1 /* 2 ** 2001 September 15 3 ** 4 ** The author disclaims copyright to this source code. In place of 5 ** a legal notice, here is a blessing: 6 ** 7 ** May you do good and not evil. 8 ** May you find forgiveness for yourself and forgive others. 9 ** May you share freely, never taking more than you give. 10 ** 11 ************************************************************************* 12 ** A TCL Interface to SQLite. Append this file to sqlite3.c and 13 ** compile the whole thing to build a TCL-enabled version of SQLite. 14 ** 15 ** Compile-time options: 16 ** 17 ** -DTCLSH Add a "main()" routine that works as a tclsh. 18 ** 19 ** -DTCLSH_INIT_PROC=name 20 ** 21 ** Invoke name(interp) to initialize the Tcl interpreter. 22 ** If name(interp) returns a non-NULL string, then run 23 ** that string as a Tcl script to launch the application. 24 ** If name(interp) returns NULL, then run the regular 25 ** tclsh-emulator code. 26 */ 27 #ifdef TCLSH_INIT_PROC 28 # define TCLSH 1 29 #endif 30 31 /* 32 ** If requested, include the SQLite compiler options file for MSVC. 33 */ 34 #if defined(INCLUDE_MSVC_H) 35 # include "msvc.h" 36 #endif 37 38 #if defined(INCLUDE_SQLITE_TCL_H) 39 # include "sqlite_tcl.h" 40 #else 41 # include "tcl.h" 42 # ifndef SQLITE_TCLAPI 43 # define SQLITE_TCLAPI 44 # endif 45 #endif 46 #include <errno.h> 47 48 /* 49 ** Some additional include files are needed if this file is not 50 ** appended to the amalgamation. 51 */ 52 #ifndef SQLITE_AMALGAMATION 53 # include "sqlite3.h" 54 # include <stdlib.h> 55 # include <string.h> 56 # include <assert.h> 57 typedef unsigned char u8; 58 #endif 59 #include <ctype.h> 60 61 /* Used to get the current process ID */ 62 #if !defined(_WIN32) 63 # include <unistd.h> 64 # define GETPID getpid 65 #elif !defined(_WIN32_WCE) 66 # ifndef SQLITE_AMALGAMATION 67 # define WIN32_LEAN_AND_MEAN 68 # include <windows.h> 69 # endif 70 # define GETPID (int)GetCurrentProcessId 71 #endif 72 73 /* 74 * Windows needs to know which symbols to export. Unix does not. 75 * BUILD_sqlite should be undefined for Unix. 76 */ 77 #ifdef BUILD_sqlite 78 #undef TCL_STORAGE_CLASS 79 #define TCL_STORAGE_CLASS DLLEXPORT 80 #endif /* BUILD_sqlite */ 81 82 #define NUM_PREPARED_STMTS 10 83 #define MAX_PREPARED_STMTS 100 84 85 /* Forward declaration */ 86 typedef struct SqliteDb SqliteDb; 87 88 /* 89 ** New SQL functions can be created as TCL scripts. Each such function 90 ** is described by an instance of the following structure. 91 */ 92 typedef struct SqlFunc SqlFunc; 93 struct SqlFunc { 94 Tcl_Interp *interp; /* The TCL interpret to execute the function */ 95 Tcl_Obj *pScript; /* The Tcl_Obj representation of the script */ 96 SqliteDb *pDb; /* Database connection that owns this function */ 97 int useEvalObjv; /* True if it is safe to use Tcl_EvalObjv */ 98 char *zName; /* Name of this function */ 99 SqlFunc *pNext; /* Next function on the list of them all */ 100 }; 101 102 /* 103 ** New collation sequences function can be created as TCL scripts. Each such 104 ** function is described by an instance of the following structure. 105 */ 106 typedef struct SqlCollate SqlCollate; 107 struct SqlCollate { 108 Tcl_Interp *interp; /* The TCL interpret to execute the function */ 109 char *zScript; /* The script to be run */ 110 SqlCollate *pNext; /* Next function on the list of them all */ 111 }; 112 113 /* 114 ** Prepared statements are cached for faster execution. Each prepared 115 ** statement is described by an instance of the following structure. 116 */ 117 typedef struct SqlPreparedStmt SqlPreparedStmt; 118 struct SqlPreparedStmt { 119 SqlPreparedStmt *pNext; /* Next in linked list */ 120 SqlPreparedStmt *pPrev; /* Previous on the list */ 121 sqlite3_stmt *pStmt; /* The prepared statement */ 122 int nSql; /* chars in zSql[] */ 123 const char *zSql; /* Text of the SQL statement */ 124 int nParm; /* Size of apParm array */ 125 Tcl_Obj **apParm; /* Array of referenced object pointers */ 126 }; 127 128 typedef struct IncrblobChannel IncrblobChannel; 129 130 /* 131 ** There is one instance of this structure for each SQLite database 132 ** that has been opened by the SQLite TCL interface. 133 ** 134 ** If this module is built with SQLITE_TEST defined (to create the SQLite 135 ** testfixture executable), then it may be configured to use either 136 ** sqlite3_prepare_v2() or sqlite3_prepare() to prepare SQL statements. 137 ** If SqliteDb.bLegacyPrepare is true, sqlite3_prepare() is used. 138 */ 139 struct SqliteDb { 140 sqlite3 *db; /* The "real" database structure. MUST BE FIRST */ 141 Tcl_Interp *interp; /* The interpreter used for this database */ 142 char *zBusy; /* The busy callback routine */ 143 char *zCommit; /* The commit hook callback routine */ 144 char *zTrace; /* The trace callback routine */ 145 char *zTraceV2; /* The trace_v2 callback routine */ 146 char *zProfile; /* The profile callback routine */ 147 char *zProgress; /* The progress callback routine */ 148 char *zAuth; /* The authorization callback routine */ 149 int disableAuth; /* Disable the authorizer if it exists */ 150 char *zNull; /* Text to substitute for an SQL NULL value */ 151 SqlFunc *pFunc; /* List of SQL functions */ 152 Tcl_Obj *pUpdateHook; /* Update hook script (if any) */ 153 Tcl_Obj *pPreUpdateHook; /* Pre-update hook script (if any) */ 154 Tcl_Obj *pRollbackHook; /* Rollback hook script (if any) */ 155 Tcl_Obj *pWalHook; /* WAL hook script (if any) */ 156 Tcl_Obj *pUnlockNotify; /* Unlock notify script (if any) */ 157 SqlCollate *pCollate; /* List of SQL collation functions */ 158 int rc; /* Return code of most recent sqlite3_exec() */ 159 Tcl_Obj *pCollateNeeded; /* Collation needed script */ 160 SqlPreparedStmt *stmtList; /* List of prepared statements*/ 161 SqlPreparedStmt *stmtLast; /* Last statement in the list */ 162 int maxStmt; /* The next maximum number of stmtList */ 163 int nStmt; /* Number of statements in stmtList */ 164 IncrblobChannel *pIncrblob;/* Linked list of open incrblob channels */ 165 int nStep, nSort, nIndex; /* Statistics for most recent operation */ 166 int nVMStep; /* Another statistic for most recent operation */ 167 int nTransaction; /* Number of nested [transaction] methods */ 168 int openFlags; /* Flags used to open. (SQLITE_OPEN_URI) */ 169 #ifdef SQLITE_TEST 170 int bLegacyPrepare; /* True to use sqlite3_prepare() */ 171 #endif 172 }; 173 174 struct IncrblobChannel { 175 sqlite3_blob *pBlob; /* sqlite3 blob handle */ 176 SqliteDb *pDb; /* Associated database connection */ 177 int iSeek; /* Current seek offset */ 178 Tcl_Channel channel; /* Channel identifier */ 179 IncrblobChannel *pNext; /* Linked list of all open incrblob channels */ 180 IncrblobChannel *pPrev; /* Linked list of all open incrblob channels */ 181 }; 182 183 /* 184 ** Compute a string length that is limited to what can be stored in 185 ** lower 30 bits of a 32-bit signed integer. 186 */ 187 static int strlen30(const char *z){ 188 const char *z2 = z; 189 while( *z2 ){ z2++; } 190 return 0x3fffffff & (int)(z2 - z); 191 } 192 193 194 #ifndef SQLITE_OMIT_INCRBLOB 195 /* 196 ** Close all incrblob channels opened using database connection pDb. 197 ** This is called when shutting down the database connection. 198 */ 199 static void closeIncrblobChannels(SqliteDb *pDb){ 200 IncrblobChannel *p; 201 IncrblobChannel *pNext; 202 203 for(p=pDb->pIncrblob; p; p=pNext){ 204 pNext = p->pNext; 205 206 /* Note: Calling unregister here call Tcl_Close on the incrblob channel, 207 ** which deletes the IncrblobChannel structure at *p. So do not 208 ** call Tcl_Free() here. 209 */ 210 Tcl_UnregisterChannel(pDb->interp, p->channel); 211 } 212 } 213 214 /* 215 ** Close an incremental blob channel. 216 */ 217 static int SQLITE_TCLAPI incrblobClose( 218 ClientData instanceData, 219 Tcl_Interp *interp 220 ){ 221 IncrblobChannel *p = (IncrblobChannel *)instanceData; 222 int rc = sqlite3_blob_close(p->pBlob); 223 sqlite3 *db = p->pDb->db; 224 225 /* Remove the channel from the SqliteDb.pIncrblob list. */ 226 if( p->pNext ){ 227 p->pNext->pPrev = p->pPrev; 228 } 229 if( p->pPrev ){ 230 p->pPrev->pNext = p->pNext; 231 } 232 if( p->pDb->pIncrblob==p ){ 233 p->pDb->pIncrblob = p->pNext; 234 } 235 236 /* Free the IncrblobChannel structure */ 237 Tcl_Free((char *)p); 238 239 if( rc!=SQLITE_OK ){ 240 Tcl_SetResult(interp, (char *)sqlite3_errmsg(db), TCL_VOLATILE); 241 return TCL_ERROR; 242 } 243 return TCL_OK; 244 } 245 246 /* 247 ** Read data from an incremental blob channel. 248 */ 249 static int SQLITE_TCLAPI incrblobInput( 250 ClientData instanceData, 251 char *buf, 252 int bufSize, 253 int *errorCodePtr 254 ){ 255 IncrblobChannel *p = (IncrblobChannel *)instanceData; 256 int nRead = bufSize; /* Number of bytes to read */ 257 int nBlob; /* Total size of the blob */ 258 int rc; /* sqlite error code */ 259 260 nBlob = sqlite3_blob_bytes(p->pBlob); 261 if( (p->iSeek+nRead)>nBlob ){ 262 nRead = nBlob-p->iSeek; 263 } 264 if( nRead<=0 ){ 265 return 0; 266 } 267 268 rc = sqlite3_blob_read(p->pBlob, (void *)buf, nRead, p->iSeek); 269 if( rc!=SQLITE_OK ){ 270 *errorCodePtr = rc; 271 return -1; 272 } 273 274 p->iSeek += nRead; 275 return nRead; 276 } 277 278 /* 279 ** Write data to an incremental blob channel. 280 */ 281 static int SQLITE_TCLAPI incrblobOutput( 282 ClientData instanceData, 283 CONST char *buf, 284 int toWrite, 285 int *errorCodePtr 286 ){ 287 IncrblobChannel *p = (IncrblobChannel *)instanceData; 288 int nWrite = toWrite; /* Number of bytes to write */ 289 int nBlob; /* Total size of the blob */ 290 int rc; /* sqlite error code */ 291 292 nBlob = sqlite3_blob_bytes(p->pBlob); 293 if( (p->iSeek+nWrite)>nBlob ){ 294 *errorCodePtr = EINVAL; 295 return -1; 296 } 297 if( nWrite<=0 ){ 298 return 0; 299 } 300 301 rc = sqlite3_blob_write(p->pBlob, (void *)buf, nWrite, p->iSeek); 302 if( rc!=SQLITE_OK ){ 303 *errorCodePtr = EIO; 304 return -1; 305 } 306 307 p->iSeek += nWrite; 308 return nWrite; 309 } 310 311 /* 312 ** Seek an incremental blob channel. 313 */ 314 static int SQLITE_TCLAPI incrblobSeek( 315 ClientData instanceData, 316 long offset, 317 int seekMode, 318 int *errorCodePtr 319 ){ 320 IncrblobChannel *p = (IncrblobChannel *)instanceData; 321 322 switch( seekMode ){ 323 case SEEK_SET: 324 p->iSeek = offset; 325 break; 326 case SEEK_CUR: 327 p->iSeek += offset; 328 break; 329 case SEEK_END: 330 p->iSeek = sqlite3_blob_bytes(p->pBlob) + offset; 331 break; 332 333 default: assert(!"Bad seekMode"); 334 } 335 336 return p->iSeek; 337 } 338 339 340 static void SQLITE_TCLAPI incrblobWatch( 341 ClientData instanceData, 342 int mode 343 ){ 344 /* NO-OP */ 345 } 346 static int SQLITE_TCLAPI incrblobHandle( 347 ClientData instanceData, 348 int dir, 349 ClientData *hPtr 350 ){ 351 return TCL_ERROR; 352 } 353 354 static Tcl_ChannelType IncrblobChannelType = { 355 "incrblob", /* typeName */ 356 TCL_CHANNEL_VERSION_2, /* version */ 357 incrblobClose, /* closeProc */ 358 incrblobInput, /* inputProc */ 359 incrblobOutput, /* outputProc */ 360 incrblobSeek, /* seekProc */ 361 0, /* setOptionProc */ 362 0, /* getOptionProc */ 363 incrblobWatch, /* watchProc (this is a no-op) */ 364 incrblobHandle, /* getHandleProc (always returns error) */ 365 0, /* close2Proc */ 366 0, /* blockModeProc */ 367 0, /* flushProc */ 368 0, /* handlerProc */ 369 0, /* wideSeekProc */ 370 }; 371 372 /* 373 ** Create a new incrblob channel. 374 */ 375 static int createIncrblobChannel( 376 Tcl_Interp *interp, 377 SqliteDb *pDb, 378 const char *zDb, 379 const char *zTable, 380 const char *zColumn, 381 sqlite_int64 iRow, 382 int isReadonly 383 ){ 384 IncrblobChannel *p; 385 sqlite3 *db = pDb->db; 386 sqlite3_blob *pBlob; 387 int rc; 388 int flags = TCL_READABLE|(isReadonly ? 0 : TCL_WRITABLE); 389 390 /* This variable is used to name the channels: "incrblob_[incr count]" */ 391 static int count = 0; 392 char zChannel[64]; 393 394 rc = sqlite3_blob_open(db, zDb, zTable, zColumn, iRow, !isReadonly, &pBlob); 395 if( rc!=SQLITE_OK ){ 396 Tcl_SetResult(interp, (char *)sqlite3_errmsg(pDb->db), TCL_VOLATILE); 397 return TCL_ERROR; 398 } 399 400 p = (IncrblobChannel *)Tcl_Alloc(sizeof(IncrblobChannel)); 401 p->iSeek = 0; 402 p->pBlob = pBlob; 403 404 sqlite3_snprintf(sizeof(zChannel), zChannel, "incrblob_%d", ++count); 405 p->channel = Tcl_CreateChannel(&IncrblobChannelType, zChannel, p, flags); 406 Tcl_RegisterChannel(interp, p->channel); 407 408 /* Link the new channel into the SqliteDb.pIncrblob list. */ 409 p->pNext = pDb->pIncrblob; 410 p->pPrev = 0; 411 if( p->pNext ){ 412 p->pNext->pPrev = p; 413 } 414 pDb->pIncrblob = p; 415 p->pDb = pDb; 416 417 Tcl_SetResult(interp, (char *)Tcl_GetChannelName(p->channel), TCL_VOLATILE); 418 return TCL_OK; 419 } 420 #else /* else clause for "#ifndef SQLITE_OMIT_INCRBLOB" */ 421 #define closeIncrblobChannels(pDb) 422 #endif 423 424 /* 425 ** Look at the script prefix in pCmd. We will be executing this script 426 ** after first appending one or more arguments. This routine analyzes 427 ** the script to see if it is safe to use Tcl_EvalObjv() on the script 428 ** rather than the more general Tcl_EvalEx(). Tcl_EvalObjv() is much 429 ** faster. 430 ** 431 ** Scripts that are safe to use with Tcl_EvalObjv() consists of a 432 ** command name followed by zero or more arguments with no [...] or $ 433 ** or {...} or ; to be seen anywhere. Most callback scripts consist 434 ** of just a single procedure name and they meet this requirement. 435 */ 436 static int safeToUseEvalObjv(Tcl_Interp *interp, Tcl_Obj *pCmd){ 437 /* We could try to do something with Tcl_Parse(). But we will instead 438 ** just do a search for forbidden characters. If any of the forbidden 439 ** characters appear in pCmd, we will report the string as unsafe. 440 */ 441 const char *z; 442 int n; 443 z = Tcl_GetStringFromObj(pCmd, &n); 444 while( n-- > 0 ){ 445 int c = *(z++); 446 if( c=='$' || c=='[' || c==';' ) return 0; 447 } 448 return 1; 449 } 450 451 /* 452 ** Find an SqlFunc structure with the given name. Or create a new 453 ** one if an existing one cannot be found. Return a pointer to the 454 ** structure. 455 */ 456 static SqlFunc *findSqlFunc(SqliteDb *pDb, const char *zName){ 457 SqlFunc *p, *pNew; 458 int nName = strlen30(zName); 459 pNew = (SqlFunc*)Tcl_Alloc( sizeof(*pNew) + nName + 1 ); 460 pNew->zName = (char*)&pNew[1]; 461 memcpy(pNew->zName, zName, nName+1); 462 for(p=pDb->pFunc; p; p=p->pNext){ 463 if( sqlite3_stricmp(p->zName, pNew->zName)==0 ){ 464 Tcl_Free((char*)pNew); 465 return p; 466 } 467 } 468 pNew->interp = pDb->interp; 469 pNew->pDb = pDb; 470 pNew->pScript = 0; 471 pNew->pNext = pDb->pFunc; 472 pDb->pFunc = pNew; 473 return pNew; 474 } 475 476 /* 477 ** Free a single SqlPreparedStmt object. 