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https://gitlab.freedesktop.org/gstreamer/gstreamer.git
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4f343f82e3
This patch adds the handling of VAEncMiscParameterTypeQualityLevel, in gstreamer-vaapi encoders: The encoding quality could be set through this structure, if the implementation supports multiple quality levels. The quality level set through this structure is persistent over the entire coded sequence, or until a new structure is being sent. The quality level range can be queried through the VAConfigAttribEncQualityRange attribute. A lower value means higher quality, and a value of 1 represents the highest quality. The quality level setting is used as a trade-off between quality and speed/power consumption, with higher quality corresponds to lower speed and higher power consumption. The quality level is set by the element's parameter "quality-level" with a hard-coded range of 1 to 8. Later, when the encoder is configured in run time, just before start processing, the quality level is scaled to the codec range. If VAConfigAttribEncQualityRange is not available in the used VA backend, then the quality level is set to zero, which means "disabled". All the available codecs now process this parameter if it is available. https://bugzilla.gnome.org/show_bug.cgi?id=778733 Signed-off-by: Víctor Manuel Jáquez Leal <vjaquez@igalia.com>
574 lines
18 KiB
C
574 lines
18 KiB
C
/*
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* gstvaapiencoder_vp9.c - VP9 encoder
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*
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* Copyright (C) 2016 Intel Corporation
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* Author: Sreerenj Balachandran <sreerenj.balachandran@intel.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 Lesser General Public License
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* as published by the Free Software Foundation; either version 2.1
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* 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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* 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 Free
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* 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 "sysdeps.h"
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#include <va/va.h>
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#include <va/va_enc_vp9.h>
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#include <gst/base/gstbitwriter.h>
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#include <gst/codecparsers/gstvp9parser.h>
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#include "gstvaapicompat.h"
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#include "gstvaapiencoder_priv.h"
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#include "gstvaapiencoder_vp9.h"
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#include "gstvaapicodedbufferproxy_priv.h"
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#include "gstvaapisurface.h"
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#define DEBUG 1
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#include "gstvaapidebug.h"
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/* Define default rate control mode ("constant-qp") */
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#define DEFAULT_RATECONTROL GST_VAAPI_RATECONTROL_CQP
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/* Supported set of VA rate controls, within this implementation */
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#define SUPPORTED_RATECONTROLS \
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(GST_VAAPI_RATECONTROL_MASK (CQP))
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/* Supported set of tuning options, within this implementation */
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#define SUPPORTED_TUNE_OPTIONS \
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(GST_VAAPI_ENCODER_TUNE_MASK (NONE))
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/* Supported set of VA packed headers, within this implementation */
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#define SUPPORTED_PACKED_HEADERS \
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(VA_ENC_PACKED_HEADER_NONE)
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#define DEFAULT_LOOP_FILTER_LEVEL 10
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#define DEFAULT_SHARPNESS_LEVEL 0
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#define DEFAULT_YAC_QINDEX 60
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#define MAX_FRAME_WIDTH 4096
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#define MAX_FRAME_HEIGHT 4096
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typedef enum
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{
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GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_0 = 0,
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GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_1 = 1
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} GstVaapiEnoderVP9RefPicMode;
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static GType
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gst_vaapi_encoder_vp9_ref_pic_mode_type (void)
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{
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static GType gtype = 0;
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if (gtype == 0) {
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static const GEnumValue values[] = {
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{GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_0,
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"Use Keyframe(Alt & Gold) and Previousframe(Last) for prediction ",
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"mode-0"},
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{GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_1,
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"Use last three frames for prediction (n:Last n-1:Gold n-2:Alt)",
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"mode-1"}
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};
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gtype = g_enum_register_static ("GstVaapiEncoderVP9RefPicMode", values);
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}
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return gtype;
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}
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/* ------------------------------------------------------------------------- */
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/* --- VP9 Encoder --- */
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/* ------------------------------------------------------------------------- */
