forked from mfulz_github/qmk_firmware
Remove the timeout period extension code from the AVRISP project, as no single command should ever exceed the maximum timeout period. Extend timeout period to 1 second per command, so that an accidental timeout will never occur.
This commit is contained in:
parent
0313034245
commit
666c0fa4c3
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@ -44,6 +44,8 @@
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* - Fixed void pointer arithmetic in ConfigDescriptor.h breaking C++ compatibility (thanks to Michael Hennebry)
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* - Fixed broken PDI EEPROM Section Erase functionality in the AVRISP-MKII project
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* - Fixed USB_Device_SendRemoteWakeup() not working when the USB clock was frozen during USB bus suspend (thanks to Brian Dickman)
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* - Fixed occasional lockup of the AVRISP project due to the timeout extension code incorrectly extending the timeout in
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* PDI and TPI programming modes infinitely
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*
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* \section Sec_ChangeLog100513 Version 100513
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* <b>New:</b>
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@ -76,7 +76,7 @@ void ISPProtocol_EnterISPMode(void)
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/* Continuously attempt to synchronize with the target until either the number of attempts specified
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* by the host has exceeded, or the the device sends back the expected response values */
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while (Enter_ISP_Params.SynchLoops-- && (ResponseStatus == STATUS_CMD_FAILED) && TimeoutMSRemaining)
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while (Enter_ISP_Params.SynchLoops-- && (ResponseStatus == STATUS_CMD_FAILED) && TimeoutTicksRemaining)
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{
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uint8_t ResponseBytes[4];
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@ -552,13 +552,8 @@ void ISPProtocol_SPIMulti(void)
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*/
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void ISPProtocol_DelayMS(uint8_t DelayMS)
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{
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while (DelayMS-- && TimeoutMSRemaining)
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{
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if (TimeoutMSRemaining)
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TimeoutMSRemaining--;
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_delay_ms(1);
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}
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while (DelayMS-- && TimeoutTicksRemaining)
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_delay_ms(1);
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}
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#endif
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@ -129,9 +129,9 @@ uint8_t ISPTarget_WaitForProgComplete(const uint8_t ProgrammingMode, const uint1
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SPI_SendByte(PollAddress >> 8);
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SPI_SendByte(PollAddress & 0xFF);
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}
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while ((SPI_TransferByte(0x00) == PollValue) && TimeoutMSRemaining);
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while ((SPI_TransferByte(0x00) == PollValue) && TimeoutTicksRemaining);
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if (!(TimeoutMSRemaining))
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if (!(TimeoutTicksRemaining))
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ProgrammingStatus = STATUS_CMD_TOUT;
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break;
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@ -141,9 +141,6 @@ uint8_t ISPTarget_WaitForProgComplete(const uint8_t ProgrammingMode, const uint1
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break;
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}
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if (ProgrammingStatus == STATUS_CMD_OK)
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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return ProgrammingStatus;
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}
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@ -160,17 +157,9 @@ uint8_t ISPTarget_WaitWhileTargetBusy(void)
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SPI_SendByte(0x00);
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SPI_SendByte(0x00);
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}
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while ((SPI_ReceiveByte() & 0x01) && TimeoutMSRemaining);
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while ((SPI_ReceiveByte() & 0x01) && TimeoutTicksRemaining);
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if (TimeoutMSRemaining)
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{
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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return STATUS_CMD_OK;
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}
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else
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{
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return STATUS_RDY_BSY_TOUT;
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}
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return TimeoutTicksRemaining ? STATUS_CMD_OK : STATUS_RDY_BSY_TOUT;
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}
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/** Sends a low-level LOAD EXTENDED ADDRESS command to the target, for addressing of memory beyond the
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@ -46,8 +46,8 @@ bool MustLoadExtendedAddress;
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/** ISR to manage timeouts whilst processing a V2Protocol command */
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ISR(TIMER0_COMPA_vect, ISR_NOBLOCK)
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{
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if (TimeoutMSRemaining)
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TimeoutMSRemaining--;
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if (TimeoutTicksRemaining)
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TimeoutTicksRemaining--;
