1cce7d176Sdrh /* 2b19a2bc6Sdrh ** 2001 September 15 3cce7d176Sdrh ** 4b19a2bc6Sdrh ** The author disclaims copyright to this source code. In place of 5b19a2bc6Sdrh ** a legal notice, here is a blessing: 6cce7d176Sdrh ** 7b19a2bc6Sdrh ** May you do good and not evil. 8b19a2bc6Sdrh ** May you find forgiveness for yourself and forgive others. 9b19a2bc6Sdrh ** May you share freely, never taking more than you give. 10cce7d176Sdrh ** 11cce7d176Sdrh ************************************************************************* 12cce7d176Sdrh ** This file contains C code routines that are called by the parser 13b19a2bc6Sdrh ** to handle INSERT statements in SQLite. 14cce7d176Sdrh */ 15cce7d176Sdrh #include "sqliteInt.h" 16cce7d176Sdrh 17cce7d176Sdrh /* 1826198bb4Sdrh ** Generate code that will 19dd9930efSdrh ** 2026198bb4Sdrh ** (1) acquire a lock for table pTab then 2126198bb4Sdrh ** (2) open pTab as cursor iCur. 2226198bb4Sdrh ** 2326198bb4Sdrh ** If pTab is a WITHOUT ROWID table, then it is the PRIMARY KEY index 2426198bb4Sdrh ** for that table that is actually opened. 25bbb5e4e0Sdrh */ 26bbb5e4e0Sdrh void sqlite3OpenTable( 272ec2fb22Sdrh Parse *pParse, /* Generate code into this VDBE */ 28bbb5e4e0Sdrh int iCur, /* The cursor number of the table */ 29bbb5e4e0Sdrh int iDb, /* The database index in sqlite3.aDb[] */ 30bbb5e4e0Sdrh Table *pTab, /* The table to be opened */ 31bbb5e4e0Sdrh int opcode /* OP_OpenRead or OP_OpenWrite */ 32bbb5e4e0Sdrh ){ 33bbb5e4e0Sdrh Vdbe *v; 345f53aac2Sdrh assert( !IsVirtual(pTab) ); 352ec2fb22Sdrh v = sqlite3GetVdbe(pParse); 36bbb5e4e0Sdrh assert( opcode==OP_OpenWrite || opcode==OP_OpenRead ); 372ec2fb22Sdrh sqlite3TableLock(pParse, iDb, pTab->tnum, 382ec2fb22Sdrh (opcode==OP_OpenWrite)?1:0, pTab->zName); 39ec95c441Sdrh if( HasRowid(pTab) ){ 40261c02d9Sdrh sqlite3VdbeAddOp4Int(v, opcode, iCur, pTab->tnum, iDb, pTab->nCol); 41bbb5e4e0Sdrh VdbeComment((v, "%s", pTab->zName)); 4226198bb4Sdrh }else{ 43dd9930efSdrh Index *pPk = sqlite3PrimaryKeyIndex(pTab); 44dd9930efSdrh assert( pPk!=0 ); 45afe028a8Sdrh assert( pPk->tnum==pTab->tnum ); 462ec2fb22Sdrh sqlite3VdbeAddOp3(v, opcode, iCur, pPk->tnum, iDb); 472ec2fb22Sdrh sqlite3VdbeSetP4KeyInfo(pParse, pPk); 48bbb5e4e0Sdrh VdbeComment((v, "%s", pTab->zName)); 49bbb5e4e0Sdrh } 50bbb5e4e0Sdrh } 51bbb5e4e0Sdrh 52bbb5e4e0Sdrh /* 5369f8bb9cSdan ** Return a pointer to the column affinity string associated with index 5469f8bb9cSdan ** pIdx. A column affinity string has one character for each column in 5569f8bb9cSdan ** the table, according to the affinity of the column: 563d1bfeaaSdanielk1977 ** 573d1bfeaaSdanielk1977 ** Character Column affinity 583d1bfeaaSdanielk1977 ** ------------------------------ 5905883a34Sdrh ** 'A' BLOB 604583c37cSdrh ** 'B' TEXT 614583c37cSdrh ** 'C' NUMERIC 624583c37cSdrh ** 'D' INTEGER 634583c37cSdrh ** 'F' REAL 642d401ab8Sdrh ** 654583c37cSdrh ** An extra 'D' is appended to the end of the string to cover the 662d401ab8Sdrh ** rowid that appears as the last column in every index. 6769f8bb9cSdan ** 6869f8bb9cSdan ** Memory for the buffer containing the column index affinity string 6969f8bb9cSdan ** is managed along with the rest of the Index structure. It will be 7069f8bb9cSdan ** released when sqlite3DeleteIndex() is called. 713d1bfeaaSdanielk1977 */ 72e9107698Sdrh const char *sqlite3IndexAffinityStr(sqlite3 *db, Index *pIdx){ 73a37cdde0Sdanielk1977 if( !pIdx->zColAff ){ 74e014a838Sdanielk1977 /* The first time a column affinity string for a particular index is 75a37cdde0Sdanielk1977 ** required, it is allocated and populated here. It is then stored as 76e014a838Sdanielk1977 ** a member of the Index structure for subsequent use. 77a37cdde0Sdanielk1977 ** 78a37cdde0Sdanielk1977 ** The column affinity string will eventually be deleted by 79e014a838Sdanielk1977 ** sqliteDeleteIndex() when the Index structure itself is cleaned 80a37cdde0Sdanielk1977 ** up. 81a37cdde0Sdanielk1977 */ 82a37cdde0Sdanielk1977 int n; 83a37cdde0Sdanielk1977 Table *pTab = pIdx->pTable; 84ad124329Sdrh pIdx->zColAff = (char *)sqlite3DbMallocRaw(0, pIdx->nColumn+1); 85a37cdde0Sdanielk1977 if( !pIdx->zColAff ){ 864a642b60Sdrh sqlite3OomFault(db); 8769f8bb9cSdan return 0; 88a37cdde0Sdanielk1977 } 89a37cdde0Sdanielk1977 for(n=0; n<pIdx->nColumn; n++){ 90ad124329Sdrh i16 x = pIdx->aiColumn[n]; 916860e6faSdrh char aff; 9281506b88Sdrh if( x>=0 ){ 9381506b88Sdrh aff = pTab->aCol[x].affinity; 9481506b88Sdrh }else if( x==XN_ROWID ){ 9581506b88Sdrh aff = SQLITE_AFF_INTEGER; 9681506b88Sdrh }else{ 974b92f98cSdrh assert( x==XN_EXPR ); 981f9ca2c8Sdrh assert( pIdx->aColExpr!=0 ); 996860e6faSdrh aff = sqlite3ExprAffinity(pIdx->aColExpr->a[n].pExpr); 10081506b88Sdrh } 10196fb16eeSdrh if( aff<SQLITE_AFF_BLOB ) aff = SQLITE_AFF_BLOB; 1027314495fSdrh if( aff>SQLITE_AFF_NUMERIC) aff = SQLITE_AFF_NUMERIC; 1036860e6faSdrh pIdx->zColAff[n] = aff; 1041f9ca2c8Sdrh } 1052d401ab8Sdrh pIdx->zColAff[n] = 0; 106a37cdde0Sdanielk1977 } 1073d1bfeaaSdanielk1977 10869f8bb9cSdan return pIdx->zColAff; 109a37cdde0Sdanielk1977 } 110a37cdde0Sdanielk1977 111a37cdde0Sdanielk1977 /* 11257bf4a8eSdrh ** Compute the affinity string for table pTab, if it has not already been 11305883a34Sdrh ** computed. As an optimization, omit trailing SQLITE_AFF_BLOB affinities. 11457bf4a8eSdrh ** 11505883a34Sdrh ** If the affinity exists (if it is no entirely SQLITE_AFF_BLOB values) and 11657bf4a8eSdrh ** if iReg>0 then code an OP_Affinity opcode that will set the affinities 11757bf4a8eSdrh ** for register iReg and following. Or if affinities exists and iReg==0, 11857bf4a8eSdrh ** then just set the P4 operand of the previous opcode (which should be 11957bf4a8eSdrh ** an OP_MakeRecord) to the affinity string. 12057bf4a8eSdrh ** 121b6e8fd10Sdrh ** A column affinity string has one character per column: 122a37cdde0Sdanielk1977 ** 123a37cdde0Sdanielk1977 ** Character Column affinity 124a37cdde0Sdanielk1977 ** ------------------------------ 12505883a34Sdrh ** 'A' BLOB 1264583c37cSdrh ** 'B' TEXT 1274583c37cSdrh ** 'C' NUMERIC 1284583c37cSdrh ** 'D' INTEGER 1294583c37cSdrh ** 'E' REAL 130a37cdde0Sdanielk1977 */ 13157bf4a8eSdrh void sqlite3TableAffinity(Vdbe *v, Table *pTab, int iReg){ 1323d1bfeaaSdanielk1977 int i; 13357bf4a8eSdrh char *zColAff = pTab->zColAff; 13457bf4a8eSdrh if( zColAff==0 ){ 135abb6fcabSdrh sqlite3 *db = sqlite3VdbeDb(v); 136b975598eSdrh zColAff = (char *)sqlite3DbMallocRaw(0, pTab->nCol+1); 1373d1bfeaaSdanielk1977 if( !zColAff ){ 1384a642b60Sdrh sqlite3OomFault(db); 139a37cdde0Sdanielk1977 return; 1403d1bfeaaSdanielk1977 } 1413d1bfeaaSdanielk1977 1423d1bfeaaSdanielk1977 for(i=0; i<pTab->nCol; i++){ 14396fb16eeSdrh assert( pTab->aCol[i].affinity!=0 ); 144a37cdde0Sdanielk1977 zColAff[i] = pTab->aCol[i].affinity; 1453d1bfeaaSdanielk1977 } 14657bf4a8eSdrh do{ 14757bf4a8eSdrh zColAff[i--] = 0; 14896fb16eeSdrh }while( i>=0 && zColAff[i]<=SQLITE_AFF_BLOB ); 1493d1bfeaaSdanielk1977 pTab->zColAff = zColAff; 1503d1bfeaaSdanielk1977 } 1517301e774Sdrh assert( zColAff!=0 ); 1527301e774Sdrh i = sqlite3Strlen30NN(zColAff); 15357bf4a8eSdrh if( i ){ 15457bf4a8eSdrh if( iReg ){ 15557bf4a8eSdrh sqlite3VdbeAddOp4(v, OP_Affinity, iReg, i, 0, zColAff, i); 15657bf4a8eSdrh }else{ 15757bf4a8eSdrh sqlite3VdbeChangeP4(v, -1, zColAff, i); 15857bf4a8eSdrh } 15957bf4a8eSdrh } 1603d1bfeaaSdanielk1977 } 1613d1bfeaaSdanielk1977 1624d88778bSdanielk1977 /* 16348d1178aSdrh ** Return non-zero if the table pTab in database iDb or any of its indices 164b6e8fd10Sdrh ** have been opened at any point in the VDBE program. This is used to see if 16548d1178aSdrh ** a statement of the form "INSERT INTO <iDb, pTab> SELECT ..." can 166b6e8fd10Sdrh ** run without using a temporary table for the results of the SELECT. 1674d88778bSdanielk1977 */ 16805a86c5cSdrh static int readsTable(Parse *p, int iDb, Table *pTab){ 169595a523aSdanielk1977 Vdbe *v = sqlite3GetVdbe(p); 1704d88778bSdanielk1977 int i; 17148d1178aSdrh int iEnd = sqlite3VdbeCurrentAddr(v); 172595a523aSdanielk1977 #ifndef SQLITE_OMIT_VIRTUALTABLE 173595a523aSdanielk1977 VTable *pVTab = IsVirtual(pTab) ? sqlite3GetVTable(p->db, pTab) : 0; 174595a523aSdanielk1977 #endif 175595a523aSdanielk1977 17605a86c5cSdrh for(i=1; i<iEnd; i++){ 17748d1178aSdrh VdbeOp *pOp = sqlite3VdbeGetOp(v, i); 178ef0bea92Sdrh assert( pOp!=0 ); 179207872a4Sdanielk1977 if( pOp->opcode==OP_OpenRead && pOp->p3==iDb ){ 18048d1178aSdrh Index *pIndex; 181207872a4Sdanielk1977 int tnum = pOp->p2; 18248d1178aSdrh if( tnum==pTab->tnum ){ 18348d1178aSdrh return 1; 18448d1178aSdrh } 18548d1178aSdrh for(pIndex=pTab->pIndex; pIndex; pIndex=pIndex->pNext){ 18648d1178aSdrh if( tnum==pIndex->tnum ){ 18748d1178aSdrh return 1; 18848d1178aSdrh } 18948d1178aSdrh } 19048d1178aSdrh } 191543165efSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 192595a523aSdanielk1977 if( pOp->opcode==OP_VOpen && pOp->p4.pVtab==pVTab ){ 1932dca4ac1Sdanielk1977 assert( pOp->p4.pVtab!=0 ); 19466a5167bSdrh assert( pOp->p4type==P4_VTAB ); 19548d1178aSdrh return 1; 1964d88778bSdanielk1977 } 197543165efSdrh #endif 1984d88778bSdanielk1977 } 1994d88778bSdanielk1977 return 0; 2004d88778bSdanielk1977 } 2013d1bfeaaSdanielk1977 2029d9cf229Sdrh #ifndef SQLITE_OMIT_AUTOINCREMENT 2039d9cf229Sdrh /* 2040b9f50d8Sdrh ** Locate or create an AutoincInfo structure associated with table pTab 2050b9f50d8Sdrh ** which is in database iDb. Return the register number for the register 2069ef5e770Sdrh ** that holds the maximum rowid. Return zero if pTab is not an AUTOINCREMENT 2079ef5e770Sdrh ** table. (Also return zero when doing a VACUUM since we do not want to 2089ef5e770Sdrh ** update the AUTOINCREMENT counters during a VACUUM.) 2099d9cf229Sdrh ** 2100b9f50d8Sdrh ** There is at most one AutoincInfo structure per table even if the 2110b9f50d8Sdrh ** same table is autoincremented multiple times due to inserts within 2120b9f50d8Sdrh ** triggers. A new AutoincInfo structure is created if this is the 2130b9f50d8Sdrh ** first use of table pTab. On 2nd and subsequent uses, the original 2140b9f50d8Sdrh ** AutoincInfo structure is used. 2159d9cf229Sdrh ** 216c8abbc11Sdrh ** Four consecutive registers are allocated: 2170b9f50d8Sdrh ** 218c8abbc11Sdrh ** (1) The name of the pTab table. 219c8abbc11Sdrh ** (2) The maximum ROWID of pTab. 220c8abbc11Sdrh ** (3) The rowid in sqlite_sequence of pTab 221c8abbc11Sdrh ** (4) The original value of the max ROWID in pTab, or NULL if none 2220b9f50d8Sdrh ** 2230b9f50d8Sdrh ** The 2nd register is the one that is returned. That is all the 2240b9f50d8Sdrh ** insert routine needs to know about. 2259d9cf229Sdrh */ 2269d9cf229Sdrh static int autoIncBegin( 2279d9cf229Sdrh Parse *pParse, /* Parsing context */ 2289d9cf229Sdrh int iDb, /* Index of the database holding pTab */ 2299d9cf229Sdrh Table *pTab /* The table we are writing to */ 2309d9cf229Sdrh ){ 2316a288a33Sdrh int memId = 0; /* Register holding maximum rowid */ 232186ebd41Sdrh assert( pParse->db->aDb[iDb].pSchema!=0 ); 2339ef5e770Sdrh if( (pTab->tabFlags & TF_Autoincrement)!=0 2348257aa8dSdrh && (pParse->db->mDbFlags & DBFLAG_Vacuum)==0 2359ef5e770Sdrh ){ 23665a7cd16Sdan Parse *pToplevel = sqlite3ParseToplevel(pParse); 2370b9f50d8Sdrh AutoincInfo *pInfo; 238186ebd41Sdrh Table *pSeqTab = pParse->db->aDb[iDb].pSchema->pSeqTab; 239186ebd41Sdrh 240186ebd41Sdrh /* Verify that the sqlite_sequence table exists and is an ordinary 241186ebd41Sdrh ** rowid table with exactly two columns. 242186ebd41Sdrh ** Ticket d8dc2b3a58cd5dc2918a1d4acb 2018-05-23 */ 243186ebd41Sdrh if( pSeqTab==0 244186ebd41Sdrh || !HasRowid(pSeqTab) 245186ebd41Sdrh || IsVirtual(pSeqTab) 246186ebd41Sdrh || pSeqTab->nCol!=2 247186ebd41Sdrh ){ 248186ebd41Sdrh pParse->nErr++; 249186ebd41Sdrh pParse->rc = SQLITE_CORRUPT_SEQUENCE; 250186ebd41Sdrh return 0; 251186ebd41Sdrh } 2520b9f50d8Sdrh 25365a7cd16Sdan pInfo = pToplevel->pAinc; 2540b9f50d8Sdrh while( pInfo && pInfo->pTab!=pTab ){ pInfo = pInfo->pNext; } 2550b9f50d8Sdrh if( pInfo==0 ){ 256575fad65Sdrh pInfo = sqlite3DbMallocRawNN(pParse->db, sizeof(*pInfo)); 2570b9f50d8Sdrh if( pInfo==0 ) return 0; 25865a7cd16Sdan pInfo->pNext = pToplevel->pAinc; 25965a7cd16Sdan pToplevel->pAinc = pInfo; 2600b9f50d8Sdrh pInfo->pTab = pTab; 2610b9f50d8Sdrh pInfo->iDb = iDb; 26265a7cd16Sdan pToplevel->nMem++; /* Register to hold name of table */ 26365a7cd16Sdan pInfo->regCtr = ++pToplevel->nMem; /* Max rowid register */ 264c8abbc11Sdrh pToplevel->nMem +=2; /* Rowid in sqlite_sequence + orig max val */ 2650b9f50d8Sdrh } 2660b9f50d8Sdrh memId = pInfo->regCtr; 2679d9cf229Sdrh } 2689d9cf229Sdrh return memId; 2699d9cf229Sdrh } 2709d9cf229Sdrh 2719d9cf229Sdrh /* 2720b9f50d8Sdrh ** This routine generates code that will initialize all of the 2730b9f50d8Sdrh ** register used by the autoincrement tracker. 2740b9f50d8Sdrh */ 2750b9f50d8Sdrh void sqlite3AutoincrementBegin(Parse *pParse){ 2760b9f50d8Sdrh AutoincInfo *p; /* Information about an AUTOINCREMENT */ 2770b9f50d8Sdrh sqlite3 *db = pParse->db; /* The database connection */ 2780b9f50d8Sdrh Db *pDb; /* Database only autoinc table */ 2790b9f50d8Sdrh int memId; /* Register holding max rowid */ 2800b9f50d8Sdrh Vdbe *v = pParse->pVdbe; /* VDBE under construction */ 2810b9f50d8Sdrh 282345ba7dbSdrh /* This routine is never called during trigger-generation. It is 283345ba7dbSdrh ** only called from the top-level */ 284345ba7dbSdrh assert( pParse->pTriggerTab==0 ); 285c149f18fSdrh assert( sqlite3IsToplevel(pParse) ); 28676d462eeSdan 2870b9f50d8Sdrh assert( v ); /* We failed long ago if this is not so */ 2880b9f50d8Sdrh for(p = pParse->pAinc; p; p = p->pNext){ 2891b32554bSdrh static const int iLn = VDBE_OFFSET_LINENO(2); 2901b32554bSdrh static const VdbeOpList autoInc[] = { 2911b32554bSdrh /* 0 */ {OP_Null, 0, 0, 0}, 292c8abbc11Sdrh /* 1 */ {OP_Rewind, 0, 10, 0}, 2931b32554bSdrh /* 2 */ {OP_Column, 0, 0, 0}, 294c8abbc11Sdrh /* 3 */ {OP_Ne, 0, 9, 0}, 2951b32554bSdrh /* 4 */ {OP_Rowid, 0, 0, 0}, 2961b32554bSdrh /* 5 */ {OP_Column, 0, 1, 0}, 297c8abbc11Sdrh /* 6 */ {OP_AddImm, 0, 0, 0}, 298c8abbc11Sdrh /* 7 */ {OP_Copy, 0, 0, 0}, 299c8abbc11Sdrh /* 8 */ {OP_Goto, 0, 11, 0}, 300c8abbc11Sdrh /* 9 */ {OP_Next, 0, 2, 0}, 301c8abbc11Sdrh /* 10 */ {OP_Integer, 0, 0, 0}, 302c8abbc11Sdrh /* 11 */ {OP_Close, 0, 0, 0} 3031b32554bSdrh }; 3041b32554bSdrh VdbeOp *aOp; 3050b9f50d8Sdrh pDb = &db->aDb[p->iDb]; 3060b9f50d8Sdrh memId = p->regCtr; 3072120608eSdrh assert( sqlite3SchemaMutexHeld(db, 0, pDb->pSchema) ); 3080b9f50d8Sdrh sqlite3OpenTable(pParse, 0, p->iDb, pDb->pSchema->pSeqTab, OP_OpenRead); 309076e85f5Sdrh sqlite3VdbeLoadString(v, memId-1, p->pTab->zName); 3101b32554bSdrh aOp = sqlite3VdbeAddOpList(v, ArraySize(autoInc), autoInc, iLn); 3111b32554bSdrh if( aOp==0 ) break; 3121b32554bSdrh aOp[0].p2 = memId; 313c8abbc11Sdrh aOp[0].p3 = memId+2; 3141b32554bSdrh aOp[2].p3 = memId; 3151b32554bSdrh aOp[3].p1 = memId-1; 3161b32554bSdrh aOp[3].p3 = memId; 3171b32554bSdrh aOp[3].p5 = SQLITE_JUMPIFNULL; 3181b32554bSdrh aOp[4].p2 = memId+1; 3191b32554bSdrh aOp[5].p3 = memId; 320c8abbc11Sdrh aOp[6].p1 = memId; 321c8abbc11Sdrh aOp[7].p2 = memId+2; 322c8abbc11Sdrh aOp[7].p1 = memId; 323c8abbc11Sdrh aOp[10].p2 = memId; 32404ab586bSdrh if( pParse->nTab==0 ) pParse->nTab = 1; 3250b9f50d8Sdrh } 3260b9f50d8Sdrh } 3270b9f50d8Sdrh 3280b9f50d8Sdrh /* 3299d9cf229Sdrh ** Update the maximum rowid for an autoincrement calculation. 3309d9cf229Sdrh ** 3311b32554bSdrh ** This routine should be called when the regRowid register holds a 3329d9cf229Sdrh ** new rowid that is about to be inserted. If that new rowid is 3339d9cf229Sdrh ** larger than the maximum rowid in the memId memory cell, then the 3341b32554bSdrh ** memory cell is updated. 