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#define GST_VAAPI_ENCODER_VP9_CAST(encoder) \
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((GstVaapiEncoderVP9 *)(encoder))
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struct _GstVaapiEncoderVP9
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{
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GstVaapiEncoder parent_instance;
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GstVaapiProfile profile;
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guint loop_filter_level;
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guint sharpness_level;
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guint yac_qi;
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guint ref_pic_mode;
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guint frame_num;
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GstVaapiSurfaceProxy *ref_list[GST_VP9_REF_FRAMES]; /* reference list */
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guint ref_list_idx; /* next free slot in ref_list */
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};
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/* Derives the profile that suits best to the configuration */
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static GstVaapiEncoderStatus
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ensure_profile (GstVaapiEncoderVP9 * encoder)
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{
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/* Always start from "simple" profile for maximum compatibility */
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encoder->profile = GST_VAAPI_PROFILE_VP9_0;
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return GST_VAAPI_ENCODER_STATUS_SUCCESS;
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}
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/* Derives the profile supported by the underlying hardware */
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static gboolean
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ensure_hw_profile (GstVaapiEncoderVP9 * encoder)
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{
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GstVaapiDisplay *const display = GST_VAAPI_ENCODER_DISPLAY (encoder);
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GstVaapiEntrypoint entrypoint = GST_VAAPI_ENTRYPOINT_SLICE_ENCODE;
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GstVaapiProfile profile, profiles[2];
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guint i, num_profiles = 0;
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profiles[num_profiles++] = encoder->profile;
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profile = GST_VAAPI_PROFILE_UNKNOWN;
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for (i = 0; i < num_profiles; i++) {
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if (gst_vaapi_display_has_encoder (display, profiles[i], entrypoint)) {
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profile = profiles[i];
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break;
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}
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}
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if (profile == GST_VAAPI_PROFILE_UNKNOWN)
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goto error_unsupported_profile;
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GST_VAAPI_ENCODER_CAST (encoder)->profile = profile;
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return TRUE;
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/* ERRORS */
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error_unsupported_profile:
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{
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GST_ERROR ("unsupported HW profile (0x%08x)", encoder->profile);
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return FALSE;
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}
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}
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static GstVaapiEncoderStatus
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set_context_info (GstVaapiEncoder * base_encoder)
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{
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GstVaapiEncoderVP9 *encoder = GST_VAAPI_ENCODER_VP9_CAST (base_encoder);
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GstVideoInfo *const vip = GST_VAAPI_ENCODER_VIDEO_INFO (encoder);
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const guint DEFAULT_SURFACES_COUNT = 2;
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/*Fixme: Maximum sizes for common headers (in bytes) */
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if (!ensure_hw_profile (encoder))
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return GST_VAAPI_ENCODER_STATUS_ERROR_UNSUPPORTED_PROFILE;
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base_encoder->num_ref_frames = 3 + DEFAULT_SURFACES_COUNT;
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/* Only YUV 4:2:0 formats are supported for now. */
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base_encoder->codedbuf_size = GST_ROUND_UP_16 (vip->width) *
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GST_ROUND_UP_16 (vip->height) * 3 / 2;
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return GST_VAAPI_ENCODER_STATUS_SUCCESS;
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}
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static gboolean
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fill_sequence (GstVaapiEncoderVP9 * encoder, GstVaapiEncSequence * sequence)
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{
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GstVaapiEncoder *const base_encoder = GST_VAAPI_ENCODER_CAST (encoder);
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VAEncSequenceParameterBufferVP9 *const seq_param = sequence->param;
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memset (seq_param, 0, sizeof (VAEncSequenceParameterBufferVP9));
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seq_param->max_frame_width = MAX_FRAME_WIDTH;
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seq_param->max_frame_height = MAX_FRAME_HEIGHT;
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/* keyframe minimum interval */
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seq_param->kf_min_dist = 1;
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/* keyframe maximum interval */
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seq_param->kf_max_dist = base_encoder->keyframe_period;
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seq_param->intra_period = base_encoder->keyframe_period;
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return TRUE;
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}
