Fix comment typos (#1461)

Fix several documentation and example-code issues in the kernel header comments:

 * queue.h: remove a stray semicolon after the 'if' and correct the
   xHigherPriorityTaskWoken variable casing in the xQueueReceiveFromISR()
   example; add the missing comma between parameters in the
   xQueueGenericSend() prototype example.
 * list.h: correct the doxygen \page tag for listGET_ITEM_VALUE_OF_HEAD_ENTRY.
 * task.h: fix the uxIndexToCLear typo (-> uxIndexToClear).

These are documentation/example only changes that do not affect the
compiled library.

Signed-off-by: chenrongjun <chenrongjun@zepp.com>
This commit is contained in:
zepp-chen 2026-08-08 07:14:30 +08:00 committed by GitHub
parent c5d22b28f2
commit ce221a8bb4
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46 changed files with 83 additions and 83 deletions

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@ -577,7 +577,7 @@
/* Defines the kernel provided implementation of /* Defines the kernel provided implementation of
* vApplicationGetIdleTaskMemory() and vApplicationGetTimerTaskMemory() * vApplicationGetIdleTaskMemory() and vApplicationGetTimerTaskMemory()
* to provide the memory that is used by the Idle task and Timer task * to provide the memory that is used by the Idle task and Timer task
* respectively. The application can provide it's own implementation of * respectively. The application can provide its own implementation of
* vApplicationGetIdleTaskMemory() and vApplicationGetTimerTaskMemory() by * vApplicationGetIdleTaskMemory() and vApplicationGetTimerTaskMemory() by
* setting configKERNEL_PROVIDED_STATIC_MEMORY to 0 or leaving it undefined. */ * setting configKERNEL_PROVIDED_STATIC_MEMORY to 0 or leaving it undefined. */
#define configKERNEL_PROVIDED_STATIC_MEMORY 1 #define configKERNEL_PROVIDED_STATIC_MEMORY 1

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@ -528,7 +528,7 @@ void vCoRoutineSchedule( void );
* functions used by tasks. * functions used by tasks.
* *
* crQUEUE_SEND_FROM_ISR() and crQUEUE_RECEIVE_FROM_ISR() can only be used to * crQUEUE_SEND_FROM_ISR() and crQUEUE_RECEIVE_FROM_ISR() can only be used to
* pass data between a co-routine and and ISR, whereas xQueueSendFromISR() and * pass data between a co-routine and ISR, whereas xQueueSendFromISR() and
* xQueueReceiveFromISR() can only be used to pass data between a task and and * xQueueReceiveFromISR() can only be used to pass data between a task and and
* ISR. * ISR.
* *
@ -628,7 +628,7 @@ void vCoRoutineSchedule( void );
* functions used by tasks. * functions used by tasks.
* *
* crQUEUE_SEND_FROM_ISR() and crQUEUE_RECEIVE_FROM_ISR() can only be used to * crQUEUE_SEND_FROM_ISR() and crQUEUE_RECEIVE_FROM_ISR() can only be used to
* pass data between a co-routine and and ISR, whereas xQueueSendFromISR() and * pass data between a co-routine and ISR, whereas xQueueSendFromISR() and
* xQueueReceiveFromISR() can only be used to pass data between a task and and * xQueueReceiveFromISR() can only be used to pass data between a task and and
* ISR. * ISR.
* *

