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ekm030249d2015-06-15 13:02:24 -07001/*
2 * Copyright (c) 2014 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
ekmdb4fecf2015-06-22 17:49:08 -070011//
12// Implements core class for intelligibility enhancer.
13//
14// Details of the model and algorithm can be found in the original paper:
15// http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=6882788
16//
17
ekm030249d2015-06-15 13:02:24 -070018#include "webrtc/modules/audio_processing/intelligibility/intelligibility_enhancer.h"
19
ekm35b72fb2015-07-10 14:11:52 -070020#include <math.h>
21#include <stdlib.h>
ekm030249d2015-06-15 13:02:24 -070022#include <algorithm>
ekmdb4fecf2015-06-22 17:49:08 -070023#include <numeric>
ekm030249d2015-06-15 13:02:24 -070024
25#include "webrtc/base/checks.h"
ekmeyerson60d9b332015-08-14 10:35:55 -070026#include "webrtc/common_audio/include/audio_util.h"
ekm030249d2015-06-15 13:02:24 -070027#include "webrtc/common_audio/window_generator.h"
28
ekm35b72fb2015-07-10 14:11:52 -070029namespace webrtc {
30
31namespace {
32
Peter Kastingdce40cf2015-08-24 14:52:23 -070033const size_t kErbResolution = 2;
ekm35b72fb2015-07-10 14:11:52 -070034const int kWindowSizeMs = 2;
35const int kChunkSizeMs = 10; // Size provided by APM.
36const float kClipFreq = 200.0f;
37const float kConfigRho = 0.02f; // Default production and interpretation SNR.
38const float kKbdAlpha = 1.5f;
39const float kLambdaBot = -1.0f; // Extreme values in bisection
40const float kLambdaTop = -10e-18f; // search for lamda.
41
aluebsc466bad2016-02-10 12:03:00 -080042// Returns dot product of vectors |a| and |b| with size |length|.
43float DotProduct(const float* a, const float* b, size_t length) {
44 float ret = 0.f;
45 for (size_t i = 0; i < length; ++i) {
46 ret = fmaf(a[i], b[i], ret);
47 }
48 return ret;
49}
50
51// Computes the power across ERB filters from the power spectral density |var|.
52// Stores it in |result|.
53void FilterVariance(const float* var,
54 const std::vector<std::vector<float>>& filter_bank,
55 float* result) {
56 for (size_t i = 0; i < filter_bank.size(); ++i) {
57 RTC_DCHECK_GT(filter_bank[i].size(), 0u);
58 result[i] = DotProduct(&filter_bank[i][0], var, filter_bank[i].size());
59 }
60}
61
ekm35b72fb2015-07-10 14:11:52 -070062} // namespace
63
ekm030249d2015-06-15 13:02:24 -070064using std::complex;
65using std::max;
66using std::min;
ekm030249d2015-06-15 13:02:24 -070067using VarianceType = intelligibility::VarianceArray::StepType;
68
69IntelligibilityEnhancer::TransformCallback::TransformCallback(
aluebsc466bad2016-02-10 12:03:00 -080070 IntelligibilityEnhancer* parent)
71 : parent_(parent) {
ekmdb4fecf2015-06-22 17:49:08 -070072}
ekm030249d2015-06-15 13:02:24 -070073
74void IntelligibilityEnhancer::TransformCallback::ProcessAudioBlock(
75 const complex<float>* const* in_block,
Peter Kasting69558702016-01-12 16:26:35 -080076 size_t in_channels,
Peter Kastingdce40cf2015-08-24 14:52:23 -070077 size_t frames,
