jamie@50
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1 /* libxtract feature extraction library
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2 *
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3 * Copyright (C) 2006 Jamie Bullock
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4 *
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5 * This program is free software; you can redistribute it and/or modify
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6 * it under the terms of the GNU General Public License as published by
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7 * the Free Software Foundation; either version 2 of the License, or
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8 * (at your option) any later version.
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9 *
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10 * This program is distributed in the hope that it will be useful,
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11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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13 * GNU General Public License for more details.
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14 *
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15 * You should have received a copy of the GNU General Public License
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16 * along with this program; if not, write to the Free Software
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17 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
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18 * USA.
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19 */
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20
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21 #include "xtract/libxtract.h"
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22 #include "xtract_macros_private.h"
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23 #include <stdlib.h>
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24 #include <string.h>
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25 #define XTRACT
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26
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27 xtract_function_descriptor_t *xtract_make_descriptors(void)
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28 {
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29
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30 int f , F;
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31 char *name, *p_name, *desc, *p_desc, *author;
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32 float *argv_min, *argv_max, *argv_def, *result_min, *result_max;
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33 int *argc, *year, *argv_donor;
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34 xtract_vector_t *data_format, *result_format;
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35 xtract_unit_t *data_unit, *argv_unit, *result_unit;
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36 xtract_bool_t *is_scalar, *is_delta;
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37 xtract_function_descriptor_t *fd, *d;
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38 xtract_type_t *argv_type;
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39
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40 f = F = XTRACT_FEATURES;
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41
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42 fd = malloc(XTRACT_FEATURES * sizeof(xtract_function_descriptor_t));
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43
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44 /* FIX - this file probably needs a rewrite for readability */
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45
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46 while(f--)
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47 {
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48
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49 d = &fd[f];
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50 d->id = f;
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51 argc = &d->argc;
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52 argv_type = &d->argv.type;
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53
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54 argv_min = &d->argv.min[0];
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55 argv_max = &d->argv.max[0];
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56 argv_def = &d->argv.def[0];
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57 argv_unit = &d->argv.unit[0];
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58
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59 switch (f)
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60 {
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61 /* argc = 1 */
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62 case XTRACT_VARIANCE:
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63 case XTRACT_SPECTRAL_VARIANCE:
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64 case XTRACT_STANDARD_DEVIATION:
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65 case XTRACT_DIFFERENCE_VECTOR:
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66 case XTRACT_AVERAGE_DEVIATION:
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67 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
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68 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION: */
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69 case XTRACT_LOWEST_VALUE:
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70 case XTRACT_TONALITY:
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71 case XTRACT_MFCC:
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72 case XTRACT_LPC:
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73 case XTRACT_LPCC:
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74 *argv_min = XTRACT_ANY;
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75 *argv_max = XTRACT_ANY;
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76 *argv_def = XTRACT_ANY;
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77 *argv_unit = XTRACT_DBFS;
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78 break;
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79 case XTRACT_SPECTRAL_INHARMONICITY:
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80 *argv_min = 0.f;
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81 *argv_max = XTRACT_SR_UPPER_LIMIT / 2;
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82 *argv_def = XTRACT_FUNDAMENTAL_DEFAULT;
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83 *argv_unit = XTRACT_HERTZ;
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84 break;
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85 case XTRACT_F0:
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86 case XTRACT_FAILSAFE_F0:
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87 *argv_min = XTRACT_SR_LOWER_LIMIT;
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88 *argv_max = XTRACT_SR_UPPER_LIMIT;
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89 *argv_def = XTRACT_SR_DEFAULT;
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90 *argv_unit = XTRACT_HERTZ;
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91 break;
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92 case XTRACT_FLATNESS_DB:
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93 *argv_min = 0;
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94 *argv_max = 1.0;
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95 *argv_def = XTRACT_ANY;
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96 *argv_unit = XTRACT_DBFS;
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97 break;
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98 /* argc = 2 */;
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99 case XTRACT_ROLLOFF:
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100 *argv_min = XTRACT_FFT_BANDS_MIN;
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101 *argv_max = XTRACT_FFT_BANDS_MAX;
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102 *argv_def = XTRACT_SPEC_BW_DEF ;
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103 *argv_unit = XTRACT_HERTZ;
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104 *(argv_min + 1) = 0.f;
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105 *(argv_max + 1) = 100.f;
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106 *(argv_def + 1) = 95.f;
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107 *(argv_unit + 1) = XTRACT_PERCENT;
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108 break;
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109 case XTRACT_PEAK_SPECTRUM:
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110 *argv_min = XTRACT_SR_LOWER_LIMIT / 2;
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111 *argv_max = XTRACT_SR_UPPER_LIMIT / 2;
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112 *argv_def = XTRACT_SR_DEFAULT / 2;
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113 *argv_unit = XTRACT_HERTZ;
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114 *(argv_min + 1) = 0.f;
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115 *(argv_max + 1) = 100.f ;
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116 *(argv_def + 1) = 10.f ;
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117 *(argv_unit + 1) = XTRACT_PERCENT;
