1 | #include <aubio.h> |
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2 | #include "utils_tests.h" |
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3 | |
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4 | int test_wrong_params(void); |
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5 | |
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6 | int main(int argc, char **argv) |
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7 | { |
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8 | uint_t err = 0; |
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9 | if (argc < 2) { |
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10 | PRINT_ERR("not enough arguments, running tests\n"); |
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11 | err = test_wrong_params(); |
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12 | PRINT_MSG("read a wave file as a mono vector\n"); |
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13 | PRINT_MSG("usage: %s <source_path> [samplerate] [hop_size]\n", argv[0]); |
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14 | PRINT_MSG("examples:\n"); |
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15 | PRINT_MSG(" - read file.wav at original samplerate\n"); |
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16 | PRINT_MSG(" %s file.wav\n", argv[0]); |
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17 | PRINT_MSG(" - read file.wav at 32000Hz\n"); |
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18 | PRINT_MSG(" %s file.aif 32000\n", argv[0]); |
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19 | PRINT_MSG(" - read file.wav at original samplerate with 4096 blocks\n"); |
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20 | PRINT_MSG(" %s file.wav 0 4096 \n", argv[0]); |
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21 | return err; |
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22 | } |
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23 | |
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24 | uint_t samplerate = 0; |
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25 | uint_t hop_size = 256; |
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26 | uint_t n_frames = 0, read = 0; |
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27 | if ( argc >= 3 ) samplerate = atoi(argv[2]); |
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28 | if ( argc >= 4 ) hop_size = atoi(argv[3]); |
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29 | |
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30 | char_t *source_path = argv[1]; |
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31 | |
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32 | aubio_source_t* s = |
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33 | new_aubio_source(source_path, samplerate, hop_size); |
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34 | fvec_t *vec = new_fvec(hop_size); |
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35 | if (!s || !vec) { err = 1; goto beach; } |
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36 | |
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37 | uint_t n_frames_expected = aubio_source_get_duration(s); |
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38 | |
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39 | samplerate = aubio_source_get_samplerate(s); |
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40 | |
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41 | do { |
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42 | aubio_source_do(s, vec, &read); |
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43 | fvec_print (vec); |
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44 | n_frames += read; |
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45 | } while ( read == hop_size ); |
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46 | |
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47 | PRINT_MSG("read %d frames (expected %d) at %dHz (%d blocks) from %s\n", |
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48 | n_frames, n_frames_expected, samplerate, n_frames / hop_size, |
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49 | source_path); |
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50 | |
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51 | // close the file (optional) |
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52 | aubio_source_close(s); |
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53 | |
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54 | beach: |
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55 | if (vec) |
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56 | del_fvec(vec); |
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57 | if (s) |
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58 | del_aubio_source(s); |
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59 | return err; |
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60 | } |
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61 | |
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62 | int test_wrong_params(void) |
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63 | { |
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64 | char_t *uri = DEFINEDSTRING(AUBIO_TESTS_SOURCE); |
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65 | uint_t samplerate = 44100; |
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66 | uint_t hop_size = 512; |
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67 | uint_t channels, read = 0; |
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68 | fvec_t *vec; |
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69 | fmat_t *mat; |
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70 | aubio_source_t *s; |
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71 | |
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72 | if (new_aubio_source(0, samplerate, hop_size)) return 1; |
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73 | if (new_aubio_source("\0", samplerate, hop_size)) return 1; |
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74 | if (new_aubio_source(uri, -1, hop_size)) return 1; |
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75 | if (new_aubio_source(uri, 0, 0)) return 1; |
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76 | |
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77 | s = new_aubio_source(uri, samplerate, hop_size); |
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78 | if (!s) return 1; |
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79 | channels = aubio_source_get_channels(s); |
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80 | |
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81 | // vector to read downmixed samples |
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82 | vec = new_fvec(hop_size); |
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83 | // matrix to read individual channels |
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84 | mat = new_fmat(channels, hop_size); |
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85 | |
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86 | if (aubio_source_get_samplerate(s) != samplerate) return 1; |
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87 | |
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88 | // read first hop_size frames |
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89 | aubio_source_do(s, vec, &read); |
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90 | if (read != hop_size) return 1; |
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91 | |
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92 | // read again in undersized vector |
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93 | del_fvec(vec); |
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94 | vec = new_fvec(hop_size - 1); |
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95 | aubio_source_do(s, vec, &read); |
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96 | if (read != hop_size - 1) return 1; |
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97 | |
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98 | // read again in oversized vector |
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99 | del_fvec(vec); |
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100 | vec = new_fvec(hop_size + 1); |
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101 | aubio_source_do(s, vec, &read); |
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102 | if (read != hop_size) return 1; |
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103 | |
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104 | // seek to 0 |
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105 | if(aubio_source_seek(s, 0)) return 1; |
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106 | |
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107 | // read again as multiple channels |
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108 | aubio_source_do_multi(s, mat, &read); |
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109 | if (read != hop_size) return 1; |
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110 | |
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111 | // read again as multiple channels in an undersized matrix |
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112 | del_fmat(mat); |
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113 | mat = new_fmat(channels - 1, hop_size); |
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114 | aubio_source_do_multi(s, mat, &read); |
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115 | if (read != hop_size) return 1; |
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116 | |
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117 | // read again as multiple channels in an undersized matrix |
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118 | del_fmat(mat); |
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119 | mat = new_fmat(channels, hop_size - 1); |
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120 | aubio_source_do_multi(s, mat, &read); |
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121 | if (read != hop_size - 1) return 1; |
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122 | |
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123 | // read again as multiple channels in an oversized matrix |
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124 | del_fmat(mat); |
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125 | mat = new_fmat(channels + 1, hop_size); |
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126 | aubio_source_do_multi(s, mat, &read); |
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127 | if (read != hop_size) return 1; |
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128 | |
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129 | // read again as multiple channels in an oversized matrix |
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130 | del_fmat(mat); |
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131 | mat = new_fmat(channels, hop_size + 1); |
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132 | aubio_source_do_multi(s, mat, &read); |
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133 | if (read != hop_size) return 1; |
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134 | |
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135 | // close the file (optional) |
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136 | aubio_source_close(s); |
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137 | // test closing the file a second time |
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138 | aubio_source_close(s); |
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139 | |
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140 | // reading after close fails |
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141 | del_fvec(vec); |
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142 | vec = new_fvec(hop_size); |
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143 | aubio_source_do(s, vec, &read); |
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144 | del_fmat(mat); |
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145 | mat = new_fmat(channels, hop_size); |
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146 | aubio_source_do_multi(s, mat, &read); |
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147 | |
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148 | del_aubio_source(s); |
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149 | del_fmat(mat); |
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150 | del_fvec(vec); |
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151 | |
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152 | // shouldn't crash on null |
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153 | del_aubio_source(NULL); |
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154 | |
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155 | return run_on_default_source(main); |
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156 | } |
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