diff options
| author | hathach <[email protected]> | 2024-04-09 20:26:26 +0700 |
|---|---|---|
| committer | hathach <[email protected]> | 2024-04-09 22:04:43 +0700 |
| commit | 2bce68a065aa873ffd738b5a90639b3b4b18d2c2 (patch) | |
| tree | c1a2bfc42a3be56b4751969681005665dfaf90ad /src/class/cdc | |
| parent | 75cf8e21a7e525eb24b7fd34fe5859cba331fcc2 (diff) | |
| parent | 68a08e33d2a1a3b02a28c616bc825eb674700833 (diff) | |
Merge branch 'master' into dwc2-interrupts
Diffstat (limited to 'src/class/cdc')
| -rw-r--r-- | src/class/cdc/cdc.h | 34 | ||||
| -rw-r--r-- | src/class/cdc/cdc_device.c | 53 | ||||
| -rw-r--r-- | src/class/cdc/cdc_device.h | 1 | ||||
| -rw-r--r-- | src/class/cdc/cdc_host.c | 1459 | ||||
| -rw-r--r-- | src/class/cdc/cdc_host.h | 24 | ||||
| -rw-r--r-- | src/class/cdc/serial/ch34x.h | 84 | ||||
| -rw-r--r-- | src/class/cdc/serial/cp210x.h | 2 | ||||
| -rw-r--r-- | src/class/cdc/serial/ftdi_sio.h | 5 |
8 files changed, 1179 insertions, 483 deletions
diff --git a/src/class/cdc/cdc.h b/src/class/cdc/cdc.h index 4658e43af..5cbd658fe 100644 --- a/src/class/cdc/cdc.h +++ b/src/class/cdc/cdc.h @@ -136,8 +136,7 @@ typedef enum{ //--------------------------------------------------------------------+ /// Communication Interface Management Element Request Codes -typedef enum -{ +typedef enum { CDC_REQUEST_SEND_ENCAPSULATED_COMMAND = 0x00, ///< is used to issue a command in the format of the supported control protocol of the Communications Class interface CDC_REQUEST_GET_ENCAPSULATED_RESPONSE = 0x01, ///< is used to request a response in the format of the supported control protocol of the Communications Class interface. CDC_REQUEST_SET_COMM_FEATURE = 0x02, @@ -180,37 +179,38 @@ typedef enum CDC_REQUEST_GET_ATM_VC_STATISTICS = 0x53, CDC_REQUEST_MDLM_SEMANTIC_MODEL = 0x60, -}cdc_management_request_t; +} cdc_management_request_t; -enum -{ +typedef enum { CDC_CONTROL_LINE_STATE_DTR = 0x01, CDC_CONTROL_LINE_STATE_RTS = 0x02, -}; +} cdc_control_line_state_t; -enum -{ - CDC_LINE_CONDING_STOP_BITS_1 = 0, // 1 bit - CDC_LINE_CONDING_STOP_BITS_1_5 = 1, // 1.5 bits - CDC_LINE_CONDING_STOP_BITS_2 = 2, // 2 bits -}; +typedef enum { + CDC_LINE_CODING_STOP_BITS_1 = 0, // 1 bit + CDC_LINE_CODING_STOP_BITS_1_5 = 1, // 1.5 bits + CDC_LINE_CODING_STOP_BITS_2 = 2, // 2 bits +} cdc_line_coding_stopbits_t; -enum -{ +// TODO Backward compatible for typos. Maybe removed in the future release +#define CDC_LINE_CONDING_STOP_BITS_1 CDC_LINE_CODING_STOP_BITS_1 +#define CDC_LINE_CONDING_STOP_BITS_1_5 CDC_LINE_CODING_STOP_BITS_1_5 +#define CDC_LINE_CONDING_STOP_BITS_2 CDC_LINE_CODING_STOP_BITS_2 + +typedef enum { CDC_LINE_CODING_PARITY_NONE = 0, CDC_LINE_CODING_PARITY_ODD = 1, CDC_LINE_CODING_PARITY_EVEN = 2, CDC_LINE_CODING_PARITY_MARK = 3, CDC_LINE_CODING_PARITY_SPACE = 4, -}; +} cdc_line_coding_parity_t; //--------------------------------------------------------------------+ // Management Element Notification (Notification Endpoint) //--------------------------------------------------------------------+ /// 6.3 Notification Codes -typedef enum -{ +typedef enum { CDC_NOTIF_NETWORK_CONNECTION = 0x00, ///< This notification allows the device to notify the host about network connection status. CDC_NOTIF_RESPONSE_AVAILABLE = 0x01, ///< This notification allows the device to notify the hostthat a response is available. This response can be retrieved with a subsequent \ref CDC_REQUEST_GET_ENCAPSULATED_RESPONSE request. CDC_NOTIF_AUX_JACK_HOOK_STATE = 0x08, diff --git a/src/class/cdc/cdc_device.c b/src/class/cdc/cdc_device.c index 5adce521d..7ef0530ec 100644 --- a/src/class/cdc/cdc_device.c +++ b/src/class/cdc/cdc_device.c @@ -33,6 +33,13 @@ #include "cdc_device.h" +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUD_CDC_LOG_LEVEL + #define CFG_TUD_CDC_LOG_LEVEL CFG_TUD_LOG_LEVEL +#endif + +#define TU_LOG_DRV(...) TU_LOG(CFG_TUD_CDC_LOG_LEVEL, __VA_ARGS__) + //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ @@ -76,7 +83,7 @@ typedef struct //--------------------------------------------------------------------+ // INTERNAL OBJECT & FUNCTION DECLARATION //--------------------------------------------------------------------+ -CFG_TUSB_MEM_SECTION tu_static cdcd_interface_t _cdcd_itf[CFG_TUD_CDC]; +CFG_TUD_MEM_SECTION tu_static cdcd_interface_t _cdcd_itf[CFG_TUD_CDC]; static bool _prep_out_transaction (cdcd_interface_t* p_cdc) { @@ -143,7 +150,7 @@ uint32_t tud_cdc_n_available(uint8_t itf) 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) bufsize); + uint32_t num_read = tu_fifo_read_n(&p_cdc->rx_ff, buffer, (uint16_t) TU_MIN(bufsize, UINT16_MAX)); _prep_out_transaction(p_cdc); return num_read; } @@ -166,7 +173,7 @@ void tud_cdc_n_read_flush (uint8_t itf) uint32_t tud_cdc_n_write(uint8_t itf, void const* buffer, uint32_t bufsize) { cdcd_interface_t* p_cdc = &_cdcd_itf[itf]; - uint16_t ret = tu_fifo_write_n(&p_cdc->tx_ff, buffer, (uint16_t) bufsize); + uint16_t ret = tu_fifo_write_n(&p_cdc->tx_ff, buffer, (uint16_t) TU_MIN(bufsize, UINT16_MAX)); // flush if queue more than packet size // may need to suppress -Wunreachable-code since most of the time CFG_TUD_CDC_TX_BUFSIZE < BULK_PACKET_SIZE @@ -246,9 +253,37 @@ void cdcd_init(void) // In this way, the most current data is prioritized. tu_fifo_config(&p_cdc->tx_ff, p_cdc->tx_ff_buf, TU_ARRAY_SIZE(p_cdc->tx_ff_buf), 1, true); - tu_fifo_config_mutex(&p_cdc->rx_ff, NULL, osal_mutex_create(&p_cdc->rx_ff_mutex)); - tu_fifo_config_mutex(&p_cdc->tx_ff, osal_mutex_create(&p_cdc->tx_ff_mutex), NULL); + #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 + } +} + +bool cdcd_deinit(void) { + #if OSAL_MUTEX_REQUIRED + for(uint8_t i=0; i<CFG_TUD_CDC; i++) { + cdcd_interface_t* p_cdc = &_cdcd_itf[i]; + osal_mutex_t mutex_rd = p_cdc->rx_ff.mutex_rd; + osal_mutex_t mutex_wr = p_cdc->tx_ff.mutex_wr; + + if (mutex_rd) { + osal_mutex_delete(mutex_rd); + tu_fifo_config_mutex(&p_cdc->rx_ff, NULL, NULL); + } + + if (mutex_wr) { + osal_mutex_delete(mutex_wr); + tu_fifo_config_mutex(&p_cdc->tx_ff, NULL, NULL); + } } + #endif + + return true; } void cdcd_reset(uint8_t rhport) @@ -353,7 +388,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t case CDC_REQUEST_SET_LINE_CODING: if (stage == CONTROL_STAGE_SETUP) { - TU_LOG2(" Set Line Coding\r\n"); + TU_LOG_DRV(" Set Line Coding\r\n"); tud_control_xfer(rhport, request, &p_cdc->line_coding, sizeof(cdc_line_coding_t)); } else if ( stage == CONTROL_STAGE_ACK) @@ -365,7 +400,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t case CDC_REQUEST_GET_LINE_CODING: if (stage == CONTROL_STAGE_SETUP) { - TU_LOG2(" Get Line Coding\r\n"); + TU_LOG_DRV(" Get Line Coding\r\n"); tud_control_xfer(rhport, request, &p_cdc->line_coding, sizeof(cdc_line_coding_t)); } break; @@ -390,7 +425,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t // Disable fifo overwriting if DTR bit is set tu_fifo_set_overwritable(&p_cdc->tx_ff, !dtr); - TU_LOG2(" Set Control Line State: DTR = %d, RTS = %d\r\n", dtr, rts); + TU_LOG_DRV(" Set Control Line State: DTR = %d, RTS = %d\r\n", dtr, rts); // Invoke callback if ( tud_cdc_line_state_cb ) tud_cdc_line_state_cb(itf, dtr, rts); @@ -403,7 +438,7 @@ bool cdcd_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t } else if (stage == CONTROL_STAGE_ACK) { - TU_LOG2(" Send Break\r\n"); + TU_LOG_DRV(" Send Break\r\n"); if ( tud_cdc_send_break_cb ) tud_cdc_send_break_cb(itf, request->wValue); } break; diff --git a/src/class/cdc/cdc_device.h b/src/class/cdc/cdc_device.h index a6e07aa5c..20e908451 100644 --- a/src/class/cdc/cdc_device.h +++ b/src/class/cdc/cdc_device.h @@ -247,6 +247,7 @@ static inline bool tud_cdc_write_clear(void) // INTERNAL USBD-CLASS DRIVER API //--------------------------------------------------------------------+ void cdcd_init (void); +bool cdcd_deinit (void); void cdcd_reset (uint8_t rhport); uint16_t cdcd_open (uint8_t rhport, tusb_desc_interface_t const * itf_desc, uint16_t max_len); bool cdcd_control_xfer_cb (uint8_t rhport, uint8_t stage, tusb_control_request_t const * request); diff --git a/src/class/cdc/cdc_host.c b/src/class/cdc/cdc_host.c index e2447d033..5bdd41f1f 100644 --- a/src/class/cdc/cdc_host.c +++ b/src/class/cdc/cdc_host.c @@ -22,6 +22,9 @@ * THE SOFTWARE. * * This file is part of the TinyUSB stack. + * + * Contribution + * - Heiko Kuester: CH34x support */ #include "tusb_option.h" @@ -29,37 +32,39 @@ #if (CFG_TUH_ENABLED && CFG_TUH_CDC) #include "host/usbh.h" -#include "host/usbh_classdriver.h" +#include "host/usbh_pvt.h" #include "cdc_host.h" -// Debug level, TUSB_CFG_DEBUG must be at least this level for debug message -#define CDCH_DEBUG 2 +// Level where CFG_TUSB_DEBUG must be at least for this driver is logged +#ifndef CFG_TUH_CDC_LOG_LEVEL + #define CFG_TUH_CDC_LOG_LEVEL CFG_TUH_LOG_LEVEL +#endif -#define TU_LOG_CDCH(...) TU_LOG(CDCH_DEBUG, __VA_ARGS__) +#define TU_LOG_DRV(...) TU_LOG(CFG_TUH_CDC_LOG_LEVEL, __VA_ARGS__) //--------------------------------------------------------------------+ -// MACRO CONSTANT TYPEDEF +// Host CDC Interface //--------------------------------------------------------------------+ -enum { - SERIAL_PROTOCOL_ACM = 0, - SERIAL_PROTOCOL_FTDI, - SERIAL_PROTOCOL_CP210X, -}; - typedef struct { uint8_t daddr; uint8_t bInterfaceNumber; uint8_t bInterfaceSubClass; uint8_t bInterfaceProtocol; - uint8_t serial_protocol; - cdc_acm_capability_t acm_capability; uint8_t