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 ** This file contains C code routines that are called by the parser 13 ** to handle UPDATE statements. 14 */ 15 #include "sqliteInt.h" 16 17 #ifndef SQLITE_OMIT_VIRTUALTABLE 18 /* Forward declaration */ 19 static void updateVirtualTable( 20 Parse *pParse, /* The parsing context */ 21 SrcList *pSrc, /* The virtual table to be modified */ 22 Table *pTab, /* The virtual table */ 23 ExprList *pChanges, /* The columns to change in the UPDATE statement */ 24 Expr *pRowidExpr, /* Expression used to recompute the rowid */ 25 int *aXRef, /* Mapping from columns of pTab to entries in pChanges */ 26 Expr *pWhere, /* WHERE clause of the UPDATE statement */ 27 int onError /* ON CONFLICT strategy */ 28 ); 29 #endif /* SQLITE_OMIT_VIRTUALTABLE */ 30 31 /* 32 ** The most recently coded instruction was an OP_Column to retrieve the 33 ** i-th column of table pTab. This routine sets the P4 parameter of the 34 ** OP_Column to the default value, if any. 35 ** 36 ** The default value of a column is specified by a DEFAULT clause in the 37 ** column definition. This was either supplied by the user when the table 38 ** was created, or added later to the table definition by an ALTER TABLE 39 ** command. If the latter, then the row-records in the table btree on disk 40 ** may not contain a value for the column and the default value, taken 41 ** from the P4 parameter of the OP_Column instruction, is returned instead. 42 ** If the former, then all row-records are guaranteed to include a value 43 ** for the column and the P4 value is not required. 44 ** 45 ** Column definitions created by an ALTER TABLE command may only have 46 ** literal default values specified: a number, null or a string. (If a more 47 ** complicated default expression value was provided, it is evaluated 48 ** when the ALTER TABLE is executed and one of the literal values written 49 ** into the sqlite_master table.) 50 ** 51 ** Therefore, the P4 parameter is only required if the default value for 52 ** the column is a literal number, string or null. The sqlite3ValueFromExpr() 53 ** function is capable of transforming these types of expressions into 54 ** sqlite3_value objects. 55 ** 56 ** If parameter iReg is not negative, code an OP_RealAffinity instruction 57 ** on register iReg. This is used when an equivalent integer value is 58 ** stored in place of an 8-byte floating point value in order to save 59 ** space. 60 */ 61 void sqlite3ColumnDefault(Vdbe *v, Table *pTab, int i, int iReg){ 62 assert( pTab!=0 ); 63 if( !pTab->pSelect ){ 64 sqlite3_value *pValue = 0; 65 u8 enc = ENC(sqlite3VdbeDb(v)); 66 Column *pCol = &pTab->aCol[i]; 67 VdbeComment((v, "%s.%s", pTab->zName, pCol->zName)); 68 assert( i<pTab->nCol ); 69 sqlite3ValueFromExpr(sqlite3VdbeDb(v), pCol->pDflt, enc, 70 pCol->affinity, &pValue); 71 if( pValue ){ 72 sqlite3VdbeChangeP4(v, -1, (const char *)pValue, P4_MEM); 73 } 74 #ifndef SQLITE_OMIT_FLOATING_POINT 75 if( pTab->aCol[i].affinity==SQLITE_AFF_REAL ){ 76 sqlite3VdbeAddOp1(v, OP_RealAffinity, iReg); 77 } 78 #endif 79 } 80 } 81 82 /* 83 ** Process an UPDATE statement. 84 ** 85 ** UPDATE OR IGNORE table_wxyz SET a=b, c=d WHERE e<5 AND f NOT NULL; 86 ** \_______/ \________/ \______/ \________________/ 87 * onError pTabList pChanges pWhere 88 */ 89 void sqlite3Update( 90 Parse *pParse, /* The parser context */ 91 SrcList *pTabList, /* The table in which we should change things */ 92 ExprList *pChanges, /* Things to be changed */ 93 Expr *pWhere, /* The WHERE clause. May be null */ 94 int onError /* How to handle constraint errors */ 95 ){ 96 int i, j; /* Loop counters */ 97 Table *pTab; /* The table to be updated */ 98 int addrTop = 