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			312 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			312 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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             LUFA Library
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     Copyright (C) Dean Camera, 2017.
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  dean [at] fourwalledcubicle [dot] com
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           www.lufa-lib.org
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*/
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/*
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  Copyright 2017  Dean Camera (dean [at] fourwalledcubicle [dot] com)
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  Permission to use, copy, modify, distribute, and sell this
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  software and its documentation for any purpose is hereby granted
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  without fee, provided that the above copyright notice appear in
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  all copies and that both that the copyright notice and this
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  permission notice and warranty disclaimer appear in supporting
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  documentation, and that the name of the author not be used in
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  advertising or publicity pertaining to distribution of the
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  software without specific, written prior permission.
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  The author disclaims all warranties with regard to this
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  software, including all implied warranties of merchantability
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  and fitness.  In no event shall the author be liable for any
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  special, indirect or consequential damages or any damages
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  whatsoever resulting from loss of use, data or profits, whether
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  in an action of contract, negligence or other tortious action,
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  arising out of or in connection with the use or performance of
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  this software.
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*/
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/** \file
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 *
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 *  Main source file for the AudioOutput demo. This file contains the main tasks of
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 *  the demo and is responsible for the initial application hardware configuration.
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 */
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#include "AudioOutput.h"
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/** LUFA Audio Class driver interface configuration and state information. This structure is
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 *  passed to all Audio Class driver functions, so that multiple instances of the same class
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 *  within a device can be differentiated from one another.
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 */
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USB_ClassInfo_Audio_Device_t Speaker_Audio_Interface =
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	{
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		.Config =
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			{
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				.ControlInterfaceNumber   = INTERFACE_ID_AudioControl,
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				.StreamingInterfaceNumber = INTERFACE_ID_AudioStream,
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				.DataOUTEndpoint          =
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					{
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						.Address          = AUDIO_STREAM_EPADDR,
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						.Size             = AUDIO_STREAM_EPSIZE,
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						.Banks            = 2,
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					},
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			},
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	};
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/** Current audio sampling frequency of the streaming audio endpoint. */
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static uint32_t CurrentAudioSampleFrequency = 48000;
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/** Main program entry point. This routine contains the overall program flow, including initial
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 *  setup of all components and the main program loop.
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 */
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int main(void)
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{
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	SetupHardware();
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	LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);
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	GlobalInterruptEnable();
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	for (;;)
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	{
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		Audio_Device_USBTask(&Speaker_Audio_Interface);
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		USB_USBTask();
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	}
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}
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/** Configures the board hardware and chip peripherals for the demo's functionality. */
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void SetupHardware(void)
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{
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#if (ARCH == ARCH_AVR8)
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	/* Disable watchdog if enabled by bootloader/fuses */
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	MCUSR &= ~(1 << WDRF);
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	wdt_disable();
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	/* Disable clock division */
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	clock_prescale_set(clock_div_1);
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#endif
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	/* Hardware Initialization */
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	LEDs_Init();
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	USB_Init();
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}
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/** ISR to handle the reloading of the PWM timer with the next sample. */
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ISR(TIMER0_COMPA_vect, ISR_BLOCK)
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{
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	uint8_t PrevEndpoint = Endpoint_GetCurrentEndpoint();
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	/* Check that the USB bus is ready for the next sample to read */
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	if (Audio_Device_IsSampleReceived(&Speaker_Audio_Interface))
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	{
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		/* Retrieve the signed 16-bit left and right audio samples, convert to 8-bit */
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		int8_t LeftSample_8Bit  = (Audio_Device_ReadSample16(&Speaker_Audio_Interface) >> 8);
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		int8_t RightSample_8Bit = (Audio_Device_ReadSample16(&Speaker_Audio_Interface) >> 8);
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		/* Mix the two channels together to produce a mono, 8-bit sample */
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		int8_t MixedSample_8Bit = (((int16_t)LeftSample_8Bit + (int16_t)RightSample_8Bit) >> 1);
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		#if defined(AUDIO_OUT_MONO)
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		/* Load the sample into the PWM timer channel */
