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1 #include "audioDB.h"
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2
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3 #if defined(O2_DEBUG)
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4 void sigterm_action(int signal, siginfo_t *info, void *context) {
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5 exit(128+signal);
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6 }
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7
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8 void sighup_action(int signal, siginfo_t *info, void *context) {
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9 // FIXME: reread any configuration files
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10 }
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11 #endif
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12
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13 void audioDB::error(const char* a, const char* b, const char *sysFunc) {
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14 if(isServer) {
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15 /* FIXME: I think this is leaky -- we never delete err. actually
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16 deleting it is tricky, though; it gets placed into some
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17 soap-internal struct with uncertain extent... -- CSR,
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18 2007-10-01 */
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19 char *err = new char[256]; /* FIXME: overflows */
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20 snprintf(err, 255, "%s: %s\n%s", a, b, sysFunc ? strerror(errno) : "");
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21 /* FIXME: actually we could usefully do with a properly structured
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22 type, so that we can throw separate faultstring and details.
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23 -- CSR, 2007-10-01 */
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24 throw(err);
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25 } else {
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26 cerr << a << ": " << b << endl;
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27 if (sysFunc) {
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28 perror(sysFunc);
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29 }
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30 exit(1);
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31 }
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32 }
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33
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34 audioDB::audioDB(const unsigned argc, char* const argv[]): O2_AUDIODB_INITIALIZERS
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35 {
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36 if(processArgs(argc, argv)<0){
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37 printf("No command found.\n");
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38 cmdline_parser_print_version ();
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39 if (strlen(gengetopt_args_info_purpose) > 0)
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40 printf("%s\n", gengetopt_args_info_purpose);
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41 printf("%s\n", gengetopt_args_info_usage);
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42 printf("%s\n", gengetopt_args_info_help[1]);
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43 printf("%s\n", gengetopt_args_info_help[2]);
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44 printf("%s\n", gengetopt_args_info_help[0]);
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45 exit(1);
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46 }
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47
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48 if(O2_ACTION(COM_SERVER))
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49 startServer();
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50
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51 else if(O2_ACTION(COM_CREATE))
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52 create(dbName);
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53
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54 else if(O2_ACTION(COM_INSERT))
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55 insert(dbName, inFile);
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56
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57 else if(O2_ACTION(COM_BATCHINSERT))
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58 batchinsert(dbName, inFile);
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59
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60 else if(O2_ACTION(COM_QUERY))
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61 if(isClient)
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62 ws_query(dbName, inFile, (char*)hostport);
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63 else
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64 query(dbName, inFile);
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65
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66 else if(O2_ACTION(COM_STATUS))
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67 if(isClient)
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68 ws_status(dbName,(char*)hostport);
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69 else
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70 status(dbName);
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71
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72 else if(O2_ACTION(COM_L2NORM))
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73 l2norm(dbName);
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74
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75 else if(O2_ACTION(COM_DUMP))
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76 dump(dbName);
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77
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78 else
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79 error("Unrecognized command",command);
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80 }
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81
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82 audioDB::audioDB(const unsigned argc, char* const argv[], adb__queryResult *adbQueryResult): O2_AUDIODB_INITIALIZERS
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83 {
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84 try {
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85 processArgs(argc, argv);
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86 isServer = 1; // FIXME: Hack
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87 assert(O2_ACTION(COM_QUERY));
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88 query(dbName, inFile, adbQueryResult);
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89 } catch(char *err) {
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90 cleanup();
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91 throw(err);
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92 }
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93 }
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94
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95 audioDB::audioDB(const unsigned argc, char* const argv[], adb__statusResult *adbStatusResult): O2_AUDIODB_INITIALIZERS
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96 {
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97 try {
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98 processArgs(argc, argv);
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99 isServer = 1; // FIXME: Hack
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100 assert(O2_ACTION(COM_STATUS));
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101 status(dbName, adbStatusResult);
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102 } catch(char *err) {
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103 cleanup();
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104 throw(err);
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105 }
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106 }
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107
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108 void audioDB::cleanup() {
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109 cmdline_parser_free(&args_info);
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110 if(indata)
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111 munmap(indata,statbuf.st_size);
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112 if(db)
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113 munmap(db,O2_DEFAULTDBSIZE);
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114 if(dbfid>0)
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115 close(dbfid);
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116 if(infid>0)
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117 close(infid);
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118 if(dbH)
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119 delete dbH;
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120 }
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121
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122 audioDB::~audioDB(){
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123 cleanup();
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124 }
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125
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126 int audioDB::processArgs(const unsigned argc, char* const argv[]){
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127
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128 if(argc<2){
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129 cmdline_parser_print_version ();
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130 if (strlen(gengetopt_args_info_purpose) > 0)
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131 printf("%s\n", gengetopt_args_info_purpose);
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132 printf("%s\n", gengetopt_args_info_usage);
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133 printf("%s\n", gengetopt_args_info_help[1]);
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134 printf("%s\n", gengetopt_args_info_help[2]);
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135 printf("%s\n", gengetopt_args_info_help[0]);
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136 exit(0);
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137 }
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138
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139 if (cmdline_parser (argc, argv, &args_info) != 0)
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140 exit(1) ;
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141
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142 if(args_info.help_given){
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143 cmdline_parser_print_help();
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144 exit(0);
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145 }
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146
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147 if(args_info.verbosity_given){
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148 verbosity=args_info.verbosity_arg;
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149 if(verbosity<0 || verbosity>10){
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150 cerr << "Warning: verbosity out of range, setting to 1" << endl;
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151 verbosity=1;
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152 }
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153 }
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154
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155 if(args_info.radius_given){
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156 radius=args_info.radius_arg;
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157 if(radius<=0 || radius>1000000000){
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158 error("radius out of range");
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159 }
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160 else
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161 if(verbosity>3) {
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162 cerr << "Setting radius to " << radius << endl;
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163 }
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164 }
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165
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166 if(args_info.SERVER_given){
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167 command=COM_SERVER;
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168 port=args_info.SERVER_arg;
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169 if(port<100 || port > 100000)
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170 error("port out of range");
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171 isServer=1;
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172 #if defined(O2_DEBUG)
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173 struct sigaction sa;
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174 sa.sa_sigaction = sigterm_action;
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175 sa.sa_flags = SA_SIGINFO | SA_RESTART | SA_NODEFER;
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176 sigaction(SIGTERM, &sa, NULL);
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177 sa.sa_sigaction = sighup_action;
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178 sa.sa_flags = SA_SIGINFO | SA_RESTART | SA_NODEFER;
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179 sigaction(SIGHUP, &sa, NULL);
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180 #endif
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181 return 0;
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182 }
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183
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184 // No return on client command, find database command
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185 if(args_info.client_given){
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186 command=COM_CLIENT;
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187 hostport=args_info.client_arg;
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188 isClient=1;
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189 }
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190
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mas01cr@105
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191 if(args_info.NEW_given){
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192 command=COM_CREATE;
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193 dbName=args_info.database_arg;
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194 return 0;
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195 }
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196
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mas01cr@105
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197 if(args_info.STATUS_given){
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mas01cr@105
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198 command=COM_STATUS;
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199 dbName=args_info.database_arg;
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200 return 0;
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mas01cr@105
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201 }
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202
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mas01cr@105
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203 if(args_info.DUMP_given){
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204 command=COM_DUMP;
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205 dbName=args_info.database_arg;
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mas01cr@105
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206 return 0;
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mas01cr@105
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207 }
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208
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mas01cr@105
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209 if(args_info.L2NORM_given){
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210 command=COM_L2NORM;
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211 dbName=args_info.database_arg;
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mas01cr@105
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212 return 0;
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mas01cr@105
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213 }
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mas01cr@0
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214
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mas01cr@105
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215 if(args_info.INSERT_given){
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mas01cr@105
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216 command=COM_INSERT;
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217 dbName=args_info.database_arg;
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mas01cr@105
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218 inFile=args_info.features_arg;
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mas01cr@105
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219 if(args_info.key_given)
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mas01cr@105
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220 key=args_info.key_arg;
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mas01cr@105
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221 if(args_info.times_given){
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mas01cr@105
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222 timesFileName=args_info.times_arg;
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mas01cr@105
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223 if(strlen(timesFileName)>0){
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mas01cr@105
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224 if(!(timesFile = new ifstream(timesFileName,ios::in)))
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mas01cr@105
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225 error("Could not open times file for reading", timesFileName);
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mas01cr@105
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226 usingTimes=1;
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mas01cr@105
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227 }
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mas01cr@105
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228 }
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mas01cr@105
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229 return 0;
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mas01cr@105
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230 }
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mas01cr@105
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231
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mas01cr@105
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232 if(args_info.BATCHINSERT_given){
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233 command=COM_BATCHINSERT;
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mas01cr@105
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234 dbName=args_info.database_arg;
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mas01cr@105
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235 inFile=args_info.featureList_arg;
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mas01cr@105
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236 if(args_info.keyList_given)
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237 key=args_info.keyList_arg; // INCONSISTENT NO CHECK
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238
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mas01cr@105
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239 /* TO DO: REPLACE WITH
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240 if(args_info.keyList_given){
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mas01mc@18
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241 trackFileName=args_info.keyList_arg;
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mas01mc@18
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242 if(strlen(trackFileName)>0 && !(trackFile = new ifstream(trackFileName,ios::in)))
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mas01mc@18
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243 error("Could not open keyList file for reading",trackFileName);
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mas01cr@0
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244 }
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mas01cr@0
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245 AND UPDATE BATCHINSERT()
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mas01cr@105
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246 */
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mas01cr@105
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247
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mas01cr@105
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248 if(args_info.timesList_given){
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mas01cr@105
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249 timesFileName=args_info.timesList_arg;
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mas01cr@105
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250 if(strlen(timesFileName)>0){
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mas01cr@105
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251 if(!(timesFile = new ifstream(timesFileName,ios::in)))
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mas01cr@105
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252 error("Could not open timesList file for reading", timesFileName);
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mas01cr@105
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253 usingTimes=1;
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mas01cr@105
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254 }
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mas01cr@105
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255 }
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mas01cr@105
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256 return 0;
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mas01cr@105
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257 }
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mas01cr@105
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258
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mas01cr@105
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259 // Query command and arguments
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mas01cr@105
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260 if(args_info.QUERY_given){
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mas01cr@105
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261 command=COM_QUERY;
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mas01cr@105
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262 dbName=args_info.database_arg;
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mas01cr@105
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263 inFile=args_info.features_arg;
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mas01cr@105
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264
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mas01cr@105
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265 if(args_info.keyList_given){
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mas01cr@105
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266 trackFileName=args_info.keyList_arg;
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mas01cr@105
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267 if(strlen(trackFileName)>0 && !(trackFile = new ifstream(trackFileName,ios::in)))
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mas01cr@105
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268 error("Could not open keyList file for reading",trackFileName);
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mas01cr@105
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269 }
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mas01cr@105
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270
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mas01cr@105
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271 if(args_info.times_given){
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mas01cr@105
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272 timesFileName=args_info.times_arg;
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mas01cr@105
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273 if(strlen(timesFileName)>0){
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mas01cr@105
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274 if(!(timesFile = new ifstream(timesFileName,ios::in)))
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mas01cr@105
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275 error("Could not open times file for reading", timesFileName);
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mas01cr@105
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276 usingTimes=1;
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mas01cr@105
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277 }
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mas01cr@105
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278 }
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mas01cr@105
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279
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mas01cr@105
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280 // query type
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mas01cr@105
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281 if(strncmp(args_info.QUERY_arg, "track", MAXSTR)==0)
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mas01cr@105
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282 queryType=O2_TRACK_QUERY;
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mas01cr@105
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283 else if(strncmp(args_info.QUERY_arg, "point", MAXSTR)==0)
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mas01cr@105
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284 queryType=O2_POINT_QUERY;
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mas01cr@105
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285 else if(strncmp(args_info.QUERY_arg, "sequence", MAXSTR)==0)
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mas01cr@105
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286 queryType=O2_SEQUENCE_QUERY;
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mas01cr@105
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287 else
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mas01cr@105
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288 error("unsupported query type",args_info.QUERY_arg);
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mas01cr@105
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289
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mas01cr@105
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290 if(!args_info.exhaustive_flag){
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mas01cr@105
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291 queryPoint = args_info.qpoint_arg;
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mas01cr@105
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292 usingQueryPoint=1;
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mas01cr@105
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293 if(queryPoint<0 || queryPoint >10000)
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mas01cr@105
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294 error("queryPoint out of range: 0 <= queryPoint <= 10000");
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mas01cr@105
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295 }
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mas01cr@105
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296
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mas01cr@105
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297 pointNN = args_info.pointnn_arg;
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mas01cr@105
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298 if(pointNN < 1 || pointNN > 1000) {
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mas01cr@105
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299 error("pointNN out of range: 1 <= pointNN <= 1000");
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mas01cr@105
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300 }
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mas01cr@105
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301 trackNN = args_info.resultlength_arg;
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mas01cr@105
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302 if(trackNN < 1 || trackNN > 1000) {
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mas01cr@105
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303 error("resultlength out of range: 1 <= resultlength <= 1000");
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mas01cr@105
|
304 }
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mas01cr@105
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305 sequenceLength = args_info.sequencelength_arg;
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mas01cr@105
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306 if(sequenceLength < 1 || sequenceLength > 1000) {
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mas01cr@105
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307 error("seqlen out of range: 1 <= seqlen <= 1000");
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mas01cr@105
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308 }
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mas01cr@105
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309 sequenceHop = args_info.sequencehop_arg;
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mas01cr@105
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310 if(sequenceHop < 1 || sequenceHop > 1000) {
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mas01cr@105
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311 error("seqhop out of range: 1 <= seqhop <= 1000");
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mas01cr@105
|
312 }
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mas01cr@105
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313 return 0;
|
mas01cr@105
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314 }
|
mas01cr@105
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315 return -1; // no command found
|
mas01cr@0
|
316 }
|
mas01cr@0
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317
|
mas01cr@30
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318 void audioDB::get_lock(int fd, bool exclusive) {
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mas01cr@30
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319 struct flock lock;
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mas01cr@30
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320 int status;
|
mas01cr@30
|
321
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mas01cr@30
|
322 lock.l_type = exclusive ? F_WRLCK : F_RDLCK;
|
mas01cr@30
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323 lock.l_whence = SEEK_SET;
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mas01cr@30
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324 lock.l_start = 0;
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mas01cr@30
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325 lock.l_len = 0; /* "the whole file" */
|
mas01cr@30
|
326
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mas01cr@30
|
327 retry:
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mas01cr@30
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328 do {
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mas01cr@30
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329 status = fcntl(fd, F_SETLKW, &lock);
|
mas01cr@30
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330 } while (status != 0 && errno == EINTR);
|
mas01cr@30
|
331
|
mas01cr@30
|
332 if (status) {
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mas01cr@30
|
333 if (errno == EAGAIN) {
|
mas01cr@30
|
334 sleep(1);
|
mas01cr@30
|
335 goto retry;
|
mas01cr@30
|
336 } else {
|
mas01cr@32
|
337 error("fcntl lock error", "", "fcntl");
|
mas01cr@30
|
338 }
|
mas01cr@30
|
339 }
|
mas01cr@30
|
340 }
|
mas01cr@30
|
341
|
mas01cr@30
|
342 void audioDB::release_lock(int fd) {
|
mas01cr@30
|
343 struct flock lock;
|
mas01cr@30
|
344 int status;
|
mas01cr@30
|
345
|
mas01cr@30
|
346 lock.l_type = F_UNLCK;
|
mas01cr@30
|
347 lock.l_whence = SEEK_SET;
|
mas01cr@30
|
348 lock.l_start = 0;
|
mas01cr@30
|
349 lock.l_len = 0;
|
mas01cr@30
|
350
|
mas01cr@30
|
351 status = fcntl(fd, F_SETLKW, &lock);
|
mas01cr@30
|
352
|
mas01cr@30
|
353 if (status)
|
mas01cr@32
|
354 error("fcntl unlock error", "", "fcntl");
|
mas01cr@30
|
355 }
|
mas01cr@30
|
356
|
mas01cr@120
|
357 /* Make a new database.
|
mas01cr@120
|
358
|
mas01cr@120
|
359 The database consists of:
|
mas01cr@120
|
360
|
mas01cr@120
|
361 * a header (see dbTableHeader struct definition);
|
mas01cr@120
|
362 * keyTable: list of keys of tracks;
|
mas01cr@120
|
363 * trackTable: Maps implicit feature index to a feature vector
|
mas01cr@120
|
364 matrix (sizes of tracks)
|
mas01cr@120
|
365 * featureTable: Lots of doubles;
|
mas01cr@120
|
366 * timesTable: time points for each feature vector;
|
mas01cr@120
|
367 * l2normTable: squared l2norms for each feature vector.
|
mas01cr@120
|
368 */
|
mas01cr@0
|
369 void audioDB::create(const char* dbName){
|
mas01cr@31
|
370 if ((dbfid = open (dbName, O_RDWR|O_CREAT|O_EXCL, S_IRUSR|S_IWUSR|S_IRGRP|S_IWGRP|S_IROTH|S_IWOTH)) < 0)
|
mas01cr@32
|
371 error("Can't create database file", dbName, "open");
|
mas01cr@30
|
372 get_lock(dbfid, 1);
|
mas01cr@0
|
373
|
mas01cr@0
|
374 // go to the location corresponding to the last byte
|
mas01cr@0
|
375 if (lseek (dbfid, O2_DEFAULTDBSIZE - 1, SEEK_SET) == -1)
|
mas01cr@32
|
376 error("lseek error in db file", "", "lseek");
|
mas01cr@0
|
377
|
mas01cr@0
|
378 // write a dummy byte at the last location
|
mas01cr@0
|
379 if (write (dbfid, "", 1) != 1)
|
mas01cr@32
|
380 error("write error", "", "write");
|
mas01cr@0
|
381
|
mas01cr@0
|
382 // mmap the output file
|
mas01cr@60
|
383 if(verbosity) {
|
mas01cr@0
|
384 cerr << "header size:" << O2_HEADERSIZE << endl;
|
mas01cr@60
|
385 }
|
mas01cr@0
|
386 if ((db = (char*) mmap(0, O2_DEFAULTDBSIZE, PROT_READ | PROT_WRITE,
|
mas01cr@0
|
387 MAP_SHARED, dbfid, 0)) == (caddr_t) -1)
|
mas01cr@32
|
388 error("mmap error for creating database", "", "mmap");
|
mas01cr@0
|
389
|
mas01cr@0
|
390 dbH = new dbTableHeaderT();
|
mas01cr@0
|
391 assert(dbH);
|
mas01cr@0
|
392
|
mas01cr@0
|
393 // Initialize header
|
mas01cr@108
|
394 dbH->magic = O2_MAGIC;
|
mas01cr@108
|
395 dbH->version = O2_FORMAT_VERSION;
|
mas01cr@108
|
396 dbH->numFiles = 0;
|
mas01cr@108
|
397 dbH->dim = 0;
|
mas01cr@108
|
398 dbH->flags = 0;
|
mas01cr@108
|
399 dbH->length = 0;
|
mas01cr@108
|
400 dbH->fileTableOffset = ALIGN_UP(O2_HEADERSIZE, 8);
|
mas01cr@108
|
401 dbH->trackTableOffset = ALIGN_UP(dbH->fileTableOffset + O2_FILETABLESIZE*O2_MAXFILES, 8);
|
mas01cr@108
|
402 dbH->dataOffset = ALIGN_UP(dbH->trackTableOffset + O2_TRACKTABLESIZE*O2_MAXFILES, 8);
|
mas01cr@108
|
403 dbH->l2normTableOffset = ALIGN_DOWN(O2_DEFAULTDBSIZE - O2_MAXFILES*O2_MEANNUMVECTORS*sizeof(double), 8);
|
mas01cr@108
|
404 dbH->timesTableOffset = ALIGN_DOWN(dbH->l2normTableOffset - O2_MAXFILES*O2_MEANNUMVECTORS*sizeof(double), 8);
|
mas01cr@0
|
405
|
mas01cr@0
|
406 memcpy (db, dbH, O2_HEADERSIZE);
|
mas01cr@60
|
407 if(verbosity) {
|
mas01cr@0
|
408 cerr << COM_CREATE << " " << dbName << endl;
|
mas01cr@60
|
409 }
|
mas01cr@0
|
410 }
|
mas01cr@0
|
411
|
mas01cr@0
|
412
|
mas01cr@0
|
413 void audioDB::drop(){
|
mas01cr@108
|
414 // FIXME: drop something? Should we even allow this?
