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https://gitlab.freedesktop.org/gstreamer/gstreamer.git
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8335039ecd
Fixes sign extension issues, unchecked return values and some constant expression results. CID: 1465073, 1465074, 1465075, 1465076, 1465077 Part-of: <https://gitlab.freedesktop.org/gstreamer/gst-plugins-bad/-/merge_requests/1398>
380 lines
11 KiB
C
380 lines
11 KiB
C
/*
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* GStreamer AVTP Plugin
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* Copyright (C) 2019 Intel Corporation
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later
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* version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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* Boston, MA 02110-1301 USA
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*/
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#include "../../../ext/avtp/gstavtpcrfsync.c"
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#undef GST_CAT_DEFAULT
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#include <avtp.h>
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#include <avtp_crf.h>
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#include <avtp_aaf.h>
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#include <avtp_cvf.h>
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#include <gst/check/gstcheck.h>
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#include <gst/check/gstharness.h>
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#include "../../../ext/avtp/gstavtpcrfutil.h"
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#define STREAM_ID 0xDEADC0DEDEADC0DE
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struct buffer_tstamps
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{
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GstClockTime buf_pts;
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GstClockTime buf_dts;
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GstClockTime avtp_ts;
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GstClockTime h264_ts;
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};
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static GstHarness *
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setup_harness (void)
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{
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GstHarness *h;
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h = gst_harness_new_parse ("avtpcrfsync streamid=0xDEADC0DEDEADC0DE");
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gst_harness_set_src_caps_str (h, "application/x-avtp");
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return h;
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}
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static void
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fill_buffer_video_data (struct avtp_stream_pdu *pdu)
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{
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const gint DATA_LEN = sizeof (guint32) + 3;
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avtp_cvf_pdu_init (pdu, AVTP_CVF_FORMAT_SUBTYPE_H264);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_STREAM_ID, STREAM_ID);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_TV, 1);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_M, 1);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_TIMESTAMP, 0);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_H264_PTV, 1);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_H264_TIMESTAMP, 0);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_STREAM_DATA_LEN, DATA_LEN);
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}
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static void
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fill_buffer_audio_data (struct avtp_stream_pdu *pdu)
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{
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const int DATA_LEN = 4;
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avtp_aaf_pdu_init (pdu);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_TV, 1);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_STREAM_ID, 0xDEADC0DEDEADC0DE);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_FORMAT, AVTP_AAF_FORMAT_INT_16BIT);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_NSR, AVTP_AAF_PCM_NSR_48KHZ);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_CHAN_PER_FRAME, 2);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_BIT_DEPTH, 16);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_SP, AVTP_AAF_PCM_SP_NORMAL);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_TIMESTAMP, 0);
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_STREAM_DATA_LEN, DATA_LEN);
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}
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static GstBuffer *
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create_input_buffer (GstHarness * h, guint32 subtype)
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{
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struct avtp_stream_pdu *pdu;
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GstMapInfo info;
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GstBuffer *buf;
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const gint DATA_LEN = sizeof (guint32) + 3;
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buf = gst_harness_create_buffer (h, sizeof (struct avtp_stream_pdu) +
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DATA_LEN);
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gst_buffer_map (buf, &info, GST_MAP_WRITE);
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pdu = (struct avtp_stream_pdu *) info.data;
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if (subtype == AVTP_SUBTYPE_AAF)
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fill_buffer_audio_data (pdu);
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else if (subtype == AVTP_SUBTYPE_CVF)
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fill_buffer_video_data (pdu);
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gst_buffer_unmap (buf, &info);
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return buf;