0; /* VDBE instruction address of the start of the loop */ 99 WhereInfo *pWInfo; /* Information about the WHERE clause */ 100 Vdbe *v; /* The virtual database engine */ 101 Index *pIdx; /* For looping over indices */ 102 Index *pPk; /* The PRIMARY KEY index for WITHOUT ROWID tables */ 103 int nIdx; /* Number of indices that need updating */ 104 int iBaseCur; /* Base cursor number */ 105 int iDataCur; /* Cursor for the canonical data btree */ 106 int iIdxCur; /* Cursor for the first index */ 107 sqlite3 *db; /* The database structure */ 108 int *aRegIdx = 0; /* One register assigned to each index to be updated */ 109 int *aXRef = 0; /* aXRef[i] is the index in pChanges->a[] of the 110 ** an expression for the i-th column of the table. 111 ** aXRef[i]==-1 if the i-th column is not changed. */ 112 u8 *aToOpen; /* 1 for tables and indices to be opened */ 113 u8 chngPk; /* PRIMARY KEY changed in a WITHOUT ROWID table */ 114 u8 chngRowid; /* Rowid changed in a normal table */ 115 u8 chngKey; /* Either chngPk or chngRowid */ 116 Expr *pRowidExpr = 0; /* Expression defining the new record number */ 117 AuthContext sContext; /* The authorization context */ 118 NameContext sNC; /* The name-context to resolve expressions in */ 119 int iDb; /* Database containing the table being updated */ 120 int okOnePass; /* True for one-pass algorithm without the FIFO */ 121 int hasFK; /* True if foreign key processing is required */ 122 int labelBreak; /* Jump here to break out of UPDATE loop */ 123 int labelContinue; /* Jump here to continue next step of UPDATE loop */ 124 125 #ifndef SQLITE_OMIT_TRIGGER 126 int isView; /* True when updating a view (INSTEAD OF trigger) */ 127 Trigger *pTrigger; /* List of triggers on pTab, if required */ 128 int tmask; /* Mask of TRIGGER_BEFORE|TRIGGER_AFTER */ 129 #endif 130 int newmask; /* Mask of NEW.* columns accessed by BEFORE triggers */ 131 int iEph = 0; /* Ephemeral table holding all primary key values */ 132 int nKey = 0; /* Number of elements in regKey for WITHOUT ROWID */ 133 int aiCurOnePass[2]; /* The write cursors opened by WHERE_ONEPASS */ 134 135 /* Register Allocations */ 136 int regRowCount = 0; /* A count of rows changed */ 137 int regOldRowid = 0; /* The old rowid */ 138 int regNewRowid = 0; /* The new rowid */ 139 int regNew = 0; /* Content of the NEW.* table in triggers */ 140 int regOld = 0; /* Content of OLD.* table in triggers */ 141 int regRowSet = 0; /* Rowset of rows to be updated */ 142 int regKey = 0; /* composite PRIMARY KEY value */ 143 144 memset(&sContext, 0, sizeof(sContext)); 145 db = pParse->db; 146 if( pParse->nErr || db->mallocFailed ){ 147 goto update_cleanup; 148 } 149 assert( pTabList->nSrc==1 ); 150 151 /* Locate the table which we want to update. 152 */ 153 pTab = sqlite3SrcListLookup(pParse, pTabList); 154 if( pTab==0 ) goto update_cleanup; 155 iDb = sqlite3SchemaToIndex(pParse->db, pTab->pSchema); 156 157 /* Figure out if we have any triggers and if the table being 158 ** updated is a view. 159 */ 160 #ifndef SQLITE_OMIT_TRIGGER 161 pTrigger = sqlite3TriggersExist(pParse, pTab, TK_UPDATE, pChanges, &tmask); 162 isView = pTab->pSelect!=0; 163 assert( pTrigger || tmask==0 ); 164 #else 165 # define pTrigger 0 166 # define isView 0 167 # define tmask 0 168 #endif 169 #ifdef SQLITE_OMIT_VIEW 170 # undef isView 171 # define isView 0 172 #endif 173 174 if( sqlite3ViewGetColumnNames(pParse, pTab) ){ 175 goto update_cleanup; 176 } 177 if( sqlite3IsReadOnly(pParse, pTab, tmask) ){ 178 goto update_cleanup; 179 } 180 181 /* Allocate a cursors for the main database table and for all indices. 