|
mas01cr@0
|
415 }
|
mas01cr@0
|
416
|
mas01cr@120
|
417 void audioDB::initDBHeader(const char* dbName, bool forWrite) {
|
mas01cr@106
|
418 if ((dbfid = open(dbName, forWrite ? O_RDWR : O_RDONLY)) < 0) {
|
mas01cr@32
|
419 error("Can't open database file", dbName, "open");
|
mas01cr@106
|
420 }
|
mas01cr@120
|
421
|
mas01cr@30
|
422 get_lock(dbfid, forWrite);
|
mas01cr@0
|
423 // Get the database header info
|
mas01cr@0
|
424 dbH = new dbTableHeaderT();
|
mas01cr@0
|
425 assert(dbH);
|
mas01cr@0
|
426
|
mas01cr@106
|
427 if(read(dbfid, (char *) dbH, O2_HEADERSIZE) != O2_HEADERSIZE) {
|
mas01cr@106
|
428 error("error reading db header", dbName, "read");
|
mas01cr@106
|
429 }
|
mas01cr@0
|
430
|
mas01cr@108
|
431 if(dbH->magic == O2_OLD_MAGIC) {
|
mas01cr@108
|
432 // FIXME: if anyone ever complains, write the program to convert
|
mas01cr@108
|
433 // from the old audioDB format to the new...
|
mas01cr@108
|
434 error("database file has old O2 header", dbName);
|
mas01cr@108
|
435 }
|
mas01cr@0
|
436
|
mas01cr@106
|
437 if(dbH->magic != O2_MAGIC) {
|
mas01cr@106
|
438 cerr << "expected: " << O2_MAGIC << ", got: " << dbH->magic << endl;
|
mas01cr@108
|
439 error("database file has incorrect header", dbName);
|
mas01cr@108
|
440 }
|
mas01cr@108
|
441
|
mas01cr@108
|
442 if(dbH->version != O2_FORMAT_VERSION) {
|
mas01cr@108
|
443 error("database file has incorect version", dbName);
|
mas01cr@0
|
444 }
|
mas01cr@0
|
445
|
mas01cr@120
|
446 // mmap the database file
|
mas01cr@120
|
447 if ((db = (char*) mmap(0, O2_DEFAULTDBSIZE, PROT_READ | (forWrite ? PROT_WRITE : 0),
|
mas01cr@120
|
448 MAP_SHARED, dbfid, 0)) == (caddr_t) -1)
|
mas01cr@120
|
449 error("mmap error for initting tables of database", "", "mmap");
|
mas01cr@120
|
450
|
mas01cr@120
|
451 // Make some handy tables with correct types
|
mas01cr@120
|
452 fileTable = (char *) (db + dbH->fileTableOffset);
|
mas01cr@120
|
453 trackTable = (unsigned *) (db + dbH->trackTableOffset);
|
mas01cr@120
|
454 dataBuf = (double *) (db + dbH->dataOffset);
|
mas01cr@120
|
455 l2normTable = (double *) (db + dbH->l2normTableOffset);
|
mas01cr@120
|
456 timesTable = (double *) (db + dbH->timesTableOffset);
|
mas01cr@120
|
457 }
|
mas01cr@120
|
458
|
mas01cr@120
|
459 void audioDB::initTables(const char* dbName, bool forWrite, const char* inFile = 0) {
|
mas01cr@120
|
460
|
mas01cr@120
|
461 initDBHeader(dbName, forWrite);
|
mas01cr@120
|
462
|
mas01cr@120
|
463 // open the input file
|
mas01cr@120
|
464 if (inFile && (infid = open(inFile, O_RDONLY)) < 0) {
|
mas01cr@120
|
465 error("can't open input file for reading", inFile, "open");
|
mas01cr@120
|
466 }
|
mas01cr@120
|
467 // find size of input file
|
mas01cr@120
|
468 if (inFile && fstat(infid, &statbuf) < 0) {
|
mas01cr@120
|
469 error("fstat error finding size of input", inFile, "fstat");
|
mas01cr@120
|
470 }
|
mas01cr@0
|
471 if(inFile)
|
mas01cr@106
|
472 if(dbH->dim == 0 && dbH->length == 0) // empty database
|
mas01cr@106
|
473 // initialize with input dimensionality
|
mas01cr@106
|
474 read(infid, &dbH->dim, sizeof(unsigned));
|
mas01cr@0
|
475 else {
|
mas01cr@0
|
476 unsigned test;
|
mas01cr@106
|
477 read(infid, &test, sizeof(unsigned));
|
mas01cr@106
|
478 if(dbH->dim != test) {
|
mas01cr@106
|
479 cerr << "error: expected dimension: " << dbH->dim << ", got : " << test <<endl;
|
mas01cr@0
|
480 error("feature dimensions do not match database table dimensions");
|
mas01cr@0
|
481 }
|
mas01cr@0
|
482 }
|
mas01cr@0
|
483
|
mas01cr@0
|
484 // mmap the input file
|
mas01cr@0
|
485 if (inFile && (indata = (char*)mmap (0, statbuf.st_size, PROT_READ, MAP_SHARED, infid, 0))
|
mas01cr@0
|
486 == (caddr_t) -1)
|
mas01cr@106
|
487 error("mmap error for input", inFile, "mmap");
|
mas01cr@0
|
488 }
|
mas01cr@0
|
489
|
mas01cr@0
|
490 void audioDB::insert(const char* dbName, const char* inFile){
|
mas01cr@0
|
491
|
mas01cr@27
|
492 initTables(dbName, 1, inFile);
|
mas01cr@0
|
493
|
mas01cr@0
|
494 if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
|
mas01cr@0
|
495 error("Must use timestamps with timestamped database","use --times");
|
mas01cr@0
|
496
|
mas01cr@0
|
497 // Check that there is room for at least 1 more file
|
mas01cr@0
|
498 if((char*)timesTable<((char*)dataBuf+dbH->length+statbuf.st_size-sizeof(int)))
|
mas01cr@0
|
499 error("No more room in database","insert failed: reason database is full.");
|
mas01cr@0
|
500
|
mas01cr@0
|
501 if(!key)
|
mas01cr@0
|
502 key=inFile;
|
mas01cr@0
|
503 // Linear scan of filenames check for pre-existing feature
|
mas01cr@0
|
504 unsigned alreadyInserted=0;
|
mas01cr@0
|
505 for(unsigned k=0; k<dbH->numFiles; k++)
|
mas01cr@0
|
506 if(strncmp(fileTable + k*O2_FILETABLESIZE, key, strlen(key))==0){
|
mas01cr@0
|
507 alreadyInserted=1;
|
mas01cr@0
|
508 break;
|
mas01cr@0
|
509 }
|
mas01cr@0
|
510
|
mas01cr@0
|
511 if(alreadyInserted){
|
mas01cr@60
|
512 if(verbosity) {
|
mas01cr@0
|
513 cerr << "Warning: key already exists in database, ignoring: " <<inFile << endl;
|
mas01cr@60
|
514 }
|
mas01cr@0
|
515 return;
|
mas01cr@0
|
516 }
|
mas01cr@0
|
517
|
mas01mc@18
|
518 // Make a track index table of features to file indexes
|
mas01cr@0
|
519 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
|
mas01cr@0
|
520 if(!numVectors){
|
mas01cr@60
|
521 if(verbosity) {
|
mas01cr@0
|
522 cerr << "Warning: ignoring zero-length feature vector file:" << key << endl;
|
mas01cr@60
|
523 }
|
mas01cr@0
|
524 // CLEAN UP
|
mas01cr@0
|
525 munmap(indata,statbuf.st_size);
|
mas01cr@0
|
526 munmap(db,O2_DEFAULTDBSIZE);
|
mas01cr@0
|
527 close(infid);
|
mas01cr@0
|
528 return;
|
mas01cr@0
|
529 }
|
mas01cr@0
|
530
|
mas01cr@0
|
531 strncpy(fileTable + dbH->numFiles*O2_FILETABLESIZE, key, strlen(key));
|
mas01cr@0
|
532
|
mas01cr@0
|
533 unsigned insertoffset = dbH->length;// Store current state
|
mas01cr@0
|
534
|
mas01cr@0
|
535 // Check times status and insert times from file
|
mas01cr@0
|
536 unsigned timesoffset=insertoffset/(dbH->dim*sizeof(double));
|
mas01cr@0
|
537 double* timesdata=timesTable+timesoffset;
|
mas01cr@0
|
538 assert(timesdata+numVectors<l2normTable);
|
mas01cr@0
|
539 insertTimeStamps(numVectors, timesFile, timesdata);
|
mas01cr@0
|
540
|
mas01cr@0
|
541 // Increment file count
|
mas01cr@0
|
542 dbH->numFiles++;
|
mas01cr@0
|
543
|
mas01cr@0
|
544 // Update Header information
|
mas01cr@0
|
545 dbH->length+=(statbuf.st_size-sizeof(int));
|
mas01cr@0
|
546
|
mas01cr@0
|
547 // Copy the header back to the database
|
mas01cr@0
|
548 memcpy (db, dbH, sizeof(dbTableHeaderT));
|
mas01cr@0
|
549
|
mas01mc@18
|
550 // Update track to file index map
|
mas01mc@18
|
551 //memcpy (db+trackTableOffset+(dbH->numFiles-1)*sizeof(unsigned), &numVectors, sizeof(unsigned));
|
mas01mc@18
|
552 memcpy (trackTable+dbH->numFiles-1, &numVectors, sizeof(unsigned));
|
mas01cr@0
|
553
|
mas01cr@0
|
554 // Update the feature database
|
mas01cr@108
|
555 memcpy (db+dbH->dataOffset+insertoffset, indata+sizeof(int), statbuf.st_size-sizeof(int));
|
mas01cr@0
|
556
|
mas01cr@0
|
557 // Norm the vectors on input if the database is already L2 normed
|
mas01cr@0
|
558 if(dbH->flags & O2_FLAG_L2NORM)
|
mas01cr@108
|
559 unitNormAndInsertL2((double*)(db+dbH->dataOffset+insertoffset), dbH->dim, numVectors, 1); // append
|
mas01cr@0
|
560
|
mas01cr@0
|
561 // Report status
|
mas01cr@0
|
562 status(dbName);
|
mas01cr@60
|
563 if(verbosity) {
|
mas01cr@0
|
564 cerr << COM_INSERT << " " << dbName << " " << numVectors << " vectors "
|
mas01cr@0
|
565 << (statbuf.st_size-sizeof(int)) << " bytes." << endl;
|
mas01cr@60
|
566 }
|
mas01cr@0
|
567
|
mas01cr@0
|
568 // CLEAN UP
|
mas01cr@0
|
569 munmap(indata,statbuf.st_size);
|
mas01cr@0
|
570 close(infid);
|
mas01cr@0
|
571 }
|
mas01cr@0
|
572
|
mas01cr@0
|
573 void audioDB::insertTimeStamps(unsigned numVectors, ifstream* timesFile, double* timesdata){
|
mas01cr@0
|
574 unsigned numtimes=0;
|
mas01cr@0
|
575 if(usingTimes){
|
mas01cr@0
|
576 if(!(dbH->flags & O2_FLAG_TIMES) && !dbH->numFiles)
|
mas01cr@0
|
577 dbH->flags=dbH->flags|O2_FLAG_TIMES;
|
mas01cr@0
|
578 else if(!(dbH->flags&O2_FLAG_TIMES)){
|
mas01cr@0
|
579 cerr << "Warning: timestamp file used with non time-stamped database: ignoring timestamps" << endl;
|
mas01cr@0
|
580 usingTimes=0;
|
mas01cr@0
|
581 }
|
mas01cr@0
|
582
|
mas01cr@0
|
583 if(!timesFile->is_open()){
|
mas01cr@0
|
584 if(dbH->flags & O2_FLAG_TIMES){
|
mas01cr@0
|
585 munmap(indata,statbuf.st_size);
|
mas01cr@0
|
586 munmap(db,O2_DEFAULTDBSIZE);
|
mas01cr@0
|
587 error("problem opening times file on timestamped database",timesFileName);
|
mas01cr@0
|
588 }
|
mas01cr@0
|
589 else{
|
mas01cr@0
|
590 cerr << "Warning: problem opening times file. But non-timestamped database, so ignoring times file." << endl;
|
mas01cr@0
|
591 usingTimes=0;
|
mas01cr@0
|
592 }
|
mas01cr@0
|
593 }
|
mas01cr@0
|
594
|
mas01cr@0
|
595 // Process time file
|
mas01cr@0
|
596 if(usingTimes){
|
mas01cr@0
|
597 do{
|
mas01cr@0
|
598 *timesFile>>*timesdata++;
|
mas01cr@0
|
599 if(timesFile->eof())
|
mas01cr@0
|
600 break;
|
mas01cr@0
|
601 numtimes++;
|
mas01cr@0
|
602 }while(!timesFile->eof() && numtimes<numVectors);
|
mas01cr@0
|
603 if(!timesFile->eof()){
|
mas01cr@0
|
604 double dummy;
|
mas01cr@0
|
605 do{
|
mas01cr@0
|
606 *timesFile>>dummy;
|
mas01cr@0
|
607 if(timesFile->eof())
|
mas01cr@0
|
608 break;
|
mas01cr@0
|
609 numtimes++;
|
mas01cr@0
|
610 }while(!timesFile->eof());
|
mas01cr@0
|
611 }
|
mas01cr@0
|
612 if(numtimes<numVectors || numtimes>numVectors+2){
|
mas01cr@0
|
613 munmap(indata,statbuf.st_size);
|
mas01cr@0
|
614 munmap(db,O2_DEFAULTDBSIZE);
|
mas01cr@0
|
615 close(infid);
|
mas01cr@0
|
616 cerr << "expected " << numVectors << " found " << numtimes << endl;
|
mas01cr@0
|
617 error("Times file is incorrect length for features file",inFile);
|
mas01cr@0
|
618 }
|
mas01cr@60
|
619 if(verbosity>2) {
|
mas01cr@0
|
620 cerr << "numtimes: " << numtimes << endl;
|
mas01cr@60
|
621 }
|
mas01cr@0
|
622 }
|
mas01cr@0
|
623 }
|
mas01cr@0
|
624 }
|
mas01cr@0
|
625
|
mas01cr@120
|
626 void audioDB::batchinsert(const char* dbName, const char* inFile) {
|
mas01cr@0
|
627
|
mas01cr@120
|
628 initDBHeader(dbName, true);
|
mas01cr@0
|
629
|
mas01cr@0
|
630 if(!key)
|
mas01cr@0
|
631 key=inFile;
|
mas01cr@0
|
632 ifstream *filesIn = 0;
|
mas01cr@0
|
633 ifstream *keysIn = 0;
|
mas01cr@0
|
634 ifstream* thisTimesFile = 0;
|
mas01cr@0
|
635
|
mas01cr@0
|
636 if(!(filesIn = new ifstream(inFile)))
|
mas01cr@0
|
637 error("Could not open batch in file", inFile);
|
mas01cr@0
|
638 if(key && key!=inFile)
|
mas01cr@0
|
639 if(!(keysIn = new ifstream(key)))
|
mas01cr@0
|
640 error("Could not open batch key file",key);
|
mas01cr@0
|
641
|
mas01cr@0
|
642 if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
|
mas01cr@0
|
643 error("Must use timestamps with timestamped database","use --times");
|
mas01cr@0
|
644
|
mas01cr@0
|
645 unsigned totalVectors=0;
|
mas01cr@0
|
646 char *thisKey = new char[MAXSTR];
|
mas01cr@0
|
647 char *thisFile = new char[MAXSTR];
|
mas01cr@0
|
648 char *thisTimesFileName = new char[MAXSTR];
|
mas01cr@120
|
649
|
mas01cr@0
|
650 do{
|
mas01cr@0
|
651 filesIn->getline(thisFile,MAXSTR);
|
mas01cr@0
|
652 if(key && key!=inFile)
|
mas01cr@0
|
653 keysIn->getline(thisKey,MAXSTR);
|
mas01cr@0
|
654 else
|
mas01cr@0
|
655 thisKey = thisFile;
|
mas01cr@0
|
656 if(usingTimes)
|
mas01cr@0
|
657 timesFile->getline(thisTimesFileName,MAXSTR);
|
mas01cr@0
|
658
|
mas01cr@0
|
659 if(filesIn->eof())
|
mas01cr@0
|
660 break;
|
mas01cr@0
|
661
|
mas01cr@0
|
662 // open the input file
|
mas01cr@0
|
663 if (thisFile && (infid = open (thisFile, O_RDONLY)) < 0)
|
mas01cr@32
|
664 error("can't open feature file for reading", thisFile, "open");
|
mas01cr@0
|
665
|
mas01cr@0
|
666 // find size of input file
|
mas01cr@0
|
667 if (thisFile && fstat (infid,&statbuf) < 0)
|
mas01cr@32
|
668 error("fstat error finding size of input", "", "fstat");
|
mas01cr@0
|
669
|
mas01cr@0
|
670 // Check that there is room for at least 1 more file
|
mas01cr@0
|
671 if((char*)timesTable<((char*)dataBuf+(dbH->length+statbuf.st_size-sizeof(int))))
|
mas01cr@0
|
672 error("No more room in database","insert failed: reason database is full.");
|
mas01cr@0
|
673
|
mas01cr@0
|
674 if(thisFile)
|
mas01cr@0
|
675 if(dbH->dim==0 && dbH->length==0) // empty database
|
mas01cr@0
|
676 read(infid,&dbH->dim,sizeof(unsigned)); // initialize with input dimensionality
|
mas01cr@0
|
677 else {
|
mas01cr@0
|
678 unsigned test;
|
mas01cr@0
|
679 read(infid,&test,sizeof(unsigned));
|
mas01cr@0
|
680 if(dbH->dim!=test){
|
mas01cr@0
|
681 cerr << "error: expected dimension: " << dbH->dim << ", got :" << test <<endl;
|
mas01cr@0
|
682 error("feature dimensions do not match database table dimensions");
|
mas01cr@0
|
683 }
|
mas01cr@0
|
684 }
|
mas01cr@0
|
685
|
mas01cr@0
|
686 // mmap the input file
|
mas01cr@0
|
687 if (thisFile && (indata = (char*)mmap (0, statbuf.st_size, PROT_READ, MAP_SHARED, infid, 0))
|
mas01cr@0
|
688 == (caddr_t) -1)
|
mas01cr@32
|
689 error("mmap error for input", "", "mmap");
|
mas01cr@0
|
690
|
mas01cr@0
|
691
|
mas01cr@0
|
692 // Linear scan of filenames check for pre-existing feature
|
mas01cr@0
|
693 unsigned alreadyInserted=0;
|
mas01cr@0
|
694
|
mas01cr@0
|
695 for(unsigned k=0; k<dbH->numFiles; k++)
|
mas01cr@0
|
696 if(strncmp(fileTable + k*O2_FILETABLESIZE, thisKey, strlen(thisKey))==0){
|
mas01cr@0
|
697 alreadyInserted=1;
|
mas01cr@0
|
698 break;
|
mas01cr@0
|
699 }
|
mas01cr@0
|
700
|
mas01cr@0
|
701 if(alreadyInserted){
|
mas01cr@60
|
702 if(verbosity) {
|
mas01cr@0
|
703 cerr << "Warning: key already exists in database:" << thisKey << endl;
|
mas01cr@60
|
704 }
|
mas01cr@0
|
705 }
|
mas01cr@0
|
706 else{
|
mas01cr@0
|
707
|
mas01mc@18
|
708 // Make a track index table of features to file indexes
|
mas01cr@0
|
709 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
|
mas01cr@0
|
710 if(!numVectors){
|
mas01cr@60
|
711 if(verbosity) {
|
mas01cr@0
|
712 cerr << "Warning: ignoring zero-length feature vector file:" << thisKey << endl;
|
mas01cr@60
|
713 }
|
mas01cr@0
|
714 }
|
mas01cr@0
|
715 else{
|
mas01cr@0
|
716 if(usingTimes){
|
mas01cr@0
|
717 if(timesFile->eof())
|
mas01cr@0
|
718 error("not enough timestamp files in timesList");
|
mas01cr@0
|
719 thisTimesFile=new ifstream(thisTimesFileName,ios::in);
|
mas01cr@0
|
720 if(!thisTimesFile->is_open())
|
mas01cr@0
|
721 error("Cannot open timestamp file",thisTimesFileName);
|
mas01cr@0
|
722 unsigned insertoffset=dbH->length;
|
