mirror of
https://github.com/FreeRTOS/FreeRTOS-Kernel.git
synced 2025-08-19 09:38:32 -04:00
Start to remove unnecessary 'signed char *' casts from strings that are now just plain char * types.
This commit is contained in:
parent
b4116a7c7d
commit
da93f1fc4b
261 changed files with 2822 additions and 2815 deletions
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@ -501,7 +501,7 @@ const unsigned char ucMACAddress[6] =
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#endif
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/* Create the task that handles the EMAC. */
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xTaskCreate( ethernetif_input, ( signed char * ) "ETH_INT", configETHERNET_INPUT_TASK_STACK_SIZE, (void *)netif, configETHERNET_INPUT_TASK_PRIORITY, &xEthIntTask );
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xTaskCreate( ethernetif_input, "ETH_INT", configETHERNET_INPUT_TASK_STACK_SIZE, (void *)netif, configETHERNET_INPUT_TASK_PRIORITY, &xEthIntTask );
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fec_irq_enable();
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MCF_FEC_ECR = MCF_FEC_ECR_ETHER_EN;
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@ -131,7 +131,7 @@ sys_arch_unprotect( sys_prot_t pval )
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*/
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void
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sys_assert( const char *msg )
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{
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{
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/*FSL:only needed for debugging
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printf(msg);
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printf("\n\r");
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@ -204,7 +204,7 @@ sys_thread_new(char *name, void ( *thread ) ( void *arg ), void *arg, int /*size
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THREAD_INIT( p );
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/* Now q points to a free element in the list. */
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if( xTaskCreate( thread, (const signed char *const)name, stacksize, arg, prio, &p->pid ) == pdPASS )
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if( xTaskCreate( thread, name, stacksize, arg, prio, &p->pid ) == pdPASS )
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{
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thread_hdl = p;
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}
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@ -257,7 +257,7 @@ sys_arch_thread_remove( sys_thread_t hdl )
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vPortFree( toremove );
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}
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}
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/* We are done with accessing the shared datastructure. Release the
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/* We are done with accessing the shared datastructure. Release the
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* resources.
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*/
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vPortExitCritical( );
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@ -489,7 +489,7 @@ sys_mbox_post( sys_mbox_t mbox, void *data )
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}
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/*FSL*/
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/*
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/*
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*Try to post the "msg" to the mailbox. Returns ERR_MEM if this one
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*is full, else, ERR_OK if the "msg" is posted.
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*/
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@ -55,9 +55,9 @@ static u16_t s_nextthread = 0;
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sys_mbox_t sys_mbox_new(int size)
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{
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xQueueHandle mbox;
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( void ) size;
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mbox = xQueueCreate( archMESG_QUEUE_LENGTH, sizeof( void * ) );
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#if SYS_STATS
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@ -85,7 +85,7 @@ void sys_mbox_free(sys_mbox_t mbox)
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#if SYS_STATS
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lwip_stats.sys.mbox.err++;
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#endif /* SYS_STATS */
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// TODO notify the user of failure.
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}
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@ -117,11 +117,11 @@ err_t result;
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else {
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// could not post, queue must be full
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result = ERR_MEM;
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#if SYS_STATS
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lwip_stats.sys.mbox.err++;
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#endif /* SYS_STATS */
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}
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return result;
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@ -154,20 +154,20 @@ portTickType StartTime, EndTime, Elapsed;
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{
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msg = &dummyptr;
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}
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if ( timeout != 0 )
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{
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if ( pdTRUE == xQueueReceive( mbox, &(*msg), timeout / portTICK_RATE_MS ) )
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{
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EndTime = xTaskGetTickCount();
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Elapsed = (EndTime - StartTime) * portTICK_RATE_MS;
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return ( Elapsed );
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}
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else // timed out blocking for message
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{
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*msg = NULL;
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return SYS_ARCH_TIMEOUT;
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}
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}
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@ -176,8 +176,8 @@ portTickType StartTime, EndTime, Elapsed;
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while( pdTRUE != xQueueReceive( mbox, &(*msg), portMAX_DELAY ) ){} // time is arbitrary
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EndTime = xTaskGetTickCount();
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Elapsed = (EndTime - StartTime) * portTICK_RATE_MS;
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return ( Elapsed ); // return time blocked TODO test
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return ( Elapsed ); // return time blocked TODO test
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}
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}
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@ -213,17 +213,17 @@ sys_sem_t sys_sem_new(u8_t count)
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xSemaphoreHandle xSemaphore;
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vSemaphoreCreateBinary( xSemaphore );
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if( xSemaphore == NULL )
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{
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#if SYS_STATS
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++lwip_stats.sys.sem.err;
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#endif /* SYS_STATS */
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return SYS_SEM_NULL; // TODO need assert
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}
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if(count == 0) // Means it can't be taken
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{
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xSemaphoreTake(xSemaphore,1);
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@ -235,7 +235,7 @@ sys_sem_t sys_sem_new(u8_t count)
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lwip_stats.sys.sem.max = lwip_stats.sys.sem.used;
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}
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#endif /* SYS_STATS */
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return xSemaphore;
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}
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@ -267,8 +267,8 @@ portTickType StartTime, EndTime, Elapsed;
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{
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EndTime = xTaskGetTickCount();
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Elapsed = (EndTime - StartTime) * portTICK_RATE_MS;
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return (Elapsed); // return time blocked TODO test
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return (Elapsed); // return time blocked TODO test
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}
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else
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{
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@ -281,8 +281,8 @@ portTickType StartTime, EndTime, Elapsed;
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EndTime = xTaskGetTickCount();
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Elapsed = (EndTime - StartTime) * portTICK_RATE_MS;
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return ( Elapsed ); // return time blocked
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return ( Elapsed ); // return time blocked
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}
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}
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@ -300,7 +300,7 @@ void sys_sem_free(sys_sem_t sem)
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#if SYS_STATS
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--lwip_stats.sys.sem.used;
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#endif /* SYS_STATS */
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vQueueDelete( sem );
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}
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@ -372,7 +372,7 @@ int result;
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if ( s_nextthread < SYS_THREAD_MAX )
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{
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result = xTaskCreate( thread, ( signed portCHAR * ) name, stacksize, arg, prio, &CreatedTask );
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result = xTaskCreate( thread, name, stacksize, arg, prio, &CreatedTask );
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// For each task created, store the task handle (pid) in the timers array.