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118 break;
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119 case XTRACT_HARMONIC_SPECTRUM:
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120 *argv_min = 0.f;
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121 *argv_max = XTRACT_SR_UPPER_LIMIT / 2;
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122 *argv_def = XTRACT_FUNDAMENTAL_DEFAULT;
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123 *argv_unit = XTRACT_HERTZ;
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124 *(argv_min + 1) = 0.f;
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125 *(argv_max + 1) = 1.f ;
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126 *(argv_def + 1) = .1f ;
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127 *(argv_unit + 1) = XTRACT_NONE;
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128 break;
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129 case XTRACT_NOISINESS:
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130 case XTRACT_SKEWNESS:
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131 case XTRACT_KURTOSIS:
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132 case XTRACT_SPECTRAL_SKEWNESS:
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133 case XTRACT_SPECTRAL_KURTOSIS:
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134 case XTRACT_CREST:
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135 *argv_min = XTRACT_NONE;
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136 *argv_max = XTRACT_NONE;
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137 *argv_def = XTRACT_NONE;
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138 *argv_unit = XTRACT_NONE;
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139 *(argv_min + 1) = XTRACT_NONE;
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140 *(argv_max + 1) = XTRACT_NONE;
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141 *(argv_def + 1) = XTRACT_NONE;
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142 *(argv_unit + 1) = XTRACT_NONE;
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143 break;
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144 /* argc = 4 */
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145 case XTRACT_SPECTRUM:
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146 *argv_min = XTRACT_SR_LOWER_LIMIT / XTRACT_FFT_BANDS_MIN;
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147 *argv_max = XTRACT_SR_UPPER_LIMIT / XTRACT_FFT_BANDS_MAX;
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148 *argv_def = XTRACT_SR_DEFAULT / XTRACT_FFT_BANDS_DEF;
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149 *argv_unit = XTRACT_HERTZ;
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150 *(argv_min + 1) = 0;
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151 *(argv_max + 1) = 3 ;
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152 *(argv_def + 1) = 0;
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153 *(argv_unit + 1) = XTRACT_NONE;
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154 *(argv_min + 2) = 0;
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155 *(argv_max + 2) = 1;
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156 *(argv_def + 2) = 0;
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157 *(argv_unit + 2) = XTRACT_NONE;
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158 *(argv_min + 3) = 0;
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159 *(argv_max + 3) = 1;
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160 *(argv_def + 3) = 0;
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161 *(argv_unit + 3) = XTRACT_NONE;
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162 break;
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163 case XTRACT_SUBBANDS:
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164 *argv_min = XTRACT_ANY;
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165 *argv_max = XTRACT_ANY;
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166 *argv_def = XTRACT_MEAN;
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167 *argv_unit = XTRACT_NONE;
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168 *(argv_min + 1) = 1;
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169 *(argv_max + 1) = 16384;
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170 *(argv_def + 1) = 4;
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171 *(argv_unit + 1) = XTRACT_NONE;
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172 *(argv_min + 2) = 0;
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173 *(argv_max + 2) = 32;
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174 *(argv_def + 2) = 0;
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175 *(argv_unit + 2) = XTRACT_NONE;
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176 *(argv_min + 3) = 0;
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177 *(argv_max + 3) = XTRACT_ANY;
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178 *(argv_def + 3) = 0;
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179 *(argv_unit + 3) = XTRACT_BINS;
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180 break;
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181 case XTRACT_BARK_COEFFICIENTS:
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182 /* BARK_COEFFICIENTS is special because argc = BARK_BANDS */
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183 case XTRACT_WINDOWED:
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184 /* WINDOWED is special because argc = window size = N */
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185 default:
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186 *argv_min = XTRACT_NONE;
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187 *argv_max = XTRACT_NONE;
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188 *argv_def = XTRACT_NONE;
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189 *argv_unit = XTRACT_NONE;
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190 break;
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191 }
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192
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193 argv_donor = &d->argv.donor[0];
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194
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195 switch (f)
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196 {
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197 /* argc = 1 */
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198 case XTRACT_VARIANCE:
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199 *argv_donor = XTRACT_MEAN;
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200 break;
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201 case XTRACT_SPECTRAL_VARIANCE:
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202 *argv_donor = XTRACT_SPECTRAL_MEAN;
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203 break;
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204 case XTRACT_STANDARD_DEVIATION:
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205 *argv_donor = XTRACT_VARIANCE;
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206 break;
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207 case XTRACT_AVERAGE_DEVIATION:
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208 *argv_donor = XTRACT_MEAN;
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209 break;
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210 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
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211 *argv_donor = XTRACT_SPECTRAL_VARIANCE;
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212 break;
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213 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION:
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214 *argv_donor = XTRACT_SPECTRAL_MEAN;
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215 break; */
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216 case XTRACT_SPECTRAL_INHARMONICITY:
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217 *argv_donor = XTRACT_FAILSAFE_F0;
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218 break;
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219 case XTRACT_FLATNESS_DB:
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220 *argv_donor = XTRACT_FLATNESS;
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221 break;
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jamie@140
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222 case XTRACT_TONALITY:
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223 *argv_donor = XTRACT_FLATNESS_DB;
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224 break;
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jamie@140
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225 case XTRACT_LOWEST_VALUE:
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226 case XTRACT_F0:
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227 case XTRACT_FAILSAFE_F0:
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228 *argv_donor = XTRACT_ANY;
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229 break;
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jamie@140
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230 case XTRACT_MFCC:
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231 *argv_donor = XTRACT_INIT_MFCC;
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232 break;
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jamie@140
