freetdm: remove busy-waiting and use ftdm interrupt to wait for state change completion
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55da2afa7f
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903d136481
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@ -101,8 +101,10 @@ FT_DECLARE(ftdm_status_t) _ftdm_channel_complete_state(const char *file, const c
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ftdm_channel_state2str(fchan->last_state), ftdm_channel_state2str(state), diff);
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/* FIXME: broadcast condition to wake up anyone waiting on state completion if the channel
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* is blocking (FTDM_CHANNEL_NONBLOCK is not set) */
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if (ftdm_test_flag(fchan, FTDM_CHANNEL_BLOCKING)) {
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ftdm_clear_flag(fchan, FTDM_CHANNEL_BLOCKING);
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ftdm_interrupt_signal(fchan->state_change_notify);
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}
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return FTDM_SUCCESS;
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}
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@ -169,6 +171,7 @@ static int ftdm_parse_state_map(ftdm_channel_t *ftdmchan, ftdm_channel_state_t s
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#define DEFAULT_WAIT_TIME 1000
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FT_DECLARE(ftdm_status_t) ftdm_channel_set_state(const char *file, const char *func, int line, ftdm_channel_t *ftdmchan, ftdm_channel_state_t state, int waitrq)
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{
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ftdm_status_t status;
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int ok = 1;
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int waitms = DEFAULT_WAIT_TIME;
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@ -191,6 +194,16 @@ FT_DECLARE(ftdm_status_t) ftdm_channel_set_state(const char *file, const char *f
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return FTDM_FAIL;
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}
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if (!ftdmchan->state_change_notify) {
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status = ftdm_interrupt_create(&ftdmchan->state_change_notify, FTDM_INVALID_SOCKET);
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if (status != FTDM_SUCCESS) {
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ftdm_log_chan_ex(ftdmchan, file, func, line, FTDM_LOG_LEVEL_CRIT,
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"Failed to create state change interrupt when moving from %s to %s\n", ftdm_channel_state2str(ftdmchan->state), ftdm_channel_state2str(state));
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return status;
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}
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}
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if (ftdmchan->span->state_map) {
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ok = ftdm_parse_state_map(ftdmchan, state, ftdmchan->span->state_map);
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goto end;
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@ -276,67 +289,54 @@ FT_DECLARE(ftdm_status_t) ftdm_channel_set_state(const char *file, const char *f
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end:
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if (ok) {
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ftdm_log_chan_ex(ftdmchan, file, func, line, FTDM_LOG_LEVEL_DEBUG, "Changed state from %s to %s\n", ftdm_channel_state2str(ftdmchan->state), ftdm_channel_state2str(state));
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ftdmchan->last_state = ftdmchan->state;
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ftdmchan->state = state;
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ftdmchan->state_status = FTDM_STATE_STATUS_NEW;
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ftdmchan->history[ftdmchan->hindex].file = file;
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ftdmchan->history[ftdmchan->hindex].func = func;
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ftdmchan->history[ftdmchan->hindex].line = line;
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ftdmchan->history[ftdmchan->hindex].state = ftdmchan->state;
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ftdmchan->history[ftdmchan->hindex].last_state = ftdmchan->last_state;
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ftdmchan->history[ftdmchan->hindex].time = ftdm_current_time_in_ms();
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ftdmchan->history[ftdmchan->hindex].end_time = 0;
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ftdmchan->hindex++;
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if (ftdmchan->hindex == ftdm_array_len(ftdmchan->history)) {
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ftdmchan->hindex = 0;
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}
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ftdm_set_flag(ftdmchan, FTDM_CHANNEL_STATE_CHANGE);
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ftdm_mutex_lock(ftdmchan->span->mutex);
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ftdm_set_flag(ftdmchan->span, FTDM_SPAN_STATE_CHANGE);
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if (ftdmchan->span->pendingchans) {
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ftdm_queue_enqueue(ftdmchan->span->pendingchans, ftdmchan);
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}
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ftdm_mutex_unlock(ftdmchan->span->mutex);
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} else {
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if (!ok) {
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ftdm_log_chan_ex(ftdmchan, file, func, line, FTDM_LOG_LEVEL_WARNING, "VETO state change from %s to %s\n", ftdm_channel_state2str(ftdmchan->state), ftdm_channel_state2str(state));
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goto done;
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}
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ftdm_log_chan_ex(ftdmchan, file, func, line, FTDM_LOG_LEVEL_DEBUG, "Changed state from %s to %s\n", ftdm_channel_state2str(ftdmchan->state), ftdm_channel_state2str(state));
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ftdmchan->last_state = ftdmchan->state;
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ftdmchan->state = state;
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ftdmchan->state_status = FTDM_STATE_STATUS_NEW;
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ftdmchan->history[ftdmchan->hindex].file = file;
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ftdmchan->history[ftdmchan->hindex].func = func;
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ftdmchan->history[ftdmchan->hindex].line = line;
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ftdmchan->history[ftdmchan->hindex].state = ftdmchan->state;
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ftdmchan->history[ftdmchan->hindex].last_state = ftdmchan->last_state;
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ftdmchan->history[ftdmchan->hindex].time = ftdm_current_time_in_ms();
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ftdmchan->history[ftdmchan->hindex].end_time = 0;
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ftdmchan->hindex++;
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if (ftdmchan->hindex == ftdm_array_len(ftdmchan->history)) {
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ftdmchan->hindex = 0;
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}
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ftdm_set_flag(ftdmchan, FTDM_CHANNEL_STATE_CHANGE);
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ftdm_mutex_lock(ftdmchan->span->mutex);
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ftdm_set_flag(ftdmchan->span, FTDM_SPAN_STATE_CHANGE);
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if (ftdmchan->span->pendingchans) {
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ftdm_queue_enqueue(ftdmchan->span->pendingchans, ftdmchan);
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}
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ftdm_mutex_unlock(ftdmchan->span->mutex);
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if (ftdm_test_flag(ftdmchan, FTDM_CHANNEL_NONBLOCK)) {
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/* the channel should not block waiting for state processing */
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goto done;
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}
