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@ -49,19 +49,18 @@ volatile uint16_t SoftUSART_Data;
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#define SoftUSART_BitCount GPIOR2
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#define SoftUSART_BitCount GPIOR2
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/** ISR to manage the PDI software USART when bit-banged PDI USART mode is selected. */
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/** ISR to manage the rising edge of the PDI/TPI software USART when bit-banged USART mode is selected. */
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ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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{
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{
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/* Toggle CLOCK pin in a single cycle (see AVR datasheet) */
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/* Toggle CLOCK pin in a single cycle (see AVR datasheet) */
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BITBANG_PDICLOCK_PIN |= BITBANG_PDICLOCK_MASK;
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BITBANG_PDICLOCK_PIN |= BITBANG_PDICLOCK_MASK;
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TIFR1 |= (1 << OCF1B);
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TIMSK1 = (1 << OCIE1B);
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/* If not sending or receiving, just exit */
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/* If not sending or receiving, just exit */
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if (!(SoftUSART_BitCount))
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if (!(SoftUSART_BitCount))
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return;
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return;
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/* Check to see if we are at a rising or falling edge of the clock */
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if (BITBANG_PDICLOCK_PORT & BITBANG_PDICLOCK_MASK)
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{
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/* If at rising clock edge and we are in send mode, abort */
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/* If at rising clock edge and we are in send mode, abort */
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if (IsSending)
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if (IsSending)
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return;
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return;
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@ -77,9 +76,20 @@ ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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SoftUSART_Data >>= 1;
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SoftUSART_Data >>= 1;
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SoftUSART_BitCount--;
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SoftUSART_BitCount--;
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}
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}
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else
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{
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/** ISR to manage the falling edge of the PDI/TPI software USART when bit-banged USART mode is selected. */
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ISR(TIMER1_COMPB_vect, ISR_BLOCK)
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{
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/* Toggle CLOCK pin in a single cycle (see AVR datasheet) */
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BITBANG_PDICLOCK_PIN |= BITBANG_PDICLOCK_MASK;
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TIFR1 |= (1 << OCF1A);
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TIMSK1 = (1 << OCIE1A);
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/* If not sending or receiving, just exit */
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if (!(SoftUSART_BitCount))
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return;
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/* If at falling clock edge and we are in receive mode, abort */
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/* If at falling clock edge and we are in receive mode, abort */
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if (!IsSending)
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if (!IsSending)
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return;
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return;
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@ -92,7 +102,6 @@ ISR(TIMER1_COMPA_vect, ISR_BLOCK)
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SoftUSART_Data >>= 1;
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SoftUSART_Data >>= 1;
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SoftUSART_BitCount--;
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SoftUSART_BitCount--;
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}
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}
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}
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/** ISR to manage the TPI software USART when bit-banged TPI USART mode is selected. */
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/** ISR to manage the TPI software USART when bit-banged TPI USART mode is selected. */
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@ -172,7 +181,9 @@ void XPROGTarget_EnableTargetPDI(void)
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/* Fire timer compare channel A ISR to manage the software USART */
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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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OCR1A = BITS_BETWEEN_USART_CLOCKS;
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OCR1B = BITS_BETWEEN_USART_CLOCKS;
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TCCR1B = (1 << WGM12) | (1 << CS10);
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TCCR1B = (1 << WGM12) | (1 << CS10);
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TCCR1C = (1 << FOC1B);
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TIMSK1 = (1 << OCIE1A);
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TIMSK1 = (1 << OCIE1A);
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#endif
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#endif
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@ -240,6 +251,10 @@ void XPROGTarget_DisableTargetPDI(void)
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DDRD &= ~((1 << 5) | (1 << 3));
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DDRD &= ~((1 << 5) | (1 << 3));
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PORTD &= ~((1 << 5) | (1 << 3) | (1 << 2));
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PORTD &= ~((1 << 5) | (1 << 3) | (1 << 2));
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#else
