diff options
Diffstat (limited to 'src/portable/nxp')
| -rw-r--r-- | src/portable/nxp/khci/dcd_khci.c | 32 | ||||
| -rw-r--r-- | src/portable/nxp/khci/hcd_khci.c | 55 | ||||
| -rw-r--r-- | src/portable/nxp/lpc17_40/dcd_lpc17_40.c | 4 | ||||
| -rw-r--r-- | src/portable/nxp/lpc17_40/dcd_lpc17_40.h | 2 | ||||
| -rw-r--r-- | src/portable/nxp/lpc17_40/hcd_lpc17_40.c | 3 | ||||
| -rw-r--r-- | src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c | 301 | ||||
| -rw-r--r-- | src/portable/nxp/transdimension/common_transdimension.h | 136 | ||||
| -rw-r--r-- | src/portable/nxp/transdimension/dcd_transdimension.c | 672 | ||||
| -rw-r--r-- | src/portable/nxp/transdimension/hcd_transdimension.c | 119 |
9 files changed, 234 insertions, 1090 deletions
diff --git a/src/portable/nxp/khci/dcd_khci.c b/src/portable/nxp/khci/dcd_khci.c index 13eb105cd..dc71117b3 100644 --- a/src/portable/nxp/khci/dcd_khci.c +++ b/src/portable/nxp/khci/dcd_khci.c @@ -1,4 +1,4 @@ -/* +/* * The MIT License (MIT) * * Copyright (c) 2020 Koji Kitayama @@ -26,12 +26,14 @@ #include "tusb_option.h" -#if CFG_TUD_ENABLED && ( \ - ( CFG_TUSB_MCU == OPT_MCU_MKL25ZXX ) || ( CFG_TUSB_MCU == OPT_MCU_K32L2BXX ) \ - ) +#if CFG_TUD_ENABLED && defined(TUP_USBIP_CHIPIDEA_FS) -#include "fsl_device_registers.h" -#define KHCI USB0 +#ifdef TUP_USBIP_CHIPIDEA_FS_KINETIS + #include "fsl_device_registers.h" + #define KHCI USB0 +#else + #error "MCU is not supported" +#endif #include "device/dcd.h" @@ -112,7 +114,7 @@ typedef struct // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ // BDT(Buffer Descriptor Table) must be 256-byte aligned -CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(512) static dcd_data_t _dcd; +CFG_TUD_MEM_SECTION TU_ATTR_ALIGNED(512) static dcd_data_t _dcd; TU_VERIFY_STATIC( sizeof(_dcd.bdt) == 512, "size is not correct" ); @@ -267,9 +269,21 @@ void dcd_init(uint8_t rhport) { (void) rhport; + // save crystal-less setting (if available) + #if defined(FSL_FEATURE_USB_KHCI_IRC48M_MODULE_CLOCK_ENABLED) && FSL_FEATURE_USB_KHCI_IRC48M_MODULE_CLOCK_ENABLED == 1 + uint32_t clk_recover_irc_en = KHCI->CLK_RECOVER_IRC_EN; + uint32_t clk_recover_ctrl = KHCI->CLK_RECOVER_CTRL; + #endif + KHCI->USBTRC0 |= USB_USBTRC0_USBRESET_MASK; while (KHCI->USBTRC0 & USB_USBTRC0_USBRESET_MASK); + // restore crystal-less setting (if available) + #if defined(FSL_FEATURE_USB_KHCI_IRC48M_MODULE_CLOCK_ENABLED) && FSL_FEATURE_USB_KHCI_IRC48M_MODULE_CLOCK_ENABLED == 1 + KHCI->CLK_RECOVER_IRC_EN = clk_recover_irc_en; + KHCI->CLK_RECOVER_CTRL |= clk_recover_ctrl; + #endif + tu_memclr(&_dcd, sizeof(_dcd)); KHCI->USBTRC0 |= TU_BIT(6); /* software must set this bit to 1 */ KHCI->BDTPAGE1 = (uint8_t)((uintptr_t)_dcd.bdt >> 8); @@ -296,7 +310,7 @@ void dcd_int_disable(uint8_t rhport) void dcd_set_address(uint8_t rhport, uint8_t dev_addr) { - _dcd.addr = dev_addr & 0x7F; + _dcd.addr = dev_addr & 0x7F; /* Response with status first before changing device address */ dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_IN), NULL, 0); } @@ -528,7 +542,7 @@ void dcd_int_handler(uint8_t rhport) if (is & USB_ISTAT_SLEEP_MASK) { // TU_LOG2("Suspend: "); TU_LOG2_HEX(is); - // Note Host usually has extra delay after bus reset (without SOF), which could falsely + // Note Host usually has extra delay after bus reset (without SOF), which could falsely // detected as Sleep event. Though usbd has debouncing logic so we are good KHCI->ISTAT = USB_ISTAT_SLEEP_MASK; process_bus_sleep(rhport); diff --git a/src/portable/nxp/khci/hcd_khci.c b/src/portable/nxp/khci/hcd_khci.c index 0f5fa6275..57684b259 100644 --- a/src/portable/nxp/khci/hcd_khci.c +++ b/src/portable/nxp/khci/hcd_khci.c @@ -1,4 +1,4 @@ -/* +/* * The MIT License (MIT) * * Copyright (c) 2021 Koji Kitayama @@ -26,12 +26,14 @@ #include "tusb_option.h" -#if CFG_TUH_ENABLED && ( \ - ( CFG_TUSB_MCU == OPT_MCU_MKL25ZXX ) || ( CFG_TUSB_MCU == OPT_MCU_K32L2BXX ) \ - ) +#if CFG_TUH_ENABLED && defined(TUP_USBIP_CHIPIDEA_FS) -#include "fsl_device_registers.h" -#define KHCI USB0 +#ifdef TUP_USBIP_CHIPIDEA_FS_KINETIS + #include "fsl_device_registers.h" + #define KHCI USB0 +#else + #error "MCU is not supported" +#endif #include "host/hcd.h" @@ -135,8 +137,8 @@ typedef struct // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ // BDT(Buffer Descriptor Table) must be 256-byte aligned -CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(512) static hcd_data_t _hcd; -//CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(4) static uint8_t _rx_buf[1024]; +CFG_TUH_MEM_SECTION TU_ATTR_ALIGNED(512) static hcd_data_t _hcd; +//CFG_TUH_MEM_SECTION TU_ATTR_ALIGNED(4) static uint8_t _rx_buf[1024]; int find_pipe(uint8_t dev_addr, uint8_t ep_addr) { @@ -159,7 +161,7 @@ static int prepare_packets(int pipenum) buffer_descriptor_t *bd = _hcd.bdt[dir_tx]; TU_ASSERT(0 == bd[odd].own, -1); - // TU_LOG1(" %p dir %d odd %d data %d\n", &bd[odd], dir_tx, odd, pipe->data); + // TU_LOG1(" %p dir %d odd %d data %d\r\n", &bd[odd], dir_tx, odd, pipe->data); ep->pipenum = pipenum; @@ -249,7 +251,7 @@ static bool resume_transfer(int pipenum) flags |= USB_ENDPT_EPHSHK_MASK | USB_ENDPT_EPCTLDIS_MASK | USB_ENDPT_RETRYDIS_MASK; break; } - // TU_LOG1(" resume pipenum %d flags %x\n", pipenum, flags); + // TU_LOG1(" resume pipenum %d flags %x\r\n", pipenum, flags); KHCI->ENDPOINT[0].ENDPT = flags; KHCI->ADDR = (KHCI->ADDR & USB_ADDR_LSEN_MASK) | pipe->dev_addr; @@ -300,7 +302,7 @@ static void process_tokdne(uint8_t rhport) int pipenum = ep->pipenum; int next_pipenum; - // TU_LOG1("TOKDNE %x PID %x pipe %d\n", s, pid, pipenum); + // TU_LOG1("TOKDNE %x PID %x pipe %d\r\n", s, pid, pipenum); xfer_result_t result; switch (pid) { @@ -414,7 +416,7 @@ void hcd_int_disable(uint8_t rhport) uint32_t hcd_frame_number(uint8_t rhport) { (void)rhport; - /* The device must be reset at least once after connection + /* The device must be reset at least once after connection * in order to start the frame counter. */ if (_hcd.need_reset) hcd_port_reset(rhport); uint32_t frmnum = KHCI->FRMNUML; @@ -445,6 +447,10 @@ void hcd_port_reset(uint8_t rhport) _hcd.need_reset = false; } +void hcd_port_reset_end(uint8_t rhport) { + (void) rhport; +} + tusb_speed_t hcd_port_speed_get(uint8_t rhport) { (void)rhport; @@ -477,7 +483,7 @@ void hcd_device_close(uint8_t rhport, uint8_t dev_addr) bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8]) { (void)rhport; - // TU_LOG1("SETUP %u\n", dev_addr); + // TU_LOG1("SETUP %u\r\n", dev_addr); TU_ASSERT(0 == (_hcd.in_progress & TU_BIT(0))); int pipenum = find_pipe(dev_addr, 0); @@ -508,7 +514,7 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const { (void)rhport; uint8_t const ep_addr = ep_desc->bEndpointAddress; - // TU_LOG1("O %u %x\n", dev_addr, ep_addr); + // TU_LOG1("O %u %x\r\n", dev_addr, ep_addr); /* Find a free pipe */ pipe_state_t *p = &_hcd.pipe[0]; pipe_state_t *end = &_hcd.pipe[CFG_TUH_ENDPOINT_MAX * 2]; @@ -541,7 +547,7 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * buffer, uint16_t buflen) { (void)rhport; - // TU_LOG1("X %u %x %x %d\n", dev_addr, ep_addr, (uintptr_t)buffer, buflen); + // TU_LOG1("X %u %x %x %d\r\n", dev_addr, ep_addr, (uintptr_t)buffer, buflen); int pipenum = find_pipe(dev_addr, ep_addr); TU_ASSERT(0 <= pipenum); @@ -560,8 +566,16 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t * return true; } -bool hcd_edpt_clear_stall(uint8_t dev_addr, uint8_t ep_addr) -{ +bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; + (void) dev_addr; + (void) ep_addr; + // TODO not implemented yet + return false; +} + +bool hcd_edpt_clear_stall(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr) { + (void) rhport; if (!tu_edpt_number(ep_addr)) return true; int num = find_pipe(dev_addr, ep_addr); if (num < 0) return false; @@ -573,12 +587,13 @@ bool hcd_edpt_clear_stall(uint8_t dev_addr, uint8_t ep_addr) /*--------------------------------------------------------------------+ * ISR *--------------------------------------------------------------------+*/ -void hcd_int_handler(uint8_t rhport) +void hcd_int_handler(uint8_t rhport, bool in_isr) { + (void) in_isr; uint32_t is = KHCI->ISTAT; uint32_t msk = KHCI->INTEN; - // TU_LOG1("S %lx\n", is); + // TU_LOG1("S %lx\r\n", is); /* clear disabled interrupts */ KHCI->ISTAT = (is & ~msk & ~USB_ISTAT_TOKDNE_MASK) | USB_ISTAT_SOFTOK_MASK; @@ -587,7 +602,7 @@ void hcd_int_handler(uint8_t rhport) if (is & USB_ISTAT_ERROR_MASK) { unsigned err = KHCI->ERRSTAT; if (err) { - TU_LOG1(" ERR %x\n", err); + TU_LOG1(" ERR %x\r\n", err); KHCI->ERRSTAT = err; } else { KHCI->INTEN &= ~USB_ISTAT_ERROR_MASK; diff --git a/src/portable/nxp/lpc17_40/dcd_lpc17_40.c b/src/portable/nxp/lpc17_40/dcd_lpc17_40.c index 0894a5eeb..b880c2870 100644 --- a/src/portable/nxp/lpc17_40/dcd_lpc17_40.c +++ b/src/portable/nxp/lpc17_40/dcd_lpc17_40.c @@ -1,4 +1,4 @@ -/* +/* * The MIT License (MIT) * * Copyright (c) 2019 Ha Thach (tinyusb.org) @@ -92,7 +92,7 @@ typedef struct } dcd_data_t; -CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(128) static dcd_data_t _dcd; +CFG_TUD_MEM_SECTION TU_ATTR_ALIGNED(128) static dcd_data_t _dcd; //--------------------------------------------------------------------+ diff --git a/src/portable/nxp/lpc17_40/dcd_lpc17_40.h b/src/portable/nxp/lpc17_40/dcd_lpc17_40.h index 07daa32e4..654b80866 100644 --- a/src/portable/nxp/lpc17_40/dcd_lpc17_40.h +++ b/src/portable/nxp/lpc17_40/dcd_lpc17_40.h @@ -1,4 +1,4 @@ -/* +/* * The MIT License (MIT) * * Copyright (c) 2019 Ha Thach (tinyusb.org) diff --git a/src/portable/nxp/lpc17_40/hcd_lpc17_40.c b/src/portable/nxp/lpc17_40/hcd_lpc17_40.c index ad9ed59b4..372dcf51f 100644 --- a/src/portable/nxp/lpc17_40/hcd_lpc17_40.c +++ b/src/portable/nxp/lpc17_40/hcd_lpc17_40.c @@ -1,4 +1,4 @@ -/* +/* * The MIT License (MIT) * * Copyright (c) 2019, Ha Thach (tinyusb.org) @@ -44,4 +44,3 @@ void hcd_int_disable(uint8_t rhport) } #endif - diff --git a/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c b/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c index 9b490c48c..f4ed09d83 100644 --- a/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c +++ b/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c @@ -1,4 +1,4 @@ -/* +/* * The MIT License (MIT) * * Copyright (c) 2019 Ha Thach (tinyusb.org) @@ -34,18 +34,13 @@ * - LPC54114 * - LPC55s69 */ -#if CFG_TUD_ENABLED && ( CFG_TUSB_MCU == OPT_MCU_LPC11UXX || \ - CFG_TUSB_MCU == OPT_MCU_LPC13XX || \ - CFG_TUSB_MCU == OPT_MCU_LPC15XX || \ - CFG_TUSB_MCU == OPT_MCU_LPC51UXX || \ - CFG_TUSB_MCU == OPT_MCU_LPC54XXX || \ - CFG_TUSB_MCU == OPT_MCU_LPC55XX) +#if CFG_TUD_ENABLED && defined(TUP_USBIP_IP3511) //--------------------------------------------------------------------+ // INCLUDE //--------------------------------------------------------------------+ -#if CFG_TUSB_MCU == OPT_MCU_LPC11UXX || CFG_TUSB_MCU == OPT_MCU_LPC13XX || CFG_TUSB_MCU == OPT_MCU_LPC15XX +#if TU_CHECK_MCU(OPT_MCU_LPC11UXX, OPT_MCU_LPC13XX, OPT_MCU_LPC15XX) // LPCOpen #include "chip.h" #else @@ -80,7 +75,7 @@ typedef struct { enum { NBYTES_ISO_FS_MAX = 1023, // FS ISO NBYTES_ISO_HS_MAX = 1024, // HS ISO - NBYTES_CBI_FS_MAX = 64, // FS control/bulk/interrupt + NBYTES_CBI_FS_MAX = 64, // FS control/bulk/interrupt. TODO some FS can do burst with higher size e.g 1024. Need to test NBYTES_CBI_HS_MAX = 32767 // can be up to all 15-bit, but only tested with 4096 }; @@ -90,26 +85,36 @@ enum { }; enum { - CMDSTAT_DEVICE_ADDR_MASK = TU_BIT(7 )-1, - CMDSTAT_DEVICE_ENABLE_MASK = TU_BIT(7 ), - CMDSTAT_SETUP_RECEIVED_MASK = TU_BIT(8 ), - CMDSTAT_DEVICE_CONNECT_MASK = TU_BIT(16), // reflect the soft-connect only, does not reflect the actual attached state - CMDSTAT_DEVICE_SUSPEND_MASK = TU_BIT(17), - // 23-22 is link speed (only available for HighSpeed port) - CMDSTAT_CONNECT_CHANGE_MASK = TU_BIT(24), - CMDSTAT_SUSPEND_CHANGE_MASK = TU_BIT(25), - CMDSTAT_RESET_CHANGE_MASK = TU_BIT(26), - CMDSTAT_VBUS_DEBOUNCED_MASK = TU_BIT(28), + DEVCMDSTAT_DEVICE_ADDR_MASK = TU_BIT(7 )-1, + DEVCMDSTAT_DEVICE_ENABLE_MASK = TU_BIT(7 ), + DEVCMDSTAT_SETUP_RECEIVED_MASK = TU_BIT(8 ), + DEVCMDSTAT_DEVICE_CONNECT_MASK = TU_BIT(16), // reflect the soft-connect only, does not reflect the actual attached state + DEVCMDSTAT_DEVICE_SUSPEND_MASK = TU_BIT(17), + // 23-22 is link speed (only available for HighSpeed port) + DEVCMDSTAT_CONNECT_CHANGE_MASK = TU_BIT(24), + DEVCMDSTAT_SUSPEND_CHANGE_MASK = TU_BIT(25), + DEVCMDSTAT_RESET_CHANGE_MASK = TU_BIT(26), + DEVCMDSTAT_VBUS_DEBOUNCED_MASK = TU_BIT(28), }; enum { - CMDSTAT_SPEED_SHIFT = 22 + DEVCMDSTAT_SPEED_SHIFT = 22 }; //--------------------------------------------------------------------+ // Endpoint Command/Status List //--------------------------------------------------------------------+ +// EP Command/Status field definition +enum { + EPCS_TYPE = TU_BIT(26), + EPCS_RF_TV = TU_BIT(27), + EPCS_TOGGLE_RESET = TU_BIT(28), + EPCS_STALL = TU_BIT(29), + EPCS_DISABLED = TU_BIT(30), + EPCS_ACTIVE = TU_BIT(31), +}; + // Endpoint Command/Status typedef union TU_ATTR_PACKED { @@ -133,13 +138,13 @@ typedef union TU_ATTR_PACKED volatile struct { uint32_t TU_RESERVED : 26; - uint32_t is_iso : 1 ; - uint32_t toggle_mode : 1 ; + uint32_t type : 1 ; + uint32_t rf_tv : 1 ; // rate feedback or toggle value uint32_t toggle_reset : 1 ; uint32_t stall : 1 ; uint32_t disable : 1 ; uint32_t active : 1 ; - }; + } cmd_sts; }ep_cmd_sts_t; TU_VERIFY_STATIC( sizeof(ep_cmd_sts_t) == 4, "size is not correct" ); @@ -176,11 +181,12 @@ typedef struct // EP list must be 256-byte aligned // Some MCU controller may require this variable to be placed in specific SRAM region. // For example: LPC55s69 port1 Highspeed must be USB_RAM (0x40100000) -// Use CFG_TUSB_MEM_SECTION to place it accordingly. -CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(256) static dcd_data_t _dcd; +// Use CFG_TUD_MEM_SECTION to place it accordingly. +CFG_TUD_MEM_SECTION TU_ATTR_ALIGNED(256) static dcd_data_t _dcd; // Dummy buffer to fix ZLPs overwriting the buffer (probably an USB/DMA controller bug) -CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(64) static uint8_t dummy[8]; +// TODO find way to save memory +CFG_TUD_MEM_SECTION TU_ATTR_ALIGNED(64) static uint8_t dummy[8]; //--------------------------------------------------------------------+ // Multiple Controllers @@ -188,59 +194,73 @@ CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(64) static uint8_t dummy[8]; typedef struct { - dcd_registers_t* regs; // registers - const tusb_speed_t max_speed; // max link speed - const IRQn_Type irqnum; // IRQ number - const uint8_t ep_pairs; // Max bi-directional Endpoints + dcd_registers_t* regs; // registers + const bool is_highspeed; // max link speed + const IRQn_Type irqnum; // IRQ number + const uint8_t ep_pairs; // Max bi-directional Endpoints }dcd_controller_t; #ifdef INCLUDE_FSL_DEVICE_REGISTERS -static const dcd_controller_t _dcd_controller[] = -{ - { .regs = (dcd_registers_t*) USB0_BASE , .max_speed = TUSB_SPEED_FULL, .irqnum = USB0_IRQn, .ep_pairs = FSL_FEATURE_USB_EP_NUM }, +static const dcd_controller_t _dcd_controller[] = { + { .regs = (dcd_registers_t*) USB0_BASE , .is_highspeed = false, .irqnum = USB0_IRQn, .ep_pairs = FSL_FEATURE_USB_EP_NUM }, #if defined(FSL_FEATURE_SOC_USBHSD_COUNT) && FSL_FEATURE_SOC_USBHSD_COUNT - { .regs = (dcd_registers_t*) USBHSD_BASE, .max_speed = TUSB_SPEED_HIGH, .irqnum = USB1_IRQn, .ep_pairs = FSL_FEATURE_USBHSD_EP_NUM } + { .regs = (dcd_registers_t*) USBHSD_BASE, .is_highspeed = true, .irqnum = USB1_IRQn, .ep_pairs = FSL_FEATURE_USBHSD_EP_NUM } #endif }; #else -static const dcd_controller_t _dcd_controller[] = -{ - { .regs = (dcd_registers_t*) LPC_USB0_BASE, .max_speed = TUSB_SPEED_FULL, .irqnum = USB0_IRQn, .ep_pairs = 5 }, +static const dcd_controller_t _dcd_controller[] = { + { .regs = (dcd_registers_t*) LPC_USB0_BASE, .is_highspeed = false, .irqnum = USB0_IRQn, .ep_pairs = 5 }, }; #endif +#if defined(FSL_FEATURE_SOC_USBHSD_COUNT) && FSL_FEATURE_SOC_USBHSD_COUNT + #define IP3511_HAS_HIGHSPEED +#endif + //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ -static inline uint16_t get_buf_offset(void const * buffer) -{ +TU_ATTR_ALWAYS_INLINE static inline uint16_t get_buf_offset(void const * buffer) { uint32_t addr = (uint32_t) buffer; TU_ASSERT( (addr & 0x3f) == 0, 0 ); return ( (addr >> 6) & 0xFFFFUL ) ; } -static inline uint8_t ep_addr2id(uint8_t ep_addr) -{ +TU_ATTR_ALWAYS_INLINE static inline uint8_t ep_addr2id(uint8_t ep_addr) { return 2*(ep_addr & 0x0F) + ((ep_addr & TUSB_DIR_IN_MASK) ? 1 : 0); } +TU_ATTR_ALWAYS_INLINE static inline bool ep_is_iso(ep_cmd_sts_t* ep_cs, bool is_highspeed) { + return is_highspeed ? (ep_cs[0].cmd_sts.type && !ep_cs[0].cmd_sts.rf_tv) : ep_cs->cmd_sts.type; +} + +TU_ATTR_ALWAYS_INLINE static inline bool ep_is_bulk(ep_cmd_sts_t* ep_cs) { + return (ep_cs[0].cmd_sts.type == 0) && (ep_cs[0].cmd_sts.rf_tv == 0); +} + +TU_ATTR_ALWAYS_INLINE static inline ep_cmd_sts_t* get_ep_cs(uint8_t ep_id) { + return _dcd.ep[ep_id]; +} + +TU_ATTR_ALWAYS_INLINE static inline bool rhport_is_highspeed(uint8_t rhport) { + return _dcd_controller[rhport].is_highspeed; +} + //--------------------------------------------------------------------+ // CONTROLLER API //--------------------------------------------------------------------+ -static void prepare_setup_packet(uint8_t rhport) -{ - if (_dcd_controller[rhport].max_speed == TUSB_SPEED_FULL ) - { - _dcd.ep[0][1].buffer_fs.offset = get_buf_offset(_dcd.setup_packet); - }else - { - _dcd.ep[0][1].buffer_hs.offset = get_buf_offset(_dcd.setup_packet); +static void prepare_setup_packet(uint8_t rhport) { + uint16_t const buf_offset = get_buf_offset(_dcd.setup_packet); + if ( _dcd_controller[rhport].is_highspeed ) { + _dcd.ep[0][1].buffer_hs.offset = buf_offset; + } else { + _dcd.ep[0][1].buffer_fs.offset = buf_offset; } } @@ -268,8 +288,8 @@ void dcd_init(uint8_t rhport) dcd_reg->DATABUFSTART = tu_align((uint32_t) &_dcd, TU_BIT(22)); // 22-bit alignment dcd_reg->INTSTAT |= dcd_reg->INTSTAT; // clear all pending interrupt dcd_reg->INTEN = INT_DEVICE_STATUS_MASK; - dcd_reg->DEVCMDSTAT |= CMDSTAT_DEVICE_ENABLE_MASK | CMDSTAT_DEVICE_CONNECT_MASK | - CMDSTAT_RESET_CHANGE_MASK | CMDSTAT_CONNECT_CHANGE_MASK | CMDSTAT_SUSPEND_CHANGE_MASK; + dcd_reg->DEVCMDSTAT |= DEVCMDSTAT_DEVICE_ENABLE_MASK | DEVCMDSTAT_DEVICE_CONNECT_MASK | + DEVCMDSTAT_RESET_CHANGE_MASK | DEVCMDSTAT_CONNECT_CHANGE_MASK | DEVCMDSTAT_SUSPEND_CHANGE_MASK; NVIC_ClearPendingIRQ(_dcd_controller[rhport].irqnum); } @@ -291,7 +311,7 @@ void dcd_set_address(uint8_t rhport, uint8_t dev_addr) // Response with status first before changing device address dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_IN), NULL, 0); - dcd_reg->DEVCMDSTAT &= ~CMDSTAT_DEVICE_ADDR_MASK; + dcd_reg->DEVCMDSTAT &= ~DEVCMDSTAT_DEVICE_ADDR_MASK; dcd_reg->DEVCMDSTAT |= dev_addr; } @@ -303,13 +323,13 @@ void dcd_remote_wakeup(uint8_t rhport) void dcd_connect(uint8_t rhport) { dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->DEVCMDSTAT |= CMDSTAT_DEVICE_CONNECT_MASK; + dcd_reg->DEVCMDSTAT |= DEVCMDSTAT_DEVICE_CONNECT_MASK; } void dcd_disconnect(uint8_t rhport) { dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->DEVCMDSTAT &= ~CMDSTAT_DEVICE_CONNECT_MASK; + dcd_reg->DEVCMDSTAT &= ~DEVCMDSTAT_DEVICE_CONNECT_MASK; } void dcd_sof_enable(uint8_t rhport, bool en) @@ -329,7 +349,7 @@ void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) // TODO cannot able to STALL Control OUT endpoint !!!!! FIXME try some walk-around uint8_t const ep_id = ep_addr2id(ep_addr); - _dcd.ep[ep_id][0].stall = 1; + _dcd.ep[ep_id][0].cmd_sts.stall = 1; } void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) @@ -338,21 +358,41 @@ void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) uint8_t const ep_id = ep_addr2id(ep_addr); - _dcd.ep[ep_id][0].stall = 0; - _dcd.ep[ep_id][0].toggle_reset = 1; - _dcd.ep[ep_id][0].toggle_mode = 0; + _dcd.ep[ep_id][0].cmd_sts.stall = 0; + _dcd.ep[ep_id][0].cmd_sts.toggle_reset = 1; + _dcd.ep[ep_id][0].cmd_sts.rf_tv = 0; } bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * p_endpoint_desc) { //------------- Prepare Queue Head -------------// uint8_t ep_id = ep_addr2id(p_endpoint_desc->bEndpointAddress); + ep_cmd_sts_t* ep_cs = get_ep_cs(ep_id); // Check if endpoint is available - TU_ASSERT( _dcd.ep[ep_id][0].disable && _dcd.ep[ep_id][1].disable ); + TU_ASSERT( ep_cs[0].cmd_sts.disable && ep_cs[1].cmd_sts.disable ); edpt_reset(rhport, ep_id); - _dcd.ep[ep_id][0].is_iso = (p_endpoint_desc->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS); + + switch (p_endpoint_desc->bmAttributes.xfer) { + case TUSB_XFER_ISOCHRONOUS: + ep_cs[0].cmd_sts.type = 1; + break; + + case TUSB_XFER_INTERRUPT: + // What is interrupt endpoint in rate feedback mode ? + if ( rhport_is_highspeed(rhport) ) { + ep_cs[0].cmd_sts.type = 1; + ep_cs[0].cmd_sts.rf_tv = 1; + } + break; + + case TUSB_XFER_BULK: + // nothing to do both type and rf_tv are 0 + break; + + default: break; + } // Enable EP interrupt dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; @@ -365,56 +405,64 @@ void dcd_edpt_close_all (uint8_t rhport) { for (uint8_t ep_id = 0; ep_id < 2*_dcd_controller[rhport].ep_pairs; ++ep_id) { - _dcd.ep[ep_id][0].active = _dcd.ep[ep_id][0].active = 0; // TODO proper way is to EPSKIP then wait ep[][].active then write ep[][].disable (see table 778 in LPC55S69 Use Manual) - _dcd.ep[ep_id][0].disable = _dcd.ep[ep_id][1].disable = 1; + _dcd.ep[ep_id][0].cmd_sts.active = _dcd.ep[ep_id][0].cmd_sts.active = 0; // TODO proper way is to EPSKIP then wait ep[][].active then write ep[][].disable (see table 778 in LPC55S69 Use Manual) + _dcd.ep[ep_id][0].cmd_sts.disable = _dcd.ep[ep_id][1].cmd_sts.disable = 1; } } void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { (void) rhport; - + uint8_t ep_id = ep_addr2id(ep_addr); - _dcd.ep[ep_id][0].active = _dcd.ep[ep_id][0].active = 0; // TODO proper way is to EPSKIP then wait ep[][].active then write ep[][].disable (see table 778 in LPC55S69 Use Manual) - _dcd.ep[ep_id][0].disable = _dcd.ep[ep_id][1].disable = 1; + _dcd.ep[ep_id][0].cmd_sts.active = _dcd.ep[ep_id][0].cmd_sts.active = 0; // TODO proper way is to EPSKIP then wait ep[][].active then write ep[][].disable (see table 778 in LPC55S69 Use Manual) + _dcd.ep[ep_id][0].cmd_sts.disable = _dcd.ep[ep_id][1].cmd_sts.disable = 1; } -static void prepare_ep_xfer(uint8_t rhport, uint8_t ep_id, uint16_t buf_offset, uint16_t total_bytes) -{ +static void prepare_ep_xfer(uint8_t rhport, uint8_t ep_id, uint16_t buf_offset, uint16_t total_bytes) { uint16_t nbytes; + ep_cmd_sts_t* ep_cs = get_ep_cs(ep_id); - if (_dcd_controller[rhport].max_speed == TUSB_SPEED_FULL ) - { - nbytes = tu_min16(total_bytes, _dcd.ep[ep_id][0].is_iso ? NBYTES_ISO_FS_MAX : NBYTES_CBI_FS_MAX); - _dcd.ep[ep_id][0].buffer_fs.offset = buf_offset; - _dcd.ep[ep_id][0].buffer_fs.nbytes = nbytes; - }else - { - nbytes = tu_min16(total_bytes, NBYTES_CBI_HS_MAX); - _dcd.ep[ep_id][0].buffer_hs.offset = buf_offset; - _dcd.ep[ep_id][0].buffer_hs.nbytes = nbytes; + const bool is_iso = ep_is_iso(ep_cs, _dcd_controller[rhport].is_highspeed); + + if ( rhport_is_highspeed(rhport) ) { + nbytes = tu_min16(total_bytes, is_iso ? NBYTES_ISO_HS_MAX : NBYTES_CBI_HS_MAX); + #if TU_CHECK_MCU(OPT_MCU_LPC54) + // LPC54 Errata USB.1: In USB high-speed device mode, the NBytes field does not decrement after BULK OUT transfer. + // Suggested Work-around: Program the NByte to the max packet size (512) + // Actual Work-around: round up NByte to multiple of 4. + // Note: this can cause buffer overflowed and corrupt data if host send more data than total_bytes + if ( (ep_id > 1) && (ep_id & 0x01) == 0 && ep_is_bulk(ep_cs) ) { + if ( nbytes & 0x03 ) { + nbytes = tu_align4(nbytes) + 4; + } + } + #endif + + ep_cs[0].buffer_hs.offset = buf_offset; + ep_cs[0].buffer_hs.nbytes = nbytes; + }else { + nbytes = tu_min16(total_bytes, is_iso ? NBYTES_ISO_FS_MAX : NBYTES_CBI_FS_MAX); + ep_cs[0].buffer_fs.offset = buf_offset; + ep_cs[0].buffer_fs.nbytes = nbytes; } _dcd.dma[ep_id].nbytes = nbytes; - - _dcd.ep[ep_id][0].active = 1; + ep_cs[0].cmd_sts.active = 1; } -bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) -{ +bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { uint8_t const ep_id = ep_addr2id(ep_addr); + if (!buffer || total_bytes == 0) { + // Although having no data, ZLPs can cause buffer overwritten to zeroes. Probably due to USB/DMA controller side + // effect/bug. Assigned buffer offset to (valid) dummy to prevent overwriting to DATABUFSTART + buffer = (uint8_t *) (uint32_t) dummy; + } + tu_memclr(&_dcd.dma[ep_id], sizeof(xfer_dma_t)); _dcd.dma[ep_id].total_bytes = total_bytes; - if (!buffer) - { - // Although having no data, ZLPs can cause buffer overwritten to zeroes. - // Probably due to USB/DMA controller side effect/bug. - // Assigned buffer offset to (valid) dummy to prevent overwriting to DATABUFSTART - buffer = (uint8_t*)(uint32_t)dummy; - } - prepare_ep_xfer(rhport, ep_id, get_buf_offset(buffer), total_bytes); return true; @@ -426,12 +474,12 @@ bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t to static void bus_reset(uint8_t rhport) { tu_memclr(&_dcd, sizeof(dcd_data_t)); - edpt_reset_all(rhport); + edpt_reset_all(rhport); // disable all endpoints as specified by LPC55S69 UM Table 778 for(uint8_t ep_id = 0; ep_id < 2*MAX_EP_PAIRS; ep_id++) { - _dcd.ep[ep_id][0].disable = _dcd.ep[ep_id][1].disable = 1; + _dcd.ep[ep_id][0].cmd_sts.disable = _dcd.ep[ep_id][1].cmd_sts.disable = 1; } dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; @@ -441,50 +489,49 @@ static void bus_reset(uint8_t rhport) dcd_reg->EPSKIP = 0xFFFFFFFF; dcd_reg->INTSTAT = dcd_reg->INTSTAT; // clear all pending interrupt - dcd_reg->DEVCMDSTAT |= CMDSTAT_SETUP_RECEIVED_MASK; // clear setup received interrupt + dcd_reg->DEVCMDSTAT |= DEVCMDSTAT_SETUP_RECEIVED_MASK; // clear setup received interrupt dcd_reg->INTEN = INT_DEVICE_STATUS_MASK | TU_BIT(0) | TU_BIT(1); // enable device status & control endpoints } -static void process_xfer_isr(uint8_t rhport, uint32_t int_status) -{ +static void process_xfer_isr(uint8_t rhport, uint32_t int_status) { uint8_t const max_ep = 2*_dcd_controller[rhport].ep_pairs; - for(uint8_t ep_id = 0; ep_id < max_ep; ep_id++ ) - { - if ( tu_bit_test(int_status, ep_id) ) - { + for(uint8_t ep_id = 0; ep_id < max_ep; ep_id++ ) { + if ( tu_bit_test(int_status, ep_id) ) { ep_cmd_sts_t * ep_cs = &_dcd.ep[ep_id][0]; xfer_dma_t* xfer_dma = &_dcd.dma[ep_id]; - if ( ep_id == 0 || ep_id == 1) - { + if ( ep_id <= 1 ) { // For control endpoint, we need to manually clear Active bit - ep_cs->active = 0; + ep_cs->cmd_sts.active = 0; } uint16_t buf_offset; uint16_t buf_nbytes; - if (_dcd_controller[rhport].max_speed == TUSB_SPEED_FULL) - { - buf_offset = ep_cs->buffer_fs.offset; - buf_nbytes = ep_cs->buffer_fs.nbytes; - }else - { + if ( rhport_is_highspeed(rhport) ) { buf_offset = ep_cs->buffer_hs.offset; buf_nbytes = ep_cs->buffer_hs.nbytes; + + #if TU_CHECK_MCU(OPT_MCU_LPC54) + // LPC54 Errata USB.2: In USB high-speed device mode, the NBytes field is not correct after BULK IN transfer + // There is no work-around. For EP in transfer, the NByte value can be ignored after a packet is transmitted. + if ( (ep_id > 1) && (ep_id & 0x01) == 1 && ep_is_bulk(ep_cs) ) { + buf_nbytes = 0; + } + #endif + } else { + buf_offset = ep_cs->buffer_fs.offset; + buf_nbytes = ep_cs->buffer_fs.nbytes; } xfer_dma->xferred_bytes += xfer_dma->nbytes - buf_nbytes; - if ( (buf_nbytes == 0) && (xfer_dma->total_bytes > xfer_dma->xferred_bytes) ) - { + if ( (buf_nbytes == 0) && (xfer_dma->total_bytes > xfer_dma->xferred_bytes) ) { // There is more data to transfer // buff_offset has been already increased by hw to correct value for next transfer prepare_ep_xfer(rhport, ep_id, buf_offset, xfer_dma->total_bytes - xfer_dma->xferred_bytes); - } - else - { + } else { // for detecting ZLP xfer_dma->total_bytes = xfer_dma->xferred_bytes; @@ -511,19 +558,16 @@ void dcd_int_handler(uint8_t rhport) //------------- Device Status -------------// if ( int_status & INT_DEVICE_STATUS_MASK ) { - dcd_reg->DEVCMDSTAT |= CMDSTAT_RESET_CHANGE_MASK | CMDSTAT_CONNECT_CHANGE_MASK | CMDSTAT_SUSPEND_CHANGE_MASK; + dcd_reg->DEVCMDSTAT |= DEVCMDSTAT_RESET_CHANGE_MASK | DEVCMDSTAT_CONNECT_CHANGE_MASK | DEVCMDSTAT_SUSPEND_CHANGE_MASK; - if ( cmd_stat & CMDSTAT_RESET_CHANGE_MASK) // bus reset + if ( cmd_stat & DEVCMDSTAT_RESET_CHANGE_MASK) // bus reset { bus_reset(rhport); tusb_speed_t speed = TUSB_SPEED_FULL; - - if (_dcd_controller[rhport].max_speed == TUSB_SPEED_HIGH) - { + if ( _dcd_controller[rhport].is_highspeed ) { // 0 : reserved, 1 : full, 2 : high, 3: super - if ( 2 == ((cmd_stat >> CMDSTAT_SPEED_SHIFT) & 0x3UL) ) - { + if ( 2 == ((cmd_stat >> DEVCMDSTAT_SPEED_SHIFT) & 0x3UL) ) { speed= TUSB_SPEED_HIGH; } } @@ -531,35 +575,35 @@ void dcd_int_handler(uint8_t rhport) dcd_event_bus_reset(rhport, speed, true); } - if (cmd_stat & CMDSTAT_CONNECT_CHANGE_MASK) + if (cmd_stat & DEVCMDSTAT_CONNECT_CHANGE_MASK) { // device disconnect - if (cmd_stat & CMDSTAT_DEVICE_ADDR_MASK) + if (cmd_stat & DEVCMDSTAT_DEVICE_ADDR_MASK) { // debouncing as this can be set when device is powering dcd_event_bus_signal(rhport, DCD_EVENT_UNPLUGGED, true); } } - if (cmd_stat & CMDSTAT_SUSPEND_CHANGE_MASK) + if (cmd_stat & DEVCMDSTAT_SUSPEND_CHANGE_MASK) { // suspend signal, bus idle for more than 3ms // Note: Host may delay more than 3 ms before and/or after bus reset before doing enumeration. - if (cmd_stat & CMDSTAT_DEVICE_ADDR_MASK) + if (cmd_stat & DEVCMDSTAT_DEVICE_ADDR_MASK) { - dcd_event_bus_signal(rhport, (cmd_stat & CMDSTAT_DEVICE_SUSPEND_MASK) ? DCD_EVENT_SUSPEND : DCD_EVENT_RESUME, true); + dcd_event_bus_signal(rhport, (cmd_stat & DEVCMDSTAT_DEVICE_SUSPEND_MASK) ? DCD_EVENT_SUSPEND : DCD_EVENT_RESUME, true); } } } // Setup Receive - if ( tu_bit_test(int_status, 0) && (cmd_stat & CMDSTAT_SETUP_RECEIVED_MASK) ) + if ( tu_bit_test(int_status, 0) && (cmd_stat & DEVCMDSTAT_SETUP_RECEIVED_MASK) ) { // Follow UM flowchart to clear Active & Stall on both Control IN/OUT endpoints - _dcd.ep[0][0].active = _dcd.ep[1][0].active = 0; - _dcd.ep[0][0].stall = _dcd.ep[1][0].stall = 0; + _dcd.ep[0][0].cmd_sts.active = _dcd.ep[1][0].cmd_sts.active = 0; + _dcd.ep[0][0].cmd_sts.stall = _dcd.ep[1][0].cmd_sts.stall = 0; - dcd_reg->DEVCMDSTAT |= CMDSTAT_SETUP_RECEIVED_MASK; + dcd_reg->DEVCMDSTAT |= DEVCMDSTAT_SETUP_RECEIVED_MASK; dcd_event_setup_received(rhport, _dcd.setup_packet, true); @@ -575,4 +619,3 @@ void dcd_int_handler(uint8_t rhport) } #endif - diff --git a/src/portable/nxp/transdimension/common_transdimension.h b/src/portable/nxp/transdimension/common_transdimension.h deleted file mode 100644 index 69074de41..000000000 --- a/src/portable/nxp/transdimension/common_transdimension.h +++ /dev/null @@ -1,136 +0,0 @@ -/* - * The MIT License (MIT) - * - * Copyright (c) 2021, Ha Thach (tinyusb.org) - * - * Permission is hereby granted, free of charge, to any person obtaining a copy - * of this software and associated documentation files (the "Software"), to deal - * in the Software without restriction, including without limitation the rights - * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell - * copies of the Software, and to permit persons to whom the Software is - * furnished to do so, subject to the following conditions: - * - * The above copyright notice and this permission notice shall be included in - * all copies or substantial portions of the Software. - * - * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR - * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, - * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE - * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER - * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, - * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN - * THE SOFTWARE. - * - * This file is part of the TinyUSB stack. - */ - -#ifndef COMMON_TRANSDIMENSION_H_ -#define COMMON_TRANSDIMENSION_H_ - -#ifdef __cplusplus - extern "C" { -#endif - -// USBCMD -enum { - USBCMD_RUN_STOP = TU_BIT(0), - USBCMD_RESET = TU_BIT(1), - USBCMD_SETUP_TRIPWIRE = TU_BIT(13), - USBCMD_ADD_QTD_TRIPWIRE = TU_BIT(14) ///< This bit is used as a semaphore to ensure the to proper addition of a new dTD to an active (primed) endpoint’s linked list. This bit is set and cleared by software during the process of adding a new dTD -// Interrupt Threshold bit 23:16 -}; - -// PORTSC1 -#define PORTSC1_PORT_SPEED_POS 26 - -enum { - PORTSC1_CURRENT_CONNECT_STATUS = TU_BIT(0), - PORTSC1_FORCE_PORT_RESUME = TU_BIT(6), - PORTSC1_SUSPEND = TU_BIT(7), - PORTSC1_FORCE_FULL_SPEED = TU_BIT(24), - PORTSC1_PORT_SPEED = TU_BIT(26) | TU_BIT(27) -}; - -// OTGSC -enum { - OTGSC_VBUS_DISCHARGE = TU_BIT(0), - OTGSC_VBUS_CHARGE = TU_BIT(1), -// OTGSC_HWASSIST_AUTORESET = TU_BIT(2), - OTGSC_OTG_TERMINATION = TU_BIT(3), ///< Must set to 1 when OTG go to device mode - OTGSC_DATA_PULSING = TU_BIT(4), - OTGSC_ID_PULLUP = TU_BIT(5), -// OTGSC_HWASSIT_DATA_PULSE = TU_BIT(6), -// OTGSC_HWASSIT_BDIS_ACONN = TU_BIT(7), - OTGSC_ID = TU_BIT(8), ///< 0 = A device, 1 = B Device - OTGSC_A_VBUS_VALID = TU_BIT(9), - OTGSC_A_SESSION_VALID = TU_BIT(10), - OTGSC_B_SESSION_VALID = TU_BIT(11), - OTGSC_B_SESSION_END = TU_BIT(12), - OTGSC_1MS_TOGGLE = TU_BIT(13), - OTGSC_DATA_BUS_PULSING_STATUS = TU_BIT(14), -}; - -// USBMode -enum { - USBMODE_CM_DEVICE = 2, - USBMODE_CM_HOST = 3, - - USBMODE_SLOM = TU_BIT(3), - USBMODE_SDIS = TU_BIT(4), - - USBMODE_VBUS_POWER_SELECT = TU_BIT(5), // Need to be enabled for LPC18XX/43XX in host mode -}; - -// Device Registers -typedef struct -{ - //------------- ID + HW Parameter Registers-------------// - __I uint32_t TU_RESERVED[64]; ///< For iMX RT10xx, but not used by LPC18XX/LPC43XX - - //------------- Capability Registers-------------// - __I uint8_t CAPLENGTH; ///< Capability Registers Length - __I uint8_t TU_RESERVED[1]; - __I uint16_t HCIVERSION; ///< Host Controller Interface Version - - __I uint32_t HCSPARAMS; ///< Host Controller Structural Parameters - __I uint32_t HCCPARAMS; ///< Host Controller Capability Parameters - __I uint32_t TU_RESERVED[5]; - - __I uint16_t DCIVERSION; ///< Device Controller Interface Version - __I uint8_t TU_RESERVED[2]; - - __I uint32_t DCCPARAMS; ///< Device Controller Capability Parameters - __I uint32_t TU_RESERVED[6]; - - //------------- Operational Registers -------------// - __IO uint32_t USBCMD; ///< USB Command Register - __IO uint32_t USBSTS; ///< USB Status Register - __IO uint32_t USBINTR; ///< Interrupt Enable Register - __IO uint32_t FRINDEX; ///< USB Frame Index - __I uint32_t TU_RESERVED; - __IO uint32_t DEVICEADDR; ///< Device Address - __IO uint32_t ENDPTLISTADDR; ///< Endpoint List Address - __I uint32_t TU_RESERVED; - __IO uint32_t BURSTSIZE; ///< Programmable Burst Size - __IO uint32_t TXFILLTUNING; ///< TX FIFO Fill Tuning - uint32_t TU_RESERVED[4]; - __IO uint32_t ENDPTNAK; ///< Endpoint NAK - __IO uint32_t ENDPTNAKEN; ///< Endpoint NAK Enable - __I uint32_t TU_RESERVED; - __IO uint32_t PORTSC1; ///< Port Status & Control - __I uint32_t TU_RESERVED[7]; - __IO uint32_t OTGSC; ///< On-The-Go Status & control - __IO uint32_t USBMODE; ///< USB Device Mode - __IO uint32_t ENDPTSETUPSTAT; ///< Endpoint Setup Status - __IO uint32_t ENDPTPRIME; ///< Endpoint Prime - __IO uint32_t ENDPTFLUSH; ///< Endpoint Flush - __I uint32_t ENDPTSTAT; ///< Endpoint Status - __IO uint32_t ENDPTCOMPLETE; ///< Endpoint Complete - __IO uint32_t ENDPTCTRL[8]; ///< Endpoint Control 0 - 7 -} dcd_registers_t, hcd_registers_t; - -#ifdef __cplusplus - } -#endif - -#endif /* COMMON_TRANSDIMENSION_H_ */ diff --git a/src/portable/nxp/transdimension/dcd_transdimension.c b/src/portable/nxp/transdimension/dcd_transdimension.c deleted file mode 100644 index 1f27a6872..000000000 --- a/src/portable/nxp/transdimension/dcd_transdimension.c +++ /dev/null @@ -1,672 +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_TUD_ENABLED && \ - (CFG_TUSB_MCU == OPT_MCU_LPC18XX || CFG_TUSB_MCU == OPT_MCU_LPC43XX || CFG_TUSB_MCU == OPT_MCU_MIMXRT) - -#warning "transdimenion is renamed to chipidea (portable/chipidea/ci_hs) to match other opensource naming convention such as linux. This file will be removed in the future, please update your makefile accordingly" - -//--------------------------------------------------------------------+ -// INCLUDE -//--------------------------------------------------------------------+ -#if CFG_TUSB_MCU == OPT_MCU_MIMXRT - #include "fsl_device_registers.h" - #define INCLUDE_FSL_DEVICE_REGISTERS -#else - // LPCOpen for 18xx & 43xx - #include "chip.h" -#endif - -#include "common/tusb_common.h" -#include "device/dcd.h" -#include "common_transdimension.h" - -#if defined(__CORTEX_M) && __CORTEX_M == 7 && __DCACHE_PRESENT == 1 - #define CleanInvalidateDCache_by_Addr SCB_CleanInvalidateDCache_by_Addr -#else - #define CleanInvalidateDCache_by_Addr(_addr, _dsize) -#endif - -//--------------------------------------------------------------------+ -// MACRO CONSTANT TYPEDEF -//--------------------------------------------------------------------+ - -// ENDPTCTRL -enum { - ENDPTCTRL_STALL = TU_BIT(0), - ENDPTCTRL_TOGGLE_INHIBIT = TU_BIT(5), // used for test only - ENDPTCTRL_TOGGLE_RESET = TU_BIT(6), - ENDPTCTRL_ENABLE = TU_BIT(7) -}; - -enum { - ENDPTCTRL_TYPE_POS = 2, // Endpoint type is 2-bit field -}; - -// USBSTS, USBINTR -enum { - INTR_USB = TU_BIT(0), - INTR_ERROR = TU_BIT(1), - INTR_PORT_CHANGE = TU_BIT(2), - INTR_RESET = TU_BIT(6), - INTR_SOF = TU_BIT(7), - INTR_SUSPEND = TU_BIT(8), - INTR_NAK = TU_BIT(16) -}; - -// Queue Transfer Descriptor -typedef struct -{ - // Word 0: Next QTD Pointer - uint32_t next; ///< Next link pointer This field contains the physical memory address of the next dTD to be processed - - // Word 1: qTQ Token - uint32_t : 3 ; - volatile uint32_t xact_err : 1 ; - uint32_t : 1 ; - volatile uint32_t buffer_err : 1 ; - volatile uint32_t halted : 1 ; - volatile uint32_t active : 1 ; - uint32_t : 2 ; - uint32_t iso_mult_override : 2 ; ///< This field can be used for transmit ISOs to override the MULT field in the dQH. This field must be zero for all packet types that are not transmit-ISO. - uint32_t : 3 ; - uint32_t int_on_complete : 1 ; - volatile uint32_t total_bytes : 15 ; - uint32_t : 1 ; - - // Word 2-6: Buffer Page Pointer List, Each element in the list is a 4K page aligned, physical memory address. The lower 12 bits in each pointer are reserved (except for the first one) as each memory pointer must reference the start of a 4K page - uint32_t buffer[5]; ///< buffer1 has frame_n for TODO Isochronous - - //--------------------------------------------------------------------+ - // TD is 32 bytes aligned but occupies only 28 bytes - // Therefore there are 4 bytes padding that we can use. - //--------------------------------------------------------------------+ - uint16_t expected_bytes; - uint8_t reserved[2]; -} dcd_qtd_t; - -TU_VERIFY_STATIC( sizeof(dcd_qtd_t) == 32, "size is not correct"); - -// Queue Head -typedef struct -{ - // Word 0: Capabilities and Characteristics - uint32_t : 15 ; ///< Number of packets executed per transaction descriptor 00 - Execute N transactions as demonstrated by the USB variable length protocol where N is computed using Max_packet_length and the Total_bytes field in the dTD. 01 - Execute one transaction 10 - Execute two transactions 11 - Execute three transactions Remark: Non-isochronous endpoints must set MULT = 00. Remark: Isochronous endpoints must set MULT = 01, 10, or 11 as needed. - uint32_t int_on_setup : 1 ; ///< Interrupt on setup This bit is used on control type endpoints to indicate if USBINT is set in response to a setup being received. - uint32_t max_packet_size : 11 ; ///< Endpoint's wMaxPacketSize - uint32_t : 2 ; - uint32_t zero_length_termination : 1 ; ///< This bit is used for non-isochronous endpoints to indicate when a zero-length packet is received to terminate transfers in case the total transfer length is “multiple”. 0 - Enable zero-length packet to terminate transfers equal to a multiple of Max_packet_length (default). 1 - Disable zero-length packet on transfers that are equal in length to a multiple Max_packet_length. - uint32_t iso_mult : 2 ; ///< - - // Word 1: Current qTD Pointer - volatile uint32_t qtd_addr; - - // Word 2-9: Transfer Overlay - volatile dcd_qtd_t qtd_overlay; - - // Word 10-11: Setup request (control OUT only) - volatile tusb_control_request_t setup_request; - - //--------------------------------------------------------------------+ - // QHD is 64 bytes aligned but occupies only 48 bytes - // Therefore there are 16 bytes padding that we can use. - //--------------------------------------------------------------------+ - tu_fifo_t * ff; - uint8_t reserved[12]; -} dcd_qhd_t; - -TU_VERIFY_STATIC( sizeof(dcd_qhd_t) == 64, "size is not correct"); - -//--------------------------------------------------------------------+ -// Variables -//--------------------------------------------------------------------+ - -typedef struct -{ - dcd_registers_t* regs; // registers - const IRQn_Type irqnum; // IRQ number - const uint8_t ep_count; // Max bi-directional Endpoints -}dcd_controller_t; - -#if CFG_TUSB_MCU == OPT_MCU_MIMXRT - static const dcd_controller_t _dcd_controller[] = - { - // RT1010 and RT1020 only has 1 USB controller - #if FSL_FEATURE_SOC_USBHS_COUNT == 1 - { .regs = (dcd_registers_t*) USB_BASE , .irqnum = USB_OTG1_IRQn, .ep_count = 8 } - #else - { .regs = (dcd_registers_t*) USB1_BASE, .irqnum = USB_OTG1_IRQn, .ep_count = 8 }, - { .regs = (dcd_registers_t*) USB2_BASE, .irqnum = USB_OTG2_IRQn, .ep_count = 8 } - #endif - }; - -#else - static const dcd_controller_t _dcd_controller[] = - { - { .regs = (dcd_registers_t*) LPC_USB0_BASE, .irqnum = USB0_IRQn, .ep_count = 6 }, - { .regs = (dcd_registers_t*) LPC_USB1_BASE, .irqnum = USB1_IRQn, .ep_count = 4 } - }; -#endif - -#define QTD_NEXT_INVALID 0x01 - -typedef struct { - // Must be at 2K alignment - // Each endpoint with direction (IN/OUT) occupies a queue head - // for portability, TinyUSB only queue 1 TD for each Qhd - dcd_qhd_t qhd[TUP_DCD_ENDPOINT_MAX][2] TU_ATTR_ALIGNED(64); - dcd_qtd_t qtd[TUP_DCD_ENDPOINT_MAX][2] TU_ATTR_ALIGNED(32); -}dcd_data_t; - -CFG_TUSB_MEM_SECTION TU_ATTR_ALIGNED(2048) -static dcd_data_t _dcd_data; - -//--------------------------------------------------------------------+ -// Controller API -//--------------------------------------------------------------------+ - -/// follows LPC43xx User Manual 23.10.3 -static void bus_reset(uint8_t rhport) -{ - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - - // The reset value for all endpoint types is the control endpoint. If one endpoint - // direction is enabled and the paired endpoint of opposite direction is disabled, then the - // endpoint type of the unused direction must be changed from the control type to any other - // type (e.g. bulk). Leaving an un-configured endpoint control will cause undefined behavior - // for the data PID tracking on the active endpoint. - for( uint8_t i=1; i < _dcd_controller[rhport].ep_count; i++) - { - dcd_reg->ENDPTCTRL[i] = (TUSB_XFER_BULK << ENDPTCTRL_TYPE_POS) | (TUSB_XFER_BULK << (16+ENDPTCTRL_TYPE_POS)); - } - - //------------- Clear All Registers -------------// - dcd_reg->ENDPTNAK = dcd_reg->ENDPTNAK; - dcd_reg->ENDPTNAKEN = 0; - dcd_reg->USBSTS = dcd_reg->USBSTS; - dcd_reg->ENDPTSETUPSTAT = dcd_reg->ENDPTSETUPSTAT; - dcd_reg->ENDPTCOMPLETE = dcd_reg->ENDPTCOMPLETE; - - while (dcd_reg->ENDPTPRIME) {} - dcd_reg->ENDPTFLUSH = 0xFFFFFFFF; - while (dcd_reg->ENDPTFLUSH) {} - - // read reset bit in portsc - - //------------- Queue Head & Queue TD -------------// - tu_memclr(&_dcd_data, sizeof(dcd_data_t)); - - //------------- Set up Control Endpoints (0 OUT, 1 IN) -------------// - _dcd_data.qhd[0][0].zero_length_termination = _dcd_data.qhd[0][1].zero_length_termination = 1; - _dcd_data.qhd[0][0].max_packet_size = _dcd_data.qhd[0][1].max_packet_size = CFG_TUD_ENDPOINT0_SIZE; - _dcd_data.qhd[0][0].qtd_overlay.next = _dcd_data.qhd[0][1].qtd_overlay.next = QTD_NEXT_INVALID; - - _dcd_data.qhd[0][0].int_on_setup = 1; // OUT only -} - -void dcd_init(uint8_t rhport) -{ - tu_memclr(&_dcd_data, sizeof(dcd_data_t)); - - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - - // Reset controller - dcd_reg->USBCMD |= USBCMD_RESET; - while( dcd_reg->USBCMD & USBCMD_RESET ) {} - - // Set mode to device, must be set immediately after reset - dcd_reg->USBMODE = USBMODE_CM_DEVICE; - dcd_reg->OTGSC = OTGSC_VBUS_DISCHARGE | OTGSC_OTG_TERMINATION; - -#if !TUD_OPT_HIGH_SPEED - dcd_reg->PORTSC1 = PORTSC1_FORCE_FULL_SPEED; -#endif - - CleanInvalidateDCache_by_Addr((uint32_t*) &_dcd_data, sizeof(dcd_data_t)); - - dcd_reg->ENDPTLISTADDR = (uint32_t) _dcd_data.qhd; // Endpoint List Address has to be 2K alignment - dcd_reg->USBSTS = dcd_reg->USBSTS; - dcd_reg->USBINTR = INTR_USB | INTR_ERROR | INTR_PORT_CHANGE | INTR_SUSPEND; - - dcd_reg->USBCMD &= ~0x00FF0000; // Interrupt Threshold Interval = 0 - dcd_reg->USBCMD |= USBCMD_RUN_STOP; // Connect -} - -void dcd_int_enable(uint8_t rhport) -{ - NVIC_EnableIRQ(_dcd_controller[rhport].irqnum); -} - -void dcd_int_disable(uint8_t rhport) -{ - NVIC_DisableIRQ(_dcd_controller[rhport].irqnum); -} - -void dcd_set_address(uint8_t rhport, uint8_t dev_addr) -{ - // Response with status first before changing device address - dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_IN), NULL, 0); - - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->DEVICEADDR = (dev_addr << 25) | TU_BIT(24); -} - -void dcd_remote_wakeup(uint8_t rhport) -{ - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->PORTSC1 |= PORTSC1_FORCE_PORT_RESUME; -} - -void dcd_connect(uint8_t rhport) -{ - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->USBCMD |= USBCMD_RUN_STOP; -} - -void dcd_disconnect(uint8_t rhport) -{ - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->USBCMD &= ~USBCMD_RUN_STOP; -} - -void dcd_sof_enable(uint8_t rhport, bool en) -{ - (void) rhport; - (void) en; - - // TODO implement later -} - -//--------------------------------------------------------------------+ -// HELPER -//--------------------------------------------------------------------+ - -static void qtd_init(dcd_qtd_t* p_qtd, void * data_ptr, uint16_t total_bytes) -{ - // Force the CPU to flush the buffer. We increase the size by 31 because the call aligns the - // address to 32-byte boundaries. Buffer must be word aligned - CleanInvalidateDCache_by_Addr((uint32_t*) tu_align((uint32_t) data_ptr, 4), total_bytes + 31); - - tu_memclr(p_qtd, sizeof(dcd_qtd_t)); - - p_qtd->next = QTD_NEXT_INVALID; - p_qtd->active = 1; - p_qtd->total_bytes = p_qtd->expected_bytes = total_bytes; - p_qtd->int_on_complete = true; - - if (data_ptr != NULL) - { - p_qtd->buffer[0] = (uint32_t) data_ptr; - - uint32_t const bufend = p_qtd->buffer[0] + total_bytes; - for(uint8_t i=1; i<5; i++) - { - uint32_t const next_page = tu_align4k( p_qtd->buffer[i-1] ) + 4096; - if ( bufend <= next_page ) break; - - p_qtd->buffer[i] = next_page; - - // TODO page[1] FRAME_N for ISO transfer - } - } -} - -//--------------------------------------------------------------------+ -// DCD Endpoint Port -//--------------------------------------------------------------------+ -void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) -{ - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->ENDPTCTRL[epnum] |= ENDPTCTRL_STALL << (dir ? 16 : 0); - - // flush to abort any primed buffer - dcd_reg->ENDPTFLUSH = TU_BIT(epnum + (dir ? 16 : 0)); -} - -void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) -{ - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - // data toggle also need to be reset - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_reg->ENDPTCTRL[epnum] |= ENDPTCTRL_TOGGLE_RESET << ( dir ? 16 : 0 ); - dcd_reg->ENDPTCTRL[epnum] &= ~(ENDPTCTRL_STALL << ( dir ? 16 : 0)); -} - -bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * p_endpoint_desc) -{ - uint8_t const epnum = tu_edpt_number(p_endpoint_desc->bEndpointAddress); - uint8_t const dir = tu_edpt_dir(p_endpoint_desc->bEndpointAddress); - - // Must not exceed max endpoint number - TU_ASSERT( epnum < _dcd_controller[rhport].ep_count ); - - //------------- Prepare Queue Head -------------// - dcd_qhd_t * p_qhd = &_dcd_data.qhd[epnum][dir]; - tu_memclr(p_qhd, sizeof(dcd_qhd_t)); - - p_qhd->zero_length_termination = 1; - p_qhd->max_packet_size = tu_edpt_packet_size(p_endpoint_desc); - if (p_endpoint_desc->bmAttributes.xfer == TUSB_XFER_ISOCHRONOUS) - { - p_qhd->iso_mult = 1; - } - - p_qhd->qtd_overlay.next = QTD_NEXT_INVALID; - - CleanInvalidateDCache_by_Addr((uint32_t*) &_dcd_data, sizeof(dcd_data_t)); - - // Enable EP Control - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - - uint32_t const epctrl = (p_endpoint_desc->bmAttributes.xfer << ENDPTCTRL_TYPE_POS) | ENDPTCTRL_ENABLE | ENDPTCTRL_TOGGLE_RESET; - - if ( dir == TUSB_DIR_OUT ) - { - dcd_reg->ENDPTCTRL[epnum] = (dcd_reg->ENDPTCTRL[epnum] & 0xFFFF0000u) | epctrl; - }else - { - dcd_reg->ENDPTCTRL[epnum] = (dcd_reg->ENDPTCTRL[epnum] & 0x0000FFFFu) | (epctrl << 16); - } - - return true; -} - -void dcd_edpt_close_all (uint8_t rhport) -{ - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - - // Disable all non-control endpoints - for( uint8_t epnum=1; epnum < _dcd_controller[rhport].ep_count; epnum++) - { - _dcd_data.qhd[epnum][TUSB_DIR_OUT].qtd_overlay.halted = 1; - _dcd_data.qhd[epnum][TUSB_DIR_IN ].qtd_overlay.halted = 1; - - dcd_reg->ENDPTFLUSH = TU_BIT(epnum) | TU_BIT(epnum+16); - dcd_reg->ENDPTCTRL[epnum] = (TUSB_XFER_BULK << ENDPTCTRL_TYPE_POS) | (TUSB_XFER_BULK << (16+ENDPTCTRL_TYPE_POS)); - } -} - -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) -{ - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - - _dcd_data.qhd[epnum][dir].qtd_overlay.halted = 1; - - // Flush EP - uint32_t const flush_mask = TU_BIT(epnum + (dir ? 16 : 0)); - dcd_reg->ENDPTFLUSH = flush_mask; - while(dcd_reg->ENDPTFLUSH & flush_mask); - - // Clear EP enable - dcd_reg->ENDPTCTRL[epnum] &=~(ENDPTCTRL_ENABLE << (dir ? 16 : 0)); -} - -static void qhd_start_xfer(uint8_t rhport, uint8_t epnum, uint8_t dir) -{ - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - dcd_qhd_t* p_qhd = &_dcd_data.qhd[epnum][dir]; - dcd_qtd_t* p_qtd = &_dcd_data.qtd[epnum][dir]; - - p_qhd->qtd_overlay.halted = false; // clear any previous error - p_qhd->qtd_overlay.next = (uint32_t) p_qtd; // link qtd to qhd - - // flush cache - CleanInvalidateDCache_by_Addr((uint32_t*) &_dcd_data, sizeof(dcd_data_t)); - - if ( epnum == 0 ) - { - // follows UM 24.10.8.1.1 Setup packet handling using setup lockout mechanism - // wait until ENDPTSETUPSTAT before priming data/status in response TODO add time out - while(dcd_reg->ENDPTSETUPSTAT & TU_BIT(0)) {} - } - - // start transfer - dcd_reg->ENDPTPRIME = TU_BIT(epnum + (dir ? 16 : 0)); -} - -bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t * buffer, uint16_t total_bytes) -{ - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - dcd_qhd_t* p_qhd = &_dcd_data.qhd[epnum][dir]; - dcd_qtd_t* p_qtd = &_dcd_data.qtd[epnum][dir]; - - // Prepare qtd - qtd_init(p_qtd, buffer, total_bytes); - - // Start qhd transfer - p_qhd->ff = NULL; - qhd_start_xfer(rhport, epnum, dir); - - return true; -} - -// fifo has to be aligned to 4k boundary -bool dcd_edpt_xfer_fifo (uint8_t rhport, uint8_t ep_addr, tu_fifo_t * ff, uint16_t total_bytes) -{ - uint8_t const epnum = tu_edpt_number(ep_addr); - uint8_t const dir = tu_edpt_dir(ep_addr); - - dcd_qhd_t * p_qhd = &_dcd_data.qhd[epnum][dir]; - dcd_qtd_t * p_qtd = &_dcd_data.qtd[epnum][dir]; - - tu_fifo_buffer_info_t fifo_info; - - if (dir) - { - tu_fifo_get_read_info(ff, &fifo_info); - } else - { - tu_fifo_get_write_info(ff, &fifo_info); - } - - if ( fifo_info.len_lin >= total_bytes ) - { - // Linear length is enough for this transfer - qtd_init(p_qtd, fifo_info.ptr_lin, total_bytes); - } - else - { - // linear part is not enough - - // prepare TD up to linear length - qtd_init(p_qtd, fifo_info.ptr_lin, fifo_info.len_lin); - - if ( !tu_offset4k((uint32_t) fifo_info.ptr_wrap) && !tu_offset4k(tu_fifo_depth(ff)) ) - { - // If buffer is aligned to 4K & buffer size is multiple of 4K - // We can make use of buffer page array to also combine the linear + wrapped length - p_qtd->total_bytes = p_qtd->expected_bytes = total_bytes; - - for(uint8_t i = 1, page = 0; i < 5; i++) - { - // pick up buffer array where linear ends - if (p_qtd->buffer[i] == 0) - { - p_qtd->buffer[i] = (uint32_t) fifo_info.ptr_wrap + 4096 * page; - page++; - } - } - - CleanInvalidateDCache_by_Addr((uint32_t*) tu_align((uint32_t) fifo_info.ptr_wrap, 4), total_bytes - fifo_info.len_wrap + 31); - } - else - { - // TODO we may need to carry the wrapped length after the linear part complete - // for now only transfer up to linear part - } - } - - // Start qhd transfer - p_qhd->ff = ff; - qhd_start_xfer(rhport, epnum, dir); - - return true; -} - -//--------------------------------------------------------------------+ -// ISR -//--------------------------------------------------------------------+ - -static void process_edpt_complete_isr(uint8_t rhport, uint8_t epnum, uint8_t dir) -{ - dcd_qhd_t * p_qhd = &_dcd_data.qhd[epnum][dir]; - dcd_qtd_t * p_qtd = &_dcd_data.qtd[epnum][dir]; - - uint8_t result = p_qtd->halted ? XFER_RESULT_STALLED : - ( p_qtd->xact_err || p_qtd->buffer_err ) ? XFER_RESULT_FAILED : XFER_RESULT_SUCCESS; - - if ( result != XFER_RESULT_SUCCESS ) - { - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - // flush to abort error buffer - dcd_reg->ENDPTFLUSH = TU_BIT(epnum + (dir ? 