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/**
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* \file uartEcho.c
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*
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* \brief This is a sample application file which invokes some APIs
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* from the UART device abstraction library to perform configuration,
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* transmission and reception operations.
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*/
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/* Copyright (C) 2010 Texas Instruments Incorporated - http://www.ti.com/
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* ALL RIGHTS RESERVED */
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#include "hw_psc_OMAPL138.h"
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#include "soc_OMAPL138.h"
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#include "interrupt.h"
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#include "evmOMAPL138.h"
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#include "hw_types.h"
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#include "uart.h"
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#include "psc.h"
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/****************************************************************************/
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/* LOCAL FUNCTION PROTOTYPES */
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/****************************************************************************/
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static void ConfigureIntUART(void);
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static void SetupInt(void);
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static void UARTIsr(void);
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/****************************************************************************/
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/* GLOBAL VARIABLES */
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/****************************************************************************/
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char txArray[] = "StarterWare UART echo application\n\r";
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/****************************************************************************/
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/* LOCAL FUNCTION DEFINITIONS */
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/****************************************************************************/
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int main(void)
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{
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unsigned int intFlags = 0;
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unsigned int config = 0;
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/* Enabling the PSC for UART2.*/
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PSCModuleControl(SOC_PSC_1_REGS, HW_PSC_UART1, PSC_POWERDOMAIN_ALWAYS_ON,
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PSC_MDCTL_NEXT_ENABLE);
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/* Setup PINMUX */
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UARTPinMuxSetup(1, FALSE);
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/* Enabling the transmitter and receiver*/
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UARTEnable(SOC_UART_1_REGS);
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/* 1 stopbit, 8-bit character, no parity */
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config = UART_WORDL_8BITS;
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/* Configuring the UART parameters*/
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UARTConfigSetExpClk(SOC_UART_1_REGS, SOC_UART_1_MODULE_FREQ,
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BAUD_115200, config,
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UART_OVER_SAMP_RATE_16);
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/* Enabling the FIFO and flushing the Tx and Rx FIFOs.*/
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UARTFIFOEnable(SOC_UART_1_REGS);
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/* Setting the UART Receiver Trigger Level*/
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UARTFIFOLevelSet(SOC_UART_1_REGS, UART_RX_TRIG_LEVEL_1);
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/*
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** Enable AINTC to handle interrupts. Also enable IRQ interrupt in ARM
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** processor.
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*/
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SetupInt();
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/* Configure AINTC to receive and handle UART interrupts. */
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ConfigureIntUART();
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/* Preparing the 'intFlags' variable to be passed as an argument.*/
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intFlags |= (UART_INT_LINE_STAT | \
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UART_INT_TX_EMPTY | \
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UART_INT_RXDATA_CTI);
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/* Enable the Interrupts in UART.*/
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UARTIntEnable(SOC_UART_1_REGS, intFlags);
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while(1);
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}
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/*
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** \brief Interrupt Service Routine(ISR) to be executed on UART interrupts.
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** Depending on the source of interrupt, this
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** 1> writes to the serial communication console, or
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** 2> reads from the serial communication console, or
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** 3> reads the byte in RBR if receiver line error has occured.
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*/
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static void UARTIsr()
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{
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static unsigned int length = sizeof(txArray);
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static unsigned int count = 0;
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unsigned char rxData = 0;
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unsigned int int_id = 0;
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/* This determines the cause of UART1 interrupt.*/
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int_id = UARTIntStatus(SOC_UART_1_REGS);
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#ifdef _TMS320C6X
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// Clear UART1 system interrupt in DSPINTC
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IntEventClear(SYS_INT_UART1_INT);
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#else
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/* Clears the system interrupt status of UART1 in AINTC. */
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IntSystemStatusClear(SYS_INT_UARTINT1);
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#endif
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/* Checked if the cause is transmitter empty condition.*/
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if(UART_INTID_TX_EMPTY == int_id)
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{
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if(0 < length)
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{
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/* Write a byte into the THR if THR is free. */
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UARTCharPutNonBlocking(SOC_UART_1_REGS, txArray[count]);
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length--;
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count++;
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}
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if(0 == length)
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{
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/* Disable the Transmitter interrupt in UART.*/
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UARTIntDisable(SOC_UART_1_REGS, UART_INT_TX_EMPTY);
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}
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}
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/* Check if the cause is receiver data condition.*/
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if(UART_INTID_RX_DATA == int_id)
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{
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rxData = UARTCharGetNonBlocking(SOC_UART_1_REGS);
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UARTCharPutNonBlocking(SOC_UART_1_REGS, rxData);
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}
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/* Check if the cause is receiver line error condition.*/
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if(UART_INTID_RX_LINE_STAT == int_id)
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{
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while(UARTRxErrorGet(SOC_UART_1_REGS))
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{
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/* Read a byte from the RBR if RBR has data.*/
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UARTCharGetNonBlocking(SOC_UART_1_REGS);
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}
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}
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return;
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}
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/*
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** \brief This function invokes necessary functions to configure the ARM
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** processor and ARM Interrupt Controller(AINTC) to receive and
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** handle interrupts.
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*/
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static void SetupInt(void)
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{
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#ifdef _TMS320C6X
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// Initialize the DSP INTC
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IntDSPINTCInit();
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// Enable DSP interrupts globally
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IntGlobalEnable();
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#else
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/* Initialize the ARM Interrupt Controller(AINTC). */
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IntAINTCInit();
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/* Enable IRQ in CPSR.*/
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IntMasterIRQEnable();
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/* Enable the interrupts in GER of AINTC.*/
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IntGlobalEnable();
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/* Enable the interrupts in HIER of AINTC.*/
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IntIRQEnable();
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#endif
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}
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/*
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** \brief This function configures the AINTC to receive UART interrupts.
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*/
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static void ConfigureIntUART(void)
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{
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#ifdef _TMS320C6X
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IntRegister(C674X_MASK_INT4, UARTIsr);
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IntEventMap(C674X_MASK_INT4, SYS_INT_UART2_INT);
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IntEnable(C674X_MASK_INT4);
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#else
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/* Registers the UARTIsr in the Interrupt Vector Table of AINTC. */
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IntRegister(SYS_INT_UARTINT1, UARTIsr);
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/* Map the channel number 2 of AINTC to UART1 system interrupt. */
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IntChannelSet(SYS_INT_UARTINT1, 1);
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IntSystemEnable(SYS_INT_UARTINT1);
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#endif
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}
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/****************************END OF FILE*************************************/
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