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static gboolean
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ensure_sequence (GstVaapiEncoderVP9 * encoder, GstVaapiEncPicture * picture)
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{
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GstVaapiEncSequence *sequence;
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g_assert (picture);
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if (picture->type != GST_VAAPI_PICTURE_TYPE_I)
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return TRUE;
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sequence = GST_VAAPI_ENC_SEQUENCE_NEW (VP9, encoder);
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if (!sequence)
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goto error;
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if (!fill_sequence (encoder, sequence))
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goto error;
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gst_vaapi_enc_picture_set_sequence (picture, sequence);
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gst_vaapi_codec_object_replace (&sequence, NULL);
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return TRUE;
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/* ERRORS */
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error:
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{
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gst_vaapi_codec_object_replace (&sequence, NULL);
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return FALSE;
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}
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}
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static gboolean
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ensure_misc_params (GstVaapiEncoderVP9 * encoder, GstVaapiEncPicture * picture)
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{
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GstVaapiEncoder *const base_encoder = GST_VAAPI_ENCODER_CAST (encoder);
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if (!gst_vaapi_encoder_ensure_param_quality_level (base_encoder, picture))
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return FALSE;
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return TRUE;
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}
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static void
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get_ref_indices (guint ref_pic_mode, guint ref_list_idx, guint * last_idx,
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guint * gf_idx, guint * arf_idx, guint8 * refresh_frame_flags)
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{
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if (ref_pic_mode == GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_0) {
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*last_idx = ref_list_idx - 1;
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*gf_idx = 1;
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*arf_idx = 2;
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*refresh_frame_flags = 0x01;
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} else if (ref_pic_mode == GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_1) {
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gint last_filled_idx = (ref_list_idx - 1) & (GST_VP9_REF_FRAMES - 1);
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*last_idx = last_filled_idx;
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*gf_idx = (last_filled_idx - 1) & (GST_VP9_REF_FRAMES - 1);
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*arf_idx = (last_filled_idx - 2) & (GST_VP9_REF_FRAMES - 1);
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*refresh_frame_flags = 1 << ((*last_idx + 1) % GST_VP9_REF_FRAMES);
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}
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GST_LOG
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("last_ref_idx:%d gold_ref_idx:%d alt_reff_idx:%d refesh_frame_flag:%x",
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*last_idx, *gf_idx, *arf_idx, *refresh_frame_flags);
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}
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static gboolean
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fill_picture (GstVaapiEncoderVP9 * encoder,
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GstVaapiEncPicture * picture,
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GstVaapiCodedBuffer * codedbuf, GstVaapiSurfaceProxy * surface)
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{
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VAEncPictureParameterBufferVP9 *const pic_param = picture->param;
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guint i, last_idx = 0, gf_idx = 0, arf_idx = 0;
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guint8 refresh_frame_flags = 0;
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memset (pic_param, 0, sizeof (VAEncPictureParameterBufferVP9));
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pic_param->reconstructed_frame = GST_VAAPI_SURFACE_PROXY_SURFACE_ID (surface);
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pic_param->coded_buf = GST_VAAPI_OBJECT_ID (codedbuf);
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/* Update Reference Frame list */
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if (picture->type == GST_VAAPI_PICTURE_TYPE_I)
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memset (pic_param->reference_frames, 0xFF,
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sizeof (pic_param->reference_frames));
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else {
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for (i = 0; i < G_N_ELEMENTS (pic_param->reference_frames); i++) {
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pic_param->reference_frames[i] =
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GST_VAAPI_SURFACE_PROXY_SURFACE_ID (encoder->ref_list[i]);
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}
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}
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/* It is possible to have dynamic scaling with gpu by providing
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* src and destination resoltuion. For now we are just using
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* default encoder width and height */
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pic_param->frame_width_src = GST_VAAPI_ENCODER_WIDTH (encoder);
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pic_param->frame_height_src = GST_VAAPI_ENCODER_HEIGHT (encoder);
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pic_param->frame_width_dst = GST_VAAPI_ENCODER_WIDTH (encoder);
