From dc196b2b95f0ab3573cb10543e32a08810cefe3f Mon Sep 17 00:00:00 2001 From: Lwazi Dube Date: Fri, 7 Nov 2025 16:38:11 -0500 Subject: Prevent tu_edpt_number() from returning an invalid endpoint number --- src/common/tusb_types.h | 3 ++- 1 file changed, 2 insertions(+), 1 deletion(-) (limited to 'src/common') diff --git a/src/common/tusb_types.h b/src/common/tusb_types.h index a3a660d3b..73c816e3e 100644 --- a/src/common/tusb_types.h +++ b/src/common/tusb_types.h @@ -103,6 +103,7 @@ typedef enum { TUSB_DIR_OUT = 0, TUSB_DIR_IN = 1, + TUSB_EPNUM_MASK = 0x0F, TUSB_DIR_IN_MASK = 0x80 } tusb_dir_t; @@ -544,7 +545,7 @@ TU_ATTR_ALWAYS_INLINE static inline tusb_dir_t tu_edpt_dir(uint8_t addr) { // Get Endpoint number from address TU_ATTR_ALWAYS_INLINE static inline uint8_t tu_edpt_number(uint8_t addr) { - return (uint8_t) (addr & (~TUSB_DIR_IN_MASK)); + return (uint8_t) (addr & TUSB_EPNUM_MASK); } TU_ATTR_ALWAYS_INLINE static inline uint8_t tu_edpt_addr(uint8_t num, uint8_t dir) { -- cgit v1.3.1 From fc661abc18beefb57f5d1352219ed72678b59e0b Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 12 Nov 2025 10:41:58 +0700 Subject: migrate midi_device to use edpt stream API also add tud_midi_n_packet_write/read_n() --- .clang-format | 1 + src/class/midi/midi_device.c | 511 ++++++++++++++++----------------------- src/class/midi/midi_device.h | 130 ++++------ src/class/vendor/vendor_device.c | 3 +- src/common/tusb_fifo.c | 25 +- src/common/tusb_fifo.h | 38 +-- src/common/tusb_private.h | 14 +- src/tusb.c | 4 +- 8 files changed, 288 insertions(+), 438 deletions(-) (limited to 'src/common') diff --git a/.clang-format b/.clang-format index 907dd7cdd..c278fec37 100644 --- a/.clang-format +++ b/.clang-format @@ -70,6 +70,7 @@ IncludeCategories: - Regex: '.*' Priority: 3 IncludeIsMainRegex: '([-_](test|unittest))?$' +IndentPPDirectives: BeforeHash InsertBraces: true IndentCaseLabels: true InsertNewlineAtEOF: true diff --git a/src/class/midi/midi_device.c b/src/class/midi/midi_device.c index 7dac7c4a5..f065e486a 100644 --- a/src/class/midi/midi_device.c +++ b/src/class/midi/midi_device.c @@ -36,13 +36,19 @@ #include "midi_device.h" +//--------------------------------------------------------------------+ +// Weak stubs: invoked if no strong implementation is available +//--------------------------------------------------------------------+ +TU_ATTR_WEAK void tud_midi_rx_cb(uint8_t itf) { + (void)itf; +} + //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ typedef struct { + uint8_t rhport; uint8_t itf_num; - uint8_t ep_in; - uint8_t ep_out; // For Stream read()/write() API // Messages are always 4 bytes long, queue them for reading and writing so the @@ -51,134 +57,97 @@ typedef struct { midi_driver_stream_t stream_read; /*------------- From this point, data is not cleared by bus reset -------------*/ - // FIFO - tu_fifo_t rx_ff; - tu_fifo_t tx_ff; - uint8_t rx_ff_buf[CFG_TUD_MIDI_RX_BUFSIZE]; - uint8_t tx_ff_buf[CFG_TUD_MIDI_TX_BUFSIZE]; - - #if CFG_FIFO_MUTEX - osal_mutex_def_t rx_ff_mutex; - osal_mutex_def_t tx_ff_mutex; - #endif + // Endpoint stream + struct { + tu_edpt_stream_t tx; + tu_edpt_stream_t rx; + + uint8_t rx_ff_buf[CFG_TUD_MIDI_RX_BUFSIZE]; + uint8_t tx_ff_buf[CFG_TUD_MIDI_TX_BUFSIZE]; + } ep_stream; } midid_interface_t; -#define ITF_MEM_RESET_SIZE offsetof(midid_interface_t, rx_ff) +#define ITF_MEM_RESET_SIZE offsetof(midid_interface_t, ep_stream) + +static midid_interface_t _midid_itf[CFG_TUD_MIDI]; // Endpoint Transfer buffer -CFG_TUD_MEM_SECTION static struct { +typedef struct { TUD_EPBUF_DEF(epin, CFG_TUD_MIDI_EP_BUFSIZE); TUD_EPBUF_DEF(epout, CFG_TUD_MIDI_EP_BUFSIZE); -} _midid_epbuf[CFG_TUD_MIDI]; +} midid_epbuf_t; + +CFG_TUD_MEM_SECTION static midid_epbuf_t _midid_epbuf[CFG_TUD_MIDI]; //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ -static midid_interface_t _midid_itf[CFG_TUD_MIDI]; - bool tud_midi_n_mounted (uint8_t itf) { - midid_interface_t* midi = &_midid_itf[itf]; - return midi->ep_in && midi->ep_out; -} + midid_interface_t *p_midi = &_midid_itf[itf]; -static void _prep_out_transaction(uint8_t idx) { - const uint8_t rhport = 0; - midid_interface_t* p_midi = &_midid_itf[idx]; - uint16_t available = tu_fifo_remaining(&p_midi->rx_ff); - - // Prepare for incoming data but only allow what we can store in the ring buffer. - // TODO Actually we can still carry out the transfer, keeping count of received bytes - // and slowly move it to the FIFO when read(). - // This pre-check reduces endpoint claiming - TU_VERIFY(available >= CFG_TUD_MIDI_EP_BUFSIZE, ); - - // claim endpoint - TU_VERIFY(usbd_edpt_claim(rhport, p_midi->ep_out), ); - - // fifo can be changed before endpoint is claimed - available = tu_fifo_remaining(&p_midi->rx_ff); - - if ( available >= CFG_TUD_MIDI_EP_BUFSIZE ) { - usbd_edpt_xfer(rhport, p_midi->ep_out, _midid_epbuf[idx].epout, CFG_TUD_MIDI_EP_BUFSIZE); - }else - { - // Release endpoint since we don't make any transfer - usbd_edpt_release(rhport, p_midi->ep_out); - } -} - - -//--------------------------------------------------------------------+ -// Weak stubs: invoked if no strong implementation is available -//--------------------------------------------------------------------+ -TU_ATTR_WEAK void tud_midi_rx_cb(uint8_t itf) { - (void) itf; + const bool tx_opened = tu_edpt_stream_is_opened(&p_midi->ep_stream.tx); + const bool rx_opened = tu_edpt_stream_is_opened(&p_midi->ep_stream.rx); + return tx_opened && rx_opened; } //--------------------------------------------------------------------+ // READ API //--------------------------------------------------------------------+ -uint32_t tud_midi_n_available(uint8_t itf, uint8_t cable_num) -{ +uint32_t tud_midi_n_available(uint8_t itf, uint8_t cable_num) { (void) cable_num; - - midid_interface_t* midi = &_midid_itf[itf]; - const midi_driver_stream_t* stream = &midi->stream_read; + const midid_interface_t *p_midi = &_midid_itf[itf]; + const midi_driver_stream_t *stream = &p_midi->stream_read; + const tu_edpt_stream_t *ep_str = &p_midi->ep_stream.rx; // when using with packet API stream total & index are both zero - return tu_fifo_count(&midi->rx_ff) + (uint8_t) (stream->total - stream->index); + return tu_edpt_stream_read_available(ep_str) + (uint8_t)(stream->total - stream->index); } -uint32_t tud_midi_n_stream_read(uint8_t itf, uint8_t cable_num, void* buffer, uint32_t bufsize) -{ +uint32_t tud_midi_n_stream_read(uint8_t itf, uint8_t cable_num, void *buffer, uint32_t bufsize) { (void) cable_num; - TU_VERIFY(bufsize, 0); - - uint8_t* buf8 = (uint8_t*) buffer; + TU_VERIFY(buffer != NULL && bufsize > 0, 0); - midid_interface_t* midi = &_midid_itf[itf]; - midi_driver_stream_t* stream = &midi->stream_read; + uint8_t *buf8 = (uint8_t *)buffer; + midid_interface_t *p_midi = &_midid_itf[itf]; + midi_driver_stream_t *stream = &p_midi->stream_read; uint32_t total_read = 0; - while( bufsize ) - { + while (bufsize > 0) { // Get new packet from fifo, then set packet expected bytes - if ( stream->total == 0 ) - { - // return if there is no more data from fifo - if ( !tud_midi_n_packet_read(itf, stream->buffer) ) return total_read; + if (stream->total == 0) { + if (!tud_midi_n_packet_read(itf, stream->buffer)) { + return total_read; // return if there is no more data from fifo + } - uint8_t const code_index = stream->buffer[0] & 0x0f; + const uint8_t code_index = stream->buffer[0] & 0x0f; // MIDI 1.0 Table 4-1: Code Index Number Classifications - switch(code_index) - { + switch (code_index) { case MIDI_CIN_MISC: case MIDI_CIN_CABLE_EVENT: // These are reserved and unused, possibly issue somewhere, skip this packet return 0; - break; case MIDI_CIN_SYSEX_END_1BYTE: case MIDI_CIN_1BYTE_DATA: stream->total = 1; - break; + break; case MIDI_CIN_SYSCOM_2BYTE : case MIDI_CIN_SYSEX_END_2BYTE : case MIDI_CIN_PROGRAM_CHANGE : case MIDI_CIN_CHANNEL_PRESSURE : stream->total = 2; - break; + break; default: stream->total = 3; - break; + break; } } // Copy data up to bufsize - uint8_t const count = (uint8_t) tu_min32(stream->total - stream->index, bufsize); + const uint8_t count = (uint8_t)tu_min32((uint32_t)(stream->total - stream->index), bufsize); // Skip the header (1st byte) in the buffer TU_VERIFY(0 == tu_memcpy_s(buf8, bufsize, stream->buffer + 1 + stream->index, count)); @@ -189,8 +158,7 @@ uint32_t tud_midi_n_stream_read(uint8_t itf, uint8_t cable_num, void* buffer, ui bufsize -= count; // complete current event packet, reset stream - if ( stream->total == stream->index ) - { + if (stream->total == stream->index) { stream->index = 0; stream->total = 0; } @@ -199,150 +167,107 @@ uint32_t tud_midi_n_stream_read(uint8_t itf, uint8_t cable_num, void* buffer, ui return total_read; } -bool tud_midi_n_packet_read (uint8_t itf, uint8_t packet[4]) -{ - midid_interface_t* midi = &_midid_itf[itf]; - TU_VERIFY(midi->ep_out); +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); +} + +uint32_t tud_midi_n_packet_read_n(uint8_t itf, uint8_t packets[], uint32_t max_packets) { + 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), 0); - const uint32_t num_read = tu_fifo_read_n(&midi->rx_ff, packet, 4); - _prep_out_transaction(itf); - return (num_read == 4); + const uint32_t num_read = tu_edpt_stream_read(p_midi->rhport, ep_str, packets, 4u * max_packets); + return num_read >> 2u; } //--------------------------------------------------------------------+ // WRITE API //--------------------------------------------------------------------+ - -static uint32_t write_flush(uint8_t idx) { - midid_interface_t* midi = &_midid_itf[idx]; - - if (!tu_fifo_count(&midi->tx_ff)) { - return 0; // No data to send - } - - const uint8_t rhport = 0; - - // skip if previous transfer not complete - TU_VERIFY( usbd_edpt_claim(rhport, midi->ep_in), 0 ); - - uint16_t count = tu_fifo_read_n(&midi->tx_ff, _midid_epbuf[idx].epin, CFG_TUD_MIDI_EP_BUFSIZE); - - if (count) { - TU_ASSERT( usbd_edpt_xfer(rhport, midi->ep_in, _midid_epbuf[idx].epin, count), 0 ); - return count; - }else { - // Release endpoint since we don't make any transfer - usbd_edpt_release(rhport, midi->ep_in); - return 0; - } -} - -uint32_t tud_midi_n_stream_write(uint8_t itf, uint8_t cable_num, const uint8_t* buffer, uint32_t bufsize) -{ - midid_interface_t* midi = &_midid_itf[itf]; - TU_VERIFY(midi->ep_in, 0); - - midi_driver_stream_t* stream = &midi->stream_write; +uint32_t tud_midi_n_stream_write(uint8_t itf, uint8_t cable_num, const uint8_t *buffer, uint32_t bufsize) { + midid_interface_t *p_midi = &_midid_itf[itf]; + midi_driver_stream_t *stream = &p_midi->stream_write; + tu_edpt_stream_t *ep_str = &p_midi->ep_stream.tx; + TU_VERIFY(tu_edpt_stream_is_opened(ep_str), 0); uint32_t i = 0; - while ( (i < bufsize) && (tu_fifo_remaining(&midi->tx_ff) >= 4) ) - { + while (i < bufsize) { + if (tu_edpt_stream_write_available(p_midi->rhport, ep_str) < 4) { + break; + } + const uint8_t data = buffer[i]; i++; - if ( stream->index == 0 ) - { + if (stream->index == 0) { //------------- New event packet -------------// const uint8_t msg = data >> 4; - stream->index = 2; + stream->index = 2; stream->buffer[1] = data; // Check to see if we're still in a SysEx transmit. - if ( ((stream->buffer[0]) & 0xF) == MIDI_CIN_SYSEX_START ) - { - if ( data == MIDI_STATUS_SYSEX_END ) - { - stream->buffer[0] = (uint8_t) ((cable_num << 4) | MIDI_CIN_SYSEX_END_1BYTE); - stream->total = 2; - } - else - { + if (((stream->buffer[0]) & 0xF) == MIDI_CIN_SYSEX_START) { + if (data == MIDI_STATUS_SYSEX_END) { + stream->buffer[0] = (uint8_t)((cable_num << 4) | MIDI_CIN_SYSEX_END_1BYTE); + stream->total = 2; + } else { stream->total = 4; } - } - else if ( (msg >= 0x8 && msg <= 0xB) || msg == 0xE ) - { + } else if ((msg >= 0x8 && msg <= 0xB) || msg == 0xE) { // Channel Voice Messages - stream->buffer[0] = (uint8_t) ((cable_num << 4) | msg); - stream->total = 4; - } - else if ( msg == 0xC || msg == 0xD) - { + stream->buffer[0] = (uint8_t)((cable_num << 4) | msg); + stream->total = 4; + } else if (msg == 0xC || msg == 0xD) { // Channel Voice Messages, two-byte variants (Program Change and Channel Pressure) - stream->buffer[0] = (uint8_t) ((cable_num << 4) | msg); - stream->total = 3; - } - else if ( msg == 0xf ) - { + stream->buffer[0] = (uint8_t)((cable_num << 4) | msg); + stream->total = 3; + } else if (msg == 0xf) { // System message - if ( data == MIDI_STATUS_SYSEX_START ) - { + if (data == MIDI_STATUS_SYSEX_START) { stream->buffer[0] = MIDI_CIN_SYSEX_START; - stream->total = 4; - } - else if ( data == MIDI_STATUS_SYSCOM_TIME_CODE_QUARTER_FRAME || data == MIDI_STATUS_SYSCOM_SONG_SELECT ) - { + stream->total = 4; + } else if (data == MIDI_STATUS_SYSCOM_TIME_CODE_QUARTER_FRAME || data == MIDI_STATUS_SYSCOM_SONG_SELECT) { stream->buffer[0] = MIDI_CIN_SYSCOM_2BYTE; - stream->total = 3; - } - else if ( data == MIDI_STATUS_SYSCOM_SONG_POSITION_POINTER ) - { + stream->total = 3; + } else if (data == MIDI_STATUS_SYSCOM_SONG_POSITION_POINTER) { stream->buffer[0] = MIDI_CIN_SYSCOM_3BYTE; - stream->total = 4; - } - else - { + stream->total = 4; + } else { stream->buffer[0] = MIDI_CIN_SYSEX_END_1BYTE; - stream->total = 2; + stream->total = 2; } stream->buffer[0] |= (uint8_t)(cable_num << 4); - } - else - { + } else { // Pack individual bytes if we don't support packing them into words. - stream->buffer[0] = (uint8_t) (cable_num << 4 | 0xf); + stream->buffer[0] = (uint8_t)(cable_num << 4 | 0xf); stream->buffer[2] = 0; stream->buffer[3] = 0; - stream->index = 2; - stream->total = 2; + stream->total = 2; // index already set to 2 } - } - else - { + } else { //------------- On-going (buffering) packet -------------// - TU_ASSERT(stream->index < 4, i); stream->buffer[stream->index] = data; stream->index++; // See if this byte ends a SysEx. - if ( (stream->buffer[0] & 0xF) == MIDI_CIN_SYSEX_START && data == MIDI_STATUS_SYSEX_END ) - { - stream->buffer[0] = (uint8_t) ((cable_num << 4) | (MIDI_CIN_SYSEX_START + (stream->index - 1))); - stream->total = stream->index; + if ((stream->buffer[0] & 0xF) == MIDI_CIN_SYSEX_START && data == MIDI_STATUS_SYSEX_END) { + stream->buffer[0] = (uint8_t)((cable_num << 4) | (MIDI_CIN_SYSEX_START + (stream->index - 1))); + stream->total = stream->index; } } // Send out packet - if ( stream->index == stream->total ) - { + if (stream->index == stream->total) { // zeroes unused bytes for (uint8_t idx = stream->total; idx < 4; idx++) { stream->buffer[idx] = 0; } - const uint16_t count = tu_fifo_write_n(&midi->tx_ff, stream->buffer, 4); + const uint32_t count = tu_edpt_stream_write(p_midi->rhport, ep_str, stream->buffer, 4); // complete current event packet, reset stream stream->index = stream->total = 0; @@ -352,25 +277,37 @@ uint32_t tud_midi_n_stream_write(uint8_t itf, uint8_t cable_num, const uint8_t* } } - write_flush(itf); + (void)tu_edpt_stream_write_xfer(p_midi->rhport, ep_str); return i; } bool tud_midi_n_packet_write (uint8_t itf, const uint8_t packet[4]) { - midid_interface_t* midi = &_midid_itf[itf]; - TU_VERIFY(midi->ep_in); + midid_interface_t *p_midi = &_midid_itf[itf]; + tu_edpt_stream_t *ep_str = &p_midi->ep_stream.tx; + TU_VERIFY(tu_edpt_stream_is_opened(ep_str)); - if (tu_fifo_remaining(&midi->tx_ff) < 4) { - return false; - } - - tu_fifo_write_n(&midi->tx_ff, packet, 4); - write_flush(itf); + 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); return true; } +uint32_t tud_midi_n_packet_write_n(uint8_t itf, const uint8_t packets[], uint32_t n_packets) { + midid_interface_t *p_midi = &_midid_itf[itf]; + 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); + 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); + + return n_write >> 2u; +} + //--------------------------------------------------------------------+ // USBD Driver API //--------------------------------------------------------------------+ @@ -378,72 +315,64 @@ void midid_init(void) { tu_memclr(_midid_itf, sizeof(_midid_itf)); for (uint8_t i = 0; i < CFG_TUD_MIDI; i++) { - midid_interface_t* midi = &_midid_itf[i]; - - // config fifo - tu_fifo_config(&midi->rx_ff, midi->rx_ff_buf, CFG_TUD_MIDI_RX_BUFSIZE, 1, false); // true, true - tu_fifo_config(&midi->tx_ff, midi->tx_ff_buf, CFG_TUD_MIDI_TX_BUFSIZE, 1, false); // OBVS. + midid_interface_t *p_midi = &_midid_itf[i]; + midid_epbuf_t *p_epbuf = &_midid_epbuf[i]; - #if CFG_FIFO_MUTEX - osal_mutex_t mutex_rd = osal_mutex_create(&midi->rx_ff_mutex); - osal_mutex_t mutex_wr = osal_mutex_create(&midi->tx_ff_mutex); - TU_ASSERT(mutex_wr != NULL && mutex_wr != NULL, ); + tu_edpt_stream_init( + &p_midi->ep_stream.rx, false, false, false, p_midi->ep_stream.rx_ff_buf, CFG_TUD_MIDI_RX_BUFSIZE, + p_epbuf->epout, CFG_TUD_MIDI_EP_BUFSIZE); - tu_fifo_config_mutex(&midi->rx_ff, NULL, mutex_rd); - tu_fifo_config_mutex(&midi->tx_ff, mutex_wr, NULL); - #endif + tu_edpt_stream_init( + &p_midi->ep_stream.tx, false, true, false, p_midi->ep_stream.tx_ff_buf, CFG_TUD_MIDI_TX_BUFSIZE, p_epbuf->epin, + CFG_TUD_MIDI_EP_BUFSIZE); } } bool midid_deinit(void) { - #if CFG_FIFO_MUTEX - for(uint8_t i=0; irx_ff.mutex_rd; - osal_mutex_t mutex_wr = midi->tx_ff.mutex_wr; - - if (mutex_rd) { - osal_mutex_delete(mutex_rd); - tu_fifo_config_mutex(&midi->rx_ff, NULL, NULL); - } - - if (mutex_wr) { - osal_mutex_delete(mutex_wr); - tu_fifo_config_mutex(&midi->tx_ff, NULL, NULL); - } + for (uint8_t i = 0; i < CFG_TUD_MIDI; i++) { + midid_interface_t *p_midi = &_midid_itf[i]; + tu_edpt_stream_deinit(&p_midi->ep_stream.rx); + tu_edpt_stream_deinit(&p_midi->ep_stream.tx); } - #endif - return true; } -void midid_reset(uint8_t rhport) -{ - (void) rhport; +void midid_reset(uint8_t rhport) { + (void)rhport; + for (uint8_t i = 0; i < CFG_TUD_MIDI; i++) { + midid_interface_t *p_midi = &_midid_itf[i]; + tu_memclr(p_midi, ITF_MEM_RESET_SIZE); + + tu_edpt_stream_clear(&p_midi->ep_stream.rx); + tu_edpt_stream_close(&p_midi->ep_stream.rx); - for(uint8_t i=0; irx_ff); - tu_fifo_clear(&midi->tx_ff); + tu_edpt_stream_clear(&p_midi->ep_stream.tx); + tu_edpt_stream_close(&p_midi->ep_stream.tx); } } -uint16_t midid_open(uint8_t rhport, const tusb_desc_interface_t* desc_itf, uint16_t max_len) { - uint16_t drv_len = 0; - uint8_t const * p_desc = (uint8_t const *)desc_itf; +TU_ATTR_ALWAYS_INLINE static inline uint8_t find_midi_itf(uint8_t ep_addr) { + for (uint8_t idx = 0; idx < CFG_TUD_MIDI; idx++) { + const midid_interface_t *p_midi = &_midid_itf[idx]; + if (ep_addr == p_midi->ep_stream.rx.ep_addr || ep_addr == p_midi->ep_stream.tx.ep_addr) { + return idx; + } + } + return TUSB_INDEX_INVALID_8; +} + +uint16_t midid_open(uint8_t rhport, const tusb_desc_interface_t *desc_itf, uint16_t max_len) { + const uint8_t *p_desc = (const uint8_t *)desc_itf; + const uint8_t *desc_end = p_desc + max_len; // 1st Interface is Audio Control v1 (optional) if (TUSB_CLASS_AUDIO == desc_itf->bInterfaceClass && AUDIO_SUBCLASS_CONTROL == desc_itf->bInterfaceSubClass && AUDIO_FUNC_PROTOCOL_CODE_UNDEF == desc_itf->bInterfaceProtocol) { - drv_len = tu_desc_len(desc_itf); p_desc = tu_desc_next(desc_itf); // Skip Class Specific descriptors - while (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc) && drv_len <= max_len) { - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); + while (tu_desc_in_bounds(p_desc, desc_end) && TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc)) { + p_desc = tu_desc_next(p_desc); } } @@ -451,59 +380,44 @@ uint16_t midid_open(uint8_t rhport, const tusb_desc_interface_t* desc_itf, uint1 TU_VERIFY(TUSB_DESC_INTERFACE == tu_desc_type(p_desc), 0); const tusb_desc_interface_t* desc_midi = (const tusb_desc_interface_t*) p_desc; - TU_VERIFY(TUSB_CLASS_AUDIO == desc_midi->bInterfaceClass && - AUDIO_SUBCLASS_MIDI_STREAMING == desc_midi->bInterfaceSubClass && - AUDIO_FUNC_PROTOCOL_CODE_UNDEF == desc_midi->bInterfaceProtocol, 0); + TU_VERIFY(TUSB_CLASS_AUDIO == desc_midi->bInterfaceClass && + AUDIO_SUBCLASS_MIDI_STREAMING == desc_midi->bInterfaceSubClass && + AUDIO_FUNC_PROTOCOL_CODE_UNDEF == desc_midi->bInterfaceProtocol, + 0); - // Find available interface - midid_interface_t * p_midi = NULL; - uint8_t idx; - for(idx=0; idxrhport = rhport; p_midi->itf_num = desc_midi->bInterfaceNumber; (void) p_midi->itf_num; - // next descriptor - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); + p_desc = tu_desc_next(p_desc); // Find and open endpoint descriptors - uint8_t found_endpoints = 0; - while ( (found_endpoints < desc_midi->bNumEndpoints) && (drv_len <= max_len) ) - { - if ( TUSB_DESC_ENDPOINT == tu_desc_type(p_desc) ) - { - TU_ASSERT(usbd_edpt_open(rhport, (const tusb_desc_endpoint_t*) p_desc), 0); - uint8_t ep_addr = ((const tusb_desc_endpoint_t*) p_desc)->bEndpointAddress; - - if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN) - { - p_midi->ep_in = ep_addr; + uint8_t found_ep = 0; + while ((found_ep < desc_midi->bNumEndpoints) && tu_desc_in_bounds(p_desc, desc_end)) { + if (TUSB_DESC_ENDPOINT == tu_desc_type(p_desc)) { + const tusb_desc_endpoint_t *desc_ep = (const tusb_desc_endpoint_t *)p_desc; + TU_ASSERT(usbd_edpt_open(rhport, desc_ep), 0); + 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); } else { - p_midi->ep_out = ep_addr; + tu_edpt_stream_open(&p_midi->ep_stream.rx, desc_ep); + TU_ASSERT(tu_edpt_stream_read_xfer(rhport, &p_midi->ep_stream.rx) > 0, 0); // prepare to receive data } - // Class Specific MIDI Stream endpoint descriptor - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); - - found_endpoints += 1; + p_desc = tu_desc_next(p_desc); // skip CS Endpoint descriptor + found_ep++; } - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); + p_desc = tu_desc_next(p_desc); } - // Prepare for incoming data - _prep_out_transaction(idx); - - return drv_len; + return (uint16_t)(p_desc - (const uint8_t *)desc_itf); } // Invoked when a control transfer occurred on an interface of this class @@ -514,44 +428,31 @@ bool midid_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_control_req return false; // driver doesn't support any request yet } -bool midid_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) -{ - (void) result; - (void) rhport; - - uint8_t idx; - midid_interface_t* p_midi; +bool midid_xfer_cb(uint8_t rhport, uint8_t ep_addr, xfer_result_t result, uint32_t xferred_bytes) { + (void)result; - // Identify which interface to use - for (idx = 0; idx < CFG_TUD_MIDI; idx++) { - p_midi = &_midid_itf[idx]; - if ((ep_addr == p_midi->ep_out) || (ep_addr == p_midi->ep_in)) { - break; - } - } + uint8_t idx = find_midi_itf(ep_addr); TU_ASSERT(idx < CFG_TUD_MIDI); + midid_interface_t *p_midi = &_midid_itf[idx]; - // receive new data - if (ep_addr == p_midi->ep_out) { - tu_fifo_write_n(&p_midi->rx_ff, _midid_epbuf[idx].epout, (uint16_t)xferred_bytes); - - // invoke receive callback if available - tud_midi_rx_cb(idx); - - // prepare for next - // TODO for now ep_out is not used by public API therefore there is no race condition, - // and does not need to claim like ep_in - _prep_out_transaction(idx); - } else if (ep_addr == p_midi->ep_in) { - if (0 == write_flush(idx)) { - // If there is no data left, a ZLP should be sent if - // xferred_bytes is multiple of EP size and not zero - if (!tu_fifo_count(&p_midi->tx_ff) && xferred_bytes && (0 == (xferred_bytes % CFG_TUD_MIDI_EP_BUFSIZE))) { - if (usbd_edpt_claim(rhport, p_midi->ep_in)) { - usbd_edpt_xfer(rhport, p_midi->ep_in, NULL, 0); - } - } + tu_edpt_stream_t *ep_st_rx = &p_midi->ep_stream.rx; + tu_edpt_stream_t *ep_st_tx = &p_midi->ep_stream.tx; + + if (ep_addr == ep_st_rx->ep_addr) { + // Received new data: put into stream's fifo + if (result == XFER_RESULT_SUCCESS) { + 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 + } 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 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); + } + } else { + return false; } return true; diff --git a/src/class/midi/midi_device.h b/src/class/midi/midi_device.h index d23516cec..ddbc2f9f0 100644 --- a/src/class/midi/midi_device.h +++ b/src/class/midi/midi_device.h @@ -36,21 +36,21 @@ #if !defined(CFG_TUD_MIDI_EP_BUFSIZE) && defined(CFG_TUD_MIDI_EPSIZE) #warning CFG_TUD_MIDI_EPSIZE is renamed to CFG_TUD_MIDI_EP_BUFSIZE, please update to use the new name - #define CFG_TUD_MIDI_EP_BUFSIZE CFG_TUD_MIDI_EPSIZE + #define CFG_TUD_MIDI_EP_BUFSIZE CFG_TUD_MIDI_EPSIZE #endif #ifndef CFG_TUD_MIDI_EP_BUFSIZE - #define CFG_TUD_MIDI_EP_BUFSIZE (TUD_OPT_HIGH_SPEED ? 512 : 64) + #define CFG_TUD_MIDI_EP_BUFSIZE (TUD_OPT_HIGH_SPEED ? 512 : 64) #endif #ifdef __cplusplus - extern "C" { +extern "C" { #endif -/** \addtogroup MIDI_Serial Serial - * @{ - * \defgroup MIDI_Serial_Device Device - * @{ */ +//--------------------------------------------------------------------+ +// Application Callback API (optional) +//--------------------------------------------------------------------+ +void tud_midi_rx_cb(uint8_t itf); //--------------------------------------------------------------------+ // Application API (Multiple Interfaces) @@ -58,117 +58,77 @@ //--------------------------------------------------------------------+ // Check if midi interface is mounted -bool tud_midi_n_mounted (uint8_t itf); +bool tud_midi_n_mounted(uint8_t itf); // Get the number of bytes available for reading -uint32_t tud_midi_n_available (uint8_t itf, uint8_t cable_num); - -// Read byte stream (legacy) -uint32_t tud_midi_n_stream_read (uint8_t itf, uint8_t cable_num, void* buffer, uint32_t bufsize); - -// Write byte Stream (legacy) -uint32_t tud_midi_n_stream_write (uint8_t itf, uint8_t cable_num, uint8_t const* buffer, uint32_t bufsize); - -// Read event packet (4 bytes) -bool tud_midi_n_packet_read (uint8_t itf, uint8_t packet[4]); - -// Write event packet (4 bytes) -bool tud_midi_n_packet_write (uint8_t itf, uint8_t const packet[4]); +uint32_t tud_midi_n_available(uint8_t itf, uint8_t cable_num); -//--------------------------------------------------------------------+ -// Application API (Single Interface) -//--------------------------------------------------------------------+ -static inline bool tud_midi_mounted (void); -static inline uint32_t tud_midi_available (void); - -static inline uint32_t tud_midi_stream_read (void* buffer, uint32_t bufsize); -static inline uint32_t tud_midi_stream_write (uint8_t cable_num, uint8_t const* buffer, uint32_t bufsize); - -static inline bool tud_midi_packet_read (uint8_t packet[4]); -static inline bool tud_midi_packet_write (uint8_t const packet[4]); - -//------------- Deprecated API name -------------// -// TODO remove after 0.10.0 release - -TU_ATTR_DEPRECATED("tud_midi_read() is renamed to tud_midi_stream_read()") -static inline uint32_t tud_midi_read (void* buffer, uint32_t bufsize) -{ - return tud_midi_stream_read(buffer, bufsize); -} +// Read byte stream (legacy) +uint32_t tud_midi_n_stream_read(uint8_t itf, uint8_t cable_num, void *buffer, uint32_t bufsize); -TU_ATTR_DEPRECATED("tud_midi_write() is renamed to tud_midi_stream_write()") -static inline uint32_t tud_midi_write(uint8_t cable_num, uint8_t const* buffer, uint32_t bufsize) -{ - return tud_midi_stream_write(cable_num, buffer, bufsize); -} +// Write byte Stream (legacy) +uint32_t tud_midi_n_stream_write(uint8_t itf, uint8_t cable_num, const uint8_t *buffer, uint32_t bufsize); +// Read an event 4-byte packet +bool tud_midi_n_packet_read(uint8_t itf, uint8_t packet[4]); -TU_ATTR_DEPRECATED("tud_midi_send() is renamed to tud_midi_packet_write()") -static inline bool tud_midi_send(uint8_t packet[4]) -{ - return tud_midi_packet_write(packet); -} +// Read multiple event packets, return number of read packets +uint32_t tud_midi_n_packet_read_n(uint8_t itf, uint8_t packets[], uint32_t max_packets); -TU_ATTR_DEPRECATED("tud_midi_receive() is renamed to tud_midi_packet_read()") -static inline bool tud_midi_receive(uint8_t packet[4]) -{ - return tud_midi_packet_read(packet); -} +// Write an event 4-byte packet +bool tud_midi_n_packet_write(uint8_t itf, const uint8_t packet[4]); -//--------------------------------------------------------------------+ -// Application Callback API (optional) -//--------------------------------------------------------------------+ -void tud_midi_rx_cb(uint8_t itf); +// Write multiple event packets, return number of written packets +uint32_t tud_midi_n_packet_write_n(uint8_t itf, const uint8_t packets[], uint32_t n_packets); //--------------------------------------------------------------------+ -// Inline Functions +// Application API (Single Interface) //--------------------------------------------------------------------+ - -static inline bool tud_midi_mounted (void) -{ +TU_ATTR_ALWAYS_INLINE static inline bool tud_midi_mounted(void) { return tud_midi_n_mounted(0); } -static inline uint32_t tud_midi_available (void) -{ +TU_ATTR_ALWAYS_INLINE static inline uint32_t tud_midi_available(void) { return tud_midi_n_available(0, 0); } -static inline uint32_t tud_midi_stream_read (void* buffer, uint32_t bufsize) -{ +TU_ATTR_ALWAYS_INLINE static inline uint32_t tud_midi_stream_read(void *buffer, uint32_t bufsize) { return tud_midi_n_stream_read(0, 0, buffer, bufsize); } -static inline uint32_t tud_midi_stream_write (uint8_t cable_num, uint8_t const* buffer, uint32_t bufsize) -{ +TU_ATTR_ALWAYS_INLINE static inline uint32_t +tud_midi_stream_write(uint8_t cable_num, const uint8_t *buffer, uint32_t bufsize) { return tud_midi_n_stream_write(0, cable_num, buffer, bufsize); } -static inline bool tud_midi_packet_read (uint8_t packet[4]) -{ +TU_ATTR_ALWAYS_INLINE static inline bool tud_midi_packet_read(uint8_t packet[4]) { return tud_midi_n_packet_read(0, packet); } -static inline bool tud_midi_packet_write (uint8_t const packet[4]) -{ +TU_ATTR_ALWAYS_INLINE static inline uint32_t tud_midi_packet_read_n(uint8_t packets[], uint32_t max_packets) { + return tud_midi_n_packet_read_n(0, packets, max_packets); +} + +TU_ATTR_ALWAYS_INLINE static inline bool tud_midi_packet_write(const uint8_t packet[4]) { return tud_midi_n_packet_write(0, packet); } +TU_ATTR_ALWAYS_INLINE static inline uint32_t tud_midi_packet_write_n(const uint8_t packets[], uint32_t n_packets) { + return tud_midi_n_packet_write_n(0, packets, n_packets); +} + //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -void midid_init (void); -bool midid_deinit (void); -void midid_reset (uint8_t rhport); -uint16_t midid_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); -bool midid_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); -bool midid_xfer_cb (uint8_t rhport, uint8_t edpt_addr, xfer_result_t result, uint32_t xferred_bytes); +void midid_init(void); +bool midid_deinit(void); +void midid_reset(uint8_t rhport); +uint16_t midid_open(uint8_t rhport, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +bool midid_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_control_request_t *request); +bool midid_xfer_cb(uint8_t rhport, uint8_t edpt_addr, xfer_result_t result, uint32_t xferred_bytes); #ifdef __cplusplus - } +} #endif -#endif /* TUSB_MIDI_DEVICE_H_ */ - -/** @} */ -/** @} */ +#endif diff --git a/src/class/vendor/vendor_device.c b/src/class/vendor/vendor_device.c index 27724b194..c916ebe47 100644 --- a/src/class/vendor/vendor_device.c +++ b/src/class/vendor/vendor_device.c @@ -202,8 +202,9 @@ void vendord_reset(uint8_t rhport) { vendord_interface_t* p_itf = &_vendord_itf[i]; tu_memclr(p_itf, ITF_MEM_RESET_SIZE); tu_edpt_stream_clear(&p_itf->rx.stream); - tu_edpt_stream_clear(&p_itf->tx.stream); tu_edpt_stream_close(&p_itf->rx.stream); + + tu_edpt_stream_clear(&p_itf->tx.stream); tu_edpt_stream_close(&p_itf->tx.stream); } } diff --git a/src/common/tusb_fifo.c b/src/common/tusb_fifo.c index 419046b8b..5c9e586fb 100644 --- a/src/common/tusb_fifo.c +++ b/src/common/tusb_fifo.c @@ -551,27 +551,10 @@ 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(const tu_fifo_t *f) { return tu_min16(_ff_count(f->depth, f->wr_idx, f->rd_idx), f->depth); } -/******************************************************************************/ -/*! - @brief Check if FIFO is empty. - - As this function only reads the read and write pointers once, this function is - reentrant and thus thread and ISR save without any mutexes. - - @param[in] f - Pointer to the FIFO buffer to manipulate - - @returns Number of items in FIFO - */ -/******************************************************************************/ -bool tu_fifo_empty(tu_fifo_t *f) { - return f->wr_idx == f->rd_idx; -} - /******************************************************************************/ /*! @brief Check if FIFO is full. @@ -585,7 +568,7 @@ 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(const tu_fifo_t *f) { return _ff_count(f->depth, f->wr_idx, f->rd_idx) >= f->depth; } @@ -602,7 +585,7 @@ 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(const tu_fifo_t *f) { return _ff_remaining(f->depth, f->wr_idx, f->rd_idx); } @@ -627,7 +610,7 @@ 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(const tu_fifo_t *f) { return _ff_count(f->depth, f->wr_idx, f->rd_idx) > f->depth; } diff --git a/src/common/tusb_fifo.h b/src/common/tusb_fifo.h index 0f4ba00d8..9d8b864e9 100644 --- a/src/common/tusb_fifo.h +++ b/src/common/tusb_fifo.h @@ -155,33 +155,35 @@ void tu_fifo_config_mutex(tu_fifo_t *f, osal_mutex_t wr_mutex, osal_mutex_t rd_m #define tu_fifo_config_mutex(_f, _wr_mutex, _rd_mutex) #endif -bool tu_fifo_write (tu_fifo_t* f, void const * data); -uint16_t tu_fifo_write_n (tu_fifo_t* f, void const * data, uint16_t n); -#ifdef TUP_MEM_CONST_ADDR -uint16_t tu_fifo_write_n_const_addr_full_words (tu_fifo_t* f, const void * data, uint16_t n); -#endif +bool tu_fifo_write(tu_fifo_t *f, void const *data); +uint16_t tu_fifo_write_n(tu_fifo_t *f, const void *data, uint16_t n); + +bool tu_fifo_read(tu_fifo_t *f, void *buffer); +uint16_t tu_fifo_read_n(tu_fifo_t *f, void *buffer, uint16_t n); -bool tu_fifo_read (tu_fifo_t* f, void * buffer); -uint16_t tu_fifo_read_n (tu_fifo_t* f, void * buffer, uint16_t n); #ifdef TUP_MEM_CONST_ADDR -uint16_t tu_fifo_read_n_const_addr_full_words (tu_fifo_t* f, void * buffer, uint16_t n); +uint16_t tu_fifo_write_n_const_addr_full_words(tu_fifo_t *f, const void *data, uint16_t n); +uint16_t tu_fifo_read_n_const_addr_full_words(tu_fifo_t *f, void *buffer, uint16_t n); #endif -bool tu_fifo_peek (tu_fifo_t* f, void * p_buffer); -uint16_t tu_fifo_peek_n (tu_fifo_t* f, void * p_buffer, uint16_t n); +bool tu_fifo_peek(tu_fifo_t *f, void *p_buffer); +uint16_t tu_fifo_peek_n(tu_fifo_t *f, void *p_buffer, uint16_t n); -uint16_t tu_fifo_count (tu_fifo_t* f); -uint16_t tu_fifo_remaining (tu_fifo_t* f); -bool tu_fifo_empty (tu_fifo_t* f); -bool tu_fifo_full (tu_fifo_t* f); -bool tu_fifo_overflowed (tu_fifo_t* f); -void tu_fifo_correct_read_pointer (tu_fifo_t* f); +uint16_t tu_fifo_count(const tu_fifo_t *f); +uint16_t tu_fifo_remaining(const tu_fifo_t *f); +bool tu_fifo_full(const tu_fifo_t *f); +bool tu_fifo_overflowed(const tu_fifo_t *f); -TU_ATTR_ALWAYS_INLINE static inline -uint16_t tu_fifo_depth(tu_fifo_t* f) { +TU_ATTR_ALWAYS_INLINE static inline bool tu_fifo_empty(const tu_fifo_t *f) { + return f->wr_idx == f->rd_idx; +} + +TU_ATTR_ALWAYS_INLINE static inline uint16_t tu_fifo_depth(const tu_fifo_t *f) { return f->depth; } +void tu_fifo_correct_read_pointer(tu_fifo_t *f); + // Pointer modifications intended to be used in combinations with DMAs. // USE WITH CARE - NO SAFETY CHECKS CONDUCTED HERE! NOT MUTEX PROTECTED! void tu_fifo_advance_write_pointer(tu_fifo_t *f, uint16_t n); diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index dcd5c45d6..367209e57 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -105,6 +105,10 @@ TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_open(tu_edpt_stream_t* s s->is_mps512 = tu_edpt_packet_size(desc_ep) == 512; } +TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_is_opened(const tu_edpt_stream_t *s) { + return s->ep_addr != 0; +} + TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_close(tu_edpt_stream_t* s) { s->ep_addr = 0; } @@ -121,7 +125,7 @@ TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_clear(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); -// Start an usb transfer if endpoint is not busy +// 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); // Start an zero-length packet if needed @@ -151,20 +155,18 @@ void tu_edpt_stream_read_xfer_complete(tu_edpt_stream_t* s, uint32_t xferred_byt // Complete read transfer with provided buffer TU_ATTR_ALWAYS_INLINE static inline -void tu_edpt_stream_read_xfer_complete_with_buf(tu_edpt_stream_t* s, const void * buf, uint32_t xferred_bytes) { +void tu_edpt_stream_read_xfer_complete_with_buf(tu_edpt_stream_t *s, const void *buf, uint32_t xferred_bytes) { if (0u != tu_fifo_depth(&s->ff)) { tu_fifo_write_n(&s->ff, buf, (uint16_t) xferred_bytes); } } // Get the number of bytes available for reading -TU_ATTR_ALWAYS_INLINE static inline -uint32_t tu_edpt_stream_read_available(tu_edpt_stream_t* s) { +TU_ATTR_ALWAYS_INLINE static inline uint32_t tu_edpt_stream_read_available(const tu_edpt_stream_t *s) { return (uint32_t) tu_fifo_count(&s->ff); } -TU_ATTR_ALWAYS_INLINE static inline -bool tu_edpt_stream_peek(tu_edpt_stream_t* s, uint8_t* ch) { +TU_ATTR_ALWAYS_INLINE static inline bool tu_edpt_stream_peek(tu_edpt_stream_t *s, uint8_t *ch) { return tu_fifo_peek(&s->ff, ch); } diff --git a/src/tusb.c b/src/tusb.c index 7411f19df..b308e2915 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -424,7 +424,7 @@ uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s) { 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); + const uint16_t count = tu_fifo_read_n(&s->ff, s->ep_buf, s->ep_bufsize); if (count > 0) { TU_ASSERT(stream_xfer(hwid, s, count), 0); @@ -437,7 +437,7 @@ 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) { +uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t *s, const void *buffer, uint32_t bufsize) { TU_VERIFY(bufsize > 0); // TODO support ZLP if (0 == tu_fifo_depth(&s->ff)) { -- cgit v1.3.1 From f11adb02ebc0c594a7114b08585b8af18c3ee6d6 Mon Sep 17 00:00:00 2001 From: hathach Date: Wed, 12 Nov 2025 21:22:25 +0700 Subject: migrate cdc device to use edpt stream API tu_edpt_stream_open() does not clear fifo, allow for persistent stream when disconnect/reconnect --- .clang-format | 7 +- .../net_lwip_webserver/src/usb_descriptors.c | 2 +- src/class/cdc/cdc_device.c | 393 +++++++++------------ src/class/midi/midi_device.c | 2 + src/class/vendor/vendor_device.c | 16 +- src/common/tusb_private.h | 7 +- src/tusb.c | 8 +- 7 files changed, 194 insertions(+), 241 deletions(-) (limited to 'src/common') diff --git a/.clang-format b/.clang-format index c278fec37..40d40f7e9 100644 --- a/.clang-format +++ b/.clang-format @@ -1,7 +1,7 @@ --- Language: Cpp BasedOnStyle: LLVM -AlignAfterOpenBracket: AlwaysBreak +AlignAfterOpenBracket: Align AlignConsecutiveAssignments: Enabled: true AcrossEmptyLines: false @@ -38,6 +38,7 @@ AllowShortEnumsOnASingleLine: false AllowShortFunctionsOnASingleLine: None AllowShortIfStatementsOnASingleLine: Never AlwaysBreakTemplateDeclarations: Yes +BinPackArguments: true BreakBeforeBraces: Custom BraceWrapping: AfterCaseLabel: false @@ -57,8 +58,10 @@ BraceWrapping: SplitEmptyRecord: true SplitEmptyNamespace: true BracedInitializerIndentWidth: 2 +BreakBeforeBinaryOperators: None BreakConstructorInitializers: AfterColon BreakConstructorInitializersBeforeComma: false +ContinuationIndentWidth: 2 ColumnLimit: 120 ConstructorInitializerAllOnOneLineOrOnePerLine: false Cpp11BracedListStyle: true @@ -78,6 +81,8 @@ MacroBlockBegin: '' MacroBlockEnd: '' MaxEmptyLinesToKeep: 2 NamespaceIndentation: All +PenaltyBreakBeforeFirstCallParameter: 1000000 +PenaltyBreakOpenParenthesis: 1000000 QualifierAlignment: Custom QualifierOrder: ['static', 'const', 'volatile', 'restrict', 'type'] ReflowComments: false diff --git a/examples/device/net_lwip_webserver/src/usb_descriptors.c b/examples/device/net_lwip_webserver/src/usb_descriptors.c index b49962d65..c976cb62b 100644 --- a/examples/device/net_lwip_webserver/src/usb_descriptors.c +++ b/examples/device/net_lwip_webserver/src/usb_descriptors.c @@ -270,7 +270,7 @@ bool tud_vendor_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_contro switch (request->bmRequestType_bit.type) { case TUSB_REQ_TYPE_VENDOR: - switch (request->bRequest) { //-V2520 //-V2659 + switch (request->bRequest) { case 1: if (request->wIndex == 7) { // Get Microsoft OS 2.0 compatible descriptor diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index b3253b141..92139b14e 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -48,28 +48,23 @@ typedef struct { uint8_t rhport; uint8_t itf_num; - uint8_t ep_in; - uint8_t ep_out; - uint8_t ep_notify; uint8_t line_state; // Bit 0: DTR, Bit 1: RTS /*------------- From this point, data is not cleared by bus reset -------------*/ - char wanted_char; TU_ATTR_ALIGNED(4) cdc_line_coding_t line_coding; + char wanted_char; - // FIFO - tu_fifo_t rx_ff; - tu_fifo_t tx_ff; - - uint8_t rx_ff_buf[CFG_TUD_CDC_RX_BUFSIZE]; - uint8_t tx_ff_buf[CFG_TUD_CDC_TX_BUFSIZE]; + struct { + tu_edpt_stream_t tx; + tu_edpt_stream_t rx; - OSAL_MUTEX_DEF(rx_ff_mutex); - OSAL_MUTEX_DEF(tx_ff_mutex); + uint8_t tx_ff_buf[CFG_TUD_CDC_TX_BUFSIZE]; + uint8_t rx_ff_buf[CFG_TUD_CDC_RX_BUFSIZE]; + } stream; } cdcd_interface_t; -#define ITF_MEM_RESET_SIZE offsetof(cdcd_interface_t, wanted_char) +#define ITF_MEM_RESET_SIZE offsetof(cdcd_interface_t, line_coding) typedef struct { TUD_EPBUF_DEF(epout, CFG_TUD_CDC_EP_BUFSIZE); @@ -80,111 +75,102 @@ typedef struct { #endif } cdcd_epbuf_t; -//--------------------------------------------------------------------+ -// INTERNAL OBJECT & FUNCTION DECLARATION -//--------------------------------------------------------------------+ -static cdcd_interface_t _cdcd_itf[CFG_TUD_CDC]; -CFG_TUD_MEM_SECTION static cdcd_epbuf_t _cdcd_epbuf[CFG_TUD_CDC]; - -static tud_cdc_configure_t _cdcd_cfg = TUD_CDC_CONFIGURE_DEFAULT(); - -static bool _prep_out_transaction(uint8_t itf) { - const uint8_t rhport = 0; - cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - cdcd_epbuf_t* p_epbuf = &_cdcd_epbuf[itf]; - - // Skip if usb is not ready yet - TU_VERIFY(tud_ready() && p_cdc->ep_out); - - uint16_t available = tu_fifo_remaining(&p_cdc->rx_ff); - - // Prepare for incoming data but only allow what we can store in the ring buffer. - // TODO Actually we can still carry out the transfer, keeping count of received bytes - // and slowly move it to the FIFO when read(). - // This pre-check reduces endpoint claiming - TU_VERIFY(available >= CFG_TUD_CDC_EP_BUFSIZE); - - // claim endpoint - TU_VERIFY(usbd_edpt_claim(p_cdc->rhport, p_cdc->ep_out)); - - // fifo can be changed before endpoint is claimed - available = tu_fifo_remaining(&p_cdc->rx_ff); - - if (available >= CFG_TUD_CDC_EP_BUFSIZE) { - return usbd_edpt_xfer(rhport, p_cdc->ep_out, p_epbuf->epout, CFG_TUD_CDC_EP_BUFSIZE); - } else { - // Release endpoint since we don't make any transfer - usbd_edpt_release(p_cdc->rhport, p_cdc->ep_out); - return false; - } -} - //--------------------------------------------------------------------+ // Weak stubs: invoked if no strong implementation is available //--------------------------------------------------------------------+ TU_ATTR_WEAK void tud_cdc_rx_cb(uint8_t itf) { - (void) itf; + (void)itf; } TU_ATTR_WEAK void tud_cdc_rx_wanted_cb(uint8_t itf, char wanted_char) { - (void) itf; - (void) wanted_char; + (void)itf; + (void)wanted_char; } TU_ATTR_WEAK void tud_cdc_tx_complete_cb(uint8_t itf) { - (void) itf; + (void)itf; } TU_ATTR_WEAK void tud_cdc_notify_complete_cb(uint8_t itf) { - (void) itf; + (void)itf; } TU_ATTR_WEAK void tud_cdc_line_state_cb(uint8_t itf, bool dtr, bool rts) { - (void) itf; - (void) dtr; - (void) rts; + (void)itf; + (void)dtr; + (void)rts; } -TU_ATTR_WEAK void tud_cdc_line_coding_cb(uint8_t itf, cdc_line_coding_t const* p_line_coding) { - (void) itf; - (void) p_line_coding; +TU_ATTR_WEAK void tud_cdc_line_coding_cb(uint8_t itf, const cdc_line_coding_t *p_line_coding) { + (void)itf; + (void)p_line_coding; } TU_ATTR_WEAK void tud_cdc_send_break_cb(uint8_t itf, uint16_t duration_ms) { - (void) itf; - (void) duration_ms; + (void)itf; + (void)duration_ms; +} + +//--------------------------------------------------------------------+ +// INTERNAL OBJECT & FUNCTION DECLARATION +//--------------------------------------------------------------------+ +static cdcd_interface_t _cdcd_itf[CFG_TUD_CDC]; +CFG_TUD_MEM_SECTION static cdcd_epbuf_t _cdcd_epbuf[CFG_TUD_CDC]; +static tud_cdc_configure_t _cdcd_cfg = TUD_CDC_CONFIGURE_DEFAULT(); + +TU_ATTR_ALWAYS_INLINE static inline uint8_t find_cdc_itf(uint8_t ep_addr) { + for (uint8_t idx = 0; idx < CFG_TUD_CDC; idx++) { + const cdcd_interface_t *p_cdc = &_cdcd_itf[idx]; + if (ep_addr == p_cdc->stream.rx.ep_addr || ep_addr == p_cdc->stream.tx.ep_addr || + (ep_addr == p_cdc->ep_notify && ep_addr != 0)) { + return idx; + } + } + return TUSB_INDEX_INVALID_8; } //--------------------------------------------------------------------+ // APPLICATION API //--------------------------------------------------------------------+ bool tud_cdc_configure(const tud_cdc_configure_t* driver_cfg) { - TU_VERIFY(driver_cfg); + TU_VERIFY(driver_cfg != NULL); _cdcd_cfg = *driver_cfg; return true; } bool tud_cdc_n_ready(uint8_t itf) { - return tud_ready() && _cdcd_itf[itf].ep_in != 0 && _cdcd_itf[itf].ep_out != 0; + TU_VERIFY(itf < CFG_TUD_CDC); + TU_VERIFY(tud_ready()); + 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); + return in_opened && out_opened; } 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 tud_ready() && tu_bit_test(_cdcd_itf[itf].line_state, 0); + return tu_bit_test(p_cdc->line_state, 0); } uint8_t tud_cdc_n_get_line_state(uint8_t itf) { + TU_VERIFY(itf < CFG_TUD_CDC, 0); return _cdcd_itf[itf].line_state; } -void tud_cdc_n_get_line_coding(uint8_t itf, cdc_line_coding_t* coding) { +void tud_cdc_n_get_line_coding(uint8_t itf, cdc_line_coding_t *coding) { + TU_VERIFY(itf < CFG_TUD_CDC, ); (*coding) = _cdcd_itf[itf].line_coding; } #if CFG_TUD_CDC_NOTIFY bool tud_cdc_n_notify_uart_state (uint8_t itf, const cdc_notify_uart_state_t *state) { - cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - cdcd_epbuf_t* p_epbuf = &_cdcd_epbuf[itf]; + TU_VERIFY(itf < CFG_TUD_CDC); + cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; + cdcd_epbuf_t *p_epbuf = &_cdcd_epbuf[itf]; TU_VERIFY(tud_ready() && p_cdc->ep_notify != 0); TU_VERIFY(usbd_edpt_claim(p_cdc->rhport, p_cdc->ep_notify)); @@ -200,8 +186,9 @@ bool tud_cdc_n_notify_uart_state (uint8_t itf, const cdc_notify_uart_state_t *st } bool tud_cdc_n_notify_conn_speed_change(uint8_t itf, const cdc_notify_conn_speed_change_t* conn_speed_change) { - cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - cdcd_epbuf_t* p_epbuf = &_cdcd_epbuf[itf]; + TU_VERIFY(itf < CFG_TUD_CDC); + cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; + cdcd_epbuf_t *p_epbuf = &_cdcd_epbuf[itf]; TU_VERIFY(tud_ready() && p_cdc->ep_notify != 0); TU_VERIFY(usbd_edpt_claim(p_cdc->rhport, p_cdc->ep_notify)); @@ -218,6 +205,7 @@ bool tud_cdc_n_notify_conn_speed_change(uint8_t itf, const cdc_notify_conn_speed #endif void tud_cdc_n_set_wanted_char(uint8_t itf, char wanted) { + TU_VERIFY(itf < CFG_TUD_CDC, ); _cdcd_itf[itf].wanted_char = wanted; } @@ -225,77 +213,55 @@ void tud_cdc_n_set_wanted_char(uint8_t itf, char wanted) { // READ API //--------------------------------------------------------------------+ uint32_t tud_cdc_n_available(uint8_t itf) { - return tu_fifo_count(&_cdcd_itf[itf].rx_ff); + 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); } uint32_t tud_cdc_n_read(uint8_t itf, void* buffer, uint32_t bufsize) { - cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - uint32_t num_read = tu_fifo_read_n(&p_cdc->rx_ff, buffer, (uint16_t) TU_MIN(bufsize, UINT16_MAX)); - _prep_out_transaction(itf); - return num_read; + 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->stream.rx, buffer, bufsize); } -bool tud_cdc_n_peek(uint8_t itf, uint8_t* chr) { - return tu_fifo_peek(&_cdcd_itf[itf].rx_ff, chr); +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); } void tud_cdc_n_read_flush(uint8_t itf) { - cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - tu_fifo_clear(&p_cdc->rx_ff); - _prep_out_transaction(itf); + TU_VERIFY(itf < CFG_TUD_CDC, ); + cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; + tu_edpt_stream_clear(&p_cdc->stream.rx); + tu_edpt_stream_read_xfer(p_cdc->rhport, &p_cdc->stream.rx); } //--------------------------------------------------------------------+ // WRITE API //--------------------------------------------------------------------+ uint32_t tud_cdc_n_write(uint8_t itf, const void* buffer, uint32_t bufsize) { - cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - uint16_t wr_count = tu_fifo_write_n(&p_cdc->tx_ff, buffer, (uint16_t) TU_MIN(bufsize, UINT16_MAX)); - - // flush if queue more than packet size - if (tu_fifo_count(&p_cdc->tx_ff) >= BULK_PACKET_SIZE - #if CFG_TUD_CDC_TX_BUFSIZE < BULK_PACKET_SIZE - || tu_fifo_full(&p_cdc->tx_ff) // check full if fifo size is less than packet size - #endif - ) { - tud_cdc_n_write_flush(itf); - } - - return wr_count; + 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->stream.tx, buffer, bufsize); } uint32_t tud_cdc_n_write_flush(uint8_t itf) { - cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - cdcd_epbuf_t* p_epbuf = &_cdcd_epbuf[itf]; - TU_VERIFY(tud_ready(), 0); // Skip if usb is not ready yet - - // No data to send - if (0 == tu_fifo_count(&p_cdc->tx_ff)) { - return 0; - } - - TU_VERIFY(usbd_edpt_claim(p_cdc->rhport, p_cdc->ep_in), 0); // Claim the endpoint - - // Pull data from FIFO - const uint16_t count = tu_fifo_read_n(&p_cdc->tx_ff, p_epbuf->epin, CFG_TUD_CDC_EP_BUFSIZE); - - if (count > 0) { - TU_ASSERT(usbd_edpt_xfer(p_cdc->rhport, p_cdc->ep_in, p_epbuf->epin, count), 0); - return count; - } else { - // Release endpoint since we don't make any transfer - // Note: data is dropped if terminal is not connected - usbd_edpt_release(p_cdc->rhport, p_cdc->ep_in); - return 0; - } + 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->stream.tx); } uint32_t tud_cdc_n_write_available(uint8_t itf) { - return tu_fifo_remaining(&_cdcd_itf[itf].tx_ff); + 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->stream.tx); } bool tud_cdc_n_write_clear(uint8_t itf) { - return tu_fifo_clear(&_cdcd_itf[itf].tx_ff); + TU_VERIFY(itf < CFG_TUD_CDC); + cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; + return tu_edpt_stream_clear(&p_cdc->stream.tx); } //--------------------------------------------------------------------+ @@ -304,7 +270,8 @@ bool tud_cdc_n_write_clear(uint8_t itf) { void cdcd_init(void) { tu_memclr(_cdcd_itf, sizeof(_cdcd_itf)); for (uint8_t i = 0; i < CFG_TUD_CDC; i++) { - cdcd_interface_t* p_cdc = &_cdcd_itf[i]; + cdcd_interface_t *p_cdc = &_cdcd_itf[i]; + cdcd_epbuf_t *p_epbuf = &_cdcd_epbuf[i]; p_cdc->wanted_char = (char) -1; @@ -314,44 +281,23 @@ void cdcd_init(void) { p_cdc->line_coding.parity = 0; p_cdc->line_coding.data_bits = 8; - // Config RX fifo - tu_fifo_config(&p_cdc->rx_ff, p_cdc->rx_ff_buf, TU_ARRAY_SIZE(p_cdc->rx_ff_buf), 1, false); + tu_edpt_stream_init(&p_cdc->stream.rx, false, false, false, p_cdc->stream.rx_ff_buf, CFG_TUD_CDC_RX_BUFSIZE, + p_epbuf->epout, 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_fifo_config(&p_cdc->tx_ff, p_cdc->tx_ff_buf, TU_ARRAY_SIZE(p_cdc->tx_ff_buf), 1, _cdcd_cfg.tx_overwritabe_if_not_connected); - - #if OSAL_MUTEX_REQUIRED - osal_mutex_t mutex_rd = osal_mutex_create(&p_cdc->rx_ff_mutex); - osal_mutex_t mutex_wr = osal_mutex_create(&p_cdc->tx_ff_mutex); - TU_ASSERT(mutex_rd != NULL && mutex_wr != NULL, ); - - tu_fifo_config_mutex(&p_cdc->rx_ff, NULL, mutex_rd); - tu_fifo_config_mutex(&p_cdc->tx_ff, mutex_wr, NULL); - #endif + tu_edpt_stream_init(&p_cdc->stream.tx, false, true, _cdcd_cfg.tx_overwritabe_if_not_connected, + p_cdc->stream.tx_ff_buf, CFG_TUD_CDC_TX_BUFSIZE, p_epbuf->epin, CFG_TUD_CDC_EP_BUFSIZE); } } bool cdcd_deinit(void) { - #if OSAL_MUTEX_REQUIRED for(uint8_t i=0; irx_ff.mutex_rd; - const osal_mutex_t mutex_wr = p_cdc->tx_ff.mutex_wr; - - if (mutex_rd != NULL) { - osal_mutex_delete(mutex_rd); - tu_fifo_config_mutex(&p_cdc->rx_ff, NULL, NULL); - } - - if (mutex_wr != NULL) { - osal_mutex_delete(mutex_wr); - tu_fifo_config_mutex(&p_cdc->tx_ff, NULL, NULL); - } + tu_edpt_stream_deinit(&p_cdc->stream.rx); + tu_edpt_stream_deinit(&p_cdc->stream.tx); } - #endif - return true; } @@ -360,74 +306,85 @@ void cdcd_reset(uint8_t rhport) { for (uint8_t i = 0; i < CFG_TUD_CDC; i++) { cdcd_interface_t* p_cdc = &_cdcd_itf[i]; - tu_memclr(p_cdc, ITF_MEM_RESET_SIZE); - if (!_cdcd_cfg.rx_persistent) { - tu_fifo_clear(&p_cdc->rx_ff); - } - if (!_cdcd_cfg.tx_persistent) { - tu_fifo_clear(&p_cdc->tx_ff); - } - tu_fifo_set_overwritable(&p_cdc->tx_ff, _cdcd_cfg.tx_overwritabe_if_not_connected); + + tu_fifo_set_overwritable(&p_cdc->stream.tx.ff, _cdcd_cfg.tx_overwritabe_if_not_connected); // // back to default + tu_edpt_stream_close(&p_cdc->stream.rx); + tu_edpt_stream_close(&p_cdc->stream.tx); } } uint16_t cdcd_open(uint8_t rhport, const tusb_desc_interface_t* itf_desc, uint16_t max_len) { // Only support ACM subclass - TU_VERIFY( TUSB_CLASS_CDC == itf_desc->bInterfaceClass && - CDC_COMM_SUBCLASS_ABSTRACT_CONTROL_MODEL == itf_desc->bInterfaceSubClass, 0); + TU_VERIFY(TUSB_CLASS_CDC == itf_desc->bInterfaceClass && + CDC_COMM_SUBCLASS_ABSTRACT_CONTROL_MODEL == itf_desc->bInterfaceSubClass, + 0); - // Find available interface - cdcd_interface_t* p_cdc; - uint8_t cdc_id; - for (cdc_id = 0; cdc_id < CFG_TUD_CDC; cdc_id++) { - p_cdc = &_cdcd_itf[cdc_id]; - if (p_cdc->ep_in == 0) { - break; - } - } + const uint8_t cdc_id = find_cdc_itf(0); // Find available interface TU_ASSERT(cdc_id < CFG_TUD_CDC, 0); + cdcd_interface_t *p_cdc = &_cdcd_itf[cdc_id]; //------------- Control Interface -------------// p_cdc->rhport = rhport; p_cdc->itf_num = itf_desc->bInterfaceNumber; - uint16_t drv_len = sizeof(tusb_desc_interface_t); - const uint8_t* p_desc = tu_desc_next(itf_desc); + const uint8_t *p_desc = (const uint8_t *)itf_desc; + const uint8_t *desc_end = p_desc + max_len; - // Communication Functional Descriptors - while (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc) && drv_len <= max_len) { - drv_len += tu_desc_len(p_desc); + // Skip all class-specific descriptor + p_desc = tu_desc_next(itf_desc); + while (tu_desc_in_bounds(p_desc, desc_end) && TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc)) { p_desc = tu_desc_next(p_desc); } + // notification endpoint (optional) if (TUSB_DESC_ENDPOINT == tu_desc_type(p_desc)) { - // notification endpoint const tusb_desc_endpoint_t* desc_ep = (const tusb_desc_endpoint_t*) p_desc; TU_ASSERT(usbd_edpt_open(rhport, desc_ep), 0); p_cdc->ep_notify = desc_ep->bEndpointAddress; - drv_len += tu_desc_len(p_desc); p_desc = tu_desc_next(p_desc); } - //------------- Data Interface (if any) -------------// - if ((TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && - (TUSB_CLASS_CDC_DATA == ((const tusb_desc_interface_t*) p_desc)->bInterfaceClass)) { - // next to endpoint descriptor - drv_len += tu_desc_len(p_desc); - p_desc = tu_desc_next(p_desc); + //------------- Data Interface (optional) -------------// + if (TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) { + const tusb_desc_interface_t *data_itf_desc = (const tusb_desc_interface_t *)p_desc; + if (TUSB_CLASS_CDC_DATA == data_itf_desc->bInterfaceClass) { + for (uint8_t e = 0; e < data_itf_desc->bNumEndpoints; e++) { + if (!tu_desc_in_bounds(p_desc, desc_end)) { + break; + } + p_desc = tu_desc_next(p_desc); - // Open endpoint pair - TU_ASSERT(usbd_open_edpt_pair(rhport, p_desc, 2, TUSB_XFER_BULK, &p_cdc->ep_out, &p_cdc->ep_in), 0); + const tusb_desc_endpoint_t *desc_ep = (const tusb_desc_endpoint_t *)p_desc; + TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType && TUSB_XFER_BULK == desc_ep->bmAttributes.xfer, 0); - drv_len += 2 * sizeof(tusb_desc_endpoint_t); - } + 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); + + if (_cdcd_cfg.tx_persistent) { + tu_edpt_stream_write_xfer(rhport, stream_tx); // flush pending data + } else { + tu_edpt_stream_clear(stream_tx); + } + } else { + tu_edpt_stream_t *stream_rx = &p_cdc->stream.rx; - // Prepare for incoming data - _prep_out_transaction(cdc_id); + tu_edpt_stream_open(stream_rx, 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 + } + } - return drv_len; + p_desc = tu_desc_next(p_desc); + } + } + + return p_desc - (const uint8_t *)itf_desc; } // Invoked when a control transfer occurred on an interface of this class @@ -449,7 +406,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_control_requ } TU_VERIFY(itf < CFG_TUD_CDC); - switch (request->bRequest) { //-V2520 //-V2659 + switch (request->bRequest) { case CDC_REQUEST_SET_LINE_CODING: if (stage == CONTROL_STAGE_SETUP) { TU_LOG_DRV(" Set Line Coding\r\n"); @@ -484,15 +441,13 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_control_requ // If enabled: fifo overwriting is disabled if DTR bit is set and vice versa if (_cdcd_cfg.tx_overwritabe_if_not_connected) { - tu_fifo_set_overwritable(&p_cdc->tx_ff, !dtr); + tu_fifo_set_overwritable(&p_cdc->stream.tx.ff, !dtr); } else { - tu_fifo_set_overwritable(&p_cdc->tx_ff, false); + tu_fifo_set_overwritable(&p_cdc->stream.tx.ff, false); } TU_LOG_DRV(" Set Control Line State: DTR = %d, RTS = %d\r\n", dtr, rts); - - // Invoke callback - tud_cdc_line_state_cb(itf, dtr, rts); + tud_cdc_line_state_cb(itf, dtr, rts); // invoke callback } else { // nothing to do } @@ -507,7 +462,6 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, const tusb_control_requ } else { // nothing to do } - break; default: @@ -518,58 +472,45 @@ 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) result; + (void)result; - uint8_t itf; - cdcd_interface_t* p_cdc; - - // Identify which interface to use - for (itf = 0; itf < CFG_TUD_CDC; itf++) { - p_cdc = &_cdcd_itf[itf]; - if ((ep_addr == p_cdc->ep_out) || (ep_addr == p_cdc->ep_in) || (ep_addr == p_cdc->ep_notify)) { - break; - } - } + uint8_t itf = find_cdc_itf(ep_addr); TU_ASSERT(itf < CFG_TUD_CDC); - cdcd_epbuf_t* p_epbuf = &_cdcd_epbuf[itf]; + cdcd_interface_t *p_cdc = &_cdcd_itf[itf]; + tu_edpt_stream_t *stream_rx = &p_cdc->stream.rx; + tu_edpt_stream_t *stream_tx = &p_cdc->stream.tx; - // Received new data - if (ep_addr == p_cdc->ep_out) { - tu_fifo_write_n(&p_cdc->rx_ff, p_epbuf->epout, (uint16_t) xferred_bytes); + // Received new data, move to fifo + if (ep_addr == stream_rx->ep_addr) { + tu_edpt_stream_read_xfer_complete(stream_rx, xferred_bytes); - // Check for wanted char and invoke callback if needed - if (((signed char) p_cdc->wanted_char) != -1) { + // Check for wanted char and invoke wanted callback (multiple times if multiple wanted received) + if (((signed char)p_cdc->wanted_char) != -1) { for (uint32_t i = 0; i < xferred_bytes; i++) { - if ((p_cdc->wanted_char == (char) p_epbuf->epout[i]) && !tu_fifo_empty(&p_cdc->rx_ff)) { + if ((p_cdc->wanted_char == (char)stream_rx->ep_buf[i]) && !tu_edpt_stream_empty(stream_rx)) { tud_cdc_rx_wanted_cb(itf, p_cdc->wanted_char); } } } - // invoke receive callback (if there is still data) - if (!tu_fifo_empty(&p_cdc->rx_ff)) { + // invoke receive callback if there is still data + if (!tu_edpt_stream_empty(stream_rx)) { tud_cdc_rx_cb(itf); } - // prepare for OUT transaction - _prep_out_transaction(itf); + tu_edpt_stream_read_xfer(rhport, stream_rx); // prepare for more data } // Data sent to host, we continue to fetch from tx fifo to send. // Note: This will cause incorrect baudrate set in line coding. // Though maybe the baudrate is not really important !!! - if (ep_addr == p_cdc->ep_in) { + if (ep_addr == stream_tx->ep_addr) { // invoke transmit callback to possibly refill tx fifo tud_cdc_tx_complete_cb(itf); - if (0 == tud_cdc_n_write_flush(itf)) { - // If there is no data left, a ZLP should be sent if - // xferred_bytes is multiple of EP Packet size and not zero - if (0 == tu_fifo_count(&p_cdc->tx_ff) && xferred_bytes > 0 && (0 == (xferred_bytes & (BULK_PACKET_SIZE - 1)))) { - if (usbd_edpt_claim(rhport, p_cdc->ep_in)) { - TU_ASSERT(usbd_edpt_xfer(rhport, p_cdc->ep_in, NULL, 0)); - } - } + if (0 == tu_edpt_stream_write_xfer(rhport, 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); } } diff --git a/src/class/midi/midi_device.c b/src/class/midi/midi_device.c index f065e486a..79e7dfa71 100644 --- a/src/class/midi/midi_device.c +++ b/src/class/midi/midi_device.c @@ -405,8 +405,10 @@ 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_open(&p_midi->ep_stream.tx, desc_ep); + tu_edpt_stream_clear(&p_midi->ep_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 } diff --git a/src/class/vendor/vendor_device.c b/src/class/vendor/vendor_device.c index c916ebe47..7da4d2239 100644 --- a/src/class/vendor/vendor_device.c +++ b/src/class/vendor/vendor_device.c @@ -234,16 +234,18 @@ 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)); - // open endpoint stream, skip if already opened + // open endpoint stream, skip if already opened (multiple IN/OUT endpoints) if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { - if (p_vendor->tx.stream.ep_addr == 0) { - tu_edpt_stream_open(&p_vendor->tx.stream, desc_ep); - tud_vendor_n_write_flush(itf); + tu_edpt_stream_t *stream_tx = &p_vendor->tx.stream; + 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 } } else { - if (p_vendor->rx.stream.ep_addr == 0) { - tu_edpt_stream_open(&p_vendor->rx.stream, desc_ep); - TU_ASSERT(tu_edpt_stream_read_xfer(rhport, &p_vendor->rx.stream) > 0, 0); // prepare for incoming data + tu_edpt_stream_t *stream_rx = &p_vendor->rx.stream; + if (stream_rx->ep_addr == 0) { + tu_edpt_stream_open(stream_rx, desc_ep); + TU_ASSERT(tu_edpt_stream_read_xfer(rhport, stream_rx) > 0, 0); // prepare for incoming data } } } diff --git a/src/common/tusb_private.h b/src/common/tusb_private.h index 367209e57..f82f87b6f 100644 --- a/src/common/tusb_private.h +++ b/src/common/tusb_private.h @@ -100,7 +100,6 @@ 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_fifo_clear(&s->ff); s->ep_addr = desc_ep->bEndpointAddress; s->is_mps512 = tu_edpt_packet_size(desc_ep) == 512; } @@ -113,11 +112,15 @@ TU_ATTR_ALWAYS_INLINE static inline void tu_edpt_stream_close(tu_edpt_stream_t* s->ep_addr = 0; } -// Clear fifo 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 bool tu_edpt_stream_empty(tu_edpt_stream_t *s) { + return tu_fifo_empty(&s->ff); +} + + //--------------------------------------------------------------------+ // Stream Write //--------------------------------------------------------------------+ diff --git a/src/tusb.c b/src/tusb.c index b308e2915..df33f2680 100644 --- a/src/tusb.c +++ b/src/tusb.c @@ -354,8 +354,8 @@ 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; +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); @@ -363,7 +363,7 @@ bool tu_edpt_stream_deinit(tu_edpt_stream_t* s) { if (s->ff.mutex_rd) { osal_mutex_delete(s->ff.mutex_rd); } -#endif + #endif return true; } @@ -412,7 +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 && (0 == (last_xferred_bytes & (mps - 1)))); + TU_VERIFY(tu_fifo_empty(&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; -- 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/common') 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 6b28a4478c9f8fa3993d593360eb5574bbdeda22 Mon Sep 17 00:00:00 2001 From: hathach Date: Sat, 15 Nov 2025 19:46:14 +0700 Subject: make TUP_DCD_EDPT_ISO_ALLOC i.e dcd_edpt_iso_alloc()/dcd_edpt_iso_activate() as default driver implementation. dcd_edpt_close() is deprecated and will be removed from all driver in the future. --- docs/porting.rst | 10 + src/common/tusb_mcu.h | 335 ++++++++++++----------- src/device/dcd.h | 11 +- src/portable/bridgetek/ft9xx/dcd_ft9xx.c | 15 +- src/portable/chipidea/ci_fs/dcd_ci_fs.c | 18 +- src/portable/chipidea/ci_hs/dcd_ci_hs.c | 196 +++++++------ src/portable/dialog/da146xx/dcd_da146xx.c | 16 +- src/portable/microchip/pic/dcd_pic.c | 16 +- src/portable/microchip/pic32mz/dcd_pic32mz.c | 13 +- src/portable/microchip/samd/dcd_samd.c | 11 +- src/portable/microchip/samg/dcd_samg.c | 15 +- src/portable/microchip/samx7x/dcd_samx7x.c | 17 +- src/portable/mindmotion/mm32/dcd_mm32f327x_otg.c | 299 ++++++++++---------- src/portable/nordic/nrf5x/dcd_nrf5x.c | 16 +- src/portable/nxp/khci/dcd_khci.c | 16 +- src/portable/nxp/lpc17_40/dcd_lpc17_40.c | 15 +- src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c | 16 +- src/portable/raspberrypi/pio_usb/dcd_pio_usb.c | 14 +- src/portable/renesas/rusb2/dcd_rusb2.c | 16 +- src/portable/sunxi/dcd_sunxi_musb.c | 16 +- src/portable/ti/msp430x5xx/dcd_msp430x5xx.c | 16 +- src/portable/valentyusb/eptri/dcd_eptri.c | 15 +- src/portable/wch/dcd_ch32_usbfs.c | 13 +- src/portable/wch/dcd_ch32_usbhs.c | 27 +- 24 files changed, 702 insertions(+), 450 deletions(-) (limited to 'src/common') diff --git a/docs/porting.rst b/docs/porting.rst index c3076354c..9b60ec5a2 100644 --- a/docs/porting.rst +++ b/docs/porting.rst @@ -173,12 +173,22 @@ Also make sure to enable endpoint specific interrupts. ``dcd_edpt_close()`` """""""""""""""""""" +.. warning:: + This function is deprecated, ISO transfer should implement dcd_edpt_iso_alloc() and dcd_edpt_iso_activate() instead. + Close an endpoint. his function is used for implementing alternate settings. After calling this, the device should not respond to any packets directed towards this endpoint. When called, this function must abort any transfers in progress through this endpoint, before returning. Implementation is optional. Must be called from the USB task. Interrupts could be disabled or enabled during the call. +``dcd_edpt_iso_alloc() / dcd_edpt_iso_activate()`` +"""""""""""""""""""""""""""""""""""""""""""""""""" + +dcd_edpt_iso_alloc() is used to allocate largest buffer (for all alternative interfaces) for ISO endpoints when device is enumerated. This allows DCD to allocate necessary resources for ISO endpoints in the future. + +dcd_edpt_iso_activate() is used to activate or deactivate ISO endpoint when alternate setting is set with active max packet size. + ``dcd_edpt_xfer()`` """"""""""""""""""" diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index fd922ee56..05ae6929c 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -37,14 +37,14 @@ #ifdef __ARM_ARCH // ARM Architecture set __ARM_FEATURE_UNALIGNED to 1 for mcu supports unaligned access #if defined(__ARM_FEATURE_UNALIGNED) && __ARM_FEATURE_UNALIGNED == 1 - #define TUP_ARCH_STRICT_ALIGN 0 + #define TUP_ARCH_STRICT_ALIGN 0 #else - #define TUP_ARCH_STRICT_ALIGN 1 + #define TUP_ARCH_STRICT_ALIGN 1 #endif #else // TODO default to strict align for others // Should investigate other architecture such as risv, xtensa, mips for optimal setting - #define TUP_ARCH_STRICT_ALIGN 1 + #define TUP_ARCH_STRICT_ALIGN 1 #endif /* USB Controller Attributes for Device, Host or MCU (both) @@ -57,41 +57,41 @@ //--------------------------------------------------------------------+ // NXP //--------------------------------------------------------------------+ -#if TU_CHECK_MCU(OPT_MCU_LPC11UXX, OPT_MCU_LPC13XX, OPT_MCU_LPC15XX) +#if TU_CHECK_MCU(OPT_MCU_LPC11UXX, OPT_MCU_LPC13XX, OPT_MCU_LPC15XX) #define TUP_USBIP_IP3511 - #define TUP_DCD_ENDPOINT_MAX 5 + #define TUP_DCD_ENDPOINT_MAX 5 #elif TU_CHECK_MCU(OPT_MCU_LPC175X_6X, OPT_MCU_LPC177X_8X, OPT_MCU_LPC40XX) - #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_DCD_ENDPOINT_MAX 16 #define TUP_USBIP_OHCI #define TUP_USBIP_OHCI_NXP - #define TUP_OHCI_RHPORTS 2 + #define TUP_OHCI_RHPORTS 2 #elif TU_CHECK_MCU(OPT_MCU_LPC51UXX) - #define TUP_USBIP_IP3511 - #define TUP_DCD_ENDPOINT_MAX 5 + #define TUP_USBIP_IP3511 + #define TUP_DCD_ENDPOINT_MAX 5 #elif TU_CHECK_MCU(OPT_MCU_LPC54) // TODO USB0 has 5, USB1 has 6 #define TUP_USBIP_IP3511 - #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_DCD_ENDPOINT_MAX 6 #elif TU_CHECK_MCU(OPT_MCU_LPC55) // TODO USB0 has 5, USB1 has 6 #define TUP_USBIP_IP3511 #define TUP_USBIP_OHCI #define TUP_USBIP_OHCI_NXP - #define TUP_OHCI_RHPORTS 1 // 1 downstream port + #define TUP_OHCI_RHPORTS 1 // 1 downstream port - #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_DCD_ENDPOINT_MAX 6 #elif TU_CHECK_MCU(OPT_MCU_LPC18XX, OPT_MCU_LPC43XX) // USB0 has 6 with HS PHY, USB1 has 4 only FS #define TUP_USBIP_CHIPIDEA_HS #define TUP_USBIP_EHCI - #define TUP_DCD_ENDPOINT_MAX 6 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_RHPORT_HIGHSPEED 1 #elif TU_CHECK_MCU(OPT_MCU_MCXN9) // USB0 is chipidea FS @@ -102,15 +102,15 @@ #define TUP_USBIP_CHIPIDEA_HS #define TUP_USBIP_EHCI - #define TUP_DCD_ENDPOINT_MAX 8 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_RHPORT_HIGHSPEED 1 #elif TU_CHECK_MCU(OPT_MCU_MCXA15) // USB0 is chipidea FS #define TUP_USBIP_CHIPIDEA_FS #define TUP_USBIP_CHIPIDEA_FS_MCX - #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_DCD_ENDPOINT_MAX 16 #elif TU_CHECK_MCU(OPT_MCU_MIMXRT1XXX) #include "fsl_device_registers.h" @@ -118,60 +118,61 @@ #define TUP_USBIP_CHIPIDEA_HS #define TUP_USBIP_EHCI - #define TUP_DCD_ENDPOINT_MAX 8 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_RHPORT_HIGHSPEED 1 #if __CORTEX_M == 7 - #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT 1 - #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT 1 - #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 32 + #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT 1 + #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT 1 + #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 32 #endif #elif TU_CHECK_MCU(OPT_MCU_KINETIS_KL, OPT_MCU_KINETIS_K32L, OPT_MCU_KINETIS_K) #define TUP_USBIP_CHIPIDEA_FS #define TUP_USBIP_CHIPIDEA_FS_KINETIS - #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_DCD_ENDPOINT_MAX 16 #elif TU_CHECK_MCU(OPT_MCU_MM32F327X) - #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_DCD_EDPT_CLOSE_API //--------------------------------------------------------------------+ // Nordic //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_NRF5X) // 8 CBI + 1 ISO - #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_DCD_EDPT_CLOSE_API #elif TU_CHECK_MCU(OPT_MCU_NRF54) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_NRF - #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_DCD_ENDPOINT_MAX 16 #define CFG_TUH_DWC2_DMA_ENABLE_DEFAULT 0 //--------------------------------------------------------------------+ // Microchip //--------------------------------------------------------------------+ -#elif TU_CHECK_MCU(OPT_MCU_SAMD11, OPT_MCU_SAML2X, OPT_MCU_SAMD21) || \ - TU_CHECK_MCU(OPT_MCU_SAMD51, OPT_MCU_SAME5X) - #define TUP_DCD_ENDPOINT_MAX 8 +#elif TU_CHECK_MCU(OPT_MCU_SAMD11, OPT_MCU_SAML2X, OPT_MCU_SAMD21) || TU_CHECK_MCU(OPT_MCU_SAMD51, OPT_MCU_SAME5X) + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_SAMG) - #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_DCD_ENDPOINT_MAX 6 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY #elif TU_CHECK_MCU(OPT_MCU_SAMX7X) - #define TUP_DCD_ENDPOINT_MAX 10 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 10 + #define TUP_RHPORT_HIGHSPEED 1 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY #elif TU_CHECK_MCU(OPT_MCU_PIC32MZ) - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY -#elif TU_CHECK_MCU(OPT_MCU_PIC32MX, OPT_MCU_PIC32MM, OPT_MCU_PIC32MK) || \ - TU_CHECK_MCU(OPT_MCU_PIC24, OPT_MCU_DSPIC33) - #define TUP_DCD_ENDPOINT_MAX 16 +#elif TU_CHECK_MCU(OPT_MCU_PIC32MX, OPT_MCU_PIC32MM, OPT_MCU_PIC32MK) || TU_CHECK_MCU(OPT_MCU_PIC24, OPT_MCU_DSPIC33) + #define TUP_DCD_ENDPOINT_MAX 16 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY + #define TUP_DCD_EDPT_CLOSE_API //--------------------------------------------------------------------+ // ST @@ -179,23 +180,23 @@ #elif TU_CHECK_MCU(OPT_MCU_STM32F0) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32F1) // - F102, F103 use fsdev // - F105, F107 use dwc2 - #if defined (STM32F105x8) || defined (STM32F105xB) || defined (STM32F105xC) || \ - defined (STM32F107xB) || defined (STM32F107xC) + #if defined(STM32F105x8) || defined(STM32F105xB) || defined(STM32F105xC) || defined(STM32F107xB) || \ + defined(STM32F107xC) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 #define CFG_TUH_DWC2_DMA_ENABLE_DEFAULT 0 - #define TUP_DCD_ENDPOINT_MAX 4 - #elif defined(STM32F102x6) || defined(STM32F102xB) || \ - defined(STM32F103x6) || defined(STM32F103xB) || defined(STM32F103xE) || defined(STM32F103xG) + #define TUP_DCD_ENDPOINT_MAX 4 + #elif defined(STM32F102x6) || defined(STM32F102xB) || defined(STM32F103x6) || defined(STM32F103xB) || \ + defined(STM32F103xE) || defined(STM32F103xG) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #else #error "Unsupported STM32F1 mcu" #endif @@ -205,55 +206,55 @@ #define TUP_USBIP_DWC2_STM32 // FS has 4 ep, HS has 5 ep - #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_DCD_ENDPOINT_MAX 6 #elif TU_CHECK_MCU(OPT_MCU_STM32F3) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32F4) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 // For most mcu, FS has 4, HS has 6. TODO 446/469/479 HS has 9 - #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_DCD_ENDPOINT_MAX 6 #elif TU_CHECK_MCU(OPT_MCU_STM32F7) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 // FS has 6, HS has 9 - #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_DCD_ENDPOINT_MAX 9 // MCU with on-chip HS Phy #if defined(STM32F723xx) || defined(STM32F730xx) || defined(STM32F733xx) - #define TUP_RHPORT_HIGHSPEED 1 // Port0: FS, Port1: HS + #define TUP_RHPORT_HIGHSPEED 1 // Port0: FS, Port1: HS #endif // Enable dcache if DMA is enabled - #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT CFG_TUD_DWC2_DMA_ENABLE - #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT CFG_TUH_DWC2_DMA_ENABLE - #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 32 + #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT CFG_TUD_DWC2_DMA_ENABLE + #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT CFG_TUH_DWC2_DMA_ENABLE + #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 32 #elif TU_CHECK_MCU(OPT_MCU_STM32H7) #include "stm32h7xx.h" #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 - #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_DCD_ENDPOINT_MAX 9 #if __CORTEX_M == 7 // Enable dcache if DMA is enabled - #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT CFG_TUD_DWC2_DMA_ENABLE - #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT CFG_TUH_DWC2_DMA_ENABLE - #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 32 + #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT CFG_TUD_DWC2_DMA_ENABLE + #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT CFG_TUH_DWC2_DMA_ENABLE + #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 32 #endif #elif TU_CHECK_MCU(OPT_MCU_STM32H5) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32G4) // Device controller @@ -262,41 +263,40 @@ // TypeC controller #define TUP_USBIP_TYPEC_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #define TUP_TYPEC_RHPORTS_NUM 1 #elif TU_CHECK_MCU(OPT_MCU_STM32G0) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32C0) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32L0, OPT_MCU_STM32L1) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32L4) // - L4x2, L4x3 use fsdev // - L4x4, L4x6, L4x7, L4x9 use dwc2 - #if defined (STM32L475xx) || defined (STM32L476xx) || \ - defined (STM32L485xx) || defined (STM32L486xx) || defined (STM32L496xx) || \ - defined (STM32L4A6xx) || defined (STM32L4P5xx) || defined (STM32L4Q5xx) || \ - defined (STM32L4R5xx) || defined (STM32L4R7xx) || defined (STM32L4R9xx) || \ - defined (STM32L4S5xx) || defined (STM32L4S7xx) || defined (STM32L4S9xx) + #if defined(STM32L475xx) || defined(STM32L476xx) || defined(STM32L485xx) || defined(STM32L486xx) || \ + defined(STM32L496xx) || defined(STM32L4A6xx) || defined(STM32L4P5xx) || defined(STM32L4Q5xx) || \ + defined(STM32L4R5xx) || defined(STM32L4R7xx) || defined(STM32L4R9xx) || defined(STM32L4S5xx) || \ + defined(STM32L4S7xx) || defined(STM32L4S9xx) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 - #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_DCD_ENDPOINT_MAX 6 #elif defined(STM32L412xx) || defined(STM32L422xx) || defined(STM32L432xx) || defined(STM32L433xx) || \ - defined(STM32L442xx) || defined(STM32L443xx) || defined(STM32L452xx) || defined(STM32L462xx) + defined(STM32L442xx) || defined(STM32L443xx) || defined(STM32L452xx) || defined(STM32L462xx) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #else #error "Unsupported STM32L4 mcu" #endif @@ -304,19 +304,19 @@ #elif TU_CHECK_MCU(OPT_MCU_STM32WB) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32WBA) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 - #define TUP_DCD_ENDPOINT_MAX 9 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_RHPORT_HIGHSPEED 1 #elif TU_CHECK_MCU(OPT_MCU_STM32U5) - #if defined (STM32U535xx) || defined (STM32U545xx) + #if defined(STM32U535xx) || defined(STM32U545xx) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #else #define TUP_USBIP_DWC2 @@ -324,38 +324,38 @@ // U59x/5Ax/5Fx/5Gx are highspeed with built-in HS PHY #if defined(STM32U595xx) || defined(STM32U599xx) || defined(STM32U5A5xx) || defined(STM32U5A9xx) || \ - defined(STM32U5F7xx) || defined(STM32U5F9xx) || defined(STM32U5G7xx) || defined(STM32U5G9xx) - #define TUP_DCD_ENDPOINT_MAX 9 - #define TUP_RHPORT_HIGHSPEED 1 + defined(STM32U5F7xx) || defined(STM32U5F9xx) || defined(STM32U5G7xx) || defined(STM32U5G9xx) + #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_RHPORT_HIGHSPEED 1 #else - #define TUP_DCD_ENDPOINT_MAX 6 + #define TUP_DCD_ENDPOINT_MAX 6 #endif #endif #elif TU_CHECK_MCU(OPT_MCU_STM32L5) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32U0) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32U3) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_STM32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_STM32H7RS, OPT_MCU_STM32N6) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_STM32 // FS has 6, HS has 9 - #define TUP_DCD_ENDPOINT_MAX 9 + #define TUP_DCD_ENDPOINT_MAX 9 // MCU with on-chip HS Phy - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_RHPORT_HIGHSPEED 1 // Enable dcache if DMA is enabled #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT CFG_TUD_DWC2_DMA_ENABLE @@ -366,43 +366,39 @@ // Sony //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_CXD56) - #define TUP_DCD_ENDPOINT_MAX 7 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 7 + #define TUP_RHPORT_HIGHSPEED 1 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY - #define TUP_DCD_EDPT_ISO_ALLOC //--------------------------------------------------------------------+ // TI //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_MSP430x5xx) - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_MSP432E4, OPT_MCU_TM4C123, OPT_MCU_TM4C129) #define TUP_USBIP_MUSB #define TUP_USBIP_MUSB_TI - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 //--------------------------------------------------------------------+ // ValentyUSB (Litex) //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_VALENTYUSB_EPTRI) - #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_DCD_ENDPOINT_MAX 16 //--------------------------------------------------------------------+ // Nuvoton //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_NUC121, OPT_MCU_NUC126) - #define TUP_DCD_ENDPOINT_MAX 8 - #define TUP_DCD_EDPT_ISO_ALLOC + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_NUC120) - #define TUP_DCD_ENDPOINT_MAX 6 - #define TUP_DCD_EDPT_ISO_ALLOC + #define TUP_DCD_ENDPOINT_MAX 6 #elif TU_CHECK_MCU(OPT_MCU_NUC505) - #define TUP_DCD_ENDPOINT_MAX 12 - #define TUP_RHPORT_HIGHSPEED 1 - #define TUP_DCD_EDPT_ISO_ALLOC + #define TUP_DCD_ENDPOINT_MAX 12 + #define TUP_RHPORT_HIGHSPEED 1 //--------------------------------------------------------------------+ // Espressif @@ -410,114 +406,124 @@ #elif TU_CHECK_MCU(OPT_MCU_ESP32S2, OPT_MCU_ESP32S3, OPT_MCU_ESP32H4) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_ESP32 - #define TUP_DCD_ENDPOINT_MAX 7 // only 5 TX FIFO for endpoint IN - #define CFG_TUSB_OS_INC_PATH_DEFAULT freertos/ + #define TUP_DCD_ENDPOINT_MAX 7 // only 5 TX FIFO for endpoint IN + + // clang-format off + #define CFG_TUSB_OS_INC_PATH_DEFAULT freertos/ + // clang-format on #if CFG_TUSB_MCU == OPT_MCU_ESP32S3 #define TUP_MCU_MULTIPLE_CORE 1 #endif // Disable slave if DMA is enabled - #define CFG_TUD_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUD_DWC2_DMA_ENABLE - #define CFG_TUH_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUH_DWC2_DMA_ENABLE + #define CFG_TUD_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUD_DWC2_DMA_ENABLE + #define CFG_TUH_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUH_DWC2_DMA_ENABLE #elif TU_CHECK_MCU(OPT_MCU_ESP32P4) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_ESP32 - #define TUP_RHPORT_HIGHSPEED 1 // port0 FS, port1 HS - #define TUP_DCD_ENDPOINT_MAX 16 // FS 7 ep, HS 16 ep + #define TUP_RHPORT_HIGHSPEED 1 // port0 FS, port1 HS + #define TUP_DCD_ENDPOINT_MAX 16 // FS 7 ep, HS 16 ep - #define CFG_TUSB_OS_INC_PATH_DEFAULT freertos/ + // clang-format off + #define CFG_TUSB_OS_INC_PATH_DEFAULT freertos/ + // clang-format on - #define TUP_MCU_MULTIPLE_CORE 1 + #define TUP_MCU_MULTIPLE_CORE 1 // Disable slave if DMA is enabled - #define CFG_TUD_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUD_DWC2_DMA_ENABLE - #define CFG_TUH_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUH_DWC2_DMA_ENABLE + #define CFG_TUD_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUD_DWC2_DMA_ENABLE + #define CFG_TUH_DWC2_SLAVE_ENABLE_DEFAULT !CFG_TUH_DWC2_DMA_ENABLE // Enable dcache if DMA is enabled - #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT CFG_TUD_DWC2_DMA_ENABLE - #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT CFG_TUH_DWC2_DMA_ENABLE - #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 64 + #define CFG_TUD_MEM_DCACHE_ENABLE_DEFAULT CFG_TUD_DWC2_DMA_ENABLE + #define CFG_TUH_MEM_DCACHE_ENABLE_DEFAULT CFG_TUH_DWC2_DMA_ENABLE + #define CFG_TUSB_MEM_DCACHE_LINE_SIZE_DEFAULT 64 -#elif TU_CHECK_MCU(OPT_MCU_ESP32, OPT_MCU_ESP32C2, OPT_MCU_ESP32C3, OPT_MCU_ESP32C5, OPT_MCU_ESP32C6, OPT_MCU_ESP32C61, OPT_MCU_ESP32H2) +#elif TU_CHECK_MCU(OPT_MCU_ESP32, OPT_MCU_ESP32C2, OPT_MCU_ESP32C3, OPT_MCU_ESP32C5, OPT_MCU_ESP32C6, \ + OPT_MCU_ESP32C61, OPT_MCU_ESP32H2) #if (CFG_TUD_ENABLED || !(defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421)) - #error "MCUs are only supported with CFG_TUH_MAX3421 enabled" + #error "MCUs are only supported with CFG_TUH_MAX3421 enabled" #endif - #define TUP_DCD_ENDPOINT_MAX 0 - #define CFG_TUSB_OS_INC_PATH_DEFAULT freertos/ + #define TUP_DCD_ENDPOINT_MAX 0 + + // clang-format off + #define CFG_TUSB_OS_INC_PATH_DEFAULT freertos/ + // clang-format on + //--------------------------------------------------------------------+ // Dialog //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_DA1469X) - #define TUP_DCD_ENDPOINT_MAX 4 + #define TUP_DCD_ENDPOINT_MAX 4 + #define TUP_DCD_EDPT_CLOSE_API //--------------------------------------------------------------------+ // Raspberry Pi //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_RP2040) - #define TUP_DCD_EDPT_ISO_ALLOC - #define TUP_DCD_ENDPOINT_MAX 16 - #define TUP_MCU_MULTIPLE_CORE 1 + #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_MCU_MULTIPLE_CORE 1 - #define TU_ATTR_FAST_FUNC __not_in_flash("tinyusb") + #define TU_ATTR_FAST_FUNC __not_in_flash("tinyusb") //--------------------------------------------------------------------+ // Silabs //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_EFM32GG) #define TUP_USBIP_DWC2 - #define TUP_DCD_ENDPOINT_MAX 7 + #define TUP_DCD_ENDPOINT_MAX 7 //--------------------------------------------------------------------+ // Renesas //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_RX63X, OPT_MCU_RX65X, OPT_MCU_RX72N, OPT_MCU_RAXXX) #define TUP_USBIP_RUSB2 - #define TUP_DCD_ENDPOINT_MAX 10 + #define TUP_DCD_ENDPOINT_MAX 10 //--------------------------------------------------------------------+ // GigaDevice //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_GD32VF103) #define TUP_USBIP_DWC2 - #define TUP_DCD_ENDPOINT_MAX 4 + #define TUP_DCD_ENDPOINT_MAX 4 //--------------------------------------------------------------------+ // Broadcom //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_BCM2711, OPT_MCU_BCM2835, OPT_MCU_BCM2837) #define TUP_USBIP_DWC2 - #define TUP_DCD_ENDPOINT_MAX 8 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_RHPORT_HIGHSPEED 1 //--------------------------------------------------------------------+ // Infineon //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_XMC4000) #define TUP_USBIP_DWC2 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 //--------------------------------------------------------------------+ // BridgeTek //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_FT90X) - #define TUP_DCD_ENDPOINT_MAX 8 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_RHPORT_HIGHSPEED 1 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY #elif TU_CHECK_MCU(OPT_MCU_FT93X) - #define TUP_DCD_ENDPOINT_MAX 16 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 16 + #define TUP_RHPORT_HIGHSPEED 1 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY //--------------------------------------------------------------------+ // Allwinner //--------------------------------------------------------------------+ #elif TU_CHECK_MCU(OPT_MCU_F1C100S) - #define TUP_DCD_ENDPOINT_MAX 4 + #define TUP_DCD_ENDPOINT_MAX 4 //--------------------------------------------------------------------+ // WCH @@ -527,31 +533,31 @@ #define TUP_USBIP_WCH_USBFS #if !defined(CFG_TUD_WCH_USBIP_USBFS) - #define CFG_TUD_WCH_USBIP_USBFS 0 + #define CFG_TUD_WCH_USBIP_USBFS 0 #endif #if !defined(CFG_TUD_WCH_USBIP_USBHS) - #define CFG_TUD_WCH_USBIP_USBHS (CFG_TUD_WCH_USBIP_USBFS ? 0 : 1) + #define CFG_TUD_WCH_USBIP_USBHS (CFG_TUD_WCH_USBIP_USBFS ? 0 : 1) #endif - #define TUP_RHPORT_HIGHSPEED CFG_TUD_WCH_USBIP_USBHS - #define TUP_DCD_ENDPOINT_MAX (CFG_TUD_WCH_USBIP_USBHS ? 16 : 8) + #define TUP_RHPORT_HIGHSPEED CFG_TUD_WCH_USBIP_USBHS + #define TUP_DCD_ENDPOINT_MAX (CFG_TUD_WCH_USBIP_USBHS ? 16 : 8) #elif TU_CHECK_MCU(OPT_MCU_CH32V103) #define TUP_USBIP_WCH_USBFS #if !defined(CFG_TUD_WCH_USBIP_USBFS) - #define CFG_TUD_WCH_USBIP_USBFS 1 + #define CFG_TUD_WCH_USBIP_USBFS 1 #endif - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_CH32V20X) // v20x support both port0 FSDEV (USBD) and port1 USBFS #define TUP_USBIP_WCH_USBFS #ifndef CFG_TUH_WCH_USBIP_USBFS - #define CFG_TUH_WCH_USBIP_USBFS 1 + #define CFG_TUH_WCH_USBIP_USBFS 1 #endif #define TUP_USBIP_FSDEV @@ -559,14 +565,14 @@ // default to FSDEV for device #if !defined(CFG_TUD_WCH_USBIP_USBFS) - #define CFG_TUD_WCH_USBIP_USBFS 0 + #define CFG_TUD_WCH_USBIP_USBFS 0 #endif #if !defined(CFG_TUD_WCH_USBIP_FSDEV) - #define CFG_TUD_WCH_USBIP_FSDEV (CFG_TUD_WCH_USBIP_USBFS ? 0 : 1) + #define CFG_TUD_WCH_USBIP_FSDEV (CFG_TUD_WCH_USBIP_USBFS ? 0 : 1) #endif - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_CH32V307) // v307 support both FS and HS, default to HS @@ -574,15 +580,15 @@ #define TUP_USBIP_WCH_USBFS #if !defined(CFG_TUD_WCH_USBIP_USBFS) - #define CFG_TUD_WCH_USBIP_USBFS 0 + #define CFG_TUD_WCH_USBIP_USBFS 0 #endif #if !defined(CFG_TUD_WCH_USBIP_USBHS) - #define CFG_TUD_WCH_USBIP_USBHS (CFG_TUD_WCH_USBIP_USBFS ? 0 : 1) + #define CFG_TUD_WCH_USBIP_USBHS (CFG_TUD_WCH_USBIP_USBFS ? 0 : 1) #endif - #define TUP_RHPORT_HIGHSPEED CFG_TUD_WCH_USBIP_USBHS - #define TUP_DCD_ENDPOINT_MAX (CFG_TUD_WCH_USBIP_USBHS ? 16 : 8) + #define TUP_RHPORT_HIGHSPEED CFG_TUD_WCH_USBIP_USBHS + #define TUP_DCD_ENDPOINT_MAX (CFG_TUD_WCH_USBIP_USBHS ? 16 : 8) //--------------------------------------------------------------------+ // Analog Devices @@ -590,8 +596,8 @@ #elif TU_CHECK_MCU(OPT_MCU_MAX32650, OPT_MCU_MAX32666, OPT_MCU_MAX32690, OPT_MCU_MAX78002) #define TUP_USBIP_MUSB #define TUP_USBIP_MUSB_ADI - #define TUP_DCD_ENDPOINT_MAX 12 - #define TUP_RHPORT_HIGHSPEED 1 + #define TUP_DCD_ENDPOINT_MAX 12 + #define TUP_RHPORT_HIGHSPEED 1 #define TUD_ENDPOINT_ONE_DIRECTION_ONLY //--------------------------------------------------------------------+ @@ -600,46 +606,44 @@ #elif TU_CHECK_MCU(OPT_MCU_AT32F403A_407) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_AT32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_AT32F413) #define TUP_USBIP_FSDEV #define TUP_USBIP_FSDEV_AT32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_AT32F415) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_AT32 - #define TUP_DCD_ENDPOINT_MAX 4 + #define TUP_DCD_ENDPOINT_MAX 4 #elif TU_CHECK_MCU(OPT_MCU_AT32F435_437) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_AT32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_AT32F423) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_AT32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #elif TU_CHECK_MCU(OPT_MCU_AT32F402_405) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_AT32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 // AT32F405xx has on-chip HS PHY - #if defined(AT32F405CBT7) || defined(AT32F405CBU7) || \ - defined(AT32F405CCT7) || defined(AT32F405CCU7) || \ - defined(AT32F405KBU7_4) || defined(AT32F405KCU7_4) || \ - defined(AT32F405RBT7_7) || defined(AT32F405RBT7) || \ - defined(AT32F405RCT7_7) || defined(AT32F405RCT7) - #define TUP_RHPORT_HIGHSPEED 1 // Port0: FS, Port1: HS + #if defined(AT32F405CBT7) || defined(AT32F405CBU7) || defined(AT32F405CCT7) || defined(AT32F405CCU7) || \ + defined(AT32F405KBU7_4) || defined(AT32F405KCU7_4) || defined(AT32F405RBT7_7) || defined(AT32F405RBT7) || \ + defined(AT32F405RCT7_7) || defined(AT32F405RCT7) + #define TUP_RHPORT_HIGHSPEED 1 // Port0: FS, Port1: HS #endif #elif TU_CHECK_MCU(OPT_MCU_AT32F425) #define TUP_USBIP_DWC2 #define TUP_USBIP_DWC2_AT32 - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #endif @@ -649,7 +653,7 @@ #if defined(CFG_TUH_MAX3421) && CFG_TUH_MAX3421 #ifndef CFG_TUH_MAX3421_ENDPOINT_TOTAL - #define CFG_TUH_MAX3421_ENDPOINT_TOTAL (8 + 4*(CFG_TUH_DEVICE_MAX-1)) + #define CFG_TUH_MAX3421_ENDPOINT_TOTAL (8 + 4 * (CFG_TUH_DEVICE_MAX - 1)) #endif #endif @@ -659,17 +663,17 @@ //--------------------------------------------------------------------+ #ifndef TUP_MCU_MULTIPLE_CORE -#define TUP_MCU_MULTIPLE_CORE 0 + #define TUP_MCU_MULTIPLE_CORE 0 #endif #if !defined(TUP_DCD_ENDPOINT_MAX) && defined(CFG_TUD_ENABLED) && CFG_TUD_ENABLED #warning "TUP_DCD_ENDPOINT_MAX is not defined for this MCU, default to 8" - #define TUP_DCD_ENDPOINT_MAX 8 + #define TUP_DCD_ENDPOINT_MAX 8 #endif // Default to fullspeed if not defined #ifndef TUP_RHPORT_HIGHSPEED - #define TUP_RHPORT_HIGHSPEED 0 + #define TUP_RHPORT_HIGHSPEED 0 #endif // fast function, normally mean placing function in SRAM @@ -677,8 +681,13 @@ #define TU_ATTR_FAST_FUNC #endif -// USBIP that support ISO alloc & activate API -#if defined(TUP_USBIP_DWC2) || defined(TUP_USBIP_FSDEV) || defined(TUP_USBIP_MUSB) +#if defined(TUP_USBIP_CHIPIDEA_FS) || defined(TUP_USBIP_IP3511) || defined(TUP_USBIP_RUSB2) || \ + (defined(TUP_USBIP_WCH_USBFS) && CFG_TUD_WCH_USBIP_USBFS) + #define TUP_DCD_EDPT_CLOSE_API +#endif + +// USBIP implement dcd_edpt_close() and does not support ISO alloc & activate API +#ifndef TUP_DCD_EDPT_CLOSE_API #define TUP_DCD_EDPT_ISO_ALLOC #endif diff --git a/src/device/dcd.h b/src/device/dcd.h index 1b0289280..353f836ee 100644 --- a/src/device/dcd.h +++ b/src/device/dcd.h @@ -171,7 +171,12 @@ void dcd_edpt_stall (uint8_t rhport, uint8_t ep_addr); // This API never calls with control endpoints, since it is auto cleared when receiving setup packet void dcd_edpt_clear_stall (uint8_t rhport, uint8_t ep_addr); -#ifdef TUP_DCD_EDPT_ISO_ALLOC +#ifdef TUP_DCD_EDPT_CLOSE_API +// Close an endpoint. +void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr); + +#else + // Allocate packet buffer used by ISO endpoints // Some MCU need manual packet buffer allocation, we allocate the largest size to avoid clustering bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size); @@ -179,10 +184,6 @@ bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet // Configure and enable an ISO endpoint according to descriptor bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep); -#else -// Close an endpoint. -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr); - #endif //--------------------------------------------------------------------+ diff --git a/src/portable/bridgetek/ft9xx/dcd_ft9xx.c b/src/portable/bridgetek/ft9xx/dcd_ft9xx.c index 34a8be3b6..6ed4be410 100644 --- a/src/portable/bridgetek/ft9xx/dcd_ft9xx.c +++ b/src/portable/bridgetek/ft9xx/dcd_ft9xx.c @@ -806,6 +806,20 @@ void dcd_edpt_close_all(uint8_t rhport) _ft9xx_reset_edpts(); } +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} + + // Submit a transfer, When complete dcd_event_xfer_complete() is invoked to notify the stack bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t *buffer, uint16_t total_bytes) { @@ -1200,5 +1214,4 @@ void ft9xx_usbd_pm_ISR(void) } } } - #endif diff --git a/src/portable/chipidea/ci_fs/dcd_ci_fs.c b/src/portable/chipidea/ci_fs/dcd_ci_fs.c index 11ddb683f..8b5c42aa2 100644 --- a/src/portable/chipidea/ci_fs/dcd_ci_fs.c +++ b/src/portable/chipidea/ci_fs/dcd_ci_fs.c @@ -399,6 +399,7 @@ void dcd_edpt_close_all(uint8_t rhport) } } +#ifdef TUP_DCD_EDPT_CLOSE_API void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { const unsigned epn = tu_edpt_number(ep_addr); @@ -419,6 +420,22 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) dcd_int_enable(rhport); } +#else + +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void) rhport; + (void) ep_addr; + (void) largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { + (void) rhport; + (void) desc_ep; + return false; +} +#endif + bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { const unsigned epn = tu_edpt_number(ep_addr); @@ -564,5 +581,4 @@ void dcd_int_handler(uint8_t rhport) process_tokdne(rhport); } } - #endif diff --git a/src/portable/chipidea/ci_hs/dcd_ci_hs.c b/src/portable/chipidea/ci_hs/dcd_ci_hs.c index 244f5a2d4..8c5253eb9 100644 --- a/src/portable/chipidea/ci_hs/dcd_ci_hs.c +++ b/src/portable/chipidea/ci_hs/dcd_ci_hs.c @@ -64,16 +64,19 @@ bool dcd_dcache_clean_invalidate(void const* addr, uint32_t data_size) { //--------------------------------------------------------------------+ // ENDPTCTRL +enum { + ENDPTCTRL_TYPE_POS = 2, // Endpoint type is 2-bit field +}; + 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) + ENDPTCTRL_ENABLE = TU_BIT(7), }; -enum { - ENDPTCTRL_TYPE_POS = 2, // Endpoint type is 2-bit field -}; +#define ENDPTCTRL_TYPE(_type) ((_type) << ENDPTCTRL_TYPE_POS) + #define ENDPTCTRL_RESET_MASK (ENDPTCTRL_TYPE(TUSB_XFER_BULK) | (ENDPTCTRL_TYPE(TUSB_XFER_BULK) << 16u)) // USBSTS, USBINTR enum { @@ -170,9 +173,7 @@ static dcd_data_t _dcd_data; // Prototypes and Helper Functions //--------------------------------------------------------------------+ -TU_ATTR_ALWAYS_INLINE -static inline uint8_t ci_ep_count(ci_hs_regs_t const* dcd_reg) -{ +TU_ATTR_ALWAYS_INLINE static inline uint8_t ci_ep_count(const ci_hs_regs_t *dcd_reg) { return dcd_reg->DCCPARAMS & DCCPARAMS_DEN_MASK; } @@ -191,9 +192,8 @@ static void bus_reset(uint8_t rhport) // type (e.g. bulk). Leaving an un-configured endpoint control will cause undefined behavior // for the data PID tracking on the active endpoint. uint8_t const ep_count = ci_ep_count(dcd_reg); - for( uint8_t i=1; i < ep_count; i++) - { - dcd_reg->ENDPTCTRL[i] = (TUSB_XFER_BULK << ENDPTCTRL_TYPE_POS) | (TUSB_XFER_BULK << (16+ENDPTCTRL_TYPE_POS)); + for (uint8_t i = 1; i < ep_count; i++) { + dcd_reg->ENDPTCTRL[i] = ENDPTCTRL_RESET_MASK; } //------------- Clear All Registers -------------// @@ -315,26 +315,25 @@ void dcd_sof_enable(uint8_t rhport, bool en) // HELPER //--------------------------------------------------------------------+ -static void qtd_init(dcd_qtd_t* p_qtd, void * data_ptr, uint16_t total_bytes) -{ - dcd_dcache_clean_invalidate((uint32_t*) tu_align((uint32_t) data_ptr, 4), total_bytes); +static void qtd_init(dcd_qtd_t *p_qtd, void *data_ptr, uint16_t total_bytes) { + dcd_dcache_clean_invalidate((uint32_t *)tu_align((uint32_t)data_ptr, 4), total_bytes); 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; + 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; + 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; + const uint32_t bufend = p_qtd->buffer[0] + total_bytes; + for (uint8_t i = 1; i < 5; i++) { + const uint32_t next_page = tu_align4k(p_qtd->buffer[i - 1]) + 4096; + if (bufend <= next_page) { + break; + } p_qtd->buffer[i] = next_page; @@ -346,6 +345,35 @@ static void qtd_init(dcd_qtd_t* p_qtd, void * data_ptr, uint16_t total_bytes) //--------------------------------------------------------------------+ // DCD Endpoint Port //--------------------------------------------------------------------+ +TU_ATTR_ALWAYS_INLINE static inline void ep_ctrl_write(volatile uint32_t *epctrl, uint8_t dir, uint32_t value) { + if (dir == TUSB_DIR_OUT) { + *epctrl = (*epctrl & 0xFFFF0000u) | value; + } else { + *epctrl = (*epctrl & 0x0000FFFFu) | (value << 16); + } +} + +TU_ATTR_ALWAYS_INLINE static inline void ep_ctrl_mask(volatile uint32_t *epctrl, uint8_t dir, uint32_t and_mask, + uint32_t or_mask) { + uint32_t value = *epctrl; + if (and_mask != 0) { + value &= (dir == TUSB_DIR_OUT) ? and_mask : (and_mask << 16u); + } + if (or_mask != 0) { + value |= (dir == TUSB_DIR_OUT) ? or_mask : (or_mask << 16u); + } + + *epctrl = value; +} + +TU_ATTR_ALWAYS_INLINE static inline void ep_ctrl_set(volatile uint32_t *epctrl, uint8_t dir, uint32_t mask) { + ep_ctrl_mask(epctrl, dir, 0, mask); +} + +TU_ATTR_ALWAYS_INLINE static inline void ep_ctrl_clear(volatile uint32_t *epctrl, uint8_t dir, uint32_t mask) { + ep_ctrl_mask(epctrl, dir, ~mask, 0); +} + void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) { uint8_t const epnum = tu_edpt_number(ep_addr); @@ -366,80 +394,91 @@ void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) // data toggle also need to be reset ci_hs_regs_t* dcd_reg = CI_HS_REG(rhport); dcd_reg->ENDPTCTRL[epnum] |= ENDPTCTRL_TOGGLE_RESET << ( dir ? 