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rtpbuffer: Initialize extended timestamp to the first wraparound period
This allows correct handling of wrapping around backwards during the first wraparound period and avoids the infamous "Cannot unwrap, any wrapping took place yet" error message. It allows makes sure that for actual timestamp jumps a valid value is returned instead of 0, which then allows the caller to handle it properly. Not having this can have the caller see the same timestamp (0) for a very long time, which for example can cause rtpjitterbuffer to output the same timestamp for a very long time. Fixes https://gitlab.freedesktop.org/gstreamer/gstreamer/-/issues/1500 Part-of: <https://gitlab.freedesktop.org/gstreamer/gstreamer/-/merge_requests/3202>
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2 changed files with 36 additions and 30 deletions
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@ -1326,7 +1326,7 @@ gst_rtp_buffer_ext_timestamp (guint64 * exttimestamp, guint32 timestamp)
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ext = *exttimestamp;
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if (ext == -1) {
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result = timestamp;
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result = (G_GUINT64_CONSTANT (1) << 32) + timestamp;
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} else {
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/* pick wraparound counter from previous timestamp and add to new timestamp */
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result = timestamp + (ext & ~(G_GUINT64_CONSTANT (0xffffffff)));
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@ -1995,21 +1995,22 @@ GST_START_TEST (test_ext_timestamp_basic)
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/* no wraparound when timestamps are increasing */
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result = gst_rtp_buffer_ext_timestamp (&exttimestamp, 0);
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fail_unless_equals_uint64 (result, 0);
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fail_unless_equals_uint64 (result, (G_GUINT64_CONSTANT (1) << 32) + 0);
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result = gst_rtp_buffer_ext_timestamp (&exttimestamp, 10);
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fail_unless_equals_uint64 (result, 10);
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fail_unless_equals_uint64 (result, (G_GUINT64_CONSTANT (1) << 32) + 10);
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result = gst_rtp_buffer_ext_timestamp (&exttimestamp, 10);
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fail_unless_equals_uint64 (result, 10);
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fail_unless_equals_uint64 (result, (G_GUINT64_CONSTANT (1) << 32) + 10);
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result = gst_rtp_buffer_ext_timestamp (&exttimestamp,
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G_GUINT64_CONSTANT (1) + G_MAXINT32);
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fail_unless_equals_uint64 (result, G_GUINT64_CONSTANT (1) + G_MAXINT32);
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fail_unless_equals_uint64 (result,
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(G_GUINT64_CONSTANT (1) << 32) + G_GUINT64_CONSTANT (1) + G_MAXINT32);
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/* Even big bumps under G_MAXINT32 don't result in wrap-around */
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exttimestamp = -1;
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result = gst_rtp_buffer_ext_timestamp (&exttimestamp, 1087500);
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fail_unless_equals_uint64 (result, 1087500);
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fail_unless_equals_uint64 (result, (G_GUINT64_CONSTANT (1) << 32) + 1087500);
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result = gst_rtp_buffer_ext_timestamp (&exttimestamp, 24);
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fail_unless_equals_uint64 (result, 24);
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fail_unless_equals_uint64 (result, (G_GUINT64_CONSTANT (1) << 32) + 24);
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}
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GST_END_TEST;
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@ -2020,13 +2021,15 @@ GST_START_TEST (test_ext_timestamp_wraparound)
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts,
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)),
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(G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)));
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((G_GUINT64_CONSTANT (1) << 32) + G_MAXUINT32 - 90000 +
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G_GUINT64_CONSTANT (1)));
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts, 0),
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G_MAXUINT32 + G_GUINT64_CONSTANT (1));
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(G_GUINT64_CONSTANT (1) << 32) + G_MAXUINT32 + G_GUINT64_CONSTANT (1));
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts, 90000),
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(G_MAXUINT32 + G_GUINT64_CONSTANT (1) + 90000));
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((G_GUINT64_CONSTANT (1) << 32) + G_MAXUINT32 + G_GUINT64_CONSTANT (1) +
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90000));
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}
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GST_END_TEST;
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@ -2036,37 +2039,41 @@ GST_START_TEST (test_ext_timestamp_wraparound_disordered)
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{
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guint64 ext_ts = -1;
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fail_unless (gst_rtp_buffer_ext_timestamp (&ext_ts,
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1))
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== (G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)));
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts,
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)),
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(G_GUINT64_CONSTANT (1) << 32) + G_MAXUINT32 - 90000 +
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G_GUINT64_CONSTANT (1));
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fail_unless (gst_rtp_buffer_ext_timestamp (&ext_ts, 0)
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== G_MAXUINT32 + G_GUINT64_CONSTANT (1));
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts, 0),
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(G_GUINT64_CONSTANT (1) << 32) + G_MAXUINT32 + G_GUINT64_CONSTANT (1));
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/* Unwrapping around */
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fail_unless (gst_rtp_buffer_ext_timestamp (&ext_ts,
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1))
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== (G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)));
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts,
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)),
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(G_GUINT64_CONSTANT (1) << 32) + G_MAXUINT32 - 90000 +
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G_GUINT64_CONSTANT (1));
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fail_unless (gst_rtp_buffer_ext_timestamp (&ext_ts, 90000)
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== (G_MAXUINT32 + G_GUINT64_CONSTANT (1) + 90000));
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts, 90000),
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(G_GUINT64_CONSTANT (1) << 32) + G_MAXUINT32 + G_GUINT64_CONSTANT (1) +
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90000);
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}
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GST_END_TEST;
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GST_START_TEST (test_ext_timestamp_wraparound_disordered_cannot_unwrap)
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GST_START_TEST (test_ext_timestamp_wraparound_disordered_backwards)
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{
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guint64 ext_ts = -1;
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fail_unless (gst_rtp_buffer_ext_timestamp (&ext_ts, 90000)
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== 90000);
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts, 90000),
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(G_GUINT64_CONSTANT (1) << 32) + 90000);
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/* Cannot unwrapping around */
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fail_unless (gst_rtp_buffer_ext_timestamp (&ext_ts,
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)) == 0);
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/* Wraps backwards */
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts,
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1)),
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G_MAXUINT32 - 90000 + G_GUINT64_CONSTANT (1));
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fail_unless (gst_rtp_buffer_ext_timestamp (&ext_ts, 90000)
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== 90000);
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fail_unless_equals_uint64 (gst_rtp_buffer_ext_timestamp (&ext_ts, 90000),
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(G_GUINT64_CONSTANT (1) << 32) + 90000);
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}
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GST_END_TEST;
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@ -2366,8 +2373,7 @@ rtp_suite (void)
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tcase_add_test (tc_chain, test_ext_timestamp_basic);
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tcase_add_test (tc_chain, test_ext_timestamp_wraparound);
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tcase_add_test (tc_chain, test_ext_timestamp_wraparound_disordered);
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tcase_add_test (tc_chain,
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test_ext_timestamp_wraparound_disordered_cannot_unwrap);
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tcase_add_test (tc_chain, test_ext_timestamp_wraparound_disordered_backwards);
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tcase_add_test (tc_chain, test_rtcp_compound_padding);
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tcase_add_test (tc_chain, test_rtp_buffer_extlen_wraparound);
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