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/*
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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 TeensyHID bootloader. This file contains the complete bootloader logic.
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*/
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#include "TeensyHID.h"
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/** Flag to indicate if the bootloader should be running, or should exit and allow the application code to run
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* via a soft reset. When cleared, the bootloader will abort, the USB interface will shut down and the application
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* started via a forced watchdog reset.
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*/
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bool RunBootloader = true;
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/** Main program entry point. This routine configures the hardware required by the bootloader, then continuously
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* runs the bootloader processing routine until instructed to soft-exit.
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*/
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int main(void)
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{
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/* Setup hardware required for the bootloader */
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SetupHardware();
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/* Enable global interrupts so that the USB stack can function */
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sei();
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while (RunBootloader)
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USB_USBTask();
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/* Disconnect from the host - USB interface will be reset later along with the AVR */
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USB_Detach();
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/* Enable the watchdog and force a timeout to reset the AVR */
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wdt_enable(WDTO_250MS);
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for (;;);
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}
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/** Configures all hardware required for the bootloader. */
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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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/* Relocate the interrupt vector table to the bootloader section */
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MCUCR = (1 << IVCE);
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MCUCR = (1 << IVSEL);
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/* Initialize USB subsystem */
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USB_Init();
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}
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/** Event handler for the USB_ConfigurationChanged event. This configures the device's endpoints ready
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* to relay data to and from the attached USB host.
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*/
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void EVENT_USB_Device_ConfigurationChanged(void)
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{
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/* Setup HID Report Endpoint */
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Endpoint_ConfigureEndpoint(HID_EPNUM, EP_TYPE_INTERRUPT,
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ENDPOINT_DIR_IN, HID_EPSIZE,
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ENDPOINT_BANK_SINGLE);
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}
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/** Event handler for the USB_UnhandledControlRequest event. This is used to catch standard and class specific
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* control requests that are not handled internally by the USB library (including the HID commands, which are
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* all issued via the control endpoint), so that they can be handled appropriately for the application.
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*/
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void EVENT_USB_Device_UnhandledControlRequest(void)
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{
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/* Handle HID Class specific requests */
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switch (USB_ControlRequest.bRequest)
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{
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case REQ_SetReport:
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Endpoint_ClearSETUP();
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/* Wait until the command has been sent by the host */
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while (!(Endpoint_IsOUTReceived()));
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/* Read in the write destination index */
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uint16_t PageIndex = Endpoint_Read_Word_LE();
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/* Check if the command is a program page command, or a start application command */
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if (PageIndex == TEENSY_STARTAPPLICATION)
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{
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RunBootloader = false;
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}
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else
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{
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#if (FLASHEND > 0xFFFF)
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uint32_t PageByteAddress = ((uint32_t)PageIndex << 8);
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#else
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uint16_t PageByteAddress = PageIndex;
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#endif
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/* Erase the given FLASH page, ready to be programmed */
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boot_page_erase(PageByteAddress);
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boot_spm_busy_wait();
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/* Write each of the FLASH page's bytes in sequence */
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#if (SPM_PAGESIZE == 128)
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for (uint8_t PageByte = 0; PageByte < SPM_PAGESIZE; PageByte += 2)
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#else
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for (uint16_t PageByte = 0; PageByte < SPM_PAGESIZE; PageByte += 2)
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#endif
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{
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/* Check if endpoint is empty - if so clear it and wait until ready for next packet */
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if (!(Endpoint_BytesInEndpoint()))
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{
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Endpoint_ClearOUT();
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while (!(Endpoint_IsOUTReceived()));
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}
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/* Write the next data word to the FLASH page */
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boot_page_fill(PageByteAddress + PageByte, Endpoint_Read_Word_LE());
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}
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/* Write the filled FLASH page to memory */
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boot_page_write(PageByteAddress);
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boot_spm_busy_wait();
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}
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Endpoint_ClearOUT();
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Endpoint_ClearStatusStage();
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break;
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}
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}
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