356 lines
		
	
	
		
			9.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			356 lines
		
	
	
		
			9.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* 
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 * The MIT License (MIT)
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 *
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 * Copyright (c) 2019 Ha Thach (tinyusb.org)
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 *
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
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 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
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 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
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 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
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 *
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 */
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include "FreeRTOS.h"
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#include "task.h"
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#include "timers.h"
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#include "queue.h"
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#include "semphr.h"
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#include "bsp/board.h"
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#include "tusb.h"
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#include "usb_descriptors.h"
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//--------------------------------------------------------------------+
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// MACRO CONSTANT TYPEDEF PROTYPES
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//--------------------------------------------------------------------+
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/* Blink pattern
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 * - 250 ms  : device not mounted
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 * - 1000 ms : device mounted
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 * - 2500 ms : device is suspended
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 */
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enum  {
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  BLINK_NOT_MOUNTED = 250,
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  BLINK_MOUNTED = 1000,
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  BLINK_SUSPENDED = 2500,
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};
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// static timer
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StaticTimer_t blinky_tmdef;
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TimerHandle_t blinky_tm;
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// static task for usbd
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#if CFG_TUSB_DEBUG
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  #define USBD_STACK_SIZE     (3*configMINIMAL_STACK_SIZE)
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#else
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  #define USBD_STACK_SIZE     (3*configMINIMAL_STACK_SIZE/2)
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#endif
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StackType_t  usb_device_stack[USBD_STACK_SIZE];
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StaticTask_t usb_device_taskdef;
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// static task for hid
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#define HID_STACK_SZIE      configMINIMAL_STACK_SIZE
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StackType_t  hid_stack[HID_STACK_SZIE];
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StaticTask_t hid_taskdef;
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void led_blinky_cb(TimerHandle_t xTimer);
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void usb_device_task(void* param);
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void hid_task(void* params);
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//--------------------------------------------------------------------+
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// Main
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//--------------------------------------------------------------------+
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int main(void)
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{
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  board_init();
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  // soft timer for blinky
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  blinky_tm = xTimerCreateStatic(NULL, pdMS_TO_TICKS(BLINK_NOT_MOUNTED), true, NULL, led_blinky_cb, &blinky_tmdef);
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  xTimerStart(blinky_tm, 0);
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  // Create a task for tinyusb device stack
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  (void) xTaskCreateStatic( usb_device_task, "usbd", USBD_STACK_SIZE, NULL, configMAX_PRIORITIES-1, usb_device_stack, &usb_device_taskdef);
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  // Create HID task
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  (void) xTaskCreateStatic( hid_task, "hid", HID_STACK_SZIE, NULL, configMAX_PRIORITIES-2, hid_stack, &hid_taskdef);
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  // skip starting scheduler (and return) for ESP32-S2 or ESP32-S3
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#if CFG_TUSB_MCU != OPT_MCU_ESP32S2 && CFG_TUSB_MCU != OPT_MCU_ESP32S3
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  vTaskStartScheduler();
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#endif
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  return 0;
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}
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#if CFG_TUSB_MCU == OPT_MCU_ESP32S2 || CFG_TUSB_MCU == OPT_MCU_ESP32S3
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void app_main(void)
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{
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  main();
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}
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#endif
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// USB Device Driver task
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// This top level thread process all usb events and invoke callbacks
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void usb_device_task(void* param)
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{
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  (void) param;
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  // This should be called after scheduler/kernel is started.
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  // Otherwise it could cause kernel issue since USB IRQ handler does use RTOS queue API.
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  tusb_init();
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  // RTOS forever loop
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  while (1)
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  {
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    // tinyusb device task
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    tud_task();
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  }
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}
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//--------------------------------------------------------------------+
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// Device callbacks
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//--------------------------------------------------------------------+
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// Invoked when device is mounted
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void tud_mount_cb(void)
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{
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  xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_MOUNTED), 0);
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}
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// Invoked when device is unmounted
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void tud_umount_cb(void)
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{
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  xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_NOT_MOUNTED), 0);
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}
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// Invoked when usb bus is suspended
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// remote_wakeup_en : if host allow us  to perform remote wakeup
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// Within 7ms, device must draw an average of current less than 2.5 mA from bus
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void tud_suspend_cb(bool remote_wakeup_en)
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{
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  (void) remote_wakeup_en;
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  xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_SUSPENDED), 0);
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}
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// Invoked when usb bus is resumed
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void tud_resume_cb(void)
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{
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  xTimerChangePeriod(blinky_tm, pdMS_TO_TICKS(BLINK_MOUNTED), 0);
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}
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//--------------------------------------------------------------------+
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// USB HID
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//--------------------------------------------------------------------+
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static void send_hid_report(uint8_t report_id, uint32_t btn)
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{
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  // skip if hid is not ready yet
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  if ( !tud_hid_ready() ) return;
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  switch(report_id)
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  {
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    case REPORT_ID_KEYBOARD:
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    {
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      // use to avoid send multiple consecutive zero report for keyboard
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      static bool has_keyboard_key = false;
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      if ( btn )
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      {
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        uint8_t keycode[6] = { 0 };
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        keycode[0] = HID_KEY_A;
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        tud_hid_keyboard_report(REPORT_ID_KEYBOARD, 0, keycode);
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        has_keyboard_key = true;
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      }else
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      {
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        // send empty key report if previously has key pressed
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        if (has_keyboard_key) tud_hid_keyboard_report(REPORT_ID_KEYBOARD, 0, NULL);
