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alexander3c798932021-03-26 21:42:19 +00001/*
Richard Burtonf32a86a2022-11-15 11:46:11 +00002 * SPDX-FileCopyrightText: Copyright 2021 Arm Limited and/or its affiliates <open-source-office@arm.com>
alexander3c798932021-03-26 21:42:19 +00003 * SPDX-License-Identifier: Apache-2.0
4 *
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16 */
17#include "MelSpectrogram.hpp"
18
19#include "PlatformMath.hpp"
alexander31ae9f02022-02-10 16:15:54 +000020#include "log_macros.h"
alexander3c798932021-03-26 21:42:19 +000021
22#include <cfloat>
alexander31ae9f02022-02-10 16:15:54 +000023#include <cinttypes>
alexander3c798932021-03-26 21:42:19 +000024
25namespace arm {
26namespace app {
27namespace audio {
28
29 MelSpecParams::MelSpecParams(
30 const float samplingFreq,
31 const uint32_t numFbankBins,
32 const float melLoFreq,
33 const float melHiFreq,
34 const uint32_t frameLen,
35 const bool useHtkMethod):
36 m_samplingFreq(samplingFreq),
37 m_numFbankBins(numFbankBins),
38 m_melLoFreq(melLoFreq),
39 m_melHiFreq(melHiFreq),
40 m_frameLen(frameLen),
41
42 /* Smallest power of 2 >= frame length. */
43 m_frameLenPadded(pow(2, ceil((log(frameLen)/log(2))))),
44 m_useHtkMethod(useHtkMethod)
45 {}
46
alexanderc350cdc2021-04-29 20:36:09 +010047 std::string MelSpecParams::Str() const
alexander3c798932021-03-26 21:42:19 +000048 {
49 char strC[1024];
50 snprintf(strC, sizeof(strC) - 1, "\n \
Kshitij Sisodiaf9c19ea2021-05-07 16:08:14 +010051 \n\t Sampling frequency: %f\
52 \n\t Number of filter banks: %" PRIu32 "\
53 \n\t Mel frequency limit (low): %f\
54 \n\t Mel frequency limit (high): %f\
55 \n\t Frame length: %" PRIu32 "\
56 \n\t Padded frame length: %" PRIu32 "\
57 \n\t Using HTK for Mel scale: %s\n",
58 this->m_samplingFreq, this->m_numFbankBins, this->m_melLoFreq,
59 this->m_melHiFreq, this->m_frameLen,
60 this->m_frameLenPadded, this->m_useHtkMethod ? "yes" : "no");
alexander3c798932021-03-26 21:42:19 +000061 return std::string{strC};
62 }
63
64 MelSpectrogram::MelSpectrogram(const MelSpecParams& params):
Isabella Gottardi56ee6202021-05-12 08:27:15 +010065 m_params(params),
66 m_filterBankInitialised(false)
alexander3c798932021-03-26 21:42:19 +000067 {
Isabella Gottardi56ee6202021-05-12 08:27:15 +010068 this->m_buffer = std::vector<float>(
69 this->m_params.m_frameLenPadded, 0.0);
70 this->m_frame = std::vector<float>(
71 this->m_params.m_frameLenPadded, 0.0);
72 this->m_melEnergies = std::vector<float>(
73 this->m_params.m_numFbankBins, 0.0);
alexander3c798932021-03-26 21:42:19 +000074
Isabella Gottardi56ee6202021-05-12 08:27:15 +010075 this->m_windowFunc = std::vector<float>(this->m_params.m_frameLen);
76 const auto multiplier = static_cast<float>(2 * M_PI / this->m_params.m_frameLen);
alexander3c798932021-03-26 21:42:19 +000077
78 /* Create window function. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +010079 for (size_t i = 0; i < this->m_params.m_frameLen; ++i) {
80 this->m_windowFunc[i] = (0.5 - (0.5 *
alexander3c798932021-03-26 21:42:19 +000081 math::MathUtils::CosineF32(static_cast<float>(i) * multiplier)));
82 }
83
Isabella Gottardi56ee6202021-05-12 08:27:15 +010084 math::MathUtils::FftInitF32(this->m_params.m_frameLenPadded, this->m_fftInstance);
85 debug("Instantiated Mel Spectrogram object: %s\n", this->m_params.Str().c_str());
alexander3c798932021-03-26 21:42:19 +000086 }
87
88 void MelSpectrogram::Init()
89 {
