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 /* 18bbb5e4e0Sdrh ** Generate code that will open a table for reading. 19bbb5e4e0Sdrh */ 20bbb5e4e0Sdrh void sqlite3OpenTable( 21bbb5e4e0Sdrh Parse *p, /* Generate code into this VDBE */ 22bbb5e4e0Sdrh int iCur, /* The cursor number of the table */ 23bbb5e4e0Sdrh int iDb, /* The database index in sqlite3.aDb[] */ 24bbb5e4e0Sdrh Table *pTab, /* The table to be opened */ 25bbb5e4e0Sdrh int opcode /* OP_OpenRead or OP_OpenWrite */ 26bbb5e4e0Sdrh ){ 27bbb5e4e0Sdrh Vdbe *v; 28bbb5e4e0Sdrh if( IsVirtual(pTab) ) return; 29bbb5e4e0Sdrh v = sqlite3GetVdbe(p); 30bbb5e4e0Sdrh assert( opcode==OP_OpenWrite || opcode==OP_OpenRead ); 31bbb5e4e0Sdrh sqlite3TableLock(p, iDb, pTab->tnum, (opcode==OP_OpenWrite)?1:0, pTab->zName); 32bbb5e4e0Sdrh sqlite3VdbeAddOp3(v, opcode, iCur, pTab->tnum, iDb); 33bbb5e4e0Sdrh sqlite3VdbeChangeP4(v, -1, SQLITE_INT_TO_PTR(pTab->nCol), P4_INT32); 34bbb5e4e0Sdrh VdbeComment((v, "%s", pTab->zName)); 35bbb5e4e0Sdrh } 36bbb5e4e0Sdrh 37bbb5e4e0Sdrh /* 3869f8bb9cSdan ** Return a pointer to the column affinity string associated with index 3969f8bb9cSdan ** pIdx. A column affinity string has one character for each column in 4069f8bb9cSdan ** the table, according to the affinity of the column: 413d1bfeaaSdanielk1977 ** 423d1bfeaaSdanielk1977 ** Character Column affinity 433d1bfeaaSdanielk1977 ** ------------------------------ 443eda040bSdrh ** 'a' TEXT 453eda040bSdrh ** 'b' NONE 463eda040bSdrh ** 'c' NUMERIC 473eda040bSdrh ** 'd' INTEGER 483eda040bSdrh ** 'e' REAL 492d401ab8Sdrh ** 502d401ab8Sdrh ** An extra 'b' is appended to the end of the string to cover the 512d401ab8Sdrh ** rowid that appears as the last column in every index. 5269f8bb9cSdan ** 5369f8bb9cSdan ** Memory for the buffer containing the column index affinity string 5469f8bb9cSdan ** is managed along with the rest of the Index structure. It will be 5569f8bb9cSdan ** released when sqlite3DeleteIndex() is called. 563d1bfeaaSdanielk1977 */ 5769f8bb9cSdan const char *sqlite3IndexAffinityStr(Vdbe *v, Index *pIdx){ 58a37cdde0Sdanielk1977 if( !pIdx->zColAff ){ 59e014a838Sdanielk1977 /* The first time a column affinity string for a particular index is 60a37cdde0Sdanielk1977 ** required, it is allocated and populated here. It is then stored as 61e014a838Sdanielk1977 ** a member of the Index structure for subsequent use. 62a37cdde0Sdanielk1977 ** 63a37cdde0Sdanielk1977 ** The column affinity string will eventually be deleted by 64e014a838Sdanielk1977 ** sqliteDeleteIndex() when the Index structure itself is cleaned 65a37cdde0Sdanielk1977 ** up. 66a37cdde0Sdanielk1977 */ 67a37cdde0Sdanielk1977 int n; 68a37cdde0Sdanielk1977 Table *pTab = pIdx->pTable; 69abb6fcabSdrh sqlite3 *db = sqlite3VdbeDb(v); 70b975598eSdrh pIdx->zColAff = (char *)sqlite3DbMallocRaw(0, pIdx->nColumn+2); 71a37cdde0Sdanielk1977 if( !pIdx->zColAff ){ 72633e6d57Sdrh db->mallocFailed = 1; 7369f8bb9cSdan return 0; 74a37cdde0Sdanielk1977 } 75a37cdde0Sdanielk1977 for(n=0; n<pIdx->nColumn; n++){ 76a37cdde0Sdanielk1977 pIdx->zColAff[n] = pTab->aCol[pIdx->aiColumn[n]].affinity; 77a37cdde0Sdanielk1977 } 782d401ab8Sdrh pIdx->zColAff[n++] = SQLITE_AFF_NONE; 792d401ab8Sdrh pIdx->zColAff[n] = 0; 80a37cdde0Sdanielk1977 } 813d1bfeaaSdanielk1977 8269f8bb9cSdan return pIdx->zColAff; 83a37cdde0Sdanielk1977 } 84a37cdde0Sdanielk1977 85a37cdde0Sdanielk1977 /* 8666a5167bSdrh ** Set P4 of the most recently inserted opcode to a column affinity 87a37cdde0Sdanielk1977 ** string for table pTab. A column affinity string has one character 88a37cdde0Sdanielk1977 ** for each column indexed by the index, according to the affinity of the 89a37cdde0Sdanielk1977 ** column: 90a37cdde0Sdanielk1977 ** 91a37cdde0Sdanielk1977 ** Character Column affinity 92a37cdde0Sdanielk1977 ** ------------------------------ 933eda040bSdrh ** 'a' TEXT 943eda040bSdrh ** 'b' NONE 953eda040bSdrh ** 'c' NUMERIC 963eda040bSdrh ** 'd' INTEGER 973eda040bSdrh ** 'e' REAL 98a37cdde0Sdanielk1977 */ 99a37cdde0Sdanielk1977 void sqlite3TableAffinityStr(Vdbe *v, Table *pTab){ 1003d1bfeaaSdanielk1977 /* The first time a column affinity string for a particular table 1013d1bfeaaSdanielk1977 ** is required, it is allocated and populated here. It is then 1023d1bfeaaSdanielk1977 ** stored as a member of the Table structure for subsequent use. 1033d1bfeaaSdanielk1977 ** 1043d1bfeaaSdanielk1977 ** The column affinity string will eventually be deleted by 1053d1bfeaaSdanielk1977 ** sqlite3DeleteTable() when the Table structure itself is cleaned up. 1063d1bfeaaSdanielk1977 */ 1073d1bfeaaSdanielk1977 if( !pTab->zColAff ){ 1083d1bfeaaSdanielk1977 char *zColAff; 1093d1bfeaaSdanielk1977 int i; 110abb6fcabSdrh sqlite3 *db = sqlite3VdbeDb(v); 1113d1bfeaaSdanielk1977 112b975598eSdrh zColAff = (char *)sqlite3DbMallocRaw(0, pTab->nCol+1); 1133d1bfeaaSdanielk1977 if( !zColAff ){ 114633e6d57Sdrh db->mallocFailed = 1; 115a37cdde0Sdanielk1977 return; 1163d1bfeaaSdanielk1977 } 1173d1bfeaaSdanielk1977 1183d1bfeaaSdanielk1977 for(i=0; i<pTab->nCol; i++){ 119a37cdde0Sdanielk1977 zColAff[i] = pTab->aCol[i].affinity; 1203d1bfeaaSdanielk1977 } 1213d1bfeaaSdanielk1977 zColAff[pTab->nCol] = '\0'; 1223d1bfeaaSdanielk1977 1233d1bfeaaSdanielk1977 pTab->zColAff = zColAff; 1243d1bfeaaSdanielk1977 } 1253d1bfeaaSdanielk1977 1268d129422Sdrh sqlite3VdbeChangeP4(v, -1, pTab->zColAff, P4_TRANSIENT); 1273d1bfeaaSdanielk1977 } 1283d1bfeaaSdanielk1977 1294d88778bSdanielk1977 /* 13048d1178aSdrh ** Return non-zero if the table pTab in database iDb or any of its indices 13148d1178aSdrh ** have been opened at any point in the VDBE program beginning at location 13248d1178aSdrh ** iStartAddr throught the end of the program. This is used to see if 13348d1178aSdrh ** a statement of the form "INSERT INTO <iDb, pTab> SELECT ..." can 13448d1178aSdrh ** run without using temporary table for the results of the SELECT. 1354d88778bSdanielk1977 */ 136595a523aSdanielk1977 static int readsTable(Parse *p, int iStartAddr, int iDb, Table *pTab){ 137595a523aSdanielk1977 Vdbe *v = sqlite3GetVdbe(p); 1384d88778bSdanielk1977 int i; 13948d1178aSdrh int iEnd = sqlite3VdbeCurrentAddr(v); 140595a523aSdanielk1977 #ifndef SQLITE_OMIT_VIRTUALTABLE 141595a523aSdanielk1977 VTable *pVTab = IsVirtual(pTab) ? sqlite3GetVTable(p->db, pTab) : 0; 142595a523aSdanielk1977 #endif 143595a523aSdanielk1977 14448d1178aSdrh for(i=iStartAddr; i<iEnd; i++){ 14548d1178aSdrh VdbeOp *pOp = sqlite3VdbeGetOp(v, i); 146ef0bea92Sdrh assert( pOp!=0 ); 147207872a4Sdanielk1977 if( pOp->opcode==OP_OpenRead && pOp->p3==iDb ){ 14848d1178aSdrh Index *pIndex; 149207872a4Sdanielk1977 int tnum = pOp->p2; 15048d1178aSdrh if( tnum==pTab->tnum ){ 15148d1178aSdrh return 1; 15248d1178aSdrh } 15348d1178aSdrh for(pIndex=pTab->pIndex; pIndex; pIndex=pIndex->pNext){ 15448d1178aSdrh if( tnum==pIndex->tnum ){ 15548d1178aSdrh return 1; 15648d1178aSdrh } 15748d1178aSdrh } 15848d1178aSdrh } 159543165efSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 160595a523aSdanielk1977 if( pOp->opcode==OP_VOpen && pOp->p4.pVtab==pVTab ){ 1612dca4ac1Sdanielk1977 assert( pOp->p4.pVtab!=0 ); 16266a5167bSdrh assert( pOp->p4type==P4_VTAB ); 16348d1178aSdrh return 1; 1644d88778bSdanielk1977 } 165543165efSdrh #endif 1664d88778bSdanielk1977 } 1674d88778bSdanielk1977 return 0; 1684d88778bSdanielk1977 } 1693d1bfeaaSdanielk1977 1709d9cf229Sdrh #ifndef SQLITE_OMIT_AUTOINCREMENT 1719d9cf229Sdrh /* 1720b9f50d8Sdrh ** Locate or create an AutoincInfo structure associated with table pTab 1730b9f50d8Sdrh ** which is in database iDb. Return the register number for the register 1740b9f50d8Sdrh ** that holds the maximum rowid. 1759d9cf229Sdrh ** 1760b9f50d8Sdrh ** There is at most one AutoincInfo structure per table even if the 1770b9f50d8Sdrh ** same table is autoincremented multiple times due to inserts within 1780b9f50d8Sdrh ** triggers. A new AutoincInfo structure is created if this is the 1790b9f50d8Sdrh ** first use of table pTab. On 2nd and subsequent uses, the original 1800b9f50d8Sdrh ** AutoincInfo structure is used. 1819d9cf229Sdrh ** 1820b9f50d8Sdrh ** Three memory locations are allocated: 1830b9f50d8Sdrh ** 1840b9f50d8Sdrh ** (1) Register to hold the name of the pTab table. 1850b9f50d8Sdrh ** (2) Register to hold the maximum ROWID of pTab. 1860b9f50d8Sdrh ** (3) Register to hold the rowid in sqlite_sequence of pTab 1870b9f50d8Sdrh ** 1880b9f50d8Sdrh ** The 2nd register is the one that is returned. That is all the 1890b9f50d8Sdrh ** insert routine needs to know about. 1909d9cf229Sdrh */ 1919d9cf229Sdrh static int autoIncBegin( 1929d9cf229Sdrh Parse *pParse, /* Parsing context */ 1939d9cf229Sdrh int iDb, /* Index of the database holding pTab */ 1949d9cf229Sdrh Table *pTab /* The table we are writing to */ 1959d9cf229Sdrh ){ 1966a288a33Sdrh int memId = 0; /* Register holding maximum rowid */ 1977d10d5a6Sdrh if( pTab->tabFlags & TF_Autoincrement ){ 19865a7cd16Sdan Parse *pToplevel = sqlite3ParseToplevel(pParse); 1990b9f50d8Sdrh AutoincInfo *pInfo; 2000b9f50d8Sdrh 20165a7cd16Sdan pInfo = pToplevel->pAinc; 2020b9f50d8Sdrh while( pInfo && pInfo->pTab!=pTab ){ pInfo = pInfo->pNext; } 2030b9f50d8Sdrh if( pInfo==0 ){ 2040b9f50d8Sdrh pInfo = sqlite3DbMallocRaw(pParse->db, sizeof(*pInfo)); 2050b9f50d8Sdrh if( pInfo==0 ) return 0; 20665a7cd16Sdan pInfo->pNext = pToplevel->pAinc; 20765a7cd16Sdan pToplevel->pAinc = pInfo; 2080b9f50d8Sdrh pInfo->pTab = pTab; 2090b9f50d8Sdrh pInfo->iDb = iDb; 21065a7cd16Sdan pToplevel->nMem++; /* Register to hold name of table */ 21165a7cd16Sdan pInfo->regCtr = ++pToplevel->nMem; /* Max rowid register */ 21265a7cd16Sdan pToplevel->nMem++; /* Rowid in sqlite_sequence */ 2130b9f50d8Sdrh } 2140b9f50d8Sdrh memId = pInfo->regCtr; 2159d9cf229Sdrh } 2169d9cf229Sdrh return memId; 2179d9cf229Sdrh } 2189d9cf229Sdrh 2199d9cf229Sdrh /* 2200b9f50d8Sdrh ** This routine generates code that will initialize all of the 2210b9f50d8Sdrh ** register used by the autoincrement tracker. 2220b9f50d8Sdrh */ 2230b9f50d8Sdrh void sqlite3AutoincrementBegin(Parse *pParse){ 2240b9f50d8Sdrh AutoincInfo *p; /* Information about an AUTOINCREMENT */ 2250b9f50d8Sdrh sqlite3 *db = pParse->db; /* The database connection */ 2260b9f50d8Sdrh Db *pDb; /* Database only autoinc table */ 2270b9f50d8Sdrh int memId; /* Register holding max rowid */ 2280b9f50d8Sdrh int addr; /* A VDBE address */ 2290b9f50d8Sdrh Vdbe *v = pParse->pVdbe; /* VDBE under construction */ 2300b9f50d8Sdrh 231345ba7dbSdrh /* This routine is never called during trigger-generation. It is 232345ba7dbSdrh ** only called from the top-level */ 233345ba7dbSdrh assert( pParse->pTriggerTab==0 ); 234345ba7dbSdrh assert( pParse==sqlite3ParseToplevel(pParse) ); 23576d462eeSdan 2360b9f50d8Sdrh assert( v ); /* We failed long ago if this is not so */ 2370b9f50d8Sdrh for(p = pParse->pAinc; p; p = p->pNext){ 2380b9f50d8Sdrh pDb = &db->aDb[p->iDb]; 2390b9f50d8Sdrh memId = p->regCtr; 2402120608eSdrh assert( sqlite3SchemaMutexHeld(db, 0, pDb->pSchema) ); 2410b9f50d8Sdrh sqlite3OpenTable(pParse, 0, p->iDb, pDb->pSchema->pSeqTab, OP_OpenRead); 2420b9f50d8Sdrh addr = sqlite3VdbeCurrentAddr(v); 2430b9f50d8Sdrh sqlite3VdbeAddOp4(v, OP_String8, 0, memId-1, 0, p->pTab->zName, 0); 2440b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_Rewind, 0, addr+9); 2450b9f50d8Sdrh sqlite3VdbeAddOp3(v, OP_Column, 0, 0, memId); 2460b9f50d8Sdrh sqlite3VdbeAddOp3(v, OP_Ne, memId-1, addr+7, memId); 2470b9f50d8Sdrh sqlite3VdbeChangeP5(v, SQLITE_JUMPIFNULL); 2480b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_Rowid, 0, memId+1); 2490b9f50d8Sdrh sqlite3VdbeAddOp3(v, OP_Column, 0, 1, memId); 2500b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_Goto, 0, addr+9); 2510b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_Next, 0, addr+2); 2520b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, memId); 2530b9f50d8Sdrh sqlite3VdbeAddOp0(v, OP_Close); 2540b9f50d8Sdrh } 2550b9f50d8Sdrh } 2560b9f50d8Sdrh 2570b9f50d8Sdrh /* 2589d9cf229Sdrh ** Update the maximum rowid for an autoincrement calculation. 