mas01mc@292
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1 // LSH indexing
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2 //
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3 // Construct a persistent LSH table structure
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4 // Store at the same location as dbName
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5 // Naming convention:
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6 // dbName.lsh.${radius}.${sequenceLength}
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7 //
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8 //
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9 // Author: Michael Casey
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10 // Date: 23 June 2008
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11
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12 #include "audioDB.h"
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13 #include "ReporterBase.h"
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14
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15
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16 /************************* LSH point index to audioDB conversion *****************/
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17 Uns32T audioDB::index_to_trackID(Uns32T lshID){
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18 return lshID>>LSH_N_POINT_BITS;
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19 }
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20
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21 Uns32T audioDB::index_to_trackPos(Uns32T lshID){
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22 return lshID&LSH_POINT_MASK;
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23 }
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24
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25 Uns32T audioDB::index_from_trackInfo(Uns32T trackID, Uns32T spos){
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26 return (trackID << LSH_N_POINT_BITS) | spos;
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27 }
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28
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29 /************************* LSH indexing and query initialization *****************/
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30
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31 char* audioDB::index_get_name(const char*dbName, double radius, Uns32T sequenceLength){
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32 char* indexName = new char[MAXSTR];
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33 // Attempt to make new file
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34 if(strlen(dbName) > (MAXSTR - 32))
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35 error("dbName is too long for LSH index filename appendages");
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36 strncpy(indexName, dbName, MAXSTR);
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37 sprintf(indexName+strlen(dbName), ".lsh.%019.9f.%d", radius, sequenceLength);
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38 return indexName;
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39 }
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40
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41 // return true if index exists else return false
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42 int audioDB::index_exists(const char* dbName, double radius, Uns32T sequenceLength){
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43 // Test to see if file exists
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44 char* indexName = index_get_name(dbName, radius, sequenceLength);
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45 lshfid = open (indexName, O_RDONLY);
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46 delete[] indexName;
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47 close(lshfid);
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48
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49 if(lshfid<0)
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50 return false;
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51 else
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52 return true;
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53 }
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54
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55 vector<vector<float> >* audioDB::index_initialize_shingles(Uns32T sz){
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56 if(vv)
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57 delete vv;
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58 vv = new vector<vector<float> >(sz);
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59 for(Uns32T i=0 ; i < sz ; i++)
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60 (*vv)[i]=vector<float>(dbH->dim*sequenceLength); // allocate shingle storage
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61 return vv;
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62 }
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63
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64 /******************** LSH indexing audioDB database access forall s \in {S} ***********************/
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65