478 */ 479 static void dbFreeStmt(SqlPreparedStmt *pStmt){ 480 #ifdef SQLITE_TEST 481 if( sqlite3_sql(pStmt->pStmt)==0 ){ 482 Tcl_Free((char *)pStmt->zSql); 483 } 484 #endif 485 sqlite3_finalize(pStmt->pStmt); 486 Tcl_Free((char *)pStmt); 487 } 488 489 /* 490 ** Finalize and free a list of prepared statements 491 */ 492 static void flushStmtCache(SqliteDb *pDb){ 493 SqlPreparedStmt *pPreStmt; 494 SqlPreparedStmt *pNext; 495 496 for(pPreStmt = pDb->stmtList; pPreStmt; pPreStmt=pNext){ 497 pNext = pPreStmt->pNext; 498 dbFreeStmt(pPreStmt); 499 } 500 pDb->nStmt = 0; 501 pDb->stmtLast = 0; 502 pDb->stmtList = 0; 503 } 504 505 /* 506 ** TCL calls this procedure when an sqlite3 database command is 507 ** deleted. 508 */ 509 static void SQLITE_TCLAPI DbDeleteCmd(void *db){ 510 SqliteDb *pDb = (SqliteDb*)db; 511 flushStmtCache(pDb); 512 closeIncrblobChannels(pDb); 513 sqlite3_close(pDb->db); 514 while( pDb->pFunc ){ 515 SqlFunc *pFunc = pDb->pFunc; 516 pDb->pFunc = pFunc->pNext; 517 assert( pFunc->pDb==pDb ); 518 Tcl_DecrRefCount(pFunc->pScript); 519 Tcl_Free((char*)pFunc); 520 } 521 while( pDb->pCollate ){ 522 SqlCollate *pCollate = pDb->pCollate; 523 pDb->pCollate = pCollate->pNext; 524 Tcl_Free((char*)pCollate); 525 } 526 if( pDb->zBusy ){ 527 Tcl_Free(pDb->zBusy); 528 } 529 if( pDb->zTrace ){ 530 Tcl_Free(pDb->zTrace); 531 } 532 if( pDb->zTraceV2 ){ 533 Tcl_Free(pDb->zTraceV2); 534 } 535 if( pDb->zProfile ){ 536 Tcl_Free(pDb->zProfile); 537 } 538 if( pDb->zAuth ){ 539 Tcl_Free(pDb->zAuth); 540 } 541 if( pDb->zNull ){ 542 Tcl_Free(pDb->zNull); 543 } 544 if( pDb->pUpdateHook ){ 545 Tcl_DecrRefCount(pDb->pUpdateHook); 546 } 547 if( pDb->pPreUpdateHook ){ 548 Tcl_DecrRefCount(pDb->pPreUpdateHook); 549 } 550 if( pDb->pRollbackHook ){ 551 Tcl_DecrRefCount(pDb->pRollbackHook); 552 } 553 if( pDb->pWalHook ){ 554 Tcl_DecrRefCount(pDb->pWalHook); 555 } 556 if( pDb->pCollateNeeded ){ 557 Tcl_DecrRefCount(pDb->pCollateNeeded); 558 } 559 Tcl_Free((char*)pDb); 560 } 561 562 /* 563 ** This routine is called when a database file is locked while trying 564 ** to execute SQL. 565 */ 566 static int DbBusyHandler(void *cd, int nTries){ 567 SqliteDb *pDb = (SqliteDb*)cd; 568 int rc; 569 char zVal[30]; 570 571 sqlite3_snprintf(sizeof(zVal), zVal, "%d", nTries); 572 rc = Tcl_VarEval(pDb->interp, pDb->zBusy, " ", zVal, (char*)0); 573 if( rc!=TCL_OK || atoi(Tcl_GetStringResult(pDb->interp)) ){ 574 return 0; 575 } 576 return 1; 577 } 578 579 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK 580 /* 581 ** This routine is invoked as the 'progress callback' for the database. 582 */ 583 static int DbProgressHandler(void *cd){ 584 SqliteDb *pDb = (SqliteDb*)cd; 585 int rc; 586 587 assert( pDb->zProgress ); 588 rc = Tcl_Eval(pDb->interp, pDb->zProgress); 589 if( rc!=TCL_OK || atoi(Tcl_GetStringResult(pDb->interp)) ){ 590 return 1; 591 } 592 return 0; 593 } 594 #endif 595 596 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \ 597 !defined(SQLITE_OMIT_DEPRECATED) 598 /* 599 ** This routine is called by the SQLite trace handler whenever a new 600 ** block of SQL is executed. The TCL script in pDb->zTrace is executed. 601 */ 602 static void DbTraceHandler(void *cd, const char *zSql){ 603 SqliteDb *pDb = (SqliteDb*)cd; 604 Tcl_DString str; 605 606 Tcl_DStringInit(&str); 607 Tcl_DStringAppend(&str, pDb->zTrace, -1); 608 Tcl_DStringAppendElement(&str, zSql); 609 Tcl_Eval(pDb->interp, Tcl_DStringValue(&str)); 610 Tcl_DStringFree(&str); 611 Tcl_ResetResult(pDb->interp); 612 } 613 #endif 614 615 #ifndef SQLITE_OMIT_TRACE 616 /* 617 ** This routine is called by the SQLite trace_v2 handler whenever a new 618 ** supported event is generated. Unsupported event types are ignored. 619 ** The TCL script in pDb->zTraceV2 is executed, with the arguments for 620 ** the event appended to it (as list elements). 621 */ 622 static int DbTraceV2Handler( 623 unsigned type, /* One of the SQLITE_TRACE_* event types. */ 624 void *cd, /* The original context data pointer. */ 625 void *pd, /* Primary event data, depends on event type. */ 626 void *xd /* Extra event data, depends on event type. */ 627 ){ 628 SqliteDb *pDb = (SqliteDb*)cd; 629 Tcl_Obj *pCmd; 630 631 switch( type ){ 632 case SQLITE_TRACE_STMT: { 633 sqlite3_stmt *pStmt = (sqlite3_stmt *)pd; 634 char *zSql = (char *)xd; 635 636 pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1); 637 Tcl_IncrRefCount(pCmd); 638 Tcl_ListObjAppendElement(pDb->interp, pCmd, 639 Tcl_NewWideIntObj((Tcl_WideInt)pStmt)); 640 Tcl_ListObjAppendElement(pDb->interp, pCmd, 641 Tcl_NewStringObj(zSql, -1)); 642 Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT); 643 Tcl_DecrRefCount(pCmd); 644 Tcl_ResetResult(pDb->interp); 645 break; 646 } 647 case SQLITE_TRACE_PROFILE: { 648 sqlite3_stmt *pStmt = (sqlite3_stmt *)pd; 649 sqlite3_int64 ns = (sqlite3_int64)xd; 650 651 pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1); 652 Tcl_IncrRefCount(pCmd); 653 Tcl_ListObjAppendElement(pDb->interp, pCmd, 654 Tcl_NewWideIntObj((Tcl_WideInt)pStmt)); 655 Tcl_ListObjAppendElement(pDb->interp, pCmd, 656 Tcl_NewWideIntObj((Tcl_WideInt)ns)); 657 Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT); 658 Tcl_DecrRefCount(pCmd); 659 Tcl_ResetResult(pDb->interp); 660 break; 661 } 662 case SQLITE_TRACE_ROW: { 663 sqlite3_stmt *pStmt = (sqlite3_stmt *)pd; 664 665 pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1); 666 Tcl_IncrRefCount(pCmd); 667 Tcl_ListObjAppendElement(pDb->interp, pCmd, 668 Tcl_NewWideIntObj((Tcl_WideInt)pStmt)); 669 Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT); 670 Tcl_DecrRefCount(pCmd); 671 Tcl_ResetResult(pDb->interp); 672 break; 673 } 674 case SQLITE_TRACE_CLOSE: { 675 sqlite3 *db = (sqlite3 *)pd; 676 677 pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1); 678 Tcl_IncrRefCount(pCmd); 679 Tcl_ListObjAppendElement(pDb->interp, pCmd, 680 Tcl_NewWideIntObj((Tcl_WideInt)db)); 681 Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT); 682 Tcl_DecrRefCount(pCmd); 683 Tcl_ResetResult(pDb->interp); 684 break; 685 } 686 } 687 return SQLITE_OK; 688 } 689 #endif 690 691 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \ 692 !defined(SQLITE_OMIT_DEPRECATED) 693 /* 694 ** This routine is called by the SQLite profile handler after a statement 695 ** SQL has executed. The TCL script in pDb->zProfile is evaluated. 696 */ 697 static void DbProfileHandler(void *cd, const char *zSql, sqlite_uint64 tm){ 698 SqliteDb *pDb = (SqliteDb*)cd; 699 Tcl_DString str; 700 char zTm[100]; 701 702 sqlite3_snprintf(sizeof(zTm)-1, zTm, "%lld", tm); 703 Tcl_DStringInit(&str); 704 Tcl_DStringAppend(&str, pDb->zProfile, -1); 705 Tcl_DStringAppendElement(&str, zSql); 706 Tcl_DStringAppendElement(&str, zTm); 707 Tcl_Eval(pDb->interp, Tcl_DStringValue(&str)); 708 Tcl_DStringFree(&str); 709 Tcl_ResetResult(pDb->interp); 710 } 711 #endif 712 713 /* 714 ** This routine is called when a transaction is committed. The 715 ** TCL script in pDb->zCommit is executed. If it returns non-zero or 716 ** if it throws an exception, the transaction is rolled back instead 717 ** of being committed. 718 */ 719 static int DbCommitHandler(void *cd){ 720 SqliteDb *pDb = (SqliteDb*)cd; 721 int rc; 722 723 rc = Tcl_Eval(pDb->interp, pDb->zCommit); 724 if( rc!=TCL_OK || atoi(Tcl_GetStringResult(pDb->interp)) ){ 725 return 1; 726 } 727 return 0; 728 } 729 730 static void DbRollbackHandler(void *clientData){ 731 SqliteDb *pDb = (SqliteDb*)clientData; 732 assert(pDb->pRollbackHook); 733 if( TCL_OK!=Tcl_EvalObjEx(pDb->interp, pDb->pRollbackHook, 0) ){ 734 Tcl_BackgroundError(pDb->interp); 735 } 736 } 737 738 /* 739 ** This procedure handles wal_hook callbacks. 740 */ 741 static int DbWalHandler( 742 void *clientData, 743 sqlite3 *db, 744 const char *zDb, 745 int nEntry 746 ){ 747 int ret = SQLITE_OK; 748 Tcl_Obj *p; 749 SqliteDb *pDb = (SqliteDb*)clientData; 750 Tcl_Interp *interp = pDb->interp; 751 assert(pDb->pWalHook); 752 753 assert( db==pDb->db ); 754 p = Tcl_DuplicateObj(pDb->pWalHook); 755 Tcl_IncrRefCount(p); 756 Tcl_ListObjAppendElement(interp, p, Tcl_NewStringObj(zDb, -1)); 757 Tcl_ListObjAppendElement(interp, p, Tcl_NewIntObj(nEntry)); 758 if( TCL_OK!=Tcl_EvalObjEx(interp, p, 0) 759 || TCL_OK!=Tcl_GetIntFromObj(interp, Tcl_GetObjResult(interp), &ret) 760 ){ 761 Tcl_BackgroundError(interp); 762 } 763 Tcl_DecrRefCount(p); 764 765 return ret; 766 } 767 768 #if defined(SQLITE_TEST) && defined(SQLITE_ENABLE_UNLOCK_NOTIFY) 769 static void setTestUnlockNotifyVars(Tcl_Interp *interp, int iArg, int nArg){ 770 char zBuf[64]; 771 sqlite3_snprintf(sizeof(zBuf), zBuf, "%d", iArg); 772 Tcl_SetVar(interp, "sqlite_unlock_notify_arg", zBuf, TCL_GLOBAL_ONLY); 773 sqlite3_snprintf(sizeof(zBuf), zBuf, "%d", nArg); 774 Tcl_SetVar(interp, "sqlite_unlock_notify_argcount", zBuf, TCL_GLOBAL_ONLY); 775 } 776 #else 777 # define setTestUnlockNotifyVars(x,y,z) 778 #endif 779 780 #ifdef SQLITE_ENABLE_UNLOCK_NOTIFY 781 static void DbUnlockNotify(void **apArg, int nArg){ 782 int i; 783 for(i=0; i<nArg; i++){ 784 const int flags = (TCL_EVAL_GLOBAL|TCL_EVAL_DIRECT); 785 SqliteDb *pDb = (SqliteDb *)apArg[i]; 786 setTestUnlockNotifyVars(pDb->interp, i, nArg); 787 assert( pDb->pUnlockNotify); 788 Tcl_EvalObjEx(pDb->interp, pDb->pUnlockNotify, flags); 789 Tcl_DecrRefCount(pDb->pUnlockNotify); 790 pDb->pUnlockNotify = 0; 791 } 792 } 793 #endif 794 795 #ifdef SQLITE_ENABLE_PREUPDATE_HOOK 796 /* 797 ** Pre-update hook callback. 798 */ 799 static void DbPreUpdateHandler( 800 void *p, 801 sqlite3 *db, 802 int op, 803 const char *zDb, 804 const char *zTbl, 805 sqlite_int64 iKey1, 806 sqlite_int64 iKey2 807 ){ 808 SqliteDb *pDb = (SqliteDb *)p; 809 Tcl_Obj *pCmd; 810 static const char *azStr[] = {"DELETE", "INSERT", "UPDATE"}; 811 812 assert( (SQLITE_DELETE-1)/9 == 0 ); 813 assert( (SQLITE_INSERT-1)/9 == 1 ); 814 assert( (SQLITE_UPDATE-1)/9 == 2 ); 815 assert( pDb->pPreUpdateHook ); 816 assert( db==pDb->db ); 817 assert( op==SQLITE_INSERT || op==SQLITE_UPDATE || op==SQLITE_DELETE ); 818 819 pCmd = Tcl_DuplicateObj(pDb->pPreUpdateHook); 820 Tcl_IncrRefCount(pCmd); 821 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(azStr[(op-1)/9], -1)); 822 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zDb, -1)); 823 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zTbl, -1)); 824 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewWideIntObj(iKey1)); 825 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewWideIntObj(iKey2)); 826 Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT); 827 Tcl_DecrRefCount(pCmd); 828 } 829 #endif /* SQLITE_ENABLE_PREUPDATE_HOOK */ 830 831 static void DbUpdateHandler( 832 void *p, 833 int op, 834 const char *zDb, 835 const char *zTbl, 836 sqlite_int64 rowid 837 ){ 838 SqliteDb *pDb = (SqliteDb *)p; 839 Tcl_Obj *pCmd; 840 static const char *azStr[] = {"DELETE", "INSERT", "UPDATE"}; 841 842 assert( (SQLITE_DELETE-1)/9 == 0 ); 843 assert( (SQLITE_INSERT-1)/9 == 1 ); 844 assert( (SQLITE_UPDATE-1)/9 == 2 ); 845 846 assert( pDb->pUpdateHook ); 847 assert( op==SQLITE_INSERT || op==SQLITE_UPDATE || op==SQLITE_DELETE ); 848 849 pCmd = Tcl_DuplicateObj(pDb->pUpdateHook); 850 Tcl_IncrRefCount(pCmd); 851 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(azStr[(op-1)/9], -1)); 852 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zDb, -1)); 853 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zTbl, -1)); 854 Tcl_ListObjAppendElement(0, pCmd, Tcl_NewWideIntObj(rowid)); 855 Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT); 856 Tcl_DecrRefCount(pCmd); 857 } 858 859 static void tclCollateNeeded( 860 void *pCtx, 861 sqlite3 *db, 862 int enc, 863 const char *zName 864 ){ 865 SqliteDb *pDb = (SqliteDb *)pCtx; 866 Tcl_Obj *pScript = Tcl_DuplicateObj(pDb->pCollateNeeded); 867 Tcl_IncrRefCount(pScript); 868 Tcl_ListObjAppendElement(0, pScript, Tcl_NewStringObj(zName, -1)); 869 Tcl_EvalObjEx(pDb->interp, pScript, 0); 870 Tcl_DecrRefCount(pScript); 871 } 872 873 /* 874 ** This routine is called to evaluate an SQL collation function implemented 875 ** using TCL script. 876 */ 877 static int tclSqlCollate( 878 void *pCtx, 879 int nA, 880 const void *zA, 881 int nB, 882 const void *zB 883 ){ 884 SqlCollate *p = (SqlCollate *)pCtx; 885 Tcl_Obj *pCmd; 886 887 pCmd = Tcl_NewStringObj(p->zScript, -1); 888 Tcl_IncrRefCount(pCmd); 889 Tcl_ListObjAppendElement(p->interp, pCmd, Tcl_NewStringObj(zA, nA)); 890 Tcl_ListObjAppendElement(p->interp, pCmd, Tcl_NewStringObj(zB, nB)); 891 Tcl_EvalObjEx(p->interp, pCmd, TCL_EVAL_DIRECT); 892 Tcl_DecrRefCount(pCmd); 893 return (atoi(Tcl_GetStringResult(p->interp))); 894 } 895 896 /* 897 ** This routine is called to evaluate an SQL function implemented 898 ** using TCL script. 899 */ 900 static void tclSqlFunc(sqlite3_context *context, int argc, sqlite3_value**argv){ 901 SqlFunc *p = sqlite3_user_data(context); 902 Tcl_Obj *pCmd; 903 int i; 904 int rc; 905 906 if( argc==0 ){ 907 /* If there are no arguments to the function, call Tcl_EvalObjEx on the 908 ** script object directly. This allows the TCL compiler to generate 909 ** bytecode for the command on the first invocation and thus make 910 ** subsequent invocations much faster. */ 911 pCmd = p->pScript; 912 Tcl_IncrRefCount(pCmd); 913 rc = Tcl_EvalObjEx(p->interp, pCmd, 0); 914 Tcl_DecrRefCount(pCmd); 915 }else{ 916 /* If there are arguments to the function, make a shallow copy of the 917 ** script object, lappend the arguments, then evaluate the copy. 918 ** 919 ** By "shallow" copy, we mean only the outer list Tcl_Obj is duplicated. 920 ** The new Tcl_Obj contains pointers to the original list elements. 921 ** That way, when Tcl_EvalObjv() is run and shimmers the first element 922 ** of the list to tclCmdNameType, that alternate representation will 923 ** be preserved and reused on the next invocation. 924 */ 925 Tcl_Obj **aArg; 926 int nArg; 927 if( Tcl_ListObjGetElements(p->interp, p->pScript, &nArg, &aArg) ){ 928 sqlite3_result_error(context, Tcl_GetStringResult(p->interp), -1); 929 return; 930 } 931 pCmd = Tcl_NewListObj(nArg, aArg); 932 Tcl_IncrRefCount(pCmd); 933 for(i=0; i<argc; i++){ 934 sqlite3_value *pIn = argv[i]; 935 Tcl_Obj *pVal; 936 937 /* Set pVal to contain the i'th column of this row. */ 938 switch( sqlite3_value_type(pIn) ){ 939 case SQLITE_BLOB: { 940 int bytes = sqlite3_value_bytes(pIn); 941 pVal = Tcl_NewByteArrayObj(sqlite3_value_blob(pIn), bytes); 942 break; 943 } 944 case SQLITE_INTEGER: { 945 sqlite_int64 v = sqlite3_value_int64(pIn); 946 if( v>=-2147483647 && v<=2147483647 ){ 947 pVal = Tcl_NewIntObj((int)v); 948 }else{ 949 pVal = Tcl_NewWideIntObj(v); 950 } 951 break; 952 } 953 case SQLITE_FLOAT: { 954 double r = sqlite3_value_double(pIn); 955 pVal = Tcl_NewDoubleObj(r); 956 break; 957 } 958 case SQLITE_NULL: { 959 pVal = Tcl_NewStringObj(p->pDb->zNull, -1); 960 break; 961 } 962 default: { 963 int bytes = sqlite3_value_bytes(pIn); 964 pVal = Tcl_NewStringObj((char *)sqlite3_value_text(pIn), bytes); 965 break; 966 } 967 } 968 rc = Tcl_ListObjAppendElement(p->interp, pCmd, pVal); 969 if( rc ){ 970 Tcl_DecrRefCount(pCmd); 971 sqlite3_result_error(context, Tcl_GetStringResult(p->interp), -1); 972 return; 973 } 974 } 975 if( !p->useEvalObjv ){ 976 /* Tcl_EvalObjEx() will automatically call Tcl_EvalObjv() if pCmd 977 ** is a list without a string representation. To prevent this from 978 ** happening, make sure pCmd has a valid string representation */ 979 Tcl_GetString(pCmd); 980 } 981 rc = Tcl_EvalObjEx(p->interp, pCmd, TCL_EVAL_DIRECT); 982 Tcl_DecrRefCount(pCmd); 983 } 984 985 if( rc && rc!