3359d9cf229Sdrh */ 3366a288a33Sdrh static void autoIncStep(Parse *pParse, int memId, int regRowid){ 3379d9cf229Sdrh if( memId>0 ){ 3386a288a33Sdrh sqlite3VdbeAddOp2(pParse->pVdbe, OP_MemMax, memId, regRowid); 3399d9cf229Sdrh } 3409d9cf229Sdrh } 3419d9cf229Sdrh 3429d9cf229Sdrh /* 3430b9f50d8Sdrh ** This routine generates the code needed to write autoincrement 3440b9f50d8Sdrh ** maximum rowid values back into the sqlite_sequence register. 3450b9f50d8Sdrh ** Every statement that might do an INSERT into an autoincrement 3460b9f50d8Sdrh ** table (either directly or through triggers) needs to call this 3470b9f50d8Sdrh ** routine just before the "exit" code. 3489d9cf229Sdrh */ 3491b32554bSdrh static SQLITE_NOINLINE void autoIncrementEnd(Parse *pParse){ 3500b9f50d8Sdrh AutoincInfo *p; 3519d9cf229Sdrh Vdbe *v = pParse->pVdbe; 3520b9f50d8Sdrh sqlite3 *db = pParse->db; 3536a288a33Sdrh 3549d9cf229Sdrh assert( v ); 3550b9f50d8Sdrh for(p = pParse->pAinc; p; p = p->pNext){ 3561b32554bSdrh static const int iLn = VDBE_OFFSET_LINENO(2); 3571b32554bSdrh static const VdbeOpList autoIncEnd[] = { 3581b32554bSdrh /* 0 */ {OP_NotNull, 0, 2, 0}, 3591b32554bSdrh /* 1 */ {OP_NewRowid, 0, 0, 0}, 3601b32554bSdrh /* 2 */ {OP_MakeRecord, 0, 2, 0}, 3611b32554bSdrh /* 3 */ {OP_Insert, 0, 0, 0}, 3621b32554bSdrh /* 4 */ {OP_Close, 0, 0, 0} 3631b32554bSdrh }; 3641b32554bSdrh VdbeOp *aOp; 3650b9f50d8Sdrh Db *pDb = &db->aDb[p->iDb]; 3660b9f50d8Sdrh int iRec; 3670b9f50d8Sdrh int memId = p->regCtr; 3680b9f50d8Sdrh 3690b9f50d8Sdrh iRec = sqlite3GetTempReg(pParse); 3702120608eSdrh assert( sqlite3SchemaMutexHeld(db, 0, pDb->pSchema) ); 371c8abbc11Sdrh sqlite3VdbeAddOp3(v, OP_Le, memId+2, sqlite3VdbeCurrentAddr(v)+7, memId); 372c8abbc11Sdrh VdbeCoverage(v); 3730b9f50d8Sdrh sqlite3OpenTable(pParse, 0, p->iDb, pDb->pSchema->pSeqTab, OP_OpenWrite); 3741b32554bSdrh aOp = sqlite3VdbeAddOpList(v, ArraySize(autoIncEnd), autoIncEnd, iLn); 3751b32554bSdrh if( aOp==0 ) break; 3761b32554bSdrh aOp[0].p1 = memId+1; 3771b32554bSdrh aOp[1].p2 = memId+1; 3781b32554bSdrh aOp[2].p1 = memId-1; 3791b32554bSdrh aOp[2].p3 = iRec; 3801b32554bSdrh aOp[3].p2 = iRec; 3811b32554bSdrh aOp[3].p3 = memId+1; 3821b32554bSdrh aOp[3].p5 = OPFLAG_APPEND; 3830b9f50d8Sdrh sqlite3ReleaseTempReg(pParse, iRec); 3849d9cf229Sdrh } 3859d9cf229Sdrh } 3861b32554bSdrh void sqlite3AutoincrementEnd(Parse *pParse){ 3871b32554bSdrh if( pParse->pAinc ) autoIncrementEnd(pParse); 3881b32554bSdrh } 3899d9cf229Sdrh #else 3909d9cf229Sdrh /* 3919d9cf229Sdrh ** If SQLITE_OMIT_AUTOINCREMENT is defined, then the three routines 3929d9cf229Sdrh ** above are all no-ops 3939d9cf229Sdrh */ 3949d9cf229Sdrh # define autoIncBegin(A,B,C) (0) 395287fb61cSdanielk1977 # define autoIncStep(A,B,C) 3969d9cf229Sdrh #endif /* SQLITE_OMIT_AUTOINCREMENT */ 3979d9cf229Sdrh 3989d9cf229Sdrh 3999d9cf229Sdrh /* Forward declaration */ 4009d9cf229Sdrh static int xferOptimization( 4019d9cf229Sdrh Parse *pParse, /* Parser context */ 4029d9cf229Sdrh Table *pDest, /* The table we are inserting into */ 4039d9cf229Sdrh Select *pSelect, /* A SELECT statement to use as the data source */ 4049d9cf229Sdrh int onError, /* How to handle constraint errors */ 4059d9cf229Sdrh int iDbDest /* The database of pDest */ 4069d9cf229Sdrh ); 4079d9cf229Sdrh 4083d1bfeaaSdanielk1977 /* 409d82b5021Sdrh ** This routine is called to handle SQL of the following forms: 410cce7d176Sdrh ** 411a21f78b9Sdrh ** insert into TABLE (IDLIST) values(EXPRLIST),(EXPRLIST),... 4121ccde15dSdrh ** insert into TABLE (IDLIST) select 413a21f78b9Sdrh ** insert into TABLE (IDLIST) default values 414cce7d176Sdrh ** 4151ccde15dSdrh ** The IDLIST following the table name is always optional. If omitted, 416a21f78b9Sdrh ** then a list of all (non-hidden) columns for the table is substituted. 417a21f78b9Sdrh ** The IDLIST appears in the pColumn parameter. pColumn is NULL if IDLIST 418a21f78b9Sdrh ** is omitted. 4191ccde15dSdrh ** 420a21f78b9Sdrh ** For the pSelect parameter holds the values to be inserted for the 421a21f78b9Sdrh ** first two forms shown above. A VALUES clause is really just short-hand 422a21f78b9Sdrh ** for a SELECT statement that omits the FROM clause and everything else 423a21f78b9Sdrh ** that follows. If the pSelect parameter is NULL, that means that the 424a21f78b9Sdrh ** DEFAULT VALUES form of the INSERT statement is intended. 425142e30dfSdrh ** 4269d9cf229Sdrh ** The code generated follows one of four templates. For a simple 427a21f78b9Sdrh ** insert with data coming from a single-row VALUES clause, the code executes 428e00ee6ebSdrh ** once straight down through. Pseudo-code follows (we call this 429e00ee6ebSdrh ** the "1st template"): 430142e30dfSdrh ** 431142e30dfSdrh ** open write cursor to <table> and its indices 432ec95c441Sdrh ** put VALUES clause expressions into registers 433142e30dfSdrh ** write the resulting record into <table> 434142e30dfSdrh ** cleanup 435142e30dfSdrh ** 4369d9cf229Sdrh ** The three remaining templates assume the statement is of the form 437142e30dfSdrh ** 438142e30dfSdrh ** INSERT INTO <table> SELECT ... 439142e30dfSdrh ** 4409d9cf229Sdrh ** If the SELECT clause is of the restricted form "SELECT * FROM <table2>" - 4419d9cf229Sdrh ** in other words if the SELECT pulls all columns from a single table 4429d9cf229Sdrh ** and there is no WHERE or LIMIT or GROUP BY or ORDER BY clauses, and 4439d9cf229Sdrh ** if <table2> and <table1> are distinct tables but have identical 4449d9cf229Sdrh ** schemas, including all the same indices, then a special optimization 4459d9cf229Sdrh ** is invoked that copies raw records from <table2> over to <table1>. 4469d9cf229Sdrh ** See the xferOptimization() function for the implementation of this 447e00ee6ebSdrh ** template. This is the 2nd template. 4489d9cf229Sdrh ** 4499d9cf229Sdrh ** open a write cursor to <table> 4509d9cf229Sdrh ** open read cursor on <table2> 4519d9cf229Sdrh ** transfer all records in <table2> over to <table> 4529d9cf229Sdrh ** close cursors 4539d9cf229Sdrh ** foreach index on <table> 4549d9cf229Sdrh ** open a write cursor on the <table> index 4559d9cf229Sdrh ** open a read cursor on the corresponding <table2> index 4569d9cf229Sdrh ** transfer all records from the read to the write cursors 4579d9cf229Sdrh ** close cursors 4589d9cf229Sdrh ** end foreach 4599d9cf229Sdrh ** 460e00ee6ebSdrh ** The 3rd template is for when the second template does not apply 4619d9cf229Sdrh ** and the SELECT clause does not read from <table> at any time. 4629d9cf229Sdrh ** The generated code follows this template: 463142e30dfSdrh ** 464e00ee6ebSdrh ** X <- A 465142e30dfSdrh ** goto B 466142e30dfSdrh ** A: setup for the SELECT 4679d9cf229Sdrh ** loop over the rows in the SELECT 468e00ee6ebSdrh ** load values into registers R..R+n 469e00ee6ebSdrh ** yield X 470142e30dfSdrh ** end loop 471142e30dfSdrh ** cleanup after the SELECT 47281cf13ecSdrh ** end-coroutine X 473e00ee6ebSdrh ** B: open write cursor to <table> and its indices 47481cf13ecSdrh ** C: yield X, at EOF goto D 475e00ee6ebSdrh ** insert the select result into <table> from R..R+n 476e00ee6ebSdrh ** goto C 477142e30dfSdrh ** D: cleanup 478142e30dfSdrh ** 479e00ee6ebSdrh ** The 4th template is used if the insert statement takes its 480142e30dfSdrh ** values from a SELECT but the data is being inserted into a table 481142e30dfSdrh ** that is also read as part of the SELECT. In the third form, 48260ec914cSpeter.d.reid ** we have to use an intermediate table to store the results of 483142e30dfSdrh ** the select. The template is like this: 484142e30dfSdrh ** 485e00ee6ebSdrh ** X <- A 486142e30dfSdrh ** goto B 487142e30dfSdrh ** A: setup for the SELECT 488142e30dfSdrh ** loop over the tables in the SELECT 489e00ee6ebSdrh ** load value into register R..R+n 490e00ee6ebSdrh ** yield X 491142e30dfSdrh ** end loop 492142e30dfSdrh ** cleanup after the SELECT 49381cf13ecSdrh ** end co-routine R 494e00ee6ebSdrh ** B: open temp table 49581cf13ecSdrh ** L: yield X, at EOF goto M 496e00ee6ebSdrh ** insert row from R..R+n into temp table 497e00ee6ebSdrh ** goto L 498e00ee6ebSdrh ** M: open write cursor to <table> and its indices 499e00ee6ebSdrh ** rewind temp table 500e00ee6ebSdrh ** C: loop over rows of intermediate table 501142e30dfSdrh ** transfer values form intermediate table into <table> 502e00ee6ebSdrh ** end loop 503e00ee6ebSdrh ** D: cleanup 504cce7d176Sdrh */ 5054adee20fSdanielk1977 void sqlite3Insert( 506cce7d176Sdrh Parse *pParse, /* Parser context */ 507113088ecSdrh SrcList *pTabList, /* Name of table into which we are inserting */ 5085974a30fSdrh Select *pSelect, /* A SELECT statement to use as the data source */ 5099cfcf5d4Sdrh IdList *pColumn, /* Column names corresponding to IDLIST. */ 5102c2e844aSdrh int onError, /* How to handle constraint errors */ 51146d2e5c3Sdrh Upsert *pUpsert /* ON CONFLICT clauses for upsert, or NULL */ 512cce7d176Sdrh ){ 5136a288a33Sdrh sqlite3 *db; /* The main database structure */ 5146a288a33Sdrh Table *pTab; /* The table to insert into. aka TABLE */ 51560ffc807Sdrh int i, j; /* Loop counters */ 5165974a30fSdrh Vdbe *v; /* Generate code into this virtual machine */ 5175974a30fSdrh Index *pIdx; /* For looping over indices of the table */ 518967e8b73Sdrh int nColumn; /* Number of columns in the data */ 5196a288a33Sdrh int nHidden = 0; /* Number of hidden columns if TABLE is virtual */ 52026198bb4Sdrh int iDataCur = 0; /* VDBE cursor that is the main data repository */ 52126198bb4Sdrh int iIdxCur = 0; /* First index cursor */ 522d82b5021Sdrh int ipkColumn = -1; /* Column that is the INTEGER PRIMARY KEY */ 5230ca3e24bSdrh int endOfLoop; /* Label for the end of the insertion loop */ 524cfe9a69fSdanielk1977 int srcTab = 0; /* Data comes from this temporary cursor if >=0 */ 525e00ee6ebSdrh int addrInsTop = 0; /* Jump to label "D" */ 526e00ee6ebSdrh int addrCont = 0; /* Top of insert loop. Label "C" in templates 3 and 4 */ 5272eb95377Sdrh SelectDest dest; /* Destination for SELECT on rhs of INSERT */ 5286a288a33Sdrh int iDb; /* Index of database holding TABLE */ 52905a86c5cSdrh u8 useTempTable = 0; /* Store SELECT results in intermediate table */ 53005a86c5cSdrh u8 appendFlag = 0; /* True if the insert is likely to be an append */ 53105a86c5cSdrh u8 withoutRowid; /* 0 for normal table. 1 for WITHOUT ROWID table */ 532a21f78b9Sdrh u8 bIdListInOrder; /* True if IDLIST is in table order */ 53375593d96Sdrh ExprList *pList = 0; /* List of VALUES() to be inserted */ 534cce7d176Sdrh 5356a288a33Sdrh /* Register allocations */ 5361bd10f8aSdrh int regFromSelect = 0;/* Base register for data coming from SELECT */ 5376a288a33Sdrh int regAutoinc = 0; /* Register holding the AUTOINCREMENT counter */ 5386a288a33Sdrh int regRowCount = 0; /* Memory cell used for the row counter */ 5396a288a33Sdrh int regIns; /* Block of regs holding rowid+data being inserted */ 5406a288a33Sdrh int regRowid; /* registers holding insert rowid */ 5416a288a33Sdrh int regData; /* register holding first column to insert */ 542aa9b8963Sdrh int *aRegIdx = 0; /* One register allocated to each index */ 5436a288a33Sdrh 544798da52cSdrh #ifndef SQLITE_OMIT_TRIGGER 545798da52cSdrh int isView; /* True if attempting to insert into a view */ 5462f886d1dSdanielk1977 Trigger *pTrigger; /* List of triggers on pTab, if required */ 5472f886d1dSdanielk1977 int tmask; /* Mask of trigger times */ 548798da52cSdrh #endif 549c3f9bad2Sdanielk1977 55017435752Sdrh db = pParse->db; 55117435752Sdrh if( pParse->nErr || db->mallocFailed ){ 5526f7adc8aSdrh goto insert_cleanup; 5536f7adc8aSdrh } 5544c883487Sdrh dest.iSDParm = 0; /* Suppress a harmless compiler warning */ 555daffd0e5Sdrh 55675593d96Sdrh /* If the Select object is really just a simple VALUES() list with a 557a21f78b9Sdrh ** single row (the common case) then keep that one row of values 558a21f78b9Sdrh ** and discard the other (unused) parts of the pSelect object 55975593d96Sdrh */ 56075593d96Sdrh if( pSelect && (pSelect->selFlags & SF_Values)!=0 && pSelect->pPrior==0 ){ 56175593d96Sdrh pList = pSelect->pEList; 56275593d96Sdrh pSelect->pEList = 0; 56375593d96Sdrh sqlite3SelectDelete(db, pSelect); 56475593d96Sdrh pSelect = 0; 56575593d96Sdrh } 56675593d96Sdrh 5671ccde15dSdrh /* Locate the table into which we will be inserting new information. 5681ccde15dSdrh */ 569113088ecSdrh assert( pTabList->nSrc==1 ); 5704adee20fSdanielk1977 pTab = sqlite3SrcListLookup(pParse, pTabList); 571c3f9bad2Sdanielk1977 if( pTab==0 ){ 572c3f9bad2Sdanielk1977 goto insert_cleanup; 573c3f9bad2Sdanielk1977 } 574da184236Sdanielk1977 iDb = sqlite3SchemaToIndex(db, pTab->pSchema); 575da184236Sdanielk1977 assert( iDb<db->nDb ); 576a0daa751Sdrh if( sqlite3AuthCheck(pParse, SQLITE_INSERT, pTab->zName, 0, 577a0daa751Sdrh db->aDb[iDb].zDbSName) ){ 5781962bda7Sdrh goto insert_cleanup; 5791962bda7Sdrh } 580ec95c441Sdrh withoutRowid = !HasRowid(pTab); 581c3f9bad2Sdanielk1977 582b7f9164eSdrh /* Figure out if we have any triggers and if the table being 583b7f9164eSdrh ** inserted into is a view 584b7f9164eSdrh */ 585b7f9164eSdrh #ifndef SQLITE_OMIT_TRIGGER 5862f886d1dSdanielk1977 pTrigger = sqlite3TriggersExist(pParse, pTab, TK_INSERT, 0, &tmask); 587b7f9164eSdrh isView = pTab->pSelect!=0; 588b7f9164eSdrh #else 5892f886d1dSdanielk1977 # define pTrigger 0 5902f886d1dSdanielk1977 # define tmask 0 591b7f9164eSdrh # define isView 0 592b7f9164eSdrh #endif 593b7f9164eSdrh #ifdef SQLITE_OMIT_VIEW 594b7f9164eSdrh # undef isView 595b7f9164eSdrh # define isView 0 596b7f9164eSdrh #endif 5972f886d1dSdanielk1977 assert( (pTrigger && tmask) || (pTrigger==0 && tmask==0) ); 598b7f9164eSdrh 599f573c99bSdrh /* If pTab is really a view, make sure it has been initialized. 600d82b5021Sdrh ** ViewGetColumnNames() is a no-op if pTab is not a view. 601f573c99bSdrh */ 602b3d24bf8Sdanielk1977 if( sqlite3ViewGetColumnNames(pParse, pTab) ){ 603f573c99bSdrh goto insert_cleanup; 604f573c99bSdrh } 605f573c99bSdrh 606d82b5021Sdrh /* Cannot insert into a read-only table. 607595a523aSdanielk1977 */ 608595a523aSdanielk1977 if( sqlite3IsReadOnly(pParse, pTab, tmask) ){ 609595a523aSdanielk1977 goto insert_cleanup; 610595a523aSdanielk1977 } 611595a523aSdanielk1977 6121ccde15dSdrh /* Allocate a VDBE 6131ccde15dSdrh */ 6144adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 6155974a30fSdrh if( v==0 ) goto insert_cleanup; 6164794f735Sdrh if( pParse->nested==0 ) sqlite3VdbeCountChanges(v); 6172f886d1dSdanielk1977 sqlite3BeginWriteOperation(pParse, pSelect || pTrigger, iDb); 6181ccde15dSdrh 6199d9cf229Sdrh #ifndef SQLITE_OMIT_XFER_OPT 6209d9cf229Sdrh /* If the statement is of the form 6219d9cf229Sdrh ** 6229d9cf229Sdrh ** INSERT INTO <table1> SELECT * FROM <table2>; 6239d9cf229Sdrh ** 6249d9cf229Sdrh ** Then special optimizations can be applied that make the transfer 6259d9cf229Sdrh ** very fast and which reduce fragmentation of indices. 626e00ee6ebSdrh ** 627e00ee6ebSdrh ** This is the 2nd template. 6289d9cf229Sdrh */ 6299d9cf229Sdrh if( pColumn==0 && xferOptimization(pParse, pTab, pSelect, onError, iDb) ){ 6302f886d1dSdanielk1977 assert( !pTrigger ); 6319d9cf229Sdrh assert( pList==0 ); 6320b9f50d8Sdrh goto insert_end; 6339d9cf229Sdrh } 6349d9cf229Sdrh #endif /* SQLITE_OMIT_XFER_OPT */ 6359d9cf229Sdrh 6362958a4e6Sdrh /* If this is an AUTOINCREMENT table, look up the sequence number in the 6376a288a33Sdrh ** sqlite_sequence table and store it in memory cell regAutoinc. 6382958a4e6Sdrh */ 6396a288a33Sdrh regAutoinc = autoIncBegin(pParse, iDb, pTab); 6402958a4e6Sdrh 64105a86c5cSdrh /* Allocate registers for holding the rowid of the new row, 64260ec914cSpeter.d.reid ** the content of the new row, and the assembled row record. 