Fixed bug 3303908.
git-svn-id: svn://svn.code.sf.net/p/chibios/svn/trunk@2972 35acf78f-673a-0410-8e92-d51de3d6d3f4master
parent
b4aa14e88c
commit
807c5f1882
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@ -67,12 +67,13 @@ typedef void (*qnotify_t)(GenericQueue *qp);
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* @ref system_states) and is non-blocking.
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*/
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struct GenericQueue {
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ThreadsQueue q_waiting; /**< @brief Queue of waiting threads. */
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size_t q_counter; /**< @brief Resources counter. */
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uint8_t *q_buffer; /**< @brief Pointer to the queue buffer.*/
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uint8_t *q_top; /**< @brief Pointer to the first location
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after the buffer. */
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uint8_t *q_wrptr; /**< @brief Write pointer. */
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uint8_t *q_rdptr; /**< @brief Read pointer. */
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Semaphore q_sem; /**< @brief Counter @p Semaphore. */
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qnotify_t q_notify; /**< @brief Data notification callback. */
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};
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@ -84,21 +85,19 @@ struct GenericQueue {
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*
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* @iclass
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*/
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#define chQSizeI(qp) ((qp)->q_top - (qp)->q_buffer)
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#define chQSizeI(qp) ((size_t)((qp)->q_top - (qp)->q_buffer))
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/**
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* @brief Queue space.
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* @details Returns the used space if used on an input queue or the empty
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* space if used on an output queue.
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* @note The returned value can be less than zero when there are waiting
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* threads on the internal semaphore.
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*
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* @param[in] qp pointer to a @p GenericQueue structure.
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* @return The buffer space.
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*
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* @iclass
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*/
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#define chQSpaceI(qp) chSemGetCounterI(&(qp)->q_sem)
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#define chQSpaceI(qp) ((size_t)((qp)->q_counter))
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/**
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* @extends GenericQueue
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@ -113,6 +112,28 @@ struct GenericQueue {
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*/
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typedef GenericQueue InputQueue;
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/**
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* @brief Returns the filled space into an input queue.
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*
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* @param[in] iqp pointer to an @p InputQueue structure
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* @return The number of full bytes in the queue.
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* @retval 0 if the queue is empty.
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*
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* @iclass
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*/
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#define chIQGetFullI(iqp) chQSpaceI(iqp)
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/**
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* @brief Returns the empty space into an input queue.
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*
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* @param[in] iqp pointer to an @p InputQueue structure
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* @return The number of empty bytes in the queue.
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* @retval 0 if the queue is full.
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*
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* @iclass
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*/
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#define chIQGetEmptyI(iqp) (chQSizeI(iqp) - chQSpaceI(iqp))
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/**
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* @brief Evaluates to @p TRUE if the specified input queue is empty.
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*
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@ -135,8 +156,7 @@ typedef GenericQueue InputQueue;
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*
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* @iclass
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*/
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#define chIQIsFullI(iqp) ((bool_t)(((iqp)->q_wrptr == (iqp)->q_rdptr) && \
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!chIQIsEmptyI(iqp)))
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#define chIQIsFullI(iqp) ((bool_t)(chQSpaceI(iqp) >= chQSizeI(iqp)))
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/**
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* @brief Input queue read.
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@ -162,13 +182,14 @@ typedef GenericQueue InputQueue;
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* @param[in] size size of the queue buffer area
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* @param[in] inotify input notification callback pointer
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*/
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#define _INPUTQUEUE_DATA(name, buffer, size, inotify) { \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer) + size, \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer), \
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_SEMAPHORE_DATA(name.q_sem, 0), \
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inotify \
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#define _INPUTQUEUE_DATA(name, buffer, size, inotify) { \
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_THREADSQUEUE_DATA(name), \
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0, \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer) + (size), \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer), \
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inotify \
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}
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/**
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@ -197,6 +218,28 @@ typedef GenericQueue InputQueue;
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*/
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typedef GenericQueue OutputQueue;
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/**
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* @brief Returns the filled space into an output queue.
