mirror of
https://github.com/DarkFlippers/unleashed-firmware
synced 2024-12-25 04:03:07 +00:00
f8d3cc251c
* [FL-1984, FL-2004] USB-UART Fixes, test with high timer task priority * added forgotten file * switch from EventFlags to ThreadFlags * [FL-1984, FL-2010] USB-UART and furi-hal-vcp rework * Scripts: modernize string formatting. Co-authored-by: あく <alleteam@gmail.com>
211 lines
5.4 KiB
C
211 lines
5.4 KiB
C
#include <furi-hal-usb-cdc_i.h>
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#include <furi.h>
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#include <stream_buffer.h>
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#define USB_CDC_PKT_LEN CDC_DATA_SZ
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#define VCP_IF_NUM 0
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typedef enum {
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VcpConnect,
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VcpDisconnect,
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} VcpEvent;
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typedef struct {
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volatile bool connected;
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uint8_t rx_buf[USB_CDC_PKT_LEN];
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uint8_t rx_buf_start;
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uint8_t rx_buf_len;
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osMessageQueueId_t event_queue;
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osMutexId_t usb_mutex;
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osSemaphoreId_t tx_sem;
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osSemaphoreId_t rx_sem;
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} FuriHalVcp;
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static void vcp_on_cdc_tx_complete();
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static void vcp_on_cdc_rx();
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static void vcp_state_callback(uint8_t state);
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static void vcp_on_cdc_control_line(uint8_t state);
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static CdcCallbacks cdc_cb = {
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vcp_on_cdc_tx_complete,
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vcp_on_cdc_rx,
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vcp_state_callback,
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vcp_on_cdc_control_line,
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NULL,
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};
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static FuriHalVcp* 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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vcp = furi_alloc(sizeof(FuriHalVcp));
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vcp->connected = false;
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vcp->usb_mutex = osMutexNew(NULL);
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vcp->tx_sem = osSemaphoreNew(1, 1, NULL);
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vcp->rx_sem = osSemaphoreNew(1, 0, NULL);
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vcp->event_queue = osMessageQueueNew(8, sizeof(VcpEvent), NULL);
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furi_hal_cdc_set_callbacks(VCP_IF_NUM, &cdc_cb);
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FURI_LOG_I("FuriHalVcp", "Init OK");
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}
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void furi_hal_vcp_enable() {
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furi_hal_cdc_set_callbacks(VCP_IF_NUM, &cdc_cb);
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VcpEvent evt = VcpConnect;
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osMessageQueuePut(vcp->event_queue, &evt, 0, 0);
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vcp->connected = true;
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osSemaphoreRelease(vcp->tx_sem);
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osSemaphoreRelease(vcp->rx_sem);
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}
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void furi_hal_vcp_disable() {
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furi_hal_cdc_set_callbacks(VCP_IF_NUM, NULL);
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VcpEvent evt = VcpDisconnect;
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osMessageQueuePut(vcp->event_queue, &evt, 0, 0);
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vcp->connected = false;
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osSemaphoreRelease(vcp->tx_sem);
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osSemaphoreRelease(vcp->rx_sem);
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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(vcp);
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furi_assert(buffer);
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size_t rx_cnt = 0;
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VcpEvent evt = VcpDisconnect;
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if (vcp->rx_buf_len > 0) {
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size_t len = (vcp->rx_buf_len > size) ? (size) : (vcp->rx_buf_len);
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memcpy(&buffer[rx_cnt], &vcp->rx_buf[vcp->rx_buf_start], len);
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vcp->rx_buf_len -= len;
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vcp->rx_buf_start += len;
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rx_cnt += len;
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}
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while (rx_cnt < size) {
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if (osMessageQueueGet(vcp->event_queue, &evt, NULL, 0) == osOK) {
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if (evt == VcpConnect)
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buffer[rx_cnt] = ascii_soh;
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else {
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buffer[rx_cnt] = ascii_eot;
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vcp->rx_buf_len = 0;
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}
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rx_cnt++;
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return rx_cnt;
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}
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if (osSemaphoreAcquire(vcp->rx_sem, timeout) == osErrorTimeout)
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return rx_cnt;
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furi_check(osMutexAcquire(vcp->usb_mutex, osWaitForever) == osOK);
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size_t len = furi_hal_cdc_receive(VCP_IF_NUM, vcp->rx_buf, USB_CDC_PKT_LEN);
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furi_check(osMutexRelease(vcp->usb_mutex) == osOK);
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vcp->rx_buf_len = len;
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vcp->rx_buf_start = 0;
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if (vcp->rx_buf_len > (size - rx_cnt)) {
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len = size - rx_cnt;
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memcpy(&buffer[rx_cnt], vcp->rx_buf, len);
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vcp->rx_buf_len -= len;
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vcp->rx_buf_start += len;
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} else {
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memcpy(&buffer[rx_cnt], vcp->rx_buf, vcp->rx_buf_len);
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vcp->rx_buf_len = 0;
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}
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rx_cnt += len;
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}
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return rx_cnt;
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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(vcp);
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return furi_hal_vcp_rx_with_timeout(buffer, size, portMAX_DELAY);
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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(vcp);
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while (size > 0 && vcp->connected) {
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furi_check(osSemaphoreAcquire(vcp->tx_sem, osWaitForever) == osOK);
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if (!vcp->connected)
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break;
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size_t batch_size = size;
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if (batch_size > USB_CDC_PKT_LEN) {
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batch_size = USB_CDC_PKT_LEN;
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}
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furi_check(osMutexAcquire(vcp->usb_mutex, osWaitForever) == osOK);
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furi_hal_cdc_send(VCP_IF_NUM, (uint8_t*)buffer, batch_size);
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furi_check(osMutexRelease(vcp->usb_mutex) == osOK);
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size -= batch_size;
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buffer += batch_size;
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}
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}
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static void vcp_state_callback(uint8_t state) {
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if (state == 1) {
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osSemaphoreRelease(vcp->rx_sem);
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//osSemaphoreRelease(vcp->tx_sem);
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}
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else if (vcp->connected) {
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vcp->connected = false;
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osSemaphoreRelease(vcp->rx_sem);
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VcpEvent evt = VcpDisconnect;
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osMessageQueuePut(vcp->event_queue, &evt, 0, 0);
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//osSemaphoreRelease(vcp->tx_sem);
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}
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}
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static void 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 & 0b1;
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if (dtr) {
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if (!vcp->connected) {
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vcp->connected = true;
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VcpEvent evt = VcpConnect;
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osMessageQueuePut(vcp->event_queue, &evt, 0, 0);
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}
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} else {
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if (vcp->connected) {
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VcpEvent evt = VcpDisconnect;
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osMessageQueuePut(vcp->event_queue, &evt, 0, 0);
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vcp->connected = false;
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}
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}
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osSemaphoreRelease(vcp->tx_sem);
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osSemaphoreRelease(vcp->rx_sem);
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}
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static void vcp_on_cdc_rx() {
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if (vcp->connected == false)
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return;
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osSemaphoreRelease(vcp->rx_sem);
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}
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static void vcp_on_cdc_tx_complete() {
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osSemaphoreRelease(vcp->tx_sem);
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}
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bool furi_hal_vcp_is_connected(void) {
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return vcp->connected;
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}
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