annotate audioDB.cpp @ 191:b7400fabbb94 no-big-mmap

mmap dataBuf for the remaining cases * -L after insertion; * pointQuery; We'll fix these later.
author mas01cr
date Mon, 19 Nov 2007 17:19:46 +0000
parents f56c530750da
children 5f3d260ba71d
rev   line source
mas01cr@0 1 #include "audioDB.h"
mas01cr@0 2
mas01cr@105 3 #if defined(O2_DEBUG)
mas01cr@104 4 void sigterm_action(int signal, siginfo_t *info, void *context) {
mas01cr@104 5 exit(128+signal);
mas01cr@104 6 }
mas01cr@104 7
mas01cr@104 8 void sighup_action(int signal, siginfo_t *info, void *context) {
mas01cr@104 9 // FIXME: reread any configuration files
mas01cr@104 10 }
mas01cr@105 11 #endif
mas01cr@0 12
mas01cr@32 13 void audioDB::error(const char* a, const char* b, const char *sysFunc) {
mas01cr@77 14 if(isServer) {
mas01cr@81 15 /* FIXME: I think this is leaky -- we never delete err. actually
mas01cr@81 16 deleting it is tricky, though; it gets placed into some
mas01cr@81 17 soap-internal struct with uncertain extent... -- CSR,
mas01cr@81 18 2007-10-01 */
mas01cr@77 19 char *err = new char[256]; /* FIXME: overflows */
mas01cr@77 20 snprintf(err, 255, "%s: %s\n%s", a, b, sysFunc ? strerror(errno) : "");
mas01cr@77 21 /* FIXME: actually we could usefully do with a properly structured
mas01cr@77 22 type, so that we can throw separate faultstring and details.
mas01cr@77 23 -- CSR, 2007-10-01 */
mas01cr@77 24 throw(err);
mas01cr@77 25 } else {
mas01cr@77 26 cerr << a << ": " << b << endl;
mas01cr@77 27 if (sysFunc) {
mas01cr@77 28 perror(sysFunc);
mas01cr@77 29 }
mas01cr@77 30 exit(1);
mas01cr@32 31 }
mas01cr@0 32 }
mas01cr@0 33
mas01cr@76 34 audioDB::audioDB(const unsigned argc, char* const argv[]): O2_AUDIODB_INITIALIZERS
mas01cr@76 35 {
mas01cr@0 36 if(processArgs(argc, argv)<0){
mas01cr@0 37 printf("No command found.\n");
mas01cr@0 38 cmdline_parser_print_version ();
mas01cr@0 39 if (strlen(gengetopt_args_info_purpose) > 0)
mas01cr@0 40 printf("%s\n", gengetopt_args_info_purpose);
mas01cr@0 41 printf("%s\n", gengetopt_args_info_usage);
mas01cr@0 42 printf("%s\n", gengetopt_args_info_help[1]);
mas01cr@0 43 printf("%s\n", gengetopt_args_info_help[2]);
mas01cr@0 44 printf("%s\n", gengetopt_args_info_help[0]);
mas01cr@151 45 error("No command found");
mas01cr@0 46 }
mas01cr@77 47
mas01cr@0 48 if(O2_ACTION(COM_SERVER))
mas01cr@0 49 startServer();
mas01cr@0 50
mas01cr@0 51 else if(O2_ACTION(COM_CREATE))
mas01cr@0 52 create(dbName);
mas01cr@0 53
mas01cr@0 54 else if(O2_ACTION(COM_INSERT))
mas01cr@0 55 insert(dbName, inFile);
mas01cr@0 56
mas01cr@0 57 else if(O2_ACTION(COM_BATCHINSERT))
mas01cr@0 58 batchinsert(dbName, inFile);
mas01cr@0 59
mas01cr@0 60 else if(O2_ACTION(COM_QUERY))
mas01cr@0 61 if(isClient)
mas01cr@0 62 ws_query(dbName, inFile, (char*)hostport);
mas01cr@0 63 else
mas01cr@76 64 query(dbName, inFile);
mas01cr@0 65
mas01cr@0 66 else if(O2_ACTION(COM_STATUS))
mas01cr@0 67 if(isClient)
mas01cr@0 68 ws_status(dbName,(char*)hostport);
mas01cr@0 69 else
mas01cr@0 70 status(dbName);
mas01cr@0 71
mas01cr@0 72 else if(O2_ACTION(COM_L2NORM))
mas01cr@0 73 l2norm(dbName);
mas01cr@0 74
mas01cr@0 75 else if(O2_ACTION(COM_DUMP))
mas01cr@0 76 dump(dbName);
mas01cr@0 77
mas01cr@0 78 else
mas01cr@0 79 error("Unrecognized command",command);
mas01cr@0 80 }
mas01cr@0 81
mas01cr@133 82 audioDB::audioDB(const unsigned argc, char* const argv[], adb__queryResponse *adbQueryResponse): O2_AUDIODB_INITIALIZERS
mas01cr@76 83 {
mas01cr@97 84 try {
mas01cr@151 85 isServer = 1; // FIXME: Hack
mas01cr@97 86 processArgs(argc, argv);
mas01cr@97 87 assert(O2_ACTION(COM_QUERY));
mas01cr@133 88 query(dbName, inFile, adbQueryResponse);
mas01cr@97 89 } catch(char *err) {
mas01cr@97 90 cleanup();
mas01cr@97 91 throw(err);
mas01cr@97 92 }
mas01cr@76 93 }
mas01cr@76 94
mas01cr@133 95 audioDB::audioDB(const unsigned argc, char* const argv[], adb__statusResponse *adbStatusResponse): O2_AUDIODB_INITIALIZERS
mas01cr@76 96 {
mas01cr@97 97 try {
mas01cr@151 98 isServer = 1; // FIXME: Hack
mas01cr@97 99 processArgs(argc, argv);
mas01cr@97 100 assert(O2_ACTION(COM_STATUS));
mas01cr@133 101 status(dbName, adbStatusResponse);
mas01cr@97 102 } catch(char *err) {
mas01cr@97 103 cleanup();
mas01cr@97 104 throw(err);
mas01cr@97 105 }
mas01cr@76 106 }
mas01cr@76 107
mas01cr@97 108 void audioDB::cleanup() {
mas01cr@122 109 cmdline_parser_free(&args_info);
mas01cr@0 110 if(indata)
mas01cr@0 111 munmap(indata,statbuf.st_size);
mas01cr@0 112 if(db)
mas01cr@176 113 munmap(db,getpagesize());
mas01cr@175 114 if(fileTable)
mas01cr@178 115 munmap(fileTable, fileTableLength);
mas01cr@175 116 if(trackTable)
mas01cr@178 117 munmap(trackTable, trackTableLength);
mas01cr@175 118 if(dataBuf)
mas01cr@178 119 munmap(dataBuf, dataBufLength);
mas01cr@175 120 if(timesTable)
mas01cr@185 121 munmap(timesTable, timesTableLength);
mas01cr@175 122 if(l2normTable)
mas01cr@178 123 munmap(l2normTable, l2normTableLength);
mas01cr@175 124
mas01cr@0 125 if(dbfid>0)
mas01cr@0 126 close(dbfid);
mas01cr@0 127 if(infid>0)
mas01cr@0 128 close(infid);
mas01cr@0 129 if(dbH)
mas01cr@0 130 delete dbH;
mas01cr@0 131 }
mas01cr@0 132
mas01cr@97 133 audioDB::~audioDB(){
mas01cr@97 134 cleanup();
mas01cr@97 135 }
mas01cr@97 136
mas01cr@0 137 int audioDB::processArgs(const unsigned argc, char* const argv[]){
mas01cr@0 138
mas01cr@0 139 if(argc<2){
mas01cr@0 140 cmdline_parser_print_version ();
mas01cr@0 141 if (strlen(gengetopt_args_info_purpose) > 0)
mas01cr@0 142 printf("%s\n", gengetopt_args_info_purpose);
mas01cr@0 143 printf("%s\n", gengetopt_args_info_usage);
mas01cr@0 144 printf("%s\n", gengetopt_args_info_help[1]);
mas01cr@0 145 printf("%s\n", gengetopt_args_info_help[2]);
mas01cr@0 146 printf("%s\n", gengetopt_args_info_help[0]);
mas01cr@0 147 exit(0);
mas01cr@0 148 }
mas01cr@0 149
mas01cr@0 150 if (cmdline_parser (argc, argv, &args_info) != 0)
mas01cr@151 151 error("Error parsing command line");
mas01cr@0 152
mas01cr@0 153 if(args_info.help_given){
mas01cr@0 154 cmdline_parser_print_help();
mas01cr@0 155 exit(0);
mas01cr@0 156 }
mas01cr@0 157
mas01cr@0 158 if(args_info.verbosity_given){
mas01cr@0 159 verbosity=args_info.verbosity_arg;
mas01cr@0 160 if(verbosity<0 || verbosity>10){
mas01cr@0 161 cerr << "Warning: verbosity out of range, setting to 1" << endl;
mas01cr@0 162 verbosity=1;
mas01cr@0 163 }
mas01cr@0 164 }
mas01cr@0 165
mas01cr@129 166 if(args_info.size_given) {
mas01cr@140 167 if (args_info.size_arg < 50 || args_info.size_arg > 4000) {
mas01cr@129 168 error("Size out of range", "");
mas01cr@129 169 }
mas01cr@129 170 size = args_info.size_arg * 1000000;
mas01cr@129 171 }
mas01cr@129 172
mas01mc@17 173 if(args_info.radius_given){
mas01mc@17 174 radius=args_info.radius_arg;
mas01mc@17 175 if(radius<=0 || radius>1000000000){
mas01cr@77 176 error("radius out of range");
mas01mc@17 177 }
mas01mc@17 178 else
mas01cr@60 179 if(verbosity>3) {
mas01mc@17 180 cerr << "Setting radius to " << radius << endl;
mas01cr@60 181 }
mas01mc@17 182 }
mas01mc@17 183
mas01cr@0 184 if(args_info.SERVER_given){
mas01cr@0 185 command=COM_SERVER;
mas01cr@0 186 port=args_info.SERVER_arg;
mas01cr@0 187 if(port<100 || port > 100000)
mas01cr@0 188 error("port out of range");
mas01cr@151 189 isServer = 1;
mas01cr@105 190 #if defined(O2_DEBUG)
mas01cr@104 191 struct sigaction sa;
mas01cr@104 192 sa.sa_sigaction = sigterm_action;
mas01cr@104 193 sa.sa_flags = SA_SIGINFO | SA_RESTART | SA_NODEFER;
mas01cr@104 194 sigaction(SIGTERM, &sa, NULL);
mas01cr@104 195 sa.sa_sigaction = sighup_action;
mas01cr@104 196 sa.sa_flags = SA_SIGINFO | SA_RESTART | SA_NODEFER;
mas01cr@104 197 sigaction(SIGHUP, &sa, NULL);
mas01cr@105 198 #endif
mas01cr@0 199 return 0;
mas01cr@0 200 }
mas01cr@0 201
mas01cr@0 202 // No return on client command, find database command
mas01cr@105 203 if(args_info.client_given){
mas01cr@105 204 command=COM_CLIENT;
mas01cr@105 205 hostport=args_info.client_arg;
mas01cr@105 206 isClient=1;
mas01cr@105 207 }
mas01cr@0 208
mas01cr@105 209 if(args_info.NEW_given){
mas01cr@105 210 command=COM_CREATE;
mas01cr@105 211 dbName=args_info.database_arg;
mas01cr@105 212 return 0;
mas01cr@105 213 }
mas01cr@0 214
mas01cr@105 215 if(args_info.STATUS_given){
mas01cr@105 216 command=COM_STATUS;
mas01cr@105 217 dbName=args_info.database_arg;
mas01cr@105 218 return 0;
mas01cr@105 219 }
mas01cr@0 220
mas01cr@105 221 if(args_info.DUMP_given){
mas01cr@105 222 command=COM_DUMP;
mas01cr@105 223 dbName=args_info.database_arg;
mas01cr@131 224 output = args_info.output_arg;
mas01cr@105 225 return 0;
mas01cr@105 226 }
mas01cr@0 227
mas01cr@105 228 if(args_info.L2NORM_given){
mas01cr@105 229 command=COM_L2NORM;
mas01cr@105 230 dbName=args_info.database_arg;
mas01cr@105 231 return 0;
mas01cr@105 232 }
mas01cr@0 233
mas01cr@105 234 if(args_info.INSERT_given){
mas01cr@105 235 command=COM_INSERT;
mas01cr@105 236 dbName=args_info.database_arg;
mas01cr@105 237 inFile=args_info.features_arg;
mas01cr@105 238 if(args_info.key_given)
mas01cr@105 239 key=args_info.key_arg;
mas01cr@105 240 if(args_info.times_given){
mas01cr@105 241 timesFileName=args_info.times_arg;
mas01cr@105 242 if(strlen(timesFileName)>0){
mas01cr@105 243 if(!(timesFile = new ifstream(timesFileName,ios::in)))
mas01cr@105 244 error("Could not open times file for reading", timesFileName);
mas01cr@105 245 usingTimes=1;
mas01cr@105 246 }
mas01cr@105 247 }
mas01cr@105 248 return 0;
mas01cr@105 249 }
mas01cr@105 250
mas01cr@105 251 if(args_info.BATCHINSERT_given){
mas01cr@105 252 command=COM_BATCHINSERT;
mas01cr@105 253 dbName=args_info.database_arg;
mas01cr@105 254 inFile=args_info.featureList_arg;
mas01cr@105 255 if(args_info.keyList_given)
mas01cr@105 256 key=args_info.keyList_arg; // INCONSISTENT NO CHECK
mas01cr@0 257
mas01cr@105 258 /* TO DO: REPLACE WITH
mas01cr@0 259 if(args_info.keyList_given){
mas01mc@18 260 trackFileName=args_info.keyList_arg;
mas01mc@18 261 if(strlen(trackFileName)>0 && !(trackFile = new ifstream(trackFileName,ios::in)))
mas01mc@18 262 error("Could not open keyList file for reading",trackFileName);
mas01cr@0 263 }
mas01cr@0 264 AND UPDATE BATCHINSERT()
mas01cr@105 265 */
mas01cr@105 266
mas01cr@105 267 if(args_info.timesList_given){
mas01cr@105 268 timesFileName=args_info.timesList_arg;
mas01cr@105 269 if(strlen(timesFileName)>0){
mas01cr@105 270 if(!(timesFile = new ifstream(timesFileName,ios::in)))
mas01cr@105 271 error("Could not open timesList file for reading", timesFileName);
mas01cr@105 272 usingTimes=1;
mas01cr@105 273 }
mas01cr@105 274 }
mas01cr@105 275 return 0;
mas01cr@105 276 }
mas01cr@105 277
mas01cr@105 278 // Query command and arguments
mas01cr@105 279 if(args_info.QUERY_given){
mas01cr@105 280 command=COM_QUERY;
mas01cr@105 281 dbName=args_info.database_arg;
mas01cr@105 282 inFile=args_info.features_arg;
mas01cr@105 283
mas01cr@105 284 if(args_info.keyList_given){
mas01cr@105 285 trackFileName=args_info.keyList_arg;
mas01cr@105 286 if(strlen(trackFileName)>0 && !(trackFile = new ifstream(trackFileName,ios::in)))
mas01cr@105 287 error("Could not open keyList file for reading",trackFileName);
mas01cr@105 288 }
mas01cr@105 289
mas01cr@105 290 if(args_info.times_given){
mas01cr@105 291 timesFileName=args_info.times_arg;
mas01cr@105 292 if(strlen(timesFileName)>0){
mas01cr@105 293 if(!(timesFile = new ifstream(timesFileName,ios::in)))
mas01cr@105 294 error("Could not open times file for reading", timesFileName);
mas01cr@105 295 usingTimes=1;
mas01cr@105 296 }
mas01cr@105 297 }
mas01cr@105 298
mas01cr@105 299 // query type
mas01cr@105 300 if(strncmp(args_info.QUERY_arg, "track", MAXSTR)==0)
mas01cr@105 301 queryType=O2_TRACK_QUERY;
mas01cr@105 302 else if(strncmp(args_info.QUERY_arg, "point", MAXSTR)==0)
mas01cr@105 303 queryType=O2_POINT_QUERY;
mas01cr@105 304 else if(strncmp(args_info.QUERY_arg, "sequence", MAXSTR)==0)
mas01cr@105 305 queryType=O2_SEQUENCE_QUERY;
mas01cr@105 306 else
mas01cr@105 307 error("unsupported query type",args_info.QUERY_arg);
mas01cr@105 308
mas01cr@105 309 if(!args_info.exhaustive_flag){
mas01cr@105 310 queryPoint = args_info.qpoint_arg;
mas01cr@105 311 usingQueryPoint=1;
mas01cr@105 312 if(queryPoint<0 || queryPoint >10000)
mas01cr@105 313 error("queryPoint out of range: 0 <= queryPoint <= 10000");
mas01cr@105 314 }
mas01cr@105 315
mas01cr@105 316 pointNN = args_info.pointnn_arg;
mas01cr@105 317 if(pointNN < 1 || pointNN > 1000) {
mas01cr@105 318 error("pointNN out of range: 1 <= pointNN <= 1000");
mas01cr@105 319 }
mas01cr@105 320 trackNN = args_info.resultlength_arg;
mas01cr@105 321 if(trackNN < 1 || trackNN > 1000) {
mas01cr@105 322 error("resultlength out of range: 1 <= resultlength <= 1000");
mas01cr@105 323 }
mas01cr@105 324 sequenceLength = args_info.sequencelength_arg;
mas01cr@105 325 if(sequenceLength < 1 || sequenceLength > 1000) {
mas01cr@105 326 error("seqlen out of range: 1 <= seqlen <= 1000");
mas01cr@105 327 }
mas01cr@105 328 sequenceHop = args_info.sequencehop_arg;
mas01cr@105 329 if(sequenceHop < 1 || sequenceHop > 1000) {
mas01cr@105 330 error("seqhop out of range: 1 <= seqhop <= 1000");
mas01cr@105 331 }
mas01cr@105 332 return 0;
mas01cr@105 333 }
mas01cr@105 334 return -1; // no command found
mas01cr@0 335 }
mas01cr@0 336
mas01cr@30 337 void audioDB::get_lock(int fd, bool exclusive) {
mas01cr@30 338 struct flock lock;
mas01cr@30 339 int status;
mas01cr@30 340
mas01cr@30 341 lock.l_type = exclusive ? F_WRLCK : F_RDLCK;
mas01cr@30 342 lock.l_whence = SEEK_SET;
mas01cr@30 343 lock.l_start = 0;
mas01cr@30 344 lock.l_len = 0; /* "the whole file" */
mas01cr@30 345
mas01cr@30 346 retry:
mas01cr@30 347 do {
mas01cr@30 348 status = fcntl(fd, F_SETLKW, &lock);
mas01cr@30 349 } while (status != 0 && errno == EINTR);
mas01cr@30 350
mas01cr@30 351 if (status) {
mas01cr@30 352 if (errno == EAGAIN) {
mas01cr@30 353 sleep(1);
mas01cr@30 354 goto retry;
mas01cr@30 355 } else {
mas01cr@32 356 error("fcntl lock error", "", "fcntl");
mas01cr@30 357 }
mas01cr@30 358 }
mas01cr@30 359 }
mas01cr@30 360
mas01cr@30 361 void audioDB::release_lock(int fd) {
mas01cr@30 362 struct flock lock;
mas01cr@30 363 int status;
mas01cr@30 364
mas01cr@30 365 lock.l_type = F_UNLCK;
mas01cr@30 366 lock.l_whence = SEEK_SET;
mas01cr@30 367 lock.l_start = 0;
mas01cr@30 368 lock.l_len = 0;
mas01cr@30 369
mas01cr@30 370 status = fcntl(fd, F_SETLKW, &lock);
mas01cr@30 371
mas01cr@30 372 if (status)
mas01cr@32 373 error("fcntl unlock error", "", "fcntl");
mas01cr@30 374 }
mas01cr@30 375
mas01cr@120 376 /* Make a new database.
