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663aeb2131
The SVT-HEVC (Scalable Video Technology[0] for HEVC) Encoder is an open source video coding technology[1] that is highly optimized for Intel Xeon Scalable processors and Intel Xeon D processors. [0] https://01.org/svt [1] https://github.com/OpenVisualCloud/SVT-HEVC
280 lines
7.5 KiB
C
280 lines
7.5 KiB
C
/* GStreamer
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* Copyright (C) 2019 Yeongjin Jeong <yeongjin.jeong@navercorp.com>
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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 Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later 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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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library 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 St, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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#include <gst/check/gstcheck.h>
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#include <gst/check/gstharness.h>
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GST_START_TEST (test_encode_simple)
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{
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GstHarness *h;
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GstCaps *outcaps, *caps;
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gint i = 0;
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h = gst_harness_new_parse ("svthevcenc speed=9 bitrate=1000 ! h265parse");
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gst_harness_add_src_parse (h, "videotestsrc is-live=true ! "
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"capsfilter caps=\"video/x-raw,width=320,height=240,framerate=25/1\"",
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TRUE);
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/* Push 25 buffers into the encoder */
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fail_unless_equals_int (GST_FLOW_OK,
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gst_harness_src_crank_and_push_many (h, 25, 25));
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/* EOS will cause the remaining buffers to be drained */
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fail_unless (gst_harness_push_event (h, gst_event_new_eos ()));
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fail_unless_equals_int (gst_harness_buffers_received (h), 25);
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outcaps =
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gst_caps_from_string
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("video/x-h265,width=(int)320,height=(int)240,framerate=(fraction)25/1");
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caps = gst_pad_get_current_caps (h->sinkpad);
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fail_unless (caps != NULL);
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fail_unless (gst_caps_can_intersect (caps, outcaps));
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for (i = 0; i < 25; i++) {
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GstBuffer *buffer = gst_harness_pull (h);
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fail_unless_equals_uint64 (GST_BUFFER_DURATION (buffer),
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gst_util_uint64_scale (1, GST_SECOND, 25));
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gst_buffer_unref (buffer);
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}
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gst_caps_unref (outcaps);
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gst_caps_unref (caps);
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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_reuse)
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{
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GstHarness *h;
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GstCaps *srccaps, *outcaps, *caps;
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GstBuffer *in_buf = NULL;
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GstFlowReturn ret;
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GstSegment seg;
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gint loop, i;
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h = gst_harness_new_parse ("svthevcenc speed=9 bitrate=1000");
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srccaps =
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gst_caps_from_string
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("video/x-raw,format=I420,width=(int)320,height=(int)240,framerate=(fraction)25/1");
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outcaps =
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gst_caps_from_string
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("video/x-h265,width=(int)320,height=(int)240,framerate=(fraction)25/1");
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in_buf = gst_buffer_new_and_alloc ((320 * 240) * 3 / 2);
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gst_buffer_memset (in_buf, 0, 0, -1);
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GST_BUFFER_DURATION (in_buf) = gst_util_uint64_scale (1, GST_SECOND, 25);
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GST_BUFFER_DTS (in_buf) = GST_CLOCK_TIME_NONE;
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gst_segment_init (&seg, GST_FORMAT_TIME);
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for (loop = 0; loop < 2; loop++) {
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gst_harness_play (h);
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fail_unless (gst_harness_push_event (h,
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gst_event_new_stream_start ("test")));
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fail_unless (gst_harness_push_event (h, gst_event_new_caps (srccaps)));
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fail_unless (gst_harness_push_event (h, gst_event_new_segment (&seg)));
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for (i = 0; i < 25; i++) {
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GST_BUFFER_PTS (in_buf) = gst_util_uint64_scale (i, GST_SECOND, 25);
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ret = gst_harness_push (h, gst_buffer_ref (in_buf));
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fail_unless (ret == GST_FLOW_OK, "GstFlowReturn was %s",
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gst_flow_get_name (ret));
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}
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/* EOS will cause the remaining buffers to be drained */
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fail_unless (gst_harness_push_event (h, gst_event_new_eos ()));
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fail_unless_equals_int (gst_harness_buffers_received (h), (loop + 1) * 25);
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caps = gst_pad_get_current_caps (h->sinkpad);
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fail_unless (caps != NULL);
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fail_unless (gst_caps_can_intersect (caps, outcaps));
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for (i = 0; i < 25; i++) {
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GstBuffer *buffer = gst_harness_pull (h);
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fail_unless_equals_uint64 (GST_BUFFER_DURATION (buffer),
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gst_util_uint64_scale (1, GST_SECOND, 25));
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gst_buffer_unref (buffer);
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}
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gst_caps_unref (caps);
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ASSERT_SET_STATE (h->element, GST_STATE_READY, GST_STATE_CHANGE_SUCCESS);
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}
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gst_caps_unref (srccaps);
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gst_caps_unref (outcaps);
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gst_buffer_unref (in_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_no_encoding)
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{