Peter Kasting69558702016-01-12 16:26:35 -080078 size_t /* out_channels */,
ekm030249d2015-06-15 13:02:24 -070079 complex<float>* const* out_block) {
henrikg91d6ede2015-09-17 00:24:34 -070080 RTC_DCHECK_EQ(parent_->freqs_, frames);
Peter Kasting69558702016-01-12 16:26:35 -080081 for (size_t i = 0; i < in_channels; ++i) {
aluebsc466bad2016-02-10 12:03:00 -080082 parent_->ProcessClearBlock(in_block[i], out_block[i]);
ekm030249d2015-06-15 13:02:24 -070083 }
84}
85
ekmeyerson60d9b332015-08-14 10:35:55 -070086IntelligibilityEnhancer::IntelligibilityEnhancer()
87 : IntelligibilityEnhancer(IntelligibilityEnhancer::Config()) {
88}
89
90IntelligibilityEnhancer::IntelligibilityEnhancer(const Config& config)
ekmdb4fecf2015-06-22 17:49:08 -070091 : freqs_(RealFourier::ComplexLength(
ekmeyerson60d9b332015-08-14 10:35:55 -070092 RealFourier::FftOrder(config.sample_rate_hz * kWindowSizeMs / 1000))),
Peter Kastingdce40cf2015-08-24 14:52:23 -070093 window_size_(static_cast<size_t>(1 << RealFourier::FftOrder(freqs_))),
94 chunk_length_(
95 static_cast<size_t>(config.sample_rate_hz * kChunkSizeMs / 1000)),
ekmeyerson60d9b332015-08-14 10:35:55 -070096 bank_size_(GetBankSize(config.sample_rate_hz, kErbResolution)),
97 sample_rate_hz_(config.sample_rate_hz),
98 erb_resolution_(kErbResolution),
99 num_capture_channels_(config.num_capture_channels),
100 num_render_channels_(config.num_render_channels),
101 analysis_rate_(config.analysis_rate),
102 active_(true),
ekmdb4fecf2015-06-22 17:49:08 -0700103 clear_variance_(freqs_,
ekmeyerson60d9b332015-08-14 10:35:55 -0700104 config.var_type,
105 config.var_window_size,
106 config.var_decay_rate),
Alejandro Luebs42d8aa72016-02-10 16:10:32 -0800107 noise_power_(freqs_, 0.f),
ekm030249d2015-06-15 13:02:24 -0700108 filtered_clear_var_(new float[bank_size_]),
109 filtered_noise_var_(new float[bank_size_]),
ekm030249d2015-06-15 13:02:24 -0700110 center_freqs_(new float[bank_size_]),
aluebsc466bad2016-02-10 12:03:00 -0800111 render_filter_bank_(CreateErbBank(freqs_)),
ekm030249d2015-06-15 13:02:24 -0700112 rho_(new float[bank_size_]),
113 gains_eq_(new float[bank_size_]),
ekmeyerson60d9b332015-08-14 10:35:55 -0700114 gain_applier_(freqs_, config.gain_change_limit),
115 temp_render_out_buffer_(chunk_length_, num_render_channels_),
ekm030249d2015-06-15 13:02:24 -0700116 kbd_window_(new float[window_size_]),
aluebsc466bad2016-02-10 12:03:00 -0800117 render_callback_(this),
ekm030249d2015-06-15 13:02:24 -0700118 block_count_(0),
ekmeyerson60d9b332015-08-14 10:35:55 -0700119 analysis_step_(0) {
henrikg91d6ede2015-09-17 00:24:34 -0700120 RTC_DCHECK_LE(config.rho, 1.0f);
ekm030249d2015-06-15 13:02:24 -0700121
aluebsc466bad2016-02-10 12:03:00 -0800122 memset(filtered_clear_var_.get(),
123 0,
124 bank_size_ * sizeof(filtered_clear_var_[0]));
125 memset(filtered_noise_var_.get(),
126 0,
127 bank_size_ * sizeof(filtered_noise_var_[0]));
ekm030249d2015-06-15 13:02:24 -0700128
ekmdb4fecf2015-06-22 17:49:08 -0700129 // Assumes all rho equal.
