88d11f473c
Existing logic was only affecting resolutions above 720p. Needs more testing for reducing subpel for speed >= 8. No change on RTC metrics. Change-Id: I2f4bf9f25891614aafa9a86aa5a5063a3ccfce4d
824 lines
30 KiB
C
824 lines
30 KiB
C
/*
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* Copyright (c) 2010 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 <limits.h>
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#include "vp9/encoder/vp9_encoder.h"
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#include "vp9/encoder/vp9_speed_features.h"
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#include "vp9/encoder/vp9_rdopt.h"
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#include "vpx_dsp/vpx_dsp_common.h"
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// Mesh search patters for various speed settings
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static MESH_PATTERN best_quality_mesh_pattern[MAX_MESH_STEP] = {
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{ 64, 4 }, { 28, 2 }, { 15, 1 }, { 7, 1 }
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};
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// Define 3 mesh density levels to control the number of searches.
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#define MESH_DENSITY_LEVELS 3
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static MESH_PATTERN
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good_quality_mesh_patterns[MESH_DENSITY_LEVELS][MAX_MESH_STEP] = {
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{ { 64, 8 }, { 28, 4 }, { 15, 1 }, { 7, 1 } },
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{ { 64, 8 }, { 14, 2 }, { 7, 1 }, { 7, 1 } },
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{ { 64, 16 }, { 24, 8 }, { 12, 4 }, { 7, 1 } },
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};
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// Intra only frames, golden frames (except alt ref overlays) and
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// alt ref frames tend to be coded at a higher than ambient quality
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static int frame_is_boosted(const VP9_COMP *cpi) {
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return frame_is_kf_gf_arf(cpi) || vp9_is_upper_layer_key_frame(cpi);
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}
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// Sets a partition size down to which the auto partition code will always
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// search (can go lower), based on the image dimensions. The logic here
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// is that the extent to which ringing artefacts are offensive, depends
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// partly on the screen area that over which they propogate. Propogation is
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// limited by transform block size but the screen area take up by a given block
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// size will be larger for a small image format stretched to full screen.
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static BLOCK_SIZE set_partition_min_limit(VP9_COMMON *const cm) {
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unsigned int screen_area = (cm->width * cm->height);
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// Select block size based on image format size.
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if (screen_area < 1280 * 720) {
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// Formats smaller in area than 720P
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return BLOCK_4X4;
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} else if (screen_area < 1920 * 1080) {
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// Format >= 720P and < 1080P
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return BLOCK_8X8;
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} else {
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// Formats 1080P and up
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return BLOCK_16X16;
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}
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}
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static void set_good_speed_feature_framesize_dependent(VP9_COMP *cpi,
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SPEED_FEATURES *sf,
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int speed) {
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VP9_COMMON *const cm = &cpi->common;
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// speed 0 features
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sf->partition_search_breakout_thr.dist = (1 << 20);
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sf->partition_search_breakout_thr.rate = 80;
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// Currently, the machine-learning based partition search early termination
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// is only used while VPXMIN(cm->width, cm->height) >= 480 and speed = 0.
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if (VPXMIN(cm->width, cm->height) >= 480) {
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sf->ml_partition_search_early_termination = 1;
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}
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if (speed >= 1) {
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sf->ml_partition_search_early_termination = 0;
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if (VPXMIN(cm->width, cm->height) >= 720) {
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sf->disable_split_mask =
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cm->show_frame ? DISABLE_ALL_SPLIT : DISABLE_ALL_INTER_SPLIT;
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sf->partition_search_breakout_thr.dist = (1 << 23);
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} else {
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sf->disable_split_mask = DISABLE_COMPOUND_SPLIT;
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sf->partition_search_breakout_thr.dist = (1 << 21);
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}
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}
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if (speed >= 2) {
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if (VPXMIN(cm->width, cm->height) >= 720) {
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sf->disable_split_mask =
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cm->show_frame ? DISABLE_ALL_SPLIT : DISABLE_ALL_INTER_SPLIT;
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sf->adaptive_pred_interp_filter = 0;
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sf->partition_search_breakout_thr.dist = (1 << 24);
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sf->partition_search_breakout_thr.rate = 120;
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} else {
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sf->disable_split_mask = LAST_AND_INTRA_SPLIT_ONLY;
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sf->partition_search_breakout_thr.dist = (1 << 22);
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sf->partition_search_breakout_thr.rate = 100;
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}
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sf->rd_auto_partition_min_limit = set_partition_min_limit(cm);
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// Use a set of speed features for 4k videos.
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if (VPXMIN(cm->width, cm->height) >= 2160) {
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sf->use_square_partition_only = 1;
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sf->intra_y_mode_mask[TX_32X32] = INTRA_DC;
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sf->intra_uv_mode_mask[TX_32X32] = INTRA_DC;
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sf->alt_ref_search_fp = 1;
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sf->cb_pred_filter_search = 1;
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sf->adaptive_interp_filter_search = 1;
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sf->disable_split_mask = DISABLE_ALL_SPLIT;
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}
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}
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if (speed >= 3) {
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if (VPXMIN(cm->width, cm->height) >= 720) {
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sf->disable_split_mask = DISABLE_ALL_SPLIT;
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sf->schedule_mode_search = cm->base_qindex < 220 ? 1 : 0;
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sf->partition_search_breakout_thr.dist = (1 << 25);
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sf->partition_search_breakout_thr.rate = 200;
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} else {
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sf->max_intra_bsize = BLOCK_32X32;
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sf->disable_split_mask = DISABLE_ALL_INTER_SPLIT;
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sf->schedule_mode_search = cm->base_qindex < 175 ? 1 : 0;
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sf->partition_search_breakout_thr.dist = (1 << 23);
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sf->partition_search_breakout_thr.rate = 120;
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}
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}
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// If this is a two pass clip that fits the criteria for animated or
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// graphics content then reset disable_split_mask for speeds 1-4.