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*
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* @param[in] oqp pointer to an @p OutputQueue structure
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* @return The number of full bytes in the queue.
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* @retval 0 if the queue is empty.
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*
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* @iclass
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*/
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#define chOQGetFullI(oqp) (chQSizeI(oqp) - chQSpaceI(oqp))
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/**
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* @brief Returns the empty space into an output queue.
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*
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* @param[in] iqp pointer to an @p OutputQueue structure
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* @return The number of empty bytes in the queue.
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* @retval 0 if the queue is full.
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*
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* @iclass
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*/
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#define chOQGetEmptyI(iqp) chQSpaceI(oqp)
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/**
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* @brief Evaluates to @p TRUE if the specified output queue is empty.
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*
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@ -207,8 +250,7 @@ typedef GenericQueue OutputQueue;
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*
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* @iclass
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*/
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#define chOQIsEmptyI(oqp) ((bool_t)(((oqp)->q_wrptr == (oqp)->q_rdptr) && \
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!chOQIsFullI(oqp)))
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#define chOQIsEmptyI(oqp) ((bool_t)(chQSpaceI(oqp) >= chQSizeI(oqp)))
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/**
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* @brief Evaluates to @p TRUE if the specified output queue is full.
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@ -248,13 +290,14 @@ typedef GenericQueue OutputQueue;
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* @param[in] size size of the queue buffer area
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* @param[in] onotify output notification callback pointer
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*/
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#define _OUTPUTQUEUE_DATA(name, buffer, size, onotify) { \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer) + size, \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer), \
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_SEMAPHORE_DATA(name.q_sem, size), \
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onotify \
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#define _OUTPUTQUEUE_DATA(name, buffer, size, onotify) { \
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_THREADSQUEUE_DATA(name), \
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(size), \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer) + (size), \
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(uint8_t *)(buffer), \
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(uint8_t *)(buffer), \
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onotify \
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}
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/**
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@ -274,7 +317,6 @@ typedef GenericQueue OutputQueue;
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extern "C" {
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#endif
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void chIQInit(InputQueue *iqp, uint8_t *bp, size_t size, qnotify_t infy);
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size_t chIQGetFullI(InputQueue *iqp);
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void chIQResetI(InputQueue *iqp);
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msg_t chIQPutI(InputQueue *iqp, uint8_t b);
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msg_t chIQGetTimeout(InputQueue *iqp, systime_t time);
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@ -282,7 +324,6 @@ extern "C" {
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size_t n, systime_t time);
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void chOQInit(OutputQueue *oqp, uint8_t *bp, size_t size, qnotify_t onfy);
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size_t chOQGetFullI(OutputQueue *oqp);
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void chOQResetI(OutputQueue *oqp);
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msg_t chOQPutTimeout(OutputQueue *oqp, uint8_t b, systime_t time);
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msg_t chOQGetI(OutputQueue *oqp);
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@ -183,8 +183,10 @@ struct Thread {
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#define THD_STATE_SNDMSG 11
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/** @brief Thread state: Waiting in @p chMsgWait().*/
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#define THD_STATE_WTMSG 12
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/** @brief Thread state: Waiting on an I/O queue.*/
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#define THD_STATE_WTQUEUE 13
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/** @brief Thread state: After termination.*/
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#define THD_STATE_FINAL 13
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#define THD_STATE_FINAL 14
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/*
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* Various flags into the thread p_flags field.
