulsing time */ - -/******************** Bit definition for USB_OTG_GNPTXSTS register ********************/ -#define USB_OTG_GNPTXSTS_NPTXFSAV_Pos (0U) -#define USB_OTG_GNPTXSTS_NPTXFSAV_Msk (0xFFFFUL << USB_OTG_GNPTXSTS_NPTXFSAV_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_GNPTXSTS_NPTXFSAV USB_OTG_GNPTXSTS_NPTXFSAV_Msk /*!< Nonperiodic TxFIFO space available */ - -#define USB_OTG_GNPTXSTS_NPTQXSAV_Pos (16U) -#define USB_OTG_GNPTXSTS_NPTQXSAV_Msk (0xFFUL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00FF0000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV USB_OTG_GNPTXSTS_NPTQXSAV_Msk /*!< Nonperiodic transmit request queue space available */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_0 (0x01UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00010000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_1 (0x02UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00020000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_2 (0x04UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00040000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_3 (0x08UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00080000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_4 (0x10UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00100000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_5 (0x20UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00200000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_6 (0x40UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00400000 */ -#define USB_OTG_GNPTXSTS_NPTQXSAV_7 (0x80UL << USB_OTG_GNPTXSTS_NPTQXSAV_Pos) /*!< 0x00800000 */ - -#define USB_OTG_GNPTXSTS_NPTXQTOP_Pos (24U) -#define USB_OTG_GNPTXSTS_NPTXQTOP_Msk (0x7FUL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x7F000000 */ -#define USB_OTG_GNPTXSTS_NPTXQTOP USB_OTG_GNPTXSTS_NPTXQTOP_Msk /*!< Top of the nonperiodic transmit request queue */ -#define USB_OTG_GNPTXSTS_NPTXQTOP_0 (0x01UL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x01000000 */ -#define USB_OTG_GNPTXSTS_NPTXQTOP_1 (0x02UL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x02000000 */ -#define USB_OTG_GNPTXSTS_NPTXQTOP_2 (0x04UL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x04000000 */ -#define USB_OTG_GNPTXSTS_NPTXQTOP_3 (0x08UL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x08000000 */ -#define USB_OTG_GNPTXSTS_NPTXQTOP_4 (0x10UL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x10000000 */ -#define USB_OTG_GNPTXSTS_NPTXQTOP_5 (0x20UL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x20000000 */ -#define USB_OTG_GNPTXSTS_NPTXQTOP_6 (0x40UL << USB_OTG_GNPTXSTS_NPTXQTOP_Pos) /*!< 0x40000000 */ - -/******************** Bit definition for USB_OTG_DTHRCTL register ********************/ -#define USB_OTG_DTHRCTL_NONISOTHREN_Pos (0U) -#define USB_OTG_DTHRCTL_NONISOTHREN_Msk (0x1UL << USB_OTG_DTHRCTL_NONISOTHREN_Pos) /*!< 0x00000001 */ -#define USB_OTG_DTHRCTL_NONISOTHREN USB_OTG_DTHRCTL_NONISOTHREN_Msk /*!< Nonisochronous IN endpoints threshold enable */ -#define USB_OTG_DTHRCTL_ISOTHREN_Pos (1U) -#define USB_OTG_DTHRCTL_ISOTHREN_Msk (0x1UL << USB_OTG_DTHRCTL_ISOTHREN_Pos) /*!< 0x00000002 */ -#define USB_OTG_DTHRCTL_ISOTHREN USB_OTG_DTHRCTL_ISOTHREN_Msk /*!< ISO IN endpoint threshold enable */ - -#define USB_OTG_DTHRCTL_TXTHRLEN_Pos (2U) -#define USB_OTG_DTHRCTL_TXTHRLEN_Msk (0x1FFUL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x000007FC */ -#define USB_OTG_DTHRCTL_TXTHRLEN USB_OTG_DTHRCTL_TXTHRLEN_Msk /*!< Transmit threshold length */ -#define USB_OTG_DTHRCTL_TXTHRLEN_0 (0x001UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000004 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_1 (0x002UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000008 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_2 (0x004UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000010 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_3 (0x008UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000020 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_4 (0x010UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000040 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_5 (0x020UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000080 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_6 (0x040UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000100 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_7 (0x080UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000200 */ -#define USB_OTG_DTHRCTL_TXTHRLEN_8 (0x100UL << USB_OTG_DTHRCTL_TXTHRLEN_Pos) /*!< 0x00000400 */ -#define USB_OTG_DTHRCTL_RXTHREN_Pos (16U) -#define USB_OTG_DTHRCTL_RXTHREN_Msk (0x1UL << USB_OTG_DTHRCTL_RXTHREN_Pos) /*!< 0x00010000 */ -#define USB_OTG_DTHRCTL_RXTHREN USB_OTG_DTHRCTL_RXTHREN_Msk /*!< Receive threshold enable */ - -#define USB_OTG_DTHRCTL_RXTHRLEN_Pos (17U) -#define USB_OTG_DTHRCTL_RXTHRLEN_Msk (0x1FFUL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x03FE0000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN USB_OTG_DTHRCTL_RXTHRLEN_Msk /*!< Receive threshold length */ -#define USB_OTG_DTHRCTL_RXTHRLEN_0 (0x001UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x00020000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_1 (0x002UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x00040000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_2 (0x004UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x00080000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_3 (0x008UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x00100000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_4 (0x010UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x00200000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_5 (0x020UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x00400000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_6 (0x040UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x00800000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_7 (0x080UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x01000000 */ -#define USB_OTG_DTHRCTL_RXTHRLEN_8 (0x100UL << USB_OTG_DTHRCTL_RXTHRLEN_Pos) /*!< 0x02000000 */ -#define USB_OTG_DTHRCTL_ARPEN_Pos (27U) -#define USB_OTG_DTHRCTL_ARPEN_Msk (0x1UL << USB_OTG_DTHRCTL_ARPEN_Pos) /*!< 0x08000000 */ -#define USB_OTG_DTHRCTL_ARPEN USB_OTG_DTHRCTL_ARPEN_Msk /*!< Arbiter parking enable */ - -/******************** Bit definition for USB_OTG_DIEPEMPMSK register ********************/ -#define USB_OTG_DIEPEMPMSK_INEPTXFEM_Pos (0U) -#define USB_OTG_DIEPEMPMSK_INEPTXFEM_Msk (0xFFFFUL << USB_OTG_DIEPEMPMSK_INEPTXFEM_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_DIEPEMPMSK_INEPTXFEM USB_OTG_DIEPEMPMSK_INEPTXFEM_Msk /*!< IN EP Tx FIFO empty interrupt mask bits */ - -/******************** Bit definition for USB_OTG_DEACHINT register ********************/ -#define USB_OTG_DEACHINT_IEP1INT_Pos (1U) -#define USB_OTG_DEACHINT_IEP1INT_Msk (0x1UL << USB_OTG_DEACHINT_IEP1INT_Pos) /*!< 0x00000002 */ -#define USB_OTG_DEACHINT_IEP1INT USB_OTG_DEACHINT_IEP1INT_Msk /*!< IN endpoint 1interrupt bit */ -#define USB_OTG_DEACHINT_OEP1INT_Pos (17U) -#define USB_OTG_DEACHINT_OEP1INT_Msk (0x1UL << USB_OTG_DEACHINT_OEP1INT_Pos) /*!< 0x00020000 */ -#define USB_OTG_DEACHINT_OEP1INT USB_OTG_DEACHINT_OEP1INT_Msk /*!< OUT endpoint 1 interrupt bit */ - -/******************** Bit definition for USB_OTG_GCCFG register ********************/ -#define USB_OTG_GCCFG_PWRDWN_Pos (16U) -#define USB_OTG_GCCFG_PWRDWN_Msk (0x1UL << USB_OTG_GCCFG_PWRDWN_Pos) /*!< 0x00010000 */ -#define USB_OTG_GCCFG_PWRDWN USB_OTG_GCCFG_PWRDWN_Msk /*!< Power down */ -#define USB_OTG_GCCFG_VBUSASEN_Pos (18U) -#define USB_OTG_GCCFG_VBUSASEN_Msk (0x1UL << USB_OTG_GCCFG_VBUSASEN_Pos) /*!< 0x00040000 */ -#define USB_OTG_GCCFG_VBUSASEN USB_OTG_GCCFG_VBUSASEN_Msk /*!< Enable the VBUS sensing device */ -#define USB_OTG_GCCFG_VBUSBSEN_Pos (19U) -#define USB_OTG_GCCFG_VBUSBSEN_Msk (0x1UL << USB_OTG_GCCFG_VBUSBSEN_Pos) /*!< 0x00080000 */ -#define USB_OTG_GCCFG_VBUSBSEN USB_OTG_GCCFG_VBUSBSEN_Msk /*!< Enable the VBUS sensing device */ -#define USB_OTG_GCCFG_SOFOUTEN_Pos (20U) -#define USB_OTG_GCCFG_SOFOUTEN_Msk (0x1UL << USB_OTG_GCCFG_SOFOUTEN_Pos) /*!< 0x00100000 */ -#define USB_OTG_GCCFG_SOFOUTEN USB_OTG_GCCFG_SOFOUTEN_Msk /*!< SOF output enable */ - -/******************** Bit definition for USB_OTG_DEACHINTMSK register ********************/ -#define USB_OTG_DEACHINTMSK_IEP1INTM_Pos (1U) -#define USB_OTG_DEACHINTMSK_IEP1INTM_Msk (0x1UL << USB_OTG_DEACHINTMSK_IEP1INTM_Pos) /*!< 0x00000002 */ -#define USB_OTG_DEACHINTMSK_IEP1INTM USB_OTG_DEACHINTMSK_IEP1INTM_Msk /*!< IN Endpoint 1 interrupt mask bit */ -#define USB_OTG_DEACHINTMSK_OEP1INTM_Pos (17U) -#define USB_OTG_DEACHINTMSK_OEP1INTM_Msk (0x1UL << USB_OTG_DEACHINTMSK_OEP1INTM_Pos) /*!< 0x00020000 */ -#define USB_OTG_DEACHINTMSK_OEP1INTM USB_OTG_DEACHINTMSK_OEP1INTM_Msk /*!< OUT Endpoint 1 interrupt mask bit */ - -/******************** Bit definition for USB_OTG_CID register ********************/ -#define USB_OTG_CID_PRODUCT_ID_Pos (0U) -#define USB_OTG_CID_PRODUCT_ID_Msk (0xFFFFFFFFUL << USB_OTG_CID_PRODUCT_ID_Pos) /*!< 0xFFFFFFFF */ -#define USB_OTG_CID_PRODUCT_ID USB_OTG_CID_PRODUCT_ID_Msk /*!< Product ID field */ - -/******************** Bit definition for USB_OTG_DIEPEACHMSK1 register ********************/ -#define USB_OTG_DIEPEACHMSK1_XFRCM_Pos (0U) -#define USB_OTG_DIEPEACHMSK1_XFRCM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_XFRCM_Pos) /*!< 0x00000001 */ -#define USB_OTG_DIEPEACHMSK1_XFRCM USB_OTG_DIEPEACHMSK1_XFRCM_Msk /*!< Transfer completed interrupt mask */ -#define USB_OTG_DIEPEACHMSK1_EPDM_Pos (1U) -#define USB_OTG_DIEPEACHMSK1_EPDM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_EPDM_Pos) /*!< 0x00000002 */ -#define USB_OTG_DIEPEACHMSK1_EPDM USB_OTG_DIEPEACHMSK1_EPDM_Msk /*!< Endpoint disabled interrupt mask */ -#define USB_OTG_DIEPEACHMSK1_TOM_Pos (3U) -#define USB_OTG_DIEPEACHMSK1_TOM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_TOM_Pos) /*!< 0x00000008 */ -#define USB_OTG_DIEPEACHMSK1_TOM USB_OTG_DIEPEACHMSK1_TOM_Msk /*!< Timeout condition mask (nonisochronous endpoints) */ -#define USB_OTG_DIEPEACHMSK1_ITTXFEMSK_Pos (4U) -#define USB_OTG_DIEPEACHMSK1_ITTXFEMSK_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_ITTXFEMSK_Pos) /*!< 0x00000010 */ -#define USB_OTG_DIEPEACHMSK1_ITTXFEMSK USB_OTG_DIEPEACHMSK1_ITTXFEMSK_Msk /*!< IN token received when TxFIFO empty mask */ -#define USB_OTG_DIEPEACHMSK1_INEPNMM_Pos (5U) -#define USB_OTG_DIEPEACHMSK1_INEPNMM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_INEPNMM_Pos) /*!< 0x00000020 */ -#define USB_OTG_DIEPEACHMSK1_INEPNMM USB_OTG_DIEPEACHMSK1_INEPNMM_Msk /*!< IN token received with EP mismatch mask */ -#define USB_OTG_DIEPEACHMSK1_INEPNEM_Pos (6U) -#define USB_OTG_DIEPEACHMSK1_INEPNEM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_INEPNEM_Pos) /*!< 0x00000040 */ -#define USB_OTG_DIEPEACHMSK1_INEPNEM USB_OTG_DIEPEACHMSK1_INEPNEM_Msk /*!< IN endpoint NAK effective mask */ -#define USB_OTG_DIEPEACHMSK1_TXFURM_Pos (8U) -#define USB_OTG_DIEPEACHMSK1_TXFURM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_TXFURM_Pos) /*!< 0x00000100 */ -#define USB_OTG_DIEPEACHMSK1_TXFURM USB_OTG_DIEPEACHMSK1_TXFURM_Msk /*!< FIFO underrun mask */ -#define USB_OTG_DIEPEACHMSK1_BIM_Pos (9U) -#define USB_OTG_DIEPEACHMSK1_BIM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_BIM_Pos) /*!< 0x00000200 */ -#define USB_OTG_DIEPEACHMSK1_BIM USB_OTG_DIEPEACHMSK1_BIM_Msk /*!< BNA interrupt mask */ -#define USB_OTG_DIEPEACHMSK1_NAKM_Pos (13U) -#define USB_OTG_DIEPEACHMSK1_NAKM_Msk (0x1UL << USB_OTG_DIEPEACHMSK1_NAKM_Pos) /*!< 0x00002000 */ -#define USB_OTG_DIEPEACHMSK1_NAKM USB_OTG_DIEPEACHMSK1_NAKM_Msk /*!< NAK interrupt mask */ - -/******************** Bit definition for USB_OTG_HPRT register ********************/ -#define USB_OTG_HPRT_PCSTS_Pos (0U) -#define USB_OTG_HPRT_PCSTS_Msk (0x1UL << USB_OTG_HPRT_PCSTS_Pos) /*!< 0x00000001 */ -#define USB_OTG_HPRT_PCSTS USB_OTG_HPRT_PCSTS_Msk /*!< Port connect status */ -#define USB_OTG_HPRT_PCDET_Pos (1U) -#define USB_OTG_HPRT_PCDET_Msk (0x1UL << USB_OTG_HPRT_PCDET_Pos) /*!< 0x00000002 */ -#define USB_OTG_HPRT_PCDET USB_OTG_HPRT_PCDET_Msk /*!< Port connect detected */ -#define USB_OTG_HPRT_PENA_Pos (2U) -#define USB_OTG_HPRT_PENA_Msk (0x1UL << USB_OTG_HPRT_PENA_Pos) /*!< 0x00000004 */ -#define USB_OTG_HPRT_PENA USB_OTG_HPRT_PENA_Msk /*!< Port enable */ -#define USB_OTG_HPRT_PENCHNG_Pos (3U) -#define USB_OTG_HPRT_PENCHNG_Msk (0x1UL << USB_OTG_HPRT_PENCHNG_Pos) /*!< 0x00000008 */ -#define USB_OTG_HPRT_PENCHNG USB_OTG_HPRT_PENCHNG_Msk /*!< Port enable/disable change */ -#define USB_OTG_HPRT_POCA_Pos (4U) -#define USB_OTG_HPRT_POCA_Msk (0x1UL << USB_OTG_HPRT_POCA_Pos) /*!< 0x00000010 */ -#define USB_OTG_HPRT_POCA USB_OTG_HPRT_POCA_Msk /*!< Port overcurrent active */ -#define USB_OTG_HPRT_POCCHNG_Pos (5U) -#define USB_OTG_HPRT_POCCHNG_Msk (0x1UL << USB_OTG_HPRT_POCCHNG_Pos) /*!< 0x00000020 */ -#define USB_OTG_HPRT_POCCHNG USB_OTG_HPRT_POCCHNG_Msk /*!< Port overcurrent change */ -#define USB_OTG_HPRT_PRES_Pos (6U) -#define USB_OTG_HPRT_PRES_Msk (0x1UL << USB_OTG_HPRT_PRES_Pos) /*!< 0x00000040 */ -#define USB_OTG_HPRT_PRES USB_OTG_HPRT_PRES_Msk /*!< Port resume */ -#define USB_OTG_HPRT_PSUSP_Pos (7U) -#define USB_OTG_HPRT_PSUSP_Msk (0x1UL << USB_OTG_HPRT_PSUSP_Pos) /*!< 0x00000080 */ -#define USB_OTG_HPRT_PSUSP USB_OTG_HPRT_PSUSP_Msk /*!< Port suspend */ -#define USB_OTG_HPRT_PRST_Pos (8U) -#define USB_OTG_HPRT_PRST_Msk (0x1UL << USB_OTG_HPRT_PRST_Pos) /*!< 0x00000100 */ -#define USB_OTG_HPRT_PRST USB_OTG_HPRT_PRST_Msk /*!< Port reset */ - -#define USB_OTG_HPRT_PLSTS_Pos (10U) -#define USB_OTG_HPRT_PLSTS_Msk (0x3UL << USB_OTG_HPRT_PLSTS_Pos) /*!< 0x00000C00 */ -#define USB_OTG_HPRT_PLSTS USB_OTG_HPRT_PLSTS_Msk /*!< Port line status */ -#define USB_OTG_HPRT_PLSTS_0 (0x1UL << USB_OTG_HPRT_PLSTS_Pos) /*!< 0x00000400 */ -#define USB_OTG_HPRT_PLSTS_1 (0x2UL << USB_OTG_HPRT_PLSTS_Pos) /*!< 0x00000800 */ -#define USB_OTG_HPRT_PPWR_Pos (12U) -#define USB_OTG_HPRT_PPWR_Msk (0x1UL << USB_OTG_HPRT_PPWR_Pos) /*!< 0x00001000 */ -#define USB_OTG_HPRT_PPWR USB_OTG_HPRT_PPWR_Msk /*!< Port power */ - -#define USB_OTG_HPRT_PTCTL_Pos (13U) -#define USB_OTG_HPRT_PTCTL_Msk (0xFUL << USB_OTG_HPRT_PTCTL_Pos) /*!< 0x0001E000 */ -#define USB_OTG_HPRT_PTCTL USB_OTG_HPRT_PTCTL_Msk /*!< Port test control */ -#define USB_OTG_HPRT_PTCTL_0 (0x1UL << USB_OTG_HPRT_PTCTL_Pos) /*!< 0x00002000 */ -#define USB_OTG_HPRT_PTCTL_1 (0x2UL << USB_OTG_HPRT_PTCTL_Pos) /*!< 0x00004000 */ -#define USB_OTG_HPRT_PTCTL_2 (0x4UL << USB_OTG_HPRT_PTCTL_Pos) /*!< 0x00008000 */ -#define USB_OTG_HPRT_PTCTL_3 (0x8UL << USB_OTG_HPRT_PTCTL_Pos) /*!< 0x00010000 */ - -#define USB_OTG_HPRT_PSPD_Pos (17U) -#define USB_OTG_HPRT_PSPD_Msk (0x3UL << USB_OTG_HPRT_PSPD_Pos) /*!< 0x00060000 */ -#define USB_OTG_HPRT_PSPD USB_OTG_HPRT_PSPD_Msk /*!< Port speed */ -#define USB_OTG_HPRT_PSPD_0 (0x1UL << USB_OTG_HPRT_PSPD_Pos) /*!< 0x00020000 */ -#define USB_OTG_HPRT_PSPD_1 (0x2UL << USB_OTG_HPRT_PSPD_Pos) /*!< 0x00040000 */ - -/******************** Bit definition for USB_OTG_DOEPEACHMSK1 register ********************/ -#define USB_OTG_DOEPEACHMSK1_XFRCM_Pos (0U) -#define USB_OTG_DOEPEACHMSK1_XFRCM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_XFRCM_Pos) /*!< 0x00000001 */ -#define USB_OTG_DOEPEACHMSK1_XFRCM USB_OTG_DOEPEACHMSK1_XFRCM_Msk /*!< Transfer completed interrupt mask */ -#define USB_OTG_DOEPEACHMSK1_EPDM_Pos (1U) -#define USB_OTG_DOEPEACHMSK1_EPDM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_EPDM_Pos) /*!< 0x00000002 */ -#define USB_OTG_DOEPEACHMSK1_EPDM USB_OTG_DOEPEACHMSK1_EPDM_Msk /*!< Endpoint disabled interrupt mask */ -#define USB_OTG_DOEPEACHMSK1_TOM_Pos (3U) -#define USB_OTG_DOEPEACHMSK1_TOM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_TOM_Pos) /*!< 0x00000008 */ -#define USB_OTG_DOEPEACHMSK1_TOM USB_OTG_DOEPEACHMSK1_TOM_Msk /*!< Timeout condition mask */ -#define USB_OTG_DOEPEACHMSK1_ITTXFEMSK_Pos (4U) -#define USB_OTG_DOEPEACHMSK1_ITTXFEMSK_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_ITTXFEMSK_Pos) /*!< 0x00000010 */ -#define USB_OTG_DOEPEACHMSK1_ITTXFEMSK USB_OTG_DOEPEACHMSK1_ITTXFEMSK_Msk /*!< IN token received when TxFIFO empty mask */ -#define USB_OTG_DOEPEACHMSK1_INEPNMM_Pos (5U) -#define USB_OTG_DOEPEACHMSK1_INEPNMM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_INEPNMM_Pos) /*!< 0x00000020 */ -#define USB_OTG_DOEPEACHMSK1_INEPNMM USB_OTG_DOEPEACHMSK1_INEPNMM_Msk /*!< IN token received with EP mismatch mask */ -#define USB_OTG_DOEPEACHMSK1_INEPNEM_Pos (6U) -#define USB_OTG_DOEPEACHMSK1_INEPNEM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_INEPNEM_Pos) /*!< 0x00000040 */ -#define USB_OTG_DOEPEACHMSK1_INEPNEM USB_OTG_DOEPEACHMSK1_INEPNEM_Msk /*!< IN endpoint NAK effective mask */ -#define USB_OTG_DOEPEACHMSK1_TXFURM_Pos (8U) -#define USB_OTG_DOEPEACHMSK1_TXFURM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_TXFURM_Pos) /*!< 0x00000100 */ -#define USB_OTG_DOEPEACHMSK1_TXFURM USB_OTG_DOEPEACHMSK1_TXFURM_Msk /*!< OUT packet error mask */ -#define USB_OTG_DOEPEACHMSK1_BIM_Pos (9U) -#define USB_OTG_DOEPEACHMSK1_BIM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_BIM_Pos) /*!< 0x00000200 */ -#define USB_OTG_DOEPEACHMSK1_BIM USB_OTG_DOEPEACHMSK1_BIM_Msk /*!< BNA interrupt mask */ -#define USB_OTG_DOEPEACHMSK1_BERRM_Pos (12U) -#define USB_OTG_DOEPEACHMSK1_BERRM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_BERRM_Pos) /*!< 0x00001000 */ -#define USB_OTG_DOEPEACHMSK1_BERRM USB_OTG_DOEPEACHMSK1_BERRM_Msk /*!< Bubble error interrupt mask */ -#define USB_OTG_DOEPEACHMSK1_NAKM_Pos (13U) -#define USB_OTG_DOEPEACHMSK1_NAKM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_NAKM_Pos) /*!< 0x00002000 */ -#define USB_OTG_DOEPEACHMSK1_NAKM USB_OTG_DOEPEACHMSK1_NAKM_Msk /*!< NAK interrupt mask */ -#define USB_OTG_DOEPEACHMSK1_NYETM_Pos (14U) -#define USB_OTG_DOEPEACHMSK1_NYETM_Msk (0x1UL << USB_OTG_DOEPEACHMSK1_NYETM_Pos) /*!< 0x00004000 */ -#define USB_OTG_DOEPEACHMSK1_NYETM USB_OTG_DOEPEACHMSK1_NYETM_Msk /*!< NYET interrupt mask */ - -/******************** Bit definition for USB_OTG_HPTXFSIZ register ********************/ -#define USB_OTG_HPTXFSIZ_PTXSA_Pos (0U) -#define USB_OTG_HPTXFSIZ_PTXSA_Msk (0xFFFFUL << USB_OTG_HPTXFSIZ_PTXSA_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_HPTXFSIZ_PTXSA USB_OTG_HPTXFSIZ_PTXSA_Msk /*!< Host periodic TxFIFO start address */ -#define USB_OTG_HPTXFSIZ_PTXFD_Pos (16U) -#define USB_OTG_HPTXFSIZ_PTXFD_Msk (0xFFFFUL << USB_OTG_HPTXFSIZ_PTXFD_Pos) /*!< 0xFFFF0000 */ -#define USB_OTG_HPTXFSIZ_PTXFD USB_OTG_HPTXFSIZ_PTXFD_Msk /*!< Host periodic TxFIFO depth */ - -/******************** Bit definition for USB_OTG_DIEPCTL register ********************/ -#define USB_OTG_DIEPCTL_MPSIZ_Pos (0U) -#define USB_OTG_DIEPCTL_MPSIZ_Msk (0x7FFUL << USB_OTG_DIEPCTL_MPSIZ_Pos) /*!< 0x000007FF */ -#define USB_OTG_DIEPCTL_MPSIZ USB_OTG_DIEPCTL_MPSIZ_Msk /*!< Maximum packet size */ -#define USB_OTG_DIEPCTL_USBAEP_Pos (15U) -#define USB_OTG_DIEPCTL_USBAEP_Msk (0x1UL << USB_OTG_DIEPCTL_USBAEP_Pos) /*!< 0x00008000 */ -#define USB_OTG_DIEPCTL_USBAEP USB_OTG_DIEPCTL_USBAEP_Msk /*!< USB active endpoint */ -#define USB_OTG_DIEPCTL_EONUM_DPID_Pos (16U) -#define USB_OTG_DIEPCTL_EONUM_DPID_Msk (0x1UL << USB_OTG_DIEPCTL_EONUM_DPID_Pos) /*!< 0x00010000 */ -#define USB_OTG_DIEPCTL_EONUM_DPID USB_OTG_DIEPCTL_EONUM_DPID_Msk /*!< Even/odd frame */ -#define USB_OTG_DIEPCTL_NAKSTS_Pos (17U) -#define USB_OTG_DIEPCTL_NAKSTS_Msk (0x1UL << USB_OTG_DIEPCTL_NAKSTS_Pos) /*!< 0x00020000 */ -#define USB_OTG_DIEPCTL_NAKSTS USB_OTG_DIEPCTL_NAKSTS_Msk /*!< NAK status */ - -#define USB_OTG_DIEPCTL_EPTYP_Pos (18U) -#define USB_OTG_DIEPCTL_EPTYP_Msk (0x3UL << USB_OTG_DIEPCTL_EPTYP_Pos) /*!< 0x000C0000 */ -#define USB_OTG_DIEPCTL_EPTYP USB_OTG_DIEPCTL_EPTYP_Msk /*!< Endpoint type */ -#define USB_OTG_DIEPCTL_EPTYP_0 (0x1UL << USB_OTG_DIEPCTL_EPTYP_Pos) /*!< 0x00040000 */ -#define USB_OTG_DIEPCTL_EPTYP_1 (0x2UL << USB_OTG_DIEPCTL_EPTYP_Pos) /*!< 0x00080000 */ -#define USB_OTG_DIEPCTL_STALL_Pos (21U) -#define USB_OTG_DIEPCTL_STALL_Msk (0x1UL << USB_OTG_DIEPCTL_STALL_Pos) /*!< 0x00200000 */ -#define USB_OTG_DIEPCTL_STALL USB_OTG_DIEPCTL_STALL_Msk /*!< STALL handshake */ - -#define USB_OTG_DIEPCTL_TXFNUM_Pos (22U) -#define USB_OTG_DIEPCTL_TXFNUM_Msk (0xFUL << USB_OTG_DIEPCTL_TXFNUM_Pos) /*!< 0x03C00000 */ -#define USB_OTG_DIEPCTL_TXFNUM USB_OTG_DIEPCTL_TXFNUM_Msk /*!< TxFIFO number */ -#define USB_OTG_DIEPCTL_TXFNUM_0 (0x1UL << USB_OTG_DIEPCTL_TXFNUM_Pos) /*!< 0x00400000 */ -#define USB_OTG_DIEPCTL_TXFNUM_1 (0x2UL << USB_OTG_DIEPCTL_TXFNUM_Pos) /*!< 0x00800000 */ -#define USB_OTG_DIEPCTL_TXFNUM_2 (0x4UL << USB_OTG_DIEPCTL_TXFNUM_Pos) /*!< 0x01000000 */ -#define USB_OTG_DIEPCTL_TXFNUM_3 (0x8UL << USB_OTG_DIEPCTL_TXFNUM_Pos) /*!< 0x02000000 */ -#define USB_OTG_DIEPCTL_CNAK_Pos (26U) -#define USB_OTG_DIEPCTL_CNAK_Msk (0x1UL << USB_OTG_DIEPCTL_CNAK_Pos) /*!< 0x04000000 */ -#define USB_OTG_DIEPCTL_CNAK USB_OTG_DIEPCTL_CNAK_Msk /*!< Clear NAK */ -#define USB_OTG_DIEPCTL_SNAK_Pos (27U) -#define USB_OTG_DIEPCTL_SNAK_Msk (0x1UL << USB_OTG_DIEPCTL_SNAK_Pos) /*!< 0x08000000 */ -#define USB_OTG_DIEPCTL_SNAK USB_OTG_DIEPCTL_SNAK_Msk /*!< Set NAK */ -#define USB_OTG_DIEPCTL_SD0PID_SEVNFRM_Pos (28U) -#define USB_OTG_DIEPCTL_SD0PID_SEVNFRM_Msk (0x1UL << USB_OTG_DIEPCTL_SD0PID_SEVNFRM_Pos) /*!< 0x10000000 */ -#define USB_OTG_DIEPCTL_SD0PID_SEVNFRM USB_OTG_DIEPCTL_SD0PID_SEVNFRM_Msk /*!< Set DATA0 PID */ -#define USB_OTG_DIEPCTL_SODDFRM_Pos (29U) -#define USB_OTG_DIEPCTL_SODDFRM_Msk (0x1UL << USB_OTG_DIEPCTL_SODDFRM_Pos) /*!< 0x20000000 */ -#define USB_OTG_DIEPCTL_SODDFRM USB_OTG_DIEPCTL_SODDFRM_Msk /*!< Set odd frame */ -#define USB_OTG_DIEPCTL_EPDIS_Pos (30U) -#define USB_OTG_DIEPCTL_EPDIS_Msk (0x1UL << USB_OTG_DIEPCTL_EPDIS_Pos) /*!< 0x40000000 */ -#define USB_OTG_DIEPCTL_EPDIS USB_OTG_DIEPCTL_EPDIS_Msk /*!< Endpoint disable */ -#define USB_OTG_DIEPCTL_EPENA_Pos (31U) -#define USB_OTG_DIEPCTL_EPENA_Msk (0x1UL << USB_OTG_DIEPCTL_EPENA_Pos) /*!< 0x80000000 */ -#define USB_OTG_DIEPCTL_EPENA USB_OTG_DIEPCTL_EPENA_Msk /*!< Endpoint enable */ - -/******************** Bit definition for USB_OTG_HCCHAR register ********************/ -#define USB_OTG_HCCHAR_MPSIZ_Pos (0U) -#define USB_OTG_HCCHAR_MPSIZ_Msk (0x7FFUL << USB_OTG_HCCHAR_MPSIZ_Pos) /*!< 0x000007FF */ -#define USB_OTG_HCCHAR_MPSIZ USB_OTG_HCCHAR_MPSIZ_Msk /*!< Maximum packet size */ - -#define USB_OTG_HCCHAR_EPNUM_Pos (11U) -#define USB_OTG_HCCHAR_EPNUM_Msk (0xFUL << USB_OTG_HCCHAR_EPNUM_Pos) /*!< 0x00007800 */ -#define USB_OTG_HCCHAR_EPNUM USB_OTG_HCCHAR_EPNUM_Msk /*!< Endpoint number */ -#define USB_OTG_HCCHAR_EPNUM_0 (0x1UL << USB_OTG_HCCHAR_EPNUM_Pos) /*!< 0x00000800 */ -#define USB_OTG_HCCHAR_EPNUM_1 (0x2UL << USB_OTG_HCCHAR_EPNUM_Pos) /*!< 0x00001000 */ -#define USB_OTG_HCCHAR_EPNUM_2 (0x4UL << USB_OTG_HCCHAR_EPNUM_Pos) /*!< 0x00002000 */ -#define USB_OTG_HCCHAR_EPNUM_3 (0x8UL << USB_OTG_HCCHAR_EPNUM_Pos) /*!< 0x00004000 */ -#define USB_OTG_HCCHAR_EPDIR_Pos (15U) -#define USB_OTG_HCCHAR_EPDIR_Msk (0x1UL << USB_OTG_HCCHAR_EPDIR_Pos) /*!< 0x00008000 */ -#define USB_OTG_HCCHAR_EPDIR USB_OTG_HCCHAR_EPDIR_Msk /*!< Endpoint direction */ -#define USB_OTG_HCCHAR_LSDEV_Pos (17U) -#define USB_OTG_HCCHAR_LSDEV_Msk (0x1UL << USB_OTG_HCCHAR_LSDEV_Pos) /*!< 0x00020000 */ -#define USB_OTG_HCCHAR_LSDEV USB_OTG_HCCHAR_LSDEV_Msk /*!< Low-speed device */ - -#define USB_OTG_HCCHAR_EPTYP_Pos (18U) -#define USB_OTG_HCCHAR_EPTYP_Msk (0x3UL << USB_OTG_HCCHAR_EPTYP_Pos) /*!< 0x000C0000 */ -#define USB_OTG_HCCHAR_EPTYP USB_OTG_HCCHAR_EPTYP_Msk /*!< Endpoint type */ -#define USB_OTG_HCCHAR_EPTYP_0 (0x1UL << USB_OTG_HCCHAR_EPTYP_Pos) /*!< 0x00040000 */ -#define USB_OTG_HCCHAR_EPTYP_1 (0x2UL << USB_OTG_HCCHAR_EPTYP_Pos) /*!< 0x00080000 */ - -#define USB_OTG_HCCHAR_MC_Pos (20U) -#define USB_OTG_HCCHAR_MC_Msk (0x3UL << USB_OTG_HCCHAR_MC_Pos) /*!< 0x00300000 */ -#define USB_OTG_HCCHAR_MC USB_OTG_HCCHAR_MC_Msk /*!< Multi Count (MC) / Error Count (EC) */ -#define USB_OTG_HCCHAR_MC_0 (0x1UL << USB_OTG_HCCHAR_MC_Pos) /*!< 0x00100000 */ -#define USB_OTG_HCCHAR_MC_1 (0x2UL << USB_OTG_HCCHAR_MC_Pos) /*!< 0x00200000 */ - -#define USB_OTG_HCCHAR_DAD_Pos (22U) -#define USB_OTG_HCCHAR_DAD_Msk (0x7FUL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x1FC00000 */ -#define USB_OTG_HCCHAR_DAD USB_OTG_HCCHAR_DAD_Msk /*!< Device address */ -#define USB_OTG_HCCHAR_DAD_0 (0x01UL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x00400000 */ -#define USB_OTG_HCCHAR_DAD_1 (0x02UL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x00800000 */ -#define USB_OTG_HCCHAR_DAD_2 (0x04UL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x01000000 */ -#define USB_OTG_HCCHAR_DAD_3 (0x08UL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x02000000 */ -#define USB_OTG_HCCHAR_DAD_4 (0x10UL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x04000000 */ -#define USB_OTG_HCCHAR_DAD_5 (0x20UL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x08000000 */ -#define USB_OTG_HCCHAR_DAD_6 (0x40UL << USB_OTG_HCCHAR_DAD_Pos) /*!