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#else
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/* Turn off software USART management timer */
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TCCR1B = 0;
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TCCR1C = 0;
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/* Set /RESET high for a one millisecond to ensure target device is restarted */
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/* Set /RESET high for a one millisecond to ensure target device is restarted */
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BITBANG_PDICLOCK_PORT |= BITBANG_PDICLOCK_MASK;
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BITBANG_PDICLOCK_PORT |= BITBANG_PDICLOCK_MASK;
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_delay_ms(1);
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_delay_ms(1);
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@ -270,6 +285,9 @@ void XPROGTarget_DisableTargetTPI(void)
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DDRD &= ~((1 << 5) | (1 << 3));
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DDRD &= ~((1 << 5) | (1 << 3));
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PORTD &= ~((1 << 5) | (1 << 3) | (1 << 2));
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PORTD &= ~((1 << 5) | (1 << 3) | (1 << 2));
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#else
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#else
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/* Turn off software USART management timer */
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TCCR1B = 0;
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/* Set DATA and CLOCK lines to inputs */
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/* Set DATA and CLOCK lines to inputs */
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BITBANG_TPIDATA_DDR &= ~BITBANG_TPIDATA_MASK;
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BITBANG_TPIDATA_DDR &= ~BITBANG_TPIDATA_MASK;
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BITBANG_TPICLOCK_DDR &= ~BITBANG_TPICLOCK_MASK;
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BITBANG_TPICLOCK_DDR &= ~BITBANG_TPICLOCK_MASK;
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@ -332,12 +350,31 @@ uint8_t XPROGTarget_ReceiveByte(void)
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#if defined(XPROG_VIA_HARDWARE_USART)
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#if defined(XPROG_VIA_HARDWARE_USART)
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/* Wait until a byte has been received before reading */
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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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uint8_t TimeoutMSRemaining = 100;
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while (!(UCSR1A & (1 << RXC1)) && TimeoutMSRemaining)
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{
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/* Manage software timeout */
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if (TIFR0 & (1 << OCF0A))
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{
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TIFR0 |= (1 << OCF0A);
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TimeoutMSRemaining--;
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}
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}
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return UDR1;
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return UDR1;
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#else
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#else
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/* Wait until a byte has been received before reading */
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/* Wait until a byte has been received before reading */
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SoftUSART_BitCount = BITS_IN_USART_FRAME;
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SoftUSART_BitCount = BITS_IN_USART_FRAME;
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while (SoftUSART_BitCount && TimeoutMSRemaining);
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uint8_t TimeoutMSRemaining = 100;
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while (SoftUSART_BitCount && TimeoutMSRemaining)
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{
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/* Manage software timeout */
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if (TIFR0 & (1 << OCF0A))
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{
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TIFR0 |= (1 << OCF0A);
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TimeoutMSRemaining--;
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}
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}
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/* Throw away the parity and stop bits to leave only the data (start bit is already discarded) */
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/* Throw away the parity and stop bits to leave only the data (start bit is already discarded) */
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return (uint8_t)SoftUSART_Data;
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return (uint8_t)SoftUSART_Data;
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@ -431,7 +468,16 @@ static void XPROGTarget_SetRxMode(void)
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}
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}
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/* Wait until DATA line has been pulled up to idle by the target */
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/* Wait until DATA line has been pulled up to idle by the target */
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while (!(BITBANG_PDIDATA_PIN & BITBANG_PDIDATA_MASK) && TimeoutMSRemaining);
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uint8_t TimeoutMSRemaining = 100;
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while (!(BITBANG_PDIDATA_PIN & BITBANG_PDIDATA_MASK) && TimeoutMSRemaining)
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{
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/* Manage software timeout */
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if (TIFR0 & (1 << OCF0A))
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{
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TIFR0 |= (1 << OCF0A);
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TimeoutMSRemaining--;
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}
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}
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#endif
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#endif
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IsSending = false;
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IsSending = false;
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