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pic_param->frame_height_dst = GST_VAAPI_ENCODER_HEIGHT (encoder);
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pic_param->pic_flags.bits.show_frame = 1;
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if (picture->type == GST_VAAPI_PICTURE_TYPE_P) {
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pic_param->pic_flags.bits.frame_type = GST_VP9_INTER_FRAME;
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/* use three of the reference frames (last, golden and altref)
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* for prediction */
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pic_param->ref_flags.bits.ref_frame_ctrl_l0 = 0x7;
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get_ref_indices (encoder->ref_pic_mode, encoder->ref_list_idx, &last_idx,
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&gf_idx, &arf_idx, &refresh_frame_flags);
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pic_param->ref_flags.bits.ref_last_idx = last_idx;
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pic_param->ref_flags.bits.ref_gf_idx = gf_idx;
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pic_param->ref_flags.bits.ref_arf_idx = arf_idx;
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pic_param->refresh_frame_flags = refresh_frame_flags;
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}
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pic_param->luma_ac_qindex = encoder->yac_qi;
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pic_param->luma_dc_qindex_delta = 1;
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pic_param->chroma_ac_qindex_delta = 1;
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pic_param->chroma_dc_qindex_delta = 1;
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pic_param->filter_level = encoder->loop_filter_level;
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pic_param->sharpness_level = encoder->sharpness_level;
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return TRUE;
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}
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static gboolean
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ensure_picture (GstVaapiEncoderVP9 * encoder, GstVaapiEncPicture * picture,
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GstVaapiCodedBufferProxy * codedbuf_proxy, GstVaapiSurfaceProxy * surface)
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{
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GstVaapiCodedBuffer *const codedbuf =
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GST_VAAPI_CODED_BUFFER_PROXY_BUFFER (codedbuf_proxy);
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if (!fill_picture (encoder, picture, codedbuf, surface))
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return FALSE;
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return TRUE;
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}
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static void
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update_ref_list (GstVaapiEncoderVP9 * encoder, GstVaapiEncPicture * picture,
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GstVaapiSurfaceProxy * ref)
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{
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guint i;
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if (picture->type == GST_VAAPI_PICTURE_TYPE_I) {
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for (i = 0; i < G_N_ELEMENTS (encoder->ref_list); i++)
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gst_vaapi_surface_proxy_replace (&encoder->ref_list[i], ref);
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gst_vaapi_surface_proxy_unref (ref);
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/* set next free slot index */
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encoder->ref_list_idx = 1;
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return;
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}
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switch (encoder->ref_pic_mode) {
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case GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_0:
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gst_vaapi_surface_proxy_replace (&encoder->ref_list[0], ref);
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gst_vaapi_surface_proxy_unref (ref);
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break;
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case GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_1:
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gst_vaapi_surface_proxy_replace (&encoder->
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ref_list[encoder->ref_list_idx], ref);
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gst_vaapi_surface_proxy_unref (ref);
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encoder->ref_list_idx = (encoder->ref_list_idx + 1) % GST_VP9_REF_FRAMES;
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break;
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default:
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g_assert ("Code shouldn't reach here");
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break;
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}
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}
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static GstVaapiEncoderStatus
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gst_vaapi_encoder_vp9_encode (GstVaapiEncoder * base_encoder,
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GstVaapiEncPicture * picture, GstVaapiCodedBufferProxy * codedbuf)
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{
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GstVaapiEncoderVP9 *const encoder = GST_VAAPI_ENCODER_VP9_CAST (base_encoder);
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GstVaapiEncoderStatus ret = GST_VAAPI_ENCODER_STATUS_ERROR_UNKNOWN;
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GstVaapiSurfaceProxy *reconstruct = NULL;
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reconstruct = gst_vaapi_encoder_create_surface (base_encoder);
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g_assert (GST_VAAPI_SURFACE_PROXY_SURFACE (reconstruct));
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if (!ensure_sequence (encoder, picture))
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goto error;
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if (!ensure_misc_params (encoder, picture))
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goto error;
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if (!ensure_picture (encoder, picture, codedbuf, reconstruct))
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goto error;
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if (!gst_vaapi_enc_picture_encode (picture))