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233 /* argc = 2 */;
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jamie@140
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234 case XTRACT_ROLLOFF:
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235 case XTRACT_PEAK_SPECTRUM:
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236 case XTRACT_FLUX:
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237 case XTRACT_LNORM:
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238 *argv_donor = XTRACT_ANY;
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239 *(argv_donor + 1) = XTRACT_ANY;
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240 break;
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jamie@140
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241 case XTRACT_SKEWNESS:
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242 case XTRACT_KURTOSIS:
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243 *argv_donor = XTRACT_MEAN;
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jamie@140
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244 *(argv_donor + 1) = XTRACT_STANDARD_DEVIATION;
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245 break;
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jamie@140
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246 case XTRACT_SPECTRAL_SKEWNESS:
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jamie@140
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247 case XTRACT_SPECTRAL_KURTOSIS:
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jamie@140
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248 *argv_donor = XTRACT_SPECTRAL_MEAN;
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jamie@140
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249 *(argv_donor + 1) = XTRACT_SPECTRAL_STANDARD_DEVIATION;
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250 break;
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jamie@140
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251 case XTRACT_HARMONIC_SPECTRUM:
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252 *argv_donor = XTRACT_FAILSAFE_F0;
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253 *(argv_donor + 1) = XTRACT_ANY;
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254 break;
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jamie@140
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255 case XTRACT_NOISINESS:
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jamie@140
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256 *argv_donor = XTRACT_SUM;
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jamie@140
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257 *(argv_donor + 1) = XTRACT_SUM;
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jamie@140
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258 break;
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jamie@140
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259 case XTRACT_CREST:
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260 *argv_donor = XTRACT_HIGHEST_VALUE;
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jamie@140
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261 *(argv_donor + 1) = XTRACT_MEAN;
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jamie@140
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262 break;
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jamie@140
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263 /* argc = 4 */
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jamie@140
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264 case XTRACT_SPECTRUM:
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jamie@140
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265 *argv_donor = XTRACT_ANY;
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jamie@140
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266 *(argv_donor + 1) = XTRACT_ANY;
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jamie@140
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267 *(argv_donor + 2) = XTRACT_ANY;
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jamie@140
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268 *(argv_donor + 3) = XTRACT_ANY;
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jamie@140
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269 break;
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jamie@140
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270 case XTRACT_SUBBANDS:
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jamie@140
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271 *argv_donor = XTRACT_ANY;
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jamie@140
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272 *(argv_donor + 1) = XTRACT_ANY;
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jamie@140
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273 *(argv_donor + 2) = XTRACT_ANY;
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jamie@140
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274 *(argv_donor + 3) = XTRACT_ANY;
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jamie@140
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275 break;
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jamie@108
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276 /* BARK_BANDS */
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jamie@140
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277 case XTRACT_BARK_COEFFICIENTS:
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jamie@140
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278 *argv_donor = XTRACT_INIT_BARK;
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jamie@140
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279 break;
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jamie@140
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280 case XTRACT_WINDOWED:
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jamie@140
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281 *argv_donor = XTRACT_INIT_WINDOWED;
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jamie@140
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282 break;
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jamie@140
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283 default:
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jamie@140
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284 *argv_donor = XTRACT_ANY;
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jamie@140
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285 break;
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jamie@108
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286 }
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jamie@51
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287
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jamie@54
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288 data_format = &d->data.format;
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jamie@54
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289
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jamie@140
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290 switch(f)
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jamie@140
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291 {
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jamie@54
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292
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jamie@140
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293 case XTRACT_MEAN:
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jamie@140
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294 case XTRACT_VARIANCE:
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jamie@140
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295 case XTRACT_STANDARD_DEVIATION:
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jamie@140
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296 case XTRACT_AVERAGE_DEVIATION:
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jamie@140
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297 case XTRACT_SKEWNESS:
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jamie@140
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298 case XTRACT_KURTOSIS:
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jamie@140
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299 case XTRACT_LOWEST_VALUE:
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jamie@140
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300 case XTRACT_HIGHEST_VALUE:
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jamie@140
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301 case XTRACT_SUM:
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jamie@140
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302 case XTRACT_WINDOWED:
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jamie@140
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303 *data_format = XTRACT_ARBITRARY_SERIES;
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jamie@140
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304 break;
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jamie@140
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305 case XTRACT_SPECTRAL_MEAN:
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jamie@140
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306 case XTRACT_SPECTRAL_VARIANCE:
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jamie@140