mas01cr@120 377
mas01cr@120 378 The database consists of:
mas01cr@120 379
mas01cr@120 380 * a header (see dbTableHeader struct definition);
mas01cr@120 381 * keyTable: list of keys of tracks;
mas01cr@120 382 * trackTable: Maps implicit feature index to a feature vector
mas01cr@120 383 matrix (sizes of tracks)
mas01cr@120 384 * featureTable: Lots of doubles;
mas01cr@120 385 * timesTable: time points for each feature vector;
mas01cr@120 386 * l2normTable: squared l2norms for each feature vector.
mas01cr@120 387 */
mas01cr@0 388 void audioDB::create(const char* dbName){
mas01cr@31 389 if ((dbfid = open (dbName, O_RDWR|O_CREAT|O_EXCL, S_IRUSR|S_IWUSR|S_IRGRP|S_IWGRP|S_IROTH|S_IWOTH)) < 0)
mas01cr@32 390 error("Can't create database file", dbName, "open");
mas01cr@30 391 get_lock(dbfid, 1);
mas01cr@0 392
mas01cr@60 393 if(verbosity) {
mas01cr@0 394 cerr << "header size:" << O2_HEADERSIZE << endl;
mas01cr@60 395 }
mas01cr@0 396
mas01cr@0 397 dbH = new dbTableHeaderT();
mas01cr@0 398 assert(dbH);
mas01cr@0 399
mas01cr@140 400 unsigned int maxfiles = (unsigned int) rint((double) O2_MAXFILES * (double) size / (double) O2_DEFAULTDBSIZE);
mas01cr@140 401
mas01cr@0 402 // Initialize header
mas01cr@108 403 dbH->magic = O2_MAGIC;
mas01cr@108 404 dbH->version = O2_FORMAT_VERSION;
mas01cr@108 405 dbH->numFiles = 0;
mas01cr@108 406 dbH->dim = 0;
mas01cr@108 407 dbH->flags = 0;
mas01cr@108 408 dbH->length = 0;
mas01cr@177 409 dbH->fileTableOffset = ALIGN_PAGE_UP(O2_HEADERSIZE);
mas01cr@177 410 dbH->trackTableOffset = ALIGN_PAGE_UP(dbH->fileTableOffset + O2_FILETABLESIZE*maxfiles);
mas01cr@177 411 dbH->dataOffset = ALIGN_PAGE_UP(dbH->trackTableOffset + O2_TRACKTABLESIZE*maxfiles);
mas01cr@177 412 dbH->l2normTableOffset = ALIGN_PAGE_DOWN(size - maxfiles*O2_MEANNUMVECTORS*sizeof(double));
mas01cr@177 413 dbH->timesTableOffset = ALIGN_PAGE_DOWN(dbH->l2normTableOffset - maxfiles*O2_MEANNUMVECTORS*sizeof(double));
mas01cr@129 414 dbH->dbSize = size;
mas01cr@0 415
mas01cr@173 416 write(dbfid, dbH, O2_HEADERSIZE);
mas01cr@173 417
mas01cr@173 418 // go to the location corresponding to the last byte
mas01cr@173 419 if (lseek (dbfid, size - 1, SEEK_SET) == -1)
mas01cr@173 420 error("lseek error in db file", "", "lseek");
mas01cr@173 421
mas01cr@173 422 // write a dummy byte at the last location
mas01cr@173 423 if (write (dbfid, "", 1) != 1)
mas01cr@173 424 error("write error", "", "write");
mas01cr@173 425
mas01cr@60 426 if(verbosity) {
mas01cr@0 427 cerr << COM_CREATE << " " << dbName << endl;
mas01cr@60 428 }
mas01cr@0 429 }
mas01cr@0 430
mas01cr@0 431 void audioDB::drop(){
mas01cr@108 432 // FIXME: drop something? Should we even allow this?
mas01cr@0 433 }
mas01cr@0 434
mas01cr@177 435 void audioDB::initDBHeader(const char* dbName) {
mas01cr@106 436 if ((dbfid = open(dbName, forWrite ? O_RDWR : O_RDONLY)) < 0) {
mas01cr@32 437 error("Can't open database file", dbName, "open");
mas01cr@106 438 }
mas01cr@120 439
mas01cr@30 440 get_lock(dbfid, forWrite);
mas01cr@0 441 // Get the database header info
mas01cr@0 442 dbH = new dbTableHeaderT();
mas01cr@0 443 assert(dbH);
mas01cr@0 444
mas01cr@106 445 if(read(dbfid, (char *) dbH, O2_HEADERSIZE) != O2_HEADERSIZE) {
mas01cr@106 446 error("error reading db header", dbName, "read");
mas01cr@106 447 }
mas01cr@0 448
mas01cr@108 449 if(dbH->magic == O2_OLD_MAGIC) {
mas01cr@108 450 // FIXME: if anyone ever complains, write the program to convert
mas01cr@108 451 // from the old audioDB format to the new...
mas01cr@108 452 error("database file has old O2 header", dbName);
mas01cr@108 453 }
mas01cr@0 454
mas01cr@106 455 if(dbH->magic != O2_MAGIC) {
mas01cr@106 456 cerr << "expected: " << O2_MAGIC << ", got: " << dbH->magic << endl;
mas01cr@108 457 error("database file has incorrect header", dbName);
mas01cr@108 458 }
mas01cr@108 459
mas01cr@108 460 if(dbH->version != O2_FORMAT_VERSION) {
mas01cr@108 461 error("database file has incorect version", dbName);
mas01cr@0 462 }
mas01cr@0 463
mas01cr@128 464 // FIXME: when changing file format version, remove this workaround.
mas01cr@128 465 if(dbH->dbSize == 0) {
mas01cr@128 466 dbH->dbSize = O2_DEFAULTDBSIZE;
mas01cr@128 467 }
mas01cr@128 468
mas01cr@120 469 // Make some handy tables with correct types
mas01cr@178 470 #define CHECKED_MMAP(type, var, start, length) \
mas01cr@178 471 { void *tmp = mmap(0, length, (PROT_READ | (forWrite ? PROT_WRITE : 0)), MAP_SHARED, dbfid, (start)); \
mas01cr@174 472 if(tmp == (void *) -1) { \
mas01cr@174 473 error("mmap error for db table", #var, "mmap"); \
mas01cr@174 474 } \
mas01cr@174 475 var = (type) tmp; \
mas01cr@174 476 }
mas01cr@174 477
mas01cr@176 478 CHECKED_MMAP(char *, db, 0, getpagesize());
mas01cr@176 479
mas01cr@178 480 if(forWrite || (dbH->length > 0)) {
mas01cr@178 481 if(forWrite) {
mas01cr@178 482 fileTableLength = dbH->trackTableOffset - dbH->fileTableOffset;
mas01cr@178 483 trackTableLength = dbH->dataOffset - dbH->trackTableOffset;
mas01cr@178 484 dataBufLength = dbH->timesTableOffset - dbH->dataOffset;
mas01cr@178 485 timesTableLength = dbH->l2normTableOffset - dbH->timesTableOffset;
mas01cr@178 486 l2normTableLength = dbH->dbSize - dbH->l2normTableOffset;
mas01cr@178 487 } else {
mas01cr@178 488 fileTableLength = ALIGN_PAGE_UP(dbH->numFiles * O2_FILETABLESIZE);
mas01cr@178 489 trackTableLength = ALIGN_PAGE_UP(dbH->numFiles * O2_TRACKTABLESIZE);
mas01cr@178 490 dataBufLength = ALIGN_PAGE_UP(dbH->length);
mas01cr@178 491 timesTableLength = ALIGN_PAGE_UP(dbH->length / dbH->dim);
mas01cr@178 492 l2normTableLength = ALIGN_PAGE_UP(dbH->length / dbH->dim);
mas01cr@177 493 }
mas01cr@178 494 CHECKED_MMAP(char *, fileTable, dbH->fileTableOffset, fileTableLength);
mas01cr@178 495 CHECKED_MMAP(unsigned *, trackTable, dbH->trackTableOffset, trackTableLength);
mas01cr@191 496 /*
mas01cr@191 497 * No more mmap() for dataBuf
mas01cr@191 498 *
mas01cr@191 499 * FIXME: Actually we do do the mmap() in the two cases where it's
mas01cr@191 500 * still "needed": in pointQuery and in l2norm if dbH->length is
mas01cr@191 501 * non-zero. Removing those cases too (and deleting the dataBuf
mas01cr@191 502 * variable completely) would be cool. -- CSR, 2007-11-19
mas01cr@191 503 *
mas01cr@191 504 * CHECKED_MMAP(double *, dataBuf, dbH->dataOffset, dataBufLength);
mas01cr@191 505 */
mas01cr@178 506 CHECKED_MMAP(double *, timesTable, dbH->timesTableOffset, timesTableLength);
mas01cr@178 507 CHECKED_MMAP(double *, l2normTable, dbH->l2normTableOffset, l2normTableLength);
mas01cr@177 508 }
mas01cr@120 509 }
mas01cr@120 510
mas01cr@169 511 void audioDB::initInputFile (const char *inFile) {
mas01cr@169 512 if (inFile) {
mas01cr@169 513 if ((infid = open(inFile, O_RDONLY)) < 0) {
mas01cr@169 514 error("can't open input file for reading", inFile, "open");
mas01cr@169 515 }
mas01cr@169 516
mas01cr@169 517 if (fstat(infid, &statbuf) < 0) {
mas01cr@169 518 error("fstat error finding size of input", inFile, "fstat");
mas01cr@169 519 }
mas01cr@169 520
mas01cr@169 521 if(dbH->dim == 0 && dbH->length == 0) { // empty database
mas01cr@169 522 // initialize with input dimensionality
mas01cr@169 523 if(read(infid, &dbH->dim, sizeof(unsigned)) != sizeof(unsigned)) {
mas01cr@169 524 error("short read of input file", inFile);
mas01cr@169 525 }
mas01cr@169 526 if(dbH->dim == 0) {
mas01cr@169 527 error("dimensionality of zero in input file", inFile);
mas01cr@169 528 }
mas01cr@169 529 } else {
mas01cr@169 530 unsigned test;
mas01cr@169 531 if(read(infid, &test, sizeof(unsigned)) != sizeof(unsigned)) {
mas01cr@169 532 error("short read of input file", inFile);
mas01cr@169 533 }
mas01cr@169 534 if(dbH->dim == 0) {
mas01cr@169 535 error("dimensionality of zero in input file", inFile);
mas01cr@169 536 }
mas01cr@169 537 if(dbH->dim != test) {
mas01cr@169 538 cerr << "error: expected dimension: " << dbH->dim << ", got : " << test <<endl;
mas01cr@169 539 error("feature dimensions do not match database table dimensions", inFile);
mas01cr@169 540 }
mas01cr@169 541 }
mas01cr@169 542
mas01cr@169 543 if ((indata = (char *) mmap(0, statbuf.st_size, PROT_READ, MAP_SHARED, infid, 0)) == (caddr_t) -1) {
mas01cr@169 544 error("mmap error for input", inFile, "mmap");
mas01cr@169 545 }
mas01cr@169 546 }
mas01cr@169 547 }
mas01cr@169 548
mas01cr@177 549 void audioDB::initTables(const char* dbName, const char* inFile = 0) {
mas01cr@177 550 initDBHeader(dbName);
mas01cr@169 551 initInputFile(inFile);
mas01cr@0 552 }
mas01cr@0 553
mas01cr@180 554 bool audioDB::enough_data_space_free(off_t size) {
mas01cr@180 555 return(dbH->timesTableOffset > dbH->dataOffset + dbH->length + size);
mas01cr@180 556 }
mas01cr@180 557
mas01cr@181 558 void audioDB::insert_data_vectors(off_t offset, void *buffer, size_t size) {
mas01cr@181 559 lseek(dbfid, dbH->dataOffset + offset, SEEK_SET);
mas01cr@181 560 write(dbfid, buffer, size);
mas01cr@181 561 }
mas01cr@181 562
mas01cr@177 563 void audioDB::insert(const char* dbName, const char* inFile) {
mas01cr@177 564 forWrite = true;
mas01cr@177 565 initTables(dbName, inFile);
mas01cr@0 566
mas01cr@0 567 if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
mas01cr@0 568 error("Must use timestamps with timestamped database","use --times");
mas01cr@0 569
mas01cr@180 570 if(!enough_data_space_free(statbuf.st_size - sizeof(int))) {
mas01cr@169 571 error("Insert failed: no more room in database", inFile);
mas01cr@180 572 }
mas01cr@180 573
mas01cr@0 574 if(!key)
mas01cr@0 575 key=inFile;
mas01cr@0 576 // Linear scan of filenames check for pre-existing feature
mas01cr@0 577 unsigned alreadyInserted=0;
mas01cr@0 578 for(unsigned k=0; k<dbH->numFiles; k++)
mas01cr@0 579 if(strncmp(fileTable + k*O2_FILETABLESIZE, key, strlen(key))==0){
mas01cr@0 580 alreadyInserted=1;
mas01cr@0 581 break;
mas01cr@0 582 }
mas01cr@0 583
mas01cr@0 584 if(alreadyInserted){
mas01cr@60 585 if(verbosity) {
mas01cr@0 586 cerr << "Warning: key already exists in database, ignoring: " <<inFile << endl;
mas01cr@60 587 }
mas01cr@0 588 return;
mas01cr@0 589 }
mas01cr@0 590
mas01mc@18 591 // Make a track index table of features to file indexes
mas01cr@0 592 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
mas01cr@0 593 if(!numVectors){
mas01cr@60 594 if(verbosity) {
mas01cr@0 595 cerr << "Warning: ignoring zero-length feature vector file:" << key << endl;
mas01cr@60 596 }
mas01cr@0 597 // CLEAN UP
mas01cr@0 598 munmap(indata,statbuf.st_size);
mas01cr@128 599 munmap(db,dbH->dbSize);
mas01cr@0 600 close(infid);
mas01cr@0 601 return;
mas01cr@0 602 }
mas01cr@0 603
mas01cr@0 604 strncpy(fileTable + dbH->numFiles*O2_FILETABLESIZE, key, strlen(key));
mas01cr@0 605
mas01cr@0 606 unsigned insertoffset = dbH->length;// Store current state
mas01cr@0 607
mas01cr@0 608 // Check times status and insert times from file
mas01cr@0 609 unsigned timesoffset=insertoffset/(dbH->dim*sizeof(double));
mas01cr@0 610 double* timesdata=timesTable+timesoffset;
mas01cr@187 611
mas01cr@188 612 if(timesoffset + numVectors > timesTableLength) {
mas01cr@188 613 error("out of space for times", key);
mas01cr@188 614 }
mas01cr@188 615
mas01cr@0 616 insertTimeStamps(numVectors, timesFile, timesdata);
mas01cr@0 617
mas01cr@0 618 // Increment file count
mas01cr@0 619 dbH->numFiles++;
mas01cr@0 620
mas01cr@0 621 // Update Header information
mas01cr@0 622 dbH->length+=(statbuf.st_size-sizeof(int));
mas01cr@0 623
mas01mc@18 624 // Update track to file index map
mas01mc@18 625 memcpy (trackTable+dbH->numFiles-1, &numVectors, sizeof(unsigned));
mas01cr@0 626
mas01cr@181 627 insert_data_vectors(insertoffset, indata + sizeof(int), statbuf.st_size - sizeof(int));
mas01cr@0 628
mas01cr@0 629 // Norm the vectors on input if the database is already L2 normed
mas01cr@0 630 if(dbH->flags & O2_FLAG_L2NORM)
mas01cr@190 631 unitNormAndInsertL2((double *)(indata + sizeof(int)), dbH->dim, numVectors, 1); // append
mas01cr@0 632
mas01cr@0 633 // Report status
mas01cr@0 634 status(dbName);
mas01cr@60 635 if(verbosity) {
mas01cr@0 636 cerr << COM_INSERT << " " << dbName << " " << numVectors << " vectors "
mas01cr@0 637 << (statbuf.st_size-sizeof(int)) << " bytes." << endl;
mas01cr@60 638 }
mas01cr@0 639
mas01cr@176 640 // Copy the header back to the database
mas01cr@176 641 memcpy (db, dbH, sizeof(dbTableHeaderT));
mas01cr@176 642
mas01cr@0 643 // CLEAN UP
mas01cr@0 644 munmap(indata,statbuf.st_size);
mas01cr@0 645 close(infid);
mas01cr@0 646 }
mas01cr@0 647
mas01cr@0 648 void audioDB::insertTimeStamps(unsigned numVectors, ifstream* timesFile, double* timesdata){
mas01cr@0 649 unsigned numtimes=0;
mas01cr@0 650 if(usingTimes){
mas01cr@0 651 if(!(dbH->flags & O2_FLAG_TIMES) && !dbH->numFiles)
mas01cr@0 652 dbH->flags=dbH->flags|O2_FLAG_TIMES;
mas01cr@0 653 else if(!(dbH->flags&O2_FLAG_TIMES)){
mas01cr@0 654 cerr << "Warning: timestamp file used with non time-stamped database: ignoring timestamps" << endl;
mas01cr@0 655 usingTimes=0;
mas01cr@0 656 }
mas01cr@0 657
mas01cr@0 658 if(!timesFile->is_open()){
mas01cr@0 659 if(dbH->flags & O2_FLAG_TIMES){
mas01cr@0 660 munmap(indata,statbuf.st_size);
mas01cr@128 661 munmap(db,dbH->dbSize);
mas01cr@0 662 error("problem opening times file on timestamped database",timesFileName);
mas01cr@0 663 }
mas01cr@0 664 else{
mas01cr@0 665 cerr << "Warning: problem opening times file. But non-timestamped database, so ignoring times file." << endl;
mas01cr@0 666 usingTimes=0;
mas01cr@0 667 }
mas01cr@0 668 }
mas01cr@0 669
mas01cr@0 670 // Process time file
mas01cr@0 671 if(usingTimes){
mas01cr@0 672 do{
mas01cr@0 673 *timesFile>>*timesdata++;
mas01cr@0 674 if(timesFile->eof())
mas01cr@0 675 break;
mas01cr@0 676 numtimes++;
mas01cr@0 677 }while(!timesFile->eof() && numtimes<numVectors);
mas01cr@0 678 if(!timesFile->eof()){
mas01cr@0 679 double dummy;
mas01cr@0 680 do{
mas01cr@0 681 *timesFile>>dummy;
mas01cr@0 682 if(timesFile->eof())
mas01cr@0 683 break;
mas01cr@0 684 numtimes++;
mas01cr@0 685 }while(!timesFile->eof());
mas01cr@0 686 }
mas01cr@0 687 if(numtimes<numVectors || numtimes>numVectors+2){
mas01cr@0 688 munmap(indata,statbuf.st_size);
