Adding initial ARM UART structure for UART0
- Transmit seems to be working - Receive isn't working yet - Inversion of the transmit signal doesn't seem to be working
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					 2 changed files with 67 additions and 12 deletions
				
			
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			@ -75,14 +75,24 @@ void uart0_status_isr(void)
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#if defined(_at90usb162_) || defined(_atmega32u4_) || defined(_at90usb646_) || defined(_at90usb1286_) // AVR
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	uint8_t tmp = UDR1;
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#elif defined(_mk20dx128_) // ARM
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	// TODO
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	uint8_t tmp = 0;
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	// Exit out if nothing to do
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	/*
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	if ( !(UART0_S1 & UART_S1_RDRF ) )
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	{
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		sei();
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		return;
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	}
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	*/
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	// Only doing single byte FIFO here
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	uint8_t tmp = UART0_D;
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	print("YAYA");
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#endif
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	// Debug
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	char tmpStr[6];
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	hexToStr( tmp, tmpStr );
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	dPrintStrs( tmpStr, " " ); // Debug
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	dPrintStrsNL( tmpStr, " " ); // Debug
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	// TODO
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			@ -99,20 +109,21 @@ inline void scan_setup()
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{
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	// Setup the the USART interface for keyboard data input
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	// TODO
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	// Setup baud rate
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	// Setup baud rate - 1205 Baud
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	// 16 MHz / ( 16 * Baud ) = UBRR
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	// Baud: 4817 -> 16 MHz / ( 16 * 4817 ) = 207.5981
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	// Thus baud setting = 208
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	uint16_t baud = 208; // Max setting of 4095
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	// Baud: 1205 -> 16 MHz / ( 16 * 1205 ) = 829.8755
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	// Thus baud setting = 830
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	uint16_t baud = 830; // Max setting of 4095
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	UBRR1H = (uint8_t)(baud >> 8);
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	UBRR1L = (uint8_t)baud;
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	// Enable the receiver, transmitter, and RX Complete Interrupt
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	// TODO - Only receiver, and rx interrupt
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	UCSR1B = 0x98;
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	// Set frame format: 8 data, 1 stop bit, odd parity
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	// Asynchrounous USART mode
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	// TODO - Even parity
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	UCSR1C = 0x36;
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	// Reset the keyboard before scanning, we might be in a wierd state
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			@ -121,9 +132,48 @@ inline void scan_setup()
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#elif defined(_mk20dx128_) // ARM
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{
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	// Setup the the UART interface for keyboard data input
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	SIM_SCGC4 |= SIM_SCGC4_UART0; // Disable clock gating
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	// Setup baud rate
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	// TODO
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	// Pin Setup for UART0
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	PORTB_PCR16 = PORT_PCR_PE | PORT_PCR_PS | PORT_PCR_PFE | PORT_PCR_MUX(3); // RX Pin
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	PORTB_PCR17 = PORT_PCR_DSE | PORT_PCR_SRE | PORT_PCR_MUX(3); // TX Pin
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	// Setup baud rate - 1205 Baud
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	// 48 MHz / ( 16 * Baud ) = BDH/L
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	// Baud: 1205 -> 48 MHz / ( 16 * 1205 ) = 2489.6266
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	// Thus baud setting = 2490
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	// NOTE: If finer baud adjustment is needed see UARTx_C4 -> BRFA in the datasheet
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	uint16_t baud = 2490; // Max setting of 8191
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	UART0_BDH = (uint8_t)(baud >> 8);
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	UART0_BDL = (uint8_t)baud;
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	// 8 bit, Even Parity, Idle Character bit after stop
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	UART0_C1 = ~UART_C1_M | UART_C1_PE | ~UART_C1_PT | UART_C1_ILT;
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	// Number of bytes in FIFO before TX Interrupt
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	UART0_TWFIFO = 1;
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	// Number of bytes in FIFO before RX Interrupt
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	UART0_RWFIFO = 1;
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	// TX FIFO Disabled, TX FIFO Size 1 (Max 8 datawords), RX FIFO Enabled, RX FIFO Size 1 (Max 8 datawords)
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	// TX/RX FIFO Size:
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	//  0x0 - 1 dataword
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	//  0x1 - 4 dataword
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	//  0x2 - 8 dataword
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	UART0_PFIFO = ~UART_PFIFO_TXFE | /*TXFIFOSIZE*/ (0x0 << 4) | ~UART_PFIFO_RXFE | /*RXFIFOSIZE*/ (0x0);
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	// TX Disabled, RX Enabled, RX Interrupt Enabled
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	UART0_C2 = UART_C2_TE | UART_C2_RE | UART_C2_RIE;
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	// Reciever Inversion Disabled
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	UART0_S2 = ~UART_S2_RXINV;
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	// Transmit Inversion Disabled
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	UART0_C3 = ~UART_S2_TXINV;
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	// Add interrupt to the vector table
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	NVIC_ENABLE_IRQ( IRQ_UART0_STATUS );
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	// Reset the keyboard before scanning, we might be in a wierd state
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	scan_resetKeyboard();
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			@ -134,6 +184,8 @@ inline void scan_setup()
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// Main Detection Loop
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inline uint8_t scan_loop()
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{
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	UART0_D = 0x56;
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	_delay_ms( 100 );
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	return 0;
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}
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			@ -187,7 +239,8 @@ void removeKeyValue( uint8_t keyValue )
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	}
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}
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// Send data 
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// Send data
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// NOTE: Example only, MBC-55X cannot receive user data
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uint8_t scan_sendData( uint8_t dataPayload )
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{
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	// Debug
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			@ -198,7 +251,7 @@ uint8_t scan_sendData( uint8_t dataPayload )
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#if defined(_at90usb162_) || defined(_atmega32u4_) || defined(_at90usb646_) || defined(_at90usb1286_) // AVR
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	UDR1 = dataPayload;
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#elif defined(_mk20dx128_) // ARM
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	// TODO
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	UART0_D = dataPayload;
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#endif
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	return 0;
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