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@ -31,7 +31,7 @@
* heavily for the schedulers needs, it is also available for use by * heavily for the schedulers needs, it is also available for use by
* application code. * application code.
* *
* list_ts can only store pointers to list_item_ts. Each ListItem_t contains a * List_t can only store pointers to ListItem_t. Each ListItem_t contains a
* numeric value (xItemValue). Most of the time the lists are sorted in * numeric value (xItemValue). Most of the time the lists are sorted in
* ascending item value order. * ascending item value order.
* *
@ -42,7 +42,7 @@
* is because the tail contains a wrap back pointer to the true head of * is because the tail contains a wrap back pointer to the true head of
* the list. * the list.
* *
* In addition to it's value, each list item contains a pointer to the next * In addition to its value, each list item contains a pointer to the next
* item in the list (pxNext), a pointer to the list it is in (pxContainer) * item in the list (pxNext), a pointer to the list it is in (pxContainer)
* and a pointer back to the object that contains it. These later two * and a pointer back to the object that contains it. These later two
* pointers are included for efficiency of list manipulation. There is * pointers are included for efficiency of list manipulation. There is
@ -74,7 +74,7 @@
* compiler's options were set for maximum optimisation has been inspected and * compiler's options were set for maximum optimisation has been inspected and
* deemed to be as intended. That said, as compiler technology advances, and * deemed to be as intended. That said, as compiler technology advances, and
* especially if aggressive cross module optimisation is used (a use case that * especially if aggressive cross module optimisation is used (a use case that
* has not been exercised to any great extend) then it is feasible that the * has not been exercised to any great extent) then it is feasible that the
* volatile qualifier will be needed for correct optimisation. It is expected * volatile qualifier will be needed for correct optimisation. It is expected
* that a compiler removing essential code because, without the volatile * that a compiler removing essential code because, without the volatile
* qualifier on the list structure members and with aggressive cross module * qualifier on the list structure members and with aggressive cross module
@ -219,7 +219,7 @@ typedef struct xLIST
* Access macro to retrieve the value of the list item at the head of a given * Access macro to retrieve the value of the list item at the head of a given
* list. * list.
* *
* \page listGET_LIST_ITEM_VALUE listGET_LIST_ITEM_VALUE * \page listGET_ITEM_VALUE_OF_HEAD_ENTRY listGET_ITEM_VALUE_OF_HEAD_ENTRY
* \ingroup LinkedList * \ingroup LinkedList
*/ */
#define listGET_ITEM_VALUE_OF_HEAD_ENTRY( pxList ) ( ( ( pxList )->xListEnd ).pxNext->xItemValue ) #define listGET_ITEM_VALUE_OF_HEAD_ENTRY( pxList ) ( ( ( pxList )->xListEnd ).pxNext->xItemValue )

