sorted driver functions into Control Request, Driver API, Enumeration and Helper. no functional changes
This commit is contained in:
@@ -782,6 +782,94 @@ bool cdch_set_config(uint8_t daddr, uint8_t itf_num) {
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// ACM
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//--------------------------------------------------------------------+
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//------------- Driver API -------------//
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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) {
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TU_VERIFY(p_cdc->acm_capability.support_line_request);
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TU_LOG_DRV("CDC ACM Set Control Line State\r\n");
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tusb_control_request_t const request = {
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.bmRequestType_bit = {
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.recipient = TUSB_REQ_RCPT_INTERFACE,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_OUT
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},
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.bRequest = CDC_REQUEST_SET_CONTROL_LINE_STATE,
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.wValue = tu_htole16(line_state),
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.wIndex = tu_htole16((uint16_t) p_cdc->bInterfaceNumber),
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.wLength = 0
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};
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p_cdc->user_control_cb = complete_cb;
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tuh_xfer_t xfer = {
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.daddr = p_cdc->daddr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = NULL,
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.complete_cb = complete_cb ? cdch_internal_control_complete : NULL, // complete_cb is NULL for sync call
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.user_data = user_data
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};
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TU_ASSERT(tuh_control_xfer(&xfer));
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return true;
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}
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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) {
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TU_LOG_DRV("CDC ACM Set Line Conding\r\n");
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tusb_control_request_t const request = {
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.bmRequestType_bit = {
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.recipient = TUSB_REQ_RCPT_INTERFACE,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_OUT
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},
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.bRequest = CDC_REQUEST_SET_LINE_CODING,
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.wValue = 0,
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.wIndex = tu_htole16(p_cdc->bInterfaceNumber),
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.wLength = tu_htole16(sizeof(cdc_line_coding_t))
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};
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// use usbh enum buf to hold line coding since user line_coding variable does not live long enough
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uint8_t* enum_buf = usbh_get_enum_buf();
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memcpy(enum_buf, line_coding, sizeof(cdc_line_coding_t));
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p_cdc->user_control_cb = complete_cb;
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tuh_xfer_t xfer = {
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.daddr = p_cdc->daddr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = enum_buf,
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.complete_cb = complete_cb ? cdch_internal_control_complete : NULL, // complete_cb is NULL for sync call
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.user_data = user_data
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};
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TU_ASSERT(tuh_control_xfer(&xfer));
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return true;
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}
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static bool acm_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits,
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tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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TU_LOG_DRV("CDC ACM Set Data Format\r\n");
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cdc_line_coding_t line_coding;
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line_coding.bit_rate = p_cdc->line_coding.bit_rate;
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line_coding.stop_bits = stop_bits;
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line_coding.parity = parity;
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line_coding.data_bits = data_bits;
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return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data);
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}
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static bool acm_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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TU_VERIFY(p_cdc->acm_capability.support_line_request);
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cdc_line_coding_t line_coding = p_cdc->line_coding;
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line_coding.bit_rate = baudrate;
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return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data);
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}
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//------------- Enumeration -------------//
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enum {
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CONFIG_ACM_SET_CONTROL_LINE_STATE = 0,
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CONFIG_ACM_SET_LINE_CODING,
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@@ -869,120 +957,14 @@ static void acm_process_config(tuh_xfer_t* xfer) {
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}
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}
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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) {
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TU_VERIFY(p_cdc->acm_capability.support_line_request);
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TU_LOG_DRV("CDC ACM Set Control Line State\r\n");
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tusb_control_request_t const request = {
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.bmRequestType_bit = {
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.recipient = TUSB_REQ_RCPT_INTERFACE,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_OUT
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},
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.bRequest = CDC_REQUEST_SET_CONTROL_LINE_STATE,
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.wValue = tu_htole16(line_state),
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.wIndex = tu_htole16((uint16_t) p_cdc->bInterfaceNumber),
