2b9c017cf0
in BasicRateTargetingVBRLagZero and
BasicRateTargetingVBRLagNonZeroFrameParDecOff after:
e0b28ad69
Add extra case to wq_err_divisor()
BUG=webm:1512
Change-Id: Id181613cc191ff2a2281deffe141efb982501edf
794 lines
28 KiB
C++
794 lines
28 KiB
C++
/*
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* Copyright (c) 2012 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "./vpx_config.h"
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#include "third_party/googletest/src/include/gtest/gtest.h"
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#include "test/codec_factory.h"
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#include "test/encode_test_driver.h"
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#include "test/i420_video_source.h"
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#include "test/util.h"
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#include "test/y4m_video_source.h"
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#include "vpx/vpx_codec.h"
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namespace {
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class DatarateTestVP9Large
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: public ::libvpx_test::EncoderTest,
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public ::libvpx_test::CodecTestWith2Params<libvpx_test::TestMode, int> {
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public:
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DatarateTestVP9Large() : EncoderTest(GET_PARAM(0)) {}
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protected:
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virtual ~DatarateTestVP9Large() {}
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virtual void SetUp() {
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InitializeConfig();
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SetMode(GET_PARAM(1));
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set_cpu_used_ = GET_PARAM(2);
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ResetModel();
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}
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virtual void ResetModel() {
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last_pts_ = 0;
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bits_in_buffer_model_ = cfg_.rc_target_bitrate * cfg_.rc_buf_initial_sz;
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frame_number_ = 0;
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tot_frame_number_ = 0;
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first_drop_ = 0;
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num_drops_ = 0;
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// Denoiser is off by default.
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denoiser_on_ = 0;
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// For testing up to 3 layers.
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for (int i = 0; i < 3; ++i) {
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bits_total_[i] = 0;
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}
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denoiser_offon_test_ = 0;
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denoiser_offon_period_ = -1;
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frame_parallel_decoding_mode_ = 1;
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use_roi_ = false;
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}
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//
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// Frame flags and layer id for temporal layers.
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//
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// For two layers, test pattern is:
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// 1 3
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// 0 2 .....
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// For three layers, test pattern is:
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// 1 3 5 7
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// 2 6
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// 0 4 ....
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// LAST is always update on base/layer 0, GOLDEN is updated on layer 1.
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// For this 3 layer example, the 2nd enhancement layer (layer 2) updates
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// the altref frame.
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static int GetFrameFlags(int frame_num, int num_temp_layers) {
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int frame_flags = 0;
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if (num_temp_layers == 2) {
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if (frame_num % 2 == 0) {
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// Layer 0: predict from L and ARF, update L.
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frame_flags =
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VP8_EFLAG_NO_REF_GF | VP8_EFLAG_NO_UPD_GF | VP8_EFLAG_NO_UPD_ARF;
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} else {
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// Layer 1: predict from L, G and ARF, and update G.
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frame_flags = VP8_EFLAG_NO_UPD_ARF | VP8_EFLAG_NO_UPD_LAST |
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VP8_EFLAG_NO_UPD_ENTROPY;
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}
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} else if (num_temp_layers == 3) {
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if (frame_num % 4 == 0) {
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// Layer 0: predict from L and ARF; update L.
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frame_flags =
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VP8_EFLAG_NO_UPD_GF | VP8_EFLAG_NO_UPD_ARF | VP8_EFLAG_NO_REF_GF;
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} else if ((frame_num - 2) % 4 == 0) {
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// Layer 1: predict from L, G, ARF; update G.
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frame_flags = VP8_EFLAG_NO_UPD_ARF | VP8_EFLAG_NO_UPD_LAST;
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} else if ((frame_num - 1) % 2 == 0) {
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// Layer 2: predict from L, G, ARF; update ARF.