< 0x10000000 */ -#define USB_OTG_HCCHAR_ODDFRM_Pos (29U) -#define USB_OTG_HCCHAR_ODDFRM_Msk (0x1UL << USB_OTG_HCCHAR_ODDFRM_Pos) /*!< 0x20000000 */ -#define USB_OTG_HCCHAR_ODDFRM USB_OTG_HCCHAR_ODDFRM_Msk /*!< Odd frame */ -#define USB_OTG_HCCHAR_CHDIS_Pos (30U) -#define USB_OTG_HCCHAR_CHDIS_Msk (0x1UL << USB_OTG_HCCHAR_CHDIS_Pos) /*!< 0x40000000 */ -#define USB_OTG_HCCHAR_CHDIS USB_OTG_HCCHAR_CHDIS_Msk /*!< Channel disable */ -#define USB_OTG_HCCHAR_CHENA_Pos (31U) -#define USB_OTG_HCCHAR_CHENA_Msk (0x1UL << USB_OTG_HCCHAR_CHENA_Pos) /*!< 0x80000000 */ -#define USB_OTG_HCCHAR_CHENA USB_OTG_HCCHAR_CHENA_Msk /*!< Channel enable */ - -/******************** Bit definition for USB_OTG_HCSPLT register ********************/ - -#define USB_OTG_HCSPLT_PRTADDR_Pos (0U) -#define USB_OTG_HCSPLT_PRTADDR_Msk (0x7FUL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x0000007F */ -#define USB_OTG_HCSPLT_PRTADDR USB_OTG_HCSPLT_PRTADDR_Msk /*!< Port address */ -#define USB_OTG_HCSPLT_PRTADDR_0 (0x01UL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x00000001 */ -#define USB_OTG_HCSPLT_PRTADDR_1 (0x02UL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x00000002 */ -#define USB_OTG_HCSPLT_PRTADDR_2 (0x04UL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x00000004 */ -#define USB_OTG_HCSPLT_PRTADDR_3 (0x08UL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x00000008 */ -#define USB_OTG_HCSPLT_PRTADDR_4 (0x10UL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x00000010 */ -#define USB_OTG_HCSPLT_PRTADDR_5 (0x20UL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x00000020 */ -#define USB_OTG_HCSPLT_PRTADDR_6 (0x40UL << USB_OTG_HCSPLT_PRTADDR_Pos) /*!< 0x00000040 */ - -#define USB_OTG_HCSPLT_HUBADDR_Pos (7U) -#define USB_OTG_HCSPLT_HUBADDR_Msk (0x7FUL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00003F80 */ -#define USB_OTG_HCSPLT_HUBADDR USB_OTG_HCSPLT_HUBADDR_Msk /*!< Hub address */ -#define USB_OTG_HCSPLT_HUBADDR_0 (0x01UL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00000080 */ -#define USB_OTG_HCSPLT_HUBADDR_1 (0x02UL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00000100 */ -#define USB_OTG_HCSPLT_HUBADDR_2 (0x04UL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00000200 */ -#define USB_OTG_HCSPLT_HUBADDR_3 (0x08UL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00000400 */ -#define USB_OTG_HCSPLT_HUBADDR_4 (0x10UL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00000800 */ -#define USB_OTG_HCSPLT_HUBADDR_5 (0x20UL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00001000 */ -#define USB_OTG_HCSPLT_HUBADDR_6 (0x40UL << USB_OTG_HCSPLT_HUBADDR_Pos) /*!< 0x00002000 */ - -#define USB_OTG_HCSPLT_XACTPOS_Pos (14U) -#define USB_OTG_HCSPLT_XACTPOS_Msk (0x3UL << USB_OTG_HCSPLT_XACTPOS_Pos) /*!< 0x0000C000 */ -#define USB_OTG_HCSPLT_XACTPOS USB_OTG_HCSPLT_XACTPOS_Msk /*!< XACTPOS */ -#define USB_OTG_HCSPLT_XACTPOS_0 (0x1UL << USB_OTG_HCSPLT_XACTPOS_Pos) /*!< 0x00004000 */ -#define USB_OTG_HCSPLT_XACTPOS_1 (0x2UL << USB_OTG_HCSPLT_XACTPOS_Pos) /*!< 0x00008000 */ -#define USB_OTG_HCSPLT_COMPLSPLT_Pos (16U) -#define USB_OTG_HCSPLT_COMPLSPLT_Msk (0x1UL << USB_OTG_HCSPLT_COMPLSPLT_Pos) /*!< 0x00010000 */ -#define USB_OTG_HCSPLT_COMPLSPLT USB_OTG_HCSPLT_COMPLSPLT_Msk /*!< Do complete split */ -#define USB_OTG_HCSPLT_SPLITEN_Pos (31U) -#define USB_OTG_HCSPLT_SPLITEN_Msk (0x1UL << USB_OTG_HCSPLT_SPLITEN_Pos) /*!< 0x80000000 */ -#define USB_OTG_HCSPLT_SPLITEN USB_OTG_HCSPLT_SPLITEN_Msk /*!< Split enable */ - -/******************** Bit definition for USB_OTG_HCINT register ********************/ -#define USB_OTG_HCINT_XFRC_Pos (0U) -#define USB_OTG_HCINT_XFRC_Msk (0x1UL << USB_OTG_HCINT_XFRC_Pos) /*!< 0x00000001 */ -#define USB_OTG_HCINT_XFRC USB_OTG_HCINT_XFRC_Msk /*!< Transfer completed */ -#define USB_OTG_HCINT_CHH_Pos (1U) -#define USB_OTG_HCINT_CHH_Msk (0x1UL << USB_OTG_HCINT_CHH_Pos) /*!< 0x00000002 */ -#define USB_OTG_HCINT_CHH USB_OTG_HCINT_CHH_Msk /*!< Channel halted */ -#define USB_OTG_HCINT_AHBERR_Pos (2U) -#define USB_OTG_HCINT_AHBERR_Msk (0x1UL << USB_OTG_HCINT_AHBERR_Pos) /*!< 0x00000004 */ -#define USB_OTG_HCINT_AHBERR USB_OTG_HCINT_AHBERR_Msk /*!< AHB error */ -#define USB_OTG_HCINT_STALL_Pos (3U) -#define USB_OTG_HCINT_STALL_Msk (0x1UL << USB_OTG_HCINT_STALL_Pos) /*!< 0x00000008 */ -#define USB_OTG_HCINT_STALL USB_OTG_HCINT_STALL_Msk /*!< STALL response received interrupt */ -#define USB_OTG_HCINT_NAK_Pos (4U) -#define USB_OTG_HCINT_NAK_Msk (0x1UL << USB_OTG_HCINT_NAK_Pos) /*!< 0x00000010 */ -#define USB_OTG_HCINT_NAK USB_OTG_HCINT_NAK_Msk /*!< NAK response received interrupt */ -#define USB_OTG_HCINT_ACK_Pos (5U) -#define USB_OTG_HCINT_ACK_Msk (0x1UL << USB_OTG_HCINT_ACK_Pos) /*!< 0x00000020 */ -#define USB_OTG_HCINT_ACK USB_OTG_HCINT_ACK_Msk /*!< ACK response received/transmitted interrupt */ -#define USB_OTG_HCINT_NYET_Pos (6U) -#define USB_OTG_HCINT_NYET_Msk (0x1UL << USB_OTG_HCINT_NYET_Pos) /*!< 0x00000040 */ -#define USB_OTG_HCINT_NYET USB_OTG_HCINT_NYET_Msk /*!< Response received interrupt */ -#define USB_OTG_HCINT_TXERR_Pos (7U) -#define USB_OTG_HCINT_TXERR_Msk (0x1UL << USB_OTG_HCINT_TXERR_Pos) /*!< 0x00000080 */ -#define USB_OTG_HCINT_TXERR USB_OTG_HCINT_TXERR_Msk /*!< Transaction error */ -#define USB_OTG_HCINT_BBERR_Pos (8U) -#define USB_OTG_HCINT_BBERR_Msk (0x1UL << USB_OTG_HCINT_BBERR_Pos) /*!< 0x00000100 */ -#define USB_OTG_HCINT_BBERR USB_OTG_HCINT_BBERR_Msk /*!< Babble error */ -#define USB_OTG_HCINT_FRMOR_Pos (9U) -#define USB_OTG_HCINT_FRMOR_Msk (0x1UL << USB_OTG_HCINT_FRMOR_Pos) /*!< 0x00000200 */ -#define USB_OTG_HCINT_FRMOR USB_OTG_HCINT_FRMOR_Msk /*!< Frame overrun */ -#define USB_OTG_HCINT_DTERR_Pos (10U) -#define USB_OTG_HCINT_DTERR_Msk (0x1UL << USB_OTG_HCINT_DTERR_Pos) /*!< 0x00000400 */ -#define USB_OTG_HCINT_DTERR USB_OTG_HCINT_DTERR_Msk /*!< Data toggle error */ - -/******************** Bit definition for USB_OTG_DIEPINT register ********************/ -#define USB_OTG_DIEPINT_XFRC_Pos (0U) -#define USB_OTG_DIEPINT_XFRC_Msk (0x1UL << USB_OTG_DIEPINT_XFRC_Pos) /*!< 0x00000001 */ -#define USB_OTG_DIEPINT_XFRC USB_OTG_DIEPINT_XFRC_Msk /*!< Transfer completed interrupt */ -#define USB_OTG_DIEPINT_EPDISD_Pos (1U) -#define USB_OTG_DIEPINT_EPDISD_Msk (0x1UL << USB_OTG_DIEPINT_EPDISD_Pos) /*!< 0x00000002 */ -#define USB_OTG_DIEPINT_EPDISD USB_OTG_DIEPINT_EPDISD_Msk /*!< Endpoint disabled interrupt */ -#define USB_OTG_DIEPINT_AHBERR_Pos (2U) -#define USB_OTG_DIEPINT_AHBERR_Msk (0x1UL << USB_OTG_DIEPINT_AHBERR_Pos) /*!< 0x00000004 */ -#define USB_OTG_DIEPINT_AHBERR USB_OTG_DIEPINT_AHBERR_Msk /*!< AHB Error (AHBErr) during an IN transaction */ -#define USB_OTG_DIEPINT_TOC_Pos (3U) -#define USB_OTG_DIEPINT_TOC_Msk (0x1UL << USB_OTG_DIEPINT_TOC_Pos) /*!< 0x00000008 */ -#define USB_OTG_DIEPINT_TOC USB_OTG_DIEPINT_TOC_Msk /*!< Timeout condition */ -#define USB_OTG_DIEPINT_ITTXFE_Pos (4U) -#define USB_OTG_DIEPINT_ITTXFE_Msk (0x1UL << USB_OTG_DIEPINT_ITTXFE_Pos) /*!< 0x00000010 */ -#define USB_OTG_DIEPINT_ITTXFE USB_OTG_DIEPINT_ITTXFE_Msk /*!< IN token received when TxFIFO is empty */ -#define USB_OTG_DIEPINT_INEPNM_Pos (5U) -#define USB_OTG_DIEPINT_INEPNM_Msk (0x1UL << USB_OTG_DIEPINT_INEPNM_Pos) /*!< 0x00000004 */ -#define USB_OTG_DIEPINT_INEPNM USB_OTG_DIEPINT_INEPNM_Msk /*!< IN token received with EP mismatch */ -#define USB_OTG_DIEPINT_INEPNE_Pos (6U) -#define USB_OTG_DIEPINT_INEPNE_Msk (0x1UL << USB_OTG_DIEPINT_INEPNE_Pos) /*!< 0x00000040 */ -#define USB_OTG_DIEPINT_INEPNE USB_OTG_DIEPINT_INEPNE_Msk /*!< IN endpoint NAK effective */ -#define USB_OTG_DIEPINT_TXFE_Pos (7U) -#define USB_OTG_DIEPINT_TXFE_Msk (0x1UL << USB_OTG_DIEPINT_TXFE_Pos) /*!< 0x00000080 */ -#define USB_OTG_DIEPINT_TXFE USB_OTG_DIEPINT_TXFE_Msk /*!< Transmit FIFO empty */ -#define USB_OTG_DIEPINT_TXFIFOUDRN_Pos (8U) -#define USB_OTG_DIEPINT_TXFIFOUDRN_Msk (0x1UL << USB_OTG_DIEPINT_TXFIFOUDRN_Pos) /*!< 0x00000100 */ -#define USB_OTG_DIEPINT_TXFIFOUDRN USB_OTG_DIEPINT_TXFIFOUDRN_Msk /*!< Transmit Fifo Underrun */ -#define USB_OTG_DIEPINT_BNA_Pos (9U) -#define USB_OTG_DIEPINT_BNA_Msk (0x1UL << USB_OTG_DIEPINT_BNA_Pos) /*!< 0x00000200 */ -#define USB_OTG_DIEPINT_BNA USB_OTG_DIEPINT_BNA_Msk /*!< Buffer not available interrupt */ -#define USB_OTG_DIEPINT_PKTDRPSTS_Pos (11U) -#define USB_OTG_DIEPINT_PKTDRPSTS_Msk (0x1UL << USB_OTG_DIEPINT_PKTDRPSTS_Pos) /*!< 0x00000800 */ -#define USB_OTG_DIEPINT_PKTDRPSTS USB_OTG_DIEPINT_PKTDRPSTS_Msk /*!< Packet dropped status */ -#define USB_OTG_DIEPINT_BERR_Pos (12U) -#define USB_OTG_DIEPINT_BERR_Msk (0x1UL << USB_OTG_DIEPINT_BERR_Pos) /*!< 0x00001000 */ -#define USB_OTG_DIEPINT_BERR USB_OTG_DIEPINT_BERR_Msk /*!< Babble error interrupt */ -#define USB_OTG_DIEPINT_NAK_Pos (13U) -#define USB_OTG_DIEPINT_NAK_Msk (0x1UL << USB_OTG_DIEPINT_NAK_Pos) /*!< 0x00002000 */ -#define USB_OTG_DIEPINT_NAK USB_OTG_DIEPINT_NAK_Msk /*!< NAK interrupt */ - -/******************** Bit definition for USB_OTG_HCINTMSK register ********************/ -#define USB_OTG_HCINTMSK_XFRCM_Pos (0U) -#define USB_OTG_HCINTMSK_XFRCM_Msk (0x1UL << USB_OTG_HCINTMSK_XFRCM_Pos) /*!< 0x00000001 */ -#define USB_OTG_HCINTMSK_XFRCM USB_OTG_HCINTMSK_XFRCM_Msk /*!< Transfer completed mask */ -#define USB_OTG_HCINTMSK_CHHM_Pos (1U) -#define USB_OTG_HCINTMSK_CHHM_Msk (0x1UL << USB_OTG_HCINTMSK_CHHM_Pos) /*!< 0x00000002 */ -#define USB_OTG_HCINTMSK_CHHM USB_OTG_HCINTMSK_CHHM_Msk /*!< Channel halted mask */ -#define USB_OTG_HCINTMSK_AHBERR_Pos (2U) -#define USB_OTG_HCINTMSK_AHBERR_Msk (0x1UL << USB_OTG_HCINTMSK_AHBERR_Pos) /*!< 0x00000004 */ -#define USB_OTG_HCINTMSK_AHBERR USB_OTG_HCINTMSK_AHBERR_Msk /*!< AHB error */ -#define USB_OTG_HCINTMSK_STALLM_Pos (3U) -#define USB_OTG_HCINTMSK_STALLM_Msk (0x1UL << USB_OTG_HCINTMSK_STALLM_Pos) /*!< 0x00000008 */ -#define USB_OTG_HCINTMSK_STALLM USB_OTG_HCINTMSK_STALLM_Msk /*!< STALL response received interrupt mask */ -#define USB_OTG_HCINTMSK_NAKM_Pos (4U) -#define USB_OTG_HCINTMSK_NAKM_Msk (0x1UL << USB_OTG_HCINTMSK_NAKM_Pos) /*!< 0x00000010 */ -#define USB_OTG_HCINTMSK_NAKM USB_OTG_HCINTMSK_NAKM_Msk /*!< NAK response received interrupt mask */ -#define USB_OTG_HCINTMSK_ACKM_Pos (5U) -#define USB_OTG_HCINTMSK_ACKM_Msk (0x1UL << USB_OTG_HCINTMSK_ACKM_Pos) /*!< 0x00000020 */ -#define USB_OTG_HCINTMSK_ACKM USB_OTG_HCINTMSK_ACKM_Msk /*!< ACK response received/transmitted interrupt mask */ -#define USB_OTG_HCINTMSK_NYET_Pos (6U) -#define USB_OTG_HCINTMSK_NYET_Msk (0x1UL << USB_OTG_HCINTMSK_NYET_Pos) /*!< 0x00000040 */ -#define USB_OTG_HCINTMSK_NYET USB_OTG_HCINTMSK_NYET_Msk /*!< response received interrupt mask */ -#define USB_OTG_HCINTMSK_TXERRM_Pos (7U) -#define USB_OTG_HCINTMSK_TXERRM_Msk (0x1UL << USB_OTG_HCINTMSK_TXERRM_Pos) /*!< 0x00000080 */ -#define USB_OTG_HCINTMSK_TXERRM USB_OTG_HCINTMSK_TXERRM_Msk /*!< Transaction error mask */ -#define USB_OTG_HCINTMSK_BBERRM_Pos (8U) -#define USB_OTG_HCINTMSK_BBERRM_Msk (0x1UL << USB_OTG_HCINTMSK_BBERRM_Pos) /*!< 0x00000100 */ -#define USB_OTG_HCINTMSK_BBERRM USB_OTG_HCINTMSK_BBERRM_Msk /*!< Babble error mask */ -#define USB_OTG_HCINTMSK_FRMORM_Pos (9U) -#define USB_OTG_HCINTMSK_FRMORM_Msk (0x1UL << USB_OTG_HCINTMSK_FRMORM_Pos) /*!< 0x00000200 */ -#define USB_OTG_HCINTMSK_FRMORM USB_OTG_HCINTMSK_FRMORM_Msk /*!< Frame overrun mask */ -#define USB_OTG_HCINTMSK_DTERRM_Pos (10U) -#define USB_OTG_HCINTMSK_DTERRM_Msk (0x1UL << USB_OTG_HCINTMSK_DTERRM_Pos) /*!< 0x00000400 */ -#define USB_OTG_HCINTMSK_DTERRM USB_OTG_HCINTMSK_DTERRM_Msk /*!< Data toggle error mask */ - -/******************** Bit definition for USB_OTG_DIEPTSIZ register ********************/ - -#define USB_OTG_DIEPTSIZ_XFRSIZ_Pos (0U) -#define USB_OTG_DIEPTSIZ_XFRSIZ_Msk (0x7FFFFUL << USB_OTG_DIEPTSIZ_XFRSIZ_Pos) /*!< 0x0007FFFF */ -#define USB_OTG_DIEPTSIZ_XFRSIZ USB_OTG_DIEPTSIZ_XFRSIZ_Msk /*!< Transfer size */ -#define USB_OTG_DIEPTSIZ_PKTCNT_Pos (19U) -#define USB_OTG_DIEPTSIZ_PKTCNT_Msk (0x3FFUL << USB_OTG_DIEPTSIZ_PKTCNT_Pos) /*!< 0x1FF80000 */ -#define USB_OTG_DIEPTSIZ_PKTCNT USB_OTG_DIEPTSIZ_PKTCNT_Msk /*!< Packet count */ -#define USB_OTG_DIEPTSIZ_MULCNT_Pos (29U) -#define USB_OTG_DIEPTSIZ_MULCNT_Msk (0x3UL << USB_OTG_DIEPTSIZ_MULCNT_Pos) /*!< 0x60000000 */ -#define USB_OTG_DIEPTSIZ_MULCNT USB_OTG_DIEPTSIZ_MULCNT_Msk /*!< Packet count */ -/******************** Bit definition for USB_OTG_HCTSIZ register ********************/ -#define USB_OTG_HCTSIZ_XFRSIZ_Pos (0U) -#define USB_OTG_HCTSIZ_XFRSIZ_Msk (0x7FFFFUL << USB_OTG_HCTSIZ_XFRSIZ_Pos) /*!< 0x0007FFFF */ -#define USB_OTG_HCTSIZ_XFRSIZ USB_OTG_HCTSIZ_XFRSIZ_Msk /*!< Transfer size */ -#define USB_OTG_HCTSIZ_PKTCNT_Pos (19U) -#define USB_OTG_HCTSIZ_PKTCNT_Msk (0x3FFUL << USB_OTG_HCTSIZ_PKTCNT_Pos) /*!< 0x1FF80000 */ -#define USB_OTG_HCTSIZ_PKTCNT USB_OTG_HCTSIZ_PKTCNT_Msk /*!< Packet count */ -#define USB_OTG_HCTSIZ_DOPING_Pos (31U) -#define USB_OTG_HCTSIZ_DOPING_Msk (0x1UL << USB_OTG_HCTSIZ_DOPING_Pos) /*!< 0x80000000 */ -#define USB_OTG_HCTSIZ_DOPING USB_OTG_HCTSIZ_DOPING_Msk /*!< Do PING */ -#define USB_OTG_HCTSIZ_DPID_Pos (29U) -#define USB_OTG_HCTSIZ_DPID_Msk (0x3UL << USB_OTG_HCTSIZ_DPID_Pos) /*!< 0x60000000 */ -#define USB_OTG_HCTSIZ_DPID USB_OTG_HCTSIZ_DPID_Msk /*!< Data PID */ -#define USB_OTG_HCTSIZ_DPID_0 (0x1UL << USB_OTG_HCTSIZ_DPID_Pos) /*!< 0x20000000 */ -#define USB_OTG_HCTSIZ_DPID_1 (0x2UL << USB_OTG_HCTSIZ_DPID_Pos) /*!< 0x40000000 */ - -/******************** Bit definition for USB_OTG_DIEPDMA register ********************/ -#define USB_OTG_DIEPDMA_DMAADDR_Pos (0U) -#define USB_OTG_DIEPDMA_DMAADDR_Msk (0xFFFFFFFFUL << USB_OTG_DIEPDMA_DMAADDR_Pos) /*!< 0xFFFFFFFF */ -#define USB_OTG_DIEPDMA_DMAADDR USB_OTG_DIEPDMA_DMAADDR_Msk /*!< DMA address */ - -/******************** Bit definition for USB_OTG_HCDMA register ********************/ -#define USB_OTG_HCDMA_DMAADDR_Pos (0U) -#define USB_OTG_HCDMA_DMAADDR_Msk (0xFFFFFFFFUL << USB_OTG_HCDMA_DMAADDR_Pos) /*!< 0xFFFFFFFF */ -#define USB_OTG_HCDMA_DMAADDR USB_OTG_HCDMA_DMAADDR_Msk /*!< DMA address */ - -/******************** Bit definition for USB_OTG_DTXFSTS register ********************/ -#define USB_OTG_DTXFSTS_INEPTFSAV_Pos (0U) -#define USB_OTG_DTXFSTS_INEPTFSAV_Msk (0xFFFFUL << USB_OTG_DTXFSTS_INEPTFSAV_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_DTXFSTS_INEPTFSAV USB_OTG_DTXFSTS_INEPTFSAV_Msk /*!< IN endpoint TxFIFO space available */ - -/******************** Bit definition for USB_OTG_DIEPTXF register ********************/ -#define USB_OTG_DIEPTXF_INEPTXSA_Pos (0U) -#define USB_OTG_DIEPTXF_INEPTXSA_Msk (0xFFFFUL << USB_OTG_DIEPTXF_INEPTXSA_Pos) /*!< 0x0000FFFF */ -#define USB_OTG_DIEPTXF_INEPTXSA USB_OTG_DIEPTXF_INEPTXSA_Msk /*!< IN endpoint FIFOx transmit RAM start address */ -#define USB_OTG_DIEPTXF_INEPTXFD_Pos (16U) -#define USB_OTG_DIEPTXF_INEPTXFD_Msk (0xFFFFUL << USB_OTG_DIEPTXF_INEPTXFD_Pos) /*!< 0xFFFF0000 */ -#define USB_OTG_DIEPTXF_INEPTXFD USB_OTG_DIEPTXF_INEPTXFD_Msk /*!< IN endpoint TxFIFO depth */ - -/******************** Bit definition for USB_OTG_DOEPCTL register ********************/ - -#define USB_OTG_DOEPCTL_MPSIZ_Pos (0U) -#define USB_OTG_DOEPCTL_MPSIZ_Msk (0x7FFUL << USB_OTG_DOEPCTL_MPSIZ_Pos) /*!< 0x000007FF */ -#define USB_OTG_DOEPCTL_MPSIZ USB_OTG_DOEPCTL_MPSIZ_Msk /*!< Maximum packet size */ /*! Date: Thu, 2 Nov 2023 15:22:02 +0700 Subject: skip tuh_max3421_spi_cs_api() in hcd_init() only call tuh_max3421_spi_cs_api() in SPI start/end transfer since Arduino port use this to call begin/endTransaction() --- src/portable/analog/max3421/hcd_max3421.c | 1 - 1 file changed, 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 4665c1b06..65f87f7c6 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -417,7 +417,6 @@ bool hcd_init(uint8_t rhport) { (void) rhport; tuh_max3421_int_api(rhport, false); - tuh_max3421_spi_cs_api(rhport, false); TU_LOG2_INT(sizeof(max3421_ep_t)); TU_LOG2_INT(sizeof(max3421_data_t)); -- cgit v1.3.1 From 4b9320e40ea65ca023925d0a644b116b7066e06f Mon Sep 17 00:00:00 2001 From: hathach Date: Fri, 3 Nov 2023 22:22:13 +0700 Subject: fix race condition when dev0 is removed while enumerating --- src/host/usbh.c | 70 +++++++++++++------------- src/portable/raspberrypi/pio_usb/hcd_pio_usb.c | 16 +++--- 2 files changed, 44 insertions(+), 42 deletions(-) (limited to 'src/portable') diff --git a/src/host/usbh.c b/src/host/usbh.c index 8d75c9726..fb4fbe3cb 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -55,16 +55,12 @@ typedef struct uint8_t rhport; uint8_t hub_addr; uint8_t hub_port; - uint8_t speed; - - // enumeration is in progress, done when all interfaces are configured - volatile uint8_t enumerating; -// struct TU_ATTR_PACKED { -// uint8_t speed : 4; // packed speed to save footprint -// volatile uint8_t enumerating : 1; -// uint8_t TU_RESERVED : 3; -// }; + struct TU_ATTR_PACKED { + uint8_t speed : 4; // packed speed to save footprint + volatile uint8_t enumerating : 1; // enumeration is in progress, false if not connected or all interfaces are configured + uint8_t TU_RESERVED : 3; + }; } usbh_dev0_t; typedef struct { @@ -431,8 +427,8 @@ void tuh_task_ext(uint32_t timeout_ms, bool in_isr) { switch (event.event_id) { case HCD_EVENT_DEVICE_ATTACH: - // due to the shared _usbh_ctrl_buf, we must complete enumerating - // one device before enumerating another one. + // due to the shared _usbh_ctrl_buf, we must complete enumerating one device before enumerating another one. + // TODO better to have an separated queue for newly attached devices if ( _dev0.enumerating ) { TU_LOG_USBH("[%u:] USBH Defer Attach until current enumeration complete\r\n", event.rhport); @@ -556,11 +552,13 @@ bool tuh_control_xfer (tuh_xfer_t* xfer) { // EP0 with setup packet TU_VERIFY(xfer->ep_addr == 0 && xfer->setup); - // pre-check to help reducing mutex lock - TU_VERIFY(_ctrl_xfer.stage == CONTROL_STAGE_IDLE); - + // Check if device is still connected (enumerating for dev0) uint8_t const daddr = xfer->daddr; + if ( daddr == 0 && !_dev0.enumerating) return false; + if ( daddr != 0 && get_device(daddr)->connected == 0) return false; + // pre-check to help reducing mutex lock + TU_VERIFY(_ctrl_xfer.stage == CONTROL_STAGE_IDLE); (void) osal_mutex_lock(_usbh_mutex, OSAL_TIMEOUT_WAIT_FOREVER); bool const is_idle = (_ctrl_xfer.stage == CONTROL_STAGE_IDLE); @@ -917,19 +915,23 @@ void hcd_devtree_get_info(uint8_t dev_addr, hcd_devtree_info_t* devtree_info) } } -TU_ATTR_FAST_FUNC void hcd_event_handler(hcd_event_t const* event, bool in_isr) -{ - switch (event->event_id) - { -// case HCD_EVENT_DEVICE_REMOVE: -// // FIXME device remove from a hub need an HCD API for hcd to free up endpoint -// // mark device as removing to prevent further xfer before the event is processed in usbh task -// break; +TU_ATTR_FAST_FUNC void hcd_event_handler(hcd_event_t const* event, bool in_isr) { + switch (event->event_id) { + case HCD_EVENT_DEVICE_REMOVE: + // FIXME device remove from a hub need an HCD API for hcd to free up endpoint + // mark device as removing to prevent further xfer before the event is processed in usbh task - default: - osal_queue_send(_usbh_q, event, in_isr); - break; + // Check if dev0 is removed + if ((event->rhport == _dev0.rhport) && (event->connection.hub_addr == _dev0.hub_addr) && + (event->connection.hub_port == _dev0.hub_port)) { + _dev0.enumerating = 0; + } + break; + + default: break; } + + osal_queue_send(_usbh_q, event, in_isr); } //--------------------------------------------------------------------+ @@ -1294,8 +1296,7 @@ static bool _parse_configuration_descriptor (uint8_t dev_addr, tusb_desc_configu static void enum_full_complete(void); // process device enumeration -static void process_enumeration(tuh_xfer_t* xfer) -{ +static void process_enumeration(tuh_xfer_t* xfer) { // Retry a few times with transfers in enumeration since device can be unstable when starting up enum { ATTEMPT_COUNT_MAX = 3, @@ -1303,19 +1304,20 @@ static void process_enumeration(tuh_xfer_t* xfer) }; static uint8_t failed_count = 0; - if (XFER_RESULT_SUCCESS != xfer->result) - { + if (XFER_RESULT_SUCCESS != xfer->result) { // retry if not reaching max attempt - if ( failed_count < ATTEMPT_COUNT_MAX ) - { + bool retry = _dev0.enumerating && (failed_count < ATTEMPT_COUNT_MAX); + if ( retry ) { failed_count++; osal_task_delay(ATTEMPT_DELAY_MS); // delay a bit TU_LOG1("Enumeration attempt %u\r\n", failed_count); - TU_ASSERT(tuh_control_xfer(xfer), ); - }else - { + retry = tuh_control_xfer(xfer); + } + + if (!retry) { enum_full_complete(); } + return; } failed_count = 0; diff --git a/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c b/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c index 93bc1bf43..f4de3c51d 100644 --- a/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c +++ b/src/portable/raspberrypi/pio_usb/hcd_pio_usb.c @@ -182,14 +182,6 @@ void __no_inline_not_in_flash_func(pio_usb_host_irq_handler)(uint8_t root_id) { root_port_t *rport = PIO_USB_ROOT_PORT(root_id); uint32_t const ints = rport->ints; - if ( ints & PIO_USB_INTS_CONNECT_BITS ) { - hcd_event_device_attach(tu_rhport, true); - } - - if ( ints & PIO_USB_INTS_DISCONNECT_BITS ) { - hcd_event_device_remove(tu_rhport, true); - } - if ( ints & PIO_USB_INTS_ENDPOINT_COMPLETE_BITS ) { handle_endpoint_irq(rport, XFER_RESULT_SUCCESS, &rport->ep_complete); } @@ -202,6 +194,14 @@ void __no_inline_not_in_flash_func(pio_usb_host_irq_handler)(uint8_t root_id) { handle_endpoint_irq(rport, XFER_RESULT_FAILED, &rport->ep_error); } + if ( ints & PIO_USB_INTS_CONNECT_BITS ) { + hcd_event_device_attach(tu_rhport, true); + } + + if ( ints & PIO_USB_INTS_DISCONNECT_BITS ) { + hcd_event_device_remove(tu_rhport, true); + } + // clear all rport->ints &= ~ints; } -- cgit v1.3.1 From b5b34e73d6cbce1a1d85999ef92712fb98a73a84 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Sun, 19 Nov 2023 16:10:16 +0100 Subject: Add dwc2 info of F429. --- src/portable/synopsys/dwc2/dwc2_info.md | 108 ++++++++++++++++---------------- src/portable/synopsys/dwc2/dwc2_info.py | 2 + 2 files changed, 56 insertions(+), 54 deletions(-) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dwc2_info.md b/src/portable/synopsys/dwc2/dwc2_info.md index 2d8ab067f..f298f6656 100644 --- a/src/portable/synopsys/dwc2/dwc2_info.md +++ b/src/portable/synopsys/dwc2/dwc2_info.md @@ -1,54 +1,54 @@ -| | BCM2711 (Pi4) | EFM32GG FullSpeed | ESP32-S2 | STM32F407 Fullspeed | STM32F407 Highspeed | STM32F411 Fullspeed | STM32F412 Fullspeed | STM32F723 Fullspeed | STM32F723 HighSpeed | STM32F767 Fullspeed | STM32H743 Highspeed | STM32L476 Fullspeed | STM32U5A5 Highspeed | GD32VF103 Fullspeed | XMC4500 | -|:----------------------------|:----------------|:--------------------|:-----------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:-----------| -| guid | 0x2708A000 | 0x00000000 | 0x00000000 | 0x00001200 | 0x00001100 | 0x00001200 | 0x00002000 | 0x00003000 | 0x00003100 | 0x00002000 | 0x00002300 | 0x00002000 | 0x00005000 | 0x00001000 | 0x00AEC000 | -| gsnpsid | 0x4F54280A | 0x4F54330A | 0x4F54400A | 0x4F54281A | 0x4F54281A | 0x4F54281A | 0x4F54320A | 0x4F54330A | 0x4F54330A | 0x4F54320A | 0x4F54330A | 0x4F54310A | 0x4F54411A | 0x00000000 | 0x4F54292A | -| ghwcfg1 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | -| ghwcfg2 | 0x228DDD50 | 0x228F5910 | 0x224DD930 | 0x229DCD20 | 0x229ED590 | 0x229DCD20 | 0x229ED520 | 0x229ED520 | 0x229FE1D0 | 0x229ED520 | 0x229FE190 | 0x229ED520 | 0x228FE052 | 0x00000000 | 0x228F5930 | -| - op_mode | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 2 | 0 | 0 | -| - arch | 2 | 2 | 2 | 0 | 2 | 0 | 0 | 0 | 2 | 0 | 2 | 0 | 2 | 0 | 2 | -| - point2point | 0 | 0 | 1 | 1 | 0 | 1 | 1 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | 1 | -| - hs_phy_type | 1 | 0 | 0 | 0 | 2 | 0 | 0 | 0 | 3 | 0 | 2 | 0 | 1 | 0 | 0 | -| - fs_phy_type | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | -| - num_dev_ep | 7 | 6 | 6 | 3 | 5 | 3 | 5 | 5 | 8 | 5 | 8 | 5 | 8 | 0 | 6 | -| - num_host_ch | 7 | 13 | 7 | 7 | 11 | 7 | 11 | 11 | 15 | 11 | 15 | 11 | 15 | 0 | 13 | -| - period_channel_support | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | -| - enable_dynamic_fifo | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | -| - mul_cpu_int | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | -| - reserved21 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| - nperiod_tx_q_depth | 2 | 2 | 1 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 0 | 2 | -| - host_period_tx_q_depth | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 0 | 2 | -| - dev_token_q_depth | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 0 | 8 | -| - otg_enable_ic_usb | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| ghwcfg3 | 0x0FF000E8 | 0x01F204E8 | 0x00C804B5 | 0x020001E8 | 0x03F403E8 | 0x020001E8 | 0x0200D1E8 | 0x0200D1E8 | 0x03EED2E8 | 0x0200D1E8 | 0x03B8D2E8 | 0x0200D1E8 | 0x03B882E8 | 0x00000000 | 0x027A01E5 | -| - xfer_size_width | 8 | 8 | 5 