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 ************************************************************************* 121ccde15dSdrh ** This file contains routines used for analyzing expressions and 13b19a2bc6Sdrh ** for generating VDBE code that evaluates expressions in SQLite. 14cce7d176Sdrh */ 15cce7d176Sdrh #include "sqliteInt.h" 16a2e00042Sdrh 1712abf408Sdrh /* Forward declarations */ 1812abf408Sdrh static void exprCodeBetween(Parse*,Expr*,int,void(*)(Parse*,Expr*,int,int),int); 1912abf408Sdrh static int exprCodeVector(Parse *pParse, Expr *p, int *piToFree); 2012abf408Sdrh 210dfa4f6fSdrh /* 220dfa4f6fSdrh ** Return the affinity character for a single column of a table. 230dfa4f6fSdrh */ 240dfa4f6fSdrh char sqlite3TableColumnAffinity(Table *pTab, int iCol){ 250dfa4f6fSdrh assert( iCol<pTab->nCol ); 260dfa4f6fSdrh return iCol>=0 ? pTab->aCol[iCol].affinity : SQLITE_AFF_INTEGER; 270dfa4f6fSdrh } 2812abf408Sdrh 29e014a838Sdanielk1977 /* 30e014a838Sdanielk1977 ** Return the 'affinity' of the expression pExpr if any. 31e014a838Sdanielk1977 ** 32e014a838Sdanielk1977 ** If pExpr is a column, a reference to a column via an 'AS' alias, 33e014a838Sdanielk1977 ** or a sub-select with a column as the return value, then the 34e014a838Sdanielk1977 ** affinity of that column is returned. Otherwise, 0x00 is returned, 35e014a838Sdanielk1977 ** indicating no affinity for the expression. 36e014a838Sdanielk1977 ** 3760ec914cSpeter.d.reid ** i.e. the WHERE clause expressions in the following statements all 38e014a838Sdanielk1977 ** have an affinity: 39e014a838Sdanielk1977 ** 40e014a838Sdanielk1977 ** CREATE TABLE t1(a); 41e014a838Sdanielk1977 ** SELECT * FROM t1 WHERE a; 42e014a838Sdanielk1977 ** SELECT a AS b FROM t1 WHERE b; 43e014a838Sdanielk1977 ** SELECT * FROM t1 WHERE (select a from t1); 44e014a838Sdanielk1977 */ 45e7375bfaSdrh char sqlite3ExprAffinity(const Expr *pExpr){ 46580c8c18Sdrh int op; 4746fe138dSdrh while( ExprHasProperty(pExpr, EP_Skip|EP_IfNullRow) ){ 489bb612f2Sdrh assert( pExpr->op==TK_COLLATE 499bb612f2Sdrh || pExpr->op==TK_IF_NULL_ROW 509bb612f2Sdrh || (pExpr->op==TK_REGISTER && pExpr->op2==TK_IF_NULL_ROW) ); 51a7d6db6aSdrh pExpr = pExpr->pLeft; 52a7d6db6aSdrh assert( pExpr!=0 ); 53a7d6db6aSdrh } 54580c8c18Sdrh op = pExpr->op; 55487e262fSdrh if( op==TK_SELECT ){ 566ab3a2ecSdanielk1977 assert( pExpr->flags&EP_xIsSelect ); 576af305deSdrh assert( pExpr->x.pSelect!=0 ); 586af305deSdrh assert( pExpr->x.pSelect->pEList!=0 ); 596af305deSdrh assert( pExpr->x.pSelect->pEList->a[0].pExpr!=0 ); 606ab3a2ecSdanielk1977 return sqlite3ExprAffinity(pExpr->x.pSelect->pEList->a[0].pExpr); 61a37cdde0Sdanielk1977 } 62db45bd5eSdrh if( op==TK_REGISTER ) op = pExpr->op2; 63487e262fSdrh #ifndef SQLITE_OMIT_CAST 64487e262fSdrh if( op==TK_CAST ){ 6533e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 66fdaac671Sdrh return sqlite3AffinityType(pExpr->u.zToken, 0); 67487e262fSdrh } 68487e262fSdrh #endif 69eda079cdSdrh if( (op==TK_AGG_COLUMN || op==TK_COLUMN) && pExpr->y.pTab ){ 70eda079cdSdrh return sqlite3TableColumnAffinity(pExpr->y.pTab, pExpr->iColumn); 717d10d5a6Sdrh } 7280aa5453Sdan if( op==TK_SELECT_COLUMN ){ 7380aa5453Sdan assert( pExpr->pLeft->flags&EP_xIsSelect ); 7480aa5453Sdan return sqlite3ExprAffinity( 7580aa5453Sdan pExpr->pLeft->x.pSelect->pEList->a[pExpr->iColumn].pExpr 7680aa5453Sdan ); 7780aa5453Sdan } 78db36e255Sdrh if( op==TK_VECTOR ){ 79db36e255Sdrh return sqlite3ExprAffinity(pExpr->x.pList->a[0].pExpr); 80db36e255Sdrh } 811194904bSdrh return pExpr->affExpr; 82a37cdde0Sdanielk1977 } 83a37cdde0Sdanielk1977 8453db1458Sdrh /* 858b4c40d8Sdrh ** Set the collating sequence for expression pExpr to be the collating 86ae80ddeaSdrh ** sequence named by pToken. Return a pointer to a new Expr node that 87ae80ddeaSdrh ** implements the COLLATE operator. 880a8a406eSdrh ** 890a8a406eSdrh ** If a memory allocation error occurs, that fact is recorded in pParse->db 900a8a406eSdrh ** and the pExpr parameter is returned unchanged. 918b4c40d8Sdrh */ 924ef7efadSdrh Expr *sqlite3ExprAddCollateToken( 934ef7efadSdrh Parse *pParse, /* Parsing context */ 944ef7efadSdrh Expr *pExpr, /* Add the "COLLATE" clause to this expression */ 9580103fc6Sdan const Token *pCollName, /* Name of collating sequence */ 9680103fc6Sdan int dequote /* True to dequote pCollName */ 974ef7efadSdrh ){ 989ffa258aSdrh assert( pExpr!=0 || pParse->db->mallocFailed ); 999ffa258aSdrh if( pExpr==0 ) return 0; 1009ffa258aSdrh if( pExpr->op==TK_VECTOR ){ 1019ffa258aSdrh ExprList *pList = pExpr->x.pList; 1029ffa258aSdrh if( ALWAYS(pList!=0) ){ 1039ffa258aSdrh int i; 1049ffa258aSdrh for(i=0; i<pList->nExpr; i++){ 1059ffa258aSdrh pList->a[i].pExpr = sqlite3ExprAddCollateToken(pParse,pList->a[i].pExpr, 1069ffa258aSdrh pCollName, dequote); 1079ffa258aSdrh } 1089ffa258aSdrh } 1099ffa258aSdrh }else if( pCollName->n>0 ){ 11080103fc6Sdan Expr *pNew = sqlite3ExprAlloc(pParse->db, TK_COLLATE, pCollName, dequote); 111ae80ddeaSdrh if( pNew ){ 112ae80ddeaSdrh pNew->pLeft = pExpr; 113a4c3c87eSdrh pNew->flags |= EP_Collate|EP_Skip; 1140a8a406eSdrh pExpr = pNew; 115ae80ddeaSdrh } 1160a8a406eSdrh } 1170a8a406eSdrh return pExpr; 1180a8a406eSdrh } 1190a8a406eSdrh Expr *sqlite3ExprAddCollateString(Parse *pParse, Expr *pExpr, const char *zC){ 1200a8a406eSdrh Token s; 121261d8a51Sdrh assert( zC!=0 ); 12240aced5cSdrh sqlite3TokenInit(&s, (char*)zC); 12380103fc6Sdan return sqlite3ExprAddCollateToken(pParse, pExpr, &s, 0); 1240a8a406eSdrh } 1250a8a406eSdrh 1260a8a406eSdrh /* 1270d950af3Sdrh ** Skip over any TK_COLLATE operators. 1280a8a406eSdrh */ 1290a8a406eSdrh Expr *sqlite3ExprSkipCollate(Expr *pExpr){ 1300d950af3Sdrh while( pExpr && ExprHasProperty(pExpr, EP_Skip) ){ 13146fe138dSdrh assert( pExpr->op==TK_COLLATE ); 1320d950af3Sdrh pExpr = pExpr->pLeft; 1330d950af3Sdrh } 1340d950af3Sdrh return pExpr; 1350d950af3Sdrh } 1360d950af3Sdrh 1370d950af3Sdrh /* 1380d950af3Sdrh ** Skip over any TK_COLLATE operators and/or any unlikely() 1390d950af3Sdrh ** or likelihood() or likely() functions at the root of an 1400d950af3Sdrh ** expression. 1410d950af3Sdrh */ 1420d950af3Sdrh Expr *sqlite3ExprSkipCollateAndLikely(Expr *pExpr){ 143a7d6db6aSdrh while( pExpr && ExprHasProperty(pExpr, EP_Skip|EP_Unlikely) ){ 144a4c3c87eSdrh if( ExprHasProperty(pExpr, EP_Unlikely) ){ 145cca9f3d2Sdrh assert( !ExprHasProperty(pExpr, EP_xIsSelect) ); 146cca9f3d2Sdrh assert( pExpr->x.pList->nExpr>0 ); 147a4c3c87eSdrh assert( pExpr->op==TK_FUNCTION ); 148cca9f3d2Sdrh pExpr = pExpr->x.pList->a[0].pExpr; 149cca9f3d2Sdrh }else{ 15046fe138dSdrh assert( pExpr->op==TK_COLLATE ); 151d91eba96Sdrh pExpr = pExpr->pLeft; 152cca9f3d2Sdrh } 153d91eba96Sdrh } 1540a8a406eSdrh return pExpr; 1558b4c40d8Sdrh } 1568b4c40d8Sdrh 1578b4c40d8Sdrh /* 158ae80ddeaSdrh ** Return the collation sequence for the expression pExpr. If 159ae80ddeaSdrh ** there is no defined collating sequence, return NULL. 160ae80ddeaSdrh ** 16170efa84dSdrh ** See also: sqlite3ExprNNCollSeq() 16270efa84dSdrh ** 16370efa84dSdrh ** The sqlite3ExprNNCollSeq() works the same exact that it returns the 16470efa84dSdrh ** default collation if pExpr has no defined collation. 16570efa84dSdrh ** 166ae80ddeaSdrh ** The collating sequence might be determined by a COLLATE operator 167ae80ddeaSdrh ** or by the presence of a column with a defined collating sequence. 168ae80ddeaSdrh ** COLLATE operators take first precedence. Left operands take 169ae80ddeaSdrh ** precedence over right operands. 1700202b29eSdanielk1977 */ 171e7375bfaSdrh CollSeq *sqlite3ExprCollSeq(Parse *pParse, const Expr *pExpr){ 172ae80ddeaSdrh sqlite3 *db = pParse->db; 1737cedc8d4Sdanielk1977 CollSeq *pColl = 0; 174e7375bfaSdrh const Expr *p = pExpr; 175261d8a51Sdrh while( p ){ 176ae80ddeaSdrh int op = p->op; 177cb0e04f9Sdrh if( op==TK_REGISTER ) op = p->op2; 178cb0e04f9Sdrh if( (op==TK_AGG_COLUMN || op==TK_COLUMN || op==TK_TRIGGER) 179eda079cdSdrh && p->y.pTab!=0 180ae80ddeaSdrh ){ 181eda079cdSdrh /* op==TK_REGISTER && p->y.pTab!