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@ -44,7 +44,7 @@
/** /**
* Type by which queues are referenced. For example, a call to xQueueCreate() * Type by which queues are referenced. For example, a call to xQueueCreate()
* returns an QueueHandle_t variable that can then be used as a parameter to * returns a QueueHandle_t variable that can then be used as a parameter to
* xQueueSend(), xQueueReceive(), etc. * xQueueSend(), xQueueReceive(), etc.
*/ */
struct QueueDefinition; /* Using old naming convention so as not to break kernel aware debuggers. */ struct QueueDefinition; /* Using old naming convention so as not to break kernel aware debuggers. */
@ -60,7 +60,7 @@ typedef struct QueueDefinition * QueueSetHandle_t;
/** /**
* Queue sets can contain both queues and semaphores, so the * Queue sets can contain both queues and semaphores, so the
* QueueSetMemberHandle_t is defined as a type to be used where a parameter or * QueueSetMemberHandle_t is defined as a type to be used where a parameter or
* return value can be either an QueueHandle_t or an SemaphoreHandle_t. * return value can be either a QueueHandle_t or a SemaphoreHandle_t.
*/ */
typedef struct QueueDefinition * QueueSetMemberHandle_t; typedef struct QueueDefinition * QueueSetMemberHandle_t;
@ -185,7 +185,7 @@ typedef struct QueueDefinition * QueueSetMemberHandle_t;
* @param pucQueueStorage If uxItemSize is not zero then * @param pucQueueStorage If uxItemSize is not zero then
* pucQueueStorage must point to a uint8_t array that is at least large * pucQueueStorage must point to a uint8_t array that is at least large
* enough to hold the maximum number of items that can be in the queue at any * enough to hold the maximum number of items that can be in the queue at any
* one time - which is ( uxQueueLength * uxItemsSize ) bytes. If uxItemSize is * one time - which is ( uxQueueLength * uxItemSize ) bytes. If uxItemSize is
* zero then pucQueueStorage can be NULL. * zero then pucQueueStorage can be NULL.
* *
* @param pxQueueBuffer Must point to a variable of type StaticQueue_t, which * @param pxQueueBuffer Must point to a variable of type StaticQueue_t, which
@ -604,7 +604,7 @@ typedef struct QueueDefinition * QueueSetMemberHandle_t;
* BaseType_t xQueueGenericSend( * BaseType_t xQueueGenericSend(
* QueueHandle_t xQueue, * QueueHandle_t xQueue,
* const void * pvItemToQueue, * const void * pvItemToQueue,
* TickType_t xTicksToWait * TickType_t xTicksToWait,
* BaseType_t xCopyPosition * BaseType_t xCopyPosition
* ); * );
* @endcode * @endcode
@ -1189,7 +1189,7 @@ void vQueueDelete( QueueHandle_t xQueue ) PRIVILEGED_FUNCTION;
* *
* // ... * // ...
* *
* if( xHigherPrioritytaskWoken == pdTRUE ) * if( xHigherPriorityTaskWoken == pdTRUE )
* { * {
* // Writing to the queue caused a task to unblock and the unblocked task * // Writing to the queue caused a task to unblock and the unblocked task
* // has a priority higher than or equal to the priority of the currently * // has a priority higher than or equal to the priority of the currently
@ -1451,7 +1451,7 @@ BaseType_t xQueueGiveFromISR( QueueHandle_t xQueue,
* // task will be woken. * // task will be woken.
* } * }
* *
* if( xHigherPrioritytaskWoken == pdTRUE ); * if( xHigherPriorityTaskWoken == pdTRUE )
* { * {
* // As xHigherPriorityTaskWoken is now set to pdTRUE then a context * // As xHigherPriorityTaskWoken is now set to pdTRUE then a context
* // switch should be requested. The macro used is port specific and * // switch should be requested. The macro used is port specific and
@ -1664,7 +1664,7 @@ BaseType_t xQueueGiveMutexRecursive( QueueHandle_t xMutex ) PRIVILEGED_FUNCTION;
* Note 2: Blocking on a queue set that contains a mutex will not cause the * Note 2: Blocking on a queue set that contains a mutex will not cause the
* mutex holder to inherit the priority of the blocked task. * mutex holder to inherit the priority of the blocked task.
* *
* Note 3: An additional 4 bytes of RAM is required for each space in a every * Note 3: An additional 4 bytes of RAM is required for each space in every
* queue added to a queue set. Therefore counting semaphores that have a high * queue added to a queue set. Therefore counting semaphores that have a high
* maximum count value should not be added to a queue set. * maximum count value should not be added to a queue set.
* *
@ -1716,7 +1716,7 @@ BaseType_t xQueueGiveMutexRecursive( QueueHandle_t xMutex ) PRIVILEGED_FUNCTION;
* Note 2: Blocking on a queue set that contains a mutex will not cause the * Note 2: Blocking on a queue set that contains a mutex will not cause the
* mutex holder to inherit the priority of the blocked task. * mutex holder to inherit the priority of the blocked task.
* *
* Note 3: An additional 4 bytes of RAM is required for each space in a every * Note 3: An additional 4 bytes of RAM is required for each space in every
* queue added to a queue set. Therefore counting semaphores that have a high * queue added to a queue set. Therefore counting semaphores that have a high
* maximum count value should not be added to a queue set. * maximum count value should not be added to a queue set.
* *
@ -1767,7 +1767,7 @@ BaseType_t xQueueGiveMutexRecursive( QueueHandle_t xMutex ) PRIVILEGED_FUNCTION;
* a call to xQueueSelectFromSet() has first returned a handle to that set member. * a call to xQueueSelectFromSet() has first returned a handle to that set member.
* *
* @param xQueueOrSemaphore The handle of the queue or semaphore being added to * @param xQueueOrSemaphore The handle of the queue or semaphore being added to
* the queue set (cast to an QueueSetMemberHandle_t type). * the queue set (cast to a QueueSetMemberHandle_t type).
* *
* @param xQueueSet The handle of the queue set to which the queue or semaphore * @param xQueueSet The handle of the queue set to which the queue or semaphore
* is being added. * is being added.
@ -1790,7 +1790,7 @@ BaseType_t xQueueGiveMutexRecursive( QueueHandle_t xMutex ) PRIVILEGED_FUNCTION;
* function. * function.
* *
* @param xQueueOrSemaphore The handle of the queue or semaphore being removed * @param xQueueOrSemaphore The handle of the queue or semaphore being removed
* from the queue set (cast to an QueueSetMemberHandle_t type). * from the queue set (cast to a QueueSetMemberHandle_t type).
* *
* @param xQueueSet The handle of the queue set in which the queue or semaphore * @param xQueueSet The handle of the queue set in which the queue or semaphore
* is included. * is included.
@ -1836,7 +1836,7 @@ BaseType_t xQueueGiveMutexRecursive( QueueHandle_t xMutex ) PRIVILEGED_FUNCTION;
* a QueueSetMemberHandle_t type) contained in the queue set that contains data, * a QueueSetMemberHandle_t type) contained in the queue set that contains data,
* or the handle of a semaphore (cast to a QueueSetMemberHandle_t type) contained * or the handle of a semaphore (cast to a QueueSetMemberHandle_t type) contained
* in the queue set that is available, or NULL if no such queue or semaphore * in the queue set that is available, or NULL if no such queue or semaphore
* exists before before the specified block time expires. * exists before the specified block time expires.
*/ */
#if ( configUSE_QUEUE_SETS == 1 ) #if ( configUSE_QUEUE_SETS == 1 )
QueueSetMemberHandle_t xQueueSelectFromSet( QueueSetHandle_t xQueueSet, QueueSetMemberHandle_t xQueueSelectFromSet( QueueSetHandle_t xQueueSet,