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frame_flags = VP8_EFLAG_NO_UPD_GF | VP8_EFLAG_NO_UPD_LAST;
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}
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}
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return frame_flags;
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}
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static int SetLayerId(int frame_num, int num_temp_layers) {
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int layer_id = 0;
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if (num_temp_layers == 2) {
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if (frame_num % 2 == 0) {
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layer_id = 0;
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} else {
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layer_id = 1;
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}
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} else if (num_temp_layers == 3) {
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if (frame_num % 4 == 0) {
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layer_id = 0;
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} else if ((frame_num - 2) % 4 == 0) {
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layer_id = 1;
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} else if ((frame_num - 1) % 2 == 0) {
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layer_id = 2;
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}
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}
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return layer_id;
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}
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virtual void PreEncodeFrameHook(::libvpx_test::VideoSource *video,
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::libvpx_test::Encoder *encoder) {
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if (video->frame() == 0) encoder->Control(VP8E_SET_CPUUSED, set_cpu_used_);
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if (denoiser_offon_test_) {
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ASSERT_GT(denoiser_offon_period_, 0)
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<< "denoiser_offon_period_ is not positive.";
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if ((video->frame() + 1) % denoiser_offon_period_ == 0) {
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// Flip denoiser_on_ periodically
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denoiser_on_ ^= 1;
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}
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}
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encoder->Control(VP9E_SET_NOISE_SENSITIVITY, denoiser_on_);
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encoder->Control(VP9E_SET_TILE_COLUMNS, (cfg_.g_threads >> 1));
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encoder->Control(VP9E_SET_FRAME_PARALLEL_DECODING,
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frame_parallel_decoding_mode_);
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if (use_roi_) {
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encoder->Control(VP9E_SET_ROI_MAP, &roi_);
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}
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if (cfg_.ts_number_layers > 1) {
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if (video->frame() == 0) {
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encoder->Control(VP9E_SET_SVC, 1);
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}
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vpx_svc_layer_id_t layer_id;
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layer_id.spatial_layer_id = 0;
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frame_flags_ = GetFrameFlags(video->frame(), cfg_.ts_number_layers);
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layer_id.temporal_layer_id =
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SetLayerId(video->frame(), cfg_.ts_number_layers);
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encoder->Control(VP9E_SET_SVC_LAYER_ID, &layer_id);
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}
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const vpx_rational_t tb = video->timebase();
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timebase_ = static_cast<double>(tb.num) / tb.den;
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duration_ = 0;
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}
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virtual void FramePktHook(const vpx_codec_cx_pkt_t *pkt) {
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// Time since last timestamp = duration.
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vpx_codec_pts_t duration = pkt->data.frame.pts - last_pts_;
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if (duration > 1) {
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// If first drop not set and we have a drop set it to this time.
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if (!first_drop_) first_drop_ = last_pts_ + 1;
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// Update the number of frame drops.
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num_drops_ += static_cast<int>(duration - 1);
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// Update counter for total number of frames (#frames input to encoder).
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// Needed for setting the proper layer_id below.
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tot_frame_number_ += static_cast<int>(duration - 1);
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}
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int layer = SetLayerId(tot_frame_number_, cfg_.ts_number_layers);
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// Add to the buffer the bits we'd expect from a constant bitrate server.
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bits_in_buffer_model_ += static_cast<int64_t>(
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duration * timebase_ * cfg_.rc_target_bitrate * 1000);
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// Buffer should not go negative.
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ASSERT_GE(bits_in_buffer_model_, 0)
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<< "Buffer Underrun at frame " << pkt->data.frame.pts;
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const size_t frame_size_in_bits = pkt->data.frame.sz * 8;
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// Update the total encoded bits. For temporal layers, update the cumulative
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// encoded bits per layer.
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for (int i = layer; i < static_cast<int>(cfg_.ts_number_layers); ++i) {
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bits_total_[i] += frame_size_in_bits;
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}
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// Update the most recent pts.
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last_pts_ = pkt->data.frame.pts;
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++frame_number_;
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++tot_frame_number_;
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}
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virtual void EndPassHook(void) {
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for (int layer = 0; layer < static_cast<int>(cfg_.ts_number_layers);
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++layer) {
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duration_ = (last_pts_ + 1) * timebase_;
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if (bits_total_[layer]) {
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// Effective file datarate:
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effective_datarate_[layer] = (bits_total_[layer] / 1000.0) / duration_;
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}
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}
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}
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vpx_codec_pts_t last_pts_;
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double timebase_;
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int frame_number_; // Counter for number of non-dropped/encoded frames.