182 ** The index cursors might not be used, but if they are used they 183 ** need to occur right after the database cursor. So go ahead and 184 ** allocate enough space, just in case. 185 */ 186 pTabList->a[0].iCursor = iBaseCur = iDataCur = pParse->nTab++; 187 iIdxCur = iDataCur+1; 188 pPk = HasRowid(pTab) ? 0 : sqlite3PrimaryKeyIndex(pTab); 189 for(nIdx=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, nIdx++){ 190 if( IsPrimaryKeyIndex(pIdx) && pPk!=0 ){ 191 iDataCur = pParse->nTab; 192 pTabList->a[0].iCursor = iDataCur; 193 } 194 pParse->nTab++; 195 } 196 197 /* Allocate space for aXRef[], aRegIdx[], and aToOpen[]. 198 ** Initialize aXRef[] and aToOpen[] to their default values. 199 */ 200 aXRef = sqlite3DbMallocRawNN(db, sizeof(int) * (pTab->nCol+nIdx) + nIdx+2 ); 201 if( aXRef==0 ) goto update_cleanup; 202 aRegIdx = aXRef+pTab->nCol; 203 aToOpen = (u8*)(aRegIdx+nIdx); 204 memset(aToOpen, 1, nIdx+1); 205 aToOpen[nIdx+1] = 0; 206 for(i=0; i<pTab->nCol; i++) aXRef[i] = -1; 207 208 /* Initialize the name-context */ 209 memset(&sNC, 0, sizeof(sNC)); 210 sNC.pParse = pParse; 211 sNC.pSrcList = pTabList; 212 213 /* Resolve the column names in all the expressions of the 214 ** of the UPDATE statement. Also find the column index 215 ** for each column to be updated in the pChanges array. For each 216 ** column to be updated, make sure we have authorization to change 217 ** that column. 218 */ 219 chngRowid = chngPk = 0; 220 for(i=0; i<pChanges->nExpr; i++){ 221 if( sqlite3ResolveExprNames(&sNC, pChanges->a[i].pExpr) ){ 222 goto update_cleanup; 223 } 224 for(j=0; j<pTab->nCol; j++){ 225 if( sqlite3StrICmp(pTab->aCol[j].zName, pChanges->a[i].zName)==0 ){ 226 if( j==pTab->iPKey ){ 227 chngRowid = 1; 228 pRowidExpr = pChanges->a[i].pExpr; 229 }else if( pPk && (pTab->aCol[j].colFlags & COLFLAG_PRIMKEY)!=0 ){ 230 chngPk = 1; 231 } 232 aXRef[j] = i; 233 break; 234 } 235 } 236 if( j>=pTab->nCol ){ 237 if( pPk==0 && sqlite3IsRowid(pChanges->a[i].zName) ){ 238 j = -1; 239 chngRowid = 1; 240 pRowidExpr = pChanges->a[i].pExpr; 241 }else{ 242 sqlite3ErrorMsg(pParse, "no such column: %s", pChanges->a[i].zName); 243 pParse->checkSchema = 1; 244 goto update_cleanup; 245 } 246 } 247 #ifndef SQLITE_OMIT_AUTHORIZATION 248 { 249 int rc; 250 rc = sqlite3AuthCheck(pParse, SQLITE_UPDATE, pTab->zName, 251 j<0 ? "ROWID" : pTab->aCol[j].zName, 252 db->aDb[iDb].zName); 253 if( rc==SQLITE_DENY ){ 254 goto update_cleanup; 255 }else if( rc==SQLITE_IGNORE ){ 256 aXRef[j] = -1; 257 } 258 } 259 #endif 260 } 261 assert( (chngRowid & chngPk)==0 ); 262 assert( chngRowid==0 || chngRowid==1 ); 263 assert( chngPk==0 || chngPk==1 ); 264 chngKey = chngRowid + chngPk; 265 266 /* The SET expressions are not actually used inside the WHERE loop. 267 ** So reset the colUsed mask. Unless this is a virtual table. In that 268 ** case, set all bits of the colUsed mask (to ensure that the virtual 269 ** table implementation makes all columns available). 270 */ 271 pTabList->a[0].colUsed = IsVirtual(pTab) ? (Bitmask)-1 : 0; 272 273 hasFK = sqlite3FkRequired(pParse, pTab, aXRef, chngKey); 274 275 /* There is one entry in the aRegIdx[] array for each index on the table 276 ** being updated. Fill in aRegIdx[] with a register number that will hold 277 ** the key for accessing each index. 278 ** 279 ** FIXME: Be smarter about omitting indexes that use expressions. 