Peter Kastingdce40cf2015-08-24 14:52:23 -0700130 for (size_t i = 0; i < bank_size_; ++i) {
ekmeyerson60d9b332015-08-14 10:35:55 -0700131 rho_[i] = config.rho * config.rho;
ekm030249d2015-06-15 13:02:24 -0700132 }
133
134 float freqs_khz = kClipFreq / 1000.0f;
Peter Kastingdce40cf2015-08-24 14:52:23 -0700135 size_t erb_index = static_cast<size_t>(ceilf(
ekmdb4fecf2015-06-22 17:49:08 -0700136 11.17f * logf((freqs_khz + 0.312f) / (freqs_khz + 14.6575f)) + 43.0f));
Peter Kastingdce40cf2015-08-24 14:52:23 -0700137 start_freq_ = std::max(static_cast<size_t>(1), erb_index * erb_resolution_);
ekm030249d2015-06-15 13:02:24 -0700138
139 WindowGenerator::KaiserBesselDerived(kKbdAlpha, window_size_,
140 kbd_window_.get());
ekmdb4fecf2015-06-22 17:49:08 -0700141 render_mangler_.reset(new LappedTransform(
ekmeyerson60d9b332015-08-14 10:35:55 -0700142 num_render_channels_, num_render_channels_, chunk_length_,
143 kbd_window_.get(), window_size_, window_size_ / 2, &render_callback_));
aluebsc466bad2016-02-10 12:03:00 -0800144}
145
146void IntelligibilityEnhancer::SetCaptureNoiseEstimate(
147 std::vector<float> noise) {
148 if (capture_filter_bank_.size() != bank_size_ ||
149 capture_filter_bank_[0].size() != noise.size()) {
150 capture_filter_bank_ = CreateErbBank(noise.size());
151 }
152 if (noise.size() != noise_power_.size()) {
153 noise_power_.resize(noise.size());
154 }
155 for (size_t i = 0; i < noise.size(); ++i) {
156 noise_power_[i] = noise[i] * noise[i];
157 }
ekm030249d2015-06-15 13:02:24 -0700158}
159
ekmeyerson60d9b332015-08-14 10:35:55 -0700160void IntelligibilityEnhancer::ProcessRenderAudio(float* const* audio,
161 int sample_rate_hz,
Peter Kasting69558702016-01-12 16:26:35 -0800162 size_t num_channels) {
henrikg91d6ede2015-09-17 00:24:34 -0700163 RTC_CHECK_EQ(sample_rate_hz_, sample_rate_hz);
164 RTC_CHECK_EQ(num_render_channels_, num_channels);
ekm030249d2015-06-15 13:02:24 -0700165
ekmeyerson60d9b332015-08-14 10:35:55 -0700166 if (active_) {
167 render_mangler_->ProcessChunk(audio, temp_render_out_buffer_.channels());
ekm030249d2015-06-15 13:02:24 -0700168 }
ekm030249d2015-06-15 13:02:24 -0700169
ekmeyerson60d9b332015-08-14 10:35:55 -0700170 if (active_) {
Peter Kasting69558702016-01-12 16:26:35 -0800171 for (size_t i = 0; i < num_render_channels_; ++i) {
ekmeyerson60d9b332015-08-14 10:35:55 -0700172 memcpy(audio[i], temp_render_out_buffer_.channels()[i],
173 chunk_length_ * sizeof(**audio));
ekmdb4fecf2015-06-22 17:49:08 -0700174 }
ekmeyerson60d9b332015-08-14 10:35:55 -0700175 }
176}
ekmdb4fecf2015-06-22 17:49:08 -0700177
ekm030249d2015-06-15 13:02:24 -0700178void IntelligibilityEnhancer::ProcessClearBlock(const complex<float>* in_block,
179 complex<float>* out_block) {
ekm030249d2015-06-15 13:02:24 -0700180 if (block_count_ < 2) {
181 memset(out_block, 0, freqs_ * sizeof(*out_block));
182 ++block_count_;
183 return;
184 }
185
ekmeyerson60d9b332015-08-14 10:35:55 -0700186 // TODO(ekm): Use VAD to |Step| and |AnalyzeClearBlock| only if necessary.