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 0 | 5 | -| - packet_size_width | 6 | 6 | 3 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 0 | 6 | -| - otg_enable | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | -| - i2c_enable | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | 1 | -| - vendor_ctrl_itf | 0 | 0 | 0 | 0 | 1 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | -| - optional_feature_removed | 0 | 1 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| - synch_reset | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| - otg_adp_support | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | -| - otg_enable_hsic | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| - battery_charger_support | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | -| - lpm_mode | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | -| - total_fifo_size | 4080 | 498 | 200 | 512 | 1012 | 512 | 512 | 512 | 1006 | 512 | 952 | 512 | 952 | 0 | 634 | -| ghwcfg4 | 0x1FF00020 | 0x1BF08030 | 0xD3F0A030 | 0x0FF08030 | 0x17F00030 | 0x0FF08030 | 0x17F08030 | 0x17F08030 | 0x23F00030 | 0x17F08030 | 0xE3F00030 | 0x17F08030 | 0xE2103E30 | 0x00000000 | 0xDBF08030 | -| - num_dev_period_in_ep | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| - power_optimized | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | -| - ahb_freq_min | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | -| - hibernation | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| - reserved7 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 4 | 0 | 0 | -| - service_interval_mode | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | -| - ipg_isoc_en | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | -| - acg_enable | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | -| - reserved13 | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | -| - utmi_phy_data_width | 0 | 2 | 2 | 2 | 0 | 2 | 2 | 2 | 0 | 2 | 0 | 2 | 0 | 0 | 2 | -| - dev_ctrl_ep_num | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | -| - iddg_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | -| - vbus_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | -| - a_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | -| - b_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | -| - dedicated_fifos | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | -| - num_dev_in_eps | 15 | 13 | 9 | 7 | 11 | 7 | 11 | 11 | 1 | 11 | 1 | 11 | 1 | 0 | 13 | -| - dma_desc_enable | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | -| - dma_dynamic | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | +| | BCM2711 (Pi4) | EFM32GG FullSpeed | ESP32-S2 | STM32F407 Fullspeed | STM32F407 Highspeed | STM32F411 Fullspeed | STM32F412 Fullspeed | STM32F429 Fullspeed | STM32F429 Highspeed | STM32F723 Fullspeed | STM32F723 HighSpeed | STM32F767 Fullspeed | STM32H743 Highspeed | STM32L476 Fullspeed | STM32U5A5 Highspeed | GD32VF103 Fullspeed | XMC4500 | +|:----------------------------|:----------------|:--------------------|:-----------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:-----------| +| guid | 0x2708A000 | 0x00000000 | 0x00000000 | 0x00001200 | 0x00001100 | 0x00001200 | 0x00002000 | 0x00001200 | 0x00001100 | 0x00003000 | 0x00003100 | 0x00002000 | 0x00002300 | 0x00002000 | 0x00005000 | 0x00001000 | 0x00AEC000 | +| gsnpsid | 0x4F54280A | 0x4F54330A | 0x4F54400A | 0x4F54281A | 0x4F54281A | 0x4F54281A | 0x4F54320A | 0x4F54281A | 0x4F54281A | 0x4F54330A | 0x4F54330A | 0x4F54320A | 0x4F54330A | 0x4F54310A | 0x4F54411A | 0x00000000 | 0x4F54292A | +| ghwcfg1 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | +| ghwcfg2 | 0x228DDD50 | 0x228F5910 | 0x224DD930 | 0x229DCD20 | 0x229ED590 | 0x229DCD20 | 0x229ED520 | 0x229DCD20 | 0x229ED590 | 0x229ED520 | 0x229FE1D0 | 0x229ED520 | 0x229FE190 | 0x229ED520 | 0x228FE052 | 0x00000000 | 0x228F5930 | +| - op_mode | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 2 | 0 | 0 | +| - arch | 2 | 2 | 2 | 0 | 2 | 0 | 0 | 0 | 2 | 0 | 2 | 0 | 2 | 0 | 2 | 0 | 2 | +| - point2point | 0 | 0 | 1 | 1 | 0 | 1 | 1 | 1 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | 1 | +| - hs_phy_type | 1 | 0 | 0 | 0 | 2 | 0 | 0 | 0 | 2 | 0 | 3 | 0 | 2 | 0 | 1 | 0 | 0 | +| - fs_phy_type | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - num_dev_ep | 7 | 6 | 6 | 3 | 5 | 3 | 5 | 3 | 5 | 5 | 8 | 5 | 8 | 5 | 8 | 0 | 6 | +| - num_host_ch | 7 | 13 | 7 | 7 | 11 | 7 | 11 | 7 | 11 | 11 | 15 | 11 | 15 | 11 | 15 | 0 | 13 | +| - period_channel_support | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - enable_dynamic_fifo | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - mul_cpu_int | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | +| - reserved21 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - nperiod_tx_q_depth | 2 | 2 | 1 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 0 | 2 | +| - host_period_tx_q_depth | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 0 | 2 | +| - dev_token_q_depth | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 0 | 8 | +| - otg_enable_ic_usb | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| ghwcfg3 | 0x0FF000E8 | 0x01F204E8 | 0x00C804B5 | 0x020001E8 | 0x03F403E8 | 0x020001E8 | 0x0200D1E8 | 0x020001E8 | 0x03F403E8 | 0x0200D1E8 | 0x03EED2E8 | 0x0200D1E8 | 0x03B8D2E8 | 0x0200D1E8 | 0x03B882E8 | 0x00000000 | 0x027A01E5 | +| - xfer_size_width | 8 | 8 | 5 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 8 | 0 | 5 | +| - packet_size_width | 6 | 6 | 3 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 6 | 0 | 6 | +| - otg_enable | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - i2c_enable | 0 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | 1 | +| - vendor_ctrl_itf | 0 | 0 | 0 | 0 | 1 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | +| - optional_feature_removed | 0 | 1 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - synch_reset | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - otg_adp_support | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | +| - otg_enable_hsic | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - battery_charger_support | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 0 | +| - lpm_mode | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | +| - total_fifo_size | 4080 | 498 | 200 | 512 | 1012 | 512 | 512 | 512 | 1012 | 512 | 1006 | 512 | 952 | 512 | 952 | 0 | 634 | +| ghwcfg4 | 0x1FF00020 | 0x1BF08030 | 0xD3F0A030 | 0x0FF08030 | 0x17F00030 | 0x0FF08030 | 0x17F08030 | 0x0FF08030 | 0x17F00030 | 0x17F08030 | 0x23F00030 | 0x17F08030 | 0xE3F00030 | 0x17F08030 | 0xE2103E30 | 0x00000000 | 0xDBF08030 | +| - num_dev_period_in_ep | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - power_optimized | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - ahb_freq_min | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - hibernation | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - reserved7 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 4 | 0 | 0 | +| - service_interval_mode | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - ipg_isoc_en | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - acg_enable | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - reserved13 | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 0 | +| - utmi_phy_data_width | 0 | 2 | 2 | 2 | 0 | 2 | 2 | 2 | 0 | 2 | 0 | 2 | 0 | 2 | 0 | 0 | 2 | +| - dev_ctrl_ep_num | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | +| - iddg_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 | +| - vbus_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - a_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - b_valid_filter_enabled | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - dedicated_fifos | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | +| - num_dev_in_eps | 15 | 13 | 9 | 7 | 11 | 7 | 11 | 7 | 11 | 11 | 1 | 11 | 1 | 11 | 1 | 0 | 13 | +| - dma_desc_enable | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | +| - dma_dynamic | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | \ No newline at end of file diff --git a/src/portable/synopsys/dwc2/dwc2_info.py b/src/portable/synopsys/dwc2/dwc2_info.py index 0af6c4c77..4bcdb4fe5 100644 --- a/src/portable/synopsys/dwc2/dwc2_info.py +++ b/src/portable/synopsys/dwc2/dwc2_info.py @@ -12,6 +12,8 @@ dwc2_reg_value = { 'STM32F407 Highspeed': [0x1100, 0x4F54281A, 0, 0x229ED590, 0x3F403E8, 0x17F00030], 'STM32F411 Fullspeed': [0x1200, 0x4F54281A, 0, 0x229DCD20, 0x20001E8, 0xFF08030], 'STM32F412 Fullspeed': [0x2000, 0x4F54320A, 0, 0x229ED520, 0x200D1E8, 0x17F08030], + 'STM32F429 Fullspeed': [0x1200, 0x4F54281A, 0, 0x229DCD20, 0x20001E8, 0xFF08030], + 'STM32F429 Highspeed': [0x1100, 0x4F54281A, 0, 0x229ED590, 0x3F403E8, 0x17F00030], 'STM32F723 Fullspeed': [0x3000, 0x4F54330A, 0, 0x229ED520, 0x200D1E8, 0x17F08030], 'STM32F723 HighSpeed': [0x3100, 0x4F54330A, 0, 0x229FE1D0, 0x3EED2E8, 0x23F00030], 'STM32F767 Fullspeed': [0x2000, 0x4F54320A, 0, 0x229ED520, 0x200D1E8, 0x17F08030], -- cgit v1.3.1 From 8af470e06d032d1b9731d817741318883c0b8fa0 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Sun, 19 Nov 2023 16:19:11 +0100 Subject: Fix CI --- src/portable/synopsys/dwc2/dwc2_info.md | 2 +- src/portable/synopsys/dwc2/dwc2_info.py | 1 + 2 files changed, 2 insertions(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dwc2_info.md b/src/portable/synopsys/dwc2/dwc2_info.md index f298f6656..d093502b0 100644 --- a/src/portable/synopsys/dwc2/dwc2_info.md +++ b/src/portable/synopsys/dwc2/dwc2_info.md @@ -51,4 +51,4 @@ | - dedicated_fifos | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 0 | 1 | | - num_dev_in_eps | 15 | 13 | 9 | 7 | 11 | 7 | 11 | 7 | 11 | 11 | 1 | 11 | 1 | 11 | 1 | 0 | 13 | | - dma_desc_enable | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | 0 | 0 | -| - dma_dynamic | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | \ No newline at end of file +| - dma_dynamic | 0 | 0 | 1 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 1 | 0 | 1 | diff --git a/src/portable/synopsys/dwc2/dwc2_info.py b/src/portable/synopsys/dwc2/dwc2_info.py index 4bcdb4fe5..03c095655 100644 --- a/src/portable/synopsys/dwc2/dwc2_info.py +++ b/src/portable/synopsys/dwc2/dwc2_info.py @@ -154,6 +154,7 @@ def render_md(): # Write the Markdown table to a file with open('dwc2_info.md', 'w') as md_file: md_file.write(df.to_markdown()) + md_file.write('\n') if __name__ == '__main__': -- cgit v1.3.1 From 1f71625a32a77d5fe243f71f9e8be03c9bbc41d1 Mon Sep 17 00:00:00 2001 From: hathach Date: Mon, 20 Nov 2023 21:31:06 +0700 Subject: add tuh_max3421_reg_read(), tuh_max3421_reg_read() for application usage added max3241 for feather m4 and tested --- hw/bsp/samd51/boards/feather_m4_express/board.h | 17 ++++++ hw/bsp/samd51/family.c | 28 +++++++-- src/portable/analog/max3421/hcd_max3421.c | 78 +++++++++++++++---------- 3 files changed, 86 insertions(+), 37 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/samd51/boards/feather_m4_express/board.h b/hw/bsp/samd51/boards/feather_m4_express/board.h index 4629643fd..474163c06 100644 --- a/hw/bsp/samd51/boards/feather_m4_express/board.h +++ b/hw/bsp/samd51/boards/feather_m4_express/board.h @@ -31,6 +31,8 @@ extern "C" { #endif +#define _PINNUM(port, pin) ((port)*32 + (pin)) + // LED #define LED_PIN 23 #define LED_STATE_ON 1 @@ -43,6 +45,21 @@ #define UART_TX_PIN (32 + 17) #define UART_RX_PIN (32 + 16) +// SPI for USB host shield +#define MAX3421_SERCOM_ID 1 // SERCOM2 +#define MAX3421_SERCOM_FUNCTION 2 // function C + +#define MAX3421_SCK_PIN _PINNUM(0, 17) +#define MAX3421_MOSI_PIN _PINNUM(1, 23) +#define MAX3421_MISO_PIN _PINNUM(1, 22) +#define MAX3421_TX_PAD 2 // MOSI = PAD_3, SCK = PAD_1 +#define MAX3421_RX_PAD 2 // MISO = PAD_2 + +#define MAX3421_CS_PIN 21 // D11 + +#define MAX3421_INTR_PIN 20 // D10 +#define MAX3421_INTR_EIC_ID 4 // EIC4 + #ifdef __cplusplus } #endif diff --git a/hw/bsp/samd51/family.c b/hw/bsp/samd51/family.c index bca18e1a2..2a2aee982 100644 --- a/hw/bsp/samd51/family.c +++ b/hw/bsp/samd51/family.c @@ -76,12 +76,18 @@ void USB_3_Handler(void) { // Implementation //--------------------------------------------------------------------+ -#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 +#if CFG_TUH_ENABLED && CFG_TUH_MAX3421 + +// API to read MAX3421's register. Implemented by TinyUSB +extern uint8_t tuh_max3421_reg_read(uint8_t rhport, uint8_t reg, bool in_isr); + +// API to write MAX3421's register. Implemented by TinyUSB +extern bool tuh_max3421_reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr); + #define MAX3421_SERCOM TU_XSTRCAT(SERCOM, MAX3421_SERCOM_ID) #define MAX3421_EIC_Handler TU_XSTRCAT3(EIC_, MAX3421_INTR_EIC_ID, _Handler) static void max3421_init(void); - #endif void board_init(void) { @@ -136,11 +142,23 @@ void board_init(void) { gpio_set_pin_function(PIN_PA24, PINMUX_PA24H_USB_DM); gpio_set_pin_function(PIN_PA25, PINMUX_PA25H_USB_DP); -#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 +#if CFG_TUH_ENABLED && CFG_TUH_MAX3421 max3421_init(); #endif } +void board_init_after_tusb(void) { +#if CFG_TUH_ENABLED && CFG_TUH_MAX3421 + // FeatherWing MAX3421E use MAX3421E's GPIO0 for VBUS enable + enum { + IOPINS1_ADDR = 20u << 3, // 0xA0 + }; + + uint8_t rhport = 1; + tuh_max3421_reg_write(rhport, IOPINS1_ADDR, 0x01, false); +#endif +} + //--------------------------------------------------------------------+ // Board porting API //--------------------------------------------------------------------+ @@ -182,7 +200,7 @@ uint32_t board_millis(void) { //--------------------------------------------------------------------+ // API: SPI transfer with MAX3421E, must be implemented by application //--------------------------------------------------------------------+ -#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 +#if CFG_TUH_ENABLED && CFG_TUH_MAX3421 static void max3421_init(void) { //------------- SPI Init -------------// @@ -262,7 +280,7 @@ static void max3421_init(void) { // Enable the SPI module sercom->SPI.CTRLA.bit.ENABLE = 1; - while (sercom->SPI.SYNCBUSY.bit.ENABLE); + while (sercom->SPI.SYNCBUSY.bit.ENABLE) {} //------------- External Interrupt -------------// diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 65f87f7c6..2abd74d51 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -54,6 +54,12 @@ enum { CPUCTL_ADDR = 16u << 3, // 0x80 PINCTL_ADDR = 17u << 3, // 0x88 REVISION_ADDR = 18u << 3, // 0x90 + // 19 is not used + IOPINS1_ADDR = 20u << 3, // 0xA0 + IOPINS2_ADDR = 21u << 3, // 0xA8 + GPINIRQ_ADDR = 22u << 3, // 0xB0 + GPINIEN_ADDR = 23u << 3, // 0xB8 + GPINPOL_ADDR = 24u << 3, // 0xC0 HIRQ_ADDR = 25u << 3, // 0xC8 HIEN_ADDR = 26u << 3, // 0xD0 MODE_ADDR = 27u << 3, // 0xD8 @@ -207,7 +213,9 @@ typedef struct { static max3421_data_t _hcd_data; //--------------------------------------------------------------------+ -// API: SPI transfer with MAX3421E, must be implemented by application +// API: SPI transfer with MAX3421E +// - spi_cs_api(), spi_xfer_api(), int_api(): must be implemented by application +// - reg_read(), reg_write(): is implemented by this driver, can be used by application //--------------------------------------------------------------------+ // API to control MAX3421 SPI CS @@ -220,11 +228,18 @@ extern bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint // API to enable/disable MAX3421 INTR pin interrupt extern void tuh_max3421_int_api(uint8_t rhport, bool enabled); +// API to read MAX3421's register. Implemented by TinyUSB +uint8_t tuh_max3421_reg_read(uint8_t rhport, uint8_t reg, bool in_isr); + +// API to write MAX3421's register. Implemented by TinyUSB +bool tuh_max3421_reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr); + //--------------------------------------------------------------------+ -// SPI Helper +// SPI Commands and Helper //--------------------------------------------------------------------+ -static void handle_connect_irq(uint8_t rhport, bool in_isr); -static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr); + +#define reg_read tuh_max3421_reg_read +#define reg_write tuh_max3421_reg_write static void max3421_spi_lock(uint8_t rhport, bool in_isr) { // disable interrupt and mutex lock (for pre-emptive RTOS) if not in_isr @@ -248,61 +263,60 @@ static void max3421_spi_unlock(uint8_t rhport, bool in_isr) { } } -static void fifo_write(uint8_t rhport, uint8_t reg, uint8_t const * buffer, uint16_t len, bool in_isr) { - uint8_t hirq; - reg |= CMDBYTE_WRITE; +uint8_t tuh_max3421_reg_read(uint8_t rhport, uint8_t reg, bool in_isr) { + uint8_t tx_buf[2] = {reg, 0}; + uint8_t rx_buf[2] = {0, 0}; max3421_spi_lock(rhport, in_isr); - - tuh_max3421_spi_xfer_api(rhport, ®, &hirq, 1); - _hcd_data.hirq = hirq; - tuh_max3421_spi_xfer_api(rhport, buffer, NULL, len); - + bool ret = tuh_max3421_spi_xfer_api(rhport, tx_buf, rx_buf, 2); max3421_spi_unlock(rhport, in_isr); + _hcd_data.hirq = rx_buf[0]; + return ret ? rx_buf[1] : 0; } -static void fifo_read(uint8_t rhport, uint8_t * buffer, uint16_t len, bool in_isr) { - uint8_t hirq; - uint8_t const reg = RCVVFIFO_ADDR; +bool tuh_max3421_reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr) { + uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; + uint8_t rx_buf[2] = {0, 0}; max3421_spi_lock(rhport, in_isr); + bool ret = tuh_max3421_spi_xfer_api(rhport, tx_buf, rx_buf, 2); + max3421_spi_unlock(rhport, in_isr); - tuh_max3421_spi_xfer_api(rhport, ®, &hirq, 1); - _hcd_data.hirq = hirq; - tuh_max3421_spi_xfer_api(rhport, NULL, buffer, len); + // HIRQ register since we are in full-duplex mode + _hcd_data.hirq = rx_buf[0]; - max3421_spi_unlock(rhport, in_isr); + return ret; } -static void reg_write(uint8_t rhport, uint8_t reg, uint8_t data, bool in_isr) { - uint8_t tx_buf[2] = {reg | CMDBYTE_WRITE, data}; - uint8_t rx_buf[2] = {0, 0}; +static void fifo_write(uint8_t rhport, uint8_t reg, uint8_t const * buffer, uint16_t len, bool in_isr) { + uint8_t hirq; + reg |= CMDBYTE_WRITE; max3421_spi_lock(rhport, in_isr); - tuh_max3421_spi_xfer_api(rhport, tx_buf, rx_buf, 2); + tuh_max3421_spi_xfer_api(rhport, ®, &hirq, 1); + _hcd_data.hirq = hirq; + tuh_max3421_spi_xfer_api(rhport, buffer, NULL, len); max3421_spi_unlock(rhport, in_isr); - // HIRQ register since we are in full-duplex mode - _hcd_data.hirq = rx_buf[0]; } -static uint8_t reg_read(uint8_t rhport, uint8_t reg, bool in_isr) { - uint8_t tx_buf[2] = {reg, 0}; - uint8_t rx_buf[2] = {0, 0}; +static void fifo_read(uint8_t rhport, uint8_t * buffer, uint16_t len, bool in_isr) { + uint8_t hirq; + uint8_t const reg = RCVVFIFO_ADDR; max3421_spi_lock(rhport, in_isr); - bool ret = tuh_max3421_spi_xfer_api(rhport, tx_buf, rx_buf, 2); + tuh_max3421_spi_xfer_api(rhport, ®, &hirq, 1); + _hcd_data.hirq = hirq; + tuh_max3421_spi_xfer_api(rhport, NULL, buffer, len); max3421_spi_unlock(rhport, in_isr); - - _hcd_data.hirq = rx_buf[0]; - return ret ? rx_buf[1] : 0; } +//------------- register write helper -------------// static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr) { reg_write(rhport, HIRQ_ADDR, data, in_isr); // HIRQ write 1 is clear -- cgit v1.3.1 From 025ffa200c5508c23e76316045792af4f7728da5 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 22 Nov 2023 17:36:52 +0700 Subject: add spec version to dwc2 info --- src/portable/synopsys/dwc2/dwc2_info.md | 1 + src/portable/synopsys/dwc2/dwc2_info.py | 14 +- src/portable/synopsys/dwc2/hwcfg_list.md | 777 ------------------------------- 3 files changed, 12 insertions(+), 780 deletions(-) delete mode 100644 src/portable/synopsys/dwc2/hwcfg_list.md (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dwc2_info.md b/src/portable/synopsys/dwc2/dwc2_info.md index d093502b0..8690a0755 100644 --- a/src/portable/synopsys/dwc2/dwc2_info.md +++ b/src/portable/synopsys/dwc2/dwc2_info.md @@ -2,6 +2,7 @@ |:----------------------------|:----------------|:--------------------|:-----------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:----------------------|:-----------| | guid | 0x2708A000 | 0x00000000 | 0x00000000 | 0x00001200 | 0x00001100 | 0x00001200 | 0x00002000 | 0x00001200 | 0x00001100 | 0x00003000 | 0x00003100 | 0x00002000 | 0x00002300 | 0x00002000 | 0x00005000 | 0x00001000 | 0x00AEC000 | | gsnpsid | 0x4F54280A | 0x4F54330A | 0x4F54400A | 0x4F54281A | 0x4F54281A | 0x4F54281A | 0x4F54320A | 0x4F54281A | 0x4F54281A | 0x4F54330A | 0x4F54330A | 0x4F54320A | 0x4F54330A | 0x4F54310A | 0x4F54411A | 0x00000000 | 0x4F54292A | +| - specs version | 2.80a | 3.30a | 4.00a | 2.81a | 2.81a | 2.81a | 3.20a | 2.81a | 2.81a | 3.30a | 3.30a | 3.20a | 3.30a | 3.10a | 4.11a | 0.00W | 2.92a | | ghwcfg1 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | 0x00000000 | | ghwcfg2 | 0x228DDD50 | 0x228F5910 | 0x224DD930 | 0x229DCD20 | 0x229ED590 | 0x229DCD20 | 0x229ED520 | 0x229DCD20 | 0x229ED590 | 0x229ED520 | 0x229FE1D0 | 0x229ED520 | 0x229FE190 | 0x229ED520 | 0x228FE052 | 0x00000000 | 0x228F5930 | | - op_mode | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 2 | 0 | 0 | diff --git a/src/portable/synopsys/dwc2/dwc2_info.py b/src/portable/synopsys/dwc2/dwc2_info.py index 03c095655..55bec3d23 100644 --- a/src/portable/synopsys/dwc2/dwc2_info.py +++ b/src/portable/synopsys/dwc2/dwc2_info.py @@ -36,6 +36,7 @@ dwc2_reg_value = { # }, dwc2_info = {key: {field: value for field, value in zip(dwc2_reg_list, values)} for key, values in dwc2_reg_value.items()} + class GHWCFG2(ctypes.LittleEndianStructure): _fields_ = [ ("op_mode", ctypes.c_uint32, 3), @@ -130,13 +131,20 @@ def render_md(): # Create an empty list to hold the dictionaries dwc2_info_list = [] - #Iterate over the dwc2_info dictionary and extract fields + # Iterate over the dwc2_info dictionary and extract fields for device, reg_values in dwc2_info.items(): entry_dict = {"Device": device} for r_name, r_value in reg_values.items(): entry_dict[r_name] = f"0x{r_value:08X}" - # Print bit-field values - if r_name.upper() in globals(): + + if r_name == 'gsnpsid': + # Get dwc2 specs version + major = ((r_value >> 8) >> 4) & 0x0F + minor = (r_value >> 4) & 0xFF + patch = chr((r_value & 0x0F) + ord('a') - 0xA) + entry_dict[f' - specs version'] = f"{major:X}.