From e93e47ae0434b53a20d1c62de62f34377bc8b492 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 16 Oct 2025 10:03:10 +0700 Subject: add tu_div_round_nearest() (only handle positive) to replace DIV_ROUND_CLOSEST() to remove the need of typeof --- src/class/cdc/cdc_host.c | 4 ++-- 1 file changed, 2 insertions(+), 2 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index beef03eff..b59b0d641 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -1365,7 +1365,7 @@ static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) { uint8_t divfrac[8] = {0, 3, 2, 4, 1, 5, 6, 7}; uint32_t divisor; /* divisor shifted 3 bits to the left */ - uint32_t divisor3 = DIV_ROUND_CLOSEST(base, 2 * baud); + uint32_t divisor3 = tu_div_round_nearest(base, 2 * baud); divisor = divisor3 >> 3; divisor |= (uint32_t) divfrac[divisor3 & 0x7] << 14; /* Deal with special cases for highest baud rates. */ @@ -1387,7 +1387,7 @@ static uint32_t ftdi_2232h_baud_base_to_divisor(uint32_t baud, uint32_t base) { uint32_t divisor3; /* hi-speed baud rate is 10-bit sampling instead of 16-bit */ - divisor3 = DIV_ROUND_CLOSEST(8 * base, 10 * baud); + divisor3 = tu_div_round_nearest(8 * base, 10 * baud); divisor = divisor3 >> 3; divisor |= (uint32_t) divfrac[divisor3 & 0x7] << 14; -- cgit v1.3.1 From 2f3b21a1e58e5c03c61e83920d77f8c27540dfd5 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 16 Oct 2025 10:44:22 +0700 Subject: fix some warnings detected by pvs-studio --- examples/device/board_test/src/main.c | 3 +- examples/device/cdc_msc/src/msc_disk.c | 8 +++-- examples/device/cdc_msc_freertos/src/msc_disk.c | 30 ++++------------- .../device/dynamic_configuration/src/msc_disk.c | 39 +++++----------------- examples/device/msc_dual_lun/src/msc_disk_dual.c | 10 +++--- hw/bsp/stm32h7/family.c | 2 +- src/class/cdc/cdc_device.c | 2 +- src/class/cdc/cdc_host.c | 1 - src/common/tusb_types.h | 22 ++++++------ src/device/usbd.h | 4 +-- 10 files changed, 42 insertions(+), 79 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/examples/device/board_test/src/main.c b/examples/device/board_test/src/main.c index d91a8760e..872a97108 100644 --- a/examples/device/board_test/src/main.c +++ b/examples/device/board_test/src/main.c @@ -45,6 +45,7 @@ int main(void) { uint32_t start_ms = 0; bool led_state = false; + const size_t hello_len = strlen(HELLO_STR); while (1) { uint32_t interval_ms = board_button_read() ? BLINK_PRESSED : BLINK_UNPRESSED; @@ -66,7 +67,7 @@ int main(void) { printf(HELLO_STR); #ifndef LOGGER_UART - board_uart_write(HELLO_STR, strlen(HELLO_STR)); + board_uart_write(HELLO_STR, hello_len); #endif } diff --git a/examples/device/cdc_msc/src/msc_disk.c b/examples/device/cdc_msc/src/msc_disk.c index 96f9f19ec..6c112aa8b 100644 --- a/examples/device/cdc_msc/src/msc_disk.c +++ b/examples/device/cdc_msc/src/msc_disk.c @@ -126,9 +126,9 @@ uint32_t tud_msc_inquiry2_cb(uint8_t lun, scsi_inquiry_resp_t *inquiry_resp, uin const char pid[] = "Mass Storage"; const char rev[] = "1.0"; - memcpy(inquiry_resp->vendor_id, vid, strlen(vid)); - memcpy(inquiry_resp->product_id, pid, strlen(pid)); - memcpy(inquiry_resp->product_rev, rev, strlen(rev)); + strncpy((char*) inquiry_resp->vendor_id, vid, 8); + strncpy((char*) inquiry_resp->product_id, pid, 16); + strncpy((char*) inquiry_resp->product_rev, rev, 4); return sizeof(scsi_inquiry_resp_t); // 36 bytes } @@ -242,6 +242,8 @@ int32_t tud_msc_scsi_cb(uint8_t lun, uint8_t const scsi_cmd[16], void *buffer, u // negative means error -> tinyusb could stall and/or response with failed status return -1; } + + return -1; } #endif diff --git a/examples/device/cdc_msc_freertos/src/msc_disk.c b/examples/device/cdc_msc_freertos/src/msc_disk.c index c09cf67d6..38345ca4d 100644 --- a/examples/device/cdc_msc_freertos/src/msc_disk.c +++ b/examples/device/cdc_msc_freertos/src/msc_disk.c @@ -198,9 +198,9 @@ uint32_t tud_msc_inquiry2_cb(uint8_t lun, scsi_inquiry_resp_t* inquiry_resp, uin const char pid[] = "Mass Storage"; const char rev[] = "1.0"; - memcpy(inquiry_resp->vendor_id, vid, strlen(vid)); - memcpy(inquiry_resp->product_id, pid, strlen(pid)); - memcpy(inquiry_resp->product_rev, rev, strlen(rev)); + strncpy((char*) inquiry_resp->vendor_id, vid, 8); + strncpy((char*) inquiry_resp->product_id, pid, 16); + strncpy((char*) inquiry_resp->product_rev, rev, 4); return sizeof(scsi_inquiry_resp_t); // 36 bytes } @@ -324,12 +324,8 @@ int32_t tud_msc_write10_cb(uint8_t lun, uint32_t lba, uint32_t offset, uint8_t* // - READ10 and WRITE10 has their own callbacks int32_t tud_msc_scsi_cb (uint8_t lun, uint8_t const scsi_cmd[16], void* buffer, uint16_t bufsize) { // read10 & write10 has their own callback and MUST not be handled here - - void const *response = NULL; - int32_t resplen = 0; - - // most scsi handled is input - bool in_xfer = true; + (void) buffer; + (void) bufsize; switch (scsi_cmd[0]) { default: @@ -337,22 +333,10 @@ int32_t tud_msc_scsi_cb (uint8_t lun, uint8_t const scsi_cmd[16], void* buffer, tud_msc_set_sense(lun, SCSI_SENSE_ILLEGAL_REQUEST, 0x20, 0x00); // negative means error -> tinyusb could stall and/or response with failed status - resplen = -1; - break; - } - - // return resplen must not larger than bufsize - if (resplen > bufsize) { resplen = bufsize; } - - if (response && (resplen > 0)) { - if (in_xfer) { - memcpy(buffer, response, (size_t) resplen); - } else { - // SCSI output - } + return -1; } - return (int32_t) resplen; + return -1; } #endif diff --git a/examples/device/dynamic_configuration/src/msc_disk.c b/examples/device/dynamic_configuration/src/msc_disk.c index ebc86e260..e57f9e3f3 100644 --- a/examples/device/dynamic_configuration/src/msc_disk.c +++ b/examples/device/dynamic_configuration/src/msc_disk.c @@ -126,9 +126,9 @@ uint32_t tud_msc_inquiry2_cb(uint8_t lun, scsi_inquiry_resp_t *inquiry_resp, uin const char pid[] = "Mass Storage"; const char rev[] = "1.0"; - memcpy(inquiry_resp->vendor_id, vid, strlen(vid)); - memcpy(inquiry_resp->product_id, pid, strlen(pid)); - memcpy(inquiry_resp->product_rev, rev, strlen(rev)); + strncpy((char*) inquiry_resp->vendor_id, vid, 8); + strncpy((char*) inquiry_resp->product_id, pid, 16); + strncpy((char*) inquiry_resp->product_rev, rev, 4); return sizeof(scsi_inquiry_resp_t); // 36 bytes } @@ -211,42 +211,21 @@ int32_t tud_msc_write10_cb(uint8_t lun, uint32_t lba, uint32_t offset, uint8_t* // Callback invoked when received an SCSI command not in built-in list below // - READ_CAPACITY10, READ_FORMAT_CAPACITY, INQUIRY, MODE_SENSE6, REQUEST_SENSE // - READ10 and WRITE10 has their own callbacks -int32_t tud_msc_scsi_cb (uint8_t lun, uint8_t const scsi_cmd[16], void* buffer, uint16_t bufsize) -{ +int32_t tud_msc_scsi_cb (uint8_t lun, uint8_t const scsi_cmd[16], void* buffer, uint16_t bufsize) { // read10 & write10 has their own callback and MUST not be handled here + (void) buffer; + (void) bufsize; - void const* response = NULL; - int32_t resplen = 0; - - // most scsi handled is input - bool in_xfer = true; - - switch (scsi_cmd[0]) - { + switch (scsi_cmd[0]) { default: // Set Sense = Invalid Command Operation tud_msc_set_sense(lun, SCSI_SENSE_ILLEGAL_REQUEST, 0x20, 0x00); // negative means error -> tinyusb could stall and/or response with failed status - resplen = -1; - break; - } - - // return resplen must not larger than bufsize - if ( resplen > bufsize ) resplen = bufsize; - - if ( response && (resplen > 0) ) - { - if(in_xfer) - { - memcpy(buffer, response, (size_t) resplen); - }else - { - // SCSI output - } + return -1; } - return resplen; + return -1; } #endif diff --git a/examples/device/msc_dual_lun/src/msc_disk_dual.c b/examples/device/msc_dual_lun/src/msc_disk_dual.c index 775fa047e..694da11db 100644 --- a/examples/device/msc_dual_lun/src/msc_disk_dual.c +++ b/examples/device/msc_dual_lun/src/msc_disk_dual.c @@ -217,9 +217,9 @@ uint32_t tud_msc_inquiry2_cb(uint8_t lun, scsi_inquiry_resp_t *inquiry_resp, uin const char pid[] = "Mass Storage"; const char rev[] = "1.0"; - memcpy(inquiry_resp->vendor_id, vid, strlen(vid)); - memcpy(inquiry_resp->product_id, pid, strlen(pid)); - memcpy(inquiry_resp->product_rev, rev, strlen(rev)); + strncpy((char*) inquiry_resp->vendor_id, vid, 8); + strncpy((char*) inquiry_resp->product_id, pid, 16); + strncpy((char*) inquiry_resp->product_rev, rev, 4); return sizeof(scsi_inquiry_resp_t); // 36 bytes } @@ -227,9 +227,7 @@ uint32_t tud_msc_inquiry2_cb(uint8_t lun, scsi_inquiry_resp_t *inquiry_resp, uin // Invoked when received Test Unit Ready command. // return true allowing host to read/write this LUN e.g SD card inserted bool tud_msc_test_unit_ready_cb(uint8_t lun) { - if ( lun == 1 && board_button_read() ) return false; - - return true; // RAM disk is always ready + return ( lun == 1 && board_button_read() ) ? false : true; } // Invoked when received SCSI_CMD_READ_CAPACITY_10 and SCSI_CMD_READ_FORMAT_CAPACITY to determine the disk size diff --git a/hw/bsp/stm32h7/family.c b/hw/bsp/stm32h7/family.c index 382b878b7..4f80b15ff 100644 --- a/hw/bsp/stm32h7/family.c +++ b/hw/bsp/stm32h7/family.c @@ -131,7 +131,7 @@ void board_init(void) { #elif CFG_TUSB_OS == OPT_OS_FREERTOS // Explicitly disable systick to prevent its ISR runs before scheduler start - SysTick->CTRL &= ~1U; + SysTick->CTRL &= ~1UL; // If freeRTOS is used, IRQ priority is limit by max syscall ( smaller is higher ) #ifdef USB_OTG_FS_PERIPH_BASE diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index f1c4a3bbf..577a92a52 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -533,7 +533,7 @@ bool cdcd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_ // Check for wanted char and invoke callback if needed if (((signed char) p_cdc->wanted_char) != -1) { for (uint32_t i = 0; i < xferred_bytes; i++) { - if ((p_cdc->wanted_char == p_epbuf->epout[i]) && !tu_fifo_empty(&p_cdc->rx_ff)) { + if ((p_cdc->wanted_char == (char) p_epbuf->epout[i]) && !tu_fifo_empty(&p_cdc->rx_ff)) { tud_cdc_rx_wanted_cb(itf, p_cdc->wanted_char); } } diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index b59b0d641..3fc6a9adf 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -1136,7 +1136,6 @@ static inline bool ftdi_sio_reset(cdch_interface_t *p_cdc, tuh_xfer_cb_t complet // internal control complete to update state such as line state, line_coding static void ftdi_internal_control_complete(cdch_interface_t* p_cdc, tuh_xfer_t *xfer) { - TU_VERIFY(xfer->result == XFER_RESULT_SUCCESS,); const tusb_control_request_t * setup = xfer->setup; if (xfer->result == XFER_RESULT_SUCCESS) { if (setup->bRequest == FTDI_SIO_SET_MODEM_CTRL_REQUEST && diff --git a/src/common/tusb_types.h b/src/common/tusb_types.h index b3ef1e9c9..ec01bbf0f 100644 --- a/src/common/tusb_types.h +++ b/src/common/tusb_types.h @@ -100,10 +100,10 @@ typedef enum { } tusb_xfer_type_t; typedef enum { - TUSB_DIR_OUT = 0, - TUSB_DIR_IN = 1, + TUSB_DIR_OUT = 0u, + TUSB_DIR_IN = 1u, - TUSB_DIR_IN_MASK = 0x80 + TUSB_DIR_IN_MASK = 0x80u } tusb_dir_t; enum { @@ -350,7 +350,7 @@ typedef struct TU_ATTR_PACKED { uint8_t bNumConfigurations ; ///< Number of possible configurations. } tusb_desc_device_t; -TU_VERIFY_STATIC( sizeof(tusb_desc_device_t) == 18, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_desc_device_t) == 18u, "size is not correct"); // USB Binary Device Object Store (BOS) Descriptor typedef struct TU_ATTR_PACKED { @@ -360,7 +360,7 @@ typedef struct TU_ATTR_PACKED { uint8_t bNumDeviceCaps ; ///< Number of device capability descriptors in the BOS } tusb_desc_bos_t; -TU_VERIFY_STATIC( sizeof(tusb_desc_bos_t) == 5, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_desc_bos_t) == 5u, "size is not correct"); /// USB Configuration Descriptor typedef struct TU_ATTR_PACKED { @@ -375,7 +375,7 @@ typedef struct TU_ATTR_PACKED { uint8_t bMaxPower ; ///< Maximum power consumption of the USB device from the bus in this specific configuration when the device is fully operational. Expressed in 2 mA units (i.e., 50 = 100 mA). } tusb_desc_configuration_t; -TU_VERIFY_STATIC( sizeof(tusb_desc_configuration_t) == 9, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_desc_configuration_t) == 9u, "size is not correct"); /// USB Interface Descriptor typedef struct TU_ATTR_PACKED { @@ -391,7 +391,7 @@ typedef struct TU_ATTR_PACKED { uint8_t iInterface ; ///< Index of string descriptor describing this interface } tusb_desc_interface_t; -TU_VERIFY_STATIC( sizeof(tusb_desc_interface_t) == 9, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_desc_interface_t) == 9u, "size is not correct"); /// USB Endpoint Descriptor typedef struct TU_ATTR_PACKED { @@ -411,7 +411,7 @@ typedef struct TU_ATTR_PACKED { uint8_t bInterval ; // Polling interval, in frames or microframes depending on the operating speed } tusb_desc_endpoint_t; -TU_VERIFY_STATIC( sizeof(tusb_desc_endpoint_t) == 7, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_desc_endpoint_t) == 7u, "size is not correct"); /// USB Other Speed Configuration Descriptor typedef struct TU_ATTR_PACKED { @@ -441,7 +441,7 @@ typedef struct TU_ATTR_PACKED { uint8_t bReserved ; ///< Reserved for future use, must be zero } tusb_desc_device_qualifier_t; -TU_VERIFY_STATIC( sizeof(tusb_desc_device_qualifier_t) == 10, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_desc_device_qualifier_t) == 10u, "size is not correct"); /// USB Interface Association Descriptor (IAD ECN) typedef struct TU_ATTR_PACKED { @@ -458,7 +458,7 @@ typedef struct TU_ATTR_PACKED { uint8_t iFunction ; ///< Index of the string descriptor describing the interface association. } tusb_desc_interface_assoc_t; -TU_VERIFY_STATIC( sizeof(tusb_desc_interface_assoc_t) == 8, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_desc_interface_assoc_t) == 8u, "size is not correct"); // USB String Descriptor typedef struct TU_ATTR_PACKED { @@ -528,7 +528,7 @@ typedef struct TU_ATTR_PACKED { uint16_t wLength; } tusb_control_request_t; -TU_VERIFY_STATIC( sizeof(tusb_control_request_t) == 8, "size is not correct"); +TU_VERIFY_STATIC( sizeof(tusb_control_request_t) == 8u, "size is not correct"); TU_ATTR_PACKED_END // End of all packed definitions TU_ATTR_BIT_FIELD_ORDER_END diff --git a/src/device/usbd.h b/src/device/usbd.h index a4104e47d..c62986150 100644 --- a/src/device/usbd.h +++ b/src/device/usbd.h @@ -299,7 +299,7 @@ bool tud_vendor_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_requ // Interface number, string index, protocol, report descriptor len, EP In address, size & polling interval #define TUD_HID_DESCRIPTOR(_itfnum, _stridx, _boot_protocol, _report_desc_len, _epin, _epsize, _ep_interval) \ /* Interface */\ - 9, TUSB_DESC_INTERFACE, _itfnum, 0, 1, TUSB_CLASS_HID, (uint8_t)((_boot_protocol) ? (uint8_t)HID_SUBCLASS_BOOT : 0), _boot_protocol, _stridx,\ + 9, TUSB_DESC_INTERFACE, _itfnum, 0, 1, TUSB_CLASS_HID, (uint8_t)((_boot_protocol != HID_ITF_PROTOCOL_NONE) ? (uint8_t)HID_SUBCLASS_BOOT : 0u), _boot_protocol, _stridx,\ /* HID descriptor */\ 9, HID_DESC_TYPE_HID, U16_TO_U8S_LE(0x0111), 0, 1, HID_DESC_TYPE_REPORT, U16_TO_U8S_LE(_report_desc_len),\ /* Endpoint In */\ @@ -312,7 +312,7 @@ bool tud_vendor_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_requ // Interface number, string index, protocol, report descriptor len, EP OUT & IN address, size & polling interval #define TUD_HID_INOUT_DESCRIPTOR(_itfnum, _stridx, _boot_protocol, _report_desc_len, _epout, _epin, _epsize, _ep_interval) \ /* Interface */\ - 9, TUSB_DESC_INTERFACE, _itfnum, 0, 2, TUSB_CLASS_HID, (uint8_t)((_boot_protocol) ? (uint8_t)HID_SUBCLASS_BOOT : 0), _boot_protocol, _stridx,\ + 9, TUSB_DESC_INTERFACE, _itfnum, 0, 2, TUSB_CLASS_HID, (uint8_t)((_boot_protocol != HID_ITF_PROTOCOL_NONE) ? (uint8_t)HID_SUBCLASS_BOOT : 0u), _boot_protocol, _stridx,\ /* HID descriptor */\ 9, HID_DESC_TYPE_HID, U16_TO_U8S_LE(0x0111), 0, 1, HID_DESC_TYPE_REPORT, U16_TO_U8S_LE(_report_desc_len),\ /* Endpoint Out */\ -- cgit v1.3.1 From 7f173ab5ed6a80a5fd6780779fe63fb97d2be0e9 Mon Sep 17 00:00:00 2001 From: hathach Date: Sat, 8 Nov 2025 15:54:02 +0700 Subject: fix more alerts --- .PVS-Studio/.pvsconfig | 1 + .clang-format | 1 + .github/workflows/static_analysis.yml | 3 +- examples/device/cdc_uac2/src/cdc_app.c | 2 +- examples/device/net_lwip_webserver/src/arch/cc.h | 6 +- examples/host/cdc_msc_hid/src/cdc_app.c | 2 +- src/class/audio/audio_device.c | 35 +- src/class/cdc/cdc_host.c | 81 +++-- src/class/msc/msc_host.c | 5 +- src/common/tusb_debug.h | 16 +- src/common/tusb_fifo.c | 414 ++++++++++------------- src/common/tusb_fifo.h | 25 +- src/common/tusb_private.h | 21 +- src/tusb.c | 38 ++- 14 files changed, 314 insertions(+), 336 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/.PVS-Studio/.pvsconfig b/.PVS-Studio/.pvsconfig index d8654b077..c9e60c996 100644 --- a/.PVS-Studio/.pvsconfig +++ b/.PVS-Studio/.pvsconfig @@ -10,6 +10,7 @@ //-V::2520 [MISRA-C-16.3] Every switch-clause should be terminated by an unconditional 'break' statement //-V:memcpy:2547 [MISRA-C-17.7] The return value of non-void function 'memcpy' should be used. //-V:memmove:2547 [MISRA-C-17.7] The return value of non-void function 'memmove' should be used. +//-V:printf:2547 [MISRA-C-17.7] //-V::2584::{gintsts} dwc2 //-V::2600 [MISRA-C-21.6] The function with the 'printf' name should not be used. //+V2614 DISABLE_LENGHT_LIMIT_CHECK:YES diff --git a/.clang-format b/.clang-format index c7d769172..907dd7cdd 100644 --- a/.clang-format +++ b/.clang-format @@ -87,5 +87,6 @@ SpacesInAngles: false SpacesInConditionalStatement: false SpacesInCStyleCastParentheses: false SpacesInParentheses: false +SortIncludes: false TabWidth: 2 ... diff --git a/.github/workflows/static_analysis.yml b/.github/workflows/static_analysis.yml index 227f5e103..a89cdc279 100644 --- a/.github/workflows/static_analysis.yml +++ b/.github/workflows/static_analysis.yml @@ -118,13 +118,14 @@ jobs: sudo apt update sudo apt install pvs-studio pvs-studio-analyzer credentials ${{ secrets.PVS_STUDIO_CREDENTIALS }} + pvs-studio-analyzer --version - name: Analyze run: | mkdir -p build cmake examples -B build -G Ninja -DBOARD=${{ matrix.board }} -DCMAKE_BUILD_TYPE=MinSizeRel cmake --build build - pvs-studio-analyzer analyze -R .PVS-Studio/.pvsconfig -f build/compile_commands.json --exclude-path hw/mcu/ --exclude-path lib/ -j + pvs-studio-analyzer analyze -f build/compile_commands.json -R .PVS-Studio/.pvsconfig -j4 --security-related-issues --misra-cpp-version 2008 --misra-c-version 2023 --use-old-parser -e lib/ -e hw/mcu/ -e */iar/cxarm/ -e pico-sdk/ plog-converter -t sarif -o pvs-studio-${{ matrix.board }}.sarif PVS-Studio.log - name: Upload SARIF diff --git a/examples/device/cdc_uac2/src/cdc_app.c b/examples/device/cdc_uac2/src/cdc_app.c index e3ad8a9ac..6d18a0e69 100644 --- a/examples/device/cdc_uac2/src/cdc_app.c +++ b/examples/device/cdc_uac2/src/cdc_app.c @@ -48,7 +48,7 @@ void tud_cdc_rx_cb(uint8_t itf) { // connected() check for DTR bit // Most but not all terminal client set this when making connection if (tud_cdc_connected()) { - if (tud_cdc_available()) { + if (tud_cdc_available() > 0) { count = tud_cdc_n_read(itf, buf, sizeof(buf)); (void) count; diff --git a/examples/device/net_lwip_webserver/src/arch/cc.h b/examples/device/net_lwip_webserver/src/arch/cc.h index 9f30b91cb..c3fc12dda 100644 --- a/examples/device/net_lwip_webserver/src/arch/cc.h +++ b/examples/device/net_lwip_webserver/src/arch/cc.h @@ -29,8 +29,8 @@ * Author: Adam Dunkels * */ -#ifndef __CC_H__ -#define __CC_H__ +#ifndef CC_H__ +#define CC_H__ //#include "cpu.h" @@ -72,4 +72,4 @@ typedef int sys_prot_t; #define LWIP_PLATFORM_ASSERT(x) do { if(!(x)) while(1); } while(0) -#endif /* __CC_H__ */ +#endif /* CC_H__ */ diff --git a/examples/host/cdc_msc_hid/src/cdc_app.c b/examples/host/cdc_msc_hid/src/cdc_app.c index d3daedffc..4c2c5e807 100644 --- a/examples/host/cdc_msc_hid/src/cdc_app.c +++ b/examples/host/cdc_msc_hid/src/cdc_app.c @@ -51,7 +51,7 @@ void cdc_app_task(void) { for (uint8_t idx = 0; idx < CFG_TUH_CDC; idx++) { if (tuh_cdc_mounted(idx)) { // console --> cdc interfaces - if (count) { + if (count > 0) { tuh_cdc_write(idx, buf, count); tuh_cdc_write_flush(idx); } diff --git a/src/class/audio/audio_device.c b/src/class/audio/audio_device.c index d47d87a69..f074b7d02 100644 --- a/src/class/audio/audio_device.c +++ b/src/class/audio/audio_device.c @@ -503,7 +503,7 @@ static bool audiod_rx_xfer_isr(uint8_t rhport, audiod_function_t* audio, uint16_ #if USE_LINEAR_BUFFER_RX // Data currently is in linear buffer, copy into EP OUT FIFO - TU_VERIFY(tu_fifo_write_n(&audio->ep_out_ff, audio->lin_buf_out, n_bytes_received)); + TU_VERIFY(0 < tu_fifo_write_n(&audio->ep_out_ff, audio->lin_buf_out, n_bytes_received)); // Schedule for next receive TU_VERIFY(usbd_edpt_xfer(rhport, audio->ep_out, audio->lin_buf_out, audio->ep_out_sz), false); @@ -672,8 +672,12 @@ uint32_t tud_audio_feedback_update(uint8_t func_id, uint32_t cycles) { // The size of isochronous packets created by the device must be within the limits specified in FMT-2.0 section 2.3.1.1. // This means that the deviation of actual packet size from nominal size must not exceed +/- one audio slot // (audio slot = channel count samples). - if (feedback > audio->feedback.max_value) feedback = audio->feedback.max_value; - if (feedback < audio->feedback.min_value) feedback = audio->feedback.min_value; + if (feedback > audio->feedback.max_value) { + feedback = audio->feedback.max_value; + } + if (feedback < audio->feedback.min_value) { + feedback = audio->feedback.min_value; + } tud_audio_n_fb_set(func_id, feedback); @@ -714,7 +718,6 @@ void audiod_init(void) { // Initialize IN EP FIFO if required #if CFG_TUD_AUDIO_ENABLE_EP_IN - switch (i) { #if CFG_TUD_AUDIO_FUNC_1_EP_IN_SW_BUF_SZ > 0 case 0: @@ -883,9 +886,11 @@ uint16_t audiod_open(uint8_t rhport, tusb_desc_interface_t const *itf_desc, uint || tu_desc_type(p_desc) == TUSB_DESC_INTERFACE_ASSOCIATION) { break; } else if (tu_desc_type(p_desc) == TUSB_DESC_INTERFACE && ((tusb_desc_interface_t const *) p_desc)->bInterfaceSubClass == AUDIO_SUBCLASS_STREAMING) { - if (_audiod_fct[i].p_desc_as == 0) { + if (_audiod_fct[i].p_desc_as == NULL) { _audiod_fct[i].p_desc_as = p_desc; } + } else { + // nothing to do } total_len += p_desc[0]; p_desc = tu_desc_next(p_desc); @@ -957,19 +962,19 @@ uint16_t audiod_open(uint8_t rhport, tusb_desc_interface_t const *itf_desc, uint } #if CFG_TUD_AUDIO_ENABLE_EP_IN - if (ep_in) { + if (ep_in != 0) { usbd_edpt_iso_alloc(rhport, ep_in, ep_in_size); } #endif #if CFG_TUD_AUDIO_ENABLE_EP_OUT - if (ep_out) { + if (ep_out != 0) { usbd_edpt_iso_alloc(rhport, ep_out, ep_out_size); } #endif #if CFG_TUD_AUDIO_ENABLE_FEEDBACK_EP - if (ep_fb) { + if (ep_fb != 0) { usbd_edpt_iso_alloc(rhport, ep_fb, 4); } #endif @@ -998,6 +1003,8 @@ uint16_t audiod_open(uint8_t rhport, tusb_desc_interface_t const *itf_desc, uint if (tu_unaligned_read16(p_desc + 4) == AUDIO_TERM_TYPE_USB_STREAMING) { _audiod_fct[i].bclock_id_tx = p_desc[8]; } + } else { + // nothing to do } p_desc = tu_desc_next(p_desc); } @@ -1458,6 +1465,8 @@ bool audiod_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_ return audiod_control_request(rhport, request); } else if (stage == CONTROL_STAGE_DATA) { return audiod_control_complete(rhport, request); + } else { + // nothing to do } return true; @@ -1633,8 +1642,12 @@ static void audiod_fb_fifo_count_update(audiod_function_t *audio, uint16_t lvl_n feedback = audio->feedback.compute.fifo_count.nom_value - (ff_lvl - ff_thr) * rate[1]; } - if (feedback > audio->feedback.max_value) feedback = audio->feedback.max_value; - if (feedback < audio->feedback.min_value) feedback = audio->feedback.min_value; + if (feedback > audio->feedback.max_value) { + feedback = audio->feedback.max_value; + } + if (feedback < audio->feedback.min_value) { + feedback = audio->feedback.min_value; + } audio->feedback.value = feedback; } @@ -1754,7 +1767,7 @@ static bool audiod_verify_entity_exists(uint8_t itf, uint8_t entityID, uint8_t * static bool audiod_verify_itf_exists(uint8_t itf, uint8_t *func_id) { uint8_t i; for (i = 0; i < CFG_TUD_AUDIO; i++) { - if (_audiod_fct[i].p_desc) { + if (_audiod_fct[i].p_desc != NULL) { // Get pointer at beginning and end uint8_t const *p_desc = _audiod_fct[i].p_desc; uint8_t const *p_desc_end = _audiod_fct[i].p_desc + _audiod_fct[i].desc_length; diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 3fc6a9adf..7fdf0a7b9 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -602,7 +602,7 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const *line_coding, p_cdc->requested_line.coding = *line_coding; p_cdc->user_complete_cb = complete_cb; - if (driver->set_line_coding) { + if (driver->set_line_coding != NULL) { // driver support set_line_coding request TU_VERIFY(driver->set_line_coding(p_cdc, complete_cb ? cdch_internal_control_complete : NULL, user_data)); @@ -611,7 +611,7 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const *line_coding, } } else { // driver does not support set_line_coding and need 2 stage to set baudrate and data format separately - if (complete_cb) { + if (complete_cb != NULL) { // non-blocking TU_VERIFY(driver->set_baudrate(p_cdc, cdch_set_line_coding_stage1_baudrate_complete, user_data)); } else { @@ -619,7 +619,7 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const *line_coding, xfer_result_t result = XFER_RESULT_INVALID; TU_VERIFY(driver->set_baudrate(p_cdc, NULL, (uintptr_t) &result)); - if (user_data) { + if (user_data != 0) { *((xfer_result_t *) user_data) = result; } TU_VERIFY(result == XFER_RESULT_SUCCESS); @@ -627,7 +627,7 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const *line_coding, result = XFER_RESULT_INVALID; TU_VERIFY(driver->set_data_format(p_cdc, NULL, (uintptr_t) &result)); - if (user_data) { + if (user_data != 0) { *((xfer_result_t *) user_data) = result; } TU_VERIFY(result == XFER_RESULT_SUCCESS); @@ -777,6 +777,8 @@ bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_d } } } + } else { + // not supported class } return false; @@ -894,7 +896,7 @@ static void cdch_internal_control_complete(tuh_xfer_t *xfer) { // Invoke application callback xfer->complete_cb = p_cdc->user_complete_cb; - if (xfer->complete_cb) { + if (xfer->complete_cb != NULL) { xfer->complete_cb(xfer); } } @@ -910,7 +912,7 @@ static void cdch_set_line_coding_stage1_baudrate_complete(tuh_xfer_t *xfer) { TU_ASSERT(driver->set_data_format(p_cdc, cdch_set_line_coding_stage2_data_format_complete, xfer->user_data),); } else { xfer->complete_cb = p_cdc->user_complete_cb; - if (xfer->complete_cb) { + if (xfer->complete_cb != NULL) { xfer->complete_cb(xfer); } } @@ -926,7 +928,7 @@ static void cdch_set_line_coding_stage2_data_format_complete(tuh_xfer_t *xfer) { } xfer->complete_cb = p_cdc->user_complete_cb; - if (xfer->complete_cb) { + if (xfer->complete_cb != NULL) { xfer->complete_cb(xfer); } } @@ -950,12 +952,12 @@ static void acm_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *x break; default: - break; + break; // unknown request } } static bool acm_set_control_line_state(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - TU_VERIFY(p_cdc->acm.capability.support_line_request); + TU_VERIFY(p_cdc->acm.capability.support_line_request != 0); const tusb_control_request_t request = { .bmRequestType_bit = { @@ -982,7 +984,7 @@ static bool acm_set_control_line_state(cdch_interface_t *p_cdc, tuh_xfer_cb_t co } static bool acm_set_line_coding(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - TU_VERIFY(p_cdc->acm.capability.support_line_request); + TU_VERIFY(p_cdc->acm.capability.support_line_request != 0); TU_VERIFY((p_cdc->requested_line.coding.data_bits >= 5 && p_cdc->requested_line.coding.data_bits <= 8) || p_cdc->requested_line.coding.data_bits == 16); @@ -1167,10 +1169,10 @@ static bool ftdi_set_data_format(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete static bool ftdi_set_baudrate(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { uint32_t index_value = ftdi_get_divisor(p_cdc); - TU_VERIFY(index_value); + TU_VERIFY(index_value != 0); uint16_t value = (uint16_t) index_value; uint16_t index = (uint16_t) (index_value >> 16); - if (p_cdc->ftdi.channel) { + if (p_cdc->ftdi.channel != 0) { index = (uint16_t) ((index << 8) | p_cdc->ftdi.channel); } @@ -1372,6 +1374,8 @@ static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) { divisor = 0; } else if (divisor == 0x4001) /* 1.5 */ { divisor = 1; + } else { + // nothing to do } return divisor; } @@ -1395,12 +1399,13 @@ static uint32_t ftdi_2232h_baud_base_to_divisor(uint32_t baud, uint32_t base) { divisor = 0; } else if (divisor == 0x4001) /* 1.5 */ { divisor = 1; + } else { + // nothing to do } - /* - * Set this bit to turn off a divide by 2.5 on baud rate generator + + /* Set this bit to turn off a divide by 2.5 on baud rate generator * This enables baud rates up to 12Mbaud but cannot reach below 1200 - * baud with this bit set - */ + * baud with this bit set */ divisor |= 0x00020000; return divisor; } @@ -1412,7 +1417,7 @@ static inline uint32_t ftdi_2232h_baud_to_divisor(uint32_t baud) { static inline uint32_t ftdi_get_divisor(cdch_interface_t *p_cdc) { uint32_t baud = p_cdc->requested_line.coding.bit_rate; uint32_t div_value = 0; - TU_VERIFY(baud); + TU_VERIFY(baud != 0); switch (p_cdc->ftdi.chip_type) { case FTDI_UNKNOWN: @@ -1552,7 +1557,8 @@ static void cp210x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t p_cdc->line.coding.bit_rate = p_cdc->requested_line.coding.bit_rate; break; - default: break; + default: + break; // unsupported request } } @@ -1713,7 +1719,8 @@ static void ch34x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t p_cdc->line.coding.data_bits = p_cdc->requested_line.coding.data_bits; break; - default: break; + default: + break; // unsupported } break; @@ -1721,19 +1728,20 @@ static void ch34x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t p_cdc->line.control_state = p_cdc->requested_line.control_state; break; - default: break; + default: + break; // unsupported request } } static bool ch34x_set_data_format(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { const uint8_t lcr = ch34x_get_lcr(p_cdc); - TU_VERIFY(lcr); + TU_VERIFY(lcr > 0); return ch34x_write_reg(p_cdc, CH32X_REG16_LCR2_LCR, lcr, complete_cb, user_data); } static bool ch34x_set_baudrate(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { const uint16_t div_ps = ch34x_get_divisor_prescaler(p_cdc); - TU_VERIFY(div_ps); + TU_VERIFY(div_ps > 0); return ch34x_write_reg(p_cdc, CH34X_REG16_DIVISOR_PRESCALER, div_ps, complete_cb, user_data); } @@ -1916,7 +1924,8 @@ static uint8_t ch34x_get_lcr(cdch_interface_t *p_cdc) { lcr |= CH34X_LCR_ENABLE_PAR | CH34X_LCR_MARK_SPACE | CH34X_LCR_PAR_EVEN; break; - default: break; + default: + break; // invalid parity } // 1.5 stop bits not supported @@ -1999,13 +2008,15 @@ static inline bool pl2303_supports_hx_status(cdch_interface_t *p_cdc, tuh_xfer_c // return pl2303_set_request(p_cdc, PL2303_BREAK_REQUEST, PL2303_BREAK_REQUEST_TYPE, state, 0, NULL, 0); //} -static inline int pl2303_clear_halt(cdch_interface_t *p_cdc, uint8_t endp, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { +static inline bool +pl2303_clear_halt(cdch_interface_t *p_cdc, uint8_t endp, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { /* we don't care if it wasn't halted first. in fact some devices * (like some ibmcam model 1 units) seem to expect hosts to make * this request for iso endpoints, which can't halt! */ - return pl2303_set_request(p_cdc, TUSB_REQ_CLEAR_FEATURE, PL2303_CLEAR_HALT_REQUEST_TYPE, TUSB_REQ_FEATURE_EDPT_HALT, endp, - NULL, 0, complete_cb, user_data); + return pl2303_set_request( + p_cdc, TUSB_REQ_CLEAR_FEATURE, PL2303_CLEAR_HALT_REQUEST_TYPE, TUSB_REQ_FEATURE_EDPT_HALT, endp, NULL, 0, + complete_cb, user_data); } //------------- Driver API -------------// @@ -2130,10 +2141,9 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) if (type == PL2303_TYPE_NEED_SUPPORTS_HX_STATUS) { TU_ASSERT(pl2303_supports_hx_status(p_cdc, cdch_process_set_config, CONFIG_PL2303_READ1)); break; - } else { - // no transfer triggered and continue with CONFIG_PL2303_READ1 - TU_ATTR_FALLTHROUGH; } + // no transfer triggered and continue with CONFIG_PL2303_READ1 + TU_ATTR_FALLTHROUGH; case CONFIG_PL2303_READ1: // get supports_hx_status, type and quirks (step 2), do special read @@ -2378,10 +2388,12 @@ static pl2303_type_t pl2303_detect_type(cdch_interface_t *p_cdc, uint8_t step) { return PL2303_TYPE_HXN; default: - break; + break; // unknown device } break; - default: break; + + default: + break; // unknown device } TU_LOG_CDC(p_cdc, "unknown device type bcdUSB = 0x%04x", desc_dev.bcdUSB); @@ -2443,8 +2455,9 @@ static uint32_t pl2303_encode_baud_rate_divisor(uint8_t buf[PL2303_LINE_CODING_B */ baseline = 12000000 * 32; mantissa = baseline / baud; - if (mantissa == 0) + if (mantissa == 0) { mantissa = 1; /* Avoid dividing by zero if baud > 32 * 12M. */ + } exponent = 0; while (mantissa >= 512) { if (exponent < 7) { @@ -2516,7 +2529,7 @@ static bool pl2303_encode_baud_rate(cdch_interface_t *p_cdc, uint8_t buf[PL2303_ * Use direct method for supported baud rates, otherwise use divisors. * Newer chip types do not support divisor encoding. */ - if (type_data->no_divisors) { + if (type_data->no_divisors != 0) { baud_sup = baud; } else { baud_sup = pl2303_get_supported_baud_rate(baud); @@ -2524,7 +2537,7 @@ static bool pl2303_encode_baud_rate(cdch_interface_t *p_cdc, uint8_t buf[PL2303_ if (baud == baud_sup) { baud = pl2303_encode_baud_rate_direct(buf, baud); - } else if (type_data->alt_divisors) { + } else if (type_data->alt_divisors != 0) { baud = pl2303_encode_baud_rate_divisor_alt(buf, baud); } else { baud = pl2303_encode_baud_rate_divisor(buf, baud); diff --git a/src/class/msc/msc_host.c b/src/class/msc/msc_host.c index ce2884f2e..daff345c5 100644 --- a/src/class/msc/msc_host.c +++ b/src/class/msc/msc_host.c @@ -123,7 +123,10 @@ bool tuh_msc_mounted(uint8_t dev_addr) { bool tuh_msc_ready(uint8_t dev_addr) { msch_interface_t* p_msc = get_itf(dev_addr); - return p_msc->mounted && !usbh_edpt_busy(dev_addr, p_msc->ep_in) && !usbh_edpt_busy(dev_addr, p_msc->ep_out); + TU_VERIFY(p_msc->mounted); + const bool epin_busy = usbh_edpt_busy(dev_addr, p_msc->ep_in); + const bool epout_busy = usbh_edpt_busy(dev_addr, p_msc->ep_out); + return !epin_busy && !epout_busy; } //--------------------------------------------------------------------+ diff --git a/src/common/tusb_debug.h b/src/common/tusb_debug.h index 08117283f..e0e09f5ce 100644 --- a/src/common/tusb_debug.h +++ b/src/common/tusb_debug.h @@ -56,14 +56,14 @@ void tu_print_mem(void const *buf, uint32_t count, uint8_t indent); #define tu_printf CFG_TUSB_DEBUG_PRINTF #else #include - #define tu_printf printf + #define tu_printf(...) (void) printf(__VA_ARGS__) #endif TU_ATTR_ALWAYS_INLINE static inline void tu_print_buf(uint8_t const* buf, uint32_t bufsize) { for(uint32_t i=0; i= 2 diff --git a/src/common/tusb_fifo.c b/src/common/tusb_fifo.c index 3b8920c01..419046b8b 100644 --- a/src/common/tusb_fifo.c +++ b/src/common/tusb_fifo.c @@ -28,7 +28,7 @@ #include "osal/osal.h" #include "tusb_fifo.h" -#define TU_FIFO_DBG 0 +#define TU_FIFO_DBG 0 // Suppress IAR warning // Warning[Pa082]: undefined behavior: the order of volatile accesses is undefined in this statement @@ -39,13 +39,13 @@ #if OSAL_MUTEX_REQUIRED TU_ATTR_ALWAYS_INLINE static inline void _ff_lock(osal_mutex_t mutex) { - if (mutex) { + if (mutex != NULL) { osal_mutex_lock(mutex, OSAL_TIMEOUT_WAIT_FOREVER); } } TU_ATTR_ALWAYS_INLINE static inline void _ff_unlock(osal_mutex_t mutex) { - if (mutex) { + if (mutex != NULL) { osal_mutex_unlock(mutex); } } @@ -62,14 +62,13 @@ TU_ATTR_ALWAYS_INLINE static inline void _ff_unlock(osal_mutex_t mutex) { * copy data to and from USB hardware FIFOs as needed for e.g. STM32s and others */ typedef enum { - TU_FIFO_COPY_INC, ///< Copy from/to an increasing source/destination address - default mode + TU_FIFO_COPY_INC, ///< Copy from/to an increasing source/destination address - default mode #ifdef TUP_MEM_CONST_ADDR TU_FIFO_COPY_CST_FULL_WORDS, ///< Copy from/to a constant source/destination address - required for e.g. STM32 to write into USB hardware FIFO #endif } tu_fifo_copy_mode_t; -bool tu_fifo_config(tu_fifo_t *f, void* buffer, uint16_t depth, uint16_t item_size, bool overwritable) -{ +bool tu_fifo_config(tu_fifo_t *f, void *buffer, uint16_t depth, uint16_t item_size, bool overwritable) { // Limit index space to 2*depth - this allows for a fast "modulo" calculation // but limits the maximum depth to 2^16/2 = 2^15 and buffer overflows are detectable // only if overflow happens once (important for unsupervised DMA applications) @@ -80,9 +79,9 @@ bool tu_fifo_config(tu_fifo_t *f, void* buffer, uint16_t depth, uint16_t item_si _ff_lock(f->mutex_wr); _ff_lock(f->mutex_rd); - f->buffer = (uint8_t*) buffer; + f->buffer = (uint8_t *)buffer; f->depth = depth; - f->item_size = (uint16_t) (item_size & 0x7FFF); + f->item_size = (uint16_t)(item_size & 0x7FFF); f->overwritable = overwritable; f->rd_idx = 0; f->wr_idx = 0; @@ -101,18 +100,18 @@ bool tu_fifo_config(tu_fifo_t *f, void* buffer, uint16_t depth, uint16_t item_si // Intended to be used to read from hardware USB FIFO in e.g. STM32 where all data is read from a constant address // Code adapted from dcd_synopsys.c // TODO generalize with configurable 1 byte or 4 byte each read -static void _ff_push_const_addr(uint8_t * ff_buf, const void * app_buf, uint16_t len) { - volatile const uint32_t * reg_rx = (volatile const uint32_t *) app_buf; +static void _ff_push_const_addr(uint8_t *ff_buf, const void *app_buf, uint16_t len) { + const volatile uint32_t *reg_rx = (volatile const uint32_t *)app_buf; // Reading full available 32 bit words from const app address uint16_t full_words = len >> 2; - while(full_words--) { + while (full_words--) { tu_unaligned_write32(ff_buf, *reg_rx); ff_buf += 4; } // Read the remaining 1-3 bytes from const app address - uint8_t const bytes_rem = len & 0x03; + const uint8_t bytes_rem = len & 0x03; if (bytes_rem) { uint32_t tmp32 = *reg_rx; memcpy(ff_buf, &tmp32, bytes_rem); @@ -121,18 +120,18 @@ static void _ff_push_const_addr(uint8_t * ff_buf, const void * app_buf, uint16_t // Intended to be used to write to hardware USB FIFO in e.g. STM32 // where all data is written to a constant address in full word copies -static void _ff_pull_const_addr(void * app_buf, const uint8_t * ff_buf, uint16_t len) { - volatile uint32_t * reg_tx = (volatile uint32_t *) app_buf; +static void _ff_pull_const_addr(void *app_buf, const uint8_t *ff_buf, uint16_t len) { + volatile uint32_t *reg_tx = (volatile uint32_t *)app_buf; // Write full available 32 bit words to const address uint16_t full_words = len >> 2; - while(full_words--) { + while (full_words--) { *reg_tx = tu_unaligned_read32(ff_buf); ff_buf += 4; } // Write the remaining 1-3 bytes into const address - uint8_t const bytes_rem = len & 0x03; + const uint8_t bytes_rem = len & 0x03; if (bytes_rem) { uint32_t tmp32 = 0; memcpy(&tmp32, ff_buf, bytes_rem); @@ -143,32 +142,27 @@ static void _ff_pull_const_addr(void * app_buf, const uint8_t * ff_buf, uint16_t #endif // send one item to fifo WITHOUT updating write pointer -static inline void _ff_push(tu_fifo_t* f, void const * app_buf, uint16_t rel) { +static inline void _ff_push(tu_fifo_t *f, const void *app_buf, uint16_t rel) { memcpy(f->buffer + (rel * f->item_size), app_buf, f->item_size); } // send n items to fifo WITHOUT updating write pointer -static void _ff_push_n(tu_fifo_t* f, void const * app_buf, uint16_t n, uint16_t wr_ptr, tu_fifo_copy_mode_t copy_mode) -{ - uint16_t const lin_count = f->depth - wr_ptr; - uint16_t const wrap_count = n - lin_count; +static void _ff_push_n(tu_fifo_t *f, const void *app_buf, uint16_t n, uint16_t wr_ptr, tu_fifo_copy_mode_t copy_mode) { + const uint16_t lin_count = f->depth - wr_ptr; + const uint16_t wrap_count = n - lin_count; - uint16_t lin_bytes = lin_count * f->item_size; + uint16_t lin_bytes = lin_count * f->item_size; uint16_t wrap_bytes = wrap_count * f->item_size; // current buffer of fifo - uint8_t* ff_buf = f->buffer + (wr_ptr * f->item_size); + uint8_t *ff_buf = f->buffer + (wr_ptr * f->item_size); - switch (copy_mode) - { + switch (copy_mode) { case TU_FIFO_COPY_INC: - if(n <= lin_count) - { + if (n <= lin_count) { // Linear only - memcpy(ff_buf, app_buf, n*f->item_size); - } - else - { + memcpy(ff_buf, app_buf, n * f->item_size); + } else { // Wrap around // Write data to linear part of buffer @@ -176,19 +170,17 @@ static void _ff_push_n(tu_fifo_t* f, void const * app_buf, uint16_t n, uint16_t // Write data wrapped around // TU_ASSERT(nWrap_bytes <= f->depth, ); - memcpy(f->buffer, ((uint8_t const*) app_buf) + lin_bytes, wrap_bytes); + memcpy(f->buffer, ((const uint8_t *)app_buf) + lin_bytes, wrap_bytes); } break; + #ifdef TUP_MEM_CONST_ADDR case TU_FIFO_COPY_CST_FULL_WORDS: // Intended for hardware buffers from which it can be read word by word only - if(n <= lin_count) - { + if (n <= lin_count) { // Linear only - _ff_push_const_addr(ff_buf, app_buf, n*f->item_size); - } - else - { + _ff_push_const_addr(ff_buf, app_buf, n * f->item_size); + } else { // Wrap around case // Write full words to linear part of buffer @@ -198,83 +190,80 @@ static void _ff_push_n(tu_fifo_t* f, void const * app_buf, uint16_t n, uint16_t // There could be odd 1-3 bytes before the wrap-around boundary uint8_t rem = lin_bytes & 0x03; - if (rem > 0) - { - volatile const uint32_t * rx_fifo = (volatile const uint32_t *) app_buf; + if (rem > 0) { + const volatile uint32_t *rx_fifo = (volatile const uint32_t *)app_buf; - uint8_t remrem = (uint8_t) tu_min16(wrap_bytes, 4-rem); + uint8_t remrem = (uint8_t)tu_min16(wrap_bytes, 4 - rem); wrap_bytes -= remrem; - uint32_t tmp32 = *rx_fifo; - uint8_t * src_u8 = ((uint8_t *) &tmp32); + uint32_t tmp32 = *rx_fifo; + uint8_t *src_u8 = ((uint8_t *)&tmp32); // Write 1-3 bytes before wrapped boundary - while(rem--) *ff_buf++ = *src_u8++; + while (rem--) { + *ff_buf++ = *src_u8++; + } // Read more bytes to beginning to complete a word ff_buf = f->buffer; - while(remrem--) *ff_buf++ = *src_u8++; - } - else - { + while (remrem--) { + *ff_buf++ = *src_u8++; + } + } else { ff_buf = f->buffer; // wrap around to beginning } // Write data wrapped part - if (wrap_bytes > 0) _ff_push_const_addr(ff_buf, app_buf, wrap_bytes); + if (wrap_bytes > 0) { + _ff_push_const_addr(ff_buf, app_buf, wrap_bytes); + } } break; #endif - default: break; + + default: + break; // unknown mode } } // get one item from fifo WITHOUT updating read pointer -static inline void _ff_pull(tu_fifo_t* f, void * app_buf, uint16_t rel) -{ +static inline void _ff_pull(tu_fifo_t *f, void *app_buf, uint16_t rel) { memcpy(app_buf, f->buffer + (rel * f->item_size), f->item_size); } // get n items from fifo WITHOUT updating read pointer -static void _ff_pull_n(tu_fifo_t* f, void* app_buf, uint16_t n, uint16_t rd_ptr, tu_fifo_copy_mode_t copy_mode) -{ - uint16_t const lin_count = f->depth - rd_ptr; - uint16_t const wrap_count = n - lin_count; // only used if wrapped +static void _ff_pull_n(tu_fifo_t *f, void *app_buf, uint16_t n, uint16_t rd_ptr, tu_fifo_copy_mode_t copy_mode) { + const uint16_t lin_count = f->depth - rd_ptr; + const uint16_t wrap_count = n - lin_count; // only used if wrapped - uint16_t lin_bytes = lin_count * f->item_size; + uint16_t lin_bytes = lin_count * f->item_size; uint16_t wrap_bytes = wrap_count * f->item_size; // current buffer of fifo - uint8_t* ff_buf = f->buffer + (rd_ptr * f->item_size); + uint8_t *ff_buf = f->buffer + (rd_ptr * f->item_size); - switch (copy_mode) - { + switch (copy_mode) { case TU_FIFO_COPY_INC: - if ( n <= lin_count ) - { + if (n <= lin_count) { // Linear only - memcpy(app_buf, ff_buf, n*f->item_size); - } - else - { + memcpy(app_buf, ff_buf, n * f->item_size); + } else { // Wrap around // Read data from linear part of buffer memcpy(app_buf, ff_buf, lin_bytes); // Read data wrapped part - memcpy((uint8_t*) app_buf + lin_bytes, f->buffer, wrap_bytes); + memcpy((uint8_t *)app_buf + lin_bytes, f->buffer, wrap_bytes); } - break; + break; + #ifdef TUP_MEM_CONST_ADDR case TU_FIFO_COPY_CST_FULL_WORDS: - if ( n <= lin_count ) - { + if (n <= lin_count) { // Linear only - _ff_pull_const_addr(app_buf, ff_buf, n*f->item_size); - } - else - { + _ff_pull_const_addr(app_buf, ff_buf, n * f->item_size); + } else { // Wrap around case // Read full words from linear part of buffer @@ -284,36 +273,41 @@ static void _ff_pull_n(tu_fifo_t* f, void* app_buf, uint16_t n, uint16_t rd_ptr, // There could be odd 1-3 bytes before the wrap-around boundary uint8_t rem = lin_bytes & 0x03; - if (rem > 0) - { - volatile uint32_t * reg_tx = (volatile uint32_t *) app_buf; + if (rem > 0) { + volatile uint32_t *reg_tx = (volatile uint32_t *)app_buf; - uint8_t remrem = (uint8_t) tu_min16(wrap_bytes, 4-rem); + uint8_t remrem = (uint8_t)tu_min16(wrap_bytes, 4 - rem); wrap_bytes -= remrem; - uint32_t tmp32=0; - uint8_t * dst_u8 = (uint8_t *)&tmp32; + uint32_t tmp32 = 0; + uint8_t *dst_u8 = (uint8_t *)&tmp32; // Read 1-3 bytes before wrapped boundary - while(rem--) *dst_u8++ = *ff_buf++; + while (rem--) { + *dst_u8++ = *ff_buf++; + } // Read more bytes from beginning to complete a word ff_buf = f->buffer; - while(remrem--) *dst_u8++ = *ff_buf++; + while (remrem--) { + *dst_u8++ = *ff_buf++; + } *reg_tx = tmp32; - } - else - { + } else { ff_buf = f->buffer; // wrap around to beginning } // Read data wrapped part - if (wrap_bytes > 0) _ff_pull_const_addr(app_buf, ff_buf, wrap_bytes); + if (wrap_bytes > 0) { + _ff_pull_const_addr(app_buf, ff_buf, wrap_bytes); + } } - break; + break; #endif - default: break; + + default: + break; // unknown mode } } @@ -322,24 +316,18 @@ static void _ff_pull_n(tu_fifo_t* f, void* app_buf, uint16_t n, uint16_t rd_ptr, //--------------------------------------------------------------------+ // return only the index difference and as such can be used to determine an overflow i.e overflowable count -TU_ATTR_ALWAYS_INLINE static inline -uint16_t _ff_count(uint16_t depth, uint16_t wr_idx, uint16_t rd_idx) -{ +TU_ATTR_ALWAYS_INLINE static inline uint16_t _ff_count(uint16_t depth, uint16_t wr_idx, uint16_t rd_idx) { // In case we have non-power of two depth we need a further modification - if (wr_idx >= rd_idx) - { - return (uint16_t) (wr_idx - rd_idx); - } else - { - return (uint16_t) (2*depth - (rd_idx - wr_idx)); + if (wr_idx >= rd_idx) { + return (uint16_t)(wr_idx - rd_idx); + } else { + return (uint16_t)(2 * depth - (rd_idx - wr_idx)); } } // return remaining slot in fifo -TU_ATTR_ALWAYS_INLINE static inline -uint16_t _ff_remaining(uint16_t depth, uint16_t wr_idx, uint16_t rd_idx) -{ - uint16_t const count = _ff_count(depth, wr_idx, rd_idx); +TU_ATTR_ALWAYS_INLINE static inline uint16_t _ff_remaining(uint16_t depth, uint16_t wr_idx, uint16_t rd_idx) { + const uint16_t count = _ff_count(depth, wr_idx, rd_idx); return (depth > count) ? (depth - count) : 0; } @@ -349,16 +337,14 @@ uint16_t _ff_remaining(uint16_t depth, uint16_t wr_idx, uint16_t rd_idx) // Advance an absolute index // "absolute" index is only in the range of [0..2*depth) -static uint16_t advance_index(uint16_t depth, uint16_t idx, uint16_t offset) -{ +static uint16_t advance_index(uint16_t depth, uint16_t idx, uint16_t offset) { // We limit the index space of p such that a correct wrap around happens // Check for a wrap around or if we are in unused index space - This has to be checked first!! // We are exploiting the wrap around to the correct index - uint16_t new_idx = (uint16_t) (idx + offset); - if ( (idx > new_idx) || (new_idx >= 2*depth) ) - { - uint16_t const non_used_index_space = (uint16_t) (UINT16_MAX - (2*depth-1)); - new_idx = (uint16_t) (new_idx + non_used_index_space); + uint16_t new_idx = (uint16_t)(idx + offset); + if ((idx > new_idx) || (new_idx >= 2 * depth)) { + const uint16_t non_used_index_space = (uint16_t)(UINT16_MAX - (2 * depth - 1)); + new_idx = (uint16_t)(new_idx + non_used_index_space); } return new_idx; @@ -366,14 +352,12 @@ static uint16_t advance_index(uint16_t depth, uint16_t idx, uint16_t offset) #if 0 // not used but // Backward an absolute index -static uint16_t backward_index(uint16_t depth, uint16_t idx, uint16_t offset) -{ +static uint16_t backward_index(uint16_t depth, uint16_t idx, uint16_t offset) { // We limit the index space of p such that a correct wrap around happens // Check for a wrap around or if we are in unused index space - This has to be checked first!! // We are exploiting the wrap around to the correct index uint16_t new_idx = (uint16_t) (idx - offset); - if ( (idx < new_idx) || (new_idx >= 2*depth) ) - { + if ( (idx < new_idx) || (new_idx >= 2*depth) ) { uint16_t const non_used_index_space = (uint16_t) (UINT16_MAX - (2*depth-1)); new_idx = (uint16_t) (new_idx - non_used_index_space); } @@ -383,26 +367,22 @@ static uint16_t backward_index(uint16_t depth, uint16_t idx, uint16_t offset) #endif // index to pointer, simply an modulo with minus. -TU_ATTR_ALWAYS_INLINE static inline -uint16_t idx2ptr(uint16_t depth, uint16_t idx) -{ +TU_ATTR_ALWAYS_INLINE static inline uint16_t idx2ptr(uint16_t depth, uint16_t idx) { // Only run at most 3 times since index is limit in the range of [0..2*depth) - while ( idx >= depth ) idx -= depth; + while (idx >= depth) { + idx -= depth; + } return idx; } // Works on local copies of w // When an overwritable fifo is overflowed, rd_idx will be re-index so that it forms // an full fifo i.e _ff_count() = depth -TU_ATTR_ALWAYS_INLINE static inline -uint16_t _ff_correct_read_index(tu_fifo_t* f, uint16_t wr_idx) -{ +TU_ATTR_ALWAYS_INLINE static inline uint16_t _ff_correct_read_index(tu_fifo_t *f, uint16_t wr_idx) { uint16_t rd_idx; - if ( wr_idx >= f->depth ) - { + if (wr_idx >= f->depth) { rd_idx = wr_idx - f->depth; - }else - { + } else { rd_idx = wr_idx + f->depth; } @@ -413,16 +393,16 @@ uint16_t _ff_correct_read_index(tu_fifo_t* f, uint16_t wr_idx) // Works on local copies of w and r // Must be protected by mutexes since in case of an overflow read pointer gets modified -static bool _tu_fifo_peek(tu_fifo_t* f, void * p_buffer, uint16_t wr_idx, uint16_t rd_idx) -{ +static bool _tu_fifo_peek(tu_fifo_t *f, void *p_buffer, uint16_t wr_idx, uint16_t rd_idx) { uint16_t cnt = _ff_count(f->depth, wr_idx, rd_idx); // nothing to peek - if ( cnt == 0 ) return false; + if (cnt == 0) { + return false; + } // Check overflow and correct if required - if ( cnt > f->depth ) - { + if (cnt > f->depth) { rd_idx = _ff_correct_read_index(f, wr_idx); } @@ -436,22 +416,25 @@ static bool _tu_fifo_peek(tu_fifo_t* f, void * p_buffer, uint16_t wr_idx, uint16 // Works on local copies of w and r // Must be protected by mutexes since in case of an overflow read pointer gets modified -static uint16_t _tu_fifo_peek_n(tu_fifo_t* f, void * p_buffer, uint16_t n, uint16_t wr_idx, uint16_t rd_idx, tu_fifo_copy_mode_t copy_mode) -{ +static uint16_t _tu_fifo_peek_n( + tu_fifo_t *f, void *p_buffer, uint16_t n, uint16_t wr_idx, uint16_t rd_idx, tu_fifo_copy_mode_t copy_mode) { uint16_t cnt = _ff_count(f->depth, wr_idx, rd_idx); // nothing to peek - if ( cnt == 0 ) return 0; + if (cnt == 0) { + return 0; + } // Check overflow and correct if required - if ( cnt > f->depth ) - { + if (cnt > f->depth) { rd_idx = _ff_correct_read_index(f, wr_idx); - cnt = f->depth; + cnt = f->depth; } // Check if we can read something at and after offset - if too less is available we read what remains - if ( cnt < n ) n = cnt; + if (cnt < n) { + n = cnt; + } uint16_t rd_ptr = idx2ptr(f->depth, rd_idx); @@ -461,40 +444,36 @@ static uint16_t _tu_fifo_peek_n(tu_fifo_t* f, void * p_buffer, uint16_t n, uint1 return n; } -static uint16_t _tu_fifo_write_n(tu_fifo_t* f, const void * data, uint16_t n, tu_fifo_copy_mode_t copy_mode) -{ - if ( n == 0 ) return 0; +static uint16_t _tu_fifo_write_n(tu_fifo_t *f, const void *data, uint16_t n, tu_fifo_copy_mode_t copy_mode) { + if (n == 0) { + return 0; + } _ff_lock(f->mutex_wr); uint16_t wr_idx = f->wr_idx; uint16_t rd_idx = f->rd_idx; - uint8_t const* buf8 = (uint8_t const*) data; + const uint8_t *buf8 = (const uint8_t *)data; - TU_LOG(TU_FIFO_DBG, "rd = %3u, wr = %3u, count = %3u, remain = %3u, n = %3u: ", - rd_idx, wr_idx, _ff_count(f->depth, wr_idx, rd_idx), _ff_remaining(f->depth, wr_idx, rd_idx), n); + TU_LOG( + TU_FIFO_DBG, "rd = %3u, wr = %3u, count = %3u, remain = %3u, n = %3u: ", rd_idx, wr_idx, + _ff_count(f->depth, wr_idx, rd_idx), _ff_remaining(f->depth, wr_idx, rd_idx), n); - if ( !f->overwritable ) - { + if (!f->overwritable) { // limit up to full - uint16_t const remain = _ff_remaining(f->depth, wr_idx, rd_idx); - n = tu_min16(n, remain); - } - else - { + const uint16_t remain = _ff_remaining(f->depth, wr_idx, rd_idx); + n = tu_min16(n, remain); + } else { // In over-writable mode, fifo_write() is allowed even when fifo is full. In such case, // oldest data in fifo i.e at read pointer data will be overwritten // Note: we can modify read buffer contents but we must not modify the read index itself within a write function! // Since it would end up in a race condition with read functions! - if ( n >= f->depth ) - { + if (n >= f->depth) { // Only copy last part - if ( copy_mode == TU_FIFO_COPY_INC ) - { + if (copy_mode == TU_FIFO_COPY_INC) { buf8 += (n - f->depth) * f->item_size; - }else - { + } else { // TODO should read from hw fifo to discard data, however reading an odd number could // accidentally discard data. } @@ -503,12 +482,9 @@ static uint16_t _tu_fifo_write_n(tu_fifo_t* f, const void * data, uint16_t n, tu // We start writing at the read pointer's position since we fill the whole buffer wr_idx = rd_idx; - } - else - { - uint16_t const overflowable_count = _ff_count(f->depth, wr_idx, rd_idx); - if (overflowable_count + n >= 2*f->depth) - { + } else { + const uint16_t overflowable_count = _ff_count(f->depth, wr_idx, rd_idx); + if (overflowable_count + n >= 2 * f->depth) { // Double overflowed // Index is bigger than the allowed range [0,2*depth) // re-position write index to have a full fifo after pushed @@ -518,8 +494,7 @@ static uint16_t _tu_fifo_write_n(tu_fifo_t* f, const void * data, uint16_t n, tu // However memmove() is expensive due to actual copying + wrapping consideration. // Also race condition could happen anyway if read() is invoke while moving result in corrupted memory // currently deliberately not implemented --> result in incorrect data read back - }else - { + } else { // normal + single overflowed: // Index is in the range of [0,2*depth) and thus detect and recoverable. Recovering is handled in read() // Therefore we just increase write index @@ -528,16 +503,11 @@ static uint16_t _tu_fifo_write_n(tu_fifo_t* f, const void * data, uint16_t n, tu } } - if (n) - { + if (n) { uint16_t wr_ptr = idx2ptr(f->depth, wr_idx); - TU_LOG(TU_FIFO_DBG, "actual_n = %u, wr_ptr = %u", n, wr_ptr); - // Write data _ff_push_n(f, buf8, n, wr_ptr, copy_mode); - - // Advance index f->wr_idx = advance_index(f->depth, wr_idx, n); TU_LOG(TU_FIFO_DBG, "\tnew_wr = %u\r\n", f->wr_idx); @@ -548,8 +518,7 @@ static uint16_t _tu_fifo_write_n(tu_fifo_t* f, const void * data, uint16_t n, tu return n; } -static uint16_t _tu_fifo_read_n(tu_fifo_t* f, void * buffer, uint16_t n, tu_fifo_copy_mode_t copy_mode) -{ +static uint16_t _tu_fifo_read_n(tu_fifo_t *f, void *buffer, uint16_t n, tu_fifo_copy_mode_t copy_mode) { _ff_lock(f->mutex_rd); // Peek the data @@ -582,8 +551,7 @@ static uint16_t _tu_fifo_read_n(tu_fifo_t* f, void * buffer, uint16_t n, tu_fifo @returns Number of items in FIFO */ /******************************************************************************/ -uint16_t tu_fifo_count(tu_fifo_t* f) -{ +uint16_t tu_fifo_count(tu_fifo_t *f) { return tu_min16(_ff_count(f->depth, f->wr_idx, f->rd_idx), f->depth); } @@ -600,8 +568,7 @@ uint16_t tu_fifo_count(tu_fifo_t* f) @returns Number of items in FIFO */ /******************************************************************************/ -bool tu_fifo_empty(tu_fifo_t* f) -{ +bool tu_fifo_empty(tu_fifo_t *f) { return f->wr_idx == f->rd_idx; } @@ -618,8 +585,7 @@ bool tu_fifo_empty(tu_fifo_t* f) @returns Number of items in FIFO */ /******************************************************************************/ -bool tu_fifo_full(tu_fifo_t* f) -{ +bool tu_fifo_full(tu_fifo_t *f) { return _ff_count(f->depth, f->wr_idx, f->rd_idx) >= f->depth; } @@ -636,8 +602,7 @@ bool tu_fifo_full(tu_fifo_t* f) @returns Number of items in FIFO */ /******************************************************************************/ -uint16_t tu_fifo_remaining(tu_fifo_t* f) -{ +uint16_t tu_fifo_remaining(tu_fifo_t *f) { return _ff_remaining(f->depth, f->wr_idx, f->rd_idx); } @@ -662,14 +627,12 @@ uint16_t tu_fifo_remaining(tu_fifo_t* f) @returns True if overflow happened */ /******************************************************************************/ -bool tu_fifo_overflowed(tu_fifo_t* f) -{ +bool tu_fifo_overflowed(tu_fifo_t *f) { return _ff_count(f->depth, f->wr_idx, f->rd_idx) > f->depth; } // Only use in case tu_fifo_overflow() returned true! -void tu_fifo_correct_read_pointer(tu_fifo_t* f) -{ +void tu_fifo_correct_read_pointer(tu_fifo_t *f) { _ff_lock(f->mutex_rd); _ff_correct_read_index(f, f->wr_idx); _ff_unlock(f->mutex_rd); @@ -691,8 +654,7 @@ void tu_fifo_correct_read_pointer(tu_fifo_t* f) @returns TRUE if the queue is not empty */ /******************************************************************************/ -bool tu_fifo_read(tu_fifo_t* f, void * buffer) -{ +bool tu_fifo_read(tu_fifo_t *f, void *buffer) { _ff_lock(f->mutex_rd); // Peek the data @@ -722,8 +684,7 @@ bool tu_fifo_read(tu_fifo_t* f, void * buffer) @returns number of items read from the FIFO */ /******************************************************************************/ -uint16_t tu_fifo_read_n(tu_fifo_t* f, void * buffer, uint16_t n) -{ +uint16_t tu_fifo_read_n(tu_fifo_t *f, void *buffer, uint16_t n) { return _tu_fifo_read_n(f, buffer, n, TU_FIFO_COPY_INC); } @@ -745,8 +706,7 @@ uint16_t tu_fifo_read_n(tu_fifo_t* f, void * buffer, uint16_t n) @returns number of items read from the FIFO */ /******************************************************************************/ -uint16_t tu_fifo_read_n_const_addr_full_words(tu_fifo_t* f, void * buffer, uint16_t n) -{ +uint16_t tu_fifo_read_n_const_addr_full_words(tu_fifo_t *f, void *buffer, uint16_t n) { return _tu_fifo_read_n(f, buffer, n, TU_FIFO_COPY_CST_FULL_WORDS); } #endif @@ -764,8 +724,7 @@ uint16_t tu_fifo_read_n_const_addr_full_words(tu_fifo_t* f, void * buffer, uint1 @returns TRUE if the queue is not empty */ /******************************************************************************/ -bool tu_fifo_peek(tu_fifo_t* f, void * p_buffer) -{ +bool tu_fifo_peek(tu_fifo_t *f, void *p_buffer) { _ff_lock(f->mutex_rd); bool ret = _tu_fifo_peek(f, p_buffer, f->wr_idx, f->rd_idx); _ff_unlock(f->mutex_rd); @@ -787,8 +746,7 @@ bool tu_fifo_peek(tu_fifo_t* f, void * p_buffer) @returns Number of bytes written to p_buffer */ /******************************************************************************/ -uint16_t tu_fifo_peek_n(tu_fifo_t* f, void * p_buffer, uint16_t n) -{ +uint16_t tu_fifo_peek_n(tu_fifo_t *f, void *p_buffer, uint16_t n) { _ff_lock(f->mutex_rd); uint16_t ret = _tu_fifo_peek_n(f, p_buffer, n, f->wr_idx, f->rd_idx, TU_FIFO_COPY_INC); _ff_unlock(f->mutex_rd); @@ -811,27 +769,19 @@ uint16_t tu_fifo_peek_n(tu_fifo_t* f, void * p_buffer, uint16_t n) FIFO will always return TRUE) */ /******************************************************************************/ -bool tu_fifo_write(tu_fifo_t* f, const void * data) -{ +bool tu_fifo_write(tu_fifo_t *f, const void *data) { _ff_lock(f->mutex_wr); - bool ret; - uint16_t const wr_idx = f->wr_idx; + bool ret; + const uint16_t wr_idx = f->wr_idx; - if ( tu_fifo_full(f) && !f->overwritable ) - { + if (tu_fifo_full(f) && !f->overwritable) { ret = false; - }else - { + } else { uint16_t wr_ptr = idx2ptr(f->depth, wr_idx); - - // Write data _ff_push(f, data, wr_ptr); - - // Advance pointer f->wr_idx = advance_index(f->depth, wr_idx, 1); - - ret = true; + ret = true; } _ff_unlock(f->mutex_wr); @@ -853,8 +803,7 @@ bool tu_fifo_write(tu_fifo_t* f, const void * data) @return Number of written elements */ /******************************************************************************/ -uint16_t tu_fifo_write_n(tu_fifo_t* f, const void * data, uint16_t n) -{ +uint16_t tu_fifo_write_n(tu_fifo_t *f, const void *data, uint16_t n) { return _tu_fifo_write_n(f, data, n, TU_FIFO_COPY_INC); } @@ -874,8 +823,7 @@ uint16_t tu_fifo_write_n(tu_fifo_t* f, const void * data, uint16_t n) @return Number of written elements */ /******************************************************************************/ -uint16_t tu_fifo_write_n_const_addr_full_words(tu_fifo_t* f, const void * data, uint16_t n) -{ +uint16_t tu_fifo_write_n_const_addr_full_words(tu_fifo_t *f, const void *data, uint16_t n) { return _tu_fifo_write_n(f, data, n, TU_FIFO_COPY_CST_FULL_WORDS); } #endif @@ -888,8 +836,7 @@ uint16_t tu_fifo_write_n_const_addr_full_words(tu_fifo_t* f, const void * data, Pointer to the FIFO buffer to manipulate */ /******************************************************************************/ -bool tu_fifo_clear(tu_fifo_t *f) -{ +bool tu_fifo_clear(tu_fifo_t *f) { _ff_lock(f->mutex_wr); _ff_lock(f->mutex_rd); @@ -943,8 +890,7 @@ bool tu_fifo_set_overwritable(tu_fifo_t *f, bool overwritable) { Number of items the write pointer moves forward */ /******************************************************************************/ -void tu_fifo_advance_write_pointer(tu_fifo_t *f, uint16_t n) -{ +void tu_fifo_advance_write_pointer(tu_fifo_t *f, uint16_t n) { f->wr_idx = advance_index(f->depth, f->wr_idx, n); } @@ -964,8 +910,7 @@ void tu_fifo_advance_write_pointer(tu_fifo_t *f, uint16_t n) Number of items the read pointer moves forward */ /******************************************************************************/ -void tu_fifo_advance_read_pointer(tu_fifo_t *f, uint16_t n) -{ +void tu_fifo_advance_read_pointer(tu_fifo_t *f, uint16_t n) { f->rd_idx = advance_index(f->depth, f->rd_idx, n); } @@ -984,8 +929,7 @@ void tu_fifo_advance_read_pointer(tu_fifo_t *f, uint16_t n) Pointer to struct which holds the desired infos */ /******************************************************************************/ -void tu_fifo_get_read_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) -{ +void tu_fifo_get_read_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) { // Operate on temporary values in case they change in between uint16_t wr_idx = f->wr_idx; uint16_t rd_idx = f->rd_idx; @@ -993,8 +937,7 @@ void tu_fifo_get_read_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) uint16_t cnt = _ff_count(f->depth, wr_idx, rd_idx); // Check overflow and correct if required - may happen in case a DMA wrote too fast - if (cnt > f->depth) - { + if (cnt > f->depth) { _ff_lock(f->mutex_rd); rd_idx = _ff_correct_read_index(f, wr_idx); _ff_unlock(f->mutex_rd); @@ -1003,8 +946,7 @@ void tu_fifo_get_read_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) } // Check if fifo is empty - if (cnt == 0) - { + if (cnt == 0) { info->len_lin = 0; info->len_wrap = 0; info->ptr_lin = NULL; @@ -1020,17 +962,14 @@ void tu_fifo_get_read_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) info->ptr_lin = &f->buffer[rd_ptr]; // Check if there is a wrap around necessary - if (wr_ptr > rd_ptr) - { + if (wr_ptr > rd_ptr) { // Non wrapping case - info->len_lin = cnt; + info->len_lin = cnt; info->len_wrap = 0; info->ptr_wrap = NULL; - } - else - { - info->len_lin = f->depth - rd_ptr; // Also the case if FIFO was full + } else { + info->len_lin = f->depth - rd_ptr; // Also the case if FIFO was full info->len_wrap = cnt - info->len_lin; info->ptr_wrap = f->buffer; @@ -1052,14 +991,12 @@ void tu_fifo_get_read_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) Pointer to struct which holds the desired infos */ /******************************************************************************/ -void tu_fifo_get_write_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) -{ +void tu_fifo_get_write_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) { uint16_t wr_idx = f->wr_idx; uint16_t rd_idx = f->rd_idx; uint16_t remain = _ff_remaining(f->depth, wr_idx, rd_idx); - if (remain == 0) - { + if (remain == 0) { info->len_lin = 0; info->len_wrap = 0; info->ptr_lin = NULL; @@ -1074,15 +1011,12 @@ void tu_fifo_get_write_info(tu_fifo_t *f, tu_fifo_buffer_info_t *info) // Copy pointer to buffer to start writing to info->ptr_lin = &f->buffer[wr_ptr]; - if (wr_ptr < rd_ptr) - { + if (wr_ptr < rd_ptr) { // Non wrapping case - info->len_lin = rd_ptr-wr_ptr; + info->len_lin = rd_ptr - wr_ptr; info->len_wrap = 0; info->ptr_wrap = NULL; - } - else - { + } else { info->len_lin = f->depth - wr_ptr; info->len_wrap = remain - info->len_lin; // Remaining length - n already was limited to remain or FIFO depth info->ptr_wrap = f->buffer; // Always start of buffer diff --git a/src/common/tusb_fifo.h b/src/common/tusb_fifo.h index f2a6c5469..0f4ba00d8 100644 --- a/src/common/tusb_fifo.h +++ b/src/common/tusb_fifo.h @@ -104,16 +104,16 @@ extern "C" { * | R | 1 | 2 | W | 4 | 5 | */ typedef struct { - uint8_t* buffer ; // buffer pointer - uint16_t depth ; // max items + uint8_t *buffer; // buffer pointer + uint16_t depth; // max items struct TU_ATTR_PACKED { - uint16_t item_size : 15; // size of each item - bool overwritable : 1 ; // ovwerwritable when full + uint16_t item_size : 15; // size of each item + bool overwritable : 1; // ovwerwritable when full }; - volatile uint16_t wr_idx ; // write index - volatile uint16_t rd_idx ; // read index + volatile uint16_t wr_idx; // write index + volatile uint16_t rd_idx; // read index #if OSAL_MUTEX_REQUIRED osal_mutex_t mutex_wr; @@ -129,12 +129,13 @@ typedef struct { void * ptr_wrap ; ///< wrapped part start pointer } tu_fifo_buffer_info_t; -#define TU_FIFO_INIT(_buffer, _depth, _type, _overwritable){\ - .buffer = _buffer, \ - .depth = _depth, \ - .item_size = sizeof(_type), \ - .overwritable = _overwritable, \ -} +#define TU_FIFO_INIT(_buffer, _depth, _type, _overwritable) \ + { \ + .buffer = _buffer, \ + .depth = _depth, \ + .item_size = sizeof(_type), \ + .overwritable = _overwritable, \ + } #define TU_FIFO_DEF(_name, _depth, _type, _overwritable) \ uint8_t _name##_buf[_depth*sizeof(_type)]; \ diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index 5e1d59233..dcd5c45d6 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -40,6 +40,12 @@ extern tusb_role_t _tusb_rhport_role[TUP_USBIP_CONTROLLER_NUM]; // Endpoint //--------------------------------------------------------------------+ +enum { + TU_EDPT_STATE_BUSY = 0x01, + TU_EDPT_STATE_STALLED = 0x02, + TU_EDPT_STATE_CLAIMED = 0x04, +}; + typedef struct TU_ATTR_PACKED { volatile uint8_t busy : 1; volatile uint8_t stalled : 1; @@ -48,8 +54,8 @@ typedef struct TU_ATTR_PACKED { typedef struct { struct TU_ATTR_PACKED { - uint8_t is_host : 1; // 1: host, 0: device - uint8_t is_mps512 : 1; // 1: 512, 0: 64 since stream is used for Bulk only + bool is_host : 1; // 1: host, 0: device + bool is_mps512 : 1; // 1: 512, 0: 64 since stream is used for Bulk only }; uint8_t ep_addr; uint16_t ep_bufsize; @@ -93,21 +99,18 @@ bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool ove bool tu_edpt_stream_deinit(tu_edpt_stream_t* s); // Open an stream for an endpoint -TU_ATTR_ALWAYS_INLINE static inline -void tu_edpt_stream_open(tu_edpt_stream_t* s, tusb_desc_endpoint_t const *desc_ep) { +TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_open(tu_edpt_stream_t* s, tusb_desc_endpoint_t const *desc_ep) { tu_fifo_clear(&s->ff); s->ep_addr = desc_ep->bEndpointAddress; - s->is_mps512 = (tu_edpt_packet_size(desc_ep) == 512) ? 