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peah522d71b2017-02-23 05:16:26 -08001/*
2 * Copyright (c) 2017 The WebRTC project authors. All Rights Reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "modules/audio_processing/aec3/render_signal_analyzer.h"
peah522d71b2017-02-23 05:16:26 -080012
peah14c11a42017-07-11 06:13:43 -070013#include <math.h>
Jonas Olssona4d87372019-07-05 19:08:33 +020014
peah522d71b2017-02-23 05:16:26 -080015#include <algorithm>
Yves Gerey988cc082018-10-23 12:03:01 +020016#include <utility>
17#include <vector>
peah522d71b2017-02-23 05:16:26 -080018
Yves Gerey988cc082018-10-23 12:03:01 +020019#include "api/array_view.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020020#include "rtc_base/checks.h"
peah522d71b2017-02-23 05:16:26 -080021
22namespace webrtc {
23
24namespace {
25constexpr size_t kCounterThreshold = 5;
26
peah14c11a42017-07-11 06:13:43 -070027// Identifies local bands with narrow characteristics.
28void IdentifySmallNarrowBandRegions(
29 const RenderBuffer& render_buffer,
Danil Chapovalovdb9f7ab2018-06-19 10:50:11 +020030 const absl::optional<size_t>& delay_partitions,
peah14c11a42017-07-11 06:13:43 -070031 std::array<size_t, kFftLengthBy2 - 1>* narrow_band_counters) {
Sam Zackrisson3f172212019-09-12 12:32:44 +020032 RTC_DCHECK(narrow_band_counters);
33
peah14c11a42017-07-11 06:13:43 -070034 if (!delay_partitions) {
35 narrow_band_counters->fill(0);
36 return;
37 }
38
Sam Zackrisson3f172212019-09-12 12:32:44 +020039 std::array<size_t, kFftLengthBy2 - 1> channel_counters;
40 channel_counters.fill(0);
Sam Zackrisson98872dc2019-10-18 08:20:09 +020041 rtc::ArrayView<const std::array<float, kFftLengthBy2Plus1>> X2 =
42 render_buffer.Spectrum(*delay_partitions);
43 for (size_t ch = 0; ch < X2.size(); ++ch) {
Sam Zackrisson3f172212019-09-12 12:32:44 +020044 for (size_t k = 1; k < kFftLengthBy2; ++k) {
Sam Zackrisson98872dc2019-10-18 08:20:09 +020045 if (X2[ch][k] > 3 * std::max(X2[ch][k - 1], X2[ch][k + 1])) {
Sam Zackrisson3f172212019-09-12 12:32:44 +020046 ++channel_counters[k - 1];
47 }
48 }
49 }
50 for (size_t k = 1; k < kFftLengthBy2; ++k) {
51 (*narrow_band_counters)[k - 1] =
52 channel_counters[k - 1] > 0 ? (*narrow_band_counters)[k - 1] + 1 : 0;
peah14c11a42017-07-11 06:13:43 -070053 }
54}
55
56// Identifies whether the signal has a single strong narrow-band component.
57void IdentifyStrongNarrowBandComponent(const RenderBuffer& render_buffer,
Per Åhgren971de072018-03-14 23:23:47 +010058 int strong_peak_freeze_duration,
Danil Chapovalovdb9f7ab2018-06-19 10:50:11 +020059 absl::optional<int>* narrow_peak_band,
peah14c11a42017-07-11 06:13:43 -070060 size_t* narrow_peak_counter) {
Sam Zackrisson3f172212019-09-12 12:32:44 +020061 RTC_DCHECK(narrow_peak_band);
62 RTC_DCHECK(narrow_peak_counter);
63 if (*narrow_peak_band &&
64 ++(*narrow_peak_counter) >
65 static_cast<size_t>(strong_peak_freeze_duration)) {
66 *narrow_peak_band = absl::nullopt;
peah14c11a42017-07-11 06:13:43 -070067 }
68
Per Åhgrence202a02019-09-02 17:01:19 +020069 const std::vector<std::vector<std::vector<float>>>& x_latest =
70 render_buffer.Block(0);
Sam Zackrisson3f172212019-09-12 12:32:44 +020071 float max_peak_level = 0.f;
72 for (size_t channel = 0; channel < x_latest[0].size(); ++channel) {
Sam Zackrisson98872dc2019-10-18 08:20:09 +020073 rtc::ArrayView<const float, kFftLengthBy2Plus1> X2_latest =
74 render_buffer.Spectrum(0)[channel];
peah14c11a42017-07-11 06:13:43 -070075
Sam Zackrisson3f172212019-09-12 12:32:44 +020076 // Identify the spectral peak.