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// Also if the image edge is internal to the coded area.
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if ((speed >= 1) && (cpi->oxcf.pass == 2) &&
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((cpi->twopass.fr_content_type == FC_GRAPHICS_ANIMATION) ||
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(vp9_internal_image_edge(cpi)))) {
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sf->disable_split_mask = DISABLE_COMPOUND_SPLIT;
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}
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if (speed >= 4) {
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sf->partition_search_breakout_thr.rate = 300;
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if (VPXMIN(cm->width, cm->height) >= 720) {
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sf->partition_search_breakout_thr.dist = (1 << 26);
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} else {
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sf->partition_search_breakout_thr.dist = (1 << 24);
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}
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sf->disable_split_mask = DISABLE_ALL_SPLIT;
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}
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if (speed >= 5) {
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sf->partition_search_breakout_thr.rate = 500;
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}
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}
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static double tx_dom_thresholds[6] = { 99.0, 14.0, 12.0, 8.0, 4.0, 0.0 };
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static double qopt_thresholds[6] = { 99.0, 12.0, 10.0, 4.0, 2.0, 0.0 };
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static void set_good_speed_feature_framesize_independent(VP9_COMP *cpi,
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VP9_COMMON *cm,
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SPEED_FEATURES *sf,
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int speed) {
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const int boosted = frame_is_boosted(cpi);
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int i;
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sf->tx_size_search_breakout = 1;
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sf->adaptive_rd_thresh = 1;
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sf->adaptive_rd_thresh_row_mt = 0;
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sf->allow_skip_recode = 1;
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sf->less_rectangular_check = 1;
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sf->use_square_partition_only = !frame_is_boosted(cpi);
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sf->use_square_only_threshold = BLOCK_16X16;
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if (cpi->twopass.fr_content_type == FC_GRAPHICS_ANIMATION) {
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sf->exhaustive_searches_thresh = (1 << 22);
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for (i = 0; i < MAX_MESH_STEP; ++i) {
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int mesh_density_level = 0;
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sf->mesh_patterns[i].range =
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good_quality_mesh_patterns[mesh_density_level][i].range;
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sf->mesh_patterns[i].interval =
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good_quality_mesh_patterns[mesh_density_level][i].interval;
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}
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} else {
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sf->exhaustive_searches_thresh = INT_MAX;
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}
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if (speed >= 1) {
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if (cpi->oxcf.pass == 2) {
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TWO_PASS *const twopass = &cpi->twopass;
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if ((twopass->fr_content_type == FC_GRAPHICS_ANIMATION) ||
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vp9_internal_image_edge(cpi)) {
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sf->use_square_partition_only = !frame_is_boosted(cpi);
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} else {
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sf->use_square_partition_only = !frame_is_intra_only(cm);
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}
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} else {
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sf->use_square_partition_only = !frame_is_intra_only(cm);
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}
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sf->allow_txfm_domain_distortion = 1;
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sf->tx_domain_thresh = tx_dom_thresholds[(speed < 6) ? speed : 5];
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sf->allow_quant_coeff_opt = sf->optimize_coefficients;
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sf->quant_opt_thresh = qopt_thresholds[(speed < 6) ? speed : 5];
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sf->use_square_only_threshold = BLOCK_4X4;
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sf->less_rectangular_check = 1;
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sf->use_rd_breakout = 1;
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sf->adaptive_motion_search = 1;
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sf->mv.auto_mv_step_size = 1;
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sf->adaptive_rd_thresh = 2;
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sf->mv.subpel_iters_per_step = 1;
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sf->mode_skip_start = 10;
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sf->adaptive_pred_interp_filter = 1;
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sf->allow_acl = 0;
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sf->intra_y_mode_mask[TX_32X32] = INTRA_DC_H_V;
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sf->intra_uv_mode_mask[TX_32X32] = INTRA_DC_H_V;
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sf->intra_y_mode_mask[TX_16X16] = INTRA_DC_H_V;
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sf->intra_uv_mode_mask[TX_16X16] = INTRA_DC_H_V;
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sf->recode_tolerance_low = 15;
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sf->recode_tolerance_high = 30;
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sf->exhaustive_searches_thresh =
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(cpi->twopass.fr_content_type == FC_GRAPHICS_ANIMATION) ? (1 << 23)
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: INT_MAX;
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}
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if (speed >= 2) {
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sf->recode_loop = ALLOW_RECODE_KFARFGF;
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sf->tx_size_search_method =
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frame_is_boosted(cpi) ? USE_FULL_RD : USE_LARGESTALL;
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// Reference masking is not supported in dynamic scaling mode.