mas01cr@0
|
723 unsigned timesoffset=insertoffset/(dbH->dim*sizeof(double));
|
mas01cr@0
|
724 double* timesdata=timesTable+timesoffset;
|
mas01cr@0
|
725 assert(timesdata+numVectors<l2normTable);
|
mas01cr@0
|
726 insertTimeStamps(numVectors,thisTimesFile,timesdata);
|
mas01cr@0
|
727 if(thisTimesFile)
|
mas01cr@0
|
728 delete thisTimesFile;
|
mas01cr@0
|
729 }
|
mas01cr@0
|
730
|
mas01cr@0
|
731 strncpy(fileTable + dbH->numFiles*O2_FILETABLESIZE, thisKey, strlen(thisKey));
|
mas01cr@0
|
732
|
mas01cr@0
|
733 unsigned insertoffset = dbH->length;// Store current state
|
mas01cr@0
|
734
|
mas01cr@0
|
735 // Increment file count
|
mas01cr@0
|
736 dbH->numFiles++;
|
mas01cr@0
|
737
|
mas01cr@0
|
738 // Update Header information
|
mas01cr@0
|
739 dbH->length+=(statbuf.st_size-sizeof(int));
|
mas01cr@0
|
740 // Copy the header back to the database
|
mas01cr@0
|
741 memcpy (db, dbH, sizeof(dbTableHeaderT));
|
mas01cr@0
|
742
|
mas01mc@18
|
743 // Update track to file index map
|
mas01mc@18
|
744 //memcpy (db+trackTableOffset+(dbH->numFiles-1)*sizeof(unsigned), &numVectors, sizeof(unsigned));
|
mas01mc@18
|
745 memcpy (trackTable+dbH->numFiles-1, &numVectors, sizeof(unsigned));
|
mas01cr@0
|
746
|
mas01cr@0
|
747 // Update the feature database
|
mas01cr@108
|
748 memcpy (db+dbH->dataOffset+insertoffset, indata+sizeof(int), statbuf.st_size-sizeof(int));
|
mas01cr@0
|
749
|
mas01cr@0
|
750 // Norm the vectors on input if the database is already L2 normed
|
mas01cr@0
|
751 if(dbH->flags & O2_FLAG_L2NORM)
|
mas01cr@108
|
752 unitNormAndInsertL2((double*)(db+dbH->dataOffset+insertoffset), dbH->dim, numVectors, 1); // append
|
mas01cr@0
|
753
|
mas01cr@0
|
754 totalVectors+=numVectors;
|
mas01cr@0
|
755 }
|
mas01cr@0
|
756 }
|
mas01cr@0
|
757 // CLEAN UP
|
mas01cr@0
|
758 munmap(indata,statbuf.st_size);
|
mas01cr@0
|
759 close(infid);
|
mas01cr@0
|
760 }while(!filesIn->eof());
|
mas01mc@12
|
761
|
mas01cr@60
|
762 if(verbosity) {
|
mas01cr@0
|
763 cerr << COM_BATCHINSERT << " " << dbName << " " << totalVectors << " vectors "
|
mas01cr@0
|
764 << totalVectors*dbH->dim*sizeof(double) << " bytes." << endl;
|
mas01cr@60
|
765 }
|
mas01cr@0
|
766
|
mas01cr@0
|
767 // Report status
|
mas01cr@0
|
768 status(dbName);
|
mas01cr@0
|
769 }
|
mas01cr@0
|
770
|
mas01cr@76
|
771 // FIXME: this can't propagate the sequence length argument (used for
|
mas01cr@76
|
772 // dudCount). See adb__status() definition for the other half of
|
mas01cr@76
|
773 // this. -- CSR, 2007-10-01
|
mas01cr@0
|
774 void audioDB::ws_status(const char*dbName, char* hostport){
|
mas01cr@0
|
775 struct soap soap;
|
mas01cr@76
|
776 adb__statusResult adbStatusResult;
|
mas01cr@0
|
777
|
mas01cr@0
|
778 // Query an existing adb database
|
mas01cr@0
|
779 soap_init(&soap);
|
mas01cr@76
|
780 if(soap_call_adb__status(&soap,hostport,NULL,(char*)dbName,adbStatusResult)==SOAP_OK) {
|
mas01cr@76
|
781 cout << "numFiles = " << adbStatusResult.numFiles << endl;
|
mas01cr@76
|
782 cout << "dim = " << adbStatusResult.dim << endl;
|
mas01cr@76
|
783 cout << "length = " << adbStatusResult.length << endl;
|
mas01cr@76
|
784 cout << "dudCount = " << adbStatusResult.dudCount << endl;
|
mas01cr@76
|
785 cout << "nullCount = " << adbStatusResult.nullCount << endl;
|
mas01cr@76
|
786 cout << "flags = " << adbStatusResult.flags << endl;
|
mas01cr@76
|
787 } else {
|
mas01cr@0
|
788 soap_print_fault(&soap,stderr);
|
mas01cr@76
|
789 }
|
mas01cr@0
|
790
|
mas01cr@0
|
791 soap_destroy(&soap);
|
mas01cr@0
|
792 soap_end(&soap);
|
mas01cr@0
|
793 soap_done(&soap);
|
mas01cr@0
|
794 }
|
mas01cr@0
|
795
|
mas01mc@18
|
796 void audioDB::ws_query(const char*dbName, const char *trackKey, const char* hostport){
|
mas01cr@0
|
797 struct soap soap;
|
mas01cr@0
|
798 adb__queryResult adbQueryResult;
|
mas01cr@0
|
799
|
mas01cr@0
|
800 soap_init(&soap);
|
mas01cr@0
|
801 if(soap_call_adb__query(&soap,hostport,NULL,
|
mas01mc@18
|
802 (char*)dbName,(char*)trackKey,(char*)trackFileName,(char*)timesFileName,
|
mas01mc@18
|
803 queryType, queryPoint, pointNN, trackNN, sequenceLength, adbQueryResult)==SOAP_OK){
|
mas01cr@0
|
804 //std::cerr << "result list length:" << adbQueryResult.__sizeRlist << std::endl;
|
mas01cr@0
|
805 for(int i=0; i<adbQueryResult.__sizeRlist; i++)
|
mas01cr@0
|
806 std::cout << adbQueryResult.Rlist[i] << " " << adbQueryResult.Dist[i]
|
mas01cr@0
|
807 << " " << adbQueryResult.Qpos[i] << " " << adbQueryResult.Spos[i] << std::endl;
|
mas01cr@0
|
808 }
|
mas01cr@0
|
809 else
|
mas01cr@0
|
810 soap_print_fault(&soap,stderr);
|
mas01cr@0
|
811
|
mas01cr@0
|
812 soap_destroy(&soap);
|
mas01cr@0
|
813 soap_end(&soap);
|
mas01cr@0
|
814 soap_done(&soap);
|
mas01cr@0
|
815
|
mas01cr@0
|
816 }
|
mas01cr@0
|
817
|
mas01cr@0
|
818
|
mas01cr@76
|
819 void audioDB::status(const char* dbName, adb__statusResult *adbStatusResult){
|
mas01cr@0
|
820 if(!dbH)
|
mas01cr@27
|
821 initTables(dbName, 0, 0);
|
mas01cr@0
|
822
|
mas01cr@0
|
823 unsigned dudCount=0;
|
mas01cr@0
|
824 unsigned nullCount=0;
|
mas01cr@0
|
825 for(unsigned k=0; k<dbH->numFiles; k++){
|
mas01mc@18
|
826 if(trackTable[k]<sequenceLength){
|
mas01cr@0
|
827 dudCount++;
|
mas01mc@18
|
828 if(!trackTable[k])
|
mas01cr@76
|
829 nullCount++;
|
mas01cr@0
|
830 }
|
mas01cr@0
|
831 }
|
mas01cr@76
|
832
|
mas01cr@76
|
833 if(adbStatusResult == 0) {
|
mas01cr@76
|
834
|
mas01cr@76
|
835 // Update Header information
|
mas01cr@76
|
836 cout << "num files:" << dbH->numFiles << endl;
|
mas01cr@76
|
837 cout << "data dim:" << dbH->dim <<endl;
|
mas01cr@76
|
838 if(dbH->dim>0){
|
mas01cr@76
|
839 cout << "total vectors:" << dbH->length/(sizeof(double)*dbH->dim)<<endl;
|
mas01cr@108
|
840 cout << "vectors available:" << (dbH->timesTableOffset-(dbH->dataOffset+dbH->length))/(sizeof(double)*dbH->dim) << endl;
|
mas01cr@76
|
841 }
|
mas01cr@108
|
842 cout << "total bytes:" << dbH->length << " (" << (100.0*dbH->length)/(dbH->timesTableOffset-dbH->dataOffset) << "%)" << endl;
|
mas01cr@108
|
843 cout << "bytes available:" << dbH->timesTableOffset-(dbH->dataOffset+dbH->length) << " (" <<
|
mas01cr@108
|
844 (100.0*(dbH->timesTableOffset-(dbH->dataOffset+dbH->length)))/(dbH->timesTableOffset-dbH->dataOffset) << "%)" << endl;
|
mas01cr@76
|
845 cout << "flags:" << dbH->flags << endl;
|
mas01cr@76
|
846
|
mas01cr@76
|
847 cout << "null count: " << nullCount << " small sequence count " << dudCount-nullCount << endl;
|
mas01cr@76
|
848 } else {
|
mas01cr@76
|
849 adbStatusResult->numFiles = dbH->numFiles;
|
mas01cr@76
|
850 adbStatusResult->dim = dbH->dim;
|
mas01cr@76
|
851 adbStatusResult->length = dbH->length;
|
mas01cr@76
|
852 adbStatusResult->dudCount = dudCount;
|
mas01cr@76
|
853 adbStatusResult->nullCount = nullCount;
|
mas01cr@76
|
854 adbStatusResult->flags = dbH->flags;
|
mas01cr@76
|
855 }
|
mas01cr@0
|
856 }
|
mas01cr@0
|
857
|
mas01cr@0
|
858 void audioDB::dump(const char* dbName){
|
mas01cr@0
|
859 if(!dbH)
|
mas01cr@27
|
860 initTables(dbName, 0, 0);
|
mas01cr@0
|
861
|
mas01mc@17
|
862 for(unsigned k=0, j=0; k<dbH->numFiles; k++){
|
mas01mc@18
|
863 cout << fileTable+k*O2_FILETABLESIZE << " " << trackTable[k] << endl;
|
mas01mc@18
|
864 j+=trackTable[k];
|
mas01mc@17
|
865 }
|
mas01cr@0
|
866
|
mas01cr@0
|
867 status(dbName);
|
mas01cr@0
|
868 }
|
mas01cr@0
|
869
|
mas01cr@0
|
870 void audioDB::l2norm(const char* dbName){
|
mas01cr@50
|
871 initTables(dbName, true, 0);
|
mas01cr@0
|
872 if(dbH->length>0){
|
mas01cr@0
|
873 unsigned numVectors = dbH->length/(sizeof(double)*dbH->dim);
|
mas01cr@0
|
874 unitNormAndInsertL2(dataBuf, dbH->dim, numVectors, 0); // No append
|
mas01cr@0
|
875 }
|
mas01cr@0
|
876 // Update database flags
|
mas01cr@0
|
877 dbH->flags = dbH->flags|O2_FLAG_L2NORM;
|
mas01cr@0
|
878 memcpy (db, dbH, O2_HEADERSIZE);
|
mas01cr@0
|
879 }
|
mas01cr@0
|
880
|
mas01cr@0
|
881
|
mas01cr@0
|
882
|
mas01cr@0
|
883 void audioDB::query(const char* dbName, const char* inFile, adb__queryResult *adbQueryResult){
|
mas01cr@0
|
884 switch(queryType){
|
mas01cr@105
|
885 case O2_POINT_QUERY:
|
mas01cr@0
|
886 pointQuery(dbName, inFile, adbQueryResult);
|
mas01cr@0
|
887 break;
|
mas01cr@105
|
888 case O2_SEQUENCE_QUERY:
|
mas01mc@17
|
889 if(radius==0)
|
mas01mc@20
|
890 trackSequenceQueryNN(dbName, inFile, adbQueryResult);
|
mas01mc@17
|
891 else
|
mas01mc@20
|
892 trackSequenceQueryRad(dbName, inFile, adbQueryResult);
|
mas01cr@0
|
893 break;
|
mas01cr@105
|
894 case O2_TRACK_QUERY:
|
mas01mc@18
|
895 trackPointQuery(dbName, inFile, adbQueryResult);
|
mas01cr@0
|
896 break;
|
mas01cr@0
|
897 default:
|
mas01cr@0
|
898 error("unrecognized queryType in query()");
|
mas01cr@0
|
899
|
mas01cr@0
|
900 }
|
mas01cr@0
|
901 }
|
mas01cr@0
|
902
|
mas01cr@0
|
903 //return ordinal position of key in keyTable
|
mas01cr@0
|
904 unsigned audioDB::getKeyPos(char* key){
|
mas01cr@0
|
905 for(unsigned k=0; k<dbH->numFiles; k++)
|
mas01cr@0
|
906 if(strncmp(fileTable + k*O2_FILETABLESIZE, key, strlen(key))==0)
|
mas01cr@0
|
907 return k;
|
mas01cr@0
|
908 error("Key not found",key);
|
mas01cr@0
|
909 return O2_ERR_KEYNOTFOUND;
|
mas01cr@0
|
910 }
|
mas01cr@0
|
911
|
mas01cr@0
|
912 // Basic point query engine
|
mas01cr@0
|
913 void audioDB::pointQuery(const char* dbName, const char* inFile, adb__queryResult *adbQueryResult){
|
mas01cr@0
|
914
|
mas01cr@27
|
915 initTables(dbName, 0, inFile);
|
mas01cr@0
|
916
|
mas01cr@0
|
917 // For each input vector, find the closest pointNN matching output vectors and report
|
mas01cr@0
|
918 // we use stdout in this stub version
|
mas01cr@0
|
919 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
|
mas01cr@0
|
920
|
mas01cr@0
|
921 double* query = (double*)(indata+sizeof(int));
|
mas01cr@0
|
922 double* data = dataBuf;
|
mas01cr@0
|
923 double* queryCopy = 0;
|
mas01cr@0
|
924
|
mas01cr@0
|
925 if( dbH->flags & O2_FLAG_L2NORM ){
|
mas01cr@0
|
926 // Make a copy of the query
|
mas01cr@0
|
927 queryCopy = new double[numVectors*dbH->dim];
|
mas01cr@0
|
928 qNorm = new double[numVectors];
|
mas01cr@0
|
929 assert(queryCopy&&qNorm);
|
mas01cr@0
|
930 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
|
mas01cr@0
|
931 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
|
mas01cr@0
|
932 query = queryCopy;
|
mas01cr@0
|
933 }
|
mas01cr@0
|
934
|
mas01cr@0
|
935 // Make temporary dynamic memory for results
|
mas01cr@0
|
936 assert(pointNN>0 && pointNN<=O2_MAXNN);
|
mas01cr@0
|
937 double distances[pointNN];
|
mas01cr@0
|
938 unsigned qIndexes[pointNN];
|
mas01cr@0
|
939 unsigned sIndexes[pointNN];
|
mas01cr@0
|
940 for(unsigned k=0; k<pointNN; k++){
|
mas01cr@62
|
941 distances[k]=-DBL_MAX;
|
mas01cr@0
|
942 qIndexes[k]=~0;
|
mas01cr@0
|
943 sIndexes[k]=~0;
|
mas01cr@0
|
944 }
|
mas01cr@0
|
945
|
mas01cr@0
|
946 unsigned j=numVectors;
|
mas01cr@0
|
947 unsigned k,l,n;
|
mas01cr@0
|
948 double thisDist;
|
mas01cr@0
|
949
|
mas01cr@0
|
950 unsigned totalVecs=dbH->length/(dbH->dim*sizeof(double));
|
mas01cr@0
|
951 double meanQdur = 0;
|
mas01cr@0
|
952 double* timesdata = 0;
|
mas01cr@0
|
953 double* dbdurs = 0;
|
mas01cr@0
|
954
|
mas01cr@0
|
955 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
|
mas01cr@0
|
956 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
|
mas01cr@0
|
957 usingTimes=0;
|
mas01cr@0
|
958 }
|
mas01cr@0
|
959
|
mas01cr@0
|
960 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
|
mas01cr@0
|
961 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
|
mas01cr@0
|
962
|
mas01cr@0
|
963 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
|
mas01cr@0
|
964 timesdata = new double[numVectors];
|
mas01cr@0
|
965 insertTimeStamps(numVectors, timesFile, timesdata);
|
mas01cr@0
|
966 // Calculate durations of points
|
mas01cr@0
|
967 for(k=0; k<numVectors-1; k++){
|
mas01cr@0
|
968 timesdata[k]=timesdata[k+1]-timesdata[k];
|
mas01cr@0
|
969 meanQdur+=timesdata[k];
|
mas01cr@0
|
970 }
|
mas01cr@0
|
971 meanQdur/=k;
|
mas01cr@0
|
972 // Individual exhaustive timepoint durations
|
mas01cr@0
|
973 dbdurs = new double[totalVecs];
|
mas01cr@0
|
974 for(k=0; k<totalVecs-1; k++)
|
mas01cr@0
|
975 dbdurs[k]=timesTable[k+1]-timesTable[k];
|
mas01cr@0
|
976 j--; // decrement vector counter by one
|
mas01cr@0
|
977 }
|
mas01cr@0
|
978
|
mas01cr@0
|
979 if(usingQueryPoint)
|
mas01cr@0
|
980 if(queryPoint>numVectors-1)
|
mas01cr@0
|
981 error("queryPoint > numVectors in query");
|
mas01cr@0
|
982 else{
|
mas01cr@60
|
983 if(verbosity>1) {
|
mas01cr@0
|
984 cerr << "query point: " << queryPoint << endl; cerr.flush();
|
mas01cr@60
|
985 }
|
mas01cr@0
|
986 query=query+queryPoint*dbH->dim;
|
mas01cr@0
|
987 numVectors=queryPoint+1;
|
mas01cr@0
|
988 j=1;
|
mas01cr@0
|
989 }
|
mas01cr@0
|
990
|
mas01cr@0
|
991 gettimeofday(&tv1, NULL);
|
mas01cr@0
|
992 while(j--){ // query
|
mas01cr@0
|
993 data=dataBuf;
|
mas01cr@0
|
994 k=totalVecs; // number of database vectors
|
mas01cr@0
|
995 while(k--){ // database
|
mas01cr@0
|
996 thisDist=0;
|
mas01cr@0
|
997 l=dbH->dim;
|
mas01cr@0
|
998 double* q=query;
|
mas01cr@0
|
999 while(l--)
|
mas01cr@0
|
1000 thisDist+=*q++**data++;
|
mas01cr@0
|
1001 if(!usingTimes ||
|
mas01cr@0
|
1002 (usingTimes
|
mas01cr@0
|
1003 && fabs(dbdurs[totalVecs-k-1]-timesdata[numVectors-j-1])<timesdata[numVectors-j-1]*timesTol)){
|
mas01cr@0
|
1004 n=pointNN;
|
mas01cr@0
|
1005 while(n--){
|
mas01cr@0
|
1006 if(thisDist>=distances[n]){
|
mas01cr@0
|
1007 if((n==0 || thisDist<=distances[n-1])){
|
mas01cr@0
|
1008 // Copy all values above up the queue
|
mas01cr@0
|
1009 for( l=pointNN-1 ; l >= n+1 ; l--){
|
mas01cr@0
|
1010 distances[l]=distances[l-1];
|
mas01cr@0
|
1011 qIndexes[l]=qIndexes[l-1];
|
mas01cr@0
|
1012 sIndexes[l]=sIndexes[l-1];
|
mas01cr@0
|
1013 }
|
mas01cr@0
|
1014 distances[n]=thisDist;
|
mas01cr@0
|
1015 qIndexes[n]=numVectors-j-1;
|
mas01cr@0
|
1016 sIndexes[n]=dbH->length/(sizeof(double)*dbH->dim)-k-1;
|
mas01cr@0
|
1017 break;
|
mas01cr@0
|
1018 }
|
mas01cr@0
|
1019 }
|
mas01cr@0
|
1020 else
|
mas01cr@0
|
1021 break;
|
mas01cr@0
|
1022 }
|
mas01cr@0
|
1023 }
|
mas01cr@0
|
1024 }
|
mas01cr@0
|
1025 // Move query pointer to next query point
|
mas01cr@0
|
1026 query+=dbH->dim;
|
mas01cr@0
|
1027 }
|
mas01cr@0
|
1028
|
mas01cr@0
|
1029 gettimeofday(&tv2, NULL);
|
mas01cr@60
|
1030 if(verbosity>1) {
|
mas01cr@0
|
1031 cerr << endl << " elapsed time:" << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
|
mas01cr@60
|
1032 }
|
mas01cr@0
|
1033
|
mas01cr@0
|
1034 if(adbQueryResult==0){
|
mas01cr@0
|
1035 // Output answer
|
mas01cr@0
|
1036 // Loop over nearest neighbours