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int tot_frame_number_; // Counter for total number of input frames.
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int64_t bits_total_[3];
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double duration_;
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double effective_datarate_[3];
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int set_cpu_used_;
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int64_t bits_in_buffer_model_;
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vpx_codec_pts_t first_drop_;
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int num_drops_;
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int denoiser_on_;
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int denoiser_offon_test_;
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int denoiser_offon_period_;
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int frame_parallel_decoding_mode_;
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bool use_roi_;
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vpx_roi_map_t roi_;
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};
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// Check basic rate targeting for VBR mode with 0 lag.
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TEST_P(DatarateTestVP9Large, BasicRateTargetingVBRLagZero) {
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 63;
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cfg_.g_error_resilient = 0;
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cfg_.rc_end_usage = VPX_VBR;
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cfg_.g_lag_in_frames = 0;
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::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
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30, 1, 0, 300);
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for (int i = 400; i <= 800; i += 400) {
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cfg_.rc_target_bitrate = i;
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ResetModel();
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ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
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ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.75)
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<< " The datarate for the file is lower than target by too much!";
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ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.35)
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<< " The datarate for the file is greater than target by too much!";
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}
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}
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// Check basic rate targeting for VBR mode with non-zero lag.
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TEST_P(DatarateTestVP9Large, BasicRateTargetingVBRLagNonZero) {
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 63;
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cfg_.g_error_resilient = 0;
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cfg_.rc_end_usage = VPX_VBR;
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// For non-zero lag, rate control will work (be within bounds) for
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// real-time mode.
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if (deadline_ == VPX_DL_REALTIME) {
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cfg_.g_lag_in_frames = 15;
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} else {
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cfg_.g_lag_in_frames = 0;
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}
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::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
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30, 1, 0, 300);
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for (int i = 400; i <= 800; i += 400) {
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cfg_.rc_target_bitrate = i;
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ResetModel();
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ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
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ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.75)
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<< " The datarate for the file is lower than target by too much!";
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ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.30)
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<< " The datarate for the file is greater than target by too much!";
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}
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}
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// Check basic rate targeting for VBR mode with non-zero lag, with
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// frame_parallel_decoding_mode off. This enables the adapt_coeff/mode/mv probs
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// since error_resilience is off.
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TEST_P(DatarateTestVP9Large, BasicRateTargetingVBRLagNonZeroFrameParDecOff) {
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 63;
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cfg_.g_error_resilient = 0;
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cfg_.rc_end_usage = VPX_VBR;
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// For non-zero lag, rate control will work (be within bounds) for
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// real-time mode.
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if (deadline_ == VPX_DL_REALTIME) {
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cfg_.g_lag_in_frames = 15;
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} else {
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cfg_.g_lag_in_frames = 0;
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}
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::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
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30, 1, 0, 300);
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for (int i = 400; i <= 800; i += 400) {
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cfg_.rc_target_bitrate = i;
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ResetModel();
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frame_parallel_decoding_mode_ = 0;
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ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
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ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.75)
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<< " The datarate for the file is lower than target by too much!";
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ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.35)
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<< " The datarate for the file is greater than target by too much!";
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}
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}
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// Check basic rate targeting for CBR mode.
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TEST_P(DatarateTestVP9Large, BasicRateTargeting) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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cfg_.rc_dropframe_thresh = 1;
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 63;
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cfg_.rc_end_usage = VPX_CBR;
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cfg_.g_lag_in_frames = 0;
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::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
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30, 1, 0, 140);
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for (int i = 150; i < 800; i += 200) {
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cfg_.rc_target_bitrate = i;
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ResetModel();
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ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
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ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
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<< " The datarate for the file is lower than target by too much!";
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ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.15)
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<< " The datarate for the file is greater than target by too much!";
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}
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}
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// Check basic rate targeting for CBR mode, with frame_parallel_decoding_mode
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// off( and error_resilience off).