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sf->reference_masking = cpi->oxcf.resize_mode != RESIZE_DYNAMIC ? 1 : 0;
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sf->mode_search_skip_flags =
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(cm->frame_type == KEY_FRAME)
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? 0
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: FLAG_SKIP_INTRA_DIRMISMATCH | FLAG_SKIP_INTRA_BESTINTER |
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FLAG_SKIP_COMP_BESTINTRA | FLAG_SKIP_INTRA_LOWVAR;
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sf->disable_filter_search_var_thresh = 100;
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sf->comp_inter_joint_search_thresh = BLOCK_SIZES;
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sf->auto_min_max_partition_size = RELAXED_NEIGHBORING_MIN_MAX;
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sf->allow_partition_search_skip = 1;
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sf->recode_tolerance_low = 15;
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sf->recode_tolerance_high = 45;
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if (cpi->twopass.fr_content_type == FC_GRAPHICS_ANIMATION) {
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for (i = 0; i < MAX_MESH_STEP; ++i) {
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int mesh_density_level = 1;
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sf->mesh_patterns[i].range =
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good_quality_mesh_patterns[mesh_density_level][i].range;
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sf->mesh_patterns[i].interval =
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good_quality_mesh_patterns[mesh_density_level][i].interval;
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}
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}
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}
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if (speed >= 3) {
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sf->use_square_partition_only = !frame_is_intra_only(cm);
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sf->tx_size_search_method =
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frame_is_intra_only(cm) ? USE_FULL_RD : USE_LARGESTALL;
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sf->mv.subpel_search_method = SUBPEL_TREE_PRUNED;
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sf->adaptive_pred_interp_filter = 0;
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sf->adaptive_mode_search = 1;
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sf->cb_partition_search = !boosted;
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sf->cb_pred_filter_search = 1;
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sf->alt_ref_search_fp = 1;
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sf->recode_loop = ALLOW_RECODE_KFMAXBW;
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sf->adaptive_rd_thresh = 3;
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sf->mode_skip_start = 6;
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sf->intra_y_mode_mask[TX_32X32] = INTRA_DC;
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sf->intra_uv_mode_mask[TX_32X32] = INTRA_DC;
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sf->adaptive_interp_filter_search = 1;
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if (cpi->twopass.fr_content_type == FC_GRAPHICS_ANIMATION) {
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for (i = 0; i < MAX_MESH_STEP; ++i) {
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int mesh_density_level = 2;
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sf->mesh_patterns[i].range =
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good_quality_mesh_patterns[mesh_density_level][i].range;
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sf->mesh_patterns[i].interval =
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good_quality_mesh_patterns[mesh_density_level][i].interval;
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}
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}
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}
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if (speed >= 4) {
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sf->use_square_partition_only = 1;
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sf->tx_size_search_method = USE_LARGESTALL;
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sf->mv.search_method = BIGDIA;
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sf->mv.subpel_search_method = SUBPEL_TREE_PRUNED_MORE;
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sf->adaptive_rd_thresh = 4;
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if (cm->frame_type != KEY_FRAME)
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sf->mode_search_skip_flags |= FLAG_EARLY_TERMINATE;
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sf->disable_filter_search_var_thresh = 200;
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sf->use_lp32x32fdct = 1;
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sf->use_fast_coef_updates = ONE_LOOP_REDUCED;
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sf->use_fast_coef_costing = 1;
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sf->motion_field_mode_search = !boosted;
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}
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if (speed >= 5) {
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int i;
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sf->optimize_coefficients = 0;
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sf->mv.search_method = HEX;
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sf->disable_filter_search_var_thresh = 500;
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for (i = 0; i < TX_SIZES; ++i) {
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sf->intra_y_mode_mask[i] = INTRA_DC;
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sf->intra_uv_mode_mask[i] = INTRA_DC;
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}