280 */ 281 for(j=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, j++){ 282 int reg; 283 if( chngKey || hasFK || pIdx->pPartIdxWhere || pIdx==pPk ){ 284 reg = ++pParse->nMem; 285 }else{ 286 reg = 0; 287 for(i=0; i<pIdx->nKeyCol; i++){ 288 i16 iIdxCol = pIdx->aiColumn[i]; 289 if( iIdxCol<0 || aXRef[iIdxCol]>=0 ){ 290 reg = ++pParse->nMem; 291 break; 292 } 293 } 294 } 295 if( reg==0 ) aToOpen[j+1] = 0; 296 aRegIdx[j] = reg; 297 } 298 299 /* Begin generating code. */ 300 v = sqlite3GetVdbe(pParse); 301 if( v==0 ) goto update_cleanup; 302 if( pParse->nested==0 ) sqlite3VdbeCountChanges(v); 303 sqlite3BeginWriteOperation(pParse, 1, iDb); 304 305 /* Allocate required registers. */ 306 if( !IsVirtual(pTab) ){ 307 regRowSet = ++pParse->nMem; 308 regOldRowid = regNewRowid = ++pParse->nMem; 309 if( chngPk || pTrigger || hasFK ){ 310 regOld = pParse->nMem + 1; 311 pParse->nMem += pTab->nCol; 312 } 313 if( chngKey || pTrigger || hasFK ){ 314 regNewRowid = ++pParse->nMem; 315 } 316 regNew = pParse->nMem + 1; 317 pParse->nMem += pTab->nCol; 318 } 319 320 /* Start the view context. */ 321 if( isView ){ 322 sqlite3AuthContextPush(pParse, &sContext, pTab->zName); 323 } 324 325 /* If we are trying to update a view, realize that view into 326 ** an ephemeral table. 327 */ 328 #if !defined(SQLITE_OMIT_VIEW) && !defined(SQLITE_OMIT_TRIGGER) 329 if( isView ){ 330 sqlite3MaterializeView(pParse, pTab, pWhere, iDataCur); 331 } 332 #endif 333 334 /* Resolve the column names in all the expressions in the 335 ** WHERE clause. 336 */ 337 if( sqlite3ResolveExprNames(&sNC, pWhere) ){ 338 goto update_cleanup; 339 } 340 341 #ifndef SQLITE_OMIT_VIRTUALTABLE 342 /* Virtual tables must be handled separately */ 343 if( IsVirtual(pTab) ){ 344 updateVirtualTable(pParse, pTabList, pTab, pChanges, pRowidExpr, aXRef, 345 pWhere, onError); 346 goto update_cleanup; 347 } 348 #endif 349 350 /* Begin the database scan 351 */ 352 if( HasRowid(pTab) ){ 353 sqlite3VdbeAddOp3(v, OP_Null, 0, regRowSet, regOldRowid); 354 pWInfo = sqlite3WhereBegin( 355 pParse, pTabList, pWhere, 0, 0, WHERE_ONEPASS_DESIRED, iIdxCur 356 ); 357 if( pWInfo==0 ) goto update_cleanup; 358 okOnePass = sqlite3WhereOkOnePass(pWInfo, aiCurOnePass); 359 360 /* Remember the rowid of every item to be updated. 361 */ 362 sqlite3VdbeAddOp2(v, OP_Rowid, iDataCur, regOldRowid); 363 if( !okOnePass ){ 364 sqlite3VdbeAddOp2(v, OP_RowSetAdd, regRowSet, regOldRowid); 365 } 366 367 /* End the database scan loop. 368 */ 369 sqlite3WhereEnd(pWInfo); 370 }else{ 371 int iPk; /* First of nPk memory cells holding PRIMARY KEY value */ 372 i16 nPk; /* Number of components of the PRIMARY KEY */ 373 int addrOpen; /* Address of the OpenEphemeral instruction */ 374 375 assert( pPk!=0 ); 376 nPk = pPk->nKeyCol; 377 iPk = pParse->nMem+1; 378 pParse->nMem += nPk; 379 regKey = ++pParse->nMem; 380 iEph = pParse->nTab++; 381 sqlite3VdbeAddOp2(v, OP_Null, 0, iPk); 382 addrOpen = sqlite3VdbeAddOp2(v, OP_OpenEphemeral, iEph, nPk); 383 sqlite3VdbeSetP4KeyInfo(pParse, pPk); 384 pWInfo = sqlite3WhereBegin(pParse, pTabList, pWhere, 0, 0, 385 WHERE_ONEPASS_DESIRED, iIdxCur); 386 if( pWInfo==0 ) goto update_cleanup; 387 okOnePass = sqlite3WhereOkOnePass(pWInfo, aiCurOnePass); 388 for(i=0; i<nPk; i++){ 389 assert( pPk->aiColumn[i]>=0 ); 390 sqlite3ExprCodeGetColumnOfTable(v, pTab, iDataCur, pPk->aiColumn[i], 391 iPk+i); 392 } 393 if( okOnePass ){ 394 sqlite3VdbeChangeToNoop(v, addrOpen); 395 nKey = nPk; 396 regKey = iPk; 397 }else{ 398 sqlite3VdbeAddOp4(v, OP_MakeRecord, iPk, nPk, regKey, 399 sqlite3IndexAffinityStr(db, pPk), nPk); 400 sqlite3VdbeAddOp2(v, OP_IdxInsert, iEph, regKey); 401 } 402 sqlite3WhereEnd(pWInfo); 403 } 404 405 /* Initialize the count of updated rows 406 */ 407 if( (db->flags & SQLITE_CountRows) && !pParse->pTriggerTab ){ 408 regRowCount = ++pParse->nMem; 409 sqlite3VdbeAddOp2(v, OP_Integer, 0, regRowCount); 410 } 411 412 labelBreak = sqlite3VdbeMakeLabel(v); 413 if( !isView ){ 414 /* 415 ** Open every index that needs updating. Note that if any 416 ** index could potentially invoke a REPLACE conflict resolution 417 ** action, then we need to open all indices because we might need 418 ** to be deleting some records. 