|
mas01cr@0
|
1037 for(k=0; k < pointNN; k++){
|
mas01cr@0
|
1038 // Scan for key
|
mas01mc@18
|
1039 unsigned cumTrack=0;
|
mas01cr@0
|
1040 for(l=0 ; l<dbH->numFiles; l++){
|
mas01mc@18
|
1041 cumTrack+=trackTable[l];
|
mas01mc@18
|
1042 if(sIndexes[k]<cumTrack){
|
mas01cr@0
|
1043 cout << fileTable+l*O2_FILETABLESIZE << " " << distances[k] << " " << qIndexes[k] << " "
|
mas01mc@18
|
1044 << sIndexes[k]+trackTable[l]-cumTrack << endl;
|
mas01cr@0
|
1045 break;
|
mas01cr@0
|
1046 }
|
mas01cr@0
|
1047 }
|
mas01cr@0
|
1048 }
|
mas01cr@0
|
1049 }
|
mas01cr@0
|
1050 else{ // Process Web Services Query
|
mas01cr@89
|
1051 int listLen;
|
mas01cr@89
|
1052 for(k = 0; k < pointNN; k++) {
|
mas01cr@89
|
1053 if(distances[k] == -DBL_MAX)
|
mas01cr@89
|
1054 break;
|
mas01cr@89
|
1055 }
|
mas01cr@89
|
1056 listLen = k;
|
mas01cr@89
|
1057
|
mas01cr@0
|
1058 adbQueryResult->__sizeRlist=listLen;
|
mas01cr@0
|
1059 adbQueryResult->__sizeDist=listLen;
|
mas01cr@0
|
1060 adbQueryResult->__sizeQpos=listLen;
|
mas01cr@0
|
1061 adbQueryResult->__sizeSpos=listLen;
|
mas01cr@0
|
1062 adbQueryResult->Rlist= new char*[listLen];
|
mas01cr@0
|
1063 adbQueryResult->Dist = new double[listLen];
|
mas01cr@86
|
1064 adbQueryResult->Qpos = new unsigned int[listLen];
|
mas01cr@86
|
1065 adbQueryResult->Spos = new unsigned int[listLen];
|
mas01cr@59
|
1066 for(k=0; k<(unsigned)adbQueryResult->__sizeRlist; k++){
|
mas01cr@0
|
1067 adbQueryResult->Rlist[k]=new char[O2_MAXFILESTR];
|
mas01cr@0
|
1068 adbQueryResult->Dist[k]=distances[k];
|
mas01cr@0
|
1069 adbQueryResult->Qpos[k]=qIndexes[k];
|
mas01mc@18
|
1070 unsigned cumTrack=0;
|
mas01cr@0
|
1071 for(l=0 ; l<dbH->numFiles; l++){
|
mas01mc@18
|
1072 cumTrack+=trackTable[l];
|
mas01mc@18
|
1073 if(sIndexes[k]<cumTrack){
|
mas01cr@0
|
1074 sprintf(adbQueryResult->Rlist[k], "%s", fileTable+l*O2_FILETABLESIZE);
|
mas01cr@0
|
1075 break;
|
mas01cr@0
|
1076 }
|
mas01cr@0
|
1077 }
|
mas01mc@18
|
1078 adbQueryResult->Spos[k]=sIndexes[k]+trackTable[l]-cumTrack;
|
mas01cr@0
|
1079 }
|
mas01cr@0
|
1080 }
|
mas01cr@0
|
1081
|
mas01cr@0
|
1082 // Clean up
|
mas01cr@0
|
1083 if(queryCopy)
|
mas01cr@0
|
1084 delete queryCopy;
|
mas01cr@0
|
1085 if(qNorm)
|
mas01cr@0
|
1086 delete qNorm;
|
mas01cr@0
|
1087 if(timesdata)
|
mas01cr@0
|
1088 delete timesdata;
|
mas01cr@0
|
1089 if(dbdurs)
|
mas01cr@0
|
1090 delete dbdurs;
|
mas01cr@0
|
1091 }
|
mas01cr@0
|
1092
|
mas01mc@18
|
1093 // trackPointQuery
|
mas01mc@18
|
1094 // return the trackNN closest tracks to the query track
|
mas01mc@18
|
1095 // uses average of pointNN points per track
|
mas01mc@18
|
1096 void audioDB::trackPointQuery(const char* dbName, const char* inFile, adb__queryResult *adbQueryResult){
|
mas01cr@27
|
1097 initTables(dbName, 0, inFile);
|
mas01cr@0
|
1098
|
mas01cr@0
|
1099 // For each input vector, find the closest pointNN matching output vectors and report
|
mas01cr@0
|
1100 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
|
mas01cr@0
|
1101 double* query = (double*)(indata+sizeof(int));
|
mas01cr@0
|
1102 double* data = dataBuf;
|
mas01cr@0
|
1103 double* queryCopy = 0;
|
mas01cr@0
|
1104
|
mas01cr@0
|
1105 if( dbH->flags & O2_FLAG_L2NORM ){
|
mas01cr@0
|
1106 // Make a copy of the query
|
mas01cr@0
|
1107 queryCopy = new double[numVectors*dbH->dim];
|
mas01cr@0
|
1108 qNorm = new double[numVectors];
|
mas01cr@0
|
1109 assert(queryCopy&&qNorm);
|
mas01cr@0
|
1110 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
|
mas01cr@0
|
1111 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
|
mas01cr@0
|
1112 query = queryCopy;
|
mas01cr@0
|
1113 }
|
mas01cr@0
|
1114
|
mas01cr@0
|
1115 assert(pointNN>0 && pointNN<=O2_MAXNN);
|
mas01mc@18
|
1116 assert(trackNN>0 && trackNN<=O2_MAXNN);
|
mas01cr@0
|
1117
|
mas01cr@0
|
1118 // Make temporary dynamic memory for results
|
mas01mc@18
|
1119 double trackDistances[trackNN];
|
mas01mc@18
|
1120 unsigned trackIDs[trackNN];
|
mas01mc@18
|
1121 unsigned trackQIndexes[trackNN];
|
mas01mc@18
|
1122 unsigned trackSIndexes[trackNN];
|
mas01cr@0
|
1123
|
mas01cr@0
|
1124 double distances[pointNN];
|
mas01cr@0
|
1125 unsigned qIndexes[pointNN];
|
mas01cr@0
|
1126 unsigned sIndexes[pointNN];
|
mas01cr@0
|
1127
|
mas01cr@0
|
1128 unsigned j=numVectors; // number of query points
|
mas01mc@18
|
1129 unsigned k,l,n, track, trackOffset=0, processedTracks=0;
|
mas01cr@0
|
1130 double thisDist;
|
mas01cr@0
|
1131
|
mas01cr@0
|
1132 for(k=0; k<pointNN; k++){
|
mas01cr@66
|
1133 distances[k]=-DBL_MAX;
|
mas01cr@0
|
1134 qIndexes[k]=~0;
|
mas01cr@0
|
1135 sIndexes[k]=~0;
|
mas01cr@0
|
1136 }
|
mas01cr@0
|
1137
|
mas01mc@18
|
1138 for(k=0; k<trackNN; k++){
|
mas01cr@66
|
1139 trackDistances[k]=-DBL_MAX;
|
mas01mc@18
|
1140 trackQIndexes[k]=~0;
|
mas01mc@18
|
1141 trackSIndexes[k]=~0;
|
mas01mc@18
|
1142 trackIDs[k]=~0;
|
mas01cr@0
|
1143 }
|
mas01cr@0
|
1144
|
mas01cr@0
|
1145 double meanQdur = 0;
|
mas01cr@0
|
1146 double* timesdata = 0;
|
mas01cr@0
|
1147 double* meanDBdur = 0;
|
mas01cr@0
|
1148
|
mas01cr@0
|
1149 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
|
mas01cr@0
|
1150 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
|
mas01cr@0
|
1151 usingTimes=0;
|
mas01cr@0
|
1152 }
|
mas01cr@0
|
1153
|
mas01cr@0
|
1154 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
|
mas01cr@0
|
1155 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
|
mas01cr@0
|
1156
|
mas01cr@0
|
1157 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
|
mas01cr@0
|
1158 timesdata = new double[numVectors];
|
mas01cr@0
|
1159 insertTimeStamps(numVectors, timesFile, timesdata);
|
mas01cr@0
|
1160 // Calculate durations of points
|
mas01cr@0
|
1161 for(k=0; k<numVectors-1; k++){
|
mas01cr@0
|
1162 timesdata[k]=timesdata[k+1]-timesdata[k];
|
mas01cr@0
|
1163 meanQdur+=timesdata[k];
|
mas01cr@0
|
1164 }
|
mas01cr@0
|
1165 meanQdur/=k;
|
mas01cr@0
|
1166 meanDBdur = new double[dbH->numFiles];
|
mas01cr@0
|
1167 for(k=0; k<dbH->numFiles; k++){
|
mas01cr@0
|
1168 meanDBdur[k]=0.0;
|
mas01mc@18
|
1169 for(j=0; j<trackTable[k]-1 ; j++)
|
mas01cr@0
|
1170 meanDBdur[k]+=timesTable[j+1]-timesTable[j];
|
mas01cr@0
|
1171 meanDBdur[k]/=j;
|
mas01cr@0
|
1172 }
|
mas01cr@0
|
1173 }
|
mas01cr@0
|
1174
|
mas01cr@0
|
1175 if(usingQueryPoint)
|
mas01cr@0
|
1176 if(queryPoint>numVectors-1)
|
mas01cr@0
|
1177 error("queryPoint > numVectors in query");
|
mas01cr@0
|
1178 else{
|
mas01cr@60
|
1179 if(verbosity>1) {
|
mas01cr@0
|
1180 cerr << "query point: " << queryPoint << endl; cerr.flush();
|
mas01cr@60
|
1181 }
|
mas01cr@0
|
1182 query=query+queryPoint*dbH->dim;
|
mas01cr@0
|
1183 numVectors=queryPoint+1;
|
mas01cr@0
|
1184 }
|
mas01cr@0
|
1185
|
mas01mc@18
|
1186 // build track offset table
|
mas01mc@18
|
1187 unsigned *trackOffsetTable = new unsigned[dbH->numFiles];
|
mas01mc@18
|
1188 unsigned cumTrack=0;
|
mas01mc@18
|
1189 unsigned trackIndexOffset;
|
mas01cr@0
|
1190 for(k=0; k<dbH->numFiles;k++){
|
mas01mc@18
|
1191 trackOffsetTable[k]=cumTrack;
|
mas01mc@18
|
1192 cumTrack+=trackTable[k]*dbH->dim;
|
mas01cr@0
|
1193 }
|
mas01cr@0
|
1194
|
mas01cr@0
|
1195 char nextKey[MAXSTR];
|
mas01cr@0
|
1196
|
mas01cr@0
|
1197 gettimeofday(&tv1, NULL);
|
mas01cr@0
|
1198
|
mas01mc@18
|
1199 for(processedTracks=0, track=0 ; processedTracks < dbH->numFiles ; track++, processedTracks++){
|
mas01mc@18
|
1200 if(trackFile){
|
mas01mc@18
|
1201 if(!trackFile->eof()){
|
mas01mc@18
|
1202 trackFile->getline(nextKey,MAXSTR);
|
mas01mc@18
|
1203 track=getKeyPos(nextKey);
|
mas01cr@0
|
1204 }
|
mas01cr@0
|
1205 else
|
mas01cr@0
|
1206 break;
|
mas01cr@0
|
1207 }
|
mas01mc@18
|
1208 trackOffset=trackOffsetTable[track]; // numDoubles offset
|
mas01mc@18
|
1209 trackIndexOffset=trackOffset/dbH->dim; // numVectors offset
|
mas01cr@60
|
1210 if(verbosity>7) {
|
mas01mc@18
|
1211 cerr << track << "." << trackOffset/(dbH->dim) << "." << trackTable[track] << " | ";cerr.flush();
|
mas01cr@60
|
1212 }
|
mas01cr@0
|
1213
|
mas01cr@0
|
1214 if(dbH->flags & O2_FLAG_L2NORM)
|
mas01cr@0
|
1215 usingQueryPoint?query=queryCopy+queryPoint*dbH->dim:query=queryCopy;
|
mas01cr@0
|
1216 else
|
mas01cr@0
|
1217 usingQueryPoint?query=(double*)(indata+sizeof(int))+queryPoint*dbH->dim:query=(double*)(indata+sizeof(int));
|
mas01cr@0
|
1218 if(usingQueryPoint)
|
mas01cr@0
|
1219 j=1;
|
mas01cr@0
|
1220 else
|
mas01cr@0
|
1221 j=numVectors;
|
mas01cr@0
|
1222 while(j--){
|
mas01mc@18
|
1223 k=trackTable[track]; // number of vectors in track
|
mas01mc@18
|
1224 data=dataBuf+trackOffset; // data for track
|
mas01cr@0
|
1225 while(k--){
|
mas01cr@0
|
1226 thisDist=0;
|
mas01cr@0
|
1227 l=dbH->dim;
|
mas01cr@0
|
1228 double* q=query;
|
mas01cr@0
|
1229 while(l--)
|
mas01cr@0
|
1230 thisDist+=*q++**data++;
|
mas01cr@0
|
1231 if(!usingTimes ||
|
mas01cr@0
|
1232 (usingTimes
|
mas01mc@18
|
1233 && fabs(meanDBdur[track]-meanQdur)<meanQdur*timesTol)){
|
mas01cr@0
|
1234 n=pointNN;
|
mas01cr@0
|
1235 while(n--){
|
mas01cr@0
|
1236 if(thisDist>=distances[n]){
|
mas01cr@0
|
1237 if((n==0 || thisDist<=distances[n-1])){
|
mas01cr@0
|
1238 // Copy all values above up the queue
|
mas01cr@0
|
1239 for( l=pointNN-1 ; l > n ; l--){
|
mas01cr@0
|
1240 distances[l]=distances[l-1];
|
mas01cr@0
|
1241 qIndexes[l]=qIndexes[l-1];
|
mas01cr@0
|
1242 sIndexes[l]=sIndexes[l-1];
|
mas01cr@0
|
1243 }
|
mas01cr@0
|
1244 distances[n]=thisDist;
|
mas01cr@0
|
1245 qIndexes[n]=numVectors-j-1;
|
mas01mc@18
|
1246 sIndexes[n]=trackTable[track]-k-1;
|
mas01cr@0
|
1247 break;
|
mas01cr@0
|
1248 }
|
mas01cr@0
|
1249 }
|
mas01cr@0
|
1250 else
|
mas01cr@0
|
1251 break;
|
mas01cr@0
|
1252 }
|
mas01cr@0
|
1253 }
|
mas01mc@18
|
1254 } // track
|
mas01cr@0
|
1255 // Move query pointer to next query point
|
mas01cr@0
|
1256 query+=dbH->dim;
|
mas01cr@0
|
1257 } // query
|
mas01mc@18
|
1258 // Take the average of this track's distance
|
mas01mc@18
|
1259 // Test the track distances
|
mas01cr@0
|
1260 thisDist=0;
|
mas01cr@66
|
1261 for (n = 0; n < pointNN; n++) {
|
mas01cr@66
|
1262 if (distances[n] == -DBL_MAX) break;
|
mas01cr@66
|
1263 thisDist += distances[n];
|
mas01cr@66
|
1264 }
|
mas01cr@66
|
1265 thisDist /= n;
|
mas01cr@66
|
1266
|
mas01mc@18
|
1267 n=trackNN;
|
mas01cr@0
|
1268 while(n--){
|
mas01mc@18
|
1269 if(thisDist>=trackDistances[n]){
|
mas01mc@18
|
1270 if((n==0 || thisDist<=trackDistances[n-1])){
|
mas01cr@0
|
1271 // Copy all values above up the queue
|
mas01cr@74
|
1272 for( l=trackNN-1 ; l > n ; l--){
|
mas01mc@18
|
1273 trackDistances[l]=trackDistances[l-1];
|
mas01mc@18
|
1274 trackQIndexes[l]=trackQIndexes[l-1];
|
mas01mc@18
|
1275 trackSIndexes[l]=trackSIndexes[l-1];
|
mas01mc@18
|
1276 trackIDs[l]=trackIDs[l-1];
|
mas01cr@0
|
1277 }
|
mas01mc@18
|
1278 trackDistances[n]=thisDist;
|
mas01mc@18
|
1279 trackQIndexes[n]=qIndexes[0];
|
mas01mc@18
|
1280 trackSIndexes[n]=sIndexes[0];
|
mas01mc@18
|
1281 trackIDs[n]=track;
|
mas01cr@0
|
1282 break;
|
mas01cr@0
|
1283 }
|
mas01cr@0
|
1284 }
|
mas01cr@0
|
1285 else
|
mas01cr@0
|
1286 break;
|
mas01cr@0
|
1287 }
|
mas01cr@0
|
1288 for(unsigned k=0; k<pointNN; k++){
|
mas01cr@66
|
1289 distances[k]=-DBL_MAX;
|
mas01cr@0
|
1290 qIndexes[k]=~0;
|
mas01cr@0
|
1291 sIndexes[k]=~0;
|
mas01cr@0
|
1292 }
|
mas01mc@18
|
1293 } // tracks
|
mas01cr@0
|
1294 gettimeofday(&tv2, NULL);
|
mas01cr@0
|
1295
|
mas01cr@60
|
1296 if(verbosity>1) {
|
mas01mc@18
|
1297 cerr << endl << "processed tracks :" << processedTracks
|
mas01cr@0
|
1298 << " elapsed time:" << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
|
mas01cr@60
|
1299 }
|
mas01cr@0
|
1300
|
mas01cr@0
|
1301 if(adbQueryResult==0){
|
mas01cr@60
|
1302 if(verbosity>1) {
|
mas01cr@0
|
1303 cerr<<endl;
|
mas01cr@60
|
1304 }
|
mas01cr@0
|
1305 // Output answer
|
mas01cr@0
|
1306 // Loop over nearest neighbours
|
mas01mc@18
|
1307 for(k=0; k < min(trackNN,processedTracks); k++)
|
mas01mc@18
|
1308 cout << fileTable+trackIDs[k]*O2_FILETABLESIZE
|
mas01mc@18
|
1309 << " " << trackDistances[k] << " " << trackQIndexes[k] << " " << trackSIndexes[k] << endl;
|
mas01cr@0
|
1310 }
|
mas01cr@0
|
1311 else{ // Process Web Services Query
|
mas01mc@18
|
1312 int listLen = min(trackNN, processedTracks);
|
mas01cr@0
|
1313 adbQueryResult->__sizeRlist=listLen;
|
mas01cr@0
|
1314 adbQueryResult->__sizeDist=listLen;
|
mas01cr@0
|
1315 adbQueryResult->__sizeQpos=listLen;
|
mas01cr@0
|
1316 adbQueryResult->__sizeSpos=listLen;
|
mas01cr@0
|
1317 adbQueryResult->Rlist= new char*[listLen];
|
mas01cr@0
|
1318 adbQueryResult->Dist = new double[listLen];
|
mas01cr@86
|
1319 adbQueryResult->Qpos = new unsigned int[listLen];
|
mas01cr@86
|
1320 adbQueryResult->Spos = new unsigned int[listLen];
|
mas01cr@59
|
1321 for(k=0; k<(unsigned)adbQueryResult->__sizeRlist; k++){
|
mas01cr@0
|
1322 adbQueryResult->Rlist[k]=new char[O2_MAXFILESTR];
|
mas01mc@18
|
1323 adbQueryResult->Dist[k]=trackDistances[k];
|
mas01mc@18
|
1324 adbQueryResult->Qpos[k]=trackQIndexes[k];
|
mas01mc@18
|
1325 adbQueryResult->Spos[k]=trackSIndexes[k];
|
mas01mc@18
|
1326 sprintf(adbQueryResult->Rlist[k], "%s", fileTable+trackIDs[k]*O2_FILETABLESIZE);
|
mas01cr@0
|
1327 }
|
mas01cr@0
|
1328 }
|
mas01cr@0
|
1329
|
mas01cr@0
|
1330
|
mas01cr@0
|
1331 // Clean up
|
mas01mc@18
|
1332 if(trackOffsetTable)
|
mas01mc@18
|
1333 delete trackOffsetTable;
|
mas01cr@0
|
1334 if(queryCopy)
|
mas01cr@0
|
1335 delete queryCopy;
|
mas01cr@0
|
1336 if(qNorm)
|
mas01cr@0
|
1337 delete qNorm;
|
mas01cr@0
|
1338 if(timesdata)
|
mas01cr@0
|
1339 delete timesdata;
|
mas01cr@0
|
1340 if(meanDBdur)
|
mas01cr@0
|
1341 delete meanDBdur;
|
mas01cr@0
|
1342
|
mas01cr@0
|
1343 }
|
mas01cr@0
|
1344
|
mas01cr@0
|
1345
|
mas01mc@20
|
1346 // k nearest-neighbor (k-NN) search between query and target tracks
|
mas01mc@20
|
1347 // efficient implementation based on matched filter
|
mas01mc@20
|
1348 // assumes normed shingles
|
mas01mc@20
|
1349 // outputs distances of retrieved shingles, max retreived = pointNN shingles per per track
|
mas01mc@20
|
1350 void audioDB::trackSequenceQueryNN(const char* dbName, const char* inFile, adb__queryResult *adbQueryResult){
|
mas01cr@0
|
1351
|
mas01cr@27
|
1352 initTables(dbName, 0, inFile);
|
mas01cr@0
|
1353
|
mas01cr@0
|
1354 // For each input vector, find the closest pointNN matching output vectors and report
|
mas01cr@0
|
1355 // we use stdout in this stub version
|
mas01cr@0
|
1356 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
|
mas01cr@0
|
1357 double* query = (double*)(indata+sizeof(int));
|
mas01cr@0
|
1358 double* queryCopy = 0;
|
mas01cr@0
|
1359
|
mas01cr@0
|