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66 // Prepare the AudioDB database for read access and allocate auxillary memory
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67 void audioDB::index_initialize(double **snp, double **vsnp, double **spp, double **vspp, Uns32T *dvp) {
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68 *dvp = dbH->length / (dbH->dim * sizeof(double)); // number of database vectors
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69 *snp = new double[*dvp]; // songs norm pointer: L2 norm table for each vector
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70
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71 double *snpp = *snp, *sppp = 0;
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72 memcpy(*snp, l2normTable, *dvp * sizeof(double));
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73
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74 if (!(dbH->flags & O2_FLAG_POWER)) {
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75 error("database not power-enabled", dbName);
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76 }
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77 *spp = new double[*dvp]; // song powertable pointer
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78 sppp = *spp;
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79 memcpy(*spp, powerTable, *dvp * sizeof(double));
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80
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81 for(Uns32T i = 0; i < dbH->numFiles; i++){
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82 if(trackTable[i] >= sequenceLength) {
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83 sequence_sum(snpp, trackTable[i], sequenceLength);
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84 sequence_sqrt(snpp, trackTable[i], sequenceLength);
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85
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86 sequence_sum(sppp, trackTable[i], sequenceLength);
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87 sequence_average(sppp, trackTable[i], sequenceLength);
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88 }
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89 snpp += trackTable[i];
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90 sppp += trackTable[i];
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91 }
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92
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93 *vsnp = *snp;
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94 *vspp = *spp;
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95
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96 // Move the feature vector read pointer to start of fetures in database
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97 lseek(dbfid, dbH->dataOffset, SEEK_SET);
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98 }
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99
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100
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101 /************************ LSH indexing ***********************************/
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102 void audioDB::index_index_db(const char* dbName){
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103
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104 char* newIndexName;
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105 double *fvp = 0, *sNorm = 0, *snPtr = 0, *sPower = 0, *spPtr = 0;
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106 Uns32T dbVectors = 0;
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107
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108 printf("INDEX: initializing header\n");
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109 // Check if audioDB exists, initialize header and open database for read
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110 forWrite = false;
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111 initDBHeader(dbName);
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112
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113 newIndexName = index_get_name(dbName, radius, sequenceLength);
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114
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115 // Set unit norming flag override
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116 audioDB::normalizedDistance = !audioDB::no_unit_norming;
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117
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118 printf("INDEX: dim %d\n", dbH->dim);
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119 printf("INDEX: R %f\n", radius);
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120 printf("INDEX: seqlen %d\n", sequenceLength);
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121 printf("INDEX: lsh_w %f\n", lsh_param_w);
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122 printf("INDEX: lsh_k %d\n", lsh_param_k);
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123 printf("INDEX: lsh_m %d\n", lsh_param_m);
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124 printf("INDEX: lsh_N %d\n", lsh_param_N);
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125 printf("INDEX: lsh_C %d\n", lsh_param_ncols);
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126 printf("INDEX: lsh_b %d\n", lsh_param_b);