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TEST_P(DatarateTestVP9Large, BasicRateTargetingFrameParDecOff) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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cfg_.rc_dropframe_thresh = 1;
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 63;
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cfg_.rc_end_usage = VPX_CBR;
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cfg_.g_lag_in_frames = 0;
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cfg_.g_error_resilient = 0;
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::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
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30, 1, 0, 140);
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for (int i = 150; i < 800; i += 200) {
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cfg_.rc_target_bitrate = i;
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ResetModel();
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frame_parallel_decoding_mode_ = 0;
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ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
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ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
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<< " The datarate for the file is lower than target by too much!";
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ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.15)
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<< " The datarate for the file is greater than target by too much!";
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}
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}
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// Check basic rate targeting for CBR mode, with 2 threads and dropped frames.
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TEST_P(DatarateTestVP9Large, BasicRateTargetingDropFramesMultiThreads) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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cfg_.rc_dropframe_thresh = 30;
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 63;
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cfg_.rc_end_usage = VPX_CBR;
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cfg_.g_lag_in_frames = 0;
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// Encode using multiple threads.
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cfg_.g_threads = 2;
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::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
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30, 1, 0, 140);
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cfg_.rc_target_bitrate = 200;
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ResetModel();
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ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
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ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
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<< " The datarate for the file is lower than target by too much!";
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ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.15)
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<< " The datarate for the file is greater than target by too much!";
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}
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// Check basic rate targeting for CBR.
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TEST_P(DatarateTestVP9Large, BasicRateTargeting444) {
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::libvpx_test::Y4mVideoSource video("rush_hour_444.y4m", 0, 140);
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cfg_.g_profile = 1;
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cfg_.g_timebase = video.timebase();
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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cfg_.rc_dropframe_thresh = 1;
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 63;
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cfg_.rc_end_usage = VPX_CBR;
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for (int i = 250; i < 900; i += 200) {
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cfg_.rc_target_bitrate = i;
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ResetModel();
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ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
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ASSERT_GE(static_cast<double>(cfg_.rc_target_bitrate),
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effective_datarate_[0] * 0.80)
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<< " The datarate for the file exceeds the target by too much!";
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ASSERT_LE(static_cast<double>(cfg_.rc_target_bitrate),
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effective_datarate_[0] * 1.15)
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<< " The datarate for the file missed the target!"
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<< cfg_.rc_target_bitrate << " " << effective_datarate_;
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}
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}
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// Check that (1) the first dropped frame gets earlier and earlier
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// as the drop frame threshold is increased, and (2) that the total number of
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// frame drops does not decrease as we increase frame drop threshold.
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// Use a lower qp-max to force some frame drops.
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TEST_P(DatarateTestVP9Large, ChangingDropFrameThresh) {
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cfg_.rc_buf_initial_sz = 500;
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cfg_.rc_buf_optimal_sz = 500;
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cfg_.rc_buf_sz = 1000;
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cfg_.rc_undershoot_pct = 20;
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cfg_.rc_undershoot_pct = 20;
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cfg_.rc_dropframe_thresh = 10;
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cfg_.rc_min_quantizer = 0;
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cfg_.rc_max_quantizer = 50;
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cfg_.rc_end_usage = VPX_CBR;
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cfg_.rc_target_bitrate = 200;
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cfg_.g_lag_in_frames = 0;
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// TODO(marpan): Investigate datarate target failures with a smaller keyframe
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// interval (128).
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cfg_.kf_max_dist = 9999;
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::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
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30, 1, 0, 140);
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const int kDropFrameThreshTestStep = 30;
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for (int j = 50; j <= 150; j += 100) {
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|
cfg_.rc_target_bitrate = j;
|
|
vpx_codec_pts_t last_drop = 140;
|
|
int last_num_drops = 0;
|
|
for (int i = 10; i < 100; i += kDropFrameThreshTestStep) {
|
|
cfg_.rc_dropframe_thresh = i;
|
|
ResetModel();
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
|
|
<< " The datarate for the file is lower than target by too much!";
|
|
ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.25)
|
|
<< " The datarate for the file is greater than target by too much!";
|
|
ASSERT_LE(first_drop_, last_drop)
|
|
<< " The first dropped frame for drop_thresh " << i
|
|
<< " > first dropped frame for drop_thresh "
|
|
<< i - kDropFrameThreshTestStep;
|
|
ASSERT_GE(num_drops_, last_num_drops * 0.85)
|
|
<< " The number of dropped frames for drop_thresh " << i
|
|
<< " < number of dropped frames for drop_thresh "
|
|
<< i - kDropFrameThreshTestStep;
|
|
last_drop = first_drop_;
|
|
last_num_drops = num_drops_;
|
|
}
|
|
}
|
|
}
|
|
|
|
// Check basic rate targeting for 2 temporal layers.
