438 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			438 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /****************************************************************************
 | |
|  *   $Id:: uart.c 7125 2011-04-15 00:22:12Z usb01267                        $
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|  *   Project: NXP LPC13Uxx UART example
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|  *
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|  *   Description:
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|  *     This file contains UART code example which include UART 
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|  *     initialization, UART interrupt handler, and related APIs for 
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|  *     UART access.
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|  *
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|  ****************************************************************************
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| * Software that is described herein is for illustrative purposes only
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| * which provides customers with programming information regarding the
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| * products. This software is supplied "AS IS" without any warranties.
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| * NXP Semiconductors assumes no responsibility or liability for the
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| * use of the software, conveys no license or title under any patent,
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| * copyright, or mask work right to the product. NXP Semiconductors
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| * reserves the right to make changes in the software without
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| * notification. NXP Semiconductors also make no representation or
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| * warranty that such application will be suitable for the specified
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| * use without further testing or modification.
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| * Permission to use, copy, modify, and distribute this software and its
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| * documentation is hereby granted, under NXP Semiconductors'
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| * relevant copyright in the software, without fee, provided that it
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| * is used in conjunction with NXP Semiconductors microcontrollers.  This
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| * copyright, permission, and disclaimer notice must appear in all copies of
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| * this code.
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| ****************************************************************************/
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| #include "LPC13Uxx.h"
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| #include "type.h"
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| #include "uart.h"
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| 
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| volatile uint32_t UARTStatus;
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| volatile uint8_t  UARTTxEmpty = 1;
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| volatile uint8_t  UARTBuffer[BUFSIZE];
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| volatile uint32_t UARTCount = 0;
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| 
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| #if AUTOBAUD_ENABLE
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| volatile uint32_t UARTAutoBaud = 0, AutoBaudTimeout = 0;
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| #endif
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| 
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| /*****************************************************************************
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| ** Function name:		USART_IRQHandler
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| **
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| ** Descriptions:		USART interrupt handler
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| **
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| ** parameters:			None
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| ** Returned value:		None
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| ** 
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| *****************************************************************************/
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| void USART_IRQHandler(void)
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| {
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|   uint8_t IIRValue, LSRValue;
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|   uint8_t Dummy = Dummy;
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| 
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|   IIRValue = LPC_USART->IIR;
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|     
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|   IIRValue >>= 1;			/* skip pending bit in IIR */
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|   IIRValue &= 0x07;			/* check bit 1~3, interrupt identification */
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|   if (IIRValue == IIR_RLS)		/* Receive Line Status */
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|   {
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|     LSRValue = LPC_USART->LSR;
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|     /* Receive Line Status */
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|     if (LSRValue & (LSR_OE | LSR_PE | LSR_FE | LSR_RXFE | LSR_BI))
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|     {
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|       /* There are errors or break interrupt */
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|       /* Read LSR will clear the interrupt */
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|       UARTStatus = LSRValue;
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|       Dummy = LPC_USART->RBR;	/* Dummy read on RX to clear 
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| 								interrupt, then bail out */
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|       return;
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|     }
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|     if (LSRValue & LSR_RDR)	/* Receive Data Ready */			
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|     {
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|       /* If no error on RLS, normal ready, save into the data buffer. */
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|       /* Note: read RBR will clear the interrupt */
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|       UARTBuffer[UARTCount++] = LPC_USART->RBR;
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|       if (UARTCount == BUFSIZE)
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|       {
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|         UARTCount = 0;		/* buffer overflow */
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|       }	
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|     }
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|   }
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|   else if (IIRValue == IIR_RDA)	/* Receive Data Available */
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|   {
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|     /* Receive Data Available */
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|     UARTBuffer[UARTCount++] = LPC_USART->RBR;
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|     if (UARTCount == BUFSIZE)
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|     {
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|       UARTCount = 0;		/* buffer overflow */
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|     }
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|   }
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|   else if (IIRValue == IIR_CTI)	/* Character timeout indicator */
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|   {
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|     /* Character Time-out indicator */
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|     UARTStatus |= 0x100;		/* Bit 9 as the CTI error */
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|   }
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|   else if (IIRValue == IIR_THRE)	/* THRE, transmit holding register empty */
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|   {
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|     /* THRE interrupt */
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|     LSRValue = LPC_USART->LSR;		/* Check status in the LSR to see if
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| 								valid data in U0THR or not */
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|     if (LSRValue & LSR_THRE)
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|     {
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|       UARTTxEmpty = 1;
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|     }
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|     else
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|     {
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|       UARTTxEmpty = 0;
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|     }
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|   }
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| #if AUTOBAUD_ENABLE
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|   if (LPC_USART->IIR & IIR_ABEO) /* End of Auto baud */
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|   {
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| 	LPC_USART->IER &= ~IIR_ABEO;
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| 	/* clear bit ABEOInt in the IIR by set ABEOIntClr in the ACR register */
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| 	LPC_USART->ACR |= IIR_ABEO;
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| 	UARTAutoBaud = 1;
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|   }
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|   else if (LPC_USART->IIR & IIR_ABTO)/* Auto baud time out */
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|   {
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| 	LPC_USART->IER &= ~IIR_ABTO;
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| 	AutoBaudTimeout = 1;
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| 	/* clear bit ABTOInt in the IIR by set ABTOIntClr in the ACR register */
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| 	LPC_USART->ACR |= IIR_ABTO;
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|   }
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| #endif
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|   return;
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| }
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| 
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| #if MODEM_TEST
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| /*****************************************************************************
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| ** Function name:		ModemInit
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| **
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| ** Descriptions:		Initialize UART0 port as modem, setup pin select.