{minor:02X}{patch}" + elif r_name.upper() in globals(): + # Get bit-field values which exist as ctypes structures class_name = globals()[r_name.upper()] ghwcfg = class_name.from_buffer_copy(r_value.to_bytes(4, byteorder='little')) for field_name, field_type, _ in class_name._fields_: diff --git a/src/portable/synopsys/dwc2/hwcfg_list.md b/src/portable/synopsys/dwc2/hwcfg_list.md deleted file mode 100644 index b5590da00..000000000 --- a/src/portable/synopsys/dwc2/hwcfg_list.md +++ /dev/null @@ -1,777 +0,0 @@ -# DWC2 Hardware Configuration Registers - -## Broadcom BCM2711 (Pi4) - -dwc2->guid = 2708A000 -dwc2->gsnpsid = 4F54280A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 228DDD50 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 2 -hw_cfg2->point2point = 0 -hw_cfg2->hs_phy_type = 1 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 7 -hw_cfg2->num_host_ch = 7 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 0 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = FF000E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 0 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 0 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 0 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 4080 - -dwc2->ghwcfg4 = 1FF00020 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 0 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 0 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 15 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## EFM32GG FS - -dwc2->guid = 0 -dwc2->gsnpsid = 4F54330A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 228F5910 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 2 -hw_cfg2->point2point = 0 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 6 -hw_cfg2->num_host_ch = 13 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 0 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 1F204E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 0 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 1 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 0 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 0 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 498 - -dwc2->ghwcfg4 = 1BF08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 13 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## ESP32-S2 Fullspeed - -dwc2->guid = 0 -dwc2->gsnpsid = 4F54400A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 224DD930 -hw_cfg2->op_mode = 2 -hw_cfg2->arch = 3 -hw_cfg2->point2point = 0 -hw_cfg2->hs_phy_type = 1 -hw_cfg2->fs_phy_type = 2 -hw_cfg2->num_dev_ep = 6 -hw_cfg2->num_host_ch = 9 -hw_cfg2->period_channel_support = 0 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 1 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 22 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = C804B5 -hw_cfg3->xfer_size_width = 10 -hw_cfg3->packet_size_width = 5 -hw_cfg3->otg_enable = 0 -hw_cfg3->i2c_enable = 0 -hw_cfg3->vendor_ctrl_itf = 1 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 1 -hw_cfg3->otg_adp_support = 1 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 1 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 23130 - -dwc2->ghwcfg4 = D3F0A030 -hw_cfg4->num_dev_period_in_ep = 10 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 0 -hw_cfg4->hibernation = 1 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 1 -hw_cfg4->acg_enable = 1 -hw_cfg4->utmi_phy_data_width = 1 -hw_cfg4->dev_ctrl_ep_num = 10 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 0 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 0 -hw_cfg4->dedicated_fifos = 0 -hw_cfg4->num_dev_in_eps = 13 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 1 - -## STM32F407 and STM32F207 - -STM32F407 and STM32F207 are exactly the same - -### STM32F407 Fullspeed - -dwc2->guid = 1200 -dwc2->gsnpsid = 4F54281A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229DCD20 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 0 -hw_cfg2->point2point = 1 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 3 -hw_cfg2->num_host_ch = 7 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 20001E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 0 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 0 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 512 - -dwc2->ghwcfg4 = FF08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 7 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -### STM32F407 Highspeed - -dwc2->guid = 1100 -dwc2->gsnpsid = 4F54281A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229ED590 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 2 -hw_cfg2->point2point = 0 -hw_cfg2->hs_phy_type = 2 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 5 -hw_cfg2->num_host_ch = 11 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 3F403E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 1 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 0 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 0 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 1012 - -dwc2->ghwcfg4 = 17F00030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 0 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 11 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## STM32F411 Fullspeed - -dwc2->guid = 1200 -dwc2->gsnpsid = 4F54281A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229DCD20 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 0 -hw_cfg2->point2point = 1 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 3 -hw_cfg2->num_host_ch = 7 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 20001E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 0 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 0 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 512 - -dwc2->ghwcfg4 = FF08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 7 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## STM32F412 FS - -dwc2->guid = 2000 -dwc2->gsnpsid = 4F54320A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229ED520 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 0 -hw_cfg2->point2point = 1 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 5 -hw_cfg2->num_host_ch = 11 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 200D1E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 1 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 1 -hw_cfg3->lpm_mode = 1 -hw_cfg3->total_fifo_size = 512 - -dwc2->ghwcfg4 = 17F08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 11 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## STM32F723 - -### STM32F723 HighSpeed - -dwc2->guid = 3100 -dwc2->gsnpsid = 4F54330A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229FE1D0 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 2 -hw_cfg2->point2point = 0 -hw_cfg2->hs_phy_type = 3 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 8 -hw_cfg2->num_host_ch = 15 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 3EED2E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 0 -hw_cfg3->vendor_ctrl_itf = 1 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 1 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 1 -hw_cfg3->lpm_mode = 1 -hw_cfg3->total_fifo_size = 1006 - -dwc2->ghwcfg4 = 23F00030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 0 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 1 -hw_cfg4->dma_desc_enable = 1 -hw_cfg4->dma_dynamic = 0 - -### STM32F723 Fullspeed - -dwc2->guid = 3000 -dwc2->gsnpsid = 4F54330A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229ED520 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 0 -hw_cfg2->point2point = 1 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 5 -hw_cfg2->num_host_ch = 11 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 200D1E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 1 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 1 -hw_cfg3->lpm_mode = 1 -hw_cfg3->total_fifo_size = 512 - -dwc2->ghwcfg4 = 17F08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 11 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## STM32F767 FS - -dwc2->guid = 2000 -dwc2->gsnpsid = 4F54320A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229ED520 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 0 -hw_cfg2->point2point = 1 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 5 -hw_cfg2->num_host_ch = 11 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 200D1E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 1 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 1 -hw_cfg3->lpm_mode = 1 -hw_cfg3->total_fifo_size = 512 - -dwc2->ghwcfg4 = 17F08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 11 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## STM32H743 (both cores HS) - -dwc2->guid = 2300 -dwc2->gsnpsid = 4F54330A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229FE190 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 2 -hw_cfg2->point2point = 0 -hw_cfg2->hs_phy_type = 2 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 8 -hw_cfg2->num_host_ch = 15 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 3B8D2E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 0 -hw_cfg3->vendor_ctrl_itf = 1 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 1 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 1 -hw_cfg3->lpm_mode = 1 -hw_cfg3->total_fifo_size = 952 - -dwc2->ghwcfg4 = E3F00030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 0 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 1 -hw_cfg4->dma_desc_enable = 1 -hw_cfg4->dma_dynamic = 1 - -## STM32L476 FS - -dwc2->guid = 2000 -dwc2->gsnpsid = 4F54310A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 229ED520 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 0 -hw_cfg2->point2point = 1 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 5 -hw_cfg2->num_host_ch = 11 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 1 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 200D1E8 -hw_cfg3->xfer_size_width = 8 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 1 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 1 -hw_cfg3->lpm_mode = 1 -hw_cfg3->total_fifo_size = 512 - -dwc2->ghwcfg4 = 17F08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 11 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## GD32VF103 Fullspeed - -dwc2->guid = 1000 -dwc2->gsnpsid = 0 -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 0 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 0 -hw_cfg2->point2point = 0 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 0 -hw_cfg2->num_dev_ep = 0 -hw_cfg2->num_host_ch = 0 -hw_cfg2->period_channel_support = 0 -hw_cfg2->enable_dynamic_fifo = 0 -hw_cfg2->mul_cpu_int = 0 -hw_cfg2->nperiod_tx_q_depth = 0 -hw_cfg2->host_period_tx_q_depth = 0 -hw_cfg2->dev_token_q_depth = 0 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 0 -hw_cfg3->xfer_size_width = 0 -hw_cfg3->packet_size_width = 0 -hw_cfg3->otg_enable = 0 -hw_cfg3->i2c_enable = 0 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 0 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 0 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 0 - -dwc2->ghwcfg4 = 0 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 0 -hw_cfg4->ahb_freq_min = 0 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 0 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 0 -hw_cfg4->vbus_valid_filter_enabled = 0 -hw_cfg4->a_valid_filter_enabled = 0 -hw_cfg4->b_valid_filter_enabled = 0 -hw_cfg4->dedicated_fifos = 0 -hw_cfg4->num_dev_in_eps = 0 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 0 - -## XMC4500 - -dwc2->guid = AEC000 -dwc2->gsnpsid = 4F54292A -dwc2->ghwcfg1 = 0 - -dwc2->ghwcfg2 = 228F5930 -hw_cfg2->op_mode = 0 -hw_cfg2->arch = 2 -hw_cfg2->point2point = 1 -hw_cfg2->hs_phy_type = 0 -hw_cfg2->fs_phy_type = 1 -hw_cfg2->num_dev_ep = 6 -hw_cfg2->num_host_ch = 13 -hw_cfg2->period_channel_support = 1 -hw_cfg2->enable_dynamic_fifo = 1 -hw_cfg2->mul_cpu_int = 0 -hw_cfg2->nperiod_tx_q_depth = 2 -hw_cfg2->host_period_tx_q_depth = 2 -hw_cfg2->dev_token_q_depth = 8 -hw_cfg2->otg_enable_ic_usb = 0 - -dwc2->ghwcfg3 = 27A01E5 -hw_cfg3->xfer_size_width = 5 -hw_cfg3->packet_size_width = 6 -hw_cfg3->otg_enable = 1 -hw_cfg3->i2c_enable = 1 -hw_cfg3->vendor_ctrl_itf = 0 -hw_cfg3->optional_feature_removed = 0 -hw_cfg3->synch_reset = 0 -hw_cfg3->otg_adp_support = 0 -hw_cfg3->otg_enable_hsic = 0 -hw_cfg3->battery_charger_support = 0 -hw_cfg3->lpm_mode = 0 -hw_cfg3->total_fifo_size = 634 - -dwc2->ghwcfg4 = DBF08030 -hw_cfg4->num_dev_period_in_ep = 0 -hw_cfg4->power_optimized = 1 -hw_cfg4->ahb_freq_min = 1 -hw_cfg4->hibernation = 0 -hw_cfg4->service_interval_mode = 0 -hw_cfg4->ipg_isoc_en = 0 -hw_cfg4->acg_enable = 0 -hw_cfg4->utmi_phy_data_width = 2 -hw_cfg4->dev_ctrl_ep_num = 0 -hw_cfg4->iddg_filter_enabled = 1 -hw_cfg4->vbus_valid_filter_enabled = 1 -hw_cfg4->a_valid_filter_enabled = 1 -hw_cfg4->b_valid_filter_enabled = 1 -hw_cfg4->dedicated_fifos = 1 -hw_cfg4->num_dev_in_eps = 13 -hw_cfg4->dma_desc_enable = 0 -hw_cfg4->dma_dynamic = 1 -- cgit v1.3.1 From 01f22a9e25c9581c1a38559737a7ca7d1fc22c15 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 22 Nov 2023 22:50:10 +0700 Subject: fix h7 running on fullspeed phy has issue with WFI if not disable ULPI clock --- src/portable/synopsys/dwc2/dwc2_stm32.h | 16 ++++++++++++++++ 1 file changed, 16 insertions(+) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dwc2_stm32.h b/src/portable/synopsys/dwc2/dwc2_stm32.h index 2070c3943..dd78ccd06 100644 --- a/src/portable/synopsys/dwc2/dwc2_stm32.h +++ b/src/portable/synopsys/dwc2/dwc2_stm32.h @@ -145,6 +145,22 @@ static inline void dwc2_phy_init(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { if (hs_phy_type == HS_PHY_TYPE_NONE) { // Enable on-chip FS PHY dwc2->stm32_gccfg |= STM32_GCCFG_PWRDWN; + + // https://community.st.com/t5/stm32cubemx-mcus/why-stm32h743-usb-fs-doesn-t-work-if-freertos-tickless-idle/m-p/349480#M18867 + // H7 running on full-speed phy need to disable ULPI clock in sleep mode. + // Otherwise, USB won't work when mcu executing WFI/WFE instruction i.e tick-less RTOS. + // Note: there may be other family that is affected by this, but only H7 is tested so far + #if defined(USB_OTG_FS_PERIPH_BASE) && defined(RCC_AHB1LPENR_USB2OTGFSULPILPEN) + if ( USB_OTG_FS_PERIPH_BASE == (uint32_t) dwc2 ) { + RCC->AHB1LPENR &= ~RCC_AHB1LPENR_USB2OTGFSULPILPEN; + } + #endif + + #if defined(USB_OTG_HS_PERIPH_BASE) && defined(RCC_AHB1LPENR_USB1OTGHSULPILPEN) + if ( USB_OTG_HS_PERIPH_BASE == (uint32_t) dwc2 ) { + RCC->AHB1LPENR &= ~RCC_AHB1LPENR_USB1OTGHSULPILPEN; + } + #endif } else { #if CFG_TUSB_MCU != OPT_MCU_STM32U5 // Disable FS PHY, TODO on U5A5 (dwc2 4.11a) 16th bit is 'Host CDP behavior enable' -- cgit v1.3.1 From 7e1fe2ff83e1089a1e75e4fdc03af4b0aa6048ea Mon Sep 17 00:00:00 2001 From: IngHK Date: Fri, 24 Nov 2023 22:02:58 +0100 Subject: made log line end consistent \r\n --- examples/device/cdc_uac2/src/main.c | 2 +- src/portable/analog/max3421/hcd_max3421.c | 8 ++++---- src/portable/ehci/ehci.c | 4 ++-- src/portable/mentor/musb/dcd_musb.c | 4 ++-- 4 files changed, 9 insertions(+), 9 deletions(-) (limited to 'src/portable') diff --git a/examples/device/cdc_uac2/src/main.c b/examples/device/cdc_uac2/src/main.c index 7afa96c1a..25b2cd9a5 100644 --- a/examples/device/cdc_uac2/src/main.c +++ b/examples/device/cdc_uac2/src/main.c @@ -60,7 +60,7 @@ int main(void) led_blinking_task(); #if (CFG_TUSB_MCU == OPT_MCU_RP2040) - // printf("Hello, world!\n"); + // printf("Hello, world!\r\n"); #endif } diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 65f87f7c6..d7ce5a92f 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -382,7 +382,7 @@ static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { for (size_t i = idx + 1; i < CFG_TUH_MAX3421_ENDPOINT_TOTAL; i++) { max3421_ep_t* ep = &_hcd_data.ep[i]; if (ep->xfer_pending && ep->packet_size) { -// TU_LOG3("next pending i = %u\n", i); +// TU_LOG3("next pending i = %u\r\n", i); return ep; } } @@ -391,7 +391,7 @@ static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { for (size_t i = 0; i <= idx; i++) { max3421_ep_t* ep = &_hcd_data.ep[i]; if (ep->xfer_pending && ep->packet_size) { -// TU_LOG3("next pending i = %u\n", i); +// TU_LOG3("next pending i = %u\r\n", i); return ep; } } @@ -712,9 +712,9 @@ static void handle_connect_irq(uint8_t rhport, bool in_isr) { // However, since we are always in full speed mode, we can just check J-state if (jk == HRSL_KSTATUS) { new_mode |= MODE_LOWSPEED; - TU_LOG3("Low speed\n"); + TU_LOG3("Low speed\r\n"); }else { - TU_LOG3("Full speed\n"); + TU_LOG3("Full speed\r\n"); } new_mode |= MODE_SOFKAENAB; mode_write(rhport, new_mode, in_isr); diff --git a/src/portable/ehci/ehci.c b/src/portable/ehci/ehci.c index 572b9826c..e145cbb1b 100644 --- a/src/portable/ehci/ehci.c +++ b/src/portable/ehci/ehci.c @@ -581,7 +581,7 @@ void qhd_xfer_complete_isr(ehci_qhd_t * qhd) { // clear halted bit if not caused by STALL to allow more transfer xfer_result = XFER_RESULT_FAILED; qtd_overlay->halted = false; - TU_LOG3(" QHD xfer err count: %d\n", qtd_overlay->err_count); + TU_LOG3(" QHD xfer err count: %d\r\n", qtd_overlay->err_count); // TU_BREAKPOINT(); // TODO skip unplugged device }else { // no error bits are set, endpoint is halted due to STALL @@ -664,7 +664,7 @@ void hcd_int_handler(uint8_t rhport, bool in_isr) { if (int_status & EHCI_INT_MASK_HC_HALTED) { // something seriously wrong, maybe forget to flush/invalidate cache TU_BREAKPOINT(); - TU_LOG1(" HC halted\n"); + TU_LOG1(" HC halted\r\n"); return; } diff --git a/src/portable/mentor/musb/dcd_musb.c b/src/portable/mentor/musb/dcd_musb.c index 3c0114e41..a817c5d6e 100644 --- a/src/portable/mentor/musb/dcd_musb.c +++ b/src/portable/mentor/musb/dcd_musb.c @@ -158,9 +158,9 @@ static inline unsigned free_block_size(free_block_t const *blk) #if 0 static inline void print_block_list(free_block_t const *blk, unsigned num) { - TU_LOG1("*************\n"); + TU_LOG1("*************\r\n"); for (unsigned i = 0; i < num; ++i) { - TU_LOG1(" Blk%u %u %u\n", i, blk->beg, blk->end); + TU_LOG1(" Blk%u %u %u\r\n", i, blk->beg, blk->end); ++blk; } } -- cgit v1.3.1 From 93c40b6966db53ce70f4bea6b8a72bf2986ac180 Mon Sep 17 00:00:00 2001 From: henneboi Date: Fri, 8 Dec 2023 13:34:42 +0100 Subject: Add Support stm32h5 for stm32h573i based on stm32_fsdev G0 implementation Tested on Windows with IAR and gcc toolchain ( via cubeide) Tested only with audio examples, but sould be ok for other examples Cmake pacthed : but not tested Linux build : not tested Added a temporary workaround in make file to support H5 HAL repo ( ARMCC_VERSION=0) --- hw/bsp/board_mcu.h | 11 +- hw/bsp/stm32h5/FreeRTOSConfig/FreeRTOSConfig.h | 165 ++++++++++ .../boards/stm32h573i-dk/STM32H573I-DK_FLASH.ld | 187 +++++++++++ hw/bsp/stm32h5/boards/stm32h573i-dk/board.cmake | 10 + hw/bsp/stm32h5/boards/stm32h573i-dk/board.h | 125 ++++++++ hw/bsp/stm32h5/boards/stm32h573i-dk/board.mk | 13 + hw/bsp/stm32h5/family.c | 206 ++++++++++++ hw/bsp/stm32h5/family.cmake | 116 +++++++ hw/bsp/stm32h5/family.mk | 57 ++++ hw/bsp/stm32h5/stm32h5xx_hal_conf.h | 355 +++++++++++++++++++++ src/common/tusb_mcu.h | 6 + src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c | 11 +- .../st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h | 29 ++ src/tusb_option.h | 1 + tools/get_deps.py | 9 +- 15 files changed, 1295 insertions(+), 6 deletions(-) create mode 100644 hw/bsp/stm32h5/FreeRTOSConfig/FreeRTOSConfig.h create mode 100644 hw/bsp/stm32h5/boards/stm32h573i-dk/STM32H573I-DK_FLASH.ld create mode 100644 hw/bsp/stm32h5/boards/stm32h573i-dk/board.cmake create mode 100644 hw/bsp/stm32h5/boards/stm32h573i-dk/board.h create mode 100644 hw/bsp/stm32h5/boards/stm32h573i-dk/board.mk create mode 100644 hw/bsp/stm32h5/family.c create mode 100644 hw/bsp/stm32h5/family.cmake create mode 100644 hw/bsp/stm32h5/family.mk create mode 100644 hw/bsp/stm32h5/stm32h5xx_hal_conf.h (limited to 'src/portable') diff --git a/hw/bsp/board_mcu.h b/hw/bsp/board_mcu.h index 4ce5c4139..d40f33bbe 100644 --- a/hw/bsp/board_mcu.h +++ b/hw/bsp/board_mcu.h @@ -40,8 +40,8 @@ // Include order follows OPT_MCU_ number #if TU_CHECK_MCU(OPT_MCU_LPC11UXX, OPT_MCU_LPC13XX, OPT_MCU_LPC15XX) || \ - TU_CHECK_MCU(OPT_MCU_LPC175X_6X, OPT_MCU_LPC177X_8X, OPT_MCU_LPC18XX) || \ - TU_CHECK_MCU(OPT_MCU_LPC40XX, OPT_MCU_LPC43XX) + TU_CHECK_MCU(OPT_MCU_LPC175X_6X, OPT_MCU_LPC177X_8X, OPT_MCU_LPC18XX) || \ + TU_CHECK_MCU(OPT_MCU_LPC40XX, OPT_MCU_LPC43XX) #include "chip.h" #elif TU_CHECK_MCU(OPT_MCU_LPC51UXX, OPT_MCU_LPC54XXX, OPT_MCU_LPC55XX, OPT_MCU_MCXN9) @@ -54,8 +54,8 @@ #include "nrf.h" #elif CFG_TUSB_MCU == OPT_MCU_SAMD11 || CFG_TUSB_MCU == OPT_MCU_SAMD21 || \ - CFG_TUSB_MCU == OPT_MCU_SAMD51 || CFG_TUSB_MCU == OPT_MCU_SAME5X || \ - CFG_TUSB_MCU == OPT_MCU_SAML22 || CFG_TUSB_MCU == OPT_MCU_SAML21 + CFG_TUSB_MCU == OPT_MCU_SAMD51 || CFG_TUSB_MCU == OPT_MCU_SAME5X || \ + CFG_TUSB_MCU == OPT_MCU_SAML22 || CFG_TUSB_MCU == OPT_MCU_SAML21 #include "sam.h" #elif CFG_TUSB_MCU == OPT_MCU_SAMG @@ -83,6 +83,9 @@ #elif CFG_TUSB_MCU == OPT_MCU_STM32G4 #include "stm32g4xx.h" +#elif CFG_TUSB_MCU == OPT_MCU_STM32H5 + #include "stm32h5xx.h" + #elif CFG_TUSB_MCU == OPT_MCU_STM32H7 #include "stm32h7xx.h" diff --git a/hw/bsp/stm32h5/FreeRTOSConfig/FreeRTOSConfig.h b/hw/bsp/stm32h5/FreeRTOSConfig/FreeRTOSConfig.h new file mode 100644 index 000000000..52dfa095f --- /dev/null +++ b/hw/bsp/stm32h5/FreeRTOSConfig/FreeRTOSConfig.h @@ -0,0 +1,165 @@ +/* + * FreeRTOS Kernel V10.0.0 + * Copyright (C) 2017 Amazon.com, Inc. or its affiliates. All Rights Reserved. + * + * Permission is hereby granted, free of charge, to any person obtaining a copy of + * this software and associated documentation files (the "Software"), to deal in + * the Software without restriction, including without limitation the rights to + * use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of + * the Software, and to permit persons to whom the Software is furnished to do so, + * subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in all + * copies or substantial portions of the Software. If you wish to use our Amazon + * FreeRTOS name, please do so in a fair use way that does not cause confusion. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS + * FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR + * COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER + * IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN + * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. + * + * http://www.FreeRTOS.org + * http://aws.amazon.com/freertos + * + * 1 tab == 4 spaces! + */ + + +#ifndef FREERTOS_CONFIG_H +#define FREERTOS_CONFIG_H + +/*----------------------------------------------------------- + * Application specific definitions. + * + * These definitions should be adjusted for your particular hardware and + * application requirements. + * + * THESE PARAMETERS ARE DESCRIBED WITHIN THE 'CONFIGURATION' SECTION OF THE + * FreeRTOS API DOCUMENTATION AVAILABLE ON THE FreeRTOS.org WEB SITE. + * + * See http://www.freertos.org/a00110.html. + *----------------------------------------------------------*/ + +// skip if included from IAR assembler +#ifndef __IASMARM__ + #include "stm32g0xx.h" +#endif + +/* Cortex M23/M33 port configuration. */ +#define configENABLE_MPU 0 +#define configENABLE_FPU 1 +#define configENABLE_TRUSTZONE 0 +#define configMINIMAL_SECURE_STACK_SIZE (1024) + +#define configUSE_PREEMPTION 1 +#define configUSE_PORT_OPTIMISED_TASK_SELECTION 0 +#define configCPU_CLOCK_HZ SystemCoreClock +#define configTICK_RATE_HZ ( 1000 ) +#define configMAX_PRIORITIES ( 5 ) +#define configMINIMAL_STACK_SIZE ( 128 ) +#define configTOTAL_HEAP_SIZE ( configSUPPORT_DYNAMIC_ALLOCATION*4*1024 ) +#define configMAX_TASK_NAME_LEN 16 +#define configUSE_16_BIT_TICKS 0 +#define configIDLE_SHOULD_YIELD 1 +#define configUSE_MUTEXES 1 +#define configUSE_RECURSIVE_MUTEXES 1 +#define configUSE_COUNTING_SEMAPHORES 1 +#define configQUEUE_REGISTRY_SIZE 4 +#define configUSE_QUEUE_SETS 0 +#define configUSE_TIME_SLICING 0 +#define configUSE_NEWLIB_REENTRANT 0 +#define configENABLE_BACKWARD_COMPATIBILITY 1 +#define configSTACK_ALLOCATION_FROM_SEPARATE_HEAP 0 + +#define configSUPPORT_STATIC_ALLOCATION 1 +#define configSUPPORT_DYNAMIC_ALLOCATION 0 + +/* Hook function related definitions. */ +#define configUSE_IDLE_HOOK 0 +#define configUSE_TICK_HOOK 0 +#define configUSE_MALLOC_FAILED_HOOK 0 // cause nested extern warning +#define configCHECK_FOR_STACK_OVERFLOW 2 + +/* Run time and task stats gathering related definitions. */ +#define configGENERATE_RUN_TIME_STATS 0 +#define configRECORD_STACK_HIGH_ADDRESS 1 +#define configUSE_TRACE_FACILITY 1 // legacy trace +#define configUSE_STATS_FORMATTING_FUNCTIONS 0 + +/* Co-routine definitions. */ +#define configUSE_CO_ROUTINES 0 +#define configMAX_CO_ROUTINE_PRIORITIES 2 + +/* Software timer related definitions. */ +#define configUSE_TIMERS 1 +#define configTIMER_TASK_PRIORITY (configMAX_PRIORITIES-2) +#define configTIMER_QUEUE_LENGTH 32 +#define configTIMER_TASK_STACK_DEPTH configMINIMAL_STACK_SIZE + +/* Optional functions - most linkers will remove unused functions anyway. */ +#define INCLUDE_vTaskPrioritySet 0 +#define INCLUDE_uxTaskPriorityGet 0 +#define INCLUDE_vTaskDelete 0 +#define INCLUDE_vTaskSuspend 1 // required for queue, semaphore, mutex to be blocked indefinitely with portMAX_DELAY +#define INCLUDE_xResumeFromISR 0 +#define INCLUDE_vTaskDelayUntil 1 +#define INCLUDE_vTaskDelay 1 +#define INCLUDE_xTaskGetSchedulerState 0 +#define INCLUDE_xTaskGetCurrentTaskHandle 1 +#define INCLUDE_uxTaskGetStackHighWaterMark 0 +#define INCLUDE_xTaskGetIdleTaskHandle 0 +#define INCLUDE_xTimerGetTimerDaemonTaskHandle 0 +#define INCLUDE_pcTaskGetTaskName 0 +#define INCLUDE_eTaskGetState 0 +#define INCLUDE_xEventGroupSetBitFromISR 0 +#define INCLUDE_xTimerPendFunctionCall 0 + +/* Define to trap errors during development. */ +// Halt CPU (breakpoint) when hitting error, only apply for Cortex M3, M4, M7 +#if defined(__ARM_ARCH_7M__) || defined (__ARM_ARCH_7EM__) +#define configASSERT(_exp) \ + do {\ + if ( !(_exp) ) { \ + volatile uint32_t* ARM_CM_DHCSR = ((volatile uint32_t*) 0xE000EDF0UL); /* Cortex M CoreDebug->DHCSR */ \ + if ( (*ARM_CM_DHCSR) & 1UL ) { /* Only halt mcu if debugger is attached */ \ + taskDISABLE_INTERRUPTS(); \ + __asm("BKPT #0\n"); \ + }\ + }\ + } while(0) +#else +#define configASSERT( x ) +#endif + +/* FreeRTOS hooks to NVIC vectors */ +#define xPortPendSVHandler PendSV_Handler +#define xPortSysTickHandler SysTick_Handler +#define vPortSVCHandler SVC_Handler + +//--------------------------------------------------------------------+ +// Interrupt nesting behavior configuration. +//--------------------------------------------------------------------+ + +// For Cortex-M specific: __NVIC_PRIO_BITS is defined in mcu header +#define configPRIO_BITS 2 + +/* The lowest interrupt priority that can be used in a call to a "set priority" function. */ +#define configLIBRARY_LOWEST_INTERRUPT_PRIORITY ((1<
© COPYRIGHT(c) 2019 STMicroelectronics