|
|
TEST_P(DatarateTestVP9Large, BasicRateTargeting2TemporalLayers) {
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
cfg_.rc_dropframe_thresh = 1;
|
|
cfg_.rc_min_quantizer = 0;
|
|
cfg_.rc_max_quantizer = 63;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
|
|
// 2 Temporal layers, no spatial layers: Framerate decimation (2, 1).
|
|
cfg_.ss_number_layers = 1;
|
|
cfg_.ts_number_layers = 2;
|
|
cfg_.ts_rate_decimator[0] = 2;
|
|
cfg_.ts_rate_decimator[1] = 1;
|
|
|
|
cfg_.temporal_layering_mode = VP9E_TEMPORAL_LAYERING_MODE_BYPASS;
|
|
|
|
if (deadline_ == VPX_DL_REALTIME) cfg_.g_error_resilient = 1;
|
|
|
|
::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
|
|
30, 1, 0, 200);
|
|
for (int i = 200; i <= 800; i += 200) {
|
|
cfg_.rc_target_bitrate = i;
|
|
ResetModel();
|
|
// 60-40 bitrate allocation for 2 temporal layers.
|
|
cfg_.layer_target_bitrate[0] = 60 * cfg_.rc_target_bitrate / 100;
|
|
cfg_.layer_target_bitrate[1] = cfg_.rc_target_bitrate;
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
for (int j = 0; j < static_cast<int>(cfg_.ts_number_layers); ++j) {
|
|
ASSERT_GE(effective_datarate_[j], cfg_.layer_target_bitrate[j] * 0.85)
|
|
<< " The datarate for the file is lower than target by too much, "
|
|
"for layer: "
|
|
<< j;
|
|
ASSERT_LE(effective_datarate_[j], cfg_.layer_target_bitrate[j] * 1.15)
|
|
<< " The datarate for the file is greater than target by too much, "
|
|
"for layer: "
|
|
<< j;
|
|
}
|
|
}
|
|
}
|
|
|
|
// Check basic rate targeting for 3 temporal layers.
|
|
TEST_P(DatarateTestVP9Large, BasicRateTargeting3TemporalLayers) {
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
cfg_.rc_dropframe_thresh = 1;
|
|
cfg_.rc_min_quantizer = 0;
|
|
cfg_.rc_max_quantizer = 63;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
|
|
// 3 Temporal layers, no spatial layers: Framerate decimation (4, 2, 1).
|
|
cfg_.ss_number_layers = 1;
|
|
cfg_.ts_number_layers = 3;
|
|
cfg_.ts_rate_decimator[0] = 4;
|
|
cfg_.ts_rate_decimator[1] = 2;
|
|
cfg_.ts_rate_decimator[2] = 1;
|
|
|
|
cfg_.temporal_layering_mode = VP9E_TEMPORAL_LAYERING_MODE_BYPASS;
|
|
|
|
::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
|
|
30, 1, 0, 200);
|
|
for (int i = 200; i <= 800; i += 200) {
|
|
cfg_.rc_target_bitrate = i;
|
|
ResetModel();
|
|
// 40-20-40 bitrate allocation for 3 temporal layers.
|
|
cfg_.layer_target_bitrate[0] = 40 * cfg_.rc_target_bitrate / 100;
|
|
cfg_.layer_target_bitrate[1] = 60 * cfg_.rc_target_bitrate / 100;
|
|
cfg_.layer_target_bitrate[2] = cfg_.rc_target_bitrate;
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
for (int j = 0; j < static_cast<int>(cfg_.ts_number_layers); ++j) {
|
|
// TODO(yaowu): Work out more stable rc control strategy and
|
|
// Adjust the thresholds to be tighter than .75.