187 if (true) {
ekm030249d2015-06-15 13:02:24 -0700188 clear_variance_.Step(in_block, false);
ekm030249d2015-06-15 13:02:24 -0700189 if (block_count_ % analysis_rate_ == analysis_rate_ - 1) {
ekmeyerson60d9b332015-08-14 10:35:55 -0700190 const float power_target = std::accumulate(
191 clear_variance_.variance(), clear_variance_.variance() + freqs_, 0.f);
ekm030249d2015-06-15 13:02:24 -0700192 AnalyzeClearBlock(power_target);
193 ++analysis_step_;
ekm030249d2015-06-15 13:02:24 -0700194 }
195 ++block_count_;
196 }
197
ekmeyerson60d9b332015-08-14 10:35:55 -0700198 if (active_) {
199 gain_applier_.Apply(in_block, out_block);
200 }
ekm030249d2015-06-15 13:02:24 -0700201}
202
203void IntelligibilityEnhancer::AnalyzeClearBlock(float power_target) {
aluebsc466bad2016-02-10 12:03:00 -0800204 FilterVariance(clear_variance_.variance(),
205 render_filter_bank_,
206 filtered_clear_var_.get());
207 FilterVariance(&noise_power_[0],
208 capture_filter_bank_,
209 filtered_noise_var_.get());
ekm35b72fb2015-07-10 14:11:52 -0700210 SolveForGainsGivenLambda(kLambdaTop, start_freq_, gains_eq_.get());
211 const float power_top =
ekmdb4fecf2015-06-22 17:49:08 -0700212 DotProduct(gains_eq_.get(), filtered_clear_var_.get(), bank_size_);
ekm35b72fb2015-07-10 14:11:52 -0700213 SolveForGainsGivenLambda(kLambdaBot, start_freq_, gains_eq_.get());
214 const float power_bot =
ekmdb4fecf2015-06-22 17:49:08 -0700215 DotProduct(gains_eq_.get(), filtered_clear_var_.get(), bank_size_);
ekm35b72fb2015-07-10 14:11:52 -0700216 if (power_target >= power_bot && power_target <= power_top) {
217 SolveForLambda(power_target, power_bot, power_top);
218 UpdateErbGains();
219 } // Else experiencing variance underflow, so do nothing.
220}
ekm030249d2015-06-15 13:02:24 -0700221
ekm35b72fb2015-07-10 14:11:52 -0700222void IntelligibilityEnhancer::SolveForLambda(float power_target,
223 float power_bot,
224 float power_top) {
ekmdb4fecf2015-06-22 17:49:08 -0700225 const float kConvergeThresh = 0.001f; // TODO(ekmeyerson): Find best values
226 const int kMaxIters = 100; // for these, based on experiments.
ekm35b72fb2015-07-10 14:11:52 -0700227
228 const float reciprocal_power_target = 1.f / power_target;
229 float lambda_bot = kLambdaBot;
230 float lambda_top = kLambdaTop;
231 float power_ratio = 2.0f; // Ratio of achieved power to target power.
ekm030249d2015-06-15 13:02:24 -0700232 int iters = 0;
ekm35b72fb2015-07-10 14:11:52 -0700233 while (std::fabs(power_ratio - 1.0f) > kConvergeThresh &&
234 iters <= kMaxIters) {
235 const float lambda = lambda_bot + (lambda_top - lambda_bot) / 2.0f;
ekmdb4fecf2015-06-22 17:49:08 -0700236 SolveForGainsGivenLambda(lambda, start_freq_, gains_eq_.get());
ekm35b72fb2015-07-10 14:11:52 -0700237 const float power =
238 DotProduct(gains_eq_.get(), filtered_clear_var_.get(), bank_size_);
ekm030249d2015-06-15 13:02:24 -0700239 if (power < power_target) {
240 lambda_bot = lambda;
241 } else {
242 lambda_top = lambda;
243 }
ekm35b72fb2015-07-10 14:11:52 -0700244 power_ratio = std::fabs(power * reciprocal_power_target);
ekm030249d2015-06-15 13:02:24 -0700245 ++iters;
246 }
ekm35b72fb2015-07-10 14:11:52 -0700247}
ekm030249d2015-06-15 13:02:24 -0700248
ekm35b72fb2015-07-10 14:11:52 -0700249void IntelligibilityEnhancer::UpdateErbGains() {
