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Add FreeRTOS-Plus directory.
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478
FreeRTOS/Demo/CORTEX_LM3S316_IAR/main.c
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478
FreeRTOS/Demo/CORTEX_LM3S316_IAR/main.c
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/*
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FreeRTOS V7.1.1 - Copyright (C) 2012 Real Time Engineers Ltd.
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***************************************************************************
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* *
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||||
* FreeRTOS tutorial books are available in pdf and paperback. *
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* Complete, revised, and edited pdf reference manuals are also *
|
||||
* available. *
|
||||
* *
|
||||
* Purchasing FreeRTOS documentation will not only help you, by *
|
||||
* ensuring you get running as quickly as possible and with an *
|
||||
* in-depth knowledge of how to use FreeRTOS, it will also help *
|
||||
* the FreeRTOS project to continue with its mission of providing *
|
||||
* professional grade, cross platform, de facto standard solutions *
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* for microcontrollers - completely free of charge! *
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* *
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* >>> See http://www.FreeRTOS.org/Documentation for details. <<< *
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* *
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* Thank you for using FreeRTOS, and thank you for your support! *
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||||
* *
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||||
***************************************************************************
|
||||
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This file is part of the FreeRTOS distribution.
|
||||
|
||||
FreeRTOS is free software; you can redistribute it and/or modify it under
|
||||
the terms of the GNU General Public License (version 2) as published by the
|
||||
Free Software Foundation AND MODIFIED BY the FreeRTOS exception.
|
||||
>>>NOTE<<< The modification to the GPL is included to allow you to
|
||||
distribute a combined work that includes FreeRTOS without being obliged to
|
||||
provide the source code for proprietary components outside of the FreeRTOS
|
||||
kernel. FreeRTOS is distributed in the hope that it will be useful, but
|
||||
WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
|
||||
or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
|
||||
more details. You should have received a copy of the GNU General Public
|
||||
License and the FreeRTOS license exception along with FreeRTOS; if not it
|
||||
can be viewed here: http://www.freertos.org/a00114.html and also obtained
|
||||
by writing to Richard Barry, contact details for whom are available on the
|
||||
FreeRTOS WEB site.
|
||||
|
||||
1 tab == 4 spaces!
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||||
|
||||
***************************************************************************
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* *
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* Having a problem? Start by reading the FAQ "My application does *
|
||||
* not run, what could be wrong? *
|
||||
* *
|
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* http://www.FreeRTOS.org/FAQHelp.html *
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* *
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***************************************************************************
|
||||
|
||||
|
||||
http://www.FreeRTOS.org - Documentation, training, latest information,
|
||||
license and contact details.
|
||||
|
||||
http://www.FreeRTOS.org/plus - A selection of FreeRTOS ecosystem products,
|
||||
including FreeRTOS+Trace - an indispensable productivity tool.
|
||||
|
||||
Real Time Engineers ltd license FreeRTOS to High Integrity Systems, who sell
|
||||
the code with commercial support, indemnification, and middleware, under
|
||||
the OpenRTOS brand: http://www.OpenRTOS.com. High Integrity Systems also
|
||||
provide a safety engineered and independently SIL3 certified version under
|
||||
the SafeRTOS brand: http://www.SafeRTOS.com.
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*/
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/*
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* This demo application creates eight co-routines and four tasks (five
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* including the idle task). The co-routines execute as part of the idle task
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* hook. The application is limited in size to allow its compilation using
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* the KickStart version of the IAR compiler.
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*
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* Six of the created co-routines are the standard 'co-routine flash'
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* co-routines contained within the Demo/Common/Minimal/crflash.c file and
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* documented on the FreeRTOS.org WEB site.
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*
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* The 'LCD Task' waits on a message queue for messages informing it what and
|
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* where to display text. This is the only task that accesses the LCD
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* so mutual exclusion is guaranteed.
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*
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* The 'LCD Message Task' periodically sends strings to the LCD Task using
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* the message queue. The strings are rotated to form a short message and
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* are written to the top row of the LCD.