1360 double qMeanL2;
|
mas01cr@0
|
1361 double* sMeanL2;
|
mas01cr@0
|
1362
|
mas01cr@0
|
1363 unsigned USE_THRESH=0;
|
mas01cr@0
|
1364 double SILENCE_THRESH=0;
|
mas01cr@0
|
1365 double DIFF_THRESH=0;
|
mas01cr@0
|
1366
|
mas01cr@0
|
1367 if(!(dbH->flags & O2_FLAG_L2NORM) )
|
mas01cr@55
|
1368 error("Database must be L2 normed for sequence query","use -L2NORM");
|
mas01cr@55
|
1369
|
mas01cr@55
|
1370 if(numVectors<sequenceLength)
|
mas01cr@55
|
1371 error("Query shorter than requested sequence length", "maybe use -l");
|
mas01cr@0
|
1372
|
mas01cr@60
|
1373 if(verbosity>1) {
|
mas01cr@0
|
1374 cerr << "performing norms ... "; cerr.flush();
|
mas01cr@60
|
1375 }
|
mas01cr@0
|
1376 unsigned dbVectors = dbH->length/(sizeof(double)*dbH->dim);
|
mas01mc@20
|
1377
|
mas01cr@0
|
1378 // Make a copy of the query
|
mas01cr@0
|
1379 queryCopy = new double[numVectors*dbH->dim];
|
mas01cr@0
|
1380 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
|
mas01cr@0
|
1381 qNorm = new double[numVectors];
|
mas01cr@0
|
1382 sNorm = new double[dbVectors];
|
mas01cr@0
|
1383 sMeanL2=new double[dbH->numFiles];
|
mas01cr@0
|
1384 assert(qNorm&&sNorm&&queryCopy&&sMeanL2&&sequenceLength);
|
mas01cr@0
|
1385 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
|
mas01cr@0
|
1386 query = queryCopy;
|
mas01mc@20
|
1387
|
mas01cr@0
|
1388 // Make norm measurements relative to sequenceLength
|
mas01cr@0
|
1389 unsigned w = sequenceLength-1;
|
mas01cr@0
|
1390 unsigned i,j;
|
mas01cr@0
|
1391 double* ps;
|
mas01cr@0
|
1392 double tmp1,tmp2;
|
mas01mc@20
|
1393
|
mas01cr@0
|
1394 // Copy the L2 norm values to core to avoid disk random access later on
|
mas01cr@0
|
1395 memcpy(sNorm, l2normTable, dbVectors*sizeof(double));
|
mas01cr@0
|
1396 double* snPtr = sNorm;
|
mas01cr@0
|
1397 for(i=0; i<dbH->numFiles; i++){
|
mas01mc@20
|
1398 if(trackTable[i]>=sequenceLength){
|
mas01cr@0
|
1399 tmp1=*snPtr;
|
mas01cr@0
|
1400 j=1;
|
mas01cr@0
|
1401 w=sequenceLength-1;
|
mas01cr@0
|
1402 while(w--)
|
mas01cr@0
|
1403 *snPtr+=snPtr[j++];
|
mas01cr@0
|
1404 ps = snPtr+1;
|
mas01mc@18
|
1405 w=trackTable[i]-sequenceLength; // +1 - 1
|
mas01cr@0
|
1406 while(w--){
|
mas01cr@0
|
1407 tmp2=*ps;
|
mas01mc@20
|
1408 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
|
mas01cr@0
|
1409 tmp1=tmp2;
|
mas01cr@0
|
1410 ps++;
|
mas01cr@0
|
1411 }
|
mas01mc@20
|
1412 ps = snPtr;
|
mas01mc@20
|
1413 w=trackTable[i]-sequenceLength+1;
|
mas01mc@20
|
1414 while(w--){
|
mas01mc@20
|
1415 *ps=sqrt(*ps);
|
mas01mc@20
|
1416 ps++;
|
mas01mc@20
|
1417 }
|
mas01cr@0
|
1418 }
|
mas01mc@18
|
1419 snPtr+=trackTable[i];
|
mas01cr@0
|
1420 }
|
mas01cr@0
|
1421
|
mas01cr@0
|
1422 double* pn = sMeanL2;
|
mas01cr@0
|
1423 w=dbH->numFiles;
|
mas01cr@0
|
1424 while(w--)
|
mas01cr@0
|
1425 *pn++=0.0;
|
mas01cr@0
|
1426 ps=sNorm;
|
mas01mc@18
|
1427 unsigned processedTracks=0;
|
mas01cr@0
|
1428 for(i=0; i<dbH->numFiles; i++){
|
mas01mc@18
|
1429 if(trackTable[i]>sequenceLength-1){
|
mas01cr@57
|
1430 w = trackTable[i]-sequenceLength+1;
|
mas01cr@0
|
1431 pn = sMeanL2+i;
|
mas01mc@20
|
1432 *pn=0;
|
mas01cr@0
|
1433 while(w--)
|
mas01mc@20
|
1434 if(*ps>0)
|
mas01mc@20
|
1435 *pn+=*ps++;
|
mas01cr@57
|
1436 *pn/=trackTable[i]-sequenceLength+1;
|
mas01cr@0
|
1437 SILENCE_THRESH+=*pn;
|
mas01mc@18
|
1438 processedTracks++;
|
mas01cr@0
|
1439 }
|
mas01mc@18
|
1440 ps = sNorm + trackTable[i];
|
mas01cr@0
|
1441 }
|
mas01cr@60
|
1442 if(verbosity>1) {
|
mas01mc@18
|
1443 cerr << "processedTracks: " << processedTracks << endl;
|
mas01cr@60
|
1444 }
|
mas01mc@20
|
1445
|
mas01mc@18
|
1446 SILENCE_THRESH/=processedTracks;
|
mas01cr@0
|
1447 USE_THRESH=1; // Turn thresholding on
|
mas01mc@20
|
1448 DIFF_THRESH=SILENCE_THRESH; // mean shingle power
|
mas01mc@20
|
1449 SILENCE_THRESH/=5; // 20% of the mean shingle power is SILENCE
|
mas01cr@60
|
1450 if(verbosity>4) {
|
mas01mc@20
|
1451 cerr << "silence thresh: " << SILENCE_THRESH;
|
mas01cr@60
|
1452 }
|
mas01cr@0
|
1453 w=sequenceLength-1;
|
mas01cr@0
|
1454 i=1;
|
mas01cr@0
|
1455 tmp1=*qNorm;
|
mas01cr@0
|
1456 while(w--)
|
mas01cr@0
|
1457 *qNorm+=qNorm[i++];
|
mas01cr@0
|
1458 ps = qNorm+1;
|
mas01mc@20
|
1459 w=numVectors-sequenceLength; // +1 -1
|
mas01cr@0
|
1460 while(w--){
|
mas01cr@0
|
1461 tmp2=*ps;
|
mas01mc@20
|
1462 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
|
mas01cr@0
|
1463 tmp1=tmp2;
|
mas01mc@20
|
1464 ps++;
|
mas01mc@20
|
1465 }
|
mas01mc@20
|
1466 ps = qNorm;
|
mas01mc@20
|
1467 qMeanL2 = 0;
|
mas01mc@20
|
1468 w=numVectors-sequenceLength+1;
|
mas01mc@20
|
1469 while(w--){
|
mas01mc@20
|
1470 *ps=sqrt(*ps);
|
mas01mc@20
|
1471 qMeanL2+=*ps++;
|
mas01cr@0
|
1472 }
|
mas01cr@0
|
1473 qMeanL2 /= numVectors-sequenceLength+1;
|
mas01mc@20
|
1474
|
mas01cr@60
|
1475 if(verbosity>1) {
|
mas01cr@60
|
1476 cerr << "done." << endl;
|
mas01cr@60
|
1477 }
|
mas01cr@0
|
1478
|
mas01cr@60
|
1479 if(verbosity>1) {
|
mas01mc@18
|
1480 cerr << "matching tracks..." << endl;
|
mas01cr@60
|
1481 }
|
mas01cr@0
|
1482
|
mas01cr@0
|
1483 assert(pointNN>0 && pointNN<=O2_MAXNN);
|
mas01mc@18
|
1484 assert(trackNN>0 && trackNN<=O2_MAXNN);
|
mas01cr@0
|
1485
|
mas01cr@0
|
1486 // Make temporary dynamic memory for results
|
mas01mc@18
|
1487 double trackDistances[trackNN];
|
mas01mc@18
|
1488 unsigned trackIDs[trackNN];
|
mas01mc@18
|
1489 unsigned trackQIndexes[trackNN];
|
mas01mc@18
|
1490 unsigned trackSIndexes[trackNN];
|
mas01cr@0
|
1491
|
mas01cr@0
|
1492 double distances[pointNN];
|
mas01cr@0
|
1493 unsigned qIndexes[pointNN];
|
mas01cr@0
|
1494 unsigned sIndexes[pointNN];
|
mas01cr@0
|
1495
|
mas01cr@0
|
1496
|
mas01mc@18
|
1497 unsigned k,l,m,n,track,trackOffset=0, HOP_SIZE=sequenceHop, wL=sequenceLength;
|
mas01cr@0
|
1498 double thisDist;
|
mas01cr@0
|
1499
|
mas01cr@0
|
1500 for(k=0; k<pointNN; k++){
|
mas01mc@20
|
1501 distances[k]=1.0e6;
|
mas01cr@0
|
1502 qIndexes[k]=~0;
|
mas01cr@0
|
1503 sIndexes[k]=~0;
|
mas01cr@0
|
1504 }
|
mas01cr@0
|
1505
|
mas01mc@18
|
1506 for(k=0; k<trackNN; k++){
|
mas01mc@20
|
1507 trackDistances[k]=1.0e6;
|
mas01mc@18
|
1508 trackQIndexes[k]=~0;
|
mas01mc@18
|
1509 trackSIndexes[k]=~0;
|
mas01mc@18
|
1510 trackIDs[k]=~0;
|
mas01cr@0
|
1511 }
|
mas01cr@0
|
1512
|
mas01cr@0
|
1513 // Timestamp and durations processing
|
mas01cr@0
|
1514 double meanQdur = 0;
|
mas01cr@0
|
1515 double* timesdata = 0;
|
mas01cr@0
|
1516 double* meanDBdur = 0;
|
mas01cr@0
|
1517
|
mas01cr@0
|
1518 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
|
mas01cr@0
|
1519 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
|
mas01cr@0
|
1520 usingTimes=0;
|
mas01cr@0
|
1521 }
|
mas01cr@0
|
1522
|
mas01cr@0
|
1523 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
|
mas01cr@0
|
1524 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
|
mas01cr@0
|
1525
|
mas01cr@0
|
1526 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
|
mas01cr@0
|
1527 timesdata = new double[numVectors];
|
mas01cr@0
|
1528 assert(timesdata);
|
mas01cr@0
|
1529 insertTimeStamps(numVectors, timesFile, timesdata);
|
mas01cr@0
|
1530 // Calculate durations of points
|
mas01cr@0
|
1531 for(k=0; k<numVectors-1; k++){
|
mas01cr@0
|
1532 timesdata[k]=timesdata[k+1]-timesdata[k];
|
mas01cr@0
|
1533 meanQdur+=timesdata[k];
|
mas01cr@0
|
1534 }
|
mas01cr@0
|
1535 meanQdur/=k;
|
mas01cr@60
|
1536 if(verbosity>1) {
|
mas01cr@0
|
1537 cerr << "mean query file duration: " << meanQdur << endl;
|
mas01cr@60
|
1538 }
|
mas01cr@0
|
1539 meanDBdur = new double[dbH->numFiles];
|
mas01cr@0
|
1540 assert(meanDBdur);
|
mas01cr@0
|
1541 for(k=0; k<dbH->numFiles; k++){
|
mas01cr@0
|
1542 meanDBdur[k]=0.0;
|
mas01mc@18
|
1543 for(j=0; j<trackTable[k]-1 ; j++)
|
mas01cr@0
|
1544 meanDBdur[k]+=timesTable[j+1]-timesTable[j];
|
mas01cr@0
|
1545 meanDBdur[k]/=j;
|
mas01cr@0
|
1546 }
|
mas01cr@0
|
1547 }
|
mas01cr@0
|
1548
|
mas01cr@0
|
1549 if(usingQueryPoint)
|
mas01cr@0
|
1550 if(queryPoint>numVectors || queryPoint>numVectors-wL+1)
|
mas01cr@0
|
1551 error("queryPoint > numVectors-wL+1 in query");
|
mas01cr@0
|
1552 else{
|
mas01cr@60
|
1553 if(verbosity>1) {
|
mas01cr@0
|
1554 cerr << "query point: " << queryPoint << endl; cerr.flush();
|
mas01cr@60
|
1555 }
|
mas01cr@0
|
1556 query=query+queryPoint*dbH->dim;
|
mas01cr@0
|
1557 qNorm=qNorm+queryPoint;
|
mas01cr@0
|
1558 numVectors=wL;
|
mas01cr@0
|
1559 }
|
mas01cr@0
|
1560
|
mas01mc@20
|
1561 double ** D = 0; // Differences query and target
|
mas01cr@0
|
1562 double ** DD = 0; // Matched filter distance
|
mas01cr@0
|
1563
|
mas01cr@0
|
1564 D = new double*[numVectors];
|
mas01cr@0
|
1565 assert(D);
|
mas01cr@0
|
1566 DD = new double*[numVectors];
|
mas01cr@0
|
1567 assert(DD);
|
mas01cr@0
|
1568
|
mas01cr@0
|
1569 gettimeofday(&tv1, NULL);
|
mas01mc@18
|
1570 processedTracks=0;
|
mas01mc@18
|
1571 unsigned successfulTracks=0;
|
mas01cr@0
|
1572
|
mas01cr@0
|
1573 double* qp;
|
mas01cr@0
|
1574 double* sp;
|
mas01cr@0
|
1575 double* dp;
|
mas01cr@0
|
1576
|
mas01mc@18
|
1577 // build track offset table
|
mas01mc@18
|
1578 unsigned *trackOffsetTable = new unsigned[dbH->numFiles];
|
mas01mc@18
|
1579 unsigned cumTrack=0;
|
mas01mc@18
|
1580 unsigned trackIndexOffset;
|
mas01cr@0
|
1581 for(k=0; k<dbH->numFiles;k++){
|
mas01mc@18
|
1582 trackOffsetTable[k]=cumTrack;
|
mas01mc@18
|
1583 cumTrack+=trackTable[k]*dbH->dim;
|
mas01cr@0
|
1584 }
|
mas01cr@0
|
1585
|
mas01cr@0
|
1586 char nextKey [MAXSTR];
|
mas01mc@20
|
1587
|
mas01mc@20
|
1588 // chi^2 statistics
|
mas01mc@20
|
1589 double sampleCount = 0;
|
mas01mc@20
|
1590 double sampleSum = 0;
|
mas01mc@20
|
1591 double logSampleSum = 0;
|
mas01mc@20
|
1592 double minSample = 1e9;
|
mas01mc@20
|
1593 double maxSample = 0;
|
mas01mc@20
|
1594
|
mas01mc@20
|
1595 // Track loop
|
mas01mc@18
|
1596 for(processedTracks=0, track=0 ; processedTracks < dbH->numFiles ; track++, processedTracks++){
|
mas01cr@0
|
1597
|
mas01mc@18
|
1598 // get trackID from file if using a control file
|
mas01mc@18
|
1599 if(trackFile){
|
mas01mc@18
|
1600 if(!trackFile->eof()){
|
mas01mc@18
|
1601 trackFile->getline(nextKey,MAXSTR);
|
mas01mc@18
|
1602 track=getKeyPos(nextKey);
|
mas01cr@0
|
1603 }
|
mas01cr@0
|
1604 else
|
mas01cr@0
|
1605 break;
|
mas01cr@0
|
1606 }
|
mas01mc@12
|
1607
|
mas01mc@18
|
1608 trackOffset=trackOffsetTable[track]; // numDoubles offset
|
mas01mc@18
|
1609 trackIndexOffset=trackOffset/dbH->dim; // numVectors offset
|
mas01cr@0
|
1610
|
mas01cr@57
|
1611 if(sequenceLength<=trackTable[track]){ // test for short sequences
|
mas01cr@0
|
1612
|
mas01cr@60
|
1613 if(verbosity>7) {
|
mas01mc@18
|
1614 cerr << track << "." << trackIndexOffset << "." << trackTable[track] << " | ";cerr.flush();
|
mas01cr@60
|
1615 }
|
mas01cr@0
|
1616
|
mas01mc@20
|
1617 // Sum products matrix
|
mas01cr@0
|
1618 for(j=0; j<numVectors;j++){
|
mas01mc@18
|
1619 D[j]=new double[trackTable[track]];
|
mas01cr@0
|
1620 assert(D[j]);
|
mas01cr@0
|
1621
|
mas01cr@0
|
1622 }
|
mas01cr@0
|
1623
|
mas01cr@0
|
1624 // Matched filter matrix
|
mas01cr@0
|
1625 for(j=0; j<numVectors;j++){
|
mas01mc@18
|
1626 DD[j]=new double[trackTable[track]];
|
mas01cr@0
|
1627 assert(DD[j]);
|
mas01cr@0
|
1628 }
|
mas01cr@0
|
1629
|
mas01mc@20
|
1630 // Dot product
|
mas01cr@0
|
1631 for(j=0; j<numVectors; j++)
|
mas01mc@18
|
1632 for(k=0; k<trackTable[track]; k++){
|
mas01cr@0
|
1633 qp=query+j*dbH->dim;
|
mas01mc@18
|
1634 sp=dataBuf+trackOffset+k*dbH->dim;
|
mas01cr@0
|
1635 DD[j][k]=0.0; // Initialize matched filter array
|
mas01cr@0
|
1636 dp=&D[j][k]; // point to correlation cell j,k
|
mas01cr@0
|
1637 *dp=0.0; // initialize correlation cell
|
mas01cr@0
|
1638 l=dbH->dim; // size of vectors
|
mas01cr@0
|
1639 while(l--)
|
mas01cr@0
|
1640 *dp+=*qp++**sp++;
|
mas01cr@0
|
1641 }
|
mas01cr@0
|
1642
|
mas01cr@0
|
1643 // Matched Filter
|
mas01cr@0
|
1644 // HOP SIZE == 1
|
mas01cr@0
|
1645 double* spd;
|
mas01cr@0
|
1646 if(HOP_SIZE==1){ // HOP_SIZE = shingleHop
|
mas01cr@0
|
1647 for(w=0; w<wL; w++)
|
mas01cr@0
|
1648 for(j=0; j<numVectors-w; j++){
|
mas01cr@0
|
1649 sp=DD[j];
|
mas01cr@0
|
1650 spd=D[j+w]+w;
|
mas01mc@18
|
1651 k=trackTable[track]-w;
|
mas01cr@0
|
1652 while(k--)
|
mas01cr@0
|
1653 *sp+++=*spd++;
|
mas01cr@0
|
1654 }
|
mas01cr@0
|
1655 }
|
mas01mc@20
|
1656
|
mas01cr@0
|
1657 else{ // HOP_SIZE != 1
|
mas01cr@0
|
1658 for(w=0; w<wL; w++)
|
mas01cr@0
|
1659 for(j=0; j<numVectors-w; j+=HOP_SIZE){
|
mas01cr@0
|
1660 sp=DD[j];
|
mas01cr@0
|
1661 spd=D[j+w]+w;
|
mas01mc@18
|
1662 for(k=0; k<trackTable[track]-w; k+=HOP_SIZE){
|
mas01cr@0
|
1663 *sp+=*spd;
|
mas01cr@0
|
1664 sp+=HOP_SIZE;
|
mas01cr@0
|
1665 spd+=HOP_SIZE;
|
mas01cr@0
|
1666 }
|
mas01cr@0
|
1667 }
|
mas01cr@0
|
1668 }
|
mas01cr@0
|
1669
|
mas01cr@60
|
1670 if(verbosity>3 && usingTimes) {
|
mas01mc@18
|
1671 cerr << "meanQdur=" << meanQdur << " meanDBdur=" << meanDBdur[track] << endl;
|
mas01cr@0
|
1672 cerr.flush();
|
mas01cr@0
|
1673 }
|
mas01cr@0
|
1674
|
mas01cr@0
|
1675 if(!usingTimes ||
|
mas01cr@0
|
1676 (usingTimes
|
mas01mc@18
|
1677 && fabs(meanDBdur[track]-meanQdur)<meanQdur*timesTol)){
|
mas01cr@0
|
1678
|
mas01cr@60
|
1679 if(verbosity>3 && usingTimes) {
|
mas01cr@0
|
1680 cerr << "within duration tolerance." << endl;
|
mas01cr@0
|
1681 cerr.flush();
|
mas01cr@0
|
1682 }
|
mas01cr@0
|
1683
|
mas01cr@0
|
1684 // Search for minimum distance by shingles (concatenated vectors)
|
mas01cr@53
|
1685 for(j=0;j<=numVectors-wL;j+=HOP_SIZE)
|
mas01cr@53
|
1686 for(k=0;k<=trackTable[track]-wL;k+=HOP_SIZE){
|
mas01mc@20
|
1687 thisDist=2-(2/(qNorm[j]*sNorm[trackIndexOffset+k]))*DD[j][k];
|
mas01cr@60
|
1688 if(verbosity>10) {
|
mas01mc@20
|
1689 cerr << thisDist << " " << qNorm[j] << " " << sNorm[trackIndexOffset+k] << endl;
|
mas01cr@60
|
1690 }
|
mas01mc@20
|
1691 // Gather chi^2 statistics
|
mas01mc@20
|
1692 if(thisDist<minSample)
|
mas01mc@20
|
1693 minSample=thisDist;
|
mas01mc@20
|
1694 else if(thisDist>maxSample)
|
mas01mc@20
|
1695 maxSample=thisDist;
|
mas01mc@20
|
1696 if(thisDist>1e-9){
|
mas01mc@20
|
1697 sampleCount++;
|
mas01mc@20
|
1698 sampleSum+=thisDist;
|
mas01mc@20
|
1699 logSampleSum+=log(thisDist);
|
mas01mc@20
|
1700 }
|
mas01mc@20
|
1701
|
mas01mc@20
|
1702 // diffL2 = fabs(qNorm[j] - sNorm[trackIndexOffset+k]);
|
mas01cr@0
|
1703 // Power test
|
mas01cr@0
|
1704 if(!USE_THRESH ||
|
mas01cr@0
|
1705 // Threshold on mean L2 of Q and S sequences
|
mas01mc@20
|
1706 (USE_THRESH && qNorm[j]>SILENCE_THRESH && sNorm[trackIndexOffset+k]>SILENCE_THRESH &&
|
mas01cr@0
|
1707 // Are both query and target windows above mean energy?