419 */ 420 if( onError==OE_Replace ){ 421 memset(aToOpen, 1, nIdx+1); 422 }else{ 423 for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){ 424 if( pIdx->onError==OE_Replace ){ 425 memset(aToOpen, 1, nIdx+1); 426 break; 427 } 428 } 429 } 430 if( okOnePass ){ 431 if( aiCurOnePass[0]>=0 ) aToOpen[aiCurOnePass[0]-iBaseCur] = 0; 432 if( aiCurOnePass[1]>=0 ) aToOpen[aiCurOnePass[1]-iBaseCur] = 0; 433 } 434 sqlite3OpenTableAndIndices(pParse, pTab, OP_OpenWrite, 0, iBaseCur, aToOpen, 435 0, 0); 436 } 437 438 /* Top of the update loop */ 439 if( okOnePass ){ 440 if( aToOpen[iDataCur-iBaseCur] && !isView ){ 441 assert( pPk ); 442 sqlite3VdbeAddOp4Int(v, OP_NotFound, iDataCur, labelBreak, regKey, nKey); 443 VdbeCoverageNeverTaken(v); 444 } 445 labelContinue = labelBreak; 446 sqlite3VdbeAddOp2(v, OP_IsNull, pPk ? regKey : regOldRowid, labelBreak); 447 VdbeCoverageIf(v, pPk==0); 448 VdbeCoverageIf(v, pPk!=0); 449 }else if( pPk ){ 450 labelContinue = sqlite3VdbeMakeLabel(v); 451 sqlite3VdbeAddOp2(v, OP_Rewind, iEph, labelBreak); VdbeCoverage(v); 452 addrTop = sqlite3VdbeAddOp2(v, OP_RowKey, iEph, regKey); 453 sqlite3VdbeAddOp4Int(v, OP_NotFound, iDataCur, labelContinue, regKey, 0); 454 VdbeCoverage(v); 455 }else{ 456 labelContinue = sqlite3VdbeAddOp3(v, OP_RowSetRead, regRowSet, labelBreak, 457 regOldRowid); 458 VdbeCoverage(v); 459 sqlite3VdbeAddOp3(v, OP_NotExists, iDataCur, labelContinue, regOldRowid); 460 VdbeCoverage(v); 461 } 462 463 /* If the record number will change, set register regNewRowid to 464 ** contain the new value. If the record number is not being modified, 465 ** then regNewRowid is the same register as regOldRowid, which is 466 ** already populated. */ 467 assert( chngKey || pTrigger || hasFK || regOldRowid==regNewRowid ); 468 if( chngRowid ){ 469 sqlite3ExprCode(pParse, pRowidExpr, regNewRowid); 470 sqlite3VdbeAddOp1(v, OP_MustBeInt, regNewRowid); VdbeCoverage(v); 471 } 472 473 /* Compute the old pre-UPDATE content of the row being changed, if that 474 ** information is needed */ 475 if( chngPk || hasFK || pTrigger ){ 476 u32 oldmask = (hasFK ? sqlite3FkOldmask(pParse, pTab) : 0); 477 oldmask |= sqlite3TriggerColmask(pParse, 478 pTrigger, pChanges, 0, TRIGGER_BEFORE|TRIGGER_AFTER, pTab, onError 479 ); 480 for(i=0; i<pTab->nCol; i++){ 481 if( oldmask==0xffffffff 482 || (i<32 && (oldmask & MASKBIT32(i))!=0) 483 || (pTab->aCol[i].colFlags & COLFLAG_PRIMKEY)!=0 484 ){ 485 testcase( oldmask!=0xffffffff && i==31 ); 486 sqlite3ExprCodeGetColumnOfTable(v, pTab, iDataCur, i, regOld+i); 487 }else{ 488 sqlite3VdbeAddOp2(v, OP_Null, 0, regOld+i); 489 } 490 } 491 if( chngRowid==0 && pPk==0 ){ 492 sqlite3VdbeAddOp2(v, OP_Copy, regOldRowid, regNewRowid); 493 } 494 } 495 496 /* Populate the array of registers beginning at regNew with the new 497 ** row data. This array is used to check constants, create the new 498 ** table and index records, and as the values for any new.* references 499 ** made by triggers. 500 ** 501 ** If there are one or more BEFORE triggers, then do not populate the 502 ** registers associated with columns that are (a) not modified by 503 ** this UPDATE statement and (b) not accessed by new.* references. The 504 ** values for registers not modified by the UPDATE must be reloaded from 505 ** the database after the BEFORE triggers are fired anyway (as the trigger 506 ** may have modified them). So not loading those that are not going to 507 ** be used eliminates some redundant opcodes. 