* Implement mutex support for target_lo * Kill application if test hangs * Use mutex in furi_take and furi_give * Give furi application enough time to finish * remove app obj after build * enable counting semaphores Co-authored-by: aanper <mail@s3f.ru>
		
			
				
	
	
		
			198 lines
		
	
	
		
			4.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			198 lines
		
	
	
		
			4.8 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#include "cmsis_os.h"
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#include <unistd.h>
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#include <stdio.h>
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#include <pthread.h>
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#include <errno.h>
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#include <signal.h>
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#include <sys/types.h>
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#include <sys/ipc.h>
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#include <sys/msg.h>
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void osDelay(uint32_t ms) {
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    // printf("[DELAY] %d ms\n", ms);
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    usleep(ms * 1000);
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}
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// temporary struct to pass function ptr and param to wrapper
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typedef struct {
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    TaskFunction_t func;
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    void * param;
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} PthreadTask;
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void* pthread_wrapper(void* p) {
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    pthread_setcanceltype(PTHREAD_CANCEL_ASYNCHRONOUS, 0x00);
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    pthread_setcancelstate(PTHREAD_CANCEL_ENABLE, 0x00);
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    PthreadTask* task = (PthreadTask*)p;
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    task->func(task->param);
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    return NULL;
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}
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TaskHandle_t xTaskCreateStatic(
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    TaskFunction_t pxTaskCode,
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    const char * const pcName,
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    const uint32_t ulStackDepth,
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    void * const pvParameters,
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    UBaseType_t uxPriority,
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    StackType_t * const puxStackBuffer,
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    StaticTask_t * const pxTaskBuffer
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) {
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    TaskHandle_t thread = malloc(sizeof(TaskHandle_t));
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    PthreadTask* task = malloc(sizeof(PthreadTask));
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    task->func = pxTaskCode;
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    task->param = pvParameters;
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    pthread_create(thread, NULL, pthread_wrapper, (void*)task);
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    return thread;
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}
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void vTaskDelete(TaskHandle_t xTask) {
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    if(xTask == NULL) {
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        // kill itself
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        pthread_exit(NULL);
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    }
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    // maybe thread already join
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    if (pthread_kill(*xTask, 0) == ESRCH) return;
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    // send thread_child signal to stop it сигнал, который ее завершает
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    pthread_cancel(*xTask);
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    // wait for join and close descriptor
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    pthread_join(*xTask, 0x00);
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    // cleanup thread handler
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    *xTask = 0;
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}
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TaskHandle_t xTaskGetCurrentTaskHandle(void) {
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    TaskHandle_t thread = malloc(sizeof(TaskHandle_t));
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    *thread = pthread_self();
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    return thread;
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}
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bool task_equal(TaskHandle_t a, TaskHandle_t b) {
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    if(a == NULL || b == NULL) return false;
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    return pthread_equal(*a, *b) != 0;
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}
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BaseType_t xQueueSend(
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    QueueHandle_t xQueue, const void * pvItemToQueue, TickType_t xTicksToWait
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) {
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    // TODO: add implementation
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    return pdTRUE;
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}
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BaseType_t xQueueReceive(
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    QueueHandle_t xQueue, void *pvBuffer, TickType_t xTicksToWait
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) {
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    // TODO: add implementation
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    osDelay(100);
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    return pdFALSE;
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}
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static uint32_t queue_global_id = 0;
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QueueHandle_t xQueueCreateStatic(
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    UBaseType_t uxQueueLength,
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    UBaseType_t uxItemSize,
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    uint8_t* pucQueueStorageBuffer,
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    StaticQueue_t *pxQueueBuffer
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) {
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    // TODO: check this implementation
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    int* msgid = malloc(sizeof(int));
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    key_t key = queue_global_id;
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    queue_global_id++;
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    *msgid = msgget(key, IPC_CREAT);
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    return (QueueHandle_t)msgid;
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}
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SemaphoreHandle_t xSemaphoreCreateCountingStatic(
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    UBaseType_t uxMaxCount,
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    UBaseType_t uxInitialCount,
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    StaticSemaphore_t* pxSemaphoreBuffer
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) {
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    pxSemaphoreBuffer->type = SemaphoreTypeCounting;
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    pxSemaphoreBuffer->take_counter = 0;
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    pxSemaphoreBuffer->give_counter = 0;
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    return pxSemaphoreBuffer;
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}
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SemaphoreHandle_t xSemaphoreCreateMutexStatic(StaticSemaphore_t* pxMutexBuffer) {
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    pxMutexBuffer->type = SemaphoreTypeMutex;
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    pthread_mutex_init(&pxMutexBuffer->mutex, NULL);
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    pxMutexBuffer->take_counter = 0;
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    pxMutexBuffer->give_counter = 0;
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    return pxMutexBuffer;
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}
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BaseType_t xSemaphoreTake(volatile SemaphoreHandle_t xSemaphore, TickType_t xTicksToWait) {
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    if(xSemaphore == NULL) return pdFALSE;
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    if (xSemaphore->type == SemaphoreTypeMutex) {
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        if (xTicksToWait == portMAX_DELAY) {
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            if (pthread_mutex_lock(&xSemaphore->mutex) == 0) {
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                return pdTRUE;
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            } else {
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                return pdFALSE;
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            }
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        } else {
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            TickType_t ticks = xTicksToWait;
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            while (ticks >= 0) {
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                if (pthread_mutex_trylock(&xSemaphore->mutex) == 0) {
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                    return pdTRUE;
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                }
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                if (ticks > 0) {
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                    osDelay(1);
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                }
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                ticks--;
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            }
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            return pdFALSE;
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        }
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    }
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    // TODO: need to add inter-process sync or use POSIX primitives
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    xSemaphore->take_counter++;
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    TickType_t ticks = xTicksToWait;
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    while(
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        xSemaphore->take_counter != xSemaphore->give_counter
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        && (ticks > 0 || xTicksToWait == portMAX_DELAY)
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    ) {
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        osDelay(1);
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        ticks--;
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    }
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    if(xTicksToWait != 0 && ticks == 0) return pdFALSE;
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    return pdTRUE;
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}
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BaseType_t xSemaphoreGive(SemaphoreHandle_t xSemaphore) {
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    if(xSemaphore == NULL) return pdFALSE;
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    if (xSemaphore->type == SemaphoreTypeMutex) {
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        if (pthread_mutex_unlock(&xSemaphore->mutex) == 0) {
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            return pdTRUE;
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        } else {
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            return pdFALSE;
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        }
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    }
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    // TODO: need to add inter-process sync or use POSIX primitives
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    xSemaphore->give_counter++;
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    return pdTRUE;
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} |