=TCL_RETURN ){ 986 sqlite3_result_error(context, Tcl_GetStringResult(p->interp), -1); 987 }else{ 988 Tcl_Obj *pVar = Tcl_GetObjResult(p->interp); 989 int n; 990 u8 *data; 991 const char *zType = (pVar->typePtr ? pVar->typePtr->name : ""); 992 char c = zType[0]; 993 if( c=='b' && strcmp(zType,"bytearray")==0 && pVar->bytes==0 ){ 994 /* Only return a BLOB type if the Tcl variable is a bytearray and 995 ** has no string representation. */ 996 data = Tcl_GetByteArrayFromObj(pVar, &n); 997 sqlite3_result_blob(context, data, n, SQLITE_TRANSIENT); 998 }else if( c=='b' && strcmp(zType,"boolean")==0 ){ 999 Tcl_GetIntFromObj(0, pVar, &n); 1000 sqlite3_result_int(context, n); 1001 }else if( c=='d' && strcmp(zType,"double")==0 ){ 1002 double r; 1003 Tcl_GetDoubleFromObj(0, pVar, &r); 1004 sqlite3_result_double(context, r); 1005 }else if( (c=='w' && strcmp(zType,"wideInt")==0) || 1006 (c=='i' && strcmp(zType,"int")==0) ){ 1007 Tcl_WideInt v; 1008 Tcl_GetWideIntFromObj(0, pVar, &v); 1009 sqlite3_result_int64(context, v); 1010 }else{ 1011 data = (unsigned char *)Tcl_GetStringFromObj(pVar, &n); 1012 sqlite3_result_text(context, (char *)data, n, SQLITE_TRANSIENT); 1013 } 1014 } 1015 } 1016 1017 #ifndef SQLITE_OMIT_AUTHORIZATION 1018 /* 1019 ** This is the authentication function. It appends the authentication 1020 ** type code and the two arguments to zCmd[] then invokes the result 1021 ** on the interpreter. The reply is examined to determine if the 1022 ** authentication fails or succeeds. 1023 */ 1024 static int auth_callback( 1025 void *pArg, 1026 int code, 1027 const char *zArg1, 1028 const char *zArg2, 1029 const char *zArg3, 1030 const char *zArg4 1031 #ifdef SQLITE_USER_AUTHENTICATION 1032 ,const char *zArg5 1033 #endif 1034 ){ 1035 const char *zCode; 1036 Tcl_DString str; 1037 int rc; 1038 const char *zReply; 1039 /* EVIDENCE-OF: R-38590-62769 The first parameter to the authorizer 1040 ** callback is a copy of the third parameter to the 1041 ** sqlite3_set_authorizer() interface. 1042 */ 1043 SqliteDb *pDb = (SqliteDb*)pArg; 1044 if( pDb->disableAuth ) return SQLITE_OK; 1045 1046 /* EVIDENCE-OF: R-56518-44310 The second parameter to the callback is an 1047 ** integer action code that specifies the particular action to be 1048 ** authorized. */ 1049 switch( code ){ 1050 case SQLITE_COPY : zCode="SQLITE_COPY"; break; 1051 case SQLITE_CREATE_INDEX : zCode="SQLITE_CREATE_INDEX"; break; 1052 case SQLITE_CREATE_TABLE : zCode="SQLITE_CREATE_TABLE"; break; 1053 case SQLITE_CREATE_TEMP_INDEX : zCode="SQLITE_CREATE_TEMP_INDEX"; break; 1054 case SQLITE_CREATE_TEMP_TABLE : zCode="SQLITE_CREATE_TEMP_TABLE"; break; 1055 case SQLITE_CREATE_TEMP_TRIGGER: zCode="SQLITE_CREATE_TEMP_TRIGGER"; break; 1056 case SQLITE_CREATE_TEMP_VIEW : zCode="SQLITE_CREATE_TEMP_VIEW"; break; 1057 case SQLITE_CREATE_TRIGGER : zCode="SQLITE_CREATE_TRIGGER"; break; 1058 case SQLITE_CREATE_VIEW : zCode="SQLITE_CREATE_VIEW"; break; 1059 case SQLITE_DELETE : zCode="SQLITE_DELETE"; break; 1060 case SQLITE_DROP_INDEX : zCode="SQLITE_DROP_INDEX"; break; 1061 case SQLITE_DROP_TABLE : zCode="SQLITE_DROP_TABLE"; break; 1062 case SQLITE_DROP_TEMP_INDEX : zCode="SQLITE_DROP_TEMP_INDEX"; break; 1063 case SQLITE_DROP_TEMP_TABLE : zCode="SQLITE_DROP_TEMP_TABLE"; break; 1064 case SQLITE_DROP_TEMP_TRIGGER : zCode="SQLITE_DROP_TEMP_TRIGGER"; break; 1065 case SQLITE_DROP_TEMP_VIEW : zCode="SQLITE_DROP_TEMP_VIEW"; break; 1066 case SQLITE_DROP_TRIGGER : zCode="SQLITE_DROP_TRIGGER"; break; 1067 case SQLITE_DROP_VIEW : zCode="SQLITE_DROP_VIEW"; break; 1068 case SQLITE_INSERT : zCode="SQLITE_INSERT"; break; 1069 case SQLITE_PRAGMA : zCode="SQLITE_PRAGMA"; break; 1070 case SQLITE_READ : zCode="SQLITE_READ"; break; 1071 case SQLITE_SELECT : zCode="SQLITE_SELECT"; break; 1072 case SQLITE_TRANSACTION : zCode="SQLITE_TRANSACTION"; break; 1073 case SQLITE_UPDATE : zCode="SQLITE_UPDATE"; break; 1074 case SQLITE_ATTACH : zCode="SQLITE_ATTACH"; break; 1075 case SQLITE_DETACH : zCode="SQLITE_DETACH"; break; 1076 case SQLITE_ALTER_TABLE : zCode="SQLITE_ALTER_TABLE"; break; 1077 case SQLITE_REINDEX : zCode="SQLITE_REINDEX"; break; 1078 case SQLITE_ANALYZE : zCode="SQLITE_ANALYZE"; break; 1079 case SQLITE_CREATE_VTABLE : zCode="SQLITE_CREATE_VTABLE"; break; 1080 case SQLITE_DROP_VTABLE : zCode="SQLITE_DROP_VTABLE"; break; 1081 case SQLITE_FUNCTION : zCode="SQLITE_FUNCTION"; break; 1082 case SQLITE_SAVEPOINT : zCode="SQLITE_SAVEPOINT"; break; 1083 case SQLITE_RECURSIVE : zCode="SQLITE_RECURSIVE"; break; 1084 default : zCode="????"; break; 1085 } 1086 Tcl_DStringInit(&str); 1087 Tcl_DStringAppend(&str, pDb->zAuth, -1); 1088 Tcl_DStringAppendElement(&str, zCode); 1089 Tcl_DStringAppendElement(&str, zArg1 ? zArg1 : ""); 1090 Tcl_DStringAppendElement(&str, zArg2 ? zArg2 : ""); 1091 Tcl_DStringAppendElement(&str, zArg3 ? zArg3 : ""); 1092 Tcl_DStringAppendElement(&str, zArg4 ? zArg4 : ""); 1093 #ifdef SQLITE_USER_AUTHENTICATION 1094 Tcl_DStringAppendElement(&str, zArg5 ? zArg5 : ""); 1095 #endif 1096 rc = Tcl_GlobalEval(pDb->interp, Tcl_DStringValue(&str)); 1097 Tcl_DStringFree(&str); 1098 zReply = rc==TCL_OK ? Tcl_GetStringResult(pDb->interp) : "SQLITE_DENY"; 1099 if( strcmp(zReply,"SQLITE_OK")==0 ){ 1100 rc = SQLITE_OK; 1101 }else if( strcmp(zReply,"SQLITE_DENY")==0 ){ 1102 rc = SQLITE_DENY; 1103 }else if( strcmp(zReply,"SQLITE_IGNORE")==0 ){ 1104 rc = SQLITE_IGNORE; 1105 }else{ 1106 rc = 999; 1107 } 1108 return rc; 1109 } 1110 #endif /* SQLITE_OMIT_AUTHORIZATION */ 1111 1112 /* 1113 ** This routine reads a line of text from FILE in, stores 1114 ** the text in memory obtained from malloc() and returns a pointer 1115 ** to the text. NULL is returned at end of file, or if malloc() 1116 ** fails. 1117 ** 1118 ** The interface is like "readline" but no command-line editing 1119 ** is done. 1120 ** 1121 ** copied from shell.c from '.import' command 1122 */ 1123 static char *local_getline(char *zPrompt, FILE *in){ 1124 char *zLine; 1125 int nLine; 1126 int n; 1127 1128 nLine = 100; 1129 zLine = malloc( nLine ); 1130 if( zLine==0 ) return 0; 1131 n = 0; 1132 while( 1 ){ 1133 if( n+100>nLine ){ 1134 nLine = nLine*2 + 100; 1135 zLine = realloc(zLine, nLine); 1136 if( zLine==0 ) return 0; 1137 } 1138 if( fgets(&zLine[n], nLine - n, in)==0 ){ 1139 if( n==0 ){ 1140 free(zLine); 1141 return 0; 1142 } 1143 zLine[n] = 0; 1144 break; 1145 } 1146 while( zLine[n] ){ n++; } 1147 if( n>0 && zLine[n-1]=='\n' ){ 1148 n--; 1149 zLine[n] = 0; 1150 break; 1151 } 1152 } 1153 zLine = realloc( zLine, n+1 ); 1154 return zLine; 1155 } 1156 1157 1158 /* 1159 ** This function is part of the implementation of the command: 1160 ** 1161 ** $db transaction [-deferred|-immediate|-exclusive] SCRIPT 1162 ** 1163 ** It is invoked after evaluating the script SCRIPT to commit or rollback 1164 ** the transaction or savepoint opened by the [transaction] command. 1165 */ 1166 static int SQLITE_TCLAPI DbTransPostCmd( 1167 ClientData data[], /* data[0] is the Sqlite3Db* for $db */ 1168 Tcl_Interp *interp, /* Tcl interpreter */ 1169 int result /* Result of evaluating SCRIPT */ 1170 ){ 1171 static const char *const azEnd[] = { 1172 "RELEASE _tcl_transaction", /* rc==TCL_ERROR, nTransaction!=0 */ 1173 "COMMIT", /* rc!=TCL_ERROR, nTransaction==0 */ 1174 "ROLLBACK TO _tcl_transaction ; RELEASE _tcl_transaction", 1175 "ROLLBACK" /* rc==TCL_ERROR, nTransaction==0 */ 1176 }; 1177 SqliteDb *pDb = (SqliteDb*)data[0]; 1178 int rc = result; 1179 const char *zEnd; 1180 1181 pDb->nTransaction--; 1182 zEnd = azEnd[(rc==TCL_ERROR)*2 + (pDb->nTransaction==0)]; 1183 1184 pDb->disableAuth++; 1185 if( sqlite3_exec(pDb->db, zEnd, 0, 0, 0) ){ 1186 /* This is a tricky scenario to handle. The most likely cause of an 1187 ** error is that the exec() above was an attempt to commit the 1188 ** top-level transaction that returned SQLITE_BUSY. Or, less likely, 1189 ** that an IO-error has occurred. In either case, throw a Tcl exception 1190 ** and try to rollback the transaction. 1191 ** 1192 ** But it could also be that the user executed one or more BEGIN, 1193 ** COMMIT, SAVEPOINT, RELEASE or ROLLBACK commands that are confusing 1194 ** this method's logic. Not clear how this would be best handled. 1195 */ 1196 if( rc!=TCL_ERROR ){ 1197 Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0); 1198 rc = TCL_ERROR; 1199 } 1200 sqlite3_exec(pDb->db, "ROLLBACK", 0, 0, 0); 1201 } 1202 pDb->disableAuth--; 1203 1204 return rc; 1205 } 1206 1207 /* 1208 ** Unless SQLITE_TEST is defined, this function is a simple wrapper around 1209 ** sqlite3_prepare_v2(). If SQLITE_TEST is defined, then it uses either 1210 ** sqlite3_prepare_v2() or legacy interface sqlite3_prepare(), depending 1211 ** on whether or not the [db_use_legacy_prepare] command has been used to 1212 ** configure the connection. 1213 */ 1214 static int dbPrepare( 1215 SqliteDb *pDb, /* Database object */ 1216 const char *zSql, /* SQL to compile */ 1217 sqlite3_stmt **ppStmt, /* OUT: Prepared statement */ 1218 const char **pzOut /* OUT: Pointer to next SQL statement */ 1219 ){ 1220 unsigned int prepFlags = 0; 1221 #ifdef SQLITE_TEST 1222 if( pDb->bLegacyPrepare ){ 1223 return sqlite3_prepare(pDb->db, zSql, -1, ppStmt, pzOut); 1224 } 1225 #endif 1226 /* If the statement cache is large, use the SQLITE_PREPARE_PERSISTENT 1227 ** flags, which uses less lookaside memory. But if the cache is small, 1228 ** omit that flag to make full use of lookaside */ 1229 if( pDb->maxStmt>5 ) prepFlags = SQLITE_PREPARE_PERSISTENT; 1230 1231 return sqlite3_prepare_v3(pDb->db, zSql, -1, prepFlags, ppStmt, pzOut); 1232 } 1233 1234 /* 1235 ** Search the cache for a prepared-statement object that implements the 1236 ** first SQL statement in the buffer pointed to by parameter zIn. If 1237 ** no such prepared-statement can be found, allocate and prepare a new 1238 ** one. In either case, bind the current values of the relevant Tcl 1239 ** variables to any $var, :var or @var variables in the statement. Before 1240 ** returning, set *ppPreStmt to point to the prepared-statement object. 1241 ** 1242 ** Output parameter *pzOut is set to point to the next SQL statement in 1243 ** buffer zIn, or to the '\0' byte at the end of zIn if there is no 1244 ** next statement. 1245 ** 1246 ** If successful, TCL_OK is returned. Otherwise, TCL_ERROR is returned 1247 ** and an error message loaded into interpreter pDb->interp. 1248 */ 1249 static int dbPrepareAndBind( 1250 SqliteDb *pDb, /* Database object */ 1251 char const *zIn, /* SQL to compile */ 1252 char const **pzOut, /* OUT: Pointer to next SQL statement */ 1253 SqlPreparedStmt **ppPreStmt /* OUT: Object used to cache statement */ 1254 ){ 1255 const char *zSql = zIn; /* Pointer to first SQL statement in zIn */ 1256 sqlite3_stmt *pStmt = 0; /* Prepared statement object */ 1257 SqlPreparedStmt *pPreStmt; /* Pointer to cached statement */ 1258 int nSql; /* Length of zSql in bytes */ 1259 int nVar = 0; /* Number of variables in statement */ 1260 int iParm = 0; /* Next free entry in apParm */ 1261 char c; 1262 int i; 1263 Tcl_Interp *interp = pDb->interp; 1264 1265 *ppPreStmt = 0; 1266 1267 /* Trim spaces from the start of zSql and calculate the remaining length. */ 1268 while( (c = zSql[0])==' ' || c=='\t' || c=='\r' || c=='\n' ){ zSql++; } 1269 nSql = strlen30(zSql); 1270 1271 for(pPreStmt = pDb->stmtList; pPreStmt; pPreStmt=pPreStmt->pNext){ 1272 int n = pPreStmt->nSql; 1273 if( nSql>=n 1274 && memcmp(pPreStmt->zSql, zSql, n)==0 1275 && (zSql[n]==0 || zSql[n-1]==';') 1276 ){ 1277 pStmt = pPreStmt->pStmt; 1278 *pzOut = &zSql[pPreStmt->nSql]; 1279 1280 /* When a prepared statement is found, unlink it from the 1281 ** cache list. It will later be added back to the beginning 1282 ** of the cache list in order to implement LRU replacement. 1283 */ 1284 if( pPreStmt->pPrev ){ 1285 pPreStmt->pPrev->pNext = pPreStmt->pNext; 1286 }else{ 1287 pDb->stmtList = pPreStmt->pNext; 1288 } 1289 if( pPreStmt->pNext ){ 1290 pPreStmt->pNext->pPrev = pPreStmt->pPrev; 1291 }else{ 1292 pDb->stmtLast = pPreStmt->pPrev; 1293 } 1294 pDb->nStmt--; 1295 nVar = sqlite3_bind_parameter_count(pStmt); 1296 break; 1297 } 1298 } 1299 1300 /* If no prepared statement was found. Compile the SQL text. Also allocate 1301 ** a new SqlPreparedStmt structure. */ 1302 if( pPreStmt==0 ){ 1303 int nByte; 1304 1305 if( SQLITE_OK!=dbPrepare(pDb, zSql, &pStmt, pzOut) ){ 1306 Tcl_SetObjResult(interp, Tcl_NewStringObj(sqlite3_errmsg(pDb->db), -1)); 1307 return TCL_ERROR; 1308 } 1309 if( pStmt==0 ){ 1310 if( SQLITE_OK!=sqlite3_errcode(pDb->db) ){ 1311 /* A compile-time error in the statement. */ 1312 Tcl_SetObjResult(interp, Tcl_NewStringObj(sqlite3_errmsg(pDb->db), -1)); 1313 return TCL_ERROR; 1314 }else{ 1315 /* The statement was a no-op. Continue to the next statement 1316 ** in the SQL string. 1317 */ 1318 return TCL_OK; 1319 } 1320 } 1321 1322 assert( pPreStmt==0 ); 1323 nVar = sqlite3_bind_parameter_count(pStmt); 1324 nByte = sizeof(SqlPreparedStmt) + nVar*sizeof(Tcl_Obj *); 1325 pPreStmt = (SqlPreparedStmt*)Tcl_Alloc(nByte); 1326 memset(pPreStmt, 0, nByte); 1327 1328 pPreStmt->pStmt = pStmt; 1329 pPreStmt->nSql = (int)(*pzOut - zSql); 1330 pPreStmt->zSql = sqlite3_sql(pStmt); 1331 pPreStmt->apParm = (Tcl_Obj **)&pPreStmt[1]; 1332 #ifdef SQLITE_TEST 1333 if( pPreStmt->zSql==0 ){ 1334 char *zCopy = Tcl_Alloc(pPreStmt->nSql + 1); 1335 memcpy(zCopy, zSql, pPreStmt->nSql); 1336 zCopy[pPreStmt->nSql] = '\0'; 1337 pPreStmt->zSql = zCopy; 1338 } 1339 #endif 1340 } 1341 assert( pPreStmt ); 1342 assert( strlen30(pPreStmt->zSql)==pPreStmt->nSql ); 1343 assert( 0==memcmp(pPreStmt->zSql, zSql, pPreStmt->nSql) ); 1344 1345 /* Bind values to parameters that begin with $ or : */ 1346 for(i=1; i<=nVar; i++){ 1347 const char *zVar = sqlite3_bind_parameter_name(pStmt, i); 1348 if( zVar!