2599d9cf229Sdrh ** 2609d9cf229Sdrh ** This routine should be called when the top of the stack holds a 2619d9cf229Sdrh ** new rowid that is about to be inserted. If that new rowid is 2629d9cf229Sdrh ** larger than the maximum rowid in the memId memory cell, then the 2639d9cf229Sdrh ** memory cell is updated. The stack is unchanged. 2649d9cf229Sdrh */ 2656a288a33Sdrh static void autoIncStep(Parse *pParse, int memId, int regRowid){ 2669d9cf229Sdrh if( memId>0 ){ 2676a288a33Sdrh sqlite3VdbeAddOp2(pParse->pVdbe, OP_MemMax, memId, regRowid); 2689d9cf229Sdrh } 2699d9cf229Sdrh } 2709d9cf229Sdrh 2719d9cf229Sdrh /* 2720b9f50d8Sdrh ** This routine generates the code needed to write autoincrement 2730b9f50d8Sdrh ** maximum rowid values back into the sqlite_sequence register. 2740b9f50d8Sdrh ** Every statement that might do an INSERT into an autoincrement 2750b9f50d8Sdrh ** table (either directly or through triggers) needs to call this 2760b9f50d8Sdrh ** routine just before the "exit" code. 2779d9cf229Sdrh */ 2780b9f50d8Sdrh void sqlite3AutoincrementEnd(Parse *pParse){ 2790b9f50d8Sdrh AutoincInfo *p; 2809d9cf229Sdrh Vdbe *v = pParse->pVdbe; 2810b9f50d8Sdrh sqlite3 *db = pParse->db; 2826a288a33Sdrh 2839d9cf229Sdrh assert( v ); 2840b9f50d8Sdrh for(p = pParse->pAinc; p; p = p->pNext){ 2850b9f50d8Sdrh Db *pDb = &db->aDb[p->iDb]; 2860b9f50d8Sdrh int j1, j2, j3, j4, j5; 2870b9f50d8Sdrh int iRec; 2880b9f50d8Sdrh int memId = p->regCtr; 2890b9f50d8Sdrh 2900b9f50d8Sdrh iRec = sqlite3GetTempReg(pParse); 2912120608eSdrh assert( sqlite3SchemaMutexHeld(db, 0, pDb->pSchema) ); 2920b9f50d8Sdrh sqlite3OpenTable(pParse, 0, p->iDb, pDb->pSchema->pSeqTab, OP_OpenWrite); 2936a288a33Sdrh j1 = sqlite3VdbeAddOp1(v, OP_NotNull, memId+1); 2940b9f50d8Sdrh j2 = sqlite3VdbeAddOp0(v, OP_Rewind); 2950b9f50d8Sdrh j3 = sqlite3VdbeAddOp3(v, OP_Column, 0, 0, iRec); 2960b9f50d8Sdrh j4 = sqlite3VdbeAddOp3(v, OP_Eq, memId-1, 0, iRec); 2970b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_Next, 0, j3); 2980b9f50d8Sdrh sqlite3VdbeJumpHere(v, j2); 2990b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_NewRowid, 0, memId+1); 3000b9f50d8Sdrh j5 = sqlite3VdbeAddOp0(v, OP_Goto); 3010b9f50d8Sdrh sqlite3VdbeJumpHere(v, j4); 3020b9f50d8Sdrh sqlite3VdbeAddOp2(v, OP_Rowid, 0, memId+1); 3036a288a33Sdrh sqlite3VdbeJumpHere(v, j1); 3040b9f50d8Sdrh sqlite3VdbeJumpHere(v, j5); 305a7a8e14bSdanielk1977 sqlite3VdbeAddOp3(v, OP_MakeRecord, memId-1, 2, iRec); 3060b9f50d8Sdrh sqlite3VdbeAddOp3(v, OP_Insert, 0, iRec, memId+1); 30735573356Sdrh sqlite3VdbeChangeP5(v, OPFLAG_APPEND); 3080b9f50d8Sdrh sqlite3VdbeAddOp0(v, OP_Close); 3090b9f50d8Sdrh sqlite3ReleaseTempReg(pParse, iRec); 3109d9cf229Sdrh } 3119d9cf229Sdrh } 3129d9cf229Sdrh #else 3139d9cf229Sdrh /* 3149d9cf229Sdrh ** If SQLITE_OMIT_AUTOINCREMENT is defined, then the three routines 3159d9cf229Sdrh ** above are all no-ops 3169d9cf229Sdrh */ 3179d9cf229Sdrh # define autoIncBegin(A,B,C) (0) 318287fb61cSdanielk1977 # define autoIncStep(A,B,C) 3199d9cf229Sdrh #endif /* SQLITE_OMIT_AUTOINCREMENT */ 3209d9cf229Sdrh 3219d9cf229Sdrh 3229d9cf229Sdrh /* Forward declaration */ 3239d9cf229Sdrh static int xferOptimization( 3249d9cf229Sdrh Parse *pParse, /* Parser context */ 3259d9cf229Sdrh Table *pDest, /* The table we are inserting into */ 3269d9cf229Sdrh Select *pSelect, /* A SELECT statement to use as the data source */ 3279d9cf229Sdrh int onError, /* How to handle constraint errors */ 3289d9cf229Sdrh int iDbDest /* The database of pDest */ 3299d9cf229Sdrh ); 3309d9cf229Sdrh 3313d1bfeaaSdanielk1977 /* 3321ccde15dSdrh ** This routine is call to handle SQL of the following forms: 333cce7d176Sdrh ** 334cce7d176Sdrh ** insert into TABLE (IDLIST) values(EXPRLIST) 3351ccde15dSdrh ** insert into TABLE (IDLIST) select 336cce7d176Sdrh ** 3371ccde15dSdrh ** The IDLIST following the table name is always optional. If omitted, 3381ccde15dSdrh ** then a list of all columns for the table is substituted. The IDLIST 339967e8b73Sdrh ** appears in the pColumn parameter. pColumn is NULL if IDLIST is omitted. 3401ccde15dSdrh ** 3411ccde15dSdrh ** The pList parameter holds EXPRLIST in the first form of the INSERT 3421ccde15dSdrh ** statement above, and pSelect is NULL. For the second form, pList is 3431ccde15dSdrh ** NULL and pSelect is a pointer to the select statement used to generate 3441ccde15dSdrh ** data for the insert. 345142e30dfSdrh ** 3469d9cf229Sdrh ** The code generated follows one of four templates. For a simple 347142e30dfSdrh ** select with data coming from a VALUES clause, the code executes 348e00ee6ebSdrh ** once straight down through. Pseudo-code follows (we call this 349e00ee6ebSdrh ** the "1st template"): 350142e30dfSdrh ** 351142e30dfSdrh ** open write cursor to <table> and its indices 352142e30dfSdrh ** puts VALUES clause expressions onto the stack 353142e30dfSdrh ** write the resulting record into <table> 354142e30dfSdrh ** cleanup 355142e30dfSdrh ** 3569d9cf229Sdrh ** The three remaining templates assume the statement is of the form 357142e30dfSdrh ** 358142e30dfSdrh ** INSERT INTO <table> SELECT ... 359142e30dfSdrh ** 3609d9cf229Sdrh ** If the SELECT clause is of the restricted form "SELECT * FROM <table2>" - 3619d9cf229Sdrh ** in other words if the SELECT pulls all columns from a single table 3629d9cf229Sdrh ** and there is no WHERE or LIMIT or GROUP BY or ORDER BY clauses, and 3639d9cf229Sdrh ** if <table2> and <table1> are distinct tables but have identical 3649d9cf229Sdrh ** schemas, including all the same indices, then a special optimization 3659d9cf229Sdrh ** is invoked that copies raw records from <table2> over to <table1>. 3669d9cf229Sdrh ** See the xferOptimization() function for the implementation of this 367e00ee6ebSdrh ** template. This is the 2nd template. 3689d9cf229Sdrh ** 3699d9cf229Sdrh ** open a write cursor to <table> 3709d9cf229Sdrh ** open read cursor on <table2> 3719d9cf229Sdrh ** transfer all records in <table2> over to <table> 3729d9cf229Sdrh ** close cursors 3739d9cf229Sdrh ** foreach index on <table> 3749d9cf229Sdrh ** open a write cursor on the <table> index 3759d9cf229Sdrh ** open a read cursor on the corresponding <table2> index 3769d9cf229Sdrh ** transfer all records from the read to the write cursors 3779d9cf229Sdrh ** close cursors 3789d9cf229Sdrh ** end foreach 3799d9cf229Sdrh ** 380e00ee6ebSdrh ** The 3rd template is for when the second template does not apply 3819d9cf229Sdrh ** and the SELECT clause does not read from <table> at any time. 3829d9cf229Sdrh ** The generated code follows this template: 383142e30dfSdrh ** 384e00ee6ebSdrh ** EOF <- 0 385e00ee6ebSdrh ** X <- A 386142e30dfSdrh ** goto B 387142e30dfSdrh ** A: setup for the SELECT 3889d9cf229Sdrh ** loop over the rows in the SELECT 389e00ee6ebSdrh ** load values into registers R..R+n 390e00ee6ebSdrh ** yield X 391142e30dfSdrh ** end loop 392142e30dfSdrh ** cleanup after the SELECT 393e00ee6ebSdrh ** EOF <- 1 394e00ee6ebSdrh ** yield X 395142e30dfSdrh ** goto A 396e00ee6ebSdrh ** B: open write cursor to <table> and its indices 397e00ee6ebSdrh ** C: yield X 398e00ee6ebSdrh ** if EOF goto D 399e00ee6ebSdrh ** insert the select result into <table> from R..R+n 400e00ee6ebSdrh ** goto C 401142e30dfSdrh ** D: cleanup 402142e30dfSdrh ** 403e00ee6ebSdrh ** The 4th template is used if the insert statement takes its 404142e30dfSdrh ** values from a SELECT but the data is being inserted into a table 405142e30dfSdrh ** that is also read as part of the SELECT. In the third form, 406142e30dfSdrh ** we have to use a intermediate table to store the results of 407142e30dfSdrh ** the select. The template is like this: 408142e30dfSdrh ** 409e00ee6ebSdrh ** EOF <- 0 410e00ee6ebSdrh ** X <- A 411142e30dfSdrh ** goto B 412142e30dfSdrh ** A: setup for the SELECT 413142e30dfSdrh ** loop over the tables in the SELECT 414e00ee6ebSdrh ** load value into register R..R+n 415e00ee6ebSdrh ** yield X 416142e30dfSdrh ** end loop 417142e30dfSdrh ** cleanup after the SELECT 418e00ee6ebSdrh ** EOF <- 1 419e00ee6ebSdrh ** yield X 420e00ee6ebSdrh ** halt-error 421e00ee6ebSdrh ** B: open temp table 422e00ee6ebSdrh ** L: yield X 423e00ee6ebSdrh ** if EOF goto M 424e00ee6ebSdrh ** insert row from R..R+n into temp table 425e00ee6ebSdrh ** goto L 426e00ee6ebSdrh ** M: open write cursor to <table> and its indices 427e00ee6ebSdrh ** rewind temp table 428e00ee6ebSdrh ** C: loop over rows of intermediate table 429142e30dfSdrh ** transfer values form intermediate table into <table> 430e00ee6ebSdrh ** end loop 431e00ee6ebSdrh ** D: cleanup 432cce7d176Sdrh */ 4334adee20fSdanielk1977 void sqlite3Insert( 434cce7d176Sdrh Parse *pParse, /* Parser context */ 435113088ecSdrh SrcList *pTabList, /* Name of table into which we are inserting */ 436cce7d176Sdrh ExprList *pList, /* List of values to be inserted */ 4375974a30fSdrh Select *pSelect, /* A SELECT statement to use as the data source */ 4389cfcf5d4Sdrh IdList *pColumn, /* Column names corresponding to IDLIST. */ 4399cfcf5d4Sdrh int onError /* How to handle constraint errors */ 440cce7d176Sdrh ){ 4416a288a33Sdrh sqlite3 *db; /* The main database structure */ 4426a288a33Sdrh Table *pTab; /* The table to insert into. aka TABLE */ 443113088ecSdrh char *zTab; /* Name of the table into which we are inserting */ 444e22a334bSdrh const char *zDb; /* Name of the database holding this table */ 4455974a30fSdrh int i, j, idx; /* Loop counters */ 4465974a30fSdrh Vdbe *v; /* Generate code into this virtual machine */ 4475974a30fSdrh Index *pIdx; /* For looping over indices of the table */ 448967e8b73Sdrh int nColumn; /* Number of columns in the data */ 4496a288a33Sdrh int nHidden = 0; /* Number of hidden columns if TABLE is virtual */ 45004adf416Sdrh int baseCur = 0; /* VDBE Cursor number for pTab */ 4514a32431cSdrh int keyColumn = -1; /* Column that is the INTEGER PRIMARY KEY */ 4520ca3e24bSdrh int endOfLoop; /* Label for the end of the insertion loop */ 4534d88778bSdanielk1977 int useTempTable = 0; /* Store SELECT results in intermediate table */ 454cfe9a69fSdanielk1977 int srcTab = 0; /* Data comes from this temporary cursor if >=0 */ 455e00ee6ebSdrh int addrInsTop = 0; /* Jump to label "D" */ 456e00ee6ebSdrh int addrCont = 0; /* Top of insert loop. Label "C" in templates 3 and 4 */ 457e00ee6ebSdrh int addrSelect = 0; /* Address of coroutine that implements the SELECT */ 4582eb95377Sdrh SelectDest dest; /* Destination for SELECT on rhs of INSERT */ 4596a288a33Sdrh int iDb; /* Index of database holding TABLE */ 4602958a4e6Sdrh Db *pDb; /* The database containing table being inserted into */ 461e4d90813Sdrh int appendFlag = 0; /* True if the insert is likely to be an append */ 462cce7d176Sdrh 4636a288a33Sdrh /* Register allocations */ 4641bd10f8aSdrh int regFromSelect = 0;/* Base register for data coming from SELECT */ 4656a288a33Sdrh int regAutoinc = 0; /* Register holding the AUTOINCREMENT counter */ 4666a288a33Sdrh int regRowCount = 0; /* Memory cell used for the row counter */ 4676a288a33Sdrh int regIns; /* Block of regs holding rowid+data being inserted */ 4686a288a33Sdrh int regRowid; /* registers holding insert rowid */ 4696a288a33Sdrh int regData; /* register holding first column to insert */ 4701bd10f8aSdrh int regEof = 0; /* Register recording end of SELECT data */ 471aa9b8963Sdrh int *aRegIdx = 0; /* One register allocated to each index */ 4726a288a33Sdrh 473798da52cSdrh #ifndef SQLITE_OMIT_TRIGGER 474798da52cSdrh int isView; /* True if attempting to insert into a view */ 4752f886d1dSdanielk1977 Trigger *pTrigger; /* List of triggers on pTab, if required */ 4762f886d1dSdanielk1977 int tmask; /* Mask of trigger times */ 477798da52cSdrh #endif 478c3f9bad2Sdanielk1977 47917435752Sdrh db = pParse->db; 4801bd10f8aSdrh memset(&dest, 0, sizeof(dest)); 48117435752Sdrh if( pParse->nErr || db->mallocFailed ){ 4826f7adc8aSdrh goto insert_cleanup; 4836f7adc8aSdrh } 484daffd0e5Sdrh 4851ccde15dSdrh /* Locate the table into which we will be inserting new information. 