153666f73f
* USB-CDC: accepting the next data packet only if we process previous data * USB-CDC: use USB FS packet size * HAL-console: puts method * Check: print assertion data * FuriHal: rx stream free space aware CDC confirmation. * Bootloader: pull down USB lines, leave the rest to the firmware or bootloader * F6: cleanup and move USB code to usb-glue folder, add USB suspend/resume events to VCP, cleanup target.mk, fix missing motd message in cli when using minicom. * F5: cleanup the rest of USB glue code, adjust LPM and Power info data in descriptor. Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
129 lines
3.6 KiB
C
129 lines
3.6 KiB
C
#include <furi-hal-vcp_i.h>
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#include <furi.h>
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#include <usbd_cdc_if.h>
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#include <stream_buffer.h>
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#define FURI_HAL_VCP_RX_BUFFER_SIZE (APP_RX_DATA_SIZE * 5)
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extern USBD_HandleTypeDef hUsbDeviceFS;
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typedef struct {
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volatile bool connected;
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StreamBufferHandle_t rx_stream;
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volatile bool rx_stream_full;
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osSemaphoreId_t tx_semaphore;
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} FuriHalVcp;
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static FuriHalVcp* furi_hal_vcp = NULL;
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static const uint8_t ascii_soh = 0x01;
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static const uint8_t ascii_eot = 0x04;
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void furi_hal_vcp_init() {
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furi_hal_vcp = furi_alloc(sizeof(FuriHalVcp));
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furi_hal_vcp->connected = false;
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furi_hal_vcp->rx_stream = xStreamBufferCreate(FURI_HAL_VCP_RX_BUFFER_SIZE, 1);
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furi_hal_vcp->rx_stream_full = false;
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furi_hal_vcp->tx_semaphore = osSemaphoreNew(1, 1, NULL);
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FURI_LOG_I("FuriHalVcp", "Init OK");
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}
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size_t furi_hal_vcp_rx(uint8_t* buffer, size_t size) {
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furi_assert(furi_hal_vcp);
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size_t received = xStreamBufferReceive(furi_hal_vcp->rx_stream, buffer, size, portMAX_DELAY);
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if(furi_hal_vcp->rx_stream_full
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&&xStreamBufferSpacesAvailable(furi_hal_vcp->rx_stream) >= APP_RX_DATA_SIZE) {
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furi_hal_vcp->rx_stream_full = false;
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// data accepted, start waiting for next packet
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USBD_CDC_ReceivePacket(&hUsbDeviceFS);
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}
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return received;
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}
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size_t furi_hal_vcp_rx_with_timeout(uint8_t* buffer, size_t size, uint32_t timeout) {
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furi_assert(furi_hal_vcp);
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return xStreamBufferReceive(furi_hal_vcp->rx_stream, buffer, size, timeout);
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}
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void furi_hal_vcp_tx(const uint8_t* buffer, size_t size) {
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furi_assert(furi_hal_vcp);
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while (size > 0 && furi_hal_vcp->connected) {
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furi_check(osSemaphoreAcquire(furi_hal_vcp->tx_semaphore, osWaitForever) == osOK);
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if (!furi_hal_vcp->connected)
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break;
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size_t batch_size = size;
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if (batch_size > APP_TX_DATA_SIZE) {
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batch_size = APP_TX_DATA_SIZE;
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}
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if (CDC_Transmit_FS((uint8_t*)buffer, batch_size) == USBD_OK) {
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size -= batch_size;
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buffer += batch_size;
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} else {
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FURI_LOG_E("FuriHalVcp", "CDC_Transmit_FS failed");
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osDelay(50);
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}
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}
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}
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void furi_hal_vcp_on_usb_resume() {
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osSemaphoreRelease(furi_hal_vcp->tx_semaphore);
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}
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void furi_hal_vcp_on_usb_suspend() {
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if (furi_hal_vcp->connected) {
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furi_hal_vcp->connected = false;
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osSemaphoreRelease(furi_hal_vcp->tx_semaphore);
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}
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}
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void furi_hal_vcp_on_cdc_control_line(uint8_t state) {
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// bit 0: DTR state, bit 1: RTS state
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// bool dtr = state & 0b01;
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bool dtr = state & 0b1;
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if (dtr) {
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if (!furi_hal_vcp->connected) {
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furi_hal_vcp->connected = true;
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furi_hal_vcp_on_cdc_rx(&ascii_soh, 1); // SOH
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}
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} else {
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if (furi_hal_vcp->connected) {
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furi_hal_vcp_on_cdc_rx(&ascii_eot, 1); // EOT
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furi_hal_vcp->connected = false;
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}
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}
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osSemaphoreRelease(furi_hal_vcp->tx_semaphore);
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}
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void furi_hal_vcp_on_cdc_rx(const uint8_t* buffer, size_t size) {
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BaseType_t xHigherPriorityTaskWoken = pdFALSE;
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size_t ret = xStreamBufferSendFromISR(furi_hal_vcp->rx_stream, buffer, size, &xHigherPriorityTaskWoken);
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furi_check(ret == size);
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if (xStreamBufferSpacesAvailable(furi_hal_vcp->rx_stream) >= APP_RX_DATA_SIZE) {
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USBD_CDC_ReceivePacket(&hUsbDeviceFS);
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} else {
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furi_hal_vcp->rx_stream_full = true;
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}
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portYIELD_FROM_ISR(xHigherPriorityTaskWoken);
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}
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void furi_hal_vcp_on_cdc_tx_complete(size_t size) {
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osSemaphoreRelease(furi_hal_vcp->tx_semaphore);
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}
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