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*
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* The 'ADC Co-routine' periodically reads the ADC input that is connected to
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* the light sensor, forms a short message from the value, and then sends this
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* message to the LCD Task using the same message queue. The ADC readings are
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* displayed on the bottom row of the LCD.
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*
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* The eighth co-routine and final task control the transmission and reception
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* of a string to UART 0. The co-routine periodically sends the first
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* character of the string to the UART, with the UART's TxEnd interrupt being
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* used to transmit the remaining characters. The UART's RxEnd interrupt
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* receives the characters and places them on a queue to be processed by the
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* 'COMs Rx' task. An error is latched should an unexpected character be
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* received, or any character be received out of sequence.
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*
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* A loopback connector is required to ensure that each character transmitted
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* on the UART is also received on the same UART. For test purposes the UART
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* FIFO's are not utalised in order to maximise the interrupt overhead. Also
|
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* a pseudo random interval is used between the start of each transmission in
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* order that the resultant interrupts are more randomly distributed and
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* therefore more likely to highlight any problems.
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*
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* The flash co-routines control LED's zero to four. LED five is toggled each
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* time the string is transmitted on the UART. LED six is toggled each time
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* the string is CORRECTLY received on the UART. LED seven is latched on
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* should an error be detected in any task or co-routine.
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*
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* In addition the idle task makes repetitive calls to
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* vSetAndCheckRegisters(). This simply loads the general purpose registers
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* with a known value, then checks each register to ensure the held value is
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* still correct. As a low priority task this checking routine is likely to
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* get repeatedly swapped in and out. A register being found to contain an
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* incorrect value is therefore indicative of an error in the task switching
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* mechanism.
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*
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*/
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/* standard include files. */
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#include <stdio.h>
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/* Scheduler include files. */
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#include "FreeRTOS.h"
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#include "task.h"
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#include "queue.h"
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#include "croutine.h"
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/* Demo application include files. */
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#include "partest.h"
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#include "crflash.h"
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#include "commstest.h"
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/* Library include files. */
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#include "DriverLib.h"
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/* The time to delay between writing each character to the LCD. */
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#define mainCHAR_WRITE_DELAY ( 2 / portTICK_RATE_MS )
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/* The time to delay between writing each string to the LCD. */
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#define mainSTRING_WRITE_DELAY ( 400 / portTICK_RATE_MS )
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#define mainADC_DELAY ( 200 / portTICK_RATE_MS )
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/* The number of flash co-routines to create. */
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#define mainNUM_FLASH_CO_ROUTINES ( 5 )
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/* The length of the queue used to send messages to the LCD task. */
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#define mainLCD_QUEUE_LEN ( 3 )
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/* The priority of the co-routine used to initiate the transmission of the
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string on UART 0. */
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#define mainTX_CO_ROUTINE_PRIORITY ( 1 )
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#define mainADC_CO_ROUTINE_PRIORITY ( 2 )
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/* Only one of each co-routine is created so its index is not important. */
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#define mainTX_CO_ROUTINE_INDEX ( 0 )
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#define mainADC_CO_ROUTINE_INDEX ( 0 )
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/* The task priorities. */
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#define mainLCD_TASK_PRIORITY ( tskIDLE_PRIORITY + 1 )
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#define mainMSG_TASK_PRIORITY ( mainLCD_TASK_PRIORITY - 1 )
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#define mainCOMMS_RX_TASK_PRIORITY ( tskIDLE_PRIORITY + 1 )
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/* The LCD had two rows. */
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#define mainTOP_ROW 0
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#define mainBOTTOM_ROW 1
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/* Dimension for the buffer into which the ADC value string is written. */
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#define mainMAX_ADC_STRING_LEN 20
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/* The LED that is lit should an error be detected in any of the tasks or
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co-routines. */
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#define mainFAIL_LED ( 7 )
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/*-----------------------------------------------------------*/
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/*
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* The task that displays text on the LCD.
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*/
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static void prvLCDTask( void * pvParameters );
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/*
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* The task that sends messages to be displayed on the top row of the LCD.