=0 && (zVar[0]=='$' || zVar[0]==':' || zVar[0]=='@') ){ 1349 Tcl_Obj *pVar = Tcl_GetVar2Ex(interp, &zVar[1], 0, 0); 1350 if( pVar ){ 1351 int n; 1352 u8 *data; 1353 const char *zType = (pVar->typePtr ? pVar->typePtr->name : ""); 1354 c = zType[0]; 1355 if( zVar[0]=='@' || 1356 (c=='b' && strcmp(zType,"bytearray")==0 && pVar->bytes==0) ){ 1357 /* Load a BLOB type if the Tcl variable is a bytearray and 1358 ** it has no string representation or the host 1359 ** parameter name begins with "@". */ 1360 data = Tcl_GetByteArrayFromObj(pVar, &n); 1361 sqlite3_bind_blob(pStmt, i, data, n, SQLITE_STATIC); 1362 Tcl_IncrRefCount(pVar); 1363 pPreStmt->apParm[iParm++] = pVar; 1364 }else if( c=='b' && strcmp(zType,"boolean")==0 ){ 1365 Tcl_GetIntFromObj(interp, pVar, &n); 1366 sqlite3_bind_int(pStmt, i, n); 1367 }else if( c=='d' && strcmp(zType,"double")==0 ){ 1368 double r; 1369 Tcl_GetDoubleFromObj(interp, pVar, &r); 1370 sqlite3_bind_double(pStmt, i, r); 1371 }else if( (c=='w' && strcmp(zType,"wideInt")==0) || 1372 (c=='i' && strcmp(zType,"int")==0) ){ 1373 Tcl_WideInt v; 1374 Tcl_GetWideIntFromObj(interp, pVar, &v); 1375 sqlite3_bind_int64(pStmt, i, v); 1376 }else{ 1377 data = (unsigned char *)Tcl_GetStringFromObj(pVar, &n); 1378 sqlite3_bind_text(pStmt, i, (char *)data, n, SQLITE_STATIC); 1379 Tcl_IncrRefCount(pVar); 1380 pPreStmt->apParm[iParm++] = pVar; 1381 } 1382 }else{ 1383 sqlite3_bind_null(pStmt, i); 1384 } 1385 } 1386 } 1387 pPreStmt->nParm = iParm; 1388 *ppPreStmt = pPreStmt; 1389 1390 return TCL_OK; 1391 } 1392 1393 /* 1394 ** Release a statement reference obtained by calling dbPrepareAndBind(). 1395 ** There should be exactly one call to this function for each call to 1396 ** dbPrepareAndBind(). 1397 ** 1398 ** If the discard parameter is non-zero, then the statement is deleted 1399 ** immediately. Otherwise it is added to the LRU list and may be returned 1400 ** by a subsequent call to dbPrepareAndBind(). 1401 */ 1402 static void dbReleaseStmt( 1403 SqliteDb *pDb, /* Database handle */ 1404 SqlPreparedStmt *pPreStmt, /* Prepared statement handle to release */ 1405 int discard /* True to delete (not cache) the pPreStmt */ 1406 ){ 1407 int i; 1408 1409 /* Free the bound string and blob parameters */ 1410 for(i=0; i<pPreStmt->nParm; i++){ 1411 Tcl_DecrRefCount(pPreStmt->apParm[i]); 1412 } 1413 pPreStmt->nParm = 0; 1414 1415 if( pDb->maxStmt<=0 || discard ){ 1416 /* If the cache is turned off, deallocated the statement */ 1417 dbFreeStmt(pPreStmt); 1418 }else{ 1419 /* Add the prepared statement to the beginning of the cache list. */ 1420 pPreStmt->pNext = pDb->stmtList; 1421 pPreStmt->pPrev = 0; 1422 if( pDb->stmtList ){ 1423 pDb->stmtList->pPrev = pPreStmt; 1424 } 1425 pDb->stmtList = pPreStmt; 1426 if( pDb->stmtLast==0 ){ 1427 assert( pDb->nStmt==0 ); 1428 pDb->stmtLast = pPreStmt; 1429 }else{ 1430 assert( pDb->nStmt>0 ); 1431 } 1432 pDb->nStmt++; 1433 1434 /* If we have too many statement in cache, remove the surplus from 1435 ** the end of the cache list. */ 1436 while( pDb->nStmt>pDb->maxStmt ){ 1437 SqlPreparedStmt *pLast = pDb->stmtLast; 1438 pDb->stmtLast = pLast->pPrev; 1439 pDb->stmtLast->pNext = 0; 1440 pDb->nStmt--; 1441 dbFreeStmt(pLast); 1442 } 1443 } 1444 } 1445 1446 /* 1447 ** Structure used with dbEvalXXX() functions: 1448 ** 1449 ** dbEvalInit() 1450 ** dbEvalStep() 1451 ** dbEvalFinalize() 1452 ** dbEvalRowInfo() 1453 ** dbEvalColumnValue() 1454 */ 1455 typedef struct DbEvalContext DbEvalContext; 1456 struct DbEvalContext { 1457 SqliteDb *pDb; /* Database handle */ 1458 Tcl_Obj *pSql; /* Object holding string zSql */ 1459 const char *zSql; /* Remaining SQL to execute */ 1460 SqlPreparedStmt *pPreStmt; /* Current statement */ 1461 int nCol; /* Number of columns returned by pStmt */ 1462 int evalFlags; /* Flags used */ 1463 Tcl_Obj *pArray; /* Name of array variable */ 1464 Tcl_Obj **apColName; /* Array of column names */ 1465 }; 1466 1467 #define SQLITE_EVAL_WITHOUTNULLS 0x00001 /* Unset array(*) for NULL */ 1468 1469 /* 1470 ** Release any cache of column names currently held as part of 1471 ** the DbEvalContext structure passed as the first argument. 1472 */ 1473 static void dbReleaseColumnNames(DbEvalContext *p){ 1474 if( p->apColName ){ 1475 int i; 1476 for(i=0; i<p->nCol; i++){ 1477 Tcl_DecrRefCount(p->apColName[i]); 1478 } 1479 Tcl_Free((char *)p->apColName); 1480 p->apColName = 0; 1481 } 1482 p->nCol = 0; 1483 } 1484 1485 /* 1486 ** Initialize a DbEvalContext structure. 1487 ** 1488 ** If pArray is not NULL, then it contains the name of a Tcl array 1489 ** variable. The "*" member of this array is set to a list containing 1490 ** the names of the columns returned by the statement as part of each 1491 ** call to dbEvalStep(), in order from left to right. e.g. if the names 1492 ** of the returned columns are a, b and c, it does the equivalent of the 1493 ** tcl command: 1494 ** 1495 ** set ${pArray}(*) {a b c} 1496 */ 1497 static void dbEvalInit( 1498 DbEvalContext *p, /* Pointer to structure to initialize */ 1499 SqliteDb *pDb, /* Database handle */ 1500 Tcl_Obj *pSql, /* Object containing SQL script */ 1501 Tcl_Obj *pArray, /* Name of Tcl array to set (*) element of */ 1502 int evalFlags /* Flags controlling evaluation */ 1503 ){ 1504 memset(p, 0, sizeof(DbEvalContext)); 1505 p->pDb = pDb; 1506 p->zSql = Tcl_GetString(pSql); 1507 p->pSql = pSql; 1508 Tcl_IncrRefCount(pSql); 1509 if( pArray ){ 1510 p->pArray = pArray; 1511 Tcl_IncrRefCount(pArray); 1512 } 1513 p->evalFlags = evalFlags; 1514 } 1515 1516 /* 1517 ** Obtain information about the row that the DbEvalContext passed as the 1518 ** first argument currently points to. 1519 */ 1520 static void dbEvalRowInfo( 1521 DbEvalContext *p, /* Evaluation context */ 1522 int *pnCol, /* OUT: Number of column names */ 1523 Tcl_Obj ***papColName /* OUT: Array of column names */ 1524 ){ 1525 /* Compute column names */ 1526 if( 0==p->apColName ){ 1527 sqlite3_stmt *pStmt = p->pPreStmt->pStmt; 1528 int i; /* Iterator variable */ 1529 int nCol; /* Number of columns returned by pStmt */ 1530 Tcl_Obj **apColName = 0; /* Array of column names */ 1531 1532 p->nCol = nCol = sqlite3_column_count(pStmt); 1533 if( nCol>0 && (papColName || p->pArray) ){ 1534 apColName = (Tcl_Obj**)Tcl_Alloc( sizeof(Tcl_Obj*)*nCol ); 1535 for(i=0; i<nCol; i++){ 1536 apColName[i] = Tcl_NewStringObj(sqlite3_column_name(pStmt,i), -1); 1537 Tcl_IncrRefCount(apColName[i]); 1538 } 1539 p->apColName = apColName; 1540 } 1541 1542 /* If results are being stored in an array variable, then create 1543 ** the array(*) entry for that array 1544 */ 1545 if( p->pArray ){ 1546 Tcl_Interp *interp = p->pDb->interp; 1547 Tcl_Obj *pColList = Tcl_NewObj(); 1548 Tcl_Obj *pStar = Tcl_NewStringObj("*", -1); 1549 1550 for(i=0; i<nCol; i++){ 1551 Tcl_ListObjAppendElement(interp, pColList, apColName[i]); 1552 } 1553 Tcl_IncrRefCount(pStar); 1554 Tcl_ObjSetVar2(interp, p->pArray, pStar, pColList, 0); 1555 Tcl_DecrRefCount(pStar); 1556 } 1557 } 1558 1559 if( papColName ){ 1560 *papColName = p->apColName; 1561 } 1562 if( pnCol ){ 1563 *pnCol = p->nCol; 1564 } 1565 } 1566 1567 /* 1568 ** Return one of TCL_OK, TCL_BREAK or TCL_ERROR. If TCL_ERROR is 1569 ** returned, then an error message is stored in the interpreter before 1570 ** returning. 1571 ** 1572 ** A return value of TCL_OK means there is a row of data available. The 1573 ** data may be accessed using dbEvalRowInfo() and dbEvalColumnValue(). This 1574 ** is analogous to a return of SQLITE_ROW from sqlite3_step(). If TCL_BREAK 1575 ** is returned, then the SQL script has finished executing and there are 1576 ** no further rows available. This is similar to SQLITE_DONE. 1577 */ 1578 static int dbEvalStep(DbEvalContext *p){ 1579 const char *zPrevSql = 0; /* Previous value of p->zSql */ 1580 1581 while( p->zSql[0] || p->pPreStmt ){ 1582 int rc; 1583 if( p->pPreStmt==0 ){ 1584 zPrevSql = (p->zSql==zPrevSql ? 0 : p->zSql); 1585 rc = dbPrepareAndBind(p->pDb, p->zSql, &p->zSql, &p->pPreStmt); 1586 if( rc!=TCL_OK ) return rc; 1587 }else{ 1588 int rcs; 1589 SqliteDb *pDb = p->pDb; 1590 SqlPreparedStmt *pPreStmt = p->pPreStmt; 1591 sqlite3_stmt *pStmt = pPreStmt->pStmt; 1592 1593 rcs = sqlite3_step(pStmt); 1594 if( rcs==SQLITE_ROW ){ 1595 return TCL_OK; 1596 } 1597 if( p->pArray ){ 1598 dbEvalRowInfo(p, 0, 0); 1599 } 1600 rcs = sqlite3_reset(pStmt); 1601 1602 pDb->nStep = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_FULLSCAN_STEP,1); 1603 pDb->nSort = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_SORT,1); 1604 pDb->nIndex = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_AUTOINDEX,1); 1605 pDb->nVMStep = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_VM_STEP,1); 1606 dbReleaseColumnNames(p); 1607 p->pPreStmt = 0; 1608 1609 if( rcs!=SQLITE_OK ){ 1610 /* If a run-time error occurs, report the error and stop reading 1611 ** the SQL. */ 1612 dbReleaseStmt(pDb, pPreStmt, 1); 1613 #if SQLITE_TEST 1614 if( p->pDb->bLegacyPrepare && rcs==SQLITE_SCHEMA && zPrevSql ){ 1615 /* If the runtime error was an SQLITE_SCHEMA, and the database 1616 ** handle is configured to use the legacy sqlite3_prepare() 1617 ** interface, retry prepare()/step() on the same SQL statement. 1618 ** This only happens once. If there is a second SQLITE_SCHEMA 1619 ** error, the error will be returned to the caller. */ 1620 p->zSql = zPrevSql; 1621 continue; 1622 } 1623 #endif 1624 Tcl_SetObjResult(pDb->interp, 1625 Tcl_NewStringObj(sqlite3_errmsg(pDb->db), -1)); 1626 return TCL_ERROR; 1627 }else{ 1628 dbReleaseStmt(pDb, pPreStmt, 0); 1629 } 1630 } 1631 } 1632 1633 /* Finished */ 1634 return TCL_BREAK; 1635 } 1636 1637 /* 1638 ** Free all resources currently held by the DbEvalContext structure passed 1639 ** as the first argument. There should be exactly one call to this function 1640 ** for each call to dbEvalInit(). 1641 */ 1642 static void dbEvalFinalize(DbEvalContext *p){ 1643 if( p->pPreStmt ){ 1644 sqlite3_reset(p->pPreStmt->pStmt); 1645 dbReleaseStmt(p->pDb, p->pPreStmt, 0); 1646 p->pPreStmt = 0; 1647 } 1648 if( p->pArray ){ 1649 Tcl_DecrRefCount(p->pArray); 1650 p->pArray = 0; 1651 } 1652 Tcl_DecrRefCount(p->pSql); 1653 dbReleaseColumnNames(p); 1654 } 1655 1656 /* 1657 ** Return a pointer to a Tcl_Obj structure with ref-count 0 that contains 1658 ** the value for the iCol'th column of the row currently pointed to by 1659 ** the DbEvalContext structure passed as the first argument. 1660 */ 1661 static Tcl_Obj *dbEvalColumnValue(DbEvalContext *p, int iCol){ 1662 sqlite3_stmt *pStmt = p->pPreStmt->pStmt; 1663 switch( sqlite3_column_type(pStmt, iCol) ){ 1664 case SQLITE_BLOB: { 1665 int bytes = sqlite3_column_bytes(pStmt, iCol); 1666 const char *zBlob = sqlite3_column_blob(pStmt, iCol); 1667 if( !zBlob ) bytes = 0; 1668 return Tcl_NewByteArrayObj((u8*)zBlob, bytes); 1669 } 1670 case SQLITE_INTEGER: { 1671 sqlite_int64 v = sqlite3_column_int64(pStmt, iCol); 1672 if( v>=-2147483647 && v<=2147483647 ){ 1673 return Tcl_NewIntObj((int)v); 1674 }else{ 1675 return Tcl_NewWideIntObj(v); 1676 } 1677 } 1678 case SQLITE_FLOAT: { 1679 return Tcl_NewDoubleObj(sqlite3_column_double(pStmt, iCol)); 1680 } 1681 case SQLITE_NULL: { 1682 return Tcl_NewStringObj(p->pDb->zNull, -1); 1683 } 1684 } 1685 1686 return Tcl_NewStringObj((char*)sqlite3_column_text(pStmt, iCol), -1); 1687 } 1688 1689 /* 1690 ** If using Tcl version 8.6 or greater, use the NR functions to avoid 1691 ** recursive evalution of scripts by the [db eval] and [db trans] 1692 ** commands. Even if the headers used while compiling the extension 1693 ** are 8.6 or newer, the code still tests the Tcl version at runtime. 1694 ** This allows stubs-enabled builds to be used with older Tcl libraries. 1695 */ 1696 #if TCL_MAJOR_VERSION>8 || (TCL_MAJOR_VERSION==8 && TCL_MINOR_VERSION>=6) 1697 # define SQLITE_TCL_NRE 1 1698 static int DbUseNre(void){ 1699 int major, minor; 1700 Tcl_GetVersion(&major, &minor, 0, 0); 1701 return( (major==8 && minor>=6) || major>8 ); 1702 } 1703 #else 1704 /* 1705 ** Compiling using headers earlier than 8.6. In this case NR cannot be 1706 ** used, so DbUseNre() to always return zero. Add #defines for the other 1707 ** Tcl_NRxxx() functions to prevent them from causing compilation errors, 1708 ** even though the only invocations of them are within conditional blocks 1709 ** of the form: 1710 ** 1711 ** if( DbUseNre() ) { ... } 1712 */ 1713 # define SQLITE_TCL_NRE 0 1714 # define DbUseNre() 0 1715 # define Tcl_NRAddCallback(a,b,c,d,e,f) (void)0 1716 # define Tcl_NREvalObj(a,b,c) 0 1717 # define Tcl_NRCreateCommand(a,b,c,d,e,f) (void)0 1718 #endif 1719 1720 /* 1721 ** This function is part of the implementation of the command: 1722 ** 1723 ** $db eval SQL ?ARRAYNAME? SCRIPT 1724 */ 1725 static int SQLITE_TCLAPI DbEvalNextCmd( 1726 ClientData data[], /* data[0] is the (DbEvalContext*) */ 1727 Tcl_Interp *interp, /* Tcl interpreter */ 1728 int result /* Result so far */ 1729 ){ 1730 int rc = result; /* Return code */ 1731 1732 /* The first element of the data[] array is a pointer to a DbEvalContext 1733 ** structure allocated using Tcl_Alloc(). The second element of data[] 1734 ** is a pointer to a Tcl_Obj containing the script to run for each row 1735 ** returned by the queries encapsulated in data[0]. */ 1736 DbEvalContext *p = (DbEvalContext *)data[0]; 1737 Tcl_Obj *pScript = (Tcl_Obj *)data[1]; 1738 Tcl_Obj *pArray = p->pArray; 1739 1740 while( (rc==TCL_OK || rc==TCL_CONTINUE) && TCL_OK==(rc = dbEvalStep(p)) ){ 1741 int i; 1742 int nCol; 1743 Tcl_Obj **apColName; 1744 dbEvalRowInfo(p, &nCol, &apColName); 1745 for(i=0; i<nCol; i++){ 1746 if( pArray==0 ){ 1747 Tcl_ObjSetVar2(interp, apColName[i], 0, dbEvalColumnValue(p,i), 0); 1748 }else if( (p->evalFlags & SQLITE_EVAL_WITHOUTNULLS)!=0 1749 && sqlite3_column_type(p->pPreStmt->pStmt, i)==SQLITE_NULL 1750 ){ 1751 Tcl_UnsetVar2(interp, Tcl_GetString(pArray), 1752 Tcl_GetString(apColName[i]), 0); 1753 }else{ 1754 Tcl_ObjSetVar2(interp, pArray, apColName[i], dbEvalColumnValue(p,i), 0); 1755 } 1756 } 1757 1758 /* The required interpreter variables are now populated with the data 1759 ** from the current row. If using NRE, schedule callbacks to evaluate 1760 ** script pScript, then to invoke this function again to fetch the next 1761 ** row (or clean up if there is no next row or the script throws an 1762 ** exception). After scheduling the callbacks, return control to the 1763 ** caller. 1764 ** 1765 ** If not using NRE, evaluate pScript directly and continue with the 1766 ** next iteration of this while(...) loop. */ 1767 if( DbUseNre() ){ 1768 Tcl_NRAddCallback(interp, DbEvalNextCmd, (void*)p, (void*)pScript, 0, 0); 1769 return Tcl_NREvalObj(interp, pScript, 0); 1770 }else{ 1771 rc = Tcl_EvalObjEx(interp, pScript, 0); 1772 } 1773 } 1774 1775 Tcl_DecrRefCount(pScript); 1776 dbEvalFinalize(p); 1777 Tcl_Free((char *)p); 1778 1779 if( rc==TCL_OK || rc==TCL_BREAK ){ 1780 Tcl_ResetResult(interp); 1781 rc = TCL_OK; 1782 } 1783 return rc; 1784 } 1785 1786 /* 1787 ** This function is used by the implementations of the following database 1788 ** handle sub-commands: 1789 ** 1790 ** $db update_hook ?SCRIPT? 