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127 printf("INDEX: normalized? %s\n", normalizedDistance?"true":"false");
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128 fflush(stdout);
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129
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130
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131 index_initialize(&sNorm, &snPtr, &sPower, &spPtr, &dbVectors);
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132
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133 if((lshfid = open(newIndexName,O_RDONLY))<0){
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134 printf("INDEX: constructing new LSH index\n");
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135 printf("INDEX: making index file %s\n", newIndexName);
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136 fflush(stdout);
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137 // Construct new LSH index
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138 lsh = new LSH((float)lsh_param_w, lsh_param_k,
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139 lsh_param_m,
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140 (Uns32T)(sequenceLength*dbH->dim),
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141 lsh_param_N,
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142 lsh_param_ncols,
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143 (float)radius);
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144 assert(lsh);
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145
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146 Uns32T endTrack = lsh_param_b;
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147 if( endTrack > dbH->numFiles)
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148 endTrack = dbH->numFiles;
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149 // Insert up to lsh_param_b tracks
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150 index_insert_tracks(0, endTrack, &fvp, &sNorm, &snPtr, &sPower, &spPtr);
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151 lsh->serialize(newIndexName, lsh_in_core?O2_SERIAL_FILEFORMAT2:O2_SERIAL_FILEFORMAT1);
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152
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153 // Clean up
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154 delete lsh;
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155 close(lshfid);
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156 }
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157
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158 // Attempt to open LSH file
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159 if((lshfid = open(newIndexName,O_RDONLY))>0){
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160 printf("INDEX: merging with existing LSH index\n");
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161 fflush(stdout);
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162
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163 // Get the lsh header info and find how many tracks are inserted already
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164 lsh = new LSH(newIndexName, false); // lshInCore=false to avoid loading hashTables here
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165 assert(lsh);
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166 Uns32T maxs = index_to_trackID(lsh->get_maxp())+1;
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167 delete lsh;
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168
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169 // This allows for updating index after more tracks are inserted into audioDB
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170 for(Uns32T startTrack = maxs; startTrack < dbH->numFiles; startTrack+=lsh_param_b){
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171
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172 Uns32T endTrack = startTrack + lsh_param_b;
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173 if( endTrack > dbH->numFiles)
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174 endTrack = dbH->numFiles;
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175 printf("Indexing track range: %d - %d\n", startTrack, endTrack);
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176 fflush(stdout);
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177 lsh = new LSH(newIndexName, lsh_in_core); // Initialize core memory for LSH tables
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178 assert(lsh);
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179
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180 // Insert up to lsh_param_b database tracks
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181 index_insert_tracks(startTrack, endTrack, &fvp, &sNorm, &snPtr, &sPower, &spPtr);
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182
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183 // Serialize to file
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184 lsh->serialize(newIndexName, lsh_in_core?O2_SERIAL_FILEFORMAT2:O2_SERIAL_FILEFORMAT1); // Serialize core LSH heap to disk
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185 delete lsh;
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186 }
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187
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188 close(lshfid);