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*/
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static void prvLCDMessageTask( void * pvParameters );
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/*
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* The co-routine that reads the ADC and sends messages for display on the
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* bottom row of the LCD.
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*/
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static void prvADCCoRoutine( xCoRoutineHandle xHandle, unsigned portBASE_TYPE uxIndex );
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/*
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* Function to simply set a known value into the general purpose registers
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* then read them back to ensure they remain set correctly. An incorrect value
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* being indicative of an error in the task switching mechanism.
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*/
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extern void vSetAndCheckRegisters( void );
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/*
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* Latch the LED that indicates that an error has occurred.
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*/
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void vSetErrorLED( void );
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/*
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* Thread safe write to the PDC.
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*/
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static void prvPDCWrite( char cAddress, char cData );
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/*
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* Sets up the hardware used by the demo.
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*/
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static void prvSetupHardware( void );
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/*-----------------------------------------------------------*/
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/* The structure that is passed on the LCD message queue. */
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typedef struct
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{
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char **ppcMessageToDisplay; /*<< Points to a char* pointing to the message to display. */
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portBASE_TYPE xRow; /*<< The row on which the message should be displayed. */
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} xLCDMessage;
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/* Error flag set to pdFAIL if an error is encountered in the tasks/co-routines
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defined within this file. */
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unsigned portBASE_TYPE uxErrorStatus = pdPASS;
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/* The queue used to transmit messages to the LCD task. */
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static xQueueHandle xLCDQueue;
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/*-----------------------------------------------------------*/
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/*
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* Setup the hardware, create the tasks/co-routines, then start the scheduler.
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*/
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void main( void )
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{
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/* Create the queue used by tasks wanting to write to the LCD. */
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xLCDQueue = xQueueCreate( mainLCD_QUEUE_LEN, sizeof( xLCDMessage ) );
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/* Setup the ports used by the demo and the clock. */
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prvSetupHardware();
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/* Create the co-routines that flash the LED's. */
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vStartFlashCoRoutines( mainNUM_FLASH_CO_ROUTINES );
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/* Create the co-routine that initiates the transmission of characters
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on the UART and the task that receives them, as described at the top of
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this file. */
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xCoRoutineCreate( vSerialTxCoRoutine, mainTX_CO_ROUTINE_PRIORITY, mainTX_CO_ROUTINE_INDEX );
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xTaskCreate( vCommsRxTask, "CMS", configMINIMAL_STACK_SIZE, NULL, mainCOMMS_RX_TASK_PRIORITY, NULL );
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/* Create the task that waits for messages to display on the LCD, plus the