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}
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static void
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set_buffer_tstamps (GstBuffer * buf, struct buffer_tstamps *orig)
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{
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struct avtp_stream_pdu *pdu;
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GstMapInfo info;
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guint32 type;
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gint r;
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gst_buffer_map (buf, &info, GST_MAP_WRITE);
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pdu = (struct avtp_stream_pdu *) info.data;
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GST_BUFFER_PTS (buf) = orig->buf_pts;
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GST_BUFFER_DTS (buf) = orig->buf_dts;
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r = avtp_pdu_get ((struct avtp_common_pdu *) pdu, AVTP_FIELD_SUBTYPE, &type);
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g_assert (r == 0);
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if (type == AVTP_SUBTYPE_AAF)
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avtp_aaf_pdu_set (pdu, AVTP_AAF_FIELD_TIMESTAMP, orig->avtp_ts);
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else if (type == AVTP_SUBTYPE_CVF) {
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_TIMESTAMP, orig->avtp_ts);
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avtp_cvf_pdu_set (pdu, AVTP_CVF_FIELD_H264_TIMESTAMP, orig->h264_ts);
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}
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gst_buffer_unmap (buf, &info);
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}
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static void
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validate_tstamps (GstAvtpCrfBase * avtpcrfbase, GstBuffer * buf,
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struct buffer_tstamps *expected)
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{
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GstClockTime tstamp;
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struct avtp_stream_pdu *pdu;
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GstMapInfo info;
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int res;
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gst_buffer_map (buf, &info, GST_MAP_READ);
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pdu = (struct avtp_stream_pdu *) info.data;
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fail_unless_equals_uint64 (GST_BUFFER_PTS (buf), expected->buf_pts);
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fail_unless_equals_uint64 (GST_BUFFER_DTS (buf), expected->buf_dts);
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tstamp = get_avtp_tstamp (avtpcrfbase, pdu);
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fail_unless_equals_uint64 (tstamp, expected->avtp_ts);
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if (h264_tstamp_valid (pdu)) {
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res = avtp_cvf_pdu_get (pdu, AVTP_CVF_FIELD_H264_TIMESTAMP, &tstamp);
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fail_unless (res == 0);
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fail_unless_equals_uint64 (tstamp, expected->h264_ts);
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}
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gst_buffer_unmap (buf, &info);
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}
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static void
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test_crf_tstamps (GstHarness * h, GstBuffer * buf, struct buffer_tstamps *orig,
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struct buffer_tstamps *expected)
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{
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GstAvtpCrfBase *avtpcrfbase;
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GstBuffer *bufout;
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avtpcrfbase = (GstAvtpCrfBase *) gst_harness_find_element (h, "avtpcrfsync");
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set_buffer_tstamps (buf, orig);
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bufout = gst_harness_push_and_pull (h, buf);
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validate_tstamps (avtpcrfbase, bufout, expected);
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gst_object_unref (avtpcrfbase);
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}
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GST_START_TEST (test_properties)
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{
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const guint64 streamid = 0xAABBCCDDEEFF0001;
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const gchar *address = "01:AA:BB:CC:DD:EE";
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const gchar *ifname = "enp1s0";
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GstElement *element;
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guint64 val64;
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gchar *str;
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element = gst_check_setup_element ("avtpcrfsync");
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g_object_set (G_OBJECT (element), "ifname", ifname, NULL);
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g_object_get (G_OBJECT (element), "ifname", &str, NULL);
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fail_unless_equals_string (str, ifname);
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g_free (str);
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g_object_set (G_OBJECT (element), "address", address, NULL);
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g_object_get (G_OBJECT (element), "address", &str, NULL);
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fail_unless_equals_string (str, address);
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g_free (str);
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g_object_set (G_OBJECT (element), "streamid", streamid, NULL);