|
|
ASSERT_GE(effective_datarate_[j], cfg_.layer_target_bitrate[j] * 0.75)
|
|
<< " The datarate for the file is lower than target by too much, "
|
|
"for layer: "
|
|
<< j;
|
|
// TODO(yaowu): Work out more stable rc control strategy and
|
|
// Adjust the thresholds to be tighter than 1.25.
|
|
ASSERT_LE(effective_datarate_[j], cfg_.layer_target_bitrate[j] * 1.25)
|
|
<< " The datarate for the file is greater than target by too much, "
|
|
"for layer: "
|
|
<< j;
|
|
}
|
|
}
|
|
}
|
|
|
|
// Check basic rate targeting for 3 temporal layers, with frame dropping.
|
|
// Only for one (low) bitrate with lower max_quantizer, and somewhat higher
|
|
// frame drop threshold, to force frame dropping.
|
|
TEST_P(DatarateTestVP9Large, BasicRateTargeting3TemporalLayersFrameDropping) {
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
// Set frame drop threshold and rc_max_quantizer to force some frame drops.
|
|
cfg_.rc_dropframe_thresh = 20;
|
|
cfg_.rc_max_quantizer = 45;
|
|
cfg_.rc_min_quantizer = 0;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
|
|
// 3 Temporal layers, no spatial layers: Framerate decimation (4, 2, 1).
|
|
cfg_.ss_number_layers = 1;
|
|
cfg_.ts_number_layers = 3;
|
|
cfg_.ts_rate_decimator[0] = 4;
|
|
cfg_.ts_rate_decimator[1] = 2;
|
|
cfg_.ts_rate_decimator[2] = 1;
|
|
|
|
cfg_.temporal_layering_mode = VP9E_TEMPORAL_LAYERING_MODE_BYPASS;
|
|
|
|
::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
|
|
30, 1, 0, 200);
|
|
cfg_.rc_target_bitrate = 200;
|
|
ResetModel();
|
|
// 40-20-40 bitrate allocation for 3 temporal layers.
|
|
cfg_.layer_target_bitrate[0] = 40 * cfg_.rc_target_bitrate / 100;
|
|
cfg_.layer_target_bitrate[1] = 60 * cfg_.rc_target_bitrate / 100;
|
|
cfg_.layer_target_bitrate[2] = cfg_.rc_target_bitrate;
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
for (int j = 0; j < static_cast<int>(cfg_.ts_number_layers); ++j) {
|
|
ASSERT_GE(effective_datarate_[j], cfg_.layer_target_bitrate[j] * 0.85)
|
|
<< " The datarate for the file is lower than target by too much, "
|
|
"for layer: "
|
|
<< j;
|
|
ASSERT_LE(effective_datarate_[j], cfg_.layer_target_bitrate[j] * 1.15)
|
|
<< " The datarate for the file is greater than target by too much, "
|
|
"for layer: "
|
|
<< j;
|
|
// Expect some frame drops in this test: for this 200 frames test,
|
|
// expect at least 10% and not more than 60% drops.
|
|
ASSERT_GE(num_drops_, 20);
|
|
ASSERT_LE(num_drops_, 130);
|
|
}
|
|
}
|
|
|
|
class DatarateTestVP9RealTime : public DatarateTestVP9Large {
|
|
public:
|
|
virtual ~DatarateTestVP9RealTime() {}
|
|
};
|
|
|
|
// Check VP9 region of interest feature.