+** +** Redistribution and use in source and binary forms, with or without modification, +** are permitted provided that the following conditions are met: +** 1. Redistributions of source code must retain the above copyright notice, +** this list of conditions and the following disclaimer. +** 2. Redistributions in binary form must reproduce the above copyright notice, +** this list of conditions and the following disclaimer in the documentation +** and/or other materials provided with the distribution. +** 3. Neither the name of STMicroelectronics nor the names of its contributors +** may be used to endorse or promote products derived from this software +** without specific prior written permission. +** +** THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +** AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +** IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE +** DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE +** FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL +** DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR +** SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER +** CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, +** OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE +** OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. +** +***************************************************************************** +*/ + +/* Entry Point */ +ENTRY(Reset_Handler) + +/* Highest address of the user mode stack */ +_estack = ORIGIN(RAM) + LENGTH(RAM); /* end of RAM */ +/* Generate a link error if heap and stack don't fit into RAM */ +_Min_Heap_Size = 0x200; /* required amount of heap */ +_Min_Stack_Size = 0x400; /* required amount of stack */ + +/* Specify the memory areas */ +MEMORY +{ +RAM (xrw) : ORIGIN = 0x20000000, LENGTH = 640K +FLASH (rx) : ORIGIN = 0x8000000, LENGTH = 2048K +} + +/* Define output sections */ +SECTIONS +{ + /* The startup code goes first into FLASH */ + .isr_vector : + { + . = ALIGN(4); + KEEP(*(.isr_vector)) /* Startup code */ + . = ALIGN(4); + } >FLASH + + /* The program code and other data goes into FLASH */ + .text : + { + . = ALIGN(4); + *(.text) /* .text sections (code) */ + *(.text*) /* .text* sections (code) */ + *(.glue_7) /* glue arm to thumb code */ + *(.glue_7t) /* glue thumb to arm code */ + *(.eh_frame) + + KEEP (*(.init)) + KEEP (*(.fini)) + + . = ALIGN(4); + _etext = .; /* define a global symbols at end of code */ + } >FLASH + + /* Constant data goes into FLASH */ + .rodata : + { + . = ALIGN(4); + *(.rodata) /* .rodata sections (constants, strings, etc.) */ + *(.rodata*) /* .rodata* sections (constants, strings, etc.) */ + . = ALIGN(4); + } >FLASH + + .ARM.extab : { *(.ARM.extab* .gnu.linkonce.armextab.*) } >FLASH + .ARM : { + __exidx_start = .; + *(.ARM.exidx*) + __exidx_end = .; + } >FLASH + + .preinit_array : + { + PROVIDE_HIDDEN (__preinit_array_start = .); + KEEP (*(.preinit_array*)) + PROVIDE_HIDDEN (__preinit_array_end = .); + } >FLASH + .init_array : + { + PROVIDE_HIDDEN (__init_array_start = .); + KEEP (*(SORT(.init_array.*))) + KEEP (*(.init_array*)) + PROVIDE_HIDDEN (__init_array_end = .); + } >FLASH + .fini_array : + { + PROVIDE_HIDDEN (__fini_array_start = .); + KEEP (*(SORT(.fini_array.*))) + KEEP (*(.fini_array*)) + PROVIDE_HIDDEN (__fini_array_end = .); + } >FLASH + + /* used by the startup to initialize data */ + _sidata = LOADADDR(.data); + + /* Initialized data sections goes into RAM, load LMA copy after code */ + .data : + { + . = ALIGN(4); + _sdata = .; /* create a global symbol at data start */ + *(.data) /* .data sections */ + *(.data*) /* .data* sections */ + + . = ALIGN(4); + _edata = .; /* define a global symbol at data end */ + } >RAM AT> FLASH + + + /* Uninitialized data section */ + . = ALIGN(4); + .bss : + { + /* This is used by the startup in order to initialize the .bss section */ + _sbss = .; /* define a global symbol at bss start */ + __bss_start__ = _sbss; + *(.bss) + *(.bss*) + *(COMMON) + + . = ALIGN(4); + _ebss = .; /* define a global symbol at bss end */ + __bss_end__ = _ebss; + } >RAM + + /* User_heap_stack section, used to check that there is enough RAM left */ + ._user_heap_stack : + { + . = ALIGN(8); + PROVIDE ( end = . ); + PROVIDE ( _end = . ); + . = . + _Min_Heap_Size; + . = . + _Min_Stack_Size; + . = ALIGN(8); + } >RAM + + + + /* Remove information from the standard libraries */ + /DISCARD/ : + { + libc.a ( * ) + libm.a ( * ) + libgcc.a ( * ) + } + + .ARM.attributes 0 : { *(.ARM.attributes) } +} diff --git a/hw/bsp/stm32h5/boards/stm32h573i-dk/board.cmake b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.cmake new file mode 100644 index 000000000..82d4474af --- /dev/null +++ b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.cmake @@ -0,0 +1,10 @@ +set(MCU_VARIANT stm32h573i-dk) +set(JLINK_DEVICE stm32h573i-dk) + +set(LD_FILE_GNU ${CMAKE_CURRENT_LIST_DIR}/STM32H573I-DK_FLASH.ld) + +function(update_board TARGET) + target_compile_definitions(${TARGET} PUBLIC + STM32H573xx + ) +endfunction() diff --git a/hw/bsp/stm32h5/boards/stm32h573i-dk/board.h b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.h new file mode 100644 index 000000000..01834f151 --- /dev/null +++ b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.h @@ -0,0 +1,125 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2020, Ha Thach (tinyusb.org) + * Copyright (c) 2034, HiFiPhile + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#ifndef BOARD_H_ +#define BOARD_H_ + +#ifdef __cplusplus +extern "C" { +#endif + +// LED +#define LED_PORT GPIOI +#define LED_PIN GPIO_PIN_9 +#define LED_STATE_ON 0 + +// Button +#define BUTTON_PORT GPIOC +#define BUTTON_PIN GPIO_PIN_13 +#define BUTTON_STATE_ACTIVE 0 + +// UART Enable for STLink VCOM +#define UART_DEV USART1 +#define UART_CLK_EN __USART1_CLK_ENABLE +#define UART_GPIO_PORT GPIOA +#define UART_GPIO_AF GPIO_AF7_USART1 + +#define UART_TX_PIN GPIO_PIN_9 +#define UART_RX_PIN GPIO_PIN_10 + + + + +//--------------------------------------------------------------------+ +// RCC Clock +//--------------------------------------------------------------------+ +// Clock configure for STM32stm32h573i-dk +static inline void board_clock_init(void) +{ + RCC_OscInitTypeDef RCC_OscInitStruct = {0}; + RCC_ClkInitTypeDef RCC_ClkInitStruct = {0}; + + /** Configure the main internal regulator output voltage */ + HAL_PWREx_ControlVoltageScaling(PWR_REGULATOR_VOLTAGE_SCALE1); + + /** Initializes the RCC Oscillators according to the specified parameters + * in the RCC_OscInitTypeDef structure. + Freq 250MHZ */ + + RCC_OscInitStruct.OscillatorType = RCC_OSCILLATORTYPE_HSI48 | RCC_OSCILLATORTYPE_HSE; + RCC_OscInitStruct.HSEState = RCC_HSE_BYPASS_DIGITAL; + RCC_OscInitStruct.HSI48State = RCC_HSI48_ON; + RCC_OscInitStruct.PLL.PLLState = RCC_PLL_ON; + RCC_OscInitStruct.PLL.PLLSource = RCC_PLL1_SOURCE_HSE; + RCC_OscInitStruct.PLL.PLLM = 5; + RCC_OscInitStruct.PLL.PLLN = 100; + RCC_OscInitStruct.PLL.PLLP = 2; + RCC_OscInitStruct.PLL.PLLQ = 10; + RCC_OscInitStruct.PLL.PLLR = 2; + RCC_OscInitStruct.PLL.PLLRGE = RCC_PLL1_VCIRANGE_2; + RCC_OscInitStruct.PLL.PLLVCOSEL = RCC_PLL1_VCORANGE_WIDE; + RCC_OscInitStruct.PLL.PLLFRACN = 0; + HAL_RCC_OscConfig(&RCC_OscInitStruct); + + /** Initializes the CPU, AHB and APB buses clocks */ + RCC_ClkInitStruct.ClockType = RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_SYSCLK | RCC_CLOCKTYPE_PCLK1; + RCC_ClkInitStruct.SYSCLKSource = RCC_SYSCLKSOURCE_PLLCLK; + RCC_ClkInitStruct.AHBCLKDivider = RCC_SYSCLK_DIV1; + RCC_ClkInitStruct.APB1CLKDivider = RCC_HCLK_DIV1; + HAL_RCC_ClockConfig(&RCC_ClkInitStruct, FLASH_LATENCY_5); + + // Configure CRS clock source + __HAL_RCC_CRS_CLK_ENABLE(); + RCC_CRSInitTypeDef RCC_CRSInitStruct = {0}; + RCC_CRSInitStruct.Prescaler = RCC_CRS_SYNC_DIV1; + RCC_CRSInitStruct.Source = RCC_CRS_SYNC_SOURCE_USB; + RCC_CRSInitStruct.Polarity = RCC_CRS_SYNC_POLARITY_RISING; + RCC_CRSInitStruct.ReloadValue = __HAL_RCC_CRS_RELOADVALUE_CALCULATE(48000000, 1000); + RCC_CRSInitStruct.ErrorLimitValue = 34; + RCC_CRSInitStruct.HSI48CalibrationValue = 32; + HAL_RCCEx_CRSConfig(&RCC_CRSInitStruct); + + + /* Select HSI48 as USB clock source */ + RCC_PeriphCLKInitTypeDef usb_clk = {0 }; + usb_clk.PeriphClockSelection = RCC_PERIPHCLK_USB; + usb_clk.UsbClockSelection = RCC_USBCLKSOURCE_HSI48; + HAL_RCCEx_PeriphCLKConfig(&usb_clk); + + /* Peripheral clock enable */ + __HAL_RCC_USB_CLK_ENABLE(); + + SystemCoreClockUpdate(); + + +} + +#ifdef __cplusplus +} +#endif + +#endif /* BOARD_H_ */ diff --git a/hw/bsp/stm32h5/boards/stm32h573i-dk/board.mk b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.mk new file mode 100644 index 000000000..66b299886 --- /dev/null +++ b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.mk @@ -0,0 +1,13 @@ +CFLAGS += \ + -DSTM32H573xx + +# GCC +SRC_S_GCC += $(ST_CMSIS)/Source/Templates/gcc/startup_stm32h573xx.s +LD_FILE_GCC = $(BOARD_PATH)/STM32H573I-DK_FLASH.ld + +# IAR +SRC_S_IAR += $(ST_CMSIS)/Source/Templates/iar/startup_stm32h573xx.s +LD_FILE_IAR = $(ST_CMSIS)/Source/Templates/iar/linker/stm32h573xx_flash.icf + +# For flash-jlink target +JLINK_DEVICE = stm32h573i-dk diff --git a/hw/bsp/stm32h5/family.c b/hw/bsp/stm32h5/family.c new file mode 100644 index 000000000..d035b791c --- /dev/null +++ b/hw/bsp/stm32h5/family.c @@ -0,0 +1,206 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2019 Ha Thach (tinyusb.org) + * Copyright (c) 2023 HiFiPhile + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#include "stm32h5xx_hal.h" +#include "bsp/board_api.h" +#include "board.h" + +//--------------------------------------------------------------------+ +// Forward USB interrupt events to TinyUSB IRQ Handler +//--------------------------------------------------------------------+ +void USB_DRD_FS_IRQHandler(void) +{ + tud_int_handler(0); +} + +//--------------------------------------------------------------------+ +// MACRO TYPEDEF CONSTANT ENUM +//--------------------------------------------------------------------+ +UART_HandleTypeDef UartHandle; + +void board_init(void) +{ + HAL_Init(); // required for HAL_RCC_Osc TODO check with freeRTOS + board_clock_init(); + + // Enable All GPIOs clocks + __HAL_RCC_GPIOA_CLK_ENABLE(); + __HAL_RCC_GPIOB_CLK_ENABLE(); + __HAL_RCC_GPIOC_CLK_ENABLE(); + __HAL_RCC_GPIOD_CLK_ENABLE(); + __HAL_RCC_GPIOE_CLK_ENABLE(); + __HAL_RCC_GPIOI_CLK_ENABLE(); + + //__HAL_RCC_SYSCFG_CLK_ENABLE(); + //__HAL_RCC_PWR_CLK_ENABLE(); + + UART_CLK_EN(); + + #if CFG_TUSB_OS == OPT_OS_NONE + // 1ms tick timer + SysTick_Config(SystemCoreClock / 1000); + #elif CFG_TUSB_OS == OPT_OS_FREERTOS + // Explicitly disable systick to prevent its ISR runs before scheduler start + SysTick->CTRL &= ~1U; + + // If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher ) + NVIC_SetPriority(USB_DRD_FS_IRQn, configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY); + #endif + + GPIO_InitTypeDef GPIO_InitStruct; + + // LED + GPIO_InitStruct.Pin = LED_PIN; + GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP; + GPIO_InitStruct.Pull = GPIO_PULLUP; + GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH; + HAL_GPIO_Init(LED_PORT, &GPIO_InitStruct); + + board_led_write(false); + + // Button + GPIO_InitStruct.Pin = BUTTON_PIN; + GPIO_InitStruct.Mode = GPIO_MODE_INPUT; + GPIO_InitStruct.Pull = BUTTON_STATE_ACTIVE ? GPIO_PULLDOWN : GPIO_PULLUP; + GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH; + HAL_GPIO_Init(BUTTON_PORT, &GPIO_InitStruct); + + #ifdef UART_DEV + // UART + GPIO_InitStruct.Pin = UART_TX_PIN | UART_RX_PIN; + GPIO_InitStruct.Mode = GPIO_MODE_AF_PP; + GPIO_InitStruct.Pull = GPIO_PULLUP; + GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH; + GPIO_InitStruct.Alternate = UART_GPIO_AF; + HAL_GPIO_Init(UART_GPIO_PORT, &GPIO_InitStruct); + + UartHandle = (UART_HandleTypeDef) + { + .Instance = UART_DEV, + .Init.BaudRate = CFG_BOARD_UART_BAUDRATE, + .Init.WordLength = UART_WORDLENGTH_8B, + .Init.StopBits = UART_STOPBITS_1, + .Init.Parity = UART_PARITY_NONE, + .Init.HwFlowCtl = UART_HWCONTROL_NONE, + .Init.Mode = UART_MODE_TX_RX, + .Init.OverSampling = UART_OVERSAMPLING_16, + .AdvancedInit.AdvFeatureInit = UART_ADVFEATURE_NO_INIT + }; + HAL_UART_Init(&UartHandle); + #endif + + // USB Pins TODO double check USB clock and pin setup + // Configure USB DM and DP pins. This is optional, and maintained only for user guidance. + GPIO_InitStruct.Pin = (GPIO_PIN_11 | GPIO_PIN_12); + GPIO_InitStruct.Mode = GPIO_MODE_INPUT; + GPIO_InitStruct.Pull = GPIO_NOPULL; + GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_HIGH; + HAL_GPIO_Init(GPIOA, &GPIO_InitStruct); + + /* Peripheral clock enable */ + __HAL_RCC_USB_CLK_ENABLE(); + + /* Enable VDDUSB */ + HAL_PWREx_EnableVddUSB(); +} + +//--------------------------------------------------------------------+ +// Board porting API +//--------------------------------------------------------------------+ + +void board_led_write(bool state) +{ + GPIO_PinState pin_state = (GPIO_PinState)(state ? LED_STATE_ON : (1 - LED_STATE_ON)); + HAL_GPIO_WritePin(LED_PORT, LED_PIN, pin_state); +} + +uint32_t board_button_read(void) +{ + return BUTTON_STATE_ACTIVE == HAL_GPIO_ReadPin(BUTTON_PORT, BUTTON_PIN); +} + +size_t board_get_unique_id(uint8_t id[], size_t max_len) +{ + (void) max_len; + volatile uint32_t *stm32_uuid = (volatile uint32_t *) UID_BASE; + uint32_t *id32 = (uint32_t *)(uintptr_t) id; + uint8_t const len = 12; + + id32[0] = stm32_uuid[0]; + id32[1] = stm32_uuid[1]; + id32[2] = stm32_uuid[2]; + + return len; +} + +int board_uart_read(uint8_t *buf, int len) +{ + (void) buf; + (void) len; + return 0; +} + +int board_uart_write(void const *buf, int len) +{ + #ifdef UART_DEV + HAL_UART_Transmit(&UartHandle, (uint8_t *)(uintptr_t) buf, len, 0xffff); + return len; + #else + (void) buf; + (void) len; + (void) UartHandle; + return 0; + #endif +} + +#if CFG_TUSB_OS == OPT_OS_NONE +volatile uint32_t system_ticks = 0; + +void SysTick_Handler(void) +{ + system_ticks++; + HAL_IncTick(); +} + +uint32_t board_millis(void) +{ + return system_ticks; +} + +#endif + +void HardFault_Handler(void) +{ + __asm("BKPT #0\n"); +} + +// Required by __libc_init_array in startup code if we are compiling using +// -nostdlib/-nostartfiles. +void _init(void) +{ + +} diff --git a/hw/bsp/stm32h5/family.cmake b/hw/bsp/stm32h5/family.cmake new file mode 100644 index 000000000..8edee1887 --- /dev/null +++ b/hw/bsp/stm32h5/family.cmake @@ -0,0 +1,116 @@ +include_guard() + +if (NOT BOARD) + message(FATAL_ERROR "BOARD not specified") +endif () + +set(ST_FAMILY h5) +set(ST_PREFIX stm32${ST_FAMILY}xx) + +set(ST_HAL_DRIVER ${TOP}/hw/mcu/st/stm32${ST_FAMILY}xx_hal_driver) +set(ST_CMSIS ${TOP}/hw/mcu/st/cmsis_device_${ST_FAMILY}) +set(CMSIS_5 ${TOP}/lib/CMSIS_5) + +# include board specific +include(${CMAKE_CURRENT_LIST_DIR}/boards/${BOARD}/board.cmake) + +# toolchain set up +set(CMAKE_SYSTEM_PROCESSOR cortex-m0plus CACHE INTERNAL "System Processor") +set(CMAKE_TOOLCHAIN_FILE ${TOP}/examples/build_system/cmake/toolchain/arm_${TOOLCHAIN}.cmake) + +set(FAMILY_MCUS STM32H5 CACHE INTERNAL "") + + +#------------------------------------ +# BOARD_TARGET +#------------------------------------ +# only need to be built ONCE for all examples +function(add_board_target BOARD_TARGET) + if (NOT TARGET ${BOARD_TARGET}) + # Startup & Linker script + set(STARTUP_FILE_GNU ${ST_CMSIS}/Source/Templates/gcc/startup_${MCU_VARIANT}.s) + set(STARTUP_FILE_IAR ${ST_CMSIS}/Source/Templates/iar/startup_${MCU_VARIANT}.s) + set(LD_FILE_IAR ${ST_CMSIS}/Source/Templates/iar/linker/${MCU_VARIANT}_flash.icf) + + add_library(${BOARD_TARGET} STATIC + ${ST_CMSIS}/Source/Templates/system_${ST_PREFIX}.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_cortex.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_pwr.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_pwr_ex.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_rcc.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_rcc_ex.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_gpio.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_uart.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_uart_ex.c + ${ST_HAL_DRIVER}/Src/${ST_PREFIX}_hal_dma.c + ${STARTUP_FILE_${CMAKE_C_COMPILER_ID}} + ) + target_include_directories(${BOARD_TARGET} PUBLIC + ${CMAKE_CURRENT_FUNCTION_LIST_DIR} + ${CMSIS_5}/CMSIS/Core/Include + ${ST_CMSIS}/Include + ${ST_HAL_DRIVER}/Inc + ) + target_compile_options(${BOARD_TARGET} PUBLIC + ) + target_compile_definitions(${BOARD_TARGET} PUBLIC + ) + + update_board(${BOARD_TARGET}) + + if (CMAKE_C_COMPILER_ID STREQUAL "GNU") + target_link_options(${BOARD_TARGET} PUBLIC + "LINKER:--script=${LD_FILE_GNU}" + -nostartfiles + # nanolib + --specs=nosys.specs + --specs=nano.specs + ) + elseif (CMAKE_C_COMPILER_ID STREQUAL "IAR") + target_link_options(${BOARD_TARGET} PUBLIC + "LINKER:--config=${LD_FILE_IAR}" + ) + endif () + endif () +endfunction() + + +#------------------------------------ +# Functions +#------------------------------------ +function(family_configure_example TARGET RTOS) + family_configure_common(${TARGET} ${RTOS}) + + # Board target + add_board_target(board_${BOARD}) + + #---------- Port Specific ---------- + # These files are built for each example since it depends on example's tusb_config.h + target_sources(${TARGET} PUBLIC + # BSP + ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/family.c + ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/../board.c + ) + target_include_directories(${TARGET} PUBLIC + # family, hw, board + ${CMAKE_CURRENT_FUNCTION_LIST_DIR} + ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/../../ + ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/boards/${BOARD} + ) + + # Add TinyUSB target and port source + family_add_tinyusb(${TARGET} OPT_MCU_STM32H5 ${RTOS}) + target_sources(${TARGET}-tinyusb PUBLIC + ${TOP}/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c + ${TOP}/src/portable/st/typec/typec_stm32.c + ) + target_link_libraries(${TARGET}-tinyusb PUBLIC board_${BOARD}) + + # Link dependencies + target_link_libraries(${TARGET} PUBLIC board_${BOARD} ${TARGET}-tinyusb) + + # Flashing + family_flash_stlink(${TARGET}) + #family_flash_jlink(${TARGET}) +endfunction() diff --git a/hw/bsp/stm32h5/family.mk b/hw/bsp/stm32h5/family.mk new file mode 100644 index 000000000..e04e08d80 --- /dev/null +++ b/hw/bsp/stm32h5/family.mk @@ -0,0 +1,57 @@ +ST_FAMILY = h5 +DEPS_SUBMODULES += lib/CMSIS_5 hw/mcu/st/cmsis_device_$(ST_FAMILY) hw/mcu/st/stm32$(ST_FAMILY)xx_hal_driver + +ST_CMSIS = hw/mcu/st/cmsis_device_$(ST_FAMILY) +ST_HAL_DRIVER = hw/mcu/st/stm32$(ST_FAMILY)xx_hal_driver + +include $(TOP)/$(BOARD_PATH)/board.mk +CPU_CORE ?= cortex-m33 + +# -------------- +# Compiler Flags +# -------------- +CFLAGS += \ + -DCFG_TUSB_MCU=OPT_MCU_STM32H5 + +# workaround to fix a build issue due to a wrong define check in hal, this define must be removed as soon as the repo is fixed +CFLAGS += \ + -D__ARMCC_VERSION=0 + +# GCC Flags +CFLAGS_GCC += \ + -flto \ + -nostdlib -nostartfiles \ + -Wno-unused-parameter \ + -Wno-cast-align + +# suppress warning caused by vendor mcu driver +CFLAGS_GCC += -Wno-error=cast-align + +#LDFLAGS_GCC += -specs=nosys.specs -specs=nano.specs + +# ----------------- +# Sources & Include +# ----------------- + +SRC_C += \ + src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c \ + $(ST_CMSIS)/Source/Templates/system_stm32$(ST_FAMILY)xx.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_cortex.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_pwr.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_pwr_ex.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_rcc.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_rcc_ex.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_uart.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_uart_ex.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_gpio.c \ + $(ST_HAL_DRIVER)/Src/stm32$(ST_FAMILY)xx_hal_dma.c + +INC += \ + $(TOP)/$(BOARD_PATH) \ + $(TOP)/lib/CMSIS_5/CMSIS/Core/Include \ + $(TOP)/$(ST_CMSIS)/Include \ + $(TOP)/$(ST_HAL_DRIVER)/Inc + +# flash target using on-board stlink +flash: flash-stlink diff --git a/hw/bsp/stm32h5/stm32h5xx_hal_conf.h b/hw/bsp/stm32h5/stm32h5xx_hal_conf.h new file mode 100644 index 000000000..d017bb06b --- /dev/null +++ b/hw/bsp/stm32h5/stm32h5xx_hal_conf.h @@ -0,0 +1,355 @@ +/* USER CODE BEGIN Header */ +/** + ****************************************************************************** + * @file stm32h5xx_hal_conf.h + * @author MCD Application Team + * @brief HAL configuration file. + ****************************************************************************** + * @attention + * + * Copyright (c) 2018-2021 STMicroelectronics. + * All rights reserved. + * + * This software is licensed under terms that can be found in the LICENSE file + * in the root directory of this software component. + * If no LICENSE file comes with this software, it is provided AS-IS. + * + ****************************************************************************** + */ +/* USER CODE END Header */ + +/* Define to prevent recursive inclusion -------------------------------------*/ +#ifndef STM32h5xx_HAL_CONF_H +#define STM32h5xx_HAL_CONF_H + +#ifdef __cplusplus +extern "C" { +#endif + +/* Exported types ------------------------------------------------------------*/ +/* Exported constants --------------------------------------------------------*/ + +/* ########################## Module Selection ############################## */ +/** + * @brief This is the list of modules to be used in the HAL driver + */ +#define HAL_MODULE_ENABLED +/* #define HAL_ADC_MODULE_ENABLED */ +/* #define HAL_CEC_MODULE_ENABLED */ +/* #define HAL_COMP_MODULE_ENABLED */ +/* #define HAL_CRC_MODULE_ENABLED */ +/* #define HAL_CRYP_MODULE_ENABLED */ +/* #define HAL_DAC_MODULE_ENABLED */ +/* #define HAL_EXTI_MODULE_ENABLED */ +/* #define HAL_FDCAN_MODULE_ENABLED */ +/* #define HAL_HCD_MODULE_ENABLED */ +/* #define HAL_I2C_MODULE_ENABLED */ +/* #define HAL_I2S_MODULE_ENABLED */ +/* #define HAL_IWDG_MODULE_ENABLED */ +/* #define HAL_IRDA_MODULE_ENABLED */ +/* #define HAL_LPTIM_MODULE_ENABLED */ +/* #define HAL_PCD_MODULE_ENABLED */ +/* #define HAL_RNG_MODULE_ENABLED */ +/* #define HAL_RTC_MODULE_ENABLED */ +/* #define HAL_SMARTCARD_MODULE_ENABLED */ +/* #define HAL_SMBUS_MODULE_ENABLED */ +/* #define HAL_SPI_MODULE_ENABLED */ +/* #define HAL_TIM_MODULE_ENABLED */ +/* #define HAL_USART_MODULE_ENABLED */ +/* #define HAL_WWDG_MODULE_ENABLED */ +#define HAL_GPIO_MODULE_ENABLED +#define HAL_EXTI_MODULE_ENABLED +#define HAL_DMA_MODULE_ENABLED +#define HAL_RCC_MODULE_ENABLED +#define HAL_FLASH_MODULE_ENABLED +#define HAL_PWR_MODULE_ENABLED +#define HAL_CORTEX_MODULE_ENABLED +#define HAL_UART_MODULE_ENABLED + +/* ########################## Register Callbacks selection ############################## */ +/** + * @brief This is the list of modules where register callback can be used + */ +#define USE_HAL_ADC_REGISTER_CALLBACKS 0u +#define USE_HAL_CEC_REGISTER_CALLBACKS 0u +#define USE_HAL_COMP_REGISTER_CALLBACKS 0u +#define USE_HAL_CRYP_REGISTER_CALLBACKS 0u +#define USE_HAL_DAC_REGISTER_CALLBACKS 0u +#define USE_HAL_FDCAN_REGISTER_CALLBACKS 0u +#define USE_HAL_HCD_REGISTER_CALLBACKS 0u +#define USE_HAL_I2C_REGISTER_CALLBACKS 0u +#define USE_HAL_I2S_REGISTER_CALLBACKS 0u +#define USE_HAL_IRDA_REGISTER_CALLBACKS 0u +#define USE_HAL_LPTIM_REGISTER_CALLBACKS 0u +#define USE_HAL_PCD_REGISTER_CALLBACKS 0u +#define USE_HAL_RNG_REGISTER_CALLBACKS 0u +#define USE_HAL_RTC_REGISTER_CALLBACKS 0u +#define USE_HAL_SMBUS_REGISTER_CALLBACKS 0u +#define USE_HAL_SPI_REGISTER_CALLBACKS 0u +#define USE_HAL_TIM_REGISTER_CALLBACKS 0u +#define USE_HAL_UART_REGISTER_CALLBACKS 0u +#define USE_HAL_USART_REGISTER_CALLBACKS 0u +#define USE_HAL_WWDG_REGISTER_CALLBACKS 0u + + +/** + * @brief Adjust the value of External High Speed oscillator (HSE) used in your application. + * This value is used by the RCC HAL module to compute the system frequency + * (when HSE is used as system clock source, directly or through the PLL). + */ +#if !defined (HSE_VALUE) +#define HSE_VALUE 25000000U /*!< Value of the External oscillator in Hz */ +#endif /* HSE_VALUE */ + +#if !defined (HSE_STARTUP_TIMEOUT) +#define HSE_STARTUP_TIMEOUT 100U /*!< Time out for HSE start up, in ms */ +#endif /* HSE_STARTUP_TIMEOUT */ + +/** + * @brief Internal Core Speed oscillator (CSI) default value. + * This value is the default CSI range value after Reset. + */ +#if !defined (CSI_VALUE) +#define CSI_VALUE 4000000UL /*!< Value of the Internal oscillator in Hz*/ +#endif /* CSI_VALUE */ + +/** + * @brief Internal High Speed oscillator (HSI) value. + * This value is used by the RCC HAL module to compute the system frequency + * (when HSI is used as system clock source, directly or through the PLL). + */ +#if !defined (HSI_VALUE) +#define HSI_VALUE 64000000UL /*!< Value of the Internal oscillator in Hz*/ +#endif /* HSI_VALUE */ + +/** + * @brief Internal High Speed oscillator (HSI48) value for USB FS, SDMMC and RNG. + * This internal oscillator is mainly dedicated to provide a high precision clock to + * the USB peripheral by means of a special Clock Recovery System (CRS) circuitry. + * When the CRS is not used, the HSI48 RC oscillator runs on it default frequency + * which is subject to manufacturing process variations. + */ +#if !defined (HSI48_VALUE) +#define HSI48_VALUE 48000000UL /*!< Value of the Internal High Speed oscillator for USB FS/SDMMC/RNG in Hz. + The real value my vary depending on manufacturing process variations.*/ +#endif /* HSI48_VALUE */ + +/** + * @brief Internal Low Speed oscillator (LSI) value. + */ +#if !defined (LSI_VALUE) +#define LSI_VALUE 32000UL /*!< LSI Typical Value in Hz*/ +#endif /* LSI_VALUE */ /*!