6431ccde15dSdrh */ 64405a86c5cSdrh regRowid = regIns = pParse->nMem+1; 64505a86c5cSdrh pParse->nMem += pTab->nCol + 1; 646034ca14fSdanielk1977 if( IsVirtual(pTab) ){ 64705a86c5cSdrh regRowid++; 64805a86c5cSdrh pParse->nMem++; 649034ca14fSdanielk1977 } 65005a86c5cSdrh regData = regRowid+1; 6511ccde15dSdrh 6521ccde15dSdrh /* If the INSERT statement included an IDLIST term, then make sure 6531ccde15dSdrh ** all elements of the IDLIST really are columns of the table and 6541ccde15dSdrh ** remember the column indices. 655c8392586Sdrh ** 656c8392586Sdrh ** If the table has an INTEGER PRIMARY KEY column and that column 657d82b5021Sdrh ** is named in the IDLIST, then record in the ipkColumn variable 658d82b5021Sdrh ** the index into IDLIST of the primary key column. ipkColumn is 659c8392586Sdrh ** the index of the primary key as it appears in IDLIST, not as 660d82b5021Sdrh ** is appears in the original table. (The index of the INTEGER 661d82b5021Sdrh ** PRIMARY KEY in the original table is pTab->iPKey.) 6621ccde15dSdrh */ 663a21f78b9Sdrh bIdListInOrder = (pTab->tabFlags & TF_OOOHidden)==0; 664967e8b73Sdrh if( pColumn ){ 665967e8b73Sdrh for(i=0; i<pColumn->nId; i++){ 666967e8b73Sdrh pColumn->a[i].idx = -1; 667cce7d176Sdrh } 668967e8b73Sdrh for(i=0; i<pColumn->nId; i++){ 669cce7d176Sdrh for(j=0; j<pTab->nCol; j++){ 6704adee20fSdanielk1977 if( sqlite3StrICmp(pColumn->a[i].zName, pTab->aCol[j].zName)==0 ){ 671967e8b73Sdrh pColumn->a[i].idx = j; 67205a86c5cSdrh if( i!=j ) bIdListInOrder = 0; 6734a32431cSdrh if( j==pTab->iPKey ){ 674d82b5021Sdrh ipkColumn = i; assert( !withoutRowid ); 6754a32431cSdrh } 676cce7d176Sdrh break; 677cce7d176Sdrh } 678cce7d176Sdrh } 679cce7d176Sdrh if( j>=pTab->nCol ){ 680ec95c441Sdrh if( sqlite3IsRowid(pColumn->a[i].zName) && !withoutRowid ){ 681d82b5021Sdrh ipkColumn = i; 682e48ae715Sdrh bIdListInOrder = 0; 683a0217ba7Sdrh }else{ 6844adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "table %S has no column named %s", 685da93d238Sdrh pTabList, 0, pColumn->a[i].zName); 6861db95106Sdan pParse->checkSchema = 1; 687cce7d176Sdrh goto insert_cleanup; 688cce7d176Sdrh } 689cce7d176Sdrh } 690cce7d176Sdrh } 691a0217ba7Sdrh } 6921ccde15dSdrh 693cce7d176Sdrh /* Figure out how many columns of data are supplied. If the data 694cce7d176Sdrh ** is coming from a SELECT statement, then generate a co-routine that 695cce7d176Sdrh ** produces a single row of the SELECT on each invocation. The 696cce7d176Sdrh ** co-routine is the common header to the 3rd and 4th templates. 697cce7d176Sdrh */ 6985f085269Sdrh if( pSelect ){ 699a21f78b9Sdrh /* Data is coming from a SELECT or from a multi-row VALUES clause. 700a21f78b9Sdrh ** Generate a co-routine to run the SELECT. */ 70105a86c5cSdrh int regYield; /* Register holding co-routine entry-point */ 70205a86c5cSdrh int addrTop; /* Top of the co-routine */ 70305a86c5cSdrh int rc; /* Result code */ 704cce7d176Sdrh 70505a86c5cSdrh regYield = ++pParse->nMem; 70605a86c5cSdrh addrTop = sqlite3VdbeCurrentAddr(v) + 1; 70705a86c5cSdrh sqlite3VdbeAddOp3(v, OP_InitCoroutine, regYield, 0, addrTop); 70805a86c5cSdrh sqlite3SelectDestInit(&dest, SRT_Coroutine, regYield); 70905a86c5cSdrh dest.iSdst = bIdListInOrder ? regData : 0; 71005a86c5cSdrh dest.nSdst = pTab->nCol; 71105a86c5cSdrh rc = sqlite3Select(pParse, pSelect, &dest); 7122b596da8Sdrh regFromSelect = dest.iSdst; 713992590beSdrh if( rc || db->mallocFailed || pParse->nErr ) goto insert_cleanup; 7142fade2f7Sdrh sqlite3VdbeEndCoroutine(v, regYield); 71505a86c5cSdrh sqlite3VdbeJumpHere(v, addrTop - 1); /* label B: */ 716cce7d176Sdrh assert( pSelect->pEList ); 717cce7d176Sdrh nColumn = pSelect->pEList->nExpr; 718cce7d176Sdrh 719cce7d176Sdrh /* Set useTempTable to TRUE if the result of the SELECT statement 720cce7d176Sdrh ** should be written into a temporary table (template 4). Set to 721cce7d176Sdrh ** FALSE if each output row of the SELECT can be written directly into 722cce7d176Sdrh ** the destination table (template 3). 723cce7d176Sdrh ** 724cce7d176Sdrh ** A temp table must be used if the table being updated is also one 725cce7d176Sdrh ** of the tables being read by the SELECT statement. Also use a 726cce7d176Sdrh ** temp table in the case of row triggers. 727cce7d176Sdrh */ 72805a86c5cSdrh if( pTrigger || readsTable(pParse, iDb, pTab) ){ 729cce7d176Sdrh useTempTable = 1; 730cce7d176Sdrh } 731cce7d176Sdrh 732cce7d176Sdrh if( useTempTable ){ 733cce7d176Sdrh /* Invoke the coroutine to extract information from the SELECT 734cce7d176Sdrh ** and add it to a transient table srcTab. The code generated 735cce7d176Sdrh ** here is from the 4th template: 736cce7d176Sdrh ** 737cce7d176Sdrh ** B: open temp table 73881cf13ecSdrh ** L: yield X, goto M at EOF 739cce7d176Sdrh ** insert row from R..R+n into temp table 740cce7d176Sdrh ** goto L 741cce7d176Sdrh ** M: ... 742cce7d176Sdrh */ 743cce7d176Sdrh int regRec; /* Register to hold packed record */ 744cce7d176Sdrh int regTempRowid; /* Register to hold temp table ROWID */ 74506280ee5Sdrh int addrL; /* Label "L" */ 746cce7d176Sdrh 747cce7d176Sdrh srcTab = pParse->nTab++; 748cce7d176Sdrh regRec = sqlite3GetTempReg(pParse); 749cce7d176Sdrh regTempRowid = sqlite3GetTempReg(pParse); 750cce7d176Sdrh sqlite3VdbeAddOp2(v, OP_OpenEphemeral, srcTab, nColumn); 75106280ee5Sdrh addrL = sqlite3VdbeAddOp1(v, OP_Yield, dest.iSDParm); VdbeCoverage(v); 752cce7d176Sdrh sqlite3VdbeAddOp3(v, OP_MakeRecord, regFromSelect, nColumn, regRec); 753cce7d176Sdrh sqlite3VdbeAddOp2(v, OP_NewRowid, srcTab, regTempRowid); 754cce7d176Sdrh sqlite3VdbeAddOp3(v, OP_Insert, srcTab, regRec, regTempRowid); 755076e85f5Sdrh sqlite3VdbeGoto(v, addrL); 75606280ee5Sdrh sqlite3VdbeJumpHere(v, addrL); 757cce7d176Sdrh sqlite3ReleaseTempReg(pParse, regRec); 758cce7d176Sdrh sqlite3ReleaseTempReg(pParse, regTempRowid); 759cce7d176Sdrh } 760cce7d176Sdrh }else{ 761a21f78b9Sdrh /* This is the case if the data for the INSERT is coming from a 762a21f78b9Sdrh ** single-row VALUES clause 763cce7d176Sdrh */ 764cce7d176Sdrh NameContext sNC; 765cce7d176Sdrh memset(&sNC, 0, sizeof(sNC)); 766cce7d176Sdrh sNC.pParse = pParse; 767cce7d176Sdrh srcTab = -1; 768cce7d176Sdrh assert( useTempTable==0 ); 769fea870beSdrh if( pList ){ 770fea870beSdrh nColumn = pList->nExpr; 771fea870beSdrh if( sqlite3ResolveExprListNames(&sNC, pList) ){ 772cce7d176Sdrh goto insert_cleanup; 773cce7d176Sdrh } 774fea870beSdrh }else{ 775fea870beSdrh nColumn = 0; 776cce7d176Sdrh } 777cce7d176Sdrh } 778cce7d176Sdrh 779aacc543eSdrh /* If there is no IDLIST term but the table has an integer primary 780d82b5021Sdrh ** key, the set the ipkColumn variable to the integer primary key 781d82b5021Sdrh ** column index in the original table definition. 7824a32431cSdrh */ 783147d0cccSdrh if( pColumn==0 && nColumn>0 ){ 784d82b5021Sdrh ipkColumn = pTab->iPKey; 7854a32431cSdrh } 7864a32431cSdrh 787cce7d176Sdrh /* Make sure the number of columns in the source data matches the number 788cce7d176Sdrh ** of columns to be inserted into the table. 789cce7d176Sdrh */ 790cce7d176Sdrh for(i=0; i<pTab->nCol; i++){ 791cce7d176Sdrh nHidden += (IsHiddenColumn(&pTab->aCol[i]) ? 1 : 0); 792cce7d176Sdrh } 793cce7d176Sdrh if( pColumn==0 && nColumn && nColumn!=(pTab->nCol-nHidden) ){ 794cce7d176Sdrh sqlite3ErrorMsg(pParse, 795cce7d176Sdrh "table %S has %d columns but %d values were supplied", 796cce7d176Sdrh pTabList, 0, pTab->nCol-nHidden, nColumn); 797cce7d176Sdrh goto insert_cleanup; 798cce7d176Sdrh } 799cce7d176Sdrh if( pColumn!=0 && nColumn!=pColumn->nId ){ 800cce7d176Sdrh sqlite3ErrorMsg(pParse, "%d values for %d columns", nColumn, pColumn->nId); 801cce7d176Sdrh goto insert_cleanup; 802cce7d176Sdrh } 803cce7d176Sdrh 804c3f9bad2Sdanielk1977 /* Initialize the count of rows to be inserted 8051ccde15dSdrh */ 80679636913Sdrh if( (db->flags & SQLITE_CountRows)!=0 80779636913Sdrh && !pParse->nested 80879636913Sdrh && !pParse->pTriggerTab 80979636913Sdrh ){ 8106a288a33Sdrh regRowCount = ++pParse->nMem; 8116a288a33Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, regRowCount); 812c3f9bad2Sdanielk1977 } 813c3f9bad2Sdanielk1977 814e448dc4aSdanielk1977 /* If this is not a view, open the table and and all indices */ 815e448dc4aSdanielk1977 if( !isView ){ 816aa9b8963Sdrh int nIdx; 817fd261ec6Sdan nIdx = sqlite3OpenTableAndIndices(pParse, pTab, OP_OpenWrite, 0, -1, 0, 81826198bb4Sdrh &iDataCur, &iIdxCur); 819a7c3b93fSdrh aRegIdx = sqlite3DbMallocRawNN(db, sizeof(int)*(nIdx+2)); 820aa9b8963Sdrh if( aRegIdx==0 ){ 821aa9b8963Sdrh goto insert_cleanup; 822aa9b8963Sdrh } 8232c4dfc30Sdrh for(i=0, pIdx=pTab->pIndex; i<nIdx; pIdx=pIdx->pNext, i++){ 8242c4dfc30Sdrh assert( pIdx ); 825aa9b8963Sdrh aRegIdx[i] = ++pParse->nMem; 8262c4dfc30Sdrh pParse->nMem += pIdx->nColumn; 827aa9b8963Sdrh } 828a7c3b93fSdrh aRegIdx[i] = ++pParse->nMem; /* Register to store the table record */ 829feeb1394Sdrh } 830788d55aaSdrh #ifndef SQLITE_OMIT_UPSERT 8310b30a116Sdrh if( pUpsert ){ 832b042d921Sdrh if( IsVirtual(pTab) ){ 833b042d921Sdrh sqlite3ErrorMsg(pParse, "UPSERT not implemented for virtual table \"%s\"", 834b042d921Sdrh pTab->zName); 835b042d921Sdrh goto insert_cleanup; 836b042d921Sdrh } 8379105fd51Sdan if( sqlite3HasExplicitNulls(pParse, pUpsert->pUpsertTarget) ){ 8389105fd51Sdan goto insert_cleanup; 8399105fd51Sdan } 840788d55aaSdrh pTabList->a[0].iCursor = iDataCur; 8410b30a116Sdrh pUpsert->pUpsertSrc = pTabList; 842eac9fabbSdrh pUpsert->regData = regData; 8437fc3aba8Sdrh pUpsert->iDataCur = iDataCur; 8447fc3aba8Sdrh pUpsert->iIdxCur = iIdxCur; 8450b30a116Sdrh if( pUpsert->pUpsertTarget ){ 846e9c2e772Sdrh sqlite3UpsertAnalyzeTarget(pParse, pTabList, pUpsert); 847788d55aaSdrh } 8480b30a116Sdrh } 849788d55aaSdrh #endif 850788d55aaSdrh 851feeb1394Sdrh 852e00ee6ebSdrh /* This is the top of the main insertion loop */ 853142e30dfSdrh if( useTempTable ){ 854e00ee6ebSdrh /* This block codes the top of loop only. The complete loop is the 855e00ee6ebSdrh ** following pseudocode (template 4): 856e00ee6ebSdrh ** 85781cf13ecSdrh ** rewind temp table, if empty goto D 858e00ee6ebSdrh ** C: loop over rows of intermediate table 859e00ee6ebSdrh ** transfer values form intermediate table into <table> 860e00ee6ebSdrh ** end loop 861e00ee6ebSdrh ** D: ... 862e00ee6ebSdrh */ 863688852abSdrh addrInsTop = sqlite3VdbeAddOp1(v, OP_Rewind, srcTab); VdbeCoverage(v); 864e00ee6ebSdrh addrCont = sqlite3VdbeCurrentAddr(v); 865142e30dfSdrh }else if( pSelect ){ 866e00ee6ebSdrh /* This block codes the top of loop only. The complete loop is the 867e00ee6ebSdrh ** following pseudocode (template 3): 868e00ee6ebSdrh ** 86981cf13ecSdrh ** C: yield X, at EOF goto D 870e00ee6ebSdrh ** insert the select result into <table> from R..R+n 871e00ee6ebSdrh ** goto C 872e00ee6ebSdrh ** D: ... 873e00ee6ebSdrh */ 87481cf13ecSdrh addrInsTop = addrCont = sqlite3VdbeAddOp1(v, OP_Yield, dest.iSDParm); 875688852abSdrh VdbeCoverage(v); 876bed8690fSdrh } 8771ccde15dSdrh 8785cf590c1Sdrh /* Run the BEFORE and INSTEAD OF triggers, if there are any 87970ce3f0cSdrh */ 880ec4ccdbcSdrh endOfLoop = sqlite3VdbeMakeLabel(pParse); 8812f886d1dSdanielk1977 if( tmask & TRIGGER_BEFORE ){ 88276d462eeSdan int regCols = sqlite3GetTempRange(pParse, pTab->nCol+1); 883c3f9bad2Sdanielk1977 88470ce3f0cSdrh /* build the NEW.* reference row. Note that if there is an INTEGER 88570ce3f0cSdrh ** PRIMARY KEY into which a NULL is being inserted, that NULL will be 88670ce3f0cSdrh ** translated into a unique ID for the row. But on a BEFORE trigger, 88770ce3f0cSdrh ** we do not know what the unique ID will be (because the insert has 88870ce3f0cSdrh ** not happened yet) so we substitute a rowid of -1 88970ce3f0cSdrh */ 890d82b5021Sdrh if( ipkColumn<0 ){ 89176d462eeSdan sqlite3VdbeAddOp2(v, OP_Integer, -1, regCols); 89270ce3f0cSdrh }else{ 893728e0f91Sdrh int addr1; 894ec95c441Sdrh assert( !withoutRowid ); 8957fe45908Sdrh if( useTempTable ){ 896d82b5021Sdrh sqlite3VdbeAddOp3(v, OP_Column, srcTab, ipkColumn, regCols); 8977fe45908Sdrh }else{ 898d6fe961eSdrh assert( pSelect==0 ); /* Otherwise useTempTable is true */ 899d82b5021Sdrh sqlite3ExprCode(pParse, pList->a[ipkColumn].pExpr, regCols); 9007fe45908Sdrh } 901728e0f91Sdrh addr1 = sqlite3VdbeAddOp1(v, OP_NotNull, regCols); VdbeCoverage(v); 90276d462eeSdan sqlite3VdbeAddOp2(v, OP_Integer, -1, regCols); 903728e0f91Sdrh sqlite3VdbeJumpHere(v, addr1); 904688852abSdrh sqlite3VdbeAddOp1(v, OP_MustBeInt, regCols); VdbeCoverage(v); 90570ce3f0cSdrh } 90670ce3f0cSdrh 907034ca14fSdanielk1977 /* Cannot have triggers on a virtual table. If it were possible, 908034ca14fSdanielk1977 ** this block would have to account for hidden column. 909034ca14fSdanielk1977 */ 910034ca14fSdanielk1977 assert( !IsVirtual(pTab) ); 911034ca14fSdanielk1977 91270ce3f0cSdrh /* Create the new column data 91370ce3f0cSdrh */ 914b1daa3f4Sdrh for(i=j=0; i<pTab->nCol; i++){ 915b1daa3f4Sdrh if( pColumn ){ 916c3f9bad2Sdanielk1977 for(j=0; j<pColumn->nId; j++){ 917c3f9bad2Sdanielk1977 if( pColumn->a[j].idx==i ) break; 918c3f9bad2Sdanielk1977 } 919c3f9bad2Sdanielk1977 } 920b1daa3f4Sdrh if( (!useTempTable && !pList) || (pColumn && j>=pColumn->nId) 92103d69a68Sdrh || (pColumn==0 && IsOrdinaryHiddenColumn(&pTab->aCol[i])) ){ 92276d462eeSdan sqlite3ExprCode(pParse, pTab->aCol[i].pDflt, regCols+i+1); 923142e30dfSdrh }else if( useTempTable ){ 92476d462eeSdan sqlite3VdbeAddOp3(v, OP_Column, srcTab, j, regCols+i+1); 925c3f9bad2Sdanielk1977 }else{ 926d6fe961eSdrh assert( pSelect==0 ); /* Otherwise useTempTable is true */ 92776d462eeSdan sqlite3ExprCodeAndCache(pParse, pList->a[j].pExpr, regCols+i+1); 928c3f9bad2Sdanielk1977 } 92903d69a68Sdrh if( pColumn==0 && !IsOrdinaryHiddenColumn(&pTab->aCol[i]) ) j++; 930c3f9bad2Sdanielk1977 } 931a37cdde0Sdanielk1977 932a37cdde0Sdanielk1977 /* If this is an INSERT on a view with an INSTEAD OF INSERT trigger, 933a37cdde0Sdanielk1977 ** do not attempt any conversions before assembling the record. 934a37cdde0Sdanielk1977 ** If this is a real table, attempt conversions as required by the 935a37cdde0Sdanielk1977 ** table column affinities. 936a37cdde0Sdanielk1977 */ 937a37cdde0Sdanielk1977 if( !isView ){ 93857bf4a8eSdrh sqlite3TableAffinity(v, pTab, regCols+1); 939a37cdde0Sdanielk1977 } 940c3f9bad2Sdanielk1977 9415cf590c1Sdrh /* Fire BEFORE or INSTEAD OF triggers */ 942165921a7Sdan sqlite3CodeRowTrigger(pParse, pTrigger, TK_INSERT, 0, TRIGGER_BEFORE, 94394d7f50aSdan pTab, regCols-pTab->nCol-1, onError, endOfLoop); 944165921a7Sdan 94576d462eeSdan sqlite3ReleaseTempRange(pParse, regCols, pTab->nCol+1); 94670ce3f0cSdrh } 947c3f9bad2Sdanielk1977 948d82b5021Sdrh /* Compute the content of the next row to insert into a range of 949d82b5021Sdrh ** registers beginning at regIns. 9501ccde15dSdrh */ 9515cf590c1Sdrh if( !isView ){ 9524cbdda9eSdrh if( IsVirtual(pTab) ){ 9534cbdda9eSdrh /* The row that the VUpdate opcode will delete: none */ 9546a288a33Sdrh sqlite3VdbeAddOp2(v, OP_Null, 0, regIns); 9554cbdda9eSdrh } 956d82b5021Sdrh if( ipkColumn>=0 ){ 957142e30dfSdrh if( useTempTable ){ 958d82b5021Sdrh sqlite3VdbeAddOp3(v, OP_Column, srcTab, ipkColumn, regRowid); 959142e30dfSdrh }else if( pSelect ){ 96005a86c5cSdrh sqlite3VdbeAddOp2(v, OP_Copy, regFromSelect+ipkColumn, regRowid); 9614a32431cSdrh }else{ 96204fcef00Sdrh Expr *pIpk = pList->a[ipkColumn].pExpr; 96304fcef00Sdrh if( pIpk->op==TK_NULL && !IsVirtual(pTab) ){ 96404fcef00Sdrh sqlite3VdbeAddOp3(v, OP_NewRowid, iDataCur, regRowid, regAutoinc); 965e4d90813Sdrh appendFlag = 1; 96604fcef00Sdrh }else{ 96704fcef00Sdrh sqlite3ExprCode(pParse, pList->a[ipkColumn].pExpr, regRowid); 968e4d90813Sdrh } 96927a32783Sdrh } 970f0863fe5Sdrh /* If the PRIMARY KEY expression is NULL, then use OP_NewRowid 971e1e68f49Sdrh ** to generate a unique primary key value. 