|
|
TEST_P(DatarateTestVP9RealTime, RegionOfInterest) {
|
|
if (deadline_ != VPX_DL_REALTIME || set_cpu_used_ < 5) return;
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
cfg_.rc_dropframe_thresh = 0;
|
|
cfg_.rc_min_quantizer = 0;
|
|
cfg_.rc_max_quantizer = 63;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
|
|
::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
|
|
30, 1, 0, 300);
|
|
|
|
cfg_.rc_target_bitrate = 450;
|
|
cfg_.g_w = 352;
|
|
cfg_.g_h = 288;
|
|
|
|
ResetModel();
|
|
|
|
// Set ROI parameters
|
|
use_roi_ = true;
|
|
memset(&roi_, 0, sizeof(roi_));
|
|
|
|
roi_.rows = (cfg_.g_h + 7) / 8;
|
|
roi_.cols = (cfg_.g_w + 7) / 8;
|
|
|
|
roi_.delta_q[1] = -20;
|
|
roi_.delta_lf[1] = -20;
|
|
memset(roi_.ref_frame, -1, sizeof(roi_.ref_frame));
|
|
roi_.ref_frame[1] = 1;
|
|
|
|
// Use 2 states: 1 is center square, 0 is the rest.
|
|
roi_.roi_map = reinterpret_cast<uint8_t *>(
|
|
calloc(roi_.rows * roi_.cols, sizeof(*roi_.roi_map)));
|
|
ASSERT_TRUE(roi_.roi_map != NULL);
|
|
|
|
for (unsigned int i = 0; i < roi_.rows; ++i) {
|
|
for (unsigned int j = 0; j < roi_.cols; ++j) {
|
|
if (i > (roi_.rows >> 2) && i < ((roi_.rows * 3) >> 2) &&
|
|
j > (roi_.cols >> 2) && j < ((roi_.cols * 3) >> 2)) {
|
|
roi_.roi_map[i * roi_.cols + j] = 1;
|
|
}
|
|
}
|
|
}
|
|
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
ASSERT_GE(cfg_.rc_target_bitrate, effective_datarate_[0] * 0.90)
|
|
<< " The datarate for the file exceeds the target!";
|
|
|
|
ASSERT_LE(cfg_.rc_target_bitrate, effective_datarate_[0] * 1.4)
|
|
<< " The datarate for the file missed the target!";
|
|
|
|
free(roi_.roi_map);
|
|
}
|
|
|
|
#if CONFIG_VP9_TEMPORAL_DENOISING
|
|
class DatarateTestVP9LargeDenoiser : public DatarateTestVP9Large {
|
|
public:
|
|
virtual ~DatarateTestVP9LargeDenoiser() {}
|
|
};
|
|
|
|
// Check basic datarate targeting, for a single bitrate, when denoiser is on.
|
|
TEST_P(DatarateTestVP9LargeDenoiser, LowNoise) {
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
cfg_.rc_dropframe_thresh = 1;
|
|
cfg_.rc_min_quantizer = 2;
|
|
cfg_.rc_max_quantizer = 56;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
|
|
::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
|
|
30, 1, 0, 140);
|
|
|
|
// For the temporal denoiser (#if CONFIG_VP9_TEMPORAL_DENOISING),
|
|
// there is only one denoiser mode: denoiserYonly(which is 1),
|
|
// but may add more modes in the future.
|
|
cfg_.rc_target_bitrate = 300;
|
|
ResetModel();
|
|
// Turn on the denoiser.
|
|
denoiser_on_ = 1;
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
|
|
<< " The datarate for the file is lower than target by too much!";
|
|
ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.15)
|
|
<< " The datarate for the file is greater than target by too much!";
|
|
}
|
|
|
|
// Check basic datarate targeting, for a single bitrate, when denoiser is on,
|
|
// for clip with high noise level. Use 2 threads.
|
|
TEST_P(DatarateTestVP9LargeDenoiser, HighNoise) {
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
cfg_.rc_dropframe_thresh = 1;
|
|
cfg_.rc_min_quantizer = 2;
|
|
cfg_.rc_max_quantizer = 56;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
cfg_.g_threads = 2;
|
|
|
|
::libvpx_test::Y4mVideoSource video("noisy_clip_640_360.y4m", 0, 200);
|
|
|
|
// For the temporal denoiser (#if CONFIG_VP9_TEMPORAL_DENOISING),
|
|
// there is only one denoiser mode: kDenoiserOnYOnly(which is 1),
|
|
// but may add more modes in the future.
|
|
cfg_.rc_target_bitrate = 1000;
|
|
ResetModel();
|
|
// Turn on the denoiser.
