mirror of
https://gitlab.freedesktop.org/gstreamer/gstreamer.git
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445 lines
13 KiB
C
445 lines
13 KiB
C
/* GStreamer
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* Copyright (C) 2019 Seungha Yang <seungha.yang@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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static GstStaticPadTemplate sinktemplate = GST_STATIC_PAD_TEMPLATE ("sink",
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GST_PAD_SINK,
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GST_PAD_ALWAYS,
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GST_STATIC_CAPS ("video/x-h264, "
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"width = (int) [1, MAX], "
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"height = (int) [1, MAX], " "framerate = (fraction) [0, MAX]"));
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static GstStaticPadTemplate srctemplate = GST_STATIC_PAD_TEMPLATE ("src",
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GST_PAD_SRC,
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GST_PAD_ALWAYS,
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GST_STATIC_CAPS ("video/x-raw, "
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"format = (string) NV12, "
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"width = (int) [1, MAX], "
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"height = (int) [1, MAX], " "framerate = (fraction) [0, MAX]"));
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static GstPad *sinkpad, *srcpad;
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static GstElement *
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setup_nvenc (const gchar * src_caps_str, GstCaps ** srccaps)
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{
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GstElement *nvenc;
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GstCaps *caps = NULL;
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GstBus *bus;
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caps = gst_caps_from_string (src_caps_str);
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fail_unless (caps != NULL);
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nvenc = gst_check_setup_element ("nvh264enc");
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fail_unless (nvenc != NULL);
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srcpad = gst_check_setup_src_pad (nvenc, &srctemplate);
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sinkpad = gst_check_setup_sink_pad (nvenc, &sinktemplate);
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gst_pad_set_active (srcpad, TRUE);
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gst_pad_set_active (sinkpad, TRUE);
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bus = gst_bus_new ();
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gst_element_set_bus (nvenc, bus);
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*srccaps = caps;
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buffers = NULL;
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return nvenc;
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}
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static void
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cleanup_nvenc (GstElement * nvenc)
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{
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GstBus *bus;
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/* Free parsed buffers */
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gst_check_drop_buffers ();
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bus = GST_ELEMENT_BUS (nvenc);
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gst_bus_set_flushing (bus, TRUE);
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gst_object_unref (bus);
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gst_pad_set_active (srcpad, FALSE);
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gst_pad_set_active (sinkpad, FALSE);
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gst_check_teardown_src_pad (nvenc);
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gst_check_teardown_sink_pad (nvenc);
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gst_check_teardown_element (nvenc);
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}
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GST_START_TEST (test_encode_simple)
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{
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GstElement *nvenc;
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GstBuffer *buffer;
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gint i;
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GList *iter;
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GstCaps *outcaps, *sinkcaps, *srccaps;
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GstSegment seg;
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nvenc =
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setup_nvenc
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("video/x-raw,format=(string)NV12,width=(int)320,height=(int)240,"
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"framerate=(fraction)25/1,interlace-mode=(string)progressive", &srccaps);
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ASSERT_SET_STATE (nvenc, GST_STATE_PLAYING, GST_STATE_CHANGE_SUCCESS);
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gst_segment_init (&seg, GST_FORMAT_TIME);
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seg.stop = gst_util_uint64_scale (10, GST_SECOND, 25);
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gst_check_setup_events (srcpad, nvenc, srccaps, GST_FORMAT_TIME);
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_segment (&seg)));
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buffer = gst_buffer_new_allocate (NULL, 320 * 240 + 2 * 160 * 120, NULL);
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gst_buffer_memset (buffer, 0, 0, -1);
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for (i = 0; i < 10; i++) {
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GST_BUFFER_TIMESTAMP (buffer) = gst_util_uint64_scale (i, GST_SECOND, 25);
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GST_BUFFER_DURATION (buffer) = gst_util_uint64_scale (1, GST_SECOND, 25);
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fail_unless (gst_pad_push (srcpad, gst_buffer_ref (buffer)) == GST_FLOW_OK);
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}
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gst_buffer_unref (buffer);
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_eos ()));
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/* All buffers must be there now */
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fail_unless_equals_int (g_list_length (buffers), 10);
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outcaps =
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gst_caps_from_string
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("video/x-h264,width=(int)320,height=(int)240,framerate=(fraction)25/1");
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for (iter = buffers; iter; iter = g_list_next (iter)) {
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buffer = iter->data;
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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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sinkcaps = gst_pad_get_current_caps (sinkpad);
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fail_unless (gst_caps_can_intersect (sinkcaps, outcaps));
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gst_caps_unref (sinkcaps);
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}
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gst_caps_unref (outcaps);
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gst_caps_unref (srccaps);
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cleanup_nvenc (nvenc);
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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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GstElement *nvenc;
