2020-08-14 18:58:22 +02:00
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/*
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* Copyright (c) 2015 The WebRTC 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 "modules/video_processing/video_denoiser.h"
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#include <stdint.h>
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#include <string.h>
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#include "api/video/i420_buffer.h"
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#include "third_party/libyuv/include/libyuv/planar_functions.h"
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namespace webrtc {
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#if DISPLAY || DISPLAYNEON
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static void ShowRect(const std::unique_ptr<DenoiserFilter>& filter,
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const std::unique_ptr<uint8_t[]>& d_status,
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const std::unique_ptr<uint8_t[]>& moving_edge_red,
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const std::unique_ptr<uint8_t[]>& x_density,
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const std::unique_ptr<uint8_t[]>& y_density,
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const uint8_t* u_src,
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int stride_u_src,
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const uint8_t* v_src,
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int stride_v_src,
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uint8_t* u_dst,
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int stride_u_dst,
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uint8_t* v_dst,
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int stride_v_dst,
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int mb_rows_,
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int mb_cols_) {
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for (int mb_row = 0; mb_row < mb_rows_; ++mb_row) {
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for (int mb_col = 0; mb_col < mb_cols_; ++mb_col) {
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int mb_index = mb_row * mb_cols_ + mb_col;
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const uint8_t* mb_src_u =
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u_src + (mb_row << 3) * stride_u_src + (mb_col << 3);
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const uint8_t* mb_src_v =
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v_src + (mb_row << 3) * stride_v_src + (mb_col << 3);
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uint8_t* mb_dst_u = u_dst + (mb_row << 3) * stride_u_dst + (mb_col << 3);
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uint8_t* mb_dst_v = v_dst + (mb_row << 3) * stride_v_dst + (mb_col << 3);
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uint8_t uv_tmp[8 * 8];
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memset(uv_tmp, 200, 8 * 8);
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if (d_status[mb_index] == 1) {
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// Paint to red.
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2021-06-25 02:43:10 +02:00
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libyuv::CopyPlane(mb_src_u, stride_u_src, mb_dst_u, stride_u_dst, 8, 8);
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libyuv::CopyPlane(uv_tmp, 8, mb_dst_v, stride_v_dst, 8, 8);
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2020-08-14 18:58:22 +02:00
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} else if (moving_edge_red[mb_row * mb_cols_ + mb_col] &&
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x_density[mb_col] * y_density[mb_row]) {
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// Paint to blue.
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2021-06-25 02:43:10 +02:00
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libyuv::CopyPlane(uv_tmp, 8, mb_dst_u, stride_u_dst, 8, 8);
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libyuv::CopyPlane(mb_src_v, stride_v_src, mb_dst_v, stride_v_dst, 8, 8);
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2020-08-14 18:58:22 +02:00
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} else {
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libyuv::CopyPlane(mb_src_u, stride_u_src, mb_dst_u, stride_u_dst, 8, 8);
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libyuv::CopyPlane(mb_src_v, stride_v_src, mb_dst_v, stride_v_dst, 8, 8);
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2020-08-14 18:58:22 +02:00
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}
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}
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}
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}
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#endif
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VideoDenoiser::VideoDenoiser(bool runtime_cpu_detection)
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: width_(0),
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height_(0),
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filter_(DenoiserFilter::Create(runtime_cpu_detection, &cpu_type_)),
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ne_(new NoiseEstimation()) {}
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void VideoDenoiser::DenoiserReset(
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rtc::scoped_refptr<I420BufferInterface> frame) {
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width_ = frame->width();
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height_ = frame->height();
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mb_cols_ = width_ >> 4;
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mb_rows_ = height_ >> 4;
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// Init noise estimator and allocate buffers.