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GstHarness *h;
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GstCaps *caps;
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GstEvent *event;
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h = gst_harness_new_parse ("svthevcenc");
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fail_unless (h != NULL);
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gst_harness_play (h);
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caps = gst_caps_from_string
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("video/x-raw,format=I420,width=(int)320,height=(int)240,framerate=(fraction)25/1");
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gst_harness_set_src_caps (h, caps);
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/* Check if draining are performed well without a buffer push */
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fail_unless (gst_harness_push_event (h, gst_event_new_eos ()));
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do {
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gboolean term = FALSE;
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event = gst_harness_pull_event (h);
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/* wait until get EOS event */
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if (event) {
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if (GST_EVENT_TYPE (event) == GST_EVENT_EOS)
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term = TRUE;
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gst_event_unref (event);
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if (term)
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break;
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}
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} while (TRUE);
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gst_harness_teardown (h);
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}
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GST_END_TEST;
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#define MAX_PUSH_BUFFER 300
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GST_START_TEST (test_reconfigure)
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{
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GstHarness *h;
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GstElement *svthevcenc;
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GstCaps *caps;
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GstEvent *event;
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GstBuffer *in_buf, *out_buf = NULL;
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GstFlowReturn ret;
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gint i = 0;
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h = gst_harness_new_parse ("svthevcenc ! h265parse");
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fail_unless (h != NULL);
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svthevcenc = gst_harness_find_element (h, "svthevcenc");
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g_object_set (svthevcenc, "speed", 9, NULL);
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gst_harness_play (h);
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caps = gst_caps_from_string
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("video/x-raw,format=I420,width=(int)320,height=(int)240,framerate=(fraction)25/1");
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gst_harness_set_src_caps (h, caps);
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in_buf = gst_buffer_new_and_alloc ((320 * 240) * 3 / 2);
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gst_buffer_memset (in_buf, 0, 0, -1);
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GST_BUFFER_DURATION (in_buf) = GST_SECOND;
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GST_BUFFER_DTS (in_buf) = GST_CLOCK_TIME_NONE;
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/* Push bufffers until get encoder output */
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do {
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fail_if (i > MAX_PUSH_BUFFER);
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GST_BUFFER_PTS (in_buf) = i * GST_SECOND;
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ret = gst_harness_push (h, gst_buffer_ref (in_buf));
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fail_unless (ret == GST_FLOW_OK, "GstFlowReturn was %s",
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gst_flow_get_name (ret));
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out_buf = gst_harness_try_pull (h);
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i++;
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} while (out_buf == NULL);
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gst_buffer_unref (out_buf);
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/* Change property for reconfig */
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g_object_set (svthevcenc, "speed", 8, NULL);
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/* Push bufffers until get encoder output */
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do {
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fail_if (i > 2 * MAX_PUSH_BUFFER);
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GST_BUFFER_PTS (in_buf) = i * GST_SECOND;
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ret = gst_harness_push (h, gst_buffer_ref (in_buf));
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fail_unless (ret == GST_FLOW_OK, "GstFlowReturn was %s",
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gst_flow_get_name (ret));
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out_buf = gst_harness_try_pull (h);
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i++;
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} while (out_buf == NULL);
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gst_buffer_unref (out_buf);
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gst_buffer_unref (in_buf);
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/* push EOS to drain all buffers */
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fail_unless (gst_harness_push_event (h, gst_event_new_eos ()));
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do {
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gboolean term = FALSE;
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event = gst_harness_pull_event (h);
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/* wait until get EOS event */
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if (event) {
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if (GST_EVENT_TYPE (event) == GST_EVENT_EOS)
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term = TRUE;
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gst_event_unref (event);
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if (term)
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break;
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}
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} while (out_buf == NULL);
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gst_object_unref (svthevcenc);
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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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svthevcenc_suite (void)
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{
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Suite *s = suite_create ("svthevcenc");
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TCase *tc_chain = tcase_create ("general");
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suite_add_tcase (s, tc_chain);
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tcase_add_test (tc_chain, test_encode_simple);
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tcase_add_test (tc_chain, test_reuse);
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tcase_add_test (tc_chain, test_no_encoding);
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tcase_add_test (tc_chain, test_reconfigure);
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return s;
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}
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GST_CHECK_MAIN (svthevcenc);
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