433 lines
11 KiB
C
433 lines
11 KiB
C
#include <stdint.h>
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#include <stdlib.h>
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#include <chopstx.h>
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#include "usb_lld.h"
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extern chopstx_mutex_t usb_mtx;
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extern chopstx_cond_t cnd_usb_connection;
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extern chopstx_cond_t cnd_usb_buffer_ready;
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#define ENDP0_RXADDR (0x40)
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#define ENDP0_TXADDR (0x80)
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#define ENDP1_TXADDR (0xc0)
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#define ENDP2_TXADDR (0x100)
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#define ENDP3_RXADDR (0x140)
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#define USB_CDC_REQ_SET_LINE_CODING 0x20
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#define USB_CDC_REQ_GET_LINE_CODING 0x21
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#define USB_CDC_REQ_SET_CONTROL_LINE_STATE 0x22
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#define USB_CDC_REQ_SEND_BREAK 0x23
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/* USB Device Descriptor */
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static const uint8_t vcom_device_desc[18] = {
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18, /* bLength */
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USB_DEVICE_DESCRIPTOR_TYPE, /* bDescriptorType */
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0x10, 0x01, /* bcdUSB = 1.1 */
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0x02, /* bDeviceClass (CDC). */
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0x00, /* bDeviceSubClass. */
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0x00, /* bDeviceProtocol. */
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0x40, /* bMaxPacketSize. */
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0xFF, 0xFF, /* idVendor */
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0x01, 0x00, /* idProduct */
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0x00, 0x01, /* bcdDevice */
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1, /* iManufacturer. */
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2, /* iProduct. */
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3, /* iSerialNumber. */
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1 /* bNumConfigurations. */
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};
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/* Configuration Descriptor tree for a CDC.*/
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static const uint8_t vcom_configuration_desc[67] = {
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9,
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USB_CONFIGURATION_DESCRIPTOR_TYPE, /* bDescriptorType: Configuration */
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/* Configuration Descriptor.*/
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67, 0x00, /* wTotalLength. */
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0x02, /* bNumInterfaces. */
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0x01, /* bConfigurationValue. */
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0, /* iConfiguration. */
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0x80, /* bmAttributes (bus powered). */
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50, /* bMaxPower (100mA). */
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/* Interface Descriptor.*/
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9,
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USB_INTERFACE_DESCRIPTOR_TYPE,
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0x00, /* bInterfaceNumber. */
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0x00, /* bAlternateSetting. */
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0x01, /* bNumEndpoints. */
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0x02, /* bInterfaceClass (Communications Interface Class,
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CDC section 4.2). */
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0x02, /* bInterfaceSubClass (Abstract Control Model, CDC
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section 4.3). */
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0x01, /* bInterfaceProtocol (AT commands, CDC section
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4.4). */
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0, /* iInterface. */
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/* Header Functional Descriptor (CDC section 5.2.3).*/
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5, /* bLength. */
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0x24, /* bDescriptorType (CS_INTERFACE). */
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0x00, /* bDescriptorSubtype (Header Functional Descriptor). */
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0x10, 0x01, /* bcdCDC. */
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/* Call Management Functional Descriptor. */
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5, /* bFunctionLength. */
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0x24, /* bDescriptorType (CS_INTERFACE). */
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0x01, /* bDescriptorSubtype (Call Management Functional
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Descriptor). */
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0x03, /* bmCapabilities (D0+D1). */
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0x01, /* bDataInterface. */
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/* ACM Functional Descriptor.*/
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4, /* bFunctionLength. */
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0x24, /* bDescriptorType (CS_INTERFACE). */
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0x02, /* bDescriptorSubtype (Abstract Control Management
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Descriptor). */
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0x02, /* bmCapabilities. */
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/* Union Functional Descriptor.*/
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5, /* bFunctionLength. */
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0x24, /* bDescriptorType (CS_INTERFACE). */
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0x06, /* bDescriptorSubtype (Union Functional
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Descriptor). */
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0x00, /* bMasterInterface (Communication Class
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Interface). */
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0x01, /* bSlaveInterface0 (Data Class Interface). */
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/* Endpoint 2 Descriptor.*/
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7,
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USB_ENDPOINT_DESCRIPTOR_TYPE,
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ENDP2|0x80, /* bEndpointAddress. */
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0x03, /* bmAttributes (Interrupt). */
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0x08, 0x00, /* wMaxPacketSize. */
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0xFF, /* bInterval. */
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/* Interface Descriptor.*/
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9,
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USB_INTERFACE_DESCRIPTOR_TYPE, /* bDescriptorType: */
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0x01, /* bInterfaceNumber. */
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0x00, /* bAlternateSetting. */
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0x02, /* bNumEndpoints. */
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0x0A, /* bInterfaceClass (Data Class Interface, CDC section 4.5). */
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0x00, /* bInterfaceSubClass (CDC section 4.6). */
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0x00, /* bInterfaceProtocol (CDC section 4.7). */
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0x00, /* iInterface. */
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/* Endpoint 3 Descriptor.*/
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7,
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USB_ENDPOINT_DESCRIPTOR_TYPE, /* bDescriptorType: Endpoint */
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ENDP3, /* bEndpointAddress. */
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0x02, /* bmAttributes (Bulk). */
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0x40, 0x00, /* wMaxPacketSize. */
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0x00, /* bInterval. */
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/* Endpoint 1 Descriptor.*/
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7,
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USB_ENDPOINT_DESCRIPTOR_TYPE, /* bDescriptorType: Endpoint */
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ENDP1|0x80, /* bEndpointAddress. */
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0x02, /* bmAttributes (Bulk). */
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0x40, 0x00, /* wMaxPacketSize. */
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0x00 /* bInterval. */
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};
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/*
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* U.S. English language identifier.
