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1 /*
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2 ** Copyright (C) 1999-2014 Erik de Castro Lopo <erikd@mega-nerd.com>
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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., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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17 */
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18
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19 #include <stdio.h>
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20 #include <stdlib.h>
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21 #include <string.h>
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22 #include <unistd.h>
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23 #include <math.h>
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24 #include <inttypes.h>
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25
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26 #include <sndfile.h>
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27
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28 #include "utils.h"
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29
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30 #define BUFFER_SIZE (1 << 14)
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31 #define SAMPLE_RATE (11025)
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32
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33 #ifndef M_PI
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34 #define M_PI 3.14159265358979323846264338
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35 #endif
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36
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37 static void lcomp_test_int (const char *str, const char *filename, int filetype, double margin) ;
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38
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39 static int error_function (double data, double orig, double margin) ;
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40 static int decay_response (int k) ;
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41
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42 static void gen_signal_double (double *data, double scale, int datalen) ;
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43
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44 /* Force the start of these buffers to be double aligned. Sparc-solaris will
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45 ** choke if they are not.
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46 */
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47
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48 typedef union
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49 { double d [BUFFER_SIZE + 1] ;
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50 int i [BUFFER_SIZE + 1] ;
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51 } BUFFER ;
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52
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53 static BUFFER data_buffer ;
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54 static BUFFER orig_buffer ;
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55
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56 int
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57 main (void)
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58 { const char *filename = "test.au" ;
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59
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60 lcomp_test_int ("au_g721", filename, SF_ENDIAN_BIG | SF_FORMAT_AU | SF_FORMAT_G721_32, 0.06) ;
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61
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62 return 0 ;
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63 } /* main */
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64
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65 /*============================================================================================
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66 ** Here are the test functions.
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67 */
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68
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69 static void
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70 lcomp_test_int (const char *str, const char *filename, int filetype, double margin)
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71 { SNDFILE *file ;
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72 SF_INFO sfinfo ;
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73 int k, m, *orig, *data ;
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74 sf_count_t datalen, seekpos ;
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75 int64_t sum_abs ;
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76 double scale ;
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77
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78 printf ("\nThis is program is not part of the libsndfile test suite.\n\n") ;
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79
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80 printf (" lcomp_test_int : %s ... ", str) ;
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81 fflush (stdout) ;
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82
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83 datalen = BUFFER_SIZE ;
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84
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85 scale = 1.0 * 0x10000 ;
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86
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87 data = data_buffer.i ;
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88 orig = orig_buffer.i ;
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89
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90 gen_signal_double (orig_buffer.d, 32000.0 * scale, datalen) ;
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91 for (k = 0 ; k < datalen ; k++)
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92 orig [k] = orig_buffer.d [k] ;
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93
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94
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95 sfinfo.samplerate = SAMPLE_RATE ;
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96 sfinfo.frames = 123456789 ; /* Ridiculous value. */
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97 sfinfo.channels = 1 ;
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98 sfinfo.format = filetype ;
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99
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100 if (! (file = sf_open (filename, SFM_WRITE, &sfinfo)))
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101 { printf ("sf_open_write failed with error : ") ;
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102 puts (sf_strerror (NULL)) ;
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103 exit (1) ;
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104 } ;
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105
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106 if ((k = sf_writef_int (file, orig, datalen)) != datalen)
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107 { printf ("sf_writef_int failed with short write (%" PRId64 " => %d).\n", datalen, k) ;
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108 exit (1) ;
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109 } ;
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110 sf_close (file) ;
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111
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112 memset (data, 0, datalen * sizeof (int)) ;
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113
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114 if ((filetype & SF_FORMAT_TYPEMASK) != SF_FORMAT_RAW)
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115 memset (&sfinfo, 0, sizeof (sfinfo)) ;
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116
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117 if (! (file = sf_open (filename, SFM_READ, &sfinfo)))
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118 { printf ("sf_open_read failed with error : ") ;
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119 puts (sf_strerror (NULL)) ;
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120 exit (1) ;
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121 } ;
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122
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123 if ((sfinfo.format & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK)) != (filetype & (SF_FORMAT_TYPEMASK | SF_FORMAT_SUBMASK)))
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124 { printf ("Line %d: Returned format incorrect (0x%08X => 0x%08X).\n", __LINE__, filetype, sfinfo.format) ;
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125 exit (1) ;
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126 } ;
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127
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128 if (sfinfo.frames < datalen)
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129 { printf ("Too few.frames in file. (%" PRId64 " should be a little more than %" PRId64 ")\n", datalen, sfinfo.frames) ;
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130 exit (1) ;
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131 } ;
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132
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133 if (sfinfo.frames > (datalen + datalen / 2))
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134 { printf ("Too many.frames in file. (%" PRId64 " should be a little more than %" PRId64 ")\n", datalen, sfinfo.frames) ;
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135 exit (1) ;
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136 } ;
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137
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138 if (sfinfo.channels != 1)
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139 { printf ("Incorrect number of channels in file.\n") ;
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140 exit (1) ;
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141 } ;
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142
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143 check_log_buffer_or_die (file, __LINE__) ;
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144
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145 if ((k = sf_readf_int (file, data, datalen)) != datalen)
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146 { printf ("Line %d: short read (%d should be %" PRId64 ").\n", __LINE__, k, datalen) ;
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147 exit (1) ;
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148 } ;
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149
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150 sum_abs = 0 ;
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151 for (k = 0 ; k < datalen ; k++)
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152 { if (error_function (data [k] / scale, orig [k] / scale, margin))
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153 { printf ("Line %d: Incorrect sample (#%d : %f should be %f).\n", __LINE__, k, data [k] / scale, orig [k] / scale) ;
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154 oct_save_int (orig, data, datalen) ;
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155 exit (1) ;
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156 } ;
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157 sum_abs += abs (data [k]) ;
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158 } ;
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159
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160 if (sum_abs < 1.0)
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161 { printf ("Line %d: Signal is all zeros.\n", __LINE__) ;
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162 exit (1) ;
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163 } ;
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164
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165 if ((k = sf_readf_int (file, data, datalen)) != sfinfo.frames - datalen)
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166 { printf ("Line %d: Incorrect read length (%" PRId64 " should be %d).\n", __LINE__, sfinfo.frames - datalen, k) ;
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167 exit (1) ;
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168 } ;
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169
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170 /* This check is only for block based encoders which must append silence
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171 ** to the end of a file so as to fill out a block.