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ne_->Init(width_, height_, cpu_type_);
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moving_edge_.reset(new uint8_t[mb_cols_ * mb_rows_]);
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mb_filter_decision_.reset(new DenoiserDecision[mb_cols_ * mb_rows_]);
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x_density_.reset(new uint8_t[mb_cols_]);
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y_density_.reset(new uint8_t[mb_rows_]);
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moving_object_.reset(new uint8_t[mb_cols_ * mb_rows_]);
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}
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int VideoDenoiser::PositionCheck(int mb_row, int mb_col, int noise_level) {
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if (noise_level == 0)
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return 1;
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if ((mb_row <= (mb_rows_ >> 4)) || (mb_col <= (mb_cols_ >> 4)) ||
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(mb_col >= (15 * mb_cols_ >> 4)))
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return 3;
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else if ((mb_row <= (mb_rows_ >> 3)) || (mb_col <= (mb_cols_ >> 3)) ||
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(mb_col >= (7 * mb_cols_ >> 3)))
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return 2;
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else
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return 1;
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}
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void VideoDenoiser::ReduceFalseDetection(
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const std::unique_ptr<uint8_t[]>& d_status,
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std::unique_ptr<uint8_t[]>* moving_edge_red,
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int noise_level) {
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// From up left corner.
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int mb_col_stop = mb_cols_ - 1;
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for (int mb_row = 0; mb_row <= mb_rows_ - 1; ++mb_row) {
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for (int mb_col = 0; mb_col <= mb_col_stop; ++mb_col) {
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if (d_status[mb_row * mb_cols_ + mb_col]) {
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mb_col_stop = mb_col - 1;
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break;
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}
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(*moving_edge_red)[mb_row * mb_cols_ + mb_col] = 0;
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}
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}
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// From bottom left corner.
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mb_col_stop = mb_cols_ - 1;
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for (int mb_row = mb_rows_ - 1; mb_row >= 0; --mb_row) {
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for (int mb_col = 0; mb_col <= mb_col_stop; ++mb_col) {
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if (d_status[mb_row * mb_cols_ + mb_col]) {
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mb_col_stop = mb_col - 1;
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break;
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}
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(*moving_edge_red)[mb_row * mb_cols_ + mb_col] = 0;
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}
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}
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// From up right corner.
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mb_col_stop = 0;
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for (int mb_row = 0; mb_row <= mb_rows_ - 1; ++mb_row) {
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for (int mb_col = mb_cols_ - 1; mb_col >= mb_col_stop; --mb_col) {
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if (d_status[mb_row * mb_cols_ + mb_col]) {
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mb_col_stop = mb_col + 1;
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break;
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}
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(*moving_edge_red)[mb_row * mb_cols_ + mb_col] = 0;
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}
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}
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// From bottom right corner.
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mb_col_stop = 0;
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for (int mb_row = mb_rows_ - 1; mb_row >= 0; --mb_row) {
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for (int mb_col = mb_cols_ - 1; mb_col >= mb_col_stop; --mb_col) {
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if (d_status[mb_row * mb_cols_ + mb_col]) {
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mb_col_stop = mb_col + 1;
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break;
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}
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(*moving_edge_red)[mb_row * mb_cols_ + mb_col] = 0;
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}
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}
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}
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bool VideoDenoiser::IsTrailingBlock(const std::unique_ptr<uint8_t[]>& d_status,
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int mb_row,
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int mb_col) {
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bool ret = false;
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int mb_index = mb_row * mb_cols_ + mb_col;
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if (!mb_row || !mb_col || mb_row == mb_rows_ - 1 || mb_col == mb_cols_ - 1)
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ret = false;
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else
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ret = d_status[mb_index + 1] || d_status[mb_index - 1] ||
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d_status[mb_index + mb_cols_] || d_status[mb_index - mb_cols_];
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return ret;
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}
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void VideoDenoiser::CopySrcOnMOB(const uint8_t* y_src,
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int stride_src,
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uint8_t* y_dst,
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int stride_dst) {
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// Loop over to copy src block if the block is marked as moving object block
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// or if the block may cause trailing artifacts.
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for (int mb_row = 0; mb_row < mb_rows_; ++mb_row) {
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const int mb_index_base = mb_row * mb_cols_;
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const uint8_t* mb_src_base = y_src + (mb_row << 4) * stride_src;
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uint8_t* mb_dst_base = y_dst + (mb_row << 4) * stride_dst;
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for (int mb_col = 0; mb_col < mb_cols_; ++mb_col) {
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const int mb_index = mb_index_base + mb_col;
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const uint32_t offset_col = mb_col << 4;
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const uint8_t* mb_src = mb_src_base + offset_col;
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uint8_t* mb_dst = mb_dst_base + offset_col;
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// Check if the block is a moving object block or may cause a trailing
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// artifacts.
