423 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			423 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/* 
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 * The MIT License (MIT)
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 *
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 * Copyright (c) 2020 Reinhard Panhuber
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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 "bsp/board.h"
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#include "tusb.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 uint32_t blink_interval_ms = BLINK_NOT_MOUNTED;
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// Audio controls
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// Current states
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bool mute[CFG_TUD_AUDIO_N_CHANNELS_TX + 1]; 						// +1 for master channel 0
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uint16_t volume[CFG_TUD_AUDIO_N_CHANNELS_TX + 1]; 					// +1 for master channel 0
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uint32_t sampFreq;
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uint8_t clkValid;
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// Range states
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audio_control_range_2_n_t(1) volumeRng[CFG_TUD_AUDIO_N_CHANNELS_TX+1]; 			// Volume range state
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audio_control_range_4_n_t(1) sampleFreqRng; 						// Sample frequency range state
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// Audio test data
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uint16_t test_buffer_audio[CFG_TUD_AUDIO_TX_FIFO_SIZE/2];
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uint16_t startVal = 0;
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void led_blinking_task(void);
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void audio_task(void);
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/*------------- MAIN -------------*/
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int main(void)
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{
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  board_init();
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  tusb_init();
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  // Init values
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  sampFreq = 44100;
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  clkValid = 1;
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  sampleFreqRng.wNumSubRanges = 1;
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  sampleFreqRng.subrange[0].bMin = 44100;
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  sampleFreqRng.subrange[0].bMax = 44100;
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  sampleFreqRng.subrange[0].bRes = 0;
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  while (1)
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  {
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    tud_task(); // tinyusb device task
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    led_blinking_task();
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    audio_task();
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  }
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  return 0;
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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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  blink_interval_ms = BLINK_MOUNTED;
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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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  blink_interval_ms = BLINK_NOT_MOUNTED;
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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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  blink_interval_ms = BLINK_SUSPENDED;
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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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  blink_interval_ms = BLINK_MOUNTED;
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}
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//--------------------------------------------------------------------+
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// AUDIO Task
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//--------------------------------------------------------------------+
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void audio_task(void)
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{
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  // Yet to be filled - e.g. put meas data into TX FIFOs etc.
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  asm("nop");
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}
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//--------------------------------------------------------------------+
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// Application Callback API Implementations
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//--------------------------------------------------------------------+
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// Invoked when audio class specific set request received for an EP
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bool tud_audio_set_req_ep_cb(uint8_t rhport, tusb_control_request_t const * p_request, uint8_t *pBuff)
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{
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  (void) rhport;
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  (void) pBuff;
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  // We do not support any set range requests here, only current value requests
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  TU_VERIFY(p_request->bRequest == AUDIO_CS_REQ_CUR);
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  // Page 91 in UAC2 specification
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  uint8_t channelNum = TU_U16_LOW(p_request->wValue);
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  uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
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  uint8_t ep = TU_U16_LOW(p_request->wIndex);
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  (void) channelNum; (void) ctrlSel; (void) ep;
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  return false; 	// Yet not implemented
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}
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// Invoked when audio class specific set request received for an interface
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bool tud_audio_set_req_itf_cb(uint8_t rhport, tusb_control_request_t const * p_request, uint8_t *pBuff)
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{
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  (void) rhport;
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  (void) pBuff;
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  // We do not support any set range requests here, only current value requests
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  TU_VERIFY(p_request->bRequest == AUDIO_CS_REQ_CUR);
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  // Page 91 in UAC2 specification
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  uint8_t channelNum = TU_U16_LOW(p_request->wValue);
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  uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
