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			230 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			230 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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             LUFA Library
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     Copyright (C) Dean Camera, 2010.
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  dean [at] fourwalledcubicle [dot] com
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      www.fourwalledcubicle.com
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*/
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/*
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  Copyright 2010  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 disclaim 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 XPLAINBridge project. 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 "XPLAINBridge.h"
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/* Current firmware mode, making the device behave as either a programmer or a USART bridge */
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bool CurrentFirmwareMode = MODE_PDI_PROGRAMMER;
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/** LUFA CDC Class driver interface configuration and state information. This structure is
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 *  passed to all CDC 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_CDC_Device_t VirtualSerial_CDC_Interface =
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	{
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		.Config = 
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			{
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				.ControlInterfaceNumber         = 0,
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				.DataINEndpointNumber           = CDC_TX_EPNUM,
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				.DataINEndpointSize             = CDC_TXRX_EPSIZE,
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				.DataINEndpointDoubleBank       = false,
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				.DataOUTEndpointNumber          = CDC_RX_EPNUM,
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				.DataOUTEndpointSize            = CDC_TXRX_EPSIZE,
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				.DataOUTEndpointDoubleBank      = false,
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				.NotificationEndpointNumber     = CDC_NOTIFICATION_EPNUM,
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				.NotificationEndpointSize       = CDC_NOTIFICATION_EPSIZE,
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				.NotificationEndpointDoubleBank = false,
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			},
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	};
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/** Circular buffer to hold data from the host before it is sent to the device via the serial port. */
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RingBuff_t USBtoUART_Buffer;
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/** Circular buffer to hold data from the serial port before it is sent to the host. */
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RingBuff_t UARTtoUSB_Buffer;
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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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	Buffer_Initialize(&USBtoUART_Buffer);
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	Buffer_Initialize(&UARTtoUSB_Buffer);
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	LEDs_SetAllLEDs(LEDMASK_USB_NOTREADY);
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	for (;;)
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	{
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		if (CurrentFirmwareMode == MODE_USART_BRIDGE)
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		  USARTBridge_Task();
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		else
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		  AVRISP_Task();
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		USB_USBTask();
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	}
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}
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void AVRISP_Task(void)
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{
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	/* Must be in the configured state for the AVRISP code to process data */
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	if (USB_DeviceState != DEVICE_STATE_Configured)
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	  return;
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	Endpoint_SelectEndpoint(AVRISP_DATA_EPNUM);
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	/* Check to see if a V2 Protocol command has been received */
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	if (Endpoint_IsOUTReceived())
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	{
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		LEDs_SetAllLEDs(LEDMASK_BUSY);
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		/* Pass off processing of the V2 Protocol command to the V2 Protocol handler */
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		V2Protocol_ProcessCommand();
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		LEDs_SetAllLEDs(LEDMASK_USB_READY);
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	}
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}
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void USARTBridge_Task(void)
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{
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	/* Must be in the configured state for the USART Bridge code to process data */
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	if (USB_DeviceState != DEVICE_STATE_Configured)
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	  return;
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	/* Read bytes from the USB OUT endpoint into the UART transmit buffer */
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	for (uint8_t DataBytesRem = CDC_Device_BytesReceived(&VirtualSerial_CDC_Interface); DataBytesRem != 0; DataBytesRem--)
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	{
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		if (!(BUFF_STATICSIZE - USBtoUART_Buffer.Elements))
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		  break;
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		Buffer_StoreElement(&USBtoUART_Buffer, CDC_Device_ReceiveByte(&VirtualSerial_CDC_Interface));
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	}
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	/* Read bytes from the UART receive buffer into the USB IN endpoint */
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	if (UARTtoUSB_Buffer.Elements)
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	  CDC_Device_SendByte(&VirtualSerial_CDC_Interface, Buffer_GetElement(&UARTtoUSB_Buffer));
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	/* Load bytes from the UART transmit buffer into the UART */
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	if ((USBtoUART_Buffer.Elements) && SoftUART_IsReady())
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	  SoftUART_TxByte(Buffer_GetElement(&USBtoUART_Buffer));
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	/* Load bytes from the UART into the UART receive buffer */
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	if (SoftUART_IsReceived())
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	  Buffer_StoreElement(&UARTtoUSB_Buffer, SoftUART_RxByte());
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	CDC_Device_USBTask(&VirtualSerial_CDC_Interface);
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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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	/* 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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	/* Hardware Initialization */
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	SoftUART_Init();
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	LEDs_Init();
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	USB_Init();
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	V2Protocol_Init();
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	/* Disable JTAG debugging */
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	MCUCR |= (1 << JTD);
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	MCUCR |= (1 << JTD);
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	/* Enable pullup on the JTAG TDI pin so we can use it to select the mode */
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	PORTF |= (1 << 7);
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	_delay_ms(10);
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	/* Select the firmware mode based on the JTD pin's value */
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	CurrentFirmwareMode = (PINF & (1 << 7)) ? MODE_USART_BRIDGE : MODE_PDI_PROGRAMMER;
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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 EndpointConfigSuccess;
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	/* Configure the device endpoints according to the selected mode */
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	if (CurrentFirmwareMode == MODE_USART_BRIDGE)
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	{
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		EndpointConfigSuccess = CDC_Device_ConfigureEndpoints(&VirtualSerial_CDC_Interface);
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	}
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	else
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	{
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		EndpointConfigSuccess = Endpoint_ConfigureEndpoint(AVRISP_DATA_EPNUM, EP_TYPE_BULK,
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										                   ENDPOINT_DIR_OUT, AVRISP_DATA_EPSIZE,
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										                   ENDPOINT_BANK_SINGLE);
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	}
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	if (EndpointConfigSuccess)
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	  LEDs_SetAllLEDs(LEDMASK_USB_READY);
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	else
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	  LEDs_SetAllLEDs(LEDMASK_USB_ERROR);
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}
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/** Event handler for the library USB Unhandled Control Request event. */
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void EVENT_USB_Device_UnhandledControlRequest(void)
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{
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	if (CurrentFirmwareMode == MODE_USART_BRIDGE)
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	  CDC_Device_ProcessControlRequest(&VirtualSerial_CDC_Interface);
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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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}
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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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}
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/** This function is called by the library when in device mode, and must be overridden (see library "USB Descriptors"
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 *  documentation) by the application code so that the address and size of a requested descriptor can be given
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 *  to the USB library. When the device receives a Get Descriptor request on the control endpoint, this function
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 *  is called so that the descriptor details can be passed back and the appropriate descriptor sent back to the
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 *  USB host.
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 */
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uint16_t CALLBACK_USB_GetDescriptor(const uint16_t wValue, const uint8_t wIndex, void** const DescriptorAddress)
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{
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	/* Return the correct descriptors based on the selected mode */
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	if (CurrentFirmwareMode == MODE_USART_BRIDGE)
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	  return USART_GetDescriptor(wValue, wIndex, DescriptorAddress);
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	else
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	  return AVRISP_GetDescriptor(wValue, wIndex, DescriptorAddress);
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}
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