mas01cr@128 689 munmap(db,dbH->dbSize);
mas01cr@0 690 close(infid);
mas01cr@0 691 cerr << "expected " << numVectors << " found " << numtimes << endl;
mas01cr@0 692 error("Times file is incorrect length for features file",inFile);
mas01cr@0 693 }
mas01cr@60 694 if(verbosity>2) {
mas01cr@0 695 cerr << "numtimes: " << numtimes << endl;
mas01cr@60 696 }
mas01cr@0 697 }
mas01cr@0 698 }
mas01cr@0 699 }
mas01cr@0 700
mas01cr@120 701 void audioDB::batchinsert(const char* dbName, const char* inFile) {
mas01cr@0 702
mas01cr@177 703 forWrite = true;
mas01cr@177 704 initDBHeader(dbName);
mas01cr@0 705
mas01cr@0 706 if(!key)
mas01cr@0 707 key=inFile;
mas01cr@0 708 ifstream *filesIn = 0;
mas01cr@0 709 ifstream *keysIn = 0;
mas01cr@0 710 ifstream* thisTimesFile = 0;
mas01cr@0 711
mas01cr@0 712 if(!(filesIn = new ifstream(inFile)))
mas01cr@0 713 error("Could not open batch in file", inFile);
mas01cr@0 714 if(key && key!=inFile)
mas01cr@0 715 if(!(keysIn = new ifstream(key)))
mas01cr@0 716 error("Could not open batch key file",key);
mas01cr@0 717
mas01cr@0 718 if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
mas01cr@0 719 error("Must use timestamps with timestamped database","use --times");
mas01cr@0 720
mas01cr@0 721 unsigned totalVectors=0;
mas01cr@0 722 char *thisKey = new char[MAXSTR];
mas01cr@0 723 char *thisFile = new char[MAXSTR];
mas01cr@0 724 char *thisTimesFileName = new char[MAXSTR];
mas01cr@120 725
mas01cr@0 726 do{
mas01cr@0 727 filesIn->getline(thisFile,MAXSTR);
mas01cr@0 728 if(key && key!=inFile)
mas01cr@0 729 keysIn->getline(thisKey,MAXSTR);
mas01cr@0 730 else
mas01cr@0 731 thisKey = thisFile;
mas01cr@0 732 if(usingTimes)
mas01cr@0 733 timesFile->getline(thisTimesFileName,MAXSTR);
mas01cr@0 734
mas01cr@0 735 if(filesIn->eof())
mas01cr@0 736 break;
mas01cr@0 737
mas01cr@169 738 initInputFile(thisFile);
mas01cr@0 739
mas01cr@180 740 if(!enough_data_space_free(statbuf.st_size - sizeof(int))) {
mas01cr@169 741 error("batchinsert failed: no more room in database", thisFile);
mas01cr@180 742 }
mas01cr@0 743
mas01cr@0 744 // Linear scan of filenames check for pre-existing feature
mas01cr@0 745 unsigned alreadyInserted=0;
mas01cr@0 746
mas01cr@0 747 for(unsigned k=0; k<dbH->numFiles; k++)
mas01cr@0 748 if(strncmp(fileTable + k*O2_FILETABLESIZE, thisKey, strlen(thisKey))==0){
mas01cr@0 749 alreadyInserted=1;
mas01cr@0 750 break;
mas01cr@0 751 }
mas01cr@0 752
mas01cr@0 753 if(alreadyInserted){
mas01cr@60 754 if(verbosity) {
mas01cr@0 755 cerr << "Warning: key already exists in database:" << thisKey << endl;
mas01cr@60 756 }
mas01cr@0 757 }
mas01cr@0 758 else{
mas01cr@0 759
mas01mc@18 760 // Make a track index table of features to file indexes
mas01cr@0 761 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
mas01cr@0 762 if(!numVectors){
mas01cr@60 763 if(verbosity) {
mas01cr@0 764 cerr << "Warning: ignoring zero-length feature vector file:" << thisKey << endl;
mas01cr@60 765 }
mas01cr@0 766 }
mas01cr@0 767 else{
mas01cr@0 768 if(usingTimes){
mas01cr@0 769 if(timesFile->eof())
mas01cr@0 770 error("not enough timestamp files in timesList");
mas01cr@0 771 thisTimesFile=new ifstream(thisTimesFileName,ios::in);
mas01cr@0 772 if(!thisTimesFile->is_open())
mas01cr@0 773 error("Cannot open timestamp file",thisTimesFileName);
mas01cr@0 774 unsigned insertoffset=dbH->length;
mas01cr@0 775 unsigned timesoffset=insertoffset/(dbH->dim*sizeof(double));
mas01cr@0 776 double* timesdata=timesTable+timesoffset;
mas01cr@188 777 if(timesoffset + numVectors > timesTableLength) {
mas01cr@188 778 error("out of space for times", key);
mas01cr@188 779 }
mas01cr@0 780 insertTimeStamps(numVectors,thisTimesFile,timesdata);
mas01cr@0 781 if(thisTimesFile)
mas01cr@0 782 delete thisTimesFile;
mas01cr@0 783 }
mas01cr@0 784
mas01cr@0 785 strncpy(fileTable + dbH->numFiles*O2_FILETABLESIZE, thisKey, strlen(thisKey));
mas01cr@0 786
mas01cr@0 787 unsigned insertoffset = dbH->length;// Store current state
mas01cr@0 788
mas01cr@0 789 // Increment file count
mas01cr@0 790 dbH->numFiles++;
mas01cr@0 791
mas01cr@0 792 // Update Header information
mas01cr@0 793 dbH->length+=(statbuf.st_size-sizeof(int));
mas01cr@0 794
mas01mc@18 795 // Update track to file index map
mas01mc@18 796 memcpy (trackTable+dbH->numFiles-1, &numVectors, sizeof(unsigned));
mas01cr@0 797
mas01cr@181 798 insert_data_vectors(insertoffset, indata + sizeof(int), statbuf.st_size - sizeof(int));
mas01cr@181 799
mas01cr@0 800 // Norm the vectors on input if the database is already L2 normed
mas01cr@0 801 if(dbH->flags & O2_FLAG_L2NORM)
mas01cr@190 802 unitNormAndInsertL2((double *)(indata + sizeof(int)), dbH->dim, numVectors, 1); // append
mas01cr@0 803
mas01cr@0 804 totalVectors+=numVectors;
mas01cr@176 805
mas01cr@176 806 // Copy the header back to the database
mas01cr@176 807 memcpy (db, dbH, sizeof(dbTableHeaderT));
mas01cr@0 808 }
mas01cr@0 809 }
mas01cr@0 810 // CLEAN UP
mas01cr@0 811 munmap(indata,statbuf.st_size);
mas01cr@0 812 close(infid);
mas01cr@0 813 }while(!filesIn->eof());
mas01mc@12 814
mas01cr@60 815 if(verbosity) {
mas01cr@0 816 cerr << COM_BATCHINSERT << " " << dbName << " " << totalVectors << " vectors "
mas01cr@0 817 << totalVectors*dbH->dim*sizeof(double) << " bytes." << endl;
mas01cr@60 818 }
mas01cr@0 819
mas01cr@0 820 // Report status
mas01cr@0 821 status(dbName);
mas01cr@0 822 }
mas01cr@0 823
mas01cr@76 824 // FIXME: this can't propagate the sequence length argument (used for
mas01cr@76 825 // dudCount). See adb__status() definition for the other half of
mas01cr@76 826 // this. -- CSR, 2007-10-01
mas01cr@0 827 void audioDB::ws_status(const char*dbName, char* hostport){
mas01cr@0 828 struct soap soap;
mas01cr@133 829 adb__statusResponse adbStatusResponse;
mas01cr@0 830
mas01cr@0 831 // Query an existing adb database
mas01cr@0 832 soap_init(&soap);
mas01cr@133 833 if(soap_call_adb__status(&soap,hostport,NULL,(char*)dbName,adbStatusResponse)==SOAP_OK) {
mas01cr@133 834 cout << "numFiles = " << adbStatusResponse.result.numFiles << endl;
mas01cr@133 835 cout << "dim = " << adbStatusResponse.result.dim << endl;
mas01cr@133 836 cout << "length = " << adbStatusResponse.result.length << endl;
mas01cr@133 837 cout << "dudCount = " << adbStatusResponse.result.dudCount << endl;
mas01cr@133 838 cout << "nullCount = " << adbStatusResponse.result.nullCount << endl;
mas01cr@133 839 cout << "flags = " << adbStatusResponse.result.flags << endl;
mas01cr@76 840 } else {
mas01cr@0 841 soap_print_fault(&soap,stderr);
mas01cr@76 842 }
mas01cr@0 843
mas01cr@0 844 soap_destroy(&soap);
mas01cr@0 845 soap_end(&soap);
mas01cr@0 846 soap_done(&soap);
mas01cr@0 847 }
mas01cr@0 848
mas01mc@18 849 void audioDB::ws_query(const char*dbName, const char *trackKey, const char* hostport){
mas01cr@0 850 struct soap soap;
mas01cr@133 851 adb__queryResponse adbQueryResponse;
mas01cr@0 852
mas01cr@0 853 soap_init(&soap);
mas01cr@0 854 if(soap_call_adb__query(&soap,hostport,NULL,
mas01mc@18 855 (char*)dbName,(char*)trackKey,(char*)trackFileName,(char*)timesFileName,
mas01cr@133 856 queryType, queryPoint, pointNN, trackNN, sequenceLength, adbQueryResponse)==SOAP_OK){
mas01cr@133 857 //std::cerr << "result list length:" << adbQueryResponse.result.__sizeRlist << std::endl;
mas01cr@133 858 for(int i=0; i<adbQueryResponse.result.__sizeRlist; i++)
mas01cr@133 859 std::cout << adbQueryResponse.result.Rlist[i] << " " << adbQueryResponse.result.Dist[i]
mas01cr@133 860 << " " << adbQueryResponse.result.Qpos[i] << " " << adbQueryResponse.result.Spos[i] << std::endl;
mas01cr@0 861 }
mas01cr@0 862 else
mas01cr@0 863 soap_print_fault(&soap,stderr);
mas01cr@0 864
mas01cr@0 865 soap_destroy(&soap);
mas01cr@0 866 soap_end(&soap);
mas01cr@0 867 soap_done(&soap);
mas01cr@0 868
mas01cr@0 869 }
mas01cr@0 870
mas01cr@0 871
mas01cr@133 872 void audioDB::status(const char* dbName, adb__statusResponse *adbStatusResponse){
mas01cr@0 873 if(!dbH)
mas01cr@177 874 initTables(dbName, 0);
mas01cr@0 875
mas01cr@0 876 unsigned dudCount=0;
mas01cr@0 877 unsigned nullCount=0;
mas01cr@0 878 for(unsigned k=0; k<dbH->numFiles; k++){
mas01mc@18 879 if(trackTable[k]<sequenceLength){
mas01cr@0 880 dudCount++;
mas01mc@18 881 if(!trackTable[k])
mas01cr@76 882 nullCount++;
mas01cr@0 883 }
mas01cr@0 884 }
mas01cr@76 885
mas01cr@133 886 if(adbStatusResponse == 0) {
mas01cr@76 887
mas01cr@76 888 // Update Header information
mas01cr@76 889 cout << "num files:" << dbH->numFiles << endl;
mas01cr@76 890 cout << "data dim:" << dbH->dim <<endl;
mas01cr@76 891 if(dbH->dim>0){
mas01cr@76 892 cout << "total vectors:" << dbH->length/(sizeof(double)*dbH->dim)<<endl;
mas01cr@108 893 cout << "vectors available:" << (dbH->timesTableOffset-(dbH->dataOffset+dbH->length))/(sizeof(double)*dbH->dim) << endl;
mas01cr@76 894 }
mas01cr@108 895 cout << "total bytes:" << dbH->length << " (" << (100.0*dbH->length)/(dbH->timesTableOffset-dbH->dataOffset) << "%)" << endl;
mas01cr@108 896 cout << "bytes available:" << dbH->timesTableOffset-(dbH->dataOffset+dbH->length) << " (" <<
mas01cr@108 897 (100.0*(dbH->timesTableOffset-(dbH->dataOffset+dbH->length)))/(dbH->timesTableOffset-dbH->dataOffset) << "%)" << endl;
mas01cr@76 898 cout << "flags:" << dbH->flags << endl;
mas01cr@76 899
mas01cr@76 900 cout << "null count: " << nullCount << " small sequence count " << dudCount-nullCount << endl;
mas01cr@76 901 } else {
mas01cr@133 902 adbStatusResponse->result.numFiles = dbH->numFiles;
mas01cr@133 903 adbStatusResponse->result.dim = dbH->dim;
mas01cr@133 904 adbStatusResponse->result.length = dbH->length;
mas01cr@133 905 adbStatusResponse->result.dudCount = dudCount;
mas01cr@133 906 adbStatusResponse->result.nullCount = nullCount;
mas01cr@133 907 adbStatusResponse->result.flags = dbH->flags;
mas01cr@76 908 }
mas01cr@0 909 }
mas01cr@0 910
mas01cr@0 911 void audioDB::dump(const char* dbName){
mas01cr@131 912 if(!dbH) {
mas01cr@177 913 initTables(dbName, 0);
mas01mc@17 914 }
mas01cr@0 915
mas01cr@131 916 if((mkdir(output, S_IRWXU|S_IRWXG|S_IRWXO)) < 0) {
mas01cr@131 917 error("error making output directory", output, "mkdir");
mas01cr@131 918 }
mas01cr@131 919
mas01cr@131 920 char *cwd = new char[PATH_MAX];
mas01cr@131 921
mas01cr@131 922 if ((getcwd(cwd, PATH_MAX)) == 0) {
mas01cr@131 923 error("error getting working directory", "", "getcwd");
mas01cr@131 924 }
mas01cr@131 925
mas01cr@131 926 if((chdir(output)) < 0) {
mas01cr@131 927 error("error changing working directory", output, "chdir");
mas01cr@131 928 }
mas01cr@131 929
mas01cr@131 930 int fLfd, tLfd = 0, kLfd;
mas01cr@131 931 FILE *fLFile, *tLFile = 0, *kLFile;
mas01cr@131 932
mas01cr@131 933 if ((fLfd = open("featureList.txt", O_CREAT|O_RDWR|O_EXCL, S_IRUSR|S_IWUSR|S_IRGRP|S_IWGRP|S_IROTH|S_IWOTH)) < 0) {
mas01cr@131 934 error("error creating featureList file", "featureList.txt", "open");
mas01cr@131 935 }
mas01cr@131 936 int times = dbH->flags & O2_FLAG_TIMES;
mas01cr@131 937 if (times) {
mas01cr@131 938 if ((tLfd = open("timesList.txt", O_CREAT|O_RDWR|O_EXCL, S_IRUSR|S_IWUSR|S_IRGRP|S_IWGRP|S_IROTH|S_IWOTH)) < 0) {
mas01cr@131 939 error("error creating timesList file", "timesList.txt", "open");
mas01cr@131 940 }
mas01cr@131 941 }
mas01cr@131 942 if ((kLfd = open("keyList.txt", O_CREAT|O_RDWR|O_EXCL, S_IRUSR|S_IWUSR|S_IRGRP|S_IWGRP|S_IROTH|S_IWOTH)) < 0) {
mas01cr@131 943 error("error creating keyList file", "keyList.txt", "open");
mas01cr@131 944 }
mas01cr@131 945
mas01cr@131 946 /* can these fail? I sincerely hope not. */
mas01cr@131 947 fLFile = fdopen(fLfd, "w");
mas01cr@131 948 if (times) {
mas01cr@131 949 tLFile = fdopen(tLfd, "w");
mas01cr@131 950 }
mas01cr@131 951 kLFile = fdopen(kLfd, "w");
mas01cr@131 952
mas01cr@131 953 char *fName = new char[256];
mas01cr@131 954 int ffd;
mas01cr@131 955 FILE *tFile;
mas01cr@131 956 unsigned pos = 0;
mas01cr@184 957 lseek(dbfid, dbH->dataOffset, SEEK_SET);
mas01cr@184 958 double *data_buffer;
mas01cr@184 959 size_t data_buffer_size;
mas01cr@131 960 for(unsigned k = 0; k < dbH->numFiles; k++) {
mas01cr@131 961 fprintf(kLFile, "%s\n", fileTable + k*O2_FILETABLESIZE);
mas01cr@131 962 snprintf(fName, 256, "%05d.features", k);
mas01cr@131 963 if ((ffd = open(fName, O_CREAT|O_RDWR|O_EXCL, S_IRUSR|S_IWUSR|S_IRGRP|S_IWGRP|S_IROTH|S_IWOTH)) < 0) {
mas01cr@131 964 error("error creating feature file", fName, "open");
mas01cr@131 965 }
mas01cr@131 966 if ((write(ffd, &dbH->dim, sizeof(uint32_t))) < 0) {
mas01cr@131 967 error("error writing dimensions", fName, "write");
mas01cr@131 968 }
mas01cr@184 969
mas01cr@184 970 /* FIXME: this repeated malloc()/free() of data buffers is
mas01cr@184 971 inefficient. */
mas01cr@184 972 data_buffer_size = trackTable[k] * dbH->dim * sizeof(double);
mas01cr@184 973
mas01cr@184 974 {
mas01cr@184 975 void *tmp = malloc(data_buffer_size);
mas01cr@184 976 if (tmp == NULL) {
mas01cr@184 977 error("error allocating data buffer");
mas01cr@184 978 }
mas01cr@184 979 data_buffer = (double *) tmp;
mas01cr@184 980 }
mas01cr@184 981
mas01cr@184 982 if ((read(dbfid, data_buffer, data_buffer_size)) != (ssize_t) data_buffer_size) {
mas01cr@184 983 error("error reading data", fName, "read");
mas01cr@184 984 }
mas01cr@184 985
mas01cr@184 986 if ((write(ffd, data_buffer, data_buffer_size)) < 0) {
mas01cr@131 987 error("error writing data", fName, "write");
mas01cr@131 988 }
mas01cr@184 989
mas01cr@184 990 free(data_buffer);
mas01cr@184 991
mas01cr@131 992 fprintf(fLFile, "%s\n", fName);
mas01cr@131 993 close(ffd);
mas01cr@131 994
mas01cr@131 995 if(times) {
mas01cr@131 996 snprintf(fName, 256, "%05d.times", k);
mas01cr@131 997 tFile = fopen(fName, "w");
mas01cr@131 998 for(unsigned i = 0; i < trackTable[k]; i++) {
mas01cr@131 999 // KLUDGE: specifying 16 digits of precision after the decimal
mas01cr@131 1000 // point is (but check this!) sufficient to uniquely identify
mas01cr@131 1001 // doubles; however, that will cause ugliness, as that's
mas01cr@131 1002 // vastly too many for most values of interest. Moving to %a
mas01cr@131 1003 // here and scanf() in the timesFile reading might fix this.
