FS-6891 FS-7002 FS-7059 FS-7072 FS-7073 FS-7076 #close #comment All of these bugs are invalidated due to a botched revert -- commit 72c3df5ed3
was supposed to revert commit 1b612fecb6
but it only reverted part of it. commit 158c1f23da
from the other day was erroneously created to work around the result of the botched revert so it is reverted. The result of this commit should be to bring it back to effectively properly revert 1b612fecb6
and now you can test and open new bugs if necessary. This includes the segfault in eavesdrop, and any media bug releated reports. Consider working together and only reporting one new bug if you still encounter any more problems and be sure to include details and make sure the jitter buffer is being used.
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@ -179,9 +179,6 @@ struct switch_core_session {
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switch_media_handle_t *media_handle;
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uint32_t decoder_errors;
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switch_time_t last_read_time;
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switch_time_t last_write_time;
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};
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struct switch_media_bug {
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@ -762,26 +762,11 @@ SWITCH_DECLARE(switch_status_t) switch_core_session_read_frame(switch_core_sessi
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switch_media_bug_t *bp;
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switch_bool_t ok = SWITCH_TRUE;
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int prune = 0;
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switch_time_t now = switch_micro_time_now();
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switch_time_t diff = 0;
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switch_size_t len = session->read_impl.decoded_bytes_per_packet;
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unsigned char fill_data[SWITCH_RECOMMENDED_BUFFER_SIZE] = {0};
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switch_thread_rwlock_rdlock(session->bug_rwlock);
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if (session->last_read_time && session->last_read_time < now) {
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diff = ((now - session->last_read_time) + 3000 ) / session->read_impl.microseconds_per_packet;
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if (diff > 1) {
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memset(fill_data, 255, len);
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}
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}
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session->last_read_time = switch_micro_time_now();
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for (bp = session->bugs; bp; bp = bp->next) {
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ok = SWITCH_TRUE;
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if (switch_channel_test_flag(session->channel, CF_PAUSE_BUGS) && !switch_core_media_bug_test_flag(bp, SMBF_NO_PAUSE)) {
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continue;
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}
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@ -801,17 +786,6 @@ SWITCH_DECLARE(switch_status_t) switch_core_session_read_frame(switch_core_sessi
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if (ok && bp->ready && switch_test_flag(bp, SMBF_READ_STREAM)) {
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switch_mutex_lock(bp->read_mutex);
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if (diff > 1) {
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switch_time_t tdiff = diff;
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while(tdiff > 1) {
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switch_buffer_write(bp->raw_read_buffer, fill_data, len);
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tdiff--;
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}
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}
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if (bp->read_demux_frame) {
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uint8_t data[SWITCH_RECOMMENDED_BUFFER_SIZE];
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int bytes = read_frame->datalen / 2;
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@ -1371,23 +1345,8 @@ SWITCH_DECLARE(switch_status_t) switch_core_session_write_frame(switch_core_sess
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if (session->bugs) {
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switch_media_bug_t *bp;
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int prune = 0;
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switch_time_t now = switch_micro_time_now();
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switch_time_t diff = 0;
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switch_size_t len = session->read_impl.decoded_bytes_per_packet;
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unsigned char fill_data[SWITCH_RECOMMENDED_BUFFER_SIZE] = {0};
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switch_thread_rwlock_rdlock(session->bug_rwlock);
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if (session->last_write_time && session->last_write_time < now) {
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diff = ((now - session->last_write_time) + 3000 ) / session->read_impl.microseconds_per_packet;
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if (diff > 1) {
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memset(fill_data, 255, len);
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}
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}
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session->last_write_time = switch_micro_time_now();
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for (bp = session->bugs; bp; bp = bp->next) {
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switch_bool_t ok = SWITCH_TRUE;
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@ -1410,15 +1369,6 @@ SWITCH_DECLARE(switch_status_t) switch_core_session_write_frame(switch_core_sess
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if (switch_test_flag(bp, SMBF_WRITE_STREAM)) {
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switch_mutex_lock(bp->write_mutex);
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if (diff > 1) {
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switch_time_t tdiff = diff;
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while(tdiff > 1) {
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switch_buffer_write(bp->raw_read_buffer, fill_data, len);
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tdiff--;
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}
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}
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switch_buffer_write(bp->raw_write_buffer, write_frame->data, write_frame->datalen);
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switch_mutex_unlock(bp->write_mutex);
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@ -1313,13 +1313,12 @@ static switch_bool_t record_callback(switch_media_bug_t *bug, void *user_data, s
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uint8_t data[SWITCH_RECOMMENDED_BUFFER_SIZE];
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switch_frame_t frame = { 0 };
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switch_status_t status;
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int x = 0;
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frame.data = data;
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frame.buflen = SWITCH_RECOMMENDED_BUFFER_SIZE;
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for (;;) {
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status = switch_core_media_bug_read(bug, &frame, x++ == 0);
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status = switch_core_media_bug_read(bug, &frame, SWITCH_FALSE);
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if (status == SWITCH_STATUS_SUCCESS || status == SWITCH_STATUS_BREAK) {
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