=0 happens when pExpr was originally 1827d10d5a6Sdrh ** a TK_COLUMN but was previously evaluated and cached in a register */ 1837d10d5a6Sdrh int j = p->iColumn; 1847d10d5a6Sdrh if( j>=0 ){ 185eda079cdSdrh const char *zColl = p->y.pTab->aCol[j].zColl; 186c4a64facSdrh pColl = sqlite3FindCollSeq(db, ENC(db), zColl, 0); 1870202b29eSdanielk1977 } 1887d10d5a6Sdrh break; 1897d10d5a6Sdrh } 190e081d73cSdrh if( op==TK_CAST || op==TK_UPLUS ){ 191e081d73cSdrh p = p->pLeft; 192e081d73cSdrh continue; 193e081d73cSdrh } 194269d322dSdrh if( op==TK_VECTOR ){ 195269d322dSdrh p = p->x.pList->a[0].pExpr; 196269d322dSdrh continue; 197269d322dSdrh } 198cb0e04f9Sdrh if( op==TK_COLLATE ){ 199e081d73cSdrh pColl = sqlite3GetCollSeq(pParse, ENC(db), 0, p->u.zToken); 200e081d73cSdrh break; 201e081d73cSdrh } 202ae80ddeaSdrh if( p->flags & EP_Collate ){ 2032308ed38Sdrh if( p->pLeft && (p->pLeft->flags & EP_Collate)!=0 ){ 2047d10d5a6Sdrh p = p->pLeft; 205ae80ddeaSdrh }else{ 2062308ed38Sdrh Expr *pNext = p->pRight; 2076728cd91Sdrh /* The Expr.x union is never used at the same time as Expr.pRight */ 2086728cd91Sdrh assert( p->x.pList==0 || p->pRight==0 ); 20992a2824cSdrh if( p->x.pList!=0 21092a2824cSdrh && !db->mallocFailed 21192a2824cSdrh && ALWAYS(!ExprHasProperty(p, EP_xIsSelect)) 21292a2824cSdrh ){ 2132308ed38Sdrh int i; 2145b107654Sdrh for(i=0; ALWAYS(i<p->x.pList->nExpr); i++){ 2152308ed38Sdrh if( ExprHasProperty(p->x.pList->a[i].pExpr, EP_Collate) ){ 2162308ed38Sdrh pNext = p->x.pList->a[i].pExpr; 2172308ed38Sdrh break; 2182308ed38Sdrh } 2192308ed38Sdrh } 2202308ed38Sdrh } 2212308ed38Sdrh p = pNext; 222ae80ddeaSdrh } 223ae80ddeaSdrh }else{ 224ae80ddeaSdrh break; 225ae80ddeaSdrh } 2260202b29eSdanielk1977 } 2277cedc8d4Sdanielk1977 if( sqlite3CheckCollSeq(pParse, pColl) ){ 2287cedc8d4Sdanielk1977 pColl = 0; 2297cedc8d4Sdanielk1977 } 2307cedc8d4Sdanielk1977 return pColl; 2310202b29eSdanielk1977 } 2320202b29eSdanielk1977 2330202b29eSdanielk1977 /* 23470efa84dSdrh ** Return the collation sequence for the expression pExpr. If 23570efa84dSdrh ** there is no defined collating sequence, return a pointer to the 23670efa84dSdrh ** defautl collation sequence. 23770efa84dSdrh ** 23870efa84dSdrh ** See also: sqlite3ExprCollSeq() 23970efa84dSdrh ** 24070efa84dSdrh ** The sqlite3ExprCollSeq() routine works the same except that it 24170efa84dSdrh ** returns NULL if there is no defined collation. 24270efa84dSdrh */ 243e7375bfaSdrh CollSeq *sqlite3ExprNNCollSeq(Parse *pParse, const Expr *pExpr){ 24470efa84dSdrh CollSeq *p = sqlite3ExprCollSeq(pParse, pExpr); 24570efa84dSdrh if( p==0 ) p = pParse->db->pDfltColl; 24670efa84dSdrh assert( p!=0 ); 24770efa84dSdrh return p; 24870efa84dSdrh } 24970efa84dSdrh 25070efa84dSdrh /* 25170efa84dSdrh ** Return TRUE if the two expressions have equivalent collating sequences. 25270efa84dSdrh */ 253e7375bfaSdrh int sqlite3ExprCollSeqMatch(Parse *pParse, const Expr *pE1, const Expr *pE2){ 25470efa84dSdrh CollSeq *pColl1 = sqlite3ExprNNCollSeq(pParse, pE1); 25570efa84dSdrh CollSeq *pColl2 = sqlite3ExprNNCollSeq(pParse, pE2); 25670efa84dSdrh return sqlite3StrICmp(pColl1->zName, pColl2->zName)==0; 25770efa84dSdrh } 25870efa84dSdrh 25970efa84dSdrh /* 260626a879aSdrh ** pExpr is an operand of a comparison operator. aff2 is the 261626a879aSdrh ** type affinity of the other operand. This routine returns the 26253db1458Sdrh ** type affinity that should be used for the comparison operator. 26353db1458Sdrh */ 264e7375bfaSdrh char sqlite3CompareAffinity(const Expr *pExpr, char aff2){ 265bf3b721fSdanielk1977 char aff1 = sqlite3ExprAffinity(pExpr); 26696fb16eeSdrh if( aff1>SQLITE_AFF_NONE && aff2>SQLITE_AFF_NONE ){ 2678df447f0Sdrh /* Both sides of the comparison are columns. If one has numeric 2688df447f0Sdrh ** affinity, use that. Otherwise use no affinity. 269e014a838Sdanielk1977 */ 2708a51256cSdrh if( sqlite3IsNumericAffinity(aff1) || sqlite3IsNumericAffinity(aff2) ){ 271e014a838Sdanielk1977 return SQLITE_AFF_NUMERIC; 272e014a838Sdanielk1977 }else{ 27305883a34Sdrh return SQLITE_AFF_BLOB; 274e014a838Sdanielk1977 } 275e014a838Sdanielk1977 }else{ 276e014a838Sdanielk1977 /* One side is a column, the other is not. Use the columns affinity. */ 27796fb16eeSdrh assert( aff1<=SQLITE_AFF_NONE || aff2<=SQLITE_AFF_NONE ); 27896fb16eeSdrh return (aff1<=SQLITE_AFF_NONE ? aff2 : aff1) | SQLITE_AFF_NONE; 279e014a838Sdanielk1977 } 280e014a838Sdanielk1977 } 281e014a838Sdanielk1977 28253db1458Sdrh /* 28353db1458Sdrh ** pExpr is a comparison operator. Return the type affinity that should 28453db1458Sdrh ** be applied to both operands prior to doing the comparison. 28553db1458Sdrh */ 286e7375bfaSdrh static char comparisonAffinity(const Expr *pExpr){ 287e014a838Sdanielk1977 char aff; 288e014a838Sdanielk1977 assert( pExpr->op==TK_EQ || pExpr->op==TK_IN || pExpr->op==TK_LT || 289e014a838Sdanielk1977 pExpr->op==TK_GT || pExpr->op==TK_GE || pExpr->op==TK_LE || 2906a2fe093Sdrh pExpr->op==TK_NE || pExpr->op==TK_IS || pExpr->op==TK_ISNOT ); 291e014a838Sdanielk1977 assert( pExpr->pLeft ); 292bf3b721fSdanielk1977 aff = sqlite3ExprAffinity(pExpr->pLeft); 293e014a838Sdanielk1977 if( pExpr->pRight ){ 294e014a838Sdanielk1977 aff = sqlite3CompareAffinity(pExpr->pRight, aff); 2956ab3a2ecSdanielk1977 }else if( ExprHasProperty(pExpr, EP_xIsSelect) ){ 2966ab3a2ecSdanielk1977 aff = sqlite3CompareAffinity(pExpr->x.pSelect->pEList->a[0].pExpr, aff); 29713ac46eeSdrh }else if( aff==0 ){ 29805883a34Sdrh aff = SQLITE_AFF_BLOB; 299e014a838Sdanielk1977 } 300e014a838Sdanielk1977 return aff; 301e014a838Sdanielk1977 } 302e014a838Sdanielk1977 303e014a838Sdanielk1977 /* 304e014a838Sdanielk1977 ** pExpr is a comparison expression, eg. '=', '<', IN(...) etc. 305e014a838Sdanielk1977 ** idx_affinity is the affinity of an indexed column. Return true 306e014a838Sdanielk1977 ** if the index with affinity idx_affinity may be used to implement 307e014a838Sdanielk1977 ** the comparison in pExpr. 308e014a838Sdanielk1977 */ 309e7375bfaSdrh int sqlite3IndexAffinityOk(const Expr *pExpr, char idx_affinity){ 310e014a838Sdanielk1977 char aff = comparisonAffinity(pExpr); 311915e434cSdrh if( aff<SQLITE_AFF_TEXT ){ 3128a51256cSdrh return 1; 3138a51256cSdrh } 314915e434cSdrh if( aff==SQLITE_AFF_TEXT ){ 315915e434cSdrh return idx_affinity==SQLITE_AFF_TEXT; 316915e434cSdrh } 317915e434cSdrh return sqlite3IsNumericAffinity(idx_affinity); 318e014a838Sdanielk1977 } 319e014a838Sdanielk1977 320a37cdde0Sdanielk1977 /* 32135573356Sdrh ** Return the P5 value that should be used for a binary comparison 322a37cdde0Sdanielk1977 ** opcode (OP_Eq, OP_Ge etc.) used to compare pExpr1 and pExpr2. 323a37cdde0Sdanielk1977 */ 324e7375bfaSdrh static u8 binaryCompareP5( 325e7375bfaSdrh const Expr *pExpr1, /* Left operand */ 326e7375bfaSdrh const Expr *pExpr2, /* Right operand */ 327e7375bfaSdrh int jumpIfNull /* Extra flags added to P5 */ 328e7375bfaSdrh ){ 32935573356Sdrh u8 aff = (char)sqlite3ExprAffinity(pExpr2); 3301bd10f8aSdrh aff = (u8)sqlite3CompareAffinity(pExpr1, aff) | (u8)jumpIfNull; 33135573356Sdrh return aff; 332a37cdde0Sdanielk1977 } 333a37cdde0Sdanielk1977 334a2e00042Sdrh /* 3350202b29eSdanielk1977 ** Return a pointer to the collation sequence that should be used by 3360202b29eSdanielk1977 ** a binary comparison operator comparing pLeft and pRight. 3370202b29eSdanielk1977 ** 3380202b29eSdanielk1977 ** If the left hand expression has a collating sequence type, then it is 3390202b29eSdanielk1977 ** used. Otherwise the collation sequence for the right hand expression 3400202b29eSdanielk1977 ** is used, or the default (BINARY) if neither expression has a collating 3410202b29eSdanielk1977 ** type. 342bcbb04e5Sdanielk1977 ** 343bcbb04e5Sdanielk1977 ** Argument pRight (but not pLeft) may be a null pointer. In this case, 344bcbb04e5Sdanielk1977 ** it is not considered. 