1 | /* |
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2 | Copyright (C) 2003 Paul Brossier |
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3 | |
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4 | This program is free software; you can redistribute it and/or modify |
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5 | it under the terms of the GNU General Public License as published by |
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6 | the Free Software Foundation; either version 2 of the License, or |
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7 | (at your option) any later version. |
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8 | |
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9 | This program is distributed in the hope that it will be useful, |
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10 | but WITHOUT ANY WARRANTY; without even the implied warranty of |
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11 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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12 | GNU General Public License for more details. |
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13 | |
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14 | You should have received a copy of the GNU General Public License |
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15 | along with this program; if not, write to the Free Software |
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16 | Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. |
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17 | |
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18 | */ |
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19 | |
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20 | #include "aubio_priv.h" |
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21 | #include "sample.h" |
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22 | #include "fft.h" |
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23 | #include "mathutils.h" |
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24 | #include "phasevoc.h" |
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25 | |
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26 | /** phasevocoder internal object */ |
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27 | struct _aubio_pvoc_t { |
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28 | /** grain length */ |
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29 | uint_t win_s; |
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30 | /** overlap step */ |
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31 | uint_t hop_s; |
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32 | /** number of channels */ |
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33 | uint_t channels; |
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34 | /** spectral data */ |
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35 | aubio_fft_t * spectrum; |
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36 | /**cur output grain [win_s] */ |
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37 | fvec_t * synth; |
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38 | /**last input frame [win_s-hop_s] */ |
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39 | fvec_t * synthold; |
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40 | /**current spectrum [win_s] */ |
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41 | fft_data_t ** spec; |
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42 | /**current input grain [win_s] */ |
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43 | fvec_t * data; |
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44 | /**last input frame [win_s-hop_s] */ |
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45 | fvec_t * dataold; |
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46 | /** grain window [win_s] */ |
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47 | float * w; |
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48 | }; |
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49 | |
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50 | |
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51 | /** memory allocation */ |
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52 | static aubio_pvoc_t * aubio_pvoc_malloc (uint_t win_s, uint_t hop_s, uint_t channels); |
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53 | /** object deletion */ |
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54 | static void aubio_pvoc_free (aubio_pvoc_t *pv); |
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55 | /** returns data and dataold slided by hop_s */ |
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56 | static void aubio_pvoc_swapbuffers( |
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57 | smpl_t * data, |
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58 | smpl_t * dataold, |
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59 | const smpl_t * datanew, |
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60 | uint_t win_s, uint_t hop_s); |
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61 | /** do additive synthesis from 'old' and 'cur' */ |
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62 | static void aubio_pvoc_addsynth( |
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63 | const smpl_t * synth, |
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64 | smpl_t * synthold, |
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65 | smpl_t * synthnew, |
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66 | uint_t win_s, uint_t hop_s); |
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67 | |
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68 | |
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69 | void aubio_pvoc_do(aubio_pvoc_t *pv, fvec_t * datanew, cvec_t *fftgrain) { |
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70 | uint_t i,j; |
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71 | for (i=0; i<pv->channels; i++) { |
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72 | /* slide */ |
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73 | aubio_pvoc_swapbuffers(pv->data->data[i],pv->dataold->data[i], |
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74 | datanew->data[i],pv->win_s,pv->hop_s); |
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75 | /* windowing */ |
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76 | for (j=0; j<pv->win_s; j++) pv->data->data[i][j] *= pv->w[j]; |
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77 | /* fftshift */ |
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78 | vec_shift(pv->data); |
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79 | /* calculate fft */ |
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80 | aubio_fft_do(pv->spectrum,pv->data->data[i],pv->spec[i],pv->win_s); |
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81 | /* put norm and phase to fftgrain */ |
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82 | aubio_fft_getnorm(fftgrain->norm[i], pv->spec[i], pv->win_s/2+1); |
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83 | aubio_fft_getphas(fftgrain->phas[i], pv->spec[i], pv->win_s/2+1); |
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84 | } |
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85 | } |
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86 | |
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87 | void aubio_pvoc_rdo(aubio_pvoc_t *pv,cvec_t * fftgrain, fvec_t * synthnew) { |
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88 | uint_t i,j; |
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89 | for (i=0; i<pv->channels; i++) { |
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90 | for (j=0; j<pv->win_s/2+1; j++) { |
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91 | pv->spec[i][j] = CEXPC(I*unwrap2pi(fftgrain->phas[i][j])); |
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92 | pv->spec[i][j] *= fftgrain->norm[i][j]; |
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93 | } |
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94 | aubio_fft_rdo(pv->spectrum,pv->spec[i],pv->synth->data[i],pv->win_s); |
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95 | vec_shift(pv->synth); |