16 : 0)); - } - - uint16_t const xferred_bytes = p_qtd->expected_bytes - p_qtd->total_bytes; - - if (p_qhd->ff) - { - if (dir == TUSB_DIR_IN) - { - tu_fifo_advance_read_pointer(p_qhd->ff, xferred_bytes); - } else - { - tu_fifo_advance_write_pointer(p_qhd->ff, xferred_bytes); - } - } - - // only number of bytes in the IOC qtd - dcd_event_xfer_complete(rhport, tu_edpt_addr(epnum, dir), xferred_bytes, result, true); -} - -void dcd_int_handler(uint8_t rhport) -{ - dcd_registers_t* dcd_reg = _dcd_controller[rhport].regs; - - uint32_t const int_enable = dcd_reg->USBINTR; - uint32_t const int_status = dcd_reg->USBSTS & int_enable; - dcd_reg->USBSTS = int_status; // Acknowledge handled interrupt - - // disabled interrupt sources - if (int_status == 0) return; - - // Set if the port controller enters the full or high-speed operational state. - // either from Bus Reset or Suspended state - if (int_status & INTR_PORT_CHANGE) - { - // TU_LOG2("PortChange %08lx\r\n", dcd_reg->PORTSC1); - - // Reset interrupt is not enabled, we manually check if Port Change is due - // to connection / disconnection - if ( dcd_reg->USBSTS & INTR_RESET ) - { - dcd_reg->USBSTS = INTR_RESET; - - if (dcd_reg->PORTSC1 & PORTSC1_CURRENT_CONNECT_STATUS) - { - uint32_t const speed = (dcd_reg->PORTSC1 & PORTSC1_PORT_SPEED) >> PORTSC1_PORT_SPEED_POS; - bus_reset(rhport); - dcd_event_bus_reset(rhport, (tusb_speed_t) speed, true); - }else - { - dcd_event_bus_signal(rhport, DCD_EVENT_UNPLUGGED, true); - } - } - else - { - // Triggered by resuming from suspended state - if ( !(dcd_reg->PORTSC1 & PORTSC1_SUSPEND) ) - { - dcd_event_bus_signal(rhport, DCD_EVENT_RESUME, true); - } - } - } - - if (int_status & INTR_SUSPEND) - { - // TU_LOG2("Suspend %08lx\r\n", dcd_reg->PORTSC1); - - if (dcd_reg->PORTSC1 & PORTSC1_SUSPEND) - { - // Note: Host may delay more than 3 ms before and/or after bus reset before doing enumeration. - // Skip suspend event if we are not addressed - if ((dcd_reg->DEVICEADDR >> 25) & 0x0f) - { - dcd_event_bus_signal(rhport, DCD_EVENT_SUSPEND, true); - } - } - } - - if (int_status & INTR_USB) - { - // Make sure we read the latest version of _dcd_data. - CleanInvalidateDCache_by_Addr((uint32_t*) &_dcd_data, sizeof(dcd_data_t)); - - uint32_t const edpt_complete = dcd_reg->ENDPTCOMPLETE; - dcd_reg->ENDPTCOMPLETE = edpt_complete; // acknowledge - - if (dcd_reg->ENDPTSETUPSTAT) - { - //------------- Set up Received -------------// - // 23.10.10.2 Operational model for setup transfers - dcd_reg->ENDPTSETUPSTAT = dcd_reg->ENDPTSETUPSTAT; - - dcd_event_setup_received(rhport, (uint8_t*)(uintptr_t) &_dcd_data.qhd[0][0].setup_request, true); - } - - // 23.10.12.3 Failed QTD also get ENDPTCOMPLETE set - // nothing to do, we will submit xfer as error to usbd - // if (int_status & INTR_ERROR) { } - - if ( edpt_complete ) - { - for(uint8_t epnum = 0; epnum < TUP_DCD_ENDPOINT_MAX; epnum++) - { - if ( tu_bit_test(edpt_complete, epnum) ) process_edpt_complete_isr(rhport, epnum, TUSB_DIR_OUT); - if ( tu_bit_test(edpt_complete, epnum+16) ) process_edpt_complete_isr(rhport, epnum, TUSB_DIR_IN); - } - } - } - - if (int_status & INTR_SOF) - { - dcd_event_bus_signal(rhport, DCD_EVENT_SOF, true); - } -} - -#endif diff --git a/src/portable/nxp/transdimension/hcd_transdimension.c b/src/portable/nxp/transdimension/hcd_transdimension.c deleted file mode 100644 index 392764ff6..000000000 --- a/src/portable/nxp/transdimension/hcd_transdimension.c +++ /dev/null @@ -1,119 +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" - -// NXP Trans-Dimension USB IP implement EHCI for host functionality - -#if CFG_TUH_ENABLED && \ - (CFG_TUSB_MCU == OPT_MCU_LPC18XX || CFG_TUSB_MCU == OPT_MCU_LPC43XX || CFG_TUSB_MCU == OPT_MCU_MIMXRT) - -#warning "transdimenion is renamed to chipidea (portable/chipidea/ci_hs) to match other opensource naming convention such as linux. This file will be removed in the future, please update your makefile accordingly" - -//--------------------------------------------------------------------+ -// INCLUDE -//--------------------------------------------------------------------+ -#if CFG_TUSB_MCU == OPT_MCU_MIMXRT - #include "fsl_device_registers.h" -#else - // LPCOpen for 18xx & 43xx - #include "chip.h" -#endif - -#include "common/tusb_common.h" -#include "common_transdimension.h" -#include "portable/ehci/ehci_api.h" - -//--------------------------------------------------------------------+ -// MACRO CONSTANT TYPEDEF -//--------------------------------------------------------------------+ - -// TODO can be merged with dcd_controller_t -typedef struct -{ - uint32_t regs_base; // registers base - const IRQn_Type irqnum; // IRQ number -}hcd_controller_t; - -#if CFG_TUSB_MCU == OPT_MCU_MIMXRT - static const hcd_controller_t _hcd_controller[] = - { - // RT1010 and RT1020 only has 1 USB controller - #if FSL_FEATURE_SOC_USBHS_COUNT == 1 - { .regs_base = USB_BASE , .irqnum = USB_OTG1_IRQn } - #else - { .regs_base = USB1_BASE, .irqnum = USB_OTG1_IRQn }, - { .regs_base = USB2_BASE, .irqnum = USB_OTG2_IRQn } - #endif - }; - -#else - static const hcd_controller_t _hcd_controller[] = - { - { .regs_base = LPC_USB0_BASE, .irqnum = USB0_IRQn }, - { .regs_base = LPC_USB1_BASE, .irqnum = USB1_IRQn } - }; -#endif - -//--------------------------------------------------------------------+ -// Controller API -//--------------------------------------------------------------------+ - -bool hcd_init(uint8_t rhport) -{ - hcd_registers_t* hcd_reg = (hcd_registers_t*) _hcd_controller[rhport].regs_base; - - // Reset controller - hcd_reg->USBCMD |= USBCMD_RESET; - while( hcd_reg->USBCMD & USBCMD_RESET ) {} - - // Set mode to device, must be set immediately after reset -#if CFG_TUSB_MCU == OPT_MCU_LPC18XX || CFG_TUSB_MCU == OPT_MCU_LPC43XX - // LPC18XX/43XX need to set VBUS Power Select to HIGH - // RHPORT1 is fullspeed only (need external PHY for Highspeed) - hcd_reg->USBMODE = USBMODE_CM_HOST | USBMODE_VBUS_POWER_SELECT; - if (rhport == 1) hcd_reg->PORTSC1 |= PORTSC1_FORCE_FULL_SPEED; -#else - hcd_reg->USBMODE = USBMODE_CM_HOST; -#endif - - // FIXME force full speed, still have issue with Highspeed enumeration - hcd_reg->PORTSC1 |= PORTSC1_FORCE_FULL_SPEED; - - return ehci_init(rhport, (uint32_t) &hcd_reg->CAPLENGTH, (uint32_t) &hcd_reg->USBCMD); -} - -void hcd_int_enable(uint8_t rhport) -{ - NVIC_EnableIRQ(_hcd_controller[rhport].irqnum); -} - -void hcd_int_disable(uint8_t rhport) -{ - NVIC_DisableIRQ(_hcd_controller[rhport].irqnum); -} - -#endif |