|
mas01mc@20
|
1708 (qNorm[j]>qMeanL2*.25 && sNorm[trackIndexOffset+k]>sMeanL2[track]*.25))) // && diffL2 < DIFF_THRESH )))
|
mas01mc@20
|
1709 thisDist=thisDist; // Computed above
|
mas01cr@0
|
1710 else
|
mas01mc@20
|
1711 thisDist=1000000.0;
|
mas01mc@20
|
1712
|
mas01mc@20
|
1713 // k-NN match algorithm
|
mas01cr@58
|
1714 m=pointNN;
|
mas01mc@20
|
1715 while(m--){
|
mas01mc@20
|
1716 if(thisDist<=distances[m])
|
mas01mc@20
|
1717 if(m==0 || thisDist>=distances[m-1]){
|
mas01cr@0
|
1718 // Shuffle distances up the list
|
mas01cr@0
|
1719 for(l=pointNN-1; l>m; l--){
|
mas01cr@0
|
1720 distances[l]=distances[l-1];
|
mas01cr@0
|
1721 qIndexes[l]=qIndexes[l-1];
|
mas01cr@0
|
1722 sIndexes[l]=sIndexes[l-1];
|
mas01cr@0
|
1723 }
|
mas01cr@0
|
1724 distances[m]=thisDist;
|
mas01cr@0
|
1725 if(usingQueryPoint)
|
mas01cr@0
|
1726 qIndexes[m]=queryPoint;
|
mas01cr@0
|
1727 else
|
mas01cr@0
|
1728 qIndexes[m]=j;
|
mas01cr@0
|
1729 sIndexes[m]=k;
|
mas01cr@0
|
1730 break;
|
mas01mc@20
|
1731 }
|
mas01cr@0
|
1732 }
|
mas01cr@0
|
1733 }
|
mas01cr@0
|
1734 // Calculate the mean of the N-Best matches
|
mas01cr@0
|
1735 thisDist=0.0;
|
mas01cr@53
|
1736 for(m=0; m<pointNN; m++) {
|
mas01cr@53
|
1737 if (distances[m] == 1000000.0) break;
|
mas01mc@20
|
1738 thisDist+=distances[m];
|
mas01cr@53
|
1739 }
|
mas01cr@53
|
1740 thisDist/=m;
|
mas01cr@0
|
1741
|
mas01mc@12
|
1742 // Let's see the distances then...
|
mas01cr@60
|
1743 if(verbosity>3) {
|
mas01mc@18
|
1744 cerr << fileTable+track*O2_FILETABLESIZE << " " << thisDist << endl;
|
mas01cr@60
|
1745 }
|
mas01mc@12
|
1746
|
mas01mc@20
|
1747
|
mas01mc@18
|
1748 // All the track stuff goes here
|
mas01cr@58
|
1749 n=trackNN;
|
mas01cr@0
|
1750 while(n--){
|
mas01mc@20
|
1751 if(thisDist<=trackDistances[n]){
|
mas01mc@20
|
1752 if((n==0 || thisDist>=trackDistances[n-1])){
|
mas01cr@0
|
1753 // Copy all values above up the queue
|
mas01mc@18
|
1754 for( l=trackNN-1 ; l > n ; l--){
|
mas01mc@18
|
1755 trackDistances[l]=trackDistances[l-1];
|
mas01mc@18
|
1756 trackQIndexes[l]=trackQIndexes[l-1];
|
mas01mc@18
|
1757 trackSIndexes[l]=trackSIndexes[l-1];
|
mas01mc@18
|
1758 trackIDs[l]=trackIDs[l-1];
|
mas01cr@0
|
1759 }
|
mas01mc@18
|
1760 trackDistances[n]=thisDist;
|
mas01mc@18
|
1761 trackQIndexes[n]=qIndexes[0];
|
mas01mc@18
|
1762 trackSIndexes[n]=sIndexes[0];
|
mas01mc@18
|
1763 successfulTracks++;
|
mas01mc@18
|
1764 trackIDs[n]=track;
|
mas01cr@0
|
1765 break;
|
mas01cr@0
|
1766 }
|
mas01cr@0
|
1767 }
|
mas01cr@0
|
1768 else
|
mas01cr@0
|
1769 break;
|
mas01cr@0
|
1770 }
|
mas01cr@0
|
1771 } // Duration match
|
mas01mc@20
|
1772
|
mas01mc@18
|
1773 // Clean up current track
|
mas01cr@0
|
1774 if(D!=NULL){
|
mas01cr@0
|
1775 for(j=0; j<numVectors; j++)
|
mas01cr@0
|
1776 delete[] D[j];
|
mas01cr@0
|
1777 }
|
mas01cr@0
|
1778
|
mas01cr@0
|
1779 if(DD!=NULL){
|
mas01cr@0
|
1780 for(j=0; j<numVectors; j++)
|
mas01cr@0
|
1781 delete[] DD[j];
|
mas01cr@0
|
1782 }
|
mas01cr@0
|
1783 }
|
mas01mc@20
|
1784 // per-track reset array values
|
mas01mc@20
|
1785 for(unsigned k=0; k<pointNN; k++){
|
mas01mc@20
|
1786 distances[k]=1.0e6;
|
mas01mc@20
|
1787 qIndexes[k]=~0;
|
mas01mc@20
|
1788 sIndexes[k]=~0;
|
mas01mc@20
|
1789 }
|
mas01cr@0
|
1790 }
|
mas01cr@0
|
1791
|
mas01cr@0
|
1792 gettimeofday(&tv2,NULL);
|
mas01cr@60
|
1793 if(verbosity>1) {
|
mas01mc@18
|
1794 cerr << endl << "processed tracks :" << processedTracks << " matched tracks: " << successfulTracks << " elapsed time:"
|
mas01cr@0
|
1795 << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
|
mas01mc@20
|
1796 cerr << "sampleCount: " << sampleCount << " sampleSum: " << sampleSum << " logSampleSum: " << logSampleSum
|
mas01mc@20
|
1797 << " minSample: " << minSample << " maxSample: " << maxSample << endl;
|
mas01mc@20
|
1798 }
|
mas01cr@0
|
1799 if(adbQueryResult==0){
|
mas01cr@60
|
1800 if(verbosity>1) {
|
mas01cr@0
|
1801 cerr<<endl;
|
mas01cr@60
|
1802 }
|
mas01cr@0
|
1803 // Output answer
|
mas01cr@0
|
1804 // Loop over nearest neighbours
|
mas01mc@18
|
1805 for(k=0; k < min(trackNN,successfulTracks); k++)
|
mas01mc@20
|
1806 cout << fileTable+trackIDs[k]*O2_FILETABLESIZE << " " << trackDistances[k] << " "
|
mas01mc@20
|
1807 << trackQIndexes[k] << " " << trackSIndexes[k] << endl;
|
mas01cr@0
|
1808 }
|
mas01cr@0
|
1809 else{ // Process Web Services Query
|
mas01mc@18
|
1810 int listLen = min(trackNN, processedTracks);
|
mas01cr@0
|
1811 adbQueryResult->__sizeRlist=listLen;
|
mas01cr@0
|
1812 adbQueryResult->__sizeDist=listLen;
|
mas01cr@0
|
1813 adbQueryResult->__sizeQpos=listLen;
|
mas01cr@0
|
1814 adbQueryResult->__sizeSpos=listLen;
|
mas01cr@0
|
1815 adbQueryResult->Rlist= new char*[listLen];
|
mas01cr@0
|
1816 adbQueryResult->Dist = new double[listLen];
|
mas01cr@86
|
1817 adbQueryResult->Qpos = new unsigned int[listLen];
|
mas01cr@86
|
1818 adbQueryResult->Spos = new unsigned int[listLen];
|
mas01cr@59
|
1819 for(k=0; k<(unsigned)adbQueryResult->__sizeRlist; k++){
|
mas01cr@0
|
1820 adbQueryResult->Rlist[k]=new char[O2_MAXFILESTR];
|
mas01mc@18
|
1821 adbQueryResult->Dist[k]=trackDistances[k];
|
mas01mc@18
|
1822 adbQueryResult->Qpos[k]=trackQIndexes[k];
|
mas01mc@18
|
1823 adbQueryResult->Spos[k]=trackSIndexes[k];
|
mas01mc@18
|
1824 sprintf(adbQueryResult->Rlist[k], "%s", fileTable+trackIDs[k]*O2_FILETABLESIZE);
|
mas01cr@0
|
1825 }
|
mas01cr@0
|
1826 }
|
mas01cr@0
|
1827
|
mas01cr@0
|
1828
|
mas01cr@0
|
1829 // Clean up
|
mas01mc@18
|
1830 if(trackOffsetTable)
|
mas01mc@20
|
1831 delete[] trackOffsetTable;
|
mas01cr@0
|
1832 if(queryCopy)
|
mas01mc@20
|
1833 delete[] queryCopy;
|
mas01cr@121
|
1834 if(qNorm)
|
mas01cr@121
|
1835 delete[] qNorm;
|
mas01cr@121
|
1836 if(sNorm)
|
mas01cr@121
|
1837 delete[] sNorm;
|
mas01cr@121
|
1838 if(sMeanL2)
|
mas01cr@121
|
1839 delete[] sMeanL2;
|
mas01cr@0
|
1840 if(D)
|
mas01cr@0
|
1841 delete[] D;
|
mas01cr@0
|
1842 if(DD)
|
mas01cr@0
|
1843 delete[] DD;
|
mas01cr@0
|
1844 if(timesdata)
|
mas01mc@20
|
1845 delete[] timesdata;
|
mas01cr@0
|
1846 if(meanDBdur)
|
mas01mc@20
|
1847 delete[] meanDBdur;
|
mas01cr@0
|
1848
|
mas01cr@0
|
1849
|
mas01cr@0
|
1850 }
|
mas01cr@0
|
1851
|
mas01mc@20
|
1852 // Radius search between query and target tracks
|
mas01mc@20
|
1853 // efficient implementation based on matched filter
|
mas01mc@20
|
1854 // assumes normed shingles
|
mas01mc@20
|
1855 // outputs count of retrieved shingles, max retreived = one shingle per query shingle per track
|
mas01mc@20
|
1856 void audioDB::trackSequenceQueryRad(const char* dbName, const char* inFile, adb__queryResult *adbQueryResult){
|
mas01mc@17
|
1857
|
mas01cr@27
|
1858 initTables(dbName, 0, inFile);
|
mas01mc@17
|
1859
|
mas01mc@17
|
1860 // For each input vector, find the closest pointNN matching output vectors and report
|
mas01mc@17
|
1861 // we use stdout in this stub version
|
mas01mc@17
|
1862 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
|
mas01mc@17
|
1863 double* query = (double*)(indata+sizeof(int));
|
mas01mc@17
|
1864 double* queryCopy = 0;
|
mas01mc@17
|
1865
|
mas01mc@17
|
1866 double qMeanL2;
|
mas01mc@17
|
1867 double* sMeanL2;
|
mas01mc@17
|
1868
|
mas01mc@17
|
1869 unsigned USE_THRESH=0;
|
mas01mc@17
|
1870 double SILENCE_THRESH=0;
|
mas01mc@17
|
1871 double DIFF_THRESH=0;
|
mas01mc@17
|
1872
|
mas01mc@17
|
1873 if(!(dbH->flags & O2_FLAG_L2NORM) )
|
mas01mc@17
|
1874 error("Database must be L2 normed for sequence query","use -l2norm");
|
mas01mc@17
|
1875
|
mas01cr@60
|
1876 if(verbosity>1) {
|
mas01mc@17
|
1877 cerr << "performing norms ... "; cerr.flush();
|
mas01cr@60
|
1878 }
|
mas01mc@17
|
1879 unsigned dbVectors = dbH->length/(sizeof(double)*dbH->dim);
|
mas01mc@18
|
1880
|
mas01mc@17
|
1881 // Make a copy of the query
|
mas01mc@17
|
1882 queryCopy = new double[numVectors*dbH->dim];
|
mas01mc@17
|
1883 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
|
mas01mc@17
|
1884 qNorm = new double[numVectors];
|
mas01mc@17
|
1885 sNorm = new double[dbVectors];
|
mas01mc@17
|
1886 sMeanL2=new double[dbH->numFiles];
|
mas01mc@17
|
1887 assert(qNorm&&sNorm&&queryCopy&&sMeanL2&&sequenceLength);
|
mas01mc@17
|
1888 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
|
mas01mc@17
|
1889 query = queryCopy;
|
mas01mc@18
|
1890
|
mas01mc@17
|
1891 // Make norm measurements relative to sequenceLength
|
mas01mc@17
|
1892 unsigned w = sequenceLength-1;
|
mas01mc@17
|
1893 unsigned i,j;
|
mas01mc@17
|
1894 double* ps;
|
mas01mc@17
|
1895 double tmp1,tmp2;
|
mas01mc@18
|
1896
|
mas01mc@17
|
1897 // Copy the L2 norm values to core to avoid disk random access later on
|
mas01mc@17
|
1898 memcpy(sNorm, l2normTable, dbVectors*sizeof(double));
|
mas01mc@17
|
1899 double* snPtr = sNorm;
|
mas01mc@17
|
1900 for(i=0; i<dbH->numFiles; i++){
|
mas01mc@18
|
1901 if(trackTable[i]>=sequenceLength){
|
mas01mc@17
|
1902 tmp1=*snPtr;
|
mas01mc@17
|
1903 j=1;
|
mas01mc@17
|
1904 w=sequenceLength-1;
|
mas01mc@17
|
1905 while(w--)
|
mas01mc@17
|
1906 *snPtr+=snPtr[j++];
|
mas01mc@17
|
1907 ps = snPtr+1;
|
mas01mc@18
|
1908 w=trackTable[i]-sequenceLength; // +1 - 1
|
mas01mc@17
|
1909 while(w--){
|
mas01mc@17
|
1910 tmp2=*ps;
|
mas01mc@17
|
1911 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
|
mas01mc@17
|
1912 tmp1=tmp2;
|
mas01mc@17
|
1913 ps++;
|
mas01mc@17
|
1914 }
|
mas01mc@17
|
1915 ps = snPtr;
|
mas01mc@18
|
1916 w=trackTable[i]-sequenceLength+1;
|
mas01mc@17
|
1917 while(w--){
|
mas01mc@17
|
1918 *ps=sqrt(*ps);
|
mas01mc@17
|
1919 ps++;
|
mas01mc@17
|
1920 }
|
mas01mc@17
|
1921 }
|
mas01mc@18
|
1922 snPtr+=trackTable[i];
|
mas01mc@17
|
1923 }
|
mas01mc@17
|
1924
|
mas01mc@17
|
1925 double* pn = sMeanL2;
|
mas01mc@17
|
1926 w=dbH->numFiles;
|
mas01mc@17
|
1927 while(w--)
|
mas01mc@17
|
1928 *pn++=0.0;
|
mas01mc@17
|
1929 ps=sNorm;
|
mas01mc@18
|
1930 unsigned processedTracks=0;
|
mas01mc@17
|
1931 for(i=0; i<dbH->numFiles; i++){
|
mas01mc@18
|
1932 if(trackTable[i]>sequenceLength-1){
|
mas01cr@70
|
1933 w = trackTable[i]-sequenceLength+1;
|
mas01mc@17
|
1934 pn = sMeanL2+i;
|
mas01mc@17
|
1935 *pn=0;
|
mas01mc@17
|
1936 while(w--)
|
mas01mc@17
|
1937 if(*ps>0)
|
mas01mc@17
|
1938 *pn+=*ps++;
|
mas01cr@70
|
1939 *pn/=trackTable[i]-sequenceLength+1;
|
mas01mc@17
|
1940 SILENCE_THRESH+=*pn;
|
mas01mc@18
|
1941 processedTracks++;
|
mas01mc@17
|
1942 }
|
mas01mc@18
|
1943 ps = sNorm + trackTable[i];
|
mas01mc@17
|
1944 }
|
mas01cr@60
|
1945 if(verbosity>1) {
|
mas01mc@18
|
1946 cerr << "processedTracks: " << processedTracks << endl;
|
mas01cr@60
|
1947 }
|
mas01mc@17
|
1948
|
mas01mc@18
|
1949 SILENCE_THRESH/=processedTracks;
|
mas01mc@17
|
1950 USE_THRESH=1; // Turn thresholding on
|
mas01mc@18
|
1951 DIFF_THRESH=SILENCE_THRESH; // mean shingle power
|
mas01mc@17
|
1952 SILENCE_THRESH/=5; // 20% of the mean shingle power is SILENCE
|
mas01cr@60
|
1953 if(verbosity>4) {
|
mas01mc@17
|
1954 cerr << "silence thresh: " << SILENCE_THRESH;
|
mas01cr@60
|
1955 }
|
mas01mc@17
|
1956 w=sequenceLength-1;
|
mas01mc@17
|
1957 i=1;
|
mas01mc@17
|
1958 tmp1=*qNorm;
|
mas01mc@17
|
1959 while(w--)
|
mas01mc@17
|
1960 *qNorm+=qNorm[i++];
|
mas01mc@17
|
1961 ps = qNorm+1;
|
mas01mc@17
|