|
|
denoiser_on_ = 1;
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
|
|
<< " The datarate for the file is lower than target by too much!";
|
|
ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.15)
|
|
<< " The datarate for the file is greater than target by too much!";
|
|
}
|
|
|
|
// Check basic datarate targeting, for a single bitrate, when denoiser is on,
|
|
// for 1280x720 clip with 4 threads.
|
|
TEST_P(DatarateTestVP9LargeDenoiser, 4threads) {
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
cfg_.rc_dropframe_thresh = 1;
|
|
cfg_.rc_min_quantizer = 2;
|
|
cfg_.rc_max_quantizer = 56;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
cfg_.g_threads = 4;
|
|
|
|
::libvpx_test::Y4mVideoSource video("niklas_1280_720_30.y4m", 0, 300);
|
|
|
|
// For the temporal denoiser (#if CONFIG_VP9_TEMPORAL_DENOISING),
|
|
// there is only one denoiser mode: denoiserYonly(which is 1),
|
|
// but may add more modes in the future.
|
|
cfg_.rc_target_bitrate = 1000;
|
|
ResetModel();
|
|
// Turn on the denoiser.
|
|
denoiser_on_ = 1;
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
|
|
<< " The datarate for the file is lower than target by too much!";
|
|
ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.29)
|
|
<< " The datarate for the file is greater than target by too much!";
|
|
}
|
|
|
|
// Check basic datarate targeting, for a single bitrate, when denoiser is off
|
|
// and on.
|
|
TEST_P(DatarateTestVP9LargeDenoiser, DenoiserOffOn) {
|
|
cfg_.rc_buf_initial_sz = 500;
|
|
cfg_.rc_buf_optimal_sz = 500;
|
|
cfg_.rc_buf_sz = 1000;
|
|
cfg_.rc_dropframe_thresh = 1;
|
|
cfg_.rc_min_quantizer = 2;
|
|
cfg_.rc_max_quantizer = 56;
|
|
cfg_.rc_end_usage = VPX_CBR;
|
|
cfg_.g_lag_in_frames = 0;
|
|
|
|
::libvpx_test::I420VideoSource video("hantro_collage_w352h288.yuv", 352, 288,
|
|
30, 1, 0, 299);
|
|
|
|
// For the temporal denoiser (#if CONFIG_VP9_TEMPORAL_DENOISING),
|
|
// there is only one denoiser mode: denoiserYonly(which is 1),
|
|
// but may add more modes in the future.
|
|
cfg_.rc_target_bitrate = 300;
|
|
ResetModel();
|
|
// The denoiser is off by default.
|
|
denoiser_on_ = 0;
|
|
// Set the offon test flag.
|
|
denoiser_offon_test_ = 1;
|
|
denoiser_offon_period_ = 100;
|
|
ASSERT_NO_FATAL_FAILURE(RunLoop(&video));
|
|
ASSERT_GE(effective_datarate_[0], cfg_.rc_target_bitrate * 0.85)
|
|
<< " The datarate for the file is lower than target by too much!";
|
|
ASSERT_LE(effective_datarate_[0], cfg_.rc_target_bitrate * 1.15)
|
|
<< " The datarate for the file is greater than target by too much!";
|
|
}
|
|
#endif // CONFIG_VP9_TEMPORAL_DENOISING
|
|
|
|
VP9_INSTANTIATE_TEST_CASE(DatarateTestVP9Large,
|
|
::testing::Values(::libvpx_test::kOnePassGood,
|
|
::libvpx_test::kRealTime),
|
|
::testing::Range(2, 9));
|
|
VP9_INSTANTIATE_TEST_CASE(DatarateTestVP9RealTime,
|
|
::testing::Values(::libvpx_test::kRealTime),
|
|
::testing::Range(5, 9));
|
|
#if CONFIG_VP9_TEMPORAL_DENOISING
|
|
VP9_INSTANTIATE_TEST_CASE(DatarateTestVP9LargeDenoiser,
|
|
::testing::Values(::libvpx_test::kRealTime),
|
|
::testing::Range(5, 9));
|
|
#endif
|
|
} // namespace
|