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task and co-routine that send messages for display (as described at the top
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of this file. */
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xTaskCreate( prvLCDTask, "LCD", configMINIMAL_STACK_SIZE, ( void * ) &xLCDQueue, mainLCD_TASK_PRIORITY, NULL );
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xTaskCreate( prvLCDMessageTask, "MSG", configMINIMAL_STACK_SIZE, ( void * ) &xLCDQueue, mainMSG_TASK_PRIORITY, NULL );
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xCoRoutineCreate( prvADCCoRoutine, mainADC_CO_ROUTINE_PRIORITY, mainADC_CO_ROUTINE_INDEX );
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/* Start the scheduler running the tasks and co-routines just created. */
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vTaskStartScheduler();
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/* Should not get here unless we did not have enough memory to start the
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scheduler. */
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for( ;; );
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}
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/*-----------------------------------------------------------*/
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static void prvLCDMessageTask( void * pvParameters )
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{
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/* The strings that are written to the LCD. */
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char *pcStringsToDisplay[] = {
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"IAR ",
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"Stellaris ",
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"Demo ",
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"www.FreeRTOS.org",
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""
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};
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xQueueHandle *pxLCDQueue;
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xLCDMessage xMessageToSend;
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portBASE_TYPE xIndex = 0;
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/* To test the parameter passing mechanism, the queue on which messages are
|
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posted is passed in as a parameter even though it is available as a file
|
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scope variable anyway. */
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pxLCDQueue = ( xQueueHandle * ) pvParameters;
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for( ;; )
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{
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/* Wait until it is time to move onto the next string. */
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vTaskDelay( mainSTRING_WRITE_DELAY );
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/* Create the message object to send to the LCD task. */
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xMessageToSend.ppcMessageToDisplay = &pcStringsToDisplay[ xIndex ];
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xMessageToSend.xRow = mainTOP_ROW;
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/* Post the message to be displayed. */
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if( !xQueueSend( *pxLCDQueue, ( void * ) &xMessageToSend, 0 ) )
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{
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uxErrorStatus = pdFAIL;
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}
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|
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/* Move onto the next message, wrapping when necessary. */
|
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xIndex++;
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if( *( pcStringsToDisplay[ xIndex ] ) == 0x00 )
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{
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xIndex = 0;
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|
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/* Delay longer before going back to the start of the messages. */
|
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vTaskDelay( mainSTRING_WRITE_DELAY * 2 );
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}
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}
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}
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/*-----------------------------------------------------------*/
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void prvLCDTask( void * pvParameters )
|
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{
|
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unsigned portBASE_TYPE uxIndex;
|
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xQueueHandle *pxLCDQueue;
|
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xLCDMessage xReceivedMessage;
|
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char *pcString;
|
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const unsigned char ucCFGData[] = {