1 : 0; + s->is_mps512 = tu_edpt_packet_size(desc_ep) == 512; } -TU_ATTR_ALWAYS_INLINE static inline -void tu_edpt_stream_close(tu_edpt_stream_t* s) { +TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_close(tu_edpt_stream_t* s) { s->ep_addr = 0; } // Clear fifo -TU_ATTR_ALWAYS_INLINE static inline -bool tu_edpt_stream_clear(tu_edpt_stream_t* s) { +TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_clear(tu_edpt_stream_t* s) { return tu_fifo_clear(&s->ff); } diff --git a/src/tusb.c b/src/tusb.c index be67eead2..7411f19df 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -117,11 +117,15 @@ bool tusb_inited(void) { bool ret = false; #if CFG_TUD_ENABLED - ret = ret || tud_inited(); + if (tud_inited()) { + ret = true; + } #endif #if CFG_TUH_ENABLED - ret = ret || tuh_inited(); + if (tuh_inited()) { + ret = true; + } #endif return ret; @@ -209,7 +213,8 @@ bool tu_edpt_claim(tu_edpt_state_t* ep_state, osal_mutex_t mutex) { (void) mutex; // pre-check to help reducing mutex lock - TU_VERIFY((ep_state->busy == 0) && (ep_state->claimed == 0)); + TU_VERIFY(ep_state->busy == 0); + TU_VERIFY(ep_state->claimed == 0); (void) osal_mutex_lock(mutex, OSAL_TIMEOUT_WAIT_FOREVER); // can only claim the endpoint if it is not busy and not claimed yet. @@ -298,7 +303,7 @@ uint16_t tu_desc_get_interface_total_len(tusb_desc_interface_t const* desc_itf, uint8_t const* p_desc = (uint8_t const*) desc_itf; uint16_t len = 0; - while (itf_count--) { + while ((itf_count--) > 0) { // Next on interface desc len += tu_desc_len(desc_itf); p_desc = tu_desc_next(p_desc); @@ -337,7 +342,7 @@ bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool ove tu_fifo_config(&s->ff, ff_buf, ff_bufsize, 1, overwritable); #if OSAL_MUTEX_REQUIRED - if (ff_buf && ff_bufsize) { + if (ff_buf != NULL && ff_bufsize > 0) { osal_mutex_t new_mutex = osal_mutex_create(&s->ff_mutexdef); tu_fifo_config_mutex(&s->ff, is_tx ? new_mutex : NULL, is_tx ? NULL : new_mutex); } @@ -352,9 +357,13 @@ bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool ove bool tu_edpt_stream_deinit(tu_edpt_stream_t* s) { (void) s; #if OSAL_MUTEX_REQUIRED - if (s->ff.mutex_wr) osal_mutex_delete(s->ff.mutex_wr); - if (s->ff.mutex_rd) osal_mutex_delete(s->ff.mutex_rd); - #endif + if (s->ff.mutex_wr) { + osal_mutex_delete(s->ff.mutex_wr); + } + if (s->ff.mutex_rd) { + osal_mutex_delete(s->ff.mutex_rd); + } +#endif return true; } @@ -403,7 +412,7 @@ TU_ATTR_ALWAYS_INLINE static inline bool stream_release(uint8_t hwid, tu_edpt_st bool tu_edpt_stream_write_zlp_if_needed(uint8_t hwid, tu_edpt_stream_t* s, uint32_t last_xferred_bytes) { // ZLP condition: no pending data, last transferred bytes is multiple of packet size const uint16_t mps = s->is_mps512 ? TUSB_EPSIZE_BULK_HS : TUSB_EPSIZE_BULK_FS; - TU_VERIFY(!tu_fifo_count(&s->ff) && last_xferred_bytes && (0 == (last_xferred_bytes & (mps - 1)))); + TU_VERIFY(!tu_fifo_count(&s->ff) && last_xferred_bytes > 0 && (0 == (last_xferred_bytes & (mps - 1)))); TU_VERIFY(stream_claim(hwid, s)); TU_ASSERT(stream_xfer(hwid, s, 0)); return true; @@ -411,14 +420,13 @@ bool tu_edpt_stream_write_zlp_if_needed(uint8_t hwid, tu_edpt_stream_t* s, uint3 uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s) { // skip if no data - TU_VERIFY(tu_fifo_count(&s->ff), 0); - + TU_VERIFY(tu_fifo_count(&s->ff) > 0, 0); TU_VERIFY(stream_claim(hwid, s), 0); // Pull data from FIFO -> EP buf uint16_t const count = tu_fifo_read_n(&s->ff, s->ep_buf, s->ep_bufsize); - if (count) { + if (count > 0) { TU_ASSERT(stream_xfer(hwid, s, count), 0); return count; } else { @@ -430,7 +438,7 @@ uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s) { } uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t* s, void const* buffer, uint32_t bufsize) { - TU_VERIFY(bufsize); // TODO support ZLP + TU_VERIFY(bufsize > 0); // TODO support ZLP if (0 == tu_fifo_depth(&s->ff)) { // no fifo for buffered @@ -453,7 +461,7 @@ uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t* s, void const* buf } uint32_t tu_edpt_stream_write_available(uint8_t hwid, tu_edpt_stream_t* s) { - if (tu_fifo_depth(&s->ff)) { + if (tu_fifo_depth(&s->ff) > 0) { return (uint32_t) tu_fifo_remaining(&s->ff); } else { bool is_busy = true; @@ -596,7 +604,7 @@ void tu_print_mem(void const* buf, uint32_t count, uint8_t indent) { // fill up last row to 16 for printing ascii const uint32_t remain = count % 16; uint8_t nback = (uint8_t) (remain ? remain : 16); - if (remain) { + if (remain > 0) { for (uint32_t i = 0; i < 16 - remain; i++) { tu_printf(" "); for (int j = 0; j < 2 * size; j++) { -- cgit v1.3.1 From 397a3af8afc4bc5460572da4a40629684dfa788c Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 13 Nov 2025 12:02:02 +0700 Subject: clear endpoint stream when open for cdc_host and midi_host --- src/class/cdc/cdc_device.c | 15 ++++++------- src/class/cdc/cdc_host.c | 50 ++++++++++++++++++-------------------------- src/class/midi/midi_device.c | 14 +++++++------ src/class/midi/midi_host.c | 48 ++++++++++++++++++++++-------------------- src/common/tusb_common.h | 2 +- src/common/tusb_private.h | 1 - src/tusb.c | 2 +- 7 files changed, 61 insertions(+), 71 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index 92139b14e..80fa81d99 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -141,7 +141,7 @@ bool tud_cdc_configure(const tud_cdc_configure_t* driver_cfg) { bool tud_cdc_n_ready(uint8_t itf) { TU_VERIFY(itf < CFG_TUD_CDC); TU_VERIFY(tud_ready()); - cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; + const cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; const bool in_opened = tu_edpt_stream_is_opened(&p_cdc->stream.tx); const bool out_opened = tu_edpt_stream_is_opened(&p_cdc->stream.rx); @@ -151,9 +151,8 @@ bool tud_cdc_n_ready(uint8_t itf) { bool tud_cdc_n_connected(uint8_t itf) { TU_VERIFY(itf < CFG_TUD_CDC); TU_VERIFY(tud_ready()); - cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; // DTR (bit 0) active is considered as connected - return tu_bit_test(p_cdc->line_state, 0); + return tu_bit_test(_cdcd_itf[itf].line_state, 0); } uint8_t tud_cdc_n_get_line_state(uint8_t itf) { @@ -214,8 +213,7 @@ void tud_cdc_n_set_wanted_char(uint8_t itf, char wanted) { //--------------------------------------------------------------------+ uint32_t tud_cdc_n_available(uint8_t itf) { TU_VERIFY(itf < CFG_TUD_CDC, 0); - cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; - return tu_edpt_stream_read_available(&p_cdc->stream.rx); + return tu_edpt_stream_read_available(&_cdcd_itf[itf].stream.rx); } uint32_t tud_cdc_n_read(uint8_t itf, void* buffer, uint32_t bufsize) { @@ -226,8 +224,7 @@ uint32_t tud_cdc_n_read(uint8_t itf, void* buffer, uint32_t bufsize) { bool tud_cdc_n_peek(uint8_t itf, uint8_t *chr) { TU_VERIFY(itf < CFG_TUD_CDC); - cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; - return tu_edpt_stream_peek(&p_cdc->stream.rx, chr); + return tu_edpt_stream_peek(&_cdcd_itf[itf].stream.rx, chr); } void tud_cdc_n_read_flush(uint8_t itf) { @@ -362,8 +359,8 @@ uint16_t cdcd_open(uint8_t rhport, const tusb_desc_interface_t* itf_desc, uint16 TU_ASSERT(usbd_edpt_open(rhport, desc_ep), 0); if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { tu_edpt_stream_t *stream_tx = &p_cdc->stream.tx; - tu_edpt_stream_open(stream_tx, desc_ep); + tu_edpt_stream_open(stream_tx, desc_ep); if (_cdcd_cfg.tx_persistent) { tu_edpt_stream_write_xfer(rhport, stream_tx); // flush pending data } else { @@ -384,7 +381,7 @@ uint16_t cdcd_open(uint8_t rhport, const tusb_desc_interface_t* itf_desc, uint16 } } - return p_desc - (const uint8_t *)itf_desc; + return (uint16_t)(p_desc - (const uint8_t *)itf_desc); } // Invoked when a control transfer occurred on an interface of this class diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 7fdf0a7b9..35717ddf6 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -298,6 +298,7 @@ TU_VERIFY_STATIC(TU_ARRAY_SIZE(serial_drivers) == SERIAL_DRIVER_COUNT, "Serial d //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ +static bool open_ep_stream_pair(cdch_interface_t *p_cdc, const tusb_desc_endpoint_t *desc_ep); TU_ATTR_ALWAYS_INLINE static inline cdch_interface_t * get_itf(uint8_t idx) { TU_ASSERT(idx < CFG_TUH_CDC, NULL); @@ -364,7 +365,7 @@ static cdch_interface_t* get_itf_by_xfer(const tuh_xfer_t * xfer) { #endif default: - break; + break; // unknown driver } } } @@ -389,8 +390,6 @@ static cdch_interface_t * make_new_itf(uint8_t daddr, tusb_desc_interface_t cons return NULL; } -static bool open_ep_stream_pair(cdch_interface_t * p_cdc , tusb_desc_endpoint_t const *desc_ep); - //--------------------------------------------------------------------+ // Weak stubs: invoked if no strong implementation is available //--------------------------------------------------------------------+ @@ -519,7 +518,7 @@ bool tuh_cdc_read_clear (uint8_t idx) { TU_VERIFY(p_cdc); bool ret = tu_edpt_stream_clear(&p_cdc->stream.rx); - tu_edpt_stream_read_xfer(p_cdc->daddr, &p_cdc->stream.rx); + (void)tu_edpt_stream_read_xfer(p_cdc->daddr, &p_cdc->stream.rx); return ret; } @@ -648,13 +647,10 @@ bool cdch_init(void) { for (size_t i = 0; i < CFG_TUH_CDC; i++) { cdch_interface_t *p_cdc = &cdch_data[i]; cdch_epbuf_t *epbuf = &cdch_epbuf[i]; - tu_edpt_stream_init(&p_cdc->stream.tx, true, true, false, - p_cdc->stream.tx_ff_buf, CFG_TUH_CDC_TX_BUFSIZE, - epbuf->tx, CFG_TUH_CDC_TX_EPSIZE); - - tu_edpt_stream_init(&p_cdc->stream.rx, true, false, false, - p_cdc->stream.rx_ff_buf, CFG_TUH_CDC_RX_BUFSIZE, - epbuf->rx, CFG_TUH_CDC_RX_EPSIZE); + TU_ASSERT(tu_edpt_stream_init(&p_cdc->stream.tx, true, true, false, p_cdc->stream.tx_ff_buf, CFG_TUH_CDC_TX_BUFSIZE, + epbuf->tx, CFG_TUH_CDC_TX_EPSIZE)); + TU_ASSERT(tu_edpt_stream_init(&p_cdc->stream.rx, true, false, false, p_cdc->stream.rx_ff_buf, + CFG_TUH_CDC_RX_BUFSIZE, epbuf->rx, CFG_TUH_CDC_RX_EPSIZE)); } return true; @@ -663,8 +659,8 @@ bool cdch_init(void) { bool cdch_deinit(void) { for (size_t i = 0; i < CFG_TUH_CDC; i++) { cdch_interface_t *p_cdc = &cdch_data[i]; - tu_edpt_stream_deinit(&p_cdc->stream.tx); - tu_edpt_stream_deinit(&p_cdc->stream.rx); + (void)tu_edpt_stream_deinit(&p_cdc->stream.tx); + (void)tu_edpt_stream_deinit(&p_cdc->stream.rx); } return true; } @@ -674,11 +670,9 @@ void cdch_close(uint8_t daddr) { cdch_interface_t *p_cdc = &cdch_data[idx]; if (p_cdc->daddr == daddr) { TU_LOG_CDC(p_cdc, "close"); + tuh_cdc_umount_cb(idx); // invoke callback - // Invoke application callback - tuh_cdc_umount_cb(idx); - - p_cdc->daddr = 0; + p_cdc->daddr = 0; p_cdc->bInterfaceNumber = 0; p_cdc->mounted = false; tu_edpt_stream_close(&p_cdc->stream.tx); @@ -696,13 +690,12 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t TU_ASSERT(p_cdc); if (ep_addr == p_cdc->stream.tx.ep_addr) { - // invoke tx complete callback to possibly refill tx fifo - tuh_cdc_tx_complete_cb(idx); + tuh_cdc_tx_complete_cb(idx); // invoke transmit complete callback if (0 == tu_edpt_stream_write_xfer(daddr, &p_cdc->stream.tx)) { // If there is no data left, a ZLP should be sent if: // - xferred_bytes is multiple of EP Packet size and not zero - tu_edpt_stream_write_zlp_if_needed(daddr, &p_cdc->stream.tx, xferred_bytes); + (void)tu_edpt_stream_write_zlp_if_needed(daddr, &p_cdc->stream.tx, xferred_bytes); } } else if (ep_addr == p_cdc->stream.rx.ep_addr) { #if CFG_TUH_CDC_FTDI @@ -718,7 +711,6 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t #endif { tu_edpt_stream_read_xfer_complete(&p_cdc->stream.rx, xferred_bytes); - tuh_cdc_rx_cb(idx); // invoke receive callback } @@ -727,7 +719,7 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t } else if (ep_addr == p_cdc->ep_notif) { // TODO handle notification endpoint } else { - TU_ASSERT(false); + return false; } return true; @@ -736,20 +728,17 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t //--------------------------------------------------------------------+ // Enumeration //--------------------------------------------------------------------+ - static bool open_ep_stream_pair(cdch_interface_t *p_cdc, tusb_desc_endpoint_t const *desc_ep) { for (size_t i = 0; i < 2; i++) { TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType && TUSB_XFER_BULK == desc_ep->bmAttributes.xfer); TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep)); + tu_edpt_stream_t *stream = + (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) ? &p_cdc->stream.rx : &p_cdc->stream.tx; + tu_edpt_stream_open(stream, desc_ep); + tu_edpt_stream_clear(stream); - if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { - tu_edpt_stream_open(&p_cdc->stream.rx, desc_ep); - } else { - tu_edpt_stream_open(&p_cdc->stream.tx, desc_ep); - } - - desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(desc_ep); + desc_ep = (const tusb_desc_endpoint_t *)tu_desc_next(desc_ep); } return true; @@ -832,6 +821,7 @@ static void cdch_process_set_config(tuh_xfer_t *xfer) { } } +// return false if there is no active transfer static bool set_line_state_on_enum(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { enum { ENUM_SET_LINE_CODING = 0, diff --git a/src/class/midi/midi_device.c b/src/class/midi/midi_device.c index 79e7dfa71..b20903d68 100644 --- a/src/class/midi/midi_device.c +++ b/src/class/midi/midi_device.c @@ -404,15 +404,17 @@ uint16_t midid_open(uint8_t rhport, const tusb_desc_interface_t *desc_itf, uint1 const uint8_t ep_addr = ((const tusb_desc_endpoint_t *)p_desc)->bEndpointAddress; if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN) { - tu_edpt_stream_open(&p_midi->ep_stream.tx, desc_ep); - tu_edpt_stream_clear(&p_midi->ep_stream.tx); + tu_edpt_stream_t *stream_tx = &p_midi->ep_stream.tx; + tu_edpt_stream_open(stream_tx, desc_ep); + tu_edpt_stream_clear(stream_tx); } else { - tu_edpt_stream_open(&p_midi->ep_stream.rx, desc_ep); - tu_edpt_stream_clear(&p_midi->ep_stream.rx); - TU_ASSERT(tu_edpt_stream_read_xfer(rhport, &p_midi->ep_stream.rx) > 0, 0); // prepare to receive data + tu_edpt_stream_t *stream_rx = &p_midi->ep_stream.rx; + tu_edpt_stream_open(stream_rx, desc_ep); + tu_edpt_stream_clear(stream_rx); + TU_ASSERT(tu_edpt_stream_read_xfer(rhport, stream_rx) > 0, 0); // prepare to receive data } - p_desc = tu_desc_next(p_desc); // skip CS Endpoint descriptor + p_desc = tu_desc_next(p_desc); // skip CS Endpoint descriptor found_ep++; } diff --git a/src/class/midi/midi_host.c b/src/class/midi/midi_host.c index 8b78fe945..07062875c 100644 --- a/src/class/midi/midi_host.c +++ b/src/class/midi/midi_host.c @@ -59,9 +59,6 @@ typedef struct { uint8_t iInterface; uint8_t itf_count; // number of interface including Audio Control + MIDI streaming - uint8_t ep_in; // IN endpoint address - uint8_t ep_out; // OUT endpoint address - uint8_t rx_cable_count; // IN endpoint CS descriptor bNumEmbMIDIJack value uint8_t tx_cable_count; // OUT endpoint CS descriptor bNumEmbMIDIJack value @@ -147,8 +144,6 @@ void midih_close(uint8_t daddr) { TU_LOG_DRV(" MIDI close addr = %u index = %u\r\n", daddr, idx); tuh_midi_umount_cb(idx); - p_midi->ep_in = 0; - p_midi->ep_out = 0; p_midi->bInterfaceNumber = 0; p_midi->rx_cable_count = 0; p_midi->tx_cable_count = 0; @@ -169,23 +164,25 @@ bool midih_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint const uint8_t idx = get_idx_by_ep_addr(dev_addr, ep_addr); TU_VERIFY(idx < CFG_TUH_MIDI); midih_interface_t *p_midi = &_midi_host[idx]; + tu_edpt_stream_t *ep_str_rx = &p_midi->ep_stream.rx; + tu_edpt_stream_t *ep_str_tx = &p_midi->ep_stream.tx; - if (ep_addr == p_midi->ep_stream.rx.ep_addr) { + if (ep_addr == ep_str_rx->ep_addr) { // receive new data, put it into FIFO and invoke callback if available // Note: some devices send back all zero packets even if there is no data ready - if (xferred_bytes && !tu_mem_is_zero(p_midi->ep_stream.rx.ep_buf, xferred_bytes)) { - tu_edpt_stream_read_xfer_complete(&p_midi->ep_stream.rx, xferred_bytes); + if (xferred_bytes && !tu_mem_is_zero(ep_str_rx->ep_buf, xferred_bytes)) { + tu_edpt_stream_read_xfer_complete(ep_str_rx, xferred_bytes); tuh_midi_rx_cb(idx, xferred_bytes); } - tu_edpt_stream_read_xfer(dev_addr, &p_midi->ep_stream.rx); // prepare for next transfer - } else if (ep_addr == p_midi->ep_stream.tx.ep_addr) { + tu_edpt_stream_read_xfer(dev_addr, ep_str_rx); // prepare for next transfer + } else if (ep_addr == ep_str_tx->ep_addr) { tuh_midi_tx_cb(idx, xferred_bytes); - if (0 == tu_edpt_stream_write_xfer(dev_addr, &p_midi->ep_stream.tx)) { + if (0 == tu_edpt_stream_write_xfer(dev_addr, ep_str_tx)) { // If there is no data left, a ZLP should be sent if // xferred_bytes is multiple of EP size and not zero - tu_edpt_stream_write_zlp_if_needed(dev_addr, &p_midi->ep_stream.tx, xferred_bytes); + tu_edpt_stream_write_zlp_if_needed(dev_addr, ep_str_tx, xferred_bytes); } } @@ -295,21 +292,20 @@ bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *d const midi_desc_cs_endpoint_t *p_csep = (const midi_desc_cs_endpoint_t *) p_desc; TU_LOG_DRV(" Endpoint and CS_Endpoint descriptor %02x\r\n", p_ep->bEndpointAddress); + tu_edpt_stream_t *ep_stream; if (tu_edpt_dir(p_ep->bEndpointAddress) == TUSB_DIR_OUT) { - p_midi->ep_out = p_ep->bEndpointAddress; p_midi->tx_cable_count = p_csep->bNumEmbMIDIJack; desc_cb.desc_epout = p_ep; - - TU_ASSERT(tuh_edpt_open(dev_addr, p_ep)); - tu_edpt_stream_open(&p_midi->ep_stream.tx, p_ep); + ep_stream = &p_midi->ep_stream.tx; } else { - p_midi->ep_in = p_ep->bEndpointAddress; p_midi->rx_cable_count = p_csep->bNumEmbMIDIJack; - desc_cb.desc_epin = p_ep; - - TU_ASSERT(tuh_edpt_open(dev_addr, p_ep)); - tu_edpt_stream_open(&p_midi->ep_stream.rx, p_ep); + desc_cb.desc_epin = p_ep; + ep_stream = &p_midi->ep_stream.rx; } + TU_ASSERT(tuh_edpt_open(dev_addr, p_ep)); + tu_edpt_stream_open(ep_stream, p_ep); + tu_edpt_stream_clear(ep_stream); + break; } @@ -379,8 +375,14 @@ bool tuh_midi_itf_get_info(uint8_t idx, tuh_itf_info_t* info) { desc->bDescriptorType = TUSB_DESC_INTERFACE; desc->bInterfaceNumber = p_midi->bInterfaceNumber; - desc->bAlternateSetting = 0; - desc->bNumEndpoints = (uint8_t)((p_midi->ep_in != 0 ? 1:0) + (p_midi->ep_out != 0 ? 1:0)); + desc->bAlternateSetting = 0; + desc->bNumEndpoints = 0; + if (tu_edpt_stream_is_opened(&p_midi->ep_stream.tx)) { + desc->bNumEndpoints++; + } + if (tu_edpt_stream_is_opened(&p_midi->ep_stream.rx)) { + desc->bNumEndpoints++; + } desc->bInterfaceClass = TUSB_CLASS_AUDIO; desc->bInterfaceSubClass = AUDIO_SUBCLASS_MIDI_STREAMING; desc->bInterfaceProtocol = 0; diff --git a/src/common/tusb_common.h b/src/common/tusb_common.h index 7aa42a2d7..f377d5272 100644 --- a/src/common/tusb_common.h +++ b/src/common/tusb_common.h @@ -354,7 +354,7 @@ TU_ATTR_ALWAYS_INLINE static inline uint8_t tu_desc_subtype(void const* desc) { return ((uint8_t const*) desc)[DESC_OFFSET_SUBTYPE]; } -TU_ATTR_ALWAYS_INLINE static inline uint8_t tu_desc_in_bounds(uint8_t const* p_desc, uint8_t const* desc_end) { +TU_ATTR_ALWAYS_INLINE static inline bool tu_desc_in_bounds(const uint8_t *p_desc, const uint8_t *desc_end) { if (p_desc >= desc_end) { return false; } diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index f82f87b6f..be1264a71 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -120,7 +120,6 @@ TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_empty(tu_edpt_stream_t * return tu_fifo_empty(&s->ff); } - //--------------------------------------------------------------------+ // Stream Write //--------------------------------------------------------------------+ diff --git a/src/tusb.c b/src/tusb.c index df33f2680..6fb5309ab 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -517,7 +517,7 @@ uint32_t tu_edpt_stream_read_xfer(uint8_t hwid, tu_edpt_stream_t* s) { } uint32_t tu_edpt_stream_read(uint8_t hwid, tu_edpt_stream_t* s, void* buffer, uint32_t bufsize) { - uint32_t num_read = tu_fifo_read_n(&s->ff, buffer, (uint16_t) bufsize); + const uint32_t num_read = tu_fifo_read_n(&s->ff, buffer, (uint16_t)bufsize); tu_edpt_stream_read_xfer(hwid, s); return num_read; } -- cgit v1.3.1 From f1fc4c9c796e25111ad8249a4dab9245f5091c25 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 10 Dec 2025 14:45:06 +0700 Subject: change tu_fifo_clear()/tu_edpt_stream_clear() from return bool to void --- .gitignore | 4 ++-- src/class/audio/audio_device.c | 6 ++++-- src/class/cdc/cdc_device.c | 3 ++- src/class/cdc/cdc_host.c | 7 ++++--- src/common/tusb_fifo.c | 3 +-- src/common/tusb_fifo.h | 2 +- src/common/tusb_private.h | 16 +++++++++++++--- src/tusb.c | 13 ------------- 8 files changed, 27 insertions(+), 27 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/.gitignore b/.gitignore index 93d13503f..162f9a019 100644 --- a/.gitignore +++ b/.gitignore @@ -30,7 +30,8 @@ settings/ /examples/*/*/build* test_old/ tests_obsolete/ -_build +_build/ +build/ /examples/*/*/ses /examples/*/*/ozone /examples/obsolete @@ -47,7 +48,6 @@ cmake-build-* sdkconfig .PVS-Studio .vscode/ -build CMakeFiles Debug RelWithDebInfo diff --git a/src/class/audio/audio_device.c b/src/class/audio/audio_device.c index 1dda8af99..77ef54222 100644 --- a/src/class/audio/audio_device.c +++ b/src/class/audio/audio_device.c @@ -485,7 +485,8 @@ uint16_t tud_audio_n_read(uint8_t func_id, void *buffer, uint16_t bufsize) { bool tud_audio_n_clear_ep_out_ff(uint8_t func_id) { TU_VERIFY(func_id < CFG_TUD_AUDIO && _audiod_fct[func_id].p_desc != NULL); - return tu_fifo_clear(&_audiod_fct[func_id].ep_out_ff); + tu_fifo_clear(&_audiod_fct[func_id].ep_out_ff); + return true; } tu_fifo_t *tud_audio_n_get_ep_out_ff(uint8_t func_id) { @@ -536,7 +537,8 @@ uint16_t tud_audio_n_write(uint8_t func_id, const void *data, uint16_t len) { bool tud_audio_n_clear_ep_in_ff(uint8_t func_id) { TU_VERIFY(func_id < CFG_TUD_AUDIO && _audiod_fct[func_id].p_desc != NULL); - return tu_fifo_clear(&_audiod_fct[func_id].ep_in_ff); + tu_fifo_clear(&_audiod_fct[func_id].ep_in_ff); + return true; } tu_fifo_t *tud_audio_n_get_ep_in_ff(uint8_t func_id) { diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index d7792afe4..a446782e3 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -244,7 +244,8 @@ uint32_t tud_cdc_n_write_available(uint8_t itf) { bool tud_cdc_n_write_clear(uint8_t itf) { TU_VERIFY(itf < CFG_TUD_CDC); cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; - return tu_edpt_stream_clear(&p_cdc->stream.tx); + tu_edpt_stream_clear(&p_cdc->stream.tx); + return true; } //--------------------------------------------------------------------+ diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 35717ddf6..e069d9f71 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -482,7 +482,8 @@ uint32_t tuh_cdc_write_flush(uint8_t idx) { bool tuh_cdc_write_clear(uint8_t idx) { cdch_interface_t * p_cdc = get_itf(idx); TU_VERIFY(p_cdc); - return tu_edpt_stream_clear(&p_cdc->stream.tx); + tu_edpt_stream_clear(&p_cdc->stream.tx); + return true; } uint32_t tuh_cdc_write_available(uint8_t idx) { @@ -517,9 +518,9 @@ bool tuh_cdc_read_clear (uint8_t idx) { cdch_interface_t * p_cdc = get_itf(idx); TU_VERIFY(p_cdc); - bool ret = tu_edpt_stream_clear(&p_cdc->stream.rx); + tu_edpt_stream_clear(&p_cdc->stream.rx); (void)tu_edpt_stream_read_xfer(p_cdc->daddr, &p_cdc->stream.rx); - return ret; + return true; } //--------------------------------------------------------------------+ diff --git a/src/common/tusb_fifo.c b/src/common/tusb_fifo.c index 06b0d6a58..1313fc328 100644 --- a/src/common/tusb_fifo.c +++ b/src/common/tusb_fifo.c @@ -84,7 +84,7 @@ bool tu_fifo_config(tu_fifo_t *f, void *buffer, uint16_t depth, uint16_t item_si } // clear fifo by resetting read and write indices -bool tu_fifo_clear(tu_fifo_t *f) { +void tu_fifo_clear(tu_fifo_t *f) { ff_lock(f->mutex_wr); ff_lock(f->mutex_rd); @@ -93,7 +93,6 @@ bool tu_fifo_clear(tu_fifo_t *f) { ff_unlock(f->mutex_wr); ff_unlock(f->mutex_rd); - return true; } // Change the fifo overwritable mode diff --git a/src/common/tusb_fifo.h b/src/common/tusb_fifo.h index 94ab421bb..5bc05b56c 100644 --- a/src/common/tusb_fifo.h +++ b/src/common/tusb_fifo.h @@ -158,7 +158,7 @@ typedef enum { //--------------------------------------------------------------------+ bool tu_fifo_config(tu_fifo_t *f, void *buffer, uint16_t depth, uint16_t item_size, bool overwritable); bool tu_fifo_set_overwritable(tu_fifo_t *f, bool overwritable); -bool tu_fifo_clear(tu_fifo_t *f); +void tu_fifo_clear(tu_fifo_t *f); #if OSAL_MUTEX_REQUIRED TU_ATTR_ALWAYS_INLINE static inline diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index 0e9eef732..df518d5ff 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -108,7 +108,17 @@ bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool ove void* ff_buf, uint16_t ff_bufsize, uint8_t* ep_buf, uint16_t ep_bufsize); // Deinit an endpoint stream -bool tu_edpt_stream_deinit(tu_edpt_stream_t* s); +TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_deinit(tu_edpt_stream_t *s) { + (void)s; +#if OSAL_MUTEX_REQUIRED + if (s->ff.mutex_wr) { + osal_mutex_delete(s->ff.mutex_wr); + } + if (s->ff.mutex_rd) { + osal_mutex_delete(s->ff.mutex_rd); + } +#endif +} // Open an endpoint stream TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_open(tu_edpt_stream_t* s, tusb_desc_endpoint_t const *desc_ep) { @@ -124,8 +134,8 @@ TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_close(tu_edpt_stream_t* s->ep_addr = 0; } -TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_clear(tu_edpt_stream_t* s) { - return tu_fifo_clear(&s->ff); +TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_clear(tu_edpt_stream_t *s) { + tu_fifo_clear(&s->ff); } TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_empty(tu_edpt_stream_t *s) { diff --git a/src/tusb.c b/src/tusb.c index ecdd569c4..fef5b1b75 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -358,19 +358,6 @@ bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool ove return true; } -bool tu_edpt_stream_deinit(tu_edpt_stream_t *s) { - (void)s; - #if OSAL_MUTEX_REQUIRED - if (s->ff.mutex_wr) { - osal_mutex_delete(s->ff.mutex_wr); - } - if (s->ff.mutex_rd) { - osal_mutex_delete(s->ff.mutex_rd); - } - #endif - return true; -} - static bool stream_claim(uint8_t hwid, tu_edpt_stream_t *s) { if (s->is_host) { #if CFG_TUH_ENABLED -- cgit v1.3.1 From 39853dfb25c8828490e197ad4c1dd9616949110a Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 10 Dec 2025 20:47:08 +0700 Subject: move hwid into edpt stream for consistent API --- src/class/cdc/cdc_device.c | 33 ++++++++-------- src/class/cdc/cdc_host.c | 20 +++++----- src/class/midi/midi_device.c | 35 +++++++++-------- src/class/midi/midi_host.c | 32 ++++++++-------- src/class/vendor/vendor_device.c | 29 +++++++------- src/common/tusb_private.h | 28 +++++++------- src/device/usbd.c | 14 +++---- src/tusb.c | 83 ++++++++++++++++++++-------------------- 8 files changed, 139 insertions(+), 135 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index dfdee8bd4..8ea4080cc 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -203,7 +203,7 @@ uint32_t tud_cdc_n_available(uint8_t itf) { uint32_t tud_cdc_n_read(uint8_t itf, void* buffer, uint32_t bufsize) { TU_VERIFY(itf < CFG_TUD_CDC, 0); cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; - return tu_edpt_stream_read(p_cdc->rhport, &p_cdc->rx_stream, buffer, bufsize); + return tu_edpt_stream_read(&p_cdc->rx_stream, buffer, bufsize); } bool tud_cdc_n_peek(uint8_t itf, uint8_t *chr) { @@ -215,7 +215,7 @@ void tud_cdc_n_read_flush(uint8_t itf) { TU_VERIFY(itf < CFG_TUD_CDC, ); cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; tu_edpt_stream_clear(&p_cdc->rx_stream); - tu_edpt_stream_read_xfer(p_cdc->rhport, &p_cdc->rx_stream); + tu_edpt_stream_read_xfer(&p_cdc->rx_stream); } //--------------------------------------------------------------------+ @@ -224,19 +224,19 @@ void tud_cdc_n_read_flush(uint8_t itf) { uint32_t tud_cdc_n_write(uint8_t itf, const void* buffer, uint32_t bufsize) { TU_VERIFY(itf < CFG_TUD_CDC, 0); cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; - return tu_edpt_stream_write(p_cdc->rhport, &p_cdc->tx_stream, buffer, bufsize); + return tu_edpt_stream_write(&p_cdc->tx_stream, buffer, bufsize); } uint32_t tud_cdc_n_write_flush(uint8_t itf) { TU_VERIFY(itf < CFG_TUD_CDC, 0); cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; - return tu_edpt_stream_write_xfer(p_cdc->rhport, &p_cdc->tx_stream); + return tu_edpt_stream_write_xfer(&p_cdc->tx_stream); } uint32_t tud_cdc_n_write_available(uint8_t itf) { TU_VERIFY(itf < CFG_TUD_CDC, 0); cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; - return tu_edpt_stream_write_available(p_cdc->rhport, &p_cdc->tx_stream); + return tu_edpt_stream_write_available(&p_cdc->tx_stream); } bool tud_cdc_n_write_clear(uint8_t itf) { @@ -269,14 +269,14 @@ void cdcd_init(void) { uint8_t *epin_buf = _cdcd_epbuf[i].epin; #endif - tu_edpt_stream_init(&p_cdc->rx_stream, false, false, false, p_cdc->rx_ff_buf, CFG_TUD_CDC_RX_BUFSIZE, - epout_buf, CFG_TUD_CDC_EP_BUFSIZE); + tu_edpt_stream_init(&p_cdc->rx_stream, false, false, false, p_cdc->rx_ff_buf, CFG_TUD_CDC_RX_BUFSIZE, epout_buf, + CFG_TUD_CDC_EP_BUFSIZE); // TX fifo can be configured to change to overwritable if not connected (DTR bit not set). Without DTR we do not // know if data is actually polled by terminal. This way the most current data is prioritized. // Default: is overwritable - tu_edpt_stream_init(&p_cdc->tx_stream, false, true, _cdcd_cfg.tx_overwritabe_if_not_connected, - p_cdc->tx_ff_buf, CFG_TUD_CDC_TX_BUFSIZE, epin_buf, CFG_TUD_CDC_EP_BUFSIZE); + tu_edpt_stream_init(&p_cdc->tx_stream, false, true, _cdcd_cfg.tx_overwritabe_if_not_connected, p_cdc->tx_ff_buf, + CFG_TUD_CDC_TX_BUFSIZE, epin_buf, CFG_TUD_CDC_EP_BUFSIZE); } } @@ -351,20 +351,20 @@ uint16_t cdcd_open(uint8_t rhport, const tusb_desc_interface_t* itf_desc, uint16 if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { tu_edpt_stream_t *stream_tx = &p_cdc->tx_stream; - tu_edpt_stream_open(stream_tx, desc_ep); + tu_edpt_stream_open(stream_tx, rhport, desc_ep); if (_cdcd_cfg.tx_persistent) { - tu_edpt_stream_write_xfer(rhport, stream_tx); // flush pending data + tu_edpt_stream_write_xfer(stream_tx); // flush pending data } else { tu_edpt_stream_clear(stream_tx); } } else { tu_edpt_stream_t *stream_rx = &p_cdc->rx_stream; - tu_edpt_stream_open(stream_rx, desc_ep); + tu_edpt_stream_open(stream_rx, rhport, desc_ep); if (!