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189 printf("INDEX: done constructing LSH index.\n");
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190 fflush(stdout);
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191
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192 }
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193 else{
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194 error("Something's wrong with LSH index file");
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195 exit(1);
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196 }
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197
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198
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199 delete[] newIndexName;
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200 if(sNorm)
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201 delete[] sNorm;
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202 if(sPower)
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203 delete[] sPower;
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204
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205
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206 }
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207
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208 void audioDB::index_insert_tracks(Uns32T start_track, Uns32T end_track,
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209 double** fvpp, double** sNormpp,double** snPtrp,
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210 double** sPowerp, double** spPtrp){
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211 size_t nfv = 0;
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212 double* fvp = 0; // Keep pointer for memory allocation and free() for track data
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213 Uns32T trackID = 0;
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214
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215 VERB_LOG(1, "indexing tracks...");
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216
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217
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218 for(trackID = start_track ; trackID < end_track ; trackID++ ){
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219 read_data(trackID, &fvp, &nfv); // over-writes fvp and nfv
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220 *fvpp = fvp; // Protect memory allocation and free() for track data
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221 if(!index_insert_track(trackID, fvpp, snPtrp, spPtrp))
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222 break;
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223 }
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224 std::cout << "finished inserting." << endl;
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225 }
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226
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227 int audioDB::index_insert_track(Uns32T trackID, double** fvpp, double** snpp, double** sppp){
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228 // Loop over the current input track's vectors
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229 Uns32T numVecs = (trackTable[trackID]>O2_MAXTRACKLEN?O2_MAXTRACKLEN:trackTable[trackID]) - sequenceLength + 1 ;
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230 vv = index_initialize_shingles(numVecs);
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231
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232 for( Uns32T pointID = 0 ; pointID < numVecs; pointID++ )
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233 index_make_shingle(vv, pointID, *fvpp, dbH->dim, sequenceLength);
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234
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235 Uns32T numVecsAboveThreshold = index_norm_shingles(vv, *snpp, *sppp);
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236 Uns32T collisionCount = index_insert_shingles(vv, trackID, *sppp);
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237 float meanCollisionCount = numVecsAboveThreshold?(float)collisionCount/numVecsAboveThreshold:0;
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238
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239 /* index_norm_shingles() only goes as far as the end of the
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240 sequence, which is right, but the space allocated is for the
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241 whole track. */
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242
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243 /* But numVecs will be <trackTable[track] if trackTable[track]>O2_MAXTRACKLEN
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244 * So let's be certain the pointers are in the correct place
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245 */
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246
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247 *snpp += trackTable[trackID];
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248 *sppp += trackTable[trackID];
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249 *fvpp += trackTable[trackID] * dbH->dim;
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250