|
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0x30, /* Set data bus to 8-bits. */
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0x30,
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0x30,
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0x3C, /* Number of lines/font. */
|
||||
0x08, /* Display off. */
|
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0x01, /* Display clear. */
|
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0x06, /* Entry mode [cursor dir][shift]. */
|
||||
0x0C /* Display on [display on][curson on][blinking on]. */
|
||||
};
|
||||
|
||||
/* To test the parameter passing mechanism, the queue on which messages are
|
||||
received is passed in as a parameter even though it is available as a file
|
||||
scope variable anyway. */
|
||||
pxLCDQueue = ( xQueueHandle * ) pvParameters;
|
||||
|
||||
/* Configure the LCD. */
|
||||
uxIndex = 0;
|
||||
while( uxIndex < sizeof( ucCFGData ) )
|
||||
{
|
||||
prvPDCWrite( PDC_LCD_CSR, ucCFGData[ uxIndex ] );
|
||||
uxIndex++;
|
||||
vTaskDelay( mainCHAR_WRITE_DELAY );
|
||||
}
|
||||
|
||||
/* Turn the LCD Backlight on. */
|
||||
prvPDCWrite( PDC_CSR, 0x01 );
|
||||
|
||||
/* Clear display. */
|
||||
vTaskDelay( mainCHAR_WRITE_DELAY );
|
||||
prvPDCWrite( PDC_LCD_CSR, LCD_CLEAR );
|
||||
|
||||
uxIndex = 0;
|
||||
for( ;; )
|
||||
{
|
||||
/* Wait for a message to arrive. */
|
||||
if( xQueueReceive( *pxLCDQueue, &xReceivedMessage, portMAX_DELAY ) )
|
||||
{
|
||||
/* Which row does the received message say to write to? */
|
||||
PDCLCDSetPos( 0, xReceivedMessage.xRow );
|
||||
|
||||
/* Where is the string we are going to display? */
|
||||
pcString = *xReceivedMessage.ppcMessageToDisplay;
|
||||
|
||||
while( *pcString )
|
||||
{
|
||||
/* Don't write out the string too quickly as LCD's are usually
|
||||
pretty slow devices. */
|
||||
vTaskDelay( mainCHAR_WRITE_DELAY );
|
||||
prvPDCWrite( PDC_LCD_RAM, *pcString );
|
||||
pcString++;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
static void prvADCCoRoutine( xCoRoutineHandle xHandle, unsigned portBASE_TYPE uxIndex )
|
||||
{
|
||||
static unsigned long ulADCValue;
|
||||
static char cMessageBuffer[ mainMAX_ADC_STRING_LEN ];
|
||||
static char *pcMessage;
|
||||
static xLCDMessage xMessageToSend;
|
||||
|
||||
/* Co-routines MUST start with a call to crSTART(). */
|
||||
crSTART( xHandle );
|
||||
|
||||
for( ;; )
|
||||
{
|
||||
/* Start an ADC conversion. */
|
||||
ADCProcessorTrigger( ADC_BASE, 0 );
|
||||
|
||||
/* Simply delay - when we unblock the result should be available */
|
||||
crDELAY( xHandle, mainADC_DELAY );
|
||||
|
||||
/* Get the ADC result. */
|
||||
ADCSequenceDataGet( ADC_BASE, 0, &ulADCValue );
|
||||
|
||||
/* Create a string with the result. */
|
||||
sprintf( cMessageBuffer, "ADC = %d ", ulADCValue );
|
||||
pcMessage = cMessageBuffer;
|
||||
|
||||
/* Configure the message we are going to send for display. */
|
||||
xMessageToSend.ppcMessageToDisplay = ( char** ) &pcMessage;
|
||||
xMessageToSend.xRow = mainBOTTOM_ROW;
|
||||
|
||||
/* Send the string to the LCD task for display. We are sending
|
||||
on a task queue so do not have the option to block. */
|
||||
if( !xQueueSend( xLCDQueue, ( void * ) &xMessageToSend, 0 ) )
|
||||
{
|
||||
uxErrorStatus = pdFAIL;
|
||||
}
|
||||
}
|
||||
|
||||
/* Co-routines MUST end with a call to crEND(). */
|
||||
crEND();
|
||||
}
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
static void prvSetupHardware( void )
|
||||
{
|
||||
/* Setup the PLL. */
|
||||
SysCtlClockSet( SYSCTL_SYSDIV_10 | SYSCTL_USE_PLL | SYSCTL_OSC_MAIN | SYSCTL_XTAL_6MHZ );
|
||||
|
||||
/* Initialise the hardware used to talk to the LCD, LED's and UART. */
|
||||
PDCInit();
|
||||
vParTestInitialise();
|
||||
vSerialInit();
|
||||
|
||||
/* The ADC is used to read the light sensor. */
|
||||
SysCtlPeripheralEnable( SYSCTL_PERIPH_ADC );
|
||||
ADCSequenceConfigure( ADC_BASE, 3, ADC_TRIGGER_PROCESSOR, 0);
|
||||
ADCSequenceStepConfigure( ADC_BASE, 0, 0, ADC_CTL_CH0 | ADC_CTL_END );
|
||||
ADCSequenceEnable( ADC_BASE, 0 );
|
||||
|
||||
}
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
static void prvPDCWrite( char cAddress, char cData )
|
||||
{
|
||||
vTaskSuspendAll();
|
||||
{
|
||||
PDCWrite( cAddress, cData );
|
||||
}
|
||||
xTaskResumeAll();
|
||||
}
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
void vSetErrorLED( void )
|
||||
{
|
||||
vParTestSetLED( mainFAIL_LED, pdTRUE );
|
||||
}
|
||||
/*-----------------------------------------------------------*/
|
||||
|
||||
void vApplicationIdleHook( void )
|
||||
{
|
||||
/* The co-routines are executed in the idle task using the idle task
|
||||
hook. */
|
||||
for( ;; )
|
||||
{
|
||||
/* Schedule the co-routines. */
|
||||
vCoRoutineSchedule();
|
||||
|
||||
/* Run the register check function between each co-routine. */
|
||||
vSetAndCheckRegisters();
|
||||
|
||||
/* See if the comms task and co-routine has found any errors. */
|
||||
if( uxGetCommsStatus() != pdPASS )
|
||||
{
|
||||
vParTestSetLED( mainFAIL_LED, pdTRUE );
|
||||
}
|
||||
}
|
||||
}
|
||||
/*-----------------------------------------------------------*/
|
Loading…
Add table
Add a link
Reference in a new issue