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niklase@google.com470e71d2011-07-07 08:21:25 +00001/*
bjornv@webrtc.org281b7982012-05-30 07:41:57 +00002 * Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
niklase@google.com470e71d2011-07-07 08:21:25 +00003 *
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
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000011/* Resamples a signal to an arbitrary rate. Used by the AEC to compensate for
andrew@webrtc.org89b1e682013-10-18 14:23:29 +000012 * clock skew by resampling the farend signal.
niklase@google.com470e71d2011-07-07 08:21:25 +000013 */
14
pbos@webrtc.org7fad4b82013-05-28 08:11:59 +000015#include "webrtc/modules/audio_processing/aec/aec_resampler.h"
bjornv@webrtc.org4b80eb42011-11-29 08:44:01 +000016
niklase@google.com470e71d2011-07-07 08:21:25 +000017#include <assert.h>
pbos@webrtc.org7fad4b82013-05-28 08:11:59 +000018#include <math.h>
niklase@google.com470e71d2011-07-07 08:21:25 +000019#include <stdlib.h>
20#include <string.h>
niklase@google.com470e71d2011-07-07 08:21:25 +000021
pbos@webrtc.org7fad4b82013-05-28 08:11:59 +000022#include "webrtc/modules/audio_processing/aec/aec_core.h"
niklase@google.com470e71d2011-07-07 08:21:25 +000023
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000024enum {
25 kEstimateLengthFrames = 400
26};
niklase@google.com470e71d2011-07-07 08:21:25 +000027
28typedef struct {
kwiberg@webrtc.org38214d52014-07-03 09:47:33 +000029 float buffer[kResamplerBufferSize];
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000030 float position;
niklase@google.com470e71d2011-07-07 08:21:25 +000031
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000032 int deviceSampleRateHz;
33 int skewData[kEstimateLengthFrames];
34 int skewDataIndex;
35 float skewEstimate;
niklase@google.com470e71d2011-07-07 08:21:25 +000036} resampler_t;
37
38static int EstimateSkew(const int* rawSkew,
39 int size,
40 int absLimit,
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000041 float* skewEst);
niklase@google.com470e71d2011-07-07 08:21:25 +000042
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000043int WebRtcAec_CreateResampler(void** resampInst) {
44 resampler_t* obj = malloc(sizeof(resampler_t));
45 *resampInst = obj;
46 if (obj == NULL) {
47 return -1;
48 }
niklase@google.com470e71d2011-07-07 08:21:25 +000049
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000050 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +000051}
52
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000053int WebRtcAec_InitResampler(void* resampInst, int deviceSampleRateHz) {
54 resampler_t* obj = (resampler_t*)resampInst;
55 memset(obj->buffer, 0, sizeof(obj->buffer));
56 obj->position = 0.0;
niklase@google.com470e71d2011-07-07 08:21:25 +000057
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000058 obj->deviceSampleRateHz = deviceSampleRateHz;
59 memset(obj->skewData, 0, sizeof(obj->skewData));
60 obj->skewDataIndex = 0;
61 obj->skewEstimate = 0.0;
niklase@google.com470e71d2011-07-07 08:21:25 +000062
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000063 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +000064}
65
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000066int WebRtcAec_FreeResampler(void* resampInst) {
67 resampler_t* obj = (resampler_t*)resampInst;
68 free(obj);
niklase@google.com470e71d2011-07-07 08:21:25 +000069
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000070 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +000071}
72
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000073void WebRtcAec_ResampleLinear(void* resampInst,
kwiberg@webrtc.org38214d52014-07-03 09:47:33 +000074 const float* inspeech,
bjornv@webrtc.org281b7982012-05-30 07:41:57 +000075 int size,
76 float skew,
kwiberg@webrtc.org38214d52014-07-03 09:47:33 +000077 float* outspeech,
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000078 int* size_out) {
79 resampler_t* obj = (resampler_t*)resampInst;
niklase@google.com470e71d2011-07-07 08:21:25 +000080
kwiberg@webrtc.org38214d52014-07-03 09:47:33 +000081 float* y;
82 float be, tnew;
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000083 int tn, mm;
niklase@google.com470e71d2011-07-07 08:21:25 +000084
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000085 assert(!(size < 0 || size > 2 * FRAME_LEN));
86 assert(resampInst != NULL);
87 assert(inspeech != NULL);
88 assert(outspeech != NULL);
89 assert(size_out != NULL);
niklase@google.com470e71d2011-07-07 08:21:25 +000090
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000091 // Add new frame data in lookahead
92 memcpy(&obj->buffer[FRAME_LEN + kResamplingDelay],
93 inspeech,
kwiberg@webrtc.org38214d52014-07-03 09:47:33 +000094 size * sizeof(inspeech[0]));
niklase@google.com470e71d2011-07-07 08:21:25 +000095
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000096 // Sample rate ratio
97 be = 1 + skew;