508 */ 509 newmask = sqlite3TriggerColmask( 510 pParse, pTrigger, pChanges, 1, TRIGGER_BEFORE, pTab, onError 511 ); 512 for(i=0; i<pTab->nCol; i++){ 513 if( i==pTab->iPKey ){ 514 sqlite3VdbeAddOp2(v, OP_Null, 0, regNew+i); 515 }else{ 516 j = aXRef[i]; 517 if( j>=0 ){ 518 sqlite3ExprCode(pParse, pChanges->a[j].pExpr, regNew+i); 519 }else if( 0==(tmask&TRIGGER_BEFORE) || i>31 || (newmask & MASKBIT32(i)) ){ 520 /* This branch loads the value of a column that will not be changed 521 ** into a register. This is done if there are no BEFORE triggers, or 522 ** if there are one or more BEFORE triggers that use this value via 523 ** a new.* reference in a trigger program. 524 */ 525 testcase( i==31 ); 526 testcase( i==32 ); 527 sqlite3ExprCodeGetColumnToReg(pParse, pTab, i, iDataCur, regNew+i); 528 }else{ 529 sqlite3VdbeAddOp2(v, OP_Null, 0, regNew+i); 530 } 531 } 532 } 533 534 /* Fire any BEFORE UPDATE triggers. This happens before constraints are 535 ** verified. One could argue that this is wrong. 536 */ 537 if( tmask&TRIGGER_BEFORE ){ 538 sqlite3TableAffinity(v, pTab, regNew); 539 sqlite3CodeRowTrigger(pParse, pTrigger, TK_UPDATE, pChanges, 540 TRIGGER_BEFORE, pTab, regOldRowid, onError, labelContinue); 541 542 /* The row-trigger may have deleted the row being updated. In this 543 ** case, jump to the next row. No updates or AFTER triggers are 544 ** required. This behavior - what happens when the row being updated 545 ** is deleted or renamed by a BEFORE trigger - is left undefined in the 546 ** documentation. 547 */ 548 if( pPk ){ 549 sqlite3VdbeAddOp4Int(v, OP_NotFound, iDataCur, labelContinue,regKey,nKey); 550 VdbeCoverage(v); 551 }else{ 552 sqlite3VdbeAddOp3(v, OP_NotExists, iDataCur, labelContinue, regOldRowid); 553 VdbeCoverage(v); 554 } 555 556 /* If it did not delete it, the row-trigger may still have modified 557 ** some of the columns of the row being updated. Load the values for 558 ** all columns not modified by the update statement into their 559 ** registers in case this has happened. 560 */ 561 for(i=0; i<pTab->nCol; i++){ 562 if( aXRef[i]<0 && i!=pTab->iPKey ){ 563 sqlite3ExprCodeGetColumnOfTable(v, pTab, iDataCur, i, regNew+i); 564 } 565 } 566 } 567 568 if( !isView ){ 569 int addr1 = 0; /* Address of jump instruction */ 570 int bReplace = 0; /* True if REPLACE conflict resolution might happen */ 571 572 /* Do constraint checks. */ 573 assert( regOldRowid>0 ); 574 sqlite3GenerateConstraintChecks(pParse, pTab, aRegIdx, iDataCur, iIdxCur, 575 regNewRowid, regOldRowid, chngKey, onError, labelContinue, &bReplace, 576 aXRef); 577 578 /* Do FK constraint checks. */ 579 if( hasFK ){ 580 sqlite3FkCheck(pParse, pTab, regOldRowid, 0, aXRef, chngKey); 581 } 582 583 /* Delete the index entries associated with the current record. */ 584 if( bReplace || chngKey ){ 585 if( pPk ){ 586 addr1 = sqlite3VdbeAddOp4Int(v, OP_NotFound, iDataCur, 0, regKey, nKey); 587 }else{ 588 addr1 = sqlite3VdbeAddOp3(v, OP_NotExists, iDataCur, 0, regOldRowid); 589 } 590 VdbeCoverageNeverTaken(v); 591 } 592 sqlite3GenerateRowIndexDelete(pParse, pTab, iDataCur, iIdxCur, aRegIdx, -1); 593 594 /* If changing the record number, delete the old record. */ 595 if( hasFK || chngKey || pPk!=0 ){ 596 sqlite3VdbeAddOp2(v, OP_Delete, iDataCur, 0); 597 } 598 if( bReplace || chngKey ){ 599 sqlite3VdbeJumpHere(v, addr1); 600 } 601 602 if( hasFK ){ 603 sqlite3FkCheck(pParse, pTab, 0, regNewRowid, aXRef, chngKey); 604 } 605 606 /* Insert the new index entries and the new record. */ 607 sqlite3CompleteInsertion(pParse, pTab, iDataCur, iIdxCur, 608 regNewRowid, aRegIdx, 1, 0, 0); 609 610 /* Do any ON CASCADE, SET NULL or SET DEFAULT operations required to 611 ** handle rows (possibly in other tables) that refer via a foreign key 612 ** to the row just updated. */ 613 if( hasFK ){ 614 sqlite3FkActions(pParse, pTab, pChanges, regOldRowid, aXRef, chngKey); 615 } 616 } 617 618 /* Increment the row counter 619 */ 620 if( (db->flags & SQLITE_CountRows) && !pParse->pTriggerTab){ 621 sqlite3VdbeAddOp2(v, OP_AddImm, regRowCount, 1); 622 } 623 624 sqlite3CodeRowTrigger(pParse, pTrigger, TK_UPDATE, pChanges, 625 TRIGGER_AFTER, pTab, regOldRowid, onError, labelContinue); 626 627 /* Repeat the above with the next record to be updated, until 628 ** all record selected by the WHERE clause have been updated. 