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// This scheme doesn't allow for threads to be deleted
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@ -428,7 +428,7 @@ void sys_arch_unprotect(sys_prot_t pval)
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* Prints an assertion messages and aborts execution.
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*/
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void sys_assert( const char *msg )
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{
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{
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( void ) msg;
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/*FSL:only needed for debugging
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printf(msg);
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@ -134,7 +134,7 @@ static void low_level_init(struct netif *netif)
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netif->flags |= NETIF_FLAG_LINK_UP;
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/* Create the task that handles the EMAC. */
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xTaskCreate( ethernetif_input, ( signed portCHAR * ) "ETH_INT", netifINTERFACE_TASK_STACK_SIZE, (void *)netif, netifINTERFACE_TASK_PRIORITY, NULL );
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xTaskCreate( ethernetif_input, "ETH_INT", netifINTERFACE_TASK_STACK_SIZE, (void *)netif, netifINTERFACE_TASK_PRIORITY, NULL );
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}
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@ -393,16 +393,16 @@ err_t xReturn = ERR_MEM;
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*pxMutex = xSemaphoreCreateMutex();
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if( *pxMutex != NULL )
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if( *pxMutex != NULL )
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{
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xReturn = ERR_OK;
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SYS_STATS_INC_USED( mutex );
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}
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else
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}
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else
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{
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SYS_STATS_INC( mutex.err );
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}
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return xReturn;
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}
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@ -505,7 +505,7 @@ xTaskHandle xCreatedTask;
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portBASE_TYPE xResult;
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sys_thread_t xReturn;
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xResult = xTaskCreate( pxThread, ( signed char * ) pcName, iStackSize, pvArg, iPriority, &xCreatedTask );
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xResult = xTaskCreate( pxThread, pcName, iStackSize, pvArg, iPriority, &xCreatedTask );
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if( xResult == pdPASS )
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{
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@ -327,7 +327,7 @@ unsigned long ulNetMask;
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/* Create a task that simulates an interrupt in a real system. This will
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block waiting for packets, then send a message to the uIP task when data
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is available. */
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xTaskCreate( prvInterruptSimulator, ( signed char * ) "MAC_ISR", configMINIMAL_STACK_SIZE, NULL, ( configuIP_TASK_PRIORITY - 1 ), NULL );
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xTaskCreate( prvInterruptSimulator, "MAC_ISR", configMINIMAL_STACK_SIZE, NULL, ( configuIP_TASK_PRIORITY - 1 ), NULL );
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}
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/*-----------------------------------------------------------*/
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@ -648,6 +648,6 @@ unsigned long ulNetMask;
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/* Create a task that simulates an interrupt in a real system. This will
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block waiting for packets, then send a message to the uIP task when data
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is available. */
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xTaskCreate( prvInterruptSimulator, ( signed char * ) "MAC_ISR", configMINIMAL_STACK_SIZE, NULL, configMAC_ISR_SIMULATOR_PRIORITY, NULL );
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xTaskCreate( prvInterruptSimulator, "MAC_ISR", configMINIMAL_STACK_SIZE, NULL, configMAC_ISR_SIMULATOR_PRIORITY, NULL );
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}
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@ -143,7 +143,7 @@ err_t xReturn;
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xReturn = ERR_OK;
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}
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else
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{
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{
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/* The queue was already full. */
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xReturn = ERR_MEM;
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SYS_STATS_INC( mbox.err );
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@ -199,7 +199,7 @@ unsigned long ulReturn;
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ulReturn = xElapsed;
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}
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else
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else
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{
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/* Timed out. */
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*ppvBuffer = NULL;
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@ -359,22 +359,22 @@ unsigned long ulReturn;
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/** Create a new mutex
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* @param mutex pointer to the mutex to create
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* @return a new mutex */
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err_t sys_mutex_new( sys_mutex_t *pxMutex )
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err_t sys_mutex_new( sys_mutex_t *pxMutex )
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{
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err_t xReturn = ERR_MEM;
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*pxMutex = xSemaphoreCreateMutex();
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if( *pxMutex != NULL )
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if( *pxMutex != NULL )
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{
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xReturn = ERR_OK;
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SYS_STATS_INC_USED( mutex );
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}
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else
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}
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else
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{
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SYS_STATS_INC( mutex.err );
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}
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return xReturn;
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}
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portBASE_TYPE xResult;
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sys_thread_t xReturn;
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xResult = xTaskCreate( pxThread, ( signed char * ) pcName, iStackSize, pvArg, iPriority, &xCreatedTask );
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xResult = xTaskCreate( pxThread, pcName, iStackSize, pvArg, iPriority, &xCreatedTask );
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if( xResult == pdPASS )
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{
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