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        has_keyboard_key = false;
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      }
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    }
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    break;
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    case REPORT_ID_MOUSE:
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    {
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      int8_t const delta = 5;
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      // no button, right + down, no scroll, no pan
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      tud_hid_mouse_report(REPORT_ID_MOUSE, 0x00, delta, delta, 0, 0);
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    }
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    break;
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    case REPORT_ID_CONSUMER_CONTROL:
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    {
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      // use to avoid send multiple consecutive zero report
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      static bool has_consumer_key = false;
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      if ( btn )
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      {
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        // volume down
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        uint16_t volume_down = HID_USAGE_CONSUMER_VOLUME_DECREMENT;
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        tud_hid_report(REPORT_ID_CONSUMER_CONTROL, &volume_down, 2);
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        has_consumer_key = true;
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      }else
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      {
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        // send empty key report (release key) if previously has key pressed
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        uint16_t empty_key = 0;
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        if (has_consumer_key) tud_hid_report(REPORT_ID_CONSUMER_CONTROL, &empty_key, 2);
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        has_consumer_key = false;
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      }
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    }
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    break;
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    case REPORT_ID_GAMEPAD:
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    {
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      // use to avoid send multiple consecutive zero report for keyboard
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      static bool has_gamepad_key = false;
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      hid_gamepad_report_t report =
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      {
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        .x   = 0, .y = 0, .z = 0, .rz = 0, .rx = 0, .ry = 0,
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        .hat = 0, .buttons = 0
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      };
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      if ( btn )
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      {
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        report.hat = GAMEPAD_HAT_UP;
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        report.buttons = GAMEPAD_BUTTON_A;
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        tud_hid_report(REPORT_ID_GAMEPAD, &report, sizeof(report));
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        has_gamepad_key = true;
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      }else
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      {
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        report.hat = GAMEPAD_HAT_CENTERED;
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        report.buttons = 0;
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        if (has_gamepad_key) tud_hid_report(REPORT_ID_GAMEPAD, &report, sizeof(report));
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        has_gamepad_key = false;
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      }
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    }
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    break;
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    default: break;
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  }
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}
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void hid_task(void* param)
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{
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  (void) param;
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  while(1)
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  {
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    // Poll every 10ms
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    vTaskDelay(pdMS_TO_TICKS(10));
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    uint32_t const btn = board_button_read();
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    // Remote wakeup
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    if ( tud_suspended() && btn )
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    {
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      // Wake up host if we are in suspend mode
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      // and REMOTE_WAKEUP feature is enabled by host
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      tud_remote_wakeup();
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    }
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    else
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    {
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      // Send the 1st of report chain, the rest will be sent by tud_hid_report_complete_cb()
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      send_hid_report(REPORT_ID_KEYBOARD, btn);
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    }
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  }
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}
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// Invoked when sent REPORT successfully to host
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// Application can use this to send the next report
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// Note: For composite reports, report[0] is report ID
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void tud_hid_report_complete_cb(uint8_t instance, uint8_t const* report, uint8_t len)
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{
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  (void) instance;
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  (void) len;
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  uint8_t next_report_id = report[0] + 1;
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  if (next_report_id < REPORT_ID_COUNT)
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  {
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    send_hid_report(next_report_id, board_button_read());
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  }
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}
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// Invoked when received GET_REPORT control request
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// Application must fill buffer report's content and return its length.
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// Return zero will cause the stack to STALL request
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uint16_t tud_hid_get_report_cb(uint8_t instance, uint8_t report_id, hid_report_type_t report_type, uint8_t* buffer, uint16_t reqlen)
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{
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  // TODO not Implemented
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  (void) instance;
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  (void) report_id;
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  (void) report_type;
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  (void) buffer;
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  (void) reqlen;
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  return 0;
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}
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// Invoked when received SET_REPORT control request or
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// received data on OUT endpoint ( Report ID = 0, Type = 0 )
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void tud_hid_set_report_cb(uint8_t instance, uint8_t report_id, hid_report_type_t report_type, uint8_t const* buffer, uint16_t bufsize)
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{
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  (void) instance;
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  if (report_type == HID_REPORT_TYPE_OUTPUT)
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  {
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    // Set keyboard LED e.g Capslock, Numlock etc...
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    if (report_id == REPORT_ID_KEYBOARD)
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    {
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      // bufsize should be (at least) 1
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      if ( bufsize < 1 ) return;
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      uint8_t const kbd_leds = buffer[0];
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      if (kbd_leds & KEYBOARD_LED_CAPSLOCK)
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      {
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        // Capslock On: disable blink, turn led on
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        xTimerStop(blinky_tm, portMAX_DELAY);
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        board_led_write(true);
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      }else
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      {
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        // Caplocks Off: back to normal blink
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        board_led_write(false);
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        xTimerStart(blinky_tm, portMAX_DELAY);
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      }
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    }
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  }
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}
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//--------------------------------------------------------------------+
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// BLINKING TASK
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//--------------------------------------------------------------------+
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void led_blinky_cb(TimerHandle_t xTimer)
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{
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  (void) xTimer;
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  static bool led_state = false;
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  board_led_write(led_state);
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  led_state = 1 - led_state; // toggle
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}
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