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goto error;
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update_ref_list (encoder, picture, reconstruct);
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return GST_VAAPI_ENCODER_STATUS_SUCCESS;
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/* ERRORS */
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error:
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{
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if (reconstruct)
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gst_vaapi_encoder_release_surface (GST_VAAPI_ENCODER (encoder),
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reconstruct);
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return ret;
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}
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}
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static GstVaapiEncoderStatus
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gst_vaapi_encoder_vp9_flush (GstVaapiEncoder * base_encoder)
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{
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return GST_VAAPI_ENCODER_STATUS_SUCCESS;
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}
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static GstVaapiEncoderStatus
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gst_vaapi_encoder_vp9_reordering (GstVaapiEncoder * base_encoder,
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GstVideoCodecFrame * frame, GstVaapiEncPicture ** output)
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{
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GstVaapiEncoderVP9 *const encoder = GST_VAAPI_ENCODER_VP9_CAST (base_encoder);
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GstVaapiEncPicture *picture = NULL;
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GstVaapiEncoderStatus status = GST_VAAPI_ENCODER_STATUS_SUCCESS;
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if (!frame)
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return GST_VAAPI_ENCODER_STATUS_NO_SURFACE;
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picture = GST_VAAPI_ENC_PICTURE_NEW (VP9, encoder, frame);
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if (!picture) {
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GST_WARNING ("create VP9 picture failed, frame timestamp:%"
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GST_TIME_FORMAT, GST_TIME_ARGS (frame->pts));
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return GST_VAAPI_ENCODER_STATUS_ERROR_ALLOCATION_FAILED;
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}
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if (encoder->frame_num >= base_encoder->keyframe_period) {
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encoder->frame_num = 0;
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}
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if (encoder->frame_num == 0) {
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picture->type = GST_VAAPI_PICTURE_TYPE_I;
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GST_VIDEO_CODEC_FRAME_SET_SYNC_POINT (frame);
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} else {
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picture->type = GST_VAAPI_PICTURE_TYPE_P;
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}
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encoder->frame_num++;
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*output = picture;
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return status;
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}
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static GstVaapiEncoderStatus
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gst_vaapi_encoder_vp9_reconfigure (GstVaapiEncoder * base_encoder)
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{
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GstVaapiEncoderVP9 *const encoder = GST_VAAPI_ENCODER_VP9_CAST (base_encoder);
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GstVaapiEncoderStatus status;
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status = ensure_profile (encoder);
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if (status != GST_VAAPI_ENCODER_STATUS_SUCCESS)
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return status;
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return set_context_info (base_encoder);
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}
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static gboolean
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gst_vaapi_encoder_vp9_init (GstVaapiEncoder * base_encoder)
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{
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GstVaapiEncoderVP9 *const encoder = GST_VAAPI_ENCODER_VP9_CAST (base_encoder);
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encoder->frame_num = 0;
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encoder->loop_filter_level = DEFAULT_LOOP_FILTER_LEVEL;
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encoder->sharpness_level = DEFAULT_SHARPNESS_LEVEL;
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encoder->yac_qi = DEFAULT_YAC_QINDEX;
|
|
|
|
memset (encoder->ref_list, 0,
|
|
G_N_ELEMENTS (encoder->ref_list) * sizeof (encoder->ref_list[0]));
|
|
encoder->ref_list_idx = 0;
|
|
|
|
return TRUE;
|
|
}
|
|
|
|
static void
|
|
gst_vaapi_encoder_vp9_finalize (GstVaapiEncoder * base_encoder)
|
|
{
|
|
}
|
|
|
|
static GstVaapiEncoderStatus
|
|
gst_vaapi_encoder_vp9_set_property (GstVaapiEncoder * base_encoder,
|
|
gint prop_id, const GValue * value)
|
|
{
|
|
GstVaapiEncoderVP9 *const encoder = GST_VAAPI_ENCODER_VP9_CAST (base_encoder);
|
|
|
|
switch (prop_id) {
|
|
case GST_VAAPI_ENCODER_VP9_PROP_LOOP_FILTER_LEVEL:
|
|
encoder->loop_filter_level = g_value_get_uint (value);
|
|
break;
|
|
case GST_VAAPI_ENCODER_VP9_PROP_SHARPNESS_LEVEL:
|
|
encoder->sharpness_level = g_value_get_uint (value);
|
|
break;
|
|
case GST_VAAPI_ENCODER_VP9_PROP_YAC_Q_INDEX:
|
|
encoder->yac_qi = g_value_get_uint (value);
|
|
break;
|
|
case GST_VAAPI_ENCODER_VP9_PROP_REF_PIC_MODE:
|
|
encoder->ref_pic_mode = g_value_get_enum (value);
|
|
break;
|
|
default:
|
|
return GST_VAAPI_ENCODER_STATUS_ERROR_INVALID_PARAMETER;
|
|
}
|
|
return GST_VAAPI_ENCODER_STATUS_SUCCESS;
|
|
}
|
|
|
|
GST_VAAPI_ENCODER_DEFINE_CLASS_DATA (VP9);
|
|
|
|
static inline const GstVaapiEncoderClass *
|
|
gst_vaapi_encoder_vp9_class (void)
|
|
{
|
|
static const GstVaapiEncoderClass GstVaapiEncoderVP9Class = {
|
|
GST_VAAPI_ENCODER_CLASS_INIT (VP9, vp9),
|
|
.set_property = gst_vaapi_encoder_vp9_set_property,
|
|
};
|
|
return &GstVaapiEncoderVP9Class;
|
|
}
|
|
|
|
/**
|
|
* gst_vaapi_encoder_vp9_new:
|
|
* @display: a #GstVaapiDisplay
|
|
*
|
|
* Creates a new #GstVaapiEncoder for VP9 encoding.