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251 std::cout << " n=" << trackTable[trackID] << " n'=" << numVecsAboveThreshold << " E[#c]=" << lsh->get_mean_collision_rate() << " E[#p]=" << meanCollisionCount << endl;
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252 std::cout.flush();
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253 return true;
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254 }
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255
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256 Uns32T audioDB::index_insert_shingles(vector<vector<float> >* vv, Uns32T trackID, double* spp){
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257 Uns32T collisionCount = 0;
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258 cout << "[" << trackID << "]" << fileTable+trackID*O2_FILETABLE_ENTRY_SIZE;
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259 for( Uns32T pointID=0 ; pointID < (*vv).size(); pointID++)
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260 if(!use_absolute_threshold || (use_absolute_threshold && (*spp++ >= absolute_threshold)))
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261 collisionCount += lsh->insert_point((*vv)[pointID], index_from_trackInfo(trackID, pointID));
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262 return collisionCount;
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263 }
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264
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265 /********************* LSH shingle construction ***************************/
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266
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267 // Construct shingles out of a feature matrix
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268 // inputs:
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269 // idx is vector index in feature matrix
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270 // fvp is base feature matrix pointer double* [numVecs x dbH->dim]
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271 //
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272 // pre-conditions:
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273 // dbH->dim
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274 // sequenceLength
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275 // idx < numVectors - sequenceLength + 1
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276 //
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277 // post-conditions:
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278 // (*vv)[idx] contains a shingle with dbH->dim*sequenceLength float values
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279
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280 void audioDB::index_make_shingle(vector<vector<float> >* vv, Uns32T idx, double* fvp, Uns32T dim, Uns32T seqLen){
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281 assert(idx<(*vv).size());
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282 vector<float>::iterator ve = (*vv)[idx].end();
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283 vi=(*vv)[idx].begin(); // shingle iterator
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284 // First feature vector in shingle
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285 if(idx==0){
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286 while(vi!=ve)
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287 *vi++ = (float)(*fvp++);
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288 }
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289 // Not first feature vector in shingle
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290 else{
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291 vector<float>::iterator ui=(*vv)[idx-1].begin() + dim; // previous shingle iterator
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292 // Previous seqLen-1 dim-vectors
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293 while(vi!=ve-dim)
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294 *vi++=*ui++;
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295 // Move data pointer to next feature vector
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296 fvp += ( seqLen + idx - 1 ) * dim ;
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297 // New d-vector
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298 while(vi!=ve)
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299 *vi++ = (float)(*fvp++);
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300 }
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301 }
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302
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303 // norm shingles
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304 // in-place norming, no deletions
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305 // If using power, return number of shingles above power threshold
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306 int audioDB::index_norm_shingles(vector<vector<float> >* vv, double* snp, double* spp){
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307 int z = 0; // number of above-threshold shingles
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308 float l2norm;
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309 double power;
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310 float oneOverRadius = 1./(float)sqrt(radius); // Passed radius is really radius^2