ep_notif; + uint8_t serial_drid; // Serial Driver ID + bool mounted; // Enumeration is complete + cdc_acm_capability_t acm_capability; - uint8_t line_state; // DTR (bit0), RTS (bit1) TU_ATTR_ALIGNED(4) cdc_line_coding_t line_coding; // Baudrate, stop bits, parity, data width + uint8_t line_state; // DTR (bit0), RTS (bit1) + + #if CFG_TUH_CDC_FTDI || CFG_TUH_CDC_CP210X || CFG_TUH_CDC_CH34X + cdc_line_coding_t requested_line_coding; + // 1 byte padding + #endif tuh_xfer_cb_t user_control_cb; @@ -73,32 +78,170 @@ typedef struct { uint8_t rx_ff_buf[CFG_TUH_CDC_TX_BUFSIZE]; CFG_TUH_MEM_ALIGN uint8_t rx_ep_buf[CFG_TUH_CDC_TX_EPSIZE]; } stream; - } cdch_interface_t; +CFG_TUH_MEM_SECTION +static cdch_interface_t cdch_data[CFG_TUH_CDC]; + //--------------------------------------------------------------------+ -// INTERNAL OBJECT & FUNCTION DECLARATION +// Serial Driver //--------------------------------------------------------------------+ -CFG_TUH_MEM_SECTION -static cdch_interface_t cdch_data[CFG_TUH_CDC]; +//------------- ACM prototypes -------------// +static bool acm_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); +static void acm_process_config(tuh_xfer_t* xfer); + +static bool acm_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool acm_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool acm_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool acm_set_control_line_state(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + +//------------- FTDI prototypes -------------// +#if CFG_TUH_CDC_FTDI +#include "serial/ftdi_sio.h" + +static uint16_t const ftdi_vid_pid_list[][2] = {CFG_TUH_CDC_FTDI_VID_PID_LIST}; + +static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); +static void ftdi_process_config(tuh_xfer_t* xfer); + +static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +#endif + +//------------- CP210X prototypes -------------// +#if CFG_TUH_CDC_CP210X +#include "serial/cp210x.h" + +static uint16_t const cp210x_vid_pid_list[][2] = {CFG_TUH_CDC_CP210X_VID_PID_LIST}; + +static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); +static void cp210x_process_config(tuh_xfer_t* xfer); + +static bool cp210x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +#endif + +//------------- CH34x prototypes -------------// +#if CFG_TUH_CDC_CH34X +#include "serial/ch34x.h" + +static uint16_t const ch34x_vid_pid_list[][2] = {CFG_TUH_CDC_CH34X_VID_PID_LIST}; + +static bool ch34x_open(uint8_t daddr, tusb_desc_interface_t const* itf_desc, uint16_t max_len); +static void ch34x_process_config(tuh_xfer_t* xfer); + +static bool ch34x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +static bool ch34x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +#endif + +//------------- Common -------------// +enum { + SERIAL_DRIVER_ACM = 0, + +#if CFG_TUH_CDC_FTDI + SERIAL_DRIVER_FTDI, +#endif + +#if CFG_TUH_CDC_CP210X + SERIAL_DRIVER_CP210X, +#endif + +#if CFG_TUH_CDC_CH34X + SERIAL_DRIVER_CH34X, +#endif + + SERIAL_DRIVER_COUNT +}; + +typedef struct { + uint16_t const (*vid_pid_list)[2]; + uint16_t const vid_pid_count; + bool (*const open)(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); + void (*const process_set_config)(tuh_xfer_t* xfer); + bool (*const set_control_line_state)(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + bool (*const set_baudrate)(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + bool (*const set_data_format)(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + bool (*const set_line_coding)(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); +} cdch_serial_driver_t; + +// Note driver list must be in the same order as SERIAL_DRIVER enum +static const cdch_serial_driver_t serial_drivers[] = { + { + .vid_pid_list = NULL, + .vid_pid_count = 0, + .open = acm_open, + .process_set_config = acm_process_config, + .set_control_line_state = acm_set_control_line_state, + .set_baudrate = acm_set_baudrate, + .set_data_format = acm_set_data_format, + .set_line_coding = acm_set_line_coding + }, + + #if CFG_TUH_CDC_FTDI + { + .vid_pid_list = ftdi_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(ftdi_vid_pid_list), + .open = ftdi_open, + .process_set_config = ftdi_process_config, + .set_control_line_state = ftdi_sio_set_modem_ctrl, + .set_baudrate = ftdi_sio_set_baudrate, + .set_data_format = ftdi_set_data_format, + .set_line_coding = ftdi_set_line_coding + }, + #endif + + #if CFG_TUH_CDC_CP210X + { + .vid_pid_list = cp210x_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(cp210x_vid_pid_list), + .open = cp210x_open, + .process_set_config = cp210x_process_config, + .set_control_line_state = cp210x_set_modem_ctrl, + .set_baudrate = cp210x_set_baudrate, + .set_data_format = cp210x_set_data_format, + .set_line_coding = cp210x_set_line_coding + }, + #endif + + #if CFG_TUH_CDC_CH34X + { + .vid_pid_list = ch34x_vid_pid_list, + .vid_pid_count = TU_ARRAY_SIZE(ch34x_vid_pid_list), + .open = ch34x_open, + .process_set_config = ch34x_process_config, + .set_control_line_state = ch34x_set_modem_ctrl, + .set_baudrate = ch34x_set_baudrate, + .set_data_format = ch34x_set_data_format, + .set_line_coding = ch34x_set_line_coding + }, + #endif +}; + +TU_VERIFY_STATIC(TU_ARRAY_SIZE(serial_drivers) == SERIAL_DRIVER_COUNT, "Serial driver count mismatch"); -static inline cdch_interface_t* get_itf(uint8_t idx) -{ +//--------------------------------------------------------------------+ +// INTERNAL OBJECT & FUNCTION DECLARATION +//--------------------------------------------------------------------+ + +static inline cdch_interface_t* get_itf(uint8_t idx) { TU_ASSERT(idx < CFG_TUH_CDC, NULL); cdch_interface_t* p_cdc = &cdch_data[idx]; return (p_cdc->daddr != 0) ? p_cdc : NULL; } -static inline uint8_t get_idx_by_ep_addr(uint8_t daddr, uint8_t ep_addr) -{ - for(uint8_t i=0; i<CFG_TUH_CDC; i++) - { +static inline uint8_t get_idx_by_ep_addr(uint8_t daddr, uint8_t ep_addr) { + for(uint8_t i=0; i<CFG_TUH_CDC; i++) { cdch_interface_t* p_cdc = &cdch_data[i]; if ( (p_cdc->daddr == daddr) && - (ep_addr == p_cdc->ep_notif || ep_addr == p_cdc->stream.rx.ep_addr || ep_addr == p_cdc->stream.tx.ep_addr)) - { + (ep_addr == p_cdc->ep_notif || ep_addr == p_cdc->stream.rx.ep_addr || ep_addr == p_cdc->stream.tx.ep_addr)) { return i; } } @@ -106,14 +249,10 @@ static inline uint8_t get_idx_by_ep_addr(uint8_t daddr, uint8_t ep_addr) return TUSB_INDEX_INVALID_8; } - -static cdch_interface_t* make_new_itf(uint8_t daddr, tusb_desc_interface_t const *itf_desc) -{ - for(uint8_t i=0; i<CFG_TUH_CDC; i++) - { +static cdch_interface_t* make_new_itf(uint8_t daddr, tusb_desc_interface_t const *itf_desc) { + for(uint8_t i=0; i<CFG_TUH_CDC; i++) { if (cdch_data[i].daddr == 0) { cdch_interface_t* p_cdc = &cdch_data[i]; - p_cdc->daddr = daddr; p_cdc->bInterfaceNumber = itf_desc->bInterfaceNumber; p_cdc->bInterfaceSubClass = itf_desc->bInterfaceSubClass; @@ -130,57 +269,20 @@ static bool open_ep_stream_pair(cdch_interface_t* p_cdc , tusb_desc_endpoint_t c static void set_config_complete(cdch_interface_t * p_cdc, uint8_t idx, uint8_t itf_num); static void cdch_internal_control_complete(tuh_xfer_t* xfer); -//------------- FTDI prototypes -------------// -#if CFG_TUH_CDC_FTDI -#include "serial/ftdi_sio.h" - -static uint16_t const ftdi_pids[] = { TU_FTDI_PID_LIST }; -enum { - FTDI_PID_COUNT = sizeof(ftdi_pids) / sizeof(ftdi_pids[0]) -}; - -static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len); -static void process_ftdi_config(tuh_xfer_t* xfer); - -static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -#endif - -//------------- CP210X prototypes -------------// -#if CFG_TUH_CDC_CP210X -#include "serial/cp210x.h" - -static uint16_t const cp210x_pids[] = { TU_CP210X_PID_LIST }; -enum { - CP210X_PID_COUNT = sizeof(cp210x_pids) / sizeof(cp210x_pids[0]) -}; - -static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); -static void process_cp210x_config(tuh_xfer_t* xfer); - -static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -static bool cp210x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -#endif - - //--------------------------------------------------------------------+ // APPLICATION API //--------------------------------------------------------------------+ -uint8_t tuh_cdc_itf_get_index(uint8_t daddr, uint8_t itf_num) -{ - for(uint8_t i=0; i<CFG_TUH_CDC; i++) - { +uint8_t tuh_cdc_itf_get_index(uint8_t daddr, uint8_t itf_num) { + for (uint8_t i = 0; i < CFG_TUH_CDC; i++) { const cdch_interface_t* p_cdc = &cdch_data[i]; - if (p_cdc->daddr == daddr && p_cdc->bInterfaceNumber == itf_num) return i; } return TUSB_INDEX_INVALID_8; } -bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t* info) -{ +bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t* info) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc && info); @@ -202,30 +304,27 @@ bool tuh_cdc_itf_get_info(uint8_t idx, tuh_itf_info_t* info) return true; } -bool tuh_cdc_mounted(uint8_t idx) -{ +bool tuh_cdc_mounted(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); - return p_cdc != NULL; + TU_VERIFY(p_cdc); + return p_cdc->mounted; } -bool tuh_cdc_get_dtr(uint8_t idx) -{ +bool tuh_cdc_get_dtr(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return (p_cdc->line_state & CDC_CONTROL_LINE_STATE_DTR) ? true : false; } -bool tuh_cdc_get_rts(uint8_t idx) -{ +bool tuh_cdc_get_rts(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return (p_cdc->line_state & CDC_CONTROL_LINE_STATE_RTS) ? true : false; } -bool tuh_cdc_get_local_line_coding(uint8_t idx, cdc_line_coding_t* line_coding) -{ +bool tuh_cdc_get_local_line_coding(uint8_t idx, cdc_line_coding_t* line_coding) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); @@ -238,32 +337,28 @@ bool tuh_cdc_get_local_line_coding(uint8_t idx, cdc_line_coding_t* line_coding) // Write //--------------------------------------------------------------------+ -uint32_t tuh_cdc_write(uint8_t idx, void const* buffer, uint32_t bufsize) -{ +uint32_t tuh_cdc_write(uint8_t idx, void const* buffer, uint32_t bufsize) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_write(&p_cdc->stream.tx, buffer, bufsize); } -uint32_t tuh_cdc_write_flush(uint8_t idx) -{ +uint32_t tuh_cdc_write_flush(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_write_xfer(&p_cdc->stream.tx); } -bool tuh_cdc_write_clear(uint8_t idx) -{ +bool tuh_cdc_write_clear(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_clear(&p_cdc->stream.tx); } -uint32_t tuh_cdc_write_available(uint8_t idx) -{ +uint32_t tuh_cdc_write_available(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); @@ -274,32 +369,28 @@ uint32_t tuh_cdc_write_available(uint8_t idx) // Read //--------------------------------------------------------------------+ -uint32_t tuh_cdc_read (uint8_t idx, void* buffer, uint32_t bufsize) -{ +uint32_t tuh_cdc_read (uint8_t idx, void* buffer, uint32_t bufsize) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_read(&p_cdc->stream.rx, buffer, bufsize); } -uint32_t tuh_cdc_read_available(uint8_t idx) -{ +uint32_t tuh_cdc_read_available(uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_read_available(&p_cdc->stream.rx); } -bool tuh_cdc_peek(uint8_t idx, uint8_t* ch) -{ +bool tuh_cdc_peek(uint8_t idx, uint8_t* ch) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); return tu_edpt_stream_peek(&p_cdc->stream.rx, ch); } -bool tuh_cdc_read_clear (uint8_t idx) -{ +bool tuh_cdc_read_clear (uint8_t idx) { cdch_interface_t* p_cdc = get_itf(idx); TU_VERIFY(p_cdc); @@ -312,184 +403,217 @@ bool tuh_cdc_read_clear (uint8_t idx) // Control Endpoint API //--------------------------------------------------------------------+ -// internal control complete to update state such as line state, encoding -static void cdch_internal_control_complete(tuh_xfer_t* xfer) -{ - uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); +static void process_internal_control_complete(tuh_xfer_t* xfer, uint8_t itf_num) { uint8_t idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); cdch_interface_t* p_cdc = get_itf(idx); TU_ASSERT(p_cdc, ); + uint16_t const value = tu_le16toh(xfer->setup->wValue); - if (xfer->result == XFER_RESULT_SUCCESS) - { - if (p_cdc->serial_protocol == SERIAL_PROTOCOL_ACM) { - switch (xfer->setup->bRequest) { - case CDC_REQUEST_SET_CONTROL_LINE_STATE: - p_cdc->line_state = (uint8_t) tu_le16toh(xfer->setup->wValue); - break; + if (xfer->result == XFER_RESULT_SUCCESS) { + switch (p_cdc->serial_drid) { + case SERIAL_DRIVER_ACM: + switch (xfer->setup->bRequest) { + case CDC_REQUEST_SET_CONTROL_LINE_STATE: + p_cdc->line_state = (uint8_t) value; + break; - case CDC_REQUEST_SET_LINE_CODING: { - uint16_t const len = tu_min16(sizeof(cdc_line_coding_t), tu_le16toh(xfer->setup->wLength)); - memcpy(&p_cdc->line_coding, xfer->buffer, len); + case CDC_REQUEST_SET_LINE_CODING: { + uint16_t const len = tu_min16(sizeof(cdc_line_coding_t), tu_le16toh(xfer->setup->wLength)); + memcpy(&p_cdc->line_coding, xfer->buffer, len); + break; + } + + default: break; } - break; + break; - default: break; - } - } - #if CFG_TUH_CDC_FTDI - else if (p_cdc->serial_protocol == SERIAL_PROTOCOL_FTDI) { - switch (xfer->setup->bRequest) { - case FTDI_SIO_MODEM_CTRL: - p_cdc->line_state = (uint8_t) (tu_le16toh(xfer->setup->wValue) & 0x00ff); - break; + #if CFG_TUH_CDC_FTDI + case SERIAL_DRIVER_FTDI: + switch (xfer->setup->bRequest) { + case FTDI_SIO_MODEM_CTRL: + p_cdc->line_state = (uint8_t) value; + break; - default: break; - } - } - #endif - } + case FTDI_SIO_SET_BAUD_RATE: + p_cdc->line_coding.bit_rate = p_cdc->requested_line_coding.bit_rate; + break; - xfer->complete_cb = p_cdc->user_control_cb; - xfer->complete_cb(xfer); -} + default: break; + } + break; + #endif -static bool acm_set_control_line_state(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - TU_LOG_CDCH("CDC ACM Set Control Line State\r\n"); - tusb_control_request_t const request = { - .bmRequestType_bit = { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_OUT - }, - .bRequest = CDC_REQUEST_SET_CONTROL_LINE_STATE, - .wValue = tu_htole16(line_state), - .wIndex = tu_htole16((uint16_t) p_cdc->bInterfaceNumber), - .wLength = 0 - }; + #if CFG_TUH_CDC_CP210X + case SERIAL_DRIVER_CP210X: + switch(xfer->setup->bRequest) { + case CP210X_SET_MHS: + p_cdc->line_state = (uint8_t) value; + break; - p_cdc->user_control_cb = complete_cb; + case CP210X_SET_BAUDRATE: { + uint32_t baudrate; + memcpy(&baudrate, xfer->buffer, sizeof(uint32_t)); + p_cdc->line_coding.bit_rate = tu_le32toh(baudrate); + break; + } - tuh_xfer_t xfer = { - .daddr = p_cdc->daddr, - .ep_addr = 0, - .setup = &request, - .buffer = NULL, - .complete_cb = cdch_internal_control_complete, - .user_data = user_data - }; + default: break; + } + break; + #endif - TU_ASSERT(tuh_control_xfer(&xfer)); - return true; -} + #if CFG_TUH_CDC_CH34X + case SERIAL_DRIVER_CH34X: + switch (xfer->setup->bRequest) { + case CH34X_REQ_WRITE_REG: + // register write request + switch (value) { + case CH34X_REG16_DIVISOR_PRESCALER: + // baudrate + p_cdc->line_coding.bit_rate = p_cdc->requested_line_coding.bit_rate; + break; -bool tuh_cdc_set_control_line_state(uint8_t idx, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ - cdch_interface_t* p_cdc = get_itf(idx); - TU_VERIFY(p_cdc); + case CH32X_REG16_LCR2_LCR: + // data format + p_cdc->line_coding.stop_bits = p_cdc->requested_line_coding.stop_bits; + p_cdc->line_coding.parity = p_cdc->requested_line_coding.parity; + p_cdc->line_coding.data_bits = p_cdc->requested_line_coding.data_bits; + break; - switch(p_cdc->serial_protocol) { - case SERIAL_PROTOCOL_ACM: - TU_VERIFY(p_cdc->acm_capability.support_line_request); - return acm_set_control_line_state(p_cdc, line_state, complete_cb, user_data); + default: break; + } + break; - #if CFG_TUH_CDC_FTDI - case SERIAL_PROTOCOL_FTDI: - return ftdi_sio_set_modem_ctrl(p_cdc, line_state, complete_cb, user_data); - #endif + case CH34X_REQ_MODEM_CTRL: { + // set modem controls RTS/DTR request. Note: signals are inverted + uint16_t const modem_signal = ~value; + if (modem_signal & CH34X_BIT_RTS) { + p_cdc->line_state |= CDC_CONTROL_LINE_STATE_RTS; + } else { + p_cdc->line_state &= (uint8_t) ~CDC_CONTROL_LINE_STATE_RTS; + } - #if CFG_TUH_CDC_CP210X - case SERIAL_PROTOCOL_CP210X: - return ftdi_sio_set_modem_ctrl(p_cdc, line_state, complete_cb, user_data); - #endif + if (modem_signal & CH34X_BIT_DTR) { + p_cdc->line_state |= CDC_CONTROL_LINE_STATE_DTR; + } else { + p_cdc->line_state &= (uint8_t) ~CDC_CONTROL_LINE_STATE_DTR; + } + break; + } - default: - return false; + default: break; + } + break; + #endif + + default: break; + } + } + + xfer->complete_cb = p_cdc->user_control_cb; + if (xfer->complete_cb) { + xfer->complete_cb(xfer); } } -bool acm_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - TU_LOG_CDCH("CDC ACM Set Line Conding\r\n"); +// internal control complete to update state such as line state, encoding +static void cdch_internal_control_complete(tuh_xfer_t* xfer) { + uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); + process_internal_control_complete(xfer, itf_num); +} - tusb_control_request_t const request = { - .bmRequestType_bit = { - .recipient = TUSB_REQ_RCPT_INTERFACE, - .type = TUSB_REQ_TYPE_CLASS, - .direction = TUSB_DIR_OUT - }, - .bRequest = CDC_REQUEST_SET_LINE_CODING, - .wValue = 0, - .wIndex = tu_htole16(p_cdc->bInterfaceNumber), - .wLength = tu_htole16(sizeof(cdc_line_coding_t)) - }; +bool tuh_cdc_set_control_line_state(uint8_t idx, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + cdch_interface_t* p_cdc = get_itf(idx); + TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; - // use usbh enum buf to hold line coding since user line_coding variable does not live long enough - uint8_t* enum_buf = usbh_get_enum_buf(); - memcpy(enum_buf, line_coding, sizeof(cdc_line_coding_t)); + if (complete_cb) { + return driver->set_control_line_state(p_cdc, line_state, complete_cb, user_data); + } else { + // blocking + xfer_result_t result = XFER_RESULT_INVALID; + bool ret = driver->set_control_line_state(p_cdc, line_state, complete_cb, (uintptr_t) &result); - p_cdc->user_control_cb = complete_cb; - tuh_xfer_t xfer = { - .daddr = p_cdc->daddr, - .ep_addr = 0, - .setup = &request, - .buffer = enum_buf, - .complete_cb = cdch_internal_control_complete, - .user_data = user_data - }; + if (user_data) { + // user_data is not NULL, return result via user_data + *((xfer_result_t*) user_data) = result; + } - TU_ASSERT(tuh_control_xfer(&xfer)); - return true; + TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); + p_cdc->line_state = (uint8_t) line_state; + return true; + } } -bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { cdch_interface_t* p_cdc = get_itf(idx); - TU_VERIFY(p_cdc); + TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; - switch(p_cdc->serial_protocol) { - case