ekmdb4fecf2015-06-22 17:49:08 -0700250 // (ERB gain) = filterbank' * (freq gain)
ekm030249d2015-06-15 13:02:24 -0700251 float* gains = gain_applier_.target();
Peter Kastingdce40cf2015-08-24 14:52:23 -0700252 for (size_t i = 0; i < freqs_; ++i) {
ekm030249d2015-06-15 13:02:24 -0700253 gains[i] = 0.0f;
Peter Kastingdce40cf2015-08-24 14:52:23 -0700254 for (size_t j = 0; j < bank_size_; ++j) {
aluebsc466bad2016-02-10 12:03:00 -0800255 gains[i] = fmaf(render_filter_bank_[j][i], gains_eq_[j], gains[i]);
ekm030249d2015-06-15 13:02:24 -0700256 }
257 }
258}
259
Peter Kastingdce40cf2015-08-24 14:52:23 -0700260size_t IntelligibilityEnhancer::GetBankSize(int sample_rate,
261 size_t erb_resolution) {
ekm030249d2015-06-15 13:02:24 -0700262 float freq_limit = sample_rate / 2000.0f;
Peter Kastingdce40cf2015-08-24 14:52:23 -0700263 size_t erb_scale = static_cast<size_t>(ceilf(
264 11.17f * logf((freq_limit + 0.312f) / (freq_limit + 14.6575f)) + 43.0f));
ekm030249d2015-06-15 13:02:24 -0700265 return erb_scale * erb_resolution;
266}
267
aluebsc466bad2016-02-10 12:03:00 -0800268std::vector<std::vector<float>> IntelligibilityEnhancer::CreateErbBank(
269 size_t num_freqs) {
270 std::vector<std::vector<float>> filter_bank(bank_size_);
Peter Kastingdce40cf2015-08-24 14:52:23 -0700271 size_t lf = 1, rf = 4;
ekm030249d2015-06-15 13:02:24 -0700272
Peter Kastingdce40cf2015-08-24 14:52:23 -0700273 for (size_t i = 0; i < bank_size_; ++i) {
ekm030249d2015-06-15 13:02:24 -0700274 float abs_temp = fabsf((i + 1.0f) / static_cast<float>(erb_resolution_));
275 center_freqs_[i] = 676170.4f / (47.06538f - expf(0.08950404f * abs_temp));
276 center_freqs_[i] -= 14678.49f;
277 }
278 float last_center_freq = center_freqs_[bank_size_ - 1];
Peter Kastingdce40cf2015-08-24 14:52:23 -0700279 for (size_t i = 0; i < bank_size_; ++i) {
ekm030249d2015-06-15 13:02:24 -0700280 center_freqs_[i] *= 0.5f * sample_rate_hz_ / last_center_freq;
281 }
282
Peter Kastingdce40cf2015-08-24 14:52:23 -0700283 for (size_t i = 0; i < bank_size_; ++i) {
aluebsc466bad2016-02-10 12:03:00 -0800284 filter_bank[i].resize(num_freqs);
ekm030249d2015-06-15 13:02:24 -0700285 }
286
Peter Kastingdce40cf2015-08-24 14:52:23 -0700287 for (size_t i = 1; i <= bank_size_; ++i) {
288 size_t lll, ll, rr, rrr;
289 static const size_t kOne = 1; // Avoids repeated static_cast<>s below.
290 lll = static_cast<size_t>(round(
aluebsc466bad2016-02-10 12:03:00 -0800291 center_freqs_[max(kOne, i - lf) - 1] * num_freqs /
Peter Kastingdce40cf2015-08-24 14:52:23 -0700292 (0.5f * sample_rate_hz_)));
293 ll = static_cast<size_t>(round(
aluebsc466bad2016-02-10 12:03:00 -0800294 center_freqs_[max(kOne, i) - 1] * num_freqs /
295 (0.5f * sample_rate_hz_)));
296 lll = min(num_freqs, max(lll, kOne)) - 1;
297 ll = min(num_freqs, max(ll, kOne)) - 1;
ekm030249d2015-06-15 13:02:24 -0700298
Peter Kastingdce40cf2015-08-24 14:52:23 -0700299 rrr = static_cast<size_t>(round(
aluebsc466bad2016-02-10 12:03:00 -0800300 center_freqs_[min(bank_size_, i + rf) - 1] * num_freqs /
Peter Kastingdce40cf2015-08-24 14:52:23 -0700301 (0.5f * sample_rate_hz_)));
302 rr = static_cast<size_t>(round(
aluebsc466bad2016-02-10 12:03:00 -0800303 center_freqs_[min(bank_size_, i + 1) - 1] * num_freqs /
Peter Kastingdce40cf2015-08-24 14:52:23 -0700304 (0.5f * sample_rate_hz_)));