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GstBuffer *buffer;
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gint i, loop;
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GList *iter;
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GstCaps *outcaps, *sinkcaps;
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GstSegment seg;
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GstCaps *srccaps;
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nvenc =
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setup_nvenc
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("video/x-raw,format=(string)NV12,width=(int)320,height=(int)240,"
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"framerate=(fraction)25/1,interlace-mode=(string)progressive", &srccaps);
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for (loop = 0; loop < 2; loop++) {
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ASSERT_SET_STATE (nvenc, GST_STATE_PLAYING, GST_STATE_CHANGE_SUCCESS);
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gst_segment_init (&seg, GST_FORMAT_TIME);
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seg.stop = gst_util_uint64_scale (10, GST_SECOND, 25);
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gst_check_setup_events (srcpad, nvenc, srccaps, GST_FORMAT_TIME);
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_segment (&seg)));
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gst_segment_init (&seg, GST_FORMAT_TIME);
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seg.stop = gst_util_uint64_scale (10, GST_SECOND, 25);
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_segment (&seg)));
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buffer = gst_buffer_new_allocate (NULL, 320 * 240 + 2 * 160 * 120, NULL);
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gst_buffer_memset (buffer, 0, 0, -1);
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for (i = 0; i < 10; i++) {
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GST_BUFFER_TIMESTAMP (buffer) = gst_util_uint64_scale (i, GST_SECOND, 25);
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GST_BUFFER_DURATION (buffer) = gst_util_uint64_scale (1, GST_SECOND, 25);
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fail_unless (gst_pad_push (srcpad,
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gst_buffer_ref (buffer)) == GST_FLOW_OK);
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}
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gst_buffer_unref (buffer);
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_eos ()));
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/* All buffers must be there now */
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fail_unless_equals_int (g_list_length (buffers), 10);
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outcaps =
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gst_caps_from_string
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("video/x-h264,width=(int)320,height=(int)240,framerate=(fraction)25/1");
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for (iter = buffers; iter; iter = g_list_next (iter)) {
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buffer = iter->data;
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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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sinkcaps = gst_pad_get_current_caps (sinkpad);
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fail_unless (gst_caps_can_intersect (sinkcaps, outcaps));
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gst_caps_unref (sinkcaps);
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}
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gst_check_drop_buffers ();
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gst_caps_unref (outcaps);
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ASSERT_SET_STATE (nvenc, GST_STATE_READY, GST_STATE_CHANGE_SUCCESS);
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}
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gst_caps_unref (srccaps);
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cleanup_nvenc (nvenc);
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}
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GST_END_TEST;
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GST_START_TEST (test_caps_interlace_mode)
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{
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GstElement *nvenc;
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GstBuffer *buffer;
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GstCaps *caps, *srccaps;
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GstSegment seg;
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nvenc =
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setup_nvenc
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("video/x-raw,format=(string)NV12,width=(int)320,height=(int)240,"
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"framerate=(fraction)25/1", &srccaps);
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ASSERT_SET_STATE (nvenc, GST_STATE_PLAYING, GST_STATE_CHANGE_SUCCESS);
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gst_check_setup_events (srcpad, nvenc, srccaps, GST_FORMAT_TIME);
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gst_segment_init (&seg, GST_FORMAT_TIME);
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_segment (&seg)));
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buffer = gst_buffer_new_allocate (NULL, 320 * 240 + 2 * 160 * 120, NULL);
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gst_buffer_memset (buffer, 0, 0, -1);
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/* empty interlace-mode */
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GST_BUFFER_TIMESTAMP (buffer) = 0;
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GST_BUFFER_DURATION (buffer) = gst_util_uint64_scale (1, GST_SECOND, 25);
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fail_unless (gst_pad_push (srcpad, gst_buffer_ref (buffer)) == GST_FLOW_OK);
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/* always valid interlace mode */
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caps =
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gst_caps_from_string
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("video/x-raw,format=(string)NV12,width=(int)320,height=(int)240,"
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"framerate=(fraction)25/1,interlace-mode=(string)progressive");
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_caps (caps)));
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gst_caps_unref (caps);
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GST_BUFFER_TIMESTAMP (buffer) = gst_util_uint64_scale (1, GST_SECOND, 25);
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GST_BUFFER_DURATION (buffer) = gst_util_uint64_scale (1, GST_SECOND, 25);
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fail_unless (gst_pad_push (srcpad, gst_buffer_ref (buffer)) == GST_FLOW_OK);
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/* not-supported interlace mode */
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caps =
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gst_caps_from_string
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("video/x-raw,format=(string)NV12,width=(int)320,height=(int)240,"
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"framerate=(fraction)25/1,interlace-mode=(string)alternate");
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fail_unless (gst_pad_push_event (srcpad, gst_event_new_caps (caps)));
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gst_caps_unref (caps);
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GST_BUFFER_TIMESTAMP (buffer) = gst_util_uint64_scale (2, GST_SECOND, 25);
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GST_BUFFER_DURATION (buffer) = gst_util_uint64_scale (1, GST_SECOND, 25);