3450202b29eSdanielk1977 */ 346bcbb04e5Sdanielk1977 CollSeq *sqlite3BinaryCompareCollSeq( 347bcbb04e5Sdanielk1977 Parse *pParse, 348e7375bfaSdrh const Expr *pLeft, 349e7375bfaSdrh const Expr *pRight 350bcbb04e5Sdanielk1977 ){ 351ec41ddacSdrh CollSeq *pColl; 352ec41ddacSdrh assert( pLeft ); 353ae80ddeaSdrh if( pLeft->flags & EP_Collate ){ 354ae80ddeaSdrh pColl = sqlite3ExprCollSeq(pParse, pLeft); 355ae80ddeaSdrh }else if( pRight && (pRight->flags & EP_Collate)!=0 ){ 356ae80ddeaSdrh pColl = sqlite3ExprCollSeq(pParse, pRight); 357ec41ddacSdrh }else{ 358ec41ddacSdrh pColl = sqlite3ExprCollSeq(pParse, pLeft); 3590202b29eSdanielk1977 if( !pColl ){ 3607cedc8d4Sdanielk1977 pColl = sqlite3ExprCollSeq(pParse, pRight); 3610202b29eSdanielk1977 } 362ec41ddacSdrh } 3630202b29eSdanielk1977 return pColl; 3640202b29eSdanielk1977 } 3650202b29eSdanielk1977 366898c527eSdrh /* Expresssion p is a comparison operator. Return a collation sequence 367898c527eSdrh ** appropriate for the comparison operator. 368898c527eSdrh ** 369898c527eSdrh ** This is normally just a wrapper around sqlite3BinaryCompareCollSeq(). 370898c527eSdrh ** However, if the OP_Commuted flag is set, then the order of the operands 371898c527eSdrh ** is reversed in the sqlite3BinaryCompareCollSeq() call so that the 372898c527eSdrh ** correct collating sequence is found. 373898c527eSdrh */ 374e7375bfaSdrh CollSeq *sqlite3ExprCompareCollSeq(Parse *pParse, const Expr *p){ 375898c527eSdrh if( ExprHasProperty(p, EP_Commuted) ){ 376898c527eSdrh return sqlite3BinaryCompareCollSeq(pParse, p->pRight, p->pLeft); 377898c527eSdrh }else{ 378898c527eSdrh return sqlite3BinaryCompareCollSeq(pParse, p->pLeft, p->pRight); 379898c527eSdrh } 380898c527eSdrh } 381898c527eSdrh 3820202b29eSdanielk1977 /* 383be5c89acSdrh ** Generate code for a comparison operator. 384be5c89acSdrh */ 385be5c89acSdrh static int codeCompare( 386be5c89acSdrh Parse *pParse, /* The parsing (and code generating) context */ 387be5c89acSdrh Expr *pLeft, /* The left operand */ 388be5c89acSdrh Expr *pRight, /* The right operand */ 389be5c89acSdrh int opcode, /* The comparison opcode */ 39035573356Sdrh int in1, int in2, /* Register holding operands */ 391be5c89acSdrh int dest, /* Jump here if true. */ 392898c527eSdrh int jumpIfNull, /* If true, jump if either operand is NULL */ 393898c527eSdrh int isCommuted /* The comparison has been commuted */ 394be5c89acSdrh ){ 39535573356Sdrh int p5; 39635573356Sdrh int addr; 39735573356Sdrh CollSeq *p4; 39835573356Sdrh 3998654186bSdrh if( pParse->nErr ) return 0; 400898c527eSdrh if( isCommuted ){ 401898c527eSdrh p4 = sqlite3BinaryCompareCollSeq(pParse, pRight, pLeft); 402898c527eSdrh }else{ 40335573356Sdrh p4 = sqlite3BinaryCompareCollSeq(pParse, pLeft, pRight); 404898c527eSdrh } 40535573356Sdrh p5 = binaryCompareP5(pLeft, pRight, jumpIfNull); 40635573356Sdrh addr = sqlite3VdbeAddOp4(pParse->pVdbe, opcode, in2, dest, in1, 40735573356Sdrh (void*)p4, P4_COLLSEQ); 4081bd10f8aSdrh sqlite3VdbeChangeP5(pParse->pVdbe, (u8)p5); 40935573356Sdrh return addr; 410be5c89acSdrh } 411be5c89acSdrh 412cfbb5e82Sdan /* 413870a0705Sdan ** Return true if expression pExpr is a vector, or false otherwise. 414d832da7fSdrh ** 415d832da7fSdrh ** A vector is defined as any expression that results in two or more 416d832da7fSdrh ** columns of result. Every TK_VECTOR node is an vector because the 417d832da7fSdrh ** parser will not generate a TK_VECTOR with fewer than two entries. 418d832da7fSdrh ** But a TK_SELECT might be either a vector or a scalar. It is only 419d832da7fSdrh ** considered a vector if it has two or more result columns. 420870a0705Sdan */ 421870a0705Sdan int sqlite3ExprIsVector(Expr *pExpr){ 42276dbe7a8Sdrh return sqlite3ExprVectorSize(pExpr)>1; 423870a0705Sdan } 424870a0705Sdan 425870a0705Sdan /* 426cfbb5e82Sdan ** If the expression passed as the only argument is of type TK_VECTOR 427cfbb5e82Sdan ** return the number of expressions in the vector. Or, if the expression 428cfbb5e82Sdan ** is a sub-select, return the number of columns in the sub-select. For 429cfbb5e82Sdan ** any other type of expression, return 1. 430cfbb5e82Sdan */ 43171c57db0Sdan int sqlite3ExprVectorSize(Expr *pExpr){ 43212abf408Sdrh u8 op = pExpr->op; 43312abf408Sdrh if( op==TK_REGISTER ) op = pExpr->op2; 43412abf408Sdrh if( op==TK_VECTOR ){ 43571c57db0Sdan return pExpr->x.pList->nExpr; 43612abf408Sdrh }else if( op==TK_SELECT ){ 43776dbe7a8Sdrh return pExpr->x.pSelect->pEList->nExpr; 43876dbe7a8Sdrh }else{ 43976dbe7a8Sdrh return 1; 44076dbe7a8Sdrh } 44171c57db0Sdan } 44271c57db0Sdan 443ba00e30aSdan /* 444fc7f27b9Sdrh ** Return a pointer to a subexpression of pVector that is the i-th 445fc7f27b9Sdrh ** column of the vector (numbered starting with 0). The caller must 446fc7f27b9Sdrh ** ensure that i is within range. 447fc7f27b9Sdrh ** 44876dbe7a8Sdrh ** If pVector is really a scalar (and "scalar" here includes subqueries 44976dbe7a8Sdrh ** that return a single column!) then return pVector unmodified. 45076dbe7a8Sdrh ** 451fc7f27b9Sdrh ** pVector retains ownership of the returned subexpression. 452fc7f27b9Sdrh ** 453fc7f27b9Sdrh ** If the vector is a (SELECT ...) then the expression returned is 45476dbe7a8Sdrh ** just the expression for the i-th term of the result set, and may 45576dbe7a8Sdrh ** not be ready for evaluation because the table cursor has not yet 45676dbe7a8Sdrh ** been positioned. 457ba00e30aSdan */ 458fc7f27b9Sdrh Expr *sqlite3VectorFieldSubexpr(Expr *pVector, int i){ 459870a0705Sdan assert( i<sqlite3ExprVectorSize(pVector) ); 460870a0705Sdan if( sqlite3ExprIsVector(pVector) ){ 4619f24b53dSdrh assert( pVector->op2==0 || pVector->op==TK_REGISTER ); 4629f24b53dSdrh if( pVector->op==TK_SELECT || pVector->op2==TK_SELECT ){ 46371c57db0Sdan return pVector->x.pSelect->pEList->a[i].pExpr; 464870a0705Sdan }else{ 46571c57db0Sdan return pVector->x.pList->a[i].pExpr; 46671c57db0Sdan } 467870a0705Sdan } 468870a0705Sdan return pVector; 469870a0705Sdan } 470fc7f27b9Sdrh 471fc7f27b9Sdrh /* 472fc7f27b9Sdrh ** Compute and return a new Expr object which when passed to 473fc7f27b9Sdrh ** sqlite3ExprCode() will generate all necessary code to compute 474fc7f27b9Sdrh ** the iField-th column of the vector expression pVector. 475fc7f27b9Sdrh ** 4768762ec19Sdrh ** It is ok for pVector to be a scalar (as long as iField==0). 4778762ec19Sdrh ** In that case, this routine works like sqlite3ExprDup(). 4788762ec19Sdrh ** 479fc7f27b9Sdrh ** The caller owns the returned Expr object and is responsible for 480fc7f27b9Sdrh ** ensuring that the returned value eventually gets freed. 481fc7f27b9Sdrh ** 4828762ec19Sdrh ** The caller retains ownership of pVector. If pVector is a TK_SELECT, 483fad0e70cSdan ** then the returned object will reference pVector and so pVector must remain 4848762ec19Sdrh ** valid for the life of the returned object. If pVector is a TK_VECTOR 4858762ec19Sdrh ** or a scalar expression, then it can be deleted as soon as this routine 48676dbe7a8Sdrh ** returns. 4878762ec19Sdrh ** 4888762ec19Sdrh ** A trick to cause a TK_SELECT pVector to be deleted together with 4898762ec19Sdrh ** the returned Expr object is to attach the pVector to the pRight field 4908762ec19Sdrh ** of the returned TK_SELECT_COLUMN Expr object. 491fc7f27b9Sdrh */ 492fc7f27b9Sdrh Expr *sqlite3ExprForVectorField( 493fc7f27b9Sdrh Parse *pParse, /* Parsing context */ 494fc7f27b9Sdrh Expr *pVector, /* The vector. List of expressions or a sub-SELECT */ 495a1251bc4Sdrh int iField /* Which column of the vector to return */ 496fc7f27b9Sdrh ){ 497fc7f27b9Sdrh Expr *pRet; 498a1251bc4Sdrh if( pVector->op==TK_SELECT ){ 499a1251bc4Sdrh assert( pVector->flags & EP_xIsSelect ); 500fc7f27b9Sdrh /* The TK_SELECT_COLUMN Expr node: 501fc7f27b9Sdrh ** 502966e2911Sdrh ** pLeft: pVector containing TK_SELECT. Not deleted. 5038762ec19Sdrh ** pRight: not used. But recursively deleted. 504fc7f27b9Sdrh ** iColumn: Index of a column in pVector 505966e2911Sdrh ** iTable: 0 or the number of columns on the LHS of an assignment 506fc7f27b9Sdrh ** pLeft->iTable: First in an array of register holding result, or 0 507fc7f27b9Sdrh ** if the result is not yet computed. 