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@ -89,7 +89,7 @@
* task. h * task. h
* *
* Type by which tasks are referenced. For example, a call to xTaskCreate * Type by which tasks are referenced. For example, a call to xTaskCreate
* returns (via a pointer parameter) an TaskHandle_t variable that can then * returns (via a pointer parameter) a TaskHandle_t variable that can then
* be used as a parameter to vTaskDelete to delete the task. * be used as a parameter to vTaskDelete to delete the task.
* *
* \defgroup TaskHandle_t TaskHandle_t * \defgroup TaskHandle_t TaskHandle_t
@ -579,7 +579,7 @@ typedef enum
* *
* Example usage: * Example usage:
* @code{c} * @code{c}
* // Create an TaskParameters_t structure that defines the task to be created. * // Create a TaskParameters_t structure that defines the task to be created.
* static const TaskParameters_t xCheckTaskParameters = * static const TaskParameters_t xCheckTaskParameters =
* { * {
* vATask, // pvTaskCode - the function that implements the task. * vATask, // pvTaskCode - the function that implements the task.
@ -677,7 +677,7 @@ typedef enum
* *
* Example usage: * Example usage:
* @code{c} * @code{c}
* // Create an TaskParameters_t structure that defines the task to be created. * // Create a TaskParameters_t structure that defines the task to be created.
* // The StaticTask_t variable is only included in the structure when * // The StaticTask_t variable is only included in the structure when
* // configSUPPORT_STATIC_ALLOCATION is set to 1. The PRIVILEGED_DATA macro can * // configSUPPORT_STATIC_ALLOCATION is set to 1. The PRIVILEGED_DATA macro can
* // be used to force the variable into the RTOS kernel's privileged data area. * // be used to force the variable into the RTOS kernel's privileged data area.
@ -1075,7 +1075,7 @@ BaseType_t xTaskDelayUntil( TickType_t * const pxPreviousWakeTime,
* // it itself. * // it itself.
* if( uxTaskPriorityGet( xHandle ) != tskIDLE_PRIORITY ) * if( uxTaskPriorityGet( xHandle ) != tskIDLE_PRIORITY )
* { * {
* // The task has changed it's priority. * // The task has changed its priority.
* } * }
* *
* // ... * // ...
@ -2157,7 +2157,7 @@ char * pcTaskGetName( TaskHandle_t xTaskToQuery ) PRIVILEGED_FUNCTION;
* configUSE_TRACE_FACILITY must be defined as 1 in FreeRTOSConfig.h for * configUSE_TRACE_FACILITY must be defined as 1 in FreeRTOSConfig.h for
* uxTaskGetSystemState() to be available. * uxTaskGetSystemState() to be available.
* *
* uxTaskGetSystemState() populates an TaskStatus_t structure for each task in * uxTaskGetSystemState() populates a TaskStatus_t structure for each task in
* the system. TaskStatus_t structures contain, among other things, members * the system. TaskStatus_t structures contain, among other things, members
* for the task handle, task name, task priority, task state, and total amount * for the task handle, task name, task priority, task state, and total amount
* of run time consumed by the task. See the TaskStatus_t structure * of run time consumed by the task. See the TaskStatus_t structure
@ -3307,7 +3307,7 @@ uint32_t ulTaskGenericNotifyTake( UBaseType_t uxIndexToWaitOn,
/** /**
* task. h * task. h
* @code{c} * @code{c}
* BaseType_t xTaskNotifyStateClearIndexed( TaskHandle_t xTask, UBaseType_t uxIndexToCLear ); * BaseType_t xTaskNotifyStateClearIndexed( TaskHandle_t xTask, UBaseType_t uxIndexToClear );
* *
* BaseType_t xTaskNotifyStateClear( TaskHandle_t xTask ); * BaseType_t xTaskNotifyStateClear( TaskHandle_t xTask );
* @endcode * @endcode

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@ -126,9 +126,9 @@
" restore_general_regs_first_task: \n" " restore_general_regs_first_task: \n"
" subs r2, #32 \n" " subs r2, #32 \n"
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r2, #48 \n" " subs r2, #48 \n"
" ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */
@ -402,9 +402,9 @@ void vClearInterruptMask( __attribute__( ( unused ) ) uint32_t ulMask ) /* __att
" restore_general_regs: \n" " restore_general_regs: \n"
" subs r2, #32 \n" " subs r2, #32 \n"
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r2, #48 \n" " subs r2, #48 \n"
" ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */

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@ -121,9 +121,9 @@
" restore_general_regs_first_task: \n" " restore_general_regs_first_task: \n"
" subs r1, #32 \n" " subs r1, #32 \n"
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r1, #48 \n" " subs r1, #48 \n"
" ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */
@ -375,9 +375,9 @@ void vClearInterruptMask( __attribute__( ( unused ) ) uint32_t ulMask ) /* __att
" restore_general_regs: \n" " restore_general_regs: \n"
" subs r1, #32 \n" " subs r1, #32 \n"
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r1, #48 \n" " subs r1, #48 \n"
" ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */

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@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

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@ -63,7 +63,7 @@ scheduler startup function. */
/* Calls to portENTER_CRITICAL() can be nested. When they are nested the /* Calls to portENTER_CRITICAL() can be nested. When they are nested the
critical section should not be left (i.e. interrupts should not be re-enabled) critical section should not be left (i.e. interrupts should not be re-enabled)
until the nesting depth reaches 0. This variable simply tracks the nesting until the nesting depth reaches 0. This variable simply tracks the nesting
depth. Each task maintains it's own critical nesting depth variable so depth. Each task maintains its own critical nesting depth variable so
uxCriticalNesting is saved and restored from the task stack during a context uxCriticalNesting is saved and restored from the task stack during a context
switch. */ switch. */
volatile UBaseType_t uxCriticalNesting = 0xff; volatile UBaseType_t uxCriticalNesting = 0xff;

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@ -689,7 +689,7 @@ static void prvTaskExitError( void )
} }
/* Shift the code by one before returning so it can be written directly /* Shift the code by one before returning so it can be written directly
* into the the correct bit position of the attribute register. */ * into the correct bit position of the attribute register. */
return( ulReturnValue << 1UL ); return( ulReturnValue << 1UL );
} }

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@ -111,9 +111,9 @@
" restore_general_regs_first_task: \n" " restore_general_regs_first_task: \n"
" subs r1, #32 \n" " subs r1, #32 \n"
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r1, #48 \n" " subs r1, #48 \n"
" ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */
@ -366,9 +366,9 @@ void vClearInterruptMask( __attribute__( ( unused ) ) uint32_t ulMask ) /* __att
" restore_general_regs: \n" " restore_general_regs: \n"
" subs r1, #32 \n" " subs r1, #32 \n"
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r1, #48 \n" " subs r1, #48 \n"
" ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */

View File

@ -126,9 +126,9 @@
" restore_general_regs_first_task: \n" " restore_general_regs_first_task: \n"
" subs r2, #32 \n" " subs r2, #32 \n"
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r2, #48 \n" " subs r2, #48 \n"
" ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */
@ -402,9 +402,9 @@ void vClearInterruptMask( __attribute__( ( unused ) ) uint32_t ulMask ) /* __att
" restore_general_regs: \n" " restore_general_regs: \n"
" subs r2, #32 \n" " subs r2, #32 \n"
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r2!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r3!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r3!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r2, #48 \n" " subs r2, #48 \n"
" ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r2!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -121,9 +121,9 @@
" restore_general_regs_first_task: \n" " restore_general_regs_first_task: \n"
" subs r1, #32 \n" " subs r1, #32 \n"
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r1, #48 \n" " subs r1, #48 \n"
" ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */
@ -375,9 +375,9 @@ void vClearInterruptMask( __attribute__( ( unused ) ) uint32_t ulMask ) /* __att
" restore_general_regs: \n" " restore_general_regs: \n"
" subs r1, #32 \n" " subs r1, #32 \n"
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy half of the hardware saved context on the task stack. */
" ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */ " ldmia r1!, {r4-r7} \n" /* r4-r7 contain rest half of the hardware saved context. */
" stmia r2!, {r4-r7} \n" /* Copy rest half of the the hardware saved context on the task stack. */ " stmia r2!, {r4-r7} \n" /* Copy rest half of the hardware saved context on the task stack. */
" subs r1, #48 \n" " subs r1, #48 \n"
" ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */ " ldmia r1!, {r4-r7} \n" /* Restore r8-r11. */
" mov r8, r4 \n" /* r8 = r4. */ " mov r8, r4 \n" /* r8 = r4. */

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -1206,7 +1206,7 @@ static uint32_t prvGetMPURegionSizeSetting( uint32_t ulActualSizeInBytes )
} }
/* Shift the code by one before returning so it can be written directly /* Shift the code by one before returning so it can be written directly
* into the the correct bit position of the attribute register. */ * into the correct bit position of the attribute register. */
return( ulReturnValue << 1UL ); return( ulReturnValue << 1UL );
} }
/*-----------------------------------------------------------*/ /*-----------------------------------------------------------*/