niklase@google.com470e71d2011-07-07 08:21:25 +000098
andrew@webrtc.org13b2d462013-10-08 23:41:42 +000099 // Loop over input frame
100 mm = 0;
101 y = &obj->buffer[FRAME_LEN]; // Point at current frame
102
103 tnew = be * mm + obj->position;
104 tn = (int)tnew;
105
106 while (tn < size) {
107
108 // Interpolation
kwiberg@webrtc.org38214d52014-07-03 09:47:33 +0000109 outspeech[mm] = y[tn] + (tnew - tn) * (y[tn + 1] - y[tn]);
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000110 mm++;
niklase@google.com470e71d2011-07-07 08:21:25 +0000111
112 tnew = be * mm + obj->position;
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000113 tn = (int)tnew;
114 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000115
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000116 *size_out = mm;
117 obj->position += (*size_out) * be - size;
niklase@google.com470e71d2011-07-07 08:21:25 +0000118
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000119 // Shift buffer
120 memmove(obj->buffer,
121 &obj->buffer[size],
kwiberg@webrtc.org38214d52014-07-03 09:47:33 +0000122 (kResamplerBufferSize - size) * sizeof(obj->buffer[0]));
niklase@google.com470e71d2011-07-07 08:21:25 +0000123}
124
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000125int WebRtcAec_GetSkew(void* resampInst, int rawSkew, float* skewEst) {
126 resampler_t* obj = (resampler_t*)resampInst;
127 int err = 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000128
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000129 if (obj->skewDataIndex < kEstimateLengthFrames) {
130 obj->skewData[obj->skewDataIndex] = rawSkew;
131 obj->skewDataIndex++;
132 } else if (obj->skewDataIndex == kEstimateLengthFrames) {
133 err = EstimateSkew(
134 obj->skewData, kEstimateLengthFrames, obj->deviceSampleRateHz, skewEst);
135 obj->skewEstimate = *skewEst;
136 obj->skewDataIndex++;
137 } else {
138 *skewEst = obj->skewEstimate;
139 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000140
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000141 return err;
niklase@google.com470e71d2011-07-07 08:21:25 +0000142}
143
144int EstimateSkew(const int* rawSkew,
ajm@google.com75e12392011-07-13 16:35:10 +0000145 int size,
146 int deviceSampleRateHz,
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000147 float* skewEst) {
148 const int absLimitOuter = (int)(0.04f * deviceSampleRateHz);
149 const int absLimitInner = (int)(0.0025f * deviceSampleRateHz);
150 int i = 0;
151 int n = 0;
152 float rawAvg = 0;
153 float err = 0;
154 float rawAbsDev = 0;
155 int upperLimit = 0;
156 int lowerLimit = 0;
157 float cumSum = 0;
158 float x = 0;
159 float x2 = 0;
160 float y = 0;
161 float xy = 0;
162 float xAvg = 0;
163 float denom = 0;
164 float skew = 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000165
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000166 *skewEst = 0; // Set in case of error below.
167 for (i = 0; i < size; i++) {
168 if ((rawSkew[i] < absLimitOuter && rawSkew[i] > -absLimitOuter)) {
169 n++;
170 rawAvg += rawSkew[i];
niklase@google.com470e71d2011-07-07 08:21:25 +0000171 }
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000172 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000173
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000174 if (n == 0) {
175 return -1;
176 }
177 assert(n > 0);
178 rawAvg /= n;
179
180 for (i = 0; i < size; i++) {
181 if ((rawSkew[i] < absLimitOuter && rawSkew[i] > -absLimitOuter)) {
182 err = rawSkew[i] - rawAvg;
183 rawAbsDev += err >= 0 ? err : -err;
niklase@google.com470e71d2011-07-07 08:21:25 +0000184 }
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000185 }
186 assert(n > 0);
187 rawAbsDev /= n;
188 upperLimit = (int)(rawAvg + 5 * rawAbsDev + 1); // +1 for ceiling.
189 lowerLimit = (int)(rawAvg - 5 * rawAbsDev - 1); // -1 for floor.
niklase@google.com470e71d2011-07-07 08:21:25 +0000190
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000191 n = 0;
192 for (i = 0; i < size; i++) {
193 if ((rawSkew[i] < absLimitInner && rawSkew[i] > -absLimitInner) ||
194 (rawSkew[i] < upperLimit && rawSkew[i] > lowerLimit)) {
195 n++;
196 cumSum += rawSkew[i];
197 x += n;
198 x2 += n * n;
199 y += cumSum;
200 xy += n * cumSum;
niklase@google.com470e71d2011-07-07 08:21:25 +0000201 }
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000202 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000203
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000204 if (n == 0) {
205 return -1;
206 }
207 assert(n > 0);
208 xAvg = x / n;
209 denom = x2 - xAvg * x;
niklase@google.com470e71d2011-07-07 08:21:25 +0000210
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000211 if (denom != 0) {
212 skew = (xy - xAvg * y) / denom;
213 }
niklase@google.com470e71d2011-07-07 08:21:25 +0000214
andrew@webrtc.org13b2d462013-10-08 23:41:42 +0000215 *skewEst = skew;
216 return 0;
niklase@google.com470e71d2011-07-07 08:21:25 +0000217}