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.wLength = 0
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};
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p_cdc->user_control_cb = complete_cb;
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tuh_xfer_t xfer = {
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.daddr = p_cdc->daddr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = NULL,
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.complete_cb = complete_cb ? cdch_internal_control_complete : NULL, // complete_cb is NULL for sync call
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.user_data = user_data
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};
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TU_ASSERT(tuh_control_xfer(&xfer));
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return true;
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}
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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) {
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TU_LOG_DRV("CDC ACM Set Line Conding\r\n");
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tusb_control_request_t const request = {
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.bmRequestType_bit = {
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.recipient = TUSB_REQ_RCPT_INTERFACE,
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.type = TUSB_REQ_TYPE_CLASS,
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.direction = TUSB_DIR_OUT
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},
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.bRequest = CDC_REQUEST_SET_LINE_CODING,
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.wValue = 0,
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.wIndex = tu_htole16(p_cdc->bInterfaceNumber),
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.wLength = tu_htole16(sizeof(cdc_line_coding_t))
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};
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// use usbh enum buf to hold line coding since user line_coding variable does not live long enough
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uint8_t* enum_buf = usbh_get_enum_buf();
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memcpy(enum_buf, line_coding, sizeof(cdc_line_coding_t));
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p_cdc->user_control_cb = complete_cb;
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tuh_xfer_t xfer = {
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.daddr = p_cdc->daddr,
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.ep_addr = 0,
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.setup = &request,
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.buffer = enum_buf,
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.complete_cb = complete_cb ? cdch_internal_control_complete : NULL, // complete_cb is NULL for sync call
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.user_data = user_data
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};
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TU_ASSERT(tuh_control_xfer(&xfer));
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return true;
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}
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static bool acm_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits,
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tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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TU_LOG_DRV("CDC ACM Set Data Format\r\n");
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cdc_line_coding_t line_coding;
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line_coding.bit_rate = p_cdc->line_coding.bit_rate;
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line_coding.stop_bits = stop_bits;
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line_coding.parity = parity;
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line_coding.data_bits = data_bits;
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return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data);
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}
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static bool acm_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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TU_VERIFY(p_cdc->acm_capability.support_line_request);
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cdc_line_coding_t line_coding = p_cdc->line_coding;
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line_coding.bit_rate = baudrate;
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return acm_set_line_coding(p_cdc, &line_coding, complete_cb, user_data);
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}
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//--------------------------------------------------------------------+
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// FTDI
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//--------------------------------------------------------------------+
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#if CFG_TUH_CDC_FTDI
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enum {
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CONFIG_FTDI_RESET = 0,
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CONFIG_FTDI_MODEM_CTRL,
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CONFIG_FTDI_SET_BAUDRATE,
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CONFIG_FTDI_SET_DATA,
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CONFIG_FTDI_COMPLETE
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};
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static uint32_t ftdi_232bm_baud_to_divisor(uint32_t baud);
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static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) {
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// FTDI Interface includes 1 vendor interface + 2 bulk endpoints
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TU_VERIFY(itf_desc->bInterfaceSubClass == 0xff && itf_desc->bInterfaceProtocol == 0xff && itf_desc->bNumEndpoints == 2);
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TU_VERIFY(sizeof(tusb_desc_interface_t) + 2*sizeof(tusb_desc_endpoint_t) <= max_len);
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cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc);
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TU_VERIFY(p_cdc);
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TU_LOG_DRV("FTDI opened\r\n");
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p_cdc->serial_drid = SERIAL_DRIVER_FTDI;
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// endpoint pair
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tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc);
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// data endpoints expected to be in pairs
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return open_ep_stream_pair(p_cdc, desc_ep);
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}
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//------------- Control Request -------------//
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// set request without data
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static bool ftdi_sio_set_request(cdch_interface_t* p_cdc, uint8_t command, uint16_t value, tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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@@ -1014,6 +996,20 @@ static bool ftdi_sio_reset(cdch_interface_t* p_cdc, tuh_xfer_cb_t complete_cb, u