alexanderc350cdc2021-04-29 20:36:09 +010090 this->InitMelFilterBank();
alexander3c798932021-03-26 21:42:19 +000091 }
92
93 float MelSpectrogram::MelScale(const float freq, const bool useHTKMethod)
94 {
95 if (useHTKMethod) {
96 return 1127.0f * logf (1.0f + freq / 700.0f);
97 } else {
98 /* Slaney formula for mel scale. */
99 float mel = freq / ms_freqStep;
100
101 if (freq >= ms_minLogHz) {
102 mel = ms_minLogMel + logf(freq / ms_minLogHz) / ms_logStep;
103 }
104 return mel;
105 }
106 }
107
108 float MelSpectrogram::InverseMelScale(const float melFreq, const bool useHTKMethod)
109 {
110 if (useHTKMethod) {
111 return 700.0f * (expf (melFreq / 1127.0f) - 1.0f);
112 } else {
113 /* Slaney formula for inverse mel scale. */
114 float freq = ms_freqStep * melFreq;
115
116 if (melFreq >= ms_minLogMel) {
117 freq = ms_minLogHz * expf(ms_logStep * (melFreq - ms_minLogMel));
118 }
119 return freq;
120 }
121 }
122
123 bool MelSpectrogram::ApplyMelFilterBank(
124 std::vector<float>& fftVec,
125 std::vector<std::vector<float>>& melFilterBank,
alexanderc350cdc2021-04-29 20:36:09 +0100126 std::vector<uint32_t>& filterBankFilterFirst,
127 std::vector<uint32_t>& filterBankFilterLast,
alexander3c798932021-03-26 21:42:19 +0000128 std::vector<float>& melEnergies)
129 {
130 const size_t numBanks = melEnergies.size();
131
132 if (numBanks != filterBankFilterFirst.size() ||
133 numBanks != filterBankFilterLast.size()) {
134 printf_err("unexpected filter bank lengths\n");
135 return false;
136 }
137
138 for (size_t bin = 0; bin < numBanks; ++bin) {
139 auto filterBankIter = melFilterBank[bin].begin();
alexanderc350cdc2021-04-29 20:36:09 +0100140 auto end = melFilterBank[bin].end();
alexander3c798932021-03-26 21:42:19 +0000141 float melEnergy = FLT_MIN; /* Avoid log of zero at later stages */
alexanderc350cdc2021-04-29 20:36:09 +0100142 const uint32_t firstIndex = filterBankFilterFirst[bin];
143 const uint32_t lastIndex = std::min<int32_t>(filterBankFilterLast[bin], fftVec.size() - 1);
alexander3c798932021-03-26 21:42:19 +0000144
alexanderc350cdc2021-04-29 20:36:09 +0100145 for (uint32_t i = firstIndex; i <= lastIndex && filterBankIter != end; ++i) {
alexander3c798932021-03-26 21:42:19 +0000146 float energyRep = math::MathUtils::SqrtF32(fftVec[i]);
147 melEnergy += (*filterBankIter++ * energyRep);
148 }
149
150 melEnergies[bin] = melEnergy;
151 }
152
153 return true;
154 }
155
156 void MelSpectrogram::ConvertToLogarithmicScale(std::vector<float>& melEnergies)
157 {
alexanderc350cdc2021-04-29 20:36:09 +0100158 for (float& melEnergy : melEnergies) {
159 melEnergy = logf(melEnergy);
alexander3c798932021-03-26 21:42:19 +0000160 }
161 }
162
alexanderc350cdc2021-04-29 20:36:09 +0100163 void MelSpectrogram::ConvertToPowerSpectrum()
alexander3c798932021-03-26 21:42:19 +0000164 {
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100165 const uint32_t halfDim = this->m_buffer.size() / 2;
alexander3c798932021-03-26 21:42:19 +0000166
167 /* Handle this special case. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100168 float firstEnergy = this->m_buffer[0] * this->m_buffer[0];
169 float lastEnergy = this->m_buffer[1] * this->m_buffer[1];
alexander3c798932021-03-26 21:42:19 +0000170
171 math::MathUtils::ComplexMagnitudeSquaredF32(
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100172 this->m_buffer.data(),
173 this->m_buffer.size(),
174 this->m_buffer.data(),
175 this->m_buffer.size()/2);
alexander3c798932021-03-26 21:42:19 +0000176