4861ccde15dSdrh */ 487113088ecSdrh assert( pTabList->nSrc==1 ); 488113088ecSdrh zTab = pTabList->a[0].zName; 489098d1684Sdrh if( NEVER(zTab==0) ) goto insert_cleanup; 4904adee20fSdanielk1977 pTab = sqlite3SrcListLookup(pParse, pTabList); 491c3f9bad2Sdanielk1977 if( pTab==0 ){ 492c3f9bad2Sdanielk1977 goto insert_cleanup; 493c3f9bad2Sdanielk1977 } 494da184236Sdanielk1977 iDb = sqlite3SchemaToIndex(db, pTab->pSchema); 495da184236Sdanielk1977 assert( iDb<db->nDb ); 496da184236Sdanielk1977 pDb = &db->aDb[iDb]; 4972958a4e6Sdrh zDb = pDb->zName; 4984adee20fSdanielk1977 if( sqlite3AuthCheck(pParse, SQLITE_INSERT, pTab->zName, 0, zDb) ){ 4991962bda7Sdrh goto insert_cleanup; 5001962bda7Sdrh } 501c3f9bad2Sdanielk1977 502b7f9164eSdrh /* Figure out if we have any triggers and if the table being 503b7f9164eSdrh ** inserted into is a view 504b7f9164eSdrh */ 505b7f9164eSdrh #ifndef SQLITE_OMIT_TRIGGER 5062f886d1dSdanielk1977 pTrigger = sqlite3TriggersExist(pParse, pTab, TK_INSERT, 0, &tmask); 507b7f9164eSdrh isView = pTab->pSelect!=0; 508b7f9164eSdrh #else 5092f886d1dSdanielk1977 # define pTrigger 0 5102f886d1dSdanielk1977 # define tmask 0 511b7f9164eSdrh # define isView 0 512b7f9164eSdrh #endif 513b7f9164eSdrh #ifdef SQLITE_OMIT_VIEW 514b7f9164eSdrh # undef isView 515b7f9164eSdrh # define isView 0 516b7f9164eSdrh #endif 5172f886d1dSdanielk1977 assert( (pTrigger && tmask) || (pTrigger==0 && tmask==0) ); 518b7f9164eSdrh 519f573c99bSdrh /* If pTab is really a view, make sure it has been initialized. 520b3d24bf8Sdanielk1977 ** ViewGetColumnNames() is a no-op if pTab is not a view (or virtual 521b3d24bf8Sdanielk1977 ** module table). 522f573c99bSdrh */ 523b3d24bf8Sdanielk1977 if( sqlite3ViewGetColumnNames(pParse, pTab) ){ 524f573c99bSdrh goto insert_cleanup; 525f573c99bSdrh } 526f573c99bSdrh 527595a523aSdanielk1977 /* Ensure that: 528595a523aSdanielk1977 * (a) the table is not read-only, 529595a523aSdanielk1977 * (b) that if it is a view then ON INSERT triggers exist 530595a523aSdanielk1977 */ 531595a523aSdanielk1977 if( sqlite3IsReadOnly(pParse, pTab, tmask) ){ 532595a523aSdanielk1977 goto insert_cleanup; 533595a523aSdanielk1977 } 534595a523aSdanielk1977 5351ccde15dSdrh /* Allocate a VDBE 5361ccde15dSdrh */ 5374adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 5385974a30fSdrh if( v==0 ) goto insert_cleanup; 5394794f735Sdrh if( pParse->nested==0 ) sqlite3VdbeCountChanges(v); 5402f886d1dSdanielk1977 sqlite3BeginWriteOperation(pParse, pSelect || pTrigger, iDb); 5411ccde15dSdrh 5429d9cf229Sdrh #ifndef SQLITE_OMIT_XFER_OPT 5439d9cf229Sdrh /* If the statement is of the form 5449d9cf229Sdrh ** 5459d9cf229Sdrh ** INSERT INTO <table1> SELECT * FROM <table2>; 5469d9cf229Sdrh ** 5479d9cf229Sdrh ** Then special optimizations can be applied that make the transfer 5489d9cf229Sdrh ** very fast and which reduce fragmentation of indices. 549e00ee6ebSdrh ** 550e00ee6ebSdrh ** This is the 2nd template. 5519d9cf229Sdrh */ 5529d9cf229Sdrh if( pColumn==0 && xferOptimization(pParse, pTab, pSelect, onError, iDb) ){ 5532f886d1dSdanielk1977 assert( !pTrigger ); 5549d9cf229Sdrh assert( pList==0 ); 5550b9f50d8Sdrh goto insert_end; 5569d9cf229Sdrh } 5579d9cf229Sdrh #endif /* SQLITE_OMIT_XFER_OPT */ 5589d9cf229Sdrh 5592958a4e6Sdrh /* If this is an AUTOINCREMENT table, look up the sequence number in the 5606a288a33Sdrh ** sqlite_sequence table and store it in memory cell regAutoinc. 5612958a4e6Sdrh */ 5626a288a33Sdrh regAutoinc = autoIncBegin(pParse, iDb, pTab); 5632958a4e6Sdrh 5641ccde15dSdrh /* Figure out how many columns of data are supplied. If the data 565e00ee6ebSdrh ** is coming from a SELECT statement, then generate a co-routine that 566e00ee6ebSdrh ** produces a single row of the SELECT on each invocation. The 567e00ee6ebSdrh ** co-routine is the common header to the 3rd and 4th templates. 5681ccde15dSdrh */ 5695974a30fSdrh if( pSelect ){ 570142e30dfSdrh /* Data is coming from a SELECT. Generate code to implement that SELECT 571e00ee6ebSdrh ** as a co-routine. The code is common to both the 3rd and 4th 572e00ee6ebSdrh ** templates: 573e00ee6ebSdrh ** 574e00ee6ebSdrh ** EOF <- 0 575e00ee6ebSdrh ** X <- A 576e00ee6ebSdrh ** goto B 577e00ee6ebSdrh ** A: setup for the SELECT 578e00ee6ebSdrh ** loop over the tables in the SELECT 579e00ee6ebSdrh ** load value into register R..R+n 580e00ee6ebSdrh ** yield X 581e00ee6ebSdrh ** end loop 582e00ee6ebSdrh ** cleanup after the SELECT 583e00ee6ebSdrh ** EOF <- 1 584e00ee6ebSdrh ** yield X 585e00ee6ebSdrh ** halt-error 586e00ee6ebSdrh ** 587e00ee6ebSdrh ** On each invocation of the co-routine, it puts a single row of the 588e00ee6ebSdrh ** SELECT result into registers dest.iMem...dest.iMem+dest.nMem-1. 589e00ee6ebSdrh ** (These output registers are allocated by sqlite3Select().) When 590e00ee6ebSdrh ** the SELECT completes, it sets the EOF flag stored in regEof. 591142e30dfSdrh */ 592e00ee6ebSdrh int rc, j1; 5931013c932Sdrh 594e00ee6ebSdrh regEof = ++pParse->nMem; 595e00ee6ebSdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, regEof); /* EOF <- 0 */ 596e00ee6ebSdrh VdbeComment((v, "SELECT eof flag")); 59792b01d53Sdrh sqlite3SelectDestInit(&dest, SRT_Coroutine, ++pParse->nMem); 598e00ee6ebSdrh addrSelect = sqlite3VdbeCurrentAddr(v)+2; 59992b01d53Sdrh sqlite3VdbeAddOp2(v, OP_Integer, addrSelect-1, dest.iParm); 600e00ee6ebSdrh j1 = sqlite3VdbeAddOp2(v, OP_Goto, 0, 0); 601e00ee6ebSdrh VdbeComment((v, "Jump over SELECT coroutine")); 602b3bce662Sdanielk1977 603b3bce662Sdanielk1977 /* Resolve the expressions in the SELECT statement and execute it. */ 6047d10d5a6Sdrh rc = sqlite3Select(pParse, pSelect, &dest); 605098d1684Sdrh assert( pParse->nErr==0 || rc ); 606098d1684Sdrh if( rc || NEVER(pParse->nErr) || db->mallocFailed ){ 6076f7adc8aSdrh goto insert_cleanup; 6086f7adc8aSdrh } 609e00ee6ebSdrh sqlite3VdbeAddOp2(v, OP_Integer, 1, regEof); /* EOF <- 1 */ 61092b01d53Sdrh sqlite3VdbeAddOp1(v, OP_Yield, dest.iParm); /* yield X */ 611e00ee6ebSdrh sqlite3VdbeAddOp2(v, OP_Halt, SQLITE_INTERNAL, OE_Abort); 612e00ee6ebSdrh VdbeComment((v, "End of SELECT coroutine")); 613e00ee6ebSdrh sqlite3VdbeJumpHere(v, j1); /* label B: */ 614b3bce662Sdanielk1977 6156a288a33Sdrh regFromSelect = dest.iMem; 6165974a30fSdrh assert( pSelect->pEList ); 617967e8b73Sdrh nColumn = pSelect->pEList->nExpr; 618e00ee6ebSdrh assert( dest.nMem==nColumn ); 619142e30dfSdrh 620142e30dfSdrh /* Set useTempTable to TRUE if the result of the SELECT statement 621e00ee6ebSdrh ** should be written into a temporary table (template 4). Set to 622e00ee6ebSdrh ** FALSE if each* row of the SELECT can be written directly into 623e00ee6ebSdrh ** the destination table (template 3). 624048c530cSdrh ** 625048c530cSdrh ** A temp table must be used if the table being updated is also one 626048c530cSdrh ** of the tables being read by the SELECT statement. Also use a 627048c530cSdrh ** temp table in the case of row triggers. 628142e30dfSdrh */ 629595a523aSdanielk1977 if( pTrigger || readsTable(pParse, addrSelect, iDb, pTab) ){ 630048c530cSdrh useTempTable = 1; 631048c530cSdrh } 632142e30dfSdrh 633142e30dfSdrh if( useTempTable ){ 634e00ee6ebSdrh /* Invoke the coroutine to extract information from the SELECT 635e00ee6ebSdrh ** and add it to a transient table srcTab. The code generated 636e00ee6ebSdrh ** here is from the 4th template: 637e00ee6ebSdrh ** 638e00ee6ebSdrh ** B: open temp table 639e00ee6ebSdrh ** L: yield X 640e00ee6ebSdrh ** if EOF goto M 641e00ee6ebSdrh ** insert row from R..R+n into temp table 642e00ee6ebSdrh ** goto L 643e00ee6ebSdrh ** M: ... 644142e30dfSdrh */ 645e00ee6ebSdrh int regRec; /* Register to hold packed record */ 646dc5ea5c7Sdrh int regTempRowid; /* Register to hold temp table ROWID */ 647e00ee6ebSdrh int addrTop; /* Label "L" */ 648e00ee6ebSdrh int addrIf; /* Address of jump to M */ 649b7654111Sdrh 650142e30dfSdrh srcTab = pParse->nTab++; 651b7654111Sdrh regRec = sqlite3GetTempReg(pParse); 652dc5ea5c7Sdrh regTempRowid = sqlite3GetTempReg(pParse); 653e00ee6ebSdrh sqlite3VdbeAddOp2(v, OP_OpenEphemeral, srcTab, nColumn); 65492b01d53Sdrh addrTop = sqlite3VdbeAddOp1(v, OP_Yield, dest.iParm); 655e00ee6ebSdrh addrIf = sqlite3VdbeAddOp1(v, OP_If, regEof); 6561db639ceSdrh sqlite3VdbeAddOp3(v, OP_MakeRecord, regFromSelect, nColumn, regRec); 657dc5ea5c7Sdrh sqlite3VdbeAddOp2(v, OP_NewRowid, srcTab, regTempRowid); 658dc5ea5c7Sdrh sqlite3VdbeAddOp3(v, OP_Insert, srcTab, regRec, regTempRowid); 659e00ee6ebSdrh sqlite3VdbeAddOp2(v, OP_Goto, 0, addrTop); 660e00ee6ebSdrh sqlite3VdbeJumpHere(v, addrIf); 661b7654111Sdrh sqlite3ReleaseTempReg(pParse, regRec); 662dc5ea5c7Sdrh sqlite3ReleaseTempReg(pParse, regTempRowid); 663142e30dfSdrh } 664142e30dfSdrh }else{ 665142e30dfSdrh /* This is the case if the data for the INSERT is coming from a VALUES 666142e30dfSdrh ** clause 667142e30dfSdrh */ 668b3bce662Sdanielk1977 NameContext sNC; 669b3bce662Sdanielk1977 memset(&sNC, 0, sizeof(sNC)); 670b3bce662Sdanielk1977 sNC.pParse = pParse; 6715974a30fSdrh srcTab = -1; 67248d1178aSdrh assert( useTempTable==0 ); 673147d0cccSdrh nColumn = pList ? pList->nExpr : 0; 674e64e7b20Sdrh for(i=0; i<nColumn; i++){ 6757d10d5a6Sdrh if( sqlite3ResolveExprNames(&sNC, pList->a[i].pExpr) ){ 676b04a5d87Sdrh goto insert_cleanup; 677b04a5d87Sdrh } 678e64e7b20Sdrh } 6795974a30fSdrh } 6801ccde15dSdrh 6811ccde15dSdrh /* Make sure the number of columns in the source data matches the number 6821ccde15dSdrh ** of columns to be inserted into the table. 6831ccde15dSdrh */ 684034ca14fSdanielk1977 if( IsVirtual(pTab) ){ 685034ca14fSdanielk1977 for(i=0; i<pTab->nCol; i++){ 686034ca14fSdanielk1977 nHidden += (IsHiddenColumn(&pTab->aCol[i]) ? 1 : 0); 687034ca14fSdanielk1977 } 688034ca14fSdanielk1977 } 689034ca14fSdanielk1977 if( pColumn==0 && nColumn && nColumn!=(pTab->nCol-nHidden) ){ 6904adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 691da93d238Sdrh "table %S has %d columns but %d values were supplied", 692d51397a6Sdrh pTabList, 0, pTab->nCol-nHidden, nColumn); 693cce7d176Sdrh goto insert_cleanup; 694cce7d176Sdrh } 695967e8b73Sdrh if( pColumn!=0 && nColumn!