_cdcd_cfg.rx_persistent) { tu_edpt_stream_clear(stream_rx); } - TU_ASSERT(tu_edpt_stream_read_xfer(rhport, stream_rx) > 0, 0); // prepare for incoming data + TU_ASSERT(tu_edpt_stream_read_xfer(stream_rx) > 0, 0); // prepare for incoming data } } @@ -460,6 +460,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_control_requ } bool cdcd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { + (void)rhport; (void)result; uint8_t itf = find_cdc_itf(ep_addr); @@ -510,7 +511,7 @@ bool cdcd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_ tud_cdc_rx_cb(itf); } - tu_edpt_stream_read_xfer(rhport, stream_rx); // prepare for more data + tu_edpt_stream_read_xfer(stream_rx); // prepare for more data } // Data sent to host, we continue to fetch from tx fifo to send. @@ -518,9 +519,9 @@ bool cdcd_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_ if (ep_addr == stream_tx->ep_addr) { tud_cdc_tx_complete_cb(itf); // invoke callback to possibly refill tx fifo - if (0 == tu_edpt_stream_write_xfer(rhport, stream_tx)) { + if (0 == tu_edpt_stream_write_xfer(stream_tx)) { // If there is no data left, a ZLP should be sent if needed - tu_edpt_stream_write_zlp_if_needed(rhport, stream_tx, xferred_bytes); + tu_edpt_stream_write_zlp_if_needed(stream_tx, xferred_bytes); } } diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index e069d9f71..28abbf098 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -470,13 +470,13 @@ bool tuh_cdc_get_line_coding_local(uint8_t idx, cdc_line_coding_t * line_coding) uint32_t tuh_cdc_write(uint8_t idx, void const * buffer, uint32_t bufsize) { cdch_interface_t * p_cdc = get_itf(idx); TU_VERIFY(p_cdc); - return tu_edpt_stream_write(p_cdc->daddr, &p_cdc->stream.tx, buffer, bufsize); + return tu_edpt_stream_write(&p_cdc->stream.tx, buffer, bufsize); } uint32_t tuh_cdc_write_flush(uint8_t idx) { cdch_interface_t * p_cdc = get_itf(idx); TU_VERIFY(p_cdc); - return tu_edpt_stream_write_xfer(p_cdc->daddr, &p_cdc->stream.tx); + return tu_edpt_stream_write_xfer(&p_cdc->stream.tx); } bool tuh_cdc_write_clear(uint8_t idx) { @@ -489,7 +489,7 @@ bool tuh_cdc_write_clear(uint8_t idx) { uint32_t tuh_cdc_write_available(uint8_t idx) { cdch_interface_t * p_cdc = get_itf(idx); TU_VERIFY(p_cdc); - return tu_edpt_stream_write_available(p_cdc->daddr, &p_cdc->stream.tx); + return tu_edpt_stream_write_available(&p_cdc->stream.tx); } //--------------------------------------------------------------------+ @@ -499,7 +499,7 @@ uint32_t tuh_cdc_write_available(uint8_t idx) { uint32_t tuh_cdc_read (uint8_t idx, void * buffer, uint32_t bufsize) { cdch_interface_t * p_cdc = get_itf(idx); TU_VERIFY(p_cdc); - return tu_edpt_stream_read(p_cdc->daddr, &p_cdc->stream.rx, buffer, bufsize); + return tu_edpt_stream_read(&p_cdc->stream.rx, buffer, bufsize); } uint32_t tuh_cdc_read_available(uint8_t idx) { @@ -519,7 +519,7 @@ bool tuh_cdc_read_clear (uint8_t idx) { TU_VERIFY(p_cdc); tu_edpt_stream_clear(&p_cdc->stream.rx); - (void)tu_edpt_stream_read_xfer(p_cdc->daddr, &p_cdc->stream.rx); + (void)tu_edpt_stream_read_xfer(&p_cdc->stream.rx); return true; } @@ -693,10 +693,10 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t if (ep_addr == p_cdc->stream.tx.ep_addr) { tuh_cdc_tx_complete_cb(idx); // invoke transmit complete callback - if (0 == tu_edpt_stream_write_xfer(daddr, &p_cdc->stream.tx)) { + if (0 == tu_edpt_stream_write_xfer(&p_cdc->stream.tx)) { // If there is no data left, a ZLP should be sent if: // - xferred_bytes is multiple of EP Packet size and not zero - (void)tu_edpt_stream_write_zlp_if_needed(daddr, &p_cdc->stream.tx, xferred_bytes); + (void)tu_edpt_stream_write_zlp_if_needed(&p_cdc->stream.tx, xferred_bytes); } } else if (ep_addr == p_cdc->stream.rx.ep_addr) { #if CFG_TUH_CDC_FTDI @@ -716,7 +716,7 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t } // prepare for next transfer if needed - tu_edpt_stream_read_xfer(daddr, &p_cdc->stream.rx); + tu_edpt_stream_read_xfer(&p_cdc->stream.rx); } else if (ep_addr == p_cdc->ep_notif) { // TODO handle notification endpoint } else { @@ -736,7 +736,7 @@ static bool open_ep_stream_pair(cdch_interface_t *p_cdc, tusb_desc_endpoint_t co TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep)); tu_edpt_stream_t *stream = (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) ? &p_cdc->stream.rx : &p_cdc->stream.tx; - tu_edpt_stream_open(stream, desc_ep); + tu_edpt_stream_open(stream, p_cdc->daddr, desc_ep); tu_edpt_stream_clear(stream); desc_ep = (const tusb_desc_endpoint_t *)tu_desc_next(desc_ep); @@ -799,7 +799,7 @@ static void set_config_complete(cdch_interface_t *p_cdc, bool success) { p_cdc->mounted = true; tuh_cdc_mount_cb(idx); // Prepare for incoming data - tu_edpt_stream_read_xfer(p_cdc->daddr, &p_cdc->stream.rx); + tu_edpt_stream_read_xfer(&p_cdc->stream.rx); } else { // clear the interface entry p_cdc->daddr = 0; diff --git a/src/class/midi/midi_device.c b/src/class/midi/midi_device.c index 8d1dc7d4a..e0a5aa9c3 100644 --- a/src/class/midi/midi_device.c +++ b/src/class/midi/midi_device.c @@ -172,7 +172,7 @@ bool tud_midi_n_packet_read(uint8_t itf, uint8_t packet[4]) { midid_interface_t *p_midi = &_midid_itf[itf]; tu_edpt_stream_t *ep_str = &p_midi->ep_stream.rx; TU_VERIFY(tu_edpt_stream_is_opened(ep_str)); - return 4 == tu_edpt_stream_read(p_midi->rhport, ep_str, packet, 4); + return 4 == tu_edpt_stream_read(ep_str, packet, 4); } uint32_t tud_midi_n_packet_read_n(uint8_t itf, uint8_t packets[], uint32_t max_packets) { @@ -180,7 +180,7 @@ uint32_t tud_midi_n_packet_read_n(uint8_t itf, uint8_t packets[], uint32_t max_p tu_edpt_stream_t *ep_str = &p_midi->ep_stream.rx; TU_VERIFY(tu_edpt_stream_is_opened(ep_str), 0); - const uint32_t num_read = tu_edpt_stream_read(p_midi->rhport, ep_str, packets, 4u * max_packets); + const uint32_t num_read = tu_edpt_stream_read(ep_str, packets, 4u * max_packets); return num_read >> 2u; } @@ -195,7 +195,7 @@ uint32_t tud_midi_n_stream_write(uint8_t itf, uint8_t cable_num, const uint8_t * uint32_t i = 0; while (i < bufsize) { - if (tu_edpt_stream_write_available(p_midi->rhport, ep_str) < 4) { + if (tu_edpt_stream_write_available(ep_str) < 4) { break; } @@ -268,7 +268,7 @@ uint32_t tud_midi_n_stream_write(uint8_t itf, uint8_t cable_num, const uint8_t * stream->buffer[idx] = 0; } - const uint32_t count = tu_edpt_stream_write(p_midi->rhport, ep_str, stream->buffer, 4); + const uint32_t count = tu_edpt_stream_write(ep_str, stream->buffer, 4); // complete current event packet, reset stream stream->index = stream->total = 0; @@ -278,7 +278,7 @@ uint32_t tud_midi_n_stream_write(uint8_t itf, uint8_t cable_num, const uint8_t * } } - (void)tu_edpt_stream_write_xfer(p_midi->rhport, ep_str); + (void)tu_edpt_stream_write_xfer(ep_str); return i; } @@ -288,9 +288,9 @@ bool tud_midi_n_packet_write (uint8_t itf, const uint8_t packet[4]) { tu_edpt_stream_t *ep_str = &p_midi->ep_stream.tx; TU_VERIFY(tu_edpt_stream_is_opened(ep_str)); - TU_VERIFY(tu_edpt_stream_write_available(p_midi->rhport, ep_str) >= 4); - TU_VERIFY(tu_edpt_stream_write(p_midi->rhport, ep_str, packet, 4) > 0); - (void)tu_edpt_stream_write_xfer(p_midi->rhport, ep_str); + TU_VERIFY(tu_edpt_stream_write_available(ep_str) >= 4); + TU_VERIFY(tu_edpt_stream_write(ep_str, packet, 4) > 0); + (void)tu_edpt_stream_write_xfer(ep_str); return true; } @@ -300,11 +300,11 @@ uint32_t tud_midi_n_packet_write_n(uint8_t itf, const uint8_t packets[], uint32_ tu_edpt_stream_t *ep_str = &p_midi->ep_stream.tx; TU_VERIFY(tu_edpt_stream_is_opened(ep_str), 0); - uint32_t n_bytes = tu_edpt_stream_write_available(p_midi->rhport, ep_str); + uint32_t n_bytes = tu_edpt_stream_write_available(ep_str); n_bytes = tu_min32(tu_align4(n_bytes), n_packets << 2u); - const uint32_t n_write = tu_edpt_stream_write(p_midi->rhport, ep_str, packets, n_bytes); - (void)tu_edpt_stream_write_xfer(p_midi->rhport, ep_str); + const uint32_t n_write = tu_edpt_stream_write(ep_str, packets, n_bytes); + (void)tu_edpt_stream_write_xfer(ep_str); return n_write >> 2u; } @@ -411,13 +411,13 @@ uint16_t midid_open(uint8_t rhport, const tusb_desc_interface_t *desc_itf, uint1 if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN) { tu_edpt_stream_t *stream_tx = &p_midi->ep_stream.tx; - tu_edpt_stream_open(stream_tx, desc_ep); + tu_edpt_stream_open(stream_tx, rhport, desc_ep); tu_edpt_stream_clear(stream_tx); } else { tu_edpt_stream_t *stream_rx = &p_midi->ep_stream.rx; - tu_edpt_stream_open(stream_rx, desc_ep); + tu_edpt_stream_open(stream_rx, rhport, desc_ep); tu_edpt_stream_clear(stream_rx); - TU_ASSERT(tu_edpt_stream_read_xfer(rhport, stream_rx) > 0, 0); // prepare to receive data + TU_ASSERT(tu_edpt_stream_read_xfer(stream_rx) > 0, 0); // prepare to receive data } p_desc = tu_desc_next(p_desc); // skip CS Endpoint descriptor @@ -439,6 +439,7 @@ bool midid_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_control_req } bool midid_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { + (void)rhport; (void)result; uint8_t idx = find_midi_itf(ep_addr); @@ -454,12 +455,12 @@ bool midid_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32 tu_edpt_stream_read_xfer_complete(ep_st_rx, xferred_bytes); tud_midi_rx_cb(idx); // invoke callback } - tu_edpt_stream_read_xfer(rhport, ep_st_rx); // prepare for next data + tu_edpt_stream_read_xfer(ep_st_rx); // prepare for next data } else if (ep_addr == ep_st_tx->ep_addr && result == XFER_RESULT_SUCCESS) { // sent complete: try to send more if possible - if (0 == tu_edpt_stream_write_xfer(rhport, ep_st_tx)) { + if (0 == tu_edpt_stream_write_xfer(ep_st_tx)) { // If there is no data left, a ZLP should be sent if needed - (void)tu_edpt_stream_write_zlp_if_needed(rhport, ep_st_tx, xferred_bytes); + (void)tu_edpt_stream_write_zlp_if_needed(ep_st_tx, xferred_bytes); } } else { return false; diff --git a/src/class/midi/midi_host.c b/src/class/midi/midi_host.c index 07062875c..b4f5ac445 100644 --- a/src/class/midi/midi_host.c +++ b/src/class/midi/midi_host.c @@ -175,14 +175,14 @@ bool midih_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint tuh_midi_rx_cb(idx, xferred_bytes); } - tu_edpt_stream_read_xfer(dev_addr, ep_str_rx); // prepare for next transfer + tu_edpt_stream_read_xfer(ep_str_rx); // prepare for next transfer } else if (ep_addr == ep_str_tx->ep_addr) { tuh_midi_tx_cb(idx, xferred_bytes); - if (0 == tu_edpt_stream_write_xfer(dev_addr, ep_str_tx)) { + if (0 == tu_edpt_stream_write_xfer(ep_str_tx)) { // If there is no data left, a ZLP should be sent if // xferred_bytes is multiple of EP size and not zero - tu_edpt_stream_write_zlp_if_needed(dev_addr, ep_str_tx, xferred_bytes); + tu_edpt_stream_write_zlp_if_needed(ep_str_tx, xferred_bytes); } } @@ -303,7 +303,7 @@ bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *d ep_stream = &p_midi->ep_stream.rx; } TU_ASSERT(tuh_edpt_open(dev_addr, p_ep)); - tu_edpt_stream_open(ep_stream, p_ep); + tu_edpt_stream_open(ep_stream, dev_addr, p_ep); tu_edpt_stream_clear(ep_stream); break; @@ -335,7 +335,7 @@ bool midih_set_config(uint8_t dev_addr, uint8_t itf_num) { }; tuh_midi_mount_cb(idx, &mount_cb_data); - tu_edpt_stream_read_xfer(dev_addr, &p_midi->ep_stream.rx); // prepare for incoming data + tu_edpt_stream_read_xfer(&p_midi->ep_stream.rx); // prepare for incoming data // No special config things to do for MIDI usbh_driver_set_config_complete(dev_addr, p_midi->bInterfaceNumber); @@ -414,7 +414,7 @@ uint32_t tuh_midi_read_available(uint8_t idx) { uint32_t tuh_midi_write_flush(uint8_t idx) { TU_VERIFY(idx < CFG_TUH_MIDI); midih_interface_t *p_midi = &_midi_host[idx]; - return tu_edpt_stream_write_xfer(p_midi->daddr, &p_midi->ep_stream.tx); + return tu_edpt_stream_write_xfer(&p_midi->ep_stream.tx); } //--------------------------------------------------------------------+ @@ -427,7 +427,7 @@ uint32_t tuh_midi_packet_read_n(uint8_t idx, uint8_t* buffer, uint32_t bufsize) uint32_t count4 = tu_min32(bufsize, tu_edpt_stream_read_available(&p_midi->ep_stream.rx)); count4 = tu_align4(count4); // round down to multiple of 4 TU_VERIFY(count4 > 0, 0); - return tu_edpt_stream_read(p_midi->daddr, &p_midi->ep_stream.rx, buffer, count4); + return tu_edpt_stream_read(&p_midi->ep_stream.rx, buffer, count4); } uint32_t tuh_midi_packet_write_n(uint8_t idx, const uint8_t* buffer, uint32_t bufsize) { @@ -436,7 +436,7 @@ uint32_t tuh_midi_packet_write_n(uint8_t idx, const uint8_t* buffer, uint32_t bu const uint32_t bufsize4 = tu_align4(bufsize); TU_VERIFY(bufsize4 > 0, 0); - return tu_edpt_stream_write(p_midi->daddr, &p_midi->ep_stream.tx, buffer, bufsize4); + return tu_edpt_stream_write(&p_midi->ep_stream.tx, buffer, bufsize4); } //--------------------------------------------------------------------+ @@ -450,8 +450,8 @@ uint32_t tuh_midi_stream_write(uint8_t idx, uint8_t cable_num, uint8_t const *bu midi_driver_stream_t *stream = &p_midi->stream_write; uint32_t byte_count = 0; - while ((byte_count < bufsize) && (tu_edpt_stream_write_available(p_midi->daddr, &p_midi->ep_stream.tx) >= 4)) { - uint8_t const data = buffer[byte_count]; + while ((byte_count < bufsize) && (tu_edpt_stream_write_available(&p_midi->ep_stream.tx) >= 4)) { + const uint8_t data = buffer[byte_count]; byte_count++; if (data >= MIDI_STATUS_SYSREAL_TIMING_CLOCK) { // real-time messages need to be sent right away @@ -460,7 +460,7 @@ uint32_t tuh_midi_stream_write(uint8_t idx, uint8_t cable_num, uint8_t const *bu streamrt.buffer[1] = data; streamrt.index = 2; streamrt.total = 2; - uint32_t const count = tu_edpt_stream_write(p_midi->daddr, &p_midi->ep_stream.tx, streamrt.buffer, 4); + const uint32_t count = tu_edpt_stream_write(&p_midi->ep_stream.tx, streamrt.buffer, 4); TU_ASSERT(count == 4, byte_count); // Check FIFO overflown, since we already check fifo remaining. It is probably race condition } else if (stream->index == 0) { //------------- New event packet -------------// @@ -529,7 +529,7 @@ uint32_t tuh_midi_stream_write(uint8_t idx, uint8_t cable_num, uint8_t const *bu } TU_LOG3_MEM(stream->buffer, 4, 2); - const uint32_t count = tu_edpt_stream_write(p_midi->daddr, &p_midi->ep_stream.tx, stream->buffer, 4); + const uint32_t count = tu_edpt_stream_write(&p_midi->ep_stream.tx, stream->buffer, 4); // complete current event packet, reset stream stream->index = 0; @@ -551,7 +551,7 @@ uint32_t tuh_midi_stream_read(uint8_t idx, uint8_t *p_cable_num, uint8_t *p_buff return 0; } *p_cable_num = (one_byte >> 4) & 0xf; - uint32_t nread = tu_edpt_stream_read(p_midi->daddr, &p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); + uint32_t nread = tu_edpt_stream_read(&p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); static uint16_t cable_sysex_in_progress;// bit i is set if received MIDI_STATUS_SYSEX_START but not MIDI_STATUS_SYSEX_END while (nread == 4 && bytes_buffered < bufsize) { *p_cable_num = (p_midi->stream_read.buffer[0] >> 4) & 0x0f; @@ -579,7 +579,7 @@ uint32_t tuh_midi_stream_read(uint8_t idx, uint8_t *p_cable_num, uint8_t *p_buff } else { // bad packet discard - nread = tu_edpt_stream_read(p_midi->daddr, &p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); + nread = tu_edpt_stream_read(&p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); continue; } } else if (status < MIDI_STATUS_SYSEX_START) { @@ -626,7 +626,7 @@ uint32_t tuh_midi_stream_read(uint8_t idx, uint8_t *p_cable_num, uint8_t *p_buff } else { // bad packet discard - nread = tu_edpt_stream_read(p_midi->daddr, &p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); + nread = tu_edpt_stream_read(&p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); continue; } @@ -639,7 +639,7 @@ uint32_t tuh_midi_stream_read(uint8_t idx, uint8_t *p_cable_num, uint8_t *p_buff uint8_t new_cable = (one_byte >> 4) & 0xf; if (new_cable == *p_cable_num) { // still on the same cable. Continue reading the stream - nread = tu_edpt_stream_read(p_midi->daddr, &p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); + nread = tu_edpt_stream_read(&p_midi->ep_stream.rx, p_midi->stream_read.buffer, 4); } } } diff --git a/src/class/vendor/vendor_device.c b/src/class/vendor/vendor_device.c index eb78a13c4..9972911e0 100644 --- a/src/class/vendor/vendor_device.c +++ b/src/class/vendor/vendor_device.c @@ -119,14 +119,14 @@ bool tud_vendor_n_peek(uint8_t idx, uint8_t *u8) { uint32_t tud_vendor_n_read(uint8_t idx, void *buffer, uint32_t bufsize) { TU_VERIFY(idx < CFG_TUD_VENDOR, 0); vendord_interface_t *p_itf = &_vendord_itf[idx]; - return tu_edpt_stream_read(p_itf->rhport, &p_itf->stream.rx, buffer, bufsize); + return tu_edpt_stream_read(&p_itf->stream.rx, buffer, bufsize); } void tud_vendor_n_read_flush(uint8_t idx) { TU_VERIFY(idx < CFG_TUD_VENDOR, ); vendord_interface_t *p_itf = &_vendord_itf[idx]; tu_edpt_stream_clear(&p_itf->stream.rx); - tu_edpt_stream_read_xfer(p_itf->rhport, &p_itf->stream.rx); + tu_edpt_stream_read_xfer(&p_itf->stream.rx); } #endif @@ -134,7 +134,7 @@ void tud_vendor_n_read_flush(uint8_t idx) { bool tud_vendor_n_read_xfer(uint8_t idx) { TU_VERIFY(idx < CFG_TUD_VENDOR); vendord_interface_t *p_itf = &_vendord_itf[idx]; - return tu_edpt_stream_read_xfer(p_itf->rhport, &p_itf->stream.rx); + return tu_edpt_stream_read_xfer(&p_itf->stream.rx); } #endif @@ -145,20 +145,20 @@ bool tud_vendor_n_read_xfer(uint8_t idx) { uint32_t tud_vendor_n_write(uint8_t idx, const void *buffer, uint32_t bufsize) { TU_VERIFY(idx < CFG_TUD_VENDOR, 0); vendord_interface_t *p_itf = &_vendord_itf[idx]; - return tu_edpt_stream_write(p_itf->rhport, &p_itf->stream.tx, buffer, (uint16_t)bufsize); + return tu_edpt_stream_write(&p_itf->stream.tx, buffer, (uint16_t)bufsize); } #if CFG_TUD_VENDOR_TX_BUFSIZE > 0 uint32_t tud_vendor_n_write_flush(uint8_t idx) { TU_VERIFY(idx < CFG_TUD_VENDOR, 0); vendord_interface_t *p_itf = &_vendord_itf[idx]; - return tu_edpt_stream_write_xfer(p_itf->rhport, &p_itf->stream.tx); + return tu_edpt_stream_write_xfer(&p_itf->stream.tx); } uint32_t tud_vendor_n_write_available(uint8_t idx) { TU_VERIFY(idx < CFG_TUD_VENDOR, 0); vendord_interface_t *p_itf = &_vendord_itf[idx]; - return tu_edpt_stream_write_available(p_itf->rhport, &p_itf->stream.tx); + return tu_edpt_stream_write_available(&p_itf->stream.tx); } #endif @@ -270,15 +270,15 @@ uint16_t vendord_open(uint8_t rhport, const tusb_desc_interface_t *desc_itf, uin if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { tu_edpt_stream_t *stream_tx = &p_vendor->stream.tx; if (stream_tx->ep_addr == 0) { - tu_edpt_stream_open(stream_tx, desc_ep); - tu_edpt_stream_write_xfer(rhport, stream_tx); // flush pending data + tu_edpt_stream_open(stream_tx, rhport, desc_ep); + tu_edpt_stream_write_xfer(stream_tx); // flush pending data } } else { tu_edpt_stream_t *stream_rx = &p_vendor->stream.rx; if (stream_rx->ep_addr == 0) { - tu_edpt_stream_open(stream_rx, desc_ep); + tu_edpt_stream_open(stream_rx, rhport, desc_ep); #if CFG_TUD_VENDOR_RX_MANUAL_XFER == 0 - TU_ASSERT(tu_edpt_stream_read_xfer(rhport, stream_rx) > 0, 0); // prepare for incoming data + TU_ASSERT(tu_edpt_stream_read_xfer(stream_rx) > 0, 0); // prepare for incoming data #endif } } @@ -291,7 +291,8 @@ uint16_t vendord_open(uint8_t rhport, const tusb_desc_interface_t *desc_itf, uin } bool vendord_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { - (void) result; + (void)rhport; + (void)result; const uint8_t idx = find_vendor_itf(ep_addr); TU_VERIFY(idx < CFG_TUD_VENDOR); vendord_interface_t *p_vendor = &_vendord_itf[idx]; @@ -310,7 +311,7 @@ bool vendord_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint #endif #if CFG_TUD_VENDOR_RX_MANUAL_XFER == 0 - tu_edpt_stream_read_xfer(rhport, &p_vendor->stream.rx); // prepare next data + tu_edpt_stream_read_xfer(&p_vendor->stream.rx); // prepare next data #endif } else if (ep_addr == p_vendor->stream.tx.ep_addr) { // Send complete @@ -318,9 +319,9 @@ bool vendord_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint #if CFG_TUD_VENDOR_TX_BUFSIZE > 0 // try to send more if possible - if (0 == tu_edpt_stream_write_xfer(rhport, &p_vendor->stream.tx)) { + if (0 == tu_edpt_stream_write_xfer(&p_vendor->stream.tx)) { // If there is no data left, a ZLP should be sent if xferred_bytes is multiple of EP Packet size and not zero - tu_edpt_stream_write_zlp_if_needed(rhport, &p_vendor->stream.tx, xferred_bytes); + tu_edpt_stream_write_zlp_if_needed(&p_vendor->stream.tx, xferred_bytes); } #endif } diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index 69e82cda1..5cea7b5a0 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -65,17 +65,17 @@ typedef struct TU_ATTR_PACKED { } tu_edpt_state_t; typedef struct { - bool is_host; // 1: host, 0: device + uint8_t hwid; // device: rhport, host: daddr + bool is_host; // 1: host, 0: device uint8_t ep_addr; - uint16_t ep_bufsize; + uint16_t mps; + uint16_t ep_bufsize; uint8_t *ep_buf; // set to NULL to use xfer_fifo when CFG_TUD_EDPT_DEDICATED_HWFIFO = 1 tu_fifo_t ff; - uint16_t mps; // mutex: read if rx, otherwise write OSAL_MUTEX_DEF(ff_mutexdef); - }tu_edpt_stream_t; //--------------------------------------------------------------------+ @@ -112,8 +112,8 @@ bool tu_edpt_release(tu_edpt_state_t* ep_state, osal_mutex_t mutex); //--------------------------------------------------------------------+ // Init an endpoint stream -bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool overwritable, - void* ff_buf, uint16_t ff_bufsize, uint8_t* ep_buf, uint16_t ep_bufsize); +bool tu_edpt_stream_init(tu_edpt_stream_t *s, bool is_host, bool is_tx, bool overwritable, void *ff_buf, + uint16_t ff_bufsize, uint8_t *ep_buf, uint16_t ep_bufsize); // Deinit an endpoint stream TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_deinit(tu_edpt_stream_t *s) { @@ -129,7 +129,9 @@ TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_deinit(tu_edpt_stream_t } // Open an endpoint stream -TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_open(tu_edpt_stream_t* s, tusb_desc_endpoint_t const *desc_ep) { +TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_open(tu_edpt_stream_t *s, uint8_t hwid, + const tusb_desc_endpoint_t *desc_ep) { + s->hwid = hwid; s->ep_addr = desc_ep->bEndpointAddress; s->mps = tu_edpt_packet_size(desc_ep); } @@ -155,27 +157,27 @@ TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_empty(tu_edpt_stream_t * //--------------------------------------------------------------------+ // Write to stream -uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t* s, void const *buffer, uint32_t bufsize); +uint32_t tu_edpt_stream_write(tu_edpt_stream_t *s, const void *buffer, uint32_t bufsize); // Start an usb transfer if endpoint is not busy. Return number of queued bytes -uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s); +uint32_t tu_edpt_stream_write_xfer(tu_edpt_stream_t *s); // Start an zero-length packet if needed -bool tu_edpt_stream_write_zlp_if_needed(uint8_t hwid, tu_edpt_stream_t* s, uint32_t last_xferred_bytes); +bool tu_edpt_stream_write_zlp_if_needed(tu_edpt_stream_t *s, uint32_t last_xferred_bytes); // Get the number of bytes available for writing to FIFO // Note: if no fifo, return endpoint size if not busy, 0 otherwise -uint32_t tu_edpt_stream_write_available(uint8_t hwid, tu_edpt_stream_t* s); +uint32_t tu_edpt_stream_write_available(tu_edpt_stream_t *s); //--------------------------------------------------------------------+ // Stream Read //--------------------------------------------------------------------+ // Read from stream -uint32_t tu_edpt_stream_read(uint8_t hwid, tu_edpt_stream_t* s, void* buffer, uint32_t bufsize); +uint32_t tu_edpt_stream_read(tu_edpt_stream_t *s, void *buffer, uint32_t bufsize); // Start an usb transfer if endpoint is not busy -uint32_t tu_edpt_stream_read_xfer(uint8_t hwid, tu_edpt_stream_t* s); +uint32_t tu_edpt_stream_read_xfer(tu_edpt_stream_t *s); // Complete read transfer by writing EP -> FIFO. Must be called in the transfer complete callback TU_ATTR_ALWAYS_INLINE static inline diff --git a/src/device/usbd.c b/src/device/usbd.c index 86cbcac26..80d9fee3e 100644 --- a/src/device/usbd.c +++ b/src/device/usbd.c @@ -503,9 +503,9 @@ bool tud_rhport_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { return true; // skip if already initialized } TU_ASSERT(rh_init); -#if CFG_TUSB_DEBUG >= CFG_TUD_LOG_LEVEL + #if CFG_TUSB_DEBUG >= CFG_TUD_LOG_LEVEL char const* speed_str = 0; - switch (rh_init->speed) { + switch (rh_init->speed) { case TUSB_SPEED_HIGH: speed_str = "High"; break; @@ -651,7 +651,9 @@ void tud_task_ext(uint32_t timeout_ms, bool in_isr) { } #if CFG_TUSB_DEBUG >= CFG_TUD_LOG_LEVEL - if (event.event_id == DCD_EVENT_SETUP_RECEIVED) TU_LOG_USBD("\r\n"); // extra line for setup + if (event.event_id == DCD_EVENT_SETUP_RECEIVED) { + TU_LOG_USBD("\r\n"); // extra line for setup + } TU_LOG_USBD("USBD %s ", event.event_id < DCD_EVENT_COUNT ? _usbd_event_str[event.event_id] : "CORRUPTED"); #endif @@ -1047,7 +1049,7 @@ static bool process_set_config(uint8_t rhport, uint8_t cfg_num) { while (p_desc < desc_end) { uint8_t assoc_itf_count = 1; - // Class will always starts with Interface Association (if any) and then Interface descriptor + // Class will always start with Interface Association (if any) and then Interface descriptor if (TUSB_DESC_INTERFACE_ASSOCIATION == tu_desc_type(p_desc)) { const tusb_desc_interface_assoc_t *desc_iad = (const tusb_desc_interface_assoc_t *)p_desc; @@ -1136,9 +1138,7 @@ static bool process_set_config(uint8_t rhport, uint8_t cfg_num) { // bind all endpoints to found driver tu_edpt_bind_driver(_usbd_dev.ep2drv, desc_itf, drv_len, drv_id); - // next Interface - p_desc += drv_len; - + p_desc += drv_len; // next Interface break; // exit driver find loop } } diff --git a/src/tusb.c b/src/tusb.c index fc1ef7e1a..14b388d04 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -336,8 +336,8 @@ uint16_t tu_desc_get_interface_total_len(tusb_desc_interface_t const* desc_itf, // Endpoint Stream Helper for both Host and Device stack //--------------------------------------------------------------------+ -bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool overwritable, - void* ff_buf, uint16_t ff_bufsize, uint8_t* ep_buf, uint16_t ep_bufsize) { +bool tu_edpt_stream_init(tu_edpt_stream_t *s, bool is_host, bool is_tx, bool overwritable, void *ff_buf, + uint16_t ff_bufsize, uint8_t *ep_buf, uint16_t ep_bufsize) { (void) is_tx; #if CFG_TUSB_EDPT_STREAM_NO_FIFO_ENABLED == 0 // FIFO is required @@ -362,45 +362,45 @@ bool tu_edpt_stream_init(tu_edpt_stream_t* s, bool is_host, bool is_tx, bool ove return true; } -static bool stream_claim(uint8_t hwid, tu_edpt_stream_t *s) { +static bool stream_claim(tu_edpt_stream_t *s) { if (s->is_host) { #if CFG_TUH_ENABLED - return usbh_edpt_claim(hwid, s->ep_addr); - #endif + return usbh_edpt_claim(s->hwid, s->ep_addr); + #endif } else { #if CFG_TUD_ENABLED - return usbd_edpt_claim(hwid, s->ep_addr); - #endif + return usbd_edpt_claim(s->hwid, s->ep_addr); + #endif } return false; } -static bool stream_xfer(uint8_t hwid, tu_edpt_stream_t *s, uint16_t count) { +static bool stream_xfer(tu_edpt_stream_t *s, uint16_t count) { if (s->is_host) { #if CFG_TUH_ENABLED - return usbh_edpt_xfer(hwid, s->ep_addr, count ? s->ep_buf : NULL, count); - #endif + return usbh_edpt_xfer(s->hwid, s->ep_addr, count ? s->ep_buf : NULL, count); + #endif } else { #if CFG_TUD_ENABLED if (s->ep_buf == NULL) { - return usbd_edpt_xfer_fifo(hwid, s->ep_addr, &s->ff, count, false); + return usbd_edpt_xfer_fifo(s->hwid, s->ep_addr, &s->ff, count, false); } else { - return usbd_edpt_xfer(hwid, s->ep_addr, count ? s->ep_buf : NULL, count, false); + return usbd_edpt_xfer(s->hwid, s->ep_addr, count ? s->ep_buf : NULL, count, false); } #endif } return false; } -static bool stream_release(uint8_t hwid, tu_edpt_stream_t *s) { +static bool stream_release(tu_edpt_stream_t *s) { if (s->is_host) { #if CFG_TUH_ENABLED - return usbh_edpt_release(hwid, s->ep_addr); - #endif + return usbh_edpt_release(s->hwid, s->ep_addr); + #endif } else { #if CFG_TUD_ENABLED - return usbd_edpt_release(hwid, s->ep_addr); - #endif + return usbd_edpt_release(s->hwid, s->ep_addr); + #endif } return false; } @@ -408,18 +408,18 @@ static bool stream_release(uint8_t hwid, tu_edpt_stream_t *s) { //--------------------------------------------------------------------+ // Stream Write //--------------------------------------------------------------------+ -bool tu_edpt_stream_write_zlp_if_needed(uint8_t hwid, tu_edpt_stream_t* s, uint32_t last_xferred_bytes) { +bool tu_edpt_stream_write_zlp_if_needed(tu_edpt_stream_t *s, uint32_t last_xferred_bytes) { // ZLP condition: no pending data, last transferred bytes is multiple of packet size TU_VERIFY(tu_fifo_empty(&s->ff) && last_xferred_bytes > 0 && (0 == (last_xferred_bytes & (s->mps - 1)))); - TU_VERIFY(stream_claim(hwid, s)); - TU_ASSERT(stream_xfer(hwid, s, 0)); + TU_VERIFY(stream_claim(s)); + TU_ASSERT(stream_xfer(s, 0)); return true; } -uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s) { +uint32_t tu_edpt_stream_write_xfer(tu_edpt_stream_t *s) { const uint16_t ff_count = tu_fifo_count(&s->ff); TU_VERIFY(ff_count > 0, 0); // skip if no data - TU_VERIFY(stream_claim(hwid, s), 0); + TU_VERIFY(stream_claim(s), 0); // Pull data from FIFO -> EP buf uint16_t count; @@ -430,23 +430,23 @@ uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s) { } if (count > 0) { - TU_ASSERT(stream_xfer(hwid, s, count), 0); + TU_ASSERT(stream_xfer(s, count), 0); return count; } else { // Release endpoint since we don't make any transfer // Note: data is dropped if terminal is not connected - stream_release(hwid, s); + stream_release(s); return 0; } } -uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t *s, const void *buffer, uint32_t bufsize) { +uint32_t tu_edpt_stream_write(tu_edpt_stream_t *s, const void *buffer, uint32_t bufsize) { TU_VERIFY(bufsize > 0); #if CFG_TUSB_EDPT_STREAM_NO_FIFO_ENABLED if (0 == tu_fifo_depth(&s->ff)) { // non-fifo mode - TU_VERIFY(stream_claim(hwid, s), 0); + TU_VERIFY(stream_claim(s), 0); uint32_t xact_len; if (s->ep_buf != NULL) { // using ep buf @@ -456,7 +456,7 @@ uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t *s, const void *buf // using hwfifo xact_len = bufsize; } - TU_ASSERT(stream_xfer(hwid, s, (uint16_t) xact_len), 0); + TU_ASSERT(stream_xfer(s, (uint16_t)xact_len), 0); return xact_len; } else @@ -467,31 +467,30 @@ uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t *s, const void *buf // flush if fifo has more than packet size or // in rare case: fifo depth is configured too small (which never reach packet size) if ((tu_fifo_count(&s->ff) >= s->mps) || (tu_fifo_depth(&s->ff) < s->mps)) { - tu_edpt_stream_write_xfer(hwid, s); + tu_edpt_stream_write_xfer(s); } return ret; } } -uint32_t tu_edpt_stream_write_available(uint8_t hwid, tu_edpt_stream_t *s) { +uint32_t tu_edpt_stream_write_available(tu_edpt_stream_t *s) { #if CFG_TUSB_EDPT_STREAM_NO_FIFO_ENABLED if (0 == tu_fifo_depth(&s->ff)) { // non-fifo mode bool is_busy = true; if (s->is_host) { #if CFG_TUH_ENABLED - is_busy = usbh_edpt_busy(hwid, s->ep_addr); - #endif + is_busy = usbh_edpt_busy(s->hwid, s->ep_addr); + #endif } else { #if CFG_TUD_ENABLED - is_busy = usbd_edpt_busy(hwid, s->ep_addr); - #endif + is_busy = usbd_edpt_busy(s->hwid, s->ep_addr); + #endif } return is_busy ? 