View File

@ -1350,7 +1350,7 @@ static uint32_t prvGetMPURegionSizeSetting( uint32_t ulActualSizeInBytes )
} }
/* Shift the code by one before returning so it can be written directly /* Shift the code by one before returning so it can be written directly
* into the the correct bit position of the attribute register. */ * into the correct bit position of the attribute register. */
return( ulReturnValue << 1UL ); return( ulReturnValue << 1UL );
} }
/*-----------------------------------------------------------*/ /*-----------------------------------------------------------*/

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -489,7 +489,7 @@ static uint32_t prvGetMPURegionSizeEncoding( uint32_t ulActualMPURegionSize )
} }
/* Shift the code by one before returning so it can be written directly /* Shift the code by one before returning so it can be written directly
* into the the correct bit position of the attribute register. */ * into the correct bit position of the attribute register. */
return ulReturnValue << 1UL; return ulReturnValue << 1UL;
} }

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -64,7 +64,7 @@ BaseType_t ATTR_NEAR xStartSchedulerNear( void );
/* Calls to portENTER_CRITICAL() can be nested. When they are nested the /* Calls to portENTER_CRITICAL() can be nested. When they are nested the
* critical section should not be left (i.e. interrupts should not be re-enabled) * critical section should not be left (i.e. interrupts should not be re-enabled)
* until the nesting depth reaches 0. This variable simply tracks the nesting * until the nesting depth reaches 0. This variable simply tracks the nesting
* depth. Each task maintains it's own critical nesting depth variable so * depth. Each task maintains its own critical nesting depth variable so
* uxCriticalNesting is saved and restored from the task stack during a context * uxCriticalNesting is saved and restored from the task stack during a context
* switch. */ * switch. */
volatile UBaseType_t uxCriticalNesting = 0x80; /* un-initialized */ volatile UBaseType_t uxCriticalNesting = 0x80; /* un-initialized */

View File

@ -63,7 +63,7 @@
#define portISR_STACK_FILL_VALUE 0x55555555 #define portISR_STACK_FILL_VALUE 0x55555555
/* Counts the nesting depth of calls to portENTER_CRITICAL(). Each task /* Counts the nesting depth of calls to portENTER_CRITICAL(). Each task
* maintains it's own count, so this variable is saved as part of the task * maintains its own count, so this variable is saved as part of the task
* context. */ * context. */
volatile UBaseType_t uxCriticalNesting = portINITIAL_NESTING_VALUE; volatile UBaseType_t uxCriticalNesting = portINITIAL_NESTING_VALUE;
@ -235,7 +235,7 @@ void vPortYield( void )
/* Perform the context switch in a critical section to assure it is /* Perform the context switch in a critical section to assure it is
* not interrupted by the tick ISR. It is not a problem to do this as * not interrupted by the tick ISR. It is not a problem to do this as
* each task maintains it's own interrupt status. */ * each task maintains its own interrupt status. */
portENTER_CRITICAL(); portENTER_CRITICAL();
/* Jump directly to the yield function to ensure there is no /* Jump directly to the yield function to ensure there is no

View File

@ -322,7 +322,7 @@ void vApplicationSetupTimerInterrupt( void );
/* /*
* This is an application defined callback function used to clear whichever * This is an application defined callback function used to clear whichever
* interrupt was installed by the the vApplicationSetupTimerInterrupt() callback * interrupt was installed by the vApplicationSetupTimerInterrupt() callback
* function - in this case the interrupt generated by the AXI timer. It is * function - in this case the interrupt generated by the AXI timer. It is
* provided as an application callback because the kernel will run on lots of * provided as an application callback because the kernel will run on lots of
* different MicroBlaze and FPGA configurations - not all of which will have the * different MicroBlaze and FPGA configurations - not all of which will have the

View File

@ -337,7 +337,7 @@ void vApplicationSetupTimerInterrupt( void );
/* /*
* This is an application defined callback function used to clear whichever * This is an application defined callback function used to clear whichever
* interrupt was installed by the the vApplicationSetupTimerInterrupt() callback * interrupt was installed by the vApplicationSetupTimerInterrupt() callback
* function - in this case the interrupt generated by the AXI timer. It is * function - in this case the interrupt generated by the AXI timer. It is
* provided as an application callback because the kernel will run on lots of * provided as an application callback because the kernel will run on lots of
* different MicroBlaze and FPGA configurations - not all of which will have the * different MicroBlaze and FPGA configurations - not all of which will have the