=pColumn->nId ){ 6964adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "%d values for %d columns", nColumn, pColumn->nId); 697cce7d176Sdrh goto insert_cleanup; 698cce7d176Sdrh } 6991ccde15dSdrh 7001ccde15dSdrh /* If the INSERT statement included an IDLIST term, then make sure 7011ccde15dSdrh ** all elements of the IDLIST really are columns of the table and 7021ccde15dSdrh ** remember the column indices. 703c8392586Sdrh ** 704c8392586Sdrh ** If the table has an INTEGER PRIMARY KEY column and that column 705c8392586Sdrh ** is named in the IDLIST, then record in the keyColumn variable 706c8392586Sdrh ** the index into IDLIST of the primary key column. keyColumn is 707c8392586Sdrh ** the index of the primary key as it appears in IDLIST, not as 708c8392586Sdrh ** is appears in the original table. (The index of the primary 709c8392586Sdrh ** key in the original table is pTab->iPKey.) 7101ccde15dSdrh */ 711967e8b73Sdrh if( pColumn ){ 712967e8b73Sdrh for(i=0; i<pColumn->nId; i++){ 713967e8b73Sdrh pColumn->a[i].idx = -1; 714cce7d176Sdrh } 715967e8b73Sdrh for(i=0; i<pColumn->nId; i++){ 716cce7d176Sdrh for(j=0; j<pTab->nCol; j++){ 7174adee20fSdanielk1977 if( sqlite3StrICmp(pColumn->a[i].zName, pTab->aCol[j].zName)==0 ){ 718967e8b73Sdrh pColumn->a[i].idx = j; 7194a32431cSdrh if( j==pTab->iPKey ){ 7209aa028daSdrh keyColumn = i; 7214a32431cSdrh } 722cce7d176Sdrh break; 723cce7d176Sdrh } 724cce7d176Sdrh } 725cce7d176Sdrh if( j>=pTab->nCol ){ 7264adee20fSdanielk1977 if( sqlite3IsRowid(pColumn->a[i].zName) ){ 727a0217ba7Sdrh keyColumn = i; 728a0217ba7Sdrh }else{ 7294adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "table %S has no column named %s", 730da93d238Sdrh pTabList, 0, pColumn->a[i].zName); 7311db95106Sdan pParse->checkSchema = 1; 732cce7d176Sdrh goto insert_cleanup; 733cce7d176Sdrh } 734cce7d176Sdrh } 735cce7d176Sdrh } 736a0217ba7Sdrh } 7371ccde15dSdrh 738aacc543eSdrh /* If there is no IDLIST term but the table has an integer primary 739c8392586Sdrh ** key, the set the keyColumn variable to the primary key column index 740c8392586Sdrh ** in the original table definition. 7414a32431cSdrh */ 742147d0cccSdrh if( pColumn==0 && nColumn>0 ){ 7434a32431cSdrh keyColumn = pTab->iPKey; 7444a32431cSdrh } 7454a32431cSdrh 746c3f9bad2Sdanielk1977 /* Initialize the count of rows to be inserted 7471ccde15dSdrh */ 748142e30dfSdrh if( db->flags & SQLITE_CountRows ){ 7496a288a33Sdrh regRowCount = ++pParse->nMem; 7506a288a33Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, regRowCount); 751c3f9bad2Sdanielk1977 } 752c3f9bad2Sdanielk1977 753e448dc4aSdanielk1977 /* If this is not a view, open the table and and all indices */ 754e448dc4aSdanielk1977 if( !isView ){ 755aa9b8963Sdrh int nIdx; 756aa9b8963Sdrh 75704adf416Sdrh baseCur = pParse->nTab; 75804adf416Sdrh nIdx = sqlite3OpenTableAndIndices(pParse, pTab, baseCur, OP_OpenWrite); 7595c070538Sdrh aRegIdx = sqlite3DbMallocRaw(db, sizeof(int)*(nIdx+1)); 760aa9b8963Sdrh if( aRegIdx==0 ){ 761aa9b8963Sdrh goto insert_cleanup; 762aa9b8963Sdrh } 763aa9b8963Sdrh for(i=0; i<nIdx; i++){ 764aa9b8963Sdrh aRegIdx[i] = ++pParse->nMem; 765aa9b8963Sdrh } 766feeb1394Sdrh } 767feeb1394Sdrh 768e00ee6ebSdrh /* This is the top of the main insertion loop */ 769142e30dfSdrh if( useTempTable ){ 770e00ee6ebSdrh /* This block codes the top of loop only. The complete loop is the 771e00ee6ebSdrh ** following pseudocode (template 4): 772e00ee6ebSdrh ** 773e00ee6ebSdrh ** rewind temp table 774e00ee6ebSdrh ** C: loop over rows of intermediate table 775e00ee6ebSdrh ** transfer values form intermediate table into <table> 776e00ee6ebSdrh ** end loop 777e00ee6ebSdrh ** D: ... 778e00ee6ebSdrh */ 779e00ee6ebSdrh addrInsTop = sqlite3VdbeAddOp1(v, OP_Rewind, srcTab); 780e00ee6ebSdrh addrCont = sqlite3VdbeCurrentAddr(v); 781142e30dfSdrh }else if( pSelect ){ 782e00ee6ebSdrh /* This block codes the top of loop only. The complete loop is the 783e00ee6ebSdrh ** following pseudocode (template 3): 784e00ee6ebSdrh ** 785e00ee6ebSdrh ** C: yield X 786e00ee6ebSdrh ** if EOF goto D 787e00ee6ebSdrh ** insert the select result into <table> from R..R+n 788e00ee6ebSdrh ** goto C 789e00ee6ebSdrh ** D: ... 790e00ee6ebSdrh */ 79192b01d53Sdrh addrCont = sqlite3VdbeAddOp1(v, OP_Yield, dest.iParm); 792e00ee6ebSdrh addrInsTop = sqlite3VdbeAddOp1(v, OP_If, regEof); 793bed8690fSdrh } 7941ccde15dSdrh 7956a288a33Sdrh /* Allocate registers for holding the rowid of the new row, 7966a288a33Sdrh ** the content of the new row, and the assemblied row record. 7976a288a33Sdrh */ 7986a288a33Sdrh regRowid = regIns = pParse->nMem+1; 7996a288a33Sdrh pParse->nMem += pTab->nCol + 1; 8006a288a33Sdrh if( IsVirtual(pTab) ){ 8016a288a33Sdrh regRowid++; 8026a288a33Sdrh pParse->nMem++; 8036a288a33Sdrh } 8046a288a33Sdrh regData = regRowid+1; 8056a288a33Sdrh 8065cf590c1Sdrh /* Run the BEFORE and INSTEAD OF triggers, if there are any 80770ce3f0cSdrh */ 8084adee20fSdanielk1977 endOfLoop = sqlite3VdbeMakeLabel(v); 8092f886d1dSdanielk1977 if( tmask & TRIGGER_BEFORE ){ 81076d462eeSdan int regCols = sqlite3GetTempRange(pParse, pTab->nCol+1); 811c3f9bad2Sdanielk1977 81270ce3f0cSdrh /* build the NEW.* reference row. Note that if there is an INTEGER 81370ce3f0cSdrh ** PRIMARY KEY into which a NULL is being inserted, that NULL will be 81470ce3f0cSdrh ** translated into a unique ID for the row. But on a BEFORE trigger, 81570ce3f0cSdrh ** we do not know what the unique ID will be (because the insert has 81670ce3f0cSdrh ** not happened yet) so we substitute a rowid of -1 81770ce3f0cSdrh */ 81870ce3f0cSdrh if( keyColumn<0 ){ 81976d462eeSdan sqlite3VdbeAddOp2(v, OP_Integer, -1, regCols); 82070ce3f0cSdrh }else{ 8216a288a33Sdrh int j1; 8227fe45908Sdrh if( useTempTable ){ 82376d462eeSdan sqlite3VdbeAddOp3(v, OP_Column, srcTab, keyColumn, regCols); 8247fe45908Sdrh }else{ 825d6fe961eSdrh assert( pSelect==0 ); /* Otherwise useTempTable is true */ 82676d462eeSdan sqlite3ExprCode(pParse, pList->a[keyColumn].pExpr, regCols); 8277fe45908Sdrh } 82876d462eeSdan j1 = sqlite3VdbeAddOp1(v, OP_NotNull, regCols); 82976d462eeSdan sqlite3VdbeAddOp2(v, OP_Integer, -1, regCols); 8306a288a33Sdrh sqlite3VdbeJumpHere(v, j1); 83176d462eeSdan sqlite3VdbeAddOp1(v, OP_MustBeInt, regCols); 83270ce3f0cSdrh } 83370ce3f0cSdrh 834034ca14fSdanielk1977 /* Cannot have triggers on a virtual table. If it were possible, 835034ca14fSdanielk1977 ** this block would have to account for hidden column. 836034ca14fSdanielk1977 */ 837034ca14fSdanielk1977 assert( !IsVirtual(pTab) ); 838034ca14fSdanielk1977 83970ce3f0cSdrh /* Create the new column data 84070ce3f0cSdrh */ 841c3f9bad2Sdanielk1977 for(i=0; i<pTab->nCol; i++){ 842c3f9bad2Sdanielk1977 if( pColumn==0 ){ 843c3f9bad2Sdanielk1977 j = i; 844c3f9bad2Sdanielk1977 }else{ 845c3f9bad2Sdanielk1977 for(j=0; j<pColumn->nId; j++){ 846c3f9bad2Sdanielk1977 if( pColumn->a[j].idx==i ) break; 847c3f9bad2Sdanielk1977 } 848c3f9bad2Sdanielk1977 } 8497ba45971Sdan if( (!useTempTable && !pList) || (pColumn && j>=pColumn->nId) ){ 85076d462eeSdan sqlite3ExprCode(pParse, pTab->aCol[i].pDflt, regCols+i+1); 851142e30dfSdrh }else if( useTempTable ){ 85276d462eeSdan sqlite3VdbeAddOp3(v, OP_Column, srcTab, j, regCols+i+1); 853c3f9bad2Sdanielk1977 }else{ 854d6fe961eSdrh assert( pSelect==0 ); /* Otherwise useTempTable is true */ 85576d462eeSdan sqlite3ExprCodeAndCache(pParse, pList->a[j].pExpr, regCols+i+1); 856c3f9bad2Sdanielk1977 } 857c3f9bad2Sdanielk1977 } 858a37cdde0Sdanielk1977 859a37cdde0Sdanielk1977 /* If this is an INSERT on a view with an INSTEAD OF INSERT trigger, 860a37cdde0Sdanielk1977 ** do not attempt any conversions before assembling the record. 861a37cdde0Sdanielk1977 ** If this is a real table, attempt conversions as required by the 862a37cdde0Sdanielk1977 ** table column affinities. 863a37cdde0Sdanielk1977 */ 864a37cdde0Sdanielk1977 if( !isView ){ 86576d462eeSdan sqlite3VdbeAddOp2(v, OP_Affinity, regCols+1, pTab->nCol); 866a37cdde0Sdanielk1977 sqlite3TableAffinityStr(v, pTab); 867a37cdde0Sdanielk1977 } 868c3f9bad2Sdanielk1977 8695cf590c1Sdrh /* Fire BEFORE or INSTEAD OF triggers */ 870165921a7Sdan sqlite3CodeRowTrigger(pParse, pTrigger, TK_INSERT, 0, TRIGGER_BEFORE, 87194d7f50aSdan pTab, regCols-pTab->nCol-1, onError, endOfLoop); 872165921a7Sdan 87376d462eeSdan sqlite3ReleaseTempRange(pParse, regCols, pTab->nCol+1); 87470ce3f0cSdrh } 875c3f9bad2Sdanielk1977 8764a32431cSdrh /* Push the record number for the new entry onto the stack. The 877f0863fe5Sdrh ** record number is a randomly generate integer created by NewRowid 8784a32431cSdrh ** except when the table has an INTEGER PRIMARY KEY column, in which 879b419a926Sdrh ** case the record number is the same as that column. 8801ccde15dSdrh */ 8815cf590c1Sdrh if( !isView ){ 8824cbdda9eSdrh if( IsVirtual(pTab) ){ 8834cbdda9eSdrh /* The row that the VUpdate opcode will delete: none */ 8846a288a33Sdrh sqlite3VdbeAddOp2(v, OP_Null, 0, regIns); 8854cbdda9eSdrh } 8864a32431cSdrh if( keyColumn>=0 ){ 887142e30dfSdrh if( useTempTable ){ 8886a288a33Sdrh sqlite3VdbeAddOp3(v, OP_Column, srcTab, keyColumn, regRowid); 889142e30dfSdrh }else if( pSelect ){ 890b7654111Sdrh sqlite3VdbeAddOp2(v, OP_SCopy, regFromSelect+keyColumn, regRowid); 8914a32431cSdrh }else{ 892e4d90813Sdrh VdbeOp *pOp; 8931db639ceSdrh sqlite3ExprCode(pParse, pList->a[keyColumn].pExpr, regRowid); 89420411ea7Sdrh pOp = sqlite3VdbeGetOp(v, -1); 8951b7ecbb4Sdrh if( ALWAYS(pOp) && pOp->opcode==OP_Null && !IsVirtual(pTab) ){ 896e4d90813Sdrh appendFlag = 1; 897e4d90813Sdrh pOp->opcode = OP_NewRowid; 89804adf416Sdrh pOp->p1 = baseCur; 8996a288a33Sdrh pOp->p2 = regRowid; 9006a288a33Sdrh pOp->p3 = regAutoinc; 901e4d90813Sdrh } 90227a32783Sdrh } 903f0863fe5Sdrh /* If the PRIMARY KEY expression is NULL, then use OP_NewRowid 904e1e68f49Sdrh ** to generate a unique primary key value. 905e1e68f49Sdrh */ 906e4d90813Sdrh if( !appendFlag ){ 9071db639ceSdrh int j1; 908bb50e7adSdanielk1977 if( !IsVirtual(pTab) ){ 9091db639ceSdrh j1 = sqlite3VdbeAddOp1(v, OP_NotNull, regRowid); 91004adf416Sdrh sqlite3VdbeAddOp3(v, OP_NewRowid, baseCur, regRowid, regAutoinc); 9111db639ceSdrh sqlite3VdbeJumpHere(v, j1); 912bb50e7adSdanielk1977 }else{ 913bb50e7adSdanielk1977 j1 = sqlite3VdbeCurrentAddr(v); 914bb50e7adSdanielk1977 sqlite3VdbeAddOp2(v, OP_IsNull, regRowid, j1+2); 915bb50e7adSdanielk1977 } 9163c84ddffSdrh sqlite3VdbeAddOp1(v, OP_MustBeInt, regRowid); 917e4d90813Sdrh } 9184cbdda9eSdrh }else if( IsVirtual(pTab) ){ 9196a288a33Sdrh sqlite3VdbeAddOp2(v, OP_Null, 0, regRowid); 9204a32431cSdrh }else{ 92104adf416Sdrh sqlite3VdbeAddOp3(v, OP_NewRowid, baseCur, regRowid, regAutoinc); 922e4d90813Sdrh appendFlag = 1; 9234a32431cSdrh } 9246a288a33Sdrh autoIncStep(pParse, regAutoinc, regRowid); 9254a32431cSdrh 926aacc543eSdrh /* Push onto the stack, data for all columns of the new entry, beginning 9274a32431cSdrh ** with the first column. 