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307 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
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jamie@123
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308 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION: */
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jamie@140
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309 case XTRACT_SPECTRAL_SKEWNESS:
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jamie@140
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310 case XTRACT_SPECTRAL_KURTOSIS:
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jamie@140
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311 case XTRACT_SPECTRAL_CENTROID:
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jamie@140
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312 case XTRACT_SPECTRAL_SLOPE:
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jamie@140
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313 *data_format = XTRACT_SPECTRAL;
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jamie@140
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314 break;
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jamie@140
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315 case XTRACT_ROLLOFF:
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jamie@140
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316 case XTRACT_NOISINESS:
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jamie@140
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317 case XTRACT_BARK_COEFFICIENTS:
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jamie@140
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318 case XTRACT_CREST:
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jamie@140
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319 case XTRACT_IRREGULARITY_K:
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jamie@140
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320 case XTRACT_IRREGULARITY_J:
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jamie@140
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321 case XTRACT_SMOOTHNESS:
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jamie@140
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322 case XTRACT_FLATNESS:
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jamie@140
|
323 case XTRACT_SPREAD:
|
jamie@140
|
324 case XTRACT_POWER:
|
jamie@140
|
325 case XTRACT_HPS:
|
jamie@140
|
326 case XTRACT_PEAK_SPECTRUM:
|
jamie@140
|
327 case XTRACT_SUBBANDS:
|
jamie@140
|
328 case XTRACT_MFCC:
|
jamie@140
|
329 *data_format = XTRACT_SPECTRAL_MAGNITUDES;
|
jamie@140
|
330 break;
|
jamie@140
|
331 case XTRACT_LPC:
|
jamie@140
|
332 *data_format = XTRACT_AUTOCORRELATION_COEFFS;
|
jamie@140
|
333 break;
|
jamie@140
|
334 case XTRACT_LPCC:
|
jamie@140
|
335 *data_format = XTRACT_LPC_COEFFS;
|
jamie@140
|
336 break;
|
jamie@140
|
337 case XTRACT_SPECTRAL_INHARMONICITY:
|
jamie@140
|
338 case XTRACT_HARMONIC_SPECTRUM:
|
jamie@140
|
339 *data_format = XTRACT_SPECTRAL_PEAKS;
|
jamie@140
|
340 break;
|
jamie@140
|
341 case XTRACT_NONZERO_COUNT:
|
jamie@140
|
342 *data_format = XTRACT_SPECTRAL_PEAKS_MAGNITUDES;
|
jamie@140
|
343 break;
|
jamie@140
|
344 case XTRACT_F0:
|
jamie@140
|
345 case XTRACT_FAILSAFE_F0:
|
jamie@140
|
346 case XTRACT_SPECTRUM:
|
jamie@140
|
347 case XTRACT_AUTOCORRELATION:
|
jamie@140
|
348 case XTRACT_AUTOCORRELATION_FFT:
|
jamie@140
|
349 case XTRACT_DCT:
|
jamie@140
|
350 case XTRACT_AMDF:
|
jamie@140
|
351 case XTRACT_ASDF:
|
jamie@140
|
352 case XTRACT_ZCR:
|
jamie@140
|
353 case XTRACT_RMS_AMPLITUDE:
|
jamie@140
|
354 case XTRACT_FLUX:
|
jamie@140
|
355 case XTRACT_LNORM:
|
jamie@140
|
356 *data_format = XTRACT_AUDIO_SAMPLES;
|
jamie@140
|
357 break;
|
jamie@140
|
358 case XTRACT_TONALITY:
|
jamie@140
|
359 case XTRACT_FLATNESS_DB:
|
jamie@140
|
360 *data_format = XTRACT_NO_DATA;
|
jamie@140
|
361 break;
|
jamie@140
|
362 case XTRACT_TRISTIMULUS_1:
|
jamie@140
|
363 case XTRACT_TRISTIMULUS_2:
|
jamie@140
|
364 case XTRACT_TRISTIMULUS_3:
|
jamie@140
|
365 case XTRACT_ODD_EVEN_RATIO:
|
jamie@140
|
366 *data_format = XTRACT_SPECTRAL_HARMONICS_MAGNITUDES;
|
jamie@140
|
367 break;
|
jamie@140
|
368 case XTRACT_LOUDNESS:
|
jamie@140
|
369 case XTRACT_SHARPNESS:
|
jamie@140
|
370 *data_format = XTRACT_BARK_COEFFS;
|
jamie@140
|
371 break;
|
jamie@140
|
372 case XTRACT_DIFFERENCE_VECTOR:
|
jamie@140
|
373 *data_format = XTRACT_SUBFRAMES;
|
jamie@140
|
374 break;
|
jamie@140
|
375 case XTRACT_ATTACK_TIME:
|
jamie@140
|
376 case XTRACT_DECAY_TIME:
|
jamie@140
|
377 default:
|
jamie@140
|
378 *data_format = XTRACT_NO_DATA;
|
jamie@140
|
379 break;
|
jamie@108
|
380 }
|
jamie@54
|
381
|
jamie@55
|
382 data_unit = &d->data.unit;
|
jamie@55
|
383
|
jamie@140
|
384 switch(f)
|
jamie@140
|
385 {
|
jamie@55
|
386
|
jamie@140
|
387 case XTRACT_MEAN:
|
jamie@140
|
388 case XTRACT_VARIANCE:
|
jamie@140
|
389 case XTRACT_STANDARD_DEVIATION:
|
jamie@140
|
390 case XTRACT_AVERAGE_DEVIATION:
|
jamie@140
|
391 case XTRACT_SKEWNESS:
|
jamie@140
|
392 case XTRACT_KURTOSIS:
|
jamie@140
|
393 case XTRACT_LOWEST_VALUE:
|
jamie@140
|
394 case XTRACT_HIGHEST_VALUE:
|
jamie@140
|
395 case XTRACT_SUM:
|
jamie@140
|
396 case XTRACT_ZCR:
|
jamie@140
|
397 case XTRACT_PEAK_SPECTRUM:
|
jamie@140
|
398 case XTRACT_TRISTIMULUS_1:
|
jamie@140
|
399 case XTRACT_TRISTIMULUS_2:
|
jamie@140
|
400 case XTRACT_TRISTIMULUS_3:
|
jamie@140
|
401 case XTRACT_DCT:
|
jamie@140
|
402 case XTRACT_AMDF:
|
jamie@140
|
403 case XTRACT_ASDF:
|
jamie@140
|
404 case XTRACT_IRREGULARITY_K:
|
jamie@140
|
405 case XTRACT_IRREGULARITY_J:
|
jamie@140
|
406 case XTRACT_ATTACK_TIME:
|
jamie@140
|
407 case XTRACT_DECAY_TIME:
|
jamie@140
|
408 case XTRACT_DIFFERENCE_VECTOR:
|
jamie@140
|
409 case XTRACT_FLUX:
|
jamie@140
|
410 case XTRACT_LNORM:
|
jamie@140
|
411 case XTRACT_F0:
|
jamie@140
|
412 case XTRACT_FAILSAFE_F0:
|
jamie@140
|
413 case XTRACT_MFCC:
|
jamie@140
|
414 case XTRACT_AUTOCORRELATION:
|
jamie@140
|
415 case XTRACT_AUTOCORRELATION_FFT:
|
jamie@140
|
416 case XTRACT_ROLLOFF:
|
jamie@140
|
417 case XTRACT_NOISINESS:
|
jamie@140
|
418 case XTRACT_CREST:
|
jamie@140
|
419 case XTRACT_FLATNESS:
|
jamie@140
|
420 case XTRACT_FLATNESS_DB:
|
jamie@140
|
421 case XTRACT_POWER:
|
jamie@140
|
422 case XTRACT_BARK_COEFFICIENTS:
|
jamie@140
|
423 case XTRACT_RMS_AMPLITUDE:
|
jamie@140
|
424 case XTRACT_SMOOTHNESS:
|
jamie@140
|
425 case XTRACT_SPREAD:
|
jamie@140
|
426 case XTRACT_SHARPNESS:
|
jamie@140
|
427 case XTRACT_HPS:
|
jamie@140
|
428 case XTRACT_SPECTRUM:
|
jamie@140
|
429 case XTRACT_TONALITY:
|
jamie@140
|
430 case XTRACT_LOUDNESS:
|
jamie@140
|
431 case XTRACT_NONZERO_COUNT:
|
jamie@140
|
432 case XTRACT_LPC:
|
jamie@140
|
433 case XTRACT_LPCC:
|
jamie@140
|
434 case XTRACT_WINDOWED:
|
jamie@140
|
435 case XTRACT_SUBBANDS:
|
jamie@140
|
436 *data_unit = XTRACT_ANY;
|
jamie@140
|
437 break;
|
jamie@140
|
438 case XTRACT_SPECTRAL_MEAN:
|
jamie@140
|
439 case XTRACT_SPECTRAL_VARIANCE:
|
jamie@140
|
440 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
|
jamie@123
|
441 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION: */
|
jamie@140
|
442 case XTRACT_SPECTRAL_SKEWNESS:
|
jamie@140
|
443 case XTRACT_SPECTRAL_KURTOSIS:
|
jamie@140
|
444 case XTRACT_SPECTRAL_CENTROID:
|
jamie@140
|
445 case XTRACT_SPECTRAL_SLOPE:
|
jamie@140
|
446 case XTRACT_HARMONIC_SPECTRUM:
|
jamie@140
|
447 case XTRACT_SPECTRAL_INHARMONICITY:
|
jamie@140
|
448 *data_unit = XTRACT_ANY_AMPLITUDE_HERTZ;
|
jamie@140
|
449 break;
|
jamie@140
|
450 case XTRACT_ODD_EVEN_RATIO:
|
jamie@140
|
451 *data_unit = XTRACT_HERTZ;
|
jamie@140
|
452 break;
|
jamie@108
|
453 }
|
jamie@55
|
454
|
jamie@108
|
455 name = d->algo.name;
|
jamie@108
|
456 p_name = d->algo.p_name;
|
jamie@108
|
457 desc = d->algo.desc;
|
jamie@108
|
458 p_desc = d->algo.p_desc;
|
jamie@108
|
459 author = d->algo.author;
|
jamie@108
|
460 year = &d->algo.year;
|
jamie@51
|
461
|
jamie@108
|
462 strcpy(author, "");
|
jamie@108
|
463 *year = 0;
|
jamie@51
|
464
|
jamie@140
|
465 switch(f)
|
jamie@140
|
466 {
|
jamie@140
|
467 case XTRACT_MEAN:
|
jamie@140
|
468 strcpy(name, "mean");
|
jamie@140
|
469 strcpy(p_name, "Mean");
|
jamie@140
|
470 strcpy(desc, "Extract the mean of an input vector");
|
jamie@140
|
471 strcpy(p_desc, "Extract the mean of a range of values");
|
jamie@140
|
472 strcpy(author, "");
|
jamie@140
|
473 break;
|
jamie@140
|
474 case XTRACT_VARIANCE:
|
jamie@140
|
475 strcpy(name, "variance");
|
jamie@140
|
476 strcpy(p_name, "Variance");
|
jamie@140
|
477 strcpy(desc, "Extract the variance of an input vector");
|
jamie@140
|
478 strcpy(p_desc, "Extract the variance of a range of values");
|
jamie@140
|
479 strcpy(author, "");
|
jamie@140
|
480 break;
|
jamie@140
|
481 case XTRACT_STANDARD_DEVIATION:
|
jamie@140
|
482 strcpy(name, "standard_deviation");
|
jamie@140
|
483 strcpy(p_name, "Standard Deviation");
|
jamie@140
|
484 strcpy(desc,
|
jamie@140
|
485 "Extract the standard deviation of an input vector");
|
jamie@140
|
486 strcpy(p_desc,
|
jamie@140
|
487 "Extract the standard deviation of a range of values");
|
jamie@140
|
488 strcpy(author, "");
|
jamie@140
|
489 break;
|
jamie@140
|
490 case XTRACT_AVERAGE_DEVIATION:
|
jamie@140
|
491 strcpy(name, "average_deviation");
|
jamie@140
|
492 strcpy(p_name, "Average Deviation");
|
jamie@140
|
493 strcpy(desc,
|
jamie@140
|
494 "Extract the average deviation of an input vector");
|
jamie@140
|
495 strcpy(p_desc,
|
jamie@140
|
496 "Extract the average deviation of a range of values");