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return ftdi_sio_set_request(p_cdc, FTDI_SIO_RESET, FTDI_SIO_RESET_SIO, complete_cb, user_data);
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}
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//------------- Driver API -------------//
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static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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uint16_t const divisor = (uint16_t) ftdi_232bm_baud_to_divisor(baudrate);
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TU_LOG_DRV("CDC FTDI Set BaudRate = %lu, divisor = 0x%04x\r\n", baudrate, divisor);
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p_cdc->user_control_cb = complete_cb;
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p_cdc->requested_line_coding.bit_rate = baudrate;
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TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_SET_BAUD_RATE, divisor,
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complete_cb ? cdch_internal_control_complete : NULL, user_data));
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return true;
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}
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static bool ftdi_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, uint8_t parity, uint8_t data_bits,
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tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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(void) p_cdc;
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@@ -1043,40 +1039,32 @@ static bool ftdi_sio_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state
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return true;
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}
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static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) {
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const uint8_t divfrac[8] = { 0, 3, 2, 4, 1, 5, 6, 7 };
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uint32_t divisor;
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//------------- Enumeration -------------//
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/* divisor shifted 3 bits to the left */
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uint32_t divisor3 = base / (2 * baud);
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divisor = (divisor3 >> 3);
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divisor |= (uint32_t) divfrac[divisor3 & 0x7] << 14;
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enum {
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CONFIG_FTDI_RESET = 0,
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CONFIG_FTDI_MODEM_CTRL,
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CONFIG_FTDI_SET_BAUDRATE,
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CONFIG_FTDI_SET_DATA,
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CONFIG_FTDI_COMPLETE
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};
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/* Deal with special cases for highest baud rates. */
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if (divisor == 1) { /* 1.0 */
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divisor = 0;
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}
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else if (divisor == 0x4001) { /* 1.5 */
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divisor = 1;
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}
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static bool ftdi_open(uint8_t daddr, const tusb_desc_interface_t *itf_desc, uint16_t max_len) {
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// FTDI Interface includes 1 vendor interface + 2 bulk endpoints
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TU_VERIFY(itf_desc->bInterfaceSubClass == 0xff && itf_desc->bInterfaceProtocol == 0xff && itf_desc->bNumEndpoints == 2);
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TU_VERIFY(sizeof(tusb_desc_interface_t) + 2*sizeof(tusb_desc_endpoint_t) <= max_len);
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return divisor;
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}
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cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc);
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TU_VERIFY(p_cdc);
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static uint32_t ftdi_232bm_baud_to_divisor(uint32_t baud) {
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return ftdi_232bm_baud_base_to_divisor(baud, 48000000u);
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}
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TU_LOG_DRV("FTDI opened\r\n");
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p_cdc->serial_drid = SERIAL_DRIVER_FTDI;
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static bool ftdi_sio_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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uint16_t const divisor = (uint16_t) ftdi_232bm_baud_to_divisor(baudrate);
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TU_LOG_DRV("CDC FTDI Set BaudRate = %lu, divisor = 0x%04x\r\n", baudrate, divisor);
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// endpoint pair
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tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc);
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p_cdc->user_control_cb = complete_cb;
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p_cdc->requested_line_coding.bit_rate = baudrate;
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TU_ASSERT(ftdi_sio_set_request(p_cdc, FTDI_SIO_SET_BAUD_RATE, divisor,
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complete_cb ? cdch_internal_control_complete : NULL, user_data));
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return true;
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// data endpoints expected to be in pairs
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return open_ep_stream_pair(p_cdc, desc_ep);
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}
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static void ftdi_process_config(tuh_xfer_t* xfer) {
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@@ -1131,39 +1119,40 @@ static void ftdi_process_config(tuh_xfer_t* xfer) {
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}
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}
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//------------- Helper -------------//
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static uint32_t ftdi_232bm_baud_base_to_divisor(uint32_t baud, uint32_t base) {
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const uint8_t divfrac[8] = { 0, 3, 2, 4, 1, 5, 6, 7 };
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uint32_t divisor;
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/* divisor shifted 3 bits to the left */
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uint32_t divisor3 = base / (2 * baud);
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divisor = (divisor3 >> 3);
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divisor |= (uint32_t) divfrac[divisor3 & 0x7] << 14;
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/* Deal with special cases for highest baud rates. */