SERIAL_PROTOCOL_ACM: - TU_VERIFY(p_cdc->acm_capability.support_line_request); - return acm_set_line_coding(p_cdc, line_coding, complete_cb, user_data); + if (complete_cb) { + return driver->set_baudrate(p_cdc, baudrate, complete_cb, user_data); + } else { + // blocking + xfer_result_t result = XFER_RESULT_INVALID; + bool ret = driver->set_baudrate(p_cdc, baudrate, complete_cb, (uintptr_t) &result); - #if CFG_TUH_CDC_FTDI - case SERIAL_PROTOCOL_FTDI: - // FTDI need to set baud rate and data bits, parity, stop bits separately - return ftdi_sio_set_baudrate(p_cdc, line_coding->bit_rate, complete_cb, user_data); - #endif - - #if CFG_TUH_CDC_CP210X - case SERIAL_PROTOCOL_CP210X: - return cp210x_set_baudrate(p_cdc, line_coding->bit_rate, complete_cb, user_data); - #endif + if (user_data) { + // user_data is not NULL, return result via user_data + *((xfer_result_t*) user_data) = result; + } - default: return false; + TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); + p_cdc->line_coding.bit_rate = baudrate; + return true; } } -bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { +bool tuh_cdc_set_data_format(uint8_t idx, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { cdch_interface_t* p_cdc = get_itf(idx); - TU_VERIFY(p_cdc); + TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; - switch(p_cdc->serial_protocol) { - case SERIAL_PROTOCOL_ACM: { - TU_VERIFY(p_cdc->acm_capability.support_line_request); - cdc_line_coding_t line_coding = p_cdc->line_coding; - line_coding.bit_rate = baudrate; - return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data); + if (complete_cb) { + return driver->set_data_format(p_cdc, stop_bits, parity, data_bits, complete_cb, user_data); + } else { + // blocking + xfer_result_t result = XFER_RESULT_INVALID; + bool ret = driver->set_data_format(p_cdc, stop_bits, parity, data_bits, complete_cb, (uintptr_t) &result); + + if (user_data) { + // user_data is not NULL, return result via user_data + *((xfer_result_t*) user_data) = result; } - #if CFG_TUH_CDC_FTDI - case SERIAL_PROTOCOL_FTDI: - // FTDI need to set baud rate and data bits, parity, stop bits separately - return ftdi_sio_set_baudrate(p_cdc, baudrate, complete_cb, user_data); - #endif + TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); + p_cdc->line_coding.stop_bits = stop_bits; + p_cdc->line_coding.parity = parity; + p_cdc->line_coding.data_bits = data_bits; + return true; + } +} - #if CFG_TUH_CDC_CP210X - case SERIAL_PROTOCOL_CP210X: - return cp210x_set_baudrate(p_cdc, baudrate, complete_cb, user_data); - #endif +bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + cdch_interface_t* p_cdc = get_itf(idx); + TU_VERIFY(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + cdch_serial_driver_t const* driver = &serial_drivers[p_cdc->serial_drid]; - default: return false; + if ( complete_cb ) { + return driver->set_line_coding(p_cdc, line_coding, complete_cb, user_data); + } else { + // blocking + xfer_result_t result = XFER_RESULT_INVALID; + bool ret = driver->set_line_coding(p_cdc, line_coding, complete_cb, (uintptr_t) &result); + + if (user_data) { + // user_data is not NULL, return result via user_data + *((xfer_result_t*) user_data) = result; + } + + TU_VERIFY(ret && result == XFER_RESULT_SUCCESS); + p_cdc->line_coding = *line_coding; + return true; } } @@ -497,45 +621,51 @@ bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete // CLASS-USBH API //--------------------------------------------------------------------+ -void cdch_init(void) -{ +bool cdch_init(void) { + TU_LOG_DRV("sizeof(cdch_interface_t) = %u\r\n", sizeof(cdch_interface_t)); tu_memclr(cdch_data, sizeof(cdch_data)); - - for(size_t i=0; i<CFG_TUH_CDC; i++) - { + for (size_t i = 0; i < CFG_TUH_CDC; i++) { cdch_interface_t* p_cdc = &cdch_data[i]; - tu_edpt_stream_init(&p_cdc->stream.tx, true, true, false, - p_cdc->stream.tx_ff_buf, CFG_TUH_CDC_TX_BUFSIZE, - p_cdc->stream.tx_ep_buf, CFG_TUH_CDC_TX_EPSIZE); + p_cdc->stream.tx_ff_buf, CFG_TUH_CDC_TX_BUFSIZE, + p_cdc->stream.tx_ep_buf, 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, - p_cdc->stream.rx_ep_buf, CFG_TUH_CDC_RX_EPSIZE); + p_cdc->stream.rx_ff_buf, CFG_TUH_CDC_RX_BUFSIZE, + p_cdc->stream.rx_ep_buf, CFG_TUH_CDC_RX_EPSIZE); } + + return true; } -void cdch_close(uint8_t daddr) -{ - for(uint8_t idx=0; idx<CFG_TUH_CDC; idx++) - { +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); + } + return true; +} + +void cdch_close(uint8_t daddr) { + for (uint8_t idx = 0; idx < CFG_TUH_CDC; idx++) { cdch_interface_t* p_cdc = &cdch_data[idx]; - if (p_cdc->daddr == daddr) - { + if (p_cdc->daddr == daddr) { + TU_LOG_DRV(" CDCh close addr = %u index = %u\r\n", daddr, idx); + // Invoke application callback if (tuh_cdc_umount_cb) tuh_cdc_umount_cb(idx); - //tu_memclr(p_cdc, sizeof(cdch_interface_t)); p_cdc->daddr = 0; p_cdc->bInterfaceNumber = 0; + p_cdc->mounted = false; tu_edpt_stream_close(&p_cdc->stream.tx); tu_edpt_stream_close(&p_cdc->stream.rx); } } } -bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes) -{ +bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes) { // TODO handle stall response, retry failed transfer ... TU_ASSERT(event == XFER_RESULT_SUCCESS); @@ -543,41 +673,35 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t cdch_interface_t * p_cdc = get_itf(idx); TU_ASSERT(p_cdc); - if ( ep_addr == p_cdc->stream.tx.ep_addr ) - { + if ( ep_addr == p_cdc->stream.tx.ep_addr ) { // invoke tx complete callback to possibly refill tx fifo if (tuh_cdc_tx_complete_cb) tuh_cdc_tx_complete_cb(idx); - if ( 0 == tu_edpt_stream_write_xfer(&p_cdc->stream.tx) ) - { + if ( 0 == tu_edpt_stream_write_xfer(&p_cdc->stream.tx) ) { // If there is no data left, a ZLP should be sent if: // - xferred_bytes is multiple of EP Packet size and not zero tu_edpt_stream_write_zlp_if_needed(&p_cdc->stream.tx, xferred_bytes); } - } - else if ( ep_addr == p_cdc->stream.rx.ep_addr ) - { - tu_edpt_stream_read_xfer_complete(&p_cdc->stream.rx, xferred_bytes); - + } else if ( ep_addr == p_cdc->stream.rx.ep_addr ) { #if CFG_TUH_CDC_FTDI - // FTDI reserve 2 bytes for status - if (p_cdc->serial_protocol == SERIAL_PROTOCOL_FTDI) { - uint8_t status[2]; - tu_edpt_stream_read(&p_cdc->stream.rx, status, 2); - (void) status; // TODO handle status - } + if (p_cdc->serial_drid == SERIAL_DRIVER_FTDI) { + // FTDI reserve 2 bytes for status + // uint8_t status[2] = {p_cdc->stream.rx.ep_buf[0], p_cdc->stream.rx.ep_buf[1]}; + tu_edpt_stream_read_xfer_complete_offset(&p_cdc->stream.rx, xferred_bytes, 2); + }else #endif + { + tu_edpt_stream_read_xfer_complete(&p_cdc->stream.rx, xferred_bytes); + } // invoke receive callback if (tuh_cdc_rx_cb) tuh_cdc_rx_cb(idx); // prepare for next transfer if needed tu_edpt_stream_read_xfer(&p_cdc->stream.rx); - }else if ( ep_addr == p_cdc->ep_notif ) - { + }else if ( ep_addr == p_cdc->ep_notif ) { // TODO handle notification endpoint - }else - { + }else { TU_ASSERT(false); } @@ -587,28 +711,16 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t //--------------------------------------------------------------------+ // Enumeration //--------------------------------------------------------------------+ -enum -{ - // ACM - CONFIG_ACM_SET_CONTROL_LINE_STATE = 0, - CONFIG_ACM_SET_LINE_CODING, - CONFIG_ACM_COMPLETE, -}; -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++) - { +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); - + TUSB_XFER_BULK == desc_ep->bmAttributes.xfer); TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep)); - if ( tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN ) - { + if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) { tu_edpt_stream_open(&p_cdc->stream.rx, p_cdc->daddr, desc_ep); - }else - { + } else { tu_edpt_stream_open(&p_cdc->stream.tx, p_cdc->daddr, desc_ep); } @@ -618,125 +730,130 @@ static bool open_ep_stream_pair(cdch_interface_t* p_cdc , tusb_desc_endpoint_t c return true; } -static bool acm_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) -{ - uint8_t const * p_desc_end = ((uint8_t const*) itf_desc) + max_len; +bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) { + (void) rhport; - cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc); - TU_VERIFY(p_cdc); + // For CDC: only support ACM subclass + // Note: Protocol 0xFF can be RNDIS device + if (TUSB_CLASS_CDC == itf_desc->bInterfaceClass && + CDC_COMM_SUBCLASS_ABSTRACT_CONTROL_MODEL == itf_desc->bInterfaceSubClass) { + return acm_open(daddr, itf_desc, max_len); + } + else if (SERIAL_DRIVER_COUNT > 1 && + TUSB_CLASS_VENDOR_SPECIFIC == itf_desc->bInterfaceClass) { + uint16_t vid, pid; + TU_VERIFY(tuh_vid_pid_get(daddr, &vid, &pid)); + + for (size_t dr = 1; dr < SERIAL_DRIVER_COUNT; dr++) { + cdch_serial_driver_t const* driver = &serial_drivers[dr]; + for (size_t i = 0; i < driver->vid_pid_count; i++) { + if (driver->vid_pid_list[i][0] == vid && driver->vid_pid_list[i][1] == pid) { + return driver->open(daddr, itf_desc, max_len); + } + } + } + } + + return false; +} + +static void set_config_complete(cdch_interface_t * p_cdc, uint8_t idx, uint8_t itf_num) { + TU_LOG_DRV("CDCh Set Configure complete\r\n"); + p_cdc->mounted = true; + if (tuh_cdc_mount_cb) tuh_cdc_mount_cb(idx); + + // Prepare for incoming data + tu_edpt_stream_read_xfer(&p_cdc->stream.rx); + + // notify usbh that driver enumeration is