| /* | |
| FreeRTOS V9.0.0rc1 - Copyright (C) 2016 Real Time Engineers Ltd. | |
| All rights reserved | |
| VISIT http://www.FreeRTOS.org TO ENSURE YOU ARE USING THE LATEST VERSION. | |
| 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. Full license text is available on the following | |
| link: http://www.freertos.org/a00114.html | |
| *************************************************************************** | |
| * * | |
| * FreeRTOS provides completely free yet professionally developed, * | |
| * robust, strictly quality controlled, supported, and cross * | |
| * platform software that is more than just the market leader, it * | |
| * is the industry's de facto standard. * | |
| * * | |
| * Help yourself get started quickly while simultaneously helping * | |
| * to support the FreeRTOS project by purchasing a FreeRTOS * | |
| * tutorial book, reference manual, or both: * | |
| * http://www.FreeRTOS.org/Documentation * | |
| * * | |
| *************************************************************************** | |
| http://www.FreeRTOS.org/FAQHelp.html - Having a problem? Start by reading | |
| the FAQ page "My application does not run, what could be wrong?". Have you | |
| defined configASSERT()? | |
| http://www.FreeRTOS.org/support - In return for receiving this top quality | |
| embedded software for free we request you assist our global community by | |
| participating in the support forum. | |
| http://www.FreeRTOS.org/training - Investing in training allows your team to | |
| be as productive as possible as early as possible. Now you can receive | |
| FreeRTOS training directly from Richard Barry, CEO of Real Time Engineers | |
| Ltd, and the world's leading authority on the world's leading RTOS. | |
| http://www.FreeRTOS.org/plus - A selection of FreeRTOS ecosystem products, | |
| including FreeRTOS+Trace - an indispensable productivity tool, a DOS | |
| compatible FAT file system, and our tiny thread aware UDP/IP stack. | |
| http://www.FreeRTOS.org/labs - Where new FreeRTOS products go to incubate. | |
| Come and try FreeRTOS+TCP, our new open source TCP/IP stack for FreeRTOS. | |
| http://www.OpenRTOS.com - Real Time Engineers ltd. license FreeRTOS to High | |
| Integrity Systems ltd. to sell under the OpenRTOS brand. Low cost OpenRTOS | |
| licenses offer ticketed support, indemnification and commercial middleware. | |
| http://www.SafeRTOS.com - High Integrity Systems also provide a safety | |
| engineered and independently SIL3 certified version for use in safety and | |
| mission critical applications that require provable dependability. | |
| 1 tab == 4 spaces! | |
| */ | |
| /* | |
| * Creates one or more tasks that repeatedly perform a set of integer | |
| * calculations. The result of each run-time calculation is compared to the | |
| * known expected result - with a mismatch being indicative of an error in the | |
| * context switch mechanism. | |
| */ | |
| #include <stdlib.h> | |
| /* Scheduler include files. */ | |
| #include "FreeRTOS.h" | |
| #include "task.h" | |
| /* Demo program include files. */ | |
| #include "integer.h" | |
| /* The constants used in the calculation. */ | |
| #define intgCONST1 ( ( long ) 123 ) | |
| #define intgCONST2 ( ( long ) 234567 ) | |
| #define intgCONST3 ( ( long ) -3 ) | |
| #define intgCONST4 ( ( long ) 7 ) | |
| #define intgEXPECTED_ANSWER ( ( ( intgCONST1 + intgCONST2 ) * intgCONST3 ) / intgCONST4 ) | |
| #define intgSTACK_SIZE configMINIMAL_STACK_SIZE | |
| /* As this is the minimal version, we will only create one task. */ | |
| #define intgNUMBER_OF_TASKS ( 1 ) | |
| /* The task function. Repeatedly performs a 32 bit calculation, checking the | |