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sf->mv.reduce_first_step_size = 1;
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sf->simple_model_rd_from_var = 1;
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}
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}
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static void set_rt_speed_feature_framesize_dependent(VP9_COMP *cpi,
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SPEED_FEATURES *sf,
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int speed) {
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VP9_COMMON *const cm = &cpi->common;
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if (speed >= 1) {
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if (VPXMIN(cm->width, cm->height) >= 720) {
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sf->disable_split_mask =
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cm->show_frame ? DISABLE_ALL_SPLIT : DISABLE_ALL_INTER_SPLIT;
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} else {
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sf->disable_split_mask = DISABLE_COMPOUND_SPLIT;
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}
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}
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if (speed >= 2) {
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if (VPXMIN(cm->width, cm->height) >= 720) {
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sf->disable_split_mask =
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cm->show_frame ? DISABLE_ALL_SPLIT : DISABLE_ALL_INTER_SPLIT;
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} else {
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sf->disable_split_mask = LAST_AND_INTRA_SPLIT_ONLY;
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}
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}
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if (speed >= 5) {
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sf->partition_search_breakout_thr.rate = 200;
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if (VPXMIN(cm->width, cm->height) >= 720) {
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sf->partition_search_breakout_thr.dist = (1 << 25);
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} else {
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sf->partition_search_breakout_thr.dist = (1 << 23);
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}
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}
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if (speed >= 7) {
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sf->encode_breakout_thresh =
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(VPXMIN(cm->width, cm->height) >= 720) ? 800 : 300;
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}
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}
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static void set_rt_speed_feature_framesize_independent(
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VP9_COMP *cpi, SPEED_FEATURES *sf, int speed, vp9e_tune_content content) {
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VP9_COMMON *const cm = &cpi->common;
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const int is_keyframe = cm->frame_type == KEY_FRAME;
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const int frames_since_key = is_keyframe ? 0 : cpi->rc.frames_since_key;
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sf->static_segmentation = 0;
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sf->adaptive_rd_thresh = 1;
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sf->adaptive_rd_thresh_row_mt = 0;
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sf->use_fast_coef_costing = 1;
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sf->exhaustive_searches_thresh = INT_MAX;
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sf->allow_acl = 0;
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sf->copy_partition_flag = 0;
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sf->use_source_sad = 0;
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sf->use_simple_block_yrd = 0;
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if (speed >= 1) {
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sf->allow_txfm_domain_distortion = 1;
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sf->tx_domain_thresh = 0.0;
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sf->allow_quant_coeff_opt = 0;
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sf->quant_opt_thresh = 0.0;
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sf->use_square_partition_only = !frame_is_intra_only(cm);
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sf->less_rectangular_check = 1;
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sf->tx_size_search_method =
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frame_is_intra_only(cm) ? USE_FULL_RD : USE_LARGESTALL;
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sf->use_rd_breakout = 1;
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sf->adaptive_motion_search = 1;
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sf->adaptive_pred_interp_filter = 1;
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sf->mv.auto_mv_step_size = 1;
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sf->adaptive_rd_thresh = 2;
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sf->intra_y_mode_mask[TX_32X32] = INTRA_DC_H_V;
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sf->intra_uv_mode_mask[TX_32X32] = INTRA_DC_H_V;
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sf->intra_uv_mode_mask[TX_16X16] = INTRA_DC_H_V;
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}
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if (speed >= 2) {
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sf->mode_search_skip_flags =
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(cm->frame_type == KEY_FRAME)
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? 0
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: FLAG_SKIP_INTRA_DIRMISMATCH | FLAG_SKIP_INTRA_BESTINTER |