1791 ** $db wal_hook ?SCRIPT? 1792 ** $db commit_hook ?SCRIPT? 1793 ** $db preupdate hook ?SCRIPT? 1794 */ 1795 static void DbHookCmd( 1796 Tcl_Interp *interp, /* Tcl interpreter */ 1797 SqliteDb *pDb, /* Database handle */ 1798 Tcl_Obj *pArg, /* SCRIPT argument (or NULL) */ 1799 Tcl_Obj **ppHook /* Pointer to member of SqliteDb */ 1800 ){ 1801 sqlite3 *db = pDb->db; 1802 1803 if( *ppHook ){ 1804 Tcl_SetObjResult(interp, *ppHook); 1805 if( pArg ){ 1806 Tcl_DecrRefCount(*ppHook); 1807 *ppHook = 0; 1808 } 1809 } 1810 if( pArg ){ 1811 assert( !(*ppHook) ); 1812 if( Tcl_GetCharLength(pArg)>0 ){ 1813 *ppHook = pArg; 1814 Tcl_IncrRefCount(*ppHook); 1815 } 1816 } 1817 1818 #ifdef SQLITE_ENABLE_PREUPDATE_HOOK 1819 sqlite3_preupdate_hook(db, (pDb->pPreUpdateHook?DbPreUpdateHandler:0), pDb); 1820 #endif 1821 sqlite3_update_hook(db, (pDb->pUpdateHook?DbUpdateHandler:0), pDb); 1822 sqlite3_rollback_hook(db, (pDb->pRollbackHook?DbRollbackHandler:0), pDb); 1823 sqlite3_wal_hook(db, (pDb->pWalHook?DbWalHandler:0), pDb); 1824 } 1825 1826 /* 1827 ** The "sqlite" command below creates a new Tcl command for each 1828 ** connection it opens to an SQLite database. This routine is invoked 1829 ** whenever one of those connection-specific commands is executed 1830 ** in Tcl. For example, if you run Tcl code like this: 1831 ** 1832 ** sqlite3 db1 "my_database" 1833 ** db1 close 1834 ** 1835 ** The first command opens a connection to the "my_database" database 1836 ** and calls that connection "db1". The second command causes this 1837 ** subroutine to be invoked. 1838 */ 1839 static int SQLITE_TCLAPI DbObjCmd( 1840 void *cd, 1841 Tcl_Interp *interp, 1842 int objc, 1843 Tcl_Obj *const*objv 1844 ){ 1845 SqliteDb *pDb = (SqliteDb*)cd; 1846 int choice; 1847 int rc = TCL_OK; 1848 static const char *DB_strs[] = { 1849 "authorizer", "backup", "busy", 1850 "cache", "changes", "close", 1851 "collate", "collation_needed", "commit_hook", 1852 "complete", "copy", "deserialize", 1853 "enable_load_extension", "errorcode", "eval", 1854 "exists", "function", "incrblob", 1855 "interrupt", "last_insert_rowid", "nullvalue", 1856 "onecolumn", "preupdate", "profile", 1857 "progress", "rekey", "restore", 1858 "rollback_hook", "serialize", "status", 1859 "timeout", "total_changes", "trace", 1860 "trace_v2", "transaction", "unlock_notify", 1861 "update_hook", "version", "wal_hook", 1862 0 1863 }; 1864 enum DB_enum { 1865 DB_AUTHORIZER, DB_BACKUP, DB_BUSY, 1866 DB_CACHE, DB_CHANGES, DB_CLOSE, 1867 DB_COLLATE, DB_COLLATION_NEEDED, DB_COMMIT_HOOK, 1868 DB_COMPLETE, DB_COPY, DB_DESERIALIZE, 1869 DB_ENABLE_LOAD_EXTENSION, DB_ERRORCODE, DB_EVAL, 1870 DB_EXISTS, DB_FUNCTION, DB_INCRBLOB, 1871 DB_INTERRUPT, DB_LAST_INSERT_ROWID, DB_NULLVALUE, 1872 DB_ONECOLUMN, DB_PREUPDATE, DB_PROFILE, 1873 DB_PROGRESS, DB_REKEY, DB_RESTORE, 1874 DB_ROLLBACK_HOOK, DB_SERIALIZE, DB_STATUS, 1875 DB_TIMEOUT, DB_TOTAL_CHANGES, DB_TRACE, 1876 DB_TRACE_V2, DB_TRANSACTION, DB_UNLOCK_NOTIFY, 1877 DB_UPDATE_HOOK, DB_VERSION, DB_WAL_HOOK 1878 }; 1879 /* don't leave trailing commas on DB_enum, it confuses the AIX xlc compiler */ 1880 1881 if( objc<2 ){ 1882 Tcl_WrongNumArgs(interp, 1, objv, "SUBCOMMAND ..."); 1883 return TCL_ERROR; 1884 } 1885 if( Tcl_GetIndexFromObj(interp, objv[1], DB_strs, "option", 0, &choice) ){ 1886 return TCL_ERROR; 1887 } 1888 1889 switch( (enum DB_enum)choice ){ 1890 1891 /* $db authorizer ?CALLBACK? 1892 ** 1893 ** Invoke the given callback to authorize each SQL operation as it is 1894 ** compiled. 5 arguments are appended to the callback before it is 1895 ** invoked: 1896 ** 1897 ** (1) The authorization type (ex: SQLITE_CREATE_TABLE, SQLITE_INSERT, ...) 1898 ** (2) First descriptive name (depends on authorization type) 1899 ** (3) Second descriptive name 1900 ** (4) Name of the database (ex: "main", "temp") 1901 ** (5) Name of trigger that is doing the access 1902 ** 1903 ** The callback should return on of the following strings: SQLITE_OK, 1904 ** SQLITE_IGNORE, or SQLITE_DENY. Any other return value is an error. 1905 ** 1906 ** If this method is invoked with no arguments, the current authorization 1907 ** callback string is returned. 1908 */ 1909 case DB_AUTHORIZER: { 1910 #ifdef SQLITE_OMIT_AUTHORIZATION 1911 Tcl_AppendResult(interp, "authorization not available in this build", 1912 (char*)0); 1913 return TCL_ERROR; 1914 #else 1915 if( objc>3 ){ 1916 Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?"); 1917 return TCL_ERROR; 1918 }else if( objc==2 ){ 1919 if( pDb->zAuth ){ 1920 Tcl_AppendResult(interp, pDb->zAuth, (char*)0); 1921 } 1922 }else{ 1923 char *zAuth; 1924 int len; 1925 if( pDb->zAuth ){ 1926 Tcl_Free(pDb->zAuth); 1927 } 1928 zAuth = Tcl_GetStringFromObj(objv[2], &len); 1929 if( zAuth && len>0 ){ 1930 pDb->zAuth = Tcl_Alloc( len + 1 ); 1931 memcpy(pDb->zAuth, zAuth, len+1); 1932 }else{ 1933 pDb->zAuth = 0; 1934 } 1935 if( pDb->zAuth ){ 1936 typedef int (*sqlite3_auth_cb)( 1937 void*,int,const char*,const char*, 1938 const char*,const char*); 1939 pDb->interp = interp; 1940 sqlite3_set_authorizer(pDb->db,(sqlite3_auth_cb)auth_callback,pDb); 1941 }else{ 1942 sqlite3_set_authorizer(pDb->db, 0, 0); 1943 } 1944 } 1945 #endif 1946 break; 1947 } 1948 1949 /* $db backup ?DATABASE? FILENAME 1950 ** 1951 ** Open or create a database file named FILENAME. Transfer the 1952 ** content of local database DATABASE (default: "main") into the 1953 ** FILENAME database. 1954 */ 1955 case DB_BACKUP: { 1956 const char *zDestFile; 1957 const char *zSrcDb; 1958 sqlite3 *pDest; 1959 sqlite3_backup *pBackup; 1960 1961 if( objc==3 ){ 1962 zSrcDb = "main"; 1963 zDestFile = Tcl_GetString(objv[2]); 1964 }else if( objc==4 ){ 1965 zSrcDb = Tcl_GetString(objv[2]); 1966 zDestFile = Tcl_GetString(objv[3]); 1967 }else{ 1968 Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE? FILENAME"); 1969 return TCL_ERROR; 1970 } 1971 rc = sqlite3_open_v2(zDestFile, &pDest, 1972 SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE| pDb->openFlags, 0); 1973 if( rc!=SQLITE_OK ){ 1974 Tcl_AppendResult(interp, "cannot open target database: ", 1975 sqlite3_errmsg(pDest), (char*)0); 1976 sqlite3_close(pDest); 1977 return TCL_ERROR; 1978 } 1979 pBackup = sqlite3_backup_init(pDest, "main", pDb->db, zSrcDb); 1980 if( pBackup==0 ){ 1981 Tcl_AppendResult(interp, "backup failed: ", 1982 sqlite3_errmsg(pDest), (char*)0); 1983 sqlite3_close(pDest); 1984 return TCL_ERROR; 1985 } 1986 while( (rc = sqlite3_backup_step(pBackup,100))==SQLITE_OK ){} 1987 sqlite3_backup_finish(pBackup); 1988 if( rc==SQLITE_DONE ){ 1989 rc = TCL_OK; 1990 }else{ 1991 Tcl_AppendResult(interp, "backup failed: ", 1992 sqlite3_errmsg(pDest), (char*)0); 1993 rc = TCL_ERROR; 1994 } 1995 sqlite3_close(pDest); 1996 break; 1997 } 1998 1999 /* $db busy ?CALLBACK? 2000 ** 2001 ** Invoke the given callback if an SQL statement attempts to open 2002 ** a locked database file. 2003 */ 2004 case DB_BUSY: { 2005 if( objc>3 ){ 2006 Tcl_WrongNumArgs(interp, 2, objv, "CALLBACK"); 2007 return TCL_ERROR; 2008 }else if( objc==2 ){ 2009 if( pDb->zBusy ){ 2010 Tcl_AppendResult(interp, pDb->zBusy, (char*)0); 2011 } 2012 }else{ 2013 char *zBusy; 2014 int len; 2015 if( pDb->zBusy ){ 2016 Tcl_Free(pDb->zBusy); 2017 } 2018 zBusy = Tcl_GetStringFromObj(objv[2], &len); 2019 if( zBusy && len>0 ){ 2020 pDb->zBusy = Tcl_Alloc( len + 1 ); 2021 memcpy(pDb->zBusy, zBusy, len+1); 2022 }else{ 2023 pDb->zBusy = 0; 2024 } 2025 if( pDb->zBusy ){ 2026 pDb->interp = interp; 2027 sqlite3_busy_handler(pDb->db, DbBusyHandler, pDb); 2028 }else{ 2029 sqlite3_busy_handler(pDb->db, 0, 0); 2030 } 2031 } 2032 break; 2033 } 2034 2035 /* $db cache flush 2036 ** $db cache size n 2037 ** 2038 ** Flush the prepared statement cache, or set the maximum number of 2039 ** cached statements. 2040 */ 2041 case DB_CACHE: { 2042 char *subCmd; 2043 int n; 2044 2045 if( objc<=2 ){ 2046 Tcl_WrongNumArgs(interp, 1, objv, "cache option ?arg?"); 2047 return TCL_ERROR; 2048 } 2049 subCmd = Tcl_GetStringFromObj( objv[2], 0 ); 2050 if( *subCmd=='f' && strcmp(subCmd,"flush")==0 ){ 2051 if( objc!=3 ){ 2052 Tcl_WrongNumArgs(interp, 2, objv, "flush"); 2053 return TCL_ERROR; 2054 }else{ 2055 flushStmtCache( pDb ); 2056 } 2057 }else if( *subCmd=='s' && strcmp(subCmd,"size")==0 ){ 2058 if( objc!=4 ){ 2059 Tcl_WrongNumArgs(interp, 2, objv, "size n"); 2060 return TCL_ERROR; 2061 }else{ 2062 if( TCL_ERROR==Tcl_GetIntFromObj(interp, objv[3], &n) ){ 2063 Tcl_AppendResult( interp, "cannot convert \"", 2064 Tcl_GetStringFromObj(objv[3],0), "\" to integer", (char*)0); 2065 return TCL_ERROR; 2066 }else{ 2067 if( n<0 ){ 2068 flushStmtCache( pDb ); 2069 n = 0; 2070 }else if( n>MAX_PREPARED_STMTS ){ 2071 n = MAX_PREPARED_STMTS; 2072 } 2073 pDb->maxStmt = n; 2074 } 2075 } 2076 }else{ 2077 Tcl_AppendResult( interp, "bad option \"", 2078 Tcl_GetStringFromObj(objv[2],0), "\": must be flush or size", 2079 (char*)0); 2080 return TCL_ERROR; 2081 } 2082 break; 2083 } 2084 2085 /* $db changes 2086 ** 2087 ** Return the number of rows that were modified, inserted, or deleted by 2088 ** the most recent INSERT, UPDATE or DELETE statement, not including 2089 ** any changes made by trigger programs. 2090 */ 2091 case DB_CHANGES: { 2092 Tcl_Obj *pResult; 2093 if( objc!=2 ){ 2094 Tcl_WrongNumArgs(interp, 2, objv, ""); 2095 return TCL_ERROR; 2096 } 2097 pResult = Tcl_GetObjResult(interp); 2098 Tcl_SetIntObj(pResult, sqlite3_changes(pDb->db)); 2099 break; 2100 } 2101 2102 /* $db close 2103 ** 2104 ** Shutdown the database 2105 */ 2106 case DB_CLOSE: { 2107 Tcl_DeleteCommand(interp, Tcl_GetStringFromObj(objv[0], 0)); 2108 break; 2109 } 2110 2111 /* 2112 ** $db collate NAME SCRIPT 2113 ** 2114 ** Create a new SQL collation function called NAME. Whenever 2115 ** that function is called, invoke SCRIPT to evaluate the function. 2116 */ 2117 case DB_COLLATE: { 2118 SqlCollate *pCollate; 2119 char *zName; 2120 char *zScript; 2121 int nScript; 2122 if( objc!=4 ){ 2123 Tcl_WrongNumArgs(interp, 2, objv, "NAME SCRIPT"); 2124 return TCL_ERROR; 2125 } 2126 zName = Tcl_GetStringFromObj(objv[2], 0); 2127 zScript = Tcl_GetStringFromObj(objv[3], &nScript); 2128 pCollate = (SqlCollate*)Tcl_Alloc( sizeof(*pCollate) + nScript + 1 ); 2129 if( pCollate==0 ) return TCL_ERROR; 2130 pCollate->interp = interp; 2131 pCollate->pNext = pDb->pCollate; 2132 pCollate->zScript = (char*)&pCollate[1]; 2133 pDb->pCollate = pCollate; 2134 memcpy(pCollate->zScript, zScript, nScript+1); 2135 if( sqlite3_create_collation(pDb->db, zName, SQLITE_UTF8, 2136 pCollate, tclSqlCollate) ){ 2137 Tcl_SetResult(interp, (char *)sqlite3_errmsg(pDb->db), TCL_VOLATILE); 2138 return TCL_ERROR; 2139 } 2140 break; 2141 } 2142 2143 /* 2144 ** $db collation_needed SCRIPT 2145 ** 2146 ** Create a new SQL collation function called NAME. Whenever 2147 ** that function is called, invoke SCRIPT to evaluate the function. 2148 */ 2149 case DB_COLLATION_NEEDED: { 2150 if( objc!=3 ){ 2151 Tcl_WrongNumArgs(interp, 2, objv, "SCRIPT"); 2152 return TCL_ERROR; 2153 } 2154 if( pDb->pCollateNeeded ){ 2155 Tcl_DecrRefCount(pDb->pCollateNeeded); 2156 } 2157 pDb->pCollateNeeded = Tcl_DuplicateObj(objv[2]); 2158 Tcl_IncrRefCount(pDb->pCollateNeeded); 2159 sqlite3_collation_needed(pDb->db, pDb, tclCollateNeeded); 2160 break; 2161 } 2162 2163 /* $db commit_hook ?CALLBACK? 2164 ** 2165 ** Invoke the given callback just before committing every SQL transaction. 2166 ** If the callback throws an exception or returns non-zero, then the 2167 ** transaction is aborted. If CALLBACK is an empty string, the callback 2168 ** is disabled. 2169 */ 2170 case DB_COMMIT_HOOK: { 2171 if( objc>3 ){ 2172 Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?"); 2173 return TCL_ERROR; 2174 }else if( objc==2 ){ 2175 if( pDb->zCommit ){ 2176 Tcl_AppendResult(interp, pDb->zCommit, (char*)0); 2177 } 2178 }else{ 2179 const char *zCommit; 2180 int len; 2181 if( pDb->zCommit ){ 2182 Tcl_Free(pDb->zCommit); 2183 } 2184 zCommit = Tcl_GetStringFromObj(objv[2], &len); 2185 if( zCommit && len>0 ){ 2186 pDb->zCommit = Tcl_Alloc( len + 1 ); 2187 memcpy(pDb->zCommit, zCommit, len+1); 2188 }else{ 2189 pDb->zCommit = 0; 2190 } 2191 if( pDb->zCommit ){ 2192 pDb->interp = interp; 2193 sqlite3_commit_hook(pDb->db, DbCommitHandler, pDb); 2194 }else{ 2195 sqlite3_commit_hook(pDb->db, 0, 0); 2196 } 2197 } 2198 break; 2199 } 2200 2201 /* $db complete SQL 2202 ** 2203 ** Return TRUE if SQL is a complete SQL statement. Return FALSE if 2204 ** additional lines of input are needed. This is similar to the 2205 ** built-in "info complete" command of Tcl. 2206 */ 2207 case DB_COMPLETE: { 2208 #ifndef SQLITE_OMIT_COMPLETE 2209 Tcl_Obj *pResult; 2210 int isComplete; 2211 if( objc!=3 ){ 2212 Tcl_WrongNumArgs(interp, 2, objv, "SQL"); 2213 return TCL_ERROR; 2214 } 2215 isComplete = sqlite3_complete( Tcl_GetStringFromObj(objv[2], 0) ); 2216 pResult = Tcl_GetObjResult(interp); 2217 Tcl_SetBooleanObj(pResult, isComplete); 2218 #endif 2219 break; 2220 } 2221 2222 /* $db copy conflict-algorithm table filename ?SEPARATOR? ?NULLINDICATOR? 2223 ** 2224 ** Copy data into table from filename, optionally using SEPARATOR 2225 ** as column separators. If a column contains a null string, or the 2226 ** value of NULLINDICATOR, a NULL is inserted for the column. 2227 ** conflict-algorithm is one of the sqlite conflict algorithms: 2228 ** rollback, abort, fail, ignore, replace 2229 ** On success, return the number of lines processed, not necessarily same 2230 ** as 'db changes' due to conflict-algorithm selected. 2231 ** 2232 ** This code is basically an implementation/enhancement of 2233 ** the sqlite3 shell.c ".import" command. 