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172 */
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173 if ((sfinfo.format & SF_FORMAT_SUBMASK) != SF_FORMAT_MS_ADPCM)
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174 for (k = 0 ; k < sfinfo.frames - datalen ; k++)
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175 if (ABS (data [k] / scale) > decay_response (k))
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176 { printf ("Line %d : Incorrect sample B (#%d : abs (%d) should be < %d).\n", __LINE__, k, data [k], decay_response (k)) ;
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177 exit (1) ;
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178 } ;
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179
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180 if (! sfinfo.seekable)
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181 { printf ("ok\n") ;
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182 return ;
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183 } ;
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184
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cannam@125
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185 /* Now test sf_seek function. */
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186
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187 if ((k = sf_seek (file, 0, SEEK_SET)) != 0)
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188 { printf ("Line %d: Seek to start of file failed (%d).\n", __LINE__, k) ;
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189 exit (1) ;
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190 } ;
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191
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192 for (m = 0 ; m < 3 ; m++)
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193 { int n ;
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194
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195 if ((k = sf_readf_int (file, data, 11)) != 11)
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196 { printf ("Line %d: Incorrect read length (11 => %d).\n", __LINE__, k) ;
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197 exit (1) ;
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198 } ;
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199
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200 for (k = 0 ; k < 11 ; k++)
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201 if (error_function (data [k] / scale, orig [k + m * 11] / scale, margin))
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202 { printf ("Line %d: Incorrect sample (m = %d) (#%d : %d => %d).\n", __LINE__, m, k + m * 11, orig [k + m * 11], data [k]) ;
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203 for (n = 0 ; n < 1 ; n++)
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204 printf ("%d ", data [n]) ;
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205 printf ("\n") ;
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206 exit (1) ;
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207 } ;
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208 } ;
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209
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210 seekpos = BUFFER_SIZE / 10 ;
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211
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cannam@125
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212 /* Check seek from start of file. */
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213 if ((k = sf_seek (file, seekpos, SEEK_SET)) != seekpos)
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cannam@125
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214 { printf ("Seek to start of file + %" PRId64 " failed (%d).\n", seekpos, k) ;
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215 exit (1) ;
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216 } ;
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217
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218 if ((k = sf_readf_int (file, data, 1)) != 1)
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cannam@125
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219 { printf ("Line %d: sf_readf_int (file, data, 1) returned %d.\n", __LINE__, k) ;
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220 exit (1) ;
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221 } ;
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222
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223 if (error_function ((double) data [0], (double) orig [seekpos], margin))
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224 { printf ("Line %d: sf_seek (SEEK_SET) followed by sf_readf_int failed (%d, %d).\n", __LINE__, orig [1], data [0]) ;
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225 exit (1) ;
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226 } ;
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227
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228 if ((k = sf_seek (file, 0, SEEK_CUR)) != seekpos + 1)
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229 { printf ("Line %d: sf_seek (SEEK_CUR) with 0 offset failed (%d should be %" PRId64 ")\n", __LINE__, k, seekpos + 1) ;
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230 exit (1) ;
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231 } ;
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232
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233 seekpos = sf_seek (file, 0, SEEK_CUR) + BUFFER_SIZE / 5 ;
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234 k = sf_seek (file, BUFFER_SIZE / 5, SEEK_CUR) ;
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235 sf_readf_int (file, data, 1) ;
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236 if (error_function ((double) data [0], (double) orig [seekpos], margin) || k != seekpos)
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237 { printf ("Line %d: sf_seek (forwards, SEEK_CUR) followed by sf_readf_int failed (%d, %d) (%d, %" PRId64 ").\n", __LINE__, data [0], orig [seekpos], k, seekpos + 1) ;
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238 exit (1) ;
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239 } ;
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240
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241 seekpos = sf_seek (file, 0, SEEK_CUR) - 20 ;
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242 /* Check seek backward from current position. */
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243 k = sf_seek (file, -20, SEEK_CUR) ;
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244 sf_readf_int (file, data, 1) ;
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245 if (error_function ((double) data [0], (double) orig [seekpos], margin) || k != seekpos)
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246 { printf ("sf_seek (backwards, SEEK_CUR) followed by sf_readf_int failed (%d, %d) (%d, %" PRId64 ").\n", data [0], orig [seekpos], k, seekpos) ;
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247 exit (1) ;
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248 } ;
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249
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cannam@125
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250 /* Check that read past end of file returns number of items. */
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251 sf_seek (file, (int) sfinfo.frames, SEEK_SET) ;
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252
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253 if ((k = sf_readf_int (file, data, datalen)) != 0)
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254 { printf ("Line %d: Return value from sf_readf_int past end of file incorrect (%d).\n", __LINE__, k) ;
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255 exit (1) ;
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256 } ;