|
jamie@140
|
497 strcpy(author, "");
|
jamie@140
|
498 break;
|
jamie@140
|
499 case XTRACT_SKEWNESS:
|
jamie@140
|
500 strcpy(name, "skewness");
|
jamie@140
|
501 strcpy(p_name, "Skewness");
|
jamie@140
|
502 strcpy(desc,
|
jamie@140
|
503 "Extract the skewness of an input vector");
|
jamie@140
|
504 strcpy(p_desc,
|
jamie@140
|
505 "Extract the skewness of a range of values");
|
jamie@140
|
506 strcpy(author, "");
|
jamie@140
|
507 break;
|
jamie@140
|
508 case XTRACT_KURTOSIS:
|
jamie@140
|
509 strcpy(name, "kurtosis");
|
jamie@140
|
510 strcpy(p_name, "Kurtosis");
|
jamie@140
|
511 strcpy(desc,
|
jamie@140
|
512 "Extract the kurtosis of an input vector");
|
jamie@140
|
513 strcpy(p_desc,
|
jamie@140
|
514 "Extract the kurtosis of a range of values");
|
jamie@140
|
515 strcpy(author, "");
|
jamie@140
|
516 break;
|
jamie@140
|
517 case XTRACT_SPECTRAL_MEAN:
|
jamie@140
|
518 strcpy(name, "spectral_mean");
|
jamie@140
|
519 strcpy(p_name, "Spectral Mean");
|
jamie@140
|
520 strcpy(desc, "Extract the mean of an input spectrum");
|
jamie@140
|
521 strcpy(p_desc, "Extract the mean of an audio spectrum");
|
jamie@140
|
522 strcpy(author, "");
|
jamie@140
|
523 break;
|
jamie@140
|
524 case XTRACT_SPECTRAL_VARIANCE:
|
jamie@140
|
525 strcpy(name, "spectral_variance");
|
jamie@140
|
526 strcpy(p_name, "Spectral Variance");
|
jamie@140
|
527 strcpy(desc, "Extract the variance of an input spectrum");
|
jamie@140
|
528 strcpy(p_desc, "Extract the variance of an audio spectrum");
|
jamie@140
|
529 strcpy(author, "");
|
jamie@140
|
530 break;
|
jamie@140
|
531 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
|
jamie@140
|
532 strcpy(name, "spectral_standard_deviation");
|
jamie@140
|
533 strcpy(p_name, "Spectral Standard Deviation");
|
jamie@140
|
534 strcpy(desc,
|
jamie@140
|
535 "Extract the standard deviation of an input spectrum");
|
jamie@140
|
536 strcpy(p_desc,
|
jamie@140
|
537 "Extract the standard deviation of an audio spectrum");
|
jamie@140
|
538 strcpy(author, "");
|
jamie@140
|
539 break;
|
jamie@123
|
540 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION:
|
jamie@108
|
541 strcpy(name, "spectral_average_deviation");
|
jamie@108
|
542 strcpy(p_name, "Spectral Average Deviation");
|
jamie@140
|
543 strcpy(desc,
|
jamie@108
|
544 "Extract the average deviation of an input spectrum");
|
jamie@140
|
545 strcpy(p_desc,
|
jamie@108
|
546 "Extract the average deviation of an audio spectrum");
|
jamie@108
|
547 strcpy(author, "");
|
jamie@108
|
548 break;
|
jamie@123
|
549 */
|
jamie@140
|
550 case XTRACT_ROLLOFF:
|
jamie@140
|
551 strcpy(name, "rolloff");
|
jamie@140
|
552 strcpy(p_name, "Spectral Rolloff");
|
jamie@140
|
553 strcpy(desc,
|
jamie@140
|
554 "Extract the rolloff point of a spectrum");
|
jamie@140
|
555 strcpy(p_desc,
|
jamie@140
|
556 "Extract the rolloff point of an audio spectrum");
|
jamie@140
|
557 strcpy(author, "Bee Suan Ong");
|
jamie@140
|
558 *year = 2005;
|
jamie@140
|
559 break;
|
jamie@140
|
560 case XTRACT_SPECTRAL_INHARMONICITY:
|
jamie@140
|
561 strcpy(name, "spectral_inharmonicity");
|
jamie@140
|
562 strcpy(p_name, "Inharmonicity");
|
jamie@140
|
563 strcpy(desc, "Extract the inharmonicity of a spectrum");
|
jamie@140
|
564 strcpy(p_desc,
|
jamie@140
|
565 "Extract the inharmonicity of an audio spectrum");
|
jamie@140
|
566 break;
|
jamie@140
|
567 case XTRACT_SPECTRUM:
|
jamie@140
|
568 strcpy(name, "spectrum");
|
jamie@140
|
569 strcpy(p_name, "Spectrum");
|
jamie@140
|
570 strcpy(desc,
|
jamie@140
|
571 "Extract the spectrum of an input vector");
|
jamie@140
|
572 strcpy(p_desc,
|
jamie@140
|
573 "Extract the spectrum of an audio signal");
|
jamie@140
|
574 strcpy(author, "");
|
jamie@140
|
575 break;
|
jamie@140
|
576 case XTRACT_ODD_EVEN_RATIO:
|
jamie@140
|
577 strcpy(name, "odd_even_ratio");
|
jamie@140
|
578 strcpy(p_name, "Odd/even Harmonic Ratio");
|
jamie@140
|
579 strcpy(desc,
|
jamie@140
|
580 "Extract the odd-to-even harmonic ratio of a spectrum");
|
jamie@140
|
581 strcpy(p_desc,
|
jamie@140
|
582 "Extract the odd-to-even harmonic ratio of an audio spectrum");
|
jamie@140
|
583 strcpy(author, "");
|
jamie@140
|
584 break;
|
jamie@140
|
585 case XTRACT_LOWEST_VALUE:
|
jamie@140
|
586 strcpy(name, "lowest_value");
|
jamie@140
|
587 strcpy(p_name, "Lowest Value");
|
jamie@140
|
588 strcpy(desc, "Extract the lowest value from an input vector");
|
jamie@140
|
589 strcpy(p_desc, "Extract the lowest value from a given range");
|
jamie@140
|
590 strcpy(author, "");
|
jamie@140
|
591 break;
|
jamie@140
|
592 case XTRACT_F0:
|
jamie@140
|
593 strcpy(name, "f0");
|
jamie@140
|
594 strcpy(p_name, "Fundamental Frequency");
|
jamie@140
|
595 strcpy(desc, "Extract the fundamental frequency of a signal");
|
jamie@140
|
596 strcpy(p_desc,
|
jamie@140
|
597 "Extract the fundamental frequency of an audio signal");
|
jamie@140
|
598 strcpy(author, "Jamie Bullock");
|
jamie@140
|
599 break;
|
jamie@140
|
600 case XTRACT_FAILSAFE_F0:
|
jamie@140
|
601 strcpy(name, "failsafe_f0");
|
jamie@140
|
602 strcpy(p_name, "Fundamental Frequency (failsafe)");
|
jamie@140
|
603 strcpy(desc, "Extract the fundamental frequency of a signal (failsafe)");
|
jamie@140
|
604 strcpy(p_desc,
|
jamie@140
|
605 "Extract the fundamental frequency of an audio signal (failsafe)");
|
jamie@140
|
606 strcpy(author, "Jamie Bullock");
|
jamie@140
|
607 break;
|
jamie@140
|
608 case XTRACT_TONALITY:
|
jamie@140
|
609 strcpy(name, "tonality");
|
jamie@140
|
610 strcpy(p_name, "Tonality");
|
jamie@140
|
611 strcpy(desc, "Extract the tonality of a spectrum");
|
jamie@140
|
612 strcpy(p_desc, "Extract the tonality an audio spectrum");
|
jamie@140
|
613 strcpy(author, "J. D. Johnston");
|
jamie@140
|
614 *year = 1988;
|
jamie@140
|
615 break;
|
jamie@140
|
616 case XTRACT_SPECTRAL_SKEWNESS:
|
jamie@140
|
617 strcpy(name, "spectral_skewness");
|
jamie@140
|
618 strcpy(p_name, "Spectral Skewness");
|
jamie@140
|
619 strcpy(desc, "Extract the skewness of an input spectrum");
|
jamie@140
|
620 strcpy(p_desc, "Extract the skewness of an audio spectrum");
|
jamie@140
|
621 strcpy(author, "");
|
jamie@140
|
622 break;
|
jamie@140
|
623 case XTRACT_SPECTRAL_KURTOSIS:
|
jamie@140
|
624 strcpy(name, "spectral_kurtosis");
|
jamie@140
|
625 strcpy(p_name, "Spectral Kurtosis");
|
jamie@140
|
626 strcpy(desc, "Extract the kurtosis of an input spectrum");
|
jamie@140
|
627 strcpy(p_desc, "Extract the kurtosis of an audio spectrum");
|
jamie@140
|
628 strcpy(author, "");
|
jamie@140
|
629 break;
|
jamie@140
|
630 case XTRACT_PEAK_SPECTRUM:
|
jamie@140
|
631 strcpy(name, "peak_spectrum");
|
jamie@140
|
632 strcpy(p_name, "Peak Spectrum");
|
jamie@140
|
633 strcpy(desc, "Extract the spectral peaks from of a spectrum");
|
jamie@140
|
634 strcpy(p_desc,
|
jamie@140
|
635 "Extract the spectral peaks from an audio spectrum");
|
jamie@140
|
636 strcpy(author, "");
|
jamie@140
|
637 break;
|
jamie@140
|
638 case XTRACT_HARMONIC_SPECTRUM:
|
jamie@140
|
639 strcpy(name, "harmonic_spectrum");
|
jamie@140
|
640 strcpy(p_name, "Harmonic Spectrum");
|
jamie@140
|
641 strcpy(desc, "Extract the harmonics from a spectrum");
|
jamie@140
|
642 strcpy(p_desc, "Extract the harmonics from an audio spectrum");
|
jamie@140
|
643 strcpy(author, "");
|
jamie@140
|
644 break;
|
jamie@140
|
645 case XTRACT_NOISINESS:
|
jamie@140
|
646 strcpy(name, "noisiness");
|
jamie@140
|
647 strcpy(p_name, "Noisiness");
|
jamie@140
|
648 strcpy(desc, "Extract the noisiness of a spectrum");
|
jamie@140
|
649 strcpy(p_desc, "Extract the noisiness of an audio spectrum");
|
jamie@140
|
650 strcpy(author, "Tae Hong Park");
|
jamie@140
|
651 *year = 2000;
|
jamie@140
|
652 break;
|
jamie@140
|
653 case XTRACT_CREST:
|
jamie@140
|
654 strcpy(name, "crest");
|
jamie@140
|
655 strcpy(p_name, "Spectral Crest Measure");
|
jamie@140
|
656 strcpy(desc,
|
jamie@140
|
657 "Extract the spectral crest measure of a spectrum");
|
jamie@140
|
658 strcpy(p_desc,
|
jamie@140
|
659 "Extract the spectral crest measure of an audio spectrum");
|
jamie@140
|
660 strcpy(author, "Peeters");
|
jamie@140
|
661 *year = 2003;
|
jamie@140
|
662 break;
|
jamie@140
|
663 case XTRACT_MFCC:
|
jamie@140
|
664 strcpy(name, "mfcc");
|
jamie@140
|
665 strcpy(p_name, "Mel-Frequency Cepstral Coefficients");
|
jamie@140
|
666 strcpy(desc, "Extract MFCC from a spectrum");
|
jamie@140
|
667 strcpy(p_desc, "Extract MFCC from an audio spectrum");
|
jamie@140
|
668 strcpy(author, "Rabiner");
|
jamie@140
|
669 break;
|
jamie@140
|
670 case XTRACT_LPC:
|
jamie@140
|
671 strcpy(name, "lpc");
|
jamie@140
|
672 strcpy(p_name, "Linear predictive coding coefficients");
|
jamie@140
|
673 strcpy(desc, "Extract LPC from autocorrelation coefficients");
|
jamie@140
|
674 strcpy(p_desc,
|
jamie@140
|
675 "Extract LPC from autocorrelation coefficients");
|
jamie@140
|
676 strcpy(author,
|
jamie@140
|
677 "Rabiner and Juang as implemented by Jutta Degener");
|
jamie@140
|
678 *year = 1994;
|
jamie@140
|
679 break;
|
jamie@140
|
680 case XTRACT_LPCC:
|
jamie@140
|
681 strcpy(name, "lpcc");
|
jamie@140
|
682 strcpy(p_name, "Linear predictive coding cepstral coefficients");
|
jamie@140
|
683 strcpy(desc, "Extract LPC cepstrum from LPC coefficients");
|
jamie@140
|
684 strcpy(p_desc,
|
jamie@140
|
685 "Extract LPC cepstrum from LPC coefficients");
|
jamie@140
|
686 strcpy(author, "Rabiner and Juang");
|
jamie@140
|
687 *year = 1993;
|
jamie@140
|
688 break;
|
jamie@140
|
689 case XTRACT_SUBBANDS:
|
jamie@140
|
690 strcpy(name, "subbands");
|
jamie@140
|
691 strcpy(p_name, "Sub band coefficients");
|
jamie@140
|