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FLAG_SKIP_COMP_BESTINTRA | FLAG_SKIP_INTRA_LOWVAR;
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sf->adaptive_pred_interp_filter = 2;
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// Reference masking only enabled for 1 spatial layer, and if none of the
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// references have been scaled. The latter condition needs to be checked
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// for external or internal dynamic resize.
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sf->reference_masking = (cpi->svc.number_spatial_layers == 1);
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if (sf->reference_masking == 1 &&
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(cpi->external_resize == 1 ||
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cpi->oxcf.resize_mode == RESIZE_DYNAMIC)) {
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MV_REFERENCE_FRAME ref_frame;
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static const int flag_list[4] = { 0, VP9_LAST_FLAG, VP9_GOLD_FLAG,
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VP9_ALT_FLAG };
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for (ref_frame = LAST_FRAME; ref_frame <= ALTREF_FRAME; ++ref_frame) {
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const YV12_BUFFER_CONFIG *yv12 = get_ref_frame_buffer(cpi, ref_frame);
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if (yv12 != NULL && (cpi->ref_frame_flags & flag_list[ref_frame])) {
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const struct scale_factors *const scale_fac =
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&cm->frame_refs[ref_frame - 1].sf;
|
|
if (vp9_is_scaled(scale_fac)) sf->reference_masking = 0;
|
|
}
|
|
}
|
|
}
|
|
|
|
sf->disable_filter_search_var_thresh = 50;
|
|
sf->comp_inter_joint_search_thresh = BLOCK_SIZES;
|
|
sf->auto_min_max_partition_size = RELAXED_NEIGHBORING_MIN_MAX;
|
|
sf->lf_motion_threshold = LOW_MOTION_THRESHOLD;
|
|
sf->adjust_partitioning_from_last_frame = 1;
|
|
sf->last_partitioning_redo_frequency = 3;
|
|
sf->use_lp32x32fdct = 1;
|
|
sf->mode_skip_start = 11;
|
|
sf->intra_y_mode_mask[TX_16X16] = INTRA_DC_H_V;
|
|
}
|
|
|
|
if (speed >= 3) {
|
|
sf->use_square_partition_only = 1;
|
|
sf->disable_filter_search_var_thresh = 100;
|
|
sf->use_uv_intra_rd_estimate = 1;
|
|
sf->skip_encode_sb = 1;
|
|
sf->mv.subpel_iters_per_step = 1;
|
|
sf->adaptive_rd_thresh = 4;
|
|
sf->mode_skip_start = 6;
|
|
sf->allow_skip_recode = 0;
|
|
sf->optimize_coefficients = 0;
|
|
sf->disable_split_mask = DISABLE_ALL_SPLIT;
|
|
sf->lpf_pick = LPF_PICK_FROM_Q;
|
|
}
|
|
|
|
if (speed >= 4) {
|
|
int i;
|
|
sf->last_partitioning_redo_frequency = 4;
|
|
sf->adaptive_rd_thresh = 5;
|
|
sf->use_fast_coef_costing = 0;
|
|
sf->auto_min_max_partition_size = STRICT_NEIGHBORING_MIN_MAX;
|
|
sf->adjust_partitioning_from_last_frame =
|
|
cm->last_frame_type != cm->frame_type ||
|
|
(0 == (frames_since_key + 1) % sf->last_partitioning_redo_frequency);
|
|
sf->mv.subpel_force_stop = 1;
|
|
for (i = 0; i < TX_SIZES; i++) {
|
|
sf->intra_y_mode_mask[i] = INTRA_DC_H_V;
|
|
sf->intra_uv_mode_mask[i] = INTRA_DC;
|
|
}
|
|
sf->intra_y_mode_mask[TX_32X32] = INTRA_DC;
|
|
sf->frame_parameter_update = 0;
|
|
sf->mv.search_method = FAST_HEX;
|
|
|
|
sf->inter_mode_mask[BLOCK_32X32] = INTER_NEAREST_NEAR_NEW;
|
|
sf->inter_mode_mask[BLOCK_32X64] = INTER_NEAREST;
|
|
sf->inter_mode_mask[BLOCK_64X32] = INTER_NEAREST;
|
|
sf->inter_mode_mask[BLOCK_64X64] = INTER_NEAREST;
|
|
sf->max_intra_bsize = BLOCK_32X32;
|
|
sf->allow_skip_recode = 1;
|
|
}
|
|
|
|
if (speed >= 5) {
|
|
sf->use_quant_fp = !is_keyframe;
|
|
sf->auto_min_max_partition_size =
|
|
is_keyframe ? RELAXED_NEIGHBORING_MIN_MAX : STRICT_NEIGHBORING_MIN_MAX;
|
|
sf->default_max_partition_size = BLOCK_32X32;
|
|
sf->default_min_partition_size = BLOCK_8X8;
|
|
sf->force_frame_boost =
|
|
is_keyframe ||
|
|
(frames_since_key % (sf->last_partitioning_redo_frequency << 1) == 1);
|
|
sf->max_delta_qindex = is_keyframe ? 20 : 15;
|
|
sf->partition_search_type = REFERENCE_PARTITION;
|
|
if (cpi->oxcf.rc_mode == VPX_VBR && cpi->oxcf.lag_in_frames > 0 &&
|
|
cpi->rc.is_src_frame_alt_ref) {
|
|
sf->partition_search_type = VAR_BASED_PARTITION;
|
|
}
|
|
sf->use_nonrd_pick_mode = 1;
|
|
sf->allow_skip_recode = 0;
|
|
sf->inter_mode_mask[BLOCK_32X32] = INTER_NEAREST_NEW_ZERO;
|
|
sf->inter_mode_mask[BLOCK_32X64] = INTER_NEAREST_NEW_ZERO;
|
|
sf->inter_mode_mask[BLOCK_64X32] = INTER_NEAREST_NEW_ZERO;
|
|
sf->inter_mode_mask[BLOCK_64X64] = INTER_NEAREST_NEW_ZERO;
|
|
sf->adaptive_rd_thresh = 2;
|
|
// This feature is only enabled when partition search is disabled.
|
|
sf->reuse_inter_pred_sby = 1;
|
|
sf->coeff_prob_appx_step = 4;
|
|
sf->use_fast_coef_updates = is_keyframe ? TWO_LOOP : ONE_LOOP_REDUCED;
|
|
sf->mode_search_skip_flags = FLAG_SKIP_INTRA_DIRMISMATCH;
|
|
sf->tx_size_search_method = is_keyframe ? USE_LARGESTALL : USE_TX_8X8;
|
|
sf->simple_model_rd_from_var = 1;
|
|
if (cpi->oxcf.rc_mode == VPX_VBR) sf->mv.search_method = NSTEP;
|
|
|
|
if (!is_keyframe) {
|
|
int i;
|
|
if (content == VP9E_CONTENT_SCREEN) {
|
|
for (i = 0; i < BLOCK_SIZES; ++i)
|
|
sf->intra_y_mode_bsize_mask[i] = INTRA_DC_TM_H_V;
|
|
} else {
|
|
for (i = 0; i < BLOCK_SIZES; ++i)
|
|
if (i > BLOCK_16X16)
|
|
sf->intra_y_mode_bsize_mask[i] = INTRA_DC;
|
|
else
|
|
// Use H and V intra mode for block sizes <= 16X16.
|
|
sf->intra_y_mode_bsize_mask[i] = INTRA_DC_H_V;
|
|
}
|
|
}
|
|
if (content == VP9E_CONTENT_SCREEN) {
|
|
sf->short_circuit_flat_blocks = 1;
|
|
}
|
|
if (cpi->oxcf.rc_mode == VPX_CBR &&
|
|
cpi->oxcf.content != VP9E_CONTENT_SCREEN) {
|
|
sf->limit_newmv_early_exit = 1;
|
|
if (!cpi->use_svc) sf->bias_golden = 1;
|
|
}
|
|
}
|
|
|
|
if (speed >= 6) {
|
|
sf->partition_search_type = VAR_BASED_PARTITION;
|
|
// Turn on this to use non-RD key frame coding mode.
|
|
sf->use_nonrd_pick_mode = 1;
|
|
sf->mv.search_method = NSTEP;
|
|
sf->mv.reduce_first_step_size = 1;
|
|
sf->skip_encode_sb = 0;
|
|
if (cpi->oxcf.rc_mode == VPX_CBR && content != VP9E_CONTENT_SCREEN) {
|
|
// Enable short circuit for low temporal variance.