mas01cr@131 1004 // -- CSR, 2007-10-19
mas01cr@131 1005 fprintf(tFile, "%.16e\n", *(timesTable + pos + i));
mas01cr@131 1006 }
mas01cr@131 1007 fprintf(tLFile, "%s\n", fName);
mas01cr@131 1008 }
mas01cr@131 1009
mas01cr@131 1010 pos += trackTable[k];
mas01cr@131 1011 cout << fileTable+k*O2_FILETABLESIZE << " " << trackTable[k] << endl;
mas01cr@131 1012 }
mas01cr@131 1013
mas01cr@131 1014 FILE *scriptFile;
mas01cr@131 1015 scriptFile = fopen("restore.sh", "w");
mas01cr@131 1016 fprintf(scriptFile, "\
mas01cr@131 1017 #! /bin/sh\n\
mas01cr@131 1018 #\n\
mas01cr@131 1019 # usage: AUDIODB=/path/to/audioDB sh ./restore.sh <newdb>\n\
mas01cr@131 1020 \n\
mas01cr@131 1021 if [ -z \"${AUDIODB}\" ]; then echo set AUDIODB variable; exit 1; fi\n\
mas01cr@131 1022 if [ -z \"$1\" ]; then echo usage: $0 newdb; exit 1; fi\n\n\
mas01cr@131 1023 \"${AUDIODB}\" -d \"$1\" -N --size=%d\n", dbH->dbSize / 1000000);
mas01cr@131 1024 if(dbH->flags & O2_FLAG_L2NORM) {
mas01cr@131 1025 fprintf(scriptFile, "\"${AUDIODB}\" -d \"$1\" -L\n");
mas01cr@131 1026 }
mas01cr@131 1027 fprintf(scriptFile, "\"${AUDIODB}\" -d \"$1\" -B -F featureList.txt -K keyList.txt");
mas01cr@131 1028 if(times) {
mas01cr@131 1029 fprintf(scriptFile, " -T timesList.txt");
mas01cr@131 1030 }
mas01cr@131 1031 fprintf(scriptFile, "\n");
mas01cr@131 1032 fclose(scriptFile);
mas01cr@131 1033
mas01cr@131 1034 if((chdir(cwd)) < 0) {
mas01cr@131 1035 error("error changing working directory", cwd, "chdir");
mas01cr@131 1036 }
mas01cr@131 1037
mas01cr@131 1038 fclose(fLFile);
mas01cr@131 1039 if(times) {
mas01cr@131 1040 fclose(tLFile);
mas01cr@131 1041 }
mas01cr@131 1042 fclose(kLFile);
mas01cr@131 1043 delete[] fName;
mas01cr@131 1044
mas01cr@0 1045 status(dbName);
mas01cr@0 1046 }
mas01cr@0 1047
mas01cr@177 1048 void audioDB::l2norm(const char* dbName) {
mas01cr@177 1049 forWrite = true;
mas01cr@177 1050 initTables(dbName, 0);
mas01cr@0 1051 if(dbH->length>0){
mas01cr@0 1052 unsigned numVectors = dbH->length/(sizeof(double)*dbH->dim);
mas01cr@191 1053 CHECKED_MMAP(double *, dataBuf, dbH->dataOffset, dataBufLength);
mas01cr@0 1054 unitNormAndInsertL2(dataBuf, dbH->dim, numVectors, 0); // No append
mas01cr@0 1055 }
mas01cr@0 1056 // Update database flags
mas01cr@0 1057 dbH->flags = dbH->flags|O2_FLAG_L2NORM;
mas01cr@0 1058 memcpy (db, dbH, O2_HEADERSIZE);
mas01cr@0 1059 }
mas01cr@0 1060
mas01cr@133 1061 void audioDB::query(const char* dbName, const char* inFile, adb__queryResponse *adbQueryResponse){
mas01cr@0 1062 switch(queryType){
mas01cr@105 1063 case O2_POINT_QUERY:
mas01cr@133 1064 pointQuery(dbName, inFile, adbQueryResponse);
mas01cr@0 1065 break;
mas01cr@105 1066 case O2_SEQUENCE_QUERY:
mas01mc@17 1067 if(radius==0)
mas01cr@133 1068 trackSequenceQueryNN(dbName, inFile, adbQueryResponse);
mas01mc@17 1069 else
mas01cr@133 1070 trackSequenceQueryRad(dbName, inFile, adbQueryResponse);
mas01cr@0 1071 break;
mas01cr@105 1072 case O2_TRACK_QUERY:
mas01cr@133 1073 trackPointQuery(dbName, inFile, adbQueryResponse);
mas01cr@0 1074 break;
mas01cr@0 1075 default:
mas01cr@0 1076 error("unrecognized queryType in query()");
mas01cr@0 1077
mas01cr@0 1078 }
mas01cr@0 1079 }
mas01cr@0 1080
mas01cr@0 1081 //return ordinal position of key in keyTable
mas01cr@0 1082 unsigned audioDB::getKeyPos(char* key){
mas01cr@0 1083 for(unsigned k=0; k<dbH->numFiles; k++)
mas01cr@0 1084 if(strncmp(fileTable + k*O2_FILETABLESIZE, key, strlen(key))==0)
mas01cr@0 1085 return k;
mas01cr@0 1086 error("Key not found",key);
mas01cr@0 1087 return O2_ERR_KEYNOTFOUND;
mas01cr@0 1088 }
mas01cr@0 1089
mas01cr@0 1090 // Basic point query engine
mas01cr@177 1091 void audioDB::pointQuery(const char* dbName, const char* inFile, adb__queryResponse *adbQueryResponse) {
mas01cr@0 1092
mas01cr@177 1093 initTables(dbName, inFile);
mas01cr@0 1094
mas01cr@0 1095 // For each input vector, find the closest pointNN matching output vectors and report
mas01cr@0 1096 // we use stdout in this stub version
mas01cr@0 1097 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
mas01cr@190 1098
mas01cr@0 1099 double* query = (double*)(indata+sizeof(int));
mas01cr@191 1100 CHECKED_MMAP(double *, dataBuf, dbH->dataOffset, dataBufLength);
mas01cr@0 1101 double* data = dataBuf;
mas01cr@0 1102 double* queryCopy = 0;
mas01cr@0 1103
mas01cr@0 1104 if( dbH->flags & O2_FLAG_L2NORM ){
mas01cr@0 1105 // Make a copy of the query
mas01cr@0 1106 queryCopy = new double[numVectors*dbH->dim];
mas01cr@0 1107 qNorm = new double[numVectors];
mas01cr@0 1108 assert(queryCopy&&qNorm);
mas01cr@0 1109 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
mas01cr@0 1110 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
mas01cr@0 1111 query = queryCopy;
mas01cr@0 1112 }
mas01cr@0 1113
mas01cr@0 1114 // Make temporary dynamic memory for results
mas01cr@0 1115 assert(pointNN>0 && pointNN<=O2_MAXNN);
mas01cr@0 1116 double distances[pointNN];
mas01cr@0 1117 unsigned qIndexes[pointNN];
mas01cr@0 1118 unsigned sIndexes[pointNN];
mas01cr@0 1119 for(unsigned k=0; k<pointNN; k++){
mas01cr@62 1120 distances[k]=-DBL_MAX;
mas01cr@0 1121 qIndexes[k]=~0;
mas01cr@0 1122 sIndexes[k]=~0;
mas01cr@0 1123 }
mas01cr@0 1124
mas01cr@0 1125 unsigned j=numVectors;
mas01cr@0 1126 unsigned k,l,n;
mas01cr@0 1127 double thisDist;
mas01cr@0 1128
mas01cr@0 1129 unsigned totalVecs=dbH->length/(dbH->dim*sizeof(double));
mas01cr@0 1130 double meanQdur = 0;
mas01cr@0 1131 double* timesdata = 0;
mas01cr@0 1132 double* dbdurs = 0;
mas01cr@0 1133
mas01cr@0 1134 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
mas01cr@0 1135 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
mas01cr@0 1136 usingTimes=0;
mas01cr@0 1137 }
mas01cr@0 1138
mas01cr@0 1139 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
mas01cr@0 1140 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
mas01cr@0 1141
mas01cr@0 1142 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
mas01cr@0 1143 timesdata = new double[numVectors];
mas01cr@0 1144 insertTimeStamps(numVectors, timesFile, timesdata);
mas01cr@0 1145 // Calculate durations of points
mas01cr@0 1146 for(k=0; k<numVectors-1; k++){
mas01cr@0 1147 timesdata[k]=timesdata[k+1]-timesdata[k];
mas01cr@0 1148 meanQdur+=timesdata[k];
mas01cr@0 1149 }
mas01cr@0 1150 meanQdur/=k;
mas01cr@0 1151 // Individual exhaustive timepoint durations
mas01cr@0 1152 dbdurs = new double[totalVecs];
mas01cr@0 1153 for(k=0; k<totalVecs-1; k++)
mas01cr@0 1154 dbdurs[k]=timesTable[k+1]-timesTable[k];
mas01cr@0 1155 j--; // decrement vector counter by one
mas01cr@0 1156 }
mas01cr@0 1157
mas01cr@0 1158 if(usingQueryPoint)
mas01cr@0 1159 if(queryPoint>numVectors-1)
mas01cr@0 1160 error("queryPoint > numVectors in query");
mas01cr@0 1161 else{
mas01cr@60 1162 if(verbosity>1) {
mas01cr@0 1163 cerr << "query point: " << queryPoint << endl; cerr.flush();
mas01cr@60 1164 }
mas01cr@0 1165 query=query+queryPoint*dbH->dim;
mas01cr@0 1166 numVectors=queryPoint+1;
mas01cr@0 1167 j=1;
mas01cr@0 1168 }
mas01cr@0 1169
mas01cr@0 1170 gettimeofday(&tv1, NULL);
mas01cr@0 1171 while(j--){ // query
mas01cr@0 1172 data=dataBuf;
mas01cr@0 1173 k=totalVecs; // number of database vectors
mas01cr@0 1174 while(k--){ // database
mas01cr@0 1175 thisDist=0;
mas01cr@0 1176 l=dbH->dim;
mas01cr@0 1177 double* q=query;
mas01cr@0 1178 while(l--)
mas01cr@0 1179 thisDist+=*q++**data++;
mas01cr@0 1180 if(!usingTimes ||
mas01cr@0 1181 (usingTimes
mas01cr@0 1182 && fabs(dbdurs[totalVecs-k-1]-timesdata[numVectors-j-1])<timesdata[numVectors-j-1]*timesTol)){
mas01cr@0 1183 n=pointNN;
mas01cr@0 1184 while(n--){
mas01cr@0 1185 if(thisDist>=distances[n]){
mas01cr@0 1186 if((n==0 || thisDist<=distances[n-1])){
mas01cr@0 1187 // Copy all values above up the queue
mas01cr@0 1188 for( l=pointNN-1 ; l >= n+1 ; l--){
mas01cr@0 1189 distances[l]=distances[l-1];
mas01cr@0 1190 qIndexes[l]=qIndexes[l-1];
mas01cr@0 1191 sIndexes[l]=sIndexes[l-1];
mas01cr@0 1192 }
mas01cr@0 1193 distances[n]=thisDist;
mas01cr@0 1194 qIndexes[n]=numVectors-j-1;
mas01cr@0 1195 sIndexes[n]=dbH->length/(sizeof(double)*dbH->dim)-k-1;
mas01cr@0 1196 break;
mas01cr@0 1197 }
mas01cr@0 1198 }
mas01cr@0 1199 else
mas01cr@0 1200 break;
mas01cr@0 1201 }
mas01cr@0 1202 }
mas01cr@0 1203 }
mas01cr@0 1204 // Move query pointer to next query point
mas01cr@0 1205 query+=dbH->dim;
mas01cr@0 1206 }
mas01cr@0 1207
mas01cr@0 1208 gettimeofday(&tv2, NULL);
mas01cr@60 1209 if(verbosity>1) {
mas01cr@0 1210 cerr << endl << " elapsed time:" << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
mas01cr@60 1211 }
mas01cr@0 1212
mas01cr@133 1213 if(adbQueryResponse==0){
mas01cr@0 1214 // Output answer
mas01cr@0 1215 // Loop over nearest neighbours
mas01cr@0 1216 for(k=0; k < pointNN; k++){
mas01cr@0 1217 // Scan for key
mas01mc@18 1218 unsigned cumTrack=0;
mas01cr@0 1219 for(l=0 ; l<dbH->numFiles; l++){
mas01mc@18 1220 cumTrack+=trackTable[l];
mas01mc@18 1221 if(sIndexes[k]<cumTrack){
mas01cr@0 1222 cout << fileTable+l*O2_FILETABLESIZE << " " << distances[k] << " " << qIndexes[k] << " "
mas01mc@18 1223 << sIndexes[k]+trackTable[l]-cumTrack << endl;
mas01cr@0 1224 break;
mas01cr@0 1225 }
mas01cr@0 1226 }
mas01cr@0 1227 }
mas01cr@0 1228 }
mas01cr@0 1229 else{ // Process Web Services Query
mas01cr@89 1230 int listLen;
mas01cr@89 1231 for(k = 0; k < pointNN; k++) {
mas01cr@89 1232 if(distances[k] == -DBL_MAX)
mas01cr@89 1233 break;
mas01cr@89 1234 }
mas01cr@89 1235 listLen = k;
mas01cr@89 1236
mas01cr@133 1237 adbQueryResponse->result.__sizeRlist=listLen;
mas01cr@133 1238 adbQueryResponse->result.__sizeDist=listLen;
mas01cr@133 1239 adbQueryResponse->result.__sizeQpos=listLen;
mas01cr@133 1240 adbQueryResponse->result.__sizeSpos=listLen;
mas01cr@133 1241 adbQueryResponse->result.Rlist= new char*[listLen];
mas01cr@133 1242 adbQueryResponse->result.Dist = new double[listLen];
mas01cr@133 1243 adbQueryResponse->result.Qpos = new unsigned int[listLen];
mas01cr@133 1244 adbQueryResponse->result.Spos = new unsigned int[listLen];
mas01cr@133 1245 for(k=0; k<(unsigned)adbQueryResponse->result.__sizeRlist; k++){
mas01cr@133 1246 adbQueryResponse->result.Rlist[k]=new char[O2_MAXFILESTR];
mas01cr@133 1247 adbQueryResponse->result.Dist[k]=distances[k];
mas01cr@133 1248 adbQueryResponse->result.Qpos[k]=qIndexes[k];
mas01mc@18 1249 unsigned cumTrack=0;
mas01cr@0 1250 for(l=0 ; l<dbH->numFiles; l++){
mas01mc@18 1251 cumTrack+=trackTable[l];
mas01mc@18 1252 if(sIndexes[k]<cumTrack){
mas01cr@133 1253 sprintf(adbQueryResponse->result.Rlist[k], "%s", fileTable+l*O2_FILETABLESIZE);
mas01cr@0 1254 break;
mas01cr@0 1255 }
mas01cr@0 1256 }
mas01cr@133 1257 adbQueryResponse->result.Spos[k]=sIndexes[k]+trackTable[l]-cumTrack;
mas01cr@0 1258 }
mas01cr@0 1259 }
mas01cr@0 1260
mas01cr@0 1261 // Clean up
mas01cr@0 1262 if(queryCopy)
mas01cr@0 1263 delete queryCopy;
mas01cr@0 1264 if(qNorm)
mas01cr@0 1265 delete qNorm;
mas01cr@0 1266 if(timesdata)
mas01cr@0 1267 delete timesdata;
mas01cr@0 1268 if(dbdurs)
mas01cr@0 1269 delete dbdurs;
mas01cr@0 1270 }
mas01cr@0 1271
mas01mc@18 1272 // trackPointQuery
mas01mc@18 1273 // return the trackNN closest tracks to the query track
mas01mc@18 1274 // uses average of pointNN points per track
mas01cr@177 1275 void audioDB::trackPointQuery(const char* dbName, const char* inFile, adb__queryResponse *adbQueryResponse) {
mas01cr@177 1276 initTables(dbName, inFile);
mas01cr@0 1277
mas01cr@0 1278 // For each input vector, find the closest pointNN matching output vectors and report
mas01cr@0 1279 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
mas01cr@0 1280 double* query = (double*)(indata+sizeof(int));
mas01cr@189 1281 double* data;
mas01cr@0 1282 double* queryCopy = 0;
mas01cr@0 1283
mas01cr@0 1284 if( dbH->flags & O2_FLAG_L2NORM ){
mas01cr@0 1285 // Make a copy of the query
mas01cr@0 1286 queryCopy = new double[numVectors*dbH->dim];
mas01cr@0 1287 qNorm = new double[numVectors];
mas01cr@0 1288 assert(queryCopy&&qNorm);
mas01cr@0 1289 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
mas01cr@0 1290 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
mas01cr@0 1291 query = queryCopy;
mas01cr@0 1292 }
mas01cr@0 1293
mas01cr@0 1294 assert(pointNN>0 && pointNN<=O2_MAXNN);
mas01mc@18 1295 assert(trackNN>0 && trackNN<=O2_MAXNN);
mas01cr@0 1296
mas01cr@0 1297 // Make temporary dynamic memory for results
mas01mc@18 1298 double trackDistances[trackNN];
mas01mc@18 1299 unsigned trackIDs[trackNN];
mas01mc@18 1300 unsigned trackQIndexes[trackNN];
mas01mc@18 1301 unsigned trackSIndexes[trackNN];
mas01cr@0 1302
mas01cr@0 1303 double distances[pointNN];
mas01cr@0 1304 unsigned qIndexes[pointNN];
mas01cr@0 1305 unsigned sIndexes[pointNN];
mas01cr@0 1306
mas01cr@0 1307 unsigned j=numVectors; // number of query points
mas01mc@18 1308 unsigned k,l,n, track, trackOffset=0, processedTracks=0;
mas01cr@0 1309 double thisDist;
mas01cr@0 1310
mas01cr@0 1311 for(k=0; k<pointNN; k++){
mas01cr@66 1312 distances[k]=-DBL_MAX;
mas01cr@0 1313 qIndexes[k]=~0;
mas01cr@0 1314 sIndexes[k]=~0;
mas01cr@0 1315 }
mas01cr@0 1316
mas01mc@18 1317 for(k=0; k<trackNN; k++){
mas01cr@66 1318 trackDistances[k]=-DBL_MAX;
mas01mc@18 1319 trackQIndexes[k]=~0;
mas01mc@18 1320 trackSIndexes[k]=~0;
mas01mc@18 1321 trackIDs[k]=~0;
mas01cr@0 1322 }
mas01cr@0 1323
mas01cr@0 1324 double meanQdur = 0;
mas01cr@0 1325 double* timesdata = 0;
mas01cr@0 1326 double* meanDBdur = 0;
mas01cr@0 1327
mas01cr@0 1328 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
mas01cr@0 1329 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
mas01cr@0 1330 usingTimes=0;
mas01cr@0 1331 }
mas01cr@0 1332
mas01cr@0 1333 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
mas01cr@0 1334 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
mas01cr@0 1335
mas01cr@0 1336 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
mas01cr@0 1337 timesdata = new double[numVectors];
mas01cr@0 1338 insertTimeStamps(numVectors, timesFile, timesdata);
mas01cr@0 1339 // Calculate durations of points
mas01cr@0 1340 for(k=0; k<numVectors-1; k++){
mas01cr@0 1341 timesdata[k]=timesdata[k+1]-timesdata[k];
mas01cr@0 1342 meanQdur+=timesdata[k];
mas01cr@0 1343 }
mas01cr@0 1344 meanQdur/=k;
mas01cr@0 1345 meanDBdur = new double[dbH->numFiles];
mas01cr@0 1346 for(k=0; k<dbH->numFiles; k++){
mas01cr@0 1347 meanDBdur[k]=0.0;
mas01mc@18 1348 for(j=0; j<trackTable[k]-1 ; j++)
mas01cr@0 1349 meanDBdur[k]+=timesTable[j+1]-timesTable[j];
mas01cr@0 1350 meanDBdur[k]/=j;
mas01cr@0 1351 }
mas01cr@0 1352 }
mas01cr@0 1353
mas01cr@0 1354 if(usingQueryPoint)
mas01cr@0 1355 if(queryPoint>numVectors-1)
mas01cr@0 1356 error("queryPoint > numVectors in query");
mas01cr@0 1357 else{