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| **
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| ** parameters:			None
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| ** Returned value:		None
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| ** 
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| *****************************************************************************/
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| void ModemInit( void )
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| {
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|   
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|   LPC_IOCON->PIO0_7 &= ~0x07;     /* UART I/O config */
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|   LPC_IOCON->PIO0_7 |= 0x01;      /* UART CTS */
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|   LPC_IOCON->PIO0_17 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO0_17 |= 0x01;     /* UART RTS */
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| #if 1
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|   LPC_IOCON->PIO1_13 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_13 |= 0x01;     /* UART DTR */ 
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|   LPC_IOCON->PIO1_14 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_14 |= 0x01;     /* UART DSR */
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|   LPC_IOCON->PIO1_15 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_15 |= 0x01;     /* UART DCD */
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|   LPC_IOCON->PIO1_16 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_16 |= 0x01;     /* UART RI */
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| 
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| #else
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|   LPC_IOCON->PIO1_19 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_19 |= 0x01;     /* UART DTR */
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|   LPC_IOCON->PIO1_20 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_20 |= 0x01;     /* UART DSR */
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|   LPC_IOCON->PIO1_21 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_21 |= 0x01;     /* UART DCD */
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|   LPC_IOCON->PIO1_22 &= ~0x07;    /* UART I/O config */
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|   LPC_IOCON->PIO1_22 |= 0x01;     /* UART RI */
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| #endif
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|   LPC_USART->MCR = 0xC0;          /* Enable Auto RTS and Auto CTS. */			
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|   return;
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| }
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| #endif
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| 
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| /***********************************************************************
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|  *
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|  * Function: uart_set_divisors
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|  *
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|  * Purpose: Determines best dividers to get a target clock rate
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|  *
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|  * Processing:
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|  *     See function.
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|  *
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|  * Parameters:
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|  *     UARTClk    : UART clock
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|  *     baudrate   : Desired UART baud rate
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|  *
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|  * Outputs:
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|  *	  baudrate : Sets the estimated buadrate value in DLL, DLM, and FDR.
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|  *
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|  * Returns: Error status.
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|  *
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|  * Notes: None
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|  *
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|  **********************************************************************/
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| uint32_t uart_set_divisors(uint32_t UARTClk, uint32_t baudrate)
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| {
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|   uint32_t uClk;
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|   uint32_t calcBaudrate = 0;
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|   uint32_t temp = 0;
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| 
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|   uint32_t mulFracDiv, dividerAddFracDiv;
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|   uint32_t diviser = 0 ;
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|   uint32_t mulFracDivOptimal = 1;
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|   uint32_t dividerAddOptimal = 0;
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|   uint32_t diviserOptimal = 0;
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| 
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|   uint32_t relativeError = 0;
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|   uint32_t relativeOptimalError = 100000;
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| 
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|   /* get UART block clock */
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|   uClk = UARTClk >> 4; /* div by 16 */
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|   /* In the Uart IP block, baud rate is calculated using FDR and DLL-DLM registers
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|    * The formula is :
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|    * BaudRate= uClk * (mulFracDiv/(mulFracDiv+dividerAddFracDiv) / (16 * (DLL)
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|    * It involves floating point calculations. That's the reason the formulae are adjusted with
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|    * Multiply and divide method.*/
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|   /* The value of mulFracDiv and dividerAddFracDiv should comply to the following expressions:
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|    * 0 < mulFracDiv <= 15, 0 <= dividerAddFracDiv <= 15 */
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|   for (mulFracDiv = 1; mulFracDiv <= 15; mulFracDiv++)
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|   {
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|     for (dividerAddFracDiv = 0; dividerAddFracDiv <= 15; dividerAddFracDiv++)
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|     {
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|       temp = (mulFracDiv * uClk) / ((mulFracDiv + dividerAddFracDiv));
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|       diviser = temp / baudrate;
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|       if ((temp % baudrate) > (baudrate / 2))
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|         diviser++;
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| 
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|       if (diviser > 2 && diviser < 65536)
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|       {
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|         calcBaudrate = temp / diviser;
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| 
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|         if (calcBaudrate <= baudrate)
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|           relativeError = baudrate - calcBaudrate;
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|         else
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|           relativeError = calcBaudrate - baudrate;
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| 
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|         if ((relativeError < relativeOptimalError))