16 : 0 ); - dcd_reg->ENDPTCTRL[epnum] &= ~(ENDPTCTRL_STALL << ( 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); - - ci_hs_regs_t* dcd_reg = CI_HS_REG(rhport); - - // Must not exceed max endpoint number - TU_ASSERT(epnum < ci_ep_count(dcd_reg)); - - //------------- Prepare Queue Head -------------// - dcd_qhd_t * p_qhd = &_dcd_data.qhd[epnum][dir]; +static void qhd_init(dcd_qhd_t *p_qhd, uint16_t max_packet_size, uint8_t iso_mult) { 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->max_packet_size = max_packet_size; + p_qhd->iso_mult = iso_mult; p_qhd->qtd_overlay.next = QTD_NEXT_INVALID; - dcd_dcache_clean_invalidate(&_dcd_data, sizeof(dcd_data_t)); +} - // Enable EP Control - uint32_t const epctrl = (p_endpoint_desc->bmAttributes.xfer << ENDPTCTRL_TYPE_POS) | ENDPTCTRL_ENABLE | ENDPTCTRL_TOGGLE_RESET; +bool dcd_edpt_open(uint8_t rhport, const tusb_desc_endpoint_t *endpoint_desc) { + ci_hs_regs_t *dcd_reg = CI_HS_REG(rhport); + const uint8_t epnum = tu_edpt_number(endpoint_desc->bEndpointAddress); + const uint8_t dir = tu_edpt_dir(endpoint_desc->bEndpointAddress); + const uint8_t xfer_type = endpoint_desc->bmAttributes.xfer; + TU_ASSERT(epnum < ci_ep_count(dcd_reg)); - 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); - } + dcd_qhd_t *p_qhd = &_dcd_data.qhd[epnum][dir]; + qhd_init(p_qhd, tu_edpt_packet_size(endpoint_desc), 0u); + + // EP Control + const uint32_t epctrl = ENDPTCTRL_TYPE(xfer_type) | ENDPTCTRL_ENABLE | ENDPTCTRL_TOGGLE_RESET; + ep_ctrl_write(&dcd_reg->ENDPTCTRL[epnum], dir, epctrl); return true; } -void dcd_edpt_close_all (uint8_t rhport) -{ - ci_hs_regs_t* dcd_reg = CI_HS_REG(rhport); +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; - // Disable all non-control endpoints - uint8_t const ep_count = ci_ep_count(dcd_reg); - for (uint8_t epnum = 1; epnum < 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; + ci_hs_regs_t *dcd_reg = CI_HS_REG(rhport); + const uint8_t epnum = tu_edpt_number(ep_addr); + const uint8_t dir = tu_edpt_dir(ep_addr); + TU_ASSERT(epnum < ci_ep_count(dcd_reg)); - 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)); - } + // EP Control: set type but not enabled yet + const uint32_t epctrl = ENDPTCTRL_TYPE(TUSB_XFER_ISOCHRONOUS) | ENDPTCTRL_TOGGLE_RESET; + ep_ctrl_write(&dcd_reg->ENDPTCTRL[epnum], dir, epctrl); + + return true; } -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); +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + const uint8_t epnum = tu_edpt_number(desc_ep->bEndpointAddress); + const uint8_t dir = tu_edpt_dir(desc_ep->bEndpointAddress); + ci_hs_regs_t *dcd_reg = CI_HS_REG(rhport); + TU_ASSERT(epnum < ci_ep_count(dcd_reg)); - ci_hs_regs_t* dcd_reg = CI_HS_REG(rhport); + dcd_qhd_t *p_qhd = &_dcd_data.qhd[epnum][dir]; + volatile uint32_t *endptctrl = &dcd_reg->ENDPTCTRL[epnum]; - _dcd_data.qhd[epnum][dir].qtd_overlay.halted = 1; + // _dcd_data.qhd[epnum][dir].qtd_overlay.halted = 1; + // dcd_dcache_clean_invalidate(&_dcd_data, sizeof(dcd_data_t)); // Flush EP - uint32_t const flush_mask = TU_BIT(epnum + (dir ? 16 : 0)); - dcd_reg->ENDPTFLUSH = flush_mask; - while(dcd_reg->ENDPTFLUSH & flush_mask); + const uint32_t flush_mask = TU_BIT(epnum + (dir ? 16 : 0)); + dcd_reg->ENDPTFLUSH = flush_mask; + while (dcd_reg->ENDPTFLUSH & flush_mask) {} + + // disable to change max packet size + ep_ctrl_clear(endptctrl, dir, ENDPTCTRL_ENABLE); - // Clear EP enable - dcd_reg->ENDPTCTRL[epnum] &=~(ENDPTCTRL_ENABLE << (dir ? 16 : 0)); + qhd_init(p_qhd, tu_edpt_packet_size(desc_ep), 1u); + + ep_ctrl_set(endptctrl, dir, ENDPTCTRL_ENABLE); + + return true; +} + +void dcd_edpt_close_all(uint8_t rhport) { + ci_hs_regs_t *dcd_reg = CI_HS_REG(rhport); + + // Disable all non-control endpoints + uint8_t const ep_count = ci_ep_count(dcd_reg); + for (uint8_t epnum = 1; epnum < 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] = ENDPTCTRL_RESET_MASK; + } } static void qhd_start_xfer(uint8_t rhport, uint8_t epnum, uint8_t dir) @@ -678,5 +717,4 @@ void dcd_int_handler(uint8_t rhport) dcd_event_sof(rhport, frame, true); } } - #endif diff --git a/src/portable/dialog/da146xx/dcd_da146xx.c b/src/portable/dialog/da146xx/dcd_da146xx.c index 56ecb7575..868a10dd9 100644 --- a/src/portable/dialog/da146xx/dcd_da146xx.c +++ b/src/portable/dialog/da146xx/dcd_da146xx.c @@ -1025,6 +1025,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) tu_memclr(xfer, sizeof(*xfer)); } +#if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void) rhport; + (void) ep_addr; + (void) largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { + (void) rhport; + (void) desc_ep; + return false; +} +#endif + 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); @@ -1218,5 +1233,4 @@ void dcd_int_handler(uint8_t rhport) handle_alt_ev(); } } - #endif diff --git a/src/portable/microchip/pic/dcd_pic.c b/src/portable/microchip/pic/dcd_pic.c index b4a698199..8413a7ddd 100644 --- a/src/portable/microchip/pic/dcd_pic.c +++ b/src/portable/microchip/pic/dcd_pic.c @@ -687,6 +687,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) if (ie) intr_enable(rhport); } +#if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void) rhport; + (void) ep_addr; + (void) largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { + (void) rhport; + (void) desc_ep; + return false; +} +#endif + bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { @@ -866,5 +881,4 @@ void dcd_int_handler(uint8_t rhport) intr_clear(rhport); } - #endif diff --git a/src/portable/microchip/pic32mz/dcd_pic32mz.c b/src/portable/microchip/pic32mz/dcd_pic32mz.c index cbd157d6b..b039bb505 100644 --- a/src/portable/microchip/pic32mz/dcd_pic32mz.c +++ b/src/portable/microchip/pic32mz/dcd_pic32mz.c @@ -438,12 +438,20 @@ void dcd_edpt_close_all (uint8_t rhport) } } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) -{ +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { (void) rhport; (void) ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; } + 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); @@ -744,5 +752,4 @@ void dcd_int_handler(uint8_t rhport) } } } - #endif diff --git a/src/portable/microchip/samd/dcd_samd.c b/src/portable/microchip/samd/dcd_samd.c index e43439f2a..383cf60e5 100644 --- a/src/portable/microchip/samd/dcd_samd.c +++ b/src/portable/microchip/samd/dcd_samd.c @@ -245,11 +245,17 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) return true; } -void dcd_edpt_close (uint8_t rhport, uint8_t ep_addr) { +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { (void) rhport; (void) ep_addr; + (void)largest_packet_size; + return false; +} - // TODO: implement if necessary? +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; } void dcd_edpt_close_all (uint8_t rhport) @@ -427,5 +433,4 @@ void dcd_int_handler (uint8_t rhport) // Handle complete transfer maybe_transfer_complete(); } - #endif diff --git a/src/portable/microchip/samg/dcd_samg.c b/src/portable/microchip/samg/dcd_samg.c index a5c768839..879b2eb2b 100644 --- a/src/portable/microchip/samg/dcd_samg.c +++ b/src/portable/microchip/samg/dcd_samg.c @@ -270,9 +270,17 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) return true; } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { - (void) rhport; (void) ep_addr; - // TODO implement dcd_edpt_close() +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; } void dcd_edpt_close_all (uint8_t rhport) @@ -494,5 +502,4 @@ void dcd_int_handler(uint8_t rhport) } } } - #endif diff --git a/src/portable/microchip/samx7x/dcd_samx7x.c b/src/portable/microchip/samx7x/dcd_samx7x.c index 8aec1568d..51308f7a2 100644 --- a/src/portable/microchip/samx7x/dcd_samx7x.c +++ b/src/portable/microchip/samx7x/dcd_samx7x.c @@ -559,15 +559,17 @@ void dcd_edpt_close_all (uint8_t rhport) // TODO implement dcd_edpt_close_all() } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) -{ +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { (void) rhport; - uint8_t const epnum = tu_edpt_number(ep_addr); + (void) ep_addr; + (void) largest_packet_size; + return false; +} - // Disable endpoint interrupt - USB_REG->DEVIDR = 1 << (DEVIDR_PEP_0_Pos + epnum); - // Disable EP - USB_REG->DEVEPT &=~(1 << (DEVEPT_EPEN0_Pos + epnum)); +bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { + (void) rhport; + (void) desc_ep; + return false; } static void dcd_transmit_packet(xfer_ctl_t * xfer, uint8_t ep_ix) @@ -773,5 +775,4 @@ void dcd_edpt_clear_stall (uint8_t rhport, uint8_t ep_addr) USB_REG->DEVEPTIDR[epnum] = DEVEPTIDR_CTRL_STALLRQC; USB_REG->DEVEPTIER[epnum] = HSTPIPIER_RSTDTS; } - #endif diff --git a/src/portable/mindmotion/mm32/dcd_mm32f327x_otg.c b/src/portable/mindmotion/mm32/dcd_mm32f327x_otg.c index 1ce3da27e..a232810a2 100644 --- a/src/portable/mindmotion/mm32/dcd_mm32f327x_otg.c +++ b/src/portable/mindmotion/mm32/dcd_mm32f327x_otg.c @@ -26,7 +26,7 @@ #include "tusb_option.h" -#if CFG_TUD_ENABLED && ( CFG_TUSB_MCU == OPT_MCU_MM32F327X ) +#if CFG_TUD_ENABLED && (CFG_TUSB_MCU == OPT_MCU_MM32F327X) #include "reg_usb_otg_fs.h" #include "mm32_device.h" @@ -43,56 +43,53 @@ enum { TOK_PID_SETUP = 0xDu, }; -typedef struct TU_ATTR_PACKED -{ +typedef struct TU_ATTR_PACKED { union { uint32_t head; struct { union { struct { - uint16_t : 2; - uint16_t tok_pid : 4; - uint16_t data : 1; - uint16_t own : 1; - uint16_t : 8; + uint16_t : 2; + uint16_t tok_pid : 4; + uint16_t data : 1; + uint16_t own : 1; + uint16_t : 8; }; struct { - uint16_t : 2; - uint16_t bdt_stall: 1; - uint16_t dts : 1; - uint16_t ninc : 1; - uint16_t keep : 1; - uint16_t : 10; + uint16_t : 2; + uint16_t bdt_stall : 1; + uint16_t dts : 1; + uint16_t ninc : 1; + uint16_t keep : 1; + uint16_t : 10; }; }; - uint16_t bc : 10; - uint16_t : 6; + uint16_t bc : 10; + uint16_t : 6; }; }; uint8_t *addr; -}buffer_descriptor_t; +} buffer_descriptor_t; -TU_VERIFY_STATIC( sizeof(buffer_descriptor_t) == 8, "size is not correct" ); +TU_VERIFY_STATIC(sizeof(buffer_descriptor_t) == 8, "size is not correct"); -typedef struct TU_ATTR_PACKED -{ +typedef struct TU_ATTR_PACKED { union { uint32_t state; struct { - uint32_t max_packet_size :11; + uint32_t max_packet_size : 11; uint32_t : 5; uint32_t odd : 1; - uint32_t :15; + uint32_t : 15; }; }; uint16_t length; uint16_t remaining; -}endpoint_state_t; +} endpoint_state_t; -TU_VERIFY_STATIC( sizeof(endpoint_state_t) == 8, "size is not correct" ); +TU_VERIFY_STATIC(sizeof(endpoint_state_t) == 8, "size is not correct"); -typedef struct -{ +typedef struct { union { /* [#EP][OUT,IN][EVEN,ODD] */ buffer_descriptor_t bdt[16][2][2]; @@ -104,7 +101,7 @@ typedef struct }; uint8_t setup_packet[8]; uint8_t addr; -}dcd_data_t; +} dcd_data_t; //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION @@ -112,10 +109,9 @@ typedef struct // BDT(Buffer Descriptor Table) must be 256-byte aligned CFG_TUD_MEM_SECTION TU_ATTR_ALIGNED(512) static dcd_data_t _dcd; -TU_VERIFY_STATIC( sizeof(_dcd.bdt) == 512, "size is not correct" ); +TU_VERIFY_STATIC(sizeof(_dcd.bdt) == 512, "size is not correct"); -static void prepare_next_setup_packet(uint8_t rhport) -{ +static void prepare_next_setup_packet(uint8_t rhport) { const unsigned out_odd = _dcd.endpoint[0][0].odd; const unsigned in_odd = _dcd.endpoint[0][1].odd; if (_dcd.bdt[0][0][out_odd].own) { @@ -126,12 +122,10 @@ static void prepare_next_setup_packet(uint8_t rhport) _dcd.bdt[0][0][out_odd ^ 1].data = 1; _dcd.bdt[0][1][in_odd].data = 1; _dcd.bdt[0][1][in_odd ^ 1].data = 0; - dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_OUT), - _dcd.setup_packet, sizeof(_dcd.setup_packet)); + dcd_edpt_xfer(rhport, tu_edpt_addr(0, TUSB_DIR_OUT), _dcd.setup_packet, sizeof(_dcd.setup_packet)); } -static void process_stall(uint8_t rhport) -{ +static void process_stall(uint8_t rhport) { if (USB_OTG_FS->EP_CTL[0] & USB_ENDPT_EPSTALL_MASK) { /* clear stall condition of the control pipe */ prepare_next_setup_packet(rhport); @@ -139,13 +133,12 @@ static void process_stall(uint8_t rhport) } } -static void process_tokdne(uint8_t rhport) -{ - const unsigned s = USB_OTG_FS->STAT; - USB_OTG_FS->INT_STAT = USB_ISTAT_TOKDNE_MASK; /* fetch the next token if received */ - buffer_descriptor_t *bd = (buffer_descriptor_t *)&_dcd.bda[s]; - endpoint_state_t *ep = &_dcd.endpoint_unified[s >> 3]; - unsigned odd = (s & USB_STAT_ODD_MASK) ? 1 : 0; +static void process_tokdne(uint8_t rhport) { + const unsigned s = USB_OTG_FS->STAT; + USB_OTG_FS->INT_STAT = USB_ISTAT_TOKDNE_MASK; /* fetch the next token if received */ + buffer_descriptor_t *bd = (buffer_descriptor_t *)&_dcd.bda[s]; + endpoint_state_t *ep = &_dcd.endpoint_unified[s >> 3]; + unsigned odd = (s & USB_STAT_ODD_MASK) ? 1 : 0; /* fetch pid before discarded by the next steps */ const unsigned pid = bd->tok_pid; @@ -155,7 +148,7 @@ static void process_tokdne(uint8_t rhport) bd->ninc = 0; bd->keep = 0; /* update the odd variable to prepare for the next transfer */ - ep->odd = odd ^ 1; + ep->odd = odd ^ 1; if (pid == TOK_PID_SETUP) { dcd_event_setup_received(rhport, bd->addr, true); USB_OTG_FS->CTL &= ~USB_CTL_TXSUSPENDTOKENBUSY_MASK; @@ -165,25 +158,24 @@ static void process_tokdne(uint8_t rhport) TU_LOG1("TKDNE %x\r\n", s); } - const unsigned bc = bd->bc; + const unsigned bc = bd->bc; const unsigned remaining = ep->remaining - bc; if (remaining && bc == ep->max_packet_size) { /* continue the transferring consecutive data */ - ep->remaining = remaining; + ep->remaining = remaining; const int next_remaining = remaining - ep->max_packet_size; if (next_remaining > 0) { /* prepare to the after next transfer */ bd->addr += ep->max_packet_size * 2; - bd->bc = next_remaining > ep->max_packet_size ? ep->max_packet_size: next_remaining; + bd->bc = next_remaining > ep->max_packet_size ? ep->max_packet_size : next_remaining; __DSB(); - bd->own = 1; /* the own bit must set after addr */ + bd->own = 1; /* the own bit must set after addr */ } return; } const unsigned length = ep->length; - dcd_event_xfer_complete(rhport, - ((s & USB_STAT_TX_MASK) << 4) | (s >> USB_STAT_ENDP_SHIFT), - length - remaining, XFER_RESULT_SUCCESS, true); + dcd_event_xfer_complete(rhport, ((s & USB_STAT_TX_MASK) << 4) | (s >> USB_STAT_ENDP_SHIFT), length - remaining, + XFER_RESULT_SUCCESS, true); if (0 == (s & USB_STAT_ENDP_MASK) && 0 == length) { /* After completion a ZLP of control transfer, * it prepares for the next steup transfer. */ @@ -191,24 +183,23 @@ static void process_tokdne(uint8_t rhport) /* When the transfer was the SetAddress, * the device address should be updated here. */ USB_OTG_FS->ADDR = _dcd.addr; - _dcd.addr = 0; + _dcd.addr = 0; } prepare_next_setup_packet(rhport); } } -static void process_bus_reset(uint8_t rhport) -{ - USB_OTG_FS->CTL |= USB_CTL_ODDRST_MASK; - USB_OTG_FS->ADDR = 0; - USB_OTG_FS->INT_ENB = (USB_OTG_FS->INT_ENB & ~USB_INTEN_RESUMEEN_MASK) | USB_INTEN_SLEEPEN_MASK; +static void process_bus_reset(uint8_t rhport) { + USB_OTG_FS->CTL |= USB_CTL_ODDRST_MASK; + USB_OTG_FS->ADDR = 0; + USB_OTG_FS->INT_ENB = (USB_OTG_FS->INT_ENB & ~USB_INTEN_RESUMEEN_MASK) | USB_INTEN_SLEEPEN_MASK; USB_OTG_FS->EP_CTL[0] = USB_ENDPT_EPHSHK_MASK | USB_ENDPT_EPRXEN_MASK | USB_ENDPT_EPTXEN_MASK; for (unsigned i = 1; i < 16; ++i) { USB_OTG_FS->EP_CTL[i] = 0; } buffer_descriptor_t *bd = _dcd.bdt[0][0]; - for (unsigned i = 0; i < sizeof(_dcd.bdt)/sizeof(*bd); ++i, ++bd) { + for (unsigned i = 0; i < sizeof(_dcd.bdt) / sizeof(*bd); ++i, ++bd) { bd->head = 0; } const endpoint_state_t ep0 = { @@ -226,31 +217,29 @@ static void process_bus_reset(uint8_t rhport) dcd_event_bus_reset(rhport, TUSB_SPEED_FULL, true); } -static void process_bus_inactive(uint8_t rhport) -{ - (void) rhport; +static void process_bus_inactive(uint8_t rhport) { + (void)rhport; const unsigned inten = USB_OTG_FS->INT_ENB; - USB_OTG_FS->INT_ENB = (inten & ~USB_INTEN_SLEEPEN_MASK) | USB_INTEN_RESUMEEN_MASK; + USB_OTG_FS->INT_ENB = (inten & ~USB_INTEN_SLEEPEN_MASK) | USB_INTEN_RESUMEEN_MASK; dcd_event_bus_signal(rhport, DCD_EVENT_SUSPEND, true); } -static void process_bus_active(uint8_t rhport) -{ - (void) rhport; +static void process_bus_active(uint8_t rhport) { + (void)rhport; const unsigned inten = USB_OTG_FS->INT_ENB; - USB_OTG_FS->INT_ENB = (inten & ~USB_INTEN_RESUMEEN_MASK) | USB_INTEN_SLEEPEN_MASK; + USB_OTG_FS->INT_ENB = (inten & ~USB_INTEN_RESUMEEN_MASK) | USB_INTEN_SLEEPEN_MASK; dcd_event_bus_signal(rhport, DCD_EVENT_RESUME, true); } /*------------------------------------------------------------------*/ /* Device API *------------------------------------------------------------------*/ -bool dcd_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { - (void) rhport; - (void) rh_init; +bool dcd_init(uint8_t rhport, const tusb_rhport_init_t *rh_init) { + (void)rhport; + (void)rh_init; tu_memclr(&_dcd, sizeof(_dcd)); - USB_OTG_FS->BDT_PAGE_01 = (uint8_t)((uintptr_t)_dcd.bdt >> 8); + USB_OTG_FS->BDT_PAGE_01 = (uint8_t)((uintptr_t)_dcd.bdt >> 8); USB_OTG_FS->BDT_PAGE_02 = (uint8_t)((uintptr_t)_dcd.bdt >> 16); USB_OTG_FS->BDT_PAGE_03 = (uint8_t)((uintptr_t)_dcd.bdt >> 24); @@ -259,27 +248,24 @@ bool dcd_init(uint8_t rhport, const tusb_rhport_init_t* rh_init) { return true; } #define USB_DEVICE_INTERRUPT_PRIORITY (3U) -void dcd_int_enable(uint8_t rhport) -{ +void dcd_int_enable(uint8_t rhport) { uint8_t irqNumber; irqNumber = USB_FS_IRQn; - (void) rhport; - USB_OTG_FS->INT_ENB = USB_INTEN_USBRSTEN_MASK | USB_INTEN_TOKDNEEN_MASK | - USB_INTEN_SLEEPEN_MASK | USB_INTEN_ERROREN_MASK | USB_INTEN_STALLEN_MASK; + (void)rhport; + USB_OTG_FS->INT_ENB = USB_INTEN_USBRSTEN_MASK | USB_INTEN_TOKDNEEN_MASK | USB_INTEN_SLEEPEN_MASK | + USB_INTEN_ERROREN_MASK | USB_INTEN_STALLEN_MASK; NVIC_SetPriority((IRQn_Type)irqNumber, USB_DEVICE_INTERRUPT_PRIORITY); NVIC_EnableIRQ(USB_FS_IRQn); } -void dcd_int_disable(uint8_t rhport) -{ - (void) rhport; +void dcd_int_disable(uint8_t rhport) { + (void)rhport; NVIC_DisableIRQ(USB_FS_IRQn); USB_OTG_FS->INT_ENB = 0; } -void dcd_set_address(uint8_t rhport, uint8_t dev_addr) -{ - (void) rhport; +void dcd_set_address(uint8_t rhport, uint8_t dev_addr) { + (void)rhport; _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); @@ -296,31 +282,29 @@ extern u32 SystemCoreClock; #pragma GCC diagnostic pop #endif -void dcd_remote_wakeup(uint8_t rhport) -{ - (void) rhport; +void dcd_remote_wakeup(uint8_t rhport) { + (void)rhport; unsigned cnt = SystemCoreClock / 100; USB_OTG_FS->CTL |= USB_CTL_RESUME_MASK; - while (cnt--) __NOP(); + while (cnt--) { + __NOP(); + } USB_OTG_FS->CTL &= ~USB_CTL_RESUME_MASK; } -void dcd_connect(uint8_t rhport) -{ - (void) rhport; - USB_OTG_FS->CTL |= USB_CTL_USBENSOFEN_MASK; +void dcd_connect(uint8_t rhport) { + (void)rhport; + USB_OTG_FS->CTL |= USB_CTL_USBENSOFEN_MASK; } -void dcd_disconnect(uint8_t rhport) -{ - (void) rhport; - USB_OTG_FS->CTL = 0; +void dcd_disconnect(uint8_t rhport) { + (void)rhport; + USB_OTG_FS->CTL = 0; } -void dcd_sof_enable(uint8_t rhport, bool en) -{ - (void) rhport; - (void) en; +void dcd_sof_enable(uint8_t rhport, bool en) { + (void)rhport; + (void)en; // TODO implement later } @@ -328,24 +312,23 @@ void dcd_sof_enable(uint8_t rhport, bool en) //--------------------------------------------------------------------+ // Endpoint API //--------------------------------------------------------------------+ -bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) -{ - (void) rhport; - - const unsigned ep_addr = ep_desc->bEndpointAddress; - const unsigned epn = ep_addr & 0xFu; - const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; - const unsigned xfer = ep_desc->bmAttributes.xfer; - endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; - const unsigned odd = ep->odd; - buffer_descriptor_t *bd = &_dcd.bdt[epn][dir][0]; +bool dcd_edpt_open(uint8_t rhport, const tusb_desc_endpoint_t *ep_desc) { + (void)rhport; + + const unsigned ep_addr = ep_desc->bEndpointAddress; + const unsigned epn = ep_addr & 0xFu; + const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; + const unsigned xfer = ep_desc->bmAttributes.xfer; + endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; + const unsigned odd = ep->odd; + buffer_descriptor_t *bd = &_dcd.bdt[epn][dir][0]; /* No support for control transfer */ TU_ASSERT(epn && (xfer != TUSB_XFER_CONTROL)); ep->max_packet_size = tu_edpt_packet_size(ep_desc); - unsigned val = USB_ENDPT_EPCTLDIS_MASK; - val |= (xfer != TUSB_XFER_ISOCHRONOUS) ? USB_ENDPT_EPHSHK_MASK: 0; + unsigned val = USB_ENDPT_EPCTLDIS_MASK; + val |= (xfer != TUSB_XFER_ISOCHRONOUS) ? USB_ENDPT_EPHSHK_MASK : 0; val |= dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK; USB_OTG_FS->EP_CTL[epn] |= val; @@ -359,21 +342,19 @@ bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) return true; } -void dcd_edpt_close_all (uint8_t rhport) -{ - (void) rhport; +void dcd_edpt_close_all(uint8_t rhport) { + (void)rhport; // TODO implement dcd_edpt_close_all() } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) -{ - (void) rhport; +void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { + (void)rhport; - const unsigned epn = ep_addr & 0xFu; - const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; - endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; - buffer_descriptor_t *bd = &_dcd.bdt[epn][dir][0]; - const unsigned msk = dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK; + const unsigned epn = ep_addr & 0xFu; + const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; + endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; + buffer_descriptor_t *bd = &_dcd.bdt[epn][dir][0]; + const unsigned msk = dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK; USB_OTG_FS->EP_CTL[epn] &= ~msk; ep->max_packet_size = 0; ep->length = 0; @@ -381,14 +362,28 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) bd->head = 0; } -bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) -{ - (void) rhport; + #if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} + #endif + +bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t *buffer, uint16_t total_bytes) { + (void)rhport; NVIC_DisableIRQ(USB_FS_IRQn); - const unsigned epn = ep_addr & 0xFu; - const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; - endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; - buffer_descriptor_t *bd = &_dcd.bdt[epn][dir][ep->odd]; + const unsigned epn = ep_addr & 0xFu; + const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; + endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; + buffer_descriptor_t *bd = &_dcd.bdt[epn][dir][ep->odd]; if (bd->own) { TU_LOG1("DCD XFER fail %x %d %lx %lx\r\n", ep_addr, total_bytes, ep->state, bd->head); @@ -399,42 +394,40 @@ bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t to const unsigned mps = ep->max_packet_size; if (total_bytes > mps) { - buffer_descriptor_t *next = ep->odd ? bd - 1: bd + 1; + buffer_descriptor_t *next = ep->odd ? bd - 1 : bd + 1; /* When total_bytes is greater than the max packet size, * it prepares to the next transfer to avoid NAK in advance. */ - next->bc = total_bytes >= 2 * mps ? mps: total_bytes - mps; + next->bc = total_bytes >= 2 * mps ? mps : total_bytes - mps; next->addr = buffer + mps; next->own = 1; } - bd->bc = total_bytes >= mps ? mps: total_bytes; - bd->addr = buffer; + bd->bc = total_bytes >= mps ? mps : total_bytes; + bd->addr = buffer; __DSB(); - bd->own = 1; /* the own bit must set after addr */ + bd->own = 1; /* the own bit must set after addr */ NVIC_EnableIRQ(USB_FS_IRQn); return true; } -void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) -{ - (void) rhport; +void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) { + (void)rhport; const unsigned epn = ep_addr & 0xFu; if (0 == epn) { - USB_OTG_FS->EP_CTL[epn] |= USB_ENDPT_EPSTALL_MASK; + USB_OTG_FS->EP_CTL[epn] |= USB_ENDPT_EPSTALL_MASK; } else { - const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; - buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; - bd[0].bdt_stall = 1; - bd[1].bdt_stall = 1; + const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; + buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; + bd[0].bdt_stall = 1; + bd[1].bdt_stall = 1; } } -void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) -{ - (void) rhport; - const unsigned epn = ep_addr & 0xFu; - const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; - const unsigned odd = _dcd.endpoint[epn][dir].odd; - buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; +void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) { + (void)rhport; + const unsigned epn = ep_addr & 0xFu; + const unsigned dir = (ep_addr & TUSB_DIR_IN_MASK) ? TUSB_DIR_IN : TUSB_DIR_OUT; + const unsigned odd = _dcd.endpoint[epn][dir].odd; + buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; bd[odd ^ 1].own = 0; bd[odd ^ 1].data = 1; @@ -447,19 +440,18 @@ void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) //--------------------------------------------------------------------+ // ISR //--------------------------------------------------------------------+ -void dcd_int_handler(uint8_t rhport) -{ - (void) rhport; +void dcd_int_handler(uint8_t rhport) { + (void)rhport; - uint32_t is = USB_OTG_FS->INT_STAT; - uint32_t msk = USB_OTG_FS->INT_ENB; + uint32_t is = USB_OTG_FS->INT_STAT; + uint32_t msk = USB_OTG_FS->INT_ENB; USB_OTG_FS->INT_STAT = is & ~msk; is &= msk; if (is & USB_ISTAT_ERROR_MASK) { /* TODO: */ - uint32_t es = USB_OTG_FS->ERR_STAT; + uint32_t es = USB_OTG_FS->ERR_STAT; USB_OTG_FS->ERR_STAT = es; - USB_OTG_FS->INT_STAT = is; /* discard any pending events */ + USB_OTG_FS->INT_STAT = is; /* discard any pending events */ return; } @@ -493,5 +485,4 @@ void dcd_int_handler(uint8_t rhport) return; } } - #endif diff --git a/src/portable/nordic/nrf5x/dcd_nrf5x.c b/src/portable/nordic/nrf5x/dcd_nrf5x.c index 9e5f5117f..730ca7fb1 100644 --- a/src/portable/nordic/nrf5x/dcd_nrf5x.c +++ b/src/portable/nordic/nrf5x/dcd_nrf5x.c @@ -426,6 +426,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { __DSB(); } +#if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} +#endif + bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { (void) rhport; @@ -1062,5 +1077,4 @@ void tusb_hal_nrf_power_event(uint32_t event) { break; } } - #endif diff --git a/src/portable/nxp/khci/dcd_khci.c b/src/portable/nxp/khci/dcd_khci.c index 3d5e195a9..da1c5c888 100644 --- a/src/portable/nxp/khci/dcd_khci.c +++ b/src/portable/nxp/khci/dcd_khci.c @@ -428,6 +428,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) if (ie) NVIC_EnableIRQ(USB0_IRQn); } +#if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void) rhport; + (void) ep_addr; + (void) largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { + (void) rhport; + (void) desc_ep; + return false; +} + #endif + bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { (void) rhport; @@ -577,5 +592,4 @@ void dcd_int_handler(uint8_t rhport) process_tokdne(rhport); } } - #endif diff --git a/src/portable/nxp/lpc17_40/dcd_lpc17_40.c b/src/portable/nxp/lpc17_40/dcd_lpc17_40.c index 855c59cd1..5516e1ba6 100644 --- a/src/portable/nxp/lpc17_40/dcd_lpc17_40.c +++ b/src/portable/nxp/lpc17_40/dcd_lpc17_40.c @@ -337,9 +337,17 @@ bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * p_endpoint_desc) return true; } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { - (void) rhport; (void) ep_addr; - // TODO implement dcd_edpt_close() +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; } void dcd_edpt_close_all (uint8_t rhport) @@ -600,5 +608,4 @@ void dcd_int_handler(uint8_t rhport) TU_BREAKPOINT(); } } - #endif diff --git a/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c b/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c index 7c637ce0c..1c135f3be 100644 --- a/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c +++ b/src/portable/nxp/lpc_ip3511/dcd_lpc_ip3511.c @@ -432,6 +432,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) _dcd.ep[ep_id][0].cmd_sts.disable = _dcd.ep[ep_id][1].cmd_sts.disable = 1; } +#if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} +#endif + 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); @@ -631,5 +646,4 @@ void dcd_int_handler(uint8_t rhport) // Endpoint transfer complete interrupt process_xfer_isr(rhport, int_status); } - #endif diff --git a/src/portable/raspberrypi/pio_usb/dcd_pio_usb.c b/src/portable/raspberrypi/pio_usb/dcd_pio_usb.c index 60afbd435..25ef117c2 100644 --- a/src/portable/raspberrypi/pio_usb/dcd_pio_usb.c +++ b/src/portable/raspberrypi/pio_usb/dcd_pio_usb.c @@ -113,6 +113,19 @@ void dcd_edpt_close_all (uint8_t rhport) (void) rhport; } +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} + // Submit a transfer, When complete dcd_event_xfer_complete() is invoked to notify the stack bool dcd_edpt_xfer (uint8_t rhport, uint8_t ep_addr, uint8_t * buffer, uint16_t total_bytes) { @@ -207,5 +220,4 @@ void __no_inline_not_in_flash_func(pio_usb_device_irq_handler)(uint8_t root_id) // clear all rport->ints &= ~ints; } - #endif diff --git a/src/portable/renesas/rusb2/dcd_rusb2.c b/src/portable/renesas/rusb2/dcd_rusb2.c index ecd28973c..2cc79aa74 100644 --- a/src/portable/renesas/rusb2/dcd_rusb2.c +++ b/src/portable/renesas/rusb2/dcd_rusb2.c @@ -859,6 +859,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) _dcd.ep[dir][epn] = 0; } +#if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} +#endif + bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { rusb2_reg_t* rusb = RUSB2_REG(rhport); @@ -1028,5 +1043,4 @@ void dcd_int_handler(uint8_t rhport) } } } - #endif diff --git a/src/portable/sunxi/dcd_sunxi_musb.c b/src/portable/sunxi/dcd_sunxi_musb.c index f1f4897cb..8e6dc8c63 100644 --- a/src/portable/sunxi/dcd_sunxi_musb.c +++ b/src/portable/sunxi/dcd_sunxi_musb.c @@ -1082,6 +1082,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) musb_int_unmask(); } + #if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} + #endif + // Submit a transfer, When complete dcd_event_xfer_complete() is invoked to notify the stack bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t * buffer, uint16_t total_bytes) { @@ -1210,5 +1225,4 @@ void dcd_int_handler(uint8_t rhport) rxis &= ~TU_BIT(num); } } - #endif diff --git a/src/portable/ti/msp430x5xx/dcd_msp430x5xx.c b/src/portable/ti/msp430x5xx/dcd_msp430x5xx.c index 64cbc5087..e4c28a56f 100644 --- a/src/portable/ti/msp430x5xx/dcd_msp430x5xx.c +++ b/src/portable/ti/msp430x5xx/dcd_msp430x5xx.c @@ -333,11 +333,20 @@ bool dcd_edpt_open (uint8_t rhport, tusb_desc_endpoint_t const * desc_edpt) return true; } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { - (void) rhport; (void) ep_addr; - // TODO implement dcd_edpt_close() +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; } +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; +} + + void dcd_edpt_close_all (uint8_t rhport) { (void) rhport; @@ -821,5 +830,4 @@ void dcd_int_handler(uint8_t rhport) } } - #endif diff --git a/src/portable/valentyusb/eptri/dcd_eptri.c b/src/portable/valentyusb/eptri/dcd_eptri.c index a03c94558..f0e52ae47 100644 --- a/src/portable/valentyusb/eptri/dcd_eptri.c +++ b/src/portable/valentyusb/eptri/dcd_eptri.c @@ -438,9 +438,17 @@ bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * p_endpoint_desc) return true; } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { - (void) rhport; (void) ep_addr; - // TODO implement dcd_edpt_close() +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void)rhport; + (void)ep_addr; + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; } void dcd_edpt_close_all (uint8_t rhport) @@ -659,5 +667,4 @@ void dcd_int_handler(uint8_t rhport) } } } - #endif diff --git a/src/portable/wch/dcd_ch32_usbfs.c b/src/portable/wch/dcd_ch32_usbfs.c index c248ba14e..f8c3b05c3 100644 --- a/src/portable/wch/dcd_ch32_usbfs.c +++ b/src/portable/wch/dcd_ch32_usbfs.c @@ -283,12 +283,20 @@ void dcd_edpt_close_all(uint8_t rhport) { // TODO optional } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { (void) rhport; (void) ep_addr; - // TODO optional + (void)largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *desc_ep) { + (void)rhport; + (void)desc_ep; + return false; } + bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { (void) rhport; uint8_t ep = tu_edpt_number(ep_addr); @@ -344,5 +352,4 @@ void dcd_edpt_clear_stall(uint8_t rhport, uint8_t ep_addr) { } } } - #endif diff --git a/src/portable/wch/dcd_ch32_usbhs.c b/src/portable/wch/dcd_ch32_usbhs.c index 4a208b9df..36fdc89ef 100644 --- a/src/portable/wch/dcd_ch32_usbhs.c +++ b/src/portable/wch/dcd_ch32_usbhs.c @@ -27,13 +27,14 @@ #include "tusb_option.h" -#if CFG_TUD_ENABLED && defined(TUP_USBIP_WCH_USBHS) && defined(CFG_TUD_WCH_USBIP_USBHS) && CFG_TUD_WCH_USBIP_USBHS -#include "ch32_usbhs_reg.h" +#if CFG_TUD_ENABLED && defined(TUP_USBIP_WCH_USBHS) && defined(CFG_TUD_WCH_USBIP_USBHS) && \ + (CFG_TUD_WCH_USBIP_USBHS == 1) + #include "ch32_usbhs_reg.h" -#include "device/dcd.h" + #include "device/dcd.h" -// Max number of bi-directional endpoints including EP0 -#define EP_MAX 16 + // Max number of bi-directional endpoints including EP0 + #define EP_MAX 16 typedef struct { uint8_t* buffer; @@ -288,6 +289,21 @@ void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) { } } + #if 0 +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + (void) rhport; + (void) ep_addr; + (void) largest_packet_size; + return false; +} + +bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { + (void) rhport; + (void) desc_ep; + return false; +} + #endif + void dcd_edpt_stall(uint8_t rhport, uint8_t ep_addr) { (void) rhport; @@ -419,5 +435,4 @@ void dcd_int_handler(uint8_t rhport) { USBHSD->INT_FG = USBHS_SUSPEND_FLAG; /* Clear flag */ } } - #endif -- cgit v1.3.1 From be9d1973ac4c30fedd24b8199fd4dee5c842e2ef Mon Sep 17 00:00:00 2001 From: hathach Date: Mon, 17 Nov 2025 17:45:38 +0700 Subject: make TUP_DCD_EDPT_ISO_ALLOC i.e dcd_edpt_iso_alloc()/dcd_edpt_iso_activate() as default driver implementation. dcd_edpt_close() is deprecated and will be removed from all driver in the future. --- examples/device/video_capture/skip.txt | 1 - examples/device/video_capture_2ch/skip.txt | 1 - hw/bsp/family_support.cmake | 3 + hw/bsp/mcx/boards/frdm_mcxa153/board.cmake | 9 +- hw/bsp/mcx/boards/frdm_mcxa153/board.mk | 8 + .../mcx/boards/frdm_mcxa153/board/clock_config.c | 559 ++++++++++++++++++++ .../mcx/boards/frdm_mcxa153/board/clock_config.h | 385 ++++++++++++++ hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.c | 492 ++++++++++++++++++ hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.h | 211 ++++++++ hw/bsp/mcx/boards/frdm_mcxa153/clock_config.c | 466 ----------------- hw/bsp/mcx/boards/frdm_mcxa153/clock_config.h | 170 ------ hw/bsp/mcx/boards/frdm_mcxa153/frdm_mcxa153.mex | 573 +++++++++++++++++++++ hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.c | 130 ----- hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.h | 51 -- hw/bsp/mcx/family.c | 7 +- hw/bsp/mcx/family.mk | 13 +- src/common/tusb_mcu.h | 11 +- src/portable/chipidea/ci_fs/dcd_ci_fs.c | 83 ++- src/portable/nxp/khci/dcd_khci.c | 78 ++- 19 files changed, 2313 insertions(+), 938 deletions(-) create mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.c create mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.h create mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.c create mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.h delete mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/clock_config.c delete mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/clock_config.h create mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/frdm_mcxa153.mex delete mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.c delete mode 100644 hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.h (limited to 'src/common') diff --git a/examples/device/video_capture/skip.txt b/examples/device/video_capture/skip.txt index 50302c544..cb0c7d2e6 100644 --- a/examples/device/video_capture/skip.txt +++ b/examples/device/video_capture/skip.txt @@ -1,6 +1,5 @@ mcu:CH32V103 mcu:CH32V20X -mcu:MCXA15 mcu:MSP430x5xx mcu:NUC121 mcu:SAMD11 diff --git a/examples/device/video_capture_2ch/skip.txt b/examples/device/video_capture_2ch/skip.txt index 0f6508226..af3b0de04 100644 --- a/examples/device/video_capture_2ch/skip.txt +++ b/examples/device/video_capture_2ch/skip.txt @@ -6,7 +6,6 @@ mcu:CH32V103 mcu:CH32V20X mcu:CH32V307 mcu:STM32L0 -mcu:MCXA15 family:espressif board:curiosity_nano board:kuiic diff --git a/hw/bsp/family_support.cmake b/hw/bsp/family_support.cmake index 23dfb9d80..2b9612186 100644 --- a/hw/bsp/family_support.cmake +++ b/hw/bsp/family_support.cmake @@ -264,6 +264,9 @@ function(family_configure_common TARGET RTOS) ARCHIVE_OUTPUT_DIRECTORY ${CMAKE_BINARY_DIR}/lib SKIP_LINTING ON # need cmake 4.2 ) + if (CMAKE_C_COMPILER_ID STREQUAL "GNU" OR CMAKE_C_COMPILER_ID STREQUAL "Clang") + set_target_properties(${BOARD_TARGET} PROPERTIES COMPILE_OPTIONS -w) + endif () endif () target_link_libraries(${TARGET} PUBLIC ${BOARD_TARGET}) endif () diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/board.cmake b/hw/bsp/mcx/boards/frdm_mcxa153/board.cmake index 7cd8991e6..e6619992f 100644 --- a/hw/bsp/mcx/boards/frdm_mcxa153/board.cmake +++ b/hw/bsp/mcx/boards/frdm_mcxa153/board.cmake @@ -14,8 +14,11 @@ function(update_board TARGET) BOARD_TUD_MAX_SPEED=OPT_MODE_FULL_SPEED CFG_EXAMPLE_VIDEO_READONLY ) - target_sources(${TARGET} PUBLIC - ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/clock_config.c - ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/pin_mux.c + target_sources(${TARGET} PRIVATE + ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/board/clock_config.c + ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/board/pin_mux.c + ) + target_include_directories(${TARGET} PUBLIC + ${CMAKE_CURRENT_FUNCTION_LIST_DIR}/board ) endfunction() diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/board.mk b/hw/bsp/mcx/boards/frdm_mcxa153/board.mk index af8416d8e..34558b43e 100644 --- a/hw/bsp/mcx/boards/frdm_mcxa153/board.mk +++ b/hw/bsp/mcx/boards/frdm_mcxa153/board.mk @@ -6,6 +6,14 @@ CPU_CORE = cortex-m33-nodsp-nofp CFLAGS += \ -DCPU_MCXA153VLH \ -DCFG_TUSB_MCU=OPT_MCU_MCXA15 \ + -DCFG_EXAMPLE_VIDEO_READONLY + +SRC_C += \ + ${BOARD_PATH}/board/clock_config.c \ + ${BOARD_PATH}/board/pin_mux.c + +INC += \ + $(TOP)/$(BOARD_PATH)/board JLINK_DEVICE = MCXA153 PYOCD_TARGET = MCXA153 diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.c b/hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.c new file mode 100644 index 000000000..599110d7a --- /dev/null +++ b/hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.c @@ -0,0 +1,559 @@ +/* + * Copyright 2025 NXP + * All rights reserved. + * + * SPDX-License-Identifier: BSD-3-Clause + */ + +/*********************************************************************************************************************** + * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file + * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. + **********************************************************************************************************************/ +/* + * How to setup clock using clock driver functions: + * + * 1. Setup clock sources. + * + * 2. Set up wait states of the flash. + * + * 3. Set up all dividers. + * + * 4. Set up all selectors to provide selected clocks. + * + */ + +/* clang-format off */ +/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +!!GlobalInfo +product: Clocks v18.0 +processor: MCXA153 +package_id: MCXA153VLH +mcu_data: ksdk2_0 +processor_version: 25.09.10 +board: FRDM-MCXA153 + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ +/* clang-format on */ + +#include "fsl_clock.h" +#include "clock_config.h" +#include "fsl_spc.h" + +/******************************************************************************* + * Definitions + ******************************************************************************/ + +/******************************************************************************* + * Variables + ******************************************************************************/ +/* System clock frequency. */ +extern uint32_t SystemCoreClock; + +/******************************************************************************* + ************************ BOARD_InitBootClocks function ************************ + ******************************************************************************/ +void BOARD_InitBootClocks(void) +{ + BOARD_BootClockFRO96M(); +} + +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO12M ********************** + ******************************************************************************/ +/* clang-format off */ +/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +!!Configuration +name: BOARD_BootClockFRO12M +outputs: +- {id: CLK_1M_clock.outFreq, value: 1 MHz} +- {id: CPU_clock.outFreq, value: 12 MHz} +- {id: FRO_12M_clock.outFreq, value: 12 MHz} +- {id: MAIN_clock.outFreq, value: 12 MHz} +- {id: Slow_clock.outFreq, value: 3 MHz} +- {id: System_clock.outFreq, value: 12 MHz} +- {id: TRACE_clock.outFreq, value: 12 MHz} +- {id: UTICK_clock.outFreq, value: 1 MHz} +- {id: WWDT0_clock.outFreq, value: 1 MHz} +settings: +- {id: SCGMode, value: SIRC} +- {id: MRCC.FREQMEREFCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.FREQMETARGETCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} +- {id: SCG.SCSSEL.sel, value: SCG.SIRC} +- {id: SCG_FIRCCSR_FIRCEN_CFG, value: Disabled} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ +/* clang-format on */ + +/******************************************************************************* + * Variables for BOARD_BootClockFRO12M configuration + ******************************************************************************/ +/******************************************************************************* + * Code for BOARD_BootClockFRO12M configuration + ******************************************************************************/ +void BOARD_BootClockFRO12M(void) +{ + uint32_t coreFreq; + spc_active_mode_core_ldo_option_t ldoOption; + spc_sram_voltage_config_t sramOption; + + /* Get the CPU Core frequency */ + coreFreq = CLOCK_GetCoreSysClkFreq(); + + /* The flow of increasing voltage and frequency */ + if (coreFreq <= BOARD_BOOTCLOCKFRO12M_CORE_CLOCK) { + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P0V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + } + + + /*!< Set up system dividers */ + CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ + CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ + + CLOCK_AttachClk(kFRO12M_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO12M */ + + /* The flow of decreasing voltage and frequency */ + if (coreFreq > BOARD_BOOTCLOCKFRO12M_CORE_CLOCK) { + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P0V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + } + + /*!< Set up clock selectors - Attach clocks to the peripheries */ + CLOCK_AttachClk(kCPU_CLK_to_TRACE); /* !< Switch TRACE to CPU_CLK */ + + /*!< Set up dividers */ + CLOCK_SetClockDiv(kCLOCK_DivTRACE, 1U); /* !< Set TRACECLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivWWDT0, 1U); /* !< Set WWDT0CLKDIV divider to value 1 */ + + /* Set SystemCoreClock variable */ + SystemCoreClock = BOARD_BOOTCLOCKFRO12M_CORE_CLOCK; +} +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO24M ********************** + ******************************************************************************/ +/* clang-format off */ +/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +!!Configuration +name: BOARD_BootClockFRO24M +outputs: +- {id: CLK_1M_clock.outFreq, value: 1 MHz} +- {id: CLK_48M_clock.outFreq, value: 48 MHz} +- {id: CPU_clock.outFreq, value: 24 MHz} +- {id: FRO_12M_clock.outFreq, value: 12 MHz} +- {id: FRO_HF_DIV_clock.outFreq, value: 48 MHz} +- {id: FRO_HF_clock.outFreq, value: 48 MHz} +- {id: MAIN_clock.outFreq, value: 48 MHz} +- {id: Slow_clock.outFreq, value: 6 MHz} +- {id: System_clock.outFreq, value: 24 MHz} +- {id: TRACE_clock.outFreq, value: 24 MHz} +- {id: UTICK_clock.outFreq, value: 1 MHz} +- {id: WWDT0_clock.outFreq, value: 1 MHz} +settings: +- {id: MRCC.FREQMEREFCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.FREQMETARGETCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} +- {id: SYSCON.AHBCLKDIV.scale, value: '2'} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ +/* clang-format on */ + +/******************************************************************************* + * Variables for BOARD_BootClockFRO24M configuration + ******************************************************************************/ +/******************************************************************************* + * Code for BOARD_BootClockFRO24M configuration + ******************************************************************************/ +void BOARD_BootClockFRO24M(void) +{ + uint32_t coreFreq; + spc_active_mode_core_ldo_option_t ldoOption; + spc_sram_voltage_config_t sramOption; + + /* Get the CPU Core frequency */ + coreFreq = CLOCK_GetCoreSysClkFreq(); + + /* The flow of increasing voltage and frequency */ + if (coreFreq <= BOARD_BOOTCLOCKFRO24M_CORE_CLOCK) { + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P0V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + } + + + /*!< Set up system dividers */ + CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 2U); /* !< Set AHBCLKDIV divider to value 2 */ + CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ + + CLOCK_SetupFROHFClocking(48000000U); /*!< Enable FRO HF(48MHz) output */ + + CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ + + CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ + + /* The flow of decreasing voltage and frequency */ + if (coreFreq > BOARD_BOOTCLOCKFRO24M_CORE_CLOCK) { + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P0V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + } + + /*!< Set up clock selectors - Attach clocks to the peripheries */ + CLOCK_AttachClk(kCPU_CLK_to_TRACE); /* !< Switch TRACE to CPU_CLK */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI0); /* !< Switch LPSPI0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI1); /* !< Switch LPSPI1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPI2C0); /* !< Switch LPI2C0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART0); /* !< Switch LPUART0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART1); /* !< Switch LPUART1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART2); /* !< Switch LPUART2 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPTMR0); /* !< Switch LPTMR0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_I3C0FCLK); /* !< Switch I3C0FCLK to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP0); /* !< Switch CMP0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP1); /* !< Switch CMP1 to FRO_HF_DIV */ + + /*!< Set up dividers */ + CLOCK_SetClockDiv(kCLOCK_DivTRACE, 1U); /* !< Set TRACECLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivWWDT0, 1U); /* !< Set WWDT0CLKDIV divider to value 1 */ + + /* Set SystemCoreClock variable */ + SystemCoreClock = BOARD_BOOTCLOCKFRO24M_CORE_CLOCK; +} +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO48M ********************** + ******************************************************************************/ +/* clang-format off */ +/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +!!Configuration +name: BOARD_BootClockFRO48M +outputs: +- {id: CLK_1M_clock.outFreq, value: 1 MHz} +- {id: CLK_48M_clock.outFreq, value: 48 MHz} +- {id: CPU_clock.outFreq, value: 48 MHz} +- {id: FRO_12M_clock.outFreq, value: 12 MHz} +- {id: FRO_HF_DIV_clock.outFreq, value: 48 MHz} +- {id: FRO_HF_clock.outFreq, value: 48 MHz} +- {id: MAIN_clock.outFreq, value: 48 MHz} +- {id: Slow_clock.outFreq, value: 12 MHz} +- {id: System_clock.outFreq, value: 48 MHz} +- {id: TRACE_clock.outFreq, value: 48 MHz} +- {id: UTICK_clock.outFreq, value: 1 MHz} +- {id: WWDT0_clock.outFreq, value: 1 MHz} +settings: +- {id: MRCC.FREQMEREFCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.FREQMETARGETCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ +/* clang-format on */ + +/******************************************************************************* + * Variables for BOARD_BootClockFRO48M configuration + ******************************************************************************/ +/******************************************************************************* + * Code for BOARD_BootClockFRO48M configuration + ******************************************************************************/ +void BOARD_BootClockFRO48M(void) +{ + uint32_t coreFreq; + spc_active_mode_core_ldo_option_t ldoOption; + spc_sram_voltage_config_t sramOption; + + /* Get the CPU Core frequency */ + coreFreq = CLOCK_GetCoreSysClkFreq(); + + /* The flow of increasing voltage and frequency */ + if (coreFreq <= BOARD_BOOTCLOCKFRO48M_CORE_CLOCK) { + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P0V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + } + + + /*!< Set up system dividers */ + CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ + + CLOCK_SetupFROHFClocking(48000000U); /*!< Enable FRO HF(48MHz) output */ + + CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ + + CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ + + /* The flow of decreasing voltage and frequency */ + if (coreFreq > BOARD_BOOTCLOCKFRO48M_CORE_CLOCK) { + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P0V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + } + + /*!< Set up clock selectors - Attach clocks to the peripheries */ + CLOCK_AttachClk(kCPU_CLK_to_TRACE); /* !< Switch TRACE to CPU_CLK */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI0); /* !< Switch LPSPI0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI1); /* !< Switch LPSPI1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPI2C0); /* !< Switch LPI2C0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART0); /* !< Switch LPUART0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART1); /* !< Switch LPUART1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART2); /* !< Switch LPUART2 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPTMR0); /* !< Switch LPTMR0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_I3C0FCLK); /* !< Switch I3C0FCLK to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP0); /* !< Switch CMP0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP1); /* !< Switch CMP1 to FRO_HF_DIV */ + + /*!< Set up dividers */ + CLOCK_SetClockDiv(kCLOCK_DivTRACE, 1U); /* !< Set TRACECLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivWWDT0, 1U); /* !< Set WWDT0CLKDIV divider to value 1 */ + + /* Set SystemCoreClock variable */ + SystemCoreClock = BOARD_BOOTCLOCKFRO48M_CORE_CLOCK; +} +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO64M ********************** + ******************************************************************************/ +/* clang-format off */ +/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +!!Configuration +name: BOARD_BootClockFRO64M +outputs: +- {id: CLK_1M_clock.outFreq, value: 1 MHz} +- {id: CLK_48M_clock.outFreq, value: 48 MHz} +- {id: CPU_clock.outFreq, value: 64 MHz} +- {id: FRO_12M_clock.outFreq, value: 12 MHz} +- {id: FRO_HF_DIV_clock.outFreq, value: 64 MHz} +- {id: FRO_HF_clock.outFreq, value: 64 MHz} +- {id: MAIN_clock.outFreq, value: 64 MHz} +- {id: Slow_clock.outFreq, value: 16 MHz} +- {id: System_clock.outFreq, value: 64 MHz} +- {id: TRACE_clock.outFreq, value: 64 MHz} +- {id: UTICK_clock.outFreq, value: 1 MHz} +- {id: WWDT0_clock.outFreq, value: 1 MHz} +settings: +- {id: VDD_CORE, value: voltage_1v1} +- {id: MRCC.FREQMEREFCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.FREQMETARGETCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.FROHFDIV.scale, value: '1', locked: true} +- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} +- {id: SYSCON.AHBCLKDIV.scale, value: '1', locked: true} +sources: +- {id: SCG.FIRC.outFreq, value: 64 MHz} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ +/* clang-format on */ + +/******************************************************************************* + * Variables for BOARD_BootClockFRO64M configuration + ******************************************************************************/ +/******************************************************************************* + * Code for BOARD_BootClockFRO64M configuration + ******************************************************************************/ +void BOARD_BootClockFRO64M(void) +{ + uint32_t coreFreq; + spc_active_mode_core_ldo_option_t ldoOption; + spc_sram_voltage_config_t sramOption; + + /* Get the CPU Core frequency */ + coreFreq = CLOCK_GetCoreSysClkFreq(); + + /* The flow of increasing voltage and frequency */ + if (coreFreq <= BOARD_BOOTCLOCKFRO64M_CORE_CLOCK) { + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P1V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + } + + + /*!< Set up system dividers */ + CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ + + CLOCK_SetupFROHFClocking(64000000U); /*!< Enable FRO HF(64MHz) output */ + + CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ + + CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ + + /* The flow of decreasing voltage and frequency */ + if (coreFreq > BOARD_BOOTCLOCKFRO64M_CORE_CLOCK) { + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P1V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + } + + /*!< Set up clock selectors - Attach clocks to the peripheries */ + CLOCK_AttachClk(kCPU_CLK_to_TRACE); /* !< Switch TRACE to CPU_CLK */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI0); /* !< Switch LPSPI0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI1); /* !< Switch LPSPI1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPI2C0); /* !< Switch LPI2C0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART0); /* !< Switch LPUART0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART1); /* !< Switch LPUART1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART2); /* !< Switch LPUART2 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPTMR0); /* !< Switch LPTMR0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_I3C0FCLK); /* !< Switch I3C0FCLK to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP0); /* !< Switch CMP0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP1); /* !< Switch CMP1 to FRO_HF_DIV */ + + /*!< Set up dividers */ + CLOCK_SetClockDiv(kCLOCK_DivTRACE, 1U); /* !< Set TRACECLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivWWDT0, 1U); /* !< Set WWDT0CLKDIV divider to value 1 */ + + /* Set SystemCoreClock variable */ + SystemCoreClock = BOARD_BOOTCLOCKFRO64M_CORE_CLOCK; +} +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO96M ********************** + ******************************************************************************/ +/* clang-format off */ +/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +!!Configuration +name: BOARD_BootClockFRO96M +called_from_default_init: true +outputs: +- {id: CLK_1M_clock.outFreq, value: 1 MHz} +- {id: CLK_48M_clock.outFreq, value: 48 MHz} +- {id: CPU_clock.outFreq, value: 96 MHz} +- {id: FRO_12M_clock.outFreq, value: 12 MHz} +- {id: FRO_HF_DIV_clock.outFreq, value: 96 MHz} +- {id: FRO_HF_clock.outFreq, value: 96 MHz} +- {id: MAIN_clock.outFreq, value: 96 MHz} +- {id: Slow_clock.outFreq, value: 24 MHz} +- {id: System_clock.outFreq, value: 96 MHz} +- {id: TRACE_clock.outFreq, value: 96 MHz} +- {id: UTICK_clock.outFreq, value: 1 MHz} +- {id: WWDT0_clock.outFreq, value: 1 MHz} +settings: +- {id: VDD_CORE, value: voltage_1v1} +- {id: MRCC.FREQMEREFCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.FREQMETARGETCLKSEL.sel, value: MRCC.aoi0_out0} +- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} +sources: +- {id: SCG.FIRC.outFreq, value: 96 MHz} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ +/* clang-format on */ + +/******************************************************************************* + * Variables for BOARD_BootClockFRO96M configuration + ******************************************************************************/ +/******************************************************************************* + * Code for BOARD_BootClockFRO96M configuration + ******************************************************************************/ +void BOARD_BootClockFRO96M(void) +{ + uint32_t coreFreq; + spc_active_mode_core_ldo_option_t ldoOption; + spc_sram_voltage_config_t sramOption; + + /* Get the CPU Core frequency */ + coreFreq = CLOCK_GetCoreSysClkFreq(); + + /* The flow of increasing voltage and frequency */ + if (coreFreq <= BOARD_BOOTCLOCKFRO96M_CORE_CLOCK) { + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x2U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P1V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + } + + + /*!< Set up system dividers */ + CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ + + CLOCK_SetupFROHFClocking(96000000U); /*!< Enable FRO HF(96MHz) output */ + + CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ + + CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ + + /* The flow of decreasing voltage and frequency */ + if (coreFreq > BOARD_BOOTCLOCKFRO96M_CORE_CLOCK) { + /* Configure Flash to support different voltage level and frequency */ + FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x2U)); + /* Specifies the operating voltage for the SRAM's read/write timing margin */ + sramOption.operateVoltage = kSPC_sramOperateAt1P1V; + sramOption.requestVoltageUpdate = true; + (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); + /* Set the LDO_CORE VDD regulator level */ + ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; + ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; + (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); + } + + /*!< Set up clock selectors - Attach clocks to the peripheries */ + CLOCK_AttachClk(kCPU_CLK_to_TRACE); /* !< Switch TRACE to CPU_CLK */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI0); /* !< Switch LPSPI0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPSPI1); /* !< Switch LPSPI1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPI2C0); /* !< Switch LPI2C0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART0); /* !< Switch LPUART0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART1); /* !< Switch LPUART1 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPUART2); /* !< Switch LPUART2 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_LPTMR0); /* !< Switch LPTMR0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_I3C0FCLK); /* !< Switch I3C0FCLK to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP0); /* !< Switch CMP0 to FRO_HF_DIV */ + CLOCK_AttachClk(kFRO_HF_DIV_to_CMP1); /* !< Switch CMP1 to FRO_HF_DIV */ + + /*!< Set up dividers */ + CLOCK_SetClockDiv(kCLOCK_DivTRACE, 1U); /* !< Set TRACECLKDIV divider to value 1 */ + CLOCK_SetClockDiv(kCLOCK_DivWWDT0, 1U); /* !< Set WWDT0CLKDIV divider to value 1 */ + + /* Set SystemCoreClock variable */ + SystemCoreClock = BOARD_BOOTCLOCKFRO96M_CORE_CLOCK; +} diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.h b/hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.h new file mode 100644 index 000000000..d609eb468 --- /dev/null +++ b/hw/bsp/mcx/boards/frdm_mcxa153/board/clock_config.h @@ -0,0 +1,385 @@ +/* + * Copyright 2025 NXP + * All rights reserved. + * + * SPDX-License-Identifier: BSD-3-Clause + */ + +/*********************************************************************************************************************** + * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file + * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. + **********************************************************************************************************************/ + +#ifndef _CLOCK_CONFIG_H_ +#define _CLOCK_CONFIG_H_ + +#include "fsl_common.h" + +/******************************************************************************* + * Definitions + ******************************************************************************/ + +/******************************************************************************* + ************************ BOARD_InitBootClocks function ************************ + ******************************************************************************/ + +#if defined(__cplusplus) +extern "C" { +#endif /* __cplusplus*/ + +/*! + * @brief This function executes default configuration of clocks. + * + */ +void BOARD_InitBootClocks(void); + +#if defined(__cplusplus) +} +#endif /* __cplusplus*/ + +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO12M ********************** + ******************************************************************************/ +/******************************************************************************* + * Definitions for BOARD_BootClockFRO12M configuration + ******************************************************************************/ +#define BOARD_BOOTCLOCKFRO12M_CORE_CLOCK 12000000U /*!