aluebsc466bad2016-02-10 12:03:00 -0800305 rrr = min(num_freqs, max(rrr, kOne)) - 1;
306 rr = min(num_freqs, max(rr, kOne)) - 1;
ekm030249d2015-06-15 13:02:24 -0700307
308 float step, element;
309
310 step = 1.0f / (ll - lll);
311 element = 0.0f;
Peter Kastingdce40cf2015-08-24 14:52:23 -0700312 for (size_t j = lll; j <= ll; ++j) {
aluebsc466bad2016-02-10 12:03:00 -0800313 filter_bank[i - 1][j] = element;
ekm030249d2015-06-15 13:02:24 -0700314 element += step;
315 }
316 step = 1.0f / (rrr - rr);
317 element = 1.0f;
Peter Kastingdce40cf2015-08-24 14:52:23 -0700318 for (size_t j = rr; j <= rrr; ++j) {
aluebsc466bad2016-02-10 12:03:00 -0800319 filter_bank[i - 1][j] = element;
ekm030249d2015-06-15 13:02:24 -0700320 element -= step;
321 }
Peter Kastingdce40cf2015-08-24 14:52:23 -0700322 for (size_t j = ll; j <= rr; ++j) {
aluebsc466bad2016-02-10 12:03:00 -0800323 filter_bank[i - 1][j] = 1.0f;
ekm030249d2015-06-15 13:02:24 -0700324 }
325 }
326
327 float sum;
aluebsc466bad2016-02-10 12:03:00 -0800328 for (size_t i = 0; i < num_freqs; ++i) {
ekm030249d2015-06-15 13:02:24 -0700329 sum = 0.0f;
Peter Kastingdce40cf2015-08-24 14:52:23 -0700330 for (size_t j = 0; j < bank_size_; ++j) {
aluebsc466bad2016-02-10 12:03:00 -0800331 sum += filter_bank[j][i];
ekm030249d2015-06-15 13:02:24 -0700332 }
Peter Kastingdce40cf2015-08-24 14:52:23 -0700333 for (size_t j = 0; j < bank_size_; ++j) {
aluebsc466bad2016-02-10 12:03:00 -0800334 filter_bank[j][i] /= sum;
ekm030249d2015-06-15 13:02:24 -0700335 }
336 }
aluebsc466bad2016-02-10 12:03:00 -0800337 return filter_bank;
ekm030249d2015-06-15 13:02:24 -0700338}
339
ekmdb4fecf2015-06-22 17:49:08 -0700340void IntelligibilityEnhancer::SolveForGainsGivenLambda(float lambda,
Peter Kastingdce40cf2015-08-24 14:52:23 -0700341 size_t start_freq,
ekmdb4fecf2015-06-22 17:49:08 -0700342 float* sols) {
ekm030249d2015-06-15 13:02:24 -0700343 bool quadratic = (kConfigRho < 1.0f);
344 const float* var_x0 = filtered_clear_var_.get();
345 const float* var_n0 = filtered_noise_var_.get();
346
Peter Kastingdce40cf2015-08-24 14:52:23 -0700347 for (size_t n = 0; n < start_freq; ++n) {
ekm030249d2015-06-15 13:02:24 -0700348 sols[n] = 1.0f;
349 }
ekmdb4fecf2015-06-22 17:49:08 -0700350
351 // Analytic solution for optimal gains. See paper for derivation.
Peter Kastingdce40cf2015-08-24 14:52:23 -0700352 for (size_t n = start_freq - 1; n < bank_size_; ++n) {
ekm030249d2015-06-15 13:02:24 -0700353 float alpha0, beta0, gamma0;
354 gamma0 = 0.5f * rho_[n] * var_x0[n] * var_n0[n] +
ekmdb4fecf2015-06-22 17:49:08 -0700355 lambda * var_x0[n] * var_n0[n] * var_n0[n];
ekm030249d2015-06-15 13:02:24 -0700356 beta0 = lambda * var_x0[n] * (2 - rho_[n]) * var_x0[n] * var_n0[n];
357 if (quadratic) {
358 alpha0 = lambda * var_x0[n] * (1 - rho_[n]) * var_x0[n] * var_x0[n];
ekmdb4fecf2015-06-22 17:49:08 -0700359 sols[n] =
360 (-beta0 - sqrtf(beta0 * beta0 - 4 * alpha0 * gamma0)) / (2 * alpha0);
ekm030249d2015-06-15 13:02:24 -0700361 } else {
362 sols[n] = -gamma0 / beta0;
363 }
364 sols[n] = fmax(0, sols[n]);
365 }
366}
367
ekmeyerson60d9b332015-08-14 10:35:55 -0700368bool IntelligibilityEnhancer::active() const {
369 return active_;
370}
371
ekm030249d2015-06-15 13:02:24 -0700372} // namespace webrtc