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|         {
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|           mulFracDivOptimal = mulFracDiv ;
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|           dividerAddOptimal = dividerAddFracDiv;
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|           diviserOptimal = diviser;
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|           relativeOptimalError = relativeError;
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|           if (relativeError == 0)
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|             break;
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|         }
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|       } /* End of if */
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|     } /* end of inner for loop */
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|     if (relativeError == 0)
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|       break;
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|   } /* end of outer for loop  */
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| 
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|   if (relativeOptimalError < (baudrate / 30))
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|   {
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|     /* Set the `Divisor Latch Access Bit` and enable so the DLL/DLM access*/
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|     /* Initialise the `Divisor latch LSB` and `Divisor latch MSB` registers */
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|     LPC_USART->DLM = (diviserOptimal >> 8) & 0xFF;
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|     LPC_USART->DLL = diviserOptimal & 0xFF;
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| 
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|     /* Initialise the Fractional Divider Register */
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|     LPC_USART->FDR = ((mulFracDivOptimal & 0xF) << 4) | (dividerAddOptimal & 0xF);
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|     return( TRUE );
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|   }
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|   return ( FALSE );
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| }
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| 
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| /*****************************************************************************
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| ** Function name:		UARTInit
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| **
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| ** Descriptions:		Initialize UART0 port, setup pin select,
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| **				clock, parity, stop bits, FIFO, etc.
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| **
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| ** parameters:			UART baudrate
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| ** Returned value:		None
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| ** 
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| *****************************************************************************/
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| void UARTInit(uint32_t baudrate)
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| {
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| #if !AUTOBAUD_ENABLE
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|   uint32_t Fdiv;
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| #endif
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|   volatile uint32_t regVal;
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| 
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|   UARTTxEmpty = 1;
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|   UARTCount = 0;
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|   
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|   NVIC_DisableIRQ(USART_IRQn);
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|   /* Select only one location from below. */
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| #if 1
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|   LPC_IOCON->PIO0_18 &= ~0x07;    /*  UART I/O config */
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|   LPC_IOCON->PIO0_18 |= 0x01;     /* UART RXD */
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|   LPC_IOCON->PIO0_19 &= ~0x07;	
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|   LPC_IOCON->PIO0_19 |= 0x01;     /* UART TXD */
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| #endif
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| #if 0
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|   LPC_IOCON->PIO1_14 &= ~0x07;    /*  UART I/O config */
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|   LPC_IOCON->PIO1_14 |= 0x03;     /* UART RXD */
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|   LPC_IOCON->PIO1_13 &= ~0x07;	
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|   LPC_IOCON->PIO1_13 |= 0x03;     /* UART TXD */
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| #endif
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| #if 0
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|   LPC_IOCON->PIO1_17 &= ~0x07;    /*  UART I/O config */
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|   LPC_IOCON->PIO1_17 |= 0x02;     /* UART RXD */
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|   LPC_IOCON->PIO1_18 &= ~0x07;	
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|   LPC_IOCON->PIO1_18 |= 0x02;     /* UART TXD */
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| #endif
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| #if 0
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|   LPC_IOCON->PIO1_26 &= ~0x07;    /*  UART I/O config */
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|   LPC_IOCON->PIO1_26 |= 0x02;     /* UART RXD */
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|   LPC_IOCON->PIO1_27 &= ~0x07;	
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|   LPC_IOCON->PIO1_27 |= 0x02;     /* UART TXD */
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| #endif
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| 
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|   /* Enable UART clock */
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|   LPC_SYSCON->SYSAHBCLKCTRL |= (1<<12);
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|   LPC_SYSCON->UARTCLKDIV = 0x1;     /* divided by 1 */
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| 
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|   LPC_USART->LCR = 0x83;            /* 8 bits, no Parity, 1 Stop bit */
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| #if !AUTOBAUD_ENABLE
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| #if FDR_CALIBRATION
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| 	if ( uart_set_divisors(SystemCoreClock/LPC_SYSCON->UARTCLKDIV, baudrate) != TRUE )
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| 	{
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|       Fdiv = ((SystemCoreClock/LPC_SYSCON->UARTCLKDIV)/16)/baudrate ;	/*baud rate */
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|       LPC_USART->DLM = Fdiv / 256;							
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|       LPC_USART->DLL = Fdiv % 256;
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| 	  LPC_USART->FDR = 0x10;		/* Default */
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| 	}
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| #else
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|     Fdiv = ((SystemCoreClock/LPC_SYSCON->UARTCLKDIV)/16)/baudrate ;	/*baud rate */
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|     LPC_USART->DLM = Fdiv / 256;							
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|     LPC_USART->DLL = Fdiv % 256;
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| 	LPC_USART->FDR = 0x10;		/* Default */
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| #endif
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| #endif
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|   LPC_USART->LCR = 0x03;		/* DLAB = 0 */
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|   LPC_USART->FCR = 0x07;		/* Enable and reset TX and RX FIFO. */
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| 