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if (mb_filter_decision_[mb_index] != FILTER_BLOCK ||
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IsTrailingBlock(moving_edge_, mb_row, mb_col) ||
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(x_density_[mb_col] * y_density_[mb_row] &&
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moving_object_[mb_row * mb_cols_ + mb_col])) {
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// Copy y source.
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2021-06-25 02:43:10 +02:00
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libyuv::CopyPlane(mb_src, stride_src, mb_dst, stride_dst, 16, 16);
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2020-08-14 18:58:22 +02:00
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}
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}
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}
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}
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void VideoDenoiser::CopyLumaOnMargin(const uint8_t* y_src,
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int stride_src,
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uint8_t* y_dst,
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int stride_dst) {
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int height_margin = height_ - (mb_rows_ << 4);
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if (height_margin > 0) {
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const uint8_t* margin_y_src = y_src + (mb_rows_ << 4) * stride_src;
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uint8_t* margin_y_dst = y_dst + (mb_rows_ << 4) * stride_dst;
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libyuv::CopyPlane(margin_y_src, stride_src, margin_y_dst, stride_dst,
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width_, height_margin);
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}
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int width_margin = width_ - (mb_cols_ << 4);
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if (width_margin > 0) {
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const uint8_t* margin_y_src = y_src + (mb_cols_ << 4);
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uint8_t* margin_y_dst = y_dst + (mb_cols_ << 4);
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libyuv::CopyPlane(margin_y_src, stride_src, margin_y_dst, stride_dst,
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width_ - (mb_cols_ << 4), mb_rows_ << 4);
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}
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}
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rtc::scoped_refptr<I420BufferInterface> VideoDenoiser::DenoiseFrame(
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rtc::scoped_refptr<I420BufferInterface> frame,
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bool noise_estimation_enabled) {
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// If previous width and height are different from current frame's, need to
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// reallocate the buffers and no denoising for the current frame.
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if (!prev_buffer_ || width_ != frame->width() || height_ != frame->height()) {
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DenoiserReset(frame);
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prev_buffer_ = frame;
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return frame;
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}
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// Set buffer pointers.
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const uint8_t* y_src = frame->DataY();
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int stride_y_src = frame->StrideY();
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rtc::scoped_refptr<I420Buffer> dst =
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2020-12-23 08:48:30 +01:00
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buffer_pool_.CreateI420Buffer(width_, height_);
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2020-08-14 18:58:22 +02:00
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uint8_t* y_dst = dst->MutableDataY();
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int stride_y_dst = dst->StrideY();
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const uint8_t* y_dst_prev = prev_buffer_->DataY();
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int stride_prev = prev_buffer_->StrideY();
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memset(x_density_.get(), 0, mb_cols_);
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memset(y_density_.get(), 0, mb_rows_);
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memset(moving_object_.get(), 1, mb_cols_ * mb_rows_);
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uint8_t noise_level = noise_estimation_enabled ? ne_->GetNoiseLevel() : 0;
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int thr_var_base = 16 * 16 * 2;
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// Loop over blocks to accumulate/extract noise level and update x/y_density
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// factors for moving object detection.
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for (int mb_row = 0; mb_row < mb_rows_; ++mb_row) {
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const int mb_index_base = mb_row * mb_cols_;
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const uint8_t* mb_src_base = y_src + (mb_row << 4) * stride_y_src;
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uint8_t* mb_dst_base = y_dst + (mb_row << 4) * stride_y_dst;
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const uint8_t* mb_dst_prev_base = y_dst_prev + (mb_row << 4) * stride_prev;
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for (int mb_col = 0; mb_col < mb_cols_; ++mb_col) {
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const int mb_index = mb_index_base + mb_col;
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const bool ne_enable = (mb_index % NOISE_SUBSAMPLE_INTERVAL == 0);
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const int pos_factor = PositionCheck(mb_row, mb_col, noise_level);
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const uint32_t thr_var_adp = thr_var_base * pos_factor;
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const uint32_t offset_col = mb_col << 4;
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const uint8_t* mb_src = mb_src_base + offset_col;
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uint8_t* mb_dst = mb_dst_base + offset_col;
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const uint8_t* mb_dst_prev = mb_dst_prev_base + offset_col;
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// TODO(jackychen): Need SSE2/NEON opt.