9284a32431cSdrh */ 929034ca14fSdanielk1977 nHidden = 0; 930cce7d176Sdrh for(i=0; i<pTab->nCol; i++){ 9316a288a33Sdrh int iRegStore = regRowid+1+i; 9324a32431cSdrh if( i==pTab->iPKey ){ 9334a32431cSdrh /* The value of the INTEGER PRIMARY KEY column is always a NULL. 934aacc543eSdrh ** Whenever this column is read, the record number will be substituted 935aacc543eSdrh ** in its place. So will fill this column with a NULL to avoid 936aacc543eSdrh ** taking up data space with information that will never be used. */ 9374c583128Sdrh sqlite3VdbeAddOp2(v, OP_Null, 0, iRegStore); 9384a32431cSdrh continue; 9394a32431cSdrh } 940967e8b73Sdrh if( pColumn==0 ){ 941034ca14fSdanielk1977 if( IsHiddenColumn(&pTab->aCol[i]) ){ 942034ca14fSdanielk1977 assert( IsVirtual(pTab) ); 943034ca14fSdanielk1977 j = -1; 944034ca14fSdanielk1977 nHidden++; 945034ca14fSdanielk1977 }else{ 946034ca14fSdanielk1977 j = i - nHidden; 947034ca14fSdanielk1977 } 948cce7d176Sdrh }else{ 949967e8b73Sdrh for(j=0; j<pColumn->nId; j++){ 950967e8b73Sdrh if( pColumn->a[j].idx==i ) break; 951cce7d176Sdrh } 952cce7d176Sdrh } 953034ca14fSdanielk1977 if( j<0 || nColumn==0 || (pColumn && j>=pColumn->nId) ){ 954287fb61cSdanielk1977 sqlite3ExprCode(pParse, pTab->aCol[i].pDflt, iRegStore); 955142e30dfSdrh }else if( useTempTable ){ 956287fb61cSdanielk1977 sqlite3VdbeAddOp3(v, OP_Column, srcTab, j, iRegStore); 957142e30dfSdrh }else if( pSelect ){ 958b7654111Sdrh sqlite3VdbeAddOp2(v, OP_SCopy, regFromSelect+j, iRegStore); 959cce7d176Sdrh }else{ 960287fb61cSdanielk1977 sqlite3ExprCode(pParse, pList->a[j].pExpr, iRegStore); 961cce7d176Sdrh } 962cce7d176Sdrh } 9631ccde15dSdrh 9640ca3e24bSdrh /* Generate code to check constraints and generate index keys and 9650ca3e24bSdrh ** do the insertion. 9664a32431cSdrh */ 9674cbdda9eSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 9684cbdda9eSdrh if( IsVirtual(pTab) ){ 969595a523aSdanielk1977 const char *pVTab = (const char *)sqlite3GetVTable(db, pTab); 9704f3dd150Sdrh sqlite3VtabMakeWritable(pParse, pTab); 971595a523aSdanielk1977 sqlite3VdbeAddOp4(v, OP_VUpdate, 1, pTab->nCol+2, regIns, pVTab, P4_VTAB); 972b061d058Sdan sqlite3VdbeChangeP5(v, onError==OE_Default ? OE_Abort : onError); 973e0af83acSdan sqlite3MayAbort(pParse); 9744cbdda9eSdrh }else 9754cbdda9eSdrh #endif 9764cbdda9eSdrh { 977de630353Sdanielk1977 int isReplace; /* Set to true if constraints may cause a replace */ 978de630353Sdanielk1977 sqlite3GenerateConstraintChecks(pParse, pTab, baseCur, regIns, aRegIdx, 979de630353Sdanielk1977 keyColumn>=0, 0, onError, endOfLoop, &isReplace 98004adf416Sdrh ); 981e7a94d81Sdan sqlite3FkCheck(pParse, pTab, 0, regIns); 98204adf416Sdrh sqlite3CompleteInsertion( 9832832ad42Sdan pParse, pTab, baseCur, regIns, aRegIdx, 0, appendFlag, isReplace==0 98404adf416Sdrh ); 9855cf590c1Sdrh } 9864cbdda9eSdrh } 9871bee3d7bSdrh 988feeb1394Sdrh /* Update the count of rows that are inserted 9891bee3d7bSdrh */ 990142e30dfSdrh if( (db->flags & SQLITE_CountRows)!=0 ){ 9916a288a33Sdrh sqlite3VdbeAddOp2(v, OP_AddImm, regRowCount, 1); 9921bee3d7bSdrh } 993c3f9bad2Sdanielk1977 9942f886d1dSdanielk1977 if( pTrigger ){ 995c3f9bad2Sdanielk1977 /* Code AFTER triggers */ 996165921a7Sdan sqlite3CodeRowTrigger(pParse, pTrigger, TK_INSERT, 0, TRIGGER_AFTER, 99794d7f50aSdan pTab, regData-2-pTab->nCol, onError, endOfLoop); 998c3f9bad2Sdanielk1977 } 9991bee3d7bSdrh 1000e00ee6ebSdrh /* The bottom of the main insertion loop, if the data source 1001e00ee6ebSdrh ** is a SELECT statement. 10021ccde15dSdrh */ 10034adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, endOfLoop); 1004142e30dfSdrh if( useTempTable ){ 1005e00ee6ebSdrh sqlite3VdbeAddOp2(v, OP_Next, srcTab, addrCont); 1006e00ee6ebSdrh sqlite3VdbeJumpHere(v, addrInsTop); 10072eb95377Sdrh sqlite3VdbeAddOp1(v, OP_Close, srcTab); 1008142e30dfSdrh }else if( pSelect ){ 1009e00ee6ebSdrh sqlite3VdbeAddOp2(v, OP_Goto, 0, addrCont); 1010e00ee6ebSdrh sqlite3VdbeJumpHere(v, addrInsTop); 10116b56344dSdrh } 1012c3f9bad2Sdanielk1977 1013e448dc4aSdanielk1977 if( !IsVirtual(pTab) && !isView ){ 1014c3f9bad2Sdanielk1977 /* Close all tables opened */ 10152eb95377Sdrh sqlite3VdbeAddOp1(v, OP_Close, baseCur); 10166b56344dSdrh for(idx=1, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, idx++){ 10172eb95377Sdrh sqlite3VdbeAddOp1(v, OP_Close, idx+baseCur); 1018cce7d176Sdrh } 1019c3f9bad2Sdanielk1977 } 1020c3f9bad2Sdanielk1977 10210b9f50d8Sdrh insert_end: 1022f3388144Sdrh /* Update the sqlite_sequence table by storing the content of the 10230b9f50d8Sdrh ** maximum rowid counter values recorded while inserting into 10240b9f50d8Sdrh ** autoincrement tables. 10252958a4e6Sdrh */ 1026165921a7Sdan if( pParse->nested==0 && pParse->pTriggerTab==0 ){ 10270b9f50d8Sdrh sqlite3AutoincrementEnd(pParse); 10280b9f50d8Sdrh } 10292958a4e6Sdrh 10301bee3d7bSdrh /* 1031e7de6f25Sdanielk1977 ** Return the number of rows inserted. If this routine is 1032e7de6f25Sdanielk1977 ** generating code because of a call to sqlite3NestedParse(), do not 1033e7de6f25Sdanielk1977 ** invoke the callback function. 10341bee3d7bSdrh */ 1035165921a7Sdan if( (db->flags&SQLITE_CountRows) && !pParse->nested && !pParse->pTriggerTab ){ 10366a288a33Sdrh sqlite3VdbeAddOp2(v, OP_ResultRow, regRowCount, 1); 103722322fd4Sdanielk1977 sqlite3VdbeSetNumCols(v, 1); 103810fb749bSdanielk1977 sqlite3VdbeSetColName(v, 0, COLNAME_NAME, "rows inserted", SQLITE_STATIC); 10391bee3d7bSdrh } 1040cce7d176Sdrh 1041cce7d176Sdrh insert_cleanup: 1042633e6d57Sdrh sqlite3SrcListDelete(db, pTabList); 1043633e6d57Sdrh sqlite3ExprListDelete(db, pList); 1044633e6d57Sdrh sqlite3SelectDelete(db, pSelect); 1045633e6d57Sdrh sqlite3IdListDelete(db, pColumn); 1046633e6d57Sdrh sqlite3DbFree(db, aRegIdx); 1047cce7d176Sdrh } 10489cfcf5d4Sdrh 104975cbd984Sdan /* Make sure "isView" and other macros defined above are undefined. Otherwise 105075cbd984Sdan ** thely may interfere with compilation of other functions in this file 105175cbd984Sdan ** (or in another file, if this file becomes part of the amalgamation). */ 105275cbd984Sdan #ifdef isView 105375cbd984Sdan #undef isView 105475cbd984Sdan #endif 105575cbd984Sdan #ifdef pTrigger 105675cbd984Sdan #undef pTrigger 105775cbd984Sdan #endif 105875cbd984Sdan #ifdef tmask 105975cbd984Sdan #undef tmask 106075cbd984Sdan #endif 106175cbd984Sdan 106275cbd984Sdan 10639cfcf5d4Sdrh /* 10646a288a33Sdrh ** Generate code to do constraint checks prior to an INSERT or an UPDATE. 10659cfcf5d4Sdrh ** 106604adf416Sdrh ** The input is a range of consecutive registers as follows: 10670ca3e24bSdrh ** 106865a7cd16Sdan ** 1. The rowid of the row after the update. 10690ca3e24bSdrh ** 107065a7cd16Sdan ** 2. The data in the first column of the entry after the update. 10710ca3e24bSdrh ** 10720ca3e24bSdrh ** i. Data from middle columns... 10730ca3e24bSdrh ** 10740ca3e24bSdrh ** N. The data in the last column of the entry after the update. 10750ca3e24bSdrh ** 107665a7cd16Sdan ** The regRowid parameter is the index of the register containing (1). 107704adf416Sdrh ** 107865a7cd16Sdan ** If isUpdate is true and rowidChng is non-zero, then rowidChng contains 107965a7cd16Sdan ** the address of a register containing the rowid before the update takes 108065a7cd16Sdan ** place. isUpdate is true for UPDATEs and false for INSERTs. If isUpdate 108165a7cd16Sdan ** is false, indicating an INSERT statement, then a non-zero rowidChng 108265a7cd16Sdan ** indicates that the rowid was explicitly specified as part of the 108365a7cd16Sdan ** INSERT statement. If rowidChng is false, it means that the rowid is 108465a7cd16Sdan ** computed automatically in an insert or that the rowid value is not 108565a7cd16Sdan ** modified by an update. 10860ca3e24bSdrh ** 1087aa9b8963Sdrh ** The code generated by this routine store new index entries into 1088aa9b8963Sdrh ** registers identified by aRegIdx[]. No index entry is created for 1089aa9b8963Sdrh ** indices where aRegIdx[i]==0. The order of indices in aRegIdx[] is 1090aa9b8963Sdrh ** the same as the order of indices on the linked list of indices 1091aa9b8963Sdrh ** attached to the table. 10929cfcf5d4Sdrh ** 10939cfcf5d4Sdrh ** This routine also generates code to check constraints. NOT NULL, 10949cfcf5d4Sdrh ** CHECK, and UNIQUE constraints are all checked. If a constraint fails, 10951c92853dSdrh ** then the appropriate action is performed. There are five possible 10961c92853dSdrh ** actions: ROLLBACK, ABORT, FAIL, REPLACE, and IGNORE. 10979cfcf5d4Sdrh ** 10989cfcf5d4Sdrh ** Constraint type Action What Happens 10999cfcf5d4Sdrh ** --------------- ---------- ---------------------------------------- 11001c92853dSdrh ** any ROLLBACK The current transaction is rolled back and 110124b03fd0Sdanielk1977 ** sqlite3_exec() returns immediately with a 11029cfcf5d4Sdrh ** return code of SQLITE_CONSTRAINT. 11039cfcf5d4Sdrh ** 11041c92853dSdrh ** any ABORT Back out changes from the current command 11051c92853dSdrh ** only (do not do a complete rollback) then 110624b03fd0Sdanielk1977 ** cause sqlite3_exec() to return immediately 11071c92853dSdrh ** with SQLITE_CONSTRAINT. 11081c92853dSdrh ** 11091c92853dSdrh ** any FAIL Sqlite_exec() returns immediately with a 11101c92853dSdrh ** return code of SQLITE_CONSTRAINT. The 11111c92853dSdrh ** transaction is not rolled back and any 11121c92853dSdrh ** prior changes are retained. 11131c92853dSdrh ** 11149cfcf5d4Sdrh ** any IGNORE The record number and data is popped from 11159cfcf5d4Sdrh ** the stack and there is an immediate jump 11169cfcf5d4Sdrh ** to label ignoreDest. 11179cfcf5d4Sdrh ** 11189cfcf5d4Sdrh ** NOT NULL REPLACE The NULL value is replace by the default 11199cfcf5d4Sdrh ** value for that column. If the default value 11209cfcf5d4Sdrh ** is NULL, the action is the same as ABORT. 11219cfcf5d4Sdrh ** 11229cfcf5d4Sdrh ** UNIQUE REPLACE The other row that conflicts with the row 11239cfcf5d4Sdrh ** being inserted is removed. 11249cfcf5d4Sdrh ** 11259cfcf5d4Sdrh ** CHECK REPLACE Illegal. The results in an exception. 11269cfcf5d4Sdrh ** 11271c92853dSdrh ** Which action to take is determined by the overrideError parameter. 11281c92853dSdrh ** Or if overrideError==OE_Default, then the pParse->onError parameter 11291c92853dSdrh ** is used. Or if pParse->onError==OE_Default then the onError value 11301c92853dSdrh ** for the constraint is used. 11319cfcf5d4Sdrh ** 1132aaab5725Sdrh ** The calling routine must open a read/write cursor for pTab with 113304adf416Sdrh ** cursor number "baseCur". All indices of pTab must also have open 113404adf416Sdrh ** read/write cursors with cursor number baseCur+i for the i-th cursor. 11359cfcf5d4Sdrh ** Except, if there is no possibility of a REPLACE action then 1136aa9b8963Sdrh ** cursors do not need to be open for indices where aRegIdx[i]==0. 11379cfcf5d4Sdrh */ 11384adee20fSdanielk1977 void sqlite3GenerateConstraintChecks( 11399cfcf5d4Sdrh Parse *pParse, /* The parser context */ 11409cfcf5d4Sdrh Table *pTab, /* the table into which we are inserting */ 114104adf416Sdrh int baseCur, /* Index of a read/write cursor pointing at pTab */ 114204adf416Sdrh int regRowid, /* Index of the range of input registers */ 1143aa9b8963Sdrh int *aRegIdx, /* Register used by each index. 0 for unused indices */ 1144a05a722fSdrh int rowidChng, /* True if the rowid might collide with existing entry */ 1145b419a926Sdrh int isUpdate, /* True for UPDATE, False for INSERT */ 11469cfcf5d4Sdrh int overrideError, /* Override onError to this if not OE_Default */ 1147de630353Sdanielk1977 int ignoreDest, /* Jump to this label on an OE_Ignore resolution */ 1148de630353Sdanielk1977 int *pbMayReplace /* OUT: Set to true if constraint may cause a replace */ 11499cfcf5d4Sdrh ){ 11501b7ecbb4Sdrh int i; /* loop counter */ 11511b7ecbb4Sdrh Vdbe *v; /* VDBE under constrution */ 11521b7ecbb4Sdrh int nCol; /* Number of columns */ 11531b7ecbb4Sdrh int onError; /* Conflict resolution strategy */ 11541bd10f8aSdrh int j1; /* Addresss of jump instruction */ 11551bd10f8aSdrh int j2 = 0, j3; /* Addresses of jump instructions */ 115604adf416Sdrh int regData; /* Register containing first data column */ 11571b7ecbb4Sdrh int iCur; /* Table cursor number */ 11581b7ecbb4Sdrh Index *pIdx; /* Pointer to one of the indices */ 11591b7ecbb4Sdrh int seenReplace = 0; /* True if REPLACE is used to resolve INT PK conflict */ 116065a7cd16Sdan int regOldRowid = (rowidChng && isUpdate) ? rowidChng : regRowid; 11619cfcf5d4Sdrh 11624adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 11639cfcf5d4Sdrh assert( v!