972e1e68f49Sdrh */ 973e4d90813Sdrh if( !appendFlag ){ 974728e0f91Sdrh int addr1; 975bb50e7adSdanielk1977 if( !IsVirtual(pTab) ){ 976728e0f91Sdrh addr1 = sqlite3VdbeAddOp1(v, OP_NotNull, regRowid); VdbeCoverage(v); 97726198bb4Sdrh sqlite3VdbeAddOp3(v, OP_NewRowid, iDataCur, regRowid, regAutoinc); 978728e0f91Sdrh sqlite3VdbeJumpHere(v, addr1); 979bb50e7adSdanielk1977 }else{ 980728e0f91Sdrh addr1 = sqlite3VdbeCurrentAddr(v); 981728e0f91Sdrh sqlite3VdbeAddOp2(v, OP_IsNull, regRowid, addr1+2); VdbeCoverage(v); 982bb50e7adSdanielk1977 } 983688852abSdrh sqlite3VdbeAddOp1(v, OP_MustBeInt, regRowid); VdbeCoverage(v); 984e4d90813Sdrh } 985ec95c441Sdrh }else if( IsVirtual(pTab) || withoutRowid ){ 9866a288a33Sdrh sqlite3VdbeAddOp2(v, OP_Null, 0, regRowid); 9874a32431cSdrh }else{ 98826198bb4Sdrh sqlite3VdbeAddOp3(v, OP_NewRowid, iDataCur, regRowid, regAutoinc); 989e4d90813Sdrh appendFlag = 1; 9904a32431cSdrh } 9916a288a33Sdrh autoIncStep(pParse, regAutoinc, regRowid); 9924a32431cSdrh 993d82b5021Sdrh /* Compute data for all columns of the new entry, beginning 9944a32431cSdrh ** with the first column. 9954a32431cSdrh */ 996034ca14fSdanielk1977 nHidden = 0; 997cce7d176Sdrh for(i=0; i<pTab->nCol; i++){ 9986a288a33Sdrh int iRegStore = regRowid+1+i; 9994a32431cSdrh if( i==pTab->iPKey ){ 10004a32431cSdrh /* The value of the INTEGER PRIMARY KEY column is always a NULL. 1001d82b5021Sdrh ** Whenever this column is read, the rowid will be substituted 1002d82b5021Sdrh ** in its place. Hence, fill this column with a NULL to avoid 100305a86c5cSdrh ** taking up data space with information that will never be used. 100405a86c5cSdrh ** As there may be shallow copies of this value, make it a soft-NULL */ 100505a86c5cSdrh sqlite3VdbeAddOp1(v, OP_SoftNull, iRegStore); 10064a32431cSdrh continue; 10074a32431cSdrh } 1008967e8b73Sdrh if( pColumn==0 ){ 1009034ca14fSdanielk1977 if( IsHiddenColumn(&pTab->aCol[i]) ){ 1010034ca14fSdanielk1977 j = -1; 1011034ca14fSdanielk1977 nHidden++; 1012034ca14fSdanielk1977 }else{ 1013034ca14fSdanielk1977 j = i - nHidden; 1014034ca14fSdanielk1977 } 1015cce7d176Sdrh }else{ 1016967e8b73Sdrh for(j=0; j<pColumn->nId; j++){ 1017967e8b73Sdrh if( pColumn->a[j].idx==i ) break; 1018cce7d176Sdrh } 1019cce7d176Sdrh } 1020034ca14fSdanielk1977 if( j<0 || nColumn==0 || (pColumn && j>=pColumn->nId) ){ 102105a86c5cSdrh sqlite3ExprCodeFactorable(pParse, pTab->aCol[i].pDflt, iRegStore); 1022142e30dfSdrh }else if( useTempTable ){ 1023287fb61cSdanielk1977 sqlite3VdbeAddOp3(v, OP_Column, srcTab, j, iRegStore); 1024142e30dfSdrh }else if( pSelect ){ 102505a86c5cSdrh if( regFromSelect!=regData ){ 1026b7654111Sdrh sqlite3VdbeAddOp2(v, OP_SCopy, regFromSelect+j, iRegStore); 102705a86c5cSdrh } 1028cce7d176Sdrh }else{ 1029287fb61cSdanielk1977 sqlite3ExprCode(pParse, pList->a[j].pExpr, iRegStore); 1030cce7d176Sdrh } 1031cce7d176Sdrh } 10321ccde15dSdrh 10330ca3e24bSdrh /* Generate code to check constraints and generate index keys and 10340ca3e24bSdrh ** do the insertion. 10354a32431cSdrh */ 10364cbdda9eSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 10374cbdda9eSdrh if( IsVirtual(pTab) ){ 1038595a523aSdanielk1977 const char *pVTab = (const char *)sqlite3GetVTable(db, pTab); 10394f3dd150Sdrh sqlite3VtabMakeWritable(pParse, pTab); 1040595a523aSdanielk1977 sqlite3VdbeAddOp4(v, OP_VUpdate, 1, pTab->nCol+2, regIns, pVTab, P4_VTAB); 1041b061d058Sdan sqlite3VdbeChangeP5(v, onError==OE_Default ? OE_Abort : onError); 1042e0af83acSdan sqlite3MayAbort(pParse); 10434cbdda9eSdrh }else 10444cbdda9eSdrh #endif 10454cbdda9eSdrh { 1046de630353Sdanielk1977 int isReplace; /* Set to true if constraints may cause a replace */ 10473b908d41Sdan int bUseSeek; /* True to use OPFLAG_SEEKRESULT */ 1048f8ffb278Sdrh sqlite3GenerateConstraintChecks(pParse, pTab, aRegIdx, iDataCur, iIdxCur, 1049788d55aaSdrh regIns, 0, ipkColumn>=0, onError, endOfLoop, &isReplace, 0, pUpsert 105004adf416Sdrh ); 10518ff2d956Sdan sqlite3FkCheck(pParse, pTab, 0, regIns, 0, 0); 10523b908d41Sdan 10533b908d41Sdan /* Set the OPFLAG_USESEEKRESULT flag if either (a) there are no REPLACE 10543b908d41Sdan ** constraints or (b) there are no triggers and this table is not a 10553b908d41Sdan ** parent table in a foreign key constraint. It is safe to set the 10563b908d41Sdan ** flag in the second case as if any REPLACE constraint is hit, an 10573b908d41Sdan ** OP_Delete or OP_IdxDelete instruction will be executed on each 10583b908d41Sdan ** cursor that is disturbed. And these instructions both clear the 10593b908d41Sdan ** VdbeCursor.seekResult variable, disabling the OPFLAG_USESEEKRESULT 10603b908d41Sdan ** functionality. */ 10613b908d41Sdan bUseSeek = (isReplace==0 || (pTrigger==0 && 10623b908d41Sdan ((db->flags & SQLITE_ForeignKeys)==0 || sqlite3FkReferences(pTab)==0) 10633b908d41Sdan )); 106426198bb4Sdrh sqlite3CompleteInsertion(pParse, pTab, iDataCur, iIdxCur, 10653b908d41Sdan regIns, aRegIdx, 0, appendFlag, bUseSeek 10663b908d41Sdan ); 10675cf590c1Sdrh } 10684cbdda9eSdrh } 10691bee3d7bSdrh 1070feeb1394Sdrh /* Update the count of rows that are inserted 10711bee3d7bSdrh */ 107279636913Sdrh if( regRowCount ){ 10736a288a33Sdrh sqlite3VdbeAddOp2(v, OP_AddImm, regRowCount, 1); 10741bee3d7bSdrh } 1075c3f9bad2Sdanielk1977 10762f886d1dSdanielk1977 if( pTrigger ){ 1077c3f9bad2Sdanielk1977 /* Code AFTER triggers */ 1078165921a7Sdan sqlite3CodeRowTrigger(pParse, pTrigger, TK_INSERT, 0, TRIGGER_AFTER, 107994d7f50aSdan pTab, regData-2-pTab->nCol, onError, endOfLoop); 1080c3f9bad2Sdanielk1977 } 10811bee3d7bSdrh 1082e00ee6ebSdrh /* The bottom of the main insertion loop, if the data source 1083e00ee6ebSdrh ** is a SELECT statement. 10841ccde15dSdrh */ 10854adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, endOfLoop); 1086142e30dfSdrh if( useTempTable ){ 1087688852abSdrh sqlite3VdbeAddOp2(v, OP_Next, srcTab, addrCont); VdbeCoverage(v); 1088e00ee6ebSdrh sqlite3VdbeJumpHere(v, addrInsTop); 10892eb95377Sdrh sqlite3VdbeAddOp1(v, OP_Close, srcTab); 1090142e30dfSdrh }else if( pSelect ){ 1091076e85f5Sdrh sqlite3VdbeGoto(v, addrCont); 1092e00ee6ebSdrh sqlite3VdbeJumpHere(v, addrInsTop); 10936b56344dSdrh } 1094c3f9bad2Sdanielk1977 10950b9f50d8Sdrh insert_end: 1096f3388144Sdrh /* Update the sqlite_sequence table by storing the content of the 10970b9f50d8Sdrh ** maximum rowid counter values recorded while inserting into 10980b9f50d8Sdrh ** autoincrement tables. 10992958a4e6Sdrh */ 1100165921a7Sdan if( pParse->nested==0 && pParse->pTriggerTab==0 ){ 11010b9f50d8Sdrh sqlite3AutoincrementEnd(pParse); 11020b9f50d8Sdrh } 11032958a4e6Sdrh 11041bee3d7bSdrh /* 1105e7de6f25Sdanielk1977 ** Return the number of rows inserted. If this routine is 1106e7de6f25Sdanielk1977 ** generating code because of a call to sqlite3NestedParse(), do not 1107e7de6f25Sdanielk1977 ** invoke the callback function. 11081bee3d7bSdrh */ 110979636913Sdrh if( regRowCount ){ 11106a288a33Sdrh sqlite3VdbeAddOp2(v, OP_ResultRow, regRowCount, 1); 111122322fd4Sdanielk1977 sqlite3VdbeSetNumCols(v, 1); 111210fb749bSdanielk1977 sqlite3VdbeSetColName(v, 0, COLNAME_NAME, "rows inserted", SQLITE_STATIC); 11131bee3d7bSdrh } 1114cce7d176Sdrh 1115cce7d176Sdrh insert_cleanup: 1116633e6d57Sdrh sqlite3SrcListDelete(db, pTabList); 1117633e6d57Sdrh sqlite3ExprListDelete(db, pList); 111846d2e5c3Sdrh sqlite3UpsertDelete(db, pUpsert); 1119633e6d57Sdrh sqlite3SelectDelete(db, pSelect); 1120633e6d57Sdrh sqlite3IdListDelete(db, pColumn); 1121633e6d57Sdrh sqlite3DbFree(db, aRegIdx); 1122cce7d176Sdrh } 11239cfcf5d4Sdrh 112475cbd984Sdan /* Make sure "isView" and other macros defined above are undefined. Otherwise 112560ec914cSpeter.d.reid ** they may interfere with compilation of other functions in this file 112675cbd984Sdan ** (or in another file, if this file becomes part of the amalgamation). */ 112775cbd984Sdan #ifdef isView 112875cbd984Sdan #undef isView 112975cbd984Sdan #endif 113075cbd984Sdan #ifdef pTrigger 113175cbd984Sdan #undef pTrigger 113275cbd984Sdan #endif 113375cbd984Sdan #ifdef tmask 113475cbd984Sdan #undef tmask 113575cbd984Sdan #endif 113675cbd984Sdan 11379cfcf5d4Sdrh /* 1138e9816d82Sdrh ** Meanings of bits in of pWalker->eCode for 1139e9816d82Sdrh ** sqlite3ExprReferencesUpdatedColumn() 114098bfa16dSdrh */ 114198bfa16dSdrh #define CKCNSTRNT_COLUMN 0x01 /* CHECK constraint uses a changing column */ 114298bfa16dSdrh #define CKCNSTRNT_ROWID 0x02 /* CHECK constraint references the ROWID */ 114398bfa16dSdrh 1144e9816d82Sdrh /* This is the Walker callback from sqlite3ExprReferencesUpdatedColumn(). 1145e9816d82Sdrh * Set bit 0x01 of pWalker->eCode if pWalker->eCode to 0 and if this 1146e9816d82Sdrh ** expression node references any of the 11472a0b527bSdrh ** columns that are being modifed by an UPDATE statement. 11482a0b527bSdrh */ 11492a0b527bSdrh static int checkConstraintExprNode(Walker *pWalker, Expr *pExpr){ 115098bfa16dSdrh if( pExpr->op==TK_COLUMN ){ 115198bfa16dSdrh assert( pExpr->iColumn>=0 || pExpr->iColumn==-1 ); 115298bfa16dSdrh if( pExpr->iColumn>=0 ){ 115398bfa16dSdrh if( pWalker->u.aiCol[pExpr->iColumn]>=0 ){ 115498bfa16dSdrh pWalker->eCode |= CKCNSTRNT_COLUMN; 115598bfa16dSdrh } 115698bfa16dSdrh }else{ 115798bfa16dSdrh pWalker->eCode |= CKCNSTRNT_ROWID; 115898bfa16dSdrh } 11592a0b527bSdrh } 11602a0b527bSdrh return WRC_Continue; 11612a0b527bSdrh } 11622a0b527bSdrh 11632a0b527bSdrh /* 11642a0b527bSdrh ** pExpr is a CHECK constraint on a row that is being UPDATE-ed. The 11652a0b527bSdrh ** only columns that are modified by the UPDATE are those for which 116698bfa16dSdrh ** aiChng[i]>=0, and also the ROWID is modified if chngRowid is true. 116798bfa16dSdrh ** 1168e9816d82Sdrh ** Return true if CHECK constraint pExpr uses any of the 116998bfa16dSdrh ** changing columns (or the rowid if it is changing). In other words, 1170e9816d82Sdrh ** return true if this CHECK constraint must be validated for 117198bfa16dSdrh ** the new row in the UPDATE statement. 1172e9816d82Sdrh ** 1173e9816d82Sdrh ** 2018-09-15: pExpr might also be an expression for an index-on-expressions. 1174e9816d82Sdrh ** The operation of this routine is the same - return true if an only if 1175e9816d82Sdrh ** the expression uses one or more of columns identified by the second and 1176e9816d82Sdrh ** third arguments. 11772a0b527bSdrh */ 1178e9816d82Sdrh int sqlite3ExprReferencesUpdatedColumn( 1179e9816d82Sdrh Expr *pExpr, /* The expression to be checked */ 1180e9816d82Sdrh int *aiChng, /* aiChng[x]>=0 if column x changed by the UPDATE */ 1181e9816d82Sdrh int chngRowid /* True if UPDATE changes the rowid */ 1182e9816d82Sdrh ){ 11832a0b527bSdrh Walker w; 11842a0b527bSdrh memset(&w, 0, sizeof(w)); 118598bfa16dSdrh w.eCode = 0; 11862a0b527bSdrh w.xExprCallback = checkConstraintExprNode; 11872a0b527bSdrh w.u.aiCol = aiChng; 11882a0b527bSdrh sqlite3WalkExpr(&w, pExpr); 118905723a9eSdrh if( !chngRowid ){ 119005723a9eSdrh testcase( (w.eCode & CKCNSTRNT_ROWID)!=0 ); 119105723a9eSdrh w.eCode &= ~CKCNSTRNT_ROWID; 119205723a9eSdrh } 119305723a9eSdrh testcase( w.eCode==0 ); 119405723a9eSdrh testcase( w.eCode==CKCNSTRNT_COLUMN ); 119505723a9eSdrh testcase( w.eCode==CKCNSTRNT_ROWID ); 119605723a9eSdrh testcase( w.eCode==(CKCNSTRNT_ROWID|CKCNSTRNT_COLUMN) ); 1197e9816d82Sdrh return w.eCode!=0; 11982a0b527bSdrh } 11992a0b527bSdrh 120011e85273Sdrh /* 12016934fc7bSdrh ** Generate code to do constraint checks prior to an INSERT or an UPDATE 12026934fc7bSdrh ** on table pTab. 12039cfcf5d4Sdrh ** 12046934fc7bSdrh ** The regNewData parameter is the first register in a range that contains 12056934fc7bSdrh ** the data to be inserted or the data after the update. There will be 12066934fc7bSdrh ** pTab->nCol+1 registers in this range. The first register (the one 12076934fc7bSdrh ** that regNewData points to) will contain the new rowid, or NULL in the 12086934fc7bSdrh ** case of a WITHOUT ROWID table. The second register in the range will 12096934fc7bSdrh ** contain the content of the first table column. The third register will 12106934fc7bSdrh ** contain the content of the second table column. And so forth. 12110ca3e24bSdrh ** 1212f8ffb278Sdrh ** The regOldData parameter is similar to regNewData except that it contains 1213f8ffb278Sdrh ** the data prior to an UPDATE rather than afterwards. regOldData is zero 1214f8ffb278Sdrh ** for an INSERT. This routine can distinguish between UPDATE and INSERT by 1215f8ffb278Sdrh ** checking regOldData for zero. 12160ca3e24bSdrh ** 1217f8ffb278Sdrh ** For an UPDATE, the pkChng boolean is true if the true primary key (the 1218f8ffb278Sdrh ** rowid for a normal table or the PRIMARY KEY for a WITHOUT ROWID table) 1219f8ffb278Sdrh ** might be modified by the UPDATE. If pkChng is false, then the key of 1220f8ffb278Sdrh ** the iDataCur content table is guaranteed to be unchanged by the UPDATE. 12210ca3e24bSdrh ** 1222f8ffb278Sdrh ** For an INSERT, the pkChng boolean indicates whether or not the rowid 1223f8ffb278Sdrh ** was explicitly specified as part of the INSERT statement. If pkChng 1224f8ffb278Sdrh ** is zero, it means that the either rowid is computed automatically or 1225f8ffb278Sdrh ** that the table is a WITHOUT ROWID table and has no rowid. On an INSERT, 1226f8ffb278Sdrh ** pkChng will only be true if the INSERT statement provides an integer 1227f8ffb278Sdrh ** value for either the rowid column or its INTEGER PRIMARY KEY alias. 12280ca3e24bSdrh ** 12296934fc7bSdrh ** The code generated by this routine will store new index entries into 1230aa9b8963Sdrh ** registers identified by aRegIdx[]. No index entry is created for 1231aa9b8963Sdrh ** indices where aRegIdx[i]==0. The order of indices in aRegIdx[] is 1232aa9b8963Sdrh ** the same as the order of indices on the linked list of indices 12336934fc7bSdrh ** at pTab->pIndex. 12346934fc7bSdrh ** 1235a7c3b93fSdrh ** (2019-05-07) The generated code also creates a new record for the 1236a7c3b93fSdrh ** main table, if pTab is a rowid table, and stores that record in the 1237a7c3b93fSdrh ** register identified by aRegIdx[nIdx] - in other words in the first 1238a7c3b93fSdrh ** entry of aRegIdx[] past the last index. It is important that the 1239a7c3b93fSdrh ** record be generated during constraint checks to avoid affinity changes 1240a7c3b93fSdrh ** to the register content that occur after constraint checks but before 1241a7c3b93fSdrh ** the new record is inserted. 1242a7c3b93fSdrh ** 12436934fc7bSdrh ** The caller must have already opened writeable cursors on the main 12446934fc7bSdrh ** table and all applicable indices (that is to say, all indices for which 12456934fc7bSdrh ** aRegIdx[] is not zero). iDataCur is the cursor for the main table when 12466934fc7bSdrh ** inserting or updating a rowid table, or the cursor for the PRIMARY KEY 12476934fc7bSdrh ** index when operating on a WITHOUT ROWID table. iIdxCur is the cursor 12486934fc7bSdrh ** for the first index in the pTab->pIndex list. Cursors for other indices 12496934fc7bSdrh ** are at iIdxCur+N for the N-th element of the pTab->pIndex list. 12509cfcf5d4Sdrh ** 12519cfcf5d4Sdrh ** This routine also generates code to check constraints. NOT NULL, 12529cfcf5d4Sdrh ** CHECK, and UNIQUE constraints are all checked. If a constraint fails, 12531c92853dSdrh ** then the appropriate action is performed. There are five possible 12541c92853dSdrh ** actions: ROLLBACK, ABORT, FAIL, REPLACE, and IGNORE. 12559cfcf5d4Sdrh ** 12569cfcf5d4Sdrh ** Constraint type Action What Happens 12579cfcf5d4Sdrh ** --------------- ---------- ---------------------------------------- 12581c92853dSdrh ** any ROLLBACK The current transaction is rolled back and 12596934fc7bSdrh ** sqlite3_step() returns immediately with a 12609cfcf5d4Sdrh ** return code of SQLITE_CONSTRAINT. 