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@ -134,14 +134,16 @@ void chMtxLockS(Mutex *mp) {
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prio_insert(dequeue(tp), (ThreadsQueue *)tp->p_u.wtobjp);
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tp = ((Mutex *)tp->p_u.wtobjp)->m_owner;
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continue;
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#if CH_USE_CONDVARS | CH_USE_SEMAPHORES_PRIORITY | CH_USE_MESSAGES_PRIORITY
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#if CH_USE_CONDVARS | \
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(CH_USE_SEMAPHORES && CH_USE_SEMAPHORES_PRIORITY) | \
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(CH_USE_MESSAGES && CH_USE_MESSAGES_PRIORITY)
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#if CH_USE_CONDVARS
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case THD_STATE_WTCOND:
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#endif
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#if CH_USE_SEMAPHORES_PRIORITY
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#if CH_USE_SEMAPHORES && CH_USE_SEMAPHORES_PRIORITY
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case THD_STATE_WTSEM:
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#endif
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#if CH_USE_MESSAGES_PRIORITY
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#if CH_USE_MESSAGES && CH_USE_MESSAGES_PRIORITY
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case THD_STATE_SNDMSGQ:
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#endif
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/* Re-enqueues tp with its new priority on the queue.*/
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@ -47,6 +47,30 @@
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#if CH_USE_QUEUES || defined(__DOXYGEN__)
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/**
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* @brief Puts the invoking thread into the queue's threads queue.
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*
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* @param[out] qp pointer to an @p GenericQueue structure
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* @param[in] time the number of ticks before the operation timeouts,
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* the following special values are allowed:
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* - @a TIME_IMMEDIATE immediate timeout.
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* - @a TIME_INFINITE no timeout.
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* .
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* @return A message specifying how the invoking thread has been
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* released from threads queue.
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* @retval RDY_OK is the normal exit, thread signaled.
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* @retval RDY_RESET if the queue has been reset.
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* @retval RDY_TIMEOUT if the queue operation timed out.
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*/
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static msg_t qwait(GenericQueue *qp, systime_t time) {
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if (TIME_IMMEDIATE == time)
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return RDY_TIMEOUT;
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currp->p_u.wtobjp = qp;
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queue_insert(currp, &qp->q_waiting);
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return chSchGoSleepTimeoutS(THD_STATE_WTQUEUE, time);
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}
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/**
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* @brief Initializes an input queue.
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* @details A Semaphore is internally initialized and works as a counter of
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@ -64,28 +88,11 @@
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*/
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void chIQInit(InputQueue *iqp, uint8_t *bp, size_t size, qnotify_t infy) {
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queue_init(&iqp->q_waiting);
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iqp->q_counter = 0;
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iqp->q_buffer = iqp->q_rdptr = iqp->q_wrptr = bp;
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iqp->q_top = bp + size;
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iqp->q_notify = infy;
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chSemInit(&iqp->q_sem, 0);
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}
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/**
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* @brief Returns the filled space into an input queue.
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*
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* @param[in] iqp pointer to an @p InputQueue structure
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* @return The number of bytes in the queue.
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* @retval 0 if the queue is empty.
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*
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* @iclass
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*/
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size_t chIQGetFullI(InputQueue *iqp) {
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cnt_t cnt;
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cnt = chQSpaceI(iqp);
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if (cnt < 0)
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return 0;
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return (size_t)cnt;
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}
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/**
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@ -102,7 +109,9 @@ size_t chIQGetFullI(InputQueue *iqp) {
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void chIQResetI(InputQueue *iqp) {