629 */ 630 if( okOnePass ){ 631 /* Nothing to do at end-of-loop for a single-pass */ 632 }else if( pPk ){ 633 sqlite3VdbeResolveLabel(v, labelContinue); 634 sqlite3VdbeAddOp2(v, OP_Next, iEph, addrTop); VdbeCoverage(v); 635 }else{ 636 sqlite3VdbeGoto(v, labelContinue); 637 } 638 sqlite3VdbeResolveLabel(v, labelBreak); 639 640 /* Close all tables */ 641 for(i=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, i++){ 642 assert( aRegIdx ); 643 if( aToOpen[i+1] ){ 644 sqlite3VdbeAddOp2(v, OP_Close, iIdxCur+i, 0); 645 } 646 } 647 if( iDataCur<iIdxCur ) sqlite3VdbeAddOp2(v, OP_Close, iDataCur, 0); 648 649 /* Update the sqlite_sequence table by storing the content of the 650 ** maximum rowid counter values recorded while inserting into 651 ** autoincrement tables. 652 */ 653 if( pParse->nested==0 && pParse->pTriggerTab==0 ){ 654 sqlite3AutoincrementEnd(pParse); 655 } 656 657 /* 658 ** Return the number of rows that were changed. If this routine is 659 ** generating code because of a call to sqlite3NestedParse(), do not 660 ** invoke the callback function. 661 */ 662 if( (db->flags&SQLITE_CountRows) && !pParse->pTriggerTab && !pParse->nested ){ 663 sqlite3VdbeAddOp2(v, OP_ResultRow, regRowCount, 1); 664 sqlite3VdbeSetNumCols(v, 1); 665 sqlite3VdbeSetColName(v, 0, COLNAME_NAME, "rows updated", SQLITE_STATIC); 666 } 667 668 update_cleanup: 669 sqlite3AuthContextPop(&sContext); 670 sqlite3DbFree(db, aXRef); /* Also frees aRegIdx[] and aToOpen[] */ 671 sqlite3SrcListDelete(db, pTabList); 672 sqlite3ExprListDelete(db, pChanges); 673 sqlite3ExprDelete(db, pWhere); 674 return; 675 } 676 /* Make sure "isView" and other macros defined above are undefined. Otherwise 677 ** they may interfere with compilation of other functions in this file 678 ** (or in another file, if this file becomes part of the amalgamation). */ 679 #ifdef isView 680 #undef isView 681 #endif 682 #ifdef pTrigger 683 #undef pTrigger 684 #endif 685 686 #ifndef SQLITE_OMIT_VIRTUALTABLE 687 /* 688 ** Generate code for an UPDATE of a virtual table. 689 ** 690 ** There are two possible strategies - the default and the special 691 ** "onepass" strategy. Onepass is only used if the virtual table 692 ** implementation indicates that pWhere may match at most one row. 693 ** 694 ** The default strategy is to create an ephemeral table that contains 695 ** for each row to be changed: 696 ** 697 ** (A) The original rowid of that row. 698 ** (B) The revised rowid for the row. 699 ** (C) The content of every column in the row. 700 ** 701 ** Then loop through the contents of this ephemeral table executing a 702 ** VUpdate for each row. When finished, drop the ephemeral table. 703 ** 704 ** The "onepass" strategy does not use an ephemeral table. Instead, it 705 ** stores the same values (A, B and C above) in a register array and 706 ** makes a single invocation of VUpdate. 