508fc7f27b9Sdrh ** 509fc7f27b9Sdrh ** sqlite3ExprDelete() specifically skips the recursive delete of 510fc7f27b9Sdrh ** pLeft on TK_SELECT_COLUMN nodes. But pRight is followed, so pVector 5118762ec19Sdrh ** can be attached to pRight to cause this node to take ownership of 5128762ec19Sdrh ** pVector. Typically there will be multiple TK_SELECT_COLUMN nodes 5138762ec19Sdrh ** with the same pLeft pointer to the pVector, but only one of them 5148762ec19Sdrh ** will own the pVector. 515fc7f27b9Sdrh */ 516abfd35eaSdrh pRet = sqlite3PExpr(pParse, TK_SELECT_COLUMN, 0, 0); 5178bd0d58eSdrh if( pRet ){ 5188bd0d58eSdrh pRet->iColumn = iField; 5198bd0d58eSdrh pRet->pLeft = pVector; 5208bd0d58eSdrh } 521fc7f27b9Sdrh assert( pRet==0 || pRet->iTable==0 ); 522fc7f27b9Sdrh }else{ 523a1251bc4Sdrh if( pVector->op==TK_VECTOR ) pVector = pVector->x.pList->a[iField].pExpr; 524a1251bc4Sdrh pRet = sqlite3ExprDup(pParse->db, pVector, 0); 525dfb5c963Sdan sqlite3RenameTokenRemap(pParse, pRet, pVector); 526fc7f27b9Sdrh } 527fc7f27b9Sdrh return pRet; 528fc7f27b9Sdrh } 52971c57db0Sdan 5305c288b92Sdan /* 5315c288b92Sdan ** If expression pExpr is of type TK_SELECT, generate code to evaluate 5325c288b92Sdan ** it. Return the register in which the result is stored (or, if the 5335c288b92Sdan ** sub-select returns more than one column, the first in an array 5345c288b92Sdan ** of registers in which the result is stored). 5355c288b92Sdan ** 5365c288b92Sdan ** If pExpr is not a TK_SELECT expression, return 0. 5375c288b92Sdan */ 5385c288b92Sdan static int exprCodeSubselect(Parse *pParse, Expr *pExpr){ 5398da209b1Sdan int reg = 0; 540f9b2e05cSdan #ifndef SQLITE_OMIT_SUBQUERY 5415c288b92Sdan if( pExpr->op==TK_SELECT ){ 54285bcdce2Sdrh reg = sqlite3CodeSubselect(pParse, pExpr); 5438da209b1Sdan } 544f9b2e05cSdan #endif 5458da209b1Sdan return reg; 5468da209b1Sdan } 5478da209b1Sdan 5485c288b92Sdan /* 5495c288b92Sdan ** Argument pVector points to a vector expression - either a TK_VECTOR 550870a0705Sdan ** or TK_SELECT that returns more than one column. This function returns 551870a0705Sdan ** the register number of a register that contains the value of 552870a0705Sdan ** element iField of the vector. 553870a0705Sdan ** 554870a0705Sdan ** If pVector is a TK_SELECT expression, then code for it must have 555870a0705Sdan ** already been generated using the exprCodeSubselect() routine. In this 556870a0705Sdan ** case parameter regSelect should be the first in an array of registers 557870a0705Sdan ** containing the results of the sub-select. 558870a0705Sdan ** 559870a0705Sdan ** If pVector is of type TK_VECTOR, then code for the requested field 560870a0705Sdan ** is generated. In this case (*pRegFree) may be set to the number of 561870a0705Sdan ** a temporary register to be freed by the caller before returning. 5625c288b92Sdan ** 5635c288b92Sdan ** Before returning, output parameter (*ppExpr) is set to point to the 5645c288b92Sdan ** Expr object corresponding to element iElem of the vector. 5655c288b92Sdan */ 5665c288b92Sdan static int exprVectorRegister( 5675c288b92Sdan Parse *pParse, /* Parse context */ 5685c288b92Sdan Expr *pVector, /* Vector to extract element from */ 569870a0705Sdan int iField, /* Field to extract from pVector */ 5705c288b92Sdan int regSelect, /* First in array of registers */ 5715c288b92Sdan Expr **ppExpr, /* OUT: Expression element */ 5725c288b92Sdan int *pRegFree /* OUT: Temp register to free */ 5735c288b92Sdan ){ 57412abf408Sdrh u8 op = pVector->op; 575c1bcd9ccSdrh assert( op==TK_VECTOR || op==TK_REGISTER || op==TK_SELECT ); 57612abf408Sdrh if( op==TK_REGISTER ){ 57712abf408Sdrh *ppExpr = sqlite3VectorFieldSubexpr(pVector, iField); 57812abf408Sdrh return pVector->iTable+iField; 57912abf408Sdrh } 58012abf408Sdrh if( op==TK_SELECT ){ 581870a0705Sdan *ppExpr = pVector->x.pSelect->pEList->a[iField].pExpr; 582870a0705Sdan return regSelect+iField; 5835c288b92Sdan } 584870a0705Sdan *ppExpr = pVector->x.pList->a[iField].pExpr; 5855c288b92Sdan return sqlite3ExprCodeTemp(pParse, *ppExpr, pRegFree); 5865c288b92Sdan } 5875c288b92Sdan 5885c288b92Sdan /* 5895c288b92Sdan ** Expression pExpr is a comparison between two vector values. Compute 59079752b6eSdrh ** the result of the comparison (1, 0, or NULL) and write that 59179752b6eSdrh ** result into register dest. 59279752b6eSdrh ** 59379752b6eSdrh ** The caller must satisfy the following preconditions: 59479752b6eSdrh ** 59579752b6eSdrh ** if pExpr->op==TK_IS: op==TK_EQ and p5==SQLITE_NULLEQ 59679752b6eSdrh ** if pExpr->op==TK_ISNOT: op==TK_NE and p5==SQLITE_NULLEQ 59779752b6eSdrh ** otherwise: op==pExpr->op and p5==0 5985c288b92Sdan */ 59979752b6eSdrh static void codeVectorCompare( 60079752b6eSdrh Parse *pParse, /* Code generator context */ 60179752b6eSdrh Expr *pExpr, /* The comparison operation */ 60279752b6eSdrh int dest, /* Write results into this register */ 60379752b6eSdrh u8 op, /* Comparison operator */ 60479752b6eSdrh u8 p5 /* SQLITE_NULLEQ or zero */ 60579752b6eSdrh ){ 60671c57db0Sdan Vdbe *v = pParse->pVdbe; 60771c57db0Sdan Expr *pLeft = pExpr->pLeft; 60871c57db0Sdan Expr *pRight = pExpr->pRight; 60971c57db0Sdan int nLeft = sqlite3ExprVectorSize(pLeft); 61071c57db0Sdan int i; 61171c57db0Sdan int regLeft = 0; 61271c57db0Sdan int regRight = 0; 61379752b6eSdrh u8 opx = op; 614ec4ccdbcSdrh int addrDone = sqlite3VdbeMakeLabel(pParse); 615898c527eSdrh int isCommuted = ExprHasProperty(pExpr,EP_Commuted); 61671c57db0Sdan 617e7375bfaSdrh assert( !ExprHasVVAProperty(pExpr,EP_Immutable) ); 618340fd0bcSdrh if( pParse->nErr ) return; 619245ce62eSdrh if( nLeft!=sqlite3ExprVectorSize(pRight) ){ 620245ce62eSdrh sqlite3ErrorMsg(pParse, "row value misused"); 621245ce62eSdrh return; 622245ce62eSdrh } 62371c57db0Sdan assert( pExpr->op==TK_EQ || pExpr->op==TK_NE 62471c57db0Sdan || pExpr->op==TK_IS || pExpr->op==TK_ISNOT 62571c57db0Sdan || pExpr->op==TK_LT || pExpr->op==TK_GT 62671c57db0Sdan || pExpr->op==TK_LE || pExpr->op==TK_GE 62771c57db0Sdan ); 62879752b6eSdrh assert( pExpr->op==op || (pExpr->op==TK_IS && op==TK_EQ) 62979752b6eSdrh || (pExpr->op==TK_ISNOT && op==TK_NE) ); 63079752b6eSdrh assert( p5==0 || pExpr->op!=op ); 63179752b6eSdrh assert( p5==SQLITE_NULLEQ || pExpr->op==op ); 63271c57db0Sdan 63379752b6eSdrh p5 |= SQLITE_STOREP2; 63479752b6eSdrh if( opx==TK_LE ) opx = TK_LT; 63579752b6eSdrh if( opx==TK_GE ) opx = TK_GT; 6365c288b92Sdan 6375c288b92Sdan regLeft = exprCodeSubselect(pParse, pLeft); 6385c288b92Sdan regRight = exprCodeSubselect(pParse, pRight); 6395c288b92Sdan 640321e828dSdrh for(i=0; 1 /*Loop exits by "break"*/; i++){ 6415c288b92Sdan int regFree1 = 0, regFree2 = 0; 6425c288b92Sdan Expr *pL, *pR; 6435c288b92Sdan int r1, r2; 644321e828dSdrh assert( i>=0 && i<nLeft ); 6455c288b92Sdan r1 = exprVectorRegister(pParse, pLeft, i, regLeft, &pL, ®Free1); 6465c288b92Sdan r2 = exprVectorRegister(pParse, pRight, i, regRight, &pR, ®Free2); 647898c527eSdrh codeCompare(pParse, pL, pR, opx, r1, r2, dest, p5, isCommuted); 64879752b6eSdrh testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt); 64979752b6eSdrh testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le); 65079752b6eSdrh testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt); 65179752b6eSdrh testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge); 65279752b6eSdrh testcase(op==OP_Eq); VdbeCoverageIf(v,op==OP_Eq); 65379752b6eSdrh testcase(op==OP_Ne); VdbeCoverageIf(v,op==OP_Ne); 65471c57db0Sdan sqlite3ReleaseTempReg(pParse, regFree1); 65571c57db0Sdan sqlite3ReleaseTempReg(pParse, regFree2); 65679752b6eSdrh if( i==nLeft-1 ){ 65779752b6eSdrh break; 65871c57db0Sdan } 65979752b6eSdrh if( opx==TK_EQ ){ 66079752b6eSdrh sqlite3VdbeAddOp2(v, OP_IfNot, dest, addrDone); VdbeCoverage(v); 66179752b6eSdrh p5 |= SQLITE_KEEPNULL; 66279752b6eSdrh }else if( opx==TK_NE ){ 66379752b6eSdrh sqlite3VdbeAddOp2(v, OP_If, dest, addrDone); VdbeCoverage(v); 66479752b6eSdrh p5 |= SQLITE_KEEPNULL; 665a2f62925Sdrh }else{ 666a2f62925Sdrh assert( op==TK_LT || op==TK_GT || op==TK_LE || op==TK_GE ); 667a2f62925Sdrh sqlite3VdbeAddOp2(v, OP_ElseNotEq, 0, addrDone); 66879752b6eSdrh VdbeCoverageIf(v, op==TK_LT); 66979752b6eSdrh VdbeCoverageIf(v, op==TK_GT); 67079752b6eSdrh VdbeCoverageIf(v, op==TK_LE); 67179752b6eSdrh VdbeCoverageIf(v, op==TK_GE); 67279752b6eSdrh if( i==nLeft-2 ) opx = op; 67371c57db0Sdan } 67479752b6eSdrh } 67579752b6eSdrh sqlite3VdbeResolveLabel(v, addrDone); 67679752b6eSdrh } 67771c57db0Sdan 6784b5255acSdanielk1977 #if SQLITE_MAX_EXPR_DEPTH>0 6794b5255acSdanielk1977 /* 6804b5255acSdanielk1977 ** Check that argument nHeight is less than or equal to the maximum 6814b5255acSdanielk1977 ** expression depth allowed. If it is not, leave an error message in 6824b5255acSdanielk1977 ** pParse. 