1962 w=numVectors-sequenceLength; // +1 -1
|
mas01mc@17
|
1963 while(w--){
|
mas01mc@17
|
1964 tmp2=*ps;
|
mas01mc@17
|
1965 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
|
mas01mc@17
|
1966 tmp1=tmp2;
|
mas01mc@17
|
1967 ps++;
|
mas01mc@17
|
1968 }
|
mas01mc@17
|
1969 ps = qNorm;
|
mas01mc@17
|
1970 qMeanL2 = 0;
|
mas01mc@17
|
1971 w=numVectors-sequenceLength+1;
|
mas01mc@17
|
1972 while(w--){
|
mas01mc@17
|
1973 *ps=sqrt(*ps);
|
mas01mc@17
|
1974 qMeanL2+=*ps++;
|
mas01mc@17
|
1975 }
|
mas01mc@17
|
1976 qMeanL2 /= numVectors-sequenceLength+1;
|
mas01mc@17
|
1977
|
mas01cr@60
|
1978 if(verbosity>1) {
|
mas01mc@17
|
1979 cerr << "done." << endl;
|
mas01cr@60
|
1980 }
|
mas01mc@17
|
1981
|
mas01cr@60
|
1982 if(verbosity>1) {
|
mas01mc@18
|
1983 cerr << "matching tracks..." << endl;
|
mas01cr@60
|
1984 }
|
mas01mc@17
|
1985
|
mas01mc@17
|
1986 assert(pointNN>0 && pointNN<=O2_MAXNN);
|
mas01mc@18
|
1987 assert(trackNN>0 && trackNN<=O2_MAXNN);
|
mas01mc@17
|
1988
|
mas01mc@17
|
1989 // Make temporary dynamic memory for results
|
mas01mc@18
|
1990 double trackDistances[trackNN];
|
mas01mc@18
|
1991 unsigned trackIDs[trackNN];
|
mas01mc@18
|
1992 unsigned trackQIndexes[trackNN];
|
mas01mc@18
|
1993 unsigned trackSIndexes[trackNN];
|
mas01mc@17
|
1994
|
mas01mc@17
|
1995 double distances[pointNN];
|
mas01mc@17
|
1996 unsigned qIndexes[pointNN];
|
mas01mc@17
|
1997 unsigned sIndexes[pointNN];
|
mas01mc@17
|
1998
|
mas01mc@17
|
1999
|
mas01cr@59
|
2000 unsigned k,l,n,track,trackOffset=0, HOP_SIZE=sequenceHop, wL=sequenceLength;
|
mas01mc@17
|
2001 double thisDist;
|
mas01mc@17
|
2002
|
mas01mc@17
|
2003 for(k=0; k<pointNN; k++){
|
mas01mc@17
|
2004 distances[k]=0.0;
|
mas01mc@17
|
2005 qIndexes[k]=~0;
|
mas01mc@17
|
2006 sIndexes[k]=~0;
|
mas01mc@17
|
2007 }
|
mas01mc@17
|
2008
|
mas01mc@18
|
2009 for(k=0; k<trackNN; k++){
|
mas01mc@18
|
2010 trackDistances[k]=0.0;
|
mas01mc@18
|
2011 trackQIndexes[k]=~0;
|
mas01mc@18
|
2012 trackSIndexes[k]=~0;
|
mas01mc@18
|
2013 trackIDs[k]=~0;
|
mas01mc@17
|
2014 }
|
mas01mc@17
|
2015
|
mas01mc@17
|
2016 // Timestamp and durations processing
|
mas01mc@17
|
2017 double meanQdur = 0;
|
mas01mc@17
|
2018 double* timesdata = 0;
|
mas01mc@17
|
2019 double* meanDBdur = 0;
|
mas01mc@17
|
2020
|
mas01mc@17
|
2021 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
|
mas01mc@17
|
2022 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
|
mas01mc@17
|
2023 usingTimes=0;
|
mas01mc@17
|
2024 }
|
mas01mc@17
|
2025
|
mas01mc@17
|
2026 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
|
mas01mc@17
|
2027 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
|
mas01mc@17
|
2028
|
mas01mc@17
|
2029 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
|
mas01mc@17
|
2030 timesdata = new double[numVectors];
|
mas01mc@17
|
2031 assert(timesdata);
|
mas01mc@17
|
2032 insertTimeStamps(numVectors, timesFile, timesdata);
|
mas01mc@17
|
2033 // Calculate durations of points
|
mas01mc@17
|
2034 for(k=0; k<numVectors-1; k++){
|
mas01mc@17
|
2035 timesdata[k]=timesdata[k+1]-timesdata[k];
|
mas01mc@17
|
2036 meanQdur+=timesdata[k];
|
mas01mc@17
|
2037 }
|
mas01mc@17
|
2038 meanQdur/=k;
|
mas01cr@60
|
2039 if(verbosity>1) {
|
mas01mc@17
|
2040 cerr << "mean query file duration: " << meanQdur << endl;
|
mas01cr@60
|
2041 }
|
mas01mc@17
|
2042 meanDBdur = new double[dbH->numFiles];
|
mas01mc@17
|
2043 assert(meanDBdur);
|
mas01mc@17
|
2044 for(k=0; k<dbH->numFiles; k++){
|
mas01mc@17
|
2045 meanDBdur[k]=0.0;
|
mas01mc@18
|
2046 for(j=0; j<trackTable[k]-1 ; j++)
|
mas01mc@17
|
2047 meanDBdur[k]+=timesTable[j+1]-timesTable[j];
|
mas01mc@17
|
2048 meanDBdur[k]/=j;
|
mas01mc@17
|
2049 }
|
mas01mc@17
|
2050 }
|
mas01mc@17
|
2051
|
mas01mc@17
|
2052 if(usingQueryPoint)
|
mas01mc@17
|
2053 if(queryPoint>numVectors || queryPoint>numVectors-wL+1)
|
mas01mc@17
|
2054 error("queryPoint > numVectors-wL+1 in query");
|
mas01mc@17
|
2055 else{
|
mas01cr@60
|
2056 if(verbosity>1) {
|
mas01mc@17
|
2057 cerr << "query point: " << queryPoint << endl; cerr.flush();
|
mas01cr@60
|
2058 }
|
mas01mc@17
|
2059 query=query+queryPoint*dbH->dim;
|
mas01mc@17
|
2060 qNorm=qNorm+queryPoint;
|
mas01mc@17
|
2061 numVectors=wL;
|
mas01mc@17
|
2062 }
|
mas01mc@17
|
2063
|
mas01mc@17
|
2064 double ** D = 0; // Differences query and target
|
mas01mc@17
|
2065 double ** DD = 0; // Matched filter distance
|
mas01mc@17
|
2066
|
mas01mc@17
|
2067 D = new double*[numVectors];
|
mas01mc@17
|
2068 assert(D);
|
mas01mc@17
|
2069 DD = new double*[numVectors];
|
mas01mc@17
|
2070 assert(DD);
|
mas01mc@17
|
2071
|
mas01mc@17
|
2072 gettimeofday(&tv1, NULL);
|
mas01mc@18
|
2073 processedTracks=0;
|
mas01mc@18
|
2074 unsigned successfulTracks=0;
|
mas01mc@17
|
2075
|
mas01mc@17
|
2076 double* qp;
|
mas01mc@17
|
2077 double* sp;
|
mas01mc@17
|
2078 double* dp;
|
mas01mc@17
|
2079
|
mas01mc@18
|
2080 // build track offset table
|
mas01mc@18
|
2081 unsigned *trackOffsetTable = new unsigned[dbH->numFiles];
|
mas01mc@18
|
2082 unsigned cumTrack=0;
|
mas01mc@18
|
2083 unsigned trackIndexOffset;
|
mas01mc@17
|
2084 for(k=0; k<dbH->numFiles;k++){
|
mas01mc@18
|
2085 trackOffsetTable[k]=cumTrack;
|
mas01mc@18
|
2086 cumTrack+=trackTable[k]*dbH->dim;
|
mas01mc@17
|
2087 }
|
mas01mc@17
|
2088
|
mas01mc@17
|
2089 char nextKey [MAXSTR];
|
mas01mc@17
|
2090
|
mas01mc@17
|
2091 // chi^2 statistics
|
mas01mc@17
|
2092 double sampleCount = 0;
|
mas01mc@17
|
2093 double sampleSum = 0;
|
mas01mc@17
|
2094 double logSampleSum = 0;
|
mas01mc@17
|
2095 double minSample = 1e9;
|
mas01mc@17
|
2096 double maxSample = 0;
|
mas01mc@17
|
2097
|
mas01mc@17
|
2098 // Track loop
|
mas01mc@18
|
2099 for(processedTracks=0, track=0 ; processedTracks < dbH->numFiles ; track++, processedTracks++){
|
mas01mc@17
|
2100
|
mas01mc@18
|
2101 // get trackID from file if using a control file
|
mas01mc@18
|
2102 if(trackFile){
|
mas01mc@18
|
2103 if(!trackFile->eof()){
|
mas01mc@18
|
2104 trackFile->getline(nextKey,MAXSTR);
|
mas01mc@18
|
2105 track=getKeyPos(nextKey);
|
mas01mc@17
|
2106 }
|
mas01mc@17
|
2107 else
|
mas01mc@17
|
2108 break;
|
mas01mc@17
|
2109 }
|
mas01mc@17
|
2110
|
mas01mc@18
|
2111 trackOffset=trackOffsetTable[track]; // numDoubles offset
|
mas01mc@18
|
2112 trackIndexOffset=trackOffset/dbH->dim; // numVectors offset
|
mas01mc@17
|
2113
|
mas01cr@70
|
2114 if(sequenceLength<=trackTable[track]){ // test for short sequences
|
mas01mc@17
|
2115
|
mas01cr@60
|
2116 if(verbosity>7) {
|
mas01mc@18
|
2117 cerr << track << "." << trackIndexOffset << "." << trackTable[track] << " | ";cerr.flush();
|
mas01cr@60
|
2118 }
|
mas01cr@60
|
2119
|
mas01mc@17
|
2120 // Sum products matrix
|
mas01mc@17
|
2121 for(j=0; j<numVectors;j++){
|
mas01mc@18
|
2122 D[j]=new double[trackTable[track]];
|
mas01mc@17
|
2123 assert(D[j]);
|
mas01mc@17
|
2124
|
mas01mc@17
|
2125 }
|
mas01mc@17
|
2126
|
mas01mc@17
|
2127 // Matched filter matrix
|
mas01mc@17
|
2128 for(j=0; j<numVectors;j++){
|
mas01mc@18
|
2129 DD[j]=new double[trackTable[track]];
|
mas01mc@17
|
2130 assert(DD[j]);
|
mas01mc@17
|
2131 }
|
mas01mc@17
|
2132
|
mas01mc@17
|
2133 // Dot product
|
mas01mc@17
|
2134 for(j=0; j<numVectors; j++)
|
mas01mc@18
|
2135 for(k=0; k<trackTable[track]; k++){
|
mas01mc@17
|
2136 qp=query+j*dbH->dim;
|
mas01mc@18
|
2137 sp=dataBuf+trackOffset+k*dbH->dim;
|
mas01mc@17
|
2138 DD[j][k]=0.0; // Initialize matched filter array
|
mas01mc@17
|
2139 dp=&D[j][k]; // point to correlation cell j,k
|
mas01mc@17
|
2140 *dp=0.0; // initialize correlation cell
|
mas01mc@17
|
2141 l=dbH->dim; // size of vectors
|
mas01mc@17
|
2142 while(l--)
|
mas01mc@17
|
2143 *dp+=*qp++**sp++;
|
mas01mc@17
|
2144 }
|
mas01mc@17
|
2145
|
mas01mc@17
|
2146 // Matched Filter
|
mas01mc@17
|
2147 // HOP SIZE == 1
|
mas01mc@17
|
2148 double* spd;
|
mas01mc@17
|
2149 if(HOP_SIZE==1){ // HOP_SIZE = shingleHop
|
mas01mc@17
|
2150 for(w=0; w<wL; w++)
|
mas01mc@17
|
2151 for(j=0; j<numVectors-w; j++){
|
mas01mc@17
|
2152 sp=DD[j];
|
mas01mc@17
|
2153 spd=D[j+w]+w;
|
mas01mc@18
|
2154 k=trackTable[track]-w;
|
mas01mc@17
|
2155 while(k--)
|
mas01mc@17
|
2156 *sp+++=*spd++;
|
mas01mc@17
|
2157 }
|
mas01mc@17
|
2158 }
|
mas01mc@17
|
2159
|
mas01mc@17
|
2160 else{ // HOP_SIZE != 1
|
mas01mc@17
|
2161 for(w=0; w<wL; w++)
|
mas01mc@17
|
2162 for(j=0; j<numVectors-w; j+=HOP_SIZE){
|
mas01mc@17
|
2163 sp=DD[j];
|
mas01mc@17
|
2164 spd=D[j+w]+w;
|
mas01mc@18
|
2165 for(k=0; k<trackTable[track]-w; k+=HOP_SIZE){
|
mas01mc@17
|
2166 *sp+=*spd;
|
mas01mc@17
|
2167 sp+=HOP_SIZE;
|
mas01mc@17
|
2168 spd+=HOP_SIZE;
|
mas01mc@17
|
2169 }
|
mas01mc@17
|
2170 }
|
mas01mc@17
|
2171 }
|
mas01mc@17
|
2172
|
mas01cr@60
|
2173 if(verbosity>3 && usingTimes) {
|
mas01mc@18
|
2174 cerr << "meanQdur=" << meanQdur << " meanDBdur=" << meanDBdur[track] << endl;
|
mas01mc@17
|
2175 cerr.flush();
|
mas01mc@17
|
2176 }
|
mas01mc@17
|
2177
|
mas01mc@17
|
2178 if(!usingTimes ||
|
mas01mc@17
|
2179 (usingTimes
|
mas01mc@18
|
2180 && fabs(meanDBdur[track]-meanQdur)<meanQdur*timesTol)){
|
mas01mc@17
|
2181
|
mas01cr@60
|
2182 if(verbosity>3 && usingTimes) {
|
mas01mc@17
|
2183 cerr << "within duration tolerance." << endl;
|
mas01mc@17
|
2184 cerr.flush();
|
mas01mc@17
|
2185 }
|
mas01mc@17
|
2186
|
mas01mc@17
|
2187 // Search for minimum distance by shingles (concatenated vectors)
|
mas01cr@70
|
2188 for(j=0;j<=numVectors-wL;j+=HOP_SIZE)
|
mas01cr@70
|
2189 for(k=0;k<=trackTable[track]-wL;k+=HOP_SIZE){
|
mas01mc@18
|
2190 thisDist=2-(2/(qNorm[j]*sNorm[trackIndexOffset+k]))*DD[j][k];
|
mas01cr@60
|
2191 if(verbosity>10) {
|
mas01mc@18
|
2192 cerr << thisDist << " " << qNorm[j] << " " << sNorm[trackIndexOffset+k] << endl;
|
mas01cr@60
|
2193 }
|
mas01mc@17
|
2194 // Gather chi^2 statistics
|
mas01mc@17
|
2195 if(thisDist<minSample)
|
mas01mc@17
|
2196 minSample=thisDist;
|
mas01mc@17
|
2197 else if(thisDist>maxSample)
|
mas01mc@17
|
2198 maxSample=thisDist;
|
mas01mc@17
|
2199 if(thisDist>1e-9){
|
mas01mc@17
|
2200 sampleCount++;
|
mas01mc@17
|
2201 sampleSum+=thisDist;
|
mas01mc@17
|
2202 logSampleSum+=log(thisDist);
|
mas01mc@17
|
2203 }
|
mas01mc@17
|
2204
|
mas01mc@18
|
2205 // diffL2 = fabs(qNorm[j] - sNorm[trackIndexOffset+k]);
|
mas01mc@17
|
2206 // Power test
|
mas01mc@17
|
2207 if(!USE_THRESH ||
|
mas01mc@17
|
2208 // Threshold on mean L2 of Q and S sequences
|
mas01mc@18
|
2209 (USE_THRESH && qNorm[j]>SILENCE_THRESH && sNorm[trackIndexOffset+k]>SILENCE_THRESH &&
|
mas01mc@17
|
2210 // Are both query and target windows above mean energy?
|
mas01mc@18
|
2211 (qNorm[j]>qMeanL2*.25 && sNorm[trackIndexOffset+k]>sMeanL2[track]*.25))) // && diffL2 < DIFF_THRESH )))
|
mas01mc@17
|
2212 thisDist=thisDist; // Computed above
|
mas01mc@17
|
2213 else
|
mas01mc@17
|
2214 thisDist=1000000.0;
|
mas01mc@17
|
2215 if(thisDist>=0 && thisDist<=radius){
|
mas01mc@17
|
2216 distances[0]++; // increment count
|
mas01mc@18
|
2217 break; // only need one track point per query point
|
mas01mc@17
|
2218 }
|
mas01mc@17
|
2219 }
|
mas01mc@17
|
2220 // How many points were below threshold ?
|
mas01mc@17
|
2221 thisDist=distances[0];
|
mas01mc@17
|
2222
|
mas01mc@17
|
2223 // Let's see the distances then...