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100177 this->m_buffer[0] = firstEnergy;
178 this->m_buffer[halfDim] = lastEnergy;
alexander3c798932021-03-26 21:42:19 +0000179 }
180
181 float MelSpectrogram::GetMelFilterBankNormaliser(
182 const float& leftMel,
183 const float& rightMel,
184 const bool useHTKMethod)
185 {
186 UNUSED(leftMel);
187 UNUSED(rightMel);
188 UNUSED(useHTKMethod);
189
190 /* By default, no normalisation => return 1 */
191 return 1.f;
192 }
193
alexanderc350cdc2021-04-29 20:36:09 +0100194 void MelSpectrogram::InitMelFilterBank()
alexander3c798932021-03-26 21:42:19 +0000195 {
alexanderc350cdc2021-04-29 20:36:09 +0100196 if (!this->IsMelFilterBankInited()) {
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100197 this->m_melFilterBank = this->CreateMelFilterBank();
198 this->m_filterBankInitialised = true;
alexander3c798932021-03-26 21:42:19 +0000199 }
200 }
201
alexanderc350cdc2021-04-29 20:36:09 +0100202 bool MelSpectrogram::IsMelFilterBankInited() const
alexander3c798932021-03-26 21:42:19 +0000203 {
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100204 return this->m_filterBankInitialised;
alexander3c798932021-03-26 21:42:19 +0000205 }
206
207 std::vector<float> MelSpectrogram::ComputeMelSpec(const std::vector<int16_t>& audioData, float trainingMean)
208 {
alexanderc350cdc2021-04-29 20:36:09 +0100209 this->InitMelFilterBank();
alexander3c798932021-03-26 21:42:19 +0000210
211 /* TensorFlow way of normalizing .wav data to (-1, 1). */
212 constexpr float normaliser = 1.0/(1<<15);
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100213 for (size_t i = 0; i < this->m_params.m_frameLen; ++i) {
214 this->m_frame[i] = static_cast<float>(audioData[i]) * normaliser;
alexander3c798932021-03-26 21:42:19 +0000215 }
216
217 /* Apply window function to input frame. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100218 for(size_t i = 0; i < this->m_params.m_frameLen; ++i) {
219 this->m_frame[i] *= this->m_windowFunc[i];
alexander3c798932021-03-26 21:42:19 +0000220 }
221
222 /* Set remaining frame values to 0. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100223 std::fill(this->m_frame.begin() + this->m_params.m_frameLen,this->m_frame.end(), 0);
alexander3c798932021-03-26 21:42:19 +0000224
225 /* Compute FFT. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100226 math::MathUtils::FftF32(this->m_frame, this->m_buffer, this->m_fftInstance);
alexander3c798932021-03-26 21:42:19 +0000227
228 /* Convert to power spectrum. */
alexanderc350cdc2021-04-29 20:36:09 +0100229 this->ConvertToPowerSpectrum();
alexander3c798932021-03-26 21:42:19 +0000230
231 /* Apply mel filterbanks. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100232 if (!this->ApplyMelFilterBank(this->m_buffer,
233 this->m_melFilterBank,
234 this->m_filterBankFilterFirst,
235 this->m_filterBankFilterLast,
236 this->m_melEnergies)) {
alexander3c798932021-03-26 21:42:19 +0000237 printf_err("Failed to apply MEL filter banks\n");
238 }
239
240 /* Convert to logarithmic scale */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100241 this->ConvertToLogarithmicScale(this->m_melEnergies);
alexander3c798932021-03-26 21:42:19 +0000242
243 /* Perform mean subtraction. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100244 for (auto& energy:this->m_melEnergies) {
alexander3c798932021-03-26 21:42:19 +0000245 energy -= trainingMean;
246 }
247
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100248 return this->m_melEnergies;