< Core clock frequency: 12000000Hz */ + +/* Clock outputs (values are in Hz): */ +#define BOARD_BOOTCLOCKFRO12M_ADC0_CLOCK 0UL /* Clock consumers of ADC0_clock output : ADC0 */ +#define BOARD_BOOTCLOCKFRO12M_CLK16K_0_CLOCK 0UL /* Clock consumers of CLK16K_0_clock output : CMP0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO12M_CLK16K_1_CLOCK 0UL /* Clock consumers of CLK16K_1_clock output : CMP1, LPTMR0, WAKETIMER0 */ +#define BOARD_BOOTCLOCKFRO12M_CLKOUT_CLOCK 0UL /* Clock consumers of CLKOUT_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_CLK_1M_CLOCK 1000000UL /* Clock consumers of CLK_1M_clock output : CMC */ +#define BOARD_BOOTCLOCKFRO12M_CLK_48M_CLOCK 0UL /* Clock consumers of CLK_48M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_CLK_IN_CLOCK 0UL /* Clock consumers of CLK_IN_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_CMP0FDIV_CLOCK 0UL /* Clock consumers of CMP0FDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO12M_CMP0RRDIV_CLOCK 0UL /* Clock consumers of CMP0RRDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO12M_CMP1FDIV_CLOCK 0UL /* Clock consumers of CMP1FDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO12M_CMP1RRDIV_CLOCK 0UL /* Clock consumers of CMP1RRDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO12M_CPU_CLOCK 12000000UL /* Clock consumers of CPU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_CTIMER0_CLOCK 0UL /* Clock consumers of CTIMER0_clock output : CTIMER0 */ +#define BOARD_BOOTCLOCKFRO12M_CTIMER1_CLOCK 0UL /* Clock consumers of CTIMER1_clock output : CTIMER1 */ +#define BOARD_BOOTCLOCKFRO12M_CTIMER2_CLOCK 0UL /* Clock consumers of CTIMER2_clock output : CTIMER2 */ +#define BOARD_BOOTCLOCKFRO12M_FREQME_REFERENCE_CLOCK 0UL /* Clock consumers of FREQME_reference_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO12M_FREQME_TARGET_CLOCK 0UL /* Clock consumers of FREQME_target_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO12M_FRO_12M_CLOCK 12000000UL /* Clock consumers of FRO_12M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_FRO_HF_DIV_CLOCK 0UL /* Clock consumers of FRO_HF_DIV_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_FRO_HF_CLOCK 0UL /* Clock consumers of FRO_HF_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_I3C_FCLK_CLOCK 0UL /* Clock consumers of I3C_FCLK_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO12M_I3C_SLOW_TC_CLOCK 0UL /* Clock consumers of I3C_SLOW_TC_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO12M_I3C_SLOW_CLOCK 0UL /* Clock consumers of I3C_SLOW_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO12M_LPI2C0_CLOCK 0UL /* Clock consumers of LPI2C0_clock output : LPI2C0 */ +#define BOARD_BOOTCLOCKFRO12M_LPSPI0_CLOCK 0UL /* Clock consumers of LPSPI0_clock output : LPSPI0 */ +#define BOARD_BOOTCLOCKFRO12M_LPSPI1_CLOCK 0UL /* Clock consumers of LPSPI1_clock output : LPSPI1 */ +#define BOARD_BOOTCLOCKFRO12M_LPTMR0_CLOCK 0UL /* Clock consumers of LPTMR0_clock output : LPTMR0 */ +#define BOARD_BOOTCLOCKFRO12M_LPUART0_CLOCK 0UL /* Clock consumers of LPUART0_clock output : LPUART0 */ +#define BOARD_BOOTCLOCKFRO12M_LPUART1_CLOCK 0UL /* Clock consumers of LPUART1_clock output : LPUART1 */ +#define BOARD_BOOTCLOCKFRO12M_LPUART2_CLOCK 0UL /* Clock consumers of LPUART2_clock output : LPUART2 */ +#define BOARD_BOOTCLOCKFRO12M_MAIN_CLOCK 12000000UL /* Clock consumers of MAIN_clock output : FLEXPWM0 */ +#define BOARD_BOOTCLOCKFRO12M_OSTIMER_CLOCK 0UL /* Clock consumers of OSTIMER_clock output : OSTIMER0 */ +#define BOARD_BOOTCLOCKFRO12M_FIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.FIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_SIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.SIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_SLOW_CLOCK 3000000UL /* Clock consumers of Slow_clock output : AOI0, CMC, CMP0, LPTMR0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO12M_SYSTEM_CLOCK 12000000UL /* Clock consumers of System_clock output : ADC0, CMP1, CTIMER0, CTIMER1, CTIMER2, DMA0, FLEXPWM0, FREQME0, GPIO0, GPIO1, GPIO2, GPIO3, I3C0, INPUTMUX0, LPI2C0, LPSPI0, LPSPI1, LPUART0, LPUART1, LPUART2, OSTIMER0, PORT0, PORT1, PORT2, PORT3, QDC0, SWD, SysTick, USB0, UTICK0, WWDT0 */ +#define BOARD_BOOTCLOCKFRO12M_TRACE_CLOCK 12000000UL /* Clock consumers of TRACE_clock output : SWD */ +#define BOARD_BOOTCLOCKFRO12M_USB0_CLOCK 0UL /* Clock consumers of USB0_clock output : USB0 */ +#define BOARD_BOOTCLOCKFRO12M_UTICK_CLOCK 1000000UL /* Clock consumers of UTICK_clock output : UTICK0 */ +#define BOARD_BOOTCLOCKFRO12M_WUU_CLOCK 0UL /* Clock consumers of WUU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO12M_WWDT0_CLOCK 1000000UL /* Clock consumers of WWDT0_clock output : WWDT0 */ + + +/******************************************************************************* + * API for BOARD_BootClockFRO12M configuration + ******************************************************************************/ +#if defined(__cplusplus) +extern "C" { +#endif /* __cplusplus*/ + +/*! + * @brief This function executes configuration of clocks. + * + */ +void BOARD_BootClockFRO12M(void); + +#if defined(__cplusplus) +} +#endif /* __cplusplus*/ + +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO24M ********************** + ******************************************************************************/ +/******************************************************************************* + * Definitions for BOARD_BootClockFRO24M configuration + ******************************************************************************/ +#define BOARD_BOOTCLOCKFRO24M_CORE_CLOCK 24000000U /*!< Core clock frequency: 24000000Hz */ + +/* Clock outputs (values are in Hz): */ +#define BOARD_BOOTCLOCKFRO24M_ADC0_CLOCK 0UL /* Clock consumers of ADC0_clock output : ADC0 */ +#define BOARD_BOOTCLOCKFRO24M_CLK16K_0_CLOCK 0UL /* Clock consumers of CLK16K_0_clock output : CMP0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO24M_CLK16K_1_CLOCK 0UL /* Clock consumers of CLK16K_1_clock output : CMP1, LPTMR0, WAKETIMER0 */ +#define BOARD_BOOTCLOCKFRO24M_CLKOUT_CLOCK 0UL /* Clock consumers of CLKOUT_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_CLK_1M_CLOCK 1000000UL /* Clock consumers of CLK_1M_clock output : CMC */ +#define BOARD_BOOTCLOCKFRO24M_CLK_48M_CLOCK 48000000UL /* Clock consumers of CLK_48M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_CLK_IN_CLOCK 0UL /* Clock consumers of CLK_IN_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_CMP0FDIV_CLOCK 0UL /* Clock consumers of CMP0FDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO24M_CMP0RRDIV_CLOCK 0UL /* Clock consumers of CMP0RRDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO24M_CMP1FDIV_CLOCK 0UL /* Clock consumers of CMP1FDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO24M_CMP1RRDIV_CLOCK 0UL /* Clock consumers of CMP1RRDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO24M_CPU_CLOCK 24000000UL /* Clock consumers of CPU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_CTIMER0_CLOCK 0UL /* Clock consumers of CTIMER0_clock output : CTIMER0 */ +#define BOARD_BOOTCLOCKFRO24M_CTIMER1_CLOCK 0UL /* Clock consumers of CTIMER1_clock output : CTIMER1 */ +#define BOARD_BOOTCLOCKFRO24M_CTIMER2_CLOCK 0UL /* Clock consumers of CTIMER2_clock output : CTIMER2 */ +#define BOARD_BOOTCLOCKFRO24M_FREQME_REFERENCE_CLOCK 0UL /* Clock consumers of FREQME_reference_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO24M_FREQME_TARGET_CLOCK 0UL /* Clock consumers of FREQME_target_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO24M_FRO_12M_CLOCK 12000000UL /* Clock consumers of FRO_12M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_FRO_HF_DIV_CLOCK 48000000UL /* Clock consumers of FRO_HF_DIV_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_FRO_HF_CLOCK 48000000UL /* Clock consumers of FRO_HF_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_I3C_FCLK_CLOCK 0UL /* Clock consumers of I3C_FCLK_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO24M_I3C_SLOW_TC_CLOCK 0UL /* Clock consumers of I3C_SLOW_TC_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO24M_I3C_SLOW_CLOCK 0UL /* Clock consumers of I3C_SLOW_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO24M_LPI2C0_CLOCK 0UL /* Clock consumers of LPI2C0_clock output : LPI2C0 */ +#define BOARD_BOOTCLOCKFRO24M_LPSPI0_CLOCK 0UL /* Clock consumers of LPSPI0_clock output : LPSPI0 */ +#define BOARD_BOOTCLOCKFRO24M_LPSPI1_CLOCK 0UL /* Clock consumers of LPSPI1_clock output : LPSPI1 */ +#define BOARD_BOOTCLOCKFRO24M_LPTMR0_CLOCK 0UL /* Clock consumers of LPTMR0_clock output : LPTMR0 */ +#define BOARD_BOOTCLOCKFRO24M_LPUART0_CLOCK 0UL /* Clock consumers of LPUART0_clock output : LPUART0 */ +#define BOARD_BOOTCLOCKFRO24M_LPUART1_CLOCK 0UL /* Clock consumers of LPUART1_clock output : LPUART1 */ +#define BOARD_BOOTCLOCKFRO24M_LPUART2_CLOCK 0UL /* Clock consumers of LPUART2_clock output : LPUART2 */ +#define BOARD_BOOTCLOCKFRO24M_MAIN_CLOCK 48000000UL /* Clock consumers of MAIN_clock output : FLEXPWM0 */ +#define BOARD_BOOTCLOCKFRO24M_OSTIMER_CLOCK 0UL /* Clock consumers of OSTIMER_clock output : OSTIMER0 */ +#define BOARD_BOOTCLOCKFRO24M_FIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.FIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_SIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.SIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_SLOW_CLOCK 6000000UL /* Clock consumers of Slow_clock output : AOI0, CMC, CMP0, LPTMR0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO24M_SYSTEM_CLOCK 24000000UL /* Clock consumers of System_clock output : ADC0, CMP1, CTIMER0, CTIMER1, CTIMER2, DMA0, FLEXPWM0, FREQME0, GPIO0, GPIO1, GPIO2, GPIO3, I3C0, INPUTMUX0, LPI2C0, LPSPI0, LPSPI1, LPUART0, LPUART1, LPUART2, OSTIMER0, PORT0, PORT1, PORT2, PORT3, QDC0, SWD, SysTick, USB0, UTICK0, WWDT0 */ +#define BOARD_BOOTCLOCKFRO24M_TRACE_CLOCK 24000000UL /* Clock consumers of TRACE_clock output : SWD */ +#define BOARD_BOOTCLOCKFRO24M_USB0_CLOCK 0UL /* Clock consumers of USB0_clock output : USB0 */ +#define BOARD_BOOTCLOCKFRO24M_UTICK_CLOCK 1000000UL /* Clock consumers of UTICK_clock output : UTICK0 */ +#define BOARD_BOOTCLOCKFRO24M_WUU_CLOCK 0UL /* Clock consumers of WUU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO24M_WWDT0_CLOCK 1000000UL /* Clock consumers of WWDT0_clock output : WWDT0 */ + + +/******************************************************************************* + * API for BOARD_BootClockFRO24M configuration + ******************************************************************************/ +#if defined(__cplusplus) +extern "C" { +#endif /* __cplusplus*/ + +/*! + * @brief This function executes configuration of clocks. + * + */ +void BOARD_BootClockFRO24M(void); + +#if defined(__cplusplus) +} +#endif /* __cplusplus*/ + +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO48M ********************** + ******************************************************************************/ +/******************************************************************************* + * Definitions for BOARD_BootClockFRO48M configuration + ******************************************************************************/ +#define BOARD_BOOTCLOCKFRO48M_CORE_CLOCK 48000000U /*!< Core clock frequency: 48000000Hz */ + +/* Clock outputs (values are in Hz): */ +#define BOARD_BOOTCLOCKFRO48M_ADC0_CLOCK 0UL /* Clock consumers of ADC0_clock output : ADC0 */ +#define BOARD_BOOTCLOCKFRO48M_CLK16K_0_CLOCK 0UL /* Clock consumers of CLK16K_0_clock output : CMP0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO48M_CLK16K_1_CLOCK 0UL /* Clock consumers of CLK16K_1_clock output : CMP1, LPTMR0, WAKETIMER0 */ +#define BOARD_BOOTCLOCKFRO48M_CLKOUT_CLOCK 0UL /* Clock consumers of CLKOUT_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_CLK_1M_CLOCK 1000000UL /* Clock consumers of CLK_1M_clock output : CMC */ +#define BOARD_BOOTCLOCKFRO48M_CLK_48M_CLOCK 48000000UL /* Clock consumers of CLK_48M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_CLK_IN_CLOCK 0UL /* Clock consumers of CLK_IN_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_CMP0FDIV_CLOCK 0UL /* Clock consumers of CMP0FDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO48M_CMP0RRDIV_CLOCK 0UL /* Clock consumers of CMP0RRDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO48M_CMP1FDIV_CLOCK 0UL /* Clock consumers of CMP1FDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO48M_CMP1RRDIV_CLOCK 0UL /* Clock consumers of CMP1RRDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO48M_CPU_CLOCK 48000000UL /* Clock consumers of CPU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_CTIMER0_CLOCK 0UL /* Clock consumers of CTIMER0_clock output : CTIMER0 */ +#define BOARD_BOOTCLOCKFRO48M_CTIMER1_CLOCK 0UL /* Clock consumers of CTIMER1_clock output : CTIMER1 */ +#define BOARD_BOOTCLOCKFRO48M_CTIMER2_CLOCK 0UL /* Clock consumers of CTIMER2_clock output : CTIMER2 */ +#define BOARD_BOOTCLOCKFRO48M_FREQME_REFERENCE_CLOCK 0UL /* Clock consumers of FREQME_reference_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO48M_FREQME_TARGET_CLOCK 0UL /* Clock consumers of FREQME_target_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO48M_FRO_12M_CLOCK 12000000UL /* Clock consumers of FRO_12M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_FRO_HF_DIV_CLOCK 48000000UL /* Clock consumers of FRO_HF_DIV_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_FRO_HF_CLOCK 48000000UL /* Clock consumers of FRO_HF_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_I3C_FCLK_CLOCK 0UL /* Clock consumers of I3C_FCLK_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO48M_I3C_SLOW_TC_CLOCK 0UL /* Clock consumers of I3C_SLOW_TC_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO48M_I3C_SLOW_CLOCK 0UL /* Clock consumers of I3C_SLOW_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO48M_LPI2C0_CLOCK 0UL /* Clock consumers of LPI2C0_clock output : LPI2C0 */ +#define BOARD_BOOTCLOCKFRO48M_LPSPI0_CLOCK 0UL /* Clock consumers of LPSPI0_clock output : LPSPI0 */ +#define BOARD_BOOTCLOCKFRO48M_LPSPI1_CLOCK 0UL /* Clock consumers of LPSPI1_clock output : LPSPI1 */ +#define BOARD_BOOTCLOCKFRO48M_LPTMR0_CLOCK 0UL /* Clock consumers of LPTMR0_clock output : LPTMR0 */ +#define BOARD_BOOTCLOCKFRO48M_LPUART0_CLOCK 0UL /* Clock consumers of LPUART0_clock output : LPUART0 */ +#define BOARD_BOOTCLOCKFRO48M_LPUART1_CLOCK 0UL /* Clock consumers of LPUART1_clock output : LPUART1 */ +#define BOARD_BOOTCLOCKFRO48M_LPUART2_CLOCK 0UL /* Clock consumers of LPUART2_clock output : LPUART2 */ +#define BOARD_BOOTCLOCKFRO48M_MAIN_CLOCK 48000000UL /* Clock consumers of MAIN_clock output : FLEXPWM0 */ +#define BOARD_BOOTCLOCKFRO48M_OSTIMER_CLOCK 0UL /* Clock consumers of OSTIMER_clock output : OSTIMER0 */ +#define BOARD_BOOTCLOCKFRO48M_FIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.FIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_SIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.SIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_SLOW_CLOCK 12000000UL /* Clock consumers of Slow_clock output : AOI0, CMC, CMP0, LPTMR0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO48M_SYSTEM_CLOCK 48000000UL /* Clock consumers of System_clock output : ADC0, CMP1, CTIMER0, CTIMER1, CTIMER2, DMA0, FLEXPWM0, FREQME0, GPIO0, GPIO1, GPIO2, GPIO3, I3C0, INPUTMUX0, LPI2C0, LPSPI0, LPSPI1, LPUART0, LPUART1, LPUART2, OSTIMER0, PORT0, PORT1, PORT2, PORT3, QDC0, SWD, SysTick, USB0, UTICK0, WWDT0 */ +#define BOARD_BOOTCLOCKFRO48M_TRACE_CLOCK 48000000UL /* Clock consumers of TRACE_clock output : SWD */ +#define BOARD_BOOTCLOCKFRO48M_USB0_CLOCK 0UL /* Clock consumers of USB0_clock output : USB0 */ +#define BOARD_BOOTCLOCKFRO48M_UTICK_CLOCK 1000000UL /* Clock consumers of UTICK_clock output : UTICK0 */ +#define BOARD_BOOTCLOCKFRO48M_WUU_CLOCK 0UL /* Clock consumers of WUU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO48M_WWDT0_CLOCK 1000000UL /* Clock consumers of WWDT0_clock output : WWDT0 */ + + +/******************************************************************************* + * API for BOARD_BootClockFRO48M configuration + ******************************************************************************/ +#if defined(__cplusplus) +extern "C" { +#endif /* __cplusplus*/ + +/*! + * @brief This function executes configuration of clocks. + * + */ +void BOARD_BootClockFRO48M(void); + +#if defined(__cplusplus) +} +#endif /* __cplusplus*/ + +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO64M ********************** + ******************************************************************************/ +/******************************************************************************* + * Definitions for BOARD_BootClockFRO64M configuration + ******************************************************************************/ +#define BOARD_BOOTCLOCKFRO64M_CORE_CLOCK 64000000U /*!< Core clock frequency: 64000000Hz */ + +/* Clock outputs (values are in Hz): */ +#define BOARD_BOOTCLOCKFRO64M_ADC0_CLOCK 0UL /* Clock consumers of ADC0_clock output : ADC0 */ +#define BOARD_BOOTCLOCKFRO64M_CLK16K_0_CLOCK 0UL /* Clock consumers of CLK16K_0_clock output : CMP0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO64M_CLK16K_1_CLOCK 0UL /* Clock consumers of CLK16K_1_clock output : CMP1, LPTMR0, WAKETIMER0 */ +#define BOARD_BOOTCLOCKFRO64M_CLKOUT_CLOCK 0UL /* Clock consumers of CLKOUT_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_CLK_1M_CLOCK 1000000UL /* Clock consumers of CLK_1M_clock output : CMC */ +#define BOARD_BOOTCLOCKFRO64M_CLK_48M_CLOCK 48000000UL /* Clock consumers of CLK_48M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_CLK_IN_CLOCK 0UL /* Clock consumers of CLK_IN_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_CMP0FDIV_CLOCK 0UL /* Clock consumers of CMP0FDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO64M_CMP0RRDIV_CLOCK 0UL /* Clock consumers of CMP0RRDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO64M_CMP1FDIV_CLOCK 0UL /* Clock consumers of CMP1FDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO64M_CMP1RRDIV_CLOCK 0UL /* Clock consumers of CMP1RRDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO64M_CPU_CLOCK 64000000UL /* Clock consumers of CPU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_CTIMER0_CLOCK 0UL /* Clock consumers of CTIMER0_clock output : CTIMER0 */ +#define BOARD_BOOTCLOCKFRO64M_CTIMER1_CLOCK 0UL /* Clock consumers of CTIMER1_clock output : CTIMER1 */ +#define BOARD_BOOTCLOCKFRO64M_CTIMER2_CLOCK 0UL /* Clock consumers of CTIMER2_clock output : CTIMER2 */ +#define BOARD_BOOTCLOCKFRO64M_FREQME_REFERENCE_CLOCK 0UL /* Clock consumers of FREQME_reference_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO64M_FREQME_TARGET_CLOCK 0UL /* Clock consumers of FREQME_target_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO64M_FRO_12M_CLOCK 12000000UL /* Clock consumers of FRO_12M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_FRO_HF_DIV_CLOCK 64000000UL /* Clock consumers of FRO_HF_DIV_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_FRO_HF_CLOCK 64000000UL /* Clock consumers of FRO_HF_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_I3C_FCLK_CLOCK 0UL /* Clock consumers of I3C_FCLK_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO64M_I3C_SLOW_TC_CLOCK 0UL /* Clock consumers of I3C_SLOW_TC_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO64M_I3C_SLOW_CLOCK 0UL /* Clock consumers of I3C_SLOW_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO64M_LPI2C0_CLOCK 0UL /* Clock consumers of LPI2C0_clock output : LPI2C0 */ +#define BOARD_BOOTCLOCKFRO64M_LPSPI0_CLOCK 0UL /* Clock consumers of LPSPI0_clock output : LPSPI0 */ +#define BOARD_BOOTCLOCKFRO64M_LPSPI1_CLOCK 0UL /* Clock consumers of LPSPI1_clock output : LPSPI1 */ +#define BOARD_BOOTCLOCKFRO64M_LPTMR0_CLOCK 0UL /* Clock consumers of LPTMR0_clock output : LPTMR0 */ +#define BOARD_BOOTCLOCKFRO64M_LPUART0_CLOCK 0UL /* Clock consumers of LPUART0_clock output : LPUART0 */ +#define BOARD_BOOTCLOCKFRO64M_LPUART1_CLOCK 0UL /* Clock consumers of LPUART1_clock output : LPUART1 */ +#define BOARD_BOOTCLOCKFRO64M_LPUART2_CLOCK 0UL /* Clock consumers of LPUART2_clock output : LPUART2 */ +#define BOARD_BOOTCLOCKFRO64M_MAIN_CLOCK 64000000UL /* Clock consumers of MAIN_clock output : FLEXPWM0 */ +#define BOARD_BOOTCLOCKFRO64M_OSTIMER_CLOCK 0UL /* Clock consumers of OSTIMER_clock output : OSTIMER0 */ +#define BOARD_BOOTCLOCKFRO64M_FIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.FIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_SIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.SIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_SLOW_CLOCK 16000000UL /* Clock consumers of Slow_clock output : AOI0, CMC, CMP0, LPTMR0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO64M_SYSTEM_CLOCK 64000000UL /* Clock consumers of System_clock output : ADC0, CMP1, CTIMER0, CTIMER1, CTIMER2, DMA0, FLEXPWM0, FREQME0, GPIO0, GPIO1, GPIO2, GPIO3, I3C0, INPUTMUX0, LPI2C0, LPSPI0, LPSPI1, LPUART0, LPUART1, LPUART2, OSTIMER0, PORT0, PORT1, PORT2, PORT3, QDC0, SWD, SysTick, USB0, UTICK0, WWDT0 */ +#define BOARD_BOOTCLOCKFRO64M_TRACE_CLOCK 64000000UL /* Clock consumers of TRACE_clock output : SWD */ +#define BOARD_BOOTCLOCKFRO64M_USB0_CLOCK 0UL /* Clock consumers of USB0_clock output : USB0 */ +#define BOARD_BOOTCLOCKFRO64M_UTICK_CLOCK 1000000UL /* Clock consumers of UTICK_clock output : UTICK0 */ +#define BOARD_BOOTCLOCKFRO64M_WUU_CLOCK 0UL /* Clock consumers of WUU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO64M_WWDT0_CLOCK 1000000UL /* Clock consumers of WWDT0_clock output : WWDT0 */ + + +/******************************************************************************* + * API for BOARD_BootClockFRO64M configuration + ******************************************************************************/ +#if defined(__cplusplus) +extern "C" { +#endif /* __cplusplus*/ + +/*! + * @brief This function executes configuration of clocks. + * + */ +void BOARD_BootClockFRO64M(void); + +#if defined(__cplusplus) +} +#endif /* __cplusplus*/ + +/******************************************************************************* + ******************** Configuration BOARD_BootClockFRO96M ********************** + ******************************************************************************/ +/******************************************************************************* + * Definitions for BOARD_BootClockFRO96M configuration + ******************************************************************************/ +#define BOARD_BOOTCLOCKFRO96M_CORE_CLOCK 96000000U /*!< Core clock frequency: 96000000Hz */ + +/* Clock outputs (values are in Hz): */ +#define BOARD_BOOTCLOCKFRO96M_ADC0_CLOCK 0UL /* Clock consumers of ADC0_clock output : ADC0 */ +#define BOARD_BOOTCLOCKFRO96M_CLK16K_0_CLOCK 0UL /* Clock consumers of CLK16K_0_clock output : CMP0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO96M_CLK16K_1_CLOCK 0UL /* Clock consumers of CLK16K_1_clock output : CMP1, LPTMR0, WAKETIMER0 */ +#define BOARD_BOOTCLOCKFRO96M_CLKOUT_CLOCK 0UL /* Clock consumers of CLKOUT_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_CLK_1M_CLOCK 1000000UL /* Clock consumers of CLK_1M_clock output : CMC */ +#define BOARD_BOOTCLOCKFRO96M_CLK_48M_CLOCK 48000000UL /* Clock consumers of CLK_48M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_CLK_IN_CLOCK 0UL /* Clock consumers of CLK_IN_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_CMP0FDIV_CLOCK 0UL /* Clock consumers of CMP0FDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO96M_CMP0RRDIV_CLOCK 0UL /* Clock consumers of CMP0RRDIV_clock output : CMP0 */ +#define BOARD_BOOTCLOCKFRO96M_CMP1FDIV_CLOCK 0UL /* Clock consumers of CMP1FDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO96M_CMP1RRDIV_CLOCK 0UL /* Clock consumers of CMP1RRDIV_clock output : CMP1 */ +#define BOARD_BOOTCLOCKFRO96M_CPU_CLOCK 96000000UL /* Clock consumers of CPU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_CTIMER0_CLOCK 0UL /* Clock consumers of CTIMER0_clock output : CTIMER0 */ +#define BOARD_BOOTCLOCKFRO96M_CTIMER1_CLOCK 0UL /* Clock consumers of CTIMER1_clock output : CTIMER1 */ +#define BOARD_BOOTCLOCKFRO96M_CTIMER2_CLOCK 0UL /* Clock consumers of CTIMER2_clock output : CTIMER2 */ +#define BOARD_BOOTCLOCKFRO96M_FREQME_REFERENCE_CLOCK 0UL /* Clock consumers of FREQME_reference_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO96M_FREQME_TARGET_CLOCK 0UL /* Clock consumers of FREQME_target_clock output : FREQME0 */ +#define BOARD_BOOTCLOCKFRO96M_FRO_12M_CLOCK 12000000UL /* Clock consumers of FRO_12M_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_FRO_HF_DIV_CLOCK 96000000UL /* Clock consumers of FRO_HF_DIV_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_FRO_HF_CLOCK 96000000UL /* Clock consumers of FRO_HF_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_I3C_FCLK_CLOCK 0UL /* Clock consumers of I3C_FCLK_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO96M_I3C_SLOW_TC_CLOCK 0UL /* Clock consumers of I3C_SLOW_TC_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO96M_I3C_SLOW_CLOCK 0UL /* Clock consumers of I3C_SLOW_clock output : I3C0 */ +#define BOARD_BOOTCLOCKFRO96M_LPI2C0_CLOCK 0UL /* Clock consumers of LPI2C0_clock output : LPI2C0 */ +#define BOARD_BOOTCLOCKFRO96M_LPSPI0_CLOCK 0UL /* Clock consumers of LPSPI0_clock output : LPSPI0 */ +#define BOARD_BOOTCLOCKFRO96M_LPSPI1_CLOCK 0UL /* Clock consumers of LPSPI1_clock output : LPSPI1 */ +#define BOARD_BOOTCLOCKFRO96M_LPTMR0_CLOCK 0UL /* Clock consumers of LPTMR0_clock output : LPTMR0 */ +#define BOARD_BOOTCLOCKFRO96M_LPUART0_CLOCK 0UL /* Clock consumers of LPUART0_clock output : LPUART0 */ +#define BOARD_BOOTCLOCKFRO96M_LPUART1_CLOCK 0UL /* Clock consumers of LPUART1_clock output : LPUART1 */ +#define BOARD_BOOTCLOCKFRO96M_LPUART2_CLOCK 0UL /* Clock consumers of LPUART2_clock output : LPUART2 */ +#define BOARD_BOOTCLOCKFRO96M_MAIN_CLOCK 96000000UL /* Clock consumers of MAIN_clock output : FLEXPWM0 */ +#define BOARD_BOOTCLOCKFRO96M_OSTIMER_CLOCK 0UL /* Clock consumers of OSTIMER_clock output : OSTIMER0 */ +#define BOARD_BOOTCLOCKFRO96M_FIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.FIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_SIRC_TRIM_CLOCK 0UL /* Clock consumers of SCG.SIRC_TRIM_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_SLOW_CLOCK 24000000UL /* Clock consumers of Slow_clock output : AOI0, CMC, CMP0, LPTMR0, WAKETIMER0, WUU0 */ +#define BOARD_BOOTCLOCKFRO96M_SYSTEM_CLOCK 96000000UL /* Clock consumers of System_clock output : ADC0, CMP1, CTIMER0, CTIMER1, CTIMER2, DMA0, FLEXPWM0, FREQME0, GPIO0, GPIO1, GPIO2, GPIO3, I3C0, INPUTMUX0, LPI2C0, LPSPI0, LPSPI1, LPUART0, LPUART1, LPUART2, OSTIMER0, PORT0, PORT1, PORT2, PORT3, QDC0, SWD, SysTick, USB0, UTICK0, WWDT0 */ +#define BOARD_BOOTCLOCKFRO96M_TRACE_CLOCK 96000000UL /* Clock consumers of TRACE_clock output : SWD */ +#define BOARD_BOOTCLOCKFRO96M_USB0_CLOCK 0UL /* Clock consumers of USB0_clock output : USB0 */ +#define BOARD_BOOTCLOCKFRO96M_UTICK_CLOCK 1000000UL /* Clock consumers of UTICK_clock output : UTICK0 */ +#define BOARD_BOOTCLOCKFRO96M_WUU_CLOCK 0UL /* Clock consumers of WUU_clock output : N/A */ +#define BOARD_BOOTCLOCKFRO96M_WWDT0_CLOCK 1000000UL /* Clock consumers of WWDT0_clock output : WWDT0 */ + + +/******************************************************************************* + * API for BOARD_BootClockFRO96M configuration + ******************************************************************************/ +#if defined(__cplusplus) +extern "C" { +#endif /* __cplusplus*/ + +/*! + * @brief This function executes configuration of clocks. + * + */ +void BOARD_BootClockFRO96M(void); + +#if defined(__cplusplus) +} +#endif /* __cplusplus*/ + +#endif /* _CLOCK_CONFIG_H_ */ diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.c b/hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.c new file mode 100644 index 000000000..58b0f47e9 --- /dev/null +++ b/hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.c @@ -0,0 +1,492 @@ +/* + * Copyright 2025 NXP + * All rights reserved. + * + * SPDX-License-Identifier: BSD-3-Clause + */ + +/*********************************************************************************************************************** + * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file + * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. + **********************************************************************************************************************/ + +/* clang-format off */ +/* + * TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +!!GlobalInfo +product: Pins v17.0 +processor: MCXA153 +package_id: MCXA153VLH +mcu_data: ksdk2_0 +processor_version: 25.09.10 +board: FRDM-MCXA153 +external_user_signals: {} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS *********** + */ +/* clang-format on */ + +#include "fsl_common.h" +#include "fsl_port.h" +#include "fsl_gpio.h" +#include "pin_mux.h" + +/* FUNCTION ************************************************************************************************************ + * + * Function Name : BOARD_InitBootPins + * Description : Calls initialization functions. + * + * END ****************************************************************************************************************/ +void BOARD_InitBootPins(void) +{ + BOARD_InitDEBUG_UARTPins(); + BOARD_InitLEDsPins(); + BOARD_InitBUTTONsPins(); +} + +/* clang-format off */ +/* + * TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +BOARD_InitDEBUG_UARTPins: +- options: {callFromInitBoot: 'true', coreID: cm33_core0, enableClock: 'true'} +- pin_list: + - {pin_num: '51', peripheral: LPUART0, signal: RX, pin_signal: P0_2/TDO/SWO/LPUART0_RXD/LPSPI0_SCK/CT0_MAT0/UTICK_CAP0/I3C0_PUR, slew_rate: fast, open_drain: disable, + drive_strength: high, pull_select: down, pull_enable: disable, input_buffer: enable, invert_input: normal} + - {pin_num: '52', peripheral: LPUART0, signal: TX, pin_signal: P0_3/TDI/LPUART0_TXD/LPSPI0_SDO/CT0_MAT1/UTICK_CAP1/CMP0_OUT/CMP1_IN1, slew_rate: fast, open_drain: disable, + drive_strength: low, pull_select: up, pull_enable: enable, input_buffer: enable, invert_input: normal} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS *********** + */ +/* clang-format on */ + +/* FUNCTION ************************************************************************************************************ + * + * Function Name : BOARD_InitDEBUG_UARTPins + * Description : Configures pin routing and optionally pin electrical features. + * + * END ****************************************************************************************************************/ +void BOARD_InitDEBUG_UARTPins(void) +{ + /* Write to PORT0: Peripheral clock is enabled */ + CLOCK_EnableClock(kCLOCK_GatePORT0); + /* LPUART0 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kLPUART0_RST_SHIFT_RSTn); + /* PORT0 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kPORT0_RST_SHIFT_RSTn); + + const port_pin_config_t DEBUG_UART_RX = {/* Internal pull-up/down resistor is disabled */ + .pullSelect = kPORT_PullDisable, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is disabled */ + .passiveFilterEnable = kPORT_PassiveFilterDisable, + /* Open drain output is disabled */ + .openDrainEnable = kPORT_OpenDrainDisable, + /* High drive strength is configured */ + .driveStrength = kPORT_HighDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as LPUART0_RXD */ + .mux = kPORT_MuxAlt2, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT0_2 (pin 51) is configured as LPUART0_RXD */ + PORT_SetPinConfig(BOARD_INITDEBUG_UARTPINS_DEBUG_UART_RX_PORT, BOARD_INITDEBUG_UARTPINS_DEBUG_UART_RX_PIN, &DEBUG_UART_RX); + + const port_pin_config_t DEBUG_UART_TX = {/* Internal pull-up resistor is enabled */ + .pullSelect = kPORT_PullUp, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is disabled */ + .passiveFilterEnable = kPORT_PassiveFilterDisable, + /* Open drain output is disabled */ + .openDrainEnable = kPORT_OpenDrainDisable, + /* Low drive strength is configured */ + .driveStrength = kPORT_LowDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as LPUART0_TXD */ + .mux = kPORT_MuxAlt2, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT0_3 (pin 52) is configured as LPUART0_TXD */ + PORT_SetPinConfig(BOARD_INITDEBUG_UARTPINS_DEBUG_UART_TX_PORT, BOARD_INITDEBUG_UARTPINS_DEBUG_UART_TX_PIN, &DEBUG_UART_TX); +} + +/* clang-format off */ +/* + * TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +BOARD_InitSWD_DEBUGPins: +- options: {callFromInitBoot: 'false', coreID: cm33_core0, enableClock: 'true'} +- pin_list: + - {pin_num: '50', peripheral: SWD, signal: SWCLK, pin_signal: P0_1/TCLK/SWCLK/LPUART0_CTS_B/LPSPI0_SDI/CT_INP1, slew_rate: fast, open_drain: disable, drive_strength: low, + pull_select: down, pull_enable: enable, input_buffer: enable, invert_input: normal} + - {pin_num: '49', peripheral: SWD, signal: SWDIO, pin_signal: P0_0/TMS/SWDIO/LPUART0_RTS_B/LPSPI0_PCS0/CT_INP0, slew_rate: fast, open_drain: disable, drive_strength: high, + pull_select: up, pull_enable: enable, input_buffer: enable, invert_input: normal} + - {pin_num: '51', peripheral: SWD, signal: SWO, pin_signal: P0_2/TDO/SWO/LPUART0_RXD/LPSPI0_SCK/CT0_MAT0/UTICK_CAP0/I3C0_PUR, slew_rate: fast, open_drain: disable, + drive_strength: high, pull_select: down, pull_enable: disable, input_buffer: enable, invert_input: normal} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS *********** + */ +/* clang-format on */ + +/* FUNCTION ************************************************************************************************************ + * + * Function Name : BOARD_InitSWD_DEBUGPins + * Description : Configures pin routing and optionally pin electrical features. + * + * END ****************************************************************************************************************/ +void BOARD_InitSWD_DEBUGPins(void) +{ + /* Write to PORT0: Peripheral clock is enabled */ + CLOCK_EnableClock(kCLOCK_GatePORT0); + /* PORT0 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kPORT0_RST_SHIFT_RSTn); + /* LPUART0 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kLPUART0_RST_SHIFT_RSTn); + + const port_pin_config_t DEBUG_SWD_SWDIO = {/* Internal pull-up resistor is enabled */ + .pullSelect = kPORT_PullUp, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is disabled */ + .passiveFilterEnable = kPORT_PassiveFilterDisable, + /* Open drain output is disabled */ + .openDrainEnable = kPORT_OpenDrainDisable, + /* High drive strength is configured */ + .driveStrength = kPORT_HighDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as SWDIO */ + .mux = kPORT_MuxAlt1, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT0_0 (pin 49) is configured as SWDIO */ + PORT_SetPinConfig(BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDIO_PORT, BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDIO_PIN, &DEBUG_SWD_SWDIO); + + const port_pin_config_t DEBUG_SWD_SWDCLK = {/* Internal pull-down resistor is enabled */ + .pullSelect = kPORT_PullDown, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is disabled */ + .passiveFilterEnable = kPORT_PassiveFilterDisable, + /* Open drain output is disabled */ + .openDrainEnable = kPORT_OpenDrainDisable, + /* Low drive strength is configured */ + .driveStrength = kPORT_LowDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as SWCLK */ + .mux = kPORT_MuxAlt1, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT0_1 (pin 50) is configured as SWCLK */ + PORT_SetPinConfig(BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDCLK_PORT, BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDCLK_PIN, &DEBUG_SWD_SWDCLK); + + const port_pin_config_t DEBUG_UART_RX = {/* Internal pull-up/down resistor is disabled */ + .pullSelect = kPORT_PullDisable, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is disabled */ + .passiveFilterEnable = kPORT_PassiveFilterDisable, + /* Open drain output is disabled */ + .openDrainEnable = kPORT_OpenDrainDisable, + /* High drive strength is configured */ + .driveStrength = kPORT_HighDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as SWO */ + .mux = kPORT_MuxAlt1, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT0_2 (pin 51) is configured as SWO */ + PORT_SetPinConfig(BOARD_INITSWD_DEBUGPINS_DEBUG_UART_RX_PORT, BOARD_INITSWD_DEBUGPINS_DEBUG_UART_RX_PIN, &DEBUG_UART_RX); +} + +/* clang-format off */ +/* + * TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +BOARD_InitLEDsPins: +- options: {callFromInitBoot: 'true', coreID: cm33_core0, enableClock: 'true'} +- pin_list: + - {pin_num: '37', peripheral: GPIO3, signal: 'GPIO, 13', pin_signal: P3_13/LPUART2_CTS_B/CT1_MAT3/PWM0_X1, direction: OUTPUT, gpio_init_state: 'true', slew_rate: fast, + open_drain: disable, drive_strength: low, pull_select: up, pull_enable: disable, input_buffer: enable, invert_input: normal} + - {pin_num: '38', peripheral: GPIO3, signal: 'GPIO, 12', pin_signal: P3_12/LPUART2_RTS_B/CT1_MAT2/PWM0_X0, direction: OUTPUT, gpio_init_state: 'true', slew_rate: fast, + open_drain: disable, drive_strength: low, pull_select: up, pull_enable: disable, input_buffer: enable, invert_input: normal} + - {pin_num: '46', peripheral: GPIO3, signal: 'GPIO, 0', pin_signal: P3_0/WUU0_IN22/TRIG_IN0/CT_INP16/PWM0_A0, direction: OUTPUT, gpio_init_state: 'true', slew_rate: fast, + open_drain: disable, drive_strength: low, pull_select: up, pull_enable: disable, passive_filter: disable, input_buffer: enable, invert_input: normal} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS *********** + */ +/* clang-format on */ + +/* FUNCTION ************************************************************************************************************ + * + * Function Name : BOARD_InitLEDsPins + * Description : Configures pin routing and optionally pin electrical features. + * + * END ****************************************************************************************************************/ +void BOARD_InitLEDsPins(void) +{ + /* Write to GPIO3: Peripheral clock is enabled */ + CLOCK_EnableClock(kCLOCK_GateGPIO3); + /* Write to PORT3: Peripheral clock is enabled */ + CLOCK_EnableClock(kCLOCK_GatePORT3); + /* GPIO3 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kGPIO3_RST_SHIFT_RSTn); + /* PORT3 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kPORT3_RST_SHIFT_RSTn); + + gpio_pin_config_t LED_BLUE_config = { + .pinDirection = kGPIO_DigitalOutput, + .outputLogic = 1U + }; + /* Initialize GPIO functionality on pin PIO3_0 (pin 46) */ + GPIO_PinInit(BOARD_INITLEDSPINS_LED_BLUE_GPIO, BOARD_INITLEDSPINS_LED_BLUE_PIN, &LED_BLUE_config); + + gpio_pin_config_t LED_RED_config = { + .pinDirection = kGPIO_DigitalOutput, + .outputLogic = 1U + }; + /* Initialize GPIO functionality on pin PIO3_12 (pin 38) */ + GPIO_PinInit(BOARD_INITLEDSPINS_LED_RED_GPIO, BOARD_INITLEDSPINS_LED_RED_PIN, &LED_RED_config); + + gpio_pin_config_t LED_GREEN_config = { + .pinDirection = kGPIO_DigitalOutput, + .outputLogic = 1U + }; + /* Initialize GPIO functionality on pin PIO3_13 (pin 37) */ + GPIO_PinInit(BOARD_INITLEDSPINS_LED_GREEN_GPIO, BOARD_INITLEDSPINS_LED_GREEN_PIN, &LED_GREEN_config); + + /* PORT3_0 (pin 46) is configured as P3_0 */ + PORT_SetPinMux(BOARD_INITLEDSPINS_LED_BLUE_PORT, BOARD_INITLEDSPINS_LED_BLUE_PIN, kPORT_MuxAlt0); + + PORT3->PCR[0] = + ((PORT3->PCR[0] & + /* Mask bits to zero which are setting */ + (~(PORT_PCR_PS_MASK | PORT_PCR_PE_MASK | PORT_PCR_SRE_MASK | PORT_PCR_PFE_MASK | PORT_PCR_ODE_MASK | PORT_PCR_DSE_MASK | PORT_PCR_IBE_MASK | PORT_PCR_INV_MASK))) + + /* Pull Select: Enables internal pullup resistor. */ + | PORT_PCR_PS(PCR_PS_ps1) + + /* Pull Enable: Disables. */ + | PORT_PCR_PE(PCR_PE_pe0) + + /* Slew Rate Enable: Fast. */ + | PORT_PCR_SRE(PCR_SRE_sre0) + + /* Passive Filter Enable: Disables. */ + | PORT_PCR_PFE(PCR_PFE_pfe0) + + /* Open Drain Enable: Disables. */ + | PORT_PCR_ODE(PCR_ODE_ode0) + + /* Drive Strength Enable: Low. */ + | PORT_PCR_DSE(PCR_DSE_dse0) + + /* Input Buffer Enable: Enables. */ + | PORT_PCR_IBE(PCR_IBE_ibe1) + + /* Invert Input: Does not invert. */ + | PORT_PCR_INV(PCR_INV_inv0)); + + /* PORT3_12 (pin 38) is configured as P3_12 */ + PORT_SetPinMux(BOARD_INITLEDSPINS_LED_RED_PORT, BOARD_INITLEDSPINS_LED_RED_PIN, kPORT_MuxAlt0); + + PORT3->PCR[12] = + ((PORT3->PCR[12] & + /* Mask bits to zero which are setting */ + (~(PORT_PCR_PS_MASK | PORT_PCR_PE_MASK | PORT_PCR_SRE_MASK | PORT_PCR_ODE_MASK | PORT_PCR_DSE_MASK | PORT_PCR_IBE_MASK | PORT_PCR_INV_MASK))) + + /* Pull Select: Enables internal pullup resistor. */ + | PORT_PCR_PS(PCR_PS_ps1) + + /* Pull Enable: Disables. */ + | PORT_PCR_PE(PCR_PE_pe0) + + /* Slew Rate Enable: Fast. */ + | PORT_PCR_SRE(PCR_SRE_sre0) + + /* Open Drain Enable: Disables. */ + | PORT_PCR_ODE(PCR_ODE_ode0) + + /* Drive Strength Enable: Low. */ + | PORT_PCR_DSE(PCR_DSE_dse0) + + /* Input Buffer Enable: Enables. */ + | PORT_PCR_IBE(PCR_IBE_ibe1) + + /* Invert Input: Does not invert. */ + | PORT_PCR_INV(PCR_INV_inv0)); + + /* PORT3_13 (pin 37) is configured as P3_13 */ + PORT_SetPinMux(BOARD_INITLEDSPINS_LED_GREEN_PORT, BOARD_INITLEDSPINS_LED_GREEN_PIN, kPORT_MuxAlt0); + + PORT3->PCR[13] = + ((PORT3->PCR[13] & + /* Mask bits to zero which are setting */ + (~(PORT_PCR_PS_MASK | PORT_PCR_PE_MASK | PORT_PCR_SRE_MASK | PORT_PCR_ODE_MASK | PORT_PCR_DSE_MASK | PORT_PCR_IBE_MASK | PORT_PCR_INV_MASK))) + + /* Pull Select: Enables internal pullup resistor. */ + | PORT_PCR_PS(PCR_PS_ps1) + + /* Pull Enable: Disables. */ + | PORT_PCR_PE(PCR_PE_pe0) + + /* Slew Rate Enable: Fast. */ + | PORT_PCR_SRE(PCR_SRE_sre0) + + /* Open Drain Enable: Disables. */ + | PORT_PCR_ODE(PCR_ODE_ode0) + + /* Drive Strength Enable: Low. */ + | PORT_PCR_DSE(PCR_DSE_dse0) + + /* Input Buffer Enable: Enables. */ + | PORT_PCR_IBE(PCR_IBE_ibe1) + + /* Invert Input: Does not invert. */ + | PORT_PCR_INV(PCR_INV_inv0)); +} + +/* clang-format off */ +/* + * TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* +BOARD_InitBUTTONsPins: +- options: {callFromInitBoot: 'true', coreID: cm33_core0, enableClock: 'true'} +- pin_list: + - {pin_num: '1', peripheral: GPIO1, signal: 'GPIO, 7', pin_signal: P1_7/WUU0_IN9/TRIG_OUT2/LPUART2_CTS_B/CT_INP7/ADC0_A23, slew_rate: fast, open_drain: disable, + drive_strength: low, pull_select: down, pull_enable: disable, input_buffer: enable, invert_input: normal} + - {pin_num: '8', peripheral: GPIO1, signal: 'GPIO, 29', pin_signal: P1_29/RESET_B/SPC_LPREQ, slew_rate: fast, open_drain: enable, drive_strength: low, pull_select: up, + pull_enable: enable, passive_filter: enable, pull_value: low, input_buffer: enable, invert_input: normal} + - {pin_num: '32', peripheral: GPIO3, signal: 'GPIO, 29', pin_signal: P3_29/WUU0_IN27/ISPMODE_N/CT_INP3/ADC0_A14, slew_rate: fast, open_drain: disable, drive_strength: low, + pull_select: up, pull_enable: enable, input_buffer: enable, invert_input: normal} + * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS *********** + */ +/* clang-format on */ + +/* FUNCTION ************************************************************************************************************ + * + * Function Name : BOARD_InitBUTTONsPins + * Description : Configures pin routing and optionally pin electrical features. + * + * END ****************************************************************************************************************/ +void BOARD_InitBUTTONsPins(void) +{ + /* Write to PORT1: Peripheral clock is enabled */ + CLOCK_EnableClock(kCLOCK_GatePORT1); + /* Write to PORT3: Peripheral clock is enabled */ + CLOCK_EnableClock(kCLOCK_GatePORT3); + /* GPIO1 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kGPIO1_RST_SHIFT_RSTn); + /* PORT1 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kPORT1_RST_SHIFT_RSTn); + /* GPIO3 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kGPIO3_RST_SHIFT_RSTn); + /* PORT3 peripheral is released from reset */ + RESET_ReleasePeripheralReset(kPORT3_RST_SHIFT_RSTn); + + const port_pin_config_t SW1 = {/* Internal pull-up resistor is enabled */ + .pullSelect = kPORT_PullUp, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is enabled */ + .passiveFilterEnable = kPORT_PassiveFilterEnable, + /* Open drain output is enabled */ + .openDrainEnable = kPORT_OpenDrainEnable, + /* Low drive strength is configured */ + .driveStrength = kPORT_LowDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as P1_29 */ + .mux = kPORT_MuxAlt0, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT1_29 (pin 8) is configured as P1_29 */ + PORT_SetPinConfig(BOARD_INITBUTTONSPINS_SW1_PORT, BOARD_INITBUTTONSPINS_SW1_PIN, &SW1); + + const port_pin_config_t SW3 = {/* Internal pull-up/down resistor is disabled */ + .pullSelect = kPORT_PullDisable, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is disabled */ + .passiveFilterEnable = kPORT_PassiveFilterDisable, + /* Open drain output is disabled */ + .openDrainEnable = kPORT_OpenDrainDisable, + /* Low drive strength is configured */ + .driveStrength = kPORT_LowDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as P1_7 */ + .mux = kPORT_MuxAlt0, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT1_7 (pin 1) is configured as P1_7 */ + PORT_SetPinConfig(BOARD_INITBUTTONSPINS_SW3_PORT, BOARD_INITBUTTONSPINS_SW3_PIN, &SW3); + + const port_pin_config_t ISP = {/* Internal pull-up resistor is enabled */ + .pullSelect = kPORT_PullUp, + /* Low internal pull resistor value is selected. */ + .pullValueSelect = kPORT_LowPullResistor, + /* Fast slew rate is configured */ + .slewRate = kPORT_FastSlewRate, + /* Passive input filter is disabled */ + .passiveFilterEnable = kPORT_PassiveFilterDisable, + /* Open drain output is disabled */ + .openDrainEnable = kPORT_OpenDrainDisable, + /* Low drive strength is configured */ + .driveStrength = kPORT_LowDriveStrength, + /* Normal drive strength is configured */ + .driveStrength1 = kPORT_NormalDriveStrength, + /* Pin is configured as P3_29 */ + .mux = kPORT_MuxAlt0, + /* Digital input enabled */ + .inputBuffer = kPORT_InputBufferEnable, + /* Digital input is not inverted */ + .invertInput = kPORT_InputNormal, + /* Pin Control Register fields [15:0] are not locked */ + .lockRegister = kPORT_UnlockRegister}; + /* PORT3_29 (pin 32) is configured as P3_29 */ + PORT_SetPinConfig(BOARD_INITBUTTONSPINS_ISP_PORT, BOARD_INITBUTTONSPINS_ISP_PIN, &ISP); +} +/*********************************************************************************************************************** + * EOF + **********************************************************************************************************************/ diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.h b/hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.h new file mode 100644 index 000000000..4a42f266d --- /dev/null +++ b/hw/bsp/mcx/boards/frdm_mcxa153/board/pin_mux.h @@ -0,0 +1,211 @@ +/* + * Copyright 2025 NXP + * All rights reserved. + * + * SPDX-License-Identifier: BSD-3-Clause + */ + +/*********************************************************************************************************************** + * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file + * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. + **********************************************************************************************************************/ + +#ifndef _PIN_MUX_H_ +#define _PIN_MUX_H_ + +/*! + * @addtogroup pin_mux + * @{ + */ + +/*********************************************************************************************************************** + * API + **********************************************************************************************************************/ + +#if defined(__cplusplus) +extern "C" { +#endif + +/*! + * @brief Calls initialization functions. + * + */ +void BOARD_InitBootPins(void); + +/*! @name PORT0_2 (number 51), P0_2/SWO/J25[3]/J18[6] + @{ */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITDEBUG_UARTPINS_DEBUG_UART_RX_PORT PORT0 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITDEBUG_UARTPINS_DEBUG_UART_RX_PIN 2U /*!<@brief PORT pin number */ +#define BOARD_INITDEBUG_UARTPINS_DEBUG_UART_RX_PIN_MASK (1U << 2U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! @name PORT0_3 (number 52), P0_3/J25[1]/J18[8] + @{ */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITDEBUG_UARTPINS_DEBUG_UART_TX_PORT PORT0 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITDEBUG_UARTPINS_DEBUG_UART_TX_PIN 3U /*!<@brief PORT pin number */ +#define BOARD_INITDEBUG_UARTPINS_DEBUG_UART_TX_PIN_MASK (1U << 3U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! + * @brief Configures pin routing and optionally pin electrical features. + * + */ +void BOARD_InitDEBUG_UARTPins(void); + +/*! @name PORT0_1 (number 50), P0_1/SWCLK/JP10[2]/J18[4] + @{ */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDCLK_PORT PORT0 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDCLK_PIN 1U /*!<@brief PORT pin number */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDCLK_PIN_MASK (1U << 1U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! @name PORT0_0 (number 49), P0_0/SWDIO/J18[2] + @{ */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDIO_PORT PORT0 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDIO_PIN 0U /*!<@brief PORT pin number */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_SWD_SWDIO_PIN_MASK (1U << 0U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! @name PORT0_2 (number 51), P0_2/SWO/J25[3]/J18[6] + @{ */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_UART_RX_PORT PORT0 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_UART_RX_PIN 2U /*!<@brief PORT pin number */ +#define BOARD_INITSWD_DEBUGPINS_DEBUG_UART_RX_PIN_MASK (1U << 2U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! + * @brief Configures pin routing and optionally pin electrical features. + * + */ +void BOARD_InitSWD_DEBUGPins(void); + +#define PCR_DSE_dse0 0x00u /*!<@brief Drive Strength Enable: Low */ +#define PCR_IBE_ibe1 0x01u /*!<@brief Input Buffer Enable: Enables */ +#define PCR_INV_inv0 0x00u /*!<@brief Invert Input: Does not invert */ +#define PCR_ODE_ode0 0x00u /*!<@brief Open Drain Enable: Disables */ +#define PCR_PE_pe0 0x00u /*!<@brief Pull Enable: Disables */ +#define PCR_PFE_pfe0 0x00u /*!<@brief Passive Filter Enable: Disables */ +#define PCR_PS_ps1 0x01u /*!<@brief Pull Select: Enables internal pullup resistor */ +#define PCR_SRE_sre0 0x00u /*!<@brief Slew Rate Enable: Fast */ + +/*! @name PORT3_13 (number 37), P3_13/J1[14] + @{ */ + +/* Symbols to be used with GPIO driver */ +#define BOARD_INITLEDSPINS_LED_GREEN_GPIO GPIO3 /*!<@brief GPIO peripheral base pointer */ +#define BOARD_INITLEDSPINS_LED_GREEN_INIT_GPIO_VALUE 1U /*!<@brief GPIO output initial state */ +#define BOARD_INITLEDSPINS_LED_GREEN_GPIO_PIN 13U /*!<@brief GPIO pin number */ +#define BOARD_INITLEDSPINS_LED_GREEN_GPIO_PIN_MASK (1U << 13U) /*!<@brief GPIO pin mask */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITLEDSPINS_LED_GREEN_PORT PORT3 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITLEDSPINS_LED_GREEN_PIN 13U /*!<@brief PORT pin number */ +#define BOARD_INITLEDSPINS_LED_GREEN_PIN_MASK (1U << 13U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! @name PORT3_12 (number 38), P3_12/J1[12]/J5[1] + @{ */ + +/* Symbols to be used with GPIO driver */ +#define BOARD_INITLEDSPINS_LED_RED_GPIO GPIO3 /*!<@brief GPIO peripheral base pointer */ +#define BOARD_INITLEDSPINS_LED_RED_INIT_GPIO_VALUE 1U /*!<@brief GPIO output initial state */ +#define BOARD_INITLEDSPINS_LED_RED_GPIO_PIN 12U /*!<@brief GPIO pin number */ +#define BOARD_INITLEDSPINS_LED_RED_GPIO_PIN_MASK (1U << 12U) /*!<@brief GPIO pin mask */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITLEDSPINS_LED_RED_PORT PORT3 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITLEDSPINS_LED_RED_PIN 12U /*!<@brief PORT pin number */ +#define BOARD_INITLEDSPINS_LED_RED_PIN_MASK (1U << 12U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! @name PORT3_0 (number 46), P3_0/J1[8] + @{ */ + +/* Symbols to be used with GPIO driver */ +#define BOARD_INITLEDSPINS_LED_BLUE_GPIO GPIO3 /*!<@brief GPIO peripheral base pointer */ +#define BOARD_INITLEDSPINS_LED_BLUE_INIT_GPIO_VALUE 1U /*!<@brief GPIO output initial state */ +#define BOARD_INITLEDSPINS_LED_BLUE_GPIO_PIN 0U /*!<@brief GPIO pin number */ +#define BOARD_INITLEDSPINS_LED_BLUE_GPIO_PIN_MASK (1U << 0U) /*!<@brief GPIO pin mask */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITLEDSPINS_LED_BLUE_PORT PORT3 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITLEDSPINS_LED_BLUE_PIN 0U /*!<@brief PORT pin number */ +#define BOARD_INITLEDSPINS_LED_BLUE_PIN_MASK (1U << 0U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! + * @brief Configures pin routing and optionally pin electrical features. + * + */ +void BOARD_InitLEDsPins(void); + +/*! @name PORT1_7 (number 1), P1_7/J1[1] + @{ */ + +/* Symbols to be used with GPIO driver */ +#define BOARD_INITBUTTONSPINS_SW3_GPIO GPIO1 /*!<@brief GPIO peripheral base pointer */ +#define BOARD_INITBUTTONSPINS_SW3_GPIO_PIN 7U /*!<@brief GPIO pin number */ +#define BOARD_INITBUTTONSPINS_SW3_GPIO_PIN_MASK (1U << 7U) /*!<@brief GPIO pin mask */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITBUTTONSPINS_SW3_PORT PORT1 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITBUTTONSPINS_SW3_PIN 7U /*!<@brief PORT pin number */ +#define BOARD_INITBUTTONSPINS_SW3_PIN_MASK (1U << 7U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! @name PORT1_29 (number 8), P1_29/J3[6]/J18[10] + @{ */ + +/* Symbols to be used with GPIO driver */ +#define BOARD_INITBUTTONSPINS_SW1_GPIO GPIO1 /*!<@brief GPIO peripheral base pointer */ +#define BOARD_INITBUTTONSPINS_SW1_GPIO_PIN 29U /*!<@brief GPIO pin number */ +#define BOARD_INITBUTTONSPINS_SW1_GPIO_PIN_MASK (1U << 29U) /*!<@brief GPIO pin mask */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITBUTTONSPINS_SW1_PORT PORT1 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITBUTTONSPINS_SW1_PIN 29U /*!<@brief PORT pin number */ +#define BOARD_INITBUTTONSPINS_SW1_PIN_MASK (1U << 29U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! @name PORT3_29 (number 32), P3_29/J18[7]/J4[11] + @{ */ + +/* Symbols to be used with GPIO driver */ +#define BOARD_INITBUTTONSPINS_ISP_GPIO GPIO3 /*!<@brief GPIO peripheral base pointer */ +#define BOARD_INITBUTTONSPINS_ISP_GPIO_PIN 29U /*!<@brief GPIO pin number */ +#define BOARD_INITBUTTONSPINS_ISP_GPIO_PIN_MASK (1U << 29U) /*!<@brief GPIO pin mask */ + +/* Symbols to be used with PORT driver */ +#define BOARD_INITBUTTONSPINS_ISP_PORT PORT3 /*!<@brief PORT peripheral base pointer */ +#define BOARD_INITBUTTONSPINS_ISP_PIN 29U /*!<@brief PORT pin number */ +#define BOARD_INITBUTTONSPINS_ISP_PIN_MASK (1U << 29U) /*!<@brief PORT pin mask */ + /* @} */ + +/*! + * @brief Configures pin routing and optionally pin electrical features. + * + */ +void BOARD_InitBUTTONsPins(void); + +#if defined(__cplusplus) +} +#endif + +/*! + * @} + */ +#endif /* _PIN_MUX_H_ */ + +/*********************************************************************************************************************** + * EOF + **********************************************************************************************************************/ diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/clock_config.c b/hw/bsp/mcx/boards/frdm_mcxa153/clock_config.c deleted file mode 100644 index 5a132dc67..000000000 --- a/hw/bsp/mcx/boards/frdm_mcxa153/clock_config.c +++ /dev/null @@ -1,466 +0,0 @@ -/* - * Copyright 2023 NXP - * All rights reserved. - * - * SPDX-License-Identifier: BSD-3-Clause - */ - -/*********************************************************************************************************************** - * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file - * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. - **********************************************************************************************************************/ -/* - * How to setup clock using clock driver functions: - * - * 1. Setup clock sources. - * - * 2. Set up wait states of the flash. - * - * 3. Set up all dividers. - * - * 4. Set up all selectors to provide selected clocks. - * - */ - -/* clang-format off */ -/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -!!GlobalInfo -product: Clocks v12.0 -processor: MCXA153 -package_id: MCXA153VLH -mcu_data: ksdk2_0 -processor_version: 0.13.0 - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ -/* clang-format on */ - -#include "fsl_clock.h" -#include "clock_config.h" -#include "fsl_spc.h" - -/******************************************************************************* - * Definitions - ******************************************************************************/ - -/******************************************************************************* - * Variables - ******************************************************************************/ -/* System clock frequency. */ -//extern uint32_t SystemCoreClock; - -/******************************************************************************* - ************************ BOARD_InitBootClocks function ************************ - ******************************************************************************/ -void BOARD_InitBootClocks(void) -{ -} - -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO12M ********************** - ******************************************************************************/ -/* clang-format off */ -/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -!!Configuration -name: BOARD_BootClockFRO12M -outputs: -- {id: CLK_1M_clock.outFreq, value: 1 MHz} -- {id: CPU_clock.outFreq, value: 12 MHz} -- {id: FRO_12M_clock.outFreq, value: 12 MHz} -- {id: MAIN_clock.outFreq, value: 12 MHz} -- {id: Slow_clock.outFreq, value: 3 MHz} -- {id: System_clock.outFreq, value: 12 MHz} -settings: -- {id: SCGMode, value: SIRC} -- {id: FRO_HF_PERIPHERALS_EN_CFG, value: Disabled} -- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} -- {id: SCG.SCSSEL.sel, value: SCG.SIRC} -- {id: SCG_FIRCCSR_FIRCEN_CFG, value: Disabled} - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ -/* clang-format on */ - -/******************************************************************************* - * Variables for BOARD_BootClockFRO12M configuration - ******************************************************************************/ -/******************************************************************************* - * Code for BOARD_BootClockFRO12M configuration - ******************************************************************************/ -void BOARD_BootClockFRO12M(void) -{ - uint32_t coreFreq; - spc_active_mode_core_ldo_option_t ldoOption; - spc_sram_voltage_config_t sramOption; - - /* Get the CPU Core frequency */ - coreFreq = CLOCK_GetCoreSysClkFreq(); - - /* The flow of increasing voltage and frequency */ - if (coreFreq <= BOARD_BOOTCLOCKFRO12M_CORE_CLOCK) { - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P0V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - } - - CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ - - CLOCK_AttachClk(kFRO12M_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO12M */ - - /* The flow of decreasing voltage and frequency */ - if (coreFreq > BOARD_BOOTCLOCKFRO12M_CORE_CLOCK) { - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P0V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - } - - /*!< Set up clock selectors - Attach clocks to the peripheries */ - - /*!< Set up dividers */ - CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ - - /* Set SystemCoreClock variable */ - SystemCoreClock = BOARD_BOOTCLOCKFRO12M_CORE_CLOCK; -} -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO24M ********************** - ******************************************************************************/ -/* clang-format off */ -/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -!!Configuration -name: BOARD_BootClockFRO24M -outputs: -- {id: CLK_1M_clock.outFreq, value: 1 MHz} -- {id: CLK_48M_clock.outFreq, value: 48 MHz} -- {id: CPU_clock.outFreq, value: 24 MHz} -- {id: FRO_12M_clock.outFreq, value: 12 MHz} -- {id: FRO_HF_DIV_clock.outFreq, value: 48 MHz} -- {id: FRO_HF_clock.outFreq, value: 48 MHz} -- {id: MAIN_clock.outFreq, value: 48 MHz} -- {id: Slow_clock.outFreq, value: 6 MHz} -- {id: System_clock.outFreq, value: 24 MHz} -settings: -- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} -- {id: SYSCON.AHBCLKDIV.scale, value: '2', locked: true} - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ -/* clang-format on */ - -/******************************************************************************* - * Variables for BOARD_BootClockFRO24M configuration - ******************************************************************************/ -/******************************************************************************* - * Code for BOARD_BootClockFRO24M configuration - ******************************************************************************/ -void BOARD_BootClockFRO24M(void) -{ - uint32_t coreFreq; - spc_active_mode_core_ldo_option_t ldoOption; - spc_sram_voltage_config_t sramOption; - - /* Get the CPU Core frequency */ - coreFreq = CLOCK_GetCoreSysClkFreq(); - - /* The flow of increasing voltage and frequency */ - if (coreFreq <= BOARD_BOOTCLOCKFRO24M_CORE_CLOCK) { - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P0V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - } - - CLOCK_SetupFROHFClocking(48000000U); /*!< Enable FRO HF(48MHz) output */ - - CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ - - CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ - - /* The flow of decreasing voltage and frequency */ - if (coreFreq > BOARD_BOOTCLOCKFRO24M_CORE_CLOCK) { - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x0U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P0V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - } - - /*!< Set up clock selectors - Attach clocks to the peripheries */ - - /*!< Set up dividers */ - CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 2U); /* !< Set AHBCLKDIV divider to value 2 */ - CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ - - /* Set SystemCoreClock variable */ - SystemCoreClock = BOARD_BOOTCLOCKFRO24M_CORE_CLOCK; -} -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO48M ********************** - ******************************************************************************/ -/* clang-format off */ -/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -!!Configuration -name: BOARD_BootClockFRO48M -outputs: -- {id: CLK_1M_clock.outFreq, value: 1 MHz} -- {id: CLK_48M_clock.outFreq, value: 48 MHz} -- {id: CPU_clock.outFreq, value: 48 MHz} -- {id: FRO_12M_clock.outFreq, value: 12 MHz} -- {id: FRO_HF_DIV_clock.outFreq, value: 48 MHz} -- {id: FRO_HF_clock.outFreq, value: 48 MHz} -- {id: MAIN_clock.outFreq, value: 48 MHz} -- {id: Slow_clock.outFreq, value: 12 MHz} -- {id: System_clock.outFreq, value: 48 MHz} -settings: -- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ -/* clang-format on */ - -/******************************************************************************* - * Variables for BOARD_BootClockFRO48M configuration - ******************************************************************************/ -/******************************************************************************* - * Code for BOARD_BootClockFRO48M configuration - ******************************************************************************/ -void BOARD_BootClockFRO48M(void) -{ - uint32_t coreFreq; - spc_active_mode_core_ldo_option_t ldoOption; - spc_sram_voltage_config_t sramOption; - - /* Get the CPU Core frequency */ - coreFreq = CLOCK_GetCoreSysClkFreq(); - - /* The flow of increasing voltage and frequency */ - if (coreFreq <= BOARD_BOOTCLOCKFRO48M_CORE_CLOCK) { - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P0V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - } - - CLOCK_SetupFROHFClocking(48000000U); /*!