707 */ 708 static void updateVirtualTable( 709 Parse *pParse, /* The parsing context */ 710 SrcList *pSrc, /* The virtual table to be modified */ 711 Table *pTab, /* The virtual table */ 712 ExprList *pChanges, /* The columns to change in the UPDATE statement */ 713 Expr *pRowid, /* Expression used to recompute the rowid */ 714 int *aXRef, /* Mapping from columns of pTab to entries in pChanges */ 715 Expr *pWhere, /* WHERE clause of the UPDATE statement */ 716 int onError /* ON CONFLICT strategy */ 717 ){ 718 Vdbe *v = pParse->pVdbe; /* Virtual machine under construction */ 719 int ephemTab; /* Table holding the result of the SELECT */ 720 int i; /* Loop counter */ 721 sqlite3 *db = pParse->db; /* Database connection */ 722 const char *pVTab = (const char*)sqlite3GetVTable(db, pTab); 723 WhereInfo *pWInfo; 724 int nArg = 2 + pTab->nCol; /* Number of arguments to VUpdate */ 725 int regArg; /* First register in VUpdate arg array */ 726 int regRec; /* Register in which to assemble record */ 727 int regRowid; /* Register for ephem table rowid */ 728 int iCsr = pSrc->a[0].iCursor; /* Cursor used for virtual table scan */ 729 int aDummy[2]; /* Unused arg for sqlite3WhereOkOnePass() */ 730 int bOnePass; /* True to use onepass strategy */ 731 int addr; /* Address of OP_OpenEphemeral */ 732 733 /* Allocate nArg registers to martial the arguments to VUpdate. Then 734 ** create and open the ephemeral table in which the records created from 735 ** these arguments will be temporarily stored. */ 736 assert( v ); 737 ephemTab = pParse->nTab++; 738 addr= sqlite3VdbeAddOp2(v, OP_OpenEphemeral, ephemTab, nArg); 739 regArg = pParse->nMem + 1; 740 pParse->nMem += nArg; 741 regRec = ++pParse->nMem; 742 regRowid = ++pParse->nMem; 743 744 /* Start scanning the virtual table */ 745 pWInfo = sqlite3WhereBegin(pParse, pSrc, pWhere, 0,0,WHERE_ONEPASS_DESIRED,0); 746 if( pWInfo==0 ) return; 747 748 /* Populate the argument registers. */ 749 sqlite3VdbeAddOp2(v, OP_Rowid, iCsr, regArg); 750 if( pRowid ){ 751 sqlite3ExprCode(pParse, pRowid, regArg+1); 752 }else{ 753 sqlite3VdbeAddOp2(v, OP_Rowid, iCsr, regArg+1); 754 } 755 for(i=0; i<pTab->nCol; i++){ 756 if( aXRef[i]>=0 ){ 757 sqlite3ExprCode(pParse, pChanges->a[aXRef[i]].pExpr, regArg+2+i); 758 }else{ 759 sqlite3VdbeAddOp3(v, OP_VColumn, iCsr, i, regArg+2+i); 760 } 761 } 762 763 bOnePass = sqlite3WhereOkOnePass(pWInfo, aDummy); 764 765 if( bOnePass ){ 766 /* If using the onepass strategy, no-op out the OP_OpenEphemeral coded 767 ** above. Also, if this is a top-level parse (not a trigger), clear the 768 ** multi-write flag so that the VM does not open a statement journal */ 769 sqlite3VdbeChangeToNoop(v, addr); 770 if( sqlite3IsToplevel(pParse) ){ 771 pParse->isMultiWrite = 0; 772 } 773 }else{ 774 /* Create a record from the argument register contents and insert it into 775 ** the ephemeral table. */ 776 sqlite3VdbeAddOp3(v, OP_MakeRecord, regArg, nArg, regRec); 777 sqlite3VdbeAddOp2(v, OP_NewRowid, ephemTab, regRowid); 778 sqlite3VdbeAddOp3(v, OP_Insert, ephemTab, regRec, regRowid); 779 } 780 781 782 if( bOnePass==0 ){ 783 /* End the virtual table scan */ 784 sqlite3WhereEnd(pWInfo); 785 786 /* Begin scannning through the ephemeral table. */ 787 addr = sqlite3VdbeAddOp1(v, OP_Rewind, ephemTab); VdbeCoverage(v); 788 789 /* Extract arguments from the current row of the ephemeral table and 790 ** invoke the VUpdate method. */ 791 for(i=0; i<nArg; i++){ 792 sqlite3VdbeAddOp3(v, OP_Column, ephemTab, i, regArg+i); 793 } 794 } 795 sqlite3VtabMakeWritable(pParse, pTab); 796 sqlite3VdbeAddOp4(v, OP_VUpdate, 0, nArg, regArg, pVTab, P4_VTAB); 797 sqlite3VdbeChangeP5(v, onError==OE_Default ? OE_Abort : onError); 798 sqlite3MayAbort(pParse); 799 800 /* End of the ephemeral table scan. Or, if using the onepass strategy, 801 ** jump to here if the scan visited zero rows. */ 802 if( bOnePass==0 ){ 803 sqlite3VdbeAddOp2(v, OP_Next, ephemTab, addr+1); VdbeCoverage(v); 804 sqlite3VdbeJumpHere(v, addr); 805 sqlite3VdbeAddOp2(v, OP_Close, ephemTab, 0); 806 }else{ 807 sqlite3WhereEnd(pWInfo); 808 } 809 } 810 #endif /* SQLITE_OMIT_VIRTUALTABLE */ 811