|
mas01cr@60
|
2224 if(verbosity>3) {
|
mas01mc@18
|
2225 cerr << fileTable+track*O2_FILETABLESIZE << " " << thisDist << endl;
|
mas01cr@60
|
2226 }
|
mas01mc@17
|
2227
|
mas01mc@18
|
2228 // All the track stuff goes here
|
mas01mc@18
|
2229 n=trackNN;
|
mas01mc@17
|
2230 while(n--){
|
mas01mc@18
|
2231 if(thisDist>trackDistances[n]){
|
mas01mc@18
|
2232 if((n==0 || thisDist<=trackDistances[n-1])){
|
mas01mc@17
|
2233 // Copy all values above up the queue
|
mas01mc@18
|
2234 for( l=trackNN-1 ; l > n ; l--){
|
mas01mc@18
|
2235 trackDistances[l]=trackDistances[l-1];
|
mas01mc@18
|
2236 trackQIndexes[l]=trackQIndexes[l-1];
|
mas01mc@18
|
2237 trackSIndexes[l]=trackSIndexes[l-1];
|
mas01mc@18
|
2238 trackIDs[l]=trackIDs[l-1];
|
mas01mc@17
|
2239 }
|
mas01mc@18
|
2240 trackDistances[n]=thisDist;
|
mas01mc@18
|
2241 trackQIndexes[n]=qIndexes[0];
|
mas01mc@18
|
2242 trackSIndexes[n]=sIndexes[0];
|
mas01mc@18
|
2243 successfulTracks++;
|
mas01mc@18
|
2244 trackIDs[n]=track;
|
mas01mc@17
|
2245 break;
|
mas01mc@17
|
2246 }
|
mas01mc@17
|
2247 }
|
mas01mc@17
|
2248 else
|
mas01mc@17
|
2249 break;
|
mas01mc@17
|
2250 }
|
mas01mc@17
|
2251 } // Duration match
|
mas01mc@17
|
2252
|
mas01mc@18
|
2253 // Clean up current track
|
mas01mc@17
|
2254 if(D!=NULL){
|
mas01mc@17
|
2255 for(j=0; j<numVectors; j++)
|
mas01mc@17
|
2256 delete[] D[j];
|
mas01mc@17
|
2257 }
|
mas01mc@17
|
2258
|
mas01mc@17
|
2259 if(DD!=NULL){
|
mas01mc@17
|
2260 for(j=0; j<numVectors; j++)
|
mas01mc@17
|
2261 delete[] DD[j];
|
mas01mc@17
|
2262 }
|
mas01mc@17
|
2263 }
|
mas01mc@18
|
2264 // per-track reset array values
|
mas01mc@17
|
2265 for(unsigned k=0; k<pointNN; k++){
|
mas01mc@17
|
2266 distances[k]=0.0;
|
mas01mc@17
|
2267 qIndexes[k]=~0;
|
mas01mc@17
|
2268 sIndexes[k]=~0;
|
mas01mc@17
|
2269 }
|
mas01mc@17
|
2270 }
|
mas01mc@17
|
2271
|
mas01mc@17
|
2272 gettimeofday(&tv2,NULL);
|
mas01cr@60
|
2273 if(verbosity>1) {
|
mas01mc@18
|
2274 cerr << endl << "processed tracks :" << processedTracks << " matched tracks: " << successfulTracks << " elapsed time:"
|
mas01mc@17
|
2275 << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
|
mas01mc@17
|
2276 cerr << "sampleCount: " << sampleCount << " sampleSum: " << sampleSum << " logSampleSum: " << logSampleSum
|
mas01mc@17
|
2277 << " minSample: " << minSample << " maxSample: " << maxSample << endl;
|
mas01mc@17
|
2278 }
|
mas01mc@17
|
2279
|
mas01mc@17
|
2280 if(adbQueryResult==0){
|
mas01cr@60
|
2281 if(verbosity>1) {
|
mas01mc@17
|
2282 cerr<<endl;
|
mas01cr@60
|
2283 }
|
mas01mc@17
|
2284 // Output answer
|
mas01mc@17
|
2285 // Loop over nearest neighbours
|
mas01mc@18
|
2286 for(k=0; k < min(trackNN,successfulTracks); k++)
|
mas01mc@18
|
2287 cout << fileTable+trackIDs[k]*O2_FILETABLESIZE << " " << trackDistances[k] << endl;
|
mas01mc@17
|
2288 }
|
mas01mc@17
|
2289 else{ // Process Web Services Query
|
mas01mc@18
|
2290 int listLen = min(trackNN, processedTracks);
|
mas01mc@17
|
2291 adbQueryResult->__sizeRlist=listLen;
|
mas01mc@17
|
2292 adbQueryResult->__sizeDist=listLen;
|
mas01mc@17
|
2293 adbQueryResult->__sizeQpos=listLen;
|
mas01mc@17
|
2294 adbQueryResult->__sizeSpos=listLen;
|
mas01mc@17
|
2295 adbQueryResult->Rlist= new char*[listLen];
|
mas01mc@17
|
2296 adbQueryResult->Dist = new double[listLen];
|
mas01cr@86
|
2297 adbQueryResult->Qpos = new unsigned int[listLen];
|
mas01cr@86
|
2298 adbQueryResult->Spos = new unsigned int[listLen];
|
mas01cr@59
|
2299 for(k=0; k<(unsigned)adbQueryResult->__sizeRlist; k++){
|
mas01mc@17
|
2300 adbQueryResult->Rlist[k]=new char[O2_MAXFILESTR];
|
mas01mc@18
|
2301 adbQueryResult->Dist[k]=trackDistances[k];
|
mas01mc@18
|
2302 adbQueryResult->Qpos[k]=trackQIndexes[k];
|
mas01mc@18
|
2303 adbQueryResult->Spos[k]=trackSIndexes[k];
|
mas01mc@18
|
2304 sprintf(adbQueryResult->Rlist[k], "%s", fileTable+trackIDs[k]*O2_FILETABLESIZE);
|
mas01mc@17
|
2305 }
|
mas01mc@17
|
2306 }
|
mas01mc@17
|
2307
|
mas01mc@17
|
2308 // Clean up
|
mas01mc@18
|
2309 if(trackOffsetTable)
|
mas01mc@18
|
2310 delete[] trackOffsetTable;
|
mas01mc@17
|
2311 if(queryCopy)
|
mas01mc@17
|
2312 delete[] queryCopy;
|
mas01cr@121
|
2313 if(qNorm)
|
mas01cr@121
|
2314 delete[] qNorm;
|
mas01cr@121
|
2315 if(sNorm)
|
mas01cr@121
|
2316 delete[] sNorm;
|
mas01cr@121
|
2317 if(sMeanL2)
|
mas01cr@121
|
2318 delete[] sMeanL2;
|
mas01mc@17
|
2319 if(D)
|
mas01mc@17
|
2320 delete[] D;
|
mas01mc@17
|
2321 if(DD)
|
mas01mc@17
|
2322 delete[] DD;
|
mas01mc@17
|
2323 if(timesdata)
|
mas01mc@17
|
2324 delete[] timesdata;
|
mas01mc@17
|
2325 if(meanDBdur)
|
mas01mc@17
|
2326 delete[] meanDBdur;
|
mas01mc@17
|
2327
|
mas01mc@17
|
2328
|
mas01mc@17
|
2329 }
|
mas01mc@17
|
2330
|
mas01cr@0
|
2331 // Unit norm block of features
|
mas01cr@0
|
2332 void audioDB::unitNorm(double* X, unsigned dim, unsigned n, double* qNorm){
|
mas01cr@0
|
2333 unsigned d;
|
mas01cr@59
|
2334 double L2, *p;
|
mas01cr@60
|
2335 if(verbosity>2) {
|
mas01cr@0
|
2336 cerr << "norming " << n << " vectors...";cerr.flush();
|
mas01cr@60
|
2337 }
|
mas01cr@0
|
2338 while(n--){
|
mas01cr@0
|
2339 p=X;
|
mas01cr@0
|
2340 L2=0.0;
|
mas01cr@0
|
2341 d=dim;
|
mas01cr@0
|
2342 while(d--){
|
mas01cr@0
|
2343 L2+=*p**p;
|
mas01cr@0
|
2344 p++;
|
mas01cr@0
|
2345 }
|
mas01mc@17
|
2346 /* L2=sqrt(L2);*/
|
mas01cr@0
|
2347 if(qNorm)
|
mas01cr@0
|
2348 *qNorm++=L2;
|
mas01mc@17
|
2349 /*
|
mas01cr@0
|
2350 oneOverL2 = 1.0/L2;
|
mas01cr@0
|
2351 d=dim;
|
mas01cr@0
|
2352 while(d--){
|
mas01cr@0
|
2353 *X*=oneOverL2;
|
mas01cr@0
|
2354 X++;
|
mas01mc@17
|
2355 */
|
mas01mc@17
|
2356 X+=dim;
|
mas01cr@0
|
2357 }
|
mas01cr@60
|
2358 if(verbosity>2) {
|
mas01cr@0
|
2359 cerr << "done..." << endl;
|
mas01cr@60
|
2360 }
|
mas01cr@0
|
2361 }
|
mas01cr@0
|
2362
|
mas01cr@0
|
2363 // Unit norm block of features
|
mas01cr@0
|
2364 void audioDB::unitNormAndInsertL2(double* X, unsigned dim, unsigned n, unsigned append=0){
|
mas01cr@0
|
2365 unsigned d;
|
mas01cr@59
|
2366 double *p;
|
mas01cr@0
|
2367 unsigned nn = n;
|
mas01cr@0
|
2368
|
mas01cr@0
|
2369 assert(l2normTable);
|
mas01cr@0
|
2370
|
mas01cr@0
|
2371 if( !append && (dbH->flags & O2_FLAG_L2NORM) )
|
mas01cr@0
|
2372 error("Database is already L2 normed", "automatic norm on insert is enabled");
|
mas01cr@0
|
2373
|
mas01cr@60
|
2374 if(verbosity>2) {
|
mas01cr@0
|
2375 cerr << "norming " << n << " vectors...";cerr.flush();
|
mas01cr@60
|
2376 }
|
mas01cr@0
|
2377
|
mas01cr@0
|
2378 double* l2buf = new double[n];
|
mas01cr@0
|
2379 double* l2ptr = l2buf;
|
mas01cr@0
|
2380 assert(l2buf);
|
mas01cr@0
|
2381 assert(X);
|
mas01cr@0
|
2382
|
mas01cr@0
|
2383 while(nn--){
|
mas01cr@0
|
2384 p=X;
|
mas01cr@0
|
2385 *l2ptr=0.0;
|
mas01cr@0
|
2386 d=dim;
|
mas01cr@0
|
2387 while(d--){
|
mas01cr@0
|
2388 *l2ptr+=*p**p;
|
mas01cr@0
|
2389 p++;
|
mas01cr@0
|
2390 }
|
mas01mc@17
|
2391 l2ptr++;
|
mas01mc@17
|
2392 /*
|
mas01mc@17
|
2393 oneOverL2 = 1.0/(*l2ptr++);
|
mas01mc@17
|
2394 d=dim;
|
mas01mc@17
|
2395 while(d--){
|
mas01cr@0
|
2396 *X*=oneOverL2;
|
mas01cr@0
|
2397 X++;
|
mas01mc@17
|
2398 }
|
mas01mc@17
|
2399 */
|
mas01mc@17
|
2400 X+=dim;
|
mas01cr@0
|
2401 }
|
mas01cr@0
|
2402 unsigned offset;
|
mas01cr@84
|
2403 if(append) {
|
mas01cr@84
|
2404 // FIXME: a hack, a very palpable hack: the vectors have already
|
mas01cr@84
|
2405 // been inserted, and dbH->length has already been updated. We
|
mas01cr@84
|
2406 // need to subtract off again the number of vectors that we've
|
mas01cr@84
|
2407 // inserted this time...
|
mas01cr@84
|
2408 offset=(dbH->length/(dbH->dim*sizeof(double)))-n; // number of vectors
|
mas01cr@84
|
2409 } else {
|
mas01cr@0
|
2410 offset=0;
|
mas01cr@84
|
2411 }
|
mas01cr@0
|
2412 memcpy(l2normTable+offset, l2buf, n*sizeof(double));
|
mas01cr@0
|
2413 if(l2buf)
|
mas01mc@17
|
2414 delete[] l2buf;
|
mas01cr@60
|
2415 if(verbosity>2) {
|
mas01cr@0
|
2416 cerr << "done..." << endl;
|
mas01cr@60
|
2417 }
|
mas01cr@0
|
2418 }
|
mas01cr@0
|
2419
|
mas01cr@0
|
2420
|
mas01cr@0
|
2421 // Start an audioDB server on the host
|
mas01cr@0
|
2422 void audioDB::startServer(){
|
mas01cr@0
|
2423 struct soap soap;
|
mas01cr@0
|
2424 int m, s; // master and slave sockets
|
mas01cr@0
|
2425 soap_init(&soap);
|
mas01cr@92
|
2426 // FIXME: largely this use of SO_REUSEADDR is to make writing (and
|
mas01cr@92
|
2427 // running) test cases more convenient, so that multiple test runs
|
mas01cr@92
|
2428 // in close succession don't fail because of a bin() error.
|
mas01cr@92
|
2429 // Investigate whether there are any potential drawbacks in this,
|
mas01cr@92
|
2430 // and also whether there's a better way to write the tests. --
|
mas01cr@92
|
2431 // CSR, 2007-10-03
|
mas01cr@92
|
2432 soap.bind_flags |= SO_REUSEADDR;
|
mas01cr@0
|
2433 m = soap_bind(&soap, NULL, port, 100);
|
mas01cr@0
|
2434 if (m < 0)
|
mas01cr@0
|
2435 soap_print_fault(&soap, stderr);
|
mas01cr@0
|
2436 else
|
mas01cr@0
|
2437 {
|
mas01cr@0
|
2438 fprintf(stderr, "Socket connection successful: master socket = %d\n", m);
|
mas01cr@0
|
2439 for (int i = 1; ; i++)
|
mas01cr@0
|
2440 {
|
mas01cr@0
|
2441 s = soap_accept(&soap);
|
mas01cr@0
|
2442 if (s < 0)
|
mas01cr@0
|
2443 {
|
mas01cr@0
|
2444 soap_print_fault(&soap, stderr);
|
mas01cr@0
|
2445 break;
|
mas01cr@0
|
2446 }
|
mas01cr@75
|
2447 fprintf(stderr, "%d: accepted connection from IP=%lu.%lu.%lu.%lu socket=%d\n", i,
|
mas01cr@0
|
2448 (soap.ip >> 24)&0xFF, (soap.ip >> 16)&0xFF, (soap.ip >> 8)&0xFF, soap.ip&0xFF, s);
|
mas01cr@0
|
2449 if (soap_serve(&soap) != SOAP_OK) // process RPC request
|
mas01cr@0
|
2450 soap_print_fault(&soap, stderr); // print error
|
mas01cr@0
|
2451 fprintf(stderr, "request served\n");
|
mas01cr@0
|
2452 soap_destroy(&soap); // clean up class instances
|
mas01cr@0
|
2453 soap_end(&soap); // clean up everything and close socket
|
mas01cr@0
|
2454 }
|
mas01cr@0
|
2455 }
|
mas01cr@0
|
2456 soap_done(&soap); // close master socket and detach environment
|
mas01cr@0
|
2457 }
|
mas01cr@0
|
2458
|
mas01cr@0
|
2459
|
mas01cr@0
|
2460 // web services
|
mas01cr@0
|
2461
|
mas01cr@0
|
2462 // SERVER SIDE
|
mas01cr@76
|
2463 int adb__status(struct soap* soap, xsd__string dbName, adb__statusResult &adbStatusResult){
|
mas01cr@21
|
2464 char* const argv[]={"audioDB",COM_STATUS,"-d",dbName};
|
mas01cr@21
|
2465 const unsigned argc = 4;
|
mas01cr@77
|
2466 try {
|
mas01cr@77
|
2467 audioDB(argc, argv, &adbStatusResult);
|
mas01cr@77
|
2468 return SOAP_OK;
|
mas01cr@77
|
2469 } catch(char *err) {
|
mas01cr@77
|
2470 soap_receiver_fault(soap, err, "");
|
mas01cr@77
|
2471 return SOAP_FAULT;
|
mas01cr@77
|
2472 }
|
mas01cr@0
|
2473 }
|
mas01cr@0
|
2474
|
mas01cr@0
|
2475 // Literal translation of command line to web service
|
mas01cr@0
|
2476
|
mas01mc@18
|
2477 int adb__query(struct soap* soap, xsd__string dbName, xsd__string qKey, xsd__string keyList, xsd__string timesFileName, xsd__int qType, xsd__int qPos, xsd__int pointNN, xsd__int trackNN, xsd__int seqLen, adb__queryResult &adbQueryResult){
|
mas01cr@0
|
2478 char queryType[256];
|
mas01cr@0
|
2479 for(int k=0; k<256; k++)
|
mas01cr@0
|
2480 queryType[k]='\0';
|
mas01cr@105
|
2481 if(qType == O2_POINT_QUERY)
|
mas01cr@0
|
2482 strncpy(queryType, "point", strlen("point"));
|
mas01cr@105
|
2483 else if (qType == O2_SEQUENCE_QUERY)
|
mas01cr@0
|
2484 strncpy(queryType, "sequence", strlen("sequence"));
|
mas01cr@105
|
2485 else if(qType == O2_TRACK_QUERY)
|
mas01mc@18
|
2486 strncpy(queryType,"track", strlen("track"));
|
mas01cr@0
|
2487 else
|
mas01cr@0
|
2488 strncpy(queryType, "", strlen(""));
|
mas01cr@0
|
2489
|
mas01cr@0
|
2490 if(pointNN==0)
|
mas01cr@0
|
2491 pointNN=10;
|
mas01mc@18
|
2492 if(trackNN==0)
|
mas01mc@18
|
2493 trackNN=10;
|
mas01cr@0
|
2494 if(seqLen==0)
|
mas01cr@0
|
2495 seqLen=16;
|
mas01cr@0
|
2496
|
mas01cr@0
|
2497 char qPosStr[256];
|
mas01cr@0
|
2498 sprintf(qPosStr, "%d", qPos);
|
mas01cr@0
|
2499 char pointNNStr[256];
|
mas01cr@0
|
2500 sprintf(pointNNStr,"%d",pointNN);
|
mas01mc@18
|
2501 char trackNNStr[256];
|
mas01mc@18
|
2502 sprintf(trackNNStr,"%d",trackNN);
|
mas01cr@0
|
2503 char seqLenStr[256];
|
mas01cr@0
|
2504 sprintf(seqLenStr,"%d",seqLen);
|
mas01cr@0
|
2505
|
mas01cr@0
|
2506 const char* argv[] ={
|
mas01cr@0
|
2507 "./audioDB",
|
mas01cr@0
|
2508 COM_QUERY,
|
mas01cr@0
|
2509 queryType, // Need to pass a parameter
|
mas01cr@0
|
2510 COM_DATABASE,
|
mas01cr@0
|
2511 dbName,
|
mas01cr@0
|
2512 COM_FEATURES,
|
mas01cr@0
|
2513 qKey,
|
mas01cr@0
|
2514 COM_KEYLIST,
|
mas01cr@0
|
2515 keyList==0?"":keyList,
|
mas01cr@0
|
2516 COM_TIMES,
|
mas01cr@0
|
2517 timesFileName==0?"":timesFileName,
|
mas01cr@0
|
2518 COM_QPOINT,
|
mas01cr@0
|
2519 qPosStr,
|
mas01cr@0
|
2520 COM_POINTNN,
|
mas01cr@0
|
2521 pointNNStr,
|
mas01mc@18
|
2522 COM_TRACKNN,
|
mas01mc@18
|
2523 trackNNStr, // Need to pass a parameter
|
mas01cr@0
|
2524 COM_SEQLEN,
|
mas01cr@0
|
2525 seqLenStr
|
mas01cr@0
|
2526 };
|
mas01cr@0
|
2527
|
mas01cr@0
|
2528 const unsigned argc = 19;
|
mas01cr@79
|
2529 try {
|
mas01cr@79
|
2530 audioDB(argc, (char* const*)argv, &adbQueryResult);
|
mas01cr@79
|
2531 return SOAP_OK;
|
mas01cr@79
|
2532 } catch (char *err) {
|
mas01cr@79
|
2533 soap_receiver_fault(soap, err, "");
|
mas01cr@79
|
2534 return SOAP_FAULT;
|
mas01cr@79
|
2535 }
|
mas01cr@0
|
2536 }
|
mas01cr@0
|
2537
|
mas01cr@0
|
2538 int main(const unsigned argc, char* const argv[]){
|
mas01cr@0
|
2539 audioDB(argc, argv);
|
mas01cr@0
|
2540 }
|
mas01cr@104
|
2541
|