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}
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/** Initializes the hardware and software associated with the V2 protocol command handling. */
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@ -60,8 +60,8 @@ void V2Protocol_Init(void)
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ADC_StartReading(VTARGET_ADC_CHANNEL_MASK | ADC_RIGHT_ADJUSTED | ADC_REFERENCE_AVCC);
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#endif
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/* Millisecond timer initialization for managing the command timeout counter */
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OCR0A = ((F_CPU / 64) / 1000);
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/* Timeout timer initialization (10ms period) */
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OCR0A = ((F_CPU / 1024) / 100);
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TCCR0A = (1 << WGM01);
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TIMSK0 = (1 << OCIE0A);
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@ -77,8 +77,8 @@ void V2Protocol_ProcessCommand(void)
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uint8_t V2Command = Endpoint_Read_Byte();
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/* Start the timeout management timer */
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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TCCR0B = ((1 << CS01) | (1 << CS00));
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TimeoutTicksRemaining = COMMAND_TIMEOUT_TICKS;
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TCCR0B = ((1 << CS02) | (1 << CS00));
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switch (V2Command)
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{
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@ -66,11 +66,11 @@
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/** Programmer ID string, returned to the host during the CMD_SIGN_ON command processing. */
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#define PROGRAMMER_ID "AVRISP_MK2"
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/** Timeout period for each issued command from the host before it is aborted. */
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#define COMMAND_TIMEOUT_MS 200
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/** Timeout period for each issued command from the host before it is aborted (in 10ms ticks). */
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#define COMMAND_TIMEOUT_TICKS 100
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/** Command timeout counter register, GPIOR for speed. */
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#define TimeoutMSRemaining GPIOR0
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#define TimeoutTicksRemaining GPIOR0
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/** MUX mask for the VTARGET ADC channel number. */
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#define VTARGET_ADC_CHANNEL_MASK _GETADCMUXMASK(ADC_CHANNEL, VTARGET_ADC_CHANNEL)
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@ -85,15 +85,12 @@ bool TINYNVM_WaitWhileNVMBusBusy(void)
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uint8_t StatusRegister = XPROGTarget_ReceiveByte();
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/* We might have timed out waiting for the status register read response, check here */
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if (!(TimeoutMSRemaining))
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if (!(TimeoutTicksRemaining))
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return false;
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/* Check the status register read response to see if the NVM bus is enabled */
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if (StatusRegister & TPI_STATUS_NVM)
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{
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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return true;
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}
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return true;
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}
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}
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@ -113,15 +110,12 @@ bool TINYNVM_WaitWhileNVMControllerBusy(void)
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uint8_t StatusRegister = XPROGTarget_ReceiveByte();
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/* We might have timed out waiting for the status register read response, check here */
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if (!(TimeoutMSRemaining))
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if (!(TimeoutTicksRemaining))
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return false;
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/* Check to see if the BUSY flag is still set */
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if (!(StatusRegister & (1 << 7)))
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{
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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return true;
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}
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return true;
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}
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}
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@ -146,14 +140,14 @@ bool TINYNVM_ReadMemory(const uint16_t ReadAddress, uint8_t* ReadBuffer, uint16_
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/* Send the address of the location to read from */
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TINYNVM_SendPointerAddress(ReadAddress);
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while (ReadSize-- && TimeoutMSRemaining)
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while (ReadSize-- && TimeoutTicksRemaining)
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{
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/* Read the byte of data from the target */
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XPROGTarget_SendByte(TPI_CMD_SLD | TPI_POINTER_INDIRECT_PI);
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*(ReadBuffer++) = XPROGTarget_ReceiveByte();
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}
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return (TimeoutMSRemaining != 0);
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return (TimeoutTicksRemaining != 0);
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}
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/** Writes word addressed memory to the target's memory spaces.