6834b5255acSdanielk1977 */ 6847d10d5a6Sdrh int sqlite3ExprCheckHeight(Parse *pParse, int nHeight){ 6854b5255acSdanielk1977 int rc = SQLITE_OK; 6864b5255acSdanielk1977 int mxHeight = pParse->db->aLimit[SQLITE_LIMIT_EXPR_DEPTH]; 6874b5255acSdanielk1977 if( nHeight>mxHeight ){ 6884b5255acSdanielk1977 sqlite3ErrorMsg(pParse, 6894b5255acSdanielk1977 "Expression tree is too large (maximum depth %d)", mxHeight 6904b5255acSdanielk1977 ); 6914b5255acSdanielk1977 rc = SQLITE_ERROR; 6924b5255acSdanielk1977 } 6934b5255acSdanielk1977 return rc; 6944b5255acSdanielk1977 } 6954b5255acSdanielk1977 6964b5255acSdanielk1977 /* The following three functions, heightOfExpr(), heightOfExprList() 6974b5255acSdanielk1977 ** and heightOfSelect(), are used to determine the maximum height 6984b5255acSdanielk1977 ** of any expression tree referenced by the structure passed as the 6994b5255acSdanielk1977 ** first argument. 7004b5255acSdanielk1977 ** 7014b5255acSdanielk1977 ** If this maximum height is greater than the current value pointed 7024b5255acSdanielk1977 ** to by pnHeight, the second parameter, then set *pnHeight to that 7034b5255acSdanielk1977 ** value. 7044b5255acSdanielk1977 */ 7054b5255acSdanielk1977 static void heightOfExpr(Expr *p, int *pnHeight){ 7064b5255acSdanielk1977 if( p ){ 7074b5255acSdanielk1977 if( p->nHeight>*pnHeight ){ 7084b5255acSdanielk1977 *pnHeight = p->nHeight; 7094b5255acSdanielk1977 } 7104b5255acSdanielk1977 } 7114b5255acSdanielk1977 } 7124b5255acSdanielk1977 static void heightOfExprList(ExprList *p, int *pnHeight){ 7134b5255acSdanielk1977 if( p ){ 7144b5255acSdanielk1977 int i; 7154b5255acSdanielk1977 for(i=0; i<p->nExpr; i++){ 7164b5255acSdanielk1977 heightOfExpr(p->a[i].pExpr, pnHeight); 7174b5255acSdanielk1977 } 7184b5255acSdanielk1977 } 7194b5255acSdanielk1977 } 7201a3a3086Sdan static void heightOfSelect(Select *pSelect, int *pnHeight){ 7211a3a3086Sdan Select *p; 7221a3a3086Sdan for(p=pSelect; p; p=p->pPrior){ 7234b5255acSdanielk1977 heightOfExpr(p->pWhere, pnHeight); 7244b5255acSdanielk1977 heightOfExpr(p->pHaving, pnHeight); 7254b5255acSdanielk1977 heightOfExpr(p->pLimit, pnHeight); 7264b5255acSdanielk1977 heightOfExprList(p->pEList, pnHeight); 7274b5255acSdanielk1977 heightOfExprList(p->pGroupBy, pnHeight); 7284b5255acSdanielk1977 heightOfExprList(p->pOrderBy, pnHeight); 7294b5255acSdanielk1977 } 7304b5255acSdanielk1977 } 7314b5255acSdanielk1977 7324b5255acSdanielk1977 /* 7334b5255acSdanielk1977 ** Set the Expr.nHeight variable in the structure passed as an 7344b5255acSdanielk1977 ** argument. An expression with no children, Expr.pList or 7354b5255acSdanielk1977 ** Expr.pSelect member has a height of 1. Any other expression 7364b5255acSdanielk1977 ** has a height equal to the maximum height of any other 7374b5255acSdanielk1977 ** referenced Expr plus one. 7382308ed38Sdrh ** 7392308ed38Sdrh ** Also propagate EP_Propagate flags up from Expr.x.pList to Expr.flags, 7402308ed38Sdrh ** if appropriate. 7414b5255acSdanielk1977 */ 7424b5255acSdanielk1977 static void exprSetHeight(Expr *p){ 7434b5255acSdanielk1977 int nHeight = 0; 7444b5255acSdanielk1977 heightOfExpr(p->pLeft, &nHeight); 7454b5255acSdanielk1977 heightOfExpr(p->pRight, &nHeight); 7466ab3a2ecSdanielk1977 if( ExprHasProperty(p, EP_xIsSelect) ){ 7476ab3a2ecSdanielk1977 heightOfSelect(p->x.pSelect, &nHeight); 7482308ed38Sdrh }else if( p->x.pList ){ 7496ab3a2ecSdanielk1977 heightOfExprList(p->x.pList, &nHeight); 7502308ed38Sdrh p->flags |= EP_Propagate & sqlite3ExprListFlags(p->x.pList); 7516ab3a2ecSdanielk1977 } 7524b5255acSdanielk1977 p->nHeight = nHeight + 1; 7534b5255acSdanielk1977 } 7544b5255acSdanielk1977 7554b5255acSdanielk1977 /* 7564b5255acSdanielk1977 ** Set the Expr.nHeight variable using the exprSetHeight() function. If 7574b5255acSdanielk1977 ** the height is greater than the maximum allowed expression depth, 7584b5255acSdanielk1977 ** leave an error in pParse. 7592308ed38Sdrh ** 7602308ed38Sdrh ** Also propagate all EP_Propagate flags from the Expr.x.pList into 7612308ed38Sdrh ** Expr.flags. 7624b5255acSdanielk1977 */ 7632308ed38Sdrh void sqlite3ExprSetHeightAndFlags(Parse *pParse, Expr *p){ 76474893a4cSdrh if( pParse->nErr ) return; 7654b5255acSdanielk1977 exprSetHeight(p); 7667d10d5a6Sdrh sqlite3ExprCheckHeight(pParse, p->nHeight); 7674b5255acSdanielk1977 } 7684b5255acSdanielk1977 7694b5255acSdanielk1977 /* 7704b5255acSdanielk1977 ** Return the maximum height of any expression tree referenced 7714b5255acSdanielk1977 ** by the select statement passed as an argument. 7724b5255acSdanielk1977 */ 7734b5255acSdanielk1977 int sqlite3SelectExprHeight(Select *p){ 7744b5255acSdanielk1977 int nHeight = 0; 7754b5255acSdanielk1977 heightOfSelect(p, &nHeight); 7764b5255acSdanielk1977 return nHeight; 7774b5255acSdanielk1977 } 7782308ed38Sdrh #else /* ABOVE: Height enforcement enabled. BELOW: Height enforcement off */ 7792308ed38Sdrh /* 7802308ed38Sdrh ** Propagate all EP_Propagate flags from the Expr.x.pList into 7812308ed38Sdrh ** Expr.flags. 7822308ed38Sdrh */ 7832308ed38Sdrh void sqlite3ExprSetHeightAndFlags(Parse *pParse, Expr *p){ 7846c3b4b07Sdan if( pParse->nErr ) return; 7852308ed38Sdrh if( p && p->x.pList && !ExprHasProperty(p, EP_xIsSelect) ){ 7862308ed38Sdrh p->flags |= EP_Propagate & sqlite3ExprListFlags(p->x.pList); 7872308ed38Sdrh } 7882308ed38Sdrh } 7894b5255acSdanielk1977 #define exprSetHeight(y) 7904b5255acSdanielk1977 #endif /* SQLITE_MAX_EXPR_DEPTH>0 */ 7914b5255acSdanielk1977 792be5c89acSdrh /* 793b7916a78Sdrh ** This routine is the core allocator for Expr nodes. 794b7916a78Sdrh ** 795a76b5dfcSdrh ** Construct a new expression node and return a pointer to it. Memory 796b7916a78Sdrh ** for this node and for the pToken argument is a single allocation 797b7916a78Sdrh ** obtained from sqlite3DbMalloc(). The calling function 798a76b5dfcSdrh ** is responsible for making sure the node eventually gets freed. 799b7916a78Sdrh ** 800b7916a78Sdrh ** If dequote is true, then the token (if it exists) is dequoted. 801e792b5b4Sdrh ** If dequote is false, no dequoting is performed. The deQuote 802b7916a78Sdrh ** parameter is ignored if pToken is NULL or if the token does not 803b7916a78Sdrh ** appear to be quoted. If the quotes were of the form "..." (double-quotes) 804b7916a78Sdrh ** then the EP_DblQuoted flag is set on the expression node. 80533e619fcSdrh ** 80633e619fcSdrh ** Special case: If op==TK_INTEGER and pToken points to a string that 80733e619fcSdrh ** can be translated into a 32-bit integer, then the token is not 80833e619fcSdrh ** stored in u.zToken. Instead, the integer values is written 80933e619fcSdrh ** into u.iValue and the EP_IntValue flag is set. No extra storage 81033e619fcSdrh ** is allocated to hold the integer text and the dequote flag is ignored. 811a76b5dfcSdrh */ 812b7916a78Sdrh Expr *sqlite3ExprAlloc( 813cca8a4adSdrh sqlite3 *db, /* Handle for sqlite3DbMallocRawNN() */ 81417435752Sdrh int op, /* Expression opcode */ 815b7916a78Sdrh const Token *pToken, /* Token argument. Might be NULL */ 816b7916a78Sdrh int dequote /* True to dequote */ 81717435752Sdrh ){ 818a76b5dfcSdrh Expr *pNew; 81933e619fcSdrh int nExtra = 0; 820cf697396Sshane int iValue = 0; 821b7916a78Sdrh 822575fad65Sdrh assert( db!