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|   /* Read to clear the line status. */
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|   regVal = LPC_USART->LSR;
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| 
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|   /* Ensure a clean start, no data in either TX or RX FIFO. */
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|   while (( LPC_USART->LSR & (LSR_THRE|LSR_TEMT)) != (LSR_THRE|LSR_TEMT) );
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|   while ( LPC_USART->LSR & LSR_RDR )
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|   {
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| 	regVal = LPC_USART->RBR;	/* Dump data from RX FIFO */
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|   }
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|  
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|   /* Enable the UART Interrupt */
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|   NVIC_EnableIRQ(USART_IRQn);
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| 
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| #if TX_INTERRUPT
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|   LPC_USART->IER = IER_RBR | IER_THRE | IER_RLS;	/* Enable UART interrupt */
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| #else
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|   LPC_USART->IER = IER_RBR | IER_RLS;	/* Enable UART interrupt */
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| #endif
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| #if AUTOBAUD_ENABLE
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|     LPC_USART->IER |= IER_ABEO | IER_ABTO;
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| #endif
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|   return;
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| }
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| 
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| /*****************************************************************************
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| ** Function name:		UARTSend
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| **
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| ** Descriptions:		Send a block of data to the UART 0 port based
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| **				on the data length
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| **
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| ** parameters:		buffer pointer, and data length
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| ** Returned value:	None
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| ** 
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| *****************************************************************************/
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| void UARTSend(uint8_t *BufferPtr, uint32_t Length)
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| {
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|   
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|   while ( Length != 0 )
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|   {
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| 	  /* THRE status, contain valid data */
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| #if !TX_INTERRUPT
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| 	  while ( !(LPC_USART->LSR & LSR_THRE) );
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| 	  LPC_USART->THR = *BufferPtr;
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| #else
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| 	  /* Below flag is set inside the interrupt handler when THRE occurs. */
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|       while ( !(UARTTxEmpty & 0x01) );
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| 	  LPC_USART->THR = *BufferPtr;
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|       UARTTxEmpty = 0;	/* not empty in the THR until it shifts out */
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| #endif
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|       BufferPtr++;
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|       Length--;
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|   }
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|   return;
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| }
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| 
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| /*****************************************************************************
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| ** Function name:		print_string
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| **
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| ** Descriptions:		print out string on the terminal
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| **
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| ** parameters:			pointer to the string end with NULL char.
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| ** Returned value:		none.
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| ** 
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| *****************************************************************************/
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| void print_string( uint8_t *str_ptr )
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| {
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|   while(*str_ptr != 0x00)
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|   {
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|     while((LPC_USART->LSR & 0x60) != 0x60);
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|     LPC_USART->THR = *str_ptr;
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|     str_ptr++;
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|   }
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|   return;
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| }
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| 
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| /*****************************************************************************
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| ** Function name:		get_key
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| **
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| ** Descriptions:		Get a character from the terminal
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| **
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| ** parameters:			None
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| ** Returned value:		character, zero is none.
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| ** 
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| *****************************************************************************/
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| uint8_t get_key( void )
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| {
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|   uint8_t dummy;
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|   
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|   while ( !(LPC_USART->LSR & 0x01) );  
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|   dummy = LPC_USART->RBR;
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|   if ((dummy>=65) && (dummy<=90))
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|   {
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| 	/* convert capital to non-capital character, A2a, B2b, C2c. */ 
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| 	dummy +=32;
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|   }
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|   /* echo */
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|   LPC_USART->THR = dummy;
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|   return(dummy);
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| }
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| 
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| /******************************************************************************
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| **                            End Of File
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| ******************************************************************************/
 | 