2234 ** 2235 ** This command usage is equivalent to the sqlite2.x COPY statement, 2236 ** which imports file data into a table using the PostgreSQL COPY file format: 2237 ** $db copy $conflit_algo $table_name $filename \t \\N 2238 */ 2239 case DB_COPY: { 2240 char *zTable; /* Insert data into this table */ 2241 char *zFile; /* The file from which to extract data */ 2242 char *zConflict; /* The conflict algorithm to use */ 2243 sqlite3_stmt *pStmt; /* A statement */ 2244 int nCol; /* Number of columns in the table */ 2245 int nByte; /* Number of bytes in an SQL string */ 2246 int i, j; /* Loop counters */ 2247 int nSep; /* Number of bytes in zSep[] */ 2248 int nNull; /* Number of bytes in zNull[] */ 2249 char *zSql; /* An SQL statement */ 2250 char *zLine; /* A single line of input from the file */ 2251 char **azCol; /* zLine[] broken up into columns */ 2252 const char *zCommit; /* How to commit changes */ 2253 FILE *in; /* The input file */ 2254 int lineno = 0; /* Line number of input file */ 2255 char zLineNum[80]; /* Line number print buffer */ 2256 Tcl_Obj *pResult; /* interp result */ 2257 2258 const char *zSep; 2259 const char *zNull; 2260 if( objc<5 || objc>7 ){ 2261 Tcl_WrongNumArgs(interp, 2, objv, 2262 "CONFLICT-ALGORITHM TABLE FILENAME ?SEPARATOR? ?NULLINDICATOR?"); 2263 return TCL_ERROR; 2264 } 2265 if( objc>=6 ){ 2266 zSep = Tcl_GetStringFromObj(objv[5], 0); 2267 }else{ 2268 zSep = "\t"; 2269 } 2270 if( objc>=7 ){ 2271 zNull = Tcl_GetStringFromObj(objv[6], 0); 2272 }else{ 2273 zNull = ""; 2274 } 2275 zConflict = Tcl_GetStringFromObj(objv[2], 0); 2276 zTable = Tcl_GetStringFromObj(objv[3], 0); 2277 zFile = Tcl_GetStringFromObj(objv[4], 0); 2278 nSep = strlen30(zSep); 2279 nNull = strlen30(zNull); 2280 if( nSep==0 ){ 2281 Tcl_AppendResult(interp,"Error: non-null separator required for copy", 2282 (char*)0); 2283 return TCL_ERROR; 2284 } 2285 if(strcmp(zConflict, "rollback") != 0 && 2286 strcmp(zConflict, "abort" ) != 0 && 2287 strcmp(zConflict, "fail" ) != 0 && 2288 strcmp(zConflict, "ignore" ) != 0 && 2289 strcmp(zConflict, "replace" ) != 0 ) { 2290 Tcl_AppendResult(interp, "Error: \"", zConflict, 2291 "\", conflict-algorithm must be one of: rollback, " 2292 "abort, fail, ignore, or replace", (char*)0); 2293 return TCL_ERROR; 2294 } 2295 zSql = sqlite3_mprintf("SELECT * FROM '%q'", zTable); 2296 if( zSql==0 ){ 2297 Tcl_AppendResult(interp, "Error: no such table: ", zTable, (char*)0); 2298 return TCL_ERROR; 2299 } 2300 nByte = strlen30(zSql); 2301 rc = sqlite3_prepare(pDb->db, zSql, -1, &pStmt, 0); 2302 sqlite3_free(zSql); 2303 if( rc ){ 2304 Tcl_AppendResult(interp, "Error: ", sqlite3_errmsg(pDb->db), (char*)0); 2305 nCol = 0; 2306 }else{ 2307 nCol = sqlite3_column_count(pStmt); 2308 } 2309 sqlite3_finalize(pStmt); 2310 if( nCol==0 ) { 2311 return TCL_ERROR; 2312 } 2313 zSql = malloc( nByte + 50 + nCol*2 ); 2314 if( zSql==0 ) { 2315 Tcl_AppendResult(interp, "Error: can't malloc()", (char*)0); 2316 return TCL_ERROR; 2317 } 2318 sqlite3_snprintf(nByte+50, zSql, "INSERT OR %q INTO '%q' VALUES(?", 2319 zConflict, zTable); 2320 j = strlen30(zSql); 2321 for(i=1; i<nCol; i++){ 2322 zSql[j++] = ','; 2323 zSql[j++] = '?'; 2324 } 2325 zSql[j++] = ')'; 2326 zSql[j] = 0; 2327 rc = sqlite3_prepare(pDb->db, zSql, -1, &pStmt, 0); 2328 free(zSql); 2329 if( rc ){ 2330 Tcl_AppendResult(interp, "Error: ", sqlite3_errmsg(pDb->db), (char*)0); 2331 sqlite3_finalize(pStmt); 2332 return TCL_ERROR; 2333 } 2334 in = fopen(zFile, "rb"); 2335 if( in==0 ){ 2336 Tcl_AppendResult(interp, "Error: cannot open file: ", zFile, (char*)0); 2337 sqlite3_finalize(pStmt); 2338 return TCL_ERROR; 2339 } 2340 azCol = malloc( sizeof(azCol[0])*(nCol+1) ); 2341 if( azCol==0 ) { 2342 Tcl_AppendResult(interp, "Error: can't malloc()", (char*)0); 2343 fclose(in); 2344 return TCL_ERROR; 2345 } 2346 (void)sqlite3_exec(pDb->db, "BEGIN", 0, 0, 0); 2347 zCommit = "COMMIT"; 2348 while( (zLine = local_getline(0, in))!=0 ){ 2349 char *z; 2350 lineno++; 2351 azCol[0] = zLine; 2352 for(i=0, z=zLine; *z; z++){ 2353 if( *z==zSep[0] && strncmp(z, zSep, nSep)==0 ){ 2354 *z = 0; 2355 i++; 2356 if( i<nCol ){ 2357 azCol[i] = &z[nSep]; 2358 z += nSep-1; 2359 } 2360 } 2361 } 2362 if( i+1!=nCol ){ 2363 char *zErr; 2364 int nErr = strlen30(zFile) + 200; 2365 zErr = malloc(nErr); 2366 if( zErr ){ 2367 sqlite3_snprintf(nErr, zErr, 2368 "Error: %s line %d: expected %d columns of data but found %d", 2369 zFile, lineno, nCol, i+1); 2370 Tcl_AppendResult(interp, zErr, (char*)0); 2371 free(zErr); 2372 } 2373 zCommit = "ROLLBACK"; 2374 break; 2375 } 2376 for(i=0; i<nCol; i++){ 2377 /* check for null data, if so, bind as null */ 2378 if( (nNull>0 && strcmp(azCol[i], zNull)==0) 2379 || strlen30(azCol[i])==0 2380 ){ 2381 sqlite3_bind_null(pStmt, i+1); 2382 }else{ 2383 sqlite3_bind_text(pStmt, i+1, azCol[i], -1, SQLITE_STATIC); 2384 } 2385 } 2386 sqlite3_step(pStmt); 2387 rc = sqlite3_reset(pStmt); 2388 free(zLine); 2389 if( rc!=SQLITE_OK ){ 2390 Tcl_AppendResult(interp,"Error: ", sqlite3_errmsg(pDb->db), (char*)0); 2391 zCommit = "ROLLBACK"; 2392 break; 2393 } 2394 } 2395 free(azCol); 2396 fclose(in); 2397 sqlite3_finalize(pStmt); 2398 (void)sqlite3_exec(pDb->db, zCommit, 0, 0, 0); 2399 2400 if( zCommit[0] == 'C' ){ 2401 /* success, set result as number of lines processed */ 2402 pResult = Tcl_GetObjResult(interp); 2403 Tcl_SetIntObj(pResult, lineno); 2404 rc = TCL_OK; 2405 }else{ 2406 /* failure, append lineno where failed */ 2407 sqlite3_snprintf(sizeof(zLineNum), zLineNum,"%d",lineno); 2408 Tcl_AppendResult(interp,", failed while processing line: ",zLineNum, 2409 (char*)0); 2410 rc = TCL_ERROR; 2411 } 2412 break; 2413 } 2414 2415 /* 2416 ** $db deserialize ?DATABASE? VALUE 2417 ** 2418 ** Reopen DATABASE (default "main") using the content in $VALUE 2419 */ 2420 case DB_DESERIALIZE: { 2421 #ifndef SQLITE_ENABLE_MEMDB 2422 Tcl_AppendResult(interp, "MEMDB not available in this build", 2423 (char*)0); 2424 rc = TCL_ERROR; 2425 #else 2426 const char *zSchema; 2427 Tcl_Obj *pValue; 2428 unsigned char *pBA; 2429 unsigned char *pData; 2430 int len, xrc; 2431 2432 if( objc==3 ){ 2433 zSchema = 0; 2434 pValue = objv[2]; 2435 }else if( objc==4 ){ 2436 zSchema = Tcl_GetString(objv[2]); 2437 pValue = objv[3]; 2438 }else{ 2439 Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE? VALUE"); 2440 rc = TCL_ERROR; 2441 break; 2442 } 2443 pBA = Tcl_GetByteArrayFromObj(pValue, &len); 2444 pData = sqlite3_malloc64( len ); 2445 if( pData==0 && len>0 ){ 2446 Tcl_AppendResult(interp, "out of memory", (char*)0); 2447 rc = TCL_ERROR; 2448 }else{ 2449 if( len>0 ) memcpy(pData, pBA, len); 2450 xrc = sqlite3_deserialize(pDb->db, zSchema, pData, len, len, 2451 SQLITE_DESERIALIZE_FREEONCLOSE | 2452 SQLITE_DESERIALIZE_RESIZEABLE); 2453 if( xrc ){ 2454 Tcl_AppendResult(interp, "unable to set MEMDB content", (char*)0); 2455 rc = TCL_ERROR; 2456 } 2457 } 2458 #endif 2459 break; 2460 } 2461 2462 /* 2463 ** $db enable_load_extension BOOLEAN 2464 ** 2465 ** Turn the extension loading feature on or off. It if off by 2466 ** default. 2467 */ 2468 case DB_ENABLE_LOAD_EXTENSION: { 2469 #ifndef SQLITE_OMIT_LOAD_EXTENSION 2470 int onoff; 2471 if( objc!=3 ){ 2472 Tcl_WrongNumArgs(interp, 2, objv, "BOOLEAN"); 2473 return TCL_ERROR; 2474 } 2475 if( Tcl_GetBooleanFromObj(interp, objv[2], &onoff) ){ 2476 return TCL_ERROR; 2477 } 2478 sqlite3_enable_load_extension(pDb->db, onoff); 2479 break; 2480 #else 2481 Tcl_AppendResult(interp, "extension loading is turned off at compile-time", 2482 (char*)0); 2483 return TCL_ERROR; 2484 #endif 2485 } 2486 2487 /* 2488 ** $db errorcode 2489 ** 2490 ** Return the numeric error code that was returned by the most recent 2491 ** call to sqlite3_exec(). 2492 */ 2493 case DB_ERRORCODE: { 2494 Tcl_SetObjResult(interp, Tcl_NewIntObj(sqlite3_errcode(pDb->db))); 2495 break; 2496 } 2497 2498 /* 2499 ** $db exists $sql 2500 ** $db onecolumn $sql 2501 ** 2502 ** The onecolumn method is the equivalent of: 2503 ** lindex [$db eval $sql] 0 2504 */ 2505 case DB_EXISTS: 2506 case DB_ONECOLUMN: { 2507 Tcl_Obj *pResult = 0; 2508 DbEvalContext sEval; 2509 if( objc!=3 ){ 2510 Tcl_WrongNumArgs(interp, 2, objv, "SQL"); 2511 return TCL_ERROR; 2512 } 2513 2514 dbEvalInit(&sEval, pDb, objv[2], 0, 0); 2515 rc = dbEvalStep(&sEval); 2516 if( choice==DB_ONECOLUMN ){ 2517 if( rc==TCL_OK ){ 2518 pResult = dbEvalColumnValue(&sEval, 0); 2519 }else if( rc==TCL_BREAK ){ 2520 Tcl_ResetResult(interp); 2521 } 2522 }else if( rc==TCL_BREAK || rc==TCL_OK ){ 2523 pResult = Tcl_NewBooleanObj(rc==TCL_OK); 2524 } 2525 dbEvalFinalize(&sEval); 2526 if( pResult ) Tcl_SetObjResult(interp, pResult); 2527 2528 if( rc==TCL_BREAK ){ 2529 rc = TCL_OK; 2530 } 2531 break; 2532 } 2533 2534 /* 2535 ** $db eval ?options? $sql ?array? ?{ ...code... }? 2536 ** 2537 ** The SQL statement in $sql is evaluated. For each row, the values are 2538 ** placed in elements of the array named "array" and ...code... is executed. 2539 ** If "array" and "code" are omitted, then no callback is every invoked. 2540 ** If "array" is an empty string, then the values are placed in variables 2541 ** that have the same name as the fields extracted by the query. 2542 */ 2543 case DB_EVAL: { 2544 int evalFlags = 0; 2545 const char *zOpt; 2546 while( objc>3 && (zOpt = Tcl_GetString(objv[2]))!=0 && zOpt[0]=='-' ){ 2547 if( strcmp(zOpt, "-withoutnulls")==0 ){ 2548 evalFlags |= SQLITE_EVAL_WITHOUTNULLS; 2549 } 2550 else{ 2551 Tcl_AppendResult(interp, "unknown option: \"", zOpt, "\"", (void*)0); 2552 return TCL_ERROR; 2553 } 2554 objc--; 2555 objv++; 2556 } 2557 if( objc<3 || objc>5 ){ 2558 Tcl_WrongNumArgs(interp, 2, objv, 2559 "?OPTIONS? SQL ?ARRAY-NAME? ?SCRIPT?"); 2560 return TCL_ERROR; 2561 } 2562 2563 if( objc==3 ){ 2564 DbEvalContext sEval; 2565 Tcl_Obj *pRet = Tcl_NewObj(); 2566 Tcl_IncrRefCount(pRet); 2567 dbEvalInit(&sEval, pDb, objv[2], 0, 0); 2568 while( TCL_OK==(rc = dbEvalStep(&sEval)) ){ 2569 int i; 2570 int nCol; 2571 dbEvalRowInfo(&sEval, &nCol, 0); 2572 for(i=0; i<nCol; i++){ 2573 Tcl_ListObjAppendElement(interp, pRet, dbEvalColumnValue(&sEval, i)); 2574 } 2575 } 2576 dbEvalFinalize(&sEval); 2577 if( rc==TCL_BREAK ){ 2578 Tcl_SetObjResult(interp, pRet); 2579 rc = TCL_OK; 2580 } 2581 Tcl_DecrRefCount(pRet); 2582 }else{ 2583 ClientData cd2[2]; 2584 DbEvalContext *p; 2585 Tcl_Obj *pArray = 0; 2586 Tcl_Obj *pScript; 2587 2588 if( objc>=5 && *(char *)Tcl_GetString(objv[3]) ){ 2589 pArray = objv[3]; 2590 } 2591 pScript = objv[objc-1]; 2592 Tcl_IncrRefCount(pScript); 2593 2594 p = (DbEvalContext *)Tcl_Alloc(sizeof(DbEvalContext)); 2595 dbEvalInit(p, pDb, objv[2], pArray, evalFlags); 2596 2597 cd2[0] = (void *)p; 2598 cd2[1] = (void *)pScript; 2599 rc = DbEvalNextCmd(cd2, interp, TCL_OK); 2600 } 2601 break; 2602 } 2603 2604 /* 2605 ** $db function NAME [-argcount N] [-deterministic] SCRIPT 2606 ** 2607 ** Create a new SQL function called NAME. Whenever that function is 2608 ** called, invoke SCRIPT to evaluate the function. 2609 */ 2610 case DB_FUNCTION: { 2611 int flags = SQLITE_UTF8; 2612 SqlFunc *pFunc; 2613 Tcl_Obj *pScript; 2614 char *zName; 2615 int nArg = -1; 2616 int i; 2617 if( objc<4 ){ 2618 Tcl_WrongNumArgs(interp, 2, objv, "NAME ?SWITCHES? SCRIPT"); 2619 return TCL_ERROR; 2620 } 2621 for(i=3; i<(objc-1); i++){ 2622 const char *z = Tcl_GetString(objv[i]); 2623 int n = strlen30(z); 2624 if( n>2 && strncmp(z, "-argcount",n)==0 ){ 2625 if( i==(objc-2) ){ 2626 Tcl_AppendResult(interp, "option requires an argument: ", z,(char*)0); 2627 return TCL_ERROR; 2628 } 2629 if( Tcl_GetIntFromObj(interp, objv[i+1], &nArg) ) return TCL_ERROR; 2630 if( nArg<0 ){ 2631 Tcl_AppendResult(interp, "number of arguments must be non-negative", 2632 (char*)0); 2633 return TCL_ERROR; 2634 } 2635 i++; 2636 }else 2637 if( n>2 && strncmp(z, "-deterministic",n)==0 ){ 2638 flags |= SQLITE_DETERMINISTIC; 2639 }else{ 2640 Tcl_AppendResult(interp, "bad option \"", z, 2641 "\": must be -argcount or -deterministic", (char*)0 2642 ); 2643 return TCL_ERROR; 2644 } 2645 } 2646 2647 pScript = objv[objc-1]; 2648 zName = Tcl_GetStringFromObj(objv[2], 0); 2649 pFunc = findSqlFunc(pDb, zName); 2650 if( pFunc==0 ) return TCL_ERROR; 2651 if( pFunc->pScript ){ 2652 Tcl_DecrRefCount(pFunc->pScript); 2653 } 2654 pFunc->pScript = pScript; 2655 Tcl_IncrRefCount(pScript); 2656 pFunc->useEvalObjv = safeToUseEvalObjv(interp, pScript); 2657 rc = sqlite3_create_function(pDb->db, zName, nArg, flags, 2658 pFunc, tclSqlFunc, 0, 0); 2659 if( rc!=SQLITE_OK ){ 2660 rc = TCL_ERROR; 2661 Tcl_SetResult(interp, (char *)sqlite3_errmsg(pDb->db), TCL_VOLATILE); 2662 } 2663 break; 2664 } 2665 2666 /* 2667 ** $db incrblob ?-readonly? ?DB? TABLE COLUMN ROWID 2668 */ 2669 case DB_INCRBLOB: { 2670 #ifdef SQLITE_OMIT_INCRBLOB 2671 Tcl_AppendResult(interp, "incrblob not available in this build", (char*)0); 2672 return TCL_ERROR; 2673 #else 2674 int isReadonly = 0; 2675 const char *zDb = "main"; 2676 const char *zTable; 2677 const char *zColumn; 2678 Tcl_WideInt iRow; 2679 2680 /* Check for the -readonly option */ 2681 if( objc>3 && strcmp(Tcl_GetString(objv[2]), "-readonly")==0 ){ 2682 isReadonly = 1; 2683 } 2684 2685 if( objc!=(5+isReadonly) && objc!=(6+isReadonly) ){ 2686 Tcl_WrongNumArgs(interp, 2, objv, "?-readonly? ?DB? TABLE COLUMN ROWID"); 2687 return TCL_ERROR; 2688 } 2689 2690 if( objc==(6+isReadonly) ){ 2691 zDb = Tcl_GetString(objv[2]); 2692 } 2693 zTable = Tcl_GetString(objv[objc-3]); 2694 zColumn = Tcl_GetString(objv[objc-2]); 2695 rc = Tcl_GetWideIntFromObj(interp, objv[objc-1], &iRow); 2696 2697 if( rc==TCL_OK ){ 2698 rc = createIncrblobChannel( 2699 interp, pDb, zDb, zTable, zColumn, (sqlite3_int64)iRow, isReadonly 2700 ); 2701 } 2702 #endif 2703 break; 2704 } 2705 2706 /* 2707 ** $db interrupt 2708 ** 2709 ** Interrupt the execution of the inner-most SQL interpreter. This 2710 ** causes the SQL statement to return an error of SQLITE_INTERRUPT. 2711 */ 2712 case DB_INTERRUPT: { 2713 sqlite3_interrupt(pDb->db); 2714 break; 2715 } 2716 2717 /* 2718 ** $db nullvalue ?STRING? 2719 ** 2720 ** Change text used when a NULL comes back from the database. If ?STRING? 2721 ** is not present, then the current string used for NULL is returned. 2722 ** If STRING is present, then STRING is returned. 2723 ** 2724 */ 2725 case DB_NULLVALUE: { 2726 if( objc!=2 && objc!=3 ){ 2727 Tcl_WrongNumArgs(interp, 2, objv, "NULLVALUE"); 2728 return TCL_ERROR; 2729 } 2730 if( objc==3 ){ 2731 int len; 2732 char *zNull = Tcl_GetStringFromObj(objv[2], &len); 2733 if( pDb->zNull ){ 2734 Tcl_Free(pDb->zNull); 2735 } 2736 if( zNull && len>0 ){ 2737 pDb->zNull = Tcl_Alloc( len + 1 ); 2738 memcpy(pDb->zNull, zNull, len); 2739 pDb->zNull[len] = '\0'; 2740 }else{ 2741 pDb->zNull = 0; 2742 } 2743 } 2744 Tcl_SetObjResult(interp, Tcl_NewStringObj(pDb->zNull, -1)); 2745 break; 2746 } 2747 2748 /* 2749 ** $db last_insert_rowid 2750 ** 2751 ** Return an integer which is the ROWID for the most recent insert. 2752 */ 2753 case DB_LAST_INSERT_ROWID: { 2754 Tcl_Obj *pResult; 2755 Tcl_WideInt rowid; 2756 if( objc!=2 ){ 2757 Tcl_WrongNumArgs(interp, 2, objv, ""); 2758 return TCL_ERROR; 2759 } 2760 rowid = sqlite3_last_insert_rowid(pDb->db); 2761 pResult = Tcl_GetObjResult(interp); 2762 Tcl_SetWideIntObj(pResult, rowid); 2763 break; 2764 } 2765 2766 /* 2767 ** The DB_ONECOLUMN method is implemented together with DB_EXISTS. 2768 */ 2769 2770 /* $db progress ?N CALLBACK? 2771 ** 2772 ** Invoke the given callback every N virtual machine opcodes while executing 2773 ** queries. 2774 */ 2775 case DB_PROGRESS: { 2776 if( objc==2 ){ 2777 if( pDb->zProgress ){ 2778 Tcl_AppendResult(interp, pDb->zProgress, (char*)0); 2779 } 2780 }else if( objc==4 ){ 2781 char *zProgress; 2782 int len; 2783 int N; 2784 if( TCL_OK!