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  uint8_t itf = TU_U16_LOW(p_request->wIndex);
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  (void) channelNum; (void) ctrlSel; (void) itf;
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  return false; 	// Yet not implemented
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}
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// Invoked when audio class specific set request received for an entity
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bool tud_audio_set_req_entity_cb(uint8_t rhport, tusb_control_request_t const * p_request, uint8_t *pBuff)
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{
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  (void) rhport;
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  // Page 91 in UAC2 specification
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  uint8_t channelNum = TU_U16_LOW(p_request->wValue);
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  uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
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  uint8_t itf = TU_U16_LOW(p_request->wIndex);
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  uint8_t entityID = TU_U16_HIGH(p_request->wIndex);
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  (void) itf;
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  // We do not support any set range requests here, only current value requests
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  TU_VERIFY(p_request->bRequest == AUDIO_CS_REQ_CUR);
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  // If request is for our feature unit
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  if ( entityID == 2 )
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  {
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    switch ( ctrlSel )
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    {
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      case AUDIO_FU_CTRL_MUTE:
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        // Request uses format layout 1
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        TU_VERIFY(p_request->wLength == sizeof(audio_control_cur_1_t));
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        mute[channelNum] = ((audio_control_cur_1_t*) pBuff)->bCur;
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        TU_LOG2("    Set Mute: %d of channel: %u\r\n", mute[channelNum], channelNum);
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      return true;
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      case AUDIO_FU_CTRL_VOLUME:
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        // Request uses format layout 2
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        TU_VERIFY(p_request->wLength == sizeof(audio_control_cur_2_t));
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        volume[channelNum] = ((audio_control_cur_2_t*) pBuff)->bCur;
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        TU_LOG2("    Set Volume: %d dB of channel: %u\r\n", volume[channelNum], channelNum);
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     return true;
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        // Unknown/Unsupported control
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      default:
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        TU_BREAKPOINT();
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      return false;
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    }
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  }
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  return false;    // Yet not implemented
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}
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// Invoked when audio class specific get request received for an EP
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bool tud_audio_get_req_ep_cb(uint8_t rhport, tusb_control_request_t const * p_request)
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{
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  (void) rhport;
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  // Page 91 in UAC2 specification
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  uint8_t channelNum = TU_U16_LOW(p_request->wValue);
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  uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
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  uint8_t ep = TU_U16_LOW(p_request->wIndex);
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  (void) channelNum; (void) ctrlSel; (void) ep;
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  //	return tud_control_xfer(rhport, p_request, &tmp, 1);
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  return false; 	// Yet not implemented
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}
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// Invoked when audio class specific get request received for an interface
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bool tud_audio_get_req_itf_cb(uint8_t rhport, tusb_control_request_t const * p_request)
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{
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  (void) rhport;
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  // Page 91 in UAC2 specification
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  uint8_t channelNum = TU_U16_LOW(p_request->wValue);
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  uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
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  uint8_t itf = TU_U16_LOW(p_request->wIndex);
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  (void) channelNum; (void) ctrlSel; (void) itf;
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  return false; 	// Yet not implemented
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}
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// Invoked when audio class specific get request received for an entity
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bool tud_audio_get_req_entity_cb(uint8_t rhport, tusb_control_request_t const * p_request)
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{
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  (void) rhport;
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  // Page 91 in UAC2 specification
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  uint8_t channelNum = TU_U16_LOW(p_request->wValue);
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  uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
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  // uint8_t itf = TU_U16_LOW(p_request->wIndex); 			// Since we have only one audio function implemented, we do not need the itf value
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  uint8_t entityID = TU_U16_HIGH(p_request->wIndex);
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  // Input terminal (Microphone input)
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  if (entityID == 1)
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  {
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    switch (ctrlSel)
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    {
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      case AUDIO_TE_CTRL_CONNECTOR:;
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      // The terminal connector control only has a get request with only the CUR attribute.