77 const int peak_bin =
78 static_cast<int>(std::max_element(X2_latest.begin(), X2_latest.end()) -
79 X2_latest.begin());
peah14c11a42017-07-11 06:13:43 -070080
Sam Zackrisson3f172212019-09-12 12:32:44 +020081 // Compute the level around the peak.
82 float non_peak_power = 0.f;
83 for (int k = std::max(0, peak_bin - 14); k < peak_bin - 4; ++k) {
84 non_peak_power = std::max(X2_latest[k], non_peak_power);
85 }
86 for (int k = peak_bin + 5;
87 k < std::min(peak_bin + 15, static_cast<int>(kFftLengthBy2Plus1));
88 ++k) {
89 non_peak_power = std::max(X2_latest[k], non_peak_power);
90 }
91
92 // Assess the render signal strength.
93 auto result0 = std::minmax_element(x_latest[0][channel].begin(),
94 x_latest[0][channel].end());
95 float max_abs = std::max(fabs(*result0.first), fabs(*result0.second));
96
97 if (x_latest.size() > 1) {
98 const auto result1 = std::minmax_element(x_latest[1][channel].begin(),
99 x_latest[1][channel].end());
100 max_abs =
101 std::max(max_abs, static_cast<float>(std::max(
102 fabs(*result1.first), fabs(*result1.second))));
103 }
104
105 // Detect whether the spectral peak has as strong narrowband nature.
106 const float peak_level = X2_latest[peak_bin];
107 if (peak_bin > 0 && max_abs > 100 && peak_level > 100 * non_peak_power) {
108 // Store the strongest peak across channels.
109 if (peak_level > max_peak_level) {
110 max_peak_level = peak_level;
111 *narrow_peak_band = peak_bin;
112 *narrow_peak_counter = 0;
113 }
peah14c11a42017-07-11 06:13:43 -0700114 }
115 }
116}
117
peah522d71b2017-02-23 05:16:26 -0800118} // namespace
119
Per Åhgren971de072018-03-14 23:23:47 +0100120RenderSignalAnalyzer::RenderSignalAnalyzer(const EchoCanceller3Config& config)
Per Åhgrenff045112020-03-20 11:20:39 +0100121 : strong_peak_freeze_duration_(config.filter.refined.length_blocks) {
peah522d71b2017-02-23 05:16:26 -0800122 narrow_band_counters_.fill(0);
123}
124RenderSignalAnalyzer::~RenderSignalAnalyzer() = default;
125
126void RenderSignalAnalyzer::Update(
peahcf02cf12017-04-05 14:18:07 -0700127 const RenderBuffer& render_buffer,
Danil Chapovalovdb9f7ab2018-06-19 10:50:11 +0200128 const absl::optional<size_t>& delay_partitions) {
peah14c11a42017-07-11 06:13:43 -0700129 // Identify bands of narrow nature.
130 IdentifySmallNarrowBandRegions(render_buffer, delay_partitions,
131 &narrow_band_counters_);
peah522d71b2017-02-23 05:16:26 -0800132
peah14c11a42017-07-11 06:13:43 -0700133 // Identify the presence of a strong narrow band.
Per Åhgren971de072018-03-14 23:23:47 +0100134 IdentifyStrongNarrowBandComponent(render_buffer, strong_peak_freeze_duration_,
135 &narrow_peak_band_, &narrow_peak_counter_);
peah522d71b2017-02-23 05:16:26 -0800136}
137
138void RenderSignalAnalyzer::MaskRegionsAroundNarrowBands(
139 std::array<float, kFftLengthBy2Plus1>* v) const {
140 RTC_DCHECK(v);
141
142 // Set v to zero around narrow band signal regions.
143 if (narrow_band_counters_[0] > kCounterThreshold) {
144 (*v)[1] = (*v)[0] = 0.f;
145 }
146 for (size_t k = 2; k < kFftLengthBy2 - 1; ++k) {
147 if (narrow_band_counters_[k - 1] > kCounterThreshold) {
148 (*v)[k - 2] = (*v)[k - 1] = (*v)[k] = (*v)[k + 1] = (*v)[k + 2] = 0.f;
149 }
150 }
151 if (narrow_band_counters_[kFftLengthBy2 - 2] > kCounterThreshold) {
152 (*v)[kFftLengthBy2] = (*v)[kFftLengthBy2 - 1] = 0.f;
153 }
154}
155
156} // namespace webrtc