692 strcpy(desc, "Extract subband coefficients from spectral magnitudes");
|
jamie@140
|
693 strcpy(p_desc,
|
jamie@140
|
694 "Extract subband coefficients from spectral magnitudes");
|
jamie@140
|
695 strcpy(author, "");
|
jamie@140
|
696 break;
|
jamie@140
|
697 case XTRACT_BARK_COEFFICIENTS:
|
jamie@140
|
698 strcpy(name, "bark_coefficients");
|
jamie@140
|
699 strcpy(p_name, "Bark Coefficients");
|
jamie@140
|
700 strcpy(desc, "Extract bark coefficients from a spectrum");
|
jamie@140
|
701 strcpy(p_desc,
|
jamie@140
|
702 "Extract bark coefficients from an audio spectrum");
|
jamie@140
|
703 strcpy(author, "");
|
jamie@140
|
704 break;
|
jamie@140
|
705 case XTRACT_SPECTRAL_CENTROID:
|
jamie@140
|
706 strcpy(name, "spectral_centroid");
|
jamie@140
|
707 strcpy(p_name, "Spectral Centroid");
|
jamie@140
|
708 strcpy(desc, "Extract the spectral centroid of a spectrum");
|
jamie@140
|
709 strcpy(p_desc,
|
jamie@140
|
710 "Extract the spectral centroid of an audio spectrum");
|
jamie@140
|
711 strcpy(author, "");
|
jamie@140
|
712 break;
|
jamie@140
|
713 case XTRACT_IRREGULARITY_K:
|
jamie@140
|
714 strcpy(name, "irregularity_k");
|
jamie@140
|
715 strcpy(p_name, "Irregularity I");
|
jamie@140
|
716 strcpy(desc, "Extract the irregularity (type I) of a spectrum");
|
jamie@140
|
717 strcpy(p_desc,
|
jamie@140
|
718 "Extract the irregularity (type I) of an audio spectrum");
|
jamie@140
|
719 strcpy(author, "Krimphoff");
|
jamie@140
|
720 *year = 1994;
|
jamie@140
|
721 break;
|
jamie@140
|
722 case XTRACT_IRREGULARITY_J:
|
jamie@140
|
723 strcpy(name, "irregularity_j");
|
jamie@140
|
724 strcpy(p_name, "Irregularity II");
|
jamie@140
|
725 strcpy(desc, "Extract the irregularity (type II) of a spectrum");
|
jamie@140
|
726 strcpy(p_desc,
|
jamie@140
|
727 "Extract the irregularity (type II) of an audio spectrum");
|
jamie@140
|
728 strcpy(author, "Jensen");
|
jamie@140
|
729 *year = 1999;
|
jamie@140
|
730 break;
|
jamie@140
|
731 case XTRACT_TRISTIMULUS_1:
|
jamie@140
|
732 strcpy(name, "tristimulus_1");
|
jamie@140
|
733 strcpy(p_name, "Tristimulus I");
|
jamie@140
|
734 strcpy(desc, "Extract the tristimulus (type I) of a spectrum");
|
jamie@140
|
735 strcpy(p_desc,
|
jamie@140
|
736 "Extract the tristimulus (type I) of an audio spectrum");
|
jamie@140
|
737 strcpy(author, "Pollard and Jansson");
|
jamie@140
|
738 *year = 1982;
|
jamie@140
|
739 break;
|
jamie@140
|
740 case XTRACT_TRISTIMULUS_2:
|
jamie@140
|
741 strcpy(name, "tristimulus_2");
|
jamie@140
|
742 strcpy(p_name, "Tristimulus II");
|
jamie@140
|
743 strcpy(desc, "Extract the tristimulus (type II) of a spectrum");
|
jamie@140
|
744 strcpy(p_desc,
|
jamie@140
|
745 "Extract the tristimulus (type II) of an audio spectrum");
|
jamie@140
|
746 strcpy(author, "Pollard and Jansson");
|
jamie@140
|
747 *year = 1982;
|
jamie@140
|
748 break;
|
jamie@140
|
749 case XTRACT_TRISTIMULUS_3:
|
jamie@140
|
750 strcpy(name, "tristimulus_3");
|
jamie@140
|
751 strcpy(p_name, "Tristimulus III");
|
jamie@140
|
752 strcpy(desc,
|
jamie@140
|
753 "Extract the tristimulus (type III) of a spectrum");
|
jamie@140
|
754 strcpy(p_desc,
|
jamie@140
|
755 "Extract the tristimulus (type III) of an audio spectrum");
|
jamie@140
|
756 strcpy(author, "Pollard and Jansson");
|
jamie@140
|
757 *year = 1982;
|
jamie@140
|
758 break;
|
jamie@140
|
759 case XTRACT_SMOOTHNESS:
|
jamie@140
|
760 strcpy(name, "smoothness");
|
jamie@140
|
761 strcpy(p_name, "Spectral Smoothness");
|
jamie@140
|
762 strcpy(desc, "Extract the spectral smoothness of a spectrum");
|
jamie@140
|
763 strcpy(p_desc,
|
jamie@140
|
764 "Extract the spectral smoothness of an audio spectrum");
|
jamie@140
|
765 strcpy(author, "McAdams");
|
jamie@140
|
766 *year = 1999;
|
jamie@140
|
767 break;
|
jamie@140
|
768 case XTRACT_FLATNESS:
|
jamie@140
|
769 strcpy(name, "flatness");
|
jamie@140
|
770 strcpy(p_name, "Spectral Flatness");
|
jamie@140
|
771 strcpy(desc, "Extract the spectral flatness of a spectrum");
|
jamie@140
|
772 strcpy(p_desc,
|
jamie@140
|
773 "Extract the spectral flatness of an audio spectrum");
|
jamie@140
|
774 strcpy(author, "Tristan Jehan");
|
jamie@140
|
775 *year = 2005;
|
jamie@140
|
776 break;
|
jamie@140
|
777 case XTRACT_FLATNESS_DB:
|
jamie@140
|
778 strcpy(name, "flatness_db");
|
jamie@140
|
779 strcpy(p_name, "Log Spectral Flatness");
|
jamie@140
|
780 strcpy(desc, "Extract the log spectral flatness of a spectrum");
|
jamie@140
|
781 strcpy(p_desc,
|
jamie@140
|
782 "Extract the log spectral flatness of an audio spectrum");
|
jamie@140
|
783 strcpy(author, "Peeters");
|
jamie@140
|
784 *year = 2003;
|
jamie@140
|
785 break;
|
jamie@140
|
786 case XTRACT_SPREAD:
|
jamie@140
|
787 strcpy(name, "spread");
|
jamie@140
|
788 strcpy(p_name, "Spectral Spread");
|
jamie@140
|
789 strcpy(desc, "Extract the spectral spread of a spectrum");
|
jamie@140
|
790 strcpy(p_desc,
|
jamie@140
|
791 "Extract the spectral spread of an audio spectrum");
|
jamie@140
|
792 strcpy(author, "Norman Casagrande");
|
jamie@140
|
793 *year = 2005;
|
jamie@140
|
794 break;
|
jamie@140
|
795 case XTRACT_ZCR:
|
jamie@140
|
796 strcpy(name, "zcr");
|
jamie@140
|
797 strcpy(p_name, "Zero Crossing Rate");
|
jamie@140
|
798 strcpy(desc, "Extract the zero crossing rate of a vector");
|
jamie@140
|
799 strcpy(p_desc,
|
jamie@140
|
800 "Extract the zero crossing rate of an audio signal");
|
jamie@140
|
801 strcpy(author, "");
|
jamie@140
|
802 break;
|
jamie@140
|
803 case XTRACT_LOUDNESS:
|
jamie@140
|
804 strcpy(name, "loudness");
|
jamie@140
|
805 strcpy(p_name, "Loudness");
|
jamie@140
|
806 strcpy(desc,
|
jamie@140
|
807 "Extract the loudness of a signal from its spectrum");
|
jamie@140
|
808 strcpy(p_desc,
|
jamie@140
|
809 "Extract the loudness of an audio signal from its spectrum");
|
jamie@140
|
810 strcpy(author, "Moore, Glasberg et al");
|
jamie@140
|
811 *year = 2005;
|
jamie@140
|
812 break;
|
jamie@140
|
813 case XTRACT_HIGHEST_VALUE:
|
jamie@140
|
814 strcpy(name, "highest_value");
|
jamie@140
|
815 strcpy(p_name, "Highest Value");
|
jamie@140
|
816 strcpy(desc, "Extract the highest value from an input vector");
|
jamie@140
|
817 strcpy(p_desc, "Extract the highest value from a given range");
|
jamie@140
|
818 strcpy(author, "");
|
jamie@140
|
819 break;
|
jamie@140
|
820 case XTRACT_SUM:
|
jamie@140
|
821 strcpy(name, "sum");
|
jamie@140
|
822 strcpy(p_name, "Sum of Values");
|
jamie@140
|
823 strcpy(desc,
|
jamie@140
|
824 "Extract the sum of the values in an input vector");
|
jamie@140
|
825 strcpy(p_desc,
|
jamie@140
|
826 "Extract the sum of the values in a given range");
|
jamie@140
|
827 strcpy(author, "");
|
jamie@140
|
828 break;
|
jamie@140
|
829 case XTRACT_RMS_AMPLITUDE:
|
jamie@140
|
830 strcpy(name, "rms_amplitude");
|
jamie@140
|
831 strcpy(p_name, "RMS Amplitude");
|
jamie@140
|
832 strcpy(desc, "Extract the RMS amplitude of a signal");
|
jamie@140
|
833 strcpy(p_desc, "Extract the RMS amplitude of an audio signal");
|
jamie@140
|
834 strcpy(author, "");
|
jamie@140
|
835 break;
|
jamie@140
|
836 case XTRACT_POWER:
|
jamie@140
|
837 strcpy(name, "power");
|
jamie@140
|
838 strcpy(p_name, "Spectral Power");
|
jamie@140
|
839 strcpy(desc, "Extract the spectral power of a spectrum");
|
jamie@140
|
840 strcpy(p_desc,
|
jamie@140
|
841 "Extract the spectral power of an audio spectrum");
|
jamie@140
|
842 strcpy(author, "Bee Suan Ong");
|
jamie@140
|
843 *year = 2005;
|
jamie@140
|
844 break;
|
jamie@140
|
845 case XTRACT_SHARPNESS:
|
jamie@140
|
846 strcpy(name, "sharpness");
|
jamie@140
|
847 strcpy(p_name, "Spectral Sharpness");
|
jamie@140
|
848 strcpy(desc, "Extract the spectral sharpness of a spectrum");
|
jamie@140
|
849 strcpy(p_desc,
|
jamie@140
|
850 "Extract the spectral sharpness of an audio spectrum");
|
jamie@140
|
851 strcpy(author, "");
|
jamie@140
|
852 break;
|
jamie@140
|
853 case XTRACT_SPECTRAL_SLOPE:
|
jamie@140
|
854 strcpy(name, "spectral_slope");
|
jamie@140
|
855 strcpy(p_name, "Spectral Slope");
|
jamie@140
|
856 strcpy(desc, "Extract the spectral slope of a spectrum");
|
jamie@140
|
857 strcpy(p_desc,
|
jamie@140
|
858 "Extract the spectral slope of an audio spectrum");
|
jamie@140
|
859 strcpy(author, "");
|
jamie@140
|
860 break;
|
jamie@140
|
861 case XTRACT_HPS:
|
jamie@140
|
862 strcpy(name, "hps");
|
jamie@140
|
863 strcpy(p_name, "Harmonic Product Spectrum");
|
jamie@140
|
864 strcpy(desc,
|
jamie@140
|
865 "Extract the harmonic product spectrum of a spectrum");
|
jamie@140
|
866 strcpy(p_desc,
|
jamie@140
|
867 "Extract the harmonic product spectrum of an audio spectrum");
|
jamie@140
|
868 strcpy(author, "");
|
jamie@140
|
869 break;
|
jamie@140
|
870 case XTRACT_FLUX:
|
jamie@140
|
871 strcpy(name, "flux");
|
jamie@140
|
872 strcpy(p_name, "Spectral Flux");
|
jamie@140
|
873 strcpy(desc, "Extract the spectral flux of a spectrum");
|
jamie@140
|
874 strcpy(p_desc,
|
jamie@140
|
875 "Extract the spectral flux of an audio spectrum");
|
jamie@140
|
876 strcpy(author, "");
|
jamie@140
|
877 break;
|
jamie@140
|
878 case XTRACT_LNORM:
|
jamie@140
|
879 strcpy(name, "lnorm");
|
jamie@140
|
880 strcpy(p_name, "L-norm");
|
jamie@140
|
881 strcpy(desc, "Extract the L-norm of a vector");
|
jamie@140
|
882 strcpy(p_desc, "Extract the L-norm of a vector");
|
jamie@140
|
883 strcpy(author, "");
|
jamie@140
|
884 break;
|
jamie@140
|
885 case XTRACT_ATTACK_TIME:
|
jamie@140
|
886 strcpy(name, "attack_time");
|
jamie@140
|
887 strcpy(p_name, "Attack Time");
|
jamie@140
|
888 strcpy(desc, "Extract the attack time of a signal");
|
jamie@140
|
889 strcpy(p_desc, "Extract the attack time of an audio signal");
|
jamie@140