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int luma = 0;
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if (ne_enable) {
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for (int i = 4; i < 12; ++i) {
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for (int j = 4; j < 12; ++j) {
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luma += mb_src[i * stride_y_src + j];
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}
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}
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}
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// Get the filtered block and filter_decision.
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mb_filter_decision_[mb_index] =
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filter_->MbDenoise(mb_dst_prev, stride_prev, mb_dst, stride_y_dst,
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mb_src, stride_y_src, 0, noise_level);
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// If filter decision is FILTER_BLOCK, no need to check moving edge.
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// It is unlikely for a moving edge block to be filtered in current
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// setting.
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if (mb_filter_decision_[mb_index] == FILTER_BLOCK) {
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uint32_t sse_t = 0;
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if (ne_enable) {
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// The variance used in noise estimation is based on the src block in
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// time t (mb_src) and filtered block in time t-1 (mb_dist_prev).
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uint32_t noise_var = filter_->Variance16x8(
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mb_dst_prev, stride_y_dst, mb_src, stride_y_src, &sse_t);
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ne_->GetNoise(mb_index, noise_var, luma);
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}
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moving_edge_[mb_index] = 0; // Not a moving edge block.
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} else {
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uint32_t sse_t = 0;
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// The variance used in MOD is based on the filtered blocks in time
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// T (mb_dst) and T-1 (mb_dst_prev).
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uint32_t noise_var = filter_->Variance16x8(
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mb_dst_prev, stride_prev, mb_dst, stride_y_dst, &sse_t);
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if (noise_var > thr_var_adp) { // Moving edge checking.
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if (ne_enable) {
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ne_->ResetConsecLowVar(mb_index);
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}
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moving_edge_[mb_index] = 1; // Mark as moving edge block.
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x_density_[mb_col] += (pos_factor < 3);
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y_density_[mb_row] += (pos_factor < 3);
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} else {
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moving_edge_[mb_index] = 0;
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if (ne_enable) {
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// The variance used in noise estimation is based on the src block
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// in time t (mb_src) and filtered block in time t-1 (mb_dist_prev).
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uint32_t noise_var = filter_->Variance16x8(
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mb_dst_prev, stride_prev, mb_src, stride_y_src, &sse_t);
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ne_->GetNoise(mb_index, noise_var, luma);
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}
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}
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}
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} // End of for loop
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} // End of for loop
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ReduceFalseDetection(moving_edge_, &moving_object_, noise_level);
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CopySrcOnMOB(y_src, stride_y_src, y_dst, stride_y_dst);
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// When frame width/height not divisible by 16, copy the margin to
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// denoised_frame.
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if ((mb_rows_ << 4) != height_ || (mb_cols_ << 4) != width_)
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CopyLumaOnMargin(y_src, stride_y_src, y_dst, stride_y_dst);
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// Copy u/v planes.
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libyuv::CopyPlane(frame->DataU(), frame->StrideU(), dst->MutableDataU(),
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dst->StrideU(), (width_ + 1) >> 1, (height_ + 1) >> 1);
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libyuv::CopyPlane(frame->DataV(), frame->StrideV(), dst->MutableDataV(),
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dst->StrideV(), (width_ + 1) >> 1, (height_ + 1) >> 1);
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#if DISPLAY || DISPLAYNEON
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// Show rectangular region
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ShowRect(filter_, moving_edge_, moving_object_, x_density_, y_density_,
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frame->DataU(), frame->StrideU(), frame->DataV(), frame->StrideV(),
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dst->MutableDataU(), dst->StrideU(), dst->MutableDataV(),
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dst->StrideV(), mb_rows_, mb_cols_);
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#endif
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prev_buffer_ = dst;
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return dst;
|
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}
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} // namespace webrtc
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