12619cfcf5d4Sdrh ** 12621c92853dSdrh ** any ABORT Back out changes from the current command 12631c92853dSdrh ** only (do not do a complete rollback) then 12646934fc7bSdrh ** cause sqlite3_step() to return immediately 12651c92853dSdrh ** with SQLITE_CONSTRAINT. 12661c92853dSdrh ** 12676934fc7bSdrh ** any FAIL Sqlite3_step() returns immediately with a 12681c92853dSdrh ** return code of SQLITE_CONSTRAINT. The 12691c92853dSdrh ** transaction is not rolled back and any 12706934fc7bSdrh ** changes to prior rows are retained. 12711c92853dSdrh ** 12726934fc7bSdrh ** any IGNORE The attempt in insert or update the current 12736934fc7bSdrh ** row is skipped, without throwing an error. 12746934fc7bSdrh ** Processing continues with the next row. 12756934fc7bSdrh ** (There is an immediate jump to ignoreDest.) 12769cfcf5d4Sdrh ** 12779cfcf5d4Sdrh ** NOT NULL REPLACE The NULL value is replace by the default 12789cfcf5d4Sdrh ** value for that column. If the default value 12799cfcf5d4Sdrh ** is NULL, the action is the same as ABORT. 12809cfcf5d4Sdrh ** 12819cfcf5d4Sdrh ** UNIQUE REPLACE The other row that conflicts with the row 12829cfcf5d4Sdrh ** being inserted is removed. 12839cfcf5d4Sdrh ** 12849cfcf5d4Sdrh ** CHECK REPLACE Illegal. The results in an exception. 12859cfcf5d4Sdrh ** 12861c92853dSdrh ** Which action to take is determined by the overrideError parameter. 12871c92853dSdrh ** Or if overrideError==OE_Default, then the pParse->onError parameter 12881c92853dSdrh ** is used. Or if pParse->onError==OE_Default then the onError value 12891c92853dSdrh ** for the constraint is used. 12909cfcf5d4Sdrh */ 12914adee20fSdanielk1977 void sqlite3GenerateConstraintChecks( 12929cfcf5d4Sdrh Parse *pParse, /* The parser context */ 12936934fc7bSdrh Table *pTab, /* The table being inserted or updated */ 1294f8ffb278Sdrh int *aRegIdx, /* Use register aRegIdx[i] for index i. 0 for unused */ 12956934fc7bSdrh int iDataCur, /* Canonical data cursor (main table or PK index) */ 129626198bb4Sdrh int iIdxCur, /* First index cursor */ 12976934fc7bSdrh int regNewData, /* First register in a range holding values to insert */ 1298f8ffb278Sdrh int regOldData, /* Previous content. 0 for INSERTs */ 1299f8ffb278Sdrh u8 pkChng, /* Non-zero if the rowid or PRIMARY KEY changed */ 1300f8ffb278Sdrh u8 overrideError, /* Override onError to this if not OE_Default */ 1301de630353Sdanielk1977 int ignoreDest, /* Jump to this label on an OE_Ignore resolution */ 1302bdb00225Sdrh int *pbMayReplace, /* OUT: Set to true if constraint may cause a replace */ 1303788d55aaSdrh int *aiChng, /* column i is unchanged if aiChng[i]<0 */ 1304788d55aaSdrh Upsert *pUpsert /* ON CONFLICT clauses, if any. NULL otherwise */ 13059cfcf5d4Sdrh ){ 13061b7ecbb4Sdrh Vdbe *v; /* VDBE under constrution */ 13071b7ecbb4Sdrh Index *pIdx; /* Pointer to one of the indices */ 130811e85273Sdrh Index *pPk = 0; /* The PRIMARY KEY index */ 13092938f924Sdrh sqlite3 *db; /* Database connection */ 1310f8ffb278Sdrh int i; /* loop counter */ 1311f8ffb278Sdrh int ix; /* Index loop counter */ 13129cfcf5d4Sdrh int nCol; /* Number of columns */ 13139cfcf5d4Sdrh int onError; /* Conflict resolution strategy */ 1314728e0f91Sdrh int addr1; /* Address of jump instruction */ 13151b7ecbb4Sdrh int seenReplace = 0; /* True if REPLACE is used to resolve INT PK conflict */ 13166fbe41acSdrh int nPkField; /* Number of fields in PRIMARY KEY. 1 for ROWID tables */ 1317096fd476Sdrh Index *pUpIdx = 0; /* Index to which to apply the upsert */ 13188d1b82e4Sdrh u8 isUpdate; /* True if this is an UPDATE operation */ 131957bf4a8eSdrh u8 bAffinityDone = 0; /* True if the OP_Affinity operation has been run */ 1320096fd476Sdrh int upsertBypass = 0; /* Address of Goto to bypass upsert subroutine */ 132184304506Sdrh int upsertJump = 0; /* Address of Goto that jumps into upsert subroutine */ 132284304506Sdrh int ipkTop = 0; /* Top of the IPK uniqueness check */ 132384304506Sdrh int ipkBottom = 0; /* OP_Goto at the end of the IPK uniqueness check */ 13249cfcf5d4Sdrh 1325f8ffb278Sdrh isUpdate = regOldData!=0; 13262938f924Sdrh db = pParse->db; 13274adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 13289cfcf5d4Sdrh assert( v!=0 ); 1329417be79cSdrh assert( pTab->pSelect==0 ); /* This table is not a VIEW */ 13309cfcf5d4Sdrh nCol = pTab->nCol; 1331aa9b8963Sdrh 13326934fc7bSdrh /* pPk is the PRIMARY KEY index for WITHOUT ROWID tables and NULL for 13336934fc7bSdrh ** normal rowid tables. nPkField is the number of key fields in the 13346934fc7bSdrh ** pPk index or 1 for a rowid table. In other words, nPkField is the 13356934fc7bSdrh ** number of fields in the true primary key of the table. */ 133626198bb4Sdrh if( HasRowid(pTab) ){ 133726198bb4Sdrh pPk = 0; 133826198bb4Sdrh nPkField = 1; 133926198bb4Sdrh }else{ 134026198bb4Sdrh pPk = sqlite3PrimaryKeyIndex(pTab); 134126198bb4Sdrh nPkField = pPk->nKeyCol; 134226198bb4Sdrh } 13436fbe41acSdrh 13446fbe41acSdrh /* Record that this module has started */ 13456fbe41acSdrh VdbeModuleComment((v, "BEGIN: GenCnstCks(%d,%d,%d,%d,%d)", 13466934fc7bSdrh iDataCur, iIdxCur, regNewData, regOldData, pkChng)); 13479cfcf5d4Sdrh 13489cfcf5d4Sdrh /* Test all NOT NULL constraints. 13499cfcf5d4Sdrh */ 13509cfcf5d4Sdrh for(i=0; i<nCol; i++){ 13510ca3e24bSdrh if( i==pTab->iPKey ){ 1352bdb00225Sdrh continue; /* ROWID is never NULL */ 1353bdb00225Sdrh } 1354bdb00225Sdrh if( aiChng && aiChng[i]<0 ){ 1355bdb00225Sdrh /* Don't bother checking for NOT NULL on columns that do not change */ 13560ca3e24bSdrh continue; 13570ca3e24bSdrh } 13589cfcf5d4Sdrh onError = pTab->aCol[i].notNull; 1359bdb00225Sdrh if( onError==OE_None ) continue; /* This column is allowed to be NULL */ 13609cfcf5d4Sdrh if( overrideError!=OE_Default ){ 13619cfcf5d4Sdrh onError = overrideError; 1362a996e477Sdrh }else if( onError==OE_Default ){ 1363a996e477Sdrh onError = OE_Abort; 13649cfcf5d4Sdrh } 13657977a17fSdanielk1977 if( onError==OE_Replace && pTab->aCol[i].pDflt==0 ){ 13669cfcf5d4Sdrh onError = OE_Abort; 13679cfcf5d4Sdrh } 1368b84f96f8Sdanielk1977 assert( onError==OE_Rollback || onError==OE_Abort || onError==OE_Fail 1369b84f96f8Sdanielk1977 || onError==OE_Ignore || onError==OE_Replace ); 13709bfb0794Sdrh addr1 = 0; 13719cfcf5d4Sdrh switch( onError ){ 13729bfb0794Sdrh case OE_Replace: { 13739bfb0794Sdrh assert( onError==OE_Replace ); 1374ec4ccdbcSdrh addr1 = sqlite3VdbeMakeLabel(pParse); 13759bfb0794Sdrh sqlite3VdbeAddOp2(v, OP_NotNull, regNewData+1+i, addr1); 13769bfb0794Sdrh VdbeCoverage(v); 13779bfb0794Sdrh sqlite3ExprCode(pParse, pTab->aCol[i].pDflt, regNewData+1+i); 13789bfb0794Sdrh sqlite3VdbeAddOp2(v, OP_NotNull, regNewData+1+i, addr1); 13799bfb0794Sdrh VdbeCoverage(v); 13809bfb0794Sdrh onError = OE_Abort; 13819bfb0794Sdrh /* Fall through into the OE_Abort case to generate code that runs 13829bfb0794Sdrh ** if both the input and the default value are NULL */ 13839bfb0794Sdrh } 13841c92853dSdrh case OE_Abort: 1385e0af83acSdan sqlite3MayAbort(pParse); 13860978d4ffSdrh /* Fall through */ 1387e0af83acSdan case OE_Rollback: 13881c92853dSdrh case OE_Fail: { 1389f9c8ce3cSdrh char *zMsg = sqlite3MPrintf(db, "%s.%s", pTab->zName, 1390f9c8ce3cSdrh pTab->aCol[i].zName); 13912700acaaSdrh sqlite3VdbeAddOp3(v, OP_HaltIfNull, SQLITE_CONSTRAINT_NOTNULL, onError, 13922700acaaSdrh regNewData+1+i); 13932700acaaSdrh sqlite3VdbeAppendP4(v, zMsg, P4_DYNAMIC); 1394f9c8ce3cSdrh sqlite3VdbeChangeP5(v, P5_ConstraintNotNull); 1395688852abSdrh VdbeCoverage(v); 13969bfb0794Sdrh if( addr1 ) sqlite3VdbeResolveLabel(v, addr1); 13979cfcf5d4Sdrh break; 13989cfcf5d4Sdrh } 1399098d1684Sdrh default: { 14009bfb0794Sdrh assert( onError==OE_Ignore ); 14019bfb0794Sdrh sqlite3VdbeAddOp2(v, OP_IsNull, regNewData+1+i, ignoreDest); 1402728e0f91Sdrh VdbeCoverage(v); 14039cfcf5d4Sdrh break; 14049cfcf5d4Sdrh } 14059cfcf5d4Sdrh } 14069cfcf5d4Sdrh } 14079cfcf5d4Sdrh 14089cfcf5d4Sdrh /* Test all CHECK constraints 14099cfcf5d4Sdrh */ 1410ffe07b2dSdrh #ifndef SQLITE_OMIT_CHECK 14112938f924Sdrh if( pTab->pCheck && (db->flags & SQLITE_IgnoreChecks)==0 ){ 14122938f924Sdrh ExprList *pCheck = pTab->pCheck; 14136e97f8ecSdrh pParse->iSelfTab = -(regNewData+1); 1414aa01c7e2Sdrh onError = overrideError!=OE_Default ? overrideError : OE_Abort; 14152938f924Sdrh for(i=0; i<pCheck->nExpr; i++){ 141605723a9eSdrh int allOk; 14172a0b527bSdrh Expr *pExpr = pCheck->a[i].pExpr; 1418e9816d82Sdrh if( aiChng 1419e9816d82Sdrh && !sqlite3ExprReferencesUpdatedColumn(pExpr, aiChng, pkChng) 1420e9816d82Sdrh ){ 1421e9816d82Sdrh /* The check constraints do not reference any of the columns being 1422e9816d82Sdrh ** updated so there is no point it verifying the check constraint */ 1423e9816d82Sdrh continue; 1424e9816d82Sdrh } 1425ec4ccdbcSdrh allOk = sqlite3VdbeMakeLabel(pParse); 14264031bafaSdrh sqlite3VdbeVerifyAbortable(v, onError); 14272a0b527bSdrh sqlite3ExprIfTrue(pParse, pExpr, allOk, SQLITE_JUMPIFNULL); 14282e06c67cSdrh if( onError==OE_Ignore ){ 1429076e85f5Sdrh sqlite3VdbeGoto(v, ignoreDest); 1430aa01c7e2Sdrh }else{ 1431f9c8ce3cSdrh char *zName = pCheck->a[i].zName; 1432f9c8ce3cSdrh if( zName==0 ) zName = pTab->zName; 14330ce974d1Sdrh if( onError==OE_Replace ) onError = OE_Abort; /* IMP: R-26383-51744 */ 1434d91c1a17Sdrh sqlite3HaltConstraint(pParse, SQLITE_CONSTRAINT_CHECK, 1435f9c8ce3cSdrh onError, zName, P4_TRANSIENT, 1436f9c8ce3cSdrh P5_ConstraintCheck); 1437aa01c7e2Sdrh } 1438ffe07b2dSdrh sqlite3VdbeResolveLabel(v, allOk); 1439ffe07b2dSdrh } 14406e97f8ecSdrh pParse->iSelfTab = 0; 14412938f924Sdrh } 1442ffe07b2dSdrh #endif /* !defined(SQLITE_OMIT_CHECK) */ 14439cfcf5d4Sdrh 1444096fd476Sdrh /* UNIQUE and PRIMARY KEY constraints should be handled in the following 1445096fd476Sdrh ** order: 1446096fd476Sdrh ** 144784304506Sdrh ** (1) OE_Update 144884304506Sdrh ** (2) OE_Abort, OE_Fail, OE_Rollback, OE_Ignore 1449096fd476Sdrh ** (3) OE_Replace 1450096fd476Sdrh ** 1451096fd476Sdrh ** OE_Fail and OE_Ignore must happen before any changes are made. 1452096fd476Sdrh ** OE_Update guarantees that only a single row will change, so it 1453096fd476Sdrh ** must happen before OE_Replace. Technically, OE_Abort and OE_Rollback 1454096fd476Sdrh ** could happen in any order, but they are grouped up front for 1455096fd476Sdrh ** convenience. 1456096fd476Sdrh ** 145784304506Sdrh ** 2018-08-14: Ticket https://www.sqlite.org/src/info/908f001483982c43 145884304506Sdrh ** The order of constraints used to have OE_Update as (2) and OE_Abort 145984304506Sdrh ** and so forth as (1). But apparently PostgreSQL checks the OE_Update 146084304506Sdrh ** constraint before any others, so it had to be moved. 146184304506Sdrh ** 1462096fd476Sdrh ** Constraint checking code is generated in this order: 1463096fd476Sdrh ** (A) The rowid constraint 1464096fd476Sdrh ** (B) Unique index constraints that do not have OE_Replace as their 1465096fd476Sdrh ** default conflict resolution strategy 1466096fd476Sdrh ** (C) Unique index that do use OE_Replace by default. 1467096fd476Sdrh ** 1468096fd476Sdrh ** The ordering of (2) and (3) is accomplished by making sure the linked 1469096fd476Sdrh ** list of indexes attached to a table puts all OE_Replace indexes last 1470096fd476Sdrh ** in the list. See sqlite3CreateIndex() for where that happens. 1471096fd476Sdrh */ 1472096fd476Sdrh 1473096fd476Sdrh if( pUpsert ){ 1474096fd476Sdrh if( pUpsert->pUpsertTarget==0 ){ 1475096fd476Sdrh /* An ON CONFLICT DO NOTHING clause, without a constraint-target. 1476096fd476Sdrh ** Make all unique constraint resolution be OE_Ignore */ 1477dedbc508Sdrh assert( pUpsert->pUpsertSet==0 ); 1478096fd476Sdrh overrideError = OE_Ignore; 1479096fd476Sdrh pUpsert = 0; 1480096fd476Sdrh }else if( (pUpIdx = pUpsert->pUpsertIdx)!=0 ){ 148184304506Sdrh /* If the constraint-target uniqueness check must be run first. 148284304506Sdrh ** Jump to that uniqueness check now */ 148384304506Sdrh upsertJump = sqlite3VdbeAddOp0(v, OP_Goto); 148484304506Sdrh VdbeComment((v, "UPSERT constraint goes first")); 1485096fd476Sdrh } 1486096fd476Sdrh } 1487096fd476Sdrh 1488f8ffb278Sdrh /* If rowid is changing, make sure the new rowid does not previously 1489f8ffb278Sdrh ** exist in the table. 14909cfcf5d4Sdrh */ 14916fbe41acSdrh if( pkChng && pPk==0 ){ 1492ec4ccdbcSdrh int addrRowidOk = sqlite3VdbeMakeLabel(pParse); 149311e85273Sdrh 1494f8ffb278Sdrh /* Figure out what action to take in case of a rowid collision */ 14950ca3e24bSdrh onError = pTab->keyConf; 14960ca3e24bSdrh if( overrideError!=OE_Default ){ 14970ca3e24bSdrh onError = overrideError; 1498a996e477Sdrh }else if( onError==OE_Default ){ 1499a996e477Sdrh onError = OE_Abort; 15000ca3e24bSdrh } 1501a0217ba7Sdrh 1502c8a0c90bSdrh /* figure out whether or not upsert applies in this case */ 1503096fd476Sdrh if( pUpsert && pUpsert->pUpsertIdx==0 ){ 1504c8a0c90bSdrh if( pUpsert->pUpsertSet==0 ){ 1505c8a0c90bSdrh onError = OE_Ignore; /* DO NOTHING is the same as INSERT OR IGNORE */ 1506c8a0c90bSdrh }else{ 1507c8a0c90bSdrh onError = OE_Update; /* DO UPDATE */ 1508c8a0c90bSdrh } 1509c8a0c90bSdrh } 1510c8a0c90bSdrh 15118d1b82e4Sdrh /* If the response to a rowid conflict is REPLACE but the response 15128d1b82e4Sdrh ** to some other UNIQUE constraint is FAIL or IGNORE, then we need 15138d1b82e4Sdrh ** to defer the running of the rowid conflict checking until after 15148d1b82e4Sdrh ** the UNIQUE constraints have run. 15158d1b82e4Sdrh */ 151684304506Sdrh if( onError==OE_Replace /* IPK rule is REPLACE */ 151784304506Sdrh && onError!=overrideError /* Rules for other contraints are different */ 151884304506Sdrh && pTab->pIndex /* There exist other constraints */ 1519096fd476Sdrh ){ 152084304506Sdrh ipkTop = sqlite3VdbeAddOp0(v, OP_Goto)+1; 152184304506Sdrh VdbeComment((v, "defer IPK REPLACE until last")); 15228d1b82e4Sdrh } 15238d1b82e4Sdrh 1524bb6b1ca7Sdrh if( isUpdate ){ 1525bb6b1ca7Sdrh /* pkChng!=0 does not mean that the rowid has changed, only that 1526bb6b1ca7Sdrh ** it might have changed. Skip the conflict logic below if the rowid 1527bb6b1ca7Sdrh ** is unchanged. */ 1528bb6b1ca7Sdrh sqlite3VdbeAddOp3(v, OP_Eq, regNewData, addrRowidOk, regOldData); 1529bb6b1ca7Sdrh sqlite3VdbeChangeP5(v, SQLITE_NOTNULL); 1530bb6b1ca7Sdrh VdbeCoverage(v); 1531bb6b1ca7Sdrh } 1532bb6b1ca7Sdrh 1533f8ffb278Sdrh /* Check to see if the new rowid already exists in the table. Skip 1534f8ffb278Sdrh ** the following conflict logic if it does not. */ 15357f5f306bSdrh VdbeNoopComment((v, "uniqueness check for ROWID")); 15364031bafaSdrh sqlite3VdbeVerifyAbortable(v, onError); 15376934fc7bSdrh sqlite3VdbeAddOp3(v, OP_NotExists, iDataCur, addrRowidOk, regNewData); 1538688852abSdrh VdbeCoverage(v); 1539f8ffb278Sdrh 15400ca3e24bSdrh switch( onError ){ 1541a0217ba7Sdrh default: { 1542a0217ba7Sdrh onError = OE_Abort; 1543a0217ba7Sdrh /* Fall thru into the next case */ 1544a0217ba7Sdrh } 15451c92853dSdrh case OE_Rollback: 15461c92853dSdrh case OE_Abort: 15471c92853dSdrh case OE_Fail: { 15489916048bSdrh testcase( onError==OE_Rollback ); 15499916048bSdrh testcase( onError==OE_Abort ); 15509916048bSdrh testcase( onError==OE_Fail ); 1551f9c8ce3cSdrh sqlite3RowidConstraint(pParse, onError, pTab); 15520ca3e24bSdrh break; 15530ca3e24bSdrh } 15545383ae5cSdrh case OE_Replace: { 15552283d46cSdan /* If there are DELETE triggers on this table and the 15562283d46cSdan ** recursive-triggers flag is set, call GenerateRowDelete() to 1557d5578433Smistachkin ** remove the conflicting row from the table. This will fire 15582283d46cSdan ** the triggers and remove both the table and index b-tree entries. 15592283d46cSdan ** 15602283d46cSdan ** Otherwise, if there are no triggers or the recursive-triggers 1561da730f6eSdan ** flag is not set, but the table has one or more indexes, call 1562da730f6eSdan ** GenerateRowIndexDelete(). This removes the index b-tree entries 1563da730f6eSdan ** only. The table b-tree entry will be replaced by the new entry 1564da730f6eSdan ** when it is inserted. 