mas01cr@60 1358 if(verbosity>1) {
mas01cr@0 1359 cerr << "query point: " << queryPoint << endl; cerr.flush();
mas01cr@60 1360 }
mas01cr@0 1361 query=query+queryPoint*dbH->dim;
mas01cr@0 1362 numVectors=queryPoint+1;
mas01cr@0 1363 }
mas01cr@0 1364
mas01mc@18 1365 // build track offset table
mas01cr@187 1366 off_t *trackOffsetTable = new off_t[dbH->numFiles];
mas01mc@18 1367 unsigned cumTrack=0;
mas01cr@187 1368 off_t trackIndexOffset;
mas01cr@0 1369 for(k=0; k<dbH->numFiles;k++){
mas01mc@18 1370 trackOffsetTable[k]=cumTrack;
mas01mc@18 1371 cumTrack+=trackTable[k]*dbH->dim;
mas01cr@0 1372 }
mas01cr@0 1373
mas01cr@0 1374 char nextKey[MAXSTR];
mas01cr@0 1375
mas01cr@0 1376 gettimeofday(&tv1, NULL);
mas01cr@187 1377
mas01cr@187 1378 size_t data_buffer_size = 0;
mas01cr@187 1379 double *data_buffer = 0;
mas01cr@187 1380 lseek(dbfid, dbH->dataOffset, SEEK_SET);
mas01cr@0 1381
mas01mc@18 1382 for(processedTracks=0, track=0 ; processedTracks < dbH->numFiles ; track++, processedTracks++){
mas01cr@187 1383
mas01cr@187 1384 trackOffset = trackOffsetTable[track]; // numDoubles offset
mas01cr@187 1385
mas01cr@187 1386 // get trackID from file if using a control file
mas01cr@187 1387 if(trackFile) {
mas01cr@187 1388 trackFile->getline(nextKey,MAXSTR);
mas01cr@187 1389 if(!trackFile->eof()) {
mas01cr@187 1390 track = getKeyPos(nextKey);
mas01cr@187 1391 trackOffset = trackOffsetTable[track];
mas01cr@187 1392 lseek(dbfid, dbH->dataOffset + trackOffset * sizeof(double), SEEK_SET);
mas01cr@187 1393 } else {
mas01cr@187 1394 break;
mas01cr@0 1395 }
mas01cr@0 1396 }
mas01cr@187 1397
mas01mc@18 1398 trackIndexOffset=trackOffset/dbH->dim; // numVectors offset
mas01cr@187 1399
mas01cr@60 1400 if(verbosity>7) {
mas01mc@18 1401 cerr << track << "." << trackOffset/(dbH->dim) << "." << trackTable[track] << " | ";cerr.flush();
mas01cr@60 1402 }
mas01cr@0 1403
mas01cr@0 1404 if(dbH->flags & O2_FLAG_L2NORM)
mas01cr@0 1405 usingQueryPoint?query=queryCopy+queryPoint*dbH->dim:query=queryCopy;
mas01cr@0 1406 else
mas01cr@0 1407 usingQueryPoint?query=(double*)(indata+sizeof(int))+queryPoint*dbH->dim:query=(double*)(indata+sizeof(int));
mas01cr@0 1408 if(usingQueryPoint)
mas01cr@0 1409 j=1;
mas01cr@0 1410 else
mas01cr@0 1411 j=numVectors;
mas01cr@187 1412
mas01cr@187 1413 if (trackTable[track] * sizeof(double) * dbH->dim > data_buffer_size) {
mas01cr@187 1414 if(data_buffer) {
mas01cr@187 1415 free(data_buffer);
mas01cr@187 1416 }
mas01cr@187 1417 {
mas01cr@187 1418 data_buffer_size = trackTable[track] * sizeof(double) * dbH->dim;
mas01cr@187 1419 void *tmp = malloc(data_buffer_size);
mas01cr@187 1420 if (tmp == NULL) {
mas01cr@187 1421 error("error allocating data buffer");
mas01cr@187 1422 }
mas01cr@187 1423 data_buffer = (double *) tmp;
mas01cr@187 1424 }
mas01cr@187 1425 }
mas01cr@187 1426
mas01cr@187 1427 read(dbfid, data_buffer, trackTable[track] * sizeof(double) * dbH->dim);
mas01cr@187 1428
mas01cr@0 1429 while(j--){
mas01mc@18 1430 k=trackTable[track]; // number of vectors in track
mas01cr@187 1431 data=data_buffer; // data for track
mas01cr@0 1432 while(k--){
mas01cr@0 1433 thisDist=0;
mas01cr@0 1434 l=dbH->dim;
mas01cr@0 1435 double* q=query;
mas01cr@0 1436 while(l--)
mas01cr@0 1437 thisDist+=*q++**data++;
mas01cr@0 1438 if(!usingTimes ||
mas01cr@0 1439 (usingTimes
mas01mc@18 1440 && fabs(meanDBdur[track]-meanQdur)<meanQdur*timesTol)){
mas01cr@0 1441 n=pointNN;
mas01cr@0 1442 while(n--){
mas01cr@0 1443 if(thisDist>=distances[n]){
mas01cr@0 1444 if((n==0 || thisDist<=distances[n-1])){
mas01cr@0 1445 // Copy all values above up the queue
mas01cr@0 1446 for( l=pointNN-1 ; l > n ; l--){
mas01cr@0 1447 distances[l]=distances[l-1];
mas01cr@0 1448 qIndexes[l]=qIndexes[l-1];
mas01cr@0 1449 sIndexes[l]=sIndexes[l-1];
mas01cr@0 1450 }
mas01cr@0 1451 distances[n]=thisDist;
mas01cr@0 1452 qIndexes[n]=numVectors-j-1;
mas01mc@18 1453 sIndexes[n]=trackTable[track]-k-1;
mas01cr@0 1454 break;
mas01cr@0 1455 }
mas01cr@0 1456 }
mas01cr@0 1457 else
mas01cr@0 1458 break;
mas01cr@0 1459 }
mas01cr@0 1460 }
mas01mc@18 1461 } // track
mas01cr@0 1462 // Move query pointer to next query point
mas01cr@0 1463 query+=dbH->dim;
mas01cr@0 1464 } // query
mas01mc@18 1465 // Take the average of this track's distance
mas01mc@18 1466 // Test the track distances
mas01cr@0 1467 thisDist=0;
mas01cr@66 1468 for (n = 0; n < pointNN; n++) {
mas01cr@66 1469 if (distances[n] == -DBL_MAX) break;
mas01cr@66 1470 thisDist += distances[n];
mas01cr@66 1471 }
mas01cr@66 1472 thisDist /= n;
mas01cr@66 1473
mas01mc@18 1474 n=trackNN;
mas01cr@0 1475 while(n--){
mas01mc@18 1476 if(thisDist>=trackDistances[n]){
mas01mc@18 1477 if((n==0 || thisDist<=trackDistances[n-1])){
mas01cr@0 1478 // Copy all values above up the queue
mas01cr@74 1479 for( l=trackNN-1 ; l > n ; l--){
mas01mc@18 1480 trackDistances[l]=trackDistances[l-1];
mas01mc@18 1481 trackQIndexes[l]=trackQIndexes[l-1];
mas01mc@18 1482 trackSIndexes[l]=trackSIndexes[l-1];
mas01mc@18 1483 trackIDs[l]=trackIDs[l-1];
mas01cr@0 1484 }
mas01mc@18 1485 trackDistances[n]=thisDist;
mas01mc@18 1486 trackQIndexes[n]=qIndexes[0];
mas01mc@18 1487 trackSIndexes[n]=sIndexes[0];
mas01mc@18 1488 trackIDs[n]=track;
mas01cr@0 1489 break;
mas01cr@0 1490 }
mas01cr@0 1491 }
mas01cr@0 1492 else
mas01cr@0 1493 break;
mas01cr@0 1494 }
mas01cr@0 1495 for(unsigned k=0; k<pointNN; k++){
mas01cr@66 1496 distances[k]=-DBL_MAX;
mas01cr@0 1497 qIndexes[k]=~0;
mas01cr@0 1498 sIndexes[k]=~0;
mas01cr@0 1499 }
mas01mc@18 1500 } // tracks
mas01cr@187 1501
mas01cr@187 1502 free(data_buffer);
mas01cr@187 1503
mas01cr@0 1504 gettimeofday(&tv2, NULL);
mas01cr@0 1505
mas01cr@60 1506 if(verbosity>1) {
mas01mc@18 1507 cerr << endl << "processed tracks :" << processedTracks
mas01cr@0 1508 << " elapsed time:" << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
mas01cr@60 1509 }
mas01cr@0 1510
mas01cr@133 1511 if(adbQueryResponse==0){
mas01cr@60 1512 if(verbosity>1) {
mas01cr@0 1513 cerr<<endl;
mas01cr@60 1514 }
mas01cr@0 1515 // Output answer
mas01cr@0 1516 // Loop over nearest neighbours
mas01mc@18 1517 for(k=0; k < min(trackNN,processedTracks); k++)
mas01mc@18 1518 cout << fileTable+trackIDs[k]*O2_FILETABLESIZE
mas01mc@18 1519 << " " << trackDistances[k] << " " << trackQIndexes[k] << " " << trackSIndexes[k] << endl;
mas01cr@0 1520 }
mas01cr@0 1521 else{ // Process Web Services Query
mas01mc@18 1522 int listLen = min(trackNN, processedTracks);
mas01cr@133 1523 adbQueryResponse->result.__sizeRlist=listLen;
mas01cr@133 1524 adbQueryResponse->result.__sizeDist=listLen;
mas01cr@133 1525 adbQueryResponse->result.__sizeQpos=listLen;
mas01cr@133 1526 adbQueryResponse->result.__sizeSpos=listLen;
mas01cr@133 1527 adbQueryResponse->result.Rlist= new char*[listLen];
mas01cr@133 1528 adbQueryResponse->result.Dist = new double[listLen];
mas01cr@133 1529 adbQueryResponse->result.Qpos = new unsigned int[listLen];
mas01cr@133 1530 adbQueryResponse->result.Spos = new unsigned int[listLen];
mas01cr@133 1531 for(k=0; k<(unsigned)adbQueryResponse->result.__sizeRlist; k++){
mas01cr@133 1532 adbQueryResponse->result.Rlist[k]=new char[O2_MAXFILESTR];
mas01cr@133 1533 adbQueryResponse->result.Dist[k]=trackDistances[k];
mas01cr@133 1534 adbQueryResponse->result.Qpos[k]=trackQIndexes[k];
mas01cr@133 1535 adbQueryResponse->result.Spos[k]=trackSIndexes[k];
mas01cr@133 1536 sprintf(adbQueryResponse->result.Rlist[k], "%s", fileTable+trackIDs[k]*O2_FILETABLESIZE);
mas01cr@0 1537 }
mas01cr@0 1538 }
mas01cr@0 1539
mas01cr@0 1540
mas01cr@0 1541 // Clean up
mas01mc@18 1542 if(trackOffsetTable)
mas01mc@18 1543 delete trackOffsetTable;
mas01cr@0 1544 if(queryCopy)
mas01cr@0 1545 delete queryCopy;
mas01cr@0 1546 if(qNorm)
mas01cr@0 1547 delete qNorm;
mas01cr@0 1548 if(timesdata)
mas01cr@0 1549 delete timesdata;
mas01cr@0 1550 if(meanDBdur)
mas01cr@0 1551 delete meanDBdur;
mas01cr@0 1552
mas01cr@0 1553 }
mas01cr@0 1554
mas01cr@0 1555
mas01mc@20 1556 // k nearest-neighbor (k-NN) search between query and target tracks
mas01mc@20 1557 // efficient implementation based on matched filter
mas01mc@20 1558 // assumes normed shingles
mas01mc@20 1559 // outputs distances of retrieved shingles, max retreived = pointNN shingles per per track
mas01cr@133 1560 void audioDB::trackSequenceQueryNN(const char* dbName, const char* inFile, adb__queryResponse *adbQueryResponse){
mas01cr@0 1561
mas01cr@177 1562 initTables(dbName, inFile);
mas01cr@0 1563
mas01cr@0 1564 // For each input vector, find the closest pointNN matching output vectors and report
mas01cr@0 1565 // we use stdout in this stub version
mas01cr@0 1566 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
mas01cr@0 1567 double* query = (double*)(indata+sizeof(int));
mas01cr@0 1568 double* queryCopy = 0;
mas01cr@0 1569
mas01cr@0 1570 double qMeanL2;
mas01cr@0 1571 double* sMeanL2;
mas01cr@0 1572
mas01cr@0 1573 unsigned USE_THRESH=0;
mas01cr@0 1574 double SILENCE_THRESH=0;
mas01cr@0 1575 double DIFF_THRESH=0;
mas01cr@0 1576
mas01cr@0 1577 if(!(dbH->flags & O2_FLAG_L2NORM) )
mas01cr@55 1578 error("Database must be L2 normed for sequence query","use -L2NORM");
mas01cr@55 1579
mas01cr@55 1580 if(numVectors<sequenceLength)
mas01cr@55 1581 error("Query shorter than requested sequence length", "maybe use -l");
mas01cr@0 1582
mas01cr@60 1583 if(verbosity>1) {
mas01cr@0 1584 cerr << "performing norms ... "; cerr.flush();
mas01cr@60 1585 }
mas01cr@0 1586 unsigned dbVectors = dbH->length/(sizeof(double)*dbH->dim);
mas01mc@20 1587
mas01cr@0 1588 // Make a copy of the query
mas01cr@0 1589 queryCopy = new double[numVectors*dbH->dim];
mas01cr@0 1590 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
mas01cr@0 1591 qNorm = new double[numVectors];
mas01cr@0 1592 sNorm = new double[dbVectors];
mas01cr@0 1593 sMeanL2=new double[dbH->numFiles];
mas01cr@0 1594 assert(qNorm&&sNorm&&queryCopy&&sMeanL2&&sequenceLength);
mas01cr@0 1595 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
mas01cr@0 1596 query = queryCopy;
mas01mc@20 1597
mas01cr@0 1598 // Make norm measurements relative to sequenceLength
mas01cr@0 1599 unsigned w = sequenceLength-1;
mas01cr@0 1600 unsigned i,j;
mas01cr@0 1601 double* ps;
mas01cr@0 1602 double tmp1,tmp2;
mas01mc@20 1603
mas01cr@0 1604 // Copy the L2 norm values to core to avoid disk random access later on
mas01cr@0 1605 memcpy(sNorm, l2normTable, dbVectors*sizeof(double));
mas01cr@125 1606 double* qnPtr = qNorm;
mas01cr@0 1607 double* snPtr = sNorm;
mas01cr@0 1608 for(i=0; i<dbH->numFiles; i++){
mas01mc@20 1609 if(trackTable[i]>=sequenceLength){
mas01cr@0 1610 tmp1=*snPtr;
mas01cr@0 1611 j=1;
mas01cr@0 1612 w=sequenceLength-1;
mas01cr@0 1613 while(w--)
mas01cr@0 1614 *snPtr+=snPtr[j++];
mas01cr@0 1615 ps = snPtr+1;
mas01mc@18 1616 w=trackTable[i]-sequenceLength; // +1 - 1
mas01cr@0 1617 while(w--){
mas01cr@0 1618 tmp2=*ps;
mas01mc@20 1619 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
mas01cr@0 1620 tmp1=tmp2;
mas01cr@0 1621 ps++;
mas01cr@0 1622 }
mas01mc@20 1623 ps = snPtr;
mas01mc@20 1624 w=trackTable[i]-sequenceLength+1;
mas01mc@20 1625 while(w--){
mas01mc@20 1626 *ps=sqrt(*ps);
mas01mc@20 1627 ps++;
mas01mc@20 1628 }
mas01cr@0 1629 }
mas01mc@18 1630 snPtr+=trackTable[i];
mas01cr@0 1631 }
mas01cr@0 1632
mas01cr@0 1633 double* pn = sMeanL2;
mas01cr@0 1634 w=dbH->numFiles;
mas01cr@0 1635 while(w--)
mas01cr@0 1636 *pn++=0.0;
mas01cr@0 1637 ps=sNorm;
mas01mc@18 1638 unsigned processedTracks=0;
mas01cr@0 1639 for(i=0; i<dbH->numFiles; i++){
mas01mc@18 1640 if(trackTable[i]>sequenceLength-1){
mas01cr@57 1641 w = trackTable[i]-sequenceLength+1;
mas01cr@0 1642 pn = sMeanL2+i;
mas01mc@20 1643 *pn=0;
mas01cr@0 1644 while(w--)
mas01mc@20 1645 if(*ps>0)
mas01mc@20 1646 *pn+=*ps++;
mas01cr@57 1647 *pn/=trackTable[i]-sequenceLength+1;
mas01cr@0 1648 SILENCE_THRESH+=*pn;
mas01mc@18 1649 processedTracks++;
mas01cr@0 1650 }
mas01mc@18 1651 ps = sNorm + trackTable[i];
mas01cr@0 1652 }
mas01cr@60 1653 if(verbosity>1) {
mas01mc@18 1654 cerr << "processedTracks: " << processedTracks << endl;
mas01cr@60 1655 }
mas01mc@20 1656
mas01mc@18 1657 SILENCE_THRESH/=processedTracks;
mas01cr@0 1658 USE_THRESH=1; // Turn thresholding on
mas01mc@20 1659 DIFF_THRESH=SILENCE_THRESH; // mean shingle power
mas01mc@20 1660 SILENCE_THRESH/=5; // 20% of the mean shingle power is SILENCE
mas01cr@60 1661 if(verbosity>4) {
mas01mc@20 1662 cerr << "silence thresh: " << SILENCE_THRESH;
mas01cr@60 1663 }
mas01cr@0 1664 w=sequenceLength-1;
mas01cr@0 1665 i=1;
mas01cr@125 1666 tmp1=*qnPtr;
mas01cr@0 1667 while(w--)
mas01cr@125 1668 *qnPtr+=qnPtr[i++];
mas01cr@125 1669 ps = qnPtr+1;
mas01mc@20 1670 w=numVectors-sequenceLength; // +1 -1
mas01cr@0 1671 while(w--){
mas01cr@0 1672 tmp2=*ps;
mas01mc@20 1673 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
mas01cr@0 1674 tmp1=tmp2;
mas01mc@20 1675 ps++;
mas01mc@20 1676 }
mas01cr@125 1677 ps = qnPtr;
mas01mc@20 1678 qMeanL2 = 0;
mas01mc@20 1679 w=numVectors-sequenceLength+1;
mas01mc@20 1680 while(w--){
mas01mc@20 1681 *ps=sqrt(*ps);
mas01mc@20 1682 qMeanL2+=*ps++;
mas01cr@0 1683 }
mas01cr@0 1684 qMeanL2 /= numVectors-sequenceLength+1;
mas01mc@20 1685
mas01cr@60 1686 if(verbosity>1) {
mas01cr@60 1687 cerr << "done." << endl;
mas01cr@60 1688 }
mas01cr@0 1689
mas01cr@60 1690 if(verbosity>1) {
mas01mc@18 1691 cerr << "matching tracks..." << endl;
mas01cr@60 1692 }
mas01cr@0 1693
mas01cr@0 1694 assert(pointNN>0 && pointNN<=O2_MAXNN);
mas01mc@18 1695 assert(trackNN>0 && trackNN<=O2_MAXNN);
mas01cr@0 1696
mas01cr@0 1697 // Make temporary dynamic memory for results
mas01mc@18 1698 double trackDistances[trackNN];
mas01mc@18 1699 unsigned trackIDs[trackNN];
mas01mc@18 1700 unsigned trackQIndexes[trackNN];
mas01mc@18 1701 unsigned trackSIndexes[trackNN];
mas01cr@0 1702
mas01cr@0 1703 double distances[pointNN];
mas01cr@0 1704 unsigned qIndexes[pointNN];
mas01cr@0 1705 unsigned sIndexes[pointNN];
mas01cr@0 1706
mas01cr@0 1707
mas01mc@18 1708 unsigned k,l,m,n,track,trackOffset=0, HOP_SIZE=sequenceHop, wL=sequenceLength;
mas01cr@0 1709 double thisDist;
mas01cr@0 1710
mas01cr@0 1711 for(k=0; k<pointNN; k++){
mas01mc@20 1712 distances[k]=1.0e6;
mas01cr@0 1713 qIndexes[k]=~0;
mas01cr@0 1714 sIndexes[k]=~0;
mas01cr@0 1715 }
mas01cr@0 1716
mas01mc@18 1717 for(k=0; k<trackNN; k++){
mas01mc@20 1718 trackDistances[k]=1.0e6;
mas01mc@18 1719 trackQIndexes[k]=~0;
mas01mc@18 1720 trackSIndexes[k]=~0;
mas01mc@18 1721 trackIDs[k]=~0;
mas01cr@0 1722 }
mas01cr@0 1723
mas01cr@0 1724 // Timestamp and durations processing
mas01cr@0 1725 double meanQdur = 0;
mas01cr@0 1726 double* timesdata = 0;
mas01cr@0 1727 double* meanDBdur = 0;
mas01cr@0 1728