0 : s->ep_bufsize; } else #endif { - (void)hwid; return (uint32_t)tu_fifo_remaining(&s->ff); } } @@ -499,13 +498,13 @@ uint32_t tu_edpt_stream_write_available(uint8_t hwid, tu_edpt_stream_t *s) { //--------------------------------------------------------------------+ // Stream Read //--------------------------------------------------------------------+ -uint32_t tu_edpt_stream_read_xfer(uint8_t hwid, tu_edpt_stream_t *s) { +uint32_t tu_edpt_stream_read_xfer(tu_edpt_stream_t *s) { #if CFG_TUSB_EDPT_STREAM_NO_FIFO_ENABLED if (0 == tu_fifo_depth(&s->ff)) { // non-fifo mode: RX need ep buffer TU_VERIFY(s->ep_buf != NULL, 0); - TU_VERIFY(stream_claim(hwid, s), 0); - TU_ASSERT(stream_xfer(hwid, s, s->ep_bufsize), 0); + TU_VERIFY(stream_claim(s), 0); + TU_ASSERT(stream_xfer(s, s->ep_bufsize), 0); return s->ep_bufsize; } else #endif @@ -517,7 +516,7 @@ uint32_t tu_edpt_stream_read_xfer(uint8_t hwid, tu_edpt_stream_t *s) { // and slowly move it to the FIFO when read(). // This pre-check reduces endpoint claiming TU_VERIFY(available >= s->mps); - TU_VERIFY(stream_claim(hwid, s), 0); + TU_VERIFY(stream_claim(s), 0); available = tu_fifo_remaining(&s->ff); // re-get available since fifo can be changed if (available >= s->mps) { @@ -526,19 +525,19 @@ uint32_t tu_edpt_stream_read_xfer(uint8_t hwid, tu_edpt_stream_t *s) { if (s->ep_buf != NULL) { count = tu_min16(count, s->ep_bufsize); } - TU_ASSERT(stream_xfer(hwid, s, count), 0); + TU_ASSERT(stream_xfer(s, count), 0); return count; } else { // Release endpoint since we don't make any transfer - stream_release(hwid, s); + stream_release(s); return 0; } } } -uint32_t tu_edpt_stream_read(uint8_t hwid, tu_edpt_stream_t* s, void* buffer, uint32_t bufsize) { +uint32_t tu_edpt_stream_read(tu_edpt_stream_t *s, void *buffer, uint32_t bufsize) { const uint32_t num_read = tu_fifo_read_n(&s->ff, buffer, (uint16_t)bufsize); - tu_edpt_stream_read_xfer(hwid, s); + tu_edpt_stream_read_xfer(s); return num_read; } -- cgit v1.3.1 From ef018e364e886852e2789542b5758da6143af614 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 11 Dec 2025 15:58:10 +0700 Subject: refactor usbh_class_driver_t's open() to return number of driver len instead of bool. help to simplify parsing configuration --- src/class/cdc/cdc_host.c | 250 +++++++++++++++++------------------ src/class/cdc/cdc_host.h | 73 ++++++----- src/class/cdc/cdc_rndis_host.c | 289 ----------------------------------------- src/class/cdc/cdc_rndis_host.h | 63 --------- src/class/hid/hid_host.c | 23 ++-- src/class/hid/hid_host.h | 56 ++++---- src/class/midi/midi_host.c | 41 +++--- src/class/midi/midi_host.h | 62 +++++---- src/class/msc/msc_host.c | 21 ++- src/class/msc/msc_host.h | 48 ++++--- src/common/tusb_common.h | 5 +- src/common/tusb_private.h | 3 - src/host/hub.c | 14 +- src/host/hub.h | 12 +- src/host/usbh.c | 96 +++++--------- src/host/usbh_pvt.h | 17 ++- src/tusb.c | 31 ----- 17 files changed, 349 insertions(+), 755 deletions(-) delete mode 100644 src/class/cdc/cdc_rndis_host.c delete mode 100644 src/class/cdc/cdc_rndis_host.h (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 28abbf098..ff1a8338d 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -41,13 +41,14 @@ #include "serial/pl2303.h" // Level where CFG_TUSB_DEBUG must be at least for this driver is logged -#ifndef CFG_TUH_CDC_LOG_LEVEL - #define CFG_TUH_CDC_LOG_LEVEL 2 -#endif + #ifndef CFG_TUH_CDC_LOG_LEVEL + #define CFG_TUH_CDC_LOG_LEVEL 2 + #endif -#define TU_LOG_DRV(...) TU_LOG(CFG_TUH_CDC_LOG_LEVEL, __VA_ARGS__) -#define TU_LOG_CDC(_cdc, _format, ...) TU_LOG_DRV("[:%u:%u] CDCh %s " _format "\r\n", _cdc->daddr, _cdc->bInterfaceNumber, \ - serial_drivers[_cdc->serial_drid].name, ##__VA_ARGS__) + #define TU_LOG_DRV(...) TU_LOG(CFG_TUH_CDC_LOG_LEVEL, __VA_ARGS__) + #define TU_LOG_CDC(_cdc, _format, ...) \ + TU_LOG_DRV("[:%u:%u] CDCh %s " _format "\r\n", _cdc->daddr, _cdc->bInterfaceNumber, \ + serial_drivers[_cdc->serial_drid].name, ##__VA_ARGS__) //--------------------------------------------------------------------+ // Host CDC Interface @@ -113,63 +114,59 @@ static void cdch_set_line_coding_stage1_baudrate_complete(tuh_xfer_t *xfer); static void cdch_set_line_coding_stage2_data_format_complete(tuh_xfer_t *xfer); //------------- ACM prototypes -------------// -static bool acm_open(uint8_t daddr, tusb_desc_interface_t const * itf_desc, uint16_t max_len); -static bool acm_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); -static void acm_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); - -static bool acm_set_line_coding(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool acm_set_control_line_state(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static uint16_t acm_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +static bool acm_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static void acm_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static bool acm_set_line_coding(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool acm_set_control_line_state(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -//------------- FTDI prototypes -------------// -#if CFG_TUH_CDC_FTDI + //------------- FTDI prototypes -------------// + #if CFG_TUH_CDC_FTDI static uint16_t const ftdi_vid_pid_list[][2] = {CFG_TUH_CDC_FTDI_VID_PID_LIST}; -static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t * itf_desc, uint16_t max_len); -static bool ftdi_proccess_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); -static void ftdi_internal_control_complete(cdch_interface_t* p_cdc, tuh_xfer_t *xfer); -static bool ftdi_set_baudrate(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool ftdi_set_data_format(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool ftdi_set_modem_ctrl(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -#endif +static uint16_t ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +static bool ftdi_proccess_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static void ftdi_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static bool ftdi_set_baudrate(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_set_data_format(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_set_modem_ctrl(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + #endif -//------------- CP210X prototypes -------------// -#if CFG_TUH_CDC_CP210X + //------------- CP210X prototypes -------------// + #if CFG_TUH_CDC_CP210X static uint16_t const cp210x_vid_pid_list[][2] = {CFG_TUH_CDC_CP210X_VID_PID_LIST}; -static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const * itf_desc, uint16_t max_len); -static bool cp210x_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); -static void cp210x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); - -static bool cp210x_set_baudrate(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool cp210x_set_data_format(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool cp210x_set_modem_ctrl(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -#endif +static uint16_t cp210x_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +static bool cp210x_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static void cp210x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static bool cp210x_set_baudrate(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_data_format(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_modem_ctrl(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + #endif -//------------- CH34x prototypes -------------// -#if CFG_TUH_CDC_CH34X + //------------- CH34x prototypes -------------// + #if CFG_TUH_CDC_CH34X static uint16_t const ch34x_vid_pid_list[][2] = {CFG_TUH_CDC_CH34X_VID_PID_LIST}; -static bool ch34x_open(uint8_t daddr, tusb_desc_interface_t const * itf_desc, uint16_t max_len); -static bool ch34x_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); -static void ch34x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); - -static bool ch34x_set_baudrate(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool ch34x_set_data_format(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool ch34x_set_modem_ctrl(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -#endif +static uint16_t ch34x_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +static bool ch34x_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static void ch34x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static bool ch34x_set_baudrate(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_data_format(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_modem_ctrl(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + #endif -//------------- PL2303 prototypes -------------// -#if CFG_TUH_CDC_PL2303 + //------------- PL2303 prototypes -------------// + #if CFG_TUH_CDC_PL2303 static uint16_t const pl2303_vid_pid_list[][2] = {CFG_TUH_CDC_PL2303_VID_PID_LIST}; static const pl2303_type_data_t pl2303_type_data[PL2303_TYPE_COUNT] = {PL2303_TYPE_DATA}; -static bool pl2303_open(uint8_t daddr, tusb_desc_interface_t const * itf_desc, uint16_t max_len); -static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); -static void pl2303_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); - -static bool pl2303_set_line_coding(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool pl2303_set_modem_ctrl(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -#endif +static uint16_t pl2303_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static void pl2303_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static bool pl2303_set_line_coding(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool pl2303_set_modem_ctrl(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + #endif //------------- Common -------------// enum { @@ -197,11 +194,12 @@ enum { typedef bool (*serial_driver_func_t)(cdch_interface_t * p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); typedef struct { - uint16_t const (*vid_pid_list)[2]; - uint16_t const vid_pid_count; - bool (*const open)(uint8_t daddr, const tusb_desc_interface_t * itf_desc, uint16_t max_len); - bool (*const process_set_config)(cdch_interface_t * p_cdc, tuh_xfer_t * xfer); - void (*const request_complete)(cdch_interface_t * p_cdc, tuh_xfer_t * xfer); // internal request complete handler to update line state + const uint16_t (*vid_pid_list)[2]; + const uint16_t vid_pid_count; + uint16_t (*const open)(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); + bool (*const process_set_config)(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); + // internal request complete handler to update line state + void (*const request_complete)(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); serial_driver_func_t set_control_line_state, set_baudrate, set_data_format, set_line_coding; @@ -731,11 +729,10 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t //--------------------------------------------------------------------+ static bool open_ep_stream_pair(cdch_interface_t *p_cdc, tusb_desc_endpoint_t const *desc_ep) { for (size_t i = 0; i < 2; i++) { - TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType && - TUSB_XFER_BULK == desc_ep->bmAttributes.xfer); + TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType && TUSB_XFER_BULK == desc_ep->bmAttributes.xfer, 0); TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep)); - tu_edpt_stream_t *stream = - (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) ? &p_cdc->stream.rx : &p_cdc->stream.tx; + const uint8_t ep_dir = tu_edpt_dir(desc_ep->bEndpointAddress); + tu_edpt_stream_t *stream = (ep_dir == TUSB_DIR_IN) ? &p_cdc->stream.rx : &p_cdc->stream.tx; tu_edpt_stream_open(stream, p_cdc->daddr, desc_ep); tu_edpt_stream_clear(stream); @@ -745,8 +742,8 @@ static bool open_ep_stream_pair(cdch_interface_t *p_cdc, tusb_desc_endpoint_t co return true; } -bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { - (void) rhport; +uint16_t cdch_open(uint8_t rhport, uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { + (void)rhport; // For CDC: only support ACM subclass // Note: Protocol 0xFF can be RNDIS device if (TUSB_CLASS_CDC == itf_desc->bInterfaceClass && @@ -755,15 +752,15 @@ bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_d } else if (SERIAL_DRIVER_COUNT > 1 && TUSB_CLASS_VENDOR_SPECIFIC == itf_desc->bInterfaceClass) { uint16_t vid, pid; - TU_VERIFY(tuh_vid_pid_get(daddr, &vid, &pid)); + TU_VERIFY(tuh_vid_pid_get(daddr, &vid, &pid), 0); - for (size_t dr = 1; dr < SERIAL_DRIVER_COUNT; dr++) { - const cdch_serial_driver_t *driver = &serial_drivers[dr]; + for (size_t drv = 1; drv < SERIAL_DRIVER_COUNT; drv++) { + const cdch_serial_driver_t *driver = &serial_drivers[drv]; for (size_t i = 0; i < driver->vid_pid_count; i++) { if (driver->vid_pid_list[i][0] == vid && driver->vid_pid_list[i][1] == pid) { - const bool ret = driver->open(daddr, itf_desc, max_len); + const uint16_t drv_len = driver->open(daddr, itf_desc, max_len); TU_LOG_DRV("[:%u:%u] CDCh %s open %s\r\n", daddr, itf_desc->bInterfaceNumber, driver->name, ret ? "OK" : "FAILED"); - return ret; + return drv_len; } } } @@ -771,7 +768,7 @@ bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_d // not supported class } - return false; + return 0; } bool cdch_set_config(uint8_t daddr, uint8_t itf_num) { @@ -1012,19 +1009,19 @@ enum { CONFIG_ACM_COMPLETE = 0 }; -static bool acm_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { - uint8_t const *p_desc_end = ((uint8_t const *) itf_desc) + max_len; +static uint16_t acm_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { + const uint8_t *p_desc = (const uint8_t *)itf_desc; + const uint8_t *desc_end = p_desc + max_len; cdch_interface_t *p_cdc = make_new_itf(daddr, itf_desc); - TU_VERIFY(p_cdc); - + TU_VERIFY(p_cdc, 0); p_cdc->serial_drid = SERIAL_DRIVER_ACM; //------------- Control Interface -------------// - uint8_t const *p_desc = tu_desc_next(itf_desc); + p_desc = tu_desc_next(p_desc); // Communication Functional Descriptors - while ((p_desc < p_desc_end) && (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc))) { + while ((p_desc < desc_end) && (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc))) { if (CDC_FUNC_DESC_ABSTRACT_CONTROL_MANAGEMENT == cdc_functional_desc_typeof(p_desc)) { // save ACM bmCapabilities p_cdc->acm.capability = ((cdc_desc_func_acm_t const *) p_desc)->bmCapabilities; @@ -1035,26 +1032,27 @@ static bool acm_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint1 // Open notification endpoint of control interface if any if (itf_desc->bNumEndpoints == 1) { - TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(p_desc)); - tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) p_desc; - - TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); + TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(p_desc), 0); + const tusb_desc_endpoint_t *desc_ep = (const tusb_desc_endpoint_t *)p_desc; + TU_ASSERT(tuh_edpt_open(daddr, desc_ep), 0); p_cdc->ep_notif = desc_ep->bEndpointAddress; p_desc = tu_desc_next(p_desc); } //------------- Data Interface (if any) -------------// - if ((TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && - (TUSB_CLASS_CDC_DATA == ((tusb_desc_interface_t const *) p_desc)->bInterfaceClass)) { - // next to endpoint descriptor - p_desc = tu_desc_next(p_desc); - - // data endpoints expected to be in pairs - TU_ASSERT(open_ep_stream_pair(p_cdc, (tusb_desc_endpoint_t const *) p_desc)); + if (TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) { + const tusb_desc_interface_t *data_itf = (const tusb_desc_interface_t *)p_desc; + if (data_itf->bInterfaceClass == TUSB_CLASS_CDC_DATA) { + p_desc = tu_desc_next(p_desc); // next to endpoint descriptor + + // data endpoints expected to be in pairs + TU_ASSERT(open_ep_stream_pair(p_cdc, (const tusb_desc_endpoint_t *)p_desc), 0); + p_desc += data_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + } } - return true; + return (uint16_t)((uintptr_t)p_desc - (uintptr_t)itf_desc); } static bool acm_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { @@ -1187,28 +1185,29 @@ enum { CONFIG_FTDI_COMPLETE }; -static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { +static uint16_t ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { // FTDI Interface includes 1 vendor interface + 2 bulk endpoints TU_VERIFY(itf_desc->bInterfaceSubClass == 0xff && itf_desc->bInterfaceProtocol == 0xff && - itf_desc->bNumEndpoints == 2); - TU_VERIFY(sizeof(tusb_desc_interface_t) + 2 * sizeof(tusb_desc_endpoint_t) <= max_len); + itf_desc->bNumEndpoints == 2, + 0); + const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t *p_cdc = make_new_itf(daddr, itf_desc); - TU_VERIFY(p_cdc); + TU_VERIFY(p_cdc, 0); p_cdc->serial_drid = SERIAL_DRIVER_FTDI; // endpoint pair - tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc); + const tusb_desc_endpoint_t *desc_ep = (const tusb_desc_endpoint_t *)tu_desc_next(itf_desc); - /* - * NOTE: Some customers have programmed FT232R/FT245R devices - * with an endpoint size of 0 - not good. - */ - TU_ASSERT(desc_ep->wMaxPacketSize != 0); + /* NOTE: Some users have programmed FT232R/FT245R devices + * with an endpoint size of 0 !!! */ + TU_ASSERT(desc_ep->wMaxPacketSize != 0, 0); - // data endpoints expected to be in pairs - return open_ep_stream_pair(p_cdc, desc_ep); + TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep), 0); + + return drv_len; } static bool ftdi_proccess_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { @@ -1579,21 +1578,22 @@ enum { CONFIG_CP210X_COMPLETE }; -static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { +static uint16_t cp210x_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { // CP210x Interface includes 1 vendor interface + 2 bulk endpoints - TU_VERIFY(itf_desc->bInterfaceSubClass == 0 && itf_desc->bInterfaceProtocol == 0 && itf_desc->bNumEndpoints == 2); - TU_VERIFY(sizeof(tusb_desc_interface_t) + 2 * sizeof(tusb_desc_endpoint_t) <= max_len); + TU_VERIFY(itf_desc->bInterfaceSubClass == 0 && itf_desc->bInterfaceProtocol == 0 && itf_desc->bNumEndpoints == 2, 0); + const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t *p_cdc = make_new_itf(daddr, itf_desc); - TU_VERIFY(p_cdc); + TU_VERIFY(p_cdc, 0); p_cdc->serial_drid = SERIAL_DRIVER_CP210X; - // endpoint pair - tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc); - // data endpoints expected to be in pairs - return open_ep_stream_pair(p_cdc, desc_ep); + const tusb_desc_endpoint_t *desc_ep = (const tusb_desc_endpoint_t *)tu_desc_next(itf_desc); + TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep)); + + return drv_len; } static bool cp210x_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { @@ -1753,29 +1753,29 @@ enum { CONFIG_CH34X_COMPLETE }; -static bool ch34x_open(uint8_t daddr, tusb_desc_interface_t const * itf_desc, uint16_t max_len) { +static uint16_t ch34x_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { // CH34x Interface includes 1 vendor interface + 2 bulk + 1 interrupt endpoints - TU_VERIFY(itf_desc->bNumEndpoints == 3); - TU_VERIFY(sizeof(tusb_desc_interface_t) + 3 * sizeof(tusb_desc_endpoint_t) <= max_len); + TU_VERIFY(itf_desc->bNumEndpoints == 3, 0); + const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc); - TU_VERIFY(p_cdc); + TU_VERIFY(p_cdc, 0); p_cdc->serial_drid = SERIAL_DRIVER_CH34X; - tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc); + const tusb_desc_endpoint_t *desc_ep = (const tusb_desc_endpoint_t *)tu_desc_next(itf_desc); // data endpoints expected to be in pairs - TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep)); - desc_ep += 2; + TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep), 0); + desc_ep = (const tusb_desc_endpoint_t *)((uintptr_t)desc_ep + 2 * sizeof(tusb_desc_endpoint_t)); // Interrupt endpoint: not used for now - TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(desc_ep) && - TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer); - TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); + TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(desc_ep) && TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer, 0); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep), 0); p_cdc->ep_notif = desc_ep->bEndpointAddress; - return true; + return drv_len; } static bool ch34x_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { @@ -2089,13 +2089,14 @@ enum { CONFIG_PL2303_COMPLETE }; -static bool pl2303_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { +static uint16_t pl2303_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { // PL2303 Interface includes 1 vendor interface + 1 interrupt endpoints + 2 bulk - TU_VERIFY(itf_desc->bNumEndpoints == 3); - TU_VERIFY(sizeof(tusb_desc_interface_t) + 3 * sizeof(tusb_desc_endpoint_t) <= max_len); + TU_VERIFY(itf_desc->bNumEndpoints == 3, 0); + const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t *p_cdc = make_new_itf(daddr, itf_desc); - TU_VERIFY(p_cdc); + TU_VERIFY(p_cdc, 0); p_cdc->serial_drid = SERIAL_DRIVER_PL2303; p_cdc->pl2303.quirks = 0; @@ -2104,16 +2105,15 @@ static bool pl2303_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, ui tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc); // Interrupt endpoint: not used for now - TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(desc_ep) && - TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer); - TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); + TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(desc_ep) && TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer, 0); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep), 0); p_cdc->ep_notif = desc_ep->bEndpointAddress; desc_ep += 1; // data endpoints expected to be in pairs - TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep)); + TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep), 0); - return true; + return drv_len; } static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { diff --git a/src/class/cdc/cdc_host.h b/src/class/cdc/cdc_host.h index e8637beac..57919c7ff 100644 --- a/src/class/cdc/cdc_host.h +++ b/src/class/cdc/cdc_host.h @@ -30,7 +30,7 @@ #include "cdc.h" #ifdef __cplusplus - extern "C" { +extern "C" { #endif //--------------------------------------------------------------------+ @@ -39,22 +39,22 @@ // RX FIFO size #ifndef CFG_TUH_CDC_RX_BUFSIZE -#define CFG_TUH_CDC_RX_BUFSIZE TUH_EPSIZE_BULK_MPS + #define CFG_TUH_CDC_RX_BUFSIZE TUH_EPSIZE_BULK_MPS #endif // RX Endpoint size #ifndef CFG_TUH_CDC_RX_EPSIZE -#define CFG_TUH_CDC_RX_EPSIZE TUH_EPSIZE_BULK_MPS + #define CFG_TUH_CDC_RX_EPSIZE TUH_EPSIZE_BULK_MPS #endif // TX FIFO size #ifndef CFG_TUH_CDC_TX_BUFSIZE -#define CFG_TUH_CDC_TX_BUFSIZE TUH_EPSIZE_BULK_MPS + #define CFG_TUH_CDC_TX_BUFSIZE TUH_EPSIZE_BULK_MPS #endif // TX Endpoint size #ifndef CFG_TUH_CDC_TX_EPSIZE -#define CFG_TUH_CDC_TX_EPSIZE TUH_EPSIZE_BULK_MPS + #define CFG_TUH_CDC_TX_EPSIZE TUH_EPSIZE_BULK_MPS #endif //--------------------------------------------------------------------+ @@ -67,7 +67,7 @@ uint8_t tuh_cdc_itf_get_index(uint8_t daddr, uint8_t itf_num); // Get Interface information // return true if index is correct and interface is currently mounted -bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t* info); +bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t *info); // Check if an interface is mounted bool tuh_cdc_mounted(uint8_t idx); @@ -75,7 +75,7 @@ bool tuh_cdc_mounted(uint8_t idx); // Get local (cached) line state // This function should return correct values if tuh_cdc_set_control_line_state() / tuh_cdc_get_control_line_state() // are invoked previously or CFG_TUH_CDC_LINE_STATE_ON_ENUM is defined. -bool tuh_cdc_get_control_line_state_local(uint8_t idx, uint16_t* line_state); +bool tuh_cdc_get_control_line_state_local(uint8_t idx, uint16_t *line_state); // Get current DTR status TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_get_dtr(uint8_t idx) { @@ -100,7 +100,7 @@ TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_connected(uint8_t idx) { // This function should return correct values if tuh_cdc_set_line_coding() / tuh_cdc_get_line_coding() // are invoked previously or CFG_TUH_CDC_LINE_CODING_ON_ENUM is defined. // NOTE: This function does not make any USB transfer request to device. -bool tuh_cdc_get_line_coding_local(uint8_t idx, cdc_line_coding_t* line_coding); +bool tuh_cdc_get_line_coding_local(uint8_t idx, cdc_line_coding_t *line_coding); #define tuh_cdc_get_local_line_coding tuh_cdc_get_line_coding_local // backward compatibility @@ -112,7 +112,7 @@ bool tuh_cdc_get_line_coding_local(uint8_t idx, cdc_line_coding_t* line_coding); uint32_t tuh_cdc_write_available(uint8_t idx); // Write to cdc interface -uint32_t tuh_cdc_write(uint8_t idx, void const* buffer, uint32_t bufsize); +uint32_t tuh_cdc_write(uint8_t idx, const void *buffer, uint32_t bufsize); // Force sending data if possible, return number of forced bytes uint32_t tuh_cdc_write_flush(uint8_t idx); @@ -128,13 +128,13 @@ bool tuh_cdc_write_clear(uint8_t idx); uint32_t tuh_cdc_read_available(uint8_t idx); // Read from cdc interface -uint32_t tuh_cdc_read (uint8_t idx, void* buffer, uint32_t bufsize); +uint32_t tuh_cdc_read(uint8_t idx, void *buffer, uint32_t bufsize); // Get a byte from RX FIFO without removing it -bool tuh_cdc_peek(uint8_t idx, uint8_t* ch); +bool tuh_cdc_peek(uint8_t idx, uint8_t *ch); // Clear the received FIFO -bool tuh_cdc_read_clear (uint8_t idx); +bool tuh_cdc_read_clear(uint8_t idx); //--------------------------------------------------------------------+ // Control Request API @@ -149,16 +149,18 @@ bool tuh_cdc_read_clear (uint8_t idx); bool tuh_cdc_set_control_line_state(uint8_t idx, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); // Request to Set DTR -TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_set_dtr(uint8_t idx, bool dtr_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - cdc_line_control_state_t line_state = { .dtr = dtr_state }; - line_state.rts = tuh_cdc_get_rts(idx); +TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_set_dtr(uint8_t idx, bool dtr_state, tuh_xfer_cb_t complete_cb, + uintptr_t user_data) { + cdc_line_control_state_t line_state = {.dtr = dtr_state}; + line_state.rts = tuh_cdc_get_rts(idx); return tuh_cdc_set_control_line_state(idx, line_state.value, complete_cb, user_data); } // Request to Set RTS -TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_set_rts(uint8_t idx, bool rts_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - cdc_line_control_state_t line_state = { .rts = rts_state }; - line_state.dtr = tuh_cdc_get_dtr(idx); +TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_set_rts(uint8_t idx, bool rts_state, tuh_xfer_cb_t complete_cb, + uintptr_t user_data) { + cdc_line_control_state_t line_state = {.rts = rts_state}; + line_state.dtr = tuh_cdc_get_dtr(idx); return tuh_cdc_set_control_line_state(idx, line_state.value, complete_cb, user_data); } @@ -166,11 +168,13 @@ TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_set_rts(uint8_t idx, bool rts_s bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); // Request to set data format -bool tuh_cdc_set_data_format(uint8_t idx, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +bool tuh_cdc_set_data_format(uint8_t idx, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data); // Request to Set Line Coding = baudrate + data format // Note: only implemented by ACM and CH34x, not supported by FTDI and CP210x yet -bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +bool tuh_cdc_set_line_coding(uint8_t idx, const cdc_line_coding_t *line_coding, tuh_xfer_cb_t complete_cb, + uintptr_t user_data); // Request to Get Line Coding (ACM only) // Should only use if tuh_cdc_set_line_coding() / tuh_cdc_get_line_coding() never got invoked and @@ -179,11 +183,13 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, // Connect by set both DTR, RTS TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_connect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - return tuh_cdc_set_control_line_state(idx, CDC_CONTROL_LINE_STATE_DTR | CDC_CONTROL_LINE_STATE_RTS, complete_cb, user_data); + return tuh_cdc_set_control_line_state(idx, CDC_CONTROL_LINE_STATE_DTR | CDC_CONTROL_LINE_STATE_RTS, complete_cb, + user_data); } // Disconnect by clear both DTR, RTS -TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_disconnect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { +TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_disconnect(uint8_t idx, tuh_xfer_cb_t complete_cb, + uintptr_t user_data) { return tuh_cdc_set_control_line_state(idx, 0x00, complete_cb, user_data); } @@ -192,7 +198,8 @@ TU_ATTR_ALWAYS_INLINE static inline bool tuh_cdc_disconnect(uint8_t idx, tuh_xfe // Each Function will make a USB control transfer request to/from device the function will block until request is // complete. The function will return the transfer request result //--------------------------------------------------------------------+ -TU_ATTR_ALWAYS_INLINE static inline tusb_xfer_result_t tuh_cdc_set_control_line_state_sync(uint8_t idx, uint16_t line_state) { +TU_ATTR_ALWAYS_INLINE static inline tusb_xfer_result_t tuh_cdc_set_control_line_state_sync(uint8_t idx, + uint16_t line_state) { TU_API_SYNC(tuh_cdc_set_control_line_state, idx, line_state); } @@ -208,11 +215,13 @@ TU_ATTR_ALWAYS_INLINE static inline tusb_xfer_result_t tuh_cdc_set_baudrate_sync TU_API_SYNC(tuh_cdc_set_baudrate, idx, baudrate); } -TU_ATTR_ALWAYS_INLINE static inline tusb_xfer_result_t tuh_cdc_set_data_format_sync(uint8_t idx, uint8_t stop_bits, uint8_t parity, uint8_t data_bits) { +TU_ATTR_ALWAYS_INLINE static inline tusb_xfer_result_t tuh_cdc_set_data_format_sync(uint8_t idx, uint8_t stop_bits, + uint8_t parity, uint8_t data_bits) { TU_API_SYNC(tuh_cdc_set_data_format, idx, stop_bits, parity, data_bits); } -TU_ATTR_ALWAYS_INLINE static inline tusb_xfer_result_t tuh_cdc_set_line_coding_sync(uint8_t idx, cdc_line_coding_t const* line_coding) { +TU_ATTR_ALWAYS_INLINE static inline tusb_xfer_result_t +tuh_cdc_set_line_coding_sync(uint8_t idx, const cdc_line_coding_t *line_coding) { TU_API_SYNC(tuh_cdc_set_line_coding, idx, line_coding); } @@ -244,15 +253,15 @@ extern void tuh_cdc_tx_complete_cb(uint8_t idx); //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -bool cdch_init (void); -bool cdch_deinit (void); -bool cdch_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); -bool cdch_set_config (uint8_t dev_addr, uint8_t itf_num); -bool cdch_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); -void cdch_close (uint8_t dev_addr); +bool cdch_init(void); +bool cdch_deinit(void); +uint16_t cdch_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +bool cdch_set_config(uint8_t dev_addr, uint8_t itf_num); +bool cdch_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); +void cdch_close(uint8_t dev_addr); #ifdef __cplusplus - } +} #endif #endif /* TUSB_CDC_HOST_H_ */ diff --git a/src/class/cdc/cdc_rndis_host.c b/src/class/cdc/cdc_rndis_host.c deleted file mode 100644 index e975ea440..000000000 --- a/src/class/cdc/cdc_rndis_host.c +++ /dev/null @@ -1,289 +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. - */ - -#include "tusb_option.h" - -#if (CFG_TUH_ENABLED && CFG_TUH_CDC && CFG_TUH_CDC_RNDIS) - -//--------------------------------------------------------------------+ -// INCLUDE -//--------------------------------------------------------------------+ -#include "common/tusb_common.h" -#include "cdc_host.h" -#include "cdc_rndis_host.h" - -#if 0 // TODO remove subtask related macros later -// Sub Task -#define OSAL_SUBTASK_BEGIN -#define OSAL_SUBTASK_END return TUSB_ERROR_NONE; - -#define STASK_RETURN(_error) return _error; -#define STASK_INVOKE(_subtask, _status) (_status) = _subtask -#define STASK_ASSERT(_cond) TU_VERIFY(_cond, TUSB_ERROR_OSAL_TASK_FAILED) -#endif - -//--------------------------------------------------------------------+ -// MACRO CONSTANT TYPEDEF -//--------------------------------------------------------------------+ -#define RNDIS_MSG_PAYLOAD_MAX (1024*4) - -CFG_TUH_MEM_SECTION static uint8_t msg_notification[CFG_TUH_DEVICE_MAX][8]; -CFG_TUH_MEM_SECTION CFG_TUH_MEM_ALIGN static uint8_t msg_payload[RNDIS_MSG_PAYLOAD_MAX]; - -static rndish_data_t rndish_data[CFG_TUH_DEVICE_MAX]; - -// TODO Microsoft requires message length for any get command must be at least 4096 bytes - -//--------------------------------------------------------------------+ -// INTERNAL OBJECT & FUNCTION DECLARATION -//--------------------------------------------------------------------+ -static tusb_error_t rndis_body_subtask(void); -static tusb_error_t send_message_get_response_subtask( uint8_t dev_addr, cdch_data_t *p_cdc, - uint8_t * p_mess, uint32_t mess_length, - uint8_t *p_response ); - -//--------------------------------------------------------------------+ -// APPLICATION API -//--------------------------------------------------------------------+ -tusb_error_t tusbh_cdc_rndis_get_mac_addr(uint8_t dev_addr, uint8_t mac_address[6]) -{ - TU_ASSERT( tusbh_cdc_rndis_is_mounted(dev_addr), TUSB_ERROR_CDCH_DEVICE_NOT_MOUNTED); - TU_VERIFY( mac_address, TUSB_ERROR_INVALID_PARA); - - memcpy(mac_address, rndish_data[dev_addr-1].mac_address, 6); - - return TUSB_ERROR_NONE; -} - -//--------------------------------------------------------------------+ -// IMPLEMENTATION -//--------------------------------------------------------------------+ - -// To enable the TASK_ASSERT style (quick return on false condition) in a real RTOS, a task must act as a wrapper -// and is used mainly to call subtasks. Within a subtask return statement can be called freely, the task with -// forever loop cannot have any return at all. -OSAL_TASK_FUNCTION(cdch_rndis_task) (void* param;) -{ - OSAL_TASK_BEGIN - rndis_body_subtask(); - OSAL_TASK_END -} - -static tusb_error_t rndis_body_subtask(void) -{ - static uint8_t relative_addr; - - OSAL_SUBTASK_BEGIN - - for (relative_addr = 0; relative_addr < CFG_TUH_DEVICE_MAX; relative_addr++) - { - - } - - tusb_time_delay_ms_api(100); - - OSAL_SUBTASK_END -} - -//--------------------------------------------------------------------+ -// RNDIS-CDC Driver API -//--------------------------------------------------------------------+ -void rndish_init(void) -{ - tu_memclr(rndish_data, sizeof(rndish_data_t)*CFG_TUH_DEVICE_MAX); - - //------------- Task creation -------------// - - //------------- semaphore creation for notification pipe -------------// - for(uint8_t i=0; itype == RNDIS_MSG_INITIALIZE_CMPLT && p_init_cmpt->status == RNDIS_STATUS_SUCCESS && - p_init_cmpt->max_packet_per_xfer == 1 && p_init_cmpt->max_xfer_size <= RNDIS_MSG_PAYLOAD_MAX); - rndish_data[dev_addr-1].max_xfer_size = p_init_cmpt->max_xfer_size; - - //------------- Message