1565da730f6eSdan ** 1566da730f6eSdan ** If either GenerateRowDelete() or GenerateRowIndexDelete() is called, 1567da730f6eSdan ** also invoke MultiWrite() to indicate that this VDBE may require 1568da730f6eSdan ** statement rollback (if the statement is aborted after the delete 1569da730f6eSdan ** takes place). Earlier versions called sqlite3MultiWrite() regardless, 1570da730f6eSdan ** but being more selective here allows statements like: 1571da730f6eSdan ** 1572da730f6eSdan ** REPLACE INTO t(rowid) VALUES($newrowid) 1573da730f6eSdan ** 1574da730f6eSdan ** to run without a statement journal if there are no indexes on the 1575da730f6eSdan ** table. 1576da730f6eSdan */ 15772283d46cSdan Trigger *pTrigger = 0; 15782938f924Sdrh if( db->flags&SQLITE_RecTriggers ){ 15792283d46cSdan pTrigger = sqlite3TriggersExist(pParse, pTab, TK_DELETE, 0, 0); 15802283d46cSdan } 1581e7a94d81Sdan if( pTrigger || sqlite3FkRequired(pParse, pTab, 0, 0) ){ 1582da730f6eSdan sqlite3MultiWrite(pParse); 158326198bb4Sdrh sqlite3GenerateRowDelete(pParse, pTab, pTrigger, iDataCur, iIdxCur, 1584438b8815Sdan regNewData, 1, 0, OE_Replace, 1, -1); 1585*2da8d6feSdrh sqlite3VdbeAddOp3(v, OP_NotExists, iDataCur, addrRowidOk, regNewData); 1586*2da8d6feSdrh sqlite3RowidConstraint(pParse, OE_Abort, pTab); 158746c47d46Sdan }else{ 15889b1c62d4Sdrh #ifdef SQLITE_ENABLE_PREUPDATE_HOOK 158954f2cd90Sdrh assert( HasRowid(pTab) ); 159046c47d46Sdan /* This OP_Delete opcode fires the pre-update-hook only. It does 159146c47d46Sdan ** not modify the b-tree. It is more efficient to let the coming 159246c47d46Sdan ** OP_Insert replace the existing entry than it is to delete the 159346c47d46Sdan ** existing entry and then insert a new one. */ 1594cbf1b8efSdrh sqlite3VdbeAddOp2(v, OP_Delete, iDataCur, OPFLAG_ISNOOP); 1595f14b7fb7Sdrh sqlite3VdbeAppendP4(v, pTab, P4_TABLE); 15969b1c62d4Sdrh #endif /* SQLITE_ENABLE_PREUPDATE_HOOK */ 159746c47d46Sdan if( pTab->pIndex ){ 1598da730f6eSdan sqlite3MultiWrite(pParse); 1599f0ee1d3cSdan sqlite3GenerateRowIndexDelete(pParse, pTab, iDataCur, iIdxCur,0,-1); 16002283d46cSdan } 160146c47d46Sdan } 16025383ae5cSdrh seenReplace = 1; 16035383ae5cSdrh break; 16045383ae5cSdrh } 16059eddacadSdrh #ifndef SQLITE_OMIT_UPSERT 16069eddacadSdrh case OE_Update: { 16072cc00423Sdan sqlite3UpsertDoUpdate(pParse, pUpsert, pTab, 0, iDataCur); 16089eddacadSdrh /* Fall through */ 16099eddacadSdrh } 16109eddacadSdrh #endif 16110ca3e24bSdrh case OE_Ignore: { 16129916048bSdrh testcase( onError==OE_Ignore ); 1613076e85f5Sdrh sqlite3VdbeGoto(v, ignoreDest); 16140ca3e24bSdrh break; 16150ca3e24bSdrh } 16160ca3e24bSdrh } 161711e85273Sdrh sqlite3VdbeResolveLabel(v, addrRowidOk); 161884304506Sdrh if( ipkTop ){ 161984304506Sdrh ipkBottom = sqlite3VdbeAddOp0(v, OP_Goto); 162084304506Sdrh sqlite3VdbeJumpHere(v, ipkTop-1); 1621a05a722fSdrh } 16220ca3e24bSdrh } 16230bd1f4eaSdrh 16240bd1f4eaSdrh /* Test all UNIQUE constraints by creating entries for each UNIQUE 16250bd1f4eaSdrh ** index and making sure that duplicate entries do not already exist. 162611e85273Sdrh ** Compute the revised record entries for indices as we go. 1627f8ffb278Sdrh ** 1628f8ffb278Sdrh ** This loop also handles the case of the PRIMARY KEY index for a 1629f8ffb278Sdrh ** WITHOUT ROWID table. 16300bd1f4eaSdrh */ 163126198bb4Sdrh for(ix=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, ix++){ 16326934fc7bSdrh int regIdx; /* Range of registers hold conent for pIdx */ 16336934fc7bSdrh int regR; /* Range of registers holding conflicting PK */ 16346934fc7bSdrh int iThisCur; /* Cursor for this UNIQUE index */ 16356934fc7bSdrh int addrUniqueOk; /* Jump here if the UNIQUE constraint is satisfied */ 16362184fc75Sdrh 163726198bb4Sdrh if( aRegIdx[ix]==0 ) continue; /* Skip indices that do not change */ 16387f5f306bSdrh if( pUpIdx==pIdx ){ 163984304506Sdrh addrUniqueOk = upsertJump+1; 16407f5f306bSdrh upsertBypass = sqlite3VdbeGoto(v, 0); 16417f5f306bSdrh VdbeComment((v, "Skip upsert subroutine")); 164284304506Sdrh sqlite3VdbeJumpHere(v, upsertJump); 16437f5f306bSdrh }else{ 1644ec4ccdbcSdrh addrUniqueOk = sqlite3VdbeMakeLabel(pParse); 16457f5f306bSdrh } 164684304506Sdrh if( bAffinityDone==0 && (pUpIdx==0 || pUpIdx==pIdx) ){ 164784304506Sdrh sqlite3TableAffinity(v, pTab, regNewData+1); 164884304506Sdrh bAffinityDone = 1; 164984304506Sdrh } 16507f5f306bSdrh VdbeNoopComment((v, "uniqueness check for %s", pIdx->zName)); 16516934fc7bSdrh iThisCur = iIdxCur+ix; 16527f5f306bSdrh 1653b2fe7d8cSdrh 1654f8ffb278Sdrh /* Skip partial indices for which the WHERE clause is not true */ 1655b2b9d3d7Sdrh if( pIdx->pPartIdxWhere ){ 165626198bb4Sdrh sqlite3VdbeAddOp2(v, OP_Null, 0, aRegIdx[ix]); 16576e97f8ecSdrh pParse->iSelfTab = -(regNewData+1); 165872bc8208Sdrh sqlite3ExprIfFalseDup(pParse, pIdx->pPartIdxWhere, addrUniqueOk, 1659b2b9d3d7Sdrh SQLITE_JUMPIFNULL); 16606e97f8ecSdrh pParse->iSelfTab = 0; 1661b2b9d3d7Sdrh } 1662b2b9d3d7Sdrh 16636934fc7bSdrh /* Create a record for this index entry as it should appear after 1664f8ffb278Sdrh ** the insert or update. Store that record in the aRegIdx[ix] register 1665f8ffb278Sdrh */ 1666bf2f5739Sdrh regIdx = aRegIdx[ix]+1; 16679cfcf5d4Sdrh for(i=0; i<pIdx->nColumn; i++){ 16686934fc7bSdrh int iField = pIdx->aiColumn[i]; 1669f82b9afcSdrh int x; 16704b92f98cSdrh if( iField==XN_EXPR ){ 16716e97f8ecSdrh pParse->iSelfTab = -(regNewData+1); 16721c75c9d7Sdrh sqlite3ExprCodeCopy(pParse, pIdx->aColExpr->a[i].pExpr, regIdx+i); 16736e97f8ecSdrh pParse->iSelfTab = 0; 16741f9ca2c8Sdrh VdbeComment((v, "%s column %d", pIdx->zName, i)); 16751f9ca2c8Sdrh }else{ 16764b92f98cSdrh if( iField==XN_ROWID || iField==pTab->iPKey ){ 1677f82b9afcSdrh x = regNewData; 16789cfcf5d4Sdrh }else{ 1679f82b9afcSdrh x = iField + regNewData + 1; 16809cfcf5d4Sdrh } 1681fed7ac6fSdrh sqlite3VdbeAddOp2(v, iField<0 ? OP_IntCopy : OP_SCopy, x, regIdx+i); 1682f82b9afcSdrh VdbeComment((v, "%s", iField<0 ? "rowid" : pTab->aCol[iField].zName)); 16839cfcf5d4Sdrh } 16841f9ca2c8Sdrh } 168526198bb4Sdrh sqlite3VdbeAddOp3(v, OP_MakeRecord, regIdx, pIdx->nColumn, aRegIdx[ix]); 168626198bb4Sdrh VdbeComment((v, "for %s", pIdx->zName)); 16877e4acf7bSdrh #ifdef SQLITE_ENABLE_NULL_TRIM 16889df385ecSdrh if( pIdx->idxType==SQLITE_IDXTYPE_PRIMARYKEY ){ 16899df385ecSdrh sqlite3SetMakeRecordP5(v, pIdx->pTable); 16909df385ecSdrh } 16917e4acf7bSdrh #endif 1692b2fe7d8cSdrh 1693f8ffb278Sdrh /* In an UPDATE operation, if this index is the PRIMARY KEY index 1694f8ffb278Sdrh ** of a WITHOUT ROWID table and there has been no change the 1695f8ffb278Sdrh ** primary key, then no collision is possible. The collision detection 1696f8ffb278Sdrh ** logic below can all be skipped. */ 169700012df4Sdrh if( isUpdate && pPk==pIdx && pkChng==0 ){ 1698da475b8dSdrh sqlite3VdbeResolveLabel(v, addrUniqueOk); 1699da475b8dSdrh continue; 1700da475b8dSdrh } 1701f8ffb278Sdrh 17026934fc7bSdrh /* Find out what action to take in case there is a uniqueness conflict */ 17039cfcf5d4Sdrh onError = pIdx->onError; 1704de630353Sdanielk1977 if( onError==OE_None ){ 170511e85273Sdrh sqlite3VdbeResolveLabel(v, addrUniqueOk); 1706de630353Sdanielk1977 continue; /* pIdx is not a UNIQUE index */ 1707de630353Sdanielk1977 } 17089cfcf5d4Sdrh if( overrideError!=OE_Default ){ 17099cfcf5d4Sdrh onError = overrideError; 1710a996e477Sdrh }else if( onError==OE_Default ){ 1711a996e477Sdrh onError = OE_Abort; 17129cfcf5d4Sdrh } 17135383ae5cSdrh 1714c8a0c90bSdrh /* Figure out if the upsert clause applies to this index */ 1715096fd476Sdrh if( pUpIdx==pIdx ){ 1716c8a0c90bSdrh if( pUpsert->pUpsertSet==0 ){ 1717c8a0c90bSdrh onError = OE_Ignore; /* DO NOTHING is the same as INSERT OR IGNORE */ 1718c8a0c90bSdrh }else{ 1719c8a0c90bSdrh onError = OE_Update; /* DO UPDATE */ 1720c8a0c90bSdrh } 1721c8a0c90bSdrh } 1722c8a0c90bSdrh 1723801f55d8Sdrh /* Collision detection may be omitted if all of the following are true: 1724801f55d8Sdrh ** (1) The conflict resolution algorithm is REPLACE 1725801f55d8Sdrh ** (2) The table is a WITHOUT ROWID table 1726801f55d8Sdrh ** (3) There are no secondary indexes on the table 1727801f55d8Sdrh ** (4) No delete triggers need to be fired if there is a conflict 1728f9a12a10Sdan ** (5) No FK constraint counters need to be updated if a conflict occurs. 1729418454c6Sdan ** 1730418454c6Sdan ** This is not possible for ENABLE_PREUPDATE_HOOK builds, as the row 1731418454c6Sdan ** must be explicitly deleted in order to ensure any pre-update hook 1732418454c6Sdan ** is invoked. */ 1733418454c6Sdan #ifndef SQLITE_ENABLE_PREUPDATE_HOOK 1734801f55d8Sdrh if( (ix==0 && pIdx->pNext==0) /* Condition 3 */ 1735801f55d8Sdrh && pPk==pIdx /* Condition 2 */ 1736801f55d8Sdrh && onError==OE_Replace /* Condition 1 */ 1737801f55d8Sdrh && ( 0==(db->flags&SQLITE_RecTriggers) || /* Condition 4 */ 1738801f55d8Sdrh 0==sqlite3TriggersExist(pParse, pTab, TK_DELETE, 0, 0)) 1739f9a12a10Sdan && ( 0==(db->flags&SQLITE_ForeignKeys) || /* Condition 5 */ 1740f9a12a10Sdan (0==pTab->pFKey && 0==sqlite3FkReferences(pTab))) 17414e1f0efbSdan ){ 1742c6c9e158Sdrh sqlite3VdbeResolveLabel(v, addrUniqueOk); 1743c6c9e158Sdrh continue; 1744c6c9e158Sdrh } 1745418454c6Sdan #endif /* ifndef SQLITE_ENABLE_PREUPDATE_HOOK */ 1746c6c9e158Sdrh 1747b2fe7d8cSdrh /* Check to see if the new index entry will be unique */ 17484031bafaSdrh sqlite3VdbeVerifyAbortable(v, onError); 174926198bb4Sdrh sqlite3VdbeAddOp4Int(v, OP_NoConflict, iThisCur, addrUniqueOk, 1750688852abSdrh regIdx, pIdx->nKeyCol); VdbeCoverage(v); 1751f8ffb278Sdrh 1752f8ffb278Sdrh /* Generate code to handle collisions */ 1753392ee21dSdrh regR = (pIdx==pPk) ? regIdx : sqlite3GetTempRange(pParse, nPkField); 175446d03fcbSdrh if( isUpdate || onError==OE_Replace ){ 175511e85273Sdrh if( HasRowid(pTab) ){ 17566934fc7bSdrh sqlite3VdbeAddOp2(v, OP_IdxRowid, iThisCur, regR); 17570978d4ffSdrh /* Conflict only if the rowid of the existing index entry 17580978d4ffSdrh ** is different from old-rowid */ 1759f8ffb278Sdrh if( isUpdate ){ 17606934fc7bSdrh sqlite3VdbeAddOp3(v, OP_Eq, regR, addrUniqueOk, regOldData); 17613d77dee9Sdrh sqlite3VdbeChangeP5(v, SQLITE_NOTNULL); 1762688852abSdrh VdbeCoverage(v); 1763f8ffb278Sdrh } 176426198bb4Sdrh }else{ 1765ccc79f02Sdrh int x; 176626198bb4Sdrh /* Extract the PRIMARY KEY from the end of the index entry and 1767da475b8dSdrh ** store it in registers regR..regR+nPk-1 */ 1768a021f121Sdrh if( pIdx!=pPk ){ 176926198bb4Sdrh for(i=0; i<pPk->nKeyCol; i++){ 17704b92f98cSdrh assert( pPk->aiColumn[i]>=0 ); 1771ccc79f02Sdrh x = sqlite3ColumnOfIndex(pIdx, pPk->aiColumn[i]); 177226198bb4Sdrh sqlite3VdbeAddOp3(v, OP_Column, iThisCur, x, regR+i); 177326198bb4Sdrh VdbeComment((v, "%s.%s", pTab->zName, 177426198bb4Sdrh pTab->aCol[pPk->aiColumn[i]].zName)); 177526198bb4Sdrh } 1776da475b8dSdrh } 1777da475b8dSdrh if( isUpdate ){ 1778e83267daSdan /* If currently processing the PRIMARY KEY of a WITHOUT ROWID 1779e83267daSdan ** table, only conflict if the new PRIMARY KEY values are actually 1780e83267daSdan ** different from the old. 1781e83267daSdan ** 1782e83267daSdan ** For a UNIQUE index, only conflict if the PRIMARY KEY values 1783e83267daSdan ** of the matched index row are different from the original PRIMARY 1784e83267daSdan ** KEY values of this row before the update. */ 1785e83267daSdan int addrJump = sqlite3VdbeCurrentAddr(v)+pPk->nKeyCol; 1786e83267daSdan int op = OP_Ne; 178748dd1d8eSdrh int regCmp = (IsPrimaryKeyIndex(pIdx) ? regIdx : regR); 1788e83267daSdan 1789e83267daSdan for(i=0; i<pPk->nKeyCol; i++){ 1790e83267daSdan char *p4 = (char*)sqlite3LocateCollSeq(pParse, pPk->azColl[i]); 1791ccc79f02Sdrh x = pPk->aiColumn[i]; 17924b92f98cSdrh assert( x>=0 ); 1793e83267daSdan if( i==(pPk->nKeyCol-1) ){ 1794e83267daSdan addrJump = addrUniqueOk; 1795e83267daSdan op = OP_Eq; 179611e85273Sdrh } 1797e83267daSdan sqlite3VdbeAddOp4(v, op, 1798e83267daSdan regOldData+1+x, addrJump, regCmp+i, p4, P4_COLLSEQ 1799e83267daSdan ); 18003d77dee9Sdrh sqlite3VdbeChangeP5(v, SQLITE_NOTNULL); 18013d77dee9Sdrh VdbeCoverageIf(v, op==OP_Eq); 18023d77dee9Sdrh VdbeCoverageIf(v, op==OP_Ne); 1803da475b8dSdrh } 180411e85273Sdrh } 180526198bb4Sdrh } 180646d03fcbSdrh } 1807b2fe7d8cSdrh 1808b2fe7d8cSdrh /* Generate code that executes if the new index entry is not unique */ 1809b84f96f8Sdanielk1977 assert( onError==OE_Rollback || onError==OE_Abort || onError==OE_Fail 18109eddacadSdrh || onError==OE_Ignore || onError==OE_Replace || onError==OE_Update ); 18119cfcf5d4Sdrh switch( onError ){ 18121c92853dSdrh case OE_Rollback: 18131c92853dSdrh case OE_Abort: 18141c92853dSdrh case OE_Fail: { 18159916048bSdrh testcase( onError==OE_Rollback ); 18169916048bSdrh testcase( onError==OE_Abort ); 18179916048bSdrh testcase( onError==OE_Fail ); 1818f9c8ce3cSdrh sqlite3UniqueConstraint(pParse, onError, pIdx); 18199cfcf5d4Sdrh break; 18209cfcf5d4Sdrh } 18219eddacadSdrh #ifndef SQLITE_OMIT_UPSERT 18229eddacadSdrh case OE_Update: { 18232cc00423Sdan sqlite3UpsertDoUpdate(pParse, pUpsert, pTab, pIdx, iIdxCur+ix); 18249eddacadSdrh /* Fall through */ 18259eddacadSdrh } 18269eddacadSdrh #endif 18279cfcf5d4Sdrh case OE_Ignore: { 18289916048bSdrh testcase( onError==OE_Ignore ); 1829076e85f5Sdrh sqlite3VdbeGoto(v, ignoreDest); 18309cfcf5d4Sdrh break; 18319cfcf5d4Sdrh } 1832098d1684Sdrh default: { 18332283d46cSdan Trigger *pTrigger = 0; 1834*2da8d6feSdrh int bRetryConstraintCheck = 0; 1835098d1684Sdrh assert( onError==OE_Replace ); 18362938f924Sdrh if( db->flags&SQLITE_RecTriggers ){ 18372283d46cSdan pTrigger = sqlite3TriggersExist(pParse, pTab, TK_DELETE, 0, 0); 18382283d46cSdan } 1839fecfb318Sdan if( pTrigger || sqlite3FkRequired(pParse, pTab, 0, 0) ){ 1840fecfb318Sdan sqlite3MultiWrite(pParse); 1841*2da8d6feSdrh bRetryConstraintCheck = 1; 1842fecfb318Sdan } 184326198bb4Sdrh sqlite3GenerateRowDelete(pParse, pTab, pTrigger, iDataCur, iIdxCur, 1844b0264eecSdrh regR, nPkField, 0, OE_Replace, 184568116939Sdrh (pIdx==pPk ? ONEPASS_SINGLE : ONEPASS_OFF), iThisCur); 1846*2da8d6feSdrh if( bRetryConstraintCheck ){ 1847*2da8d6feSdrh sqlite3VdbeAddOp4Int(v, OP_NoConflict, iThisCur, addrUniqueOk, 1848*2da8d6feSdrh regIdx, pIdx->nKeyCol); VdbeCoverage(v); 1849*2da8d6feSdrh sqlite3UniqueConstraint(pParse, OE_Abort, pIdx); 1850*2da8d6feSdrh } 18510ca3e24bSdrh seenReplace = 1; 18529cfcf5d4Sdrh break; 18539cfcf5d4Sdrh } 18549cfcf5d4Sdrh } 18557f5f306bSdrh if( pUpIdx==pIdx ){ 185684304506Sdrh sqlite3VdbeGoto(v, upsertJump+1); 18577f5f306bSdrh sqlite3VdbeJumpHere(v, upsertBypass); 18587f5f306bSdrh }else{ 185911e85273Sdrh sqlite3VdbeResolveLabel(v, addrUniqueOk); 18607f5f306bSdrh } 1861392ee21dSdrh if( regR!=regIdx ) sqlite3ReleaseTempRange(pParse, regR, nPkField); 18629cfcf5d4Sdrh } 186384304506Sdrh 186484304506Sdrh /* If the IPK constraint is a REPLACE, run it last */ 186584304506Sdrh if( ipkTop ){ 18666214d939Sdrh sqlite3VdbeGoto(v, ipkTop); 186784304506Sdrh VdbeComment((v, "Do IPK REPLACE")); 186884304506Sdrh sqlite3VdbeJumpHere(v, ipkBottom); 186984304506Sdrh } 1870de630353Sdanielk1977 1871a7c3b93fSdrh /* Generate the table record */ 1872a7c3b93fSdrh if( HasRowid(pTab) ){ 1873a7c3b93fSdrh int regRec = aRegIdx[ix]; 1874a7c3b93fSdrh sqlite3VdbeAddOp3(v, OP_MakeRecord, regNewData+1, pTab->nCol, regRec); 1875a7c3b93fSdrh sqlite3SetMakeRecordP5(v, pTab); 1876a7c3b93fSdrh if( !bAffinityDone ){ 1877a7c3b93fSdrh sqlite3TableAffinity(v, pTab, 0); 1878a7c3b93fSdrh } 1879a7c3b93fSdrh } 1880a7c3b93fSdrh 1881de630353Sdanielk1977 *pbMayReplace = seenReplace; 1882ce60aa46Sdrh VdbeModuleComment((v, "END: GenCnstCks(%d)", seenReplace)); 18839cfcf5d4Sdrh } 18840ca3e24bSdrh 1885d447dcedSdrh #ifdef SQLITE_ENABLE_NULL_TRIM 18860ca3e24bSdrh /* 1887585ce192Sdrh ** Change the P5 operand on the last opcode (which should be an OP_MakeRecord) 1888585ce192Sdrh ** to be the number of columns in table pTab that must not be NULL-trimmed. 