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		OCR3A = (MixedSample_8Bit ^ (1 << 7));
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		#elif defined(AUDIO_OUT_STEREO)
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		/* Load the dual 8-bit samples into the PWM timer channels */
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		OCR3A = (LeftSample_8Bit  ^ (1 << 7));
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		OCR3B = (RightSample_8Bit ^ (1 << 7));
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		#elif defined(AUDIO_OUT_PORTC)
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		/* Load the 8-bit mixed sample into PORTC */
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		PORTC = MixedSample_8Bit;
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		#endif
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		uint8_t LEDMask = LEDS_NO_LEDS;
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		/* Turn on LEDs as the sample amplitude increases */
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		if (MixedSample_8Bit > 16)
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		  LEDMask = (LEDS_LED1 | LEDS_LED2 | LEDS_LED3 | LEDS_LED4);
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		else if (MixedSample_8Bit > 8)
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		  LEDMask = (LEDS_LED1 | LEDS_LED2 | LEDS_LED3);
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		else if (MixedSample_8Bit > 4)
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		  LEDMask = (LEDS_LED1 | LEDS_LED2);
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		else if (MixedSample_8Bit > 2)
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		  LEDMask = (LEDS_LED1);
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		LEDs_SetAllLEDs(LEDMask);
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	}
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	Endpoint_SelectEndpoint(PrevEndpoint);
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}
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/** Event handler for the library USB Connection event. */
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void EVENT_USB_Device_Connect(void)
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{
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	LEDs_SetAllLEDs(LEDMASK_USB_ENUMERATING);
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	/* Sample reload timer initialization */
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	TIMSK0  = (1 << OCIE0A);
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	OCR0A   = ((F_CPU / 8 / CurrentAudioSampleFrequency) - 1);
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	TCCR0A  = (1 << WGM01);  // CTC mode
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	TCCR0B  = (1 << CS01);   // Fcpu/8 speed
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	#if defined(AUDIO_OUT_MONO)
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	/* Set speaker as output */
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	DDRC   |= (1 << 6);
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	#elif defined(AUDIO_OUT_STEREO)
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	/* Set speakers as outputs */
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	DDRC   |= ((1 << 6) | (1 << 5));
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	#elif defined(AUDIO_OUT_PORTC)
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	/* Set PORTC as outputs */
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	DDRC   |= 0xFF;
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	#endif
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	#if (defined(AUDIO_OUT_MONO) || defined(AUDIO_OUT_STEREO))
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	/* PWM speaker timer initialization */
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	TCCR3A  = ((1 << WGM30) | (1 << COM3A1) | (1 << COM3A0)
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	        | (1 << COM3B1) | (1 << COM3B0)); // Set on match, clear on TOP
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	TCCR3B  = ((1 << WGM32) | (1 << CS30));  // Fast 8-Bit PWM, F_CPU speed
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	#endif
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}
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/** Event handler for the library USB Disconnection event. */
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void EVENT_USB_Device_Disconnect(void)
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{
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	LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);
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	/* Stop the sample reload timer */
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	TCCR0B = 0;
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	#if (defined(AUDIO_OUT_MONO) || defined(AUDIO_OUT_STEREO))
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	/* Stop the PWM generation timer */
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	TCCR3B = 0;
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	#endif
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	#if defined(AUDIO_OUT_MONO)
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	/* Set speaker as input to reduce current draw */
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	DDRC  &= ~(1 << 6);
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	#elif defined(AUDIO_OUT_STEREO)
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	/* Set speakers as inputs to reduce current draw */
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	DDRC  &= ~((1 << 6) | (1 << 5));
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	#elif defined(AUDIO_OUT_PORTC)
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	/* Set PORTC low */
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	PORTC = 0x00;
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	#endif
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}
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/** Event handler for the library USB Configuration Changed event. */
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void EVENT_USB_Device_ConfigurationChanged(void)
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{
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	bool ConfigSuccess = true;
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	ConfigSuccess &= Audio_Device_ConfigureEndpoints(&Speaker_Audio_Interface);
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	LEDs_SetAllLEDs(ConfigSuccess ? LEDMASK_USB_READY : LEDMASK_USB_ERROR);
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}
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/** Event handler for the library USB Control Request reception event. */
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void EVENT_USB_Device_ControlRequest(void)
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{
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	Audio_Device_ProcessControlRequest(&Speaker_Audio_Interface);
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}
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/** Audio class driver callback for the setting and retrieval of streaming endpoint properties. This callback must be implemented
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 *  in the user application to handle property manipulations on streaming audio endpoints.
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 *
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 *  When the DataLength parameter is NULL, this callback should only indicate whether the specified operation is valid for
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 *  the given endpoint index, and should return as fast as possible. When non-NULL, this value may be altered for GET operations
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 *  to indicate the size of the retrieved data.
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 *
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 *  \note The length of the retrieved data stored into the Data buffer on GET operations should not exceed the initial value
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 *        of the \c DataLength parameter.
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 *
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 *  \param[in,out] AudioInterfaceInfo  Pointer to a structure containing an Audio Class configuration and state.
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 *  \param[in]     EndpointProperty    Property of the endpoint to get or set, a value from Audio_ClassRequests_t.