View File

@ -27,7 +27,7 @@
*/ */
/* /*
* The FreeRTOS kernel's RISC-V port is split between the the code that is * The FreeRTOS kernel's RISC-V port is split between the code that is
* common across all currently supported RISC-V chips (implementations of the * common across all currently supported RISC-V chips (implementations of the
* RISC-V ISA), and code that tailors the port to a specific RISC-V chip: * RISC-V ISA), and code that tailors the port to a specific RISC-V chip:
* *

View File

@ -27,7 +27,7 @@
*/ */
/* /*
* The FreeRTOS kernel's RISC-V port is split between the the code that is * The FreeRTOS kernel's RISC-V port is split between the code that is
* common across all currently supported RISC-V chips (implementations of the * common across all currently supported RISC-V chips (implementations of the
* RISC-V ISA), and code that tailors the port to a specific RISC-V chip: * RISC-V ISA), and code that tailors the port to a specific RISC-V chip:
* *

View File

@ -27,7 +27,7 @@
*/ */
/* /*
* The FreeRTOS kernel's RISC-V port is split between the the code that is * The FreeRTOS kernel's RISC-V port is split between the code that is
* common across all currently supported RISC-V chips (implementations of the * common across all currently supported RISC-V chips (implementations of the
* RISC-V ISA), and code that tailors the port to a specific RISC-V chip: * RISC-V ISA), and code that tailors the port to a specific RISC-V chip:
* *

View File

@ -27,7 +27,7 @@
*/ */
/* /*
* The FreeRTOS kernel's RISC-V port is split between the the code that is * The FreeRTOS kernel's RISC-V port is split between the code that is
* common across all currently supported RISC-V chips (implementations of the * common across all currently supported RISC-V chips (implementations of the
* RISC-V ISA), and code that tailors the port to a specific RISC-V chip: * RISC-V ISA), and code that tailors the port to a specific RISC-V chip:
* *

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -1139,7 +1139,7 @@ static uint32_t prvGetMPURegionSizeSetting( uint32_t ulActualSizeInBytes )
} }
/* Shift the code by one before returning so it can be written directly /* Shift the code by one before returning so it can be written directly
* into the the correct bit position of the attribute register. */ * into the correct bit position of the attribute register. */
return( ulReturnValue << 1UL ); return( ulReturnValue << 1UL );
} }
/*-----------------------------------------------------------*/ /*-----------------------------------------------------------*/

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -349,7 +349,7 @@ secureportNON_SECURE_CALLABLE void SecureContext_SaveContext( SecureContextHandl
secureportREAD_PSPLIM( pucStackLimit ); secureportREAD_PSPLIM( pucStackLimit );
/* Ensure that task's context is loaded and the task is saving it's own /* Ensure that task's context is loaded and the task is saving its own
* context. */ * context. */
if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) && if( ( xSecureContexts[ ulSecureContextIndex ].pucStackLimit == pucStackLimit ) &&
( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) ) ( xSecureContexts[ ulSecureContextIndex ].pvTaskHandle == pvTaskHandle ) )

View File

@ -27,7 +27,7 @@
*/ */
/* /*
* The FreeRTOS kernel's RISC-V port is split between the the code that is * The FreeRTOS kernel's RISC-V port is split between the code that is
* common across all currently supported RISC-V chips (implementations of the * common across all currently supported RISC-V chips (implementations of the
* RISC-V ISA), and code that tailors the port to a specific RISC-V chip: * RISC-V ISA), and code that tailors the port to a specific RISC-V chip:
* *

View File

@ -78,7 +78,7 @@
la k0, uxInterruptNesting la k0, uxInterruptNesting
lw s6, (k0) lw s6, (k0)
/* If the nesting count is 0 then swap to the the system stack, otherwise /* If the nesting count is 0 then swap to the system stack, otherwise
the system stack is already being used. */ the system stack is already being used. */
bne s6, zero, 1f bne s6, zero, 1f
nop nop

View File

@ -60,7 +60,7 @@
la k0, uxInterruptNesting la k0, uxInterruptNesting
lw s6, (k0) lw s6, (k0)
/* If the nesting count is 0 then swap to the the system stack, otherwise /* If the nesting count is 0 then swap to the system stack, otherwise
the system stack is already being used. */ the system stack is already being used. */
bne s6, zero, 1f bne s6, zero, 1f
nop nop

View File

@ -174,7 +174,7 @@
la k0, uxInterruptNesting la k0, uxInterruptNesting
lw s6, (k0) lw s6, (k0)
/* If the nesting count is 0 then swap to the the system stack, otherwise /* If the nesting count is 0 then swap to the system stack, otherwise
the system stack is already being used. */ the system stack is already being used. */
bne s6, zero, 1f bne s6, zero, 1f
nop nop