=0 ); 1164417be79cSdrh assert( pTab->pSelect==0 ); /* This table is not a VIEW */ 11659cfcf5d4Sdrh nCol = pTab->nCol; 1166aa9b8963Sdrh regData = regRowid + 1; 1167aa9b8963Sdrh 11689cfcf5d4Sdrh /* Test all NOT NULL constraints. 11699cfcf5d4Sdrh */ 11709cfcf5d4Sdrh for(i=0; i<nCol; i++){ 11710ca3e24bSdrh if( i==pTab->iPKey ){ 11720ca3e24bSdrh continue; 11730ca3e24bSdrh } 11749cfcf5d4Sdrh onError = pTab->aCol[i].notNull; 11750ca3e24bSdrh if( onError==OE_None ) continue; 11769cfcf5d4Sdrh if( overrideError!=OE_Default ){ 11779cfcf5d4Sdrh onError = overrideError; 1178a996e477Sdrh }else if( onError==OE_Default ){ 1179a996e477Sdrh onError = OE_Abort; 11809cfcf5d4Sdrh } 11817977a17fSdanielk1977 if( onError==OE_Replace && pTab->aCol[i].pDflt==0 ){ 11829cfcf5d4Sdrh onError = OE_Abort; 11839cfcf5d4Sdrh } 1184b84f96f8Sdanielk1977 assert( onError==OE_Rollback || onError==OE_Abort || onError==OE_Fail 1185b84f96f8Sdanielk1977 || onError==OE_Ignore || onError==OE_Replace ); 11869cfcf5d4Sdrh switch( onError ){ 11871c92853dSdrh case OE_Abort: 1188e0af83acSdan sqlite3MayAbort(pParse); 1189e0af83acSdan case OE_Rollback: 11901c92853dSdrh case OE_Fail: { 1191f089aa45Sdrh char *zMsg; 1192c126e63eSdrh sqlite3VdbeAddOp3(v, OP_HaltIfNull, 11935053a79bSdrh SQLITE_CONSTRAINT, onError, regData+i); 1194f089aa45Sdrh zMsg = sqlite3MPrintf(pParse->db, "%s.%s may not be NULL", 1195f089aa45Sdrh pTab->zName, pTab->aCol[i].zName); 119666a5167bSdrh sqlite3VdbeChangeP4(v, -1, zMsg, P4_DYNAMIC); 11979cfcf5d4Sdrh break; 11989cfcf5d4Sdrh } 11999cfcf5d4Sdrh case OE_Ignore: { 12005053a79bSdrh sqlite3VdbeAddOp2(v, OP_IsNull, regData+i, ignoreDest); 12019cfcf5d4Sdrh break; 12029cfcf5d4Sdrh } 1203098d1684Sdrh default: { 1204098d1684Sdrh assert( onError==OE_Replace ); 12055053a79bSdrh j1 = sqlite3VdbeAddOp1(v, OP_NotNull, regData+i); 120604adf416Sdrh sqlite3ExprCode(pParse, pTab->aCol[i].pDflt, regData+i); 12075053a79bSdrh sqlite3VdbeJumpHere(v, j1); 12089cfcf5d4Sdrh break; 12099cfcf5d4Sdrh } 12109cfcf5d4Sdrh } 12119cfcf5d4Sdrh } 12129cfcf5d4Sdrh 12139cfcf5d4Sdrh /* Test all CHECK constraints 12149cfcf5d4Sdrh */ 1215ffe07b2dSdrh #ifndef SQLITE_OMIT_CHECK 12160cd2d4c9Sdrh if( pTab->pCheck && (pParse->db->flags & SQLITE_IgnoreChecks)==0 ){ 1217ffe07b2dSdrh int allOk = sqlite3VdbeMakeLabel(v); 1218aa9b8963Sdrh pParse->ckBase = regData; 121935573356Sdrh sqlite3ExprIfTrue(pParse, pTab->pCheck, allOk, SQLITE_JUMPIFNULL); 1220aa01c7e2Sdrh onError = overrideError!=OE_Default ? overrideError : OE_Abort; 12212e06c67cSdrh if( onError==OE_Ignore ){ 122266a5167bSdrh sqlite3VdbeAddOp2(v, OP_Goto, 0, ignoreDest); 1223aa01c7e2Sdrh }else{ 12246dc84902Sdrh if( onError==OE_Replace ) onError = OE_Abort; /* IMP: R-15569-63625 */ 1225e0af83acSdan sqlite3HaltConstraint(pParse, onError, 0, 0); 1226aa01c7e2Sdrh } 1227ffe07b2dSdrh sqlite3VdbeResolveLabel(v, allOk); 1228ffe07b2dSdrh } 1229ffe07b2dSdrh #endif /* !defined(SQLITE_OMIT_CHECK) */ 12309cfcf5d4Sdrh 12310bd1f4eaSdrh /* If we have an INTEGER PRIMARY KEY, make sure the primary key 12320bd1f4eaSdrh ** of the new record does not previously exist. Except, if this 12330bd1f4eaSdrh ** is an UPDATE and the primary key is not changing, that is OK. 12349cfcf5d4Sdrh */ 1235f0863fe5Sdrh if( rowidChng ){ 12360ca3e24bSdrh onError = pTab->keyConf; 12370ca3e24bSdrh if( overrideError!=OE_Default ){ 12380ca3e24bSdrh onError = overrideError; 1239a996e477Sdrh }else if( onError==OE_Default ){ 1240a996e477Sdrh onError = OE_Abort; 12410ca3e24bSdrh } 1242a0217ba7Sdrh 124379b0c956Sdrh if( isUpdate ){ 124476d462eeSdan j2 = sqlite3VdbeAddOp3(v, OP_Eq, regRowid, 0, rowidChng); 124579b0c956Sdrh } 124604adf416Sdrh j3 = sqlite3VdbeAddOp3(v, OP_NotExists, baseCur, 0, regRowid); 12470ca3e24bSdrh switch( onError ){ 1248a0217ba7Sdrh default: { 1249a0217ba7Sdrh onError = OE_Abort; 1250a0217ba7Sdrh /* Fall thru into the next case */ 1251a0217ba7Sdrh } 12521c92853dSdrh case OE_Rollback: 12531c92853dSdrh case OE_Abort: 12541c92853dSdrh case OE_Fail: { 1255e0af83acSdan sqlite3HaltConstraint( 1256e0af83acSdan pParse, onError, "PRIMARY KEY must be unique", P4_STATIC); 12570ca3e24bSdrh break; 12580ca3e24bSdrh } 12595383ae5cSdrh case OE_Replace: { 12602283d46cSdan /* If there are DELETE triggers on this table and the 12612283d46cSdan ** recursive-triggers flag is set, call GenerateRowDelete() to 12622283d46cSdan ** remove the conflicting row from the the table. This will fire 12632283d46cSdan ** the triggers and remove both the table and index b-tree entries. 12642283d46cSdan ** 12652283d46cSdan ** Otherwise, if there are no triggers or the recursive-triggers 1266da730f6eSdan ** flag is not set, but the table has one or more indexes, call 1267da730f6eSdan ** GenerateRowIndexDelete(). This removes the index b-tree entries 1268da730f6eSdan ** only. The table b-tree entry will be replaced by the new entry 1269da730f6eSdan ** when it is inserted. 1270da730f6eSdan ** 1271da730f6eSdan ** If either GenerateRowDelete() or GenerateRowIndexDelete() is called, 1272da730f6eSdan ** also invoke MultiWrite() to indicate that this VDBE may require 1273da730f6eSdan ** statement rollback (if the statement is aborted after the delete 1274da730f6eSdan ** takes place). Earlier versions called sqlite3MultiWrite() regardless, 1275da730f6eSdan ** but being more selective here allows statements like: 1276da730f6eSdan ** 1277da730f6eSdan ** REPLACE INTO t(rowid) VALUES($newrowid) 1278da730f6eSdan ** 1279da730f6eSdan ** to run without a statement journal if there are no indexes on the 1280da730f6eSdan ** table. 1281da730f6eSdan */ 12822283d46cSdan Trigger *pTrigger = 0; 12832283d46cSdan if( pParse->db->flags&SQLITE_RecTriggers ){ 12842283d46cSdan pTrigger = sqlite3TriggersExist(pParse, pTab, TK_DELETE, 0, 0); 12852283d46cSdan } 1286e7a94d81Sdan if( pTrigger || sqlite3FkRequired(pParse, pTab, 0, 0) ){ 1287da730f6eSdan sqlite3MultiWrite(pParse); 12882283d46cSdan sqlite3GenerateRowDelete( 12892283d46cSdan pParse, pTab, baseCur, regRowid, 0, pTrigger, OE_Replace 12902283d46cSdan ); 1291da730f6eSdan }else if( pTab->pIndex ){ 1292da730f6eSdan sqlite3MultiWrite(pParse); 12932d401ab8Sdrh sqlite3GenerateRowIndexDelete(pParse, pTab, baseCur, 0); 12942283d46cSdan } 12955383ae5cSdrh seenReplace = 1; 12965383ae5cSdrh break; 12975383ae5cSdrh } 12980ca3e24bSdrh case OE_Ignore: { 12995383ae5cSdrh assert( seenReplace==0 ); 130066a5167bSdrh sqlite3VdbeAddOp2(v, OP_Goto, 0, ignoreDest); 13010ca3e24bSdrh break; 13020ca3e24bSdrh } 13030ca3e24bSdrh } 1304aa9b8963Sdrh sqlite3VdbeJumpHere(v, j3); 1305f5905aa7Sdrh if( isUpdate ){ 1306aa9b8963Sdrh sqlite3VdbeJumpHere(v, j2); 1307a05a722fSdrh } 13080ca3e24bSdrh } 13090bd1f4eaSdrh 13100bd1f4eaSdrh /* Test all UNIQUE constraints by creating entries for each UNIQUE 13110bd1f4eaSdrh ** index and making sure that duplicate entries do not already exist. 13120bd1f4eaSdrh ** Add the new records to the indices as we go. 13130bd1f4eaSdrh */ 1314b2fe7d8cSdrh for(iCur=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, iCur++){ 13152d401ab8Sdrh int regIdx; 13162d401ab8Sdrh int regR; 13172184fc75Sdrh 1318aa9b8963Sdrh if( aRegIdx[iCur]==0 ) continue; /* Skip unused indices */ 1319b2fe7d8cSdrh 1320b2fe7d8cSdrh /* Create a key for accessing the index entry */ 13212d401ab8Sdrh regIdx = sqlite3GetTempRange(pParse, pIdx->nColumn+1); 13229cfcf5d4Sdrh for(i=0; i<pIdx->nColumn; i++){ 13239cfcf5d4Sdrh int idx = pIdx->aiColumn[i]; 13249cfcf5d4Sdrh if( idx==pTab->iPKey ){ 13252d401ab8Sdrh sqlite3VdbeAddOp2(v, OP_SCopy, regRowid, regIdx+i); 13269cfcf5d4Sdrh }else{ 13272d401ab8Sdrh sqlite3VdbeAddOp2(v, OP_SCopy, regData+idx, regIdx+i); 13289cfcf5d4Sdrh } 13299cfcf5d4Sdrh } 13302d401ab8Sdrh sqlite3VdbeAddOp2(v, OP_SCopy, regRowid, regIdx+i); 13311db639ceSdrh sqlite3VdbeAddOp3(v, OP_MakeRecord, regIdx, pIdx->nColumn+1, aRegIdx[iCur]); 13328d129422Sdrh sqlite3VdbeChangeP4(v, -1, sqlite3IndexAffinityStr(v, pIdx), P4_TRANSIENT); 1333da250ea5Sdrh sqlite3ExprCacheAffinityChange(pParse, regIdx, pIdx->nColumn+1); 1334b2fe7d8cSdrh 1335b2fe7d8cSdrh /* Find out what action to take in case there is an indexing conflict */ 13369cfcf5d4Sdrh onError = pIdx->onError; 1337de630353Sdanielk1977 if( onError==OE_None ){ 1338de630353Sdanielk1977 sqlite3ReleaseTempRange(pParse, regIdx, pIdx->nColumn+1); 1339de630353Sdanielk1977 continue; /* pIdx is not a UNIQUE index */ 1340de630353Sdanielk1977 } 13419cfcf5d4Sdrh if( overrideError!=OE_Default ){ 13429cfcf5d4Sdrh onError = overrideError; 1343a996e477Sdrh }else if( onError==OE_Default ){ 1344a996e477Sdrh onError = OE_Abort; 13459cfcf5d4Sdrh } 13465383ae5cSdrh if( seenReplace ){ 13475383ae5cSdrh if( onError==OE_Ignore ) onError = OE_Replace; 13485383ae5cSdrh else if( onError==OE_Fail ) onError = OE_Abort; 13495383ae5cSdrh } 13505383ae5cSdrh 1351b2fe7d8cSdrh /* Check to see if the new index entry will be unique */ 13522d401ab8Sdrh regR = sqlite3GetTempReg(pParse); 135365a7cd16Sdan sqlite3VdbeAddOp2(v, OP_SCopy, regOldRowid, regR); 13542d401ab8Sdrh j3 = sqlite3VdbeAddOp4(v, OP_IsUnique, baseCur+iCur+1, 0, 1355de630353Sdanielk1977 regR, SQLITE_INT_TO_PTR(regIdx), 1356a9e852b6Smlcreech P4_INT32); 1357de630353Sdanielk1977 sqlite3ReleaseTempRange(pParse, regIdx, pIdx->nColumn+1); 1358b2fe7d8cSdrh 1359b2fe7d8cSdrh /* Generate code that executes if the new index entry is not unique */ 1360b84f96f8Sdanielk1977 assert( onError==OE_Rollback || onError==OE_Abort || onError==OE_Fail 1361b84f96f8Sdanielk1977 || onError==OE_Ignore || onError==OE_Replace ); 13629cfcf5d4Sdrh switch( onError ){ 13631c92853dSdrh case OE_Rollback: 13641c92853dSdrh case OE_Abort: 13651c92853dSdrh case OE_Fail: { 1366098d1684Sdrh int j; 1367098d1684Sdrh StrAccum errMsg; 1368098d1684Sdrh const char *zSep; 1369098d1684Sdrh char *zErr; 1370098d1684Sdrh 1371098d1684Sdrh sqlite3StrAccumInit(&errMsg, 0, 0, 200); 1372098d1684Sdrh errMsg.db = pParse->db; 1373098d1684Sdrh zSep = pIdx->nColumn>1 ? "columns " : "column "; 1374098d1684Sdrh for(j=0; j<pIdx->nColumn; j++){ 137537ed48edSdrh char *zCol = pTab->aCol[pIdx->aiColumn[j]].zName; 1376098d1684Sdrh sqlite3StrAccumAppend(&errMsg, zSep, -1); 1377098d1684Sdrh zSep = ", "; 1378098d1684Sdrh sqlite3StrAccumAppend(&errMsg, zCol, -1); 137937ed48edSdrh } 1380098d1684Sdrh sqlite3StrAccumAppend(&errMsg, 1381098d1684Sdrh pIdx->nColumn>1 ? " are not unique" : " is not unique", -1); 1382098d1684Sdrh zErr = sqlite3StrAccumFinish(&errMsg); 1383e0af83acSdan sqlite3HaltConstraint(pParse, onError, zErr, 0); 1384098d1684Sdrh sqlite3DbFree(errMsg.db, zErr); 13859cfcf5d4Sdrh break; 13869cfcf5d4Sdrh } 13879cfcf5d4Sdrh case OE_Ignore: { 13880ca3e24bSdrh assert( seenReplace==0 ); 138966a5167bSdrh sqlite3VdbeAddOp2(v, OP_Goto, 0, ignoreDest); 13909cfcf5d4Sdrh break; 13919cfcf5d4Sdrh } 1392098d1684Sdrh default: { 13932283d46cSdan Trigger *pTrigger = 0; 1394098d1684Sdrh assert( onError==OE_Replace ); 13951bea559aSdan sqlite3MultiWrite(pParse); 13962283d46cSdan if( pParse->db->flags&SQLITE_RecTriggers ){ 13972283d46cSdan pTrigger = sqlite3TriggersExist(pParse, pTab, TK_DELETE, 0, 0); 13982283d46cSdan } 13992283d46cSdan sqlite3GenerateRowDelete( 14002283d46cSdan pParse, pTab, baseCur, regR, 0, pTrigger, OE_Replace 14012283d46cSdan ); 14020ca3e24bSdrh seenReplace = 1; 14039cfcf5d4Sdrh break; 14049cfcf5d4Sdrh } 14059cfcf5d4Sdrh } 14062d401ab8Sdrh sqlite3VdbeJumpHere(v, j3); 14072d401ab8Sdrh sqlite3ReleaseTempReg(pParse, regR); 14089cfcf5d4Sdrh } 1409de630353Sdanielk1977 1410de630353Sdanielk1977 if( pbMayReplace ){ 1411de630353Sdanielk1977 *pbMayReplace = seenReplace; 1412de630353Sdanielk1977 } 14139cfcf5d4Sdrh } 14140ca3e24bSdrh 14150ca3e24bSdrh /* 14160ca3e24bSdrh ** This routine generates code to finish the INSERT or UPDATE operation 14174adee20fSdanielk1977 ** that was started by a prior call to sqlite3GenerateConstraintChecks. 