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g_object_get (G_OBJECT (element), "streamid", &val64, NULL);
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fail_unless_equals_uint64_hex (val64, streamid);
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gst_object_unref (element);
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}
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GST_END_TEST;
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GST_START_TEST (test_set_avtp_tstamp)
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{
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GstAvtpCrfSync *avtpcrfsync = g_object_new (GST_TYPE_AVTP_CRF_SYNC, NULL);
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struct avtp_stream_pdu pdu;
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GstClockTime tstamp;
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int res;
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avtp_aaf_pdu_init (&pdu);
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avtp_aaf_pdu_set (&pdu, AVTP_AAF_FIELD_TV, 1);
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set_avtp_tstamp (avtpcrfsync, &pdu, 12345);
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res = avtp_aaf_pdu_get (&pdu, AVTP_AAF_FIELD_TIMESTAMP, &tstamp);
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fail_unless (res == 0);
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fail_unless_equals_uint64 (tstamp, 12345);
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avtp_cvf_pdu_init (&pdu, AVTP_CVF_FORMAT_SUBTYPE_H264);
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avtp_cvf_pdu_set (&pdu, AVTP_CVF_FIELD_TV, 1);
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set_avtp_tstamp (avtpcrfsync, &pdu, 12345);
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res = avtp_cvf_pdu_get (&pdu, AVTP_CVF_FIELD_TIMESTAMP, &tstamp);
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fail_unless (res == 0);
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fail_unless_equals_uint64 (tstamp, 12345);
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g_object_unref (avtpcrfsync);
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}
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GST_END_TEST;
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GST_START_TEST (test_set_avtp_mr_bit)
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{
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GstAvtpCrfSync *avtpcrfsync = g_object_new (GST_TYPE_AVTP_CRF_SYNC, NULL);
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struct avtp_stream_pdu pdu;
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guint64 mr_bit;
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int res;
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avtp_aaf_pdu_init (&pdu);
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set_avtp_mr_bit (avtpcrfsync, &pdu, 1);
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res = avtp_aaf_pdu_get (&pdu, AVTP_AAF_FIELD_MR, &mr_bit);
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fail_unless (res == 0);
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fail_unless_equals_uint64 (mr_bit, 1);
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avtp_cvf_pdu_init (&pdu, AVTP_CVF_FORMAT_SUBTYPE_H264);
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set_avtp_mr_bit (avtpcrfsync, &pdu, 1);
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res = avtp_cvf_pdu_get (&pdu, AVTP_CVF_FIELD_MR, &mr_bit);
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fail_unless (res == 0);
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fail_unless_equals_uint64 (mr_bit, 1);
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g_object_unref (avtpcrfsync);
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}
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GST_END_TEST;
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GST_START_TEST (test_crf_cvf_data)
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{
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struct buffer_tstamps orig, expected;
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GstAvtpCrfBase *avtpcrfbase;
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GstBuffer *buf;
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GstHarness *h;
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h = setup_harness ();
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buf = create_input_buffer (h, AVTP_SUBTYPE_CVF);
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avtpcrfbase = (GstAvtpCrfBase *) gst_harness_find_element (h, "avtpcrfsync");
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avtpcrfbase->thread_data.average_period = 3300;
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avtpcrfbase->thread_data.current_ts = 110000;
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gst_object_unref (avtpcrfbase);
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orig = (struct buffer_tstamps) {
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.buf_pts = 103000,.buf_dts = 100000,.avtp_ts = 110000,.h264_ts = 108000};
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expected = (struct buffer_tstamps) {
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.buf_pts = 104204,.buf_dts = 100000,.avtp_ts = 110000,.h264_ts = 109204};
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test_crf_tstamps (h, buf, &orig, &expected);
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orig = (struct buffer_tstamps) {
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.buf_pts = 107000,.buf_dts = 105000,.avtp_ts = 113000,.h264_ts = 118500};
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expected = (struct buffer_tstamps) {
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.buf_pts = 108400,.buf_dts = 105300,.avtp_ts = 113300,.h264_ts = 119900};
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test_crf_tstamps (h, buf, &orig, &expected);
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/* test for invalid DTS */
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orig = (struct buffer_tstamps) {
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.buf_pts = 107000,.buf_dts = GST_CLOCK_TIME_NONE,.avtp_ts =
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113000,.h264_ts = 118500};