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*/
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static const uint8_t vcom_string0[4] = {
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4, /* bLength */
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USB_STRING_DESCRIPTOR_TYPE,
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0x09, 0x04 /* LangID = 0x0409: US-English */
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};
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static const uint8_t vcom_string1[] = {
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23*2+2, /* bLength */
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USB_STRING_DESCRIPTOR_TYPE, /* bDescriptorType */
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/* Manufacturer: "Flying Stone Technology" */
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'F', 0, 'l', 0, 'y', 0, 'i', 0, 'n', 0, 'g', 0, ' ', 0, 'S', 0,
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't', 0, 'o', 0, 'n', 0, 'e', 0, ' ', 0, 'T', 0, 'e', 0, 'c', 0,
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'h', 0, 'n', 0, 'o', 0, 'l', 0, 'o', 0, 'g', 0, 'y', 0,
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};
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static const uint8_t vcom_string2[] = {
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14*2+2, /* bLength */
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USB_STRING_DESCRIPTOR_TYPE, /* bDescriptorType */
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/* Product name: "Chopstx Sample" */
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'C', 0, 'h', 0, 'o', 0, 'p', 0, 's', 0, 't', 0, 'x', 0, ' ', 0,
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'S', 0, 'a', 0, 'm', 0, 'p', 0, 'l', 0, 'e', 0,
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};
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/*
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* Serial Number string.
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*/
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static const uint8_t vcom_string3[28] = {
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28, /* bLength */
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USB_STRING_DESCRIPTOR_TYPE, /* bDescriptorType */
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'0', 0, '.', 0, '0', 0, '0', 0, /* Version number */
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};
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#define NUM_INTERFACES 2
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uint32_t bDeviceState = UNCONNECTED; /* USB device status */
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void
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usb_cb_device_reset (void)
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{
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/* Set DEVICE as not configured */
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usb_lld_set_configuration (0);
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/* Current Feature initialization */
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usb_lld_set_feature (vcom_configuration_desc[7]);
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usb_lld_reset ();
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/* Initialize Endpoint 0 */
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usb_lld_setup_endpoint (ENDP0, EP_CONTROL, 0, ENDP0_RXADDR, ENDP0_TXADDR, 64);
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}
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void
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usb_cb_ctrl_write_finish (uint8_t req, uint8_t req_no, uint16_t value,
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uint16_t index, uint16_t len)
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{
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(void)req;
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(void)req_no;
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(void)value;
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(void)index;
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(void)len;
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}
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struct line_coding
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{
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uint32_t bitrate;
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uint8_t format;
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uint8_t paritytype;
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uint8_t datatype;
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};
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static struct line_coding line_coding = {
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115200, /* baud rate: 115200 */
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0x00, /* stop bits: 1 */
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0x00, /* parity: none */
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0x08 /* bits: 8 */
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};
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uint8_t connected;
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static int
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vcom_port_data_setup (uint8_t req, uint8_t req_no, uint16_t value)
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{
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if (USB_SETUP_GET (req))
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{
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if (req_no == USB_CDC_REQ_GET_LINE_CODING)
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{
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usb_lld_set_data_to_send (&line_coding, sizeof(line_coding));
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return USB_SUCCESS;
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}
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}
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else /* USB_SETUP_SET (req) */
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{
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if (req_no == USB_CDC_REQ_SET_LINE_CODING)
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{
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usb_lld_set_data_to_recv (&line_coding, sizeof(line_coding));
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return USB_SUCCESS;
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}
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else if (req_no == USB_CDC_REQ_SET_CONTROL_LINE_STATE)
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{
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uint8_t connected_saved = connected;
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if (value != 0)
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{
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if (connected == 0)
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/* It's Open call */
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connected++;
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}
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else
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{
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if (connected)
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/* Close call */
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connected = 0;
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}
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chopstx_mutex_lock (&usb_mtx);
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if (connected != connected_saved)
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chopstx_cond_signal (&cnd_usb_connection);
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chopstx_mutex_unlock (&usb_mtx);
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return USB_SUCCESS;
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}
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}
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return USB_UNSUPPORT;
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}
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int
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usb_cb_setup (uint8_t req, uint8_t req_no,
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uint16_t value, uint16_t index, uint16_t len)
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{
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uint8_t type_rcp = req & (REQUEST_TYPE|RECIPIENT);
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(void)len;
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if (type_rcp == (CLASS_REQUEST | INTERFACE_RECIPIENT))
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if (index == 0)
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return vcom_port_data_setup (req, req_no, value);
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return USB_UNSUPPORT;
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}
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int
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usb_cb_get_descriptor (uint8_t desc_type, uint16_t index, uint16_t value)
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{
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(void)index;
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if (desc_type == DEVICE_DESCRIPTOR)
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{
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usb_lld_set_data_to_send (vcom_device_desc, sizeof (vcom_device_desc));
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return USB_SUCCESS;
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}