1889585ce192Sdrh ** 1890585ce192Sdrh ** Or if no columns of pTab may be NULL-trimmed, leave P5 at zero. 1891585ce192Sdrh */ 1892585ce192Sdrh void sqlite3SetMakeRecordP5(Vdbe *v, Table *pTab){ 1893585ce192Sdrh u16 i; 1894585ce192Sdrh 1895585ce192Sdrh /* Records with omitted columns are only allowed for schema format 1896585ce192Sdrh ** version 2 and later (SQLite version 3.1.4, 2005-02-20). */ 1897585ce192Sdrh if( pTab->pSchema->file_format<2 ) return; 1898585ce192Sdrh 18997e4acf7bSdrh for(i=pTab->nCol-1; i>0; i--){ 19007e4acf7bSdrh if( pTab->aCol[i].pDflt!=0 ) break; 19017e4acf7bSdrh if( pTab->aCol[i].colFlags & COLFLAG_PRIMKEY ) break; 19027e4acf7bSdrh } 19037e4acf7bSdrh sqlite3VdbeChangeP5(v, i+1); 1904585ce192Sdrh } 1905d447dcedSdrh #endif 1906585ce192Sdrh 19070ca3e24bSdrh /* 19080ca3e24bSdrh ** This routine generates code to finish the INSERT or UPDATE operation 19094adee20fSdanielk1977 ** that was started by a prior call to sqlite3GenerateConstraintChecks. 19106934fc7bSdrh ** A consecutive range of registers starting at regNewData contains the 191104adf416Sdrh ** rowid and the content to be inserted. 19120ca3e24bSdrh ** 1913b419a926Sdrh ** The arguments to this routine should be the same as the first six 19144adee20fSdanielk1977 ** arguments to sqlite3GenerateConstraintChecks. 19150ca3e24bSdrh */ 19164adee20fSdanielk1977 void sqlite3CompleteInsertion( 19170ca3e24bSdrh Parse *pParse, /* The parser context */ 19180ca3e24bSdrh Table *pTab, /* the table into which we are inserting */ 191926198bb4Sdrh int iDataCur, /* Cursor of the canonical data source */ 192026198bb4Sdrh int iIdxCur, /* First index cursor */ 19216934fc7bSdrh int regNewData, /* Range of content */ 1922aa9b8963Sdrh int *aRegIdx, /* Register used by each index. 0 for unused indices */ 1923f91c1318Sdan int update_flags, /* True for UPDATE, False for INSERT */ 1924de630353Sdanielk1977 int appendBias, /* True if this is likely to be an append */ 1925de630353Sdanielk1977 int useSeekResult /* True to set the USESEEKRESULT flag on OP_[Idx]Insert */ 19260ca3e24bSdrh ){ 19276934fc7bSdrh Vdbe *v; /* Prepared statements under construction */ 19286934fc7bSdrh Index *pIdx; /* An index being inserted or updated */ 19296934fc7bSdrh u8 pik_flags; /* flag values passed to the btree insert */ 19306934fc7bSdrh int i; /* Loop counter */ 19310ca3e24bSdrh 1932f91c1318Sdan assert( update_flags==0 1933f91c1318Sdan || update_flags==OPFLAG_ISUPDATE 1934f91c1318Sdan || update_flags==(OPFLAG_ISUPDATE|OPFLAG_SAVEPOSITION) 1935f91c1318Sdan ); 1936f91c1318Sdan 19374adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 19380ca3e24bSdrh assert( v!=0 ); 1939417be79cSdrh assert( pTab->pSelect==0 ); /* This table is not a VIEW */ 1940b2b9d3d7Sdrh for(i=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, i++){ 1941aa9b8963Sdrh if( aRegIdx[i]==0 ) continue; 1942b2b9d3d7Sdrh if( pIdx->pPartIdxWhere ){ 1943b2b9d3d7Sdrh sqlite3VdbeAddOp2(v, OP_IsNull, aRegIdx[i], sqlite3VdbeCurrentAddr(v)+2); 1944688852abSdrh VdbeCoverage(v); 1945b2b9d3d7Sdrh } 1946cb9a3643Sdan pik_flags = (useSeekResult ? OPFLAG_USESEEKRESULT : 0); 194748dd1d8eSdrh if( IsPrimaryKeyIndex(pIdx) && !HasRowid(pTab) ){ 19484308e348Sdrh assert( pParse->nested==0 ); 19496546af14Sdrh pik_flags |= OPFLAG_NCHANGE; 1950f91c1318Sdan pik_flags |= (update_flags & OPFLAG_SAVEPOSITION); 1951cb9a3643Sdan #ifdef SQLITE_ENABLE_PREUPDATE_HOOK 1952cb9a3643Sdan if( update_flags==0 ){ 195350ef6716Sdrh int r = sqlite3GetTempReg(pParse); 195450ef6716Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, r); 195550ef6716Sdrh sqlite3VdbeAddOp4(v, OP_Insert, 195650ef6716Sdrh iIdxCur+i, aRegIdx[i], r, (char*)pTab, P4_TABLE 1957cb9a3643Sdan ); 1958cb9a3643Sdan sqlite3VdbeChangeP5(v, OPFLAG_ISNOOP); 195950ef6716Sdrh sqlite3ReleaseTempReg(pParse, r); 1960de630353Sdanielk1977 } 1961cb9a3643Sdan #endif 1962cb9a3643Sdan } 1963cb9a3643Sdan sqlite3VdbeAddOp4Int(v, OP_IdxInsert, iIdxCur+i, aRegIdx[i], 1964cb9a3643Sdan aRegIdx[i]+1, 1965cb9a3643Sdan pIdx->uniqNotNull ? pIdx->nKeyCol: pIdx->nColumn); 19669b34abeeSdrh sqlite3VdbeChangeP5(v, pik_flags); 19670ca3e24bSdrh } 1968ec95c441Sdrh if( !HasRowid(pTab) ) return; 19694794f735Sdrh if( pParse->nested ){ 19704794f735Sdrh pik_flags = 0; 19714794f735Sdrh }else{ 197294eb6a14Sdanielk1977 pik_flags = OPFLAG_NCHANGE; 1973f91c1318Sdan pik_flags |= (update_flags?update_flags:OPFLAG_LASTROWID); 19744794f735Sdrh } 1975e4d90813Sdrh if( appendBias ){ 1976e4d90813Sdrh pik_flags |= OPFLAG_APPEND; 1977e4d90813Sdrh } 1978de630353Sdanielk1977 if( useSeekResult ){ 1979de630353Sdanielk1977 pik_flags |= OPFLAG_USESEEKRESULT; 1980de630353Sdanielk1977 } 1981a7c3b93fSdrh sqlite3VdbeAddOp3(v, OP_Insert, iDataCur, aRegIdx[i], regNewData); 198294eb6a14Sdanielk1977 if( !pParse->nested ){ 1983f14b7fb7Sdrh sqlite3VdbeAppendP4(v, pTab, P4_TABLE); 198494eb6a14Sdanielk1977 } 1985b7654111Sdrh sqlite3VdbeChangeP5(v, pik_flags); 19860ca3e24bSdrh } 1987cd44690aSdrh 1988cd44690aSdrh /* 198926198bb4Sdrh ** Allocate cursors for the pTab table and all its indices and generate 199026198bb4Sdrh ** code to open and initialized those cursors. 1991aa9b8963Sdrh ** 199226198bb4Sdrh ** The cursor for the object that contains the complete data (normally 199326198bb4Sdrh ** the table itself, but the PRIMARY KEY index in the case of a WITHOUT 199426198bb4Sdrh ** ROWID table) is returned in *piDataCur. The first index cursor is 199526198bb4Sdrh ** returned in *piIdxCur. The number of indices is returned. 199626198bb4Sdrh ** 199726198bb4Sdrh ** Use iBase as the first cursor (either the *piDataCur for rowid tables 199826198bb4Sdrh ** or the first index for WITHOUT ROWID tables) if it is non-negative. 199926198bb4Sdrh ** If iBase is negative, then allocate the next available cursor. 200026198bb4Sdrh ** 200126198bb4Sdrh ** For a rowid table, *piDataCur will be exactly one less than *piIdxCur. 200226198bb4Sdrh ** For a WITHOUT ROWID table, *piDataCur will be somewhere in the range 200326198bb4Sdrh ** of *piIdxCurs, depending on where the PRIMARY KEY index appears on the 200426198bb4Sdrh ** pTab->pIndex list. 2005b6b4b79fSdrh ** 2006b6b4b79fSdrh ** If pTab is a virtual table, then this routine is a no-op and the 2007b6b4b79fSdrh ** *piDataCur and *piIdxCur values are left uninitialized. 2008cd44690aSdrh */ 2009aa9b8963Sdrh int sqlite3OpenTableAndIndices( 2010290c1948Sdrh Parse *pParse, /* Parsing context */ 2011290c1948Sdrh Table *pTab, /* Table to be opened */ 201226198bb4Sdrh int op, /* OP_OpenRead or OP_OpenWrite */ 2013b89aeb6aSdrh u8 p5, /* P5 value for OP_Open* opcodes (except on WITHOUT ROWID) */ 201426198bb4Sdrh int iBase, /* Use this for the table cursor, if there is one */ 20156a53499aSdrh u8 *aToOpen, /* If not NULL: boolean for each table and index */ 201626198bb4Sdrh int *piDataCur, /* Write the database source cursor number here */ 201726198bb4Sdrh int *piIdxCur /* Write the first index cursor number here */ 2018290c1948Sdrh ){ 2019cd44690aSdrh int i; 20204cbdda9eSdrh int iDb; 20216a53499aSdrh int iDataCur; 2022cd44690aSdrh Index *pIdx; 20234cbdda9eSdrh Vdbe *v; 20244cbdda9eSdrh 202526198bb4Sdrh assert( op==OP_OpenRead || op==OP_OpenWrite ); 2026fd261ec6Sdan assert( op==OP_OpenWrite || p5==0 ); 202726198bb4Sdrh if( IsVirtual(pTab) ){ 2028b6b4b79fSdrh /* This routine is a no-op for virtual tables. Leave the output 2029b6b4b79fSdrh ** variables *piDataCur and *piIdxCur uninitialized so that valgrind 2030b6b4b79fSdrh ** can detect if they are used by mistake in the caller. */ 203126198bb4Sdrh return 0; 203226198bb4Sdrh } 20334cbdda9eSdrh iDb = sqlite3SchemaToIndex(pParse->db, pTab->pSchema); 20344cbdda9eSdrh v = sqlite3GetVdbe(pParse); 2035cd44690aSdrh assert( v!=0 ); 203626198bb4Sdrh if( iBase<0 ) iBase = pParse->nTab; 20376a53499aSdrh iDataCur = iBase++; 20386a53499aSdrh if( piDataCur ) *piDataCur = iDataCur; 20396a53499aSdrh if( HasRowid(pTab) && (aToOpen==0 || aToOpen[0]) ){ 20406a53499aSdrh sqlite3OpenTable(pParse, iDataCur, iDb, pTab, op); 20416fbe41acSdrh }else{ 204226198bb4Sdrh sqlite3TableLock(pParse, iDb, pTab->tnum, op==OP_OpenWrite, pTab->zName); 20436fbe41acSdrh } 20446a53499aSdrh if( piIdxCur ) *piIdxCur = iBase; 204526198bb4Sdrh for(i=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, i++){ 204626198bb4Sdrh int iIdxCur = iBase++; 2047da184236Sdanielk1977 assert( pIdx->pSchema==pTab->pSchema ); 204861441c34Sdan if( IsPrimaryKeyIndex(pIdx) && !HasRowid(pTab) ){ 204961441c34Sdan if( piDataCur ) *piDataCur = iIdxCur; 205061441c34Sdan p5 = 0; 205161441c34Sdan } 20526a53499aSdrh if( aToOpen==0 || aToOpen[i+1] ){ 20532ec2fb22Sdrh sqlite3VdbeAddOp3(v, op, iIdxCur, pIdx->tnum, iDb); 20542ec2fb22Sdrh sqlite3VdbeSetP4KeyInfo(pParse, pIdx); 2055b89aeb6aSdrh sqlite3VdbeChangeP5(v, p5); 205661441c34Sdan VdbeComment((v, "%s", pIdx->zName)); 2057b89aeb6aSdrh } 20586a53499aSdrh } 205926198bb4Sdrh if( iBase>pParse->nTab ) pParse->nTab = iBase; 206026198bb4Sdrh return i; 2061cd44690aSdrh } 20629d9cf229Sdrh 206391c58e23Sdrh 206491c58e23Sdrh #ifdef SQLITE_TEST 206591c58e23Sdrh /* 206691c58e23Sdrh ** The following global variable is incremented whenever the 206791c58e23Sdrh ** transfer optimization is used. This is used for testing 206891c58e23Sdrh ** purposes only - to make sure the transfer optimization really 206960ec914cSpeter.d.reid ** is happening when it is supposed to. 207091c58e23Sdrh */ 207191c58e23Sdrh int sqlite3_xferopt_count; 207291c58e23Sdrh #endif /* SQLITE_TEST */ 207391c58e23Sdrh 207491c58e23Sdrh 20759d9cf229Sdrh #ifndef SQLITE_OMIT_XFER_OPT 20769d9cf229Sdrh /* 20779d9cf229Sdrh ** Check to see if index pSrc is compatible as a source of data 20789d9cf229Sdrh ** for index pDest in an insert transfer optimization. The rules 20799d9cf229Sdrh ** for a compatible index: 20809d9cf229Sdrh ** 20819d9cf229Sdrh ** * The index is over the same set of columns 20829d9cf229Sdrh ** * The same DESC and ASC markings occurs on all columns 20839d9cf229Sdrh ** * The same onError processing (OE_Abort, OE_Ignore, etc) 20849d9cf229Sdrh ** * The same collating sequence on each column 2085b2b9d3d7Sdrh ** * The index has the exact same WHERE clause 20869d9cf229Sdrh */ 20879d9cf229Sdrh static int xferCompatibleIndex(Index *pDest, Index *pSrc){ 20889d9cf229Sdrh int i; 20899d9cf229Sdrh assert( pDest && pSrc ); 20909d9cf229Sdrh assert( pDest->pTable!=pSrc->pTable ); 2091bbbdc83bSdrh if( pDest->nKeyCol!=pSrc->nKeyCol ){ 20929d9cf229Sdrh return 0; /* Different number of columns */ 20939d9cf229Sdrh } 20949d9cf229Sdrh if( pDest->onError!=pSrc->onError ){ 20959d9cf229Sdrh return 0; /* Different conflict resolution strategies */ 20969d9cf229Sdrh } 2097bbbdc83bSdrh for(i=0; i<pSrc->nKeyCol; i++){ 20989d9cf229Sdrh if( pSrc->aiColumn[i]!=pDest->aiColumn[i] ){ 20999d9cf229Sdrh return 0; /* Different columns indexed */ 21009d9cf229Sdrh } 21014b92f98cSdrh if( pSrc->aiColumn[i]==XN_EXPR ){ 21021f9ca2c8Sdrh assert( pSrc->aColExpr!=0 && pDest->aColExpr!=0 ); 21035aa550cfSdan if( sqlite3ExprCompare(0, pSrc->aColExpr->a[i].pExpr, 21041f9ca2c8Sdrh pDest->aColExpr->a[i].pExpr, -1)!=0 ){ 21051f9ca2c8Sdrh return 0; /* Different expressions in the index */ 21061f9ca2c8Sdrh } 21071f9ca2c8Sdrh } 21089d9cf229Sdrh if( pSrc->aSortOrder[i]!=pDest->aSortOrder[i] ){ 21099d9cf229Sdrh return 0; /* Different sort orders */ 21109d9cf229Sdrh } 21110472af91Sdrh if( sqlite3_stricmp(pSrc->azColl[i],pDest->azColl[i])!=0 ){ 211260a713c6Sdrh return 0; /* Different collating sequences */ 21139d9cf229Sdrh } 21149d9cf229Sdrh } 21155aa550cfSdan if( sqlite3ExprCompare(0, pSrc->pPartIdxWhere, pDest->pPartIdxWhere, -1) ){ 2116b2b9d3d7Sdrh return 0; /* Different WHERE clauses */ 2117b2b9d3d7Sdrh } 21189d9cf229Sdrh 21199d9cf229Sdrh /* If no test above fails then the indices must be compatible */ 21209d9cf229Sdrh return 1; 21219d9cf229Sdrh } 21229d9cf229Sdrh 21239d9cf229Sdrh /* 21249d9cf229Sdrh ** Attempt the transfer optimization on INSERTs of the form 21259d9cf229Sdrh ** 21269d9cf229Sdrh ** INSERT INTO tab1 SELECT * FROM tab2; 21279d9cf229Sdrh ** 2128ccdf1baeSdrh ** The xfer optimization transfers raw records from tab2 over to tab1. 212960ec914cSpeter.d.reid ** Columns are not decoded and reassembled, which greatly improves 2130ccdf1baeSdrh ** performance. Raw index records are transferred in the same way. 21319d9cf229Sdrh ** 2132ccdf1baeSdrh ** The xfer optimization is only attempted if tab1 and tab2 are compatible. 2133ccdf1baeSdrh ** There are lots of rules for determining compatibility - see comments 2134ccdf1baeSdrh ** embedded in the code for details. 21359d9cf229Sdrh ** 2136ccdf1baeSdrh ** This routine returns TRUE if the optimization is guaranteed to be used. 2137ccdf1baeSdrh ** Sometimes the xfer optimization will only work if the destination table 2138ccdf1baeSdrh ** is empty - a factor that can only be determined at run-time. In that 2139ccdf1baeSdrh ** case, this routine generates code for the xfer optimization but also 2140ccdf1baeSdrh ** does a test to see if the destination table is empty and jumps over the 2141ccdf1baeSdrh ** xfer optimization code if the test fails. In that case, this routine 2142ccdf1baeSdrh ** returns FALSE so that the caller will know to go ahead and generate 2143ccdf1baeSdrh ** an unoptimized transfer. This routine also returns FALSE if there 2144ccdf1baeSdrh ** is no chance that the xfer optimization can be applied. 21459d9cf229Sdrh ** 2146ccdf1baeSdrh ** This optimization is particularly useful at making VACUUM run faster. 21479d9cf229Sdrh */ 21489d9cf229Sdrh static int xferOptimization( 21499d9cf229Sdrh Parse *pParse, /* Parser context */ 21509d9cf229Sdrh Table *pDest, /* The table we are inserting into */ 21519d9cf229Sdrh Select *pSelect, /* A SELECT statement to use as the data source */ 21529d9cf229Sdrh int onError, /* How to handle constraint errors */ 21539d9cf229Sdrh int iDbDest /* The database of pDest */ 21549d9cf229Sdrh ){ 2155e34162b1Sdan sqlite3 *db = pParse->db; 21569d9cf229Sdrh ExprList *pEList; /* The result set of the SELECT */ 21579d9cf229Sdrh Table *pSrc; /* The table in the FROM clause of SELECT */ 21589d9cf229Sdrh Index *pSrcIdx, *pDestIdx; /* Source and destination indices */ 21599d9cf229Sdrh struct SrcList_item *pItem; /* An element of pSelect->pSrc */ 21609d9cf229Sdrh int i; /* Loop counter */ 21619d9cf229Sdrh int iDbSrc; /* The database of pSrc */ 21629d9cf229Sdrh int iSrc, iDest; /* Cursors from source and destination */ 21639d9cf229Sdrh int addr1, addr2; /* Loop addresses */ 2164da475b8dSdrh int emptyDestTest = 0; /* Address of test for empty pDest */ 2165da475b8dSdrh int emptySrcTest = 0; /* Address of test for empty pSrc */ 21669d9cf229Sdrh Vdbe *v; /* The VDBE we are building */ 21676a288a33Sdrh int regAutoinc; /* Memory register used by AUTOINC */ 2168f33c9fadSdrh int destHasUniqueIdx = 0; /* True if pDest has a UNIQUE index */ 2169b7654111Sdrh int regData, regRowid; /* Registers holding data and rowid */ 21709d9cf229Sdrh 21719d9cf229Sdrh if( pSelect==0 ){ 21729d9cf229Sdrh return 0; /* Must be of the form INSERT INTO ... SELECT ... */ 21739d9cf229Sdrh } 2174ebbf08a0Sdan if( pParse->pWith || pSelect->pWith ){ 2175ebbf08a0Sdan /* Do not attempt to process this query if there are an WITH clauses 2176ebbf08a0Sdan ** attached to it. Proceeding may generate a false "no such table: xxx" 2177ebbf08a0Sdan ** error if pSelect reads from a CTE named "xxx". */ 2178ebbf08a0Sdan return 0; 2179ebbf08a0Sdan } 21802f886d1dSdanielk1977 if( sqlite3TriggerList(pParse, pDest) ){ 21819d9cf229Sdrh return 0; /* tab1 must not have triggers */ 21829d9cf229Sdrh } 21839d9cf229Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 218444266ec6Sdrh if( IsVirtual(pDest) ){ 21859d9cf229Sdrh return 0; /* tab1 must not be a virtual table */ 21869d9cf229Sdrh } 21879d9cf229Sdrh #endif 21889d9cf229Sdrh if( onError==OE_Default ){ 2189e7224a01Sdrh if( pDest->iPKey>=0 ) onError = pDest->keyConf; 2190e7224a01Sdrh if( onError==OE_Default ) onError = OE_Abort; 21919d9cf229Sdrh } 21925ce240a6Sdanielk1977 assert(pSelect->pSrc); /* allocated even if there is no FROM clause */ 21939d9cf229Sdrh if( pSelect->pSrc->nSrc!