=0 ); 823b7916a78Sdrh if( pToken ){ 82433e619fcSdrh if( op!=TK_INTEGER || pToken->z==0 82533e619fcSdrh || sqlite3GetInt32(pToken->z, &iValue)==0 ){ 826b7916a78Sdrh nExtra = pToken->n+1; 827d50ffc41Sdrh assert( iValue>=0 ); 82833e619fcSdrh } 829a76b5dfcSdrh } 830575fad65Sdrh pNew = sqlite3DbMallocRawNN(db, sizeof(Expr)+nExtra); 831b7916a78Sdrh if( pNew ){ 832ca3862dcSdrh memset(pNew, 0, sizeof(Expr)); 8331bd10f8aSdrh pNew->op = (u8)op; 834a58fdfb1Sdanielk1977 pNew->iAgg = -1; 835a76b5dfcSdrh if( pToken ){ 83633e619fcSdrh if( nExtra==0 ){ 837ad31727fSdrh pNew->flags |= EP_IntValue|EP_Leaf|(iValue?EP_IsTrue:EP_IsFalse); 83833e619fcSdrh pNew->u.iValue = iValue; 83933e619fcSdrh }else{ 84033e619fcSdrh pNew->u.zToken = (char*)&pNew[1]; 841b07028f7Sdrh assert( pToken->z!=0 || pToken->n==0 ); 842b07028f7Sdrh if( pToken->n ) memcpy(pNew->u.zToken, pToken->z, pToken->n); 84333e619fcSdrh pNew->u.zToken[pToken->n] = 0; 844244b9d6eSdrh if( dequote && sqlite3Isquote(pNew->u.zToken[0]) ){ 84551d35b0fSdrh sqlite3DequoteExpr(pNew); 846a34001c9Sdrh } 847a34001c9Sdrh } 84833e619fcSdrh } 849b7916a78Sdrh #if SQLITE_MAX_EXPR_DEPTH>0 850b7916a78Sdrh pNew->nHeight = 1; 851b7916a78Sdrh #endif 852a34001c9Sdrh } 853a76b5dfcSdrh return pNew; 854a76b5dfcSdrh } 855a76b5dfcSdrh 856a76b5dfcSdrh /* 857b7916a78Sdrh ** Allocate a new expression node from a zero-terminated token that has 858b7916a78Sdrh ** already been dequoted. 859b7916a78Sdrh */ 860b7916a78Sdrh Expr *sqlite3Expr( 861b7916a78Sdrh sqlite3 *db, /* Handle for sqlite3DbMallocZero() (may be null) */ 862b7916a78Sdrh int op, /* Expression opcode */ 863b7916a78Sdrh const char *zToken /* Token argument. Might be NULL */ 864b7916a78Sdrh ){ 865b7916a78Sdrh Token x; 866b7916a78Sdrh x.z = zToken; 867b40f06c6Sdrh x.n = sqlite3Strlen30(zToken); 868b7916a78Sdrh return sqlite3ExprAlloc(db, op, &x, 0); 869b7916a78Sdrh } 870b7916a78Sdrh 871b7916a78Sdrh /* 872b7916a78Sdrh ** Attach subtrees pLeft and pRight to the Expr node pRoot. 873b7916a78Sdrh ** 874b7916a78Sdrh ** If pRoot==NULL that means that a memory allocation error has occurred. 875b7916a78Sdrh ** In that case, delete the subtrees pLeft and pRight. 876b7916a78Sdrh */ 877b7916a78Sdrh void sqlite3ExprAttachSubtrees( 878b7916a78Sdrh sqlite3 *db, 879b7916a78Sdrh Expr *pRoot, 880b7916a78Sdrh Expr *pLeft, 881b7916a78Sdrh Expr *pRight 882b7916a78Sdrh ){ 883b7916a78Sdrh if( pRoot==0 ){ 884b7916a78Sdrh assert( db->mallocFailed ); 885b7916a78Sdrh sqlite3ExprDelete(db, pLeft); 886b7916a78Sdrh sqlite3ExprDelete(db, pRight); 887b7916a78Sdrh }else{ 888b7916a78Sdrh if( pRight ){ 889b7916a78Sdrh pRoot->pRight = pRight; 890885a5b03Sdrh pRoot->flags |= EP_Propagate & pRight->flags; 891b7916a78Sdrh } 892b7916a78Sdrh if( pLeft ){ 893b7916a78Sdrh pRoot->pLeft = pLeft; 894885a5b03Sdrh pRoot->flags |= EP_Propagate & pLeft->flags; 895b7916a78Sdrh } 896b7916a78Sdrh exprSetHeight(pRoot); 897b7916a78Sdrh } 898b7916a78Sdrh } 899b7916a78Sdrh 900b7916a78Sdrh /* 90160ec914cSpeter.d.reid ** Allocate an Expr node which joins as many as two subtrees. 902b7916a78Sdrh ** 903bf664469Sdrh ** One or both of the subtrees can be NULL. Return a pointer to the new 904bf664469Sdrh ** Expr node. Or, if an OOM error occurs, set pParse->db->mallocFailed, 905bf664469Sdrh ** free the subtrees and return NULL. 906206f3d96Sdrh */ 90717435752Sdrh Expr *sqlite3PExpr( 90817435752Sdrh Parse *pParse, /* Parsing context */ 90917435752Sdrh int op, /* Expression opcode */ 91017435752Sdrh Expr *pLeft, /* Left operand */ 911abfd35eaSdrh Expr *pRight /* Right operand */ 91217435752Sdrh ){ 9135fb52caaSdrh Expr *p; 914abfd35eaSdrh p = sqlite3DbMallocRawNN(pParse->db, sizeof(Expr)); 915abfd35eaSdrh if( p ){ 916abfd35eaSdrh memset(p, 0, sizeof(Expr)); 917f1722baaSdrh p->op = op & 0xff; 918abfd35eaSdrh p->iAgg = -1; 919b7916a78Sdrh sqlite3ExprAttachSubtrees(pParse->db, p, pLeft, pRight); 9202b359bdbSdan sqlite3ExprCheckHeight(pParse, p->nHeight); 921d5c851c1Sdrh }else{ 922d5c851c1Sdrh sqlite3ExprDelete(pParse->db, pLeft); 923d5c851c1Sdrh sqlite3ExprDelete(pParse->db, pRight); 9242b359bdbSdan } 9254e0cff60Sdrh return p; 9264e0cff60Sdrh } 9274e0cff60Sdrh 9284e0cff60Sdrh /* 92908de4f79Sdrh ** Add pSelect to the Expr.x.pSelect field. Or, if pExpr is NULL (due 93008de4f79Sdrh ** do a memory allocation failure) then delete the pSelect object. 93108de4f79Sdrh */ 93208de4f79Sdrh void sqlite3PExprAddSelect(Parse *pParse, Expr *pExpr, Select *pSelect){ 93308de4f79Sdrh if( pExpr ){ 93408de4f79Sdrh pExpr->x.pSelect = pSelect; 93508de4f79Sdrh ExprSetProperty(pExpr, EP_xIsSelect|EP_Subquery); 93608de4f79Sdrh sqlite3ExprSetHeightAndFlags(pParse, pExpr); 93708de4f79Sdrh }else{ 93808de4f79Sdrh assert( pParse->db->mallocFailed ); 93908de4f79Sdrh sqlite3SelectDelete(pParse->db, pSelect); 94008de4f79Sdrh } 94108de4f79Sdrh } 94208de4f79Sdrh 94308de4f79Sdrh 94408de4f79Sdrh /* 94591bb0eedSdrh ** Join two expressions using an AND operator. If either expression is 94691bb0eedSdrh ** NULL, then just return the other expression. 9475fb52caaSdrh ** 9485fb52caaSdrh ** If one side or the other of the AND is known to be false, then instead 9495fb52caaSdrh ** of returning an AND expression, just return a constant expression with 9505fb52caaSdrh ** a value of false. 95191bb0eedSdrh */ 952d5c851c1Sdrh Expr *sqlite3ExprAnd(Parse *pParse, Expr *pLeft, Expr *pRight){ 953d5c851c1Sdrh sqlite3 *db = pParse->db; 95491bb0eedSdrh if( pLeft==0 ){ 95591bb0eedSdrh return pRight; 95691bb0eedSdrh }else if( pRight==0 ){ 95791bb0eedSdrh return pLeft; 9582b6e670fSdan }else if( (ExprAlwaysFalse(pLeft) || ExprAlwaysFalse(pRight)) 9592b6e670fSdan && !IN_RENAME_OBJECT 9602b6e670fSdan ){ 9612b6e670fSdan sqlite3ExprDelete(db, pLeft); 9622b6e670fSdan sqlite3ExprDelete(db, pRight); 9635776ee5cSdrh return sqlite3Expr(db, TK_INTEGER, "0"); 96491bb0eedSdrh }else{ 965d5c851c1Sdrh return sqlite3PExpr(pParse, TK_AND, pLeft, pRight); 966a76b5dfcSdrh } 967a76b5dfcSdrh } 968a76b5dfcSdrh 969a76b5dfcSdrh /* 970a76b5dfcSdrh ** Construct a new expression node for a function with multiple 971a76b5dfcSdrh ** arguments. 972a76b5dfcSdrh */ 973954733b3Sdrh Expr *sqlite3ExprFunction( 974954733b3Sdrh Parse *pParse, /* Parsing context */ 975954733b3Sdrh ExprList *pList, /* Argument list */ 976954733b3Sdrh Token *pToken, /* Name of the function */ 977954733b3Sdrh int eDistinct /* SF_Distinct or SF_ALL or 0 */ 978954733b3Sdrh ){ 979a76b5dfcSdrh Expr *pNew; 980633e6d57Sdrh sqlite3 *db = pParse->db; 9814b202ae2Sdanielk1977 assert( pToken ); 982b7916a78Sdrh pNew = sqlite3ExprAlloc(db, TK_FUNCTION, pToken, 1); 983a76b5dfcSdrh if( pNew==0 ){ 984d9da78a2Sdrh sqlite3ExprListDelete(db, pList); /* Avoid memory leak when malloc fails */ 985a76b5dfcSdrh return 0; 986a76b5dfcSdrh } 987954733b3Sdrh if( pList && pList->nExpr > pParse->db->aLimit[SQLITE_LIMIT_FUNCTION_ARG] ){ 988954733b3Sdrh sqlite3ErrorMsg(pParse, "too many arguments on function %T", pToken); 989954733b3Sdrh } 9906ab3a2ecSdanielk1977 pNew->x.pList = pList; 991fca23557Sdrh ExprSetProperty(pNew, EP_HasFunc); 9926ab3a2ecSdanielk1977 assert( !ExprHasProperty(pNew, EP_xIsSelect) ); 9932308ed38Sdrh sqlite3ExprSetHeightAndFlags(pParse, pNew); 994954733b3Sdrh if( eDistinct==SF_Distinct ) ExprSetProperty(pNew, EP_Distinct); 995a76b5dfcSdrh return pNew; 996a76b5dfcSdrh } 997a76b5dfcSdrh 998a76b5dfcSdrh /* 9990dfa5255Sdrh ** Check to see if a function is usable according to current access 10000dfa5255Sdrh ** rules: 10010dfa5255Sdrh ** 10020dfa5255Sdrh ** SQLITE_FUNC_DIRECT - Only usable from top-level SQL 10030dfa5255Sdrh ** 10040dfa5255Sdrh ** SQLITE_FUNC_UNSAFE - Usable if TRUSTED_SCHEMA or from 10050dfa5255Sdrh ** top-level SQL 10060dfa5255Sdrh ** 10070dfa5255Sdrh ** If the function is not usable, create an error. 10080dfa5255Sdrh */ 10090dfa5255Sdrh void sqlite3ExprFunctionUsable( 10100dfa5255Sdrh Parse *pParse, /* Parsing and code generating context */ 10110dfa5255Sdrh Expr *pExpr, /* The function invocation */ 10120dfa5255Sdrh FuncDef *pDef /* The function being invoked */ 10130dfa5255Sdrh ){ 10140dfa5255Sdrh assert( !IN_RENAME_OBJECT ); 10152eeca204Sdrh assert( (pDef->funcFlags & (SQLITE_FUNC_DIRECT|SQLITE_FUNC_UNSAFE))!