Query 802.3 Permanent Address -------------// - memcpy(msg_payload, &msg_query_permanent_addr, sizeof(rndis_msg_query_t)); - tu_memclr(msg_payload + sizeof(rndis_msg_query_t), 6); // 6 bytes for MAC address - - STASK_INVOKE( - send_message_get_response_subtask( dev_addr, p_cdc, - msg_payload, sizeof(rndis_msg_query_t) + 6, - msg_payload), - error - ); - if ( TUSB_ERROR_NONE != error ) STASK_RETURN(error); - - rndis_msg_query_cmplt_t * const p_query_cmpt = (rndis_msg_query_cmplt_t *) msg_payload; - STASK_ASSERT(p_query_cmpt->type == RNDIS_MSG_QUERY_CMPLT && p_query_cmpt->status == RNDIS_STATUS_SUCCESS); - memcpy(rndish_data[dev_addr-1].mac_address, msg_payload + 8 + p_query_cmpt->buffer_offset, 6); - - //------------- Set OID_GEN_CURRENT_PACKET_FILTER to (DIRECTED | MULTICAST | BROADCAST) -------------// - memcpy(msg_payload, &msg_set_packet_filter, sizeof(rndis_msg_set_t)); - tu_memclr(msg_payload + sizeof(rndis_msg_set_t), 4); // 4 bytes for filter flags - ((rndis_msg_set_t*) msg_payload)->oid_buffer[0] = (RNDIS_PACKET_TYPE_DIRECTED | RNDIS_PACKET_TYPE_MULTICAST | RNDIS_PACKET_TYPE_BROADCAST); - - STASK_INVOKE( - send_message_get_response_subtask( dev_addr, p_cdc, - msg_payload, sizeof(rndis_msg_set_t) + 4, - msg_payload), - error - ); - if ( TUSB_ERROR_NONE != error ) STASK_RETURN(error); - - rndis_msg_set_cmplt_t * const p_set_cmpt = (rndis_msg_set_cmplt_t *) msg_payload; - STASK_ASSERT(p_set_cmpt->type == RNDIS_MSG_SET_CMPLT && p_set_cmpt->status == RNDIS_STATUS_SUCCESS); - - tusbh_cdc_rndis_mounted_cb(dev_addr); - - OSAL_SUBTASK_END -} - -void rndish_xfer_isr(cdch_data_t *p_cdc, pipe_handle_t pipe_hdl, xfer_result_t event, uint32_t xferred_bytes) -{ - if ( pipehandle_is_equal(pipe_hdl, p_cdc->pipe_notification) ) - { - osal_semaphore_post( rndish_data[pipe_hdl.dev_addr-1].sem_notification_hdl ); - } -} - -//--------------------------------------------------------------------+ -// INTERNAL & HELPER -//--------------------------------------------------------------------+ -static tusb_error_t send_message_get_response_subtask( uint8_t dev_addr, cdch_data_t *p_cdc, - uint8_t * p_mess, uint32_t mess_length, - uint8_t *p_response) -{ - tusb_error_t error; - - OSAL_SUBTASK_BEGIN - - //------------- Send RNDIS Control Message -------------// - STASK_INVOKE( - usbh_control_xfer_subtask( dev_addr, bm_request_type(TUSB_DIR_OUT, TUSB_REQ_TYPE_CLASS, TUSB_REQ_RCPT_INTERFACE), - CDC_REQUEST_SEND_ENCAPSULATED_COMMAND, 0, p_cdc->interface_number, - mess_length, p_mess), - error - ); - if ( TUSB_ERROR_NONE != error ) STASK_RETURN(error); - - //------------- waiting for Response Available notification -------------// - (void) usbh_edpt_xfer(p_cdc->pipe_notification, msg_notification[dev_addr-1], 8); - osal_semaphore_wait(rndish_data[dev_addr-1].sem_notification_hdl, OSAL_TIMEOUT_NORMAL, &error); - if ( TUSB_ERROR_NONE != error ) STASK_RETURN(error); - STASK_ASSERT(msg_notification[dev_addr-1][0] == 1); - - //------------- Get RNDIS Message Initialize Complete -------------// - STASK_INVOKE( - usbh_control_xfer_subtask( dev_addr, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_CLASS, TUSB_REQ_RCPT_INTERFACE), - CDC_REQUEST_GET_ENCAPSULATED_RESPONSE, 0, p_cdc->interface_number, - RNDIS_MSG_PAYLOAD_MAX, p_response), - error - ); - if ( TUSB_ERROR_NONE != error ) STASK_RETURN(error); - - OSAL_SUBTASK_END -} - -//static tusb_error_t send_process_msg_initialize_subtask(uint8_t dev_addr, cdch_data_t *p_cdc) -//{ -// tusb_error_t error; -// -// OSAL_SUBTASK_BEGIN -// -// *((rndis_msg_initialize_t*) msg_payload) = (rndis_msg_initialize_t) -// { -// .type = RNDIS_MSG_INITIALIZE, -// .length = sizeof(rndis_msg_initialize_t), -// .request_id = 1, // TODO should use some magic number -// .major_version = 1, -// .minor_version = 0, -// .max_xfer_size = 0x4000 // TODO mimic windows -// }; -// -// -// -// OSAL_SUBTASK_END -//} -#endif diff --git a/src/class/cdc/cdc_rndis_host.h b/src/class/cdc/cdc_rndis_host.h deleted file mode 100644 index e70d27f79..000000000 --- a/src/class/cdc/cdc_rndis_host.h +++ /dev/null @@ -1,63 +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 CDC_RNDIS - * \defgroup CDC_RNSID_Host Host - * @{ */ - -#ifndef TUSB_CDC_RNDIS_HOST_H_ -#define TUSB_CDC_RNDIS_HOST_H_ - -#include "common/tusb_common.h" -#include "host/usbh.h" -#include "cdc_rndis.h" - -#ifdef __cplusplus - extern "C" { -#endif - -//--------------------------------------------------------------------+ -// INTERNAL RNDIS-CDC Driver API -//--------------------------------------------------------------------+ -typedef struct { - OSAL_SEM_DEF(semaphore_notification); - osal_semaphore_handle_t sem_notification_hdl; // used to wait on notification pipe - uint32_t max_xfer_size; // got from device's msg initialize complete - uint8_t mac_address[6]; -}rndish_data_t; - -void rndish_init(void); -bool rndish_open_subtask(uint8_t dev_addr, cdch_data_t *p_cdc); -void rndish_xfer_isr(cdch_data_t *p_cdc, pipe_handle_t pipe_hdl, xfer_result_t event, uint32_t xferred_bytes); -void rndish_close(uint8_t dev_addr); - -#ifdef __cplusplus - } -#endif - -#endif /* TUSB_CDC_RNDIS_HOST_H_ */ - -/** @} */ diff --git a/src/class/hid/hid_host.c b/src/class/hid/hid_host.c index fe9a90d33..98f9bf80b 100644 --- a/src/class/hid/hid_host.c +++ b/src/class/hid/hid_host.c @@ -512,19 +512,18 @@ void hidh_close(uint8_t daddr) { //--------------------------------------------------------------------+ // Enumeration //--------------------------------------------------------------------+ - -bool hidh_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const* desc_itf, uint16_t max_len) { +uint16_t hidh_open(uint8_t rhport, uint8_t daddr, const tusb_desc_interface_t *desc_itf, uint16_t max_len) { (void) rhport; (void) max_len; - TU_VERIFY(TUSB_CLASS_HID == desc_itf->bInterfaceClass); + TU_VERIFY(TUSB_CLASS_HID == desc_itf->bInterfaceClass, 0); TU_LOG_DRV("[%u] HID opening Interface %u\r\n", daddr, desc_itf->bInterfaceNumber); // len = interface + hid + n*endpoints - uint16_t const drv_len = (uint16_t) (sizeof(tusb_desc_interface_t) + sizeof(tusb_hid_descriptor_hid_t) + - desc_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); - TU_ASSERT(max_len >= drv_len); - uint8_t const* p_desc = (uint8_t const*) desc_itf; + const uint16_t drv_len = (uint16_t)(sizeof(tusb_desc_interface_t) + sizeof(tusb_hid_descriptor_hid_t) + + desc_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); + TU_ASSERT(drv_len <= max_len, 0); + const uint8_t *p_desc = (const uint8_t *)desc_itf; // HID descriptor: mostly right after interface descriptor, in some rare case it might be after endpoint descriptors p_desc = tu_desc_next(p_desc); @@ -536,20 +535,20 @@ bool hidh_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const* desc_ } else { // HID after endpoint desc_hid = (const tusb_hid_descriptor_hid_t *)(p_desc + sizeof(tusb_desc_endpoint_t) * desc_itf->bNumEndpoints); - TU_ASSERT(tu_desc_type(desc_hid) == HID_DESC_TYPE_HID); + TU_ASSERT(tu_desc_type(desc_hid) == HID_DESC_TYPE_HID, 0); } // Allocate new interface hidh_interface_t *p_hid = find_new_itf(); - TU_ASSERT(p_hid); // not enough interface, try to increase CFG_TUH_HID + TU_ASSERT(p_hid, 0); // not enough interface, try to increase CFG_TUH_HID p_hid->daddr = daddr; p_hid->itf_num = desc_itf->bInterfaceNumber; // Endpoint Descriptors for (uint8_t i = 0; i < desc_itf->bNumEndpoints; i++) { const tusb_desc_endpoint_t *desc_ep = (const tusb_desc_endpoint_t *)p_desc; - TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType); - TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); + TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType, 0); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep), 0); if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { p_hid->ep_in = desc_ep->bEndpointAddress; @@ -573,7 +572,7 @@ bool hidh_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const* desc_ p_hid->itf_protocol = desc_itf->bInterfaceProtocol; } - return true; + return drv_len; } //--------------------------------------------------------------------+ diff --git a/src/class/hid/hid_host.h b/src/class/hid/hid_host.h index 87f0e7dc9..d7a415485 100644 --- a/src/class/hid/hid_host.h +++ b/src/class/hid/hid_host.h @@ -39,22 +39,22 @@ extern "C" { // TODO Highspeed interrupt can be up to 512 bytes #ifndef CFG_TUH_HID_EPIN_BUFSIZE -#define CFG_TUH_HID_EPIN_BUFSIZE 64 + #define CFG_TUH_HID_EPIN_BUFSIZE 64 #endif #ifndef CFG_TUH_HID_EPOUT_BUFSIZE -#define CFG_TUH_HID_EPOUT_BUFSIZE 64 + #define CFG_TUH_HID_EPOUT_BUFSIZE 64 #endif typedef struct { - uint8_t report_id; - uint8_t usage; + uint8_t report_id; + uint8_t usage; uint16_t usage_page; // TODO still use the endpoint size for now -// uint8_t in_len; // length of IN report -// uint8_t out_len; // length of OUT report + // uint8_t in_len; // length of IN report + // uint8_t out_len; // length of OUT report } tuh_hid_report_info_t; //--------------------------------------------------------------------+ @@ -68,10 +68,10 @@ uint8_t tuh_hid_itf_get_count(uint8_t dev_addr); uint8_t tuh_hid_itf_get_total_count(void); // backward compatible rename -#define tuh_hid_instance_count tuh_hid_itf_get_count +#define tuh_hid_instance_count tuh_hid_itf_get_count // Get Interface information -bool tuh_hid_itf_get_info(uint8_t daddr, uint8_t idx, tuh_itf_info_t* itf_info); +bool tuh_hid_itf_get_info(uint8_t daddr, uint8_t idx, tuh_itf_info_t *itf_info); // Get Interface index from device address + interface number // return TUSB_INDEX_INVALID_8 (0xFF) if not found @@ -85,8 +85,8 @@ bool tuh_hid_mounted(uint8_t dev_addr, uint8_t idx); // Parse report descriptor into array of report_info struct and return number of reports. // For complicated report, application should write its own parser. -TU_ATTR_UNUSED uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t* reports_info_arr, uint8_t arr_count, - uint8_t const* desc_report, uint16_t desc_len); +TU_ATTR_UNUSED uint8_t tuh_hid_parse_report_descriptor(tuh_hid_report_info_t *reports_info_arr, uint8_t arr_count, + const uint8_t *desc_report, uint16_t desc_len); //--------------------------------------------------------------------+ // Control Endpoint API @@ -107,12 +107,13 @@ bool tuh_hid_set_protocol(uint8_t dev_addr, uint8_t idx, uint8_t protocol); // Get Report using control endpoint // report_type is either Input, Output or Feature, (value from hid_report_type_t) -bool tuh_hid_get_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, void* report, uint16_t len); +bool tuh_hid_get_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, void *report, + uint16_t len); // Set Report using control endpoint // report_type is either Input, Output or Feature, (value from hid_report_type_t) -bool tuh_hid_set_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, - void* report, uint16_t len); +bool tuh_hid_set_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, void *report, + uint16_t len); //--------------------------------------------------------------------+ // Interrupt Endpoint API @@ -133,8 +134,9 @@ bool tuh_hid_receive_abort(uint8_t dev_addr, uint8_t idx); bool tuh_hid_send_ready(uint8_t dev_addr, uint8_t idx); // Send report using interrupt endpoint -// If report_id > 0 (composite), it will be sent as 1st byte, then report contents. Otherwise only report content is sent. -bool tuh_hid_send_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, const void* report, uint16_t len); +// If report_id > 0 (composite), it will be sent as 1st byte, then report contents. Otherwise only report content is +// sent. +bool tuh_hid_send_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, const void *report, uint16_t len); //--------------------------------------------------------------------+ // Callbacks (Weak is optional) @@ -145,25 +147,27 @@ bool tuh_hid_send_report(uint8_t dev_addr, uint8_t idx, uint8_t report_id, const // can be used to parse common/simple enough descriptor. // Note: if report descriptor length > CFG_TUH_ENUMERATION_BUFSIZE, it will be skipped // therefore report_desc = NULL, desc_len = 0 -void tuh_hid_mount_cb(uint8_t dev_addr, uint8_t idx, uint8_t const* report_desc, uint16_t desc_len); +void tuh_hid_mount_cb(uint8_t dev_addr, uint8_t idx, const uint8_t *report_desc, uint16_t desc_len); // Invoked when device with hid interface is un-mounted void tuh_hid_umount_cb(uint8_t dev_addr, uint8_t idx); // Invoked when received report from device via interrupt endpoint // Note: if there is report ID (composite), it is 1st byte of report -void tuh_hid_report_received_cb(uint8_t dev_addr, uint8_t idx, uint8_t const* report, uint16_t len); +void tuh_hid_report_received_cb(uint8_t dev_addr, uint8_t idx, const uint8_t *report, uint16_t len); // Invoked when sent report to device successfully via interrupt endpoint -void tuh_hid_report_sent_cb(uint8_t dev_addr, uint8_t idx, uint8_t const* report, uint16_t len); +void tuh_hid_report_sent_cb(uint8_t dev_addr, uint8_t idx, const uint8_t *report, uint16_t len); // Invoked when Get Report to device via either control endpoint // len = 0 indicate there is error in the transfer e.g stalled response -void tuh_hid_get_report_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, uint16_t len); +void tuh_hid_get_report_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, + uint16_t len); // Invoked when Sent Report to device via either control endpoint // len = 0 indicate there is error in the transfer e.g stalled response -void tuh_hid_set_report_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, uint16_t len); +void tuh_hid_set_report_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t report_id, uint8_t report_type, + uint16_t len); // Invoked when Set Protocol request is complete void tuh_hid_set_protocol_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t protocol); @@ -171,12 +175,12 @@ void tuh_hid_set_protocol_complete_cb(uint8_t dev_addr, uint8_t idx, uint8_t pro //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -bool hidh_init(void); -bool hidh_deinit(void); -bool hidh_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const* desc_itf, uint16_t max_len); -bool hidh_set_config(uint8_t dev_addr, uint8_t itf_num); -bool hidh_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); -void hidh_close(uint8_t dev_addr); +bool hidh_init(void); +bool hidh_deinit(void); +uint16_t hidh_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *desc_itf, uint16_t max_len); +bool hidh_set_config(uint8_t dev_addr, uint8_t itf_num); +bool hidh_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); +void hidh_close(uint8_t dev_addr); #ifdef __cplusplus } diff --git a/src/class/midi/midi_host.c b/src/class/midi/midi_host.c index b4f5ac445..5548a0ba8 100644 --- a/src/class/midi/midi_host.c +++ b/src/class/midi/midi_host.c @@ -192,15 +192,16 @@ bool midih_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint //--------------------------------------------------------------------+ // Enumeration //--------------------------------------------------------------------+ -bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *desc_itf, uint16_t max_len) { +uint16_t midih_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *desc_itf, uint16_t max_len) { (void) rhport; - TU_VERIFY(TUSB_CLASS_AUDIO == desc_itf->bInterfaceClass); - const uint8_t *p_end = ((const uint8_t *) desc_itf) + max_len; - const uint8_t *p_desc = (const uint8_t *) desc_itf; + TU_VERIFY(TUSB_CLASS_AUDIO == desc_itf->bInterfaceClass, 0); + const uint8_t *desc_start = (const uint8_t *)desc_itf; + const uint8_t *p_desc = desc_start; + const uint8_t *desc_end = desc_start + max_len; const uint8_t idx = find_new_midi_index(); - TU_VERIFY(idx < CFG_TUH_MIDI); + TU_VERIFY(idx < CFG_TUH_MIDI, 0); midih_interface_t *p_midi = &_midi_host[idx]; p_midi->itf_count = 0; @@ -217,29 +218,30 @@ bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *d // driver after parsing the audio control interface and then resume parsing // the streaming audio interface. if (AUDIO_SUBCLASS_CONTROL == desc_itf->bInterfaceSubClass) { - TU_VERIFY(max_len > 2*sizeof(tusb_desc_interface_t) + sizeof(midi10_desc_cs_ac_interface_t)); - + TU_VERIFY(max_len > 2 * sizeof(tusb_desc_interface_t) + sizeof(midi10_desc_cs_ac_interface_t), 0); p_desc = tu_desc_next(p_desc); TU_VERIFY(tu_desc_type(p_desc) == TUSB_DESC_CS_INTERFACE && - tu_desc_subtype(p_desc) == AUDIO10_CS_AC_INTERFACE_HEADER); + tu_desc_subtype(p_desc) == AUDIO10_CS_AC_INTERFACE_HEADER, + 0); desc_cb.desc_audio_control = desc_itf; p_desc = tu_desc_next(p_desc); desc_itf = (const tusb_desc_interface_t *)p_desc; p_midi->itf_count = 1; // skip non-interface and non-midi streaming descriptors - while (tu_desc_in_bounds(p_desc, p_end) && - (desc_itf->bDescriptorType != TUSB_DESC_INTERFACE || (desc_itf->bInterfaceClass == TUSB_CLASS_AUDIO && desc_itf->bInterfaceSubClass != AUDIO_SUBCLASS_MIDI_STREAMING))) { + while (tu_desc_in_bounds(p_desc, desc_end) && (desc_itf->bDescriptorType != TUSB_DESC_INTERFACE || + (desc_itf->bInterfaceClass == TUSB_CLASS_AUDIO && + desc_itf->bInterfaceSubClass != AUDIO_SUBCLASS_MIDI_STREAMING))) { if (desc_itf->bDescriptorType == TUSB_DESC_INTERFACE && desc_itf->bAlternateSetting == 0) { p_midi->itf_count++; } p_desc = tu_desc_next(p_desc); - desc_itf = (tusb_desc_interface_t const *)p_desc; + desc_itf = (const tusb_desc_interface_t *)p_desc; } - TU_VERIFY(p_desc < p_end); // TODO: If MIDI interface comes after Audio Streaming, then max_len did not include the MIDI interface descriptor - TU_VERIFY(TUSB_CLASS_AUDIO == desc_itf->bInterfaceClass); + TU_VERIFY(p_desc < desc_end, 0); + TU_VERIFY(TUSB_CLASS_AUDIO == desc_itf->bInterfaceClass, 0); } - TU_VERIFY(AUDIO_SUBCLASS_MIDI_STREAMING == desc_itf->bInterfaceSubClass); + TU_VERIFY(AUDIO_SUBCLASS_MIDI_STREAMING == desc_itf->bInterfaceSubClass, 0); TU_LOG_DRV("MIDI opening Interface %u (addr = %u)\r\n", desc_itf->bInterfaceNumber, dev_addr); p_midi->bInterfaceNumber = desc_itf->bInterfaceNumber; @@ -250,7 +252,7 @@ bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *d p_desc = tu_desc_next(p_desc); // next to CS Header bool found_new_interface = false; - while (tu_desc_in_bounds(p_desc, p_end) && !found_new_interface) { + while (tu_desc_in_bounds(p_desc, desc_end) && !found_new_interface) { switch (tu_desc_type(p_desc)) { case TUSB_DESC_INTERFACE: found_new_interface = true; @@ -287,8 +289,9 @@ bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *d case TUSB_DESC_ENDPOINT: { const tusb_desc_endpoint_t *p_ep = (const tusb_desc_endpoint_t *) p_desc; + p_desc = tu_desc_next(p_desc); // next to CS endpoint - TU_VERIFY(p_desc < p_end && tu_desc_next(p_desc) <= p_end); + TU_VERIFY(tu_desc_in_bounds(p_desc, desc_end), 0); const midi_desc_cs_endpoint_t *p_csep = (const midi_desc_cs_endpoint_t *) p_desc; TU_LOG_DRV(" Endpoint and CS_Endpoint descriptor %02x\r\n", p_ep->bEndpointAddress); @@ -302,7 +305,7 @@ bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *d desc_cb.desc_epin = p_ep; ep_stream = &p_midi->ep_stream.rx; } - TU_ASSERT(tuh_edpt_open(dev_addr, p_ep)); + TU_ASSERT(tuh_edpt_open(dev_addr, p_ep), 0); tu_edpt_stream_open(ep_stream, dev_addr, p_ep); tu_edpt_stream_clear(ep_stream); @@ -313,12 +316,12 @@ bool midih_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *d } p_desc = tu_desc_next(p_desc); } - desc_cb.desc_midi_total_len = (uint16_t) ((uintptr_t)p_desc - (uintptr_t) desc_itf); + desc_cb.desc_midi_total_len = (uint16_t)((uintptr_t)p_desc - (uintptr_t)desc_start); p_midi->daddr = dev_addr; tuh_midi_descriptor_cb(idx, &desc_cb); - return true; + return desc_cb.desc_midi_total_len; } bool midih_set_config(uint8_t dev_addr, uint8_t itf_num) { diff --git a/src/class/midi/midi_host.h b/src/class/midi/midi_host.h index 06554a03d..8a8dccab4 100644 --- a/src/class/midi/midi_host.h +++ b/src/class/midi/midi_host.h @@ -31,45 +31,45 @@ #include "midi.h" #ifdef __cplusplus - extern "C" { +extern "C" { #endif //--------------------------------------------------------------------+ // Class Driver Configuration //--------------------------------------------------------------------+ #ifndef CFG_TUH_MIDI_RX_BUFSIZE -#define CFG_TUH_MIDI_RX_BUFSIZE TUH_EPSIZE_BULK_MPS + #define CFG_TUH_MIDI_RX_BUFSIZE TUH_EPSIZE_BULK_MPS #endif #ifndef CFG_TUH_MIDI_TX_BUFSIZE -#define CFG_TUH_MIDI_TX_BUFSIZE TUH_EPSIZE_BULK_MPS + #define CFG_TUH_MIDI_TX_BUFSIZE TUH_EPSIZE_BULK_MPS #endif #ifndef CFG_TUH_MIDI_EP_BUFSIZE -#define CFG_TUH_MIDI_EP_BUFSIZE TUH_EPSIZE_BULK_MPS + #define CFG_TUH_MIDI_EP_BUFSIZE TUH_EPSIZE_BULK_MPS #endif // Enable the MIDI stream read/write API. Some library can work with raw USB MIDI packet // Disable this can save driver footprint. #ifndef CFG_TUH_MIDI_STREAM_API -#define CFG_TUH_MIDI_STREAM_API 1 + #define CFG_TUH_MIDI_STREAM_API 1 #endif //--------------------------------------------------------------------+ // Application Types //--------------------------------------------------------------------+ typedef struct { - const tusb_desc_interface_t* desc_audio_control; - const tusb_desc_interface_t* desc_midi; // start of whole midi interface descriptor - uint16_t desc_midi_total_len; + const tusb_desc_interface_t *desc_audio_control; + const tusb_desc_interface_t *desc_midi; // start of whole midi interface descriptor + uint16_t desc_midi_total_len; - const uint8_t* desc_header; - const uint8_t* desc_element; - const tusb_desc_endpoint_t* desc_epin; // endpoint IN descriptor, CS_ENDPOINT is right after - const tusb_desc_endpoint_t* desc_epout; // endpoint OUT descriptor, CS_ENDPOINT is right after + const uint8_t *desc_header; + const uint8_t *desc_element; + const tusb_desc_endpoint_t *desc_epin; // endpoint IN descriptor, CS_ENDPOINT is right after + const tusb_desc_endpoint_t *desc_epout; // endpoint OUT descriptor, CS_ENDPOINT is right after - uint8_t jack_num; - const uint8_t* desc_jack[32]; // list of jack descriptors (embedded + external) + uint8_t jack_num; + const uint8_t *desc_jack[32]; // list of jack descriptors (embedded + external) } tuh_midi_descriptor_cb_t; typedef struct { @@ -92,7 +92,7 @@ uint8_t tuh_midi_itf_get_index(uint8_t daddr, uint8_t itf_num); // Get Interface information // return true if index is correct and interface is currently mounted -bool tuh_midi_itf_get_info(uint8_t idx, tuh_itf_info_t* info); +bool tuh_midi_itf_get_info(uint8_t idx, tuh_itf_info_t *info); // return the number of virtual midi cables on the device's IN endpoint uint8_t tuh_midi_get_rx_cable_count(uint8_t idx); @@ -115,24 +115,22 @@ uint32_t tuh_midi_write_flush(uint8_t idx); // Read all available MIDI packets from the connected device // Return number of bytes read (always multiple of 4) -uint32_t tuh_midi_packet_read_n(uint8_t idx, uint8_t* buffer, uint32_t bufsize); +uint32_t tuh_midi_packet_read_n(uint8_t idx, uint8_t *buffer, uint32_t bufsize); // Read a raw MIDI packet from the connected device // Return true if a packet was returned -TU_ATTR_ALWAYS_INLINE static inline -bool tuh_midi_packet_read (uint8_t idx, uint8_t packet[4]) { - return 4 == tuh_midi_packet_read_n(idx, packet, 4); +TU_ATTR_ALWAYS_INLINE static inline bool tuh_midi_packet_read(uint8_t idx, uint8_t packet[4]) { + return 4 == tuh_midi_packet_read_n(idx, packet, 4); } // Write all 4-byte packets, data is locally buffered and only transferred when buffered bytes // reach the endpoint packet size or tuh_midi_write_flush() is called -uint32_t tuh_midi_packet_write_n(uint8_t idx, const uint8_t* buffer, uint32_t bufsize); +uint32_t tuh_midi_packet_write_n(uint8_t idx, const uint8_t *buffer, uint32_t bufsize); // Write a 4-bytes packet to the device. // Returns true if the packet was successfully queued. -TU_ATTR_ALWAYS_INLINE static inline -bool tuh_midi_packet_write (uint8_t idx, uint8_t const packet[4]) { - return 4 == tuh_midi_packet_write_n(idx, packet, 4); +TU_ATTR_ALWAYS_INLINE static inline bool tuh_midi_packet_write(uint8_t idx, const uint8_t packet[4]) { + return 4 == tuh_midi_packet_write_n(idx, packet, 4); } //--------------------------------------------------------------------+ @@ -143,7 +141,7 @@ bool tuh_midi_packet_write (uint8_t idx, uint8_t const packet[4]) { // Queue a message to the device using stream API. data is locally buffered and only transferred when buffered bytes // reach the endpoint packet size or tuh_midi_write_flush() is called // Returns number of bytes was successfully queued. -uint32_t tuh_midi_stream_write(uint8_t idx, uint8_t cable_num, uint8_t const *p_buffer, uint32_t bufsize); +uint32_t tuh_midi_stream_write(uint8_t idx, uint8_t cable_num, const uint8_t *p_buffer, uint32_t bufsize); // Get the MIDI stream from the device. Set the value pointed // to by p_cable_num to the MIDI cable number intended to receive it. @@ -162,10 +160,10 @@ uint32_t tuh_midi_stream_read(uint8_t idx, uint8_t *p_cable_num, uint8_t *p_buff // Invoked when MIDI interface is detected in enumeration. Application can copy/parse descriptor if needed. // Note: may be fired before tuh_midi_mount_cb(), therefore midi interface is not mounted/ready. -void tuh_midi_descriptor_cb(uint8_t idx, const tuh_midi_descriptor_cb_t * desc_cb_data); +void tuh_midi_descriptor_cb(uint8_t idx, const tuh_midi_descriptor_cb_t *desc_cb_data); // Invoked when device with MIDI interface is mounted. -void tuh_midi_mount_cb(uint8_t idx, const tuh_midi_mount_cb_t* mount_cb_data); +void tuh_midi_mount_cb(uint8_t idx, const tuh_midi_mount_cb_t *mount_cb_data); // Invoked when device with MIDI interface is un-mounted void tuh_midi_umount_cb(uint8_t idx); @@ -179,12 +177,12 @@ void tuh_midi_tx_cb(uint8_t idx, uint32_t xferred_bytes); //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -bool midih_init (void); -bool midih_deinit (void); -bool midih_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *desc_itf, uint16_t max_len); -bool midih_set_config (uint8_t dev_addr, uint8_t itf_num); -bool midih_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); -void midih_close (uint8_t daddr); +bool midih_init(void); +bool midih_deinit(void); +uint16_t midih_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *desc_itf, uint16_t max_len); +bool midih_set_config(uint8_t dev_addr, uint8_t itf_num); +bool midih_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); +void midih_close(uint8_t daddr); #ifdef __cplusplus } diff --git a/src/class/msc/msc_host.c b/src/class/msc/msc_host.c index daff345c5..6a36c2820 100644 --- a/src/class/msc/msc_host.c +++ b/src/class/msc/msc_host.c @@ -379,22 +379,21 @@ static bool config_test_unit_ready_complete(uint8_t dev_addr, tuh_msc_complete_d static bool config_request_sense_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data); static bool config_read_capacity_complete(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data); -bool msch_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const* desc_itf, uint16_t max_len) { +uint16_t msch_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *desc_itf, uint16_t max_len) { (void) rhport; - TU_VERIFY (MSC_SUBCLASS_SCSI == desc_itf->bInterfaceSubClass && - MSC_PROTOCOL_BOT == desc_itf->bInterfaceProtocol); + TU_VERIFY(MSC_SUBCLASS_SCSI == desc_itf->bInterfaceSubClass && MSC_PROTOCOL_BOT == desc_itf->bInterfaceProtocol, 0); // msc driver length is fixed - uint16_t const drv_len = (uint16_t) (sizeof(tusb_desc_interface_t) + - desc_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); - TU_ASSERT(drv_len <= max_len); + const uint16_t drv_len = + (uint16_t)(sizeof(tusb_desc_interface_t) + desc_itf->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); + TU_ASSERT(drv_len <= max_len, 0); - msch_interface_t* p_msc = get_itf(dev_addr); - tusb_desc_endpoint_t const* ep_desc = (tusb_desc_endpoint_t const*) tu_desc_next(desc_itf); + msch_interface_t *p_msc = get_itf(dev_addr); + const tusb_desc_endpoint_t *ep_desc = (const tusb_desc_endpoint_t *)tu_desc_next(desc_itf); for (uint32_t i = 0; i < 2; i++) { - TU_ASSERT(TUSB_DESC_ENDPOINT == ep_desc->bDescriptorType && TUSB_XFER_BULK == ep_desc->bmAttributes.xfer); - TU_ASSERT(tuh_edpt_open(dev_addr, ep_desc)); + TU_ASSERT(TUSB_DESC_ENDPOINT == ep_desc->bDescriptorType && TUSB_XFER_BULK == ep_desc->bmAttributes.xfer, 0); + TU_ASSERT(tuh_edpt_open(dev_addr, ep_desc), 0); if (TUSB_DIR_IN == tu_edpt_dir(ep_desc->bEndpointAddress)) { p_msc->ep_in = ep_desc->bEndpointAddress; @@ -407,7 +406,7 @@ bool msch_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const* de p_msc->itf_num = desc_itf->bInterfaceNumber; - return true; + return drv_len; } bool msch_set_config(uint8_t daddr, uint8_t itf_num) { diff --git a/src/class/msc/msc_host.h b/src/class/msc/msc_host.h index b5fd55547..5dc7c0b94 100644 --- a/src/class/msc/msc_host.h +++ b/src/class/msc/msc_host.h @@ -30,7 +30,7 @@ #include "msc.h" #ifdef __cplusplus - extern "C" { +extern "C" { #endif //--------------------------------------------------------------------+ @@ -38,17 +38,17 @@ //--------------------------------------------------------------------+ #ifndef CFG_TUH_MSC_MAXLUN -#define CFG_TUH_MSC_MAXLUN 4 + #define CFG_TUH_MSC_MAXLUN 4 #endif typedef struct { - msc_cbw_t const* cbw; // SCSI command - msc_csw_t const* csw; // SCSI status - void* scsi_data; // SCSI Data - uintptr_t user_arg; // user argument -}tuh_msc_complete_data_t; + const msc_cbw_t *cbw; // SCSI command + const msc_csw_t *csw; // SCSI status + void *scsi_data; // SCSI Data + uintptr_t user_arg; // user argument +} tuh_msc_complete_data_t; -typedef bool (*tuh_msc_complete_cb_t)(uint8_t dev_addr, tuh_msc_complete_data_t const* cb_data); +typedef bool (*tuh_msc_complete_cb_t)(uint8_t dev_addr, const tuh_msc_complete_data_t *cb_data); //--------------------------------------------------------------------+ // Application API @@ -74,12 +74,14 @@ uint32_t tuh_msc_get_block_size(uint8_t dev_addr, uint8_t lun); // Complete callback is invoked when SCSI op is complete. // return true if success, false if there is already pending operation. // NOTE: buffer must be accessible by USB/DMA controller, aligned correctly and multiple of cache line if enabled -bool tuh_msc_scsi_command(uint8_t daddr, msc_cbw_t const* cbw, void* data, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); +bool tuh_msc_scsi_command(uint8_t daddr, const msc_cbw_t *cbw, void *data, tuh_msc_complete_cb_t complete_cb, + uintptr_t arg); // Perform SCSI Inquiry command // Complete callback is invoked when SCSI op is complete. // NOTE: response must be accessible by USB/DMA controller, aligned correctly and multiple of cache line if enabled -bool tuh_msc_inquiry(uint8_t dev_addr, uint8_t lun, scsi_inquiry_resp_t* response, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); +bool tuh_msc_inquiry(uint8_t dev_addr, uint8_t lun, scsi_inquiry_resp_t *response, tuh_msc_complete_cb_t complete_cb, + uintptr_t arg); // Perform SCSI Test Unit Ready command // Complete callback is invoked when SCSI op is complete. @@ -88,23 +90,27 @@ bool tuh_msc_test_unit_ready(uint8_t dev_addr, uint8_t lun, tuh_msc_complete_cb_ // Perform SCSI Request Sense 10 command // Complete callback is invoked when SCSI op is complete. // NOTE: response must be accessible by USB/DMA controller, aligned correctly and multiple of cache line if enabled -bool tuh_msc_request_sense(uint8_t dev_addr, uint8_t lun, void *response, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); +bool tuh_msc_request_sense(uint8_t dev_addr, uint8_t lun, void *response, tuh_msc_complete_cb_t complete_cb, + uintptr_t arg); // Perform SCSI Read 10 command. Read n blocks starting from LBA to buffer // Complete callback is invoked when SCSI op is complete. // NOTE: buffer must be accessible by USB/DMA controller, aligned correctly and multiple of cache line if enabled -bool tuh_msc_read10(uint8_t dev_addr, uint8_t lun, void * buffer, uint32_t lba, uint16_t block_count, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); +bool tuh_msc_read10(uint8_t dev_addr, uint8_t lun, void *buffer, uint32_t lba, uint16_t block_count, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg); // Perform SCSI Write 10 command. Write n blocks starting from LBA to device // Complete callback is invoked when SCSI op is complete. // NOTE: buffer must be accessible by USB/DMA controller, aligned correctly and multiple of cache line if enabled -bool tuh_msc_write10(uint8_t dev_addr, uint8_t lun, void const * buffer, uint32_t lba, uint16_t block_count, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); +bool tuh_msc_write10(uint8_t dev_addr, uint8_t lun, const void *buffer, uint32_t lba, uint16_t block_count, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg); // Perform SCSI Read Capacity 10 command // Complete callback is invoked when SCSI op is complete. // Note: during enumeration, host stack already carried out