alexander3c798932021-03-26 21:42:19 +0000249 }
250
alexanderc350cdc2021-04-29 20:36:09 +0100251 std::vector<std::vector<float>> MelSpectrogram::CreateMelFilterBank()
alexander3c798932021-03-26 21:42:19 +0000252 {
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100253 size_t numFftBins = this->m_params.m_frameLenPadded / 2;
254 float fftBinWidth = static_cast<float>(this->m_params.m_samplingFreq) / this->m_params.m_frameLenPadded;
alexander3c798932021-03-26 21:42:19 +0000255
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100256 float melLowFreq = MelSpectrogram::MelScale(this->m_params.m_melLoFreq,
257 this->m_params.m_useHtkMethod);
258 float melHighFreq = MelSpectrogram::MelScale(this->m_params.m_melHiFreq,
259 this->m_params.m_useHtkMethod);
260 float melFreqDelta = (melHighFreq - melLowFreq) / (this->m_params.m_numFbankBins + 1);
alexander3c798932021-03-26 21:42:19 +0000261
262 std::vector<float> thisBin = std::vector<float>(numFftBins);
263 std::vector<std::vector<float>> melFilterBank(
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100264 this->m_params.m_numFbankBins);
265 this->m_filterBankFilterFirst =
266 std::vector<uint32_t>(this->m_params.m_numFbankBins);
267 this->m_filterBankFilterLast =
268 std::vector<uint32_t>(this->m_params.m_numFbankBins);
alexander3c798932021-03-26 21:42:19 +0000269
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100270 for (size_t bin = 0; bin < this->m_params.m_numFbankBins; bin++) {
alexander3c798932021-03-26 21:42:19 +0000271 float leftMel = melLowFreq + bin * melFreqDelta;
272 float centerMel = melLowFreq + (bin + 1) * melFreqDelta;
273 float rightMel = melLowFreq + (bin + 2) * melFreqDelta;
274
alexanderc350cdc2021-04-29 20:36:09 +0100275 uint32_t firstIndex = 0;
276 uint32_t lastIndex = 0;
277 bool firstIndexFound = false;
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100278 const float normaliser = this->GetMelFilterBankNormaliser(leftMel, rightMel, this->m_params.m_useHtkMethod);
alexander3c798932021-03-26 21:42:19 +0000279
280 for (size_t i = 0; i < numFftBins; ++i) {
281 float freq = (fftBinWidth * i); /* Center freq of this fft bin. */
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100282 float mel = MelSpectrogram::MelScale(freq, this->m_params.m_useHtkMethod);
alexander3c798932021-03-26 21:42:19 +0000283 thisBin[i] = 0.0;
284
285 if (mel > leftMel && mel < rightMel) {
286 float weight;
287 if (mel <= centerMel) {
288 weight = (mel - leftMel) / (centerMel - leftMel);
289 } else {
290 weight = (rightMel - mel) / (rightMel - centerMel);
291 }
292
293 thisBin[i] = weight * normaliser;
alexanderc350cdc2021-04-29 20:36:09 +0100294 if (!firstIndexFound) {
alexander3c798932021-03-26 21:42:19 +0000295 firstIndex = i;
alexanderc350cdc2021-04-29 20:36:09 +0100296 firstIndexFound = true;
alexander3c798932021-03-26 21:42:19 +0000297 }
298 lastIndex = i;
299 }
300 }
301
Isabella Gottardi56ee6202021-05-12 08:27:15 +0100302 this->m_filterBankFilterFirst[bin] = firstIndex;
303 this->m_filterBankFilterLast[bin] = lastIndex;
alexander3c798932021-03-26 21:42:19 +0000304
305 /* Copy the part we care about. */
alexanderc350cdc2021-04-29 20:36:09 +0100306 for (uint32_t i = firstIndex; i <= lastIndex; ++i) {
alexander3c798932021-03-26 21:42:19 +0000307 melFilterBank[bin].push_back(thisBin[i]);
308 }
309 }
310
311 return melFilterBank;
312 }
313
314} /* namespace audio */
315} /* namespace app */
316} /* namespace arm */