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      audio_desc_channel_cluster_t ret;
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      // Those are dummy values for now
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      ret.bNrChannels = 1;
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      ret.bmChannelConfig = 0;
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      ret.iChannelNames = 0;
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      TU_LOG2("    Get terminal connector\r\n");
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      return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, (void*)&ret, sizeof(ret));
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      // Unknown/Unsupported control selector
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      default: TU_BREAKPOINT(); return false;
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    }
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  }
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  // Feature unit
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  if (entityID == 2)
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  {
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    switch (ctrlSel)
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    {
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      case AUDIO_FU_CTRL_MUTE:
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	// Audio control mute cur parameter block consists of only one byte - we thus can send it right away
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	// There does not exist a range parameter block for mute
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	TU_LOG2("    Get Mute of channel: %u\r\n", channelNum);
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	return tud_control_xfer(rhport, p_request, &mute[channelNum], 1);
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      case AUDIO_FU_CTRL_VOLUME:
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	switch (p_request->bRequest)
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	{
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	  case AUDIO_CS_REQ_CUR:
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	    TU_LOG2("    Get Volume of channel: %u\r\n", channelNum);
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	    return tud_control_xfer(rhport, p_request, &volume[channelNum], sizeof(volume[channelNum]));
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	  case AUDIO_CS_REQ_RANGE:
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	    TU_LOG2("    Get Volume range of channel: %u\r\n", channelNum);
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	    // Copy values - only for testing - better is version below
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	    audio_control_range_2_n_t(1) ret;
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	    ret.wNumSubRanges = 1;
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	    ret.subrange[0].bMin = -90; 	// -90 dB
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	    ret.subrange[0].bMax = 90;		// +90 dB
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	    ret.subrange[0].bRes = 1; 		// 1 dB steps
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	    return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, (void*)&ret, sizeof(ret));
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	    // Unknown/Unsupported control
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	  default: TU_BREAKPOINT(); return false;
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	}
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	// Unknown/Unsupported control
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	  default: TU_BREAKPOINT(); return false;
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    }
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  }
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  // Clock Source unit
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  if (entityID == 4)
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  {
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    switch (ctrlSel)
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    {
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      case AUDIO_CS_CTRL_SAM_FREQ:
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	// channelNum is always zero in this case
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	switch (p_request->bRequest)
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	{
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	  case AUDIO_CS_REQ_CUR:
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	    TU_LOG2("    Get Sample Freq.\r\n");
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	    return tud_control_xfer(rhport, p_request, &sampFreq, sizeof(sampFreq));
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	  case AUDIO_CS_REQ_RANGE:
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	    TU_LOG2("    Get Sample Freq. range\r\n");
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	    return tud_control_xfer(rhport, p_request, &sampleFreqRng, sizeof(sampleFreqRng));
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	    // Unknown/Unsupported control
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	  default: TU_BREAKPOINT(); return false;
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	}
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	  case AUDIO_CS_CTRL_CLK_VALID:
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	    // Only cur attribute exists for this request
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	    TU_LOG2("    Get Sample Freq. valid\r\n");
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	    return tud_control_xfer(rhport, p_request, &clkValid, sizeof(clkValid));
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	    // Unknown/Unsupported control
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	  default: TU_BREAKPOINT(); return false;
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    }
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  }
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  TU_LOG2("  Unsupported entity: %d\r\n", entityID);
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  return false; 	// Yet not implemented
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}
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bool tud_audio_tx_done_pre_load_cb(uint8_t rhport, uint8_t itf, uint8_t ep_in, uint8_t cur_alt_setting)
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{
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  (void) rhport;
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  (void) itf;
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  (void) ep_in;
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  (void) cur_alt_setting;
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  tud_audio_write ((uint8_t *)test_buffer_audio, CFG_TUD_AUDIO_TX_FIFO_SIZE);
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  return true;
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}
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bool tud_audio_tx_done_post_load_cb(uint8_t rhport, uint16_t n_bytes_copied, uint8_t itf, uint8_t ep_in, uint8_t cur_alt_setting)
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{
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  (void) rhport;
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  (void) n_bytes_copied;
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  (void) itf;
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  (void) ep_in;
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  (void) cur_alt_setting;
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  for (size_t cnt = 0; cnt < CFG_TUD_AUDIO_TX_FIFO_SIZE/2; cnt++)
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  {
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    test_buffer_audio[cnt] = startVal++;
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  }
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  return true;
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}
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bool tud_audio_set_itf_close_EP_cb(uint8_t rhport, tusb_control_request_t const * p_request)
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{
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  (void) rhport;
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  (void) p_request;
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  startVal = 0;
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  return true;
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}
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//--------------------------------------------------------------------+
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// BLINKING TASK
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//--------------------------------------------------------------------+
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void led_blinking_task(void)
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{
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  static uint32_t start_ms = 0;
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  static bool led_state = false;
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  // Blink every interval ms
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  if ( board_millis() - start_ms < blink_interval_ms) return; // not enough time
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  start_ms += blink_interval_ms;
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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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