=0 ); 10162eeca204Sdrh if( ExprHasProperty(pExpr, EP_FromDDL) ){ 10170dfa5255Sdrh if( (pDef->funcFlags & SQLITE_FUNC_DIRECT)!=0 10180dfa5255Sdrh || (pParse->db->flags & SQLITE_TrustedSchema)==0 10190dfa5255Sdrh ){ 10200dfa5255Sdrh /* Functions prohibited in triggers and views if: 10210dfa5255Sdrh ** (1) tagged with SQLITE_DIRECTONLY 10220dfa5255Sdrh ** (2) not tagged with SQLITE_INNOCUOUS (which means it 10230dfa5255Sdrh ** is tagged with SQLITE_FUNC_UNSAFE) and 10240dfa5255Sdrh ** SQLITE_DBCONFIG_TRUSTED_SCHEMA is off (meaning 10250dfa5255Sdrh ** that the schema is possibly tainted). 10260dfa5255Sdrh */ 10270dfa5255Sdrh sqlite3ErrorMsg(pParse, "unsafe use of %s()", pDef->zName); 10280dfa5255Sdrh } 10290dfa5255Sdrh } 10300dfa5255Sdrh } 10310dfa5255Sdrh 10320dfa5255Sdrh /* 1033fa6bc000Sdrh ** Assign a variable number to an expression that encodes a wildcard 1034fa6bc000Sdrh ** in the original SQL statement. 1035fa6bc000Sdrh ** 1036fa6bc000Sdrh ** Wildcards consisting of a single "?" are assigned the next sequential 1037fa6bc000Sdrh ** variable number. 1038fa6bc000Sdrh ** 1039fa6bc000Sdrh ** Wildcards of the form "?nnn" are assigned the number "nnn". We make 10409bf755ccSdrh ** sure "nnn" is not too big to avoid a denial of service attack when 1041fa6bc000Sdrh ** the SQL statement comes from an external source. 1042fa6bc000Sdrh ** 104351f49f17Sdrh ** Wildcards of the form ":aaa", "@aaa", or "$aaa" are assigned the same number 1044fa6bc000Sdrh ** as the previous instance of the same wildcard. Or if this is the first 104560ec914cSpeter.d.reid ** instance of the wildcard, the next sequential variable number is 1046fa6bc000Sdrh ** assigned. 1047fa6bc000Sdrh */ 1048de25a88cSdrh void sqlite3ExprAssignVarNumber(Parse *pParse, Expr *pExpr, u32 n){ 104917435752Sdrh sqlite3 *db = pParse->db; 1050b7916a78Sdrh const char *z; 1051f326d66dSdrh ynVar x; 105217435752Sdrh 1053fa6bc000Sdrh if( pExpr==0 ) return; 1054c5cd1249Sdrh assert( !ExprHasProperty(pExpr, EP_IntValue|EP_Reduced|EP_TokenOnly) ); 105533e619fcSdrh z = pExpr->u.zToken; 1056b7916a78Sdrh assert( z!=0 ); 1057b7916a78Sdrh assert( z[0]!=0 ); 1058b1ed717fSmistachkin assert( n==(u32)sqlite3Strlen30(z) ); 1059b7916a78Sdrh if( z[1]==0 ){ 1060fa6bc000Sdrh /* Wildcard of the form "?". Assign the next variable number */ 1061b7916a78Sdrh assert( z[0]=='?' ); 1062f326d66dSdrh x = (ynVar)(++pParse->nVar); 1063124c0b49Sdrh }else{ 1064f326d66dSdrh int doAdd = 0; 1065124c0b49Sdrh if( z[0]=='?' ){ 1066fa6bc000Sdrh /* Wildcard of the form "?nnn". Convert "nnn" to an integer and 1067fa6bc000Sdrh ** use it as the variable number */ 1068c8d735aeSdan i64 i; 106918814dfbSdrh int bOk; 107018814dfbSdrh if( n==2 ){ /*OPTIMIZATION-IF-TRUE*/ 107118814dfbSdrh i = z[1]-'0'; /* The common case of ?N for a single digit N */ 107218814dfbSdrh bOk = 1; 107318814dfbSdrh }else{ 107418814dfbSdrh bOk = 0==sqlite3Atoi64(&z[1], &i, n-1, SQLITE_UTF8); 107518814dfbSdrh } 1076c5499befSdrh testcase( i==0 ); 1077c5499befSdrh testcase( i==1 ); 1078c5499befSdrh testcase( i==db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER]-1 ); 1079c5499befSdrh testcase( i==db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER] ); 1080c8d735aeSdan if( bOk==0 || i<1 || i>db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER] ){ 1081fa6bc000Sdrh sqlite3ErrorMsg(pParse, "variable number must be between ?1 and ?%d", 1082bb4957f8Sdrh db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER]); 1083c9b39288Sdrh return; 1084fa6bc000Sdrh } 10858e74e7baSdrh x = (ynVar)i; 1086f326d66dSdrh if( x>pParse->nVar ){ 1087f326d66dSdrh pParse->nVar = (int)x; 1088f326d66dSdrh doAdd = 1; 1089f326d66dSdrh }else if( sqlite3VListNumToName(pParse->pVList, x)==0 ){ 1090f326d66dSdrh doAdd = 1; 1091fa6bc000Sdrh } 1092fa6bc000Sdrh }else{ 109351f49f17Sdrh /* Wildcards like ":aaa", "$aaa" or "@aaa". Reuse the same variable 1094fa6bc000Sdrh ** number as the prior appearance of the same name, or if the name 1095fa6bc000Sdrh ** has never appeared before, reuse the same variable number 1096fa6bc000Sdrh */ 10979bf755ccSdrh x = (ynVar)sqlite3VListNameToNum(pParse->pVList, z, n); 10989bf755ccSdrh if( x==0 ){ 10999bf755ccSdrh x = (ynVar)(++pParse->nVar); 1100f326d66dSdrh doAdd = 1; 1101f326d66dSdrh } 1102f326d66dSdrh } 1103f326d66dSdrh if( doAdd ){ 11049bf755ccSdrh pParse->pVList = sqlite3VListAdd(db, pParse->pVList, z, n, x); 1105fa6bc000Sdrh } 1106fa6bc000Sdrh } 1107c9b39288Sdrh pExpr->iColumn = x; 1108f326d66dSdrh if( x>db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER] ){ 1109832b2664Sdanielk1977 sqlite3ErrorMsg(pParse, "too many SQL variables"); 1110832b2664Sdanielk1977 } 1111fa6bc000Sdrh } 1112fa6bc000Sdrh 1113fa6bc000Sdrh /* 1114f6963f99Sdan ** Recursively delete an expression tree. 1115a2e00042Sdrh */ 11164f0010b1Sdrh static SQLITE_NOINLINE void sqlite3ExprDeleteNN(sqlite3 *db, Expr *p){ 11174f0010b1Sdrh assert( p!=0 ); 1118d50ffc41Sdrh /* Sanity check: Assert that the IntValue is non-negative if it exists */ 1119d50ffc41Sdrh assert( !ExprHasProperty(p, EP_IntValue) || p->u.iValue>=0 ); 1120eda079cdSdrh 1121eda079cdSdrh assert( !ExprHasProperty(p, EP_WinFunc) || p->y.pWin!=0 || db->mallocFailed ); 1122eda079cdSdrh assert( p->op!=TK_FUNCTION || ExprHasProperty(p, EP_TokenOnly|EP_Reduced) 11234f9adee2Sdan || p->y.pWin==0 || ExprHasProperty(p, EP_WinFunc) ); 1124209bc522Sdrh #ifdef SQLITE_DEBUG 1125209bc522Sdrh if( ExprHasProperty(p, EP_Leaf) && !ExprHasProperty(p, EP_TokenOnly) ){ 1126209bc522Sdrh assert( p->pLeft==0 ); 1127209bc522Sdrh assert( p->pRight==0 ); 1128209bc522Sdrh assert( p->x.pSelect==0 ); 1129209bc522Sdrh } 1130209bc522Sdrh #endif 1131209bc522Sdrh if( !ExprHasProperty(p, (EP_TokenOnly|EP_Leaf)) ){ 1132c5cd1249Sdrh /* The Expr.x union is never used at the same time as Expr.pRight */ 1133c5cd1249Sdrh assert( p->x.pList==0 || p->pRight==0 ); 11344910a76dSdrh if( p->pLeft && p->op!=TK_SELECT_COLUMN ) sqlite3ExprDeleteNN(db, p->pLeft); 1135d1086679Sdrh if( p->pRight ){ 11364f9adee2Sdan assert( !ExprHasProperty(p, EP_WinFunc) ); 1137d1086679Sdrh sqlite3ExprDeleteNN(db, p->pRight); 1138d1086679Sdrh }else if( ExprHasProperty(p, EP_xIsSelect) ){ 11394f9adee2Sdan assert( !ExprHasProperty(p, EP_WinFunc) ); 11406ab3a2ecSdanielk1977 sqlite3SelectDelete(db, p->x.pSelect); 11416ab3a2ecSdanielk1977 }else{ 11426ab3a2ecSdanielk1977 sqlite3ExprListDelete(db, p->x.pList); 11436ba7ab0dSdan #ifndef SQLITE_OMIT_WINDOWFUNC 1144eda079cdSdrh if( ExprHasProperty(p, EP_WinFunc) ){ 1145eda079cdSdrh sqlite3WindowDelete(db, p->y.pWin); 114686fb6e17Sdan } 11476ba7ab0dSdan #endif 11486ab3a2ecSdanielk1977 } 11498117f113Sdan } 1150209bc522Sdrh if( ExprHasProperty(p, EP_MemToken) ) sqlite3DbFree(db, p->u.zToken); 115133e619fcSdrh if( !ExprHasProperty(p, EP_Static) ){ 1152dbd6a7dcSdrh sqlite3DbFreeNN(db, p); 1153a2e00042Sdrh } 115433e619fcSdrh } 11554f0010b1Sdrh void sqlite3ExprDelete(sqlite3 *db, Expr *p){ 11564f0010b1Sdrh if( p ) sqlite3ExprDeleteNN(db, p); 11574f0010b1Sdrh } 1158a2e00042Sdrh 11598e34e406Sdrh /* Invoke sqlite3RenameExprUnmap() and sqlite3ExprDelete() on the 11608e34e406Sdrh ** expression. 11618e34e406Sdrh */ 11628e34e406Sdrh void sqlite3ExprUnmapAndDelete(Parse *pParse, Expr *p){ 11638e34e406Sdrh if( p ){ 11648e34e406Sdrh if( IN_RENAME_OBJECT ){ 11658e34e406Sdrh sqlite3RenameExprUnmap(pParse, p); 11668e34e406Sdrh } 11678e34e406Sdrh sqlite3ExprDeleteNN(pParse->db, p); 11688e34e406Sdrh } 11698e34e406Sdrh } 11708e34e406Sdrh 1171d2687b77Sdrh /* 11726ab3a2ecSdanielk1977 ** Return the number of bytes allocated for the expression structure 11736ab3a2ecSdanielk1977 ** passed as the first argument. This is always one of EXPR_FULLSIZE, 11746ab3a2ecSdanielk1977 ** EXPR_REDUCEDSIZE or EXPR_TOKENONLYSIZE. 