this request. Application can retrieve capacity by // simply call tuh_msc_get_block_count() and tuh_msc_get_block_size() -bool tuh_msc_read_capacity(uint8_t dev_addr, uint8_t lun, scsi_read_capacity10_resp_t* response, tuh_msc_complete_cb_t complete_cb, uintptr_t arg); +bool tuh_msc_read_capacity(uint8_t dev_addr, uint8_t lun, scsi_read_capacity10_resp_t *response, + tuh_msc_complete_cb_t complete_cb, uintptr_t arg); //------------- Application Callback -------------// @@ -118,15 +124,15 @@ void tuh_msc_umount_cb(uint8_t dev_addr); // Internal Class Driver API //--------------------------------------------------------------------+ -bool msch_init (void); -bool msch_deinit (void); -bool msch_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *desc_itf, uint16_t max_len); -bool msch_set_config (uint8_t daddr, uint8_t itf_num); -void msch_close (uint8_t dev_addr); -bool msch_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); +bool msch_init(void); +bool msch_deinit(void); +uint16_t msch_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *desc_itf, uint16_t max_len); +bool msch_set_config(uint8_t daddr, uint8_t itf_num); +void msch_close(uint8_t dev_addr); +bool msch_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); #ifdef __cplusplus - } +} #endif #endif diff --git a/src/common/tusb_common.h b/src/common/tusb_common.h index b53fa5c02..d74760608 100644 --- a/src/common/tusb_common.h +++ b/src/common/tusb_common.h @@ -388,10 +388,7 @@ TU_ATTR_ALWAYS_INLINE static inline uint8_t tu_desc_subtype(void const* desc) { } TU_ATTR_ALWAYS_INLINE static inline bool tu_desc_in_bounds(const uint8_t *p_desc, const uint8_t *desc_end) { - if (p_desc >= desc_end) { - return false; - } - return tu_desc_next(p_desc) <= desc_end; + return p_desc < desc_end && tu_desc_next(p_desc) <= desc_end; } // find descriptor that match byte1 (type) diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index a94470039..586250163 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -99,9 +99,6 @@ TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_validate(tusb_desc_endpoint_t c bool tu_bind_driver_to_ep_itf(uint8_t driver_id, uint8_t ep2drv[][2], uint8_t itf2drv[], uint8_t itf_max, const uint8_t *p_desc, uint16_t desc_len); -// Calculate total length of n interfaces (depending on IAD) -uint16_t tu_desc_get_interface_total_len(tusb_desc_interface_t const* desc_itf, uint8_t itf_count, uint16_t max_len); - // Claim an endpoint with provided mutex bool tu_edpt_claim(tu_edpt_state_t* ep_state, osal_mutex_t mutex); diff --git a/src/host/hub.c b/src/host/hub.c index 0b172a596..3baaff30f 100644 --- a/src/host/hub.c +++ b/src/host/hub.c @@ -218,27 +218,27 @@ bool hub_deinit(void) { return true; } -bool hub_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { +uint16_t hub_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { (void) rhport; TU_VERIFY(TUSB_CLASS_HUB == itf_desc->bInterfaceClass && - 0 == itf_desc->bInterfaceSubClass); - TU_VERIFY(itf_desc->bInterfaceProtocol <= 1); // not support multiple TT yet + 0 == itf_desc->bInterfaceSubClass, 0); + TU_VERIFY(itf_desc->bInterfaceProtocol <= 1, 0); // not support multiple TT yet - uint16_t const drv_len = sizeof(tusb_desc_interface_t) + sizeof(tusb_desc_endpoint_t); - TU_ASSERT(drv_len <= max_len); + const uint16_t drv_len = sizeof(tusb_desc_interface_t) + sizeof(tusb_desc_endpoint_t); + TU_ASSERT(drv_len <= max_len, 0); // Interrupt Status endpoint tusb_desc_endpoint_t const *desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc); TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType && TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer, 0); - TU_ASSERT(tuh_edpt_open(dev_addr, desc_ep)); + TU_ASSERT(tuh_edpt_open(dev_addr, desc_ep), 0); hub_interface_t* p_hub = get_hub_itf(dev_addr); p_hub->itf_num = itf_desc->bInterfaceNumber; p_hub->ep_in = desc_ep->bEndpointAddress; - return true; + return drv_len; } void hub_close(uint8_t dev_addr) { diff --git a/src/host/hub.h b/src/host/hub.h index 3587f0ee3..d9750f8a5 100644 --- a/src/host/hub.h +++ b/src/host/hub.h @@ -206,12 +206,12 @@ bool hub_clear_feature(uint8_t hub_addr, uint8_t feature, tuh_xfer_cb_t complete //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -bool hub_init (void); -bool hub_deinit (void); -bool hub_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); -bool hub_set_config (uint8_t daddr, uint8_t itf_num); -bool hub_xfer_cb (uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); -void hub_close (uint8_t dev_addr); +bool hub_init(void); +bool hub_deinit(void); +uint16_t hub_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +bool hub_set_config(uint8_t daddr, uint8_t itf_num); +bool hub_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); +void hub_close(uint8_t dev_addr); #ifdef __cplusplus } diff --git a/src/host/usbh.c b/src/host/usbh.c index 734024771..7c4910af1 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -1815,85 +1815,51 @@ static bool enum_parse_configuration_desc(uint8_t dev_addr, tusb_desc_configurat TU_LOG_USBH("Parsing Configuration descriptor (wTotalLength = %u)\r\n", total_len); // parse each interfaces - while( p_desc < desc_end ) { - if ( 0 == tu_desc_len(p_desc) ) { + while (tu_desc_in_bounds(p_desc, desc_end)) { + if (0 == tu_desc_len(p_desc)) { // A zero length descriptor indicates that the device is off spec (e.g. wrong wTotalLength). // Parsed interfaces should still be usable TU_LOG_USBH("Encountered a zero-length descriptor after %" PRIu32 " bytes\r\n", (uint32_t)p_desc - (uint32_t)desc_cfg); break; } - uint8_t assoc_itf_count = 1; - - // Class will always starts with Interface Association (if any) and then Interface descriptor - if ( TUSB_DESC_INTERFACE_ASSOCIATION == tu_desc_type(p_desc) ) { - tusb_desc_interface_assoc_t const * desc_iad = (tusb_desc_interface_assoc_t const *) p_desc; - assoc_itf_count = desc_iad->bInterfaceCount; - - p_desc = tu_desc_next(p_desc); // next to Interface - - // IAD's first interface number and class should match with opened interface - //TU_ASSERT(desc_iad->bFirstInterface == desc_itf->bInterfaceNumber && - // desc_iad->bFunctionClass == desc_itf->bInterfaceClass); - } - - TU_ASSERT( TUSB_DESC_INTERFACE == tu_desc_type(p_desc) ); - tusb_desc_interface_t const* desc_itf = (tusb_desc_interface_t const*) p_desc; - -#if CFG_TUH_MIDI - // MIDI has 2 interfaces (Audio Control v1 + MIDIStreaming) but does not have IAD - // manually force associated count = 2 - if (1 == assoc_itf_count && - TUSB_CLASS_AUDIO == desc_itf->bInterfaceClass && - AUDIO_SUBCLASS_CONTROL == desc_itf->bInterfaceSubClass && - AUDIO_FUNC_PROTOCOL_CODE_UNDEF == desc_itf->bInterfaceProtocol) { - assoc_itf_count = 2; + // skip if not interface + if (TUSB_DESC_INTERFACE != tu_desc_type(p_desc)) { + p_desc = tu_desc_next(p_desc); + continue; } -#endif + const tusb_desc_interface_t *desc_itf = (const tusb_desc_interface_t *)p_desc; -#if CFG_TUH_CDC - // Some legacy CDC device does not use IAD but rather use device class as hint to combine 2 interfaces - // manually force associated count = 2 - if (1 == assoc_itf_count && - TUSB_CLASS_CDC == desc_itf->bInterfaceClass && - CDC_COMM_SUBCLASS_ABSTRACT_CONTROL_MODEL == desc_itf->bInterfaceSubClass) { - assoc_itf_count = 2; - } -#endif - - uint16_t const drv_len = tu_desc_get_interface_total_len(desc_itf, assoc_itf_count, (uint16_t) (desc_end-p_desc)); - TU_ASSERT(drv_len >= sizeof(tusb_desc_interface_t)); + // uint16_t const drv_len = tu_desc_get_interface_total_len(desc_itf, assoc_itf_count, (uint16_t) + // (desc_end-p_desc)); TU_ASSERT(drv_len >= sizeof(tusb_desc_interface_t)); // Find driver for this interface - for (uint8_t drv_id = 0; drv_id < TOTAL_DRIVER_COUNT; drv_id++) { - usbh_class_driver_t const * driver = get_driver(drv_id); - if (driver && driver->open(dev->bus_info.rhport, dev_addr, desc_itf, drv_len) ) { - // open successfully - TU_LOG_USBH(" %s opened\r\n", driver->name); - - // bind (associated) interfaces to found driver - for(uint8_t i=0; ibInterfaceNumber+i; - - // Interface number must not be used already - TU_ASSERT( TUSB_INDEX_INVALID_8 == dev->itf2drv[itf_num] ); - dev->itf2drv[itf_num] = drv_id; + const uint16_t remaining_len = (uint16_t)(desc_end - p_desc); + uint8_t drv_id; + for (drv_id = 0; drv_id < TOTAL_DRIVER_COUNT; drv_id++) { + const usbh_class_driver_t *driver = get_driver(drv_id); + if (driver) { + const uint16_t drv_len = driver->open(dev->bus_info.rhport, dev_addr, desc_itf, remaining_len); + if ((sizeof(tusb_desc_interface_t) <= drv_len) && (drv_len <= remaining_len)) { + // open successfully + TU_LOG_USBH(" %s opened\r\n", driver->name); + + // bind found driver to all interfaces and endpoint within drv_len + tu_bind_driver_to_ep_itf(drv_id, dev->ep2drv, dev->itf2drv, CFG_TUH_INTERFACE_MAX, p_desc, drv_len); + + p_desc += drv_len; // next Interface + break; // exit driver find loop } - - // bind all endpoints to found driver - tu_edpt_bind_driver(dev->ep2drv, desc_itf, drv_len, drv_id); - - break; // exit driver find loop - } - - if (drv_id == TOTAL_DRIVER_COUNT - 1) { - TU_LOG_USBH("[%u:%u] Interface %u: class = %u subclass = %u protocol = %u is not supported\r\n", - dev->bus_info.rhport, dev_addr, desc_itf->bInterfaceNumber, desc_itf->bInterfaceClass, desc_itf->bInterfaceSubClass, desc_itf->bInterfaceProtocol); } } - // next Interface or IAD descriptor - p_desc += drv_len; + // no driver found + if (drv_id == TOTAL_DRIVER_COUNT) { + p_desc = tu_desc_next(p_desc); // skip this interface + TU_LOG_USBH("[%u:%u] Interface %u: class = %u subclass = %u protocol = %u is not supported\r\n", + dev->bus_info.rhport, dev_addr, desc_itf->bInterfaceNumber, desc_itf->bInterfaceClass, + desc_itf->bInterfaceSubClass, desc_itf->bInterfaceProtocol); + } } return true; diff --git a/src/host/usbh_pvt.h b/src/host/usbh_pvt.h index d722bb7e8..57428e3c5 100644 --- a/src/host/usbh_pvt.h +++ b/src/host/usbh_pvt.h @@ -44,16 +44,15 @@ //--------------------------------------------------------------------+ // Class Driver API //--------------------------------------------------------------------+ - typedef struct { - char const* name; - bool (* const init )(void); - bool (* const deinit )(void); - bool (* const open )(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const * itf_desc, uint16_t max_len); - bool (* const set_config )(uint8_t dev_addr, uint8_t itf_num); - bool (* const xfer_cb )(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); - void (* const close )(uint8_t dev_addr); -} usbh_class_driver_t; + const char *name; + bool (*const init)(void); + bool (*const deinit)(void); + uint16_t (*const open)(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); + bool (*const set_config)(uint8_t dev_addr, uint8_t itf_num); + bool (*const xfer_cb)(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes); + void (*const close)(uint8_t dev_addr); + } usbh_class_driver_t; // Invoked when initializing host stack to get additional class drivers. // Can be implemented by application to extend/overwrite class driver support. diff --git a/src/tusb.c b/src/tusb.c index de6ec0211..c62052c97 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -310,37 +310,6 @@ bool tu_bind_driver_to_ep_itf(uint8_t driver_id, uint8_t ep2drv[][2], uint8_t it return true; } -uint16_t tu_desc_get_interface_total_len(tusb_desc_interface_t const* desc_itf, uint8_t itf_count, uint16_t max_len) { - uint8_t const* p_desc = (uint8_t const*) desc_itf; - uint16_t len = 0; - - while ((itf_count--) > 0) { - // Next on interface desc - len += tu_desc_len(desc_itf); - p_desc = tu_desc_next(p_desc); - - while (len < max_len) { - if (tu_desc_len(p_desc) == 0) { - // Escape infinite loop - break; - } - // return on IAD regardless of itf count - if (tu_desc_type(p_desc) == TUSB_DESC_INTERFACE_ASSOCIATION) { - return len; - } - if ((tu_desc_type(p_desc) == TUSB_DESC_INTERFACE) && - ((tusb_desc_interface_t const*) p_desc)->bAlternateSetting == 0) { - break; - } - - len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); - } - } - - return len; -} - //--------------------------------------------------------------------+ // Endpoint Stream Helper for both Host and Device stack //--------------------------------------------------------------------+ -- cgit v1.3.1 From b73003745fb18818574baa89367fd618c36ad8b0 Mon Sep 17 00:00:00 2001 From: hathach Date: Thu, 11 Dec 2025 16:22:51 +0700 Subject: move host hacked bulk mps out of tu_edpt_validate() --- src/class/cdc/cdc_host.c | 14 ++++++++++---- src/common/tusb_private.h | 6 ++---- src/device/usbd.c | 4 ++-- src/host/usbh.c | 9 ++++++++- src/tusb.c | 17 ++++------------- test/fuzz/device/cdc/src/fuzz.cc | 6 +++++- test/fuzz/device/msc/src/fuzz.cc | 7 +++++-- test/fuzz/device/net/src/fuzz.cc | 6 +++++- 8 files changed, 41 insertions(+), 28 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index ff1a8338d..0655ea1a7 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -29,6 +29,8 @@ #include "tusb_option.h" +#include + #if (CFG_TUH_ENABLED && CFG_TUH_CDC) #include "host/usbh.h" @@ -1190,7 +1192,8 @@ static uint16_t ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, TU_VERIFY(itf_desc->bInterfaceSubClass == 0xff && itf_desc->bInterfaceProtocol == 0xff && itf_desc->bNumEndpoints == 2, 0); - const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + const uint16_t drv_len = + (uint16_t)(sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t *p_cdc = make_new_itf(daddr, itf_desc); @@ -1581,7 +1584,8 @@ enum { static uint16_t cp210x_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { // CP210x Interface includes 1 vendor interface + 2 bulk endpoints TU_VERIFY(itf_desc->bInterfaceSubClass == 0 && itf_desc->bInterfaceProtocol == 0 && itf_desc->bNumEndpoints == 2, 0); - const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + const uint16_t drv_len = + (uint16_t)(sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t *p_cdc = make_new_itf(daddr, itf_desc); @@ -1756,7 +1760,8 @@ enum { static uint16_t ch34x_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { // CH34x Interface includes 1 vendor interface + 2 bulk + 1 interrupt endpoints TU_VERIFY(itf_desc->bNumEndpoints == 3, 0); - const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + const uint16_t drv_len = + (uint16_t)(sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc); @@ -2092,7 +2097,8 @@ enum { static uint16_t pl2303_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) { // PL2303 Interface includes 1 vendor interface + 1 interrupt endpoints + 2 bulk TU_VERIFY(itf_desc->bNumEndpoints == 3, 0); - const uint16_t drv_len = sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t); + const uint16_t drv_len = + (uint16_t)(sizeof(tusb_desc_interface_t) + itf_desc->bNumEndpoints * sizeof(tusb_desc_endpoint_t)); TU_VERIFY(drv_len <= max_len, 0); cdch_interface_t *p_cdc = make_new_itf(daddr, itf_desc); diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index 586250163..10e12c2af 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -84,13 +84,11 @@ typedef struct { // Check if endpoint descriptor is valid per USB specs if debug is enabled #if CFG_TUSB_DEBUG -bool tu_edpt_validate(tusb_desc_endpoint_t const * desc_ep, tusb_speed_t speed, bool is_host); +bool tu_edpt_validate(const tusb_desc_endpoint_t *desc_ep, tusb_speed_t speed); #else -TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_validate(tusb_desc_endpoint_t const *desc_ep, tusb_speed_t speed, - bool is_host) { +TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_validate(const tusb_desc_endpoint_t *desc_ep, tusb_speed_t speed) { (void)desc_ep; (void)speed; - (void)is_host; return true; } #endif diff --git a/src/device/usbd.c b/src/device/usbd.c index 6fd88bf42..4cbba1240 100644 --- a/src/device/usbd.c +++ b/src/device/usbd.c @@ -1331,7 +1331,7 @@ bool usbd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const* desc_ep) { rhport = _usbd_rhport; TU_ASSERT(tu_edpt_number(desc_ep->bEndpointAddress) < CFG_TUD_ENDPPOINT_MAX); - TU_ASSERT(tu_edpt_validate(desc_ep, (tusb_speed_t) _usbd_dev.speed, false)); + TU_ASSERT(tu_edpt_validate(desc_ep, (tusb_speed_t)_usbd_dev.speed)); return dcd_edpt_open(rhport, desc_ep); } @@ -1541,7 +1541,7 @@ bool usbd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const* desc_ep) uint8_t const dir = tu_edpt_dir(desc_ep->bEndpointAddress); TU_ASSERT(epnum < CFG_TUD_ENDPPOINT_MAX); - TU_ASSERT(tu_edpt_validate(desc_ep, (tusb_speed_t) _usbd_dev.speed, false)); + TU_ASSERT(tu_edpt_validate(desc_ep, (tusb_speed_t)_usbd_dev.speed)); _usbd_dev.ep_status[epnum][dir].stalled = 0; _usbd_dev.ep_status[epnum][dir].busy = 0; diff --git a/src/host/usbh.c b/src/host/usbh.c index 7c4910af1..5b14a15cb 100644 --- a/src/host/usbh.c +++ b/src/host/usbh.c @@ -1066,7 +1066,14 @@ static bool usbh_edpt_control_open(uint8_t dev_addr, uint8_t max_packet_size) { } bool tuh_edpt_open(uint8_t dev_addr, tusb_desc_endpoint_t const* desc_ep) { - TU_ASSERT(tu_edpt_validate(desc_ep, tuh_speed_get(dev_addr), true)); + // HACK: some device incorrectly always report 512 bulk regardless of link speed, overwrite descriptor to force 64 + if (desc_ep->bmAttributes.xfer == TUSB_XFER_BULK && tu_edpt_packet_size(desc_ep) > 64 && + tuh_speed_get(dev_addr) == TUSB_SPEED_FULL) { + TU_LOG1(" WARN: EP max packet size is 512 in fullspeed, force to 64\r\n"); + tusb_desc_endpoint_t *hacked_ep = (tusb_desc_endpoint_t *)(uintptr_t)desc_ep; + hacked_ep->wMaxPacketSize = tu_htole16(64); + } + TU_ASSERT(tu_edpt_validate(desc_ep, tuh_speed_get(dev_addr))); return hcd_edpt_open(usbh_get_rhport(dev_addr), dev_addr, desc_ep); } diff --git a/src/tusb.c b/src/tusb.c index c62052c97..f6ca3fabc 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -242,13 +242,13 @@ bool tu_edpt_release(tu_edpt_state_t* ep_state, osal_mutex_t mutex) { } #if CFG_TUSB_DEBUG -bool tu_edpt_validate(tusb_desc_endpoint_t const* desc_ep, tusb_speed_t speed, bool is_host) { - uint16_t const max_packet_size = tu_edpt_packet_size(desc_ep); +bool tu_edpt_validate(const tusb_desc_endpoint_t *desc_ep, tusb_speed_t speed) { + const uint16_t max_packet_size = tu_edpt_packet_size(desc_ep); TU_LOG2(" Open EP %02X with Size = %u\r\n", desc_ep->bEndpointAddress, max_packet_size); switch (desc_ep->bmAttributes.xfer) { case TUSB_XFER_ISOCHRONOUS: { - uint16_t const spec_size = (speed == TUSB_SPEED_HIGH ? 1024 : 1023); + const uint16_t spec_size = (speed == TUSB_SPEED_HIGH ? 1024 : 1023); TU_ASSERT(max_packet_size <= spec_size); break; } @@ -259,16 +259,7 @@ bool tu_edpt_validate(tusb_desc_endpoint_t const* desc_ep, tusb_speed_t speed, b TU_ASSERT(max_packet_size == 512); } else { // Bulk fullspeed can only be 8, 16, 32, 64 - if (is_host && max_packet_size == 512) { - // HACK: while in host mode, some device incorrectly always report 512 regardless of link speed - // overwrite descriptor to force 64 - TU_LOG1(" WARN: EP max packet size is 512 in fullspeed, force to 64\r\n"); - tusb_desc_endpoint_t* hacked_ep = (tusb_desc_endpoint_t*) (uintptr_t) desc_ep; - hacked_ep->wMaxPacketSize = tu_htole16(64); - } else { - TU_ASSERT(max_packet_size == 8 || max_packet_size == 16 || - max_packet_size == 32 || max_packet_size == 64); - } + TU_ASSERT(max_packet_size == 8 || max_packet_size == 16 || max_packet_size == 32 || max_packet_size == 64); } break; diff --git a/test/fuzz/device/cdc/src/fuzz.cc b/test/fuzz/device/cdc/src/fuzz.cc index 0560e8621..ea13fce92 100644 --- a/test/fuzz/device/cdc/src/fuzz.cc +++ b/test/fuzz/device/cdc/src/fuzz.cc @@ -52,7 +52,11 @@ extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) { provider.ConsumeIntegralInRange(0, Size)); fuzz_init(callback_data.data(), callback_data.size()); // init device stack on configured roothub port - tud_init(BOARD_TUD_RHPORT); + tusb_rhport_init_t dev_init = { + .role = TUSB_ROLE_DEVICE, + .speed = TUSB_SPEED_AUTO + }; + tusb_init(BOARD_TUD_RHPORT, &dev_init); for (int i = 0; i < FUZZ_ITERATIONS; i++) { if (provider.remaining_bytes() == 0) { diff --git a/test/fuzz/device/msc/src/fuzz.cc b/test/fuzz/device/msc/src/fuzz.cc index 371d49882..8981e5570 100644 --- a/test/fuzz/device/msc/src/fuzz.cc +++ b/test/fuzz/device/msc/src/fuzz.cc @@ -46,8 +46,11 @@ extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) { std::vector callback_data = provider.ConsumeBytes( provider.ConsumeIntegralInRange(0, Size)); fuzz_init(callback_data.data(), callback_data.size()); - // init device stack on configured roothub port - tud_init(BOARD_TUD_RHPORT); + tusb_rhport_init_t dev_init = { + .role = TUSB_ROLE_DEVICE, + .speed = TUSB_SPEED_AUTO + }; + tusb_init(BOARD_TUD_RHPORT, &dev_init); for (int i = 0; i < FUZZ_ITERATIONS; i++) { if (provider.remaining_bytes() == 0) { diff --git a/test/fuzz/device/net/src/fuzz.cc b/test/fuzz/device/net/src/fuzz.cc index a6935928a..7c8c39acc 100644 --- a/test/fuzz/device/net/src/fuzz.cc +++ b/test/fuzz/device/net/src/fuzz.cc @@ -53,7 +53,11 @@ extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) { provider.ConsumeIntegralInRange(0, Size)); fuzz_init(callback_data.data(), callback_data.size()); // init device stack on configured roothub port - tud_init(BOARD_TUD_RHPORT); + tusb_rhport_init_t dev_init = { + .role = TUSB_ROLE_DEVICE, + .speed = TUSB_SPEED_AUTO + }; + tusb_init(BOARD_TUD_RHPORT, &dev_init); for (int i = 0; i < FUZZ_ITERATIONS; i++) { if (provider.remaining_bytes() == 0) { -- cgit v1.3.1 From ebfe1c56372ff248c43d12d866d9235ad9e83819 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Fri, 12 Dec 2025 11:04:54 +0100 Subject: usbh/cdc: fix typo in cdch_open Signed-off-by: HiFiPhile --- src/class/cdc/cdc_host.c | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 0655ea1a7..32f6827b0 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -761,7 +761,7 @@ uint16_t cdch_open(uint8_t rhport, uint8_t daddr, const tusb_desc_interface_t *i for (size_t i = 0; i < driver->vid_pid_count; i++) { if (driver->vid_pid_list[i][0] == vid && driver->vid_pid_list[i][1] == pid) { const uint16_t drv_len = driver->open(daddr, itf_desc, max_len); - TU_LOG_DRV("[:%u:%u] CDCh %s open %s\r\n", daddr, itf_desc->bInterfaceNumber, driver->name, ret ? "OK" : "FAILED"); + TU_LOG_DRV("[:%u:%u] CDCh %s open %s\r\n", daddr, itf_desc->bInterfaceNumber, driver->name, drv_len > 0 ? "OK" : "FAILED"); return drv_len; } } -- cgit v1.3.1 From d77f1e8eb6f53cdb55987165b36e301daf1f9828 Mon Sep 17 00:00:00 2001 From: Cédric Berger Date: Fri, 26 Dec 2025 17:27:05 +0100 Subject: Prevent unused-variable warning in dcd_host.c 'idx' is not used if CFG_TUH_CDC_LINE_CODING_ON_ENUM is not defined. --- src/class/cdc/cdc_host.c | 2 ++ 1 file changed, 2 insertions(+) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 32f6827b0..f19c4a327 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -828,7 +828,9 @@ static bool set_line_state_on_enum(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { ENUM_SET_LINE_CONTROL, ENUM_SET_LINE_COMPLETE, }; + #ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM const uint8_t idx = get_idx_by_ptr(p_cdc); + #endif const uintptr_t state = xfer->user_data; switch (state) { -- cgit v1.3.1 From 135a130ba51d2e41b30f13fbd998f1db32a47470 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Wed, 11 Feb 2026 22:04:44 +0100 Subject: fix rx transfer length when high speed capable device/host working at full speed Signed-off-by: HiFiPhile --- src/class/cdc/cdc_device.c | 12 ++++++------ src/class/cdc/cdc_device.h | 2 ++ src/class/cdc/cdc_host.c | 8 ++++---- src/class/midi/midi_device.c | 8 ++++---- src/class/midi/midi_host.c | 6 +++--- src/class/vendor/vendor_device.c | 36 +++++++++++++++++++++--------------- src/class/vendor/vendor_device.h | 17 ++++++++++++++++- src/common/tusb_private.h | 7 ++++--- src/tusb.c | 7 +++---- 9 files changed, 63 insertions(+), 40 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index e2819ae4b..eca4d0ad6 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -74,7 +74,7 @@ typedef struct { } cdcd_epbuf_t; CFG_TUD_MEM_SECTION static cdcd_epbuf_t _cdcd_epbuf[CFG_TUD_CDC]; -#endif + #endif //--------------------------------------------------------------------+ // Weak stubs: invoked if no strong implementation is available @@ -267,14 +267,13 @@ void cdcd_init(void) { uint8_t *epin_buf = _cdcd_epbuf[i].epin; #endif - tu_edpt_stream_init(&p_cdc->rx_stream, false, false, false, p_cdc->rx_ff_buf, CFG_TUD_CDC_RX_BUFSIZE, epout_buf, - CFG_TUD_CDC_EP_BUFSIZE); + tu_edpt_stream_init(&p_cdc->rx_stream, false, false, false, p_cdc->rx_ff_buf, CFG_TUD_CDC_RX_BUFSIZE, epout_buf); // TX fifo can be configured to change to overwritable if not connected (DTR bit not set). Without DTR we do not // know if data is actually polled by terminal. This way the most current data is prioritized. // Default: is overwritable tu_edpt_stream_init(&p_cdc->tx_stream, false, true, _cdcd_cfg.tx_overwritabe_if_not_connected, p_cdc->tx_ff_buf, - CFG_TUD_CDC_TX_BUFSIZE, epin_buf, CFG_TUD_CDC_EP_BUFSIZE); + CFG_TUD_CDC_TX_BUFSIZE, epin_buf); } } @@ -349,7 +348,7 @@ uint16_t cdcd_open(uint8_t rhport, const tusb_desc_interface_t* itf_desc, uint16 if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { tu_edpt_stream_t *stream_tx = &p_cdc->tx_stream; - tu_edpt_stream_open(stream_tx, rhport, desc_ep); + tu_edpt_stream_open(stream_tx, rhport, desc_ep, CFG_TUD_CDC_EP_BUFSIZE); if (_cdcd_cfg.tx_persistent) { tu_edpt_stream_write_xfer(stream_tx); // flush pending data } else { @@ -358,7 +357,8 @@ uint16_t cdcd_open(uint8_t rhport, const tusb_desc_interface_t* itf_desc, uint16 } else { tu_edpt_stream_t *stream_rx = &p_cdc->rx_stream; - tu_edpt_stream_open(stream_rx, rhport, desc_ep); + tu_edpt_stream_open(stream_rx, rhport, desc_ep, + _cdcd_cfg.rx_multiple_packet_transfer ? CFG_TUD_CDC_EP_BUFSIZE : tu_edpt_packet_size(desc_ep)); if (!_cdcd_cfg.rx_persistent) { tu_edpt_stream_clear(stream_rx); } diff --git a/src/class/cdc/cdc_device.h b/src/class/cdc/cdc_device.h index 0809b578f..2d3a81f60 100644 --- a/src/class/cdc/cdc_device.h +++ b/src/class/cdc/cdc_device.h @@ -64,6 +64,7 @@ typedef struct TU_ATTR_PACKED { bool rx_persistent : 1; // keep rx fifo data even with bus reset or disconnect bool tx_persistent : 1; // keep tx fifo data even with reset or disconnect bool tx_overwritabe_if_not_connected : 1; // if not connected, tx fifo can be overwritten + bool rx_multiple_packet_transfer : 1; // allow transfer more than one packet in a single transfer, increase throughput but requires host sending ZLP at the end of transfer } tud_cdc_configure_t; TU_VERIFY_STATIC(sizeof(tud_cdc_configure_t) == 1, "size is not correct"); @@ -71,6 +72,7 @@ TU_VERIFY_STATIC(sizeof(tud_cdc_configure_t) == 1, "size is not correct"); .rx_persistent = false, \ .tx_persistent = false, \ .tx_overwritabe_if_not_connected = true, \ + .rx_multiple_packet_transfer = false, \ } // Configure CDC driver behavior diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index f19c4a327..8b5667aac 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -648,10 +648,10 @@ bool cdch_init(void) { for (size_t i = 0; i < CFG_TUH_CDC; i++) { cdch_interface_t *p_cdc = &cdch_data[i]; cdch_epbuf_t *epbuf = &cdch_epbuf[i]; - TU_ASSERT(tu_edpt_stream_init(&p_cdc->stream.tx, true, true, false, p_cdc->stream.tx_ff_buf, CFG_TUH_CDC_TX_BUFSIZE, - epbuf->tx, CFG_TUH_CDC_TX_EPSIZE)); + TU_ASSERT(tu_edpt_stream_init(&p_cdc->stream.tx, true, true, false, p_cdc->stream.tx_ff_buf, + CFG_TUH_CDC_TX_BUFSIZE, epbuf->tx)); TU_ASSERT(tu_edpt_stream_init(&p_cdc->stream.rx, true, false, false, p_cdc->stream.rx_ff_buf, - CFG_TUH_CDC_RX_BUFSIZE, epbuf->rx, CFG_TUH_CDC_RX_EPSIZE)); + CFG_TUH_CDC_RX_BUFSIZE, epbuf->rx)); } return true; @@ -735,7 +735,7 @@ static bool open_ep_stream_pair(cdch_interface_t *p_cdc, tusb_desc_endpoint_t co TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep)); const uint8_t ep_dir = tu_edpt_dir(desc_ep->bEndpointAddress); tu_edpt_stream_t *stream = (ep_dir == TUSB_DIR_IN) ? &p_cdc->stream.rx : &p_cdc->stream.tx; - tu_edpt_stream_open(stream, p_cdc->daddr, desc_ep); + tu_edpt_stream_open(stream, p_cdc->daddr, desc_ep, desc_ep->wMaxPacketSize); tu_edpt_stream_clear(stream); desc_ep = (const tusb_desc_endpoint_t *)tu_desc_next(desc_ep); diff --git a/src/class/midi/midi_device.c b/src/class/midi/midi_device.c index 023a81595..173baf53e 100644 --- a/src/class/midi/midi_device.c +++ b/src/class/midi/midi_device.c @@ -324,10 +324,10 @@ void midid_init(void) { #endif tu_edpt_stream_init(&p_midi->ep_stream.rx, false, false, false, p_midi->ep_stream.rx_ff_buf, - CFG_TUD_MIDI_RX_BUFSIZE, epout_buf, CFG_TUD_MIDI_EP_BUFSIZE); + CFG_TUD_MIDI_RX_BUFSIZE, epout_buf); tu_edpt_stream_init(&p_midi->ep_stream.tx, false, true, false, p_midi->ep_stream.tx_ff_buf, CFG_TUD_MIDI_TX_BUFSIZE, - epin_buf, CFG_TUD_MIDI_EP_BUFSIZE); + epin_buf); } } @@ -408,11 +408,11 @@ uint16_t midid_open(uint8_t rhport, const tusb_desc_interface_t *desc_itf, uint1 if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN) { tu_edpt_stream_t *stream_tx = &p_midi->ep_stream.tx; - tu_edpt_stream_open(stream_tx, rhport, desc_ep); + tu_edpt_stream_open(stream_tx, rhport, desc_ep, CFG_TUD_MIDI_EP_BUFSIZE); tu_edpt_stream_clear(stream_tx); } else { tu_edpt_stream_t *stream_rx = &p_midi->ep_stream.rx; - tu_edpt_stream_open(stream_rx, rhport, desc_ep); + tu_edpt_stream_open(stream_rx, rhport, desc_ep, tu_edpt_packet_size(desc_ep)); tu_edpt_stream_clear(stream_rx); TU_ASSERT(tu_edpt_stream_read_xfer(stream_rx) > 0, 0); // prepare to receive data } diff --git a/src/class/midi/midi_host.c b/src/class/midi/midi_host.c index 5548a0ba8..a3d61a02f 100644 --- a/src/class/midi/midi_host.c +++ b/src/class/midi/midi_host.c @@ -121,9 +121,9 @@ bool midih_init(void) { for (int inst = 0; inst < CFG_TUH_MIDI; inst++) { midih_interface_t *p_midi_host = &_midi_host[inst]; tu_edpt_stream_init(&p_midi_host->ep_stream.rx, true, false, false, - p_midi_host->ep_stream.rx_ff_buf, CFG_TUH_MIDI_RX_BUFSIZE, _midi_epbuf->rx, TUH_EPSIZE_BULK_MPS); + p_midi_host->ep_stream.rx_ff_buf, CFG_TUH_MIDI_RX_BUFSIZE, _midi_epbuf->rx); tu_edpt_stream_init(&p_midi_host->ep_stream.tx, true, true, false, - p_midi_host->ep_stream.tx_ff_buf, CFG_TUH_MIDI_TX_BUFSIZE, _midi_epbuf->tx, TUH_EPSIZE_BULK_MPS); + p_midi_host->ep_stream.tx_ff_buf, CFG_TUH_MIDI_TX_BUFSIZE, _midi_epbuf->tx); } return true; } @@ -306,7 +306,7 @@ uint16_t midih_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_ ep_stream = &p_midi->ep_stream.rx; } TU_ASSERT(tuh_edpt_open(dev_addr, p_ep), 0); - tu_edpt_stream_open(ep_stream, dev_addr, p_ep); + tu_edpt_stream_open(ep_stream, dev_addr, p_ep, p_ep->wMaxPacketSize); tu_edpt_stream_clear(ep_stream); break; diff --git a/src/class/vendor/vendor_device.c b/src/class/vendor/vendor_device.c index b917c8dc7..b2dd8f394 100644 --- a/src/class/vendor/vendor_device.c +++ b/src/class/vendor/vendor_device.c @@ -49,8 +49,7 @@ typedef struct { #else uint8_t ep_in; uint8_t ep_out; - uint16_t ep_in_mps; - uint16_t ep_out_mps; + uint16_t rx_xfer_len; #endif } vendord_interface_t; @@ -72,6 +71,8 @@ typedef struct { CFG_TUD_MEM_SECTION static vendord_epbuf_t _vendord_epbuf[CFG_TUD_VENDOR]; #endif +static tud_vendor_configure_t _vendord_cfg = TUD_VENDOR_CONFIGURE_DEFAULT(); + //--------------------------------------------------------------------+ // Weak stubs: invoked if no strong implementation is available //--------------------------------------------------------------------+ @@ -89,6 +90,12 @@ TU_ATTR_WEAK void tud_vendor_tx_cb(uint8_t idx, uint32_t sent_bytes) { //-------------------------------------------------------------------- // Application API //-------------------------------------------------------------------- +bool tud_vendor_configure(const tud_vendor_configure_t* driver_cfg) { + TU_VERIFY(driver_cfg != NULL); + _vendord_cfg = *driver_cfg; + return true; +} + bool tud_vendor_n_mounted(uint8_t idx) { TU_VERIFY(idx < CFG_TUD_VENDOR); vendord_interface_t *p_itf = &_vendord_itf[idx]; @@ -128,9 +135,9 @@ void tud_vendor_n_read_flush(uint8_t idx) { tu_edpt_stream_clear(&p_itf->rx_stream); tu_edpt_stream_read_xfer(&p_itf->rx_stream); } -#endif + #endif -#if CFG_TUD_VENDOR_RX_MANUAL_XFER + #if CFG_TUD_VENDOR_RX_MANUAL_XFER bool tud_vendor_n_read_xfer(uint8_t idx) { TU_VERIFY(idx < CFG_TUD_VENDOR); vendord_interface_t *p_itf = &_vendord_itf[idx]; @@ -141,7 +148,7 @@ bool tud_vendor_n_read_xfer(uint8_t idx) { #else // Non-FIFO mode TU_VERIFY(usbd_edpt_claim(p_itf->rhport, p_itf->ep_out)); - return usbd_edpt_xfer(p_itf->rhport, p_itf->ep_out, _vendord_epbuf[idx].epout, CFG_TUD_VENDOR_EPSIZE, false); + return usbd_edpt_xfer(p_itf->rhport, p_itf->ep_out, _vendord_epbuf[idx].epout, p_itf->rx_xfer_len, false); #endif } #endif @@ -215,12 +222,10 @@ void vendord_init(void) { #endif uint8_t *rx_ff_buf = p_itf->rx_ff_buf; - tu_edpt_stream_init(&p_itf->rx_stream, false, false, false, rx_ff_buf, CFG_TUD_VENDOR_RX_BUFSIZE, epout_buf, - CFG_TUD_VENDOR_EPSIZE); + tu_edpt_stream_init(&p_itf->rx_stream, false, false, false, rx_ff_buf, CFG_TUD_VENDOR_RX_BUFSIZE, epout_buf); uint8_t *tx_ff_buf = p_itf->tx_ff_buf; - tu_edpt_stream_init(&p_itf->tx_stream, false, true, false, tx_ff_buf, CFG_TUD_VENDOR_TX_BUFSIZE, epin_buf, - CFG_TUD_VENDOR_EPSIZE); + tu_edpt_stream_init(&p_itf->tx_stream, false, true, false, tx_ff_buf, CFG_TUD_VENDOR_TX_BUFSIZE, epin_buf); } #endif } @@ -302,30 +307,31 @@ uint16_t vendord_open(uint8_t rhport, const tusb_desc_interface_t *desc_itf, uin const tusb_desc_endpoint_t* desc_ep = (const tusb_desc_endpoint_t*) p_desc; TU_ASSERT(usbd_edpt_open(rhport, desc_ep)); + uint16_t rx_xfer_len = _vendord_cfg.rx_multiple_packet_transfer ? CFG_TUD_VENDOR_EPSIZE : tu_edpt_packet_size(desc_ep); + #if CFG_TUD_VENDOR_TXRX_BUFFERED // open endpoint stream if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { tu_edpt_stream_t *tx_stream = &p_vendor->tx_stream; - tu_edpt_stream_open(tx_stream, rhport, desc_ep); + tu_edpt_stream_open(tx_stream, rhport, desc_ep, CFG_TUD_VENDOR_EPSIZE); tu_edpt_stream_write_xfer(tx_stream); // flush pending data } else { tu_edpt_stream_t *rx_stream = &p_vendor->rx_stream; - tu_edpt_stream_open(rx_stream, rhport, desc_ep); + tu_edpt_stream_open(rx_stream, rhport, desc_ep, rx_xfer_len); #if CFG_TUD_VENDOR_RX_MANUAL_XFER == 0 TU_ASSERT(tu_edpt_stream_read_xfer(rx_stream) > 0, 0); // prepare for incoming data #endif } #else + p_vendor->rx_xfer_len = rx_xfer_len; // Non-FIFO mode: store endpoint info if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { p_vendor->ep_in = desc_ep->bEndpointAddress; - p_vendor->ep_in_mps = tu_edpt_packet_size(desc_ep); } else { p_vendor->ep_out = desc_ep->bEndpointAddress; - p_vendor->ep_out_mps = tu_edpt_packet_size(desc_ep); #if CFG_TUD_VENDOR_RX_MANUAL_XFER == 0 // Prepare for incoming data - TU_ASSERT(usbd_edpt_xfer(rhport, p_vendor->ep_out, _vendord_epbuf[idx].epout, CFG_TUD_VENDOR_EPSIZE, false), 0); + TU_ASSERT(usbd_edpt_xfer(rhport, p_vendor->ep_out, _vendord_epbuf[idx].epout, rx_xfer_len, false), 0); #endif } #endif @@ -367,7 +373,7 @@ bool vendord_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint // Non-FIFO mode: invoke callback with buffer tud_vendor_rx_cb(idx, _vendord_epbuf[idx].epout, xferred_bytes); #if CFG_TUD_VENDOR_RX_MANUAL_XFER == 0 - usbd_edpt_xfer(rhport, p_vendor->ep_out, _vendord_epbuf[idx].epout, CFG_TUD_VENDOR_EPSIZE, false); + usbd_edpt_xfer(rhport, p_vendor->ep_out, _vendord_epbuf[idx].epout, p_vendor->rx_xfer_len, false); #endif } else if (ep_addr == p_vendor->ep_in) { // Send complete diff --git a/src/class/vendor/vendor_device.h b/src/class/vendor/vendor_device.h index 101765bb1..594da19cb 100644 --- a/src/class/vendor/vendor_device.h +++ b/src/class/vendor/vendor_device.h @@ -37,7 +37,7 @@ extern "C" { // Configuration //--------------------------------------------------------------------+ #ifndef CFG_TUD_VENDOR_EPSIZE - #define CFG_TUD_VENDOR_EPSIZE 64 + #define CFG_TUD_VENDOR_EPSIZE (TUD_OPT_HIGH_SPEED ? 