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311 float oneOverSqrtl2NormDivRad = oneOverRadius;
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312 if(!spp)
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mas01mc@292
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313 error("LSH indexing and query requires a power feature using -w or -W");
|
mas01mc@292
|
314 Uns32T shingleSize = sequenceLength*dbH->dim;
|
mas01mc@292
|
315 for(Uns32T a=0; a<(*vv).size(); a++){
|
mas01mc@292
|
316 l2norm = (float)(*snp++);
|
mas01mc@292
|
317 if(audioDB::normalizedDistance)
|
mas01mc@292
|
318 oneOverSqrtl2NormDivRad = (1./l2norm)*oneOverRadius;
|
mas01mc@292
|
319
|
mas01mc@292
|
320 for(Uns32T b=0; b < shingleSize ; b++)
|
mas01mc@292
|
321 (*vv)[a][b]*=oneOverSqrtl2NormDivRad;
|
mas01mc@292
|
322
|
mas01mc@292
|
323 power = *spp++;
|
mas01mc@292
|
324 if(use_absolute_threshold){
|
mas01mc@292
|
325 if ( power >= absolute_threshold )
|
mas01mc@292
|
326 z++;
|
mas01mc@292
|
327 }
|
mas01mc@292
|
328 else
|
mas01mc@292
|
329 z++;
|
mas01mc@292
|
330 }
|
mas01mc@292
|
331 return z;
|
mas01mc@292
|
332 }
|
mas01mc@292
|
333
|
mas01mc@292
|
334
|
mas01mc@292
|
335 /*********************** LSH retrieval ****************************/
|
mas01mc@292
|
336
|
mas01mc@292
|
337
|
mas01mc@292
|
338 // return true if indexed query performed else return false
|
mas01mc@292
|
339 int audioDB::index_init_query(const char* dbName){
|
mas01mc@292
|
340
|
mas01mc@292
|
341 if(!(index_exists(dbName, radius, sequenceLength)))
|
mas01mc@292
|
342 return false;
|
mas01mc@292
|
343
|
mas01mc@292
|
344 char* indexName = index_get_name(dbName, radius, sequenceLength);
|
mas01mc@292
|
345
|
mas01mc@292
|
346 // Test to see if file exists
|
mas01mc@292
|
347 if((lshfid = open (indexName, O_RDONLY)) < 0){
|
mas01mc@292
|
348 delete[] indexName;
|
mas01mc@292
|
349 return false;
|
mas01mc@292
|
350 }
|
mas01mc@292
|
351
|
mas01mc@292
|
352 printf("INDEX: initializing header\n");
|
mas01mc@292
|
353
|
mas01mc@292
|
354 lsh = new LSH(indexName, false); // Get the header only here
|
mas01mc@292
|
355 assert(lsh);
|
mas01mc@292
|
356 sequenceLength = lsh->get_lshHeader()->dataDim / dbH->dim; // shingleDim / vectorDim
|
mas01mc@292
|
357
|
mas01mc@292
|
358
|
mas01mc@292
|
359 if( fabs(radius - lsh->get_radius())>fabs(O2_DISTANCE_TOLERANCE))
|
mas01mc@292
|
360 printf("*** Warning: adb_radius (%f) != lsh_radius (%f) ***\n", radius, lsh->get_radius());
|
mas01mc@292
|
361
|
mas01mc@292
|
362 printf("INDEX: dim %d\n", dbH->dim);
|
mas01mc@292
|
363 printf("INDEX: R %f\n", lsh->get_radius());
|
mas01mc@292
|
364 printf("INDEX: seqlen %d\n", sequenceLength);
|
mas01mc@292
|
365 printf("INDEX: w %f\n", lsh->get_lshHeader()->get_binWidth());
|
mas01mc@292
|
366 printf("INDEX: k %d\n", lsh->get_lshHeader()->get_numFuns());
|
mas01mc@292
|
367 printf("INDEX: L (m*(m-1))/2 %d\n", lsh->get_lshHeader()->get_numTables());
|
mas01mc@292
|
368 printf("INDEX: N %d\n", lsh->get_lshHeader()->get_numRows());
|
mas01mc@292
|
369 printf("INDEX: s %d\n", index_to_trackID(lsh->get_maxp()));
|
mas01mc@292
|
370 printf("INDEX: Opened LSH index file %s\n", indexName);
|
mas01mc@292
|
371 fflush(stdout);
|
mas01mc@292
|
372
|
mas01mc@292
|
373 // Check to see if we are loading hash tables into core, and do so if true
|
mas01mc@292
|
374 if((lsh->get_lshHeader()->flags&O2_SERIAL_FILEFORMAT2) || lsh_in_core){
|
mas01mc@292
|
375 printf("INDEX: loading hash tables into core %s\n", (lsh->get_lshHeader()->flags&O2_SERIAL_FILEFORMAT2)?"FORMAT2":"FORMAT1");
|
mas01mc@292
|
376 delete lsh;
|
mas01mc@292
|
377 lsh = new LSH(indexName, true);
|
mas01mc@292
|
378 }
|
mas01mc@292
|
379
|
mas01mc@292
|
380 delete[] indexName;
|
mas01mc@292
|
381 return true;
|
mas01mc@292
|
382 }
|
mas01mc@292
|
383
|
mas01mc@292
|
384 // *Static* approximate NN point reporter callback method for lshlib
|
mas01mc@292
|
385 void audioDB::index_add_point_approximate(void* instancePtr, Uns32T pointID, Uns32T qpos, float dist){
|
mas01mc@292
|
386 assert(instancePtr); // We need an instance for this callback
|
mas01mc@292
|
387 audioDB* myself = (audioDB*) instancePtr; // Use explicit cast to recover "this" instance
|
mas01mc@292
|
388 Uns32T trackID = index_to_trackID(pointID);
|
mas01mc@292
|
389 Uns32T spos = index_to_trackPos(pointID);
|
mas01mc@292
|
390 // Skip identity in query_from_key
|
mas01mc@292
|
391 if( !myself->query_from_key || (myself->query_from_key && ( trackID != myself->query_from_key_index )) )
|
mas01mc@292
|
392 myself->reporter->add_point(trackID, qpos, spos, dist);
|
mas01mc@292
|
393 }
|
mas01mc@292
|
394
|
mas01mc@292
|
395 // *Static* exact NN point reporter callback method for lshlib
|
mas01mc@292
|
396 // Maintain a queue of points to pass to query_points() for exact evaluation
|
mas01mc@292
|
397 void audioDB::index_add_point_exact(void* instancePtr, Uns32T pointID, Uns32T qpos, float dist){
|
mas01mc@292
|
398 assert(instancePtr); // We need an instance for this callback
|
mas01mc@292
|
399 audioDB* myself = (audioDB*) instancePtr; // Use explicit cast to recover "this" instance
|
mas01mc@292
|
400 Uns32T trackID = index_to_trackID(pointID);
|
mas01mc@292
|
401 Uns32T spos = index_to_trackPos(pointID);
|
mas01mc@292
|
402 // Skip identity in query_from_key
|
mas01mc@292
|
403 if( !myself->query_from_key || (myself->query_from_key && ( trackID != myself->query_from_key_index )) )
|
mas01mc@292
|