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 *  \param[in]     EndpointAddress     Address of the streaming endpoint whose property is being referenced.
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 *  \param[in]     EndpointControl     Parameter of the endpoint to get or set, a value from Audio_EndpointControls_t.
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 *  \param[in,out] DataLength          For SET operations, the length of the parameter data to set. For GET operations, the maximum
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 *                                     length of the retrieved data. When NULL, the function should return whether the given property
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 *                                     and parameter is valid for the requested endpoint without reading or modifying the Data buffer.
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 *  \param[in,out] Data                Pointer to a location where the parameter data is stored for SET operations, or where
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 *                                     the retrieved data is to be stored for GET operations.
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 *
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 *  \return Boolean \c true if the property get/set was successful, \c false otherwise
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 */
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bool CALLBACK_Audio_Device_GetSetEndpointProperty(USB_ClassInfo_Audio_Device_t* const AudioInterfaceInfo,
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                                                  const uint8_t EndpointProperty,
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                                                  const uint8_t EndpointAddress,
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                                                  const uint8_t EndpointControl,
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                                                  uint16_t* const DataLength,
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                                                  uint8_t* Data)
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{
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	/* Check the requested endpoint to see if a supported endpoint is being manipulated */
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	if (EndpointAddress == Speaker_Audio_Interface.Config.DataOUTEndpoint.Address)
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	{
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		/* Check the requested control to see if a supported control is being manipulated */
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		if (EndpointControl == AUDIO_EPCONTROL_SamplingFreq)
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		{
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			switch (EndpointProperty)
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			{
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				case AUDIO_REQ_SetCurrent:
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					/* Check if we are just testing for a valid property, or actually adjusting it */
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					if (DataLength != NULL)
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					{
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						/* Set the new sampling frequency to the value given by the host */
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						CurrentAudioSampleFrequency = (((uint32_t)Data[2] << 16) | ((uint32_t)Data[1] << 8) | (uint32_t)Data[0]);
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						/* Adjust sample reload timer to the new frequency */
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						OCR0A = ((F_CPU / 8 / CurrentAudioSampleFrequency) - 1);
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					}
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					return true;
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				case AUDIO_REQ_GetCurrent:
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					/* Check if we are just testing for a valid property, or actually reading it */
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					if (DataLength != NULL)
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					{
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						*DataLength = 3;
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						Data[2] = (CurrentAudioSampleFrequency >> 16);
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						Data[1] = (CurrentAudioSampleFrequency >> 8);
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						Data[0] = (CurrentAudioSampleFrequency &  0xFF);
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					}
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					return true;
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			}
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		}
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	}
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	return false;
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}
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/** Audio class driver callback for the setting and retrieval of streaming interface properties. This callback must be implemented
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 *  in the user application to handle property manipulations on streaming audio interfaces.
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 *
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 *  When the DataLength parameter is NULL, this callback should only indicate whether the specified operation is valid for
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 *  the given entity and should return as fast as possible. When non-NULL, this value may be altered for GET operations
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 *  to indicate the size of the retrieved data.
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 *
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 *  \note The length of the retrieved data stored into the Data buffer on GET operations should not exceed the initial value
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 *        of the \c DataLength parameter.
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 *
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 *  \param[in,out] AudioInterfaceInfo  Pointer to a structure containing an Audio Class configuration and state.
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 *  \param[in]     Property            Property of the interface to get or set, a value from Audio_ClassRequests_t.
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 *  \param[in]     EntityAddress       Address of the audio entity whose property is being referenced.
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 *  \param[in]     Parameter           Parameter of the entity to get or set, specific to each type of entity (see USB Audio specification).
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 *  \param[in,out] DataLength          For SET operations, the length of the parameter data to set. For GET operations, the maximum
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 *                                     length of the retrieved data. When NULL, the function should return whether the given property
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 *                                     and parameter is valid for the requested endpoint without reading or modifying the Data buffer.
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 *  \param[in,out] Data                Pointer to a location where the parameter data is stored for SET operations, or where
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 *                                     the retrieved data is to be stored for GET operations.
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 *
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 *  \return Boolean \c true if the property GET/SET was successful, \c false otherwise
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 */
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bool CALLBACK_Audio_Device_GetSetInterfaceProperty(USB_ClassInfo_Audio_Device_t* const AudioInterfaceInfo,
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                                                   const uint8_t Property,
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                                                   const uint8_t EntityAddress,
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                                                   const uint16_t Parameter,
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                                                   uint16_t* const DataLength,
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                                                   uint8_t* Data)
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{
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	/* No audio interface entities in the device descriptor, thus no properties to get or set. */
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	return false;
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}
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