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fail_if (gst_pad_push (srcpad, gst_buffer_ref (buffer)) == GST_FLOW_OK);
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gst_buffer_unref (buffer);
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gst_caps_unref (srccaps);
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cleanup_nvenc (nvenc);
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}
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GST_END_TEST;
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#define MAX_PUSH_BUFFER 64
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static void
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resolution_change_common (gint from_width, gint from_height, gint to_width,
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gint to_height)
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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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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 ("nvh264enc ! h264parse");
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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 ("video/x-raw,format=NV12");
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gst_caps_set_simple (caps, "width", G_TYPE_INT, from_width,
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"height", G_TYPE_INT, from_height, NULL);
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gst_harness_set_src_caps (h, caps);
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in_buf = gst_buffer_new_and_alloc ((from_width * from_height) * 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 buffers 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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gst_buffer_unref (in_buf);
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/* change resolution */
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caps = gst_caps_from_string ("video/x-raw,format=NV12");
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gst_caps_set_simple (caps, "width", G_TYPE_INT, to_width,
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"height", G_TYPE_INT, to_width, NULL);
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GST_DEBUG ("Set new resolution %dx%d", to_width, to_height);
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gst_harness_set_src_caps (h, caps);
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in_buf = gst_buffer_new_and_alloc ((to_width * to_height) * 3 / 2);
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gst_buffer_memset (in_buf, 0, 0, -1);
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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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/* 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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/* check the last resolution from caps */
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caps = gst_pad_get_current_caps (h->sinkpad);
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fail_unless (caps != NULL);
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GST_DEBUG ("last encoder src caps %" GST_PTR_FORMAT, caps);
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{
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gint val;
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GstStructure *s;
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s = gst_caps_get_structure (caps, 0);
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fail_unless_equals_string (gst_structure_get_name (s), "video/x-h264");
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fail_unless (gst_structure_get_int (s, "width", &val));
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fail_unless_equals_int (val, to_width);
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fail_unless (gst_structure_get_int (s, "height", &val));
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fail_unless_equals_int (val, to_height);
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}
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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_START_TEST (test_resolution_change_to_larger)
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{
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resolution_change_common (64, 64, 128, 128);
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}
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GST_END_TEST;
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GST_START_TEST (test_resolution_change_to_smaller)
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{
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resolution_change_common (128, 128, 64, 64);
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}
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GST_END_TEST;
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static gboolean
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check_nvenc_available (void)
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{
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gboolean ret = TRUE;
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GstElement *nvenc;
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nvenc = gst_element_factory_make ("nvh264enc", NULL);
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if (!nvenc) {
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GST_WARNING ("nvh264enc is not available, possibly driver load failure");
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return FALSE;
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}
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/* GST_STATE_READY is meaning that driver could be loaded */
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if (gst_element_set_state (nvenc,
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GST_STATE_PAUSED) != GST_STATE_CHANGE_SUCCESS) {
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GST_WARNING ("cannot open device");
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ret = FALSE;
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}
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gst_element_set_state (nvenc, GST_STATE_NULL);
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gst_object_unref (nvenc);
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return ret;
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}
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static Suite *
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nvenc_suite (void)
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{
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Suite *s;
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TCase *tc_chain;
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/* HACK: cuda device init/deinit with fork seems to problematic */
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g_setenv ("CK_FORK", "no", TRUE);
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s = suite_create ("nvenc");
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tc_chain = tcase_create ("general");
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suite_add_tcase (s, tc_chain);
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if (!check_nvenc_available ()) {
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GST_DEBUG ("Skip nvenc test since cannot open device");
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goto end;
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}
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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_caps_interlace_mode);
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tcase_add_test (tc_chain, test_resolution_change_to_larger);
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tcase_add_test (tc_chain, test_resolution_change_to_smaller);
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end:
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return s;
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}
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GST_CHECK_MAIN (nvenc);
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