512 : 64) #endif // RX FIFO can be disabled by setting this value to 0 @@ -62,6 +62,21 @@ extern "C" { #define CFG_TUD_VENDOR_RX_MANUAL_XFER 0 #endif +//--------------------------------------------------------------------+ +// Driver Configuration +//--------------------------------------------------------------------+ +typedef struct TU_ATTR_PACKED { + bool rx_multiple_packet_transfer : 1; // allow transfer more than one packet in a single transfer, increase throughput but requires host sending ZLP at the end of transfer +} tud_vendor_configure_t; +TU_VERIFY_STATIC(sizeof(tud_vendor_configure_t) == 1, "size is not correct"); + +#define TUD_VENDOR_CONFIGURE_DEFAULT() { \ + .rx_multiple_packet_transfer = false, \ +} + +// Configure CDC driver behavior +bool tud_vendor_configure(const tud_vendor_configure_t* driver_cfg); + //--------------------------------------------------------------------+ // Application API (Multiple Interfaces) i.e CFG_TUD_VENDOR > 1 //--------------------------------------------------------------------+ diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index 43ce7a1df..7795d7122 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -62,7 +62,7 @@ typedef struct { uint8_t ep_addr; uint16_t mps; - uint16_t ep_bufsize; + uint16_t xfer_len; uint8_t *ep_buf; // set to NULL to use xfer_fifo when CFG_TUD_EDPT_DEDICATED_HWFIFO = 1 tu_fifo_t ff; @@ -101,7 +101,7 @@ bool tu_edpt_release(tu_edpt_state_t* ep_state, osal_mutex_t mutex); // Init an endpoint stream bool tu_edpt_stream_init(tu_edpt_stream_t *s, bool is_host, bool is_tx, bool overwritable, void *ff_buf, - uint16_t ff_bufsize, uint8_t *ep_buf, uint16_t ep_bufsize); + uint16_t ff_bufsize, uint8_t *ep_buf); // Deinit an endpoint stream TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_deinit(tu_edpt_stream_t *s) { @@ -118,10 +118,11 @@ TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_deinit(tu_edpt_stream_t // Open an endpoint stream TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_open(tu_edpt_stream_t *s, uint8_t hwid, - const tusb_desc_endpoint_t *desc_ep) { + const tusb_desc_endpoint_t *desc_ep, uint16_t xfer_len) { s->hwid = hwid; s->ep_addr = desc_ep->bEndpointAddress; s->mps = tu_edpt_packet_size(desc_ep); + s->xfer_len = xfer_len; } TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_is_opened(const tu_edpt_stream_t *s) { diff --git a/src/tusb.c b/src/tusb.c index 6075e9db4..27864cb51 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -306,7 +306,7 @@ bool tu_bind_driver_to_ep_itf(uint8_t driver_id, uint8_t ep2drv[][2], uint8_t it //--------------------------------------------------------------------+ bool tu_edpt_stream_init(tu_edpt_stream_t *s, bool is_host, bool is_tx, bool overwritable, void *ff_buf, - uint16_t ff_bufsize, uint8_t *ep_buf, uint16_t ep_bufsize) { + uint16_t ff_bufsize, uint8_t *ep_buf) { (void) is_tx; if (ff_buf == NULL || ff_bufsize == 0) { @@ -324,7 +324,6 @@ bool tu_edpt_stream_init(tu_edpt_stream_t *s, bool is_host, bool is_tx, bool ove #endif s->ep_buf = ep_buf; - s->ep_bufsize = ep_bufsize; return true; } @@ -394,7 +393,7 @@ uint32_t tu_edpt_stream_write_xfer(tu_edpt_stream_t *s) { if (s->ep_buf == NULL) { count = tu_fifo_count(&s->ff); // re-get count since fifo can be changed } else { - count = tu_fifo_read_n(&s->ff, s->ep_buf, s->ep_bufsize); + count = tu_fifo_read_n(&s->ff, s->ep_buf, s->xfer_len); } if (count > 0) { @@ -441,7 +440,7 @@ uint32_t tu_edpt_stream_read_xfer(tu_edpt_stream_t *s) { if (available >= s->mps) { // multiple of packet size limit by ep bufsize uint16_t count = (uint16_t) (available & ~(s->mps - 1)); - count = tu_min16(count, s->ep_bufsize); + count = tu_min16(count, s->xfer_len); TU_ASSERT(stream_xfer(s, count), 0); return count; } else { -- cgit v1.3.1 From 5efa72cd57325615efae6a26ff8c9fe8a9c7b3b5 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Wed, 11 Feb 2026 22:24:34 +0100 Subject: fix ep size and midi buffer Signed-off-by: HiFiPhile --- src/class/cdc/cdc_host.c | 2 +- src/class/midi/midi_host.c | 6 +++--- 2 files changed, 4 insertions(+), 4 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 8b5667aac..57d497950 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -735,7 +735,7 @@ static bool open_ep_stream_pair(cdch_interface_t *p_cdc, tusb_desc_endpoint_t co TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep)); const uint8_t ep_dir = tu_edpt_dir(desc_ep->bEndpointAddress); tu_edpt_stream_t *stream = (ep_dir == TUSB_DIR_IN) ? &p_cdc->stream.rx : &p_cdc->stream.tx; - tu_edpt_stream_open(stream, p_cdc->daddr, desc_ep, desc_ep->wMaxPacketSize); + tu_edpt_stream_open(stream, p_cdc->daddr, desc_ep, tu_edpt_packet_size(desc_ep)); tu_edpt_stream_clear(stream); desc_ep = (const tusb_desc_endpoint_t *)tu_desc_next(desc_ep); diff --git a/src/class/midi/midi_host.c b/src/class/midi/midi_host.c index a3d61a02f..bef4d46bf 100644 --- a/src/class/midi/midi_host.c +++ b/src/class/midi/midi_host.c @@ -121,9 +121,9 @@ bool midih_init(void) { for (int inst = 0; inst < CFG_TUH_MIDI; inst++) { midih_interface_t *p_midi_host = &_midi_host[inst]; tu_edpt_stream_init(&p_midi_host->ep_stream.rx, true, false, false, - p_midi_host->ep_stream.rx_ff_buf, CFG_TUH_MIDI_RX_BUFSIZE, _midi_epbuf->rx); + p_midi_host->ep_stream.rx_ff_buf, CFG_TUH_MIDI_RX_BUFSIZE, _midi_epbuf[inst].rx); tu_edpt_stream_init(&p_midi_host->ep_stream.tx, true, true, false, - p_midi_host->ep_stream.tx_ff_buf, CFG_TUH_MIDI_TX_BUFSIZE, _midi_epbuf->tx); + p_midi_host->ep_stream.tx_ff_buf, CFG_TUH_MIDI_TX_BUFSIZE, _midi_epbuf[inst].tx); } return true; } @@ -306,7 +306,7 @@ uint16_t midih_open(uint8_t rhport, uint8_t dev_addr, const tusb_desc_interface_ ep_stream = &p_midi->ep_stream.rx; } TU_ASSERT(tuh_edpt_open(dev_addr, p_ep), 0); - tu_edpt_stream_open(ep_stream, dev_addr, p_ep, p_ep->wMaxPacketSize); + tu_edpt_stream_open(ep_stream, dev_addr, p_ep, tu_edpt_packet_size(p_ep)); tu_edpt_stream_clear(ep_stream); break; -- cgit v1.3.1 From da21dab358a06106188e2bb06fa71ccd5390fa1a Mon Sep 17 00:00:00 2001 From: hathach Date: Tue, 24 Feb 2026 23:37:07 +0700 Subject: fix CDC host FTDI multiple channel loop fix typos for ftdi_process_set_config() add J-Link GDB + RTT logging instructions --- AGENTS.md | 16 +++++ src/class/cdc/cdc_host.c | 171 ++++++++++++++++++++++++----------------------- 2 files changed, 103 insertions(+), 84 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/AGENTS.md b/AGENTS.md index ef8baec5a..a5159aa4a 100644 --- a/AGENTS.md +++ b/AGENTS.md @@ -91,6 +91,22 @@ make BOARD=raspberry_pi_pico all - Make: `make BOARD=raspberry_pi_pico all uf2` - **List all targets** (CMake/Ninja): `ninja -t targets` +## J-Link GDB Server + RTT Logging + +- Build with RTT logging enabled (example): + `cd examples/device/cdc_msc && make BOARD=stm32h743eval LOG=2 LOGGER=rtt all` +- Flash with J-Link: + `cd examples/device/cdc_msc && make BOARD=stm32h743eval LOG=2 LOGGER=rtt flash-jlink` +- Launch GDB server (keep this running in terminal 1): + `JLinkGDBServer -device stm32h743xi -if SWD -speed 4000 -port 2331 -swoport 2332 -telnetport 2333 -RTTTelnetPort 19021 -nogui` +- Read RTT output (terminal 2): + `JLinkRTTClient` +- Capture RTT to file (optional): + `JLinkRTTClient | tee rtt.log` +- For non-interactive capture: + `timeout 20s JLinkRTTClient > rtt.log` +- Use the board-specific `JLINK_DEVICE` from `hw/bsp/*/boards/*/board.mk` if you are not using `stm32h743eval`. + ## Unit Testing - Install Ceedling: `sudo gem install ceedling` diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index f19c4a327..8f6dd7200 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -127,7 +127,7 @@ static bool acm_set_control_line_state(cdch_interface_t *p_cdc, tuh_xfer_cb_ static uint16_t const ftdi_vid_pid_list[][2] = {CFG_TUH_CDC_FTDI_VID_PID_LIST}; static uint16_t ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); -static bool ftdi_proccess_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); +static bool ftdi_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); static void ftdi_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t *xfer); static bool ftdi_set_baudrate(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); static bool ftdi_set_data_format(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data); @@ -216,82 +216,84 @@ typedef struct { #define DRIVER_NAME_DECLARE(_str) #endif +// clang-format off // Note driver list must be in the same order as SERIAL_DRIVER enum static const cdch_serial_driver_t serial_drivers[] = { { - .vid_pid_list = NULL, - .vid_pid_count = 0, - .open = acm_open, - .process_set_config = acm_process_set_config, - .request_complete = acm_internal_control_complete, - .set_control_line_state = acm_set_control_line_state, - .set_baudrate = acm_set_line_coding, - .set_data_format = acm_set_line_coding, - .set_line_coding = acm_set_line_coding, - DRIVER_NAME_DECLARE("ACM") + .vid_pid_list = NULL, + .vid_pid_count = 0, + .open = acm_open, + .process_set_config = acm_process_set_config, + .request_complete = acm_internal_control_complete, + .set_control_line_state = acm_set_control_line_state, + .set_baudrate = acm_set_line_coding, + .set_data_format = acm_set_line_coding, + .set_line_coding = acm_set_line_coding, + DRIVER_NAME_DECLARE("ACM") }, #if CFG_TUH_CDC_FTDI { - .vid_pid_list = ftdi_vid_pid_list, - .vid_pid_count = TU_ARRAY_SIZE(ftdi_vid_pid_list), - .open = ftdi_open, - .process_set_config = ftdi_proccess_set_config, - .request_complete = ftdi_internal_control_complete, - .set_control_line_state = ftdi_set_modem_ctrl, - .set_baudrate = ftdi_set_baudrate, - .set_data_format = ftdi_set_data_format, - .set_line_coding = NULL, // 2 stage set line coding - DRIVER_NAME_DECLARE("FTDI") + .vid_pid_list = ftdi_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(ftdi_vid_pid_list), + .open = ftdi_open, + .process_set_config = ftdi_process_set_config, + .request_complete = ftdi_internal_control_complete, + .set_control_line_state = ftdi_set_modem_ctrl, + .set_baudrate = ftdi_set_baudrate, + .set_data_format = ftdi_set_data_format, + .set_line_coding = NULL, // 2 stage set line coding + DRIVER_NAME_DECLARE("FTDI") }, #endif #if CFG_TUH_CDC_CP210X { - .vid_pid_list = cp210x_vid_pid_list, - .vid_pid_count = TU_ARRAY_SIZE(cp210x_vid_pid_list), - .open = cp210x_open, - .process_set_config = cp210x_process_set_config, - .request_complete = cp210x_internal_control_complete, - .set_control_line_state = cp210x_set_modem_ctrl, - .set_baudrate = cp210x_set_baudrate, - .set_data_format = cp210x_set_data_format, - .set_line_coding = NULL, // 2 stage set line coding - DRIVER_NAME_DECLARE("CP210x") + .vid_pid_list = cp210x_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(cp210x_vid_pid_list), + .open = cp210x_open, + .process_set_config = cp210x_process_set_config, + .request_complete = cp210x_internal_control_complete, + .set_control_line_state = cp210x_set_modem_ctrl, + .set_baudrate = cp210x_set_baudrate, + .set_data_format = cp210x_set_data_format, + .set_line_coding = NULL, // 2 stage set line coding + DRIVER_NAME_DECLARE("CP210x") }, #endif #if CFG_TUH_CDC_CH34X { - .vid_pid_list = ch34x_vid_pid_list, - .vid_pid_count = TU_ARRAY_SIZE(ch34x_vid_pid_list), - .open = ch34x_open, - .process_set_config = ch34x_process_set_config, - .request_complete = ch34x_internal_control_complete, - - .set_control_line_state = ch34x_set_modem_ctrl, - .set_baudrate = ch34x_set_baudrate, - .set_data_format = ch34x_set_data_format, - .set_line_coding = NULL, // 2 stage set line coding - DRIVER_NAME_DECLARE("CH34x") + .vid_pid_list = ch34x_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(ch34x_vid_pid_list), + .open = ch34x_open, + .process_set_config = ch34x_process_set_config, + .request_complete = ch34x_internal_control_complete, + + .set_control_line_state = ch34x_set_modem_ctrl, + .set_baudrate = ch34x_set_baudrate, + .set_data_format = ch34x_set_data_format, + .set_line_coding = NULL, // 2 stage set line coding + DRIVER_NAME_DECLARE("CH34x") }, #endif #if CFG_TUH_CDC_PL2303 { - .vid_pid_list = pl2303_vid_pid_list, - .vid_pid_count = TU_ARRAY_SIZE(pl2303_vid_pid_list), - .open = pl2303_open, - .process_set_config = pl2303_process_set_config, - .request_complete = pl2303_internal_control_complete, - .set_control_line_state = pl2303_set_modem_ctrl, - .set_baudrate = pl2303_set_line_coding, - .set_data_format = pl2303_set_line_coding, - .set_line_coding = pl2303_set_line_coding, - DRIVER_NAME_DECLARE("PL2303") + .vid_pid_list = pl2303_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(pl2303_vid_pid_list), + .open = pl2303_open, + .process_set_config = pl2303_process_set_config, + .request_complete = pl2303_internal_control_complete, + .set_control_line_state = pl2303_set_modem_ctrl, + .set_baudrate = pl2303_set_line_coding, + .set_data_format = pl2303_set_line_coding, + .set_line_coding = pl2303_set_line_coding, + DRIVER_NAME_DECLARE("PL2303") } #endif }; +// clang-format on TU_VERIFY_STATIC(TU_ARRAY_SIZE(serial_drivers) == SERIAL_DRIVER_COUNT, "Serial driver count mismatch"); @@ -761,7 +763,8 @@ uint16_t cdch_open(uint8_t rhport, uint8_t daddr, const tusb_desc_interface_t *i for (size_t i = 0; i < driver->vid_pid_count; i++) { if (driver->vid_pid_list[i][0] == vid && driver->vid_pid_list[i][1] == pid) { const uint16_t drv_len = driver->open(daddr, itf_desc, max_len); - TU_LOG_DRV("[:%u:%u] CDCh %s open %s\r\n", daddr, itf_desc->bInterfaceNumber, driver->name, drv_len > 0 ? "OK" : "FAILED"); + TU_LOG_DRV("[:%u:%u] CDCh %s open %s\r\n", daddr, itf_desc->bInterfaceNumber, driver->name, + drv_len > 0 ? "OK" : "FAILED"); return drv_len; } } @@ -773,35 +776,16 @@ uint16_t cdch_open(uint8_t rhport, uint8_t daddr, const tusb_desc_interface_t *i return 0; } -bool cdch_set_config(uint8_t daddr, uint8_t itf_num) { - tusb_control_request_t request; - request.wIndex = tu_htole16((uint16_t) itf_num); - uint8_t const idx = tuh_cdc_itf_get_index(daddr, itf_num); - cdch_interface_t *p_cdc = get_itf(idx); - TU_ASSERT(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); - TU_LOG_CDC(p_cdc, "set config"); - - // fake transfer to kick-off process_set_config() - tuh_xfer_t xfer; - xfer.daddr = daddr; - xfer.result = XFER_RESULT_SUCCESS; - xfer.setup = &request; - xfer.user_data = 0; // initial state 0 - cdch_process_set_config(&xfer); - - return true; -} - static void set_config_complete(cdch_interface_t *p_cdc, bool success) { if (success) { const uint8_t idx = get_idx_by_ptr(p_cdc); - p_cdc->mounted = true; + p_cdc->mounted = true; tuh_cdc_mount_cb(idx); // Prepare for incoming data tu_edpt_stream_read_xfer(&p_cdc->stream.rx); } else { // clear the interface entry - p_cdc->daddr = 0; + p_cdc->daddr = 0; p_cdc->bInterfaceNumber = 0; } @@ -810,6 +794,33 @@ static void set_config_complete(cdch_interface_t *p_cdc, bool success) { usbh_driver_set_config_complete(p_cdc->daddr, p_cdc->bInterfaceNumber + itf_offset); } +bool cdch_set_config(uint8_t daddr, uint8_t itf_num) { + const uint8_t idx = tuh_cdc_itf_get_index(daddr, itf_num); + cdch_interface_t *p_cdc = get_itf(idx); + TU_ASSERT(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + TU_LOG_CDC(p_cdc, "set config"); + + // fake transfer to kick-off process_set_config() + tusb_control_request_t request; + request.wIndex = tu_htole16((uint16_t)itf_num); + + tuh_xfer_t xfer; + xfer.daddr = daddr; + xfer.ep_addr = 0; + xfer.result = XFER_RESULT_SUCCESS; + xfer.setup = &request; + xfer.complete_cb = NULL; + xfer.buffer = NULL; + xfer.user_data = 0; // initial state 0 + + const cdch_serial_driver_t *driver = &serial_drivers[p_cdc->serial_drid]; + if (!driver->process_set_config(p_cdc, &xfer)) { + set_config_complete(p_cdc, false); + } + + return true; +} + static void cdch_process_set_config(tuh_xfer_t *xfer) { cdch_interface_t *p_cdc = get_itf_by_xfer(xfer); TU_ASSERT(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT,); @@ -1215,22 +1226,14 @@ static uint16_t ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, return drv_len; } -static bool ftdi_proccess_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { +static bool ftdi_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) { TU_ASSERT(xfer->result == XFER_RESULT_SUCCESS); const uintptr_t state = xfer->user_data; switch (state) { // from here sequence overtaken from Linux Kernel function ftdi_port_probe() case CONFIG_FTDI_DETERMINE_TYPE: // determine type - if (p_cdc->bInterfaceNumber == 0) { - TU_ASSERT(ftdi_determine_type(p_cdc)); - } else { - // other interfaces have same type as interface 0 - uint8_t const idx_itf0 = tuh_cdc_itf_get_index(xfer->daddr, 0); - cdch_interface_t const *p_cdc_itf0 = get_itf(idx_itf0); - TU_ASSERT(p_cdc_itf0); - p_cdc->ftdi.chip_type = p_cdc_itf0->ftdi.chip_type; - } + TU_ASSERT(ftdi_determine_type(p_cdc)); TU_ATTR_FALLTHROUGH; case CONFIG_FTDI_WRITE_LATENCY: -- cgit v1.3.1 From 8efcc6fbc4903c1e4b41523510a296a92d4b6a05 Mon Sep 17 00:00:00 2001 From: HiFiPhile Date: Sat, 6 Jun 2026 15:27:56 +0200 Subject: host/cdc: use local control buffer --- src/class/cdc/cdc_host.c | 92 +++++++++++++++++++++++------------------------- 1 file changed, 44 insertions(+), 48 deletions(-) (limited to 'src/class/cdc/cdc_host.c') diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index 62c313b83..4441222c8 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -99,6 +99,7 @@ typedef struct { typedef struct { TUH_EPBUF_DEF(tx, CFG_TUH_CDC_TX_EPSIZE); TUH_EPBUF_DEF(rx, CFG_TUH_CDC_RX_EPSIZE); + TUH_EPBUF_DEF(ctrl, 8); } cdch_epbuf_t; static cdch_interface_t cdch_data[CFG_TUH_CDC]; @@ -1003,15 +1004,16 @@ static bool acm_set_line_coding(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_ .wLength = tu_htole16((uint16_t) sizeof(cdc_line_coding_t)) }; - // use usbh enum buf to hold line coding since user line_coding variable does not live long enough - uint8_t *enum_buf = usbh_get_enum_buf(); - memcpy(enum_buf, &p_cdc->requested_line.coding, sizeof(cdc_line_coding_t)); + // use local ctrl buf to hold line coding since user line_coding variable does not live long enough + uint8_t const idx = get_idx_by_ptr(p_cdc); + uint8_t *ctrl_buf = cdch_epbuf[idx].ctrl; + memcpy(ctrl_buf, &p_cdc->requested_line.coding, sizeof(cdc_line_coding_t)); tuh_xfer_t xfer = { .daddr = p_cdc->daddr, .ep_addr = 0, .setup = &request, - .buffer = enum_buf, + .buffer = ctrl_buf, .complete_cb = complete_cb, .user_data = user_data }; @@ -1491,7 +1493,7 @@ static inline uint32_t ftdi_get_divisor(cdch_interface_t *p_cdc) { //------------- Control Request -------------// static bool cp210x_set_request(cdch_interface_t * p_cdc, uint8_t command, uint16_t value, - uint8_t * buffer, uint16_t length, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + uint8_t const * buffer, uint16_t length, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { tusb_control_request_t const request = { .bmRequestType_bit = { .recipient = TUSB_REQ_RCPT_INTERFACE, @@ -1504,19 +1506,20 @@ static bool cp210x_set_request(cdch_interface_t * p_cdc, uint8_t command, uint16 .wLength = tu_htole16(length) }; - // use usbh enum buf since application variable does not live long enough - uint8_t * enum_buf = NULL; + // use local ctrl buf since application variable does not live long enough + uint8_t * ctrl_buf = NULL; if (buffer && length > 0) { - enum_buf = usbh_get_enum_buf(); - tu_memcpy_s(enum_buf, CFG_TUH_ENUMERATION_BUFSIZE, buffer, length); + uint8_t const idx = get_idx_by_ptr(p_cdc); + ctrl_buf = cdch_epbuf[idx].ctrl; + tu_memcpy_s(ctrl_buf, sizeof(cdch_epbuf[idx].ctrl), buffer, length); } tuh_xfer_t xfer = { .daddr = p_cdc->daddr, .ep_addr = 0, .setup = &request, - .buffer = enum_buf, + .buffer = ctrl_buf, .complete_cb = complete_cb, .user_data = user_data }; @@ -1563,7 +1566,7 @@ static void cp210x_internal_control_complete(cdch_interface_t *p_cdc, tuh_xfer_t static bool cp210x_set_baudrate(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { // Not every baud rate is supported. See datasheets and AN205 "CP210x Baud Rate Support" uint32_t baud_le = tu_htole32(p_cdc->requested_line.coding.bit_rate); - return cp210x_set_request(p_cdc, CP210X_SET_BAUDRATE, 0, (uint8_t *) &baud_le, 4, complete_cb, user_data); + return cp210x_set_request(p_cdc, CP210X_SET_BAUDRATE, 0, (uint8_t const *) &baud_le, 4, complete_cb, user_data); } static bool cp210x_set_data_format(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { @@ -1640,7 +1643,7 @@ static uint16_t ch34x_get_divisor_prescaler(cdch_interface_t *p_cdc); //------------- Control Request -------------// static bool ch34x_set_request(cdch_interface_t *p_cdc, uint8_t direction, uint8_t request, - uint16_t value, uint16_t index, uint8_t *buffer, uint16_t length, + uint16_t value, uint16_t index, uint8_t const *buffer, uint16_t length, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { tusb_control_request_t const request_setup = { .bmRequestType_bit = { @@ -1654,13 +1657,14 @@ static bool ch34x_set_request(cdch_interface_t *p_cdc, uint8_t direction, uint8_ .wLength = tu_htole16(length) }; - // use usbh enum buf since application variable does not live long enough - uint8_t *enum_buf = NULL; + // use local ctrl buf since application variable does not live long enough + uint8_t *ctrl_buf = NULL; - if (buffer && length > 0) { - enum_buf = usbh_get_enum_buf(); - if (direction == TUSB_DIR_OUT) { - tu_memcpy_s(enum_buf, CFG_TUH_ENUMERATION_BUFSIZE, buffer, length); + if (length > 0) { + uint8_t const idx = get_idx_by_ptr(p_cdc); + ctrl_buf = cdch_epbuf[idx].ctrl; + if (buffer && direction == TUSB_DIR_OUT) { + tu_memcpy_s(ctrl_buf, sizeof(cdch_epbuf[idx].ctrl), buffer, length); } } @@ -1668,7 +1672,7 @@ static bool ch34x_set_request(cdch_interface_t *p_cdc, uint8_t direction, uint8_ .daddr = p_cdc->daddr, .ep_addr = 0, .setup = &request_setup, - .buffer = enum_buf, + .buffer = ctrl_buf, .complete_cb = complete_cb, .user_data = user_data }; @@ -1682,8 +1686,8 @@ TU_ATTR_ALWAYS_INLINE static inline bool ch34x_control_out(cdch_interface_t *p_c } TU_ATTR_ALWAYS_INLINE static inline bool ch34x_control_in(cdch_interface_t *p_cdc, uint8_t request, uint16_t value, uint16_t index, - uint8_t *buffer, uint16_t buffersize, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - return ch34x_set_request(p_cdc, TUSB_DIR_IN, request, value, index, buffer, buffersize, + uint16_t buffersize, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + return ch34x_set_request(p_cdc, TUSB_DIR_IN, request, value, index, NULL, buffersize, complete_cb, user_data); } @@ -1692,12 +1696,6 @@ TU_ATTR_ALWAYS_INLINE static inline bool ch34x_write_reg(cdch_interface_t *p_cdc return ch34x_control_out(p_cdc, CH34X_REQ_WRITE_REG, reg, reg_value, complete_cb, user_data); } -//static bool ch34x_read_reg_request ( cdch_interface_t * p_cdc, uint16_t reg, -// uint8_t *buffer, uint16_t buffersize, tuh_xfer_cb_t complete_cb, uintptr_t user_data ) -//{ -// return ch34x_control_in ( p_cdc, CH34X_REQ_READ_REG, reg, 0, buffer, buffersize, complete_cb, user_data ); -//} - //------------- Driver API -------------// // internal control complete to update state such as line state, encoding @@ -1794,8 +1792,7 @@ static bool ch34x_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) switch (state) { case CONFIG_CH34X_READ_VERSION: { - uint8_t* enum_buf = usbh_get_enum_buf(); - TU_ASSERT(ch34x_control_in(p_cdc, CH34X_REQ_READ_VERSION, 0, 0, enum_buf, 2, + TU_ASSERT(ch34x_control_in(p_cdc, CH34X_REQ_READ_VERSION, 0, 0, 2, cdch_process_set_config, CONFIG_CH34X_SERIAL_INIT)); break; } @@ -1950,7 +1947,7 @@ static bool pl2303_encode_baud_rate(cdch_interface_t *p_cdc, uint8_t buf[PL2303_ //------------- Control Request -------------// static bool pl2303_set_request(cdch_interface_t *p_cdc, uint8_t request, uint8_t requesttype, - uint16_t value, uint16_t index, uint8_t *buffer, uint16_t length, + uint16_t value, uint16_t index, uint8_t const *buffer, uint16_t length, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { tusb_control_request_t const request_setup = { .bmRequestType = requesttype, @@ -1960,13 +1957,14 @@ static bool pl2303_set_request(cdch_interface_t *p_cdc, uint8_t request, uint8_t .wLength = tu_htole16(length) }; - // use usbh enum buf since application variable does not live long enough - uint8_t *enum_buf = NULL; + // use local ctrl buf since application variable does not live long enough + uint8_t *ctrl_buf = NULL; - if (buffer && length > 0) { - enum_buf = usbh_get_enum_buf(); - if (request_setup.bmRequestType_bit.direction == TUSB_DIR_OUT) { - tu_memcpy_s(enum_buf, CFG_TUH_ENUMERATION_BUFSIZE, buffer, length); + if (length > 0) { + uint8_t const idx = get_idx_by_ptr(p_cdc); + ctrl_buf = cdch_epbuf[idx].ctrl; + if (buffer && request_setup.bmRequestType_bit.direction == TUSB_DIR_OUT) { + tu_memcpy_s(ctrl_buf, sizeof(cdch_epbuf[idx].ctrl), buffer, length); } } @@ -1974,7 +1972,7 @@ static bool pl2303_set_request(cdch_interface_t *p_cdc, uint8_t request, uint8_t .daddr = p_cdc->daddr, .ep_addr = 0, .setup = &request_setup, - .buffer = enum_buf, + .buffer = ctrl_buf, .complete_cb = complete_cb, .user_data = user_data }; @@ -1982,10 +1980,10 @@ static bool pl2303_set_request(cdch_interface_t *p_cdc, uint8_t request, uint8_t return tuh_control_xfer(&xfer); } -static bool pl2303_vendor_read(cdch_interface_t *p_cdc, uint16_t value, uint8_t *buf, +static bool pl2303_vendor_read(cdch_interface_t *p_cdc, uint16_t value, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { uint8_t request = p_cdc->pl2303.type == PL2303_TYPE_HXN ? PL2303_VENDOR_READ_NREQUEST : PL2303_VENDOR_READ_REQUEST; - return pl2303_set_request(p_cdc, request, PL2303_VENDOR_READ_REQUEST_TYPE, value, 0, buf, 1, complete_cb, user_data); + return pl2303_set_request(p_cdc, request, PL2303_VENDOR_READ_REQUEST_TYPE, value, 0, NULL, 1, complete_cb, user_data); } static bool pl2303_vendor_write(cdch_interface_t *p_cdc, uint16_t value, uint16_t index, @@ -1995,9 +1993,8 @@ static bool pl2303_vendor_write(cdch_interface_t *p_cdc, uint16_t value, uint16_ } static inline bool pl2303_supports_hx_status(cdch_interface_t *p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - uint8_t buf = 0; return pl2303_set_request(p_cdc, PL2303_VENDOR_READ_REQUEST, PL2303_VENDOR_READ_REQUEST_TYPE, PL2303_READ_TYPE_HX_STATUS, 0, - &buf, 1, complete_cb, user_data); + NULL, 1, complete_cb, user_data); } //static bool pl2303_get_line_request(cdch_interface_t * p_cdc, uint8_t buf[PL2303_LINE_CODING_BUFSIZE]) { @@ -2131,7 +2128,6 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) // state CONFIG_PL2303_READ1 may have no success due to expected stall by pl2303_supports_hx_status() const uintptr_t state = xfer->user_data; TU_ASSERT(xfer->result == XFER_RESULT_SUCCESS || state == CONFIG_PL2303_READ1); - uint8_t* enum_buf = usbh_get_enum_buf(); pl2303_type_t type; switch (state) { @@ -2162,7 +2158,7 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) // purpose unknown, overtaken from Linux Kernel driver if (p_cdc->pl2303.type != PL2303_TYPE_HXN) { - TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, enum_buf, cdch_process_set_config, CONFIG_PL2303_WRITE1)); + TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, cdch_process_set_config, CONFIG_PL2303_WRITE1)); break; }// else: continue with next step TU_ATTR_FALLTHROUGH; @@ -2178,7 +2174,7 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) case CONFIG_PL2303_READ2: // purpose unknown, overtaken from Linux Kernel driver if (p_cdc->pl2303.type != PL2303_TYPE_HXN) { - TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, enum_buf, cdch_process_set_config, CONFIG_PL2303_READ3)); + TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, cdch_process_set_config, CONFIG_PL2303_READ3)); break; }// else: continue with next step TU_ATTR_FALLTHROUGH; @@ -2186,7 +2182,7 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) case CONFIG_PL2303_READ3: // purpose unknown, overtaken from Linux Kernel driver if (p_cdc->pl2303.type != PL2303_TYPE_HXN) { - TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8383, enum_buf, cdch_process_set_config, CONFIG_PL2303_READ4)); + TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8383, cdch_process_set_config, CONFIG_PL2303_READ4)); break; }// else: continue with next step TU_ATTR_FALLTHROUGH; @@ -2194,7 +2190,7 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) case CONFIG_PL2303_READ4: // purpose unknown, overtaken from Linux Kernel driver if (p_cdc->pl2303.type != PL2303_TYPE_HXN) { - TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, enum_buf, cdch_process_set_config, CONFIG_PL2303_WRITE2)); + TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, cdch_process_set_config, CONFIG_PL2303_WRITE2)); break; }// else: continue with next step TU_ATTR_FALLTHROUGH; @@ -2210,7 +2206,7 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) case CONFIG_PL2303_READ5: // purpose unknown, overtaken from Linux Kernel driver if (p_cdc->pl2303.type != PL2303_TYPE_HXN) { - TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, enum_buf, cdch_process_set_config, CONFIG_PL2303_READ6)); + TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8484, cdch_process_set_config, CONFIG_PL2303_READ6)); break; }// else: continue with next step TU_ATTR_FALLTHROUGH; @@ -2218,7 +2214,7 @@ static bool pl2303_process_set_config(cdch_interface_t *p_cdc, tuh_xfer_t *xfer) case CONFIG_PL2303_READ6: // purpose unknown, overtaken from Linux Kernel driver if (p_cdc->pl2303.type != PL2303_TYPE_HXN) { - TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8383, enum_buf, cdch_process_set_config, CONFIG_PL2303_WRITE3)); + TU_ASSERT(pl2303_vendor_read(p_cdc, 0x8383, cdch_process_set_config, CONFIG_PL2303_WRITE3)); break; }// else: continue with next step TU_ATTR_FALLTHROUGH; -- cgit v1.3.1