| result against the expected result. If the result is incorrect then the | |
| context switch must have caused some corruption. */ | |
| static portTASK_FUNCTION_PROTO( vCompeteingIntMathTask, pvParameters ); | |
| /* Variables that are set to true within the calculation task to indicate | |
| that the task is still executing. The check task sets the variable back to | |
| false, flagging an error if the variable is still false the next time it | |
| is called. */ | |
| static volatile BaseType_t xTaskCheck[ intgNUMBER_OF_TASKS ] = { ( BaseType_t ) pdFALSE }; | |
| /*-----------------------------------------------------------*/ | |
| void vStartIntegerMathTasks( UBaseType_t uxPriority ) | |
| { | |
| short sTask; | |
| for( sTask = 0; sTask < intgNUMBER_OF_TASKS; sTask++ ) | |
| { | |
| xTaskCreate( vCompeteingIntMathTask, "IntMath", intgSTACK_SIZE, ( void * ) &( xTaskCheck[ sTask ] ), uxPriority, ( TaskHandle_t * ) NULL ); | |
| } | |
| } | |
| /*-----------------------------------------------------------*/ | |
| static portTASK_FUNCTION( vCompeteingIntMathTask, pvParameters ) | |
| { | |
| /* These variables are all effectively set to constants so they are volatile to | |
| ensure the compiler does not just get rid of them. */ | |
| volatile long lValue; | |
| short sError = pdFALSE; | |
| volatile BaseType_t *pxTaskHasExecuted; | |
| /* Set a pointer to the variable we are going to set to true each | |
| iteration. This is also a good test of the parameter passing mechanism | |
| within each port. */ | |
| pxTaskHasExecuted = ( volatile BaseType_t * ) pvParameters; | |
| /* Keep performing a calculation and checking the result against a constant. */ | |
| for( ;; ) | |
| { | |
| /* Perform the calculation. This will store partial value in | |
| registers, resulting in a good test of the context switch mechanism. */ | |
| lValue = intgCONST1; | |
| lValue += intgCONST2; | |
| /* Yield in case cooperative scheduling is being used. */ | |
| #if configUSE_PREEMPTION == 0 | |
| { | |
| taskYIELD(); | |
| } | |
| #endif | |
| /* Finish off the calculation. */ | |
| lValue *= intgCONST3; | |
| lValue /= intgCONST4; | |
| /* If the calculation is found to be incorrect we stop setting the | |
| TaskHasExecuted variable so the check task can see an error has | |
| occurred. */ | |
| if( lValue != intgEXPECTED_ANSWER ) /*lint !e774 volatile used to prevent this being optimised out. */ | |
| { | |
| sError = pdTRUE; | |
| } | |
| if( sError == pdFALSE ) | |
| { | |
| /* We have not encountered any errors, so set the flag that show | |
| we are still executing. This will be periodically cleared by | |
| the check task. */ | |
| portENTER_CRITICAL(); | |
| *pxTaskHasExecuted = pdTRUE; | |
| portEXIT_CRITICAL(); | |
| } | |
| /* Yield in case cooperative scheduling is being used. */ | |
| #if configUSE_PREEMPTION == 0 | |
| { | |
| taskYIELD(); | |
| } | |
| #endif | |
| } | |
| } | |
| /*-----------------------------------------------------------*/ | |
| /* This is called to check that all the created tasks are still running. */ | |
| BaseType_t xAreIntegerMathsTaskStillRunning( void ) | |
| { | |
| BaseType_t xReturn = pdTRUE; | |
| short sTask; | |
| /* Check the maths tasks are still running by ensuring their check variables | |
| are still being set to true. */ | |
| for( sTask = 0; sTask < intgNUMBER_OF_TASKS; sTask++ ) | |
| { | |
| if( xTaskCheck[ sTask ] == pdFALSE ) | |
| { | |
| /* The check has not incremented so an error exists. */ | |
| xReturn = pdFALSE; | |
| } | |
| /* Reset the check variable so we can tell if it has been set by | |
| the next time around. */ | |
| xTaskCheck[ sTask ] = pdFALSE; | |
| } | |
| return xReturn; | |
| } | |