< Enable FRO HF(48MHz) output */ - - CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ - - CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ - - /* The flow of decreasing voltage and frequency */ - if (coreFreq > BOARD_BOOTCLOCKFRO48M_CORE_CLOCK) { - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P0V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_MidDriveVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - } - - /*!< Set up clock selectors - Attach clocks to the peripheries */ - - /*!< Set up dividers */ - CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ - CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ - - /* Set SystemCoreClock variable */ - SystemCoreClock = BOARD_BOOTCLOCKFRO48M_CORE_CLOCK; -} -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO64M ********************** - ******************************************************************************/ -/* clang-format off */ -/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -!!Configuration -name: BOARD_BootClockFRO64M -outputs: -- {id: CLK_1M_clock.outFreq, value: 1 MHz} -- {id: CLK_48M_clock.outFreq, value: 48 MHz} -- {id: CPU_clock.outFreq, value: 64 MHz} -- {id: FRO_12M_clock.outFreq, value: 12 MHz} -- {id: FRO_HF_DIV_clock.outFreq, value: 64 MHz} -- {id: FRO_HF_clock.outFreq, value: 64 MHz} -- {id: MAIN_clock.outFreq, value: 64 MHz} -- {id: Slow_clock.outFreq, value: 16 MHz} -- {id: System_clock.outFreq, value: 64 MHz} -settings: -- {id: VDD_CORE, value: voltage_1v1} -- {id: MRCC.FROHFDIV.scale, value: '1', locked: true} -- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} -- {id: SYSCON.AHBCLKDIV.scale, value: '1', locked: true} -sources: -- {id: SCG.FIRC.outFreq, value: 64 MHz} - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ -/* clang-format on */ - -/******************************************************************************* - * Variables for BOARD_BootClockFRO64M configuration - ******************************************************************************/ -/******************************************************************************* - * Code for BOARD_BootClockFRO64M configuration - ******************************************************************************/ -void BOARD_BootClockFRO64M(void) -{ - uint32_t coreFreq; - spc_active_mode_core_ldo_option_t ldoOption; - spc_sram_voltage_config_t sramOption; - - /* Get the CPU Core frequency */ - coreFreq = CLOCK_GetCoreSysClkFreq(); - - /* The flow of increasing voltage and frequency */ - if (coreFreq <= BOARD_BOOTCLOCKFRO64M_CORE_CLOCK) { - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P1V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - } - - CLOCK_SetupFROHFClocking(64000000U); /*!< Enable FRO HF(64MHz) output */ - - CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ - - CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ - - /* The flow of decreasing voltage and frequency */ - if (coreFreq > BOARD_BOOTCLOCKFRO64M_CORE_CLOCK) { - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x1U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P1V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - } - - /*!< Set up clock selectors - Attach clocks to the peripheries */ - - /*!< Set up dividers */ - CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ - CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ - - /* Set SystemCoreClock variable */ - SystemCoreClock = BOARD_BOOTCLOCKFRO64M_CORE_CLOCK; -} -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO96M ********************** - ******************************************************************************/ -/* clang-format off */ -/* TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -!!Configuration -name: BOARD_BootClockFRO96M -outputs: -- {id: CLK_1M_clock.outFreq, value: 1 MHz} -- {id: CLK_48M_clock.outFreq, value: 48 MHz} -- {id: CPU_clock.outFreq, value: 96 MHz} -- {id: FRO_12M_clock.outFreq, value: 12 MHz} -- {id: FRO_HF_DIV_clock.outFreq, value: 96 MHz} -- {id: FRO_HF_clock.outFreq, value: 96 MHz} -- {id: MAIN_clock.outFreq, value: 96 MHz} -- {id: Slow_clock.outFreq, value: 24 MHz} -- {id: System_clock.outFreq, value: 96 MHz} -settings: -- {id: VDD_CORE, value: voltage_1v1} -- {id: CLKOUTDIV_HALT, value: Enable} -- {id: MRCC.FROHFDIV.scale, value: '1', locked: true} -- {id: MRCC.OSTIMERCLKSEL.sel, value: VBAT.CLK16K_1} -- {id: SYSCON.AHBCLKDIV.scale, value: '1', locked: true} -sources: -- {id: SCG.FIRC.outFreq, value: 96 MHz} - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS **********/ -/* clang-format on */ - -/******************************************************************************* - * Variables for BOARD_BootClockFRO96M configuration - ******************************************************************************/ -/******************************************************************************* - * Code for BOARD_BootClockFRO96M configuration - ******************************************************************************/ -void BOARD_BootClockFRO96M(void) -{ - uint32_t coreFreq; - spc_active_mode_core_ldo_option_t ldoOption; - spc_sram_voltage_config_t sramOption; - - /* Get the CPU Core frequency */ - coreFreq = CLOCK_GetCoreSysClkFreq(); - - /* The flow of increasing voltage and frequency */ - if (coreFreq <= BOARD_BOOTCLOCKFRO96M_CORE_CLOCK) { - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x2U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P1V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - } - - CLOCK_SetupFROHFClocking(96000000U); /*!< Enable FRO HF(96MHz) output */ - - CLOCK_SetupFRO12MClocking(); /*!< Setup FRO12M clock */ - - CLOCK_AttachClk(kFRO_HF_to_MAIN_CLK); /* !< Switch MAIN_CLK to FRO_HF */ - - /* The flow of decreasing voltage and frequency */ - if (coreFreq > BOARD_BOOTCLOCKFRO96M_CORE_CLOCK) { - /* Configure Flash to support different voltage level and frequency */ - FMU0->FCTRL = (FMU0->FCTRL & ~((uint32_t)FMU_FCTRL_RWSC_MASK)) | (FMU_FCTRL_RWSC(0x2U)); - /* Specifies the operating voltage for the SRAM's read/write timing margin */ - sramOption.operateVoltage = kSPC_sramOperateAt1P1V; - sramOption.requestVoltageUpdate = true; - (void)SPC_SetSRAMOperateVoltage(SPC0, &sramOption); - /* Set the LDO_CORE VDD regulator level */ - ldoOption.CoreLDOVoltage = kSPC_CoreLDO_NormalVoltage; - ldoOption.CoreLDODriveStrength = kSPC_CoreLDO_NormalDriveStrength; - (void)SPC_SetActiveModeCoreLDORegulatorConfig(SPC0, &ldoOption); - } - - /*!< Set up clock selectors - Attach clocks to the peripheries */ - - /*!< Set up dividers */ - CLOCK_SetClockDiv(kCLOCK_DivAHBCLK, 1U); /* !< Set AHBCLKDIV divider to value 1 */ - CLOCK_SetClockDiv(kCLOCK_DivFRO_HF_DIV, 1U); /* !< Set FROHFDIV divider to value 1 */ - - /* Set SystemCoreClock variable */ - SystemCoreClock = BOARD_BOOTCLOCKFRO96M_CORE_CLOCK; -} diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/clock_config.h b/hw/bsp/mcx/boards/frdm_mcxa153/clock_config.h deleted file mode 100644 index aae811052..000000000 --- a/hw/bsp/mcx/boards/frdm_mcxa153/clock_config.h +++ /dev/null @@ -1,170 +0,0 @@ -/* - * Copyright 2023 NXP - * All rights reserved. - * - * SPDX-License-Identifier: BSD-3-Clause - */ - -/*********************************************************************************************************************** - * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file - * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. - **********************************************************************************************************************/ - -#ifndef _CLOCK_CONFIG_H_ -#define _CLOCK_CONFIG_H_ - -#include "fsl_common.h" - -/******************************************************************************* - * Definitions - ******************************************************************************/ - -/******************************************************************************* - ************************ BOARD_InitBootClocks function ************************ - ******************************************************************************/ - -#if defined(__cplusplus) -extern "C" { -#endif /* __cplusplus*/ - -/*! - * @brief This function executes default configuration of clocks. - * - */ -void BOARD_InitBootClocks(void); - -#if defined(__cplusplus) -} -#endif /* __cplusplus*/ - -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO12M ********************** - ******************************************************************************/ -/******************************************************************************* - * Definitions for BOARD_BootClockFRO12M configuration - ******************************************************************************/ -#define BOARD_BOOTCLOCKFRO12M_CORE_CLOCK 12000000U /*!< Core clock frequency: 12000000Hz */ - - -/******************************************************************************* - * API for BOARD_BootClockFRO12M configuration - ******************************************************************************/ -#if defined(__cplusplus) -extern "C" { -#endif /* __cplusplus*/ - -/*! - * @brief This function executes configuration of clocks. - * - */ -void BOARD_BootClockFRO12M(void); - -#if defined(__cplusplus) -} -#endif /* __cplusplus*/ - -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO24M ********************** - ******************************************************************************/ -/******************************************************************************* - * Definitions for BOARD_BootClockFRO24M configuration - ******************************************************************************/ -#define BOARD_BOOTCLOCKFRO24M_CORE_CLOCK 24000000U /*!< Core clock frequency: 24000000Hz */ - - -/******************************************************************************* - * API for BOARD_BootClockFRO24M configuration - ******************************************************************************/ -#if defined(__cplusplus) -extern "C" { -#endif /* __cplusplus*/ - -/*! - * @brief This function executes configuration of clocks. - * - */ -void BOARD_BootClockFRO24M(void); - -#if defined(__cplusplus) -} -#endif /* __cplusplus*/ - -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO48M ********************** - ******************************************************************************/ -/******************************************************************************* - * Definitions for BOARD_BootClockFRO48M configuration - ******************************************************************************/ -#define BOARD_BOOTCLOCKFRO48M_CORE_CLOCK 48000000U /*!< Core clock frequency: 48000000Hz */ - - -/******************************************************************************* - * API for BOARD_BootClockFRO48M configuration - ******************************************************************************/ -#if defined(__cplusplus) -extern "C" { -#endif /* __cplusplus*/ - -/*! - * @brief This function executes configuration of clocks. - * - */ -void BOARD_BootClockFRO48M(void); - -#if defined(__cplusplus) -} -#endif /* __cplusplus*/ - -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO64M ********************** - ******************************************************************************/ -/******************************************************************************* - * Definitions for BOARD_BootClockFRO64M configuration - ******************************************************************************/ -#define BOARD_BOOTCLOCKFRO64M_CORE_CLOCK 64000000U /*!< Core clock frequency: 64000000Hz */ - - -/******************************************************************************* - * API for BOARD_BootClockFRO64M configuration - ******************************************************************************/ -#if defined(__cplusplus) -extern "C" { -#endif /* __cplusplus*/ - -/*! - * @brief This function executes configuration of clocks. - * - */ -void BOARD_BootClockFRO64M(void); - -#if defined(__cplusplus) -} -#endif /* __cplusplus*/ - -/******************************************************************************* - ******************** Configuration BOARD_BootClockFRO96M ********************** - ******************************************************************************/ -/******************************************************************************* - * Definitions for BOARD_BootClockFRO96M configuration - ******************************************************************************/ -#define BOARD_BOOTCLOCKFRO96M_CORE_CLOCK 96000000U /*!< Core clock frequency: 96000000Hz */ - - -/******************************************************************************* - * API for BOARD_BootClockFRO96M configuration - ******************************************************************************/ -#if defined(__cplusplus) -extern "C" { -#endif /* __cplusplus*/ - -/*! - * @brief This function executes configuration of clocks. - * - */ -void BOARD_BootClockFRO96M(void); - -#if defined(__cplusplus) -} -#endif /* __cplusplus*/ - -#endif /* _CLOCK_CONFIG_H_ */ diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/frdm_mcxa153.mex b/hw/bsp/mcx/boards/frdm_mcxa153/frdm_mcxa153.mex new file mode 100644 index 000000000..43fea73db --- /dev/null +++ b/hw/bsp/mcx/boards/frdm_mcxa153/frdm_mcxa153.mex @@ -0,0 +1,573 @@ + + + + MCXA153 + MCXA153VLH + FRDM-MCXA153 + ksdk2_0 + + + + + + + true + false + + /* + * Copyright 2025 NXP + * All rights reserved. + * + * SPDX-License-Identifier: BSD-3-Clause + */ + + true + + true + true + false + + + + + + + + + 25.09.10 + + + + + + + Configures pin routing and optionally pin electrical features. + + true + cm33_core0 + true + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Configures pin routing and optionally pin electrical features. + + false + cm33_core0 + true + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Configures pin routing and optionally pin electrical features. + + true + cm33_core0 + true + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + Configures pin routing and optionally pin electrical features. + + true + cm33_core0 + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + 25.09.10 + + + + + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + false + + + + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + + false + + + + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + false + + + + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + + + + + + false + + + + + + + + true + + + + + true + + + + + true + + + + + + + + + + + + + + + + + + + + + + + + + + + true + + + + + + + N/A + + + + + + + + + + 25.09.10 + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + N/A + + + + diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.c b/hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.c deleted file mode 100644 index 47709951b..000000000 --- a/hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.c +++ /dev/null @@ -1,130 +0,0 @@ -/* - * Copyright 2023 NXP - * All rights reserved. - * - * SPDX-License-Identifier: BSD-3-Clause - */ -/*********************************************************************************************************************** - * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file - * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. - **********************************************************************************************************************/ - -/* clang-format off */ -/* - * TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -!!GlobalInfo -product: Pins v14.0 -processor: MCXA153 -package_id: MCXA153VLH -mcu_data: ksdk2_0 -processor_version: 0.14.4 - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS *********** - */ -/* clang-format on */ - -#include "fsl_common.h" -#include "fsl_port.h" -#include "pin_mux.h" - -/* FUNCTION ************************************************************************************************************ - * - * Function Name : BOARD_InitBootPins - * Description : Calls initialization functions. - * - * END ****************************************************************************************************************/ -void BOARD_InitBootPins(void) -{ - BOARD_InitPins(); -} - -/* clang-format off */ -/* - * TEXT BELOW IS USED AS SETTING FOR TOOLS ************************************* -BOARD_InitPins: -- options: {callFromInitBoot: 'true', coreID: cm33_core0, enableClock: 'true'} -- pin_list: - - {pin_num: '51', peripheral: LPUART0, signal: RX, pin_signal: P0_2/TDO/SWO/LPUART0_RXD/LPSPI0_SCK/CT0_MAT0/UTICK_CAP0/I3C0_PUR, slew_rate: fast, open_drain: disable, - drive_strength: low, pull_select: up, pull_enable: enable, input_buffer: enable, invert_input: normal} - - {pin_num: '52', peripheral: LPUART0, signal: TX, pin_signal: P0_3/TDI/LPUART0_TXD/LPSPI0_SDO/CT0_MAT1/UTICK_CAP1/CMP0_OUT/CMP1_IN1, slew_rate: fast, open_drain: disable, - drive_strength: low, pull_select: up, pull_enable: enable, input_buffer: enable, invert_input: normal} - * BE CAREFUL MODIFYING THIS COMMENT - IT IS YAML SETTINGS FOR TOOLS *********** - */ -/* clang-format on */ - -/* FUNCTION ************************************************************************************************************ - * - * Function Name : BOARD_InitPins - * Description : Configures pin routing and optionally pin electrical features. - * - * END ****************************************************************************************************************/ -void BOARD_InitPins(void) -{ - CLOCK_EnableClock(kCLOCK_GateGPIO3); - /* Write to PORT3: Peripheral clock is enabled */ - CLOCK_EnableClock(kCLOCK_GatePORT3); - /* GPIO3 peripheral is released from reset */ - RESET_ReleasePeripheralReset(kGPIO3_RST_SHIFT_RSTn); - /* PORT3 peripheral is released from reset */ - RESET_ReleasePeripheralReset(kPORT3_RST_SHIFT_RSTn); - - - /* Write to PORT0: Peripheral clock is enabled */ - CLOCK_EnableClock(kCLOCK_GatePORT0); - /* LPUART0 peripheral is released from reset */ - RESET_ReleasePeripheralReset(kLPUART0_RST_SHIFT_RSTn); - /* PORT0 peripheral is released from reset */ - RESET_ReleasePeripheralReset(kPORT0_RST_SHIFT_RSTn); - - const port_pin_config_t port0_2_pin51_config = {/* Internal pull-up resistor is enabled */ - kPORT_PullUp, - /* Low internal pull resistor value is selected. */ - kPORT_LowPullResistor, - /* Fast slew rate is configured */ - kPORT_FastSlewRate, - /* Passive input filter is disabled */ - kPORT_PassiveFilterDisable, - /* Open drain output is disabled */ - kPORT_OpenDrainDisable, - /* Low drive strength is configured */ - kPORT_LowDriveStrength, - /* Normal drive strength is configured */ - kPORT_NormalDriveStrength, - /* Pin is configured as LPUART0_RXD */ - kPORT_MuxAlt2, - /* Digital input enabled */ - kPORT_InputBufferEnable, - /* Digital input is not inverted */ - kPORT_InputNormal, - /* Pin Control Register fields [15:0] are not locked */ - kPORT_UnlockRegister}; - /* PORT0_2 (pin 51) is configured as LPUART0_RXD */ - PORT_SetPinConfig(PORT0, 2U, &port0_2_pin51_config); - - const port_pin_config_t port0_3_pin52_config = {/* Internal pull-up resistor is enabled */ - kPORT_PullUp, - /* Low internal pull resistor value is selected. */ - kPORT_LowPullResistor, - /* Fast slew rate is configured */ - kPORT_FastSlewRate, - /* Passive input filter is disabled */ - kPORT_PassiveFilterDisable, - /* Open drain output is disabled */ - kPORT_OpenDrainDisable, - /* Low drive strength is configured */ - kPORT_LowDriveStrength, - /* Normal drive strength is configured */ - kPORT_NormalDriveStrength, - /* Pin is configured as LPUART0_TXD */ - kPORT_MuxAlt2, - /* Digital input enabled */ - kPORT_InputBufferEnable, - /* Digital input is not inverted */ - kPORT_InputNormal, - /* Pin Control Register fields [15:0] are not locked */ - kPORT_UnlockRegister}; - /* PORT0_3 (pin 52) is configured as LPUART0_TXD */ - PORT_SetPinConfig(PORT0, 3U, &port0_3_pin52_config); -} -/*********************************************************************************************************************** - * EOF - **********************************************************************************************************************/ diff --git a/hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.h b/hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.h deleted file mode 100644 index 2c0e617a5..000000000 --- a/hw/bsp/mcx/boards/frdm_mcxa153/pin_mux.h +++ /dev/null @@ -1,51 +0,0 @@ -/* - * Copyright 2023 NXP - * All rights reserved. - * - * SPDX-License-Identifier: BSD-3-Clause - */ -/*********************************************************************************************************************** - * This file was generated by the MCUXpresso Config Tools. Any manual edits made to this file - * will be overwritten if the respective MCUXpresso Config Tools is used to update this file. - **********************************************************************************************************************/ - -#ifndef _PIN_MUX_H_ -#define _PIN_MUX_H_ - -/*! - * @addtogroup pin_mux - * @{ - */ - -/*********************************************************************************************************************** - * API - **********************************************************************************************************************/ - -#if defined(__cplusplus) -extern "C" { -#endif - -/*! - * @brief Calls initialization functions. - * - */ -void BOARD_InitBootPins(void); - -/*! - * @brief Configures pin routing and optionally pin electrical features. - * - */ -void BOARD_InitPins(void); - -#if defined(__cplusplus) -} -#endif - -/*! - * @} - */ -#endif /* _PIN_MUX_H_ */ - -/*********************************************************************************************************************** - * EOF - **********************************************************************************************************************/ diff --git a/hw/bsp/mcx/family.c b/hw/bsp/mcx/family.c index 2dfefeb92..e1accf941 100644 --- a/hw/bsp/mcx/family.c +++ b/hw/bsp/mcx/family.c @@ -61,14 +61,9 @@ void USB0_IRQHandler(void) { void board_init(void) { - BOARD_InitPins(); - + BOARD_InitBootPins(); BOARD_InitBootClocks(); - #ifdef XTAL0_CLK_HZ - CLOCK_SetupExtClocking(XTAL0_CLK_HZ); - #endif - #if CFG_TUSB_OS == OPT_OS_NONE // 1ms tick timer SysTick_Config(SystemCoreClock / 1000); diff --git a/hw/bsp/mcx/family.mk b/hw/bsp/mcx/family.mk index a16f4b6c0..4321e654a 100644 --- a/hw/bsp/mcx/family.mk +++ b/hw/bsp/mcx/family.mk @@ -11,7 +11,7 @@ CFLAGS += \ -DBOARD_TUD_RHPORT=$(PORT) \ # mcu driver cause following warnings -CFLAGS += -Wno-error=unused-parameter -Wno-error=old-style-declaration +CFLAGS += -Wno-error=unused-parameter -Wno-error=old-style-declaration -Wno-error=redundant-decls LDFLAGS_GCC += -specs=nosys.specs -specs=nano.specs @@ -56,12 +56,9 @@ INC += \ $(TOP)/$(SDK_DIR)/drivers/ \ $(TOP)/$(SDK_DIR)/drivers/lpuart \ $(TOP)/$(SDK_DIR)/drivers/lpflexcomm \ - $(TOP)/$(SDK_DIR)/drivers/common\ - $(TOP)/$(SDK_DIR)/drivers/gpio\ - $(TOP)/$(SDK_DIR)/drivers/port\ - $(TOP)/hw/bsp/mcx/drivers/spc - - - + $(TOP)/$(SDK_DIR)/drivers/common\ + $(TOP)/$(SDK_DIR)/drivers/gpio\ + $(TOP)/$(SDK_DIR)/drivers/port\ + $(TOP)/hw/bsp/mcx/drivers/spc SRC_S += $(SDK_DIR)/devices/$(MCU_VARIANT)/gcc/startup_$(MCU_CORE).S diff --git a/src/common/tusb_mcu.h b/src/common/tusb_mcu.h index 05ae6929c..002cd3a0e 100644 --- a/src/common/tusb_mcu.h +++ b/src/common/tusb_mcu.h @@ -543,6 +543,10 @@ #define TUP_RHPORT_HIGHSPEED CFG_TUD_WCH_USBIP_USBHS #define TUP_DCD_ENDPOINT_MAX (CFG_TUD_WCH_USBIP_USBHS ? 16 : 8) + #if CFG_TUD_WCH_USBIP_USBHS + #define TUP_DCD_EDPT_CLOSE_API + #endif + #elif TU_CHECK_MCU(OPT_MCU_CH32V103) #define TUP_USBIP_WCH_USBFS @@ -590,6 +594,10 @@ #define TUP_RHPORT_HIGHSPEED CFG_TUD_WCH_USBIP_USBHS #define TUP_DCD_ENDPOINT_MAX (CFG_TUD_WCH_USBIP_USBHS ? 16 : 8) + #if CFG_TUD_WCH_USBIP_USBHS + #define TUP_DCD_EDPT_CLOSE_API + #endif + //--------------------------------------------------------------------+ // Analog Devices //--------------------------------------------------------------------+ @@ -681,8 +689,7 @@ #define TU_ATTR_FAST_FUNC #endif -#if defined(TUP_USBIP_CHIPIDEA_FS) || defined(TUP_USBIP_IP3511) || defined(TUP_USBIP_RUSB2) || \ - (defined(TUP_USBIP_WCH_USBFS) && CFG_TUD_WCH_USBIP_USBFS) +#if defined(TUP_USBIP_IP3511) || defined(TUP_USBIP_RUSB2) #define TUP_DCD_EDPT_CLOSE_API #endif diff --git a/src/portable/chipidea/ci_fs/dcd_ci_fs.c b/src/portable/chipidea/ci_fs/dcd_ci_fs.c index 8b5c42aa2..40ad4cf82 100644 --- a/src/portable/chipidea/ci_fs/dcd_ci_fs.c +++ b/src/portable/chipidea/ci_fs/dcd_ci_fs.c @@ -344,24 +344,21 @@ void dcd_sof_enable(uint8_t rhport, bool en) //--------------------------------------------------------------------+ // Endpoint API //--------------------------------------------------------------------+ -bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) -{ - (void) rhport; - - const unsigned ep_addr = ep_desc->bEndpointAddress; - const unsigned epn = tu_edpt_number(ep_addr); - const unsigned dir = tu_edpt_dir(ep_addr); - const unsigned xfer = ep_desc->bmAttributes.xfer; - endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; - const unsigned odd = ep->odd; - buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; +static bool edpt_open(uint8_t rhport, uint8_t ep_addr, uint16_t max_packet_size, tusb_xfer_type_t xfer) { + (void)rhport; + const unsigned epn = tu_edpt_number(ep_addr); + const unsigned dir = tu_edpt_dir(ep_addr); + endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; + const unsigned odd = ep->odd; + buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; /* No support for control transfer */ TU_ASSERT(epn && (xfer != TUSB_XFER_CONTROL)); - ep->max_packet_size = tu_edpt_packet_size(ep_desc); + ep->max_packet_size = max_packet_size; + unsigned val = USB_ENDPT_EPCTLDIS_MASK; - val |= (xfer != TUSB_XFER_ISOCHRONOUS) ? USB_ENDPT_EPHSHK_MASK: 0; + val |= (xfer != TUSB_XFER_ISOCHRONOUS) ? USB_ENDPT_EPHSHK_MASK : 0; val |= dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK; CI_REG->EP[epn].CTL |= val; @@ -375,8 +372,27 @@ bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) return true; } -void dcd_edpt_close_all(uint8_t rhport) -{ +bool dcd_edpt_open(uint8_t rhport, const tusb_desc_endpoint_t *ep_desc) { + return edpt_open(rhport, ep_desc->bEndpointAddress, tu_edpt_packet_size(ep_desc), ep_desc->bmAttributes.xfer); +} + +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + return edpt_open(rhport, ep_addr, largest_packet_size, TUSB_XFER_ISOCHRONOUS); +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *ep_desc) { + const unsigned epn = tu_edpt_number(ep_desc->bEndpointAddress); + const unsigned dir = tu_edpt_dir(ep_desc->bEndpointAddress); + endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; + + dcd_int_disable(rhport); + ep->max_packet_size = tu_edpt_packet_size(ep_desc); + dcd_int_enable(rhport); + + return true; +} + +void dcd_edpt_close_all(uint8_t rhport) { dcd_int_disable(rhport); for (unsigned i = 1; i < 16; ++i) { @@ -399,43 +415,6 @@ void dcd_edpt_close_all(uint8_t rhport) } } -#ifdef TUP_DCD_EDPT_CLOSE_API -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) -{ - const unsigned epn = tu_edpt_number(ep_addr); - const unsigned dir = tu_edpt_dir(ep_addr); - endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; - buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; - const unsigned msk = dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK; - - dcd_int_disable(rhport); - - CI_REG->EP[epn].CTL &= ~msk; - ep->max_packet_size = 0; - ep->length = 0; - ep->remaining = 0; - bd[0].head = 0; - bd[1].head = 0; - - dcd_int_enable(rhport); -} - -#else - -bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { - (void) rhport; - (void) ep_addr; - (void) largest_packet_size; - return false; -} - -bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { - (void) rhport; - (void) desc_ep; - return false; -} -#endif - bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { const unsigned epn = tu_edpt_number(ep_addr); diff --git a/src/portable/nxp/khci/dcd_khci.c b/src/portable/nxp/khci/dcd_khci.c index da1c5c888..9edaadf58 100644 --- a/src/portable/nxp/khci/dcd_khci.c +++ b/src/portable/nxp/khci/dcd_khci.c @@ -355,24 +355,21 @@ void dcd_sof_enable(uint8_t rhport, bool en) //--------------------------------------------------------------------+ // Endpoint API //--------------------------------------------------------------------+ -bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) -{ - (void) rhport; +static bool edpt_open(uint8_t rhport, uint8_t ep_addr, uint16_t max_packet_size, tusb_xfer_type_t xfer) { + (void)rhport; - const unsigned ep_addr = ep_desc->bEndpointAddress; - const unsigned epn = tu_edpt_number(ep_addr); - const unsigned dir = tu_edpt_dir(ep_addr); - const unsigned xfer = ep_desc->bmAttributes.xfer; - endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; - const unsigned odd = ep->odd; - buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; + const unsigned epn = tu_edpt_number(ep_addr); + const unsigned dir = tu_edpt_dir(ep_addr); + endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; + const unsigned odd = ep->odd; + buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; /* No support for control transfer */ TU_ASSERT(epn && (xfer != TUSB_XFER_CONTROL)); - ep->max_packet_size = tu_edpt_packet_size(ep_desc); - unsigned val = USB_ENDPT_EPCTLDIS_MASK; - val |= (xfer != TUSB_XFER_ISOCHRONOUS) ? USB_ENDPT_EPHSHK_MASK: 0; + ep->max_packet_size = max_packet_size; + unsigned val = USB_ENDPT_EPCTLDIS_MASK; + val |= (xfer != TUSB_XFER_ISOCHRONOUS) ? USB_ENDPT_EPHSHK_MASK : 0; val |= dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK; KHCI->ENDPOINT[epn].ENDPT |= val; @@ -386,6 +383,26 @@ bool dcd_edpt_open(uint8_t rhport, tusb_desc_endpoint_t const * ep_desc) return true; } +bool dcd_edpt_open(uint8_t rhport, const tusb_desc_endpoint_t *ep_desc) { + return edpt_open(rhport, ep_desc->bEndpointAddress, tu_edpt_packet_size(ep_desc), ep_desc->bmAttributes.xfer); +} + +bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { + return edpt_open(rhport, ep_addr, largest_packet_size, TUSB_XFER_ISOCHRONOUS); +} + +bool dcd_edpt_iso_activate(uint8_t rhport, const tusb_desc_endpoint_t *ep_desc) { + const unsigned epn = tu_edpt_number(ep_desc->bEndpointAddress); + const unsigned dir = tu_edpt_dir(ep_desc->bEndpointAddress); + endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; + + dcd_int_disable(rhport); + ep->max_packet_size = tu_edpt_packet_size(ep_desc); + dcd_int_enable(rhport); + + return true; +} + void dcd_edpt_close_all(uint8_t rhport) { (void) rhport; @@ -408,41 +425,6 @@ void dcd_edpt_close_all(uint8_t rhport) } } -void dcd_edpt_close(uint8_t rhport, uint8_t ep_addr) -{ - (void) rhport; - - const unsigned epn = tu_edpt_number(ep_addr); - const unsigned dir = tu_edpt_dir(ep_addr); - endpoint_state_t *ep = &_dcd.endpoint[epn][dir]; - buffer_descriptor_t *bd = _dcd.bdt[epn][dir]; - const unsigned msk = dir ? USB_ENDPT_EPTXEN_MASK : USB_ENDPT_EPRXEN_MASK; - const unsigned ie = NVIC_GetEnableIRQ(USB0_IRQn); - NVIC_DisableIRQ(USB0_IRQn); - KHCI->ENDPOINT[epn].ENDPT &= ~msk; - ep->max_packet_size = 0; - ep->length = 0; - ep->remaining = 0; - bd[0].head = 0; - bd[1].head = 0; - if (ie) NVIC_EnableIRQ(USB0_IRQn); -} - -#if 0 -bool dcd_edpt_iso_alloc(uint8_t rhport, uint8_t ep_addr, uint16_t largest_packet_size) { - (void) rhport; - (void) ep_addr; - (void) largest_packet_size; - return false; -} - -bool dcd_edpt_iso_activate(uint8_t rhport, tusb_desc_endpoint_t const * desc_ep) { - (void) rhport; - (void) desc_ep; - return false; -} - #endif - bool dcd_edpt_xfer(uint8_t rhport, uint8_t ep_addr, uint8_t* buffer, uint16_t total_bytes) { (void) rhport; -- cgit v1.3.1