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257
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cannam@125
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258 /* Check seek backward from end. */
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259 if ((k = sf_seek (file, 5 - (int) sfinfo.frames, SEEK_END)) != 5)
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cannam@125
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260 { printf ("sf_seek (SEEK_END) returned %d instead of %d.\n", k, 5) ;
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261 exit (1) ;
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262 } ;
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263
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264 sf_readf_int (file, data, 1) ;
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265 if (error_function (data [0] / scale, orig [5] / scale, margin))
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cannam@125
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266 { printf ("Line %d: sf_seek (SEEK_END) followed by sf_readf_short failed (%d should be %d).\n", __LINE__, data [0], orig [5]) ;
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267 exit (1) ;
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cannam@125
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268 } ;
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269
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270 sf_close (file) ;
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271
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272 printf ("ok\n") ;
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cannam@125
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273 } /* lcomp_test_int */
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cannam@125
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274
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cannam@125
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275 /*========================================================================================
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cannam@125
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276 ** Auxiliary functions
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277 */
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278
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cannam@125
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279 #define SIGNAL_MAXVAL 30000.0
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cannam@125
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280 #define DECAY_COUNT 800
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281
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cannam@125
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282 static int
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283 decay_response (int k)
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cannam@125
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284 { if (k < 1)
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cannam@125
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285 return (int) (1.2 * SIGNAL_MAXVAL) ;
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cannam@125
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286 if (k > DECAY_COUNT)
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cannam@125
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287 return 0 ;
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cannam@125
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288 return (int) (1.2 * SIGNAL_MAXVAL * (DECAY_COUNT - k) / (1.0 * DECAY_COUNT)) ;
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cannam@125
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289 } /* decay_response */
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cannam@125
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290
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cannam@125
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291 static void
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cannam@125
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292 gen_signal_double (double *data, double scale, int datalen)
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cannam@125
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293 { int k, ramplen ;
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cannam@125
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294 double amp = 0.0 ;
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295
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cannam@125
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296 ramplen = datalen / 18 ;
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297
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cannam@125
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298 for (k = 0 ; k < datalen ; k++)
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cannam@125
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299 { if (k <= ramplen)
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cannam@125
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300 amp = scale * k / ((double) ramplen) ;
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cannam@125
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301 else if (k > datalen - ramplen)
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cannam@125
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302 amp = scale * (datalen - k) / ((double) ramplen) ;
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303
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cannam@125
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304 data [k] = amp * (0.4 * sin (33.3 * 2.0 * M_PI * ((double) (k + 1)) / ((double) SAMPLE_RATE))
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cannam@125
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305 + 0.3 * cos (201.1 * 2.0 * M_PI * ((double) (k + 1)) / ((double) SAMPLE_RATE))) ;
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cannam@125
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306 } ;
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cannam@125
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307
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cannam@125
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308 return ;
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cannam@125
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309 } /* gen_signal_double */
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cannam@125
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310
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cannam@125
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311 static int
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cannam@125
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312 error_function (double data, double orig, double margin)
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cannam@125
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313 { double error ;
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cannam@125
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314
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cannam@125
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315 if (fabs (orig) <= 500.0)
|
cannam@125
|
316 error = fabs (fabs (data) - fabs (orig)) / 2000.0 ;
|
cannam@125
|
317 else if (fabs (orig) <= 1000.0)
|
cannam@125
|
318 error = fabs (data - orig) / 3000.0 ;
|
cannam@125
|
319 else
|
cannam@125
|
320 error = fabs (data - orig) / fabs (orig) ;
|
cannam@125
|
321
|
cannam@125
|
322 if (error > margin)
|
cannam@125
|
323 { printf ("\n\n*******************\nError : %f\n", error) ;
|
cannam@125
|
324 return 1 ;
|
cannam@125
|
325 } ;
|
cannam@125
|
326 return 0 ;
|
cannam@125
|
327 } /* error_function */
|
cannam@125
|
328
|