404 myself->index_insert_exact_evaluation_queue(trackID, qpos, spos);
|
mas01mc@292
|
405 }
|
mas01mc@292
|
406
|
mas01mc@292
|
407 void audioDB::initialize_exact_evalutation_queue(){
|
mas01mc@292
|
408 if(exact_evaluation_queue)
|
mas01mc@292
|
409 delete exact_evaluation_queue;
|
mas01mc@292
|
410 exact_evaluation_queue = new priority_queue<PointPair, std::vector<PointPair>, std::less<PointPair> >;
|
mas01mc@292
|
411 }
|
mas01mc@292
|
412
|
mas01mc@292
|
413 void audioDB::index_insert_exact_evaluation_queue(Uns32T trackID, Uns32T qpos, Uns32T spos){
|
mas01mc@292
|
414 PointPair p(trackID, qpos, spos);
|
mas01mc@292
|
415 exact_evaluation_queue->push(p);
|
mas01mc@292
|
416 }
|
mas01mc@292
|
417
|
mas01mc@292
|
418 // return 0: if index does not exist
|
mas01mc@292
|
419 // return nqv: if index exists
|
mas01mc@292
|
420 int audioDB::index_query_loop(const char* dbName, Uns32T queryIndex) {
|
mas01mc@292
|
421
|
mas01mc@292
|
422 unsigned int numVectors;
|
mas01mc@292
|
423 double *query, *query_data;
|
mas01mc@292
|
424 double *qNorm, *qnPtr, *qPower = 0, *qpPtr = 0;
|
mas01mc@292
|
425 double meanQdur;
|
mas01mc@292
|
426 void (*add_point_func)(void*,Uns32T,Uns32T,float);
|
mas01mc@292
|
427
|
mas01mc@292
|
428 // Set the point-reporter callback based on the value of lsh_exact
|
mas01mc@292
|
429 if(lsh_exact){
|
mas01mc@292
|
430 initialize_exact_evalutation_queue();
|
mas01mc@292
|
431 add_point_func = &index_add_point_exact;
|
mas01mc@292
|
432 }
|
mas01mc@292
|
433 else
|
mas01mc@292
|
434 add_point_func = &index_add_point_approximate;
|
mas01mc@292
|
435
|
mas01mc@292
|
436 if(!index_init_query(dbName)) // sets-up LSH index structures for querying
|
mas01mc@292
|
437 return 0;
|
mas01mc@292
|
438
|
mas01mc@292
|
439 char* database = index_get_name(dbName, radius, sequenceLength);
|
mas01mc@292
|
440
|
mas01mc@292
|
441 if(query_from_key)
|
mas01mc@292
|
442 set_up_query_from_key(&query_data, &query, &qNorm, &qnPtr, &qPower, &qpPtr, &meanQdur, &numVectors, queryIndex);
|
mas01mc@292
|
443 else
|
mas01mc@292
|
444 set_up_query(&query_data, &query, &qNorm, &qnPtr, &qPower, &qpPtr, &meanQdur, &numVectors); // get query vectors
|
mas01mc@292
|
445
|
mas01mc@292
|
446 VERB_LOG(1, "retrieving tracks...");
|
mas01mc@292
|
447
|
mas01mc@292
|
448 assert(pointNN>0 && pointNN<=O2_MAXNN);
|
mas01mc@292
|
449 assert(trackNN>0 && trackNN<=O2_MAXNN);
|
mas01mc@292
|
450
|
mas01mc@292
|
451 gettimeofday(&tv1, NULL);
|
mas01mc@292
|
452 // query vector index
|
mas01mc@292
|
453 Uns32T Nq = (numVectors>O2_MAXTRACKLEN?O2_MAXTRACKLEN:numVectors) - sequenceLength + 1;
|
mas01mc@292
|
454 vv = index_initialize_shingles(Nq); // allocate memory to copy query vectors to shingles
|
mas01mc@292
|
455 cout << "Nq=" << Nq; cout.flush();
|
mas01mc@292
|
456 // Construct shingles from query features
|
mas01mc@292
|
457 for( Uns32T pointID = 0 ; pointID < Nq ; pointID++ )
|
mas01mc@292
|
458 index_make_shingle(vv, pointID, query, dbH->dim, sequenceLength);
|
mas01mc@292
|
459
|
mas01mc@292
|
460 // Normalize query vectors
|
mas01mc@292
|
461 Uns32T numVecsAboveThreshold = index_norm_shingles( vv, qnPtr, qpPtr );
|
mas01mc@292
|
462 cout << " Nq'=" << numVecsAboveThreshold << endl; cout.flush();
|
mas01mc@292
|
463
|
mas01mc@292
|
464 // Nq contains number of inspected points in query file,
|
mas01mc@292
|
465 // numVecsAboveThreshold is number of points with power >= absolute_threshold
|
mas01mc@292
|
466 double* qpp = qpPtr; // Keep original qpPtr for possible exact evaluation
|
mas01mc@292
|
467 if(usingQueryPoint && numVecsAboveThreshold){
|
mas01mc@292
|
468 if((lsh->get_lshHeader()->flags&O2_SERIAL_FILEFORMAT2) || lsh_in_core)
|
mas01mc@292
|
469 lsh->retrieve_point((*vv)[0], queryPoint, add_point_func, (void*)this);
|
mas01mc@292
|
470 else
|
mas01mc@292
|
471 lsh->serial_retrieve_point(database, (*vv)[0], queryPoint, add_point_func, (void*)this);
|
mas01mc@292
|
472 }
|
mas01mc@292
|
473 else if(numVecsAboveThreshold)
|
mas01mc@292
|
474 for( Uns32T pointID = 0 ; pointID < Nq; pointID++ )
|
mas01mc@292
|
475 if(!use_absolute_threshold || (use_absolute_threshold && (*qpp++ >= absolute_threshold)))
|
mas01mc@292
|
476 if((lsh->get_lshHeader()->flags&O2_SERIAL_FILEFORMAT2) || lsh_in_core)
|
mas01mc@292
|
477 lsh->retrieve_point((*vv)[pointID], pointID, add_point_func, (void*)this);
|
mas01mc@292
|
478 else
|
mas01mc@292
|
479 lsh->serial_retrieve_point(database, (*vv)[pointID], pointID, add_point_func, (void*)this);
|
mas01mc@292
|
480
|
mas01mc@292
|
481 if(lsh_exact)
|
mas01mc@292
|
482 // Perform exact distance computation on point pairs in exact_evaluation_queue
|
mas01mc@292
|
483 query_loop_points(query, qnPtr, qpPtr, meanQdur, numVectors);
|
mas01mc@292
|
484
|
mas01mc@292
|
485 gettimeofday(&tv2,NULL);
|
mas01mc@292
|
486 VERB_LOG(1,"elapsed time: %ld msec\n",
|
mas01mc@292
|
487 (tv2.tv_sec*1000 + tv2.tv_usec/1000) -
|
mas01mc@292
|
488 (tv1.tv_sec*1000 + tv1.tv_usec/1000))
|
mas01mc@292
|
489
|
mas01mc@292
|
490 // Close the index file
|
mas01mc@292
|
491 close(lshfid);
|
mas01mc@292
|
492
|
mas01mc@292
|
493 // Clean up
|
mas01mc@292
|
494 if(query_data)
|
mas01mc@292
|
495 delete[] query_data;
|
mas01mc@292
|
496 if(qNorm)
|
mas01mc@292
|
497 delete[] qNorm;
|
mas01mc@292
|
498 if(qPower)
|
mas01mc@292
|
499 delete[] qPower;
|
mas01mc@292
|
500 if(database)
|
mas01mc@292
|
501 delete[] database;
|
mas01mc@292
|
502
|
mas01mc@292
|
503 return Nq;
|
mas01mc@292
|
504 }
|
mas01mc@292
|
505
|