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1 #include <sys/types.h>
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2 #include <sys/stat.h>
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3 #include <unistd.h>
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4 #include <librdf.h>
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5 #include <fcntl.h>
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6 #include <string.h>
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7 #include <stdlib.h>
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8
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9 #include <audioDB_API.h>
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10
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11 const char * qstring =
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12 " PREFIX af: <http://purl.org/ontology/af/>"
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13 " PREFIX dc: <http://purl.org/dc/elements/1.1/>"
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14 " PREFIX mo: <http://purl.org/ontology/mo/>"
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15 " PREFIX tl: <http://purl.org/NET/c4dm/timeline.owl#>"
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16
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17 " SELECT ?key ?value ?sample_rate ?window_length ?hop_size"
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18 " FROM <file:///home/csr21/tmp/rdf/test.n3> "
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19
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20 " WHERE { "
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21
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22 " ?signal mo:available_as ?key ."
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23
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24 " ?signal mo:time [ tl:onTimeLine ?signal_timeline ] . "
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25
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26 " ?timeline_map a tl:UniformSamplingWindowingMap ; "
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27 " tl:rangeTimeLine ?feature_timeline ; "
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28 " tl:domainTimeLine ?signal_timeline ; "
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29 " tl:sampleRate ?sample_rate ; "
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30 " tl:windowLength ?window_length ; "
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31 " tl:hopSize ?hop_size . "
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32
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33 " ?signal af:signal_feature ?feature . "
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34
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35 " ?feature a ?feature_signal_type ; "
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36 " mo:time [ tl:onTimeLine ?feature_timeline ] ; "
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37 " af:value ?value . "
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38
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39 " ?feature_signal_type dc:title \"Key Strength Plot\""
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40
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41 " } "
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42 ;
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43
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44 double *parse_value_string(const char *value_string, size_t *nelements) {
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45 /* What error checking? */
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46
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47 *nelements = 0;
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48
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49 const char *current = value_string;
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50 char *next = 0;
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51
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52 size_t size = 1;
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53 double *buf = (double *) malloc(size * sizeof(double));
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54 double value = strtod(current, &next);
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55 while(next != current) {
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56 buf[(*nelements)++] = value;
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57 if((*nelements) == size) {
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58 size *= 2;
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59 buf = (double *) realloc(buf, 2 * size * sizeof(double));
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60 }
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61 current = next;
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62 value = strtod(current, &next);
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63 }
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64 return buf;
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65 }
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66
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67 int main() {
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68 librdf_world *world;
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69 if (!(world = librdf_new_world()))
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70 goto librdf_error;
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71
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72 librdf_storage *storage;
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73 if (!(storage = librdf_new_storage(world, "memory", NULL, NULL)))
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74 goto librdf_error;
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75
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76 librdf_model *model;
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77 if (!(model = librdf_new_model(world, storage, NULL)))
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78 goto librdf_error;
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79
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80 librdf_uri *uri;
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81 if (!(uri = librdf_new_uri(world, "file:data/test.n3")))
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82 goto librdf_error;
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83
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84 librdf_parser *parser;
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85 if (!(parser = librdf_new_parser(world, "guess", NULL, NULL)))
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86 goto librdf_error;
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87
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88 if(librdf_parser_parse_into_model(parser, uri, NULL, model))
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89 goto librdf_error;
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90
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91 librdf_query *query;
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92 if (!(query = librdf_new_query(world, "sparql", NULL, qstring, NULL)))
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93 goto librdf_error;
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94
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95 librdf_query_results *results;
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96 if (!(results = librdf_query_execute(query, model)))
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97 goto librdf_error;
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98
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99 if(!librdf_query_results_is_bindings(results))
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100 goto librdf_error;
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101
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102 adb_t *adb;
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103 if(!(adb = audiodb_open("keyplot.adb", O_RDWR))) {
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104 struct stat st;
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105 if(!(stat("keyplot.adb", &st))) {
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106 fprintf(stderr, "keyplot.adb not opened.\n");
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107 return 1;
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108 } else {
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109 /* FIXME: if we are doing a proper SPARQL query over a
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110 * potentially unbounded number of results, we could use
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111 * librdf_query_results_get_count() to estimate how much space
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112 * our database will need.
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113
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114 * If we're doing a SPARQL query over a number of RDF files,
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115 * with an expected number of datasets per file of 1 (as might
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116 * be produced by runner(?)) then obviously we can use that as
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117 * an estimate of number of tracks instead.
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118
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119 * Specifying the data dimensionality should be easy from the
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120 * semantics of the feature being inserted; it's not immediately
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121 * obvious to me how to estimate the data size required, unless
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122 * we maybe do a preliminary query to find out the total time
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123 * (or similar) of all the tracks we're about to insert.
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124
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125 * (also NOTE: this audiodb_create() interface is scheduled for
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126 * being made less inelegant.) */
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127 if(!(adb = audiodb_create("keyplot.adb", 0, 0, 0))) {
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128 fprintf(stderr, "failed to create keyplot.adb.\n");
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129 return 1;
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130 }
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131 }
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132 }
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133
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134 while(!librdf_query_results_finished(results)) {
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135 int count = librdf_query_results_get_bindings_count(results);
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136 adb_datum_t datum = {0};
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137 datum.dim = 25;
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138 for (int i = 0; i < count; i++) {
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139 const char *name = librdf_query_results_get_binding_name(results, i);
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140 librdf_node *node = librdf_query_results_get_binding_value(results, i);
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141 if(!node) return 2;
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142
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143 if(!strcmp(name, "key")) {
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144 datum.key = librdf_uri_as_string(librdf_node_get_uri(node));
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145 } else if(!strcmp(name, "value")) {
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146 size_t nelements = 0;
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147 datum.data = parse_value_string(librdf_node_get_literal_value(node), &nelements);
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148 if(nelements % 25) return 4;
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149 datum.nvectors = nelements / 25;
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150 } else {
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151 /* do something with the timeline (and other) information */
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152 printf("%s: %s\n", name, librdf_node_get_literal_value(node));
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153 }
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154 librdf_free_node(node);
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155 }
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156 if(audiodb_insert_datum(adb, &datum)) {
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157 fprintf(stderr, "failed to insert datum with key %s.\n", datum.key);
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158 return 1;
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159 }
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160 free(datum.data);
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161 librdf_query_results_next(results);
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162 }
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163
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164 audiodb_close(adb);
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165 librdf_free_query_results(results);
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166 librdf_free_query(query);
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167 librdf_free_parser(parser);
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168 librdf_free_uri(uri);
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169 librdf_free_model(model);
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170 librdf_free_storage(storage);
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171 librdf_free_world(world);
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172
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173 return 0;
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174
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175 librdf_error:
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176 fprintf(stderr, "Something went wrong in librdf.\n");
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177 return 1;
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178 }
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