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if (divisor == 1) { /* 1.0 */
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divisor = 0;
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}
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else if (divisor == 0x4001) { /* 1.5 */
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divisor = 1;
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}
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return divisor;
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}
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static uint32_t ftdi_232bm_baud_to_divisor(uint32_t baud) {
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return ftdi_232bm_baud_base_to_divisor(baud, 48000000u);
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}
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#endif
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//--------------------------------------------------------------------+
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// CP210x
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//--------------------------------------------------------------------+
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#if CFG_TUH_CDC_CP210X
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enum {
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CONFIG_CP210X_IFC_ENABLE = 0,
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CONFIG_CP210X_SET_BAUDRATE,
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CONFIG_CP210X_SET_LINE_CTL,
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CONFIG_CP210X_SET_DTR_RTS,
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CONFIG_CP210X_COMPLETE
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};
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static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) {
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// CP210x Interface includes 1 vendor interface + 2 bulk endpoints
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TU_VERIFY(itf_desc->bInterfaceSubClass == 0 && itf_desc->bInterfaceProtocol == 0 && itf_desc->bNumEndpoints == 2);
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TU_VERIFY(sizeof(tusb_desc_interface_t) + 2*sizeof(tusb_desc_endpoint_t) <= max_len);
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cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc);
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TU_VERIFY(p_cdc);
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TU_LOG_DRV("CP210x opened\r\n");
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p_cdc->serial_drid = SERIAL_DRIVER_CP210X;
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// endpoint pair
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tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) tu_desc_next(itf_desc);
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// data endpoints expected to be in pairs
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return open_ep_stream_pair(p_cdc, desc_ep);
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}
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//------------- Control Request -------------//
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static bool cp210x_set_request(cdch_interface_t* p_cdc, uint8_t command, uint16_t value, uint8_t* buffer, uint16_t length, tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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tusb_control_request_t const request = {
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@@ -1202,14 +1191,7 @@ static bool cp210x_ifc_enable(cdch_interface_t* p_cdc, uint16_t enabled, tuh_xfe
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return cp210x_set_request(p_cdc, CP210X_IFC_ENABLE, enabled, NULL, 0, complete_cb, user_data);
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}
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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) {
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// TODO implement later
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(void) p_cdc;
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(void) line_coding;
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(void) complete_cb;
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(void) user_data;
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return false;
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}
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//------------- Driver API -------------//
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static bool cp210x_set_baudrate(cdch_interface_t* p_cdc, uint32_t baudrate, tuh_xfer_cb_t complete_cb, uintptr_t user_data) {
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TU_LOG_DRV("CDC CP210x Set BaudRate = %lu\r\n", baudrate);
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@@ -1231,6 +1213,15 @@ static bool cp210x_set_data_format(cdch_interface_t* p_cdc, uint8_t stop_bits, u
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||||
return false;
|
||||
}
|
||||
|
||||
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_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;
|
||||
@@ -1238,6 +1229,34 @@ static bool cp210x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state,
|
||||
complete_cb ? cdch_internal_control_complete : NULL, user_data);
|
||||
}
|
||||
|
||||
//------------- Enumeration -------------//
|
||||
|
||||
enum {
|
||||
CONFIG_CP210X_IFC_ENABLE = 0,
|
||||
CONFIG_CP210X_SET_BAUDRATE,
|
||||
CONFIG_CP210X_SET_LINE_CTL,
|
||||
CONFIG_CP210X_SET_DTR_RTS,
|
||||
CONFIG_CP210X_COMPLETE
|
||||
};
|
||||
|
||||
static bool cp210x_open(uint8_t daddr, tusb_desc_interface_t const *itf_desc, uint16_t max_len) {
|
||||
// CP210x Interface includes 1 vendor interface + 2 bulk endpoints
|
||||
TU_VERIFY(itf_desc->bInterfaceSubClass == 0 && itf_desc->bInterfaceProtocol == 0 && itf_desc->bNumEndpoints == 2);
|
||||
TU_VERIFY(sizeof(tusb_desc_interface_t) + 2*sizeof(tusb_desc_endpoint_t) <= max_len);
|
||||
|
||||
cdch_interface_t * p_cdc = make_new_itf(daddr, itf_desc);
|
||||
TU_VERIFY(p_cdc);
|
||||
|
||||
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);
|
||||
|
||||
// data endpoints expected to be in pairs
|
||||
return open_ep_stream_pair(p_cdc, desc_ep);
|
||||
}
|
||||
|
||||
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);
|
||||
@@ -1296,7 +1315,7 @@ static void cp210x_process_config(tuh_xfer_t* xfer) {
|
||||
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 -------------//
|
||||
//------------- 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) {
|
||||
@@ -1471,6 +1490,7 @@ static bool ch34x_set_modem_ctrl(cdch_interface_t* p_cdc, uint16_t line_state,
|
||||
}
|
||||
|
||||
//------------- Enumeration -------------//
|
||||
|
||||
enum {
|
||||
CONFIG_CH34X_READ_VERSION = 0,
|
||||
CONFIG_CH34X_SERIAL_INIT,
|
||||
@@ -1565,7 +1585,7 @@ static void ch34x_process_config(tuh_xfer_t* xfer) {
|
||||
}
|
||||
}
|
||||
|
||||
//------------- CH34x helper -------------//
|
||||
//------------- Helper -------------//
|
||||
|
||||
// calculate divisor and prescaler for baudrate, return it as 16-bit combined value
|
||||
static uint16_t ch34x_get_divisor_prescaler(uint32_t baval) {
|
||||
@@ -1654,7 +1674,6 @@ static uint8_t ch34x_get_lcr(uint8_t stop_bits, uint8_t parity, uint8_t data_bit
|
||||
return lcr;
|
||||
}
|
||||
|
||||
|
||||
#endif // CFG_TUH_CDC_CH34X
|
||||
|
||||
#endif
|
||||
|
Reference in New Issue
Block a user