View File

@ -1351,7 +1351,7 @@ static uint32_t prvGetMPURegionSizeSetting( uint32_t ulActualSizeInBytes )
} }
/* Shift the code by one before returning so it can be written directly /* Shift the code by one before returning so it can be written directly
* into the the correct bit position of the attribute register. */ * into the correct bit position of the attribute register. */
return( ulReturnValue << 1UL ); return( ulReturnValue << 1UL );
} }
/*-----------------------------------------------------------*/ /*-----------------------------------------------------------*/

View File

@ -272,7 +272,7 @@ static BaseType_t prvBytesInBufferMeetTriggerLevel( const StreamBuffer_t * const
* the length and data bytes are written in two separate chunks, and we don't want * the length and data bytes are written in two separate chunks, and we don't want
* the reader to see the buffer as having grown until after all data is copied over. * the reader to see the buffer as having grown until after all data is copied over.
* This function takes a custom xHead value to indicate where to write to (necessary * This function takes a custom xHead value to indicate where to write to (necessary
* for chaining) and returns the the resulting xHead position. * for chaining) and returns the resulting xHead position.
* To mark the write as complete, manually set the buffer's xHead field with the * To mark the write as complete, manually set the buffer's xHead field with the
* returned xHead from this function. * returned xHead from this function.
*/ */
@ -314,7 +314,7 @@ static size_t prvWriteMessageToBuffer( StreamBuffer_t * const pxStreamBuffer,
* the writer to see the buffer as having more free space until after all data is * the writer to see the buffer as having more free space until after all data is
* copied over, especially if we have to abort the read due to insufficient receiving space. * copied over, especially if we have to abort the read due to insufficient receiving space.
* This function takes a custom xTail value to indicate where to read from (necessary * This function takes a custom xTail value to indicate where to read from (necessary
* for chaining) and returns the the resulting xTail position. * for chaining) and returns the resulting xTail position.
* To mark the read as complete, manually set the buffer's xTail field with the * To mark the read as complete, manually set the buffer's xTail field with the
* returned xTail from this function. * returned xTail from this function.
*/ */

View File

@ -8849,7 +8849,7 @@ STATIC void prvAddCurrentTaskToDelayedList( TickType_t xTicksToWait,
* This is the kernel provided implementation of vApplicationGetIdleTaskMemory() * This is the kernel provided implementation of vApplicationGetIdleTaskMemory()
* to provide the memory that is used by the Idle task. It is used when * to provide the memory that is used by the Idle task. It is used when
* configKERNEL_PROVIDED_STATIC_MEMORY is set to 1. The application can provide * configKERNEL_PROVIDED_STATIC_MEMORY is set to 1. The application can provide
* it's own implementation of vApplicationGetIdleTaskMemory by setting * its own implementation of vApplicationGetIdleTaskMemory by setting
* configKERNEL_PROVIDED_STATIC_MEMORY to 0 or leaving it undefined. * configKERNEL_PROVIDED_STATIC_MEMORY to 0 or leaving it undefined.
*/ */
void vApplicationGetIdleTaskMemory( StaticTask_t ** ppxIdleTaskTCBBuffer, void vApplicationGetIdleTaskMemory( StaticTask_t ** ppxIdleTaskTCBBuffer,
@ -8890,7 +8890,7 @@ STATIC void prvAddCurrentTaskToDelayedList( TickType_t xTicksToWait,
* This is the kernel provided implementation of vApplicationGetTimerTaskMemory() * This is the kernel provided implementation of vApplicationGetTimerTaskMemory()
* to provide the memory that is used by the Timer service task. It is used when * to provide the memory that is used by the Timer service task. It is used when
* configKERNEL_PROVIDED_STATIC_MEMORY is set to 1. The application can provide * configKERNEL_PROVIDED_STATIC_MEMORY is set to 1. The application can provide
* it's own implementation of vApplicationGetTimerTaskMemory by setting * its own implementation of vApplicationGetTimerTaskMemory by setting
* configKERNEL_PROVIDED_STATIC_MEMORY to 0 or leaving it undefined. * configKERNEL_PROVIDED_STATIC_MEMORY to 0 or leaving it undefined.
*/ */
void vApplicationGetTimerTaskMemory( StaticTask_t ** ppxTimerTaskTCBBuffer, void vApplicationGetTimerTaskMemory( StaticTask_t ** ppxTimerTaskTCBBuffer,