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expected = (struct buffer_tstamps) {
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.buf_pts = 108400,.buf_dts = GST_CLOCK_TIME_NONE,.avtp_ts =
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113300,.h264_ts = 119900};
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test_crf_tstamps (h, buf, &orig, &expected);
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gst_buffer_unref (buf);
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gst_harness_teardown (h);
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}
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GST_END_TEST;
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GST_START_TEST (test_crf_aaf_data)
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{
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struct buffer_tstamps orig, expected;
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GstAvtpCrfBase *avtpcrfbase;
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GstBuffer *buf;
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GstHarness *h;
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h = setup_harness ();
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buf = create_input_buffer (h, AVTP_SUBTYPE_AAF);
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avtpcrfbase = (GstAvtpCrfBase *) gst_harness_find_element (h, "avtpcrfsync");
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avtpcrfbase->thread_data.average_period = 3300;
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avtpcrfbase->thread_data.current_ts = 110000;
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gst_object_unref (avtpcrfbase);
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orig = (struct buffer_tstamps) {
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.buf_pts = 108000,.buf_dts = 0,.avtp_ts = 110000,.h264_ts = 0};
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expected = (struct buffer_tstamps) {
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.buf_pts = 108000,.buf_dts = 0,.avtp_ts = 110000,.h264_ts = 0};
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test_crf_tstamps (h, buf, &orig, &expected);
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orig = (struct buffer_tstamps) {
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.buf_pts = 110000,.buf_dts = 0,.avtp_ts = 113000,.h264_ts = 0};
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expected = (struct buffer_tstamps) {
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.buf_pts = 110300,.buf_dts = 0,.avtp_ts = 113300,.h264_ts = 0};
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test_crf_tstamps (h, buf, &orig, &expected);
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gst_buffer_unref (buf);
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gst_harness_teardown (h);
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}
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GST_END_TEST;
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GST_START_TEST (test_crf_period_zero)
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{
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struct buffer_tstamps orig, expected;
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GstAvtpCrfBase *avtpcrfbase;
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GstBuffer *buf;
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GstHarness *h;
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h = setup_harness ();
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buf = create_input_buffer (h, AVTP_SUBTYPE_CVF);
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avtpcrfbase = (GstAvtpCrfBase *) gst_harness_find_element (h, "avtpcrfsync");
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avtpcrfbase->thread_data.average_period = 0.0;
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avtpcrfbase->thread_data.current_ts = 110;
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gst_object_unref (avtpcrfbase);
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orig = (struct buffer_tstamps) {
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.buf_pts = 100,.buf_dts = 105,.avtp_ts = 112,.h264_ts = 110};
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expected = (struct buffer_tstamps) {
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.buf_pts = 100,.buf_dts = 105,.avtp_ts = 112,.h264_ts = 110};
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test_crf_tstamps (h, buf, &orig, &expected);
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gst_buffer_unref (buf);
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gst_harness_teardown (h);
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}
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GST_END_TEST;
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static Suite *
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avtpcrfsync_suite (void)
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{
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Suite *s = suite_create ("avtpcrfsync");
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TCase *tc_chain = tcase_create ("general");
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GST_DEBUG_CATEGORY_INIT (avtpcrfsync_debug, "avtpcrfsync", 0,
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"CRF Synchronizer");
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suite_add_tcase (s, tc_chain);
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tcase_add_test (tc_chain, test_properties);
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tcase_add_test (tc_chain, test_set_avtp_tstamp);
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tcase_add_test (tc_chain, test_set_avtp_mr_bit);
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tcase_add_test (tc_chain, test_crf_cvf_data);
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tcase_add_test (tc_chain, test_crf_aaf_data);
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tcase_add_test (tc_chain, test_crf_period_zero);
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return s;
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}
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GST_CHECK_MAIN (avtpcrfsync);
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