141804adf416Sdrh ** A consecutive range of registers starting at regRowid contains the 141904adf416Sdrh ** rowid and the content to be inserted. 14200ca3e24bSdrh ** 1421b419a926Sdrh ** The arguments to this routine should be the same as the first six 14224adee20fSdanielk1977 ** arguments to sqlite3GenerateConstraintChecks. 14230ca3e24bSdrh */ 14244adee20fSdanielk1977 void sqlite3CompleteInsertion( 14250ca3e24bSdrh Parse *pParse, /* The parser context */ 14260ca3e24bSdrh Table *pTab, /* the table into which we are inserting */ 142704adf416Sdrh int baseCur, /* Index of a read/write cursor pointing at pTab */ 142804adf416Sdrh int regRowid, /* Range of content */ 1429aa9b8963Sdrh int *aRegIdx, /* Register used by each index. 0 for unused indices */ 143070ce3f0cSdrh int isUpdate, /* True for UPDATE, False for INSERT */ 1431de630353Sdanielk1977 int appendBias, /* True if this is likely to be an append */ 1432de630353Sdanielk1977 int useSeekResult /* True to set the USESEEKRESULT flag on OP_[Idx]Insert */ 14330ca3e24bSdrh ){ 14340ca3e24bSdrh int i; 14350ca3e24bSdrh Vdbe *v; 14360ca3e24bSdrh int nIdx; 14370ca3e24bSdrh Index *pIdx; 14381bd10f8aSdrh u8 pik_flags; 143904adf416Sdrh int regData; 1440b7654111Sdrh int regRec; 14410ca3e24bSdrh 14424adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 14430ca3e24bSdrh assert( v!=0 ); 1444417be79cSdrh assert( pTab->pSelect==0 ); /* This table is not a VIEW */ 14450ca3e24bSdrh for(nIdx=0, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, nIdx++){} 14460ca3e24bSdrh for(i=nIdx-1; i>=0; i--){ 1447aa9b8963Sdrh if( aRegIdx[i]==0 ) continue; 144804adf416Sdrh sqlite3VdbeAddOp2(v, OP_IdxInsert, baseCur+i+1, aRegIdx[i]); 1449de630353Sdanielk1977 if( useSeekResult ){ 1450de630353Sdanielk1977 sqlite3VdbeChangeP5(v, OPFLAG_USESEEKRESULT); 1451de630353Sdanielk1977 } 14520ca3e24bSdrh } 145304adf416Sdrh regData = regRowid + 1; 1454b7654111Sdrh regRec = sqlite3GetTempReg(pParse); 14551db639ceSdrh sqlite3VdbeAddOp3(v, OP_MakeRecord, regData, pTab->nCol, regRec); 1456a37cdde0Sdanielk1977 sqlite3TableAffinityStr(v, pTab); 1457da250ea5Sdrh sqlite3ExprCacheAffinityChange(pParse, regData, pTab->nCol); 14584794f735Sdrh if( pParse->nested ){ 14594794f735Sdrh pik_flags = 0; 14604794f735Sdrh }else{ 146194eb6a14Sdanielk1977 pik_flags = OPFLAG_NCHANGE; 146294eb6a14Sdanielk1977 pik_flags |= (isUpdate?OPFLAG_ISUPDATE:OPFLAG_LASTROWID); 14634794f735Sdrh } 1464e4d90813Sdrh if( appendBias ){ 1465e4d90813Sdrh pik_flags |= OPFLAG_APPEND; 1466e4d90813Sdrh } 1467de630353Sdanielk1977 if( useSeekResult ){ 1468de630353Sdanielk1977 pik_flags |= OPFLAG_USESEEKRESULT; 1469de630353Sdanielk1977 } 1470b7654111Sdrh sqlite3VdbeAddOp3(v, OP_Insert, baseCur, regRec, regRowid); 147194eb6a14Sdanielk1977 if( !pParse->nested ){ 14728d129422Sdrh sqlite3VdbeChangeP4(v, -1, pTab->zName, P4_TRANSIENT); 147394eb6a14Sdanielk1977 } 1474b7654111Sdrh sqlite3VdbeChangeP5(v, pik_flags); 14750ca3e24bSdrh } 1476cd44690aSdrh 1477cd44690aSdrh /* 1478290c1948Sdrh ** Generate code that will open cursors for a table and for all 147904adf416Sdrh ** indices of that table. The "baseCur" parameter is the cursor number used 1480cd44690aSdrh ** for the table. Indices are opened on subsequent cursors. 1481aa9b8963Sdrh ** 1482aa9b8963Sdrh ** Return the number of indices on the table. 1483cd44690aSdrh */ 1484aa9b8963Sdrh int sqlite3OpenTableAndIndices( 1485290c1948Sdrh Parse *pParse, /* Parsing context */ 1486290c1948Sdrh Table *pTab, /* Table to be opened */ 148704adf416Sdrh int baseCur, /* Cursor number assigned to the table */ 1488290c1948Sdrh int op /* OP_OpenRead or OP_OpenWrite */ 1489290c1948Sdrh ){ 1490cd44690aSdrh int i; 14914cbdda9eSdrh int iDb; 1492cd44690aSdrh Index *pIdx; 14934cbdda9eSdrh Vdbe *v; 14944cbdda9eSdrh 1495aa9b8963Sdrh if( IsVirtual(pTab) ) return 0; 14964cbdda9eSdrh iDb = sqlite3SchemaToIndex(pParse->db, pTab->pSchema); 14974cbdda9eSdrh v = sqlite3GetVdbe(pParse); 1498cd44690aSdrh assert( v!=0 ); 149904adf416Sdrh sqlite3OpenTable(pParse, baseCur, iDb, pTab, op); 1500cd44690aSdrh for(i=1, pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext, i++){ 1501b3bf556eSdanielk1977 KeyInfo *pKey = sqlite3IndexKeyinfo(pParse, pIdx); 1502da184236Sdanielk1977 assert( pIdx->pSchema==pTab->pSchema ); 150304adf416Sdrh sqlite3VdbeAddOp4(v, op, i+baseCur, pIdx->tnum, iDb, 150466a5167bSdrh (char*)pKey, P4_KEYINFO_HANDOFF); 1505207872a4Sdanielk1977 VdbeComment((v, "%s", pIdx->zName)); 1506cd44690aSdrh } 15071b7ecbb4Sdrh if( pParse->nTab<baseCur+i ){ 150804adf416Sdrh pParse->nTab = baseCur+i; 1509290c1948Sdrh } 1510aa9b8963Sdrh return i-1; 1511cd44690aSdrh } 15129d9cf229Sdrh 151391c58e23Sdrh 151491c58e23Sdrh #ifdef SQLITE_TEST 151591c58e23Sdrh /* 151691c58e23Sdrh ** The following global variable is incremented whenever the 151791c58e23Sdrh ** transfer optimization is used. This is used for testing 151891c58e23Sdrh ** purposes only - to make sure the transfer optimization really 151991c58e23Sdrh ** is happening when it is suppose to. 152091c58e23Sdrh */ 152191c58e23Sdrh int sqlite3_xferopt_count; 152291c58e23Sdrh #endif /* SQLITE_TEST */ 152391c58e23Sdrh 152491c58e23Sdrh 15259d9cf229Sdrh #ifndef SQLITE_OMIT_XFER_OPT 15269d9cf229Sdrh /* 15279d9cf229Sdrh ** Check to collation names to see if they are compatible. 15289d9cf229Sdrh */ 15299d9cf229Sdrh static int xferCompatibleCollation(const char *z1, const char *z2){ 15309d9cf229Sdrh if( z1==0 ){ 15319d9cf229Sdrh return z2==0; 15329d9cf229Sdrh } 15339d9cf229Sdrh if( z2==0 ){ 15349d9cf229Sdrh return 0; 15359d9cf229Sdrh } 15369d9cf229Sdrh return sqlite3StrICmp(z1, z2)==0; 15379d9cf229Sdrh } 15389d9cf229Sdrh 15399d9cf229Sdrh 15409d9cf229Sdrh /* 15419d9cf229Sdrh ** Check to see if index pSrc is compatible as a source of data 15429d9cf229Sdrh ** for index pDest in an insert transfer optimization. The rules 15439d9cf229Sdrh ** for a compatible index: 15449d9cf229Sdrh ** 15459d9cf229Sdrh ** * The index is over the same set of columns 15469d9cf229Sdrh ** * The same DESC and ASC markings occurs on all columns 15479d9cf229Sdrh ** * The same onError processing (OE_Abort, OE_Ignore, etc) 15489d9cf229Sdrh ** * The same collating sequence on each column 15499d9cf229Sdrh */ 15509d9cf229Sdrh static int xferCompatibleIndex(Index *pDest, Index *pSrc){ 15519d9cf229Sdrh int i; 15529d9cf229Sdrh assert( pDest && pSrc ); 15539d9cf229Sdrh assert( pDest->pTable!=pSrc->pTable ); 15549d9cf229Sdrh if( pDest->nColumn!=pSrc->nColumn ){ 15559d9cf229Sdrh return 0; /* Different number of columns */ 15569d9cf229Sdrh } 15579d9cf229Sdrh if( pDest->onError!=pSrc->onError ){ 15589d9cf229Sdrh return 0; /* Different conflict resolution strategies */ 15599d9cf229Sdrh } 15609d9cf229Sdrh for(i=0; i<pSrc->nColumn; i++){ 15619d9cf229Sdrh if( pSrc->aiColumn[i]!=pDest->aiColumn[i] ){ 15629d9cf229Sdrh return 0; /* Different columns indexed */ 15639d9cf229Sdrh } 15649d9cf229Sdrh if( pSrc->aSortOrder[i]!=pDest->aSortOrder[i] ){ 15659d9cf229Sdrh return 0; /* Different sort orders */ 15669d9cf229Sdrh } 15673f6e781dSdrh if( !xferCompatibleCollation(pSrc->azColl[i],pDest->azColl[i]) ){ 156860a713c6Sdrh return 0; /* Different collating sequences */ 15699d9cf229Sdrh } 15709d9cf229Sdrh } 15719d9cf229Sdrh 15729d9cf229Sdrh /* If no test above fails then the indices must be compatible */ 15739d9cf229Sdrh return 1; 15749d9cf229Sdrh } 15759d9cf229Sdrh 15769d9cf229Sdrh /* 15779d9cf229Sdrh ** Attempt the transfer optimization on INSERTs of the form 15789d9cf229Sdrh ** 15799d9cf229Sdrh ** INSERT INTO tab1 SELECT * FROM tab2; 15809d9cf229Sdrh ** 1581*ccdf1baeSdrh ** The xfer optimization transfers raw records from tab2 over to tab1. 1582*ccdf1baeSdrh ** Columns are not decoded and reassemblied, which greatly improves 1583*ccdf1baeSdrh ** performance. Raw index records are transferred in the same way. 15849d9cf229Sdrh ** 1585*ccdf1baeSdrh ** The xfer optimization is only attempted if tab1 and tab2 are compatible. 1586*ccdf1baeSdrh ** There are lots of rules for determining compatibility - see comments 1587*ccdf1baeSdrh ** embedded in the code for details. 15889d9cf229Sdrh ** 1589*ccdf1baeSdrh ** This routine returns TRUE if the optimization is guaranteed to be used. 1590*ccdf1baeSdrh ** Sometimes the xfer optimization will only work if the destination table 1591*ccdf1baeSdrh ** is empty - a factor that can only be determined at run-time. In that 1592*ccdf1baeSdrh ** case, this routine generates code for the xfer optimization but also 1593*ccdf1baeSdrh ** does a test to see if the destination table is empty and jumps over the 1594*ccdf1baeSdrh ** xfer optimization code if the test fails. In that case, this routine 1595*ccdf1baeSdrh ** returns FALSE so that the caller will know to go ahead and generate 1596*ccdf1baeSdrh ** an unoptimized transfer. This routine also returns FALSE if there 1597*ccdf1baeSdrh ** is no chance that the xfer optimization can be applied. 15989d9cf229Sdrh ** 1599*ccdf1baeSdrh ** This optimization is particularly useful at making VACUUM run faster. 16009d9cf229Sdrh */ 16019d9cf229Sdrh static int xferOptimization( 16029d9cf229Sdrh Parse *pParse, /* Parser context */ 16039d9cf229Sdrh Table *pDest, /* The table we are inserting into */ 16049d9cf229Sdrh Select *pSelect, /* A SELECT statement to use as the data source */ 16059d9cf229Sdrh int onError, /* How to handle constraint errors */ 16069d9cf229Sdrh int iDbDest /* The database of pDest */ 16079d9cf229Sdrh ){ 16089d9cf229Sdrh ExprList *pEList; /* The result set of the SELECT */ 16099d9cf229Sdrh Table *pSrc; /* The table in the FROM clause of SELECT */ 16109d9cf229Sdrh Index *pSrcIdx, *pDestIdx; /* Source and destination indices */ 16119d9cf229Sdrh struct SrcList_item *pItem; /* An element of pSelect->pSrc */ 16129d9cf229Sdrh int i; /* Loop counter */ 16139d9cf229Sdrh int iDbSrc; /* The database of pSrc */ 16149d9cf229Sdrh int iSrc, iDest; /* Cursors from source and destination */ 16159d9cf229Sdrh int addr1, addr2; /* Loop addresses */ 16169d9cf229Sdrh int emptyDestTest; /* Address of test for empty pDest */ 16179d9cf229Sdrh int emptySrcTest; /* Address of test for empty pSrc */ 16189d9cf229Sdrh Vdbe *v; /* The VDBE we are building */ 16199d9cf229Sdrh KeyInfo *pKey; /* Key information for an index */ 16206a288a33Sdrh int regAutoinc; /* Memory register used by AUTOINC */ 1621f33c9fadSdrh int destHasUniqueIdx = 0; /* True if pDest has a UNIQUE index */ 1622b7654111Sdrh int regData, regRowid; /* Registers holding data and rowid */ 16239d9cf229Sdrh 16249d9cf229Sdrh if( pSelect==0 ){ 16259d9cf229Sdrh return 0; /* Must be of the form INSERT INTO ... SELECT ... */ 16269d9cf229Sdrh } 16272f886d1dSdanielk1977 if( sqlite3TriggerList(pParse, pDest) ){ 16289d9cf229Sdrh return 0; /* tab1 must not have triggers */ 16299d9cf229Sdrh } 16309d9cf229Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 16317d10d5a6Sdrh if( pDest->tabFlags & TF_Virtual ){ 16329d9cf229Sdrh return 0; /* tab1 must not be a virtual table */ 16339d9cf229Sdrh } 16349d9cf229Sdrh #endif 16359d9cf229Sdrh if( onError==OE_Default ){ 1636e7224a01Sdrh if( pDest->iPKey>=0 ) onError = pDest->keyConf; 1637e7224a01Sdrh if( onError==OE_Default ) onError = OE_Abort; 16389d9cf229Sdrh } 16395ce240a6Sdanielk1977 assert(pSelect->pSrc); /* allocated even if there is no FROM clause */ 16409d9cf229Sdrh if( pSelect->pSrc->nSrc!