mas01cr@0 1729 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
mas01cr@0 1730 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
mas01cr@0 1731 usingTimes=0;
mas01cr@0 1732 }
mas01cr@0 1733
mas01cr@0 1734 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
mas01cr@0 1735 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
mas01cr@0 1736
mas01cr@0 1737 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
mas01cr@0 1738 timesdata = new double[numVectors];
mas01cr@0 1739 assert(timesdata);
mas01cr@0 1740 insertTimeStamps(numVectors, timesFile, timesdata);
mas01cr@0 1741 // Calculate durations of points
mas01cr@0 1742 for(k=0; k<numVectors-1; k++){
mas01cr@0 1743 timesdata[k]=timesdata[k+1]-timesdata[k];
mas01cr@0 1744 meanQdur+=timesdata[k];
mas01cr@0 1745 }
mas01cr@0 1746 meanQdur/=k;
mas01cr@60 1747 if(verbosity>1) {
mas01cr@0 1748 cerr << "mean query file duration: " << meanQdur << endl;
mas01cr@60 1749 }
mas01cr@0 1750 meanDBdur = new double[dbH->numFiles];
mas01cr@0 1751 assert(meanDBdur);
mas01cr@0 1752 for(k=0; k<dbH->numFiles; k++){
mas01cr@0 1753 meanDBdur[k]=0.0;
mas01mc@18 1754 for(j=0; j<trackTable[k]-1 ; j++)
mas01cr@0 1755 meanDBdur[k]+=timesTable[j+1]-timesTable[j];
mas01cr@0 1756 meanDBdur[k]/=j;
mas01cr@0 1757 }
mas01cr@0 1758 }
mas01cr@0 1759
mas01cr@0 1760 if(usingQueryPoint)
mas01cr@0 1761 if(queryPoint>numVectors || queryPoint>numVectors-wL+1)
mas01cr@0 1762 error("queryPoint > numVectors-wL+1 in query");
mas01cr@0 1763 else{
mas01cr@60 1764 if(verbosity>1) {
mas01cr@0 1765 cerr << "query point: " << queryPoint << endl; cerr.flush();
mas01cr@60 1766 }
mas01cr@0 1767 query=query+queryPoint*dbH->dim;
mas01cr@125 1768 qnPtr=qnPtr+queryPoint;
mas01cr@0 1769 numVectors=wL;
mas01cr@0 1770 }
mas01cr@0 1771
mas01mc@20 1772 double ** D = 0; // Differences query and target
mas01cr@0 1773 double ** DD = 0; // Matched filter distance
mas01cr@0 1774
mas01cr@0 1775 D = new double*[numVectors];
mas01cr@0 1776 assert(D);
mas01cr@0 1777 DD = new double*[numVectors];
mas01cr@0 1778 assert(DD);
mas01cr@0 1779
mas01cr@0 1780 gettimeofday(&tv1, NULL);
mas01mc@18 1781 processedTracks=0;
mas01mc@18 1782 unsigned successfulTracks=0;
mas01cr@0 1783
mas01cr@0 1784 double* qp;
mas01cr@0 1785 double* sp;
mas01cr@0 1786 double* dp;
mas01cr@0 1787
mas01mc@18 1788 // build track offset table
mas01cr@187 1789 off_t *trackOffsetTable = new off_t[dbH->numFiles];
mas01mc@18 1790 unsigned cumTrack=0;
mas01cr@187 1791 off_t trackIndexOffset;
mas01cr@0 1792 for(k=0; k<dbH->numFiles;k++){
mas01mc@18 1793 trackOffsetTable[k]=cumTrack;
mas01mc@18 1794 cumTrack+=trackTable[k]*dbH->dim;
mas01cr@0 1795 }
mas01cr@0 1796
mas01cr@0 1797 char nextKey [MAXSTR];
mas01mc@20 1798
mas01mc@20 1799 // chi^2 statistics
mas01mc@20 1800 double sampleCount = 0;
mas01mc@20 1801 double sampleSum = 0;
mas01mc@20 1802 double logSampleSum = 0;
mas01mc@20 1803 double minSample = 1e9;
mas01mc@20 1804 double maxSample = 0;
mas01mc@20 1805
mas01mc@20 1806 // Track loop
mas01cr@179 1807 size_t data_buffer_size = 0;
mas01cr@179 1808 double *data_buffer = 0;
mas01cr@179 1809 lseek(dbfid, dbH->dataOffset, SEEK_SET);
mas01cr@179 1810
mas01cr@179 1811 for(processedTracks=0, track=0 ; processedTracks < dbH->numFiles ; track++, processedTracks++) {
mas01cr@0 1812
mas01cr@187 1813 trackOffset = trackOffsetTable[track]; // numDoubles offset
mas01cr@187 1814
mas01mc@18 1815 // get trackID from file if using a control file
mas01cr@187 1816 if(trackFile) {
mas01cr@187 1817 trackFile->getline(nextKey,MAXSTR);
mas01cr@187 1818 if(!trackFile->eof()) {
mas01cr@187 1819 track = getKeyPos(nextKey);
mas01cr@187 1820 trackOffset = trackOffsetTable[track];
mas01cr@187 1821 lseek(dbfid, dbH->dataOffset + trackOffset * sizeof(double), SEEK_SET);
mas01cr@187 1822 } else {
mas01cr@187 1823 break;
mas01cr@0 1824 }
mas01cr@0 1825 }
mas01mc@12 1826
mas01mc@18 1827 trackIndexOffset=trackOffset/dbH->dim; // numVectors offset
mas01cr@0 1828
mas01cr@57 1829 if(sequenceLength<=trackTable[track]){ // test for short sequences
mas01cr@0 1830
mas01cr@60 1831 if(verbosity>7) {
mas01mc@18 1832 cerr << track << "." << trackIndexOffset << "." << trackTable[track] << " | ";cerr.flush();
mas01cr@60 1833 }
mas01cr@0 1834
mas01mc@20 1835 // Sum products matrix
mas01cr@0 1836 for(j=0; j<numVectors;j++){
mas01mc@18 1837 D[j]=new double[trackTable[track]];
mas01cr@0 1838 assert(D[j]);
mas01cr@0 1839
mas01cr@0 1840 }
mas01cr@0 1841
mas01cr@0 1842 // Matched filter matrix
mas01cr@0 1843 for(j=0; j<numVectors;j++){
mas01mc@18 1844 DD[j]=new double[trackTable[track]];
mas01cr@0 1845 assert(DD[j]);
mas01cr@0 1846 }
mas01cr@0 1847
mas01cr@179 1848 if (trackTable[track] * sizeof(double) * dbH->dim > data_buffer_size) {
mas01cr@179 1849 if(data_buffer) {
mas01cr@179 1850 free(data_buffer);
mas01cr@179 1851 }
mas01cr@179 1852 {
mas01cr@179 1853 data_buffer_size = trackTable[track] * sizeof(double) * dbH->dim;
mas01cr@179 1854 void *tmp = malloc(data_buffer_size);
mas01cr@179 1855 if (tmp == NULL) {
mas01cr@179 1856 error("error allocating data buffer");
mas01cr@179 1857 }
mas01cr@179 1858 data_buffer = (double *) tmp;
mas01cr@179 1859 }
mas01cr@179 1860 }
mas01cr@179 1861
mas01cr@179 1862 read(dbfid, data_buffer, trackTable[track] * sizeof(double) * dbH->dim);
mas01cr@179 1863
mas01mc@20 1864 // Dot product
mas01cr@0 1865 for(j=0; j<numVectors; j++)
mas01mc@18 1866 for(k=0; k<trackTable[track]; k++){
mas01cr@0 1867 qp=query+j*dbH->dim;
mas01cr@179 1868 sp=data_buffer+k*dbH->dim;
mas01cr@0 1869 DD[j][k]=0.0; // Initialize matched filter array
mas01cr@0 1870 dp=&D[j][k]; // point to correlation cell j,k
mas01cr@0 1871 *dp=0.0; // initialize correlation cell
mas01cr@0 1872 l=dbH->dim; // size of vectors
mas01cr@0 1873 while(l--)
mas01cr@0 1874 *dp+=*qp++**sp++;
mas01cr@0 1875 }
mas01cr@0 1876
mas01cr@0 1877 // Matched Filter
mas01cr@0 1878 // HOP SIZE == 1
mas01cr@0 1879 double* spd;
mas01cr@0 1880 if(HOP_SIZE==1){ // HOP_SIZE = shingleHop
mas01cr@0 1881 for(w=0; w<wL; w++)
mas01cr@0 1882 for(j=0; j<numVectors-w; j++){
mas01cr@0 1883 sp=DD[j];
mas01cr@0 1884 spd=D[j+w]+w;
mas01mc@18 1885 k=trackTable[track]-w;
mas01cr@0 1886 while(k--)
mas01cr@0 1887 *sp+++=*spd++;
mas01cr@0 1888 }
mas01cr@0 1889 }
mas01mc@20 1890
mas01cr@0 1891 else{ // HOP_SIZE != 1
mas01cr@0 1892 for(w=0; w<wL; w++)
mas01cr@0 1893 for(j=0; j<numVectors-w; j+=HOP_SIZE){
mas01cr@0 1894 sp=DD[j];
mas01cr@0 1895 spd=D[j+w]+w;
mas01mc@18 1896 for(k=0; k<trackTable[track]-w; k+=HOP_SIZE){
mas01cr@0 1897 *sp+=*spd;
mas01cr@0 1898 sp+=HOP_SIZE;
mas01cr@0 1899 spd+=HOP_SIZE;
mas01cr@0 1900 }
mas01cr@0 1901 }
mas01cr@0 1902 }
mas01cr@0 1903
mas01cr@60 1904 if(verbosity>3 && usingTimes) {
mas01mc@18 1905 cerr << "meanQdur=" << meanQdur << " meanDBdur=" << meanDBdur[track] << endl;
mas01cr@0 1906 cerr.flush();
mas01cr@0 1907 }
mas01cr@0 1908
mas01cr@0 1909 if(!usingTimes ||
mas01cr@0 1910 (usingTimes
mas01mc@18 1911 && fabs(meanDBdur[track]-meanQdur)<meanQdur*timesTol)){
mas01cr@0 1912
mas01cr@60 1913 if(verbosity>3 && usingTimes) {
mas01cr@0 1914 cerr << "within duration tolerance." << endl;
mas01cr@0 1915 cerr.flush();
mas01cr@0 1916 }
mas01cr@0 1917
mas01cr@0 1918 // Search for minimum distance by shingles (concatenated vectors)
mas01cr@53 1919 for(j=0;j<=numVectors-wL;j+=HOP_SIZE)
mas01cr@53 1920 for(k=0;k<=trackTable[track]-wL;k+=HOP_SIZE){
mas01cr@125 1921 thisDist=2-(2/(qnPtr[j]*sNorm[trackIndexOffset+k]))*DD[j][k];
mas01cr@60 1922 if(verbosity>10) {
mas01cr@125 1923 cerr << thisDist << " " << qnPtr[j] << " " << sNorm[trackIndexOffset+k] << endl;
mas01cr@60 1924 }
mas01mc@20 1925 // Gather chi^2 statistics
mas01mc@20 1926 if(thisDist<minSample)
mas01mc@20 1927 minSample=thisDist;
mas01mc@20 1928 else if(thisDist>maxSample)
mas01mc@20 1929 maxSample=thisDist;
mas01mc@20 1930 if(thisDist>1e-9){
mas01mc@20 1931 sampleCount++;
mas01mc@20 1932 sampleSum+=thisDist;
mas01mc@20 1933 logSampleSum+=log(thisDist);
mas01mc@20 1934 }
mas01mc@20 1935
mas01cr@125 1936 // diffL2 = fabs(qnPtr[j] - sNorm[trackIndexOffset+k]);
mas01cr@0 1937 // Power test
mas01cr@0 1938 if(!USE_THRESH ||
mas01cr@0 1939 // Threshold on mean L2 of Q and S sequences
mas01cr@125 1940 (USE_THRESH && qnPtr[j]>SILENCE_THRESH && sNorm[trackIndexOffset+k]>SILENCE_THRESH &&
mas01cr@0 1941 // Are both query and target windows above mean energy?
mas01cr@125 1942 (qnPtr[j]>qMeanL2*.25 && sNorm[trackIndexOffset+k]>sMeanL2[track]*.25))) // && diffL2 < DIFF_THRESH )))
mas01mc@20 1943 thisDist=thisDist; // Computed above
mas01cr@0 1944 else
mas01mc@20 1945 thisDist=1000000.0;
mas01mc@20 1946
mas01mc@20 1947 // k-NN match algorithm
mas01cr@58 1948 m=pointNN;
mas01mc@20 1949 while(m--){
mas01mc@20 1950 if(thisDist<=distances[m])
mas01mc@20 1951 if(m==0 || thisDist>=distances[m-1]){
mas01cr@0 1952 // Shuffle distances up the list
mas01cr@0 1953 for(l=pointNN-1; l>m; l--){
mas01cr@0 1954 distances[l]=distances[l-1];
mas01cr@0 1955 qIndexes[l]=qIndexes[l-1];
mas01cr@0 1956 sIndexes[l]=sIndexes[l-1];
mas01cr@0 1957 }
mas01cr@0 1958 distances[m]=thisDist;
mas01cr@0 1959 if(usingQueryPoint)
mas01cr@0 1960 qIndexes[m]=queryPoint;
mas01cr@0 1961 else
mas01cr@0 1962 qIndexes[m]=j;
mas01cr@0 1963 sIndexes[m]=k;
mas01cr@0 1964 break;
mas01mc@20 1965 }
mas01cr@0 1966 }
mas01cr@0 1967 }
mas01cr@0 1968 // Calculate the mean of the N-Best matches
mas01cr@0 1969 thisDist=0.0;
mas01cr@53 1970 for(m=0; m<pointNN; m++) {
mas01cr@53 1971 if (distances[m] == 1000000.0) break;
mas01mc@20 1972 thisDist+=distances[m];
mas01cr@53 1973 }
mas01cr@53 1974 thisDist/=m;
mas01cr@0 1975
mas01mc@12 1976 // Let's see the distances then...
mas01cr@60 1977 if(verbosity>3) {
mas01mc@18 1978 cerr << fileTable+track*O2_FILETABLESIZE << " " << thisDist << endl;
mas01cr@60 1979 }
mas01mc@12 1980
mas01mc@20 1981
mas01mc@18 1982 // All the track stuff goes here
mas01cr@58 1983 n=trackNN;
mas01cr@0 1984 while(n--){
mas01mc@20 1985 if(thisDist<=trackDistances[n]){
mas01mc@20 1986 if((n==0 || thisDist>=trackDistances[n-1])){
mas01cr@0 1987 // Copy all values above up the queue
mas01mc@18 1988 for( l=trackNN-1 ; l > n ; l--){
mas01mc@18 1989 trackDistances[l]=trackDistances[l-1];
mas01mc@18 1990 trackQIndexes[l]=trackQIndexes[l-1];
mas01mc@18 1991 trackSIndexes[l]=trackSIndexes[l-1];
mas01mc@18 1992 trackIDs[l]=trackIDs[l-1];
mas01cr@0 1993 }
mas01mc@18 1994 trackDistances[n]=thisDist;
mas01mc@18 1995 trackQIndexes[n]=qIndexes[0];
mas01mc@18 1996 trackSIndexes[n]=sIndexes[0];
mas01mc@18 1997 successfulTracks++;
mas01mc@18 1998 trackIDs[n]=track;
mas01cr@0 1999 break;
mas01cr@0 2000 }
mas01cr@0 2001 }
mas01cr@0 2002 else
mas01cr@0 2003 break;
mas01cr@0 2004 }
mas01cr@0 2005 } // Duration match
mas01mc@20 2006
mas01mc@18 2007 // Clean up current track
mas01cr@0 2008 if(D!=NULL){
mas01cr@0 2009 for(j=0; j<numVectors; j++)
mas01cr@0 2010 delete[] D[j];
mas01cr@0 2011 }
mas01cr@0 2012
mas01cr@0 2013 if(DD!=NULL){
mas01cr@0 2014 for(j=0; j<numVectors; j++)
mas01cr@0 2015 delete[] DD[j];
mas01cr@0 2016 }
mas01cr@0 2017 }
mas01mc@20 2018 // per-track reset array values
mas01mc@20 2019 for(unsigned k=0; k<pointNN; k++){
mas01mc@20 2020 distances[k]=1.0e6;
mas01mc@20 2021 qIndexes[k]=~0;
mas01mc@20 2022 sIndexes[k]=~0;
mas01mc@20 2023 }
mas01cr@0 2024 }
mas01cr@0 2025
mas01cr@179 2026 free(data_buffer);
mas01cr@179 2027
mas01cr@0 2028 gettimeofday(&tv2,NULL);
mas01cr@60 2029 if(verbosity>1) {
mas01mc@18 2030 cerr << endl << "processed tracks :" << processedTracks << " matched tracks: " << successfulTracks << " elapsed time:"
mas01cr@0 2031 << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
mas01mc@20 2032 cerr << "sampleCount: " << sampleCount << " sampleSum: " << sampleSum << " logSampleSum: " << logSampleSum
mas01mc@20 2033 << " minSample: " << minSample << " maxSample: " << maxSample << endl;
mas01mc@20 2034 }
mas01cr@133 2035 if(adbQueryResponse==0){
mas01cr@60 2036 if(verbosity>1) {
mas01cr@0 2037 cerr<<endl;
mas01cr@60 2038 }
mas01cr@0 2039 // Output answer
mas01cr@0 2040 // Loop over nearest neighbours
mas01mc@18 2041 for(k=0; k < min(trackNN,successfulTracks); k++)
mas01mc@20 2042 cout << fileTable+trackIDs[k]*O2_FILETABLESIZE << " " << trackDistances[k] << " "
mas01mc@20 2043 << trackQIndexes[k] << " " << trackSIndexes[k] << endl;
mas01cr@0 2044 }
mas01cr@0 2045 else{ // Process Web Services Query
mas01mc@18 2046 int listLen = min(trackNN, processedTracks);
mas01cr@133 2047 adbQueryResponse->result.__sizeRlist=listLen;
mas01cr@133 2048 adbQueryResponse->result.__sizeDist=listLen;
mas01cr@133 2049 adbQueryResponse->result.__sizeQpos=listLen;
mas01cr@133 2050 adbQueryResponse->result.__sizeSpos=listLen;
mas01cr@133 2051 adbQueryResponse->result.Rlist= new char*[listLen];
mas01cr@133 2052 adbQueryResponse->result.Dist = new double[listLen];
mas01cr@133 2053 adbQueryResponse->result.Qpos = new unsigned int[listLen];
mas01cr@133 2054 adbQueryResponse->result.Spos = new unsigned int[listLen];
mas01cr@133 2055 for(k=0; k<(unsigned)adbQueryResponse->result.__sizeRlist; k++){
mas01cr@133 2056 adbQueryResponse->result.Rlist[k]=new char[O2_MAXFILESTR];
mas01cr@133 2057 adbQueryResponse->result.Dist[k]=trackDistances[k];
mas01cr@133 2058 adbQueryResponse->result.Qpos[k]=trackQIndexes[k];
mas01cr@133 2059 adbQueryResponse->result.Spos[k]=trackSIndexes[k];
mas01cr@133 2060 sprintf(adbQueryResponse->result.Rlist[k], "%s", fileTable+trackIDs[k]*O2_FILETABLESIZE);
mas01cr@0 2061 }
mas01cr@0 2062 }
mas01cr@0 2063
mas01cr@0 2064
mas01cr@0 2065 // Clean up
mas01mc@18 2066 if(trackOffsetTable)
mas01mc@20 2067 delete[] trackOffsetTable;
mas01cr@0 2068 if(queryCopy)
mas01mc@20 2069 delete[] queryCopy;
mas01cr@121 2070 if(qNorm)
mas01cr@121 2071 delete[] qNorm;
mas01cr@121 2072 if(sNorm)
mas01cr@121 2073 delete[] sNorm;
mas01cr@121 2074 if(sMeanL2)
mas01cr@121 2075 delete[] sMeanL2;
mas01cr@0 2076 if(D)
mas01cr@0 2077 delete[] D;
mas01cr@0 2078 if(DD)
mas01cr@0 2079 delete[] DD;
mas01cr@0 2080 if(timesdata)
mas01mc@20 2081 delete[] timesdata;
mas01cr@0 2082 if(meanDBdur)
mas01mc@20 2083 delete[] meanDBdur;
mas01cr@0 2084
mas01cr@0 2085
mas01cr@0 2086 }
mas01cr@0 2087
mas01mc@20 2088 // Radius search between query and target tracks
mas01mc@20 2089 // efficient implementation based on matched filter
mas01mc@20 2090 // assumes normed shingles
mas01mc@20 2091 // outputs count of retrieved shingles, max retreived = one shingle per query shingle per track
mas01cr@133 2092 void audioDB::trackSequenceQueryRad(const char* dbName, const char* inFile, adb__queryResponse *adbQueryResponse){
mas01mc@17 2093
mas01cr@177 2094 initTables(dbName, inFile);
mas01mc@17 2095