|
|
sf->short_circuit_low_temp_var = 1;
|
|
}
|
|
if (cpi->svc.temporal_layer_id > 0) {
|
|
sf->adaptive_rd_thresh = 4;
|
|
sf->limit_newmv_early_exit = 0;
|
|
sf->base_mv_aggressive = 1;
|
|
}
|
|
}
|
|
|
|
if (speed >= 7) {
|
|
sf->adaptive_rd_thresh = 3;
|
|
sf->mv.search_method = FAST_DIAMOND;
|
|
sf->mv.fullpel_search_step_param = 10;
|
|
if (cpi->svc.number_temporal_layers > 2 &&
|
|
cpi->svc.temporal_layer_id == 0) {
|
|
sf->mv.search_method = NSTEP;
|
|
sf->mv.fullpel_search_step_param = 6;
|
|
}
|
|
if (cpi->svc.temporal_layer_id > 0) {
|
|
sf->use_simple_block_yrd = 1;
|
|
if (cpi->svc.non_reference_frame)
|
|
sf->mv.subpel_search_method = SUBPEL_TREE_PRUNED_EVENMORE;
|
|
}
|
|
if (!cpi->external_resize) sf->use_source_sad = 1;
|
|
if (sf->use_source_sad) {
|
|
if (cpi->content_state_sb_fd == NULL &&
|
|
(!cpi->use_svc ||
|
|
cpi->svc.spatial_layer_id == cpi->svc.number_spatial_layers - 1)) {
|
|
cpi->content_state_sb_fd = (uint8_t *)vpx_calloc(
|
|
(cm->mi_stride >> 3) * ((cm->mi_rows >> 3) + 1), sizeof(uint8_t));
|
|
}
|
|
}
|
|
// Enable partition copy. For SVC only enabled for top spatial resolution
|
|
// layer.
|
|
cpi->max_copied_frame = 0;
|
|
if (!cpi->last_frame_dropped && cpi->resize_state == ORIG &&
|
|
!cpi->external_resize &&
|
|
(!cpi->use_svc ||
|
|
cpi->svc.spatial_layer_id == cpi->svc.number_spatial_layers - 1)) {
|
|
sf->copy_partition_flag = 1;
|
|
cpi->max_copied_frame = 2;
|
|
// The top temporal enhancement layer (for number of temporal layers > 1)
|
|
// are non-reference frames, so use large/max value for max_copied_frame.
|
|
if (cpi->svc.number_temporal_layers > 1 &&
|
|
cpi->svc.temporal_layer_id == cpi->svc.number_temporal_layers - 1)
|
|
cpi->max_copied_frame = 255;
|
|
}
|
|
}
|
|
|
|
if (speed >= 8) {
|
|
sf->adaptive_rd_thresh = 4;
|
|
if (!cpi->use_svc) cpi->max_copied_frame = 4;
|
|
if (cpi->row_mt && cpi->oxcf.max_threads > 1)
|
|
sf->adaptive_rd_thresh_row_mt = 1;
|
|
|
|
if (content == VP9E_CONTENT_SCREEN) sf->mv.subpel_force_stop = 3;
|
|
if (content == VP9E_CONTENT_SCREEN) sf->lpf_pick = LPF_PICK_MINIMAL_LPF;
|
|
// Only keep INTRA_DC mode for speed 8.
|
|
if (!is_keyframe) {
|
|
int i = 0;
|
|
for (i = 0; i < BLOCK_SIZES; ++i)
|
|
sf->intra_y_mode_bsize_mask[i] = INTRA_DC;
|
|
}
|
|
if (!cpi->use_svc && cpi->oxcf.rc_mode == VPX_CBR &&
|
|
content != VP9E_CONTENT_SCREEN) {
|
|
// More aggressive short circuit for speed 8.
|
|
sf->short_circuit_low_temp_var = 3;
|
|
// Use level 2 for noisey cases as there is a regression in some
|
|
// noisy clips with level 3.
|
|
if (cpi->noise_estimate.enabled && cm->width >= 1280 &&
|
|
cm->height >= 720) {
|
|
NOISE_LEVEL noise_level =
|
|
vp9_noise_estimate_extract_level(&cpi->noise_estimate);
|
|
if (noise_level >= kMedium) sf->short_circuit_low_temp_var = 2;
|
|
}
|
|
// Since the short_circuit_low_temp_var is used, reduce the
|
|
// adaptive_rd_thresh level.
|
|
if (cm->width * cm->height > 352 * 288)
|
|
sf->adaptive_rd_thresh = 1;
|
|
else
|
|
sf->adaptive_rd_thresh = 2;
|
|
}
|
|
sf->limit_newmv_early_exit = 0;
|
|
sf->use_simple_block_yrd = 1;
|
|
}
|
|
}
|
|
|
|
void vp9_set_speed_features_framesize_dependent(VP9_COMP *cpi) {
|
|
SPEED_FEATURES *const sf = &cpi->sf;
|
|
const VP9EncoderConfig *const oxcf = &cpi->oxcf;
|
|
RD_OPT *const rd = &cpi->rd;
|
|
int i;
|
|
|
|
// best quality defaults
|
|
// Some speed-up features even for best quality as minimal impact on quality.
|
|
sf->partition_search_breakout_thr.dist = (1 << 19);
|
|
sf->partition_search_breakout_thr.rate = 80;
|
|
sf->ml_partition_search_early_termination = 0;
|
|
|
|
if (oxcf->mode == REALTIME) {
|
|
set_rt_speed_feature_framesize_dependent(cpi, sf, oxcf->speed);
|
|
} else if (oxcf->mode == GOOD) {
|
|
set_good_speed_feature_framesize_dependent(cpi, sf, oxcf->speed);
|
|
}
|
|
|
|
if (sf->disable_split_mask == DISABLE_ALL_SPLIT) {
|
|
sf->adaptive_pred_interp_filter = 0;
|
|
}
|
|
|
|
if (cpi->encode_breakout && oxcf->mode == REALTIME &&
|
|
sf->encode_breakout_thresh > cpi->encode_breakout) {
|
|
cpi->encode_breakout = sf->encode_breakout_thresh;
|
|
}
|
|
|
|
// Check for masked out split cases.