|
890 strcpy(author, "");
|
jamie@140
|
891 break;
|
jamie@140
|
892 case XTRACT_DECAY_TIME:
|
jamie@140
|
893 strcpy(name, "decay_time");
|
jamie@140
|
894 strcpy(p_name, "Decay Time");
|
jamie@140
|
895 strcpy(desc, "Extract the decay time of a signal");
|
jamie@140
|
896 strcpy(p_desc, "Extract the decay time of an audio signal");
|
jamie@140
|
897 strcpy(author, "");
|
jamie@140
|
898 break;
|
jamie@140
|
899 case XTRACT_DIFFERENCE_VECTOR:
|
jamie@140
|
900 strcpy(name, "difference_vector");
|
jamie@140
|
901 strcpy(p_name, "Difference vector");
|
jamie@140
|
902 strcpy(desc, "Extract the difference between two vectors");
|
jamie@140
|
903 strcpy(p_desc, "Extract the difference between two vectors");
|
jamie@140
|
904 strcpy(author, "");
|
jamie@140
|
905 break;
|
jamie@140
|
906 case XTRACT_AUTOCORRELATION_FFT:
|
jamie@140
|
907 strcpy(name, "autocorrelation_fft");
|
jamie@140
|
908 strcpy(p_name, "Autocorrelation (FFT method)");
|
jamie@140
|
909 strcpy(desc, "Extract the autocorrelation of a signal (fft method)");
|
jamie@140
|
910 strcpy(p_desc, "Extract the autocorrelation of an audio signal (fft method)");
|
jamie@140
|
911 strcpy(author, "");
|
jamie@140
|
912 break;
|
jamie@140
|
913 case XTRACT_DCT:
|
jamie@140
|
914 strcpy(name, "dct");
|
jamie@140
|
915 strcpy(p_name, "Discrete Cosine Transform");
|
jamie@140
|
916 strcpy(desc, "Extract the DCT of a signal");
|
jamie@140
|
917 strcpy(p_desc, "Extract the DCT of an audio signal");
|
jamie@140
|
918 strcpy(author, "");
|
jamie@140
|
919 break;
|
jamie@140
|
920 case XTRACT_AUTOCORRELATION:
|
jamie@140
|
921 strcpy(name, "autocorrelation");
|
jamie@140
|
922 strcpy(p_name, "Autocorrelation");
|
jamie@140
|
923 strcpy(desc, "Extract the autocorrelation of a signal");
|
jamie@140
|
924 strcpy(p_desc,
|
jamie@140
|
925 "Extract the autocorrelation of an audio signal");
|
jamie@140
|
926 strcpy(author, "");
|
jamie@140
|
927 break;
|
jamie@140
|
928 case XTRACT_AMDF:
|
jamie@140
|
929 strcpy(name, "amdf");
|
jamie@140
|
930 strcpy(p_name, "Average Magnitude Difference Function");
|
jamie@140
|
931 strcpy(desc, "Extract the AMDF of a signal");
|
jamie@140
|
932 strcpy(p_desc, "Extract the AMDF of an audio signal");
|
jamie@140
|
933 strcpy(author, "");
|
jamie@140
|
934 break;
|
jamie@140
|
935 case XTRACT_ASDF:
|
jamie@140
|
936 strcpy(name, "asdf");
|
jamie@140
|
937 strcpy(p_name, "Average Squared Difference Function");
|
jamie@140
|
938 strcpy(desc, "Extract the ASDF of a signal");
|
jamie@140
|
939 strcpy(p_desc, "Extract the ASDF of an audio signal");
|
jamie@140
|
940 strcpy(author, "");
|
jamie@140
|
941 break;
|
jamie@140
|
942 case XTRACT_NONZERO_COUNT:
|
jamie@140
|
943 strcpy(name, "nonzero_count");
|
jamie@140
|
944 strcpy(p_name, "Non-zero count");
|
jamie@140
|
945 strcpy(desc,
|
jamie@140
|
946 "Extract the number of non-zero elements in the input vector");
|
jamie@140
|
947 strcpy(p_desc,
|
jamie@140
|
948 "Extract the number of non-zero elements in an input spectrum");
|
jamie@140
|
949 strcpy(author, "");
|
jamie@140
|
950 break;
|
jamie@140
|
951 case XTRACT_WINDOWED:
|
jamie@140
|
952 strcpy(name, "windowed");
|
jamie@140
|
953 strcpy(p_name, "Windowed frame");
|
jamie@140
|
954 strcpy(desc, "Apply a window function to a frame of data");
|
jamie@140
|
955 strcpy(p_desc, "Apply a window function to a frame of data");
|
jamie@140
|
956 strcpy(author, "");
|
jamie@140
|
957 break;
|
jamie@140
|
958 default:
|
jamie@140
|
959 strcpy(name, "");
|
jamie@140
|
960 strcpy(p_name, "");
|
jamie@140
|
961 strcpy(desc, "");
|
jamie@140
|
962 strcpy(p_desc, "");
|
jamie@140
|
963 strcpy(author, "");
|
jamie@140
|
964 break;
|
jamie@108
|
965 }
|
jamie@55
|
966
|
jamie@140
|
967 switch(f)
|
jamie@140
|
968 {
|
jamie@55
|
969
|
jamie@140
|
970 case XTRACT_VARIANCE:
|
jamie@140
|
971 case XTRACT_STANDARD_DEVIATION:
|
jamie@140
|
972 case XTRACT_AVERAGE_DEVIATION:
|
jamie@140
|
973 case XTRACT_SPECTRAL_VARIANCE:
|
jamie@140
|
974 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
|
jamie@123
|
975 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION: */
|
jamie@140
|
976 case XTRACT_SPECTRAL_INHARMONICITY:
|
jamie@140
|
977 case XTRACT_LOWEST_VALUE:
|
jamie@140
|
978 case XTRACT_F0:
|
jamie@140
|
979 case XTRACT_FAILSAFE_F0:
|
jamie@140
|
980 case XTRACT_FLATNESS_DB:
|
jamie@140
|
981 case XTRACT_TONALITY:
|
jamie@140
|
982 *argc = 1;
|
jamie@140
|
983 *argv_type = XTRACT_FLOAT;
|
jamie@140
|
984 break;
|
jamie@140
|
985 case XTRACT_SKEWNESS:
|
jamie@140
|
986 case XTRACT_KURTOSIS:
|
jamie@140
|
987 case XTRACT_SPECTRAL_SKEWNESS:
|
jamie@140
|
988 case XTRACT_SPECTRAL_KURTOSIS:
|
jamie@140
|
989 case XTRACT_PEAK_SPECTRUM:
|
jamie@140
|
990 case XTRACT_HARMONIC_SPECTRUM:
|
jamie@140
|
991 case XTRACT_NOISINESS:
|
jamie@140
|
992 case XTRACT_CREST:
|
jamie@140
|
993 case XTRACT_ROLLOFF:
|
jamie@140
|
994 case XTRACT_FLUX:
|
jamie@140
|
995 case XTRACT_LNORM:
|
jamie@140
|
996 *argc = 2;
|
jamie@140
|
997 *argv_type = XTRACT_FLOAT;
|
jamie@140
|
998 break;
|
jamie@140
|
999 case XTRACT_SPECTRUM:
|
jamie@140
|
1000 *argc = 4;
|
jamie@140
|
1001 *argv_type = XTRACT_FLOAT;
|
jamie@140
|
1002 break;
|
jamie@140
|
1003 case XTRACT_SUBBANDS:
|
jamie@140
|
1004 *argc = 4;
|
jamie@140
|
1005 *argv_type = XTRACT_INT;
|
jamie@140
|
1006 break;
|
jamie@140
|
1007 case XTRACT_MFCC:
|
jamie@140
|
1008 *argc = 1;
|
jamie@140
|
1009 *argv_type = XTRACT_MEL_FILTER;
|
jamie@140
|
1010 break;
|
jamie@140
|
1011 case XTRACT_LPCC:
|
jamie@140
|
1012 *argc = 1;
|
jamie@140
|
1013 *argv_type = XTRACT_INT;
|
jamie@140
|
1014 break;
|
jamie@140
|
1015 case XTRACT_BARK_COEFFICIENTS:
|
jamie@140
|
1016 *argc = XTRACT_BARK_BANDS;
|
jamie@140
|
1017 *argv_type = XTRACT_INT;
|
jamie@140
|
1018 break;
|
jamie@140
|
1019 case XTRACT_WINDOWED:
|
jamie@140
|
1020 *argc = XTRACT_WINDOW_SIZE;
|
jamie@140
|
1021 *argv_type = XTRACT_FLOAT;
|
jamie@140
|
1022 break;
|
jamie@140
|
1023 case XTRACT_MEAN:
|
jamie@140
|
1024 case XTRACT_SPECTRAL_MEAN:
|
jamie@140
|
1025 case XTRACT_SPECTRAL_CENTROID:
|
jamie@140
|
1026 case XTRACT_IRREGULARITY_K:
|
jamie@140
|
1027 case XTRACT_IRREGULARITY_J:
|
jamie@140
|
1028 case XTRACT_TRISTIMULUS_1:
|
jamie@140
|
1029 case XTRACT_TRISTIMULUS_2:
|
jamie@140
|
1030 case XTRACT_TRISTIMULUS_3:
|
jamie@140
|
1031 case XTRACT_SMOOTHNESS:
|
jamie@140
|
1032 case XTRACT_FLATNESS:
|
jamie@140
|
1033 case XTRACT_SPREAD:
|
jamie@140
|
1034 case XTRACT_ZCR:
|
jamie@140
|
1035 case XTRACT_LOUDNESS:
|
jamie@140
|
1036 case XTRACT_HIGHEST_VALUE:
|
jamie@140
|
1037 case XTRACT_SUM:
|
jamie@140
|
1038 case XTRACT_RMS_AMPLITUDE:
|
jamie@140
|
1039 case XTRACT_POWER:
|
jamie@140
|
1040 case XTRACT_SHARPNESS:
|
jamie@140
|
1041 case XTRACT_SPECTRAL_SLOPE:
|
jamie@140
|
1042 case XTRACT_HPS:
|
jamie@140
|
1043 case XTRACT_ATTACK_TIME:
|
jamie@140
|
1044 case XTRACT_DECAY_TIME:
|
jamie@140
|
1045 case XTRACT_DIFFERENCE_VECTOR:
|
jamie@140
|
1046 case XTRACT_AUTOCORRELATION_FFT:
|
jamie@140
|
1047 case XTRACT_DCT:
|
jamie@140
|
1048 case XTRACT_AUTOCORRELATION:
|
jamie@140
|
1049 case XTRACT_AMDF:
|
jamie@140
|
1050 case XTRACT_ASDF:
|
jamie@140
|
1051 case XTRACT_NONZERO_COUNT:
|
jamie@140
|
1052 case XTRACT_ODD_EVEN_RATIO:
|
jamie@140
|
1053 case XTRACT_LPC:
|
jamie@140
|
1054 default:
|
jamie@140
|
1055 *argc = 0;
|
jamie@140
|
1056 break;
|
jamie@108
|
1057 }
|
jamie@55
|
1058
|
jamie@108
|
1059 is_scalar = &d->is_scalar;
|
jamie@108
|
1060
|
jamie@140
|
1061 switch(f)
|
jamie@140
|
1062 {
|
jamie@140
|
1063 case XTRACT_MEAN:
|
jamie@140
|
1064 case XTRACT_VARIANCE:
|
jamie@140
|
1065 case XTRACT_STANDARD_DEVIATION:
|
jamie@140
|
1066 case XTRACT_AVERAGE_DEVIATION:
|
jamie@140
|
1067 case XTRACT_SKEWNESS:
|
jamie@140
|
1068 case XTRACT_KURTOSIS:
|
jamie@140
|
1069 case XTRACT_SPECTRAL_MEAN:
|
jamie@140
|
1070 case XTRACT_SPECTRAL_VARIANCE:
|
jamie@140
|
1071 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
|
jamie@140
|
1072 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION: */
|
jamie@140
|
1073 case XTRACT_SPECTRAL_SKEWNESS:
|
jamie@140
|
1074 case XTRACT_SPECTRAL_KURTOSIS:
|
jamie@140
|
1075 case XTRACT_SPECTRAL_CENTROID:
|
jamie@140
|
1076 case XTRACT_IRREGULARITY_K:
|
jamie@140
|
1077 case XTRACT_IRREGULARITY_J:
|
jamie@140
|
1078 case XTRACT_TRISTIMULUS_1:
|
jamie@140
|
1079 case XTRACT_TRISTIMULUS_2:
|
jamie@140
|
1080 case XTRACT_TRISTIMULUS_3:
|
jamie@140
|
1081 case XTRACT_SMOOTHNESS:
|
jamie@140
|
1082 case XTRACT_SPREAD:
|
jamie@140
|
1083 case XTRACT_ZCR:
|
jamie@140
|
1084 case XTRACT_ROLLOFF:
|
jamie@140
|
1085 case XTRACT_LOUDNESS:
|
jamie@140
|
1086 case XTRACT_FLATNESS:
|
jamie@140
|
1087 case XTRACT_FLATNESS_DB:
|
jamie@140
|
1088 case XTRACT_TONALITY:
|
jamie@140
|
1089 case XTRACT_CREST:
|
jamie@140
|
1090 case XTRACT_NOISINESS:
|
jamie@140
|
1091 case XTRACT_RMS_AMPLITUDE:
|
jamie@140
|
1092 case XTRACT_SPECTRAL_INHARMONICITY:
|
jamie@140
|
1093 case XTRACT_POWER:
|
jamie@140
|
1094 case XTRACT_ODD_EVEN_RATIO:
|
jamie@140
|
1095 case XTRACT_SHARPNESS:
|
jamie@140
|
1096 case XTRACT_SPECTRAL_SLOPE:
|
jamie@140
|
1097 case XTRACT_LOWEST_VALUE:
|
jamie@140
|
1098 case XTRACT_HIGHEST_VALUE:
|
jamie@140
|
1099 case XTRACT_SUM:
|
jamie@140
|
1100 case XTRACT_HPS:
|
jamie@140
|
1101 case XTRACT_F0:
|
jamie@140
|
1102 case XTRACT_FAILSAFE_F0:
|
jamie@140
|
1103 case XTRACT_FLUX:
|
jamie@140
|
1104 case XTRACT_LNORM:
|
jamie@140
|
1105 case XTRACT_NONZERO_COUNT:
|
jamie@140
|
1106 *is_scalar = XTRACT_TRUE;
|
jamie@140
|
1107 break;
|
jamie@140
|
1108 case XTRACT_AUTOCORRELATION:
|
jamie@140
|
1109 case XTRACT_AMDF:
|
jamie@140
|
1110 case XTRACT_ASDF:
|