=1 ){ 21949d9cf229Sdrh return 0; /* FROM clause must have exactly one term */ 21959d9cf229Sdrh } 21969d9cf229Sdrh if( pSelect->pSrc->a[0].pSelect ){ 21979d9cf229Sdrh return 0; /* FROM clause cannot contain a subquery */ 21989d9cf229Sdrh } 21999d9cf229Sdrh if( pSelect->pWhere ){ 22009d9cf229Sdrh return 0; /* SELECT may not have a WHERE clause */ 22019d9cf229Sdrh } 22029d9cf229Sdrh if( pSelect->pOrderBy ){ 22039d9cf229Sdrh return 0; /* SELECT may not have an ORDER BY clause */ 22049d9cf229Sdrh } 22058103b7d2Sdrh /* Do not need to test for a HAVING clause. If HAVING is present but 22068103b7d2Sdrh ** there is no ORDER BY, we will get an error. */ 22079d9cf229Sdrh if( pSelect->pGroupBy ){ 22089d9cf229Sdrh return 0; /* SELECT may not have a GROUP BY clause */ 22099d9cf229Sdrh } 22109d9cf229Sdrh if( pSelect->pLimit ){ 22119d9cf229Sdrh return 0; /* SELECT may not have a LIMIT clause */ 22129d9cf229Sdrh } 22139d9cf229Sdrh if( pSelect->pPrior ){ 22149d9cf229Sdrh return 0; /* SELECT may not be a compound query */ 22159d9cf229Sdrh } 22167d10d5a6Sdrh if( pSelect->selFlags & SF_Distinct ){ 22179d9cf229Sdrh return 0; /* SELECT may not be DISTINCT */ 22189d9cf229Sdrh } 22199d9cf229Sdrh pEList = pSelect->pEList; 22209d9cf229Sdrh assert( pEList!=0 ); 22219d9cf229Sdrh if( pEList->nExpr!=1 ){ 22229d9cf229Sdrh return 0; /* The result set must have exactly one column */ 22239d9cf229Sdrh } 22249d9cf229Sdrh assert( pEList->a[0].pExpr ); 22251a1d3cd2Sdrh if( pEList->a[0].pExpr->op!=TK_ASTERISK ){ 22269d9cf229Sdrh return 0; /* The result set must be the special operator "*" */ 22279d9cf229Sdrh } 22289d9cf229Sdrh 22299d9cf229Sdrh /* At this point we have established that the statement is of the 22309d9cf229Sdrh ** correct syntactic form to participate in this optimization. Now 22319d9cf229Sdrh ** we have to check the semantics. 22329d9cf229Sdrh */ 22339d9cf229Sdrh pItem = pSelect->pSrc->a; 223441fb5cd1Sdan pSrc = sqlite3LocateTableItem(pParse, 0, pItem); 22359d9cf229Sdrh if( pSrc==0 ){ 22369d9cf229Sdrh return 0; /* FROM clause does not contain a real table */ 22379d9cf229Sdrh } 223821908b21Sdrh if( pSrc->tnum==pDest->tnum && pSrc->pSchema==pDest->pSchema ){ 223921908b21Sdrh testcase( pSrc!=pDest ); /* Possible due to bad sqlite_master.rootpage */ 22409d9cf229Sdrh return 0; /* tab1 and tab2 may not be the same table */ 22419d9cf229Sdrh } 224255548273Sdrh if( HasRowid(pDest)!=HasRowid(pSrc) ){ 224355548273Sdrh return 0; /* source and destination must both be WITHOUT ROWID or not */ 224455548273Sdrh } 22459d9cf229Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 224644266ec6Sdrh if( IsVirtual(pSrc) ){ 22479d9cf229Sdrh return 0; /* tab2 must not be a virtual table */ 22489d9cf229Sdrh } 22499d9cf229Sdrh #endif 22509d9cf229Sdrh if( pSrc->pSelect ){ 22519d9cf229Sdrh return 0; /* tab2 may not be a view */ 22529d9cf229Sdrh } 22539d9cf229Sdrh if( pDest->nCol!=pSrc->nCol ){ 22549d9cf229Sdrh return 0; /* Number of columns must be the same in tab1 and tab2 */ 22559d9cf229Sdrh } 22569d9cf229Sdrh if( pDest->iPKey!=pSrc->iPKey ){ 22579d9cf229Sdrh return 0; /* Both tables must have the same INTEGER PRIMARY KEY */ 22589d9cf229Sdrh } 22599d9cf229Sdrh for(i=0; i<pDest->nCol; i++){ 22609940e2aaSdan Column *pDestCol = &pDest->aCol[i]; 22619940e2aaSdan Column *pSrcCol = &pSrc->aCol[i]; 2262ba68f8f3Sdan #ifdef SQLITE_ENABLE_HIDDEN_COLUMNS 22638257aa8dSdrh if( (db->mDbFlags & DBFLAG_Vacuum)==0 2264aaea3143Sdan && (pDestCol->colFlags | pSrcCol->colFlags) & COLFLAG_HIDDEN 2265aaea3143Sdan ){ 2266ba68f8f3Sdan return 0; /* Neither table may have __hidden__ columns */ 2267ba68f8f3Sdan } 2268ba68f8f3Sdan #endif 22699940e2aaSdan if( pDestCol->affinity!=pSrcCol->affinity ){ 22709d9cf229Sdrh return 0; /* Affinity must be the same on all columns */ 22719d9cf229Sdrh } 22720472af91Sdrh if( sqlite3_stricmp(pDestCol->zColl, pSrcCol->zColl)!=0 ){ 22739d9cf229Sdrh return 0; /* Collating sequence must be the same on all columns */ 22749d9cf229Sdrh } 22759940e2aaSdan if( pDestCol->notNull && !pSrcCol->notNull ){ 22769d9cf229Sdrh return 0; /* tab2 must be NOT NULL if tab1 is */ 22779d9cf229Sdrh } 2278453e0261Sdrh /* Default values for second and subsequent columns need to match. */ 227994fa9c41Sdrh if( i>0 ){ 228094fa9c41Sdrh assert( pDestCol->pDflt==0 || pDestCol->pDflt->op==TK_SPAN ); 228194fa9c41Sdrh assert( pSrcCol->pDflt==0 || pSrcCol->pDflt->op==TK_SPAN ); 228294fa9c41Sdrh if( (pDestCol->pDflt==0)!=(pSrcCol->pDflt==0) 228394fa9c41Sdrh || (pDestCol->pDflt && strcmp(pDestCol->pDflt->u.zToken, 228494fa9c41Sdrh pSrcCol->pDflt->u.zToken)!=0) 22859940e2aaSdan ){ 22869940e2aaSdan return 0; /* Default values must be the same for all columns */ 22879940e2aaSdan } 22889d9cf229Sdrh } 228994fa9c41Sdrh } 22909d9cf229Sdrh for(pDestIdx=pDest->pIndex; pDestIdx; pDestIdx=pDestIdx->pNext){ 22915f1d1d9cSdrh if( IsUniqueIndex(pDestIdx) ){ 2292f33c9fadSdrh destHasUniqueIdx = 1; 2293f33c9fadSdrh } 22949d9cf229Sdrh for(pSrcIdx=pSrc->pIndex; pSrcIdx; pSrcIdx=pSrcIdx->pNext){ 22959d9cf229Sdrh if( xferCompatibleIndex(pDestIdx, pSrcIdx) ) break; 22969d9cf229Sdrh } 22979d9cf229Sdrh if( pSrcIdx==0 ){ 22989d9cf229Sdrh return 0; /* pDestIdx has no corresponding index in pSrc */ 22999d9cf229Sdrh } 2300e3bd232eSdrh if( pSrcIdx->tnum==pDestIdx->tnum && pSrc->pSchema==pDest->pSchema 2301e3bd232eSdrh && sqlite3FaultSim(411)==SQLITE_OK ){ 2302e3bd232eSdrh /* The sqlite3FaultSim() call allows this corruption test to be 2303e3bd232eSdrh ** bypassed during testing, in order to exercise other corruption tests 2304e3bd232eSdrh ** further downstream. */ 230586223e8dSdrh return 0; /* Corrupt schema - two indexes on the same btree */ 230686223e8dSdrh } 23079d9cf229Sdrh } 23087fc2f41bSdrh #ifndef SQLITE_OMIT_CHECK 2309619a1305Sdrh if( pDest->pCheck && sqlite3ExprListCompare(pSrc->pCheck,pDest->pCheck,-1) ){ 23108103b7d2Sdrh return 0; /* Tables have different CHECK constraints. Ticket #2252 */ 23118103b7d2Sdrh } 23127fc2f41bSdrh #endif 2313713de341Sdrh #ifndef SQLITE_OMIT_FOREIGN_KEY 2314713de341Sdrh /* Disallow the transfer optimization if the destination table constains 2315713de341Sdrh ** any foreign key constraints. This is more restrictive than necessary. 2316713de341Sdrh ** But the main beneficiary of the transfer optimization is the VACUUM 2317713de341Sdrh ** command, and the VACUUM command disables foreign key constraints. So 2318713de341Sdrh ** the extra complication to make this rule less restrictive is probably 2319713de341Sdrh ** not worth the effort. Ticket [6284df89debdfa61db8073e062908af0c9b6118e] 2320713de341Sdrh */ 2321e34162b1Sdan if( (db->flags & SQLITE_ForeignKeys)!=0 && pDest->pFKey!=0 ){ 2322713de341Sdrh return 0; 2323713de341Sdrh } 2324713de341Sdrh #endif 2325e34162b1Sdan if( (db->flags & SQLITE_CountRows)!=0 ){ 2326ccdf1baeSdrh return 0; /* xfer opt does not play well with PRAGMA count_changes */ 23271696124dSdan } 23289d9cf229Sdrh 2329ccdf1baeSdrh /* If we get this far, it means that the xfer optimization is at 2330ccdf1baeSdrh ** least a possibility, though it might only work if the destination 2331ccdf1baeSdrh ** table (tab1) is initially empty. 23329d9cf229Sdrh */ 2333dd73521bSdrh #ifdef SQLITE_TEST 2334dd73521bSdrh sqlite3_xferopt_count++; 2335dd73521bSdrh #endif 2336e34162b1Sdan iDbSrc = sqlite3SchemaToIndex(db, pSrc->pSchema); 23379d9cf229Sdrh v = sqlite3GetVdbe(pParse); 2338f53e9b5aSdrh sqlite3CodeVerifySchema(pParse, iDbSrc); 23399d9cf229Sdrh iSrc = pParse->nTab++; 23409d9cf229Sdrh iDest = pParse->nTab++; 23416a288a33Sdrh regAutoinc = autoIncBegin(pParse, iDbDest, pDest); 234255548273Sdrh regData = sqlite3GetTempReg(pParse); 234355548273Sdrh regRowid = sqlite3GetTempReg(pParse); 23449d9cf229Sdrh sqlite3OpenTable(pParse, iDest, iDbDest, pDest, OP_OpenWrite); 2345427ebba1Sdan assert( HasRowid(pDest) || destHasUniqueIdx ); 23468257aa8dSdrh if( (db->mDbFlags & DBFLAG_Vacuum)==0 && ( 2347e34162b1Sdan (pDest->iPKey<0 && pDest->pIndex!=0) /* (1) */ 2348ccdf1baeSdrh || destHasUniqueIdx /* (2) */ 2349ccdf1baeSdrh || (onError!=OE_Abort && onError!=OE_Rollback) /* (3) */ 2350e34162b1Sdan )){ 2351ccdf1baeSdrh /* In some circumstances, we are able to run the xfer optimization 2352e34162b1Sdan ** only if the destination table is initially empty. Unless the 23538257aa8dSdrh ** DBFLAG_Vacuum flag is set, this block generates code to make 23548257aa8dSdrh ** that determination. If DBFLAG_Vacuum is set, then the destination 2355e34162b1Sdan ** table is always empty. 2356e34162b1Sdan ** 2357e34162b1Sdan ** Conditions under which the destination must be empty: 2358f33c9fadSdrh ** 2359ccdf1baeSdrh ** (1) There is no INTEGER PRIMARY KEY but there are indices. 2360ccdf1baeSdrh ** (If the destination is not initially empty, the rowid fields 2361ccdf1baeSdrh ** of index entries might need to change.) 2362ccdf1baeSdrh ** 2363ccdf1baeSdrh ** (2) The destination has a unique index. (The xfer optimization 2364ccdf1baeSdrh ** is unable to test uniqueness.) 2365ccdf1baeSdrh ** 2366ccdf1baeSdrh ** (3) onError is something other than OE_Abort and OE_Rollback. 23679d9cf229Sdrh */ 2368688852abSdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rewind, iDest, 0); VdbeCoverage(v); 23692991ba05Sdrh emptyDestTest = sqlite3VdbeAddOp0(v, OP_Goto); 23709d9cf229Sdrh sqlite3VdbeJumpHere(v, addr1); 23719d9cf229Sdrh } 2372427ebba1Sdan if( HasRowid(pSrc) ){ 2373c9b9deaeSdrh u8 insFlags; 23749d9cf229Sdrh sqlite3OpenTable(pParse, iSrc, iDbSrc, pSrc, OP_OpenRead); 2375688852abSdrh emptySrcTest = sqlite3VdbeAddOp2(v, OP_Rewind, iSrc, 0); VdbeCoverage(v); 237642242dedSdrh if( pDest->iPKey>=0 ){ 2377b7654111Sdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rowid, iSrc, regRowid); 23784031bafaSdrh sqlite3VdbeVerifyAbortable(v, onError); 2379b7654111Sdrh addr2 = sqlite3VdbeAddOp3(v, OP_NotExists, iDest, 0, regRowid); 2380688852abSdrh VdbeCoverage(v); 2381f9c8ce3cSdrh sqlite3RowidConstraint(pParse, onError, pDest); 23829d9cf229Sdrh sqlite3VdbeJumpHere(v, addr2); 2383b7654111Sdrh autoIncStep(pParse, regAutoinc, regRowid); 23844e61e883Sdrh }else if( pDest->pIndex==0 && !(db->mDbFlags & DBFLAG_VacuumInto) ){ 2385b7654111Sdrh addr1 = sqlite3VdbeAddOp2(v, OP_NewRowid, iDest, regRowid); 238695bad4c7Sdrh }else{ 2387b7654111Sdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rowid, iSrc, regRowid); 23887d10d5a6Sdrh assert( (pDest->tabFlags & TF_Autoincrement)==0 ); 238995bad4c7Sdrh } 2390e7b554d6Sdrh sqlite3VdbeAddOp3(v, OP_RowData, iSrc, regData, 1); 23918257aa8dSdrh if( db->mDbFlags & DBFLAG_Vacuum ){ 239286b40dfdSdrh sqlite3VdbeAddOp1(v, OP_SeekEnd, iDest); 2393c9b9deaeSdrh insFlags = OPFLAG_NCHANGE|OPFLAG_LASTROWID| 2394c9b9deaeSdrh OPFLAG_APPEND|OPFLAG_USESEEKRESULT; 2395c9b9deaeSdrh }else{ 2396c9b9deaeSdrh insFlags = OPFLAG_NCHANGE|OPFLAG_LASTROWID|OPFLAG_APPEND; 2397c9b9deaeSdrh } 23989b34abeeSdrh sqlite3VdbeAddOp4(v, OP_Insert, iDest, regData, regRowid, 239920f272c9Sdrh (char*)pDest, P4_TABLE); 2400c9b9deaeSdrh sqlite3VdbeChangeP5(v, insFlags); 2401688852abSdrh sqlite3VdbeAddOp2(v, OP_Next, iSrc, addr1); VdbeCoverage(v); 240255548273Sdrh sqlite3VdbeAddOp2(v, OP_Close, iSrc, 0); 240355548273Sdrh sqlite3VdbeAddOp2(v, OP_Close, iDest, 0); 2404da475b8dSdrh }else{ 2405da475b8dSdrh sqlite3TableLock(pParse, iDbDest, pDest->tnum, 1, pDest->zName); 2406da475b8dSdrh sqlite3TableLock(pParse, iDbSrc, pSrc->tnum, 0, pSrc->zName); 240755548273Sdrh } 24089d9cf229Sdrh for(pDestIdx=pDest->pIndex; pDestIdx; pDestIdx=pDestIdx->pNext){ 240941b9ca25Sdrh u8 idxInsFlags = 0; 24101b7ecbb4Sdrh for(pSrcIdx=pSrc->pIndex; ALWAYS(pSrcIdx); pSrcIdx=pSrcIdx->pNext){ 24119d9cf229Sdrh if( xferCompatibleIndex(pDestIdx, pSrcIdx) ) break; 24129d9cf229Sdrh } 24139d9cf229Sdrh assert( pSrcIdx ); 24142ec2fb22Sdrh sqlite3VdbeAddOp3(v, OP_OpenRead, iSrc, pSrcIdx->tnum, iDbSrc); 24152ec2fb22Sdrh sqlite3VdbeSetP4KeyInfo(pParse, pSrcIdx); 2416d4e70ebdSdrh VdbeComment((v, "%s", pSrcIdx->zName)); 24172ec2fb22Sdrh sqlite3VdbeAddOp3(v, OP_OpenWrite, iDest, pDestIdx->tnum, iDbDest); 24182ec2fb22Sdrh sqlite3VdbeSetP4KeyInfo(pParse, pDestIdx); 241959885728Sdan sqlite3VdbeChangeP5(v, OPFLAG_BULKCSR); 2420207872a4Sdanielk1977 VdbeComment((v, "%s", pDestIdx->zName)); 2421688852abSdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rewind, iSrc, 0); VdbeCoverage(v); 2422e7b554d6Sdrh sqlite3VdbeAddOp3(v, OP_RowData, iSrc, regData, 1); 24238257aa8dSdrh if( db->mDbFlags & DBFLAG_Vacuum ){ 2424e34162b1Sdan /* This INSERT command is part of a VACUUM operation, which guarantees 2425e34162b1Sdan ** that the destination table is empty. If all indexed columns use 2426e34162b1Sdan ** collation sequence BINARY, then it can also be assumed that the 2427e34162b1Sdan ** index will be populated by inserting keys in strictly sorted 2428e34162b1Sdan ** order. In this case, instead of seeking within the b-tree as part 242986b40dfdSdrh ** of every OP_IdxInsert opcode, an OP_SeekEnd is added before the 2430e34162b1Sdan ** OP_IdxInsert to seek to the point within the b-tree where each key 2431e34162b1Sdan ** should be inserted. This is faster. 2432e34162b1Sdan ** 2433e34162b1Sdan ** If any of the indexed columns use a collation sequence other than 2434e34162b1Sdan ** BINARY, this optimization is disabled. This is because the user 2435e34162b1Sdan ** might change the definition of a collation sequence and then run 2436e34162b1Sdan ** a VACUUM command. In that case keys may not be written in strictly 2437e34162b1Sdan ** sorted order. */ 2438e34162b1Sdan for(i=0; i<pSrcIdx->nColumn; i++){ 2439f19aa5faSdrh const char *zColl = pSrcIdx->azColl[i]; 2440f19aa5faSdrh if( sqlite3_stricmp(sqlite3StrBINARY, zColl) ) break; 2441e34162b1Sdan } 2442e34162b1Sdan if( i==pSrcIdx->nColumn ){ 244341b9ca25Sdrh idxInsFlags = OPFLAG_USESEEKRESULT; 244486b40dfdSdrh sqlite3VdbeAddOp1(v, OP_SeekEnd, iDest); 2445e34162b1Sdan } 2446e34162b1Sdan } 24479df385ecSdrh if( !HasRowid(pSrc) && pDestIdx->idxType==SQLITE_IDXTYPE_PRIMARYKEY ){ 244841b9ca25Sdrh idxInsFlags |= OPFLAG_NCHANGE; 244941b9ca25Sdrh } 24509b4eaebcSdrh sqlite3VdbeAddOp2(v, OP_IdxInsert, iDest, regData); 24519b4eaebcSdrh sqlite3VdbeChangeP5(v, idxInsFlags|OPFLAG_APPEND); 2452688852abSdrh sqlite3VdbeAddOp2(v, OP_Next, iSrc, addr1+1); VdbeCoverage(v); 24539d9cf229Sdrh sqlite3VdbeJumpHere(v, addr1); 245455548273Sdrh sqlite3VdbeAddOp2(v, OP_Close, iSrc, 0); 245555548273Sdrh sqlite3VdbeAddOp2(v, OP_Close, iDest, 0); 24569d9cf229Sdrh } 2457aceb31b1Sdrh if( emptySrcTest ) sqlite3VdbeJumpHere(v, emptySrcTest); 2458b7654111Sdrh sqlite3ReleaseTempReg(pParse, regRowid); 2459b7654111Sdrh sqlite3ReleaseTempReg(pParse, regData); 24609d9cf229Sdrh if( emptyDestTest ){ 24611dd518cfSdrh sqlite3AutoincrementEnd(pParse); 246266a5167bSdrh sqlite3VdbeAddOp2(v, OP_Halt, SQLITE_OK, 0); 24639d9cf229Sdrh sqlite3VdbeJumpHere(v, emptyDestTest); 246466a5167bSdrh sqlite3VdbeAddOp2(v, OP_Close, iDest, 0); 24659d9cf229Sdrh return 0; 24669d9cf229Sdrh }else{ 24679d9cf229Sdrh return 1; 24689d9cf229Sdrh } 24699d9cf229Sdrh } 24709d9cf229Sdrh #endif /* SQLITE_OMIT_XFER_OPT */ 2471