|
|
for (i = 0; i < MAX_REFS; ++i) {
|
|
if (sf->disable_split_mask & (1 << i)) {
|
|
rd->thresh_mult_sub8x8[i] = INT_MAX;
|
|
}
|
|
}
|
|
|
|
// With row based multi-threading, the following speed features
|
|
// have to be disabled to guarantee that bitstreams encoded with single thread
|
|
// and multiple threads match.
|
|
// It can be used in realtime when adaptive_rd_thresh_row_mt is enabled since
|
|
// adaptive_rd_thresh is defined per-row for non-rd pickmode.
|
|
if (!sf->adaptive_rd_thresh_row_mt && cpi->row_mt_bit_exact)
|
|
sf->adaptive_rd_thresh = 0;
|
|
|
|
// This is only used in motion vector unit test.
|
|
if (cpi->oxcf.motion_vector_unit_test == 1)
|
|
cpi->find_fractional_mv_step = vp9_return_max_sub_pixel_mv;
|
|
else if (cpi->oxcf.motion_vector_unit_test == 2)
|
|
cpi->find_fractional_mv_step = vp9_return_min_sub_pixel_mv;
|
|
}
|
|
|
|
void vp9_set_speed_features_framesize_independent(VP9_COMP *cpi) {
|
|
SPEED_FEATURES *const sf = &cpi->sf;
|
|
VP9_COMMON *const cm = &cpi->common;
|
|
MACROBLOCK *const x = &cpi->td.mb;
|
|
const VP9EncoderConfig *const oxcf = &cpi->oxcf;
|
|
int i;
|
|
|
|
// best quality defaults
|
|
sf->frame_parameter_update = 1;
|
|
sf->mv.search_method = NSTEP;
|
|
sf->recode_loop = ALLOW_RECODE_FIRST;
|
|
sf->mv.subpel_search_method = SUBPEL_TREE;
|
|
sf->mv.subpel_iters_per_step = 2;
|
|
sf->mv.subpel_force_stop = 0;
|
|
sf->optimize_coefficients = !is_lossless_requested(&cpi->oxcf);
|
|
sf->mv.reduce_first_step_size = 0;
|
|
sf->coeff_prob_appx_step = 1;
|
|
sf->mv.auto_mv_step_size = 0;
|
|
sf->mv.fullpel_search_step_param = 6;
|
|
sf->comp_inter_joint_search_thresh = BLOCK_4X4;
|
|
sf->tx_size_search_method = USE_FULL_RD;
|
|
sf->use_lp32x32fdct = 0;
|
|
sf->adaptive_motion_search = 0;
|
|
sf->adaptive_pred_interp_filter = 0;
|
|
sf->adaptive_mode_search = 0;
|
|
sf->cb_pred_filter_search = 0;
|
|
sf->cb_partition_search = 0;
|
|
sf->motion_field_mode_search = 0;
|
|
sf->alt_ref_search_fp = 0;
|
|
sf->use_quant_fp = 0;
|
|
sf->reference_masking = 0;
|
|
sf->partition_search_type = SEARCH_PARTITION;
|
|
sf->less_rectangular_check = 0;
|
|
sf->use_square_partition_only = 0;
|
|
sf->use_square_only_threshold = BLOCK_SIZES;
|
|
sf->auto_min_max_partition_size = NOT_IN_USE;
|
|
sf->rd_auto_partition_min_limit = BLOCK_4X4;
|
|
sf->default_max_partition_size = BLOCK_64X64;
|
|
sf->default_min_partition_size = BLOCK_4X4;
|
|
sf->adjust_partitioning_from_last_frame = 0;
|
|
sf->last_partitioning_redo_frequency = 4;
|
|
sf->disable_split_mask = 0;
|
|
sf->mode_search_skip_flags = 0;
|
|
sf->force_frame_boost = 0;
|
|
sf->max_delta_qindex = 0;
|
|
sf->disable_filter_search_var_thresh = 0;
|
|
sf->adaptive_interp_filter_search = 0;
|
|
sf->allow_partition_search_skip = 0;
|
|
sf->allow_txfm_domain_distortion = 0;
|
|
sf->tx_domain_thresh = 99.0;
|
|
sf->allow_quant_coeff_opt = sf->optimize_coefficients;
|
|
sf->quant_opt_thresh = 99.0;
|
|
sf->allow_acl = 1;
|
|
|
|
for (i = 0; i < TX_SIZES; i++) {
|
|
sf->intra_y_mode_mask[i] = INTRA_ALL;
|
|
sf->intra_uv_mode_mask[i] = INTRA_ALL;
|
|
}
|
|
sf->use_rd_breakout = 0;
|
|
sf->skip_encode_sb = 0;
|
|
sf->use_uv_intra_rd_estimate = 0;
|
|
sf->allow_skip_recode = 0;
|
|
sf->lpf_pick = LPF_PICK_FROM_FULL_IMAGE;
|
|
sf->use_fast_coef_updates = TWO_LOOP;
|
|
sf->use_fast_coef_costing = 0;
|
|
sf->mode_skip_start = MAX_MODES; // Mode index at which mode skip mask set
|
|
sf->schedule_mode_search = 0;
|
|
sf->use_nonrd_pick_mode = 0;
|
|
for (i = 0; i < BLOCK_SIZES; ++i) sf->inter_mode_mask[i] = INTER_ALL;
|
|
sf->max_intra_bsize = BLOCK_64X64;
|
|
sf->reuse_inter_pred_sby = 0;
|
|
// This setting only takes effect when partition_search_type is set
|
|
// to FIXED_PARTITION.