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/* there is an inherent race here between set and check of the change flag but we do not care because
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* the flag should never last raised for more than a few ms for any state change */
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while (waitrq && waitms > 0) {
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/* give a chance to the signaling stack to process it */
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ftdm_mutex_unlock(ftdmchan->mutex);
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ftdm_set_flag(ftdmchan, FTDM_CHANNEL_BLOCKING);
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ftdm_sleep(10);
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waitms -= 10;
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ftdm_mutex_unlock(ftdmchan->mutex);
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ftdm_mutex_lock(ftdmchan->mutex);
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/* if the flag is no longer set, the state change was processed (or is being processed) */
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if (!ftdm_test_flag(ftdmchan, FTDM_CHANNEL_STATE_CHANGE)) {
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break;
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}
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status = ftdm_interrupt_wait(ftdmchan->state_change_notify, waitms);
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/* if the state is no longer what we set, the state change was
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* obviously processed (and the current state change flag is for other state change) */
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if (ftdmchan->state != state) {
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break;
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}
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}
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ftdm_mutex_lock(ftdmchan->mutex);
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if (waitms <= 0) {
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ftdm_log_chan_ex(ftdmchan, file, func, line, FTDM_LOG_LEVEL_WARNING, "state change from %s to %s was most likely not processed after aprox %dms\n",
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if (status != FTDM_SUCCESS) {
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ftdm_log_chan_ex(ftdmchan, file, func, line,
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FTDM_LOG_LEVEL_WARNING, "state change from %s to %s was most likely not processed after aprox %dms\n",
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ftdm_channel_state2str(ftdmchan->last_state), ftdm_channel_state2str(state), DEFAULT_WAIT_TIME);
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ok = 0;
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goto done;
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}
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done:
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return ok ? FTDM_SUCCESS : FTDM_FAIL;
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@ -56,7 +56,11 @@ struct ftdm_interrupt {
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/* for generic interruption */
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HANDLE event;
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#else
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/* for generic interruption */
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/* In theory we could be using thread conditions for generic interruption,
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* however, Linux does not have a primitive like Windows WaitForMultipleObjects
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* to wait for both thread condition and file descriptors, therefore we decided
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* to use a dummy pipe for generic interruption/condition logic
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* */
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int readfd;
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int writefd;
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#endif
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@ -243,6 +247,7 @@ FT_DECLARE(ftdm_status_t) _ftdm_mutex_unlock(ftdm_mutex_t *mutex)
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FT_DECLARE(ftdm_status_t) ftdm_interrupt_create(ftdm_interrupt_t **ininterrupt, ftdm_socket_t device)
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{
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ftdm_status_t status = FTDM_SUCCESS;
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ftdm_interrupt_t *interrupt = NULL;
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#ifndef WIN32
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int fds[2];
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@ -253,7 +258,7 @@ FT_DECLARE(ftdm_status_t) ftdm_interrupt_create(ftdm_interrupt_t **ininterrupt,
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interrupt = ftdm_calloc(1, sizeof(*interrupt));
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if (!interrupt) {
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ftdm_log(FTDM_LOG_ERROR, "Failed to allocate interrupt memory\n");
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return FTDM_FAIL;
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return FTDM_ENOMEM;
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}
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interrupt->device = device;
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@ -261,11 +266,13 @@ FT_DECLARE(ftdm_status_t) ftdm_interrupt_create(ftdm_interrupt_t **ininterrupt,
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interrupt->event = CreateEvent(NULL, FALSE, FALSE, NULL);
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if (!interrupt->event) {
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ftdm_log(FTDM_LOG_ERROR, "Failed to allocate interrupt event\n");
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status = FTDM_ENOMEM;
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goto failed;
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}
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#else
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if (pipe(fds)) {
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ftdm_log(FTDM_LOG_ERROR, "Failed to allocate interrupt pipe: %s\n", strerror(errno));
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status = FTDM_FAIL;
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goto failed;
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}
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interrupt->readfd = fds[0];
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@ -287,7 +294,7 @@ failed:
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#endif
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ftdm_safe_free(interrupt);
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}
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return FTDM_FAIL;
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return status;
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}
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#define ONE_BILLION 1000000000
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@ -462,6 +462,7 @@ struct ftdm_channel {
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ftdm_dtmf_debug_t dtmfdbg;
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ftdm_io_dump_t rxdump;
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ftdm_io_dump_t txdump;
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ftdm_interrupt_t *state_change_notify; /*!< Notify when a state change is terminated */
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int32_t txdrops;
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int32_t rxdrops;
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};
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@ -250,6 +250,8 @@ typedef enum {
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#define FTDM_CHANNEL_NONBLOCK (1ULL << 33)
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/*!< There is a pending acknowledge for an indication */
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#define FTDM_CHANNEL_IND_ACK_PENDING (1ULL << 34)
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/*!< There is someone blocking in the channel waiting for state completion */
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#define FTDM_CHANNEL_BLOCKING (1ULL << 35)
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#include "ftdm_state.h"
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