=1 ){ 16419d9cf229Sdrh return 0; /* FROM clause must have exactly one term */ 16429d9cf229Sdrh } 16439d9cf229Sdrh if( pSelect->pSrc->a[0].pSelect ){ 16449d9cf229Sdrh return 0; /* FROM clause cannot contain a subquery */ 16459d9cf229Sdrh } 16469d9cf229Sdrh if( pSelect->pWhere ){ 16479d9cf229Sdrh return 0; /* SELECT may not have a WHERE clause */ 16489d9cf229Sdrh } 16499d9cf229Sdrh if( pSelect->pOrderBy ){ 16509d9cf229Sdrh return 0; /* SELECT may not have an ORDER BY clause */ 16519d9cf229Sdrh } 16528103b7d2Sdrh /* Do not need to test for a HAVING clause. If HAVING is present but 16538103b7d2Sdrh ** there is no ORDER BY, we will get an error. */ 16549d9cf229Sdrh if( pSelect->pGroupBy ){ 16559d9cf229Sdrh return 0; /* SELECT may not have a GROUP BY clause */ 16569d9cf229Sdrh } 16579d9cf229Sdrh if( pSelect->pLimit ){ 16589d9cf229Sdrh return 0; /* SELECT may not have a LIMIT clause */ 16599d9cf229Sdrh } 16608103b7d2Sdrh assert( pSelect->pOffset==0 ); /* Must be so if pLimit==0 */ 16619d9cf229Sdrh if( pSelect->pPrior ){ 16629d9cf229Sdrh return 0; /* SELECT may not be a compound query */ 16639d9cf229Sdrh } 16647d10d5a6Sdrh if( pSelect->selFlags & SF_Distinct ){ 16659d9cf229Sdrh return 0; /* SELECT may not be DISTINCT */ 16669d9cf229Sdrh } 16679d9cf229Sdrh pEList = pSelect->pEList; 16689d9cf229Sdrh assert( pEList!=0 ); 16699d9cf229Sdrh if( pEList->nExpr!=1 ){ 16709d9cf229Sdrh return 0; /* The result set must have exactly one column */ 16719d9cf229Sdrh } 16729d9cf229Sdrh assert( pEList->a[0].pExpr ); 16739d9cf229Sdrh if( pEList->a[0].pExpr->op!=TK_ALL ){ 16749d9cf229Sdrh return 0; /* The result set must be the special operator "*" */ 16759d9cf229Sdrh } 16769d9cf229Sdrh 16779d9cf229Sdrh /* At this point we have established that the statement is of the 16789d9cf229Sdrh ** correct syntactic form to participate in this optimization. Now 16799d9cf229Sdrh ** we have to check the semantics. 16809d9cf229Sdrh */ 16819d9cf229Sdrh pItem = pSelect->pSrc->a; 1682ca424114Sdrh pSrc = sqlite3LocateTable(pParse, 0, pItem->zName, pItem->zDatabase); 16839d9cf229Sdrh if( pSrc==0 ){ 16849d9cf229Sdrh return 0; /* FROM clause does not contain a real table */ 16859d9cf229Sdrh } 16869d9cf229Sdrh if( pSrc==pDest ){ 16879d9cf229Sdrh return 0; /* tab1 and tab2 may not be the same table */ 16889d9cf229Sdrh } 16899d9cf229Sdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 16907d10d5a6Sdrh if( pSrc->tabFlags & TF_Virtual ){ 16919d9cf229Sdrh return 0; /* tab2 must not be a virtual table */ 16929d9cf229Sdrh } 16939d9cf229Sdrh #endif 16949d9cf229Sdrh if( pSrc->pSelect ){ 16959d9cf229Sdrh return 0; /* tab2 may not be a view */ 16969d9cf229Sdrh } 16979d9cf229Sdrh if( pDest->nCol!=pSrc->nCol ){ 16989d9cf229Sdrh return 0; /* Number of columns must be the same in tab1 and tab2 */ 16999d9cf229Sdrh } 17009d9cf229Sdrh if( pDest->iPKey!=pSrc->iPKey ){ 17019d9cf229Sdrh return 0; /* Both tables must have the same INTEGER PRIMARY KEY */ 17029d9cf229Sdrh } 17039d9cf229Sdrh for(i=0; i<pDest->nCol; i++){ 17049d9cf229Sdrh if( pDest->aCol[i].affinity!=pSrc->aCol[i].affinity ){ 17059d9cf229Sdrh return 0; /* Affinity must be the same on all columns */ 17069d9cf229Sdrh } 17079d9cf229Sdrh if( !xferCompatibleCollation(pDest->aCol[i].zColl, pSrc->aCol[i].zColl) ){ 17089d9cf229Sdrh return 0; /* Collating sequence must be the same on all columns */ 17099d9cf229Sdrh } 17109d9cf229Sdrh if( pDest->aCol[i].notNull && !pSrc->aCol[i].notNull ){ 17119d9cf229Sdrh return 0; /* tab2 must be NOT NULL if tab1 is */ 17129d9cf229Sdrh } 17139d9cf229Sdrh } 17149d9cf229Sdrh for(pDestIdx=pDest->pIndex; pDestIdx; pDestIdx=pDestIdx->pNext){ 1715f33c9fadSdrh if( pDestIdx->onError!=OE_None ){ 1716f33c9fadSdrh destHasUniqueIdx = 1; 1717f33c9fadSdrh } 17189d9cf229Sdrh for(pSrcIdx=pSrc->pIndex; pSrcIdx; pSrcIdx=pSrcIdx->pNext){ 17199d9cf229Sdrh if( xferCompatibleIndex(pDestIdx, pSrcIdx) ) break; 17209d9cf229Sdrh } 17219d9cf229Sdrh if( pSrcIdx==0 ){ 17229d9cf229Sdrh return 0; /* pDestIdx has no corresponding index in pSrc */ 17239d9cf229Sdrh } 17249d9cf229Sdrh } 17257fc2f41bSdrh #ifndef SQLITE_OMIT_CHECK 17261d9da70aSdrh if( pDest->pCheck && sqlite3ExprCompare(pSrc->pCheck, pDest->pCheck) ){ 17278103b7d2Sdrh return 0; /* Tables have different CHECK constraints. Ticket #2252 */ 17288103b7d2Sdrh } 17297fc2f41bSdrh #endif 1730713de341Sdrh #ifndef SQLITE_OMIT_FOREIGN_KEY 1731713de341Sdrh /* Disallow the transfer optimization if the destination table constains 1732713de341Sdrh ** any foreign key constraints. This is more restrictive than necessary. 1733713de341Sdrh ** But the main beneficiary of the transfer optimization is the VACUUM 1734713de341Sdrh ** command, and the VACUUM command disables foreign key constraints. So 1735713de341Sdrh ** the extra complication to make this rule less restrictive is probably 1736713de341Sdrh ** not worth the effort. Ticket [6284df89debdfa61db8073e062908af0c9b6118e] 1737713de341Sdrh */ 1738713de341Sdrh if( (pParse->db->flags & SQLITE_ForeignKeys)!=0 && pDest->pFKey!=0 ){ 1739713de341Sdrh return 0; 1740713de341Sdrh } 1741713de341Sdrh #endif 17421696124dSdan if( (pParse->db->flags & SQLITE_CountRows)!=0 ){ 1743*ccdf1baeSdrh return 0; /* xfer opt does not play well with PRAGMA count_changes */ 17441696124dSdan } 17459d9cf229Sdrh 1746*ccdf1baeSdrh /* If we get this far, it means that the xfer optimization is at 1747*ccdf1baeSdrh ** least a possibility, though it might only work if the destination 1748*ccdf1baeSdrh ** table (tab1) is initially empty. 17499d9cf229Sdrh */ 1750dd73521bSdrh #ifdef SQLITE_TEST 1751dd73521bSdrh sqlite3_xferopt_count++; 1752dd73521bSdrh #endif 17539d9cf229Sdrh iDbSrc = sqlite3SchemaToIndex(pParse->db, pSrc->pSchema); 17549d9cf229Sdrh v = sqlite3GetVdbe(pParse); 1755f53e9b5aSdrh sqlite3CodeVerifySchema(pParse, iDbSrc); 17569d9cf229Sdrh iSrc = pParse->nTab++; 17579d9cf229Sdrh iDest = pParse->nTab++; 17586a288a33Sdrh regAutoinc = autoIncBegin(pParse, iDbDest, pDest); 17599d9cf229Sdrh sqlite3OpenTable(pParse, iDest, iDbDest, pDest, OP_OpenWrite); 1760*ccdf1baeSdrh if( (pDest->iPKey<0 && pDest->pIndex!=0) /* (1) */ 1761*ccdf1baeSdrh || destHasUniqueIdx /* (2) */ 1762*ccdf1baeSdrh || (onError!=OE_Abort && onError!=OE_Rollback) /* (3) */ 1763*ccdf1baeSdrh ){ 1764*ccdf1baeSdrh /* In some circumstances, we are able to run the xfer optimization 1765*ccdf1baeSdrh ** only if the destination table is initially empty. This code makes 1766*ccdf1baeSdrh ** that determination. Conditions under which the destination must 1767*ccdf1baeSdrh ** be empty: 1768f33c9fadSdrh ** 1769*ccdf1baeSdrh ** (1) There is no INTEGER PRIMARY KEY but there are indices. 1770*ccdf1baeSdrh ** (If the destination is not initially empty, the rowid fields 1771*ccdf1baeSdrh ** of index entries might need to change.) 1772*ccdf1baeSdrh ** 1773*ccdf1baeSdrh ** (2) The destination has a unique index. (The xfer optimization 1774*ccdf1baeSdrh ** is unable to test uniqueness.) 1775*ccdf1baeSdrh ** 1776*ccdf1baeSdrh ** (3) onError is something other than OE_Abort and OE_Rollback. 17779d9cf229Sdrh */ 177866a5167bSdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rewind, iDest, 0); 177966a5167bSdrh emptyDestTest = sqlite3VdbeAddOp2(v, OP_Goto, 0, 0); 17809d9cf229Sdrh sqlite3VdbeJumpHere(v, addr1); 17819d9cf229Sdrh }else{ 17829d9cf229Sdrh emptyDestTest = 0; 17839d9cf229Sdrh } 17849d9cf229Sdrh sqlite3OpenTable(pParse, iSrc, iDbSrc, pSrc, OP_OpenRead); 178566a5167bSdrh emptySrcTest = sqlite3VdbeAddOp2(v, OP_Rewind, iSrc, 0); 1786b7654111Sdrh regData = sqlite3GetTempReg(pParse); 1787b7654111Sdrh regRowid = sqlite3GetTempReg(pParse); 178842242dedSdrh if( pDest->iPKey>=0 ){ 1789b7654111Sdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rowid, iSrc, regRowid); 1790b7654111Sdrh addr2 = sqlite3VdbeAddOp3(v, OP_NotExists, iDest, 0, regRowid); 1791e0af83acSdan sqlite3HaltConstraint( 1792e0af83acSdan pParse, onError, "PRIMARY KEY must be unique", P4_STATIC); 17939d9cf229Sdrh sqlite3VdbeJumpHere(v, addr2); 1794b7654111Sdrh autoIncStep(pParse, regAutoinc, regRowid); 1795bd36ba69Sdrh }else if( pDest->pIndex==0 ){ 1796b7654111Sdrh addr1 = sqlite3VdbeAddOp2(v, OP_NewRowid, iDest, regRowid); 179795bad4c7Sdrh }else{ 1798b7654111Sdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rowid, iSrc, regRowid); 17997d10d5a6Sdrh assert( (pDest->tabFlags & TF_Autoincrement)==0 ); 180095bad4c7Sdrh } 1801b7654111Sdrh sqlite3VdbeAddOp2(v, OP_RowData, iSrc, regData); 1802b7654111Sdrh sqlite3VdbeAddOp3(v, OP_Insert, iDest, regData, regRowid); 1803b7654111Sdrh sqlite3VdbeChangeP5(v, OPFLAG_NCHANGE|OPFLAG_LASTROWID|OPFLAG_APPEND); 18041f4aa337Sdanielk1977 sqlite3VdbeChangeP4(v, -1, pDest->zName, 0); 180566a5167bSdrh sqlite3VdbeAddOp2(v, OP_Next, iSrc, addr1); 18069d9cf229Sdrh for(pDestIdx=pDest->pIndex; pDestIdx; pDestIdx=pDestIdx->pNext){ 18071b7ecbb4Sdrh for(pSrcIdx=pSrc->pIndex; ALWAYS(pSrcIdx); pSrcIdx=pSrcIdx->pNext){ 18089d9cf229Sdrh if( xferCompatibleIndex(pDestIdx, pSrcIdx) ) break; 18099d9cf229Sdrh } 18109d9cf229Sdrh assert( pSrcIdx ); 181166a5167bSdrh sqlite3VdbeAddOp2(v, OP_Close, iSrc, 0); 181266a5167bSdrh sqlite3VdbeAddOp2(v, OP_Close, iDest, 0); 18139d9cf229Sdrh pKey = sqlite3IndexKeyinfo(pParse, pSrcIdx); 1814207872a4Sdanielk1977 sqlite3VdbeAddOp4(v, OP_OpenRead, iSrc, pSrcIdx->tnum, iDbSrc, 1815207872a4Sdanielk1977 (char*)pKey, P4_KEYINFO_HANDOFF); 1816d4e70ebdSdrh VdbeComment((v, "%s", pSrcIdx->zName)); 18179d9cf229Sdrh pKey = sqlite3IndexKeyinfo(pParse, pDestIdx); 1818207872a4Sdanielk1977 sqlite3VdbeAddOp4(v, OP_OpenWrite, iDest, pDestIdx->tnum, iDbDest, 181966a5167bSdrh (char*)pKey, P4_KEYINFO_HANDOFF); 1820207872a4Sdanielk1977 VdbeComment((v, "%s", pDestIdx->zName)); 182166a5167bSdrh addr1 = sqlite3VdbeAddOp2(v, OP_Rewind, iSrc, 0); 1822b7654111Sdrh sqlite3VdbeAddOp2(v, OP_RowKey, iSrc, regData); 1823b7654111Sdrh sqlite3VdbeAddOp3(v, OP_IdxInsert, iDest, regData, 1); 182466a5167bSdrh sqlite3VdbeAddOp2(v, OP_Next, iSrc, addr1+1); 18259d9cf229Sdrh sqlite3VdbeJumpHere(v, addr1); 18269d9cf229Sdrh } 18279d9cf229Sdrh sqlite3VdbeJumpHere(v, emptySrcTest); 1828b7654111Sdrh sqlite3ReleaseTempReg(pParse, regRowid); 1829b7654111Sdrh sqlite3ReleaseTempReg(pParse, regData); 183066a5167bSdrh sqlite3VdbeAddOp2(v, OP_Close, iSrc, 0); 183166a5167bSdrh sqlite3VdbeAddOp2(v, OP_Close, iDest, 0); 18329d9cf229Sdrh if( emptyDestTest ){ 183366a5167bSdrh sqlite3VdbeAddOp2(v, OP_Halt, SQLITE_OK, 0); 18349d9cf229Sdrh sqlite3VdbeJumpHere(v, emptyDestTest); 183566a5167bSdrh sqlite3VdbeAddOp2(v, OP_Close, iDest, 0); 18369d9cf229Sdrh return 0; 18379d9cf229Sdrh }else{ 18389d9cf229Sdrh return 1; 18399d9cf229Sdrh } 18409d9cf229Sdrh } 18419d9cf229Sdrh #endif /* SQLITE_OMIT_XFER_OPT */ 1842