=Tcl_GetIntFromObj(interp, objv[2], &N) ){ 2785 return TCL_ERROR; 2786 }; 2787 if( pDb->zProgress ){ 2788 Tcl_Free(pDb->zProgress); 2789 } 2790 zProgress = Tcl_GetStringFromObj(objv[3], &len); 2791 if( zProgress && len>0 ){ 2792 pDb->zProgress = Tcl_Alloc( len + 1 ); 2793 memcpy(pDb->zProgress, zProgress, len+1); 2794 }else{ 2795 pDb->zProgress = 0; 2796 } 2797 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK 2798 if( pDb->zProgress ){ 2799 pDb->interp = interp; 2800 sqlite3_progress_handler(pDb->db, N, DbProgressHandler, pDb); 2801 }else{ 2802 sqlite3_progress_handler(pDb->db, 0, 0, 0); 2803 } 2804 #endif 2805 }else{ 2806 Tcl_WrongNumArgs(interp, 2, objv, "N CALLBACK"); 2807 return TCL_ERROR; 2808 } 2809 break; 2810 } 2811 2812 /* $db profile ?CALLBACK? 2813 ** 2814 ** Make arrangements to invoke the CALLBACK routine after each SQL statement 2815 ** that has run. The text of the SQL and the amount of elapse time are 2816 ** appended to CALLBACK before the script is run. 2817 */ 2818 case DB_PROFILE: { 2819 if( objc>3 ){ 2820 Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?"); 2821 return TCL_ERROR; 2822 }else if( objc==2 ){ 2823 if( pDb->zProfile ){ 2824 Tcl_AppendResult(interp, pDb->zProfile, (char*)0); 2825 } 2826 }else{ 2827 char *zProfile; 2828 int len; 2829 if( pDb->zProfile ){ 2830 Tcl_Free(pDb->zProfile); 2831 } 2832 zProfile = Tcl_GetStringFromObj(objv[2], &len); 2833 if( zProfile && len>0 ){ 2834 pDb->zProfile = Tcl_Alloc( len + 1 ); 2835 memcpy(pDb->zProfile, zProfile, len+1); 2836 }else{ 2837 pDb->zProfile = 0; 2838 } 2839 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \ 2840 !defined(SQLITE_OMIT_DEPRECATED) 2841 if( pDb->zProfile ){ 2842 pDb->interp = interp; 2843 sqlite3_profile(pDb->db, DbProfileHandler, pDb); 2844 }else{ 2845 sqlite3_profile(pDb->db, 0, 0); 2846 } 2847 #endif 2848 } 2849 break; 2850 } 2851 2852 /* 2853 ** $db rekey KEY 2854 ** 2855 ** Change the encryption key on the currently open database. 2856 */ 2857 case DB_REKEY: { 2858 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL) 2859 int nKey; 2860 void *pKey; 2861 #endif 2862 if( objc!=3 ){ 2863 Tcl_WrongNumArgs(interp, 2, objv, "KEY"); 2864 return TCL_ERROR; 2865 } 2866 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL) 2867 pKey = Tcl_GetByteArrayFromObj(objv[2], &nKey); 2868 rc = sqlite3_rekey(pDb->db, pKey, nKey); 2869 if( rc ){ 2870 Tcl_AppendResult(interp, sqlite3_errstr(rc), (char*)0); 2871 rc = TCL_ERROR; 2872 } 2873 #endif 2874 break; 2875 } 2876 2877 /* $db restore ?DATABASE? FILENAME 2878 ** 2879 ** Open a database file named FILENAME. Transfer the content 2880 ** of FILENAME into the local database DATABASE (default: "main"). 2881 */ 2882 case DB_RESTORE: { 2883 const char *zSrcFile; 2884 const char *zDestDb; 2885 sqlite3 *pSrc; 2886 sqlite3_backup *pBackup; 2887 int nTimeout = 0; 2888 2889 if( objc==3 ){ 2890 zDestDb = "main"; 2891 zSrcFile = Tcl_GetString(objv[2]); 2892 }else if( objc==4 ){ 2893 zDestDb = Tcl_GetString(objv[2]); 2894 zSrcFile = Tcl_GetString(objv[3]); 2895 }else{ 2896 Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE? FILENAME"); 2897 return TCL_ERROR; 2898 } 2899 rc = sqlite3_open_v2(zSrcFile, &pSrc, 2900 SQLITE_OPEN_READONLY | pDb->openFlags, 0); 2901 if( rc!=SQLITE_OK ){ 2902 Tcl_AppendResult(interp, "cannot open source database: ", 2903 sqlite3_errmsg(pSrc), (char*)0); 2904 sqlite3_close(pSrc); 2905 return TCL_ERROR; 2906 } 2907 pBackup = sqlite3_backup_init(pDb->db, zDestDb, pSrc, "main"); 2908 if( pBackup==0 ){ 2909 Tcl_AppendResult(interp, "restore failed: ", 2910 sqlite3_errmsg(pDb->db), (char*)0); 2911 sqlite3_close(pSrc); 2912 return TCL_ERROR; 2913 } 2914 while( (rc = sqlite3_backup_step(pBackup,100))==SQLITE_OK 2915 || rc==SQLITE_BUSY ){ 2916 if( rc==SQLITE_BUSY ){ 2917 if( nTimeout++ >= 3 ) break; 2918 sqlite3_sleep(100); 2919 } 2920 } 2921 sqlite3_backup_finish(pBackup); 2922 if( rc==SQLITE_DONE ){ 2923 rc = TCL_OK; 2924 }else if( rc==SQLITE_BUSY || rc==SQLITE_LOCKED ){ 2925 Tcl_AppendResult(interp, "restore failed: source database busy", 2926 (char*)0); 2927 rc = TCL_ERROR; 2928 }else{ 2929 Tcl_AppendResult(interp, "restore failed: ", 2930 sqlite3_errmsg(pDb->db), (char*)0); 2931 rc = TCL_ERROR; 2932 } 2933 sqlite3_close(pSrc); 2934 break; 2935 } 2936 2937 /* 2938 ** $db serialize ?DATABASE? 2939 ** 2940 ** Return a serialization of a database. 2941 */ 2942 case DB_SERIALIZE: { 2943 #ifndef SQLITE_ENABLE_MEMDB 2944 Tcl_AppendResult(interp, "MEMDB not available in this build", 2945 (char*)0); 2946 rc = TCL_ERROR; 2947 #else 2948 const char *zSchema = objc>=3 ? Tcl_GetString(objv[2]) : "main"; 2949 sqlite3_int64 sz = 0; 2950 unsigned char *pData; 2951 if( objc!=2 && objc!=3 ){ 2952 Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE?"); 2953 rc = TCL_ERROR; 2954 }else{ 2955 int needFree; 2956 pData = sqlite3_serialize(pDb->db, zSchema, &sz, SQLITE_SERIALIZE_NOCOPY); 2957 if( pData ){ 2958 needFree = 0; 2959 }else{ 2960 pData = sqlite3_serialize(pDb->db, zSchema, &sz, 0); 2961 needFree = 1; 2962 } 2963 Tcl_SetObjResult(interp, Tcl_NewByteArrayObj(pData,sz)); 2964 if( needFree ) sqlite3_free(pData); 2965 } 2966 #endif 2967 break; 2968 } 2969 2970 /* 2971 ** $db status (step|sort|autoindex|vmstep) 2972 ** 2973 ** Display SQLITE_STMTSTATUS_FULLSCAN_STEP or 2974 ** SQLITE_STMTSTATUS_SORT for the most recent eval. 2975 */ 2976 case DB_STATUS: { 2977 int v; 2978 const char *zOp; 2979 if( objc!=3 ){ 2980 Tcl_WrongNumArgs(interp, 2, objv, "(step|sort|autoindex)"); 2981 return TCL_ERROR; 2982 } 2983 zOp = Tcl_GetString(objv[2]); 2984 if( strcmp(zOp, "step")==0 ){ 2985 v = pDb->nStep; 2986 }else if( strcmp(zOp, "sort")==0 ){ 2987 v = pDb->nSort; 2988 }else if( strcmp(zOp, "autoindex")==0 ){ 2989 v = pDb->nIndex; 2990 }else if( strcmp(zOp, "vmstep")==0 ){ 2991 v = pDb->nVMStep; 2992 }else{ 2993 Tcl_AppendResult(interp, 2994 "bad argument: should be autoindex, step, sort or vmstep", 2995 (char*)0); 2996 return TCL_ERROR; 2997 } 2998 Tcl_SetObjResult(interp, Tcl_NewIntObj(v)); 2999 break; 3000 } 3001 3002 /* 3003 ** $db timeout MILLESECONDS 3004 ** 3005 ** Delay for the number of milliseconds specified when a file is locked. 3006 */ 3007 case DB_TIMEOUT: { 3008 int ms; 3009 if( objc!=3 ){ 3010 Tcl_WrongNumArgs(interp, 2, objv, "MILLISECONDS"); 3011 return TCL_ERROR; 3012 } 3013 if( Tcl_GetIntFromObj(interp, objv[2], &ms) ) return TCL_ERROR; 3014 sqlite3_busy_timeout(pDb->db, ms); 3015 break; 3016 } 3017 3018 /* 3019 ** $db total_changes 3020 ** 3021 ** Return the number of rows that were modified, inserted, or deleted 3022 ** since the database handle was created. 3023 */ 3024 case DB_TOTAL_CHANGES: { 3025 Tcl_Obj *pResult; 3026 if( objc!=2 ){ 3027 Tcl_WrongNumArgs(interp, 2, objv, ""); 3028 return TCL_ERROR; 3029 } 3030 pResult = Tcl_GetObjResult(interp); 3031 Tcl_SetIntObj(pResult, sqlite3_total_changes(pDb->db)); 3032 break; 3033 } 3034 3035 /* $db trace ?CALLBACK? 3036 ** 3037 ** Make arrangements to invoke the CALLBACK routine for each SQL statement 3038 ** that is executed. The text of the SQL is appended to CALLBACK before 3039 ** it is executed. 3040 */ 3041 case DB_TRACE: { 3042 if( objc>3 ){ 3043 Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?"); 3044 return TCL_ERROR; 3045 }else if( objc==2 ){ 3046 if( pDb->zTrace ){ 3047 Tcl_AppendResult(interp, pDb->zTrace, (char*)0); 3048 } 3049 }else{ 3050 char *zTrace; 3051 int len; 3052 if( pDb->zTrace ){ 3053 Tcl_Free(pDb->zTrace); 3054 } 3055 zTrace = Tcl_GetStringFromObj(objv[2], &len); 3056 if( zTrace && len>0 ){ 3057 pDb->zTrace = Tcl_Alloc( len + 1 ); 3058 memcpy(pDb->zTrace, zTrace, len+1); 3059 }else{ 3060 pDb->zTrace = 0; 3061 } 3062 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \ 3063 !defined(SQLITE_OMIT_DEPRECATED) 3064 if( pDb->zTrace ){ 3065 pDb->interp = interp; 3066 sqlite3_trace(pDb->db, DbTraceHandler, pDb); 3067 }else{ 3068 sqlite3_trace(pDb->db, 0, 0); 3069 } 3070 #endif 3071 } 3072 break; 3073 } 3074 3075 /* $db trace_v2 ?CALLBACK? ?MASK? 3076 ** 3077 ** Make arrangements to invoke the CALLBACK routine for each trace event 3078 ** matching the mask that is generated. The parameters are appended to 3079 ** CALLBACK before it is executed. 3080 */ 3081 case DB_TRACE_V2: { 3082 if( objc>4 ){ 3083 Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK? ?MASK?"); 3084 return TCL_ERROR; 3085 }else if( objc==2 ){ 3086 if( pDb->zTraceV2 ){ 3087 Tcl_AppendResult(interp, pDb->zTraceV2, (char*)0); 3088 } 3089 }else{ 3090 char *zTraceV2; 3091 int len; 3092 Tcl_WideInt wMask = 0; 3093 if( objc==4 ){ 3094 static const char *TTYPE_strs[] = { 3095 "statement", "profile", "row", "close", 0 3096 }; 3097 enum TTYPE_enum { 3098 TTYPE_STMT, TTYPE_PROFILE, TTYPE_ROW, TTYPE_CLOSE 3099 }; 3100 int i; 3101 if( TCL_OK!=Tcl_ListObjLength(interp, objv[3], &len) ){ 3102 return TCL_ERROR; 3103 } 3104 for(i=0; i<len; i++){ 3105 Tcl_Obj *pObj; 3106 int ttype; 3107 if( TCL_OK!=Tcl_ListObjIndex(interp, objv[3], i, &pObj) ){ 3108 return TCL_ERROR; 3109 } 3110 if( Tcl_GetIndexFromObj(interp, pObj, TTYPE_strs, "trace type", 3111 0, &ttype)!=TCL_OK ){ 3112 Tcl_WideInt wType; 3113 Tcl_Obj *pError = Tcl_DuplicateObj(Tcl_GetObjResult(interp)); 3114 Tcl_IncrRefCount(pError); 3115 if( TCL_OK==Tcl_GetWideIntFromObj(interp, pObj, &wType) ){ 3116 Tcl_DecrRefCount(pError); 3117 wMask |= wType; 3118 }else{ 3119 Tcl_SetObjResult(interp, pError); 3120 Tcl_DecrRefCount(pError); 3121 return TCL_ERROR; 3122 } 3123 }else{ 3124 switch( (enum TTYPE_enum)ttype ){ 3125 case TTYPE_STMT: wMask |= SQLITE_TRACE_STMT; break; 3126 case TTYPE_PROFILE: wMask |= SQLITE_TRACE_PROFILE; break; 3127 case TTYPE_ROW: wMask |= SQLITE_TRACE_ROW; break; 3128 case TTYPE_CLOSE: wMask |= SQLITE_TRACE_CLOSE; break; 3129 } 3130 } 3131 } 3132 }else{ 3133 wMask = SQLITE_TRACE_STMT; /* use the "legacy" default */ 3134 } 3135 if( pDb->zTraceV2 ){ 3136 Tcl_Free(pDb->zTraceV2); 3137 } 3138 zTraceV2 = Tcl_GetStringFromObj(objv[2], &len); 3139 if( zTraceV2 && len>0 ){ 3140 pDb->zTraceV2 = Tcl_Alloc( len + 1 ); 3141 memcpy(pDb->zTraceV2, zTraceV2, len+1); 3142 }else{ 3143 pDb->zTraceV2 = 0; 3144 } 3145 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) 3146 if( pDb->zTraceV2 ){ 3147 pDb->interp = interp; 3148 sqlite3_trace_v2(pDb->db, (unsigned)wMask, DbTraceV2Handler, pDb); 3149 }else{ 3150 sqlite3_trace_v2(pDb->db, 0, 0, 0); 3151 } 3152 #endif 3153 } 3154 break; 3155 } 3156 3157 /* $db transaction [-deferred|-immediate|-exclusive] SCRIPT 3158 ** 3159 ** Start a new transaction (if we are not already in the midst of a 3160 ** transaction) and execute the TCL script SCRIPT. After SCRIPT 3161 ** completes, either commit the transaction or roll it back if SCRIPT 3162 ** throws an exception. Or if no new transation was started, do nothing. 3163 ** pass the exception on up the stack. 3164 ** 3165 ** This command was inspired by Dave Thomas's talk on Ruby at the 3166 ** 2005 O'Reilly Open Source Convention (OSCON). 3167 */ 3168 case DB_TRANSACTION: { 3169 Tcl_Obj *pScript; 3170 const char *zBegin = "SAVEPOINT _tcl_transaction"; 3171 if( objc!=3 && objc!=4 ){ 3172 Tcl_WrongNumArgs(interp, 2, objv, "[TYPE] SCRIPT"); 3173 return TCL_ERROR; 3174 } 3175 3176 if( pDb->nTransaction==0 && objc==4 ){ 3177 static const char *TTYPE_strs[] = { 3178 "deferred", "exclusive", "immediate", 0 3179 }; 3180 enum TTYPE_enum { 3181 TTYPE_DEFERRED, TTYPE_EXCLUSIVE, TTYPE_IMMEDIATE 3182 }; 3183 int ttype; 3184 if( Tcl_GetIndexFromObj(interp, objv[2], TTYPE_strs, "transaction type", 3185 0, &ttype) ){ 3186 return TCL_ERROR; 3187 } 3188 switch( (enum TTYPE_enum)ttype ){ 3189 case TTYPE_DEFERRED: /* no-op */; break; 3190 case TTYPE_EXCLUSIVE: zBegin = "BEGIN EXCLUSIVE"; break; 3191 case TTYPE_IMMEDIATE: zBegin = "BEGIN IMMEDIATE"; break; 3192 } 3193 } 3194 pScript = objv[objc-1]; 3195 3196 /* Run the SQLite BEGIN command to open a transaction or savepoint. */ 3197 pDb->disableAuth++; 3198 rc = sqlite3_exec(pDb->db, zBegin, 0, 0, 0); 3199 pDb->disableAuth--; 3200 if( rc!=SQLITE_OK ){ 3201 Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0); 3202 return TCL_ERROR; 3203 } 3204 pDb->nTransaction++; 3205 3206 /* If using NRE, schedule a callback to invoke the script pScript, then 3207 ** a second callback to commit (or rollback) the transaction or savepoint 3208 ** opened above. If not using NRE, evaluate the script directly, then 3209 ** call function DbTransPostCmd() to commit (or rollback) the transaction 3210 ** or savepoint. */ 3211 if( DbUseNre() ){ 3212 Tcl_NRAddCallback(interp, DbTransPostCmd, cd, 0, 0, 0); 3213 (void)Tcl_NREvalObj(interp, pScript, 0); 3214 }else{ 3215 rc = DbTransPostCmd(&cd, interp, Tcl_EvalObjEx(interp, pScript, 0)); 3216 } 3217 break; 3218 } 3219 3220 /* 3221 ** $db unlock_notify ?script? 3222 */ 3223 case DB_UNLOCK_NOTIFY: { 3224 #ifndef SQLITE_ENABLE_UNLOCK_NOTIFY 3225 Tcl_AppendResult(interp, "unlock_notify not available in this build", 3226 (char*)0); 3227 rc = TCL_ERROR; 3228 #else 3229 if( objc!=2 && objc!=3 ){ 3230 Tcl_WrongNumArgs(interp, 2, objv, "?SCRIPT?"); 3231 rc = TCL_ERROR; 3232 }else{ 3233 void (*xNotify)(void **, int) = 0; 3234 void *pNotifyArg = 0; 3235 3236 if( pDb->pUnlockNotify ){ 3237 Tcl_DecrRefCount(pDb->pUnlockNotify); 3238 pDb->pUnlockNotify = 0; 3239 } 3240 3241 if( objc==3 ){ 3242 xNotify = DbUnlockNotify; 3243 pNotifyArg = (void *)pDb; 3244 pDb->pUnlockNotify = objv[2]; 3245 Tcl_IncrRefCount(pDb->pUnlockNotify); 3246 } 3247 3248 if( sqlite3_unlock_notify(pDb->db, xNotify, pNotifyArg) ){ 3249 Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0); 3250 rc = TCL_ERROR; 3251 } 3252 } 3253 #endif 3254 break; 3255 } 3256 3257 /* 3258 ** $db preupdate_hook count 3259 ** $db preupdate_hook hook ?SCRIPT? 3260 ** $db preupdate_hook new INDEX 3261 ** $db preupdate_hook old INDEX 3262 */ 3263 case DB_PREUPDATE: { 3264 #ifndef SQLITE_ENABLE_PREUPDATE_HOOK 3265 Tcl_AppendResult(interp, "preupdate_hook was omitted at compile-time", 3266 (char*)0); 3267 rc = TCL_ERROR; 3268 #else 3269 static const char *azSub[] = {"count", "depth", "hook", "new", "old", 0}; 3270 enum DbPreupdateSubCmd { 3271 PRE_COUNT, PRE_DEPTH, PRE_HOOK, PRE_NEW, PRE_OLD 3272 }; 3273 int iSub; 3274 3275 if( objc<3 ){ 3276 Tcl_WrongNumArgs(interp, 2, objv, "SUB-COMMAND ?ARGS?"); 3277 } 3278 if( Tcl_GetIndexFromObj(interp, objv[2], azSub, "sub-command", 0, &iSub) ){ 3279 return TCL_ERROR; 3280 } 3281 3282 switch( (enum DbPreupdateSubCmd)iSub ){ 3283 case PRE_COUNT: { 3284 int nCol = sqlite3_preupdate_count(pDb->db); 3285 Tcl_SetObjResult(interp, Tcl_NewIntObj(nCol)); 3286 break; 3287 } 3288 3289 case PRE_HOOK: { 3290 if( objc>4 ){ 3291 Tcl_WrongNumArgs(interp, 2, objv, "hook ?SCRIPT?"); 3292 return TCL_ERROR; 3293 } 3294 DbHookCmd(interp, pDb, (objc==4 ? objv[3] : 0), &pDb->pPreUpdateHook); 3295 break; 3296 } 3297 3298 case PRE_DEPTH: { 3299 Tcl_Obj *pRet; 3300 if( objc!