< Value of the Internal Low Speed oscillator in Hz +The real value may vary depending on the variations +in voltage and temperature.*/ + +#if !defined (LSI_STARTUP_TIME) +#define LSI_STARTUP_TIME 130UL /*!< Time out for LSI start up, in ms */ +#endif /* LSI_STARTUP_TIME */ + +/** + * @brief External Low Speed oscillator (LSE) value. + * This value is used by the UART, RTC HAL module to compute the system frequency + */ +#if !defined (LSE_VALUE) +#define LSE_VALUE 32768UL /*!< Value of the External oscillator in Hz*/ +#endif /* LSE_VALUE */ + +#if !defined (LSE_STARTUP_TIMEOUT) +#define LSE_STARTUP_TIMEOUT 5000UL /*!< Time out for LSE start up, in ms */ +#endif /* LSE_STARTUP_TIMEOUT */ + +/** + * @brief External clock source for SPI/SAI peripheral + * This value is used by the SPI/SAI HAL module to compute the SPI/SAI clock source + * frequency, this source is inserted directly through I2S_CKIN pad. + + */ +#if !defined (EXTERNAL_CLOCK_VALUE) +#define EXTERNAL_CLOCK_VALUE 12288000UL /*!< Value of the External clock in Hz*/ +#endif /* EXTERNAL_CLOCK_VALUE */ + +/* Tip: To avoid modifying this file each time you need to use different HSE, + === you can define the HSE value in your toolchain compiler preprocessor. */ + +/* ############################################ System Configuration ################################################ */ + +/** + * @brief This is the HAL system configuration section + */ + +#define VDD_VALUE 3300UL /*!< Value of VDD in mv */ +#define TICK_INT_PRIORITY (15UL) /*!< tick interrupt priority (lowest by default) */ +#define USE_RTOS 0U +#define PREFETCH_ENABLE 0U /*!< Enable prefetch */ + + + +/* ################## SPI peripheral configuration ########################## */ + +/* CRC FEATURE: Use to activate CRC feature inside HAL SPI Driver +* Activated: CRC code is present inside driver +* Deactivated: CRC code cleaned from driver +*/ + +#define USE_SPI_CRC 0U + +/* ################## CRYP peripheral configuration ########################## */ + +#define USE_HAL_CRYP_SUSPEND_RESUME 1U + +/* ########################## Assert Selection ############################## */ +/** + * @brief Uncomment the line below to expanse the "assert_param" macro in the + * HAL drivers code + */ +/* #define USE_FULL_ASSERT 1U */ + +/* Includes ------------------------------------------------------------------*/ +/** + * @brief Include modules header file + */ + +#ifdef HAL_RCC_MODULE_ENABLED +#include "stm32h5xx_hal_rcc.h" +#endif /* HAL_RCC_MODULE_ENABLED */ + +#ifdef HAL_GPIO_MODULE_ENABLED +#include "stm32h5xx_hal_gpio.h" +#endif /* HAL_GPIO_MODULE_ENABLED */ + +#ifdef HAL_DMA_MODULE_ENABLED +#include "stm32h5xx_hal_dma.h" +#endif /* HAL_DMA_MODULE_ENABLED */ + +#ifdef HAL_CORTEX_MODULE_ENABLED +#include "stm32h5xx_hal_cortex.h" +#endif /* HAL_CORTEX_MODULE_ENABLED */ + +#ifdef HAL_ADC_MODULE_ENABLED +#include "stm32h5xx_hal_adc.h" +#include "stm32h5xx_hal_adc_ex.h" +#endif /* HAL_ADC_MODULE_ENABLED */ + +#ifdef HAL_CEC_MODULE_ENABLED +#include "stm32h5xx_hal_cec.h" +#endif /* HAL_CEC_MODULE_ENABLED */ + +#ifdef HAL_COMP_MODULE_ENABLED +#include "stm32h5xx_hal_comp.h" +#endif /* HAL_COMP_MODULE_ENABLED */ + +#ifdef HAL_CRC_MODULE_ENABLED +#include "stm32h5xx_hal_crc.h" +#endif /* HAL_CRC_MODULE_ENABLED */ + +#ifdef HAL_CRYP_MODULE_ENABLED +#include "stm32h5xx_hal_cryp.h" +#endif /* HAL_CRYP_MODULE_ENABLED */ + +#ifdef HAL_DAC_MODULE_ENABLED +#include "stm32h5xx_hal_dac.h" +#endif /* HAL_DAC_MODULE_ENABLED */ + +#ifdef HAL_EXTI_MODULE_ENABLED +#include "stm32h5xx_hal_exti.h" +#endif /* HAL_EXTI_MODULE_ENABLED */ + +#ifdef HAL_FLASH_MODULE_ENABLED +#include "stm32h5xx_hal_flash.h" +#endif /* HAL_FLASH_MODULE_ENABLED */ + +#ifdef HAL_FDCAN_MODULE_ENABLED +#include "stm32h5xx_hal_fdcan.h" +#endif /* HAL_FDCAN_MODULE_ENABLED */ + +#ifdef HAL_HCD_MODULE_ENABLED +#include "stm32h5xx_hal_hcd.h" +#endif /* HAL_HCD_MODULE_ENABLED */ + +#ifdef HAL_I2C_MODULE_ENABLED +#include "stm32h5xx_hal_i2c.h" +#endif /* HAL_I2C_MODULE_ENABLED */ + +#ifdef HAL_I2S_MODULE_ENABLED +#include "stm32h5xx_hal_i2s.h" +#endif /* HAL_I2S_MODULE_ENABLED */ + +#ifdef HAL_IRDA_MODULE_ENABLED +#include "stm32h5xx_hal_irda.h" +#endif /* HAL_IRDA_MODULE_ENABLED */ + +#ifdef HAL_IWDG_MODULE_ENABLED +#include "stm32h5xx_hal_iwdg.h" +#endif /* HAL_IWDG_MODULE_ENABLED */ + +#ifdef HAL_LPTIM_MODULE_ENABLED +#include "stm32h5xx_hal_lptim.h" +#endif /* HAL_LPTIM_MODULE_ENABLED */ + +#ifdef HAL_PCD_MODULE_ENABLED +#include "stm32h5xx_hal_pcd.h" +#endif /* HAL_PCD_MODULE_ENABLED */ + +#ifdef HAL_PWR_MODULE_ENABLED +#include "stm32h5xx_hal_pwr.h" +#endif /* HAL_PWR_MODULE_ENABLED */ + +#ifdef HAL_RNG_MODULE_ENABLED +#include "stm32h5xx_hal_rng.h" +#endif /* HAL_RNG_MODULE_ENABLED */ + +#ifdef HAL_RTC_MODULE_ENABLED +#include "stm32h5xx_hal_rtc.h" +#endif /* HAL_RTC_MODULE_ENABLED */ + +#ifdef HAL_SMARTCARD_MODULE_ENABLED +#include "stm32h5xx_hal_smartcard.h" +#endif /* HAL_SMARTCARD_MODULE_ENABLED */ + +#ifdef HAL_SMBUS_MODULE_ENABLED +#include "stm32h5xx_hal_smbus.h" +#endif /* HAL_SMBUS_MODULE_ENABLED */ + +#ifdef HAL_SPI_MODULE_ENABLED +#include "stm32h5xx_hal_spi.h" +#endif /* HAL_SPI_MODULE_ENABLED */ + +#ifdef HAL_TIM_MODULE_ENABLED +#include "stm32h5xx_hal_tim.h" +#endif /* HAL_TIM_MODULE_ENABLED */ + +#ifdef HAL_UART_MODULE_ENABLED +#include "stm32h5xx_hal_uart.h" +#endif /* HAL_UART_MODULE_ENABLED */ + +#ifdef HAL_USART_MODULE_ENABLED +#include "stm32h5xx_hal_usart.h" +#endif /* HAL_USART_MODULE_ENABLED */ + +#ifdef HAL_WWDG_MODULE_ENABLED +#include "stm32h5xx_hal_wwdg.h" +#endif /* HAL_WWDG_MODULE_ENABLED */ + +/* Exported macro ------------------------------------------------------------*/ +#ifdef USE_FULL_ASSERT +/** + * @brief The assert_param macro is used for functions parameters check. + * @param expr If expr is false, it calls assert_failed function + * which reports the name of the source file and the source + * line number of the call that failed. + * If expr is true, it returns no value. + * @retval None + */ +#define assert_param(expr) ((expr) ? (void)0U : assert_failed((uint8_t *)__FILE__, __LINE__)) +/* Exported functions ------------------------------------------------------- */ +void assert_failed(uint8_t *file, uint32_t line); +#else +#define assert_param(expr) ((void)0U) +#endif /* USE_FULL_ASSERT */ + +#ifdef __cplusplus +} +#endif + +#endif /* STM32h5xx_HAL_CONF_H */ diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index 6fab190ea..9c4083031 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -210,6 +210,12 @@ #define TUP_DCD_ENDPOINT_MAX 9 +#elif TU_CHECK_MCU(OPT_MCU_STM32H5) + #define TUP_USBIP_FSDEV + #define TUP_USBIP_FSDEV_STM32 + #define TUP_DCD_ENDPOINT_MAX 8 + + #elif TU_CHECK_MCU(OPT_MCU_STM32G4) // Device controller #define TUP_USBIP_FSDEV diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c index 14cabaf8d..b0a00b7ee 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c @@ -242,7 +242,7 @@ void dcd_init (uint8_t rhport) } USB->CNTR = 0; // Enable USB -#ifndef STM32G0 // BTABLE register does not exist any more on STM32G0, it is fixed to USB SRAM base address +#if !defined(STM32G0) && !defined(STM32H5) // BTABLE register does not exist any more on STM32G0, it is fixed to USB SRAM base address USB->BTABLE = DCD_STM32_BTABLE_BASE; #endif USB->ISTR = 0; // Clear pending interrupts @@ -357,6 +357,11 @@ void dcd_int_enable (uint8_t rhport) #else NVIC_EnableIRQ(USB_UCPD1_2_IRQn); #endif + + +#elif CFG_TUSB_MCU == OPT_MCU_STM32H5 + NVIC_EnableIRQ(USB_DRD_FS_IRQn); + #elif CFG_TUSB_MCU == OPT_MCU_STM32WB NVIC_EnableIRQ(USB_HP_IRQn); @@ -414,6 +419,10 @@ void dcd_int_disable(uint8_t rhport) #else NVIC_DisableIRQ(USB_UCPD1_2_IRQn); #endif + +#elif CFG_TUSB_MCU == OPT_MCU_STM32H5 + NVIC_DisableIRQ(USB_DRD_FS_IRQn); + #elif CFG_TUSB_MCU == OPT_MCU_STM32WB NVIC_DisableIRQ(USB_HP_IRQn); diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h index e6649de5a..0db426e50 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h @@ -110,6 +110,35 @@ #define USB_CNTR_LPMODE USB_CNTR_SUSPRDY #define USB_CNTR_FSUSP USB_CNTR_SUSPEN +#elif CFG_TUSB_MCU == OPT_MCU_STM32H5 + #include "stm32h5xx.h" + #define PMA_32BIT_ACCESS + #define PMA_LENGTH (2048u) + #undef USB_PMAADDR + #define USB_PMAADDR USB_DRD_PMAADDR + #define USB_TypeDef USB_DRD_TypeDef + #define EP0R CHEP0R + #define USB_EP_CTR_RX USB_EP_VTRX + #define USB_EP_CTR_TX USB_EP_VTTX + #define USB_EP_T_FIELD USB_CHEP_UTYPE + #define USB_EPREG_MASK USB_CHEP_REG_MASK + #define USB_EPTX_DTOGMASK USB_CHEP_TX_DTOGMASK + #define USB_EPRX_DTOGMASK USB_CHEP_RX_DTOGMASK + #define USB_EPTX_DTOG1 USB_CHEP_TX_DTOG1 + #define USB_EPTX_DTOG2 USB_CHEP_TX_DTOG2 + #define USB_EPRX_DTOG1 USB_CHEP_RX_DTOG1 + #define USB_EPRX_DTOG2 USB_CHEP_RX_DTOG2 + #define USB_EPRX_STAT USB_CH_RX_VALID + #define USB_EPKIND_MASK USB_EP_KIND_MASK + #define USB USB_DRD_FS + #define USB_CNTR_FRES USB_CNTR_USBRST + #define USB_CNTR_RESUME USB_CNTR_L2RES + #define USB_ISTR_EP_ID USB_ISTR_IDN + #define USB_EPADDR_FIELD USB_CHEP_ADDR + #define USB_CNTR_LPMODE USB_CNTR_SUSPRDY + #define USB_CNTR_FSUSP USB_CNTR_SUSPEN + + #elif CFG_TUSB_MCU == OPT_MCU_STM32WB #include "stm32wbxx.h" #define PMA_LENGTH (1024u) diff --git a/src/tusb_option.h b/src/tusb_option.h index 7597392d6..699691b53 100644 --- a/src/tusb_option.h +++ b/src/tusb_option.h @@ -86,6 +86,7 @@ #define OPT_MCU_STM32WB 312 ///< ST WB #define OPT_MCU_STM32U5 313 ///< ST U5 #define OPT_MCU_STM32L5 314 ///< ST L5 +#define OPT_MCU_STM32H5 315 ///< ST H5 // Sony #define OPT_MCU_CXD56 400 ///< SONY CXD56 diff --git a/tools/get_deps.py b/tools/get_deps.py index 79c272c07..cda4fc8da 100644 --- a/tools/get_deps.py +++ b/tools/get_deps.py @@ -95,6 +95,10 @@ deps_optional = { 'hw/mcu/st/cmsis_device_h7': ['https://github.com/STMicroelectronics/cmsis_device_h7.git', '60dc2c913203dc8629dc233d4384dcc41c91e77f', 'stm32h7'], + 'hw/mcu/st/cmsis_device_h5': ['https://github.com/STMicroelectronics/cmsis_device_h5.git', + '62b2cb0fbfe10c5791ee469bbde7b397c2fea8f5', + 'stm32h5'], + 'hw/mcu/st/cmsis_device_l0': ['https://github.com/STMicroelectronics/cmsis_device_l0.git', '06748ca1f93827befdb8b794402320d94d02004f', 'stm32l0'], @@ -140,6 +144,9 @@ deps_optional = { 'hw/mcu/st/stm32h7xx_hal_driver': ['https://github.com/STMicroelectronics/stm32h7xx_hal_driver.git', 'd8461b980b59b1625207d8c4f2ce0a9c2a7a3b04', 'stm32h7'], + 'hw/mcu/st/stm32h5xx_hal_driver': ['https://github.com/STMicroelectronics/stm32h5xx_hal_driver.git', + '2cf77de584196d619cec1b4586c3b9e2820a254e', + 'stm32h5'], 'hw/mcu/st/stm32l0xx_hal_driver': ['https://github.com/STMicroelectronics/stm32l0xx_hal_driver.git', 'fbdacaf6f8c82a4e1eb9bd74ba650b491e97e17b', 'stm32l0'], @@ -170,7 +177,7 @@ deps_optional = { 'lib/CMSIS_5': ['https://github.com/ARM-software/CMSIS_5.git', '20285262657d1b482d132d20d755c8c330d55c1f', 'imxrt kinetis_k32l2 kinetis_kl lpc51 lpc54 lpc55 mcx mm32 msp432e4 nrf ra saml2x' - 'stm32f0 stm32f1 stm32f2 stm32f3 stm32f4 stm32f7 stm32g0 stm32g4 ' + 'stm32f0 stm32f1 stm32f2 stm32f3 stm32f4 stm32f7 stm32g0 stm32g4 stm32h5' 'stm32h7 stm32l0 stm32l1 stm32l4 stm32l5 stm32u5 stm32wb'], 'lib/sct_neopixel': ['https://github.com/gsteiert/sct_neopixel.git', 'e73e04ca63495672d955f9268e003cffe168fcd8', -- cgit v1.3.1 From f3d713ac7336913a68326eae5a7e146ec2cd22c3 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Tue, 12 Dec 2023 22:35:05 +0100 Subject: Fix CI & typo. --- hw/bsp/stm32g0/boards/stm32g0b1nucleo/board.h | 2 +- hw/bsp/stm32h5/boards/stm32h573i-dk/board.h | 2 +- hw/bsp/stm32h5/family.mk | 4 ++-- src/common/tusb_mcu.h | 1 - src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c | 7 ++----- src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h | 4 ++-- tools/get_deps.py | 1 - 7 files changed, 8 insertions(+), 13 deletions(-) (limited to 'src/portable') diff --git a/hw/bsp/stm32g0/boards/stm32g0b1nucleo/board.h b/hw/bsp/stm32g0/boards/stm32g0b1nucleo/board.h index ae0820529..9ebaf73f0 100644 --- a/hw/bsp/stm32g0/boards/stm32g0b1nucleo/board.h +++ b/hw/bsp/stm32g0/boards/stm32g0b1nucleo/board.h @@ -2,7 +2,7 @@ * The MIT License (MIT) * * Copyright (c) 2020, Ha Thach (tinyusb.org) - * Copyright (c) 2034, HiFiPhile + * Copyright (c) 2023, HiFiPhile * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal diff --git a/hw/bsp/stm32h5/boards/stm32h573i-dk/board.h b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.h index 01834f151..a8808e32b 100644 --- a/hw/bsp/stm32h5/boards/stm32h573i-dk/board.h +++ b/hw/bsp/stm32h5/boards/stm32h573i-dk/board.h @@ -2,7 +2,7 @@ * The MIT License (MIT) * * Copyright (c) 2020, Ha Thach (tinyusb.org) - * Copyright (c) 2034, HiFiPhile + * Copyright (c) 2023, HiFiPhile * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal diff --git a/hw/bsp/stm32h5/family.mk b/hw/bsp/stm32h5/family.mk index e04e08d80..2fd95ecec 100644 --- a/hw/bsp/stm32h5/family.mk +++ b/hw/bsp/stm32h5/family.mk @@ -11,9 +11,9 @@ CPU_CORE ?= cortex-m33 # Compiler Flags # -------------- CFLAGS += \ - -DCFG_TUSB_MCU=OPT_MCU_STM32H5 + -DCFG_TUSB_MCU=OPT_MCU_STM32H5 -# workaround to fix a build issue due to a wrong define check in hal, this define must be removed as soon as the repo is fixed +# workaround to fix a build issue due to a wrong define check in hal, this define must be removed as soon as the repo is fixed CFLAGS += \ -D__ARMCC_VERSION=0 diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index 9c4083031..e589c4c86 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -214,7 +214,6 @@ #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 #define TUP_DCD_ENDPOINT_MAX 8 - #elif TU_CHECK_MCU(OPT_MCU_STM32G4) // Device controller diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c index b0a00b7ee..21cd3da26 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c @@ -357,11 +357,9 @@ void dcd_int_enable (uint8_t rhport) #else NVIC_EnableIRQ(USB_UCPD1_2_IRQn); #endif - - + #elif CFG_TUSB_MCU == OPT_MCU_STM32H5 NVIC_EnableIRQ(USB_DRD_FS_IRQn); - #elif CFG_TUSB_MCU == OPT_MCU_STM32WB NVIC_EnableIRQ(USB_HP_IRQn); @@ -419,10 +417,9 @@ void dcd_int_disable(uint8_t rhport) #else NVIC_DisableIRQ(USB_UCPD1_2_IRQn); #endif - + #elif CFG_TUSB_MCU == OPT_MCU_STM32H5 NVIC_DisableIRQ(USB_DRD_FS_IRQn); - #elif CFG_TUSB_MCU == OPT_MCU_STM32WB NVIC_DisableIRQ(USB_HP_IRQn); diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h index 0db426e50..b71e4f498 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h @@ -137,8 +137,8 @@ #define USB_EPADDR_FIELD USB_CHEP_ADDR #define USB_CNTR_LPMODE USB_CNTR_SUSPRDY #define USB_CNTR_FSUSP USB_CNTR_SUSPEN - - + + #elif CFG_TUSB_MCU == OPT_MCU_STM32WB #include "stm32wbxx.h" #define PMA_LENGTH (1024u) diff --git a/tools/get_deps.py b/tools/get_deps.py index cda4fc8da..38ff81412 100644 --- a/tools/get_deps.py +++ b/tools/get_deps.py @@ -98,7 +98,6 @@ deps_optional = { 'hw/mcu/st/cmsis_device_h5': ['https://github.com/STMicroelectronics/cmsis_device_h5.git', '62b2cb0fbfe10c5791ee469bbde7b397c2fea8f5', 'stm32h5'], - 'hw/mcu/st/cmsis_device_l0': ['https://github.com/STMicroelectronics/cmsis_device_l0.git', '06748ca1f93827befdb8b794402320d94d02004f', 'stm32l0'], -- cgit v1.3.1 From 7f84fe9bdad2b3d7e2fc48b7dedb8bbdf305bf57 Mon Sep 17 00:00:00 2001 From: Jerzy Kasenberg Date: Thu, 21 Dec 2023 08:48:59 +0100 Subject: dcd_nrf5x: Fix dcd_edpt_open for iso endpoint When ISO endpoint handling was introduced two lines that clear stall and data toggle bit were left unchanged and they were effective for ISO enadpoint as well. This is incorrect behavior since EPSTALL and DTOGGLE registers have only 3 bits for address. Leaving code that clears toggle bit results in endpoint 0 toggle bit being reset when iso endpoint (8) is opened. Now code that clears stall and toggle bit is applied to non-iso endpoint only as it was done before iso handling was introduced. --- src/portable/nordic/nrf5x/dcd_nrf5x.c | 7 +++---- 1 file changed, 3 insertions(+), 4 deletions(-) (limited to 'src/portable') diff --git a/src/portable/nordic/nrf5x/dcd_nrf5x.c b/src/portable/nordic/nrf5x/dcd_nrf5x.c index acc967bb3..4e702aed4 100644 --- a/src/portable/nordic/nrf5x/dcd_nrf5x.c +++ b/src/portable/nordic/nrf5x/dcd_nrf5x.c @@ -340,6 +340,9 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) NRF_USBD->INTENSET = TU_BIT(USBD_INTEN_ENDEPIN0_Pos + epnum); NRF_USBD->EPINEN |= TU_BIT(epnum); } + // clear stall and reset DataToggle + NRF_USBD->EPSTALL = (USBD_EPSTALL_STALL_UnStall << USBD_EPSTALL_STALL_Pos) | ep_addr; + NRF_USBD->DTOGGLE = (USBD_DTOGGLE_VALUE_Data0 << USBD_DTOGGLE_VALUE_Pos) | ep_addr; } else { @@ -375,10 +378,6 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) } } - // clear stall and reset DataToggle - NRF_USBD->EPSTALL = (USBD_EPSTALL_STALL_UnStall << USBD_EPSTALL_STALL_Pos) | ep_addr; - NRF_USBD->DTOGGLE = (USBD_DTOGGLE_VALUE_Data0 << USBD_DTOGGLE_VALUE_Pos) | ep_addr; - __ISB(); __DSB(); return true; -- cgit v1.3.1 From 551e47a464f55e1e36e2812e79902f4ef2955a17 Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 26 Dec 2023 22:50:01 +0700 Subject: allow rp2040 to use max3421e as host controller - fix warnings build hcd max3421 with rp2040 - add tinyusb_host_max3421 target for rp2040 cmake, -DMAX3421_HOST=1 will enable this - add max3421 driver implementation for rp2040 family - update tusb_config for host to allow easy enable host selection for rp2040 (default/pio-usb/max3421) --- .idea/cmake.xml | 15 +-- examples/host/bare_api/src/tusb_config.h | 64 +++++----- examples/host/cdc_msc_hid/src/tusb_config.h | 64 +++++----- .../host/cdc_msc_hid_freertos/src/tusb_config.h | 64 +++++----- examples/host/hid_controller/src/tusb_config.h | 64 +++++----- examples/host/msc_file_explorer/src/tusb_config.h | 65 +++++----- hw/bsp/rp2040/board.h | 11 ++ hw/bsp/rp2040/family.c | 140 +++++++++++++++------ hw/bsp/rp2040/family.cmake | 22 +++- src/portable/analog/max3421/hcd_max3421.c | 36 +++--- src/portable/raspberrypi/rp2040/hcd_rp2040.c | 2 +- 11 files changed, 341 insertions(+), 206 deletions(-) (limited to 'src/portable') diff --git a/.idea/cmake.xml b/.idea/cmake.xml index d12e44789..d3917c1f7 100644 --- a/.idea/cmake.xml +++ b/.idea/cmake.xml @@ -2,16 +2,17 @@ - - - + + + + - + @@ -25,7 +26,7 @@ - + @@ -39,10 +40,10 @@ - - + + diff --git a/examples/host/bare_api/src/tusb_config.h b/examples/host/bare_api/src/tusb_config.h index ede9618d3..05ffbdf75 100644 --- a/examples/host/bare_api/src/tusb_config.h +++ b/examples/host/bare_api/src/tusb_config.h @@ -30,28 +30,8 @@ extern "C" { #endif -//--------------------------------------------------------------------+ -// Board Specific Configuration -//--------------------------------------------------------------------+ - -#if CFG_TUSB_MCU == OPT_MCU_RP2040 -// change to 1 if using pico-pio-usb as host controller for raspberry rp2040 -#define CFG_TUH_RPI_PIO_USB 0 -#define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB -#endif - -// RHPort number used for host can be defined by board.mk, default to port 0 -#ifndef BOARD_TUH_RHPORT -#define BOARD_TUH_RHPORT 0 -#endif - -// RHPort max operational speed can defined by board.mk -#ifndef BOARD_TUH_MAX_SPEED -#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED -#endif - //-------------------------------------------------------------------- -// COMMON CONFIGURATION +// Common Configuration //-------------------------------------------------------------------- // defined by compiler flags for flexibility @@ -67,12 +47,6 @@ #define CFG_TUSB_DEBUG 0 #endif -// Enable Host stack -#define CFG_TUH_ENABLED 1 - -// Default is max speed that hardware controller could support with on-chip PHY -#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED - /* USB DMA on some MCUs can only access a specific SRAM region with restriction on alignment. * Tinyusb use follows macros to declare transferring memory so that they can be put * into those specific section. @@ -85,11 +59,43 @@ #endif #ifndef CFG_TUH_MEM_ALIGN -#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#endif + +//-------------------------------------------------------------------- +// Host Configuration +//-------------------------------------------------------------------- + +// Enable Host stack +#define CFG_TUH_ENABLED 1 + +#if CFG_TUSB_MCU == OPT_MCU_RP2040 + // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller + // #define CFG_TUH_RPI_PIO_USB 1 // use max3421 as host controller + + // host roothub port is 1 if using either pio-usb or max3421 + #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) + #define BOARD_TUH_RHPORT 1 + #endif +#endif + +// Default is max speed that hardware controller could support with on-chip PHY +#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED + +//------------------------- Board Specific -------------------------- + +// RHPort number used for host can be defined by board.mk, default to port 0 +#ifndef BOARD_TUH_RHPORT +#define BOARD_TUH_RHPORT 0 +#endif + +// RHPort max operational speed can defined by board.mk +#ifndef BOARD_TUH_MAX_SPEED +#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED #endif //-------------------------------------------------------------------- -// CONFIGURATION +// Driver Configuration //-------------------------------------------------------------------- // Size of buffer to hold descriptors and other data used for enumeration diff --git a/examples/host/cdc_msc_hid/src/tusb_config.h b/examples/host/cdc_msc_hid/src/tusb_config.h index a53000a11..61abb85eb 100644 --- a/examples/host/cdc_msc_hid/src/tusb_config.h +++ b/examples/host/cdc_msc_hid/src/tusb_config.h @@ -30,28 +30,8 @@ extern "C" { #endif -//--------------------------------------------------------------------+ -// Board Specific Configuration -//--------------------------------------------------------------------+ - -#if CFG_TUSB_MCU == OPT_MCU_RP2040 - // change to 1 if using pico-pio-usb as host controller for raspberry rp2040 - #define CFG_TUH_RPI_PIO_USB 0 - #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB -#endif - -// RHPort number used for host can be defined by board.mk, default to port 0 -#ifndef BOARD_TUH_RHPORT -#define BOARD_TUH_RHPORT 0 -#endif - -// RHPort max operational speed can defined by board.mk -#ifndef BOARD_TUH_MAX_SPEED -#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED -#endif - //-------------------------------------------------------------------- -// COMMON CONFIGURATION +// Common Configuration //-------------------------------------------------------------------- // defined by compiler flags for flexibility @@ -67,12 +47,6 @@ #define CFG_TUSB_DEBUG 0 #endif -// Enable Host stack -#define CFG_TUH_ENABLED 1 - -// Default is max speed that hardware controller could support with on-chip PHY -#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED - /* USB DMA on some MCUs can only access a specific SRAM region with restriction on alignment. * Tinyusb use follows macros to declare transferring memory so that they can be put * into those specific section. @@ -85,11 +59,43 @@ #endif #ifndef CFG_TUH_MEM_ALIGN -#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#endif + +//-------------------------------------------------------------------- +// Host Configuration +//-------------------------------------------------------------------- + +// Enable Host stack +#define CFG_TUH_ENABLED 1 + +#if CFG_TUSB_MCU == OPT_MCU_RP2040 + // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller + // #define CFG_TUH_RPI_PIO_USB 1 // use max3421 as host controller + + // host roothub port is 1 if using either pio-usb or max3421 + #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) + #define BOARD_TUH_RHPORT 1 + #endif +#endif + +// Default is max speed that hardware controller could support with on-chip PHY +#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED + +//------------------------- Board Specific -------------------------- + +// RHPort number used for host can be defined by board.mk, default to port 0 +#ifndef BOARD_TUH_RHPORT +#define BOARD_TUH_RHPORT 0 +#endif + +// RHPort max operational speed can defined by board.mk +#ifndef BOARD_TUH_MAX_SPEED +#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED #endif //-------------------------------------------------------------------- -// CONFIGURATION +// Driver Configuration //-------------------------------------------------------------------- // Size of buffer to hold descriptors and other data used for enumeration diff --git a/examples/host/cdc_msc_hid_freertos/src/tusb_config.h b/examples/host/cdc_msc_hid_freertos/src/tusb_config.h index ba23301ed..c661f47be 100644 --- a/examples/host/cdc_msc_hid_freertos/src/tusb_config.h +++ b/examples/host/cdc_msc_hid_freertos/src/tusb_config.h @@ -30,28 +30,8 @@ extern "C" { #endif -//--------------------------------------------------------------------+ -// Board Specific Configuration -//--------------------------------------------------------------------+ - -#if CFG_TUSB_MCU == OPT_MCU_RP2040 - // change to 1 if using pico-pio-usb as host controller for raspberry rp2040 - #define CFG_TUH_RPI_PIO_USB 0 - #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB -#endif - -// RHPort number used for host can be defined by board.mk, default to port 0 -#ifndef BOARD_TUH_RHPORT -#define BOARD_TUH_RHPORT 0 -#endif - -// RHPort max operational speed can defined by board.mk -#ifndef BOARD_TUH_MAX_SPEED -#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED -#endif - //-------------------------------------------------------------------- -// COMMON CONFIGURATION +// Common Configuration //-------------------------------------------------------------------- // defined by compiler flags for flexibility @@ -72,12 +52,6 @@ #define CFG_TUSB_DEBUG 0 #endif -// Enable Host stack -#define CFG_TUH_ENABLED 1 - -// Default is max speed that hardware controller could support with on-chip PHY -#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED - /* USB DMA on some MCUs can only access a specific SRAM region with restriction on alignment. * Tinyusb use follows macros to declare transferring memory so that they can be put * into those specific section. @@ -90,11 +64,43 @@ #endif #ifndef CFG_TUH_MEM_ALIGN -#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#endif + +//-------------------------------------------------------------------- +// Host Configuration +//-------------------------------------------------------------------- + +// Enable Host stack +#define CFG_TUH_ENABLED 1 + +#if CFG_TUSB_MCU == OPT_MCU_RP2040 + // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller + // #define CFG_TUH_RPI_PIO_USB 1 // use max3421 as host controller + + // host roothub port is 1 if using either pio-usb or max3421 + #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) + #define BOARD_TUH_RHPORT 1 + #endif +#endif + +// Default is max speed that hardware controller could support with on-chip PHY +#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED + +//------------------------- Board Specific -------------------------- + +// RHPort number used for host can be defined by board.mk, default to port 0 +#ifndef BOARD_TUH_RHPORT +#define BOARD_TUH_RHPORT 0 +#endif + +// RHPort max operational speed can defined by board.mk +#ifndef BOARD_TUH_MAX_SPEED +#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED #endif //-------------------------------------------------------------------- -// CONFIGURATION +// Driver Configuration //-------------------------------------------------------------------- // Size of buffer to hold descriptors and other data used for enumeration diff --git a/examples/host/hid_controller/src/tusb_config.h b/examples/host/hid_controller/src/tusb_config.h index d37fc02d2..8ddaddda7 100644 --- a/examples/host/hid_controller/src/tusb_config.h +++ b/examples/host/hid_controller/src/tusb_config.h @@ -30,28 +30,8 @@ extern "C" { #endif -//--------------------------------------------------------------------+ -// Board Specific Configuration -//--------------------------------------------------------------------+ - - #if CFG_TUSB_MCU == OPT_MCU_RP2040 -// change to 1 if using pico-pio-usb as host controller for raspberry rp2040 -#define CFG_TUH_RPI_PIO_USB 0 -#define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB -#endif - -// RHPort number used for host can be defined by board.mk, default to port 0 -#ifndef BOARD_TUH_RHPORT -#define BOARD_TUH_RHPORT 0 -#endif - -// RHPort max operational speed can defined by board.mk -#ifndef BOARD_TUH_MAX_SPEED -#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED -#endif - //-------------------------------------------------------------------- -// COMMON CONFIGURATION +// Common Configuration //-------------------------------------------------------------------- // defined by compiler flags for flexibility @@ -67,12 +47,6 @@ #define CFG_TUSB_DEBUG 0 #endif -// Enable Host stack -#define CFG_TUH_ENABLED 1 - -// Default is max speed that hardware controller could support with on-chip PHY -#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED - /* USB DMA on some MCUs can only access a specific SRAM region with restriction on alignment. * Tinyusb use follows macros to declare transferring memory so that they can be put * into those specific section. @@ -85,11 +59,43 @@ #endif #ifndef CFG_TUH_MEM_ALIGN -#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#endif + +//-------------------------------------------------------------------- +// Host Configuration +//-------------------------------------------------------------------- + +// Enable Host stack +#define CFG_TUH_ENABLED 1 + +#if CFG_TUSB_MCU == OPT_MCU_RP2040 + // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller + // #define CFG_TUH_RPI_PIO_USB 1 // use max3421 as host controller + + // host roothub port is 1 if using either pio-usb or max3421 + #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) + #define BOARD_TUH_RHPORT 1 + #endif +#endif + +// Default is max speed that hardware controller could support with on-chip PHY +#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED + +//------------------------- Board Specific -------------------------- + +// RHPort number used for host can be defined by board.mk, default to port 0 +#ifndef BOARD_TUH_RHPORT +#define BOARD_TUH_RHPORT 0 +#endif + +// RHPort max operational speed can defined by board.mk +#ifndef BOARD_TUH_MAX_SPEED +#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED #endif //-------------------------------------------------------------------- -// CONFIGURATION +// Driver Configuration //-------------------------------------------------------------------- // Size of buffer to hold descriptors and other data used for enumeration diff --git a/examples/host/msc_file_explorer/src/tusb_config.h b/examples/host/msc_file_explorer/src/tusb_config.h index b4ccd8223..1703761a4 100644 --- a/examples/host/msc_file_explorer/src/tusb_config.h +++ b/examples/host/msc_file_explorer/src/tusb_config.h @@ -30,29 +30,8 @@ extern "C" { #endif -//--------------------------------------------------------------------+ -// Board Specific Configuration -//--------------------------------------------------------------------+ - -#if CFG_TUSB_MCU == OPT_MCU_RP2040 - // change to 1 if using pico-pio-usb as host controller for raspberry rp2040 - #define CFG_TUH_RPI_PIO_USB 0 - #define BOARD_TUH_RHPORT CFG_TUH_RPI_PIO_USB -#endif - - -// RHPort number used for host can be defined by board.mk, default to port 0 -#ifndef BOARD_TUH_RHPORT -#define BOARD_TUH_RHPORT 0 -#endif - -// RHPort max operational speed can defined by board.mk -#ifndef BOARD_TUH_MAX_SPEED -#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED -#endif - //-------------------------------------------------------------------- -// COMMON CONFIGURATION +// Common Configuration //-------------------------------------------------------------------- // defined by compiler flags for flexibility @@ -68,12 +47,6 @@ #define CFG_TUSB_DEBUG 0 #endif -// Enable Host stack -#define CFG_TUH_ENABLED 1 - -// Default is max speed that hardware controller could support with on-chip PHY -#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED - /* USB DMA on some MCUs can only access a specific SRAM region with restriction on alignment. * Tinyusb use follows macros to declare transferring memory so that they can be put * into those specific section. @@ -86,11 +59,43 @@ #endif #ifndef CFG_TUH_MEM_ALIGN -#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#define CFG_TUH_MEM_ALIGN __attribute__ ((aligned(4))) +#endif + +//-------------------------------------------------------------------- +// Host Configuration +//-------------------------------------------------------------------- + +// Enable Host stack +#define CFG_TUH_ENABLED 1 + +#if CFG_TUSB_MCU == OPT_MCU_RP2040 + // #define CFG_TUH_RPI_PIO_USB 1 // use pio-usb as host controller + // #define CFG_TUH_RPI_PIO_USB 1 // use max3421 as host controller + + // host roothub port is 1 if using either pio-usb or max3421 + #if (defined(CFG_TUH_RPI_PIO_USB) && CFG_TUH_RPI_PIO_USB) || (defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421) + #define BOARD_TUH_RHPORT 1 + #endif +#endif + +// Default is max speed that hardware controller could support with on-chip PHY +#define CFG_TUH_MAX_SPEED BOARD_TUH_MAX_SPEED + +//------------------------- Board Specific -------------------------- + +// RHPort number used for host can be defined by board.mk, default to port 0 +#ifndef BOARD_TUH_RHPORT +#define BOARD_TUH_RHPORT 0 +#endif + +// RHPort max operational speed can defined by board.mk +#ifndef BOARD_TUH_MAX_SPEED +#define BOARD_TUH_MAX_SPEED OPT_MODE_DEFAULT_SPEED #endif //-------------------------------------------------------------------- -// CONFIGURATION +// Driver Configuration //-------------------------------------------------------------------- // Size of buffer to hold descriptors and other data used for enumeration diff --git a/hw/bsp/rp2040/board.h b/hw/bsp/rp2040/board.h index 063c9580e..3849894ce 100644 --- a/hw/bsp/rp2040/board.h +++ b/hw/bsp/rp2040/board.h @@ -74,6 +74,17 @@ #define PICO_DEFAULT_PIO_USB_VBUSEN_STATE 1 #endif +//-------------------------------------------------------------------- +// USB Host MAX3421E +//-------------------------------------------------------------------- + +#define MAX3421_SPI PICO_DEFAULT_SPI_INSTANCE +#define MAX3421_SCK_PIN PICO_DEFAULT_SPI_SCK_PIN +#define MAX3421_MOSI_PIN PICO_DEFAULT_SPI_TX_PIN +#define MAX3421_MISO_PIN PICO_DEFAULT_SPI_RX_PIN +#define MAX3421_CS_PIN 10 +#define MAX3421_INTR_PIN 9 + #ifdef __cplusplus } #endif diff --git a/hw/bsp/rp2040/family.c b/hw/bsp/rp2040/family.c index 5ac104688..cffb632f3 100644 --- a/hw/bsp/rp2040/family.c +++ b/hw/bsp/rp2040/family.c @@ -37,10 +37,19 @@ #include "bsp/board_api.h" #include "board.h" +#ifdef UART_DEV +static uart_inst_t *uart_inst; +#endif + #if CFG_TUH_RPI_PIO_USB || CFG_TUD_RPI_PIO_USB #include "pio_usb.h" #endif +#if CFG_TUH_ENABLED && CFG_TUH_MAX3421 +#include "hardware/spi.h" +static void max3421_init(void); +#endif + #ifdef BUTTON_BOOTSEL // This example blinks the Picoboard LED when the BOOTSEL button is pressed. // @@ -53,73 +62,66 @@ // This doesn't work if others are trying to access flash at the same time, // e.g. XIP streamer, or the other core. bool __no_inline_not_in_flash_func(get_bootsel_button)(void) { - const uint CS_PIN_INDEX = 1; + const uint CS_PIN_INDEX = 1; - // Must disable interrupts, as interrupt handlers may be in flash, and we - // are about to temporarily disable flash access! - uint32_t flags = save_and_disable_interrupts(); + // Must disable interrupts, as interrupt handlers may be in flash, and we + // are about to temporarily disable flash access! + uint32_t flags = save_and_disable_interrupts(); - // Set chip select to Hi-Z - hw_write_masked(&ioqspi_hw->io[CS_PIN_INDEX].ctrl, - GPIO_OVERRIDE_LOW << IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_LSB, - IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_BITS); + // Set chip select to Hi-Z + hw_write_masked(&ioqspi_hw->io[CS_PIN_INDEX].ctrl, + GPIO_OVERRIDE_LOW << IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_LSB, + IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_BITS); - // Note we can't call into any sleep functions in flash right now - for (volatile int i = 0; i < 1000; ++i); + // Note we can't call into any sleep functions in flash right now + for (volatile int i = 0; i < 1000; ++i); - // The HI GPIO registers in SIO can observe and control the 6 QSPI pins. - // Note the button pulls the pin *low* when pressed. - bool button_state = (sio_hw->gpio_hi_in & (1u << CS_PIN_INDEX)); + // The HI GPIO registers in SIO can observe and control the 6 QSPI pins. + // Note the button pulls the pin *low* when pressed. + bool button_state = (sio_hw->gpio_hi_in & (1u << CS_PIN_INDEX)); - // Need to restore the state of chip select, else we are going to have a - // bad time when we return to code in flash! - hw_write_masked(&ioqspi_hw->io[CS_PIN_INDEX].ctrl, - GPIO_OVERRIDE_NORMAL << IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_LSB, - IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_BITS); + // Need to restore the state of chip select, else we are going to have a + // bad time when we return to code in flash! + hw_write_masked(&ioqspi_hw->io[CS_PIN_INDEX].ctrl, + GPIO_OVERRIDE_NORMAL << IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_LSB, + IO_QSPI_GPIO_QSPI_SS_CTRL_OEOVER_BITS); - restore_interrupts(flags); + restore_interrupts(flags); - return button_state; + return button_state; } #endif //------------- Segger RTT retarget -------------// #if defined(LOGGER_RTT) - // Logging with RTT // - If RTT Control Block is not found by 'Auto Detection` try to use 'Search Range` with '0x20000000 0x10000' // - SWD speed is rather slow around 1000Khz - #include "pico/stdio/driver.h" #include "SEGGER_RTT.h" -static void stdio_rtt_write (const char *buf, int length) -{ +static void stdio_rtt_write (const char *buf, int length) { SEGGER_RTT_Write(0, buf, (unsigned) length); } -static int stdio_rtt_read (char *buf, int len) -{ +static int stdio_rtt_read (char *buf, int len) { return (int) SEGGER_RTT_Read(0, buf, (unsigned) len); } -static stdio_driver_t stdio_rtt = -{ +static stdio_driver_t stdio_rtt = { .out_chars = stdio_rtt_write, .out_flush = NULL, .in_chars = stdio_rtt_read }; -void stdio_rtt_init(void) -{ +void stdio_rtt_init(void) { stdio_set_driver_enabled(&stdio_rtt, true); } - #endif -#ifdef UART_DEV -static uart_inst_t *uart_inst; -#endif +//--------------------------------------------------------------------+ +// +//--------------------------------------------------------------------+ void board_init(void) { @@ -165,7 +167,9 @@ void board_init(void) #endif #if CFG_TUH_ENABLED - // set portfunc to host !!! + #if CFG_TUH_MAX3421 + max3421_init(); + #endif #endif #if !CFG_TUD_ENABLED && !CFG_TUH_ENABLED @@ -242,3 +246,69 @@ int board_getchar(void) { // rp2040 implementation will install appropriate handler when initializing // tinyusb. There is no need to forward IRQ from application //--------------------------------------------------------------------+ + +//--------------------------------------------------------------------+ +// API: SPI transfer with MAX3421E, must be implemented by application +//--------------------------------------------------------------------+ +#if CFG_TUH_ENABLED && defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 + +void max3421_int_handler(uint gpio, uint32_t event_mask) { + if (!(gpio == MAX3421_INTR_PIN && event_mask & GPIO_IRQ_EDGE_FALL)) return; + tuh_int_handler(BOARD_TUH_RHPORT, true); +} + +static void max3421_init(void) { + // CS pin + gpio_init(MAX3421_CS_PIN); + gpio_set_dir(MAX3421_CS_PIN, GPIO_OUT); + gpio_put(MAX3421_CS_PIN, true); + + // Interrupt pin + gpio_init(MAX3421_INTR_PIN); + gpio_set_dir(MAX3421_INTR_PIN, GPIO_IN); + gpio_pull_up(MAX3421_INTR_PIN); + gpio_set_irq_enabled_with_callback(MAX3421_INTR_PIN, GPIO_IRQ_EDGE_FALL, true, max3421_int_handler); + + // SPI init + spi_init(MAX3421_SPI, 4*1000000ul); + gpio_set_function(MAX3421_SCK_PIN, GPIO_FUNC_SPI); + gpio_set_function(MAX3421_MOSI_PIN, GPIO_FUNC_SPI); + gpio_set_function(MAX3421_MISO_PIN, GPIO_FUNC_SPI); + spi_set_format(MAX3421_SPI, 8, SPI_CPOL_0, SPI_CPHA_0, SPI_MSB_FIRST); +} + +//// API to enable/disable MAX3421 INTR pin interrupt +void tuh_max3421_int_api(uint8_t rhport, bool enabled) { + (void) rhport; + irq_set_enabled(IO_IRQ_BANK0, enabled); +} + +// API to control MAX3421 SPI CS +void tuh_max3421_spi_cs_api(uint8_t rhport, bool active) { + (void) rhport; + gpio_put(MAX3421_CS_PIN, !active); +} + +// API to transfer data with MAX3421 SPI +// Either tx_buf or rx_buf can be NULL, which means transfer is write or read only +bool tuh_max3421_spi_xfer_api(uint8_t rhport, uint8_t const* tx_buf, uint8_t* rx_buf, size_t xfer_bytes) { + (void) rhport; + + if (tx_buf == NULL && rx_buf == NULL) { + return false; + } + + int ret; + + if (tx_buf == NULL) { + ret = spi_read_blocking(MAX3421_SPI, 0, rx_buf, xfer_bytes); + }else if (rx_buf == NULL) { + ret = spi_write_blocking(MAX3421_SPI, tx_buf, xfer_bytes); + }else { + ret = spi_write_read_blocking(spi0, tx_buf, rx_buf, xfer_bytes); + } + + return ret == (int) xfer_bytes; +} + +#endif diff --git a/hw/bsp/rp2040/family.cmake b/hw/bsp/rp2040/family.cmake index 77d8029d9..ec40806fd 100644 --- a/hw/bsp/rp2040/family.cmake +++ b/hw/bsp/rp2040/family.cmake @@ -103,6 +103,20 @@ target_compile_definitions(tinyusb_host_base INTERFACE RP2040_USB_HOST_MODE=1 ) +#------------------------------------ +# Host MAX3421 +#------------------------------------ +add_library(tinyusb_host_max3421 INTERFACE) +target_sources(tinyusb_host_max3421 INTERFACE + ${TOP}/src/portable/analog/max3421/hcd_max3421.c + ) +target_compile_definitions(tinyusb_host_max3421 INTERFACE + CFG_TUH_MAX3421=1 + ) +target_link_libraries(tinyusb_host_max3421 INTERFACE + hardware_spi + ) + #------------------------------------ # BSP & Additions #------------------------------------ @@ -126,7 +140,7 @@ target_compile_definitions(tinyusb_additions INTERFACE if(LOGGER STREQUAL "RTT" OR LOGGER STREQUAL "rtt") target_compile_definitions(tinyusb_additions INTERFACE LOGGER_RTT - SEGGER_RTT_MODE_DEFAULT=SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL + #SEGGER_RTT_MODE_DEFAULT=SEGGER_RTT_MODE_BLOCK_IF_FIFO_FULL ) target_sources(tinyusb_additions INTERFACE @@ -186,6 +200,7 @@ function(family_add_pico_pio_usb TARGET) target_link_libraries(${TARGET} PUBLIC tinyusb_pico_pio_usb) endfunction() + # since Pico-PIO_USB compiler support may lag, and change from version to version, add a function that pico-sdk/pico-examples # can check (if present) in case the user has updated their TinyUSB function(is_compiler_supported_by_pico_pio_usb OUTVAR) @@ -209,6 +224,11 @@ function(family_configure_host_example TARGET RTOS) family_add_pico_pio_usb(${PROJECT}) endif() endif() + + # for max3421 host + if (MAX3421_HOST STREQUAL "1") + target_link_libraries(${TARGET} PUBLIC tinyusb_host_max3421) + endif() endfunction() diff --git a/src/portable/analog/max3421/hcd_max3421.c b/src/portable/analog/max3421/hcd_max3421.c index 051b7eaa8..cc4799dd6 100644 --- a/src/portable/analog/max3421/hcd_max3421.c +++ b/src/portable/analog/max3421/hcd_max3421.c @@ -171,6 +171,8 @@ enum { //--------------------------------------------------------------------+ typedef struct { + uint8_t daddr; + struct TU_ATTR_PACKED { uint8_t ep_dir : 1; uint8_t is_iso : 1; @@ -179,17 +181,19 @@ typedef struct { uint8_t xfer_pending : 1; uint8_t xfer_complete : 1; }; + struct TU_ATTR_PACKED { - uint8_t daddr : 4; uint8_t ep_num : 4; + uint16_t packet_size : 12; }; - uint16_t packet_size; uint16_t total_len; uint16_t xferred_len; uint8_t* buf; } max3421_ep_t; +TU_VERIFY_STATIC(sizeof(max3421_ep_t) == 12, "size is not correct"); + typedef struct { // cached register uint8_t sndbc; @@ -320,7 +324,7 @@ static void fifo_read(uint8_t rhport, uint8_t * buffer, uint16_t len, bool in_is static inline void hirq_write(uint8_t rhport, uint8_t data, bool in_isr) { reg_write(rhport, HIRQ_ADDR, data, in_isr); // HIRQ write 1 is clear - _hcd_data.hirq &= ~data; + _hcd_data.hirq &= (uint8_t) ~data; } static inline void hien_write(uint8_t rhport, uint8_t data, bool in_isr) { @@ -390,7 +394,7 @@ static void free_ep(uint8_t daddr) { } static max3421_ep_t * find_next_pending_ep(max3421_ep_t * cur_ep) { - size_t const idx = cur_ep - _hcd_data.ep; + size_t const idx = (size_t) (cur_ep - _hcd_data.ep); // starting from next endpoint for (size_t i = idx + 1; i < CFG_TUH_MAX3421_ENDPOINT_TOTAL; i++) { @@ -537,8 +541,8 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e (void) rhport; (void) daddr; - uint8_t ep_num = tu_edpt_number(ep_desc->bEndpointAddress); - uint8_t ep_dir = tu_edpt_dir(ep_desc->bEndpointAddress); + uint8_t const ep_num = tu_edpt_number(ep_desc->bEndpointAddress); + tusb_dir_t const ep_dir = tu_edpt_dir(ep_desc->bEndpointAddress); max3421_ep_t * ep; if (daddr == 0 && ep_num == 0) { @@ -547,15 +551,15 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t daddr, tusb_desc_endpoint_t const * e ep = allocate_ep(); TU_ASSERT(ep); ep->daddr = daddr; - ep->ep_num = ep_num; - ep->ep_dir = ep_dir; + ep->ep_num = (uint8_t) (ep_num & 0x0f); + ep->ep_dir = (ep_dir == TUSB_DIR_IN) ? 1 : 0; } if ( TUSB_XFER_ISOCHRONOUS == ep_desc->bmAttributes.xfer ) { ep->is_iso = 1; } - ep->packet_size = tu_edpt_packet_size(ep_desc); + ep->packet_size = (uint16_t) (tu_edpt_packet_size(ep_desc) & 0x7ff); return true; } @@ -577,7 +581,7 @@ void xact_out(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { } sndbc_write(rhport, xact_len, in_isr); - uint8_t hxfr = ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0); + uint8_t const hxfr = (uint8_t ) (ep->ep_num | HXFR_OUT_NIN | (ep->is_iso ? HXFR_ISO : 0)); hxfr_write(rhport, hxfr, in_isr); } @@ -590,7 +594,7 @@ void xact_in(uint8_t rhport, max3421_ep_t *ep, bool switch_ep, bool in_isr) { reg_write(rhport, HCTL_ADDR, hctl, in_isr); } - uint8_t hxfr = ep->ep_num | (ep->is_iso ? HXFR_ISO : 0); + uint8_t const hxfr = (uint8_t) (ep->ep_num | (ep->is_iso ? HXFR_ISO : 0)); hxfr_write(rhport, hxfr, in_isr); } @@ -623,13 +627,13 @@ TU_ATTR_ALWAYS_INLINE static inline void xact_inout(uint8_t rhport, max3421_ep_t // Submit a transfer, when complete hcd_event_xfer_complete() must be invoked bool hcd_edpt_xfer(uint8_t rhport, uint8_t daddr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { uint8_t const ep_num = tu_edpt_number(ep_addr); - uint8_t const ep_dir = tu_edpt_dir(ep_addr); + uint8_t const ep_dir = (uint8_t) tu_edpt_dir(ep_addr); max3421_ep_t* ep = find_opened_ep(daddr, ep_num, ep_dir); TU_VERIFY(ep); // control transfer can switch direction - ep->ep_dir = ep_dir; + ep->ep_dir = ep_dir ? 1u : 0u; ep->buf = buffer; ep->total_len = buflen; @@ -748,9 +752,9 @@ static void xfer_complete_isr(uint8_t rhport, max3421_ep_t *ep, xfer_result_t re // save data toggle if (ep->ep_dir) { - ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1 : 0; + ep->data_toggle = (hrsl & HRSL_RCVTOGRD) ? 1u : 0u; }else { - ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1 : 0; + ep->data_toggle = (hrsl & HRSL_SNDTOGRD) ? 