Files
uv-k1-k5v3-firmware-custom/App/usb/usbd_cdc_if.c
T
2025-11-10 05:23:05 +08:00

205 lines
5.9 KiB
C

#include "usbd_core.h"
#include "usbd_cdc.h"
/*!< endpoint address */
#define CDC_IN_EP 0x81
#define CDC_OUT_EP 0x02
#define CDC_INT_EP 0x83
#define USBD_VID 0x36b7
#define USBD_PID 0xFFFF
#define USBD_MAX_POWER 100
#define USBD_LANGID_STRING 1033
/*!< config descriptor size */
#define USB_CONFIG_SIZE (9 + CDC_ACM_DESCRIPTOR_LEN)
uint8_t dma_in_ep_idx = (CDC_IN_EP & 0x7f);
uint8_t dma_out_ep_idx = CDC_OUT_EP;
/*!< global descriptor */
static const uint8_t cdc_descriptor[] = {
USB_DEVICE_DESCRIPTOR_INIT(USB_2_0, 0xEF, 0x02, 0x01, USBD_VID, USBD_PID, 0x0100, 0x01),
USB_CONFIG_DESCRIPTOR_INIT(USB_CONFIG_SIZE, 0x02, 0x01, USB_CONFIG_BUS_POWERED, USBD_MAX_POWER),
CDC_ACM_DESCRIPTOR_INIT(0x00, CDC_INT_EP, CDC_OUT_EP, CDC_IN_EP, 0x02),
///////////////////////////////////////
/// string0 descriptor
///////////////////////////////////////
USB_LANGID_INIT(USBD_LANGID_STRING),
///////////////////////////////////////
/// string1 descriptor
///////////////////////////////////////
0x0A, /* bLength */
USB_DESCRIPTOR_TYPE_STRING, /* bDescriptorType */
'P', 0x00, /* wcChar0 */
'U', 0x00, /* wcChar1 */
'Y', 0x00, /* wcChar2 */
'A', 0x00, /* wcChar3 */
///////////////////////////////////////
/// string2 descriptor
///////////////////////////////////////
0x1C, /* bLength */
USB_DESCRIPTOR_TYPE_STRING, /* bDescriptorType */
'P', 0x00, /* wcChar0 */
'U', 0x00, /* wcChar1 */
'Y', 0x00, /* wcChar2 */
'A', 0x00, /* wcChar3 */
' ', 0x00, /* wcChar4 */
'C', 0x00, /* wcChar5 */
'D', 0x00, /* wcChar6 */
'C', 0x00, /* wcChar7 */
' ', 0x00, /* wcChar8 */
'D', 0x00, /* wcChar9 */
'E', 0x00, /* wcChar10 */
'M', 0x00, /* wcChar11 */
'O', 0x00, /* wcChar12 */
///////////////////////////////////////
/// string3 descriptor
///////////////////////////////////////
0x16, /* bLength */
USB_DESCRIPTOR_TYPE_STRING, /* bDescriptorType */
'2', 0x00, /* wcChar0 */
'0', 0x00, /* wcChar1 */
'2', 0x00, /* wcChar2 */
'2', 0x00, /* wcChar3 */
'1', 0x00, /* wcChar4 */
'2', 0x00, /* wcChar5 */
'3', 0x00, /* wcChar6 */
'4', 0x00, /* wcChar7 */
'5', 0x00, /* wcChar8 */
'6', 0x00, /* wcChar9 */
#ifdef CONFIG_USB_HS
///////////////////////////////////////
/// device qualifier descriptor
///////////////////////////////////////
0x0a,
USB_DESCRIPTOR_TYPE_DEVICE_QUALIFIER,
0x00,
0x02,
0x00,
0x00,
0x00,
0x40,
0x01,
0x00,
#endif
0x00
};
USB_MEM_ALIGNX uint8_t read_buffer[128];
// USB_MEM_ALIGNX uint8_t write_buffer[4];
static cdc_acm_rx_buf_t client_rx_buf = {0};
volatile bool ep_tx_busy_flag = false;
#ifdef CONFIG_USB_HS
#define CDC_MAX_MPS 512
#else
#define CDC_MAX_MPS 64
#endif
void usbd_configure_done_callback(void)
{
/* setup first out ep read transfer */
usbd_ep_start_read(CDC_OUT_EP, read_buffer, sizeof(read_buffer));
}
void usbd_cdc_acm_bulk_out(uint8_t ep, uint32_t nbytes)
{
cdc_acm_rx_buf_t *rx_buf = &client_rx_buf;
if (nbytes && rx_buf->buf)
{
const uint8_t *buf = read_buffer;
uint32_t pointer = *rx_buf->write_pointer;
while (nbytes)
{
const uint32_t rem = rx_buf->size - pointer;
if (0 == rem)
{
pointer = 0;
continue;
}
uint32_t size = rem < nbytes ? rem : nbytes;
memcpy(rx_buf->buf + pointer, buf, size);
buf += size;
nbytes -= size;
pointer += size;
}
*rx_buf->write_pointer = pointer;
}
/* setup next out ep read transfer */
usbd_ep_start_read(CDC_OUT_EP, read_buffer, sizeof(read_buffer));
}
void usbd_cdc_acm_bulk_in(uint8_t ep, uint32_t nbytes)
{
if ((nbytes % CDC_MAX_MPS) == 0 && nbytes) {
/* send zlp */
usbd_ep_start_write(CDC_IN_EP, NULL, 0);
} else {
ep_tx_busy_flag = false;
}
}
/*!< endpoint call back */
struct usbd_endpoint cdc_out_ep = {
.ep_addr = CDC_OUT_EP,
.ep_cb = usbd_cdc_acm_bulk_out
};
struct usbd_endpoint cdc_in_ep = {
.ep_addr = CDC_IN_EP,
.ep_cb = usbd_cdc_acm_bulk_in
};
struct usbd_interface intf0;
struct usbd_interface intf1;
void cdc_acm_init(cdc_acm_rx_buf_t rx_buf)
{
// client_rx_buf = rx_buf;
memcpy(&client_rx_buf, &rx_buf, sizeof(cdc_acm_rx_buf_t));
*client_rx_buf.write_pointer = 0;
usbd_desc_register(cdc_descriptor);
usbd_add_interface(usbd_cdc_acm_init_intf(&intf0));
usbd_add_interface(usbd_cdc_acm_init_intf(&intf1));
usbd_add_endpoint(&cdc_out_ep);
usbd_add_endpoint(&cdc_in_ep);
usbd_initialize();
}
volatile uint8_t dtr_enable = 0;
void usbd_cdc_acm_set_dtr(uint8_t intf, bool dtr)
{
if (dtr) {
dtr_enable = 1;
} else {
dtr_enable = 0;
}
}
void cdc_acm_data_send_with_dtr(const uint8_t *buf, uint32_t size)
{
if (dtr_enable && 0 != size)
{
ep_tx_busy_flag = true;
usbd_ep_start_write(CDC_IN_EP, buf, size);
while (ep_tx_busy_flag)
;
}
}
void cdc_acm_data_send_with_dtr_async(const uint8_t *buf, uint32_t size)
{
if (0 != size)
{
usbd_ep_start_write(CDC_IN_EP, buf, size);
}
}