|
|
sf->always_this_block_size = BLOCK_16X16;
|
|
sf->search_type_check_frequency = 50;
|
|
sf->encode_breakout_thresh = 0;
|
|
// Recode loop tolerance %.
|
|
sf->recode_tolerance_low = 12;
|
|
sf->recode_tolerance_high = 25;
|
|
sf->default_interp_filter = SWITCHABLE;
|
|
sf->simple_model_rd_from_var = 0;
|
|
sf->short_circuit_flat_blocks = 0;
|
|
sf->short_circuit_low_temp_var = 0;
|
|
sf->limit_newmv_early_exit = 0;
|
|
sf->bias_golden = 0;
|
|
sf->base_mv_aggressive = 0;
|
|
|
|
// Some speed-up features even for best quality as minimal impact on quality.
|
|
sf->adaptive_rd_thresh = 1;
|
|
sf->tx_size_search_breakout = 1;
|
|
|
|
sf->exhaustive_searches_thresh =
|
|
(cpi->twopass.fr_content_type == FC_GRAPHICS_ANIMATION) ? (1 << 20)
|
|
: INT_MAX;
|
|
if (cpi->twopass.fr_content_type == FC_GRAPHICS_ANIMATION) {
|
|
for (i = 0; i < MAX_MESH_STEP; ++i) {
|
|
sf->mesh_patterns[i].range = best_quality_mesh_pattern[i].range;
|
|
sf->mesh_patterns[i].interval = best_quality_mesh_pattern[i].interval;
|
|
}
|
|
}
|
|
|
|
if (oxcf->mode == REALTIME)
|
|
set_rt_speed_feature_framesize_independent(cpi, sf, oxcf->speed,
|
|
oxcf->content);
|
|
else if (oxcf->mode == GOOD)
|
|
set_good_speed_feature_framesize_independent(cpi, cm, sf, oxcf->speed);
|
|
|
|
cpi->full_search_sad = vp9_full_search_sad;
|
|
cpi->diamond_search_sad = vp9_diamond_search_sad;
|
|
|
|
// Slow quant, dct and trellis not worthwhile for first pass
|
|
// so make sure they are always turned off.
|
|
if (oxcf->pass == 1) sf->optimize_coefficients = 0;
|
|
|
|
// No recode for 1 pass.
|
|
if (oxcf->pass == 0) {
|
|
sf->recode_loop = DISALLOW_RECODE;
|
|
sf->optimize_coefficients = 0;
|
|
}
|
|
|
|
if (sf->mv.subpel_force_stop == 3) {
|
|
// Whole pel only
|
|
cpi->find_fractional_mv_step = vp9_skip_sub_pixel_tree;
|
|
} else if (sf->mv.subpel_search_method == SUBPEL_TREE) {
|
|
cpi->find_fractional_mv_step = vp9_find_best_sub_pixel_tree;
|
|
} else if (sf->mv.subpel_search_method == SUBPEL_TREE_PRUNED) {
|
|
cpi->find_fractional_mv_step = vp9_find_best_sub_pixel_tree_pruned;
|
|
} else if (sf->mv.subpel_search_method == SUBPEL_TREE_PRUNED_MORE) {
|
|
cpi->find_fractional_mv_step = vp9_find_best_sub_pixel_tree_pruned_more;
|
|
} else if (sf->mv.subpel_search_method == SUBPEL_TREE_PRUNED_EVENMORE) {
|
|
cpi->find_fractional_mv_step = vp9_find_best_sub_pixel_tree_pruned_evenmore;
|
|
}
|
|
|
|
x->optimize = sf->optimize_coefficients == 1 && oxcf->pass != 1;
|
|
|
|
x->min_partition_size = sf->default_min_partition_size;
|
|
x->max_partition_size = sf->default_max_partition_size;
|
|
|
|
if (!cpi->oxcf.frame_periodic_boost) {
|
|
sf->max_delta_qindex = 0;
|
|
}
|
|
|
|
// With row based multi-threading, the following speed features
|
|
// have to be disabled to guarantee that bitstreams encoded with single thread
|
|
// and multiple threads match.
|
|
// It can be used in realtime when adaptive_rd_thresh_row_mt is enabled since
|
|
// adaptive_rd_thresh is defined per-row for non-rd pickmode.
|
|
if (!sf->adaptive_rd_thresh_row_mt && cpi->row_mt_bit_exact)
|
|
sf->adaptive_rd_thresh = 0;
|
|
|
|
// This is only used in motion vector unit test.
|
|
if (cpi->oxcf.motion_vector_unit_test == 1)
|
|
cpi->find_fractional_mv_step = vp9_return_max_sub_pixel_mv;
|
|
else if (cpi->oxcf.motion_vector_unit_test == 2)
|
|
cpi->find_fractional_mv_step = vp9_return_min_sub_pixel_mv;
|
|
}
|