Ensure TPI enable timing requirements are met in AVRISP-MKII programmer. Remove invalid code in the TPI read/write functions.
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					 3 changed files with 13 additions and 21 deletions
				
			
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			@ -270,14 +270,14 @@ static void XPROGProtocol_WriteMemory(void)
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	Endpoint_ClearOUT();
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	Endpoint_SetEndpointDirection(ENDPOINT_DIR_IN);
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	/* Assume FLASH page programming by default, as it is the common case */
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	uint8_t WriteCommand     = XMEGA_NVM_CMD_WRITEFLASHPAGE;
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	uint8_t WriteBuffCommand = XMEGA_NVM_CMD_LOADFLASHPAGEBUFF;
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	uint8_t EraseBuffCommand = XMEGA_NVM_CMD_ERASEFLASHPAGEBUFF;
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	bool    PagedMemory      = true;
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	if (XPROG_SelectedProtocol == XPRG_PROTOCOL_PDI)
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	{
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		/* Assume FLASH page programming by default, as it is the common case */
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		uint8_t WriteCommand     = XMEGA_NVM_CMD_WRITEFLASHPAGE;
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		uint8_t WriteBuffCommand = XMEGA_NVM_CMD_LOADFLASHPAGEBUFF;
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		uint8_t EraseBuffCommand = XMEGA_NVM_CMD_ERASEFLASHPAGEBUFF;
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		bool    PagedMemory      = true;
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		if (WriteMemory_XPROG_Params.MemoryType == XPRG_MEM_TYPE_APPL)
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		{
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			WriteCommand     = XMEGA_NVM_CMD_WRITEAPPSECPAGE;
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			@ -321,8 +321,6 @@ static void XPROGProtocol_WriteMemory(void)
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	}
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	else
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	{
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		Serial_TxByte((uint8_t)WriteMemory_XPROG_Params.Length);
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		/* Send write command to the TPI device, indicate timeout if occurred */
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		if (!(TINYNVM_WriteMemory(WriteMemory_XPROG_Params.Address, WriteMemory_XPROG_Params.ProgData,
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		      WriteMemory_XPROG_Params.Length)))
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			@ -368,8 +366,6 @@ static void XPROGProtocol_ReadMemory(void)
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	}
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	else
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	{
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		Serial_TxByte((uint8_t)ReadMemory_XPROG_Params.Length);
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		/* Read the TPI target's memory, indicate timeout if occurred */
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		if (!(TINYNVM_ReadMemory(ReadMemory_XPROG_Params.Address, ReadBuffer, ReadMemory_XPROG_Params.Length)))
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		  ReturnStatus = XPRG_ERR_TIMEOUT;
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			@ -71,7 +71,7 @@ ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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		  return;
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		/* Shift in the bit one less than the frame size in position, so that the start bit will eventually
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		 * be discarded leaving the data to be byte-aligned for quick access */
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		 * be discarded leaving the data to be byte-aligned for quick access (subtract 9 as we are ORing to the MSB) */
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		if (BITBANG_PDIDATA_PIN & BITBANG_PDIDATA_MASK)
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		  ((uint8_t*)&SoftUSART_Data)[1] |= (1 << (BITS_IN_USART_FRAME - 9));
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			@ -117,7 +117,7 @@ ISR(TIMER1_COMPB_vect, ISR_BLOCK)
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		  return;
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		/* Shift in the bit one less than the frame size in position, so that the start bit will eventually
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		 * be discarded leaving the data to be byte-aligned for quick access */
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		 * be discarded leaving the data to be byte-aligned for quick access (subtract 9 as we are ORing to the MSB) */
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		if (BITBANG_TPIDATA_PIN & BITBANG_TPIDATA_MASK)
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		 ((uint8_t*)&SoftUSART_Data)[1] |= (1 << (BITS_IN_USART_FRAME - 9));
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			@ -154,8 +154,7 @@ void XPROGTarget_EnableTargetPDI(void)
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	/* Set DATA line high for at least 90ns to disable /RESET functionality */
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	PORTD |= (1 << 3);
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	asm volatile ("NOP"::);
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	asm volatile ("NOP"::);
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	_delay_ms(1);
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	/* Set up the synchronous USART for XMEGA communications - 
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	   8 data bits, even parity, 2 stop bits */
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			@ -169,8 +168,7 @@ void XPROGTarget_EnableTargetPDI(void)
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	/* Set DATA line high for at least 90ns to disable /RESET functionality */
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	BITBANG_PDIDATA_PORT |= BITBANG_PDIDATA_MASK;
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	asm volatile ("NOP"::);
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	asm volatile ("NOP"::);
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	_delay_ms(1);
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	/* Fire timer compare channel A ISR to manage the software USART */
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	OCR1A   = BITS_BETWEEN_USART_CLOCKS;
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			@ -188,11 +186,10 @@ void XPROGTarget_EnableTargetTPI(void)
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{
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	IsSending = false;
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	/* Set /RESET line low for at least 90ns to enable TPI functionality */
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	/* Set /RESET line low for at least 400ns to enable TPI functionality */
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	AUX_LINE_DDR  |=  AUX_LINE_MASK;
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	AUX_LINE_PORT &= ~AUX_LINE_MASK;
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	asm volatile ("NOP"::);
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	asm volatile ("NOP"::);
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	_delay_ms(1);
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#if defined(XPROG_VIA_HARDWARE_USART)
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	/* Set Tx and XCK as outputs, Rx as input */
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			@ -307,7 +304,7 @@ void XPROGTarget_SendByte(const uint8_t Byte)
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	uint16_t NewUSARTData = ((1 << 11) | (1 << 10) | (0 << 9) | ((uint16_t)Byte << 1) | (0 << 0));
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	/* Compute Even parity - while a bit is still set, chop off lowest bit and toggle parity bit */
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	uint8_t ParityData    = Byte;
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	uint8_t ParityData = Byte;
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	while (ParityData)
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	{
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		NewUSARTData ^= (1 << 9);
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