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iqp->q_rdptr = iqp->q_wrptr = iqp->q_buffer;
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chSemResetI(&iqp->q_sem, 0);
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iqp->q_counter = 0;
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while (notempty(&iqp->q_waiting))
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chSchReadyI(fifo_remove(&iqp->q_waiting))->p_u.rdymsg = RDY_RESET;
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}
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/**
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@ -123,10 +132,12 @@ msg_t chIQPutI(InputQueue *iqp, uint8_t b) {
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if (chIQIsFullI(iqp))
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return Q_FULL;
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iqp->q_counter++;
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*iqp->q_wrptr++ = b;
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if (iqp->q_wrptr >= iqp->q_top)
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iqp->q_wrptr = iqp->q_buffer;
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chSemSignalI(&iqp->q_sem);
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if (notempty(&iqp->q_waiting))
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chSchReadyI(fifo_remove(&iqp->q_waiting))->p_u.rdymsg = RDY_OK;
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return Q_OK;
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}
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@ -150,17 +161,21 @@ msg_t chIQPutI(InputQueue *iqp, uint8_t b) {
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*/
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msg_t chIQGetTimeout(InputQueue *iqp, systime_t time) {
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uint8_t b;
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msg_t msg;
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chSysLock();
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if (iqp->q_notify)
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iqp->q_notify(iqp);
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if ((msg = chSemWaitTimeoutS(&iqp->q_sem, time)) < RDY_OK) {
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chSysUnlock();
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return msg;
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while (chIQIsEmptyI(iqp)) {
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msg_t msg;
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if ((msg = qwait((GenericQueue *)iqp, time)) < RDY_OK) {
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chSysUnlock();
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return msg;
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}
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}
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iqp->q_counter--;
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b = *iqp->q_rdptr++;
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if (iqp->q_rdptr >= iqp->q_top)
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iqp->q_rdptr = iqp->q_buffer;
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@ -202,16 +217,16 @@ size_t chIQReadTimeout(InputQueue *iqp, uint8_t *bp,
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chSysLock();
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while (TRUE) {
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if (chIQIsEmptyI(iqp)) {
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while (chIQIsEmptyI(iqp)) {
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if (nfy)
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nfy(iqp);
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if ((chSemWaitTimeoutS(&iqp->q_sem, time) != RDY_OK)) {
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if (qwait((GenericQueue *)iqp, time) != RDY_OK) {
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chSysUnlock();
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return r;
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}
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}
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else
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chSemFastWaitI(&iqp->q_sem);
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iqp->q_counter--;
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*bp++ = *iqp->q_rdptr++;
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if (iqp->q_rdptr >= iqp->q_top)
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iqp->q_rdptr = iqp->q_buffer;
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@ -245,28 +260,11 @@ size_t chIQReadTimeout(InputQueue *iqp, uint8_t *bp,
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*/
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void chOQInit(OutputQueue *oqp, uint8_t *bp, size_t size, qnotify_t onfy) {
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queue_init(&oqp->q_waiting);
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oqp->q_counter = size;
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oqp->q_buffer = oqp->q_rdptr = oqp->q_wrptr = bp;
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oqp->q_top = bp + size;
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oqp->q_notify = onfy;
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chSemInit(&oqp->q_sem, (cnt_t)size);
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}
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/**
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* @brief Returns the filled space into an output queue.
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*
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* @param[in] oqp pointer to an @p OutputQueue structure
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* @return The number of bytes in the queue.
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* @retval 0 if the queue is empty.
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*
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* @iclass
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*/
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size_t chOQGetFullI(OutputQueue *oqp) {
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cnt_t cnt;
