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Apdated proof for vTaskSwitchContext to rely on the proof of taskCHECK_FOR_STACK_OVERFLOW
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1 changed files with 3 additions and 15 deletions
18
tasks.c
18
tasks.c
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@ -894,6 +894,8 @@ static void prvYieldForTask( TCB_t * pxTCB,
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#if ( configUSE_PORT_OPTIMISED_TASK_SELECTION == 0 )
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static BaseType_t prvSelectHighestPriorityTask( const BaseType_t xCoreID )
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//@ requires true;
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//@ assert true;
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{
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UBaseType_t uxCurrentPriority = uxTopReadyPriority;
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BaseType_t xTaskScheduled = pdFALSE;
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@ -4213,6 +4215,7 @@ void vTaskSwitchContext( BaseType_t xCoreID )
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//@ open pubTCB_p(gCurrentTCB, 0);
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UBaseType_t nesting = currentHandle->uxCriticalNesting;
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configASSERT( nesting == 0 );
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//@ close pubTCB_p(gCurrentTCB, 0);
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}
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#else
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configASSERT( pxCurrentTCB->uxCriticalNesting == 0 );
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@ -4259,20 +4262,6 @@ void vTaskSwitchContext( BaseType_t xCoreID )
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#endif /* configGENERATE_RUN_TIME_STATS */
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/* Check for stack overflow, if configured. */
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//@ open prvTCB_p(gCurrentTCB, ulFreeBytesOnStack);
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//@ assert( stack_p_2(?pxStack, ?ulStackDepth, ?pxTopOfStack, ?ulFreeBytes, ?ulUsedCells, ?ulUnalignedBytes) );
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//@ open stack_p_2(_, _, _, _, _, _);
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// The detour below allows us to skip proving that `ulFreeBytes` is a multiple of `sizeof(StackType_t)`.
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//@ integers__to_chars(pxTopOfStack+1);
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//@ chars_join((char*) pxStack);
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//@ chars_to_integers_(pxStack, sizeof(StackType_t), false, 3);
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// Converting the stack memory into a char squence is allows us to
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// verify the inspection of the stack inside this macro.
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// However, we the macro contains a call to `vApplicationStackOverflowHook`
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// which expects access to the entire TCB. Therefore, we have to close
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// the prvTCB_p predicate inside the macro.
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// TODO: Convert the macro into a function and push the proof steps
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// above into this function.
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taskCHECK_FOR_STACK_OVERFLOW();
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/* Before the currently running task is switched out, save its errno. */
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@ -4308,7 +4297,6 @@ void vTaskSwitchContext( BaseType_t xCoreID )
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#endif /* ( configUSE_NEWLIB_REENTRANT == 1 ) && ( configNEWLIB_REENTRANT_IS_DYNAMIC == 0 ) */
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}
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}
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//@ close pubTCB_p(gCurrentTCB, 0);
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//@ close taskISRLockInv();
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//@ consume_taskISRLockInv();
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portRELEASE_ISR_LOCK();
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