jamie@140
|
1111 case XTRACT_BARK_COEFFICIENTS:
|
jamie@140
|
1112 case XTRACT_PEAK_SPECTRUM:
|
jamie@140
|
1113 case XTRACT_SPECTRUM:
|
jamie@140
|
1114 case XTRACT_SUBBANDS:
|
jamie@140
|
1115 case XTRACT_AUTOCORRELATION_FFT:
|
jamie@140
|
1116 case XTRACT_MFCC:
|
jamie@140
|
1117 case XTRACT_LPC:
|
jamie@140
|
1118 case XTRACT_LPCC:
|
jamie@140
|
1119 case XTRACT_DCT:
|
jamie@140
|
1120 case XTRACT_HARMONIC_SPECTRUM:
|
jamie@140
|
1121 case XTRACT_DIFFERENCE_VECTOR:
|
jamie@140
|
1122 case XTRACT_WINDOWED:
|
jamie@140
|
1123 *is_scalar = XTRACT_FALSE;
|
jamie@140
|
1124 break;
|
jamie@140
|
1125 default:
|
jamie@140
|
1126 *is_scalar = XTRACT_TRUE;
|
jamie@140
|
1127 break;
|
jamie@140
|
1128
|
jamie@140
|
1129 }
|
jamie@140
|
1130
|
jamie@140
|
1131 is_delta = &d->is_delta;
|
jamie@140
|
1132
|
jamie@140
|
1133 switch(f)
|
jamie@140
|
1134 {
|
jamie@140
|
1135 case XTRACT_FLUX:
|
jamie@140
|
1136 case XTRACT_LNORM:
|
jamie@140
|
1137 case XTRACT_DIFFERENCE_VECTOR:
|
jamie@140
|
1138 *is_delta = XTRACT_TRUE;
|
jamie@140
|
1139 break;
|
jamie@140
|
1140 case XTRACT_MEAN:
|
jamie@140
|
1141 case XTRACT_VARIANCE:
|
jamie@140
|
1142 case XTRACT_STANDARD_DEVIATION:
|
jamie@140
|
1143 case XTRACT_AVERAGE_DEVIATION:
|
jamie@140
|
1144 case XTRACT_SKEWNESS:
|
jamie@140
|
1145 case XTRACT_KURTOSIS:
|
jamie@140
|
1146 case XTRACT_SPECTRAL_MEAN:
|
jamie@140
|
1147 case XTRACT_SPECTRAL_VARIANCE:
|
jamie@140
|
1148 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
|
jamie@140
|
1149 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION: */
|
jamie@140
|
1150 case XTRACT_SPECTRAL_SKEWNESS:
|
jamie@140
|
1151 case XTRACT_SPECTRAL_KURTOSIS:
|
jamie@140
|
1152 case XTRACT_SPECTRAL_CENTROID:
|
jamie@140
|
1153 case XTRACT_IRREGULARITY_K:
|
jamie@140
|
1154 case XTRACT_IRREGULARITY_J:
|
jamie@140
|
1155 case XTRACT_TRISTIMULUS_1:
|
jamie@140
|
1156 case XTRACT_TRISTIMULUS_2:
|
jamie@140
|
1157 case XTRACT_TRISTIMULUS_3:
|
jamie@140
|
1158 case XTRACT_SMOOTHNESS:
|
jamie@140
|
1159 case XTRACT_SPREAD:
|
jamie@140
|
1160 case XTRACT_ZCR:
|
jamie@140
|
1161 case XTRACT_ROLLOFF:
|
jamie@140
|
1162 case XTRACT_LOUDNESS:
|
jamie@140
|
1163 case XTRACT_FLATNESS:
|
jamie@140
|
1164 case XTRACT_FLATNESS_DB:
|
jamie@140
|
1165 case XTRACT_TONALITY:
|
jamie@140
|
1166 case XTRACT_CREST:
|
jamie@140
|
1167 case XTRACT_NOISINESS:
|
jamie@140
|
1168 case XTRACT_RMS_AMPLITUDE:
|
jamie@140
|
1169 case XTRACT_SPECTRAL_INHARMONICITY:
|
jamie@140
|
1170 case XTRACT_POWER:
|
jamie@140
|
1171 case XTRACT_ODD_EVEN_RATIO:
|
jamie@140
|
1172 case XTRACT_SHARPNESS:
|
jamie@140
|
1173 case XTRACT_SPECTRAL_SLOPE:
|
jamie@140
|
1174 case XTRACT_LOWEST_VALUE:
|
jamie@140
|
1175 case XTRACT_HIGHEST_VALUE:
|
jamie@140
|
1176 case XTRACT_SUM:
|
jamie@140
|
1177 case XTRACT_HPS:
|
jamie@140
|
1178 case XTRACT_F0:
|
jamie@140
|
1179 case XTRACT_FAILSAFE_F0:
|
jamie@140
|
1180 case XTRACT_NONZERO_COUNT:
|
jamie@140
|
1181 case XTRACT_AUTOCORRELATION:
|
jamie@140
|
1182 case XTRACT_AMDF:
|
jamie@140
|
1183 case XTRACT_ASDF:
|
jamie@140
|
1184 case XTRACT_BARK_COEFFICIENTS:
|
jamie@140
|
1185 case XTRACT_PEAK_SPECTRUM:
|
jamie@140
|
1186 case XTRACT_SPECTRUM:
|
jamie@140
|
1187 case XTRACT_SUBBANDS:
|
jamie@140
|
1188 case XTRACT_AUTOCORRELATION_FFT:
|
jamie@140
|
1189 case XTRACT_MFCC:
|
jamie@140
|
1190 case XTRACT_LPC:
|
jamie@140
|
1191 case XTRACT_LPCC:
|
jamie@140
|
1192 case XTRACT_DCT:
|
jamie@140
|
1193 case XTRACT_HARMONIC_SPECTRUM:
|
jamie@140
|
1194 case XTRACT_WINDOWED:
|
jamie@140
|
1195 default:
|
jamie@140
|
1196 *is_delta = XTRACT_FALSE;
|
jamie@140
|
1197 break;
|
jamie@140
|
1198 }
|
jamie@140
|
1199
|
jamie@140
|
1200 if(*is_scalar)
|
jamie@140
|
1201 {
|
jamie@140
|
1202
|
jamie@140
|
1203 result_unit = &d->result.scalar.unit;
|
jamie@140
|
1204 result_min = &d->result.scalar.min;
|
jamie@140
|
1205 result_max = &d->result.scalar.max;
|
jamie@140
|
1206
|
jamie@140
|
1207 switch(f)
|
jamie@140
|
1208 {
|
jamie@108
|
1209 case XTRACT_MEAN:
|
jamie@108
|
1210 case XTRACT_VARIANCE:
|
jamie@108
|
1211 case XTRACT_STANDARD_DEVIATION:
|
jamie@108
|
1212 case XTRACT_AVERAGE_DEVIATION:
|
jamie@108
|
1213 case XTRACT_SKEWNESS:
|
jamie@108
|
1214 case XTRACT_KURTOSIS:
|
jamie@140
|
1215 case XTRACT_RMS_AMPLITUDE:
|
jamie@140
|
1216 case XTRACT_LOWEST_VALUE:
|
jamie@140
|
1217 case XTRACT_HIGHEST_VALUE:
|
jamie@140
|
1218 case XTRACT_SUM:
|
jamie@140
|
1219 case XTRACT_FLUX:
|
jamie@140
|
1220 case XTRACT_LNORM:
|
jamie@140
|
1221 case XTRACT_NONZERO_COUNT:
|
jamie@140
|
1222 case XTRACT_WINDOWED:
|
jamie@140
|
1223 *result_unit = XTRACT_ANY;
|
jamie@140
|
1224 *result_min = XTRACT_ANY;
|
jamie@140
|
1225 *result_max = XTRACT_ANY;
|
jamie@140
|
1226 break;
|
jamie@108
|
1227 case XTRACT_SPECTRAL_SKEWNESS:
|
jamie@108
|
1228 case XTRACT_SPECTRAL_KURTOSIS:
|
jamie@108
|
1229 case XTRACT_IRREGULARITY_K:
|
jamie@108
|
1230 case XTRACT_IRREGULARITY_J:
|
jamie@108
|
1231 case XTRACT_TRISTIMULUS_1:
|
jamie@108
|
1232 case XTRACT_TRISTIMULUS_2:
|
jamie@108
|
1233 case XTRACT_TRISTIMULUS_3:
|
jamie@140
|
1234 case XTRACT_NOISINESS:
|
jamie@108
|
1235 case XTRACT_SMOOTHNESS:
|
jamie@140
|
1236 *result_unit = XTRACT_NONE;
|
jamie@140
|
1237 *result_min = XTRACT_ANY; /* FIX: need to check these */
|
jamie@140
|
1238 *result_max = XTRACT_ANY;
|
jamie@108
|
1239 break;
|
jamie@108
|
1240 case XTRACT_SPECTRAL_MEAN:
|
jamie@108
|
1241 case XTRACT_SPECTRAL_VARIANCE:
|
jamie@108
|
1242 case XTRACT_SPECTRAL_STANDARD_DEVIATION:
|
jamie@140
|
1243 /* case XTRACT_SPECTRAL_AVERAGE_DEVIATION: */
|
jamie@108
|
1244 case XTRACT_SPECTRAL_CENTROID:
|
jamie@108
|
1245 case XTRACT_SPREAD:
|
jamie@140
|
1246 case XTRACT_F0:
|
jamie@140
|
1247 case XTRACT_FAILSAFE_F0:
|
jamie@140
|
1248 case XTRACT_HPS:
|
jamie@140
|
1249 case XTRACT_ROLLOFF:
|
jamie@140
|
1250 *result_unit = XTRACT_HERTZ;
|
jamie@140
|
1251 *result_min = 0.f;
|
jamie@140
|
1252 *result_max = XTRACT_SR_UPPER_LIMIT / 2;
|
jamie@140
|
1253 break;
|
jamie@108
|
1254 case XTRACT_ZCR:
|
jamie@140
|
1255 *result_unit = XTRACT_HERTZ;
|
jamie@140
|
1256 *result_min = 0.f;
|
jamie@140
|
1257 *result_max = XTRACT_ANY;
|
jamie@140
|
1258 break;
|
jamie@140
|
1259 case XTRACT_ODD_EVEN_RATIO:
|
jamie@140
|
1260 *result_unit = XTRACT_NONE;
|
jamie@140
|
1261 *result_min = 0.f;
|
jamie@140
|
1262 *result_max = 1.f;
|
jamie@140
|
1263 break;
|
jamie@140
|
1264 case XTRACT_FLATNESS_DB:
|
jamie@140
|
1265 *result_unit = XTRACT_DBFS;
|
jamie@140
|
1266 *result_min = XTRACT_ANY; /* FIX: check this */
|
jamie@140
|
1267 *result_max = XTRACT_ANY;
|
jamie@140
|
1268 break;
|
jamie@108
|
1269 case XTRACT_LOUDNESS:
|
jamie@108
|
1270 case XTRACT_FLATNESS:
|
jamie@108
|
1271 case XTRACT_TONALITY:
|
jamie@108
|
1272 case XTRACT_CREST:
|
jamie@108
|
1273 case XTRACT_SPECTRAL_INHARMONICITY:
|
jamie@108
|
1274 case XTRACT_POWER:
|
jamie@108
|
1275 case XTRACT_SHARPNESS:
|
jamie@108
|
1276 case XTRACT_SPECTRAL_SLOPE:
|
jamie@108
|
1277 case XTRACT_LPC:
|
jamie@108
|
1278 case XTRACT_LPCC:
|
jamie@108
|
1279 default:
|
jamie@140
|
1280 *result_unit = XTRACT_UNKNOWN;
|
jamie@140
|
1281 *result_min = XTRACT_UNKNOWN;
|
jamie@140
|
1282 *result_max = XTRACT_UNKNOWN;
|
jamie@108
|
1283 break;
|
jamie@108
|
1284 }
|
jamie@108
|
1285 }
|
jamie@140
|
1286 else
|
jamie@140
|
1287 {
|
jamie@55
|
1288
|
jamie@108
|
1289 result_min = NULL;
|
jamie@108
|
1290 result_max = NULL;
|
jamie@108
|
1291 result_unit = &d->result.vector.unit;
|
jamie@108
|
1292 result_format = &d->result.vector.format;
|
jamie@55
|
1293
|
jamie@140
|
1294 switch(f)
|
jamie@140
|
1295 {
|
jamie@140
|
1296 case XTRACT_AUTOCORRELATION:
|
jamie@140
|
1297 case XTRACT_AMDF:
|
jamie@140
|
1298 case XTRACT_ASDF:
|
jamie@140
|
1299 case XTRACT_DCT:
|
jamie@140
|
1300 case XTRACT_SUBBANDS:
|
jamie@140
|
1301 case XTRACT_WINDOWED:
|
jamie@140
|
1302 *result_format = XTRACT_ARBITRARY_SERIES;
|
jamie@140
|
1303 *result_unit = XTRACT_ANY;
|
jamie@140
|
1304 break;
|
jamie@140
|
1305 case XTRACT_BARK_COEFFICIENTS:
|
jamie@140
|
1306 *result_format = XTRACT_BARK_COEFFS;
|
jamie@140
|
1307 *result_unit = XTRACT_UNKNOWN; /* FIX: check */
|
jamie@140
|
1308 break;
|
jamie@140
|
1309 case XTRACT_PEAK_SPECTRUM:
|
jamie@140
|
1310 case XTRACT_SPECTRUM:
|
jamie@140
|
1311 case XTRACT_HARMONIC_SPECTRUM:
|
jamie@140
|
1312 *result_format = XTRACT_SPECTRAL;
|
jamie@140
|
1313 *result_unit = XTRACT_ANY_AMPLITUDE_HERTZ;
|
jamie@140
|
1314 break;
|
jamie@140
|
1315 case XTRACT_AUTOCORRELATION_FFT:
|
jamie@140
|
1316 break;
|
jamie@140
|
1317 case XTRACT_MFCC:
|
jamie@140
|
1318 *result_format = XTRACT_MEL_COEFFS;
|
jamie@140
|
1319 *result_unit = XTRACT_UNKNOWN; /* FIX: check */
|
jamie@140
|
1320 break;
|
jamie@140
|
1321 case XTRACT_LPC:
|
jamie@140
|
1322 *result_format = XTRACT_LPC_COEFFS;
|
jamie@140
|
1323 *result_unit = XTRACT_UNKNOWN;
|
jamie@140
|
1324 break;
|
jamie@140
|
1325 case XTRACT_LPCC:
|
jamie@140
|
1326 *result_format = XTRACT_LPCC_COEFFS;
|
jamie@140
|
1327 *result_unit = XTRACT_UNKNOWN;
|
jamie@140
|
1328 break;
|
jamie@140
|
1329 default:
|
jamie@140
|
1330 break;
|
jamie@108
|
1331 }
|
jamie@108
|
1332 }
|
jamie@50
|
1333 }
|
jamie@50
|
1334
|
jamie@50
|
1335 return fd;
|
jamie@50
|
1336 }
|
jamie@50
|
1337
|
jamie@140
|
1338 int xtract_free_descriptors(xtract_function_descriptor_t *fd)
|
jamie@140
|
1339 {
|
jamie@50
|
1340
|
jamie@140
|
1341 if (fd != NULL)
|
jamie@140
|
1342 {
|
jamie@108
|
1343 free(fd);
|
jamie@50
|
1344 }
|
jamie@50
|
1345
|
jamie@56
|
1346 return XTRACT_SUCCESS;
|
jamie@50
|
1347 }
|
jamie@50
|
1348
|
jamie@50
|
1349
|
jamie@50
|
1350
|
jamie@50
|
1351
|
jamie@50
|
1352
|