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cnt = chQSpaceI(oqp);
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if (cnt < 0)
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return chQSizeI(oqp);
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return chQSizeI(oqp) - (size_t)cnt;
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}
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/**
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@ -283,7 +281,9 @@ size_t chOQGetFullI(OutputQueue *oqp) {
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void chOQResetI(OutputQueue *oqp) {
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oqp->q_rdptr = oqp->q_wrptr = oqp->q_buffer;
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chSemResetI(&oqp->q_sem, (cnt_t)(oqp->q_top - oqp->q_buffer));
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oqp->q_counter = chQSizeI(oqp);
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while (notempty(&oqp->q_waiting))
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chSchReadyI(fifo_remove(&oqp->q_waiting))->p_u.rdymsg = RDY_RESET;
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}
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/**
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@ -307,13 +307,18 @@ void chOQResetI(OutputQueue *oqp) {
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* @api
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*/
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msg_t chOQPutTimeout(OutputQueue *oqp, uint8_t b, systime_t time) {
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msg_t msg;
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chSysLock();
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if ((msg = chSemWaitTimeoutS(&oqp->q_sem, time)) < RDY_OK) {
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chSysUnlock();
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return msg;
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while (chOQIsFullI(oqp)) {
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msg_t msg;
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if ((msg = qwait((GenericQueue *)oqp, time)) < RDY_OK) {
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chSysUnlock();
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return msg;
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}
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}
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oqp->q_counter--;
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*oqp->q_wrptr++ = b;
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if (oqp->q_wrptr >= oqp->q_top)
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oqp->q_wrptr = oqp->q_buffer;
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@ -341,10 +346,12 @@ msg_t chOQGetI(OutputQueue *oqp) {
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if (chOQIsEmptyI(oqp))
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return Q_EMPTY;
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oqp->q_counter++;
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b = *oqp->q_rdptr++;
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if (oqp->q_rdptr >= oqp->q_top)
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oqp->q_rdptr = oqp->q_buffer;
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chSemSignalI(&oqp->q_sem);
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if (notempty(&oqp->q_waiting))
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chSchReadyI(fifo_remove(&oqp->q_waiting))->p_u.rdymsg = RDY_OK;
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return b;
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}
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@ -381,16 +388,15 @@ size_t chOQWriteTimeout(OutputQueue *oqp, const uint8_t *bp,
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chSysLock();
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while (TRUE) {
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if (chOQIsFullI(oqp)) {
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while (chOQIsFullI(oqp)) {
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if (nfy)
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nfy(oqp);
|
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if ((chSemWaitTimeoutS(&oqp->q_sem, time) != RDY_OK)) {
|
||||
if (qwait((GenericQueue *)oqp, time) != RDY_OK) {
|
||||
chSysUnlock();
|
||||
return w;
|
||||
}
|
||||
}
|
||||
else
|
||||
chSemFastWaitI(&oqp->q_sem);
|
||||
oqp->q_counter--;
|
||||
*oqp->q_wrptr++ = *bp++;
|
||||
if (oqp->q_wrptr >= oqp->q_top)
|
||||
oqp->q_wrptr = oqp->q_buffer;
|
||||
|
|
|
@ -130,12 +130,16 @@ static void wakeup(void *p) {
|
|||
/* Handling the special case where the thread has been made ready by
|
||||
another thread with higher priority.*/
|
||||
return;
|
||||
#if CH_USE_SEMAPHORES || (CH_USE_CONDVARS && CH_USE_CONDVARS_TIMEOUT)
|
||||
#if CH_USE_SEMAPHORES || CH_USE_QUEUES || \
|
||||
(CH_USE_CONDVARS && CH_USE_CONDVARS_TIMEOUT)
|
||||
#if CH_USE_SEMAPHORES
|
||||
case THD_STATE_WTSEM:
|
||||
chSemFastSignalI((Semaphore *)tp->p_u.wtobjp);
|
||||
/* Falls into, intentional. */
|
||||
#endif
|
||||
#if CH_USE_QUEUES
|
||||
case THD_STATE_WTQUEUE:
|
||||
#endif
|
||||
#if CH_USE_CONDVARS && CH_USE_CONDVARS_TIMEOUT
|
||||
case THD_STATE_WTCOND:
|
||||
#endif
|
||||
|
|
|
@ -71,6 +71,7 @@
|
|||
*****************************************************************************
|
||||
|
||||
*** 2.3.3 ***
|
||||
- FIX: Race condition in output queues (bug 3303908)(backported to 2.2.4).
|
||||
- FIX: Fixed timeout problem in the lwIP interface layer (bug 3302420)
|
||||
(backported to 2.2.4).
|
||||
- NEW: Reorganization of the Cortex-Mx ports in order to reduced code and
|
||||
|
@ -89,6 +90,8 @@
|
|||
- CHANGE: Removed the CH_CURRP_REGISTER_CACHE option, it is GCC-specific so
|
||||
it does not belong to the kernel options. The feature will be eventually
|
||||
reimplemented as a port-specific option.
|
||||
- CHANGE: chiQGetFullI() and chOQGetFullI() become macros. The queues
|
||||
subsystem has been optimized and is no more dependent on semaphores.
|
||||
|
||||
*** 2.3.2 ***
|
||||
- FIX: Fixed invalid BRR() macro in AVR serial driver (bug 3299306)(backported
|
||||
|
|
Loading…
Reference in New Issue