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else if (desc_type == CONFIG_DESCRIPTOR)
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{
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usb_lld_set_data_to_send (vcom_configuration_desc,
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sizeof (vcom_configuration_desc));
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return USB_SUCCESS;
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}
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else if (desc_type == STRING_DESCRIPTOR)
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{
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uint8_t desc_index = value & 0xff;
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const uint8_t *str;
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int size;
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switch (desc_index)
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{
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case 0:
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str = vcom_string0;
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size = sizeof (vcom_string0);
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break;
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case 1:
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str = vcom_string1;
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size = sizeof (vcom_string1);
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break;
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case 2:
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str = vcom_string2;
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size = sizeof (vcom_string2);
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break;
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case 3:
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str = vcom_string3;
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size = sizeof (vcom_string3);
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break;
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default:
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return USB_UNSUPPORT;
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}
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usb_lld_set_data_to_send (str, size);
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return USB_SUCCESS;
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}
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return USB_UNSUPPORT;
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}
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static void
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vcom_setup_endpoints_for_interface (uint16_t interface, int stop)
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{
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if (interface == 0)
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{
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if (!stop)
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usb_lld_setup_endpoint (ENDP2, EP_INTERRUPT, 0, 0, ENDP2_TXADDR, 0);
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else
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usb_lld_stall_tx (ENDP2);
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}
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else if (interface == 1)
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{
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if (!stop)
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{
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usb_lld_setup_endpoint (ENDP1, EP_BULK, 0, 0, ENDP1_TXADDR, 0);
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usb_lld_setup_endpoint (ENDP3, EP_BULK, 0, ENDP3_RXADDR, 0, 64);
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}
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else
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{
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usb_lld_stall_tx (ENDP1);
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usb_lld_stall_rx (ENDP3);
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}
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}
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}
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int usb_cb_handle_event (uint8_t event_type, uint16_t value)
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{
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int i;
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uint8_t current_conf;
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switch (event_type)
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{
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case USB_EVENT_ADDRESS:
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bDeviceState = ADDRESSED;
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return USB_SUCCESS;
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case USB_EVENT_CONFIG:
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current_conf = usb_lld_current_configuration ();
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if (current_conf == 0)
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{
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if (value != 1)
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return USB_UNSUPPORT;
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usb_lld_set_configuration (1);
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for (i = 0; i < NUM_INTERFACES; i++)
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vcom_setup_endpoints_for_interface (i, 0);
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bDeviceState = CONFIGURED;
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}
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else if (current_conf != value)
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{
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if (value != 0)
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return USB_UNSUPPORT;
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usb_lld_set_configuration (0);
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for (i = 0; i < NUM_INTERFACES; i++)
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vcom_setup_endpoints_for_interface (i, 1);
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bDeviceState = ADDRESSED;
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}
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/* Do nothing when current_conf == value */
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return USB_SUCCESS;
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return USB_SUCCESS;
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default:
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break;
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}
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return USB_UNSUPPORT;
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}
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int usb_cb_interface (uint8_t cmd, uint16_t interface, uint16_t alt)
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{
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static uint8_t zero = 0;
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if (interface >= NUM_INTERFACES)
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return USB_UNSUPPORT;
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switch (cmd)
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{
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case USB_SET_INTERFACE:
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if (alt != 0)
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return USB_UNSUPPORT;
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else
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{
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vcom_setup_endpoints_for_interface (interface, 0);
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return USB_SUCCESS;
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}
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case USB_GET_INTERFACE:
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usb_lld_set_data_to_send (&zero, 1);
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return USB_SUCCESS;
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default:
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case USB_QUERY_INTERFACE:
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return USB_SUCCESS;
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}
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}
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void
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EP1_IN_Callback (void)
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{
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chopstx_mutex_lock (&usb_mtx);
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chopstx_cond_signal (&cnd_usb_buffer_ready);
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chopstx_mutex_unlock (&usb_mtx);
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}
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void
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EP2_IN_Callback (void)
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{
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}
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void
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EP3_OUT_Callback (void)
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{
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usb_lld_rx_enable (ENDP3);
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}
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