mas01mc@17 2096 // For each input vector, find the closest pointNN matching output vectors and report
mas01mc@17 2097 // we use stdout in this stub version
mas01mc@17 2098 unsigned numVectors = (statbuf.st_size-sizeof(int))/(sizeof(double)*dbH->dim);
mas01mc@17 2099 double* query = (double*)(indata+sizeof(int));
mas01mc@17 2100 double* queryCopy = 0;
mas01mc@17 2101
mas01mc@17 2102 double qMeanL2;
mas01mc@17 2103 double* sMeanL2;
mas01mc@17 2104
mas01mc@17 2105 unsigned USE_THRESH=0;
mas01mc@17 2106 double SILENCE_THRESH=0;
mas01mc@17 2107 double DIFF_THRESH=0;
mas01mc@17 2108
mas01mc@17 2109 if(!(dbH->flags & O2_FLAG_L2NORM) )
mas01mc@17 2110 error("Database must be L2 normed for sequence query","use -l2norm");
mas01mc@17 2111
mas01cr@60 2112 if(verbosity>1) {
mas01mc@17 2113 cerr << "performing norms ... "; cerr.flush();
mas01cr@60 2114 }
mas01mc@17 2115 unsigned dbVectors = dbH->length/(sizeof(double)*dbH->dim);
mas01mc@18 2116
mas01mc@17 2117 // Make a copy of the query
mas01mc@17 2118 queryCopy = new double[numVectors*dbH->dim];
mas01mc@17 2119 memcpy(queryCopy, query, numVectors*dbH->dim*sizeof(double));
mas01mc@17 2120 qNorm = new double[numVectors];
mas01mc@17 2121 sNorm = new double[dbVectors];
mas01mc@17 2122 sMeanL2=new double[dbH->numFiles];
mas01mc@17 2123 assert(qNorm&&sNorm&&queryCopy&&sMeanL2&&sequenceLength);
mas01mc@17 2124 unitNorm(queryCopy, dbH->dim, numVectors, qNorm);
mas01mc@17 2125 query = queryCopy;
mas01mc@18 2126
mas01mc@17 2127 // Make norm measurements relative to sequenceLength
mas01mc@17 2128 unsigned w = sequenceLength-1;
mas01mc@17 2129 unsigned i,j;
mas01mc@17 2130 double* ps;
mas01mc@17 2131 double tmp1,tmp2;
mas01mc@18 2132
mas01mc@17 2133 // Copy the L2 norm values to core to avoid disk random access later on
mas01mc@17 2134 memcpy(sNorm, l2normTable, dbVectors*sizeof(double));
mas01mc@17 2135 double* snPtr = sNorm;
mas01cr@125 2136 double* qnPtr = qNorm;
mas01mc@17 2137 for(i=0; i<dbH->numFiles; i++){
mas01mc@18 2138 if(trackTable[i]>=sequenceLength){
mas01mc@17 2139 tmp1=*snPtr;
mas01mc@17 2140 j=1;
mas01mc@17 2141 w=sequenceLength-1;
mas01mc@17 2142 while(w--)
mas01mc@17 2143 *snPtr+=snPtr[j++];
mas01mc@17 2144 ps = snPtr+1;
mas01mc@18 2145 w=trackTable[i]-sequenceLength; // +1 - 1
mas01mc@17 2146 while(w--){
mas01mc@17 2147 tmp2=*ps;
mas01mc@17 2148 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
mas01mc@17 2149 tmp1=tmp2;
mas01mc@17 2150 ps++;
mas01mc@17 2151 }
mas01mc@17 2152 ps = snPtr;
mas01mc@18 2153 w=trackTable[i]-sequenceLength+1;
mas01mc@17 2154 while(w--){
mas01mc@17 2155 *ps=sqrt(*ps);
mas01mc@17 2156 ps++;
mas01mc@17 2157 }
mas01mc@17 2158 }
mas01mc@18 2159 snPtr+=trackTable[i];
mas01mc@17 2160 }
mas01mc@17 2161
mas01mc@17 2162 double* pn = sMeanL2;
mas01mc@17 2163 w=dbH->numFiles;
mas01mc@17 2164 while(w--)
mas01mc@17 2165 *pn++=0.0;
mas01mc@17 2166 ps=sNorm;
mas01mc@18 2167 unsigned processedTracks=0;
mas01mc@17 2168 for(i=0; i<dbH->numFiles; i++){
mas01mc@18 2169 if(trackTable[i]>sequenceLength-1){
mas01cr@70 2170 w = trackTable[i]-sequenceLength+1;
mas01mc@17 2171 pn = sMeanL2+i;
mas01mc@17 2172 *pn=0;
mas01mc@17 2173 while(w--)
mas01mc@17 2174 if(*ps>0)
mas01mc@17 2175 *pn+=*ps++;
mas01cr@70 2176 *pn/=trackTable[i]-sequenceLength+1;
mas01mc@17 2177 SILENCE_THRESH+=*pn;
mas01mc@18 2178 processedTracks++;
mas01mc@17 2179 }
mas01mc@18 2180 ps = sNorm + trackTable[i];
mas01mc@17 2181 }
mas01cr@60 2182 if(verbosity>1) {
mas01mc@18 2183 cerr << "processedTracks: " << processedTracks << endl;
mas01cr@60 2184 }
mas01mc@17 2185
mas01mc@18 2186 SILENCE_THRESH/=processedTracks;
mas01mc@17 2187 USE_THRESH=1; // Turn thresholding on
mas01mc@18 2188 DIFF_THRESH=SILENCE_THRESH; // mean shingle power
mas01mc@17 2189 SILENCE_THRESH/=5; // 20% of the mean shingle power is SILENCE
mas01cr@60 2190 if(verbosity>4) {
mas01mc@17 2191 cerr << "silence thresh: " << SILENCE_THRESH;
mas01cr@60 2192 }
mas01mc@17 2193 w=sequenceLength-1;
mas01mc@17 2194 i=1;
mas01cr@125 2195 tmp1=*qnPtr;
mas01mc@17 2196 while(w--)
mas01cr@125 2197 *qnPtr+=qnPtr[i++];
mas01cr@125 2198 ps = qnPtr+1;
mas01mc@17 2199 w=numVectors-sequenceLength; // +1 -1
mas01mc@17 2200 while(w--){
mas01mc@17 2201 tmp2=*ps;
mas01mc@17 2202 *ps=*(ps-1)-tmp1+*(ps+sequenceLength-1);
mas01mc@17 2203 tmp1=tmp2;
mas01mc@17 2204 ps++;
mas01mc@17 2205 }
mas01cr@125 2206 ps = qnPtr;
mas01mc@17 2207 qMeanL2 = 0;
mas01mc@17 2208 w=numVectors-sequenceLength+1;
mas01mc@17 2209 while(w--){
mas01mc@17 2210 *ps=sqrt(*ps);
mas01mc@17 2211 qMeanL2+=*ps++;
mas01mc@17 2212 }
mas01mc@17 2213 qMeanL2 /= numVectors-sequenceLength+1;
mas01mc@17 2214
mas01cr@60 2215 if(verbosity>1) {
mas01mc@17 2216 cerr << "done." << endl;
mas01cr@60 2217 }
mas01mc@17 2218
mas01cr@60 2219 if(verbosity>1) {
mas01mc@18 2220 cerr << "matching tracks..." << endl;
mas01cr@60 2221 }
mas01mc@17 2222
mas01mc@17 2223 assert(pointNN>0 && pointNN<=O2_MAXNN);
mas01mc@18 2224 assert(trackNN>0 && trackNN<=O2_MAXNN);
mas01mc@17 2225
mas01mc@17 2226 // Make temporary dynamic memory for results
mas01mc@18 2227 double trackDistances[trackNN];
mas01mc@18 2228 unsigned trackIDs[trackNN];
mas01mc@18 2229 unsigned trackQIndexes[trackNN];
mas01mc@18 2230 unsigned trackSIndexes[trackNN];
mas01mc@17 2231
mas01mc@17 2232 double distances[pointNN];
mas01mc@17 2233 unsigned qIndexes[pointNN];
mas01mc@17 2234 unsigned sIndexes[pointNN];
mas01mc@17 2235
mas01mc@17 2236
mas01cr@59 2237 unsigned k,l,n,track,trackOffset=0, HOP_SIZE=sequenceHop, wL=sequenceLength;
mas01mc@17 2238 double thisDist;
mas01mc@17 2239
mas01mc@17 2240 for(k=0; k<pointNN; k++){
mas01mc@17 2241 distances[k]=0.0;
mas01mc@17 2242 qIndexes[k]=~0;
mas01mc@17 2243 sIndexes[k]=~0;
mas01mc@17 2244 }
mas01mc@17 2245
mas01mc@18 2246 for(k=0; k<trackNN; k++){
mas01mc@18 2247 trackDistances[k]=0.0;
mas01mc@18 2248 trackQIndexes[k]=~0;
mas01mc@18 2249 trackSIndexes[k]=~0;
mas01mc@18 2250 trackIDs[k]=~0;
mas01mc@17 2251 }
mas01mc@17 2252
mas01mc@17 2253 // Timestamp and durations processing
mas01mc@17 2254 double meanQdur = 0;
mas01mc@17 2255 double* timesdata = 0;
mas01mc@17 2256 double* meanDBdur = 0;
mas01mc@17 2257
mas01mc@17 2258 if(usingTimes && !(dbH->flags & O2_FLAG_TIMES)){
mas01mc@17 2259 cerr << "warning: ignoring query timestamps for non-timestamped database" << endl;
mas01mc@17 2260 usingTimes=0;
mas01mc@17 2261 }
mas01mc@17 2262
mas01mc@17 2263 else if(!usingTimes && (dbH->flags & O2_FLAG_TIMES))
mas01mc@17 2264 cerr << "warning: no timestamps given for query. Ignoring database timestamps." << endl;
mas01mc@17 2265
mas01mc@17 2266 else if(usingTimes && (dbH->flags & O2_FLAG_TIMES)){
mas01mc@17 2267 timesdata = new double[numVectors];
mas01mc@17 2268 assert(timesdata);
mas01mc@17 2269 insertTimeStamps(numVectors, timesFile, timesdata);
mas01mc@17 2270 // Calculate durations of points
mas01mc@17 2271 for(k=0; k<numVectors-1; k++){
mas01mc@17 2272 timesdata[k]=timesdata[k+1]-timesdata[k];
mas01mc@17 2273 meanQdur+=timesdata[k];
mas01mc@17 2274 }
mas01mc@17 2275 meanQdur/=k;
mas01cr@60 2276 if(verbosity>1) {
mas01mc@17 2277 cerr << "mean query file duration: " << meanQdur << endl;
mas01cr@60 2278 }
mas01mc@17 2279 meanDBdur = new double[dbH->numFiles];
mas01mc@17 2280 assert(meanDBdur);
mas01mc@17 2281 for(k=0; k<dbH->numFiles; k++){
mas01mc@17 2282 meanDBdur[k]=0.0;
mas01mc@18 2283 for(j=0; j<trackTable[k]-1 ; j++)
mas01mc@17 2284 meanDBdur[k]+=timesTable[j+1]-timesTable[j];
mas01mc@17 2285 meanDBdur[k]/=j;
mas01mc@17 2286 }
mas01mc@17 2287 }
mas01mc@17 2288
mas01mc@17 2289 if(usingQueryPoint)
mas01mc@17 2290 if(queryPoint>numVectors || queryPoint>numVectors-wL+1)
mas01mc@17 2291 error("queryPoint > numVectors-wL+1 in query");
mas01mc@17 2292 else{
mas01cr@60 2293 if(verbosity>1) {
mas01mc@17 2294 cerr << "query point: " << queryPoint << endl; cerr.flush();
mas01cr@60 2295 }
mas01mc@17 2296 query=query+queryPoint*dbH->dim;
mas01cr@125 2297 qnPtr=qnPtr+queryPoint;
mas01mc@17 2298 numVectors=wL;
mas01mc@17 2299 }
mas01mc@17 2300
mas01mc@17 2301 double ** D = 0; // Differences query and target
mas01mc@17 2302 double ** DD = 0; // Matched filter distance
mas01mc@17 2303
mas01mc@17 2304 D = new double*[numVectors];
mas01mc@17 2305 assert(D);
mas01mc@17 2306 DD = new double*[numVectors];
mas01mc@17 2307 assert(DD);
mas01mc@17 2308
mas01mc@17 2309 gettimeofday(&tv1, NULL);
mas01mc@18 2310 processedTracks=0;
mas01mc@18 2311 unsigned successfulTracks=0;
mas01mc@17 2312
mas01mc@17 2313 double* qp;
mas01mc@17 2314 double* sp;
mas01mc@17 2315 double* dp;
mas01mc@17 2316
mas01mc@18 2317 // build track offset table
mas01cr@187 2318 off_t *trackOffsetTable = new off_t[dbH->numFiles];
mas01mc@18 2319 unsigned cumTrack=0;
mas01cr@187 2320 off_t trackIndexOffset;
mas01mc@17 2321 for(k=0; k<dbH->numFiles;k++){
mas01mc@18 2322 trackOffsetTable[k]=cumTrack;
mas01mc@18 2323 cumTrack+=trackTable[k]*dbH->dim;
mas01mc@17 2324 }
mas01mc@17 2325
mas01mc@17 2326 char nextKey [MAXSTR];
mas01mc@17 2327
mas01mc@17 2328 // chi^2 statistics
mas01mc@17 2329 double sampleCount = 0;
mas01mc@17 2330 double sampleSum = 0;
mas01mc@17 2331 double logSampleSum = 0;
mas01mc@17 2332 double minSample = 1e9;
mas01mc@17 2333 double maxSample = 0;
mas01mc@17 2334
mas01mc@17 2335 // Track loop
mas01cr@179 2336 size_t data_buffer_size = 0;
mas01cr@179 2337 double *data_buffer = 0;
mas01cr@179 2338 lseek(dbfid, dbH->dataOffset, SEEK_SET);
mas01cr@179 2339
mas01mc@18 2340 for(processedTracks=0, track=0 ; processedTracks < dbH->numFiles ; track++, processedTracks++){
mas01mc@17 2341
mas01cr@187 2342 trackOffset = trackOffsetTable[track]; // numDoubles offset
mas01cr@187 2343
mas01mc@18 2344 // get trackID from file if using a control file
mas01cr@187 2345 if(trackFile) {
mas01cr@187 2346 trackFile->getline(nextKey,MAXSTR);
mas01cr@187 2347 if(!trackFile->eof()) {
mas01cr@187 2348 track = getKeyPos(nextKey);
mas01cr@187 2349 trackOffset = trackOffsetTable[track];
mas01cr@187 2350 lseek(dbfid, dbH->dataOffset + trackOffset * sizeof(double), SEEK_SET);
mas01cr@187 2351 } else {
mas01cr@187 2352 break;
mas01mc@17 2353 }
mas01mc@17 2354 }
mas01mc@17 2355
mas01mc@18 2356 trackIndexOffset=trackOffset/dbH->dim; // numVectors offset
mas01mc@17 2357
mas01cr@70 2358 if(sequenceLength<=trackTable[track]){ // test for short sequences
mas01mc@17 2359
mas01cr@60 2360 if(verbosity>7) {
mas01mc@18 2361 cerr << track << "." << trackIndexOffset << "." << trackTable[track] << " | ";cerr.flush();
mas01cr@60 2362 }
mas01cr@60 2363
mas01mc@17 2364 // Sum products matrix
mas01mc@17 2365 for(j=0; j<numVectors;j++){
mas01mc@18 2366 D[j]=new double[trackTable[track]];
mas01mc@17 2367 assert(D[j]);
mas01mc@17 2368
mas01mc@17 2369 }
mas01mc@17 2370
mas01mc@17 2371 // Matched filter matrix
mas01mc@17 2372 for(j=0; j<numVectors;j++){
mas01mc@18 2373 DD[j]=new double[trackTable[track]];
mas01mc@17 2374 assert(DD[j]);
mas01mc@17 2375 }
mas01mc@17 2376
mas01cr@179 2377 if (trackTable[track] * sizeof(double) * dbH->dim > data_buffer_size) {
mas01cr@179 2378 if(data_buffer) {
mas01cr@179 2379 free(data_buffer);
mas01cr@179 2380 }
mas01cr@179 2381 {
mas01cr@179 2382 data_buffer_size = trackTable[track] * sizeof(double) * dbH->dim;
mas01cr@179 2383 void *tmp = malloc(data_buffer_size);
mas01cr@179 2384 if (tmp == NULL) {
mas01cr@179 2385 error("error allocating data buffer");
mas01cr@179 2386 }
mas01cr@179 2387 data_buffer = (double *) tmp;
mas01cr@179 2388 }
mas01cr@179 2389 }
mas01cr@179 2390
mas01cr@179 2391 read(dbfid, data_buffer, trackTable[track] * sizeof(double) * dbH->dim);
mas01cr@179 2392
mas01mc@17 2393 // Dot product
mas01mc@17 2394 for(j=0; j<numVectors; j++)
mas01mc@18 2395 for(k=0; k<trackTable[track]; k++){
mas01mc@17 2396 qp=query+j*dbH->dim;
mas01cr@179 2397 sp=data_buffer+k*dbH->dim;
mas01mc@17 2398 DD[j][k]=0.0; // Initialize matched filter array
mas01mc@17 2399 dp=&D[j][k]; // point to correlation cell j,k
mas01mc@17 2400 *dp=0.0; // initialize correlation cell
mas01mc@17 2401 l=dbH->dim; // size of vectors
mas01mc@17 2402 while(l--)
mas01mc@17 2403 *dp+=*qp++**sp++;
mas01mc@17 2404 }
mas01cr@179 2405
mas01mc@17 2406 // Matched Filter
mas01mc@17 2407 // HOP SIZE == 1
mas01mc@17 2408 double* spd;
mas01mc@17 2409 if(HOP_SIZE==1){ // HOP_SIZE = shingleHop
mas01mc@17 2410 for(w=0; w<wL; w++)
mas01mc@17 2411 for(j=0; j<numVectors-w; j++){
mas01mc@17 2412 sp=DD[j];
mas01mc@17 2413 spd=D[j+w]+w;
mas01mc@18 2414 k=trackTable[track]-w;
mas01mc@17 2415 while(k--)
mas01mc@17 2416 *sp+++=*spd++;
mas01mc@17 2417 }
mas01mc@17 2418 }
mas01mc@17 2419
mas01mc@17 2420 else{ // HOP_SIZE != 1
mas01mc@17 2421 for(w=0; w<wL; w++)
mas01mc@17 2422 for(j=0; j<numVectors-w; j+=HOP_SIZE){
mas01mc@17 2423 sp=DD[j];
mas01mc@17 2424 spd=D[j+w]+w;
mas01mc@18 2425 for(k=0; k<trackTable[track]-w; k+=HOP_SIZE){
mas01mc@17 2426 *sp+=*spd;
mas01mc@17 2427 sp+=HOP_SIZE;
mas01mc@17 2428 spd+=HOP_SIZE;
mas01mc@17 2429 }
mas01mc@17 2430 }
mas01mc@17 2431 }
mas01mc@17 2432
mas01cr@60 2433 if(verbosity>3 && usingTimes) {
mas01mc@18 2434 cerr << "meanQdur=" << meanQdur << " meanDBdur=" << meanDBdur[track] << endl;
mas01mc@17 2435 cerr.flush();
mas01mc@17 2436 }
mas01mc@17 2437
mas01mc@17 2438 if(!usingTimes ||
mas01mc@17 2439 (usingTimes
mas01mc@18 2440 && fabs(meanDBdur[track]-meanQdur)<meanQdur*timesTol)){
mas01mc@17 2441
mas01cr@60 2442 if(verbosity>3 && usingTimes) {
mas01mc@17 2443 cerr << "within duration tolerance." << endl;
mas01mc@17 2444 cerr.flush();
mas01mc@17 2445 }
mas01mc@17 2446
mas01mc@17 2447 // Search for minimum distance by shingles (concatenated vectors)
mas01cr@70 2448 for(j=0;j<=numVectors-wL;j+=HOP_SIZE)
mas01cr@70 2449 for(k=0;k<=trackTable[track]-wL;k+=HOP_SIZE){
mas01cr@125 2450 thisDist=2-(2/(qnPtr[j]*sNorm[trackIndexOffset+k]))*DD[j][k];
mas01cr@60 2451 if(verbosity>10) {
mas01cr@125 2452 cerr << thisDist << " " << qnPtr[j] << " " << sNorm[trackIndexOffset+k] << endl;
mas01cr@60 2453 }
mas01mc@17 2454 // Gather chi^2 statistics
mas01mc@17 2455 if(thisDist<minSample)
mas01mc@17 2456 minSample=thisDist;
mas01mc@17 2457 else if(thisDist>maxSample)
mas01mc@17 2458 maxSample=thisDist;
mas01mc@17 2459 if(thisDist>1e-9){
mas01mc@17 2460 sampleCount++;
mas01mc@17 2461 sampleSum+=thisDist;
mas01mc@17 2462 logSampleSum+=log(thisDist);
mas01mc@17 2463 }
mas01mc@17 2464
mas01cr@125 2465 // diffL2 = fabs(qnPtr[j] - sNorm[trackIndexOffset+k]);
mas01mc@17 2466 // Power test
mas01mc@17 2467 if(!USE_THRESH ||
mas01mc@17 2468 // Threshold on mean L2 of Q and S sequences
mas01cr@125 2469 (USE_THRESH && qnPtr[j]>SILENCE_THRESH && sNorm[trackIndexOffset+k]>SILENCE_THRESH &&
mas01mc@17 2470 // Are both query and target windows above mean energy?