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96 | for (j=0; j<pv->win_s; j++) pv->synth->data[i][j] *= pv->w[j]; |
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97 | aubio_pvoc_addsynth(pv->synth->data[i],pv->synthold->data[i], |
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98 | synthnew->data[i],pv->win_s,pv->hop_s); |
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99 | } |
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100 | } |
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101 | |
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102 | void del_aubio_pvoc(aubio_pvoc_t *pv) { |
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103 | aubio_pvoc_free(pv); |
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104 | } |
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105 | |
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106 | aubio_pvoc_t * new_aubio_pvoc (uint_t win_s, uint_t hop_s, uint_t channels) { |
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107 | aubio_pvoc_t * pv = aubio_pvoc_malloc(win_s, hop_s, channels); |
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108 | window(pv->w,pv->win_s,hanningz); |
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109 | return pv; |
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110 | } |
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111 | |
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112 | static aubio_pvoc_t * aubio_pvoc_malloc (uint_t win_s, uint_t hop_s, uint_t channels) { |
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113 | uint_t i; |
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114 | |
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115 | aubio_pvoc_t * pv = AUBIO_NEW(aubio_pvoc_t); |
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116 | |
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117 | if (win_s < 2*hop_s) { |
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118 | AUBIO_ERR("Window size is smaller than twice the hop size!\n"); |
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119 | return 0; |
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120 | } |
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121 | |
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122 | if (hop_s < 1) { |
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123 | AUBIO_ERR("Hop size is smaller than 1!\n"); |
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124 | return 0; |
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125 | } |
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126 | |
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127 | pv->spectrum = new_aubio_fft(win_s); |
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128 | |
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129 | /* remember old */ |
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130 | pv->data = new_fvec (win_s, channels); |
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131 | pv->synth = new_fvec (win_s, channels); |
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132 | |
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133 | /* new input output */ |
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134 | pv->dataold = new_fvec (win_s-hop_s, channels); |
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135 | pv->synthold = new_fvec (win_s-hop_s, channels); |
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136 | pv->w = AUBIO_ARRAY(smpl_t,win_s); |
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137 | |
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138 | pv->spec = AUBIO_ARRAY(fft_data_t*,channels); |
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139 | for (i=0; i<channels; i++) |
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140 | pv->spec[i] = AUBIO_ARRAY(fft_data_t,win_s); |
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141 | |
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142 | pv->channels = channels; |
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143 | pv->hop_s = hop_s; |
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144 | pv->win_s = win_s; |
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145 | |
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146 | return pv; |
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147 | } |
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148 | |
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149 | static void aubio_pvoc_free (aubio_pvoc_t *pv) { |
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150 | uint_t i; |
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151 | del_aubio_fft(pv->spectrum); |
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152 | del_fvec(pv->data); |
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153 | del_fvec(pv->synth); |
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154 | del_fvec(pv->dataold); |
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155 | del_fvec(pv->synthold); |
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156 | AUBIO_FREE(pv->w); |
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157 | for (i=0; i< pv->channels; i++) { |
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158 | AUBIO_FREE(pv->spec[i]); |
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159 | } |
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160 | AUBIO_FREE(pv->spec); |
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161 | AUBIO_FREE(pv); |
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162 | } |
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163 | |
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164 | static void aubio_pvoc_swapbuffers(smpl_t * data, smpl_t * dataold, const smpl_t * datanew, |
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165 | uint_t win_s, uint_t hop_s) |
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166 | { |
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167 | uint_t i; |
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168 | for (i=0;i<win_s-hop_s;i++) |
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169 | data[i] = dataold[i]; |
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170 | for (i=0;i<hop_s;i++) |
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171 | data[win_s-hop_s+i] = datanew[i]; |
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172 | for (i=0;i<win_s-hop_s;i++) |
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173 | dataold[i] = data[i+hop_s]; |
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174 | } |
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175 | |
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176 | static void aubio_pvoc_addsynth(const smpl_t * synth, smpl_t * synthold, smpl_t * synthnew, |
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177 | uint_t win_s, uint_t hop_s) |
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178 | { |
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179 | uint_t i; |
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180 | smpl_t scale = 2*hop_s/(win_s+.0); |
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181 | /* add new synth to old one and put result in synthnew */ |
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182 | for (i=0;i<hop_s;i++) |
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183 | synthnew[i] = synthold[i]+synth[i]*scale; |
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184 | /* shift synthold */ |
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185 | for (i=0;i<win_s-2*hop_s;i++) |
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186 | synthold[i] = synthold[i+hop_s]; |
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187 | /* erase last frame in synthold */ |
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188 | for (i=win_s-hop_s;i<win_s;i++) |
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189 | synthold[i-hop_s]=0.; |
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190 | /* additive synth */ |
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191 | for (i=0;i<win_s-hop_s;i++) |
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192 | synthold[i] += synth[i+hop_s]*scale; |
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193 | } |
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194 | |
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