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@ -92,17 +92,13 @@ struct
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uint32_t CurrBaseAddress;
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/** Current 32-bit byte address in FLASH being targeted. */
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uint32_t CurrAddress;
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} HEXParser =
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{
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.ParserState = HEX_PARSE_STATE_WAIT_LINE
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};
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} HEXParser;
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/** Indicates if there is data waiting to be written to a physical page of
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* memory in FLASH.
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*/
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static bool PageDirty = false;
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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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@ -153,6 +149,31 @@ static int8_t HexToDecimal(const char Byte)
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return -1;
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}
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/**
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* Flushes a partially written page of data to physical FLASH, if a page
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* boundary has been crossed.
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*
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* \note If a page flush occurs the global HEX parser state is updated.
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*/
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static void FlushPageIfRequired(void)
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{
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/* Abort if no data has been buffered for writing to the current page */
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if (!PageDirty)
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return;
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/* Flush the FLASH page to physical memory if we are crossing a page boundary */
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uint32_t NewPageStartAddress = (HEXParser.CurrAddress & ~(SPM_PAGESIZE - 1));
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if (HEXParser.PageStartAddress != NewPageStartAddress)
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{
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boot_page_write(HEXParser.PageStartAddress);
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boot_spm_busy_wait();
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HEXParser.PageStartAddress = NewPageStartAddress;
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PageDirty = false;
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}
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}
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/**
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* Parses an input Intel HEX formatted stream one character at a time, loading
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* the data contents into the device's internal FLASH memory.
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@ -241,9 +262,7 @@ static void ParseIntelHEXByte(const char ReadCharacter)
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switch (HEXParser.RecordType)
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{
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case HEX_RECORD_TYPE_Data:
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/* If we are writing to a new page, we need to erase it
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* first
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*/
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/* If we are writing to a new page, we need to erase it first */
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if (!(PageDirty))
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{
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boot_page_erase(HEXParser.PageStartAddress);
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@ -257,16 +276,7 @@ static void ParseIntelHEXByte(const char ReadCharacter)
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HEXParser.CurrAddress += 2;
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/* Flush the FLASH page to physical memory if we are crossing a page boundary */
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uint32_t NewPageStartAddress = (HEXParser.CurrAddress & ~(SPM_PAGESIZE - 1));
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if (PageDirty && (HEXParser.PageStartAddress != NewPageStartAddress))
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{
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boot_page_write(HEXParser.PageStartAddress);
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boot_spm_busy_wait();
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HEXParser.PageStartAddress = NewPageStartAddress;
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PageDirty = false;
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}
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FlushPageIfRequired();
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break;
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case HEX_RECORD_TYPE_ExtendedSegmentAddress:
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@ -290,16 +300,7 @@ static void ParseIntelHEXByte(const char ReadCharacter)
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break;
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/* Flush the FLASH page to physical memory if we are crossing a page boundary */
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uint32_t NewPageStartAddress = (HEXParser.CurrAddress & ~(SPM_PAGESIZE - 1));
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if (PageDirty && (HEXParser.PageStartAddress != NewPageStartAddress))
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{
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boot_page_write(HEXParser.PageStartAddress);
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boot_spm_busy_wait();
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HEXParser.PageStartAddress = NewPageStartAddress;
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PageDirty = false;
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}
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FlushPageIfRequired();
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/* If end of the HEX file reached, the bootloader should exit at next opportunity */
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if (HEXParser.RecordType == HEX_RECORD_TYPE_EndOfFile)
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@ -413,6 +414,9 @@ void EVENT_USB_Device_ConfigurationChanged(void)
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/* Setup Printer Data Endpoints */
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ConfigSuccess &= PRNT_Device_ConfigureEndpoints(&TextOnly_Printer_Interface);
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/* Reset the HEX parser upon successful connection to a host */
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HEXParser.ParserState = HEX_PARSE_STATE_WAIT_LINE;
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/* Indicate endpoint configuration success or failure */
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LEDs_SetAllLEDs(ConfigSuccess ? LEDMASK_USB_READY : LEDMASK_USB_ERROR);
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}
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