mas01cr@125 2471 (qnPtr[j]>qMeanL2*.25 && sNorm[trackIndexOffset+k]>sMeanL2[track]*.25))) // && diffL2 < DIFF_THRESH )))
mas01mc@17 2472 thisDist=thisDist; // Computed above
mas01mc@17 2473 else
mas01mc@17 2474 thisDist=1000000.0;
mas01mc@17 2475 if(thisDist>=0 && thisDist<=radius){
mas01mc@17 2476 distances[0]++; // increment count
mas01mc@18 2477 break; // only need one track point per query point
mas01mc@17 2478 }
mas01mc@17 2479 }
mas01mc@17 2480 // How many points were below threshold ?
mas01mc@17 2481 thisDist=distances[0];
mas01mc@17 2482
mas01mc@17 2483 // Let's see the distances then...
mas01cr@60 2484 if(verbosity>3) {
mas01mc@18 2485 cerr << fileTable+track*O2_FILETABLESIZE << " " << thisDist << endl;
mas01cr@60 2486 }
mas01mc@17 2487
mas01mc@18 2488 // All the track stuff goes here
mas01mc@18 2489 n=trackNN;
mas01mc@17 2490 while(n--){
mas01mc@18 2491 if(thisDist>trackDistances[n]){
mas01mc@18 2492 if((n==0 || thisDist<=trackDistances[n-1])){
mas01mc@17 2493 // Copy all values above up the queue
mas01mc@18 2494 for( l=trackNN-1 ; l > n ; l--){
mas01mc@18 2495 trackDistances[l]=trackDistances[l-1];
mas01mc@18 2496 trackQIndexes[l]=trackQIndexes[l-1];
mas01mc@18 2497 trackSIndexes[l]=trackSIndexes[l-1];
mas01mc@18 2498 trackIDs[l]=trackIDs[l-1];
mas01mc@17 2499 }
mas01mc@18 2500 trackDistances[n]=thisDist;
mas01mc@18 2501 trackQIndexes[n]=qIndexes[0];
mas01mc@18 2502 trackSIndexes[n]=sIndexes[0];
mas01mc@18 2503 successfulTracks++;
mas01mc@18 2504 trackIDs[n]=track;
mas01mc@17 2505 break;
mas01mc@17 2506 }
mas01mc@17 2507 }
mas01mc@17 2508 else
mas01mc@17 2509 break;
mas01mc@17 2510 }
mas01mc@17 2511 } // Duration match
mas01mc@17 2512
mas01mc@18 2513 // Clean up current track
mas01mc@17 2514 if(D!=NULL){
mas01mc@17 2515 for(j=0; j<numVectors; j++)
mas01mc@17 2516 delete[] D[j];
mas01mc@17 2517 }
mas01mc@17 2518
mas01mc@17 2519 if(DD!=NULL){
mas01mc@17 2520 for(j=0; j<numVectors; j++)
mas01mc@17 2521 delete[] DD[j];
mas01mc@17 2522 }
mas01mc@17 2523 }
mas01mc@18 2524 // per-track reset array values
mas01mc@17 2525 for(unsigned k=0; k<pointNN; k++){
mas01mc@17 2526 distances[k]=0.0;
mas01mc@17 2527 qIndexes[k]=~0;
mas01mc@17 2528 sIndexes[k]=~0;
mas01mc@17 2529 }
mas01mc@17 2530 }
mas01mc@17 2531
mas01cr@179 2532 free(data_buffer);
mas01cr@179 2533
mas01mc@17 2534 gettimeofday(&tv2,NULL);
mas01cr@60 2535 if(verbosity>1) {
mas01mc@18 2536 cerr << endl << "processed tracks :" << processedTracks << " matched tracks: " << successfulTracks << " elapsed time:"
mas01mc@17 2537 << ( tv2.tv_sec*1000 + tv2.tv_usec/1000 ) - ( tv1.tv_sec*1000+tv1.tv_usec/1000 ) << " msec" << endl;
mas01mc@17 2538 cerr << "sampleCount: " << sampleCount << " sampleSum: " << sampleSum << " logSampleSum: " << logSampleSum
mas01mc@17 2539 << " minSample: " << minSample << " maxSample: " << maxSample << endl;
mas01mc@17 2540 }
mas01mc@17 2541
mas01cr@133 2542 if(adbQueryResponse==0){
mas01cr@60 2543 if(verbosity>1) {
mas01mc@17 2544 cerr<<endl;
mas01cr@60 2545 }
mas01mc@17 2546 // Output answer
mas01mc@17 2547 // Loop over nearest neighbours
mas01mc@18 2548 for(k=0; k < min(trackNN,successfulTracks); k++)
mas01mc@18 2549 cout << fileTable+trackIDs[k]*O2_FILETABLESIZE << " " << trackDistances[k] << endl;
mas01mc@17 2550 }
mas01mc@17 2551 else{ // Process Web Services Query
mas01mc@18 2552 int listLen = min(trackNN, processedTracks);
mas01cr@133 2553 adbQueryResponse->result.__sizeRlist=listLen;
mas01cr@133 2554 adbQueryResponse->result.__sizeDist=listLen;
mas01cr@133 2555 adbQueryResponse->result.__sizeQpos=listLen;
mas01cr@133 2556 adbQueryResponse->result.__sizeSpos=listLen;
mas01cr@133 2557 adbQueryResponse->result.Rlist= new char*[listLen];
mas01cr@133 2558 adbQueryResponse->result.Dist = new double[listLen];
mas01cr@133 2559 adbQueryResponse->result.Qpos = new unsigned int[listLen];
mas01cr@133 2560 adbQueryResponse->result.Spos = new unsigned int[listLen];
mas01cr@133 2561 for(k=0; k<(unsigned)adbQueryResponse->result.__sizeRlist; k++){
mas01cr@133 2562 adbQueryResponse->result.Rlist[k]=new char[O2_MAXFILESTR];
mas01cr@133 2563 adbQueryResponse->result.Dist[k]=trackDistances[k];
mas01cr@133 2564 adbQueryResponse->result.Qpos[k]=trackQIndexes[k];
mas01cr@133 2565 adbQueryResponse->result.Spos[k]=trackSIndexes[k];
mas01cr@133 2566 sprintf(adbQueryResponse->result.Rlist[k], "%s", fileTable+trackIDs[k]*O2_FILETABLESIZE);
mas01mc@17 2567 }
mas01mc@17 2568 }
mas01mc@17 2569
mas01mc@17 2570 // Clean up
mas01mc@18 2571 if(trackOffsetTable)
mas01mc@18 2572 delete[] trackOffsetTable;
mas01mc@17 2573 if(queryCopy)
mas01mc@17 2574 delete[] queryCopy;
mas01cr@121 2575 if(qNorm)
mas01cr@121 2576 delete[] qNorm;
mas01cr@121 2577 if(sNorm)
mas01cr@121 2578 delete[] sNorm;
mas01cr@121 2579 if(sMeanL2)
mas01cr@121 2580 delete[] sMeanL2;
mas01mc@17 2581 if(D)
mas01mc@17 2582 delete[] D;
mas01mc@17 2583 if(DD)
mas01mc@17 2584 delete[] DD;
mas01mc@17 2585 if(timesdata)
mas01mc@17 2586 delete[] timesdata;
mas01mc@17 2587 if(meanDBdur)
mas01mc@17 2588 delete[] meanDBdur;
mas01mc@17 2589
mas01mc@17 2590
mas01mc@17 2591 }
mas01mc@17 2592
mas01cr@0 2593 // Unit norm block of features
mas01cr@0 2594 void audioDB::unitNorm(double* X, unsigned dim, unsigned n, double* qNorm){
mas01cr@0 2595 unsigned d;
mas01cr@59 2596 double L2, *p;
mas01cr@60 2597 if(verbosity>2) {
mas01cr@0 2598 cerr << "norming " << n << " vectors...";cerr.flush();
mas01cr@60 2599 }
mas01cr@0 2600 while(n--){
mas01cr@0 2601 p=X;
mas01cr@0 2602 L2=0.0;
mas01cr@0 2603 d=dim;
mas01cr@0 2604 while(d--){
mas01cr@0 2605 L2+=*p**p;
mas01cr@0 2606 p++;
mas01cr@0 2607 }
mas01mc@17 2608 /* L2=sqrt(L2);*/
mas01cr@0 2609 if(qNorm)
mas01cr@0 2610 *qNorm++=L2;
mas01mc@17 2611 /*
mas01cr@0 2612 oneOverL2 = 1.0/L2;
mas01cr@0 2613 d=dim;
mas01cr@0 2614 while(d--){
mas01cr@0 2615 *X*=oneOverL2;
mas01cr@0 2616 X++;
mas01mc@17 2617 */
mas01mc@17 2618 X+=dim;
mas01cr@0 2619 }
mas01cr@60 2620 if(verbosity>2) {
mas01cr@0 2621 cerr << "done..." << endl;
mas01cr@60 2622 }
mas01cr@0 2623 }
mas01cr@0 2624
mas01cr@0 2625 // Unit norm block of features
mas01cr@0 2626 void audioDB::unitNormAndInsertL2(double* X, unsigned dim, unsigned n, unsigned append=0){
mas01cr@0 2627 unsigned d;
mas01cr@59 2628 double *p;
mas01cr@0 2629 unsigned nn = n;
mas01cr@0 2630
mas01cr@0 2631 assert(l2normTable);
mas01cr@0 2632
mas01cr@0 2633 if( !append && (dbH->flags & O2_FLAG_L2NORM) )
mas01cr@0 2634 error("Database is already L2 normed", "automatic norm on insert is enabled");
mas01cr@0 2635
mas01cr@60 2636 if(verbosity>2) {
mas01cr@0 2637 cerr << "norming " << n << " vectors...";cerr.flush();
mas01cr@60 2638 }
mas01cr@0 2639
mas01cr@0 2640 double* l2buf = new double[n];
mas01cr@0 2641 double* l2ptr = l2buf;
mas01cr@0 2642 assert(l2buf);
mas01cr@0 2643 assert(X);
mas01cr@0 2644
mas01cr@0 2645 while(nn--){
mas01cr@0 2646 p=X;
mas01cr@0 2647 *l2ptr=0.0;
mas01cr@0 2648 d=dim;
mas01cr@0 2649 while(d--){
mas01cr@0 2650 *l2ptr+=*p**p;
mas01cr@0 2651 p++;
mas01cr@0 2652 }
mas01mc@17 2653 l2ptr++;
mas01mc@17 2654 X+=dim;
mas01cr@0 2655 }
mas01cr@0 2656 unsigned offset;
mas01cr@84 2657 if(append) {
mas01cr@84 2658 // FIXME: a hack, a very palpable hack: the vectors have already
mas01cr@84 2659 // been inserted, and dbH->length has already been updated. We
mas01cr@84 2660 // need to subtract off again the number of vectors that we've
mas01cr@84 2661 // inserted this time...
mas01cr@84 2662 offset=(dbH->length/(dbH->dim*sizeof(double)))-n; // number of vectors
mas01cr@84 2663 } else {
mas01cr@0 2664 offset=0;
mas01cr@84 2665 }
mas01cr@0 2666 memcpy(l2normTable+offset, l2buf, n*sizeof(double));
mas01cr@0 2667 if(l2buf)
mas01mc@17 2668 delete[] l2buf;
mas01cr@60 2669 if(verbosity>2) {
mas01cr@0 2670 cerr << "done..." << endl;
mas01cr@60 2671 }
mas01cr@0 2672 }
mas01cr@0 2673
mas01cr@0 2674
mas01cr@0 2675 // Start an audioDB server on the host
mas01cr@0 2676 void audioDB::startServer(){
mas01cr@0 2677 struct soap soap;
mas01cr@0 2678 int m, s; // master and slave sockets
mas01cr@0 2679 soap_init(&soap);
mas01cr@92 2680 // FIXME: largely this use of SO_REUSEADDR is to make writing (and
mas01cr@92 2681 // running) test cases more convenient, so that multiple test runs
mas01cr@92 2682 // in close succession don't fail because of a bin() error.
mas01cr@92 2683 // Investigate whether there are any potential drawbacks in this,
mas01cr@92 2684 // and also whether there's a better way to write the tests. --
mas01cr@92 2685 // CSR, 2007-10-03
mas01cr@92 2686 soap.bind_flags |= SO_REUSEADDR;
mas01cr@0 2687 m = soap_bind(&soap, NULL, port, 100);
mas01cr@0 2688 if (m < 0)
mas01cr@0 2689 soap_print_fault(&soap, stderr);
mas01cr@0 2690 else
mas01cr@0 2691 {
mas01cr@0 2692 fprintf(stderr, "Socket connection successful: master socket = %d\n", m);
mas01cr@0 2693 for (int i = 1; ; i++)
mas01cr@0 2694 {
mas01cr@0 2695 s = soap_accept(&soap);
mas01cr@0 2696 if (s < 0)
mas01cr@0 2697 {
mas01cr@0 2698 soap_print_fault(&soap, stderr);
mas01cr@0 2699 break;
mas01cr@0 2700 }
mas01cr@75 2701 fprintf(stderr, "%d: accepted connection from IP=%lu.%lu.%lu.%lu socket=%d\n", i,
mas01cr@0 2702 (soap.ip >> 24)&0xFF, (soap.ip >> 16)&0xFF, (soap.ip >> 8)&0xFF, soap.ip&0xFF, s);
mas01cr@0 2703 if (soap_serve(&soap) != SOAP_OK) // process RPC request
mas01cr@0 2704 soap_print_fault(&soap, stderr); // print error
mas01cr@0 2705 fprintf(stderr, "request served\n");
mas01cr@0 2706 soap_destroy(&soap); // clean up class instances
mas01cr@0 2707 soap_end(&soap); // clean up everything and close socket
mas01cr@0 2708 }
mas01cr@0 2709 }
mas01cr@0 2710 soap_done(&soap); // close master socket and detach environment
mas01cr@0 2711 }
mas01cr@0 2712
mas01cr@0 2713
mas01cr@0 2714 // web services
mas01cr@0 2715
mas01cr@0 2716 // SERVER SIDE
mas01cr@133 2717 int adb__status(struct soap* soap, xsd__string dbName, adb__statusResponse &adbStatusResponse){
mas01cr@21 2718 char* const argv[]={"audioDB",COM_STATUS,"-d",dbName};
mas01cr@21 2719 const unsigned argc = 4;
mas01cr@77 2720 try {
mas01cr@133 2721 audioDB(argc, argv, &adbStatusResponse);
mas01cr@77 2722 return SOAP_OK;
mas01cr@77 2723 } catch(char *err) {
mas01cr@77 2724 soap_receiver_fault(soap, err, "");
mas01cr@77 2725 return SOAP_FAULT;
mas01cr@77 2726 }
mas01cr@0 2727 }
mas01cr@0 2728
mas01cr@0 2729 // Literal translation of command line to web service
mas01cr@0 2730
mas01cr@133 2731 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__queryResponse &adbQueryResponse){
mas01cr@0 2732 char queryType[256];
mas01cr@0 2733 for(int k=0; k<256; k++)
mas01cr@0 2734 queryType[k]='\0';
mas01cr@105 2735 if(qType == O2_POINT_QUERY)
mas01cr@0 2736 strncpy(queryType, "point", strlen("point"));
mas01cr@105 2737 else if (qType == O2_SEQUENCE_QUERY)
mas01cr@0 2738 strncpy(queryType, "sequence", strlen("sequence"));
mas01cr@105 2739 else if(qType == O2_TRACK_QUERY)
mas01mc@18 2740 strncpy(queryType,"track", strlen("track"));
mas01cr@0 2741 else
mas01cr@0 2742 strncpy(queryType, "", strlen(""));
mas01cr@0 2743
mas01cr@0 2744 if(pointNN==0)
mas01cr@0 2745 pointNN=10;
mas01mc@18 2746 if(trackNN==0)
mas01mc@18 2747 trackNN=10;
mas01cr@0 2748 if(seqLen==0)
mas01cr@0 2749 seqLen=16;
mas01cr@0 2750
mas01cr@0 2751 char qPosStr[256];
mas01cr@0 2752 sprintf(qPosStr, "%d", qPos);
mas01cr@0 2753 char pointNNStr[256];
mas01cr@0 2754 sprintf(pointNNStr,"%d",pointNN);
mas01mc@18 2755 char trackNNStr[256];
mas01mc@18 2756 sprintf(trackNNStr,"%d",trackNN);
mas01cr@0 2757 char seqLenStr[256];
mas01cr@0 2758 sprintf(seqLenStr,"%d",seqLen);
mas01cr@0 2759
mas01cr@0 2760 const char* argv[] ={
mas01cr@0 2761 "./audioDB",
mas01cr@0 2762 COM_QUERY,
mas01cr@0 2763 queryType, // Need to pass a parameter
mas01cr@0 2764 COM_DATABASE,
mas01cr@166 2765 ENSURE_STRING(dbName),
mas01cr@0 2766 COM_FEATURES,
mas01cr@166 2767 ENSURE_STRING(qKey),
mas01cr@0 2768 COM_KEYLIST,
mas01cr@166 2769 ENSURE_STRING(keyList),
mas01cr@0 2770 COM_TIMES,
mas01cr@166 2771 ENSURE_STRING(timesFileName),
mas01cr@0 2772 COM_QPOINT,
mas01cr@0 2773 qPosStr,
mas01cr@0 2774 COM_POINTNN,
mas01cr@0 2775 pointNNStr,
mas01mc@18 2776 COM_TRACKNN,
mas01mc@18 2777 trackNNStr, // Need to pass a parameter
mas01cr@0 2778 COM_SEQLEN,
mas01cr@0 2779 seqLenStr
mas01cr@0 2780 };
mas01cr@0 2781
mas01cr@0 2782 const unsigned argc = 19;
mas01cr@79 2783 try {
mas01cr@133 2784 audioDB(argc, (char* const*)argv, &adbQueryResponse);
mas01cr@79 2785 return SOAP_OK;
mas01cr@79 2786 } catch (char *err) {
mas01cr@79 2787 soap_receiver_fault(soap, err, "");
mas01cr@79 2788 return SOAP_FAULT;
mas01cr@79 2789 }
mas01cr@0 2790 }
mas01cr@0 2791
mas01cr@0 2792 int main(const unsigned argc, char* const argv[]){
mas01cr@0 2793 audioDB(argc, argv);
mas01cr@0 2794 }