|
|
*
|
|
* Return value: the newly allocated #GstVaapiEncoder object
|
|
*/
|
|
GstVaapiEncoder *
|
|
gst_vaapi_encoder_vp9_new (GstVaapiDisplay * display)
|
|
{
|
|
return gst_vaapi_encoder_new (gst_vaapi_encoder_vp9_class (), display);
|
|
}
|
|
|
|
/**
|
|
* gst_vaapi_encoder_vp9_get_default_properties:
|
|
*
|
|
* Determines the set of common and vp9 specific encoder properties.
|
|
* The caller owns an extra reference to the resulting array of
|
|
* #GstVaapiEncoderPropInfo elements, so it shall be released with
|
|
* g_ptr_array_unref() after usage.
|
|
*
|
|
* Return value: the set of encoder properties for #GstVaapiEncoderVP9,
|
|
* or %NULL if an error occurred.
|
|
*/
|
|
GPtrArray *
|
|
gst_vaapi_encoder_vp9_get_default_properties (void)
|
|
{
|
|
const GstVaapiEncoderClass *const klass = gst_vaapi_encoder_vp9_class ();
|
|
GPtrArray *props;
|
|
|
|
props = gst_vaapi_encoder_properties_get_default (klass);
|
|
if (!props)
|
|
return NULL;
|
|
|
|
GST_VAAPI_ENCODER_PROPERTIES_APPEND (props,
|
|
GST_VAAPI_ENCODER_VP9_PROP_LOOP_FILTER_LEVEL,
|
|
g_param_spec_uint ("loop-filter-level",
|
|
"Loop Filter Level",
|
|
"Controls the deblocking filter strength",
|
|
0, 63, DEFAULT_LOOP_FILTER_LEVEL,
|
|
G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
|
|
|
|
GST_VAAPI_ENCODER_PROPERTIES_APPEND (props,
|
|
GST_VAAPI_ENCODER_VP9_PROP_SHARPNESS_LEVEL,
|
|
g_param_spec_uint ("sharpness-level",
|
|
"Sharpness Level",
|
|
"Controls the deblocking filter sensitivity",
|
|
0, 7, DEFAULT_SHARPNESS_LEVEL,
|
|
G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
|
|
|
|
GST_VAAPI_ENCODER_PROPERTIES_APPEND (props,
|
|
GST_VAAPI_ENCODER_VP9_PROP_YAC_Q_INDEX,
|
|
g_param_spec_uint ("yac-qi",
|
|
"Luma AC Quant Table index",
|
|
"Quantization Table index for Luma AC Coefficients",
|
|
0, 255, DEFAULT_YAC_QINDEX,
|
|
G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
|
|
|
|
GST_VAAPI_ENCODER_PROPERTIES_APPEND (props,
|
|
GST_VAAPI_ENCODER_VP9_PROP_REF_PIC_MODE,
|
|
g_param_spec_enum ("ref-pic-mode",
|
|
"RefPic Selection",
|
|
"Reference Picture Selection Modes",
|
|
gst_vaapi_encoder_vp9_ref_pic_mode_type (),
|
|
GST_VAAPI_ENCODER_VP9_REF_PIC_MODE_0,
|
|
G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
|
|
|
|
|
|
return props;
|
|
}
|