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@ -80,15 +80,12 @@ bool XMEGANVM_WaitWhileNVMBusBusy(void)
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uint8_t StatusRegister = XPROGTarget_ReceiveByte();
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/* We might have timed out waiting for the status register read response, check here */
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if (!(TimeoutMSRemaining))
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if (!(TimeoutTicksRemaining))
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return false;
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/* Check the status register read response to see if the NVM bus is enabled */
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if (StatusRegister & PDI_STATUS_NVM)
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{
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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return true;
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}
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return true;
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}
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}
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@ -109,15 +106,12 @@ bool XMEGANVM_WaitWhileNVMControllerBusy(void)
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uint8_t StatusRegister = XPROGTarget_ReceiveByte();
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/* We might have timed out waiting for the status register read response, check here */
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if (!(TimeoutMSRemaining))
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if (!(TimeoutTicksRemaining))
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return false;
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/* Check to see if the BUSY flag is still set */
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if (!(StatusRegister & (1 << 7)))
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{
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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return true;
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}
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return true;
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}
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}
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@ -165,7 +159,7 @@ bool XMEGANVM_GetMemoryCRC(const uint8_t CRCCommand, uint32_t* const CRCDest)
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for (uint8_t i = 0; i < XMEGA_CRC_LENGTH; i++)
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((uint8_t*)CRCDest)[i] = XPROGTarget_ReceiveByte();
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return (TimeoutMSRemaining != 0);
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return (TimeoutTicksRemaining != 0);
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}
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/** Reads memory from the target's memory spaces.
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@ -197,10 +191,10 @@ bool XMEGANVM_ReadMemory(const uint32_t ReadAddress, uint8_t* ReadBuffer, uint16
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/* Send a LD command with indirect access and post-increment to read out the bytes */
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XPROGTarget_SendByte(PDI_CMD_LD | (PDI_POINTER_INDIRECT_PI << 2) | PDI_DATSIZE_1BYTE);
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while (ReadSize-- && TimeoutMSRemaining)
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while (ReadSize-- && TimeoutTicksRemaining)
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*(ReadBuffer++) = XPROGTarget_ReceiveByte();
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return (TimeoutMSRemaining != 0);
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return (TimeoutTicksRemaining != 0);
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}
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/** Writes byte addressed memory to the target's memory spaces.
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@ -131,7 +131,7 @@ static void XPROGProtocol_EnterXPROGMode(void)
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XPROGTarget_SendByte(0x07);
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/* Enable access to the XPROG NVM bus by sending the documented NVM access key to the device */
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XPROGTarget_SendByte(PDI_CMD_KEY);
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XPROGTarget_SendByte(PDI_CMD_KEY);
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for (uint8_t i = sizeof(PDI_NVMENABLE_KEY); i > 0; i--)
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XPROGTarget_SendByte(PDI_NVMENABLE_KEY[i - 1]);
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@ -138,9 +138,6 @@ void XPROGTarget_SendByte(const uint8_t Byte)
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while (!(UCSR1A & (1 << UDRE1)));
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UCSR1A |= (1 << TXC1);
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UDR1 = Byte;
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if (TimeoutMSRemaining)
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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}
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/** Receives a byte via the software USART, blocking until data is received.
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@ -154,10 +151,7 @@ uint8_t XPROGTarget_ReceiveByte(void)
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XPROGTarget_SetRxMode();
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/* Wait until a byte has been received before reading */
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while (!(UCSR1A & (1 << RXC1)) && TimeoutMSRemaining);
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if (TimeoutMSRemaining)
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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while (!(UCSR1A & (1 << RXC1)) && TimeoutTicksRemaining);
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return UDR1;
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}
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@ -176,9 +170,6 @@ void XPROGTarget_SendBreak(void)
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while (PIND & (1 << 5));
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while (!(PIND & (1 << 5)));
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}
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if (TimeoutMSRemaining)
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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}
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static void XPROGTarget_SetTxMode(void)
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UCSR1B &= ~(1 << RXEN1);
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UCSR1B |= (1 << TXEN1);
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if (TimeoutMSRemaining)
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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IsSending = true;
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}
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@ -210,9 +198,6 @@ static void XPROGTarget_SetRxMode(void)
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DDRD &= ~(1 << 3);
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PORTD &= ~(1 << 3);
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if (TimeoutMSRemaining)
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TimeoutMSRemaining = COMMAND_TIMEOUT_MS;
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IsSending = false;
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}
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