complete + usbh_driver_set_config_complete(p_cdc->daddr, itf_num); +} + +bool cdch_set_config(uint8_t daddr, uint8_t itf_num) { + tusb_control_request_t request; + request.wIndex = tu_htole16((uint16_t) itf_num); + + // fake transfer to kick-off process + tuh_xfer_t xfer; + xfer.daddr = daddr; + xfer.result = XFER_RESULT_SUCCESS; + xfer.setup = &request; + xfer.user_data = 0; // initial state - p_cdc->serial_protocol = SERIAL_PROTOCOL_ACM; + uint8_t const idx = tuh_cdc_itf_get_index(daddr, itf_num); + cdch_interface_t * p_cdc = get_itf(idx); + TU_ASSERT(p_cdc && p_cdc->serial_drid < SERIAL_DRIVER_COUNT); + + serial_drivers[p_cdc->serial_drid].process_set_config(&xfer); + return true; +} + +//--------------------------------------------------------------------+ +// ACM +//--------------------------------------------------------------------+ + +enum { + CONFIG_ACM_SET_CONTROL_LINE_STATE = 0, + CONFIG_ACM_SET_LINE_CODING, + CONFIG_ACM_COMPLETE, +}; + +static bool acm_open(uint8_t daddr, tusb_desc_interface_t const* itf_desc, uint16_t max_len) { + uint8_t const* p_desc_end = ((uint8_t const*) itf_desc) + max_len; + + cdch_interface_t* p_cdc = make_new_itf(daddr, itf_desc); + TU_VERIFY(p_cdc); + p_cdc->serial_drid = SERIAL_DRIVER_ACM; //------------- Control Interface -------------// - uint8_t const * p_desc = tu_desc_next(itf_desc); + uint8_t const* p_desc = tu_desc_next(itf_desc); // Communication Functional Descriptors - while( (p_desc < p_desc_end) && (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc)) ) - { - if ( CDC_FUNC_DESC_ABSTRACT_CONTROL_MANAGEMENT == cdc_functional_desc_typeof(p_desc) ) - { + while ((p_desc < p_desc_end) && (TUSB_DESC_CS_INTERFACE == tu_desc_type(p_desc))) { + if (CDC_FUNC_DESC_ABSTRACT_CONTROL_MANAGEMENT == cdc_functional_desc_typeof(p_desc)) { // save ACM bmCapabilities - p_cdc->acm_capability = ((cdc_desc_func_acm_t const *) p_desc)->bmCapabilities; + p_cdc->acm_capability = ((cdc_desc_func_acm_t const*) p_desc)->bmCapabilities; } p_desc = tu_desc_next(p_desc); } // Open notification endpoint of control interface if any - if (itf_desc->bNumEndpoints == 1) - { + if (itf_desc->bNumEndpoints == 1) { TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(p_desc)); - tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) p_desc; + tusb_desc_endpoint_t const* desc_ep = (tusb_desc_endpoint_t const*) p_desc; - TU_ASSERT( tuh_edpt_open(daddr, desc_ep) ); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); p_cdc->ep_notif = desc_ep->bEndpointAddress; p_desc = tu_desc_next(p_desc); } //------------- Data Interface (if any) -------------// - if ( (TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && - (TUSB_CLASS_CDC_DATA == ((tusb_desc_interface_t const *) p_desc)->bInterfaceClass) ) - { + if ((TUSB_DESC_INTERFACE == tu_desc_type(p_desc)) && + (TUSB_CLASS_CDC_DATA == ((tusb_desc_interface_t const*) p_desc)->bInterfaceClass)) { // next to endpoint descriptor p_desc = tu_desc_next(p_desc); // data endpoints expected to be in pairs - TU_ASSERT(open_ep_stream_pair(p_cdc, (tusb_desc_endpoint_t const *) p_desc)); + TU_ASSERT(open_ep_stream_pair(p_cdc, (tusb_desc_endpoint_t const*) p_desc)); } return true; } - -bool cdch_open(uint8_t rhport, uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) -{ - (void) rhport; - - // Only support ACM subclass - // Note: Protocol 0xFF can be RNDIS device - if ( TUSB_CLASS_CDC == itf_desc->bInterfaceClass && - CDC_COMM_SUBCLASS_ABSTRACT_CONTROL_MODEL == itf_desc->bInterfaceSubClass) - { - return acm_open(daddr, itf_desc, max_len); - } - #if CFG_TUH_CDC_FTDI || CFG_TUH_CDC_CP210X - else if ( 0xff == itf_desc->bInterfaceClass ) - { - uint16_t vid, pid; - TU_VERIFY(tuh_vid_pid_get(daddr, &vid, &pid)); - - #if CFG_TUH_CDC_FTDI - if (TU_FTDI_VID == vid) { - for (size_t i = 0; i < FTDI_PID_COUNT; i++) { - if (ftdi_pids[i] == pid) { - return ftdi_open(daddr, itf_desc, max_len); - } - } - } - #endif - - #if CFG_TUH_CDC_CP210X - if (TU_CP210X_VID == vid) { - for (size_t i = 0; i < CP210X_PID_COUNT; i++) { - if (cp210x_pids[i] == pid) { - return cp210x_open(daddr, itf_desc, max_len); - } - } - } - #endif - } - #endif - - return false; -} - -static void set_config_complete(cdch_interface_t * p_cdc, uint8_t idx, uint8_t itf_num) { - if (tuh_cdc_mount_cb) tuh_cdc_mount_cb(idx); - - // Prepare for incoming data - tu_edpt_stream_read_xfer(&p_cdc->stream.rx); - - // notify usbh that driver enumeration is complete - usbh_driver_set_config_complete(p_cdc->daddr, itf_num); -} - -static void process_acm_config(tuh_xfer_t* xfer) -{ +static void acm_process_config(tuh_xfer_t* xfer) { uintptr_t const state = xfer->user_data; uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); - cdch_interface_t * p_cdc = get_itf(idx); - TU_ASSERT(p_cdc, ); + cdch_interface_t* p_cdc = get_itf(idx); + TU_ASSERT(p_cdc,); - switch(state) - { + switch (state) { case CONFIG_ACM_SET_CONTROL_LINE_STATE: #if CFG_TUH_CDC_LINE_CONTROL_ON_ENUM - if (p_cdc->acm_capability.support_line_request) - { - TU_ASSERT(acm_set_control_line_state(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, process_acm_config, - CONFIG_ACM_SET_LINE_CODING), ); + if (p_cdc->acm_capability.support_line_request) { + TU_ASSERT(acm_set_control_line_state(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, acm_process_config, CONFIG_ACM_SET_LINE_CODING),); break; } #endif @@ -744,10 +861,9 @@ static void process_acm_config(tuh_xfer_t* xfer) case CONFIG_ACM_SET_LINE_CODING: #ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM - if (p_cdc->acm_capability.support_line_request) - { + if (p_cdc->acm_capability.support_line_request) { cdc_line_coding_t line_coding = CFG_TUH_CDC_LINE_CODING_ON_ENUM; - TU_ASSERT(acm_set_line_coding(p_cdc, &line_coding, process_acm_config, CONFIG_ACM_COMPLETE), ); + TU_ASSERT(acm_set_line_coding(p_cdc, &line_coding, acm_process_config, CONFIG_ACM_COMPLETE),); break; } #endif @@ -755,52 +871,98 @@ static void process_acm_config(tuh_xfer_t* xfer) case CONFIG_ACM_COMPLETE: // itf_num+1 to account for data interface as well - set_config_complete(p_cdc, idx, itf_num+1); - break; + set_config_complete(p_cdc, idx, itf_num + 1); + break; - default: break; + default: + break; } } -bool cdch_set_config(uint8_t daddr, uint8_t itf_num) -{ - tusb_control_request_t request; - request.wIndex = tu_htole16((uint16_t) itf_num); +static bool acm_set_control_line_state(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + TU_VERIFY(p_cdc->acm_capability.support_line_request); + TU_LOG_DRV("CDC ACM Set Control Line State\r\n"); - tuh_xfer_t xfer; - xfer.daddr = daddr; - xfer.result = XFER_RESULT_SUCCESS; - xfer.setup = &request; - xfer.user_data = 0; + tusb_control_request_t const request = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_OUT + }, + .bRequest = CDC_REQUEST_SET_CONTROL_LINE_STATE, + .wValue = tu_htole16(line_state), + .wIndex = tu_htole16((uint16_t) p_cdc->bInterfaceNumber), + .wLength = 0 + }; - // fake transfer to kick-off process - uint8_t const idx = tuh_cdc_itf_get_index(daddr, itf_num); - cdch_interface_t * p_cdc = get_itf(idx); - TU_ASSERT(p_cdc); + p_cdc->user_control_cb = complete_cb; - switch (p_cdc->serial_protocol) { - case SERIAL_PROTOCOL_ACM: - process_acm_config(&xfer); - break; + tuh_xfer_t xfer = { + .daddr = p_cdc->daddr, + .ep_addr = 0, + .setup = &request, + .buffer = NULL, + .complete_cb = complete_cb ? cdch_internal_control_complete : NULL, // complete_cb is NULL for sync call + .user_data = user_data + }; - #if CFG_TUH_CDC_FTDI - case SERIAL_PROTOCOL_FTDI: - process_ftdi_config(&xfer); - break; - #endif + TU_ASSERT(tuh_control_xfer(&xfer)); + return true; +} - #if CFG_TUH_CDC_CP210X - case SERIAL_PROTOCOL_CP210X: - process_cp210x_config(&xfer); - break; - #endif +static bool acm_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + TU_LOG_DRV("CDC ACM Set Line Conding\r\n"); - default: return false; - } + tusb_control_request_t const request = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_INTERFACE, + .type = TUSB_REQ_TYPE_CLASS, + .direction = TUSB_DIR_OUT + }, + .bRequest = CDC_REQUEST_SET_LINE_CODING, + .wValue = 0, + .wIndex = tu_htole16(p_cdc->bInterfaceNumber), + .wLength = tu_htole16(sizeof(cdc_line_coding_t)) + }; + + // use usbh enum buf to hold line coding since user line_coding variable does not live long enough + uint8_t* enum_buf = usbh_get_enum_buf(); + memcpy(enum_buf, line_coding, sizeof(cdc_line_coding_t)); + + p_cdc->user_control_cb = complete_cb; + tuh_xfer_t xfer = { + .daddr = p_cdc->daddr, + .ep_addr = 0, + .setup = &request, + .buffer = enum_buf, + .complete_cb = complete_cb ? cdch_internal_control_complete : NULL, // complete_cb is NULL for sync call + .user_data = user_data + }; + TU_ASSERT(tuh_control_xfer(&xfer)); return true; } +static bool acm_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + TU_LOG_DRV("CDC ACM Set Data Format\r\n"); + + cdc_line_coding_t line_coding; + line_coding.bit_rate = p_cdc->line_coding.bit_rate; + line_coding.stop_bits = stop_bits; + line_coding.parity = parity; + line_coding.data_bits = data_bits; + + return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data); +} + +static bool acm_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + TU_VERIFY(p_cdc->acm_capability.support_line_request); + cdc_line_coding_t line_coding = p_cdc->line_coding; + line_coding.bit_rate = baudrate; + return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data); +} + //--------------------------------------------------------------------+ // FTDI //--------------------------------------------------------------------+ @@ -822,9 +984,8 @@ static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc); TU_VERIFY(p_cdc); - TU_LOG_CDCH("FTDI opened\r\n"); - - p_cdc->serial_protocol = SERIAL_PROTOCOL_FTDI; + TU_LOG_DRV("FTDI opened\r\n"); + p_cdc->serial_drid = SERIAL_DRIVER_FTDI; // endpoint pair tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc); @@ -859,21 +1020,40 @@ static bool ftdi_sio_set_request(cdch_interface_t* p_cdc, uint8_t command, uint1 return tuh_control_xfer(&xfer); } -static bool ftdi_sio_reset(cdch_interface_t* p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +static bool ftdi_sio_reset(cdch_interface_t* p_cdc, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { return ftdi_sio_set_request(p_cdc, FTDI_SIO_RESET, FTDI_SIO_RESET_SIO, complete_cb, user_data); } -static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ - TU_LOG_CDCH("CDC FTDI Set Control Line State\r\n"); +static bool ftdi_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + (void) p_cdc; + (void) stop_bits; + (void) parity; + (void) data_bits; + (void) complete_cb; + (void) user_data; + // TODO not implemented yet + return false; +} + +static bool ftdi_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + (void) p_cdc; + (void) line_coding; + (void) complete_cb; + (void) user_data; + // TODO not implemented yet + return false; +} + +static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + TU_LOG_DRV("CDC FTDI Set Control Line State\r\n"); p_cdc->user_control_cb = complete_cb; - TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_MODEM_CTRL, 0x0300 | line_state, cdch_internal_control_complete, user_data)); + TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_MODEM_CTRL, 0x0300 | line_state, + complete_cb ? cdch_internal_control_complete : NULL, user_data)); return true; } -static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) -{ +static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) { const uint8_t divfrac[8] = { 0, 3, 2, 4, 1, 5, 6, 7 }; uint32_t divisor; @@ -893,22 +1073,23 @@ static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) return divisor; } -static uint32_t ftdi_232bm_baud_to_divisor(uint32_t baud) -{ +static uint32_t ftdi_232bm_baud_to_divisor(uint32_t baud) { return ftdi_232bm_baud_base_to_divisor(baud, 48000000u); } -static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { uint16_t const divisor = (uint16_t) ftdi_232bm_baud_to_divisor(baudrate); - TU_LOG_CDCH("CDC FTDI Set BaudRate = %lu, divisor = 0x%04x\n", baudrate, divisor); + TU_LOG_DRV("CDC FTDI Set BaudRate = %lu, divisor = 0x%04x\r\n", baudrate, divisor); p_cdc->user_control_cb = complete_cb; - TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_SET_BAUD_RATE, divisor, cdch_internal_control_complete, user_data)); + p_cdc->requested_line_coding.bit_rate = baudrate; + TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_SET_BAUD_RATE, divisor, + complete_cb ? cdch_internal_control_complete : NULL, user_data)); + return true; } -static void process_ftdi_config(tuh_xfer_t* xfer) { +static void ftdi_process_config(tuh_xfer_t* xfer) { uintptr_t const state = xfer->user_data; uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); @@ -918,13 +1099,12 @@ static void process_ftdi_config(tuh_xfer_t* xfer) { switch(state) { // Note may need to read FTDI eeprom case CONFIG_FTDI_RESET: - TU_ASSERT(ftdi_sio_reset(p_cdc, process_ftdi_config, CONFIG_FTDI_MODEM_CTRL),); + TU_ASSERT(ftdi_sio_reset(p_cdc, ftdi_process_config, CONFIG_FTDI_MODEM_CTRL),); break; case CONFIG_FTDI_MODEM_CTRL: #if CFG_TUH_CDC_LINE_CONTROL_ON_ENUM - TU_ASSERT( - ftdi_sio_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, process_ftdi_config, CONFIG_FTDI_SET_BAUDRATE),); + TU_ASSERT(ftdi_sio_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, ftdi_process_config, CONFIG_FTDI_SET_BAUDRATE),); break; #else TU_ATTR_FALLTHROUGH; @@ -933,7 +1113,7 @@ static void process_ftdi_config(tuh_xfer_t* xfer) { case CONFIG_FTDI_SET_BAUDRATE: { #ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM cdc_line_coding_t line_coding = CFG_TUH_CDC_LINE_CODING_ON_ENUM; - TU_ASSERT(ftdi_sio_set_baudrate(p_cdc, line_coding.bit_rate, process_ftdi_config, CONFIG_FTDI_SET_DATA),); + TU_ASSERT(ftdi_sio_set_baudrate(p_cdc, line_coding.bit_rate, ftdi_process_config, CONFIG_FTDI_SET_DATA),); break; #else TU_ATTR_FALLTHROUGH; @@ -985,8 +1165,8 @@ static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, ui cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc); TU_VERIFY(p_cdc); - TU_LOG_CDCH("CP210x opened\r\n"); - p_cdc->serial_protocol = SERIAL_PROTOCOL_CP210X; + TU_LOG_DRV("CP210x opened\r\n"); + p_cdc->serial_drid = SERIAL_DRIVER_CP210X; // endpoint pair tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc); @@ -1032,20 +1212,43 @@ static bool cp210x_ifc_enable(cdch_interface_t* p_cdc, uint16_t enabled, tuh_xfe return cp210x_set_request(p_cdc, CP210X_IFC_ENABLE, enabled, NULL, 0, complete_cb, user_data); } +static bool cp210x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + // TODO implement later + (void) p_cdc; + (void) line_coding; + (void) complete_cb; + (void) user_data; + return false; +} + static bool cp210x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { - TU_LOG_CDCH("CDC CP210x Set BaudRate = %lu\n", baudrate); - baudrate = tu_htole32(baudrate); - return cp210x_set_request(p_cdc, CP210X_SET_BAUDRATE, 0, (uint8_t *) &baudrate, 4, complete_cb, user_data); + TU_LOG_DRV("CDC CP210x Set BaudRate = %lu\r\n", baudrate); + uint32_t baud_le = tu_htole32(baudrate); + p_cdc->user_control_cb = complete_cb; + return cp210x_set_request(p_cdc, CP210X_SET_BAUDRATE, 0, (uint8_t *) &baud_le, 4, + complete_cb ? cdch_internal_control_complete : NULL, user_data); } -static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ - TU_LOG_CDCH("CDC CP210x Set Control Line State\r\n"); +static bool cp210x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + (void) p_cdc; + (void) stop_bits; + (void) parity; + (void) data_bits; + (void) complete_cb; + (void) user_data; + // TODO not implemented yet + return false; +} + +static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + TU_LOG_DRV("CDC CP210x Set Control Line State\r\n"); p_cdc->user_control_cb = complete_cb; - return cp210x_set_request(p_cdc, CP210X_SET_MHS, 0x0300 | line_state, NULL, 0, cdch_internal_control_complete, user_data); + return cp210x_set_request(p_cdc, CP210X_SET_MHS, 0x0300 | line_state, NULL, 0, + complete_cb ? cdch_internal_control_complete : NULL, user_data); } -static void process_cp210x_config(tuh_xfer_t* xfer) { +static void cp210x_process_config(tuh_xfer_t* xfer) { uintptr_t const state = xfer->user_data; uint8_t const itf_num = (uint8_t) tu_le16toh(xfer->setup->wIndex); uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); @@ -1054,13 +1257,13 @@ static void process_cp210x_config(tuh_xfer_t* xfer) { switch (state) { case CONFIG_CP210X_IFC_ENABLE: - TU_ASSERT(cp210x_ifc_enable(p_cdc, 1, process_cp210x_config, CONFIG_CP210X_SET_BAUDRATE),); + TU_ASSERT(cp210x_ifc_enable(p_cdc, 1, cp210x_process_config, CONFIG_CP210X_SET_BAUDRATE),); break; case CONFIG_CP210X_SET_BAUDRATE: { #ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM cdc_line_coding_t line_coding = CFG_TUH_CDC_LINE_CODING_ON_ENUM; - TU_ASSERT(cp210x_set_baudrate(p_cdc, line_coding.bit_rate, process_cp210x_config, CONFIG_CP210X_SET_LINE_CTL),); + TU_ASSERT(cp210x_set_baudrate(p_cdc, line_coding.bit_rate, cp210x_process_config, CONFIG_CP210X_SET_LINE_CTL),); break; #else TU_ATTR_FALLTHROUGH; @@ -1078,7 +1281,7 @@ static void process_cp210x_config(tuh_xfer_t* xfer) { case CONFIG_CP210X_SET_DTR_RTS: #if CFG_TUH_CDC_LINE_CONTROL_ON_ENUM - TU_ASSERT(cp210x_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, process_cp210x_config, CONFIG_CP210X_COMPLETE),); + TU_ASSERT(cp210x_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, cp210x_process_config, CONFIG_CP210X_COMPLETE),); break; #else TU_ATTR_FALLTHROUGH; @@ -1094,4 +1297,374 @@ static void process_cp210x_config(tuh_xfer_t* xfer) { #endif +//--------------------------------------------------------------------+ +// CH34x (CH340 & CH341) +//--------------------------------------------------------------------+ + +#if CFG_TUH_CDC_CH34X + +static uint8_t ch34x_get_lcr(uint8_t stop_bits, uint8_t parity, uint8_t data_bits); +static uint16_t ch34x_get_divisor_prescaler(uint32_t baval); + +//------------- control request -------------// + +static bool ch34x_set_request(cdch_interface_t* p_cdc, uint8_t direction, uint8_t request, uint16_t value, + uint16_t index, uint8_t* buffer, uint16_t length, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + tusb_control_request_t const request_setup = { + .bmRequestType_bit = { + .recipient = TUSB_REQ_RCPT_DEVICE, + .type = TUSB_REQ_TYPE_VENDOR, + .direction = direction & 0x01u + }, + .bRequest = request, + .wValue = tu_htole16 (value), + .wIndex = tu_htole16 (index), + .wLength = tu_htole16 (length) + }; + + // use usbh enum buf since application variable does not live long enough + uint8_t* enum_buf = NULL; + + if (buffer && length > 0) { + enum_buf = usbh_get_enum_buf(); + if (direction == TUSB_DIR_OUT) { + tu_memcpy_s(enum_buf, CFG_TUH_ENUMERATION_BUFSIZE, buffer, length); + } + } + + tuh_xfer_t xfer = { + .daddr = p_cdc->daddr, + .ep_addr = 0, + .setup = &request_setup, + .buffer = enum_buf, + .complete_cb = complete_cb, + .user_data = user_data + }; + + return tuh_control_xfer(&xfer); +} + +static inline bool ch34x_control_out(cdch_interface_t* p_cdc, uint8_t request, uint16_t value, uint16_t index, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + return ch34x_set_request(p_cdc, TUSB_DIR_OUT, request, value, index, NULL, 0, complete_cb, user_data); +} + +static inline bool ch34x_control_in(cdch_interface_t* p_cdc, uint8_t request, uint16_t value, uint16_t index, + uint8_t* buffer, uint16_t buffersize, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + return ch34x_set_request(p_cdc, TUSB_DIR_IN, request, value, index, buffer, buffersize, + complete_cb, user_data); +} + +static inline bool ch34x_write_reg(cdch_interface_t* p_cdc, uint16_t reg, uint16_t reg_value, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + return ch34x_control_out(p_cdc, CH34X_REQ_WRITE_REG, reg, reg_value, complete_cb, user_data); +} + +//static bool ch34x_read_reg_request ( cdch_interface_t* p_cdc, uint16_t reg, +// uint8_t *buffer, uint16_t buffersize, tuh_xfer_cb_t complete_cb, uintptr_t user_data ) +//{ +// return ch34x_control_in ( p_cdc, CH34X_REQ_READ_REG, reg, 0, buffer, buffersize, complete_cb, user_data ); +//} + +static bool ch34x_write_reg_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + uint16_t const div_ps = ch34x_get_divisor_prescaler(baudrate); + TU_VERIFY(div_ps); + TU_ASSERT(ch34x_write_reg(p_cdc, CH34X_REG16_DIVISOR_PRESCALER, div_ps, + complete_cb, user_data)); + return true; +} + +//------------- Driver API -------------// + +// internal control complete to update state such as line state, encoding +static void ch34x_control_complete(tuh_xfer_t* xfer) { + // CH34x only has 1 interface and use wIndex as payload and not for bInterfaceNumber + process_internal_control_complete(xfer, 0); +} + +static bool ch34x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + p_cdc->requested_line_coding.stop_bits = stop_bits; + p_cdc->requested_line_coding.parity = parity; + p_cdc->requested_line_coding.data_bits = data_bits; + + uint8_t const lcr = ch34x_get_lcr(stop_bits, parity, data_bits); + TU_VERIFY(lcr); + TU_ASSERT (ch34x_control_out(p_cdc, CH34X_REQ_WRITE_REG, CH32X_REG16_LCR2_LCR, lcr, + complete_cb ? ch34x_control_complete : NULL, user_data)); + return true; +} + +static bool ch34x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + p_cdc->requested_line_coding.bit_rate = baudrate; + p_cdc->user_control_cb = complete_cb; + TU_ASSERT(ch34x_write_reg_baudrate(p_cdc, baudrate, + complete_cb ? ch34x_control_complete : NULL, user_data)); + return true; +} + +static void ch34x_set_line_coding_stage1_complete(tuh_xfer_t* xfer) { + // CH34x only has 1 interface and use wIndex as payload and not for bInterfaceNumber + uint8_t const itf_num = 0; + uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); + cdch_interface_t* p_cdc = get_itf(idx); + TU_ASSERT(p_cdc, ); + + if (xfer->result == XFER_RESULT_SUCCESS) { + // stage 1 success, continue to stage 2 + p_cdc->line_coding.bit_rate = p_cdc->requested_line_coding.bit_rate; + TU_ASSERT(ch34x_set_data_format(p_cdc, p_cdc->requested_line_coding.stop_bits, p_cdc->requested_line_coding.parity, + p_cdc->requested_line_coding.data_bits, ch34x_control_complete, xfer->user_data), ); + } else { + // stage 1 failed, notify user + xfer->complete_cb = p_cdc->user_control_cb; + if (xfer->complete_cb) { + xfer->complete_cb(xfer); + } + } +} + +// 2 stages: set baudrate (stage1) + set data format (stage2) +static bool ch34x_set_line_coding(cdch_interface_t* p_cdc, cdc_line_coding_t const* line_coding, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + p_cdc->requested_line_coding = *line_coding; + p_cdc->user_control_cb = complete_cb; + + if (complete_cb) { + // stage 1 set baudrate + TU_ASSERT(ch34x_write_reg_baudrate(p_cdc, line_coding->bit_rate, + ch34x_set_line_coding_stage1_complete, user_data)); + } else { + // sync call + xfer_result_t result; + + // stage 1 set baudrate + TU_ASSERT(ch34x_write_reg_baudrate(p_cdc, line_coding->bit_rate, NULL, (uintptr_t) &result)); + TU_VERIFY(result == XFER_RESULT_SUCCESS); + p_cdc->line_coding.bit_rate = line_coding->bit_rate; + + // stage 2 set data format + TU_ASSERT(ch34x_set_data_format(p_cdc, line_coding->stop_bits, line_coding->parity, line_coding->data_bits, + NULL, (uintptr_t) &result)); + TU_VERIFY(result == XFER_RESULT_SUCCESS); + p_cdc->line_coding.stop_bits = line_coding->stop_bits; + p_cdc->line_coding.parity = line_coding->parity; + p_cdc->line_coding.data_bits = line_coding->data_bits; + + // update transfer result, user_data is expected to point to xfer_result_t + if (user_data) { + *((xfer_result_t*) user_data) = result; + } + } + + return true; +} + +static bool ch34x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state, + tuh_xfer_cb_t complete_cb, uintptr_t user_data) { + uint8_t control = 0; + if (line_state & CDC_CONTROL_LINE_STATE_RTS) { + control |= CH34X_BIT_RTS; + } + if (line_state & CDC_CONTROL_LINE_STATE_DTR) { + control |= CH34X_BIT_DTR; + } + + // CH34x signals are inverted + control = ~control; + + p_cdc->user_control_cb = complete_cb; + TU_ASSERT (ch34x_control_out(p_cdc, CH34X_REQ_MODEM_CTRL, control, 0, + complete_cb ? ch34x_control_complete : NULL, user_data)); + return true; +} + +//------------- Enumeration -------------// +enum { + CONFIG_CH34X_READ_VERSION = 0, + CONFIG_CH34X_SERIAL_INIT, + CONFIG_CH34X_SPECIAL_REG_WRITE, + CONFIG_CH34X_FLOW_CONTROL, + CONFIG_CH34X_MODEM_CONTROL, + CONFIG_CH34X_COMPLETE +}; + +static bool ch34x_open(uint8_t daddr, tusb_desc_interface_t const* itf_desc, uint16_t max_len) { + // CH34x Interface includes 1 vendor interface + 2 bulk + 1 interrupt endpoints + TU_VERIFY (itf_desc->bNumEndpoints == 3); + TU_VERIFY (sizeof(tusb_desc_interface_t) + 3 * sizeof(tusb_desc_endpoint_t) <= max_len); + + cdch_interface_t* p_cdc = make_new_itf(daddr, itf_desc); + TU_VERIFY (p_cdc); + + TU_LOG_DRV ("CH34x opened\r\n"); + p_cdc->serial_drid = SERIAL_DRIVER_CH34X; + + tusb_desc_endpoint_t const* desc_ep = (tusb_desc_endpoint_t const*) tu_desc_next(itf_desc); + + // data endpoints expected to be in pairs + TU_ASSERT(open_ep_stream_pair(p_cdc, desc_ep)); + desc_ep += 2; + + // Interrupt endpoint: not used for now + TU_ASSERT(TUSB_DESC_ENDPOINT == tu_desc_type(desc_ep) && + TUSB_XFER_INTERRUPT == desc_ep->bmAttributes.xfer); + TU_ASSERT(tuh_edpt_open(daddr, desc_ep)); + p_cdc->ep_notif = desc_ep->bEndpointAddress; + + return true; +} + +static void ch34x_process_config(tuh_xfer_t* xfer) { + // CH34x only has 1 interface and use wIndex as payload and not for bInterfaceNumber + uint8_t const itf_num = 0; + uint8_t const idx = tuh_cdc_itf_get_index(xfer->daddr, itf_num); + cdch_interface_t* p_cdc = get_itf(idx); + uintptr_t const state = xfer->user_data; + uint8_t buffer[2]; // TODO remove + TU_ASSERT (p_cdc,); + TU_ASSERT (xfer->result == XFER_RESULT_SUCCESS,); + + switch (state) { + case CONFIG_CH34X_READ_VERSION: + TU_LOG_DRV("[%u] CDCh CH34x attempt to read Chip Version\r\n", p_cdc->daddr); + TU_ASSERT (ch34x_control_in(p_cdc, CH34X_REQ_READ_VERSION, 0, 0, buffer, 2, ch34x_process_config, CONFIG_CH34X_SERIAL_INIT),); + break; + + case CONFIG_CH34X_SERIAL_INIT: { + // handle version read data, set CH34x line coding (incl. baudrate) + uint8_t const version = xfer->buffer[0]; + TU_LOG_DRV("[%u] CDCh CH34x Chip Version = %02x\r\n", p_cdc->daddr, version); + // only versions >= 0x30 are tested, below 0x30 seems having other programming, see drivers from WCH vendor, Linux kernel and FreeBSD + TU_ASSERT (version >= 0x30,); + // init CH34x with line coding + cdc_line_coding_t const line_coding = CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X; + uint16_t const div_ps = ch34x_get_divisor_prescaler(line_coding.bit_rate); + TU_ASSERT(div_ps, ); + uint8_t const lcr = ch34x_get_lcr(line_coding.stop_bits, line_coding.parity, line_coding.data_bits); + TU_ASSERT(lcr, ); + TU_ASSERT (ch34x_control_out(p_cdc, CH34X_REQ_SERIAL_INIT, tu_u16(lcr, 0x9c), div_ps, + ch34x_process_config, CONFIG_CH34X_SPECIAL_REG_WRITE),); + break; + } + + case CONFIG_CH34X_SPECIAL_REG_WRITE: + // overtake line coding and do special reg write, purpose unknown, overtaken from WCH driver + p_cdc->line_coding = ((cdc_line_coding_t) CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X); + TU_ASSERT (ch34x_write_reg(p_cdc, TU_U16(CH341_REG_0x0F, CH341_REG_0x2C), 0x0007, ch34x_process_config, CONFIG_CH34X_FLOW_CONTROL),); + break; + + case CONFIG_CH34X_FLOW_CONTROL: + // no hardware flow control + TU_ASSERT (ch34x_write_reg(p_cdc, TU_U16(CH341_REG_0x27, CH341_REG_0x27), 0x0000, ch34x_process_config, CONFIG_CH34X_MODEM_CONTROL),); + break; + + case CONFIG_CH34X_MODEM_CONTROL: + // !always! set modem controls RTS/DTR (CH34x has no reset state after CH34X_REQ_SERIAL_INIT) + TU_ASSERT (ch34x_set_modem_ctrl(p_cdc, CFG_TUH_CDC_LINE_CONTROL_ON_ENUM, ch34x_process_config, CONFIG_CH34X_COMPLETE),); + break; + + case CONFIG_CH34X_COMPLETE: + set_config_complete(p_cdc, idx, itf_num); + break; + + default: + TU_ASSERT (false,); + break; + } +} + +//------------- CH34x helper -------------// + +// calculate divisor and