=3 ){ 3301 Tcl_WrongNumArgs(interp, 3, objv, ""); 3302 return TCL_ERROR; 3303 } 3304 pRet = Tcl_NewIntObj(sqlite3_preupdate_depth(pDb->db)); 3305 Tcl_SetObjResult(interp, pRet); 3306 break; 3307 } 3308 3309 case PRE_NEW: 3310 case PRE_OLD: { 3311 int iIdx; 3312 sqlite3_value *pValue; 3313 if( objc!=4 ){ 3314 Tcl_WrongNumArgs(interp, 3, objv, "INDEX"); 3315 return TCL_ERROR; 3316 } 3317 if( Tcl_GetIntFromObj(interp, objv[3], &iIdx) ){ 3318 return TCL_ERROR; 3319 } 3320 3321 if( iSub==PRE_OLD ){ 3322 rc = sqlite3_preupdate_old(pDb->db, iIdx, &pValue); 3323 }else{ 3324 assert( iSub==PRE_NEW ); 3325 rc = sqlite3_preupdate_new(pDb->db, iIdx, &pValue); 3326 } 3327 3328 if( rc==SQLITE_OK ){ 3329 Tcl_Obj *pObj; 3330 pObj = Tcl_NewStringObj((char*)sqlite3_value_text(pValue), -1); 3331 Tcl_SetObjResult(interp, pObj); 3332 }else{ 3333 Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0); 3334 return TCL_ERROR; 3335 } 3336 } 3337 } 3338 #endif /* SQLITE_ENABLE_PREUPDATE_HOOK */ 3339 break; 3340 } 3341 3342 /* 3343 ** $db wal_hook ?script? 3344 ** $db update_hook ?script? 3345 ** $db rollback_hook ?script? 3346 */ 3347 case DB_WAL_HOOK: 3348 case DB_UPDATE_HOOK: 3349 case DB_ROLLBACK_HOOK: { 3350 /* set ppHook to point at pUpdateHook or pRollbackHook, depending on 3351 ** whether [$db update_hook] or [$db rollback_hook] was invoked. 3352 */ 3353 Tcl_Obj **ppHook = 0; 3354 if( choice==DB_WAL_HOOK ) ppHook = &pDb->pWalHook; 3355 if( choice==DB_UPDATE_HOOK ) ppHook = &pDb->pUpdateHook; 3356 if( choice==DB_ROLLBACK_HOOK ) ppHook = &pDb->pRollbackHook; 3357 if( objc>3 ){ 3358 Tcl_WrongNumArgs(interp, 2, objv, "?SCRIPT?"); 3359 return TCL_ERROR; 3360 } 3361 3362 DbHookCmd(interp, pDb, (objc==3 ? objv[2] : 0), ppHook); 3363 break; 3364 } 3365 3366 /* $db version 3367 ** 3368 ** Return the version string for this database. 3369 */ 3370 case DB_VERSION: { 3371 int i; 3372 for(i=2; i<objc; i++){ 3373 const char *zArg = Tcl_GetString(objv[i]); 3374 /* Optional arguments to $db version are used for testing purpose */ 3375 #ifdef SQLITE_TEST 3376 /* $db version -use-legacy-prepare BOOLEAN 3377 ** 3378 ** Turn the use of legacy sqlite3_prepare() on or off. 3379 */ 3380 if( strcmp(zArg, "-use-legacy-prepare")==0 && i+1<objc ){ 3381 i++; 3382 if( Tcl_GetBooleanFromObj(interp, objv[i], &pDb->bLegacyPrepare) ){ 3383 return TCL_ERROR; 3384 } 3385 }else 3386 3387 /* $db version -last-stmt-ptr 3388 ** 3389 ** Return a string which is a hex encoding of the pointer to the 3390 ** most recent sqlite3_stmt in the statement cache. 3391 */ 3392 if( strcmp(zArg, "-last-stmt-ptr")==0 ){ 3393 char zBuf[100]; 3394 sqlite3_snprintf(sizeof(zBuf), zBuf, "%p", 3395 pDb->stmtList ? pDb->stmtList->pStmt: 0); 3396 Tcl_SetResult(interp, zBuf, TCL_VOLATILE); 3397 }else 3398 #endif /* SQLITE_TEST */ 3399 { 3400 Tcl_AppendResult(interp, "unknown argument: ", zArg, (char*)0); 3401 return TCL_ERROR; 3402 } 3403 } 3404 if( i==2 ){ 3405 Tcl_SetResult(interp, (char *)sqlite3_libversion(), TCL_STATIC); 3406 } 3407 break; 3408 } 3409 3410 3411 } /* End of the SWITCH statement */ 3412 return rc; 3413 } 3414 3415 #if SQLITE_TCL_NRE 3416 /* 3417 ** Adaptor that provides an objCmd interface to the NRE-enabled 3418 ** interface implementation. 3419 */ 3420 static int SQLITE_TCLAPI DbObjCmdAdaptor( 3421 void *cd, 3422 Tcl_Interp *interp, 3423 int objc, 3424 Tcl_Obj *const*objv 3425 ){ 3426 return Tcl_NRCallObjProc(interp, DbObjCmd, cd, objc, objv); 3427 } 3428 #endif /* SQLITE_TCL_NRE */ 3429 3430 /* 3431 ** Issue the usage message when the "sqlite3" command arguments are 3432 ** incorrect. 3433 */ 3434 static int sqliteCmdUsage( 3435 Tcl_Interp *interp, 3436 Tcl_Obj *const*objv 3437 ){ 3438 Tcl_WrongNumArgs(interp, 1, objv, 3439 "HANDLE ?FILENAME? ?-vfs VFSNAME? ?-readonly BOOLEAN? ?-create BOOLEAN?" 3440 " ?-nomutex BOOLEAN? ?-fullmutex BOOLEAN? ?-uri BOOLEAN?" 3441 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL) 3442 " ?-key CODECKEY?" 3443 #endif 3444 ); 3445 return TCL_ERROR; 3446 } 3447 3448 /* 3449 ** sqlite3 DBNAME FILENAME ?-vfs VFSNAME? ?-key KEY? ?-readonly BOOLEAN? 3450 ** ?-create BOOLEAN? ?-nomutex BOOLEAN? 3451 ** 3452 ** This is the main Tcl command. When the "sqlite" Tcl command is 3453 ** invoked, this routine runs to process that command. 3454 ** 3455 ** The first argument, DBNAME, is an arbitrary name for a new 3456 ** database connection. This command creates a new command named 3457 ** DBNAME that is used to control that connection. The database 3458 ** connection is deleted when the DBNAME command is deleted. 3459 ** 3460 ** The second argument is the name of the database file. 3461 ** 3462 */ 3463 static int SQLITE_TCLAPI DbMain( 3464 void *cd, 3465 Tcl_Interp *interp, 3466 int objc, 3467 Tcl_Obj *const*objv 3468 ){ 3469 SqliteDb *p; 3470 const char *zArg; 3471 char *zErrMsg; 3472 int i; 3473 const char *zFile = 0; 3474 const char *zVfs = 0; 3475 int flags; 3476 Tcl_DString translatedFilename; 3477 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL) 3478 void *pKey = 0; 3479 int nKey = 0; 3480 #endif 3481 int rc; 3482 3483 /* In normal use, each TCL interpreter runs in a single thread. So 3484 ** by default, we can turn off mutexing on SQLite database connections. 3485 ** However, for testing purposes it is useful to have mutexes turned 3486 ** on. So, by default, mutexes default off. But if compiled with 3487 ** SQLITE_TCL_DEFAULT_FULLMUTEX then mutexes default on. 3488 */ 3489 #ifdef SQLITE_TCL_DEFAULT_FULLMUTEX 3490 flags = SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE | SQLITE_OPEN_FULLMUTEX; 3491 #else 3492 flags = SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE | SQLITE_OPEN_NOMUTEX; 3493 #endif 3494 3495 if( objc==2 ){ 3496 zArg = Tcl_GetStringFromObj(objv[1], 0); 3497 if( strcmp(zArg,"-version")==0 ){ 3498 Tcl_AppendResult(interp,sqlite3_libversion(), (char*)0); 3499 return TCL_OK; 3500 } 3501 if( strcmp(zArg,"-sourceid")==0 ){ 3502 Tcl_AppendResult(interp,sqlite3_sourceid(), (char*)0); 3503 return TCL_OK; 3504 } 3505 if( strcmp(zArg,"-has-codec")==0 ){ 3506 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL) 3507 Tcl_AppendResult(interp,"1",(char*)0); 3508 #else 3509 Tcl_AppendResult(interp,"0",(char*)0); 3510 #endif 3511 return TCL_OK; 3512 } 3513 if( zArg[0]=='-' ) return sqliteCmdUsage(interp, objv); 3514 } 3515 for(i=2; i<objc; i++){ 3516 zArg = Tcl_GetString(objv[i]); 3517 if( zArg[0]!='-' ){ 3518 if( zFile!=0 ) return sqliteCmdUsage(interp, objv); 3519 zFile = zArg; 3520 continue; 3521 } 3522 if( i==objc-1 ) return sqliteCmdUsage(interp, objv); 3523 i++; 3524 if( strcmp(zArg,"-key")==0 ){ 3525 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL) 3526 pKey = Tcl_GetByteArrayFromObj(objv[i], &nKey); 3527 #endif 3528 }else if( strcmp(zArg, "-vfs")==0 ){ 3529 zVfs = Tcl_GetString(objv[i]); 3530 }else if( strcmp(zArg, "-readonly")==0 ){ 3531 int b; 3532 if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR; 3533 if( b ){ 3534 flags &= ~(SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE); 3535 flags |= SQLITE_OPEN_READONLY; 3536 }else{ 3537 flags &= ~SQLITE_OPEN_READONLY; 3538 flags |= SQLITE_OPEN_READWRITE; 3539 } 3540 }else if( strcmp(zArg, "-create")==0 ){ 3541 int b; 3542 if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR; 3543 if( b && (flags & SQLITE_OPEN_READONLY)==0 ){ 3544 flags |= SQLITE_OPEN_CREATE; 3545 }else{ 3546 flags &= ~SQLITE_OPEN_CREATE; 3547 } 3548 }else if( strcmp(zArg, "-nomutex")==0 ){ 3549 int b; 3550 if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR; 3551 if( b ){ 3552 flags |= SQLITE_OPEN_NOMUTEX; 3553 flags &= ~SQLITE_OPEN_FULLMUTEX; 3554 }else{ 3555 flags &= ~SQLITE_OPEN_NOMUTEX; 3556 } 3557 }else if( strcmp(zArg, "-fullmutex")==0 ){ 3558 int b; 3559 if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR; 3560 if( b ){ 3561 flags |= SQLITE_OPEN_FULLMUTEX; 3562 flags &= ~SQLITE_OPEN_NOMUTEX; 3563 }else{ 3564 flags &= ~SQLITE_OPEN_FULLMUTEX; 3565 } 3566 }else if( strcmp(zArg, "-uri")==0 ){ 3567 int b; 3568 if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR; 3569 if( b ){ 3570 flags |= SQLITE_OPEN_URI; 3571 }else{ 3572 flags &= ~SQLITE_OPEN_URI; 3573 } 3574 }else{ 3575 Tcl_AppendResult(interp, "unknown option: ", zArg, (char*)0); 3576 return TCL_ERROR; 3577 } 3578 } 3579 zErrMsg = 0; 3580 p = (SqliteDb*)Tcl_Alloc( sizeof(*p) ); 3581 memset(p, 0, sizeof(*p)); 3582 if( zFile==0 ) zFile = ""; 3583 zFile = Tcl_TranslateFileName(interp, zFile, &translatedFilename); 3584 rc = sqlite3_open_v2(zFile, &p->db, flags, zVfs); 3585 Tcl_DStringFree(&translatedFilename); 3586 if( p->db ){ 3587 if( SQLITE_OK!=sqlite3_errcode(p->db) ){ 3588 zErrMsg = sqlite3_mprintf("%s", sqlite3_errmsg(p->db)); 3589 sqlite3_close(p->db); 3590 p->db = 0; 3591 } 3592 }else{ 3593 zErrMsg = sqlite3_mprintf("%s", sqlite3_errstr(rc)); 3594 } 3595 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL) 3596 if( p->db ){ 3597 sqlite3_key(p->db, pKey, nKey); 3598 } 3599 #endif 3600 if( p->db==0 ){ 3601 Tcl_SetResult(interp, zErrMsg, TCL_VOLATILE); 3602 Tcl_Free((char*)p); 3603 sqlite3_free(zErrMsg); 3604 return TCL_ERROR; 3605 } 3606 p->maxStmt = NUM_PREPARED_STMTS; 3607 p->openFlags = flags & SQLITE_OPEN_URI; 3608 p->interp = interp; 3609 zArg = Tcl_GetStringFromObj(objv[1], 0); 3610 if( DbUseNre() ){ 3611 Tcl_NRCreateCommand(interp, zArg, DbObjCmdAdaptor, DbObjCmd, 3612 (char*)p, DbDeleteCmd); 3613 }else{ 3614 Tcl_CreateObjCommand(interp, zArg, DbObjCmd, (char*)p, DbDeleteCmd); 3615 } 3616 return TCL_OK; 3617 } 3618 3619 /* 3620 ** Provide a dummy Tcl_InitStubs if we are using this as a static 3621 ** library. 3622 */ 3623 #ifndef USE_TCL_STUBS 3624 # undef Tcl_InitStubs 3625 # define Tcl_InitStubs(a,b,c) TCL_VERSION 3626 #endif 3627 3628 /* 3629 ** Make sure we have a PACKAGE_VERSION macro defined. This will be 3630 ** defined automatically by the TEA makefile. But other makefiles 3631 ** do not define it. 3632 */ 3633 #ifndef PACKAGE_VERSION 3634 # define PACKAGE_VERSION SQLITE_VERSION 3635 #endif 3636 3637 /* 3638 ** Initialize this module. 3639 ** 3640 ** This Tcl module contains only a single new Tcl command named "sqlite". 3641 ** (Hence there is no namespace. There is no point in using a namespace 3642 ** if the extension only supplies one new name!) The "sqlite" command is 3643 ** used to open a new SQLite database. See the DbMain() routine above 3644 ** for additional information. 3645 ** 3646 ** The EXTERN macros are required by TCL in order to work on windows. 3647 */ 3648 EXTERN int Sqlite3_Init(Tcl_Interp *interp){ 3649 int rc = Tcl_InitStubs(interp, "8.4", 0) ? TCL_OK : TCL_ERROR; 3650 if( rc==TCL_OK ){ 3651 Tcl_CreateObjCommand(interp, "sqlite3", (Tcl_ObjCmdProc*)DbMain, 0, 0); 3652 #ifndef SQLITE_3_SUFFIX_ONLY 3653 /* The "sqlite" alias is undocumented. It is here only to support 3654 ** legacy scripts. All new scripts should use only the "sqlite3" 3655 ** command. */ 3656 Tcl_CreateObjCommand(interp, "sqlite", (Tcl_ObjCmdProc*)DbMain, 0, 0); 3657 #endif 3658 rc = Tcl_PkgProvide(interp, "sqlite3", PACKAGE_VERSION); 3659 } 3660 return rc; 3661 } 3662 EXTERN int Tclsqlite3_Init(Tcl_Interp *interp){ return Sqlite3_Init(interp); } 3663 EXTERN int Sqlite3_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; } 3664 EXTERN int Tclsqlite3_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; } 3665 3666 /* Because it accesses the file-system and uses persistent state, SQLite 3667 ** is not considered appropriate for safe interpreters. Hence, we cause 3668 ** the _SafeInit() interfaces return TCL_ERROR. 3669 */ 3670 EXTERN int Sqlite3_SafeInit(Tcl_Interp *interp){ return TCL_ERROR; } 3671 EXTERN int Sqlite3_SafeUnload(Tcl_Interp *interp, int flags){return TCL_ERROR;} 3672 3673 3674 3675 #ifndef SQLITE_3_SUFFIX_ONLY 3676 int Sqlite_Init(Tcl_Interp *interp){ return Sqlite3_Init(interp); } 3677 int Tclsqlite_Init(Tcl_Interp *interp){ return Sqlite3_Init(interp); } 3678 int Sqlite_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; } 3679 int Tclsqlite_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; } 3680 #endif 3681 3682 /* 3683 ** If the TCLSH macro is defined, add code to make a stand-alone program. 3684 */ 3685 #if defined(TCLSH) 3686 3687 /* This is the main routine for an ordinary TCL shell. If there are 3688 ** are arguments, run the first argument as a script. Otherwise, 3689 ** read TCL commands from standard input 3690 */ 3691 static const char *tclsh_main_loop(void){ 3692 static const char zMainloop[] = 3693 "if {[llength $argv]>=1} {\n" 3694 "set argv0 [lindex $argv 0]\n" 3695 "set argv [lrange $argv 1 end]\n" 3696 "source $argv0\n" 3697 "} else {\n" 3698 "set line {}\n" 3699 "while {![eof stdin]} {\n" 3700 "if {$line!=\"\"} {\n" 3701 "puts -nonewline \"> \"\n" 3702 "} else {\n" 3703 "puts -nonewline \"% \"\n" 3704 "}\n" 3705 "flush stdout\n" 3706 "append line [gets stdin]\n" 3707 "if {[info complete $line]} {\n" 3708 "if {[catch {uplevel #0 $line} result]} {\n" 3709 "puts stderr \"Error: $result\"\n" 3710 "} elseif {$result!=\"\"} {\n" 3711 "puts $result\n" 3712 "}\n" 3713 "set line {}\n" 3714 "} else {\n" 3715 "append line \\n\n" 3716 "}\n" 3717 "}\n" 3718 "}\n" 3719 ; 3720 return zMainloop; 3721 } 3722 3723 #define TCLSH_MAIN main /* Needed to fake out mktclapp */ 3724 int SQLITE_CDECL TCLSH_MAIN(int argc, char **argv){ 3725 Tcl_Interp *interp; 3726 int i; 3727 const char *zScript = 0; 3728 char zArgc[32]; 3729 #if defined(TCLSH_INIT_PROC) 3730 extern const char *TCLSH_INIT_PROC(Tcl_Interp*); 3731 #endif 3732 3733 #if !defined(_WIN32_WCE) 3734 if( getenv("BREAK") ){ 3735 fprintf(stderr, 3736 "attach debugger to process %d and press any key to continue.\n", 3737 GETPID()); 3738 fgetc(stdin); 3739 } 3740 #endif 3741 3742 /* Call sqlite3_shutdown() once before doing anything else. This is to 3743 ** test that sqlite3_shutdown() can be safely called by a process before 3744 ** sqlite3_initialize() is. */ 3745 sqlite3_shutdown(); 3746 3747 Tcl_FindExecutable(argv[0]); 3748 Tcl_SetSystemEncoding(NULL, "utf-8"); 3749 interp = Tcl_CreateInterp(); 3750 Sqlite3_Init(interp); 3751 3752 sqlite3_snprintf(sizeof(zArgc), zArgc, "%d", argc-1); 3753 Tcl_SetVar(interp,"argc", zArgc, TCL_GLOBAL_ONLY); 3754 Tcl_SetVar(interp,"argv0",argv[0],TCL_GLOBAL_ONLY); 3755 Tcl_SetVar(interp,"argv", "", TCL_GLOBAL_ONLY); 3756 for(i=1; i<argc; i++){ 3757 Tcl_SetVar(interp, "argv", argv[i], 3758 TCL_GLOBAL_ONLY | TCL_LIST_ELEMENT | TCL_APPEND_VALUE); 3759 } 3760 #if defined(TCLSH_INIT_PROC) 3761 zScript = TCLSH_INIT_PROC(interp); 3762 #endif 3763 if( zScript==0 ){ 3764 zScript = tclsh_main_loop(); 3765 } 3766 if( Tcl_GlobalEval(interp, zScript)!=TCL_OK ){ 3767 const char *zInfo = Tcl_GetVar(interp, "errorInfo", TCL_GLOBAL_ONLY); 3768 if( zInfo==0 ) zInfo = Tcl_GetStringResult(interp); 3769 fprintf(stderr,"%s: %s\n", *argv, zInfo); 3770 return 1; 3771 } 3772 return 0; 3773 } 3774 #endif /* TCLSH */ 3775