1u : 0u; } ep->xfer_pending = 0; @@ -929,7 +933,7 @@ void hcd_int_handler(uint8_t rhport, bool in_isr) { } // clear all interrupt except SNDBAV_IRQ (never clear by us). Note RCVDAV_IRQ, HXFRDN_IRQ already clear while processing - hirq &= ~HIRQ_SNDBAV_IRQ; + hirq &= (uint8_t) ~HIRQ_SNDBAV_IRQ; if ( hirq ) { hirq_write(rhport, hirq, in_isr); } diff --git a/src/portable/raspberrypi/rp2040/hcd_rp2040.c b/src/portable/raspberrypi/rp2040/hcd_rp2040.c index 4ed6d36bb..08aef9314 100644 --- a/src/portable/raspberrypi/rp2040/hcd_rp2040.c +++ b/src/portable/raspberrypi/rp2040/hcd_rp2040.c @@ -27,7 +27,7 @@ #include "tusb_option.h" -#if CFG_TUH_ENABLED && (CFG_TUSB_MCU == OPT_MCU_RP2040) && !CFG_TUH_RPI_PIO_USB +#if CFG_TUH_ENABLED && (CFG_TUSB_MCU == OPT_MCU_RP2040) && !CFG_TUH_RPI_PIO_USB && !CFG_TUH_MAX3421 #include "pico.h" #include "rp2040_usb.h" -- cgit v1.3.1 From 0d4b24e56cf11e79b46f88f0d8b8656c0444a149 Mon Sep 17 00:00:00 2001 From: Okarss <104319900+Okarss@users.noreply.github.com> Date: Sun, 7 Jan 2024 20:18:33 +0200 Subject: [STM32 FSDEV] Fix ISR race conditions --- src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c | 10 +++++----- 1 file changed, 5 insertions(+), 5 deletions(-) (limited to 'src/portable') diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c index 21cd3da26..5f7944d1f 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c @@ -673,13 +673,13 @@ void dcd_int_handler(uint8_t rhport) { /* Put SOF flag at the beginning of ISR in case to get least amount of jitter if it is used for timing purposes */ if(int_status & USB_ISTR_SOF) { - USB->ISTR &=~USB_ISTR_SOF; + USB->ISTR = ~USB_ISTR_SOF; dcd_event_sof(0, USB->FNR & USB_FNR_FN, true); } if(int_status & USB_ISTR_RESET) { // USBRST is start of reset. - USB->ISTR &=~USB_ISTR_RESET; + USB->ISTR = ~USB_ISTR_RESET; dcd_handle_bus_reset(); dcd_event_bus_reset(0, TUSB_SPEED_FULL, true); return; // Don't do the rest of the things here; perhaps they've been cleared? @@ -697,7 +697,7 @@ void dcd_int_handler(uint8_t rhport) { USB->CNTR &= ~USB_CNTR_LPMODE; USB->CNTR &= ~USB_CNTR_FSUSP; - USB->ISTR &=~USB_ISTR_WKUP; + USB->ISTR = ~USB_ISTR_WKUP; dcd_event_bus_signal(0, DCD_EVENT_RESUME, true); } @@ -711,7 +711,7 @@ void dcd_int_handler(uint8_t rhport) { USB->CNTR |= USB_CNTR_LPMODE; /* clear of the ISTR bit must be done after setting of CNTR_FSUSP */ - USB->ISTR &=~USB_ISTR_SUSP; + USB->ISTR = ~USB_ISTR_SUSP; dcd_event_bus_signal(0, DCD_EVENT_SUSPEND, true); } @@ -724,7 +724,7 @@ void dcd_int_handler(uint8_t rhport) { { remoteWakeCountdown--; } - USB->ISTR &=~USB_ISTR_ESOF; + USB->ISTR = ~USB_ISTR_ESOF; } } -- cgit v1.3.1 From e7e19f562765999ed76b25b93649e80d9652b088 Mon Sep 17 00:00:00 2001 From: Ryzee119 Date: Sun, 7 Jan 2024 08:30:33 +1030 Subject: [OHCI] Allow more than 16 devices --- src/portable/ohci/ohci.c | 16 +++++++++++++--- src/portable/ohci/ohci.h | 16 +++++++++++++--- 2 files changed, 26 insertions(+), 6 deletions(-) (limited to 'src/portable') diff --git a/src/portable/ohci/ohci.c b/src/portable/ohci/ohci.c index f978b0965..c7f4c04ad 100644 --- a/src/portable/ohci/ohci.c +++ b/src/portable/ohci/ohci.c @@ -157,6 +157,7 @@ static ohci_ed_t * const p_ed_head[] = static void ed_list_insert(ohci_ed_t * p_pre, ohci_ed_t * p_ed); static void ed_list_remove_by_addr(ohci_ed_t * p_head, uint8_t dev_addr); +static gtd_extra_data_t *gtd_get_extra_data(ohci_gtd_t const * const gtd); //--------------------------------------------------------------------+ // USBH-HCD API @@ -345,7 +346,7 @@ static void gtd_init(ohci_gtd_t *p_td, uint8_t *data_ptr, uint16_t total_bytes) tu_memclr(p_td, sizeof(ohci_gtd_t)); p_td->used = 1; - p_td->expected_bytes = total_bytes; + gtd_get_extra_data(p_td)->expected_bytes = total_bytes; p_td->buffer_rounding = 1; // less than queued length is not a error p_td->delay_interrupt = OHCI_INT_ON_COMPLETE_NO; @@ -610,6 +611,16 @@ static inline ohci_ed_t* gtd_get_ed(ohci_gtd_t const * const p_qtd) } } +static gtd_extra_data_t *gtd_get_extra_data(ohci_gtd_t const * const gtd) { + if ( gtd_is_control(gtd) ) + { + return &ohci_data.control[((intptr_t)gtd - (intptr_t)&ohci_data.control->gtd) / sizeof(ohci_data.control[0])].gtd_data; + }else + { + return &ohci_data.gtd_data[gtd - ohci_data.gtd_pool]; + } +} + static inline uint32_t gtd_xfer_byte_left(uint32_t buffer_end, uint32_t current_buffer) { // 5.2.9 OHCI sample code @@ -641,8 +652,7 @@ static void done_queue_isr(uint8_t hostid) if ( (qtd->delay_interrupt == OHCI_INT_ON_COMPLETE_YES) || (event != XFER_RESULT_SUCCESS) ) { ohci_ed_t * const ed = gtd_get_ed(qtd); - - uint32_t const xferred_bytes = qtd->expected_bytes - gtd_xfer_byte_left((uint32_t) qtd->buffer_end, (uint32_t) qtd->current_buffer_pointer); + uint32_t const xferred_bytes = gtd_get_extra_data(qtd)->expected_bytes - gtd_xfer_byte_left((uint32_t) qtd->buffer_end, (uint32_t) qtd->current_buffer_pointer); // NOTE Assuming the current list is BULK and there is no other EDs in the list has queued TDs. // When there is a error resulting this ED is halted, and this EP still has other queued TD diff --git a/src/portable/ohci/ohci.h b/src/portable/ohci/ohci.h index 2081ffabb..cb23396bc 100644 --- a/src/portable/ohci/ohci.h +++ b/src/portable/ohci/ohci.h @@ -45,6 +45,9 @@ enum { #define ED_MAX (CFG_TUH_DEVICE_MAX*CFG_TUH_ENDPOINT_MAX) #define GTD_MAX ED_MAX +// tinyUSB's OHCI implementation caps number of EDs to 8 bits +TU_VERIFY_STATIC (ED_MAX <= 256, "Reduce CFG_TUH_DEVICE_MAX or CFG_TUH_ENDPOINT_MAX"); + //--------------------------------------------------------------------+ // OHCI Data Structure //--------------------------------------------------------------------+ @@ -70,9 +73,8 @@ typedef struct TU_ATTR_ALIGNED(16) { // Word 0 uint32_t used : 1; - uint32_t index : 4; // endpoint index the td belongs to, or device address in case of control xfer - uint32_t expected_bytes : 13; // TODO available for hcd - + uint32_t index : 8; // endpoint index the gtd belongs to, or device address in case of control xfer + uint32_t : 9; // can be used uint32_t buffer_rounding : 1; uint32_t pid : 2; uint32_t delay_interrupt : 3; @@ -152,6 +154,12 @@ typedef struct TU_ATTR_ALIGNED(32) TU_VERIFY_STATIC( sizeof(ochi_itd_t) == 32, "size is not correct" ); +typedef struct +{ + uint16_t expected_bytes : 13; // can be up to 8192 bytes long so use 13 bits + uint16_t : 3; // can be used +} gtd_extra_data_t; + // structure with member alignment required from large to small typedef struct TU_ATTR_ALIGNED(256) { @@ -164,11 +172,13 @@ typedef struct TU_ATTR_ALIGNED(256) struct { ohci_ed_t ed; ohci_gtd_t gtd; + gtd_extra_data_t gtd_data; }control[CFG_TUH_DEVICE_MAX+CFG_TUH_HUB+1]; // ochi_itd_t itd[OHCI_MAX_ITD]; // itd requires alignment of 32 ohci_ed_t ed_pool[ED_MAX]; ohci_gtd_t gtd_pool[GTD_MAX]; + gtd_extra_data_t gtd_data[GTD_MAX]; // extra data needed by TDs that can't fit in the TD struct volatile uint16_t frame_number_hi; -- cgit v1.3.1 From 3bf6826451536f1afc6eb4e7f088ac65d9b8c707 Mon Sep 17 00:00:00 2001 From: Alex Voinea Date: Wed, 10 Jan 2024 10:27:21 +0100 Subject: Disable ULPI clock during sleep on stm32f7 when using internal phy --- src/portable/synopsys/dwc2/dwc2_stm32.h | 9 ++++++++- 1 file changed, 8 insertions(+), 1 deletion(-) (limited to 'src/portable') diff --git a/src/portable/synopsys/dwc2/dwc2_stm32.h b/src/portable/synopsys/dwc2/dwc2_stm32.h index dd78ccd06..3237a50f6 100644 --- a/src/portable/synopsys/dwc2/dwc2_stm32.h +++ b/src/portable/synopsys/dwc2/dwc2_stm32.h @@ -149,7 +149,7 @@ static inline void dwc2_phy_init(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { // https://community.st.com/t5/stm32cubemx-mcus/why-stm32h743-usb-fs-doesn-t-work-if-freertos-tickless-idle/m-p/349480#M18867 // H7 running on full-speed phy need to disable ULPI clock in sleep mode. // Otherwise, USB won't work when mcu executing WFI/WFE instruction i.e tick-less RTOS. - // Note: there may be other family that is affected by this, but only H7 is tested so far + // Note: there may be other family that is affected by this, but only H7 and F7 is tested so far #if defined(USB_OTG_FS_PERIPH_BASE) && defined(RCC_AHB1LPENR_USB2OTGFSULPILPEN) if ( USB_OTG_FS_PERIPH_BASE == (uint32_t) dwc2 ) { RCC->AHB1LPENR &= ~RCC_AHB1LPENR_USB2OTGFSULPILPEN; @@ -161,6 +161,13 @@ static inline void dwc2_phy_init(dwc2_regs_t* dwc2, uint8_t hs_phy_type) { RCC->AHB1LPENR &= ~RCC_AHB1LPENR_USB1OTGHSULPILPEN; } #endif + + #if defined(USB_OTG_HS_PERIPH_BASE) && defined(RCC_AHB1LPENR_OTGHSULPILPEN) + if ( USB_OTG_HS_PERIPH_BASE == (uint32_t) dwc2 ) { + RCC->AHB1LPENR &= ~RCC_AHB1LPENR_OTGHSULPILPEN; + } + #endif + } else { #if CFG_TUSB_MCU != OPT_MCU_STM32U5 // Disable FS PHY, TODO on U5A5 (dwc2 4.11a) 16th bit is 'Host CDP behavior enable' -- cgit v1.3.1 From 545821399b10243f84509a543ae8c6457e9da803 Mon Sep 17 00:00:00 2001 From: Okarss <104319900+Okarss@users.noreply.github.com> Date: Thu, 11 Jan 2024 00:59:39 +0200 Subject: [STM32 FSDEV] Introduce a typedef for bus access width --- src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c | 10 +++++----- src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h | 3 +++ 2 files changed, 8 insertions(+), 5 deletions(-) (limited to 'src/portable') diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c index 5f7944d1f..91f90352e 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c @@ -673,13 +673,13 @@ void dcd_int_handler(uint8_t rhport) { /* Put SOF flag at the beginning of ISR in case to get least amount of jitter if it is used for timing purposes */ if(int_status & USB_ISTR_SOF) { - USB->ISTR = ~USB_ISTR_SOF; + USB->ISTR = (fsdev_bus_t)~USB_ISTR_SOF; dcd_event_sof(0, USB->FNR & USB_FNR_FN, true); } if(int_status & USB_ISTR_RESET) { // USBRST is start of reset. - USB->ISTR = ~USB_ISTR_RESET; + USB->ISTR = (fsdev_bus_t)~USB_ISTR_RESET; dcd_handle_bus_reset(); dcd_event_bus_reset(0, TUSB_SPEED_FULL, true); return; // Don't do the rest of the things here; perhaps they've been cleared? @@ -697,7 +697,7 @@ void dcd_int_handler(uint8_t rhport) { USB->CNTR &= ~USB_CNTR_LPMODE; USB->CNTR &= ~USB_CNTR_FSUSP; - USB->ISTR = ~USB_ISTR_WKUP; + USB->ISTR = (fsdev_bus_t)~USB_ISTR_WKUP; dcd_event_bus_signal(0, DCD_EVENT_RESUME, true); } @@ -711,7 +711,7 @@ void dcd_int_handler(uint8_t rhport) { USB->CNTR |= USB_CNTR_LPMODE; /* clear of the ISTR bit must be done after setting of CNTR_FSUSP */ - USB->ISTR = ~USB_ISTR_SUSP; + USB->ISTR = (fsdev_bus_t)~USB_ISTR_SUSP; dcd_event_bus_signal(0, DCD_EVENT_SUSPEND, true); } @@ -724,7 +724,7 @@ void dcd_int_handler(uint8_t rhport) { { remoteWakeCountdown--; } - USB->ISTR = ~USB_ISTR_ESOF; + USB->ISTR = (fsdev_bus_t)~USB_ISTR_ESOF; } } diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h index b71e4f498..d28eb0d9a 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h @@ -173,8 +173,11 @@ // For type-safety create a new macro for the volatile address of PMAADDR // The compiler should warn us if we cast it to a non-volatile type? #ifdef PMA_32BIT_ACCESS +typedef uint32_t fsdev_bus_t; static __IO uint32_t * const pma32 = (__IO uint32_t*)USB_PMAADDR; + #else +typedef uint16_t fsdev_bus_t; // Volatile is also needed to prevent the optimizer from changing access to 32-bit (as 32-bit access is forbidden) static __IO uint16_t * const pma = (__IO uint16_t*)USB_PMAADDR; -- cgit v1.3.1 From e68c6658c954d0c5daed2952d500c230b7dfb30d Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 11 Jan 2024 17:35:05 +0700 Subject: move gtd extra out of control struct to save sram also rename gtd_data to gtd_extra --- src/portable/ohci/ohci.c | 13 ++++++------- src/portable/ohci/ohci.h | 18 ++++++++---------- 2 files changed, 14 insertions(+), 17 deletions(-) (limited to 'src/portable') diff --git a/src/portable/ohci/ohci.c b/src/portable/ohci/ohci.c index c7f4c04ad..c59d4755e 100644 --- a/src/portable/ohci/ohci.c +++ b/src/portable/ohci/ohci.c @@ -612,12 +612,11 @@ static inline ohci_ed_t* gtd_get_ed(ohci_gtd_t const * const p_qtd) } static gtd_extra_data_t *gtd_get_extra_data(ohci_gtd_t const * const gtd) { - if ( gtd_is_control(gtd) ) - { - return &ohci_data.control[((intptr_t)gtd - (intptr_t)&ohci_data.control->gtd) / sizeof(ohci_data.control[0])].gtd_data; - }else - { - return &ohci_data.gtd_data[gtd - ohci_data.gtd_pool]; + if ( gtd_is_control(gtd) ) { + uint8_t idx = ((uintptr_t)gtd - (uintptr_t)&ohci_data.control->gtd) / sizeof(ohci_data.control[0]); + return &ohci_data.gtd_extra_control[idx]; + }else { + return &ohci_data.gtd_extra[gtd - ohci_data.gtd_pool]; } } @@ -661,7 +660,7 @@ static void done_queue_isr(uint8_t hostid) // --> HC will not process Control list (due to service ratio when Bulk list not empty) // To walk-around this, the halted ED will have TailP = HeadP (empty list condition), when clearing halt // the TailP must be set back to NULL for processing remaining TDs - if ((event != XFER_RESULT_SUCCESS)) + if (event != XFER_RESULT_SUCCESS) { ed->td_tail &= 0x0Ful; ed->td_tail |= tu_align16(ed->td_head.address); // mark halted EP as empty queue diff --git a/src/portable/ohci/ohci.h b/src/portable/ohci/ohci.h index cb23396bc..4feefd771 100644 --- a/src/portable/ohci/ohci.h +++ b/src/portable/ohci/ohci.h @@ -154,15 +154,12 @@ typedef struct TU_ATTR_ALIGNED(32) TU_VERIFY_STATIC( sizeof(ochi_itd_t) == 32, "size is not correct" ); -typedef struct -{ - uint16_t expected_bytes : 13; // can be up to 8192 bytes long so use 13 bits - uint16_t : 3; // can be used +typedef struct { + uint16_t expected_bytes; // up to 8192 bytes so max is 13 bits } gtd_extra_data_t; // structure with member alignment required from large to small -typedef struct TU_ATTR_ALIGNED(256) -{ +typedef struct TU_ATTR_ALIGNED(256) { ohci_hcca_t hcca; ohci_ed_t bulk_head_ed; // static bulk head (dummy) @@ -172,16 +169,17 @@ typedef struct TU_ATTR_ALIGNED(256) struct { ohci_ed_t ed; ohci_gtd_t gtd; - gtd_extra_data_t gtd_data; - }control[CFG_TUH_DEVICE_MAX+CFG_TUH_HUB+1]; + } control[CFG_TUH_DEVICE_MAX + CFG_TUH_HUB + 1]; // ochi_itd_t itd[OHCI_MAX_ITD]; // itd requires alignment of 32 ohci_ed_t ed_pool[ED_MAX]; ohci_gtd_t gtd_pool[GTD_MAX]; - gtd_extra_data_t gtd_data[GTD_MAX]; // extra data needed by TDs that can't fit in the TD struct - volatile uint16_t frame_number_hi; + // extra data needed by TDs that can't fit in the TD struct + gtd_extra_data_t gtd_extra_control[CFG_TUH_DEVICE_MAX + CFG_TUH_HUB + 1]; + gtd_extra_data_t gtd_extra[GTD_MAX]; + volatile uint16_t frame_number_hi; } ohci_data_t; //--------------------------------------------------------------------+ -- cgit v1.3.1 From 2d3d14891251baedfc965810c650615bdee128cf Mon Sep 17 00:00:00 2001 From: Okarss <104319900+Okarss@users.noreply.github.com> Date: Thu, 11 Jan 2024 21:02:14 +0200 Subject: [STM32 FSDEV] Align names for consistency --- src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c | 30 +++++----- .../st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h | 65 +++++++++++----------- 2 files changed, 48 insertions(+), 47 deletions(-) (limited to 'src/portable') diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c index 91f90352e..9c37f1f98 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev.c @@ -128,8 +128,8 @@ # define DCD_STM32_BTABLE_BASE 0U #endif -#ifndef DCD_STM32_BTABLE_LENGTH -# define DCD_STM32_BTABLE_LENGTH (PMA_LENGTH - DCD_STM32_BTABLE_BASE) +#ifndef DCD_STM32_BTABLE_SIZE +# define DCD_STM32_BTABLE_SIZE (FSDEV_PMA_SIZE - DCD_STM32_BTABLE_BASE) #endif /*************************************************** @@ -137,7 +137,7 @@ */ TU_VERIFY_STATIC((MAX_EP_COUNT) <= STFSDEV_EP_COUNT, "Only 8 endpoints supported on the hardware"); -TU_VERIFY_STATIC(((DCD_STM32_BTABLE_BASE) + (DCD_STM32_BTABLE_LENGTH))<=(PMA_LENGTH), "BTABLE does not fit in PMA RAM"); +TU_VERIFY_STATIC(((DCD_STM32_BTABLE_BASE) + (DCD_STM32_BTABLE_SIZE)) <= (FSDEV_PMA_SIZE), "BTABLE does not fit in PMA RAM"); TU_VERIFY_STATIC(((DCD_STM32_BTABLE_BASE) % 8) == 0, "BTABLE base must be aligned to 8 bytes"); //--------------------------------------------------------------------+ @@ -559,7 +559,7 @@ static void dcd_ep_ctr_rx_handler(uint32_t wIstr) // Must reset EP to NAK (in case it had been stalling) (though, maybe too late here) pcd_set_ep_rx_status(USB,0u,USB_EP_RX_NAK); pcd_set_ep_tx_status(USB,0u,USB_EP_TX_NAK); -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT dcd_event_setup_received(0, (uint8_t*)(USB_PMAADDR + pcd_get_ep_rx_address(USB, EPindex)), true); #else // The setup_received function uses memcpy, so this must first copy the setup data into @@ -786,7 +786,7 @@ static uint16_t dcd_pma_alloc(uint8_t ep_addr, uint16_t length) } // Ensure allocated buffer is aligned -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT length = (length + 3) & ~0x03; #else length = (length + 1) & ~0x01; @@ -798,7 +798,7 @@ static uint16_t dcd_pma_alloc(uint8_t ep_addr, uint16_t length) ep_buf_ptr = (uint16_t)(ep_buf_ptr + length); // increment buffer pointer // Verify no overflow - TU_ASSERT(ep_buf_ptr <= PMA_LENGTH, 0xFFFF); + TU_ASSERT(ep_buf_ptr <= FSDEV_PMA_SIZE, 0xFFFF); epXferCtl->pma_ptr = addr; epXferCtl->pma_alloc_size = length; @@ -1227,7 +1227,7 @@ void dcd_edpt_clear_stall (uint8_t rhport, uint8_t ep_addr) } } -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT static bool dcd_write_packet_memory(uint16_t dst, const void *__restrict src, uint16_t wNBytes) { const uint8_t* srcVal = src; @@ -1283,7 +1283,7 @@ static bool dcd_write_packet_memory(uint16_t dst, const void *__restrict src, ui __IO uint16_t *pdwVal; srcVal = src; - pdwVal = &pma[PMA_STRIDE*(dst>>1)]; + pdwVal = &pma[FSDEV_PMA_STRIDE * (dst >> 1)]; while (n--) { @@ -1291,7 +1291,7 @@ static bool dcd_write_packet_memory(uint16_t dst, const void *__restrict src, ui srcVal++; temp2 = temp1 | ((uint16_t)(((uint16_t)(*srcVal)) << 8U)) ; *pdwVal = temp2; - pdwVal += PMA_STRIDE; + pdwVal += FSDEV_PMA_STRIDE; srcVal++; } @@ -1323,7 +1323,7 @@ static bool dcd_write_packet_memory_ff(tu_fifo_t * ff, uint16_t dst, uint16_t wN // We want to read from the FIFO and write it into the PMA, if LIN part is ODD and has WRAPPED part, // last lin byte will be combined with wrapped part // To ensure PMA is always access aligned (dst aligned to 16 or 32 bit) -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT if((cnt_lin & 0x03) && cnt_wrap) { // Copy first linear part @@ -1386,7 +1386,7 @@ static bool dcd_write_packet_memory_ff(tu_fifo_t * ff, uint16_t dst, uint16_t wN return true; } -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT static bool dcd_read_packet_memory(void *__restrict dst, uint16_t src, uint16_t wNBytes) { uint8_t* dstVal = dst; @@ -1434,13 +1434,13 @@ static bool dcd_read_packet_memory(void *__restrict dst, uint16_t src, uint16_t __IO const uint16_t *pdwVal; uint32_t temp; - pdwVal = &pma[PMA_STRIDE*(src>>1)]; + pdwVal = &pma[FSDEV_PMA_STRIDE * (src >> 1)]; uint8_t *dstVal = (uint8_t*)dst; while (n--) { temp = *pdwVal; - pdwVal += PMA_STRIDE; + pdwVal += FSDEV_PMA_STRIDE; *dstVal++ = ((temp >> 0) & 0xFF); *dstVal++ = ((temp >> 8) & 0xFF); } @@ -1448,7 +1448,7 @@ static bool dcd_read_packet_memory(void *__restrict dst, uint16_t src, uint16_t if (wNBytes & 0x01) { temp = *pdwVal; - pdwVal += PMA_STRIDE; + pdwVal += FSDEV_PMA_STRIDE; *dstVal++ = ((temp >> 0) & 0xFF); } return true; @@ -1475,7 +1475,7 @@ static bool dcd_read_packet_memory_ff(tu_fifo_t * ff, uint16_t src, uint16_t wNB // We want to read from PMA and write it into the FIFO, if LIN part is ODD and has WRAPPED part, // last lin byte will be combined with wrapped part // To ensure PMA is always access aligned (src aligned to 16 or 32 bit) -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT if((cnt_lin & 0x03) && cnt_wrap) { // Copy first linear part diff --git a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h index d28eb0d9a..3f4db985d 100644 --- a/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h +++ b/src/portable/st/stm32_fsdev/dcd_stm32_fsdev_pvt_st.h @@ -28,7 +28,7 @@ // This file contains source copied from ST's HAL, and thus should have their copyright statement. -// PMA_LENGTH is PMA buffer size in bytes. +// FSDEV_PMA_SIZE is PMA buffer size in bytes. // On 512-byte devices, access with a stride of two words (use every other 16-bit address) // On 1024-byte devices, access with a stride of one word (use every 16-bit address) @@ -37,7 +37,7 @@ #if CFG_TUSB_MCU == OPT_MCU_STM32F0 #include "stm32f0xx.h" - #define PMA_LENGTH (1024u) + #define FSDEV_PMA_SIZE (1024u) // F0x2 models are crystal-less // All have internal D+ pull-up // 070RB: 2 x 16 bits/word memory LPM Support, BCD Support @@ -45,7 +45,7 @@ #elif CFG_TUSB_MCU == OPT_MCU_STM32F1 #include "stm32f1xx.h" - #define PMA_LENGTH (512u) + #define FSDEV_PMA_SIZE (512u) // NO internal Pull-ups // *B, and *C: 2 x 16 bits/word @@ -56,7 +56,7 @@ defined(STM32F303xB) || defined(STM32F303xC) || \ defined(STM32F373xC) #include "stm32f3xx.h" - #define PMA_LENGTH (512u) + #define FSDEV_PMA_SIZE (512u) // NO internal Pull-ups // *B, and *C: 1 x 16 bits/word // PMA dedicated to USB (no sharing with CAN) @@ -65,27 +65,27 @@ defined(STM32F302xD) || defined(STM32F302xE) || \ defined(STM32F303xD) || defined(STM32F303xE) #include "stm32f3xx.h" - #define PMA_LENGTH (1024u) + #define FSDEV_PMA_SIZE (1024u) // NO internal Pull-ups // *6, *8, *D, and *E: 2 x 16 bits/word LPM Support // When CAN clock is enabled, USB can use first 768 bytes ONLY. #elif CFG_TUSB_MCU == OPT_MCU_STM32L0 #include "stm32l0xx.h" - #define PMA_LENGTH (1024u) + #define FSDEV_PMA_SIZE (1024u) #elif CFG_TUSB_MCU == OPT_MCU_STM32L1 #include "stm32l1xx.h" - #define PMA_LENGTH (512u) + #define FSDEV_PMA_SIZE (512u) #elif CFG_TUSB_MCU == OPT_MCU_STM32G4 #include "stm32g4xx.h" - #define PMA_LENGTH (1024u) + #define FSDEV_PMA_SIZE (1024u) #elif CFG_TUSB_MCU == OPT_MCU_STM32G0 #include "stm32g0xx.h" - #define PMA_32BIT_ACCESS - #define PMA_LENGTH (2048u) + #define FSDEV_BUS_32BIT + #define FSDEV_PMA_SIZE (2048u) #undef USB_PMAADDR #define USB_PMAADDR USB_DRD_PMAADDR #define USB_TypeDef USB_DRD_TypeDef @@ -112,8 +112,8 @@ #elif CFG_TUSB_MCU == OPT_MCU_STM32H5 #include "stm32h5xx.h" - #define PMA_32BIT_ACCESS - #define PMA_LENGTH (2048u) + #define FSDEV_BUS_32BIT + #define FSDEV_PMA_SIZE (2048u) #undef USB_PMAADDR #define USB_PMAADDR USB_DRD_PMAADDR #define USB_TypeDef USB_DRD_TypeDef @@ -141,18 +141,18 @@ #elif CFG_TUSB_MCU == OPT_MCU_STM32WB #include "stm32wbxx.h" - #define PMA_LENGTH (1024u) + #define FSDEV_PMA_SIZE (1024u) /* ST provided header has incorrect value */ #undef USB_PMAADDR #define USB_PMAADDR USB1_PMAADDR #elif CFG_TUSB_MCU == OPT_MCU_STM32L4 #include "stm32l4xx.h" - #define PMA_LENGTH (1024u) + #define FSDEV_PMA_SIZE (1024u) #elif CFG_TUSB_MCU == OPT_MCU_STM32L5 #include "stm32l5xx.h" - #define PMA_LENGTH (1024u) + #define FSDEV_PMA_SIZE (1024u) #ifndef USB_PMAADDR #define USB_PMAADDR (USB_BASE + (USB_PMAADDR_NS - USB_BASE_NS)) @@ -164,15 +164,16 @@ #endif // For purposes of accessing the packet -#if ((PMA_LENGTH) == 512u) - #define PMA_STRIDE (2u) -#elif ((PMA_LENGTH) == 1024u) - #define PMA_STRIDE (1u) +#if ((FSDEV_PMA_SIZE) == 512u) + #define FSDEV_PMA_STRIDE (2u) +#elif ((FSDEV_PMA_SIZE) == 1024u) + #define FSDEV_PMA_STRIDE (1u) #endif +// The fsdev_bus_t type can be used for both register and PMA access necessities // For type-safety create a new macro for the volatile address of PMAADDR // The compiler should warn us if we cast it to a non-volatile type? -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT typedef uint32_t fsdev_bus_t; static __IO uint32_t * const pma32 = (__IO uint32_t*)USB_PMAADDR; @@ -184,7 +185,7 @@ static __IO uint16_t * const pma = (__IO uint16_t*)USB_PMAADDR; TU_ATTR_ALWAYS_INLINE static inline __IO uint16_t * pcd_btable_word_ptr(USB_TypeDef * USBx, size_t x) { size_t total_word_offset = (((USBx)->BTABLE)>>1) + x; - total_word_offset *= PMA_STRIDE; + total_word_offset *= FSDEV_PMA_STRIDE; return &(pma[total_word_offset]); } @@ -215,7 +216,7 @@ TU_ATTR_ALWAYS_INLINE static inline uint16_t pcd_aligned_buffer_size(uint16_t si /* SetENDPOINT */ TU_ATTR_ALWAYS_INLINE static inline void pcd_set_endpoint(USB_TypeDef * USBx, uint32_t bEpIdx, uint32_t wRegValue) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; __O uint32_t *reg = (__O uint32_t *)(USB_DRD_BASE + bEpIdx*4); *reg = wRegValue; @@ -227,7 +228,7 @@ TU_ATTR_ALWAYS_INLINE static inline void pcd_set_endpoint(USB_TypeDef * USBx, ui /* GetENDPOINT */ TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_endpoint(USB_TypeDef * USBx, uint32_t bEpIdx) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; __I uint32_t *reg = (__I uint32_t *)(USB_DRD_BASE + bEpIdx*4); #else @@ -282,7 +283,7 @@ TU_ATTR_ALWAYS_INLINE static inline void pcd_clear_tx_ep_ctr(USB_TypeDef * USBx, */ TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_ep_tx_cnt(USB_TypeDef * USBx, uint32_t bEpIdx) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; return (pma32[2*bEpIdx] & 0x03FF0000) >> 16; #else @@ -293,7 +294,7 @@ TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_ep_tx_cnt(USB_TypeDef * USB TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_ep_rx_cnt(USB_TypeDef * USBx, uint32_t bEpIdx) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; return (pma32[2*bEpIdx + 1] & 0x03FF0000) >> 16; #else @@ -320,7 +321,7 @@ TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_address(USB_TypeDef * USBx, TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_ep_tx_address(USB_TypeDef * USBx, uint32_t bEpIdx) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; return pma32[2*bEpIdx] & 0x0000FFFFu ; #else @@ -330,7 +331,7 @@ TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_ep_tx_address(USB_TypeDef * TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_ep_rx_address(USB_TypeDef * USBx, uint32_t bEpIdx) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; return pma32[2*bEpIdx + 1] & 0x0000FFFFu; #else @@ -340,7 +341,7 @@ TU_ATTR_ALWAYS_INLINE static inline uint32_t pcd_get_ep_rx_address(USB_TypeDef * TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_tx_address(USB_TypeDef * USBx, uint32_t bEpIdx, uint32_t addr) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; pma32[2*bEpIdx] = (pma32[2*bEpIdx] & 0xFFFF0000u) | (addr & 0x0000FFFCu); #else @@ -350,7 +351,7 @@ TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_tx_address(USB_TypeDef * USB TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_rx_address(USB_TypeDef * USBx, uint32_t bEpIdx, uint32_t addr) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; pma32[2*bEpIdx + 1] = (pma32[2*bEpIdx + 1] & 0xFFFF0000u) | (addr & 0x0000FFFCu); #else @@ -360,7 +361,7 @@ TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_rx_address(USB_TypeDef * USB TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_tx_cnt(USB_TypeDef * USBx, uint32_t bEpIdx, uint32_t wCount) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; pma32[2*bEpIdx] = (pma32[2*bEpIdx] & ~0x03FF0000u) | ((wCount & 0x3FFu) << 16); #else @@ -371,7 +372,7 @@ TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_tx_cnt(USB_TypeDef * USBx, u TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_rx_cnt(USB_TypeDef * USBx, uint32_t bEpIdx, uint32_t wCount) { -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; pma32[2*bEpIdx + 1] = (pma32[2*bEpIdx + 1] & ~0x03FF0000u) | ((wCount & 0x3FFu) << 16); #else @@ -383,7 +384,7 @@ TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_rx_cnt(USB_TypeDef * USBx, u TU_ATTR_ALWAYS_INLINE static inline void pcd_set_ep_blsize_num_blocks(USB_TypeDef * USBx, uint32_t rxtx_idx, uint32_t blocksize, uint32_t numblocks) { /* Encode into register. When BLSIZE==1, we need to subtract 1 block count */ -#ifdef PMA_32BIT_ACCESS +#ifdef FSDEV_BUS_32BIT (void) USBx; pma32[rxtx_idx] = (pma32[rxtx_idx] & 0x0000FFFFu) | (blocksize << 31) | ((numblocks - blocksize) << 26); #else -- cgit v1.3.1