prescaler for baudrate, return it as 16-bit combined value +static uint16_t ch34x_get_divisor_prescaler(uint32_t baval) { + uint8_t a; + uint8_t b; + uint32_t c; + + TU_VERIFY(baval != 0 && baval <= 2000000, 0); + switch (baval) { + case 921600: + a = 0xf3; + b = 7; + break; + + case 307200: + a = 0xd9; + b = 7; + break; + + default: + if (baval > 6000000 / 255) { + b = 3; + c = 6000000; + } else if (baval > 750000 / 255) { + b = 2; + c = 750000; + } else if (baval > 93750 / 255) { + b = 1; + c = 93750; + } else { + b = 0; + c = 11719; + } + a = (uint8_t) (c / baval); + if (a == 0 || a == 0xFF) { + return 0; + } + if ((c / a - baval) > (baval - c / (a + 1))) { + a++; + } + a = (uint8_t) (256 - a); + break; + } + + // reg divisor = a, reg prescaler = b + // According to linux code we need to set bit 7 of UCHCOM_REG_BPS_PRE, + // otherwise the chip will buffer data. + return (uint16_t) ((uint16_t)a << 8 | 0x80 | b); +} + +// calculate lcr value from data coding +static uint8_t ch34x_get_lcr(uint8_t stop_bits, uint8_t parity, uint8_t data_bits) { + uint8_t lcr = CH34X_LCR_ENABLE_RX | CH34X_LCR_ENABLE_TX; + TU_VERIFY(data_bits >= 5 && data_bits <= 8, 0); + lcr |= (uint8_t) (data_bits - 5); + + switch(parity) { + case CDC_LINE_CODING_PARITY_NONE: + break; + + case CDC_LINE_CODING_PARITY_ODD: + lcr |= CH34X_LCR_ENABLE_PAR; + break; + + case CDC_LINE_CODING_PARITY_EVEN: + lcr |= CH34X_LCR_ENABLE_PAR | CH34X_LCR_PAR_EVEN; + break; + + case CDC_LINE_CODING_PARITY_MARK: + lcr |= CH34X_LCR_ENABLE_PAR | CH34X_LCR_MARK_SPACE; + break; + + case CDC_LINE_CODING_PARITY_SPACE: + lcr |= CH34X_LCR_ENABLE_PAR | CH34X_LCR_MARK_SPACE | CH34X_LCR_PAR_EVEN; + break; + + default: break; + } + + // 1.5 stop bits not supported + TU_VERIFY(stop_bits != CDC_LINE_CODING_STOP_BITS_1_5, 0); + if (stop_bits == CDC_LINE_CODING_STOP_BITS_2) { + lcr |= CH34X_LCR_STOP_BITS_2; + } + + return lcr; +} + + +#endif // CFG_TUH_CDC_CH34X + #endif diff --git a/src/class/cdc/cdc_host.h b/src/class/cdc/cdc_host.h index 971ebe2ae..b63dd1530 100644 --- a/src/class/cdc/cdc_host.h +++ b/src/class/cdc/cdc_host.h @@ -44,7 +44,7 @@ // Set Line Coding on enumeration/mounted, value for cdc_line_coding_t //#ifndef CFG_TUH_CDC_LINE_CODING_ON_ENUM -//#define CFG_TUH_CDC_LINE_CODING_ON_ENUM { 115200, CDC_LINE_CONDING_STOP_BITS_1, CDC_LINE_CODING_PARITY_NONE, 8 } +//#define CFG_TUH_CDC_LINE_CODING_ON_ENUM { 115200, CDC_LINE_CODING_STOP_BITS_1, CDC_LINE_CODING_PARITY_NONE, 8 } //#endif // RX FIFO size @@ -134,7 +134,12 @@ bool tuh_cdc_read_clear (uint8_t idx); //--------------------------------------------------------------------+ // Control Endpoint (Request) API -// Each Function will make a USB transfer request to/from device +// Each Function will make a USB control transfer request to/from device +// - If complete_cb is provided, the function will return immediately and invoke +// the callback when request is complete. +// - If complete_cb is NULL, the function will block until request is complete. +// - In this case, user_data should be pointed to xfer_result_t to hold the transfer result. +// - The function will return true if transfer is successful, false otherwise. //--------------------------------------------------------------------+ // Request to Set Control Line State: DTR (bit 0), RTS (bit 1) @@ -143,7 +148,11 @@ bool tuh_cdc_set_control_line_state(uint8_t idx, uint16_t line_state, tuh_xfer_c // Request to set baudrate bool tuh_cdc_set_baudrate(uint8_t idx, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data); -// Request to Set Line Coding (ACM only) +// Request to set data format +bool tuh_cdc_set_data_format(uint8_t idx, uint8_t stop_bits, uint8_t parity, uint8_t data_bits, tuh_xfer_cb_t complete_cb, uintptr_t user_data); + +// Request to Set Line Coding = baudrate + data format +// Note: only implemented by ACM and CH34x, not supported by FTDI and CP210x yet bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, tuh_xfer_cb_t complete_cb, uintptr_t user_data); // Request to Get Line Coding (ACM only) @@ -153,15 +162,13 @@ bool tuh_cdc_set_line_coding(uint8_t idx, cdc_line_coding_t const* line_coding, // Connect by set both DTR, RTS TU_ATTR_ALWAYS_INLINE static inline -bool tuh_cdc_connect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +bool tuh_cdc_connect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { return tuh_cdc_set_control_line_state(idx, CDC_CONTROL_LINE_STATE_DTR | CDC_CONTROL_LINE_STATE_RTS, complete_cb, user_data); } // Disconnect by clear both DTR, RTS TU_ATTR_ALWAYS_INLINE static inline -bool tuh_cdc_disconnect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) -{ +bool tuh_cdc_disconnect(uint8_t idx, tuh_xfer_cb_t complete_cb, uintptr_t user_data) { return tuh_cdc_set_control_line_state(idx, 0x00, complete_cb, user_data); } @@ -185,7 +192,8 @@ TU_ATTR_WEAK extern void tuh_cdc_tx_complete_cb(uint8_t idx); //--------------------------------------------------------------------+ // Internal Class Driver API //--------------------------------------------------------------------+ -void cdch_init (void); +bool cdch_init (void); +bool cdch_deinit (void); bool cdch_open (uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *itf_desc, uint16_t max_len); bool cdch_set_config (uint8_t dev_addr, uint8_t itf_num); bool cdch_xfer_cb (uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes); diff --git a/src/class/cdc/serial/ch34x.h b/src/class/cdc/serial/ch34x.h new file mode 100644 index 000000000..c18066f57 --- /dev/null +++ b/src/class/cdc/serial/ch34x.h @@ -0,0 +1,84 @@ +/* + * The MIT License (MIT) + * + * Copyright (c) 2023 Heiko Kuester + * + * Permission is hereby granted, free of charge, to any person obtaining a copy + * of this software and associated documentation files (the "Software"), to deal + * in the Software without restriction, including without limitation the rights + * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + * copies of the Software, and to permit persons to whom the Software is + * furnished to do so, subject to the following conditions: + * + * The above copyright notice and this permission notice shall be included in + * all copies or substantial portions of the Software. + * + * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + * THE SOFTWARE. + * + * This file is part of the TinyUSB stack. + */ + +#ifndef _CH34X_H_ +#define _CH34X_H_ + +// There is no official documentation for the CH34x (CH340, CH341) chips. Reference can be found +// - https://github.com/WCHSoftGroup/ch341ser_linux +// - https://github.com/torvalds/linux/blob/master/drivers/usb/serial/ch341.c +// - https://github.com/freebsd/freebsd-src/blob/main/sys/dev/usb/serial/uchcom.c + +// set line_coding @ enumeration +#ifdef CFG_TUH_CDC_LINE_CODING_ON_ENUM +#define CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X CFG_TUH_CDC_LINE_CODING_ON_ENUM +#else // this default is necessary to work properly +#define CFG_TUH_CDC_LINE_CODING_ON_ENUM_CH34X { 9600, CDC_LINE_CONDING_STOP_BITS_1, CDC_LINE_CODING_PARITY_NONE, 8 } +#endif + +// USB requests +#define CH34X_REQ_READ_VERSION 0x5F // dec 95 +#define CH34X_REQ_WRITE_REG 0x9A // dec 154 +#define CH34X_REQ_READ_REG 0x95 // dec 149 +#define CH34X_REQ_SERIAL_INIT 0xA1 // dec 161 +#define CH34X_REQ_MODEM_CTRL 0xA4 // dev 164 + +// registers +#define CH34X_REG_BREAK 0x05 +#define CH34X_REG_PRESCALER 0x12 +#define CH34X_REG_DIVISOR 0x13 +#define CH34X_REG_LCR 0x18 +#define CH34X_REG_LCR2 0x25 +#define CH34X_REG_MCR_MSR 0x06 +#define CH34X_REG_MCR_MSR2 0x07 +#define CH34X_NBREAK_BITS 0x01 + +#define CH341_REG_0x0F 0x0F // undocumented register +#define CH341_REG_0x2C 0x2C // undocumented register +#define CH341_REG_0x27 0x27 // hardware flow control (cts/rts) + +#define CH34X_REG16_DIVISOR_PRESCALER TU_U16(CH34X_REG_DIVISOR, CH34X_REG_PRESCALER) +#define CH32X_REG16_LCR2_LCR TU_U16(CH34X_REG_LCR2, CH34X_REG_LCR) + +// modem control bits +#define CH34X_BIT_RTS ( 1 << 6 ) +#define CH34X_BIT_DTR ( 1 << 5 ) + +// line control bits +#define CH34X_LCR_ENABLE_RX 0x80 +#define CH34X_LCR_ENABLE_TX 0x40 +#define CH34X_LCR_MARK_SPACE 0x20 +#define CH34X_LCR_PAR_EVEN 0x10 +#define CH34X_LCR_ENABLE_PAR 0x08 +#define CH34X_LCR_PAR_MASK 0x38 // all parity bits +#define CH34X_LCR_STOP_BITS_2 0x04 +#define CH34X_LCR_CS8 0x03 +#define CH34X_LCR_CS7 0x02 +#define CH34X_LCR_CS6 0x01 +#define CH34X_LCR_CS5 0x00 +#define CH34X_LCR_CS_MASK 0x03 // all CSx bits + +#endif /* _CH34X_H_ */ diff --git a/src/class/cdc/serial/cp210x.h b/src/class/cdc/serial/cp210x.h index b01417092..2c749f522 100644 --- a/src/class/cdc/serial/cp210x.h +++ b/src/class/cdc/serial/cp210x.h @@ -29,8 +29,6 @@ // https://www.silabs.com/documents/public/application-notes/AN571.pdf #define TU_CP210X_VID 0x10C4 -#define TU_CP210X_PID_LIST \ - 0xEA60, 0xEA70 /* Config request codes */ #define CP210X_IFC_ENABLE 0x00 diff --git a/src/class/cdc/serial/ftdi_sio.h b/src/class/cdc/serial/ftdi_sio.h index 6916e4031..0825f0719 100644 --- a/src/class/cdc/serial/ftdi_sio.h +++ b/src/class/cdc/serial/ftdi_sio.h @@ -25,11 +25,8 @@ #ifndef TUSB_FTDI_SIO_H #define TUSB_FTDI_SIO_H -// VID/PID for matching FTDI devices +// VID for matching FTDI devices #define TU_FTDI_VID 0x0403 -#define TU_FTDI_PID_LIST \ - 0x6001, 0x6006, 0x6010, 0x6011, 0x6014, 0x6015, 0x8372, 0xFBFA, \ - 0xcd18 // Commands #define FTDI_SIO_RESET 0 /* Reset the port */ |