11756ab3a2ecSdanielk1977 */ 11766ab3a2ecSdanielk1977 static int exprStructSize(Expr *p){ 11776ab3a2ecSdanielk1977 if( ExprHasProperty(p, EP_TokenOnly) ) return EXPR_TOKENONLYSIZE; 11786ab3a2ecSdanielk1977 if( ExprHasProperty(p, EP_Reduced) ) return EXPR_REDUCEDSIZE; 11796ab3a2ecSdanielk1977 return EXPR_FULLSIZE; 11806ab3a2ecSdanielk1977 } 11816ab3a2ecSdanielk1977 11826ab3a2ecSdanielk1977 /* 118333e619fcSdrh ** The dupedExpr*Size() routines each return the number of bytes required 118433e619fcSdrh ** to store a copy of an expression or expression tree. They differ in 118533e619fcSdrh ** how much of the tree is measured. 118633e619fcSdrh ** 118733e619fcSdrh ** dupedExprStructSize() Size of only the Expr structure 118833e619fcSdrh ** dupedExprNodeSize() Size of Expr + space for token 118933e619fcSdrh ** dupedExprSize() Expr + token + subtree components 119033e619fcSdrh ** 119133e619fcSdrh *************************************************************************** 119233e619fcSdrh ** 119333e619fcSdrh ** The dupedExprStructSize() function returns two values OR-ed together: 119433e619fcSdrh ** (1) the space required for a copy of the Expr structure only and 119533e619fcSdrh ** (2) the EP_xxx flags that indicate what the structure size should be. 119633e619fcSdrh ** The return values is always one of: 119733e619fcSdrh ** 119833e619fcSdrh ** EXPR_FULLSIZE 119933e619fcSdrh ** EXPR_REDUCEDSIZE | EP_Reduced 120033e619fcSdrh ** EXPR_TOKENONLYSIZE | EP_TokenOnly 120133e619fcSdrh ** 120233e619fcSdrh ** The size of the structure can be found by masking the return value 120333e619fcSdrh ** of this routine with 0xfff. The flags can be found by masking the 120433e619fcSdrh ** return value with EP_Reduced|EP_TokenOnly. 120533e619fcSdrh ** 120633e619fcSdrh ** Note that with flags==EXPRDUP_REDUCE, this routines works on full-size 120733e619fcSdrh ** (unreduced) Expr objects as they or originally constructed by the parser. 120833e619fcSdrh ** During expression analysis, extra information is computed and moved into 1209c95f38d4Sdan ** later parts of the Expr object and that extra information might get chopped 121033e619fcSdrh ** off if the expression is reduced. Note also that it does not work to 121160ec914cSpeter.d.reid ** make an EXPRDUP_REDUCE copy of a reduced expression. It is only legal 121233e619fcSdrh ** to reduce a pristine expression tree from the parser. The implementation 121333e619fcSdrh ** of dupedExprStructSize() contain multiple assert() statements that attempt 121433e619fcSdrh ** to enforce this constraint. 12156ab3a2ecSdanielk1977 */ 12166ab3a2ecSdanielk1977 static int dupedExprStructSize(Expr *p, int flags){ 12176ab3a2ecSdanielk1977 int nSize; 121833e619fcSdrh assert( flags==EXPRDUP_REDUCE || flags==0 ); /* Only one flag value allowed */ 1219aecd8021Sdrh assert( EXPR_FULLSIZE<=0xfff ); 1220aecd8021Sdrh assert( (0xfff & (EP_Reduced|EP_TokenOnly))==0 ); 122167a9b8edSdan if( 0==flags || p->op==TK_SELECT_COLUMN 122267a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC 1223eda079cdSdrh || ExprHasProperty(p, EP_WinFunc) 122467a9b8edSdan #endif 122567a9b8edSdan ){ 12266ab3a2ecSdanielk1977 nSize = EXPR_FULLSIZE; 12276ab3a2ecSdanielk1977 }else{ 1228c5cd1249Sdrh assert( !ExprHasProperty(p, EP_TokenOnly|EP_Reduced) ); 122933e619fcSdrh assert( !ExprHasProperty(p, EP_FromJoin) ); 1230c5cd1249Sdrh assert( !ExprHasProperty(p, EP_MemToken) ); 1231e7375bfaSdrh assert( !ExprHasVVAProperty(p, EP_NoReduce) ); 1232aecd8021Sdrh if( p->pLeft || p->x.pList ){ 123333e619fcSdrh nSize = EXPR_REDUCEDSIZE | EP_Reduced; 123433e619fcSdrh }else{ 1235aecd8021Sdrh assert( p->pRight==0 ); 123633e619fcSdrh nSize = EXPR_TOKENONLYSIZE | EP_TokenOnly; 123733e619fcSdrh } 12386ab3a2ecSdanielk1977 } 12396ab3a2ecSdanielk1977 return nSize; 12406ab3a2ecSdanielk1977 } 12416ab3a2ecSdanielk1977 12426ab3a2ecSdanielk1977 /* 124333e619fcSdrh ** This function returns the space in bytes required to store the copy 124433e619fcSdrh ** of the Expr structure and a copy of the Expr.u.zToken string (if that 124533e619fcSdrh ** string is defined.) 12466ab3a2ecSdanielk1977 */ 12476ab3a2ecSdanielk1977 static int dupedExprNodeSize(Expr *p, int flags){ 124833e619fcSdrh int nByte = dupedExprStructSize(p, flags) & 0xfff; 124933e619fcSdrh if( !ExprHasProperty(p, EP_IntValue) && p->u.zToken ){ 12507301e774Sdrh nByte += sqlite3Strlen30NN(p->u.zToken)+1; 12516ab3a2ecSdanielk1977 } 1252bc73971dSdanielk1977 return ROUND8(nByte); 12536ab3a2ecSdanielk1977 } 12546ab3a2ecSdanielk1977 12556ab3a2ecSdanielk1977 /* 12566ab3a2ecSdanielk1977 ** Return the number of bytes required to create a duplicate of the 12576ab3a2ecSdanielk1977 ** expression passed as the first argument. The second argument is a 12586ab3a2ecSdanielk1977 ** mask containing EXPRDUP_XXX flags. 12596ab3a2ecSdanielk1977 ** 12606ab3a2ecSdanielk1977 ** The value returned includes space to create a copy of the Expr struct 126133e619fcSdrh ** itself and the buffer referred to by Expr.u.zToken, if any. 12626ab3a2ecSdanielk1977 ** 12636ab3a2ecSdanielk1977 ** If the EXPRDUP_REDUCE flag is set, then the return value includes 12646ab3a2ecSdanielk1977 ** space to duplicate all Expr nodes in the tree formed by Expr.pLeft 12656ab3a2ecSdanielk1977 ** and Expr.pRight variables (but not for any structures pointed to or 12666ab3a2ecSdanielk1977 ** descended from the Expr.x.pList or Expr.x.pSelect variables). 12676ab3a2ecSdanielk1977 */ 12686ab3a2ecSdanielk1977 static int dupedExprSize(Expr *p, int flags){ 12696ab3a2ecSdanielk1977 int nByte = 0; 12706ab3a2ecSdanielk1977 if( p ){ 12716ab3a2ecSdanielk1977 nByte = dupedExprNodeSize(p, flags); 12726ab3a2ecSdanielk1977 if( flags&EXPRDUP_REDUCE ){ 1273b7916a78Sdrh nByte += dupedExprSize(p->pLeft, flags) + dupedExprSize(p->pRight, flags); 12746ab3a2ecSdanielk1977 } 12756ab3a2ecSdanielk1977 } 12766ab3a2ecSdanielk1977 return nByte; 12776ab3a2ecSdanielk1977 } 12786ab3a2ecSdanielk1977 12796ab3a2ecSdanielk1977 /* 12806ab3a2ecSdanielk1977 ** This function is similar to sqlite3ExprDup(), except that if pzBuffer 12816ab3a2ecSdanielk1977 ** is not NULL then *pzBuffer is assumed to point to a buffer large enough 128233e619fcSdrh ** to store the copy of expression p, the copies of p->u.zToken 12836ab3a2ecSdanielk1977 ** (if applicable), and the copies of the p->pLeft and p->pRight expressions, 128460ec914cSpeter.d.reid ** if any. Before returning, *pzBuffer is set to the first byte past the 12856ab3a2ecSdanielk1977 ** portion of the buffer copied into by this function. 12866ab3a2ecSdanielk1977 */ 12873c19469cSdrh static Expr *exprDup(sqlite3 *db, Expr *p, int dupFlags, u8 **pzBuffer){ 12883c19469cSdrh Expr *pNew; /* Value to return */ 12893c19469cSdrh u8 *zAlloc; /* Memory space from which to build Expr object */ 12903c19469cSdrh u32 staticFlag; /* EP_Static if space not obtained from malloc */ 12916ab3a2ecSdanielk1977 12923c19469cSdrh assert( db!=0 ); 12933c19469cSdrh assert( p ); 12943c19469cSdrh assert( dupFlags==0 || dupFlags==EXPRDUP_REDUCE ); 12953c19469cSdrh assert( pzBuffer==0 || dupFlags==EXPRDUP_REDUCE ); 12966ab3a2ecSdanielk1977 12976ab3a2ecSdanielk1977 /* Figure out where to write the new Expr structure. */ 12986ab3a2ecSdanielk1977 if( pzBuffer ){ 12996ab3a2ecSdanielk1977 zAlloc = *pzBuffer; 130033e619fcSdrh staticFlag = EP_Static; 13016ab3a2ecSdanielk1977 }else{ 13023c19469cSdrh zAlloc = sqlite3DbMallocRawNN(db, dupedExprSize(p, dupFlags)); 13033c19469cSdrh staticFlag = 0; 13046ab3a2ecSdanielk1977 } 13056ab3a2ecSdanielk1977 pNew = (Expr *)zAlloc; 13066ab3a2ecSdanielk1977 13076ab3a2ecSdanielk1977 if( pNew ){ 13086ab3a2ecSdanielk1977 /* Set nNewSize to the size allocated for the structure pointed to 13096ab3a2ecSdanielk1977 ** by pNew. This is either EXPR_FULLSIZE, EXPR_REDUCEDSIZE or 13106ab3a2ecSdanielk1977 ** EXPR_TOKENONLYSIZE. nToken is set to the number of bytes consumed 131133e619fcSdrh ** by the copy of the p->u.zToken string (if any). 13126ab3a2ecSdanielk1977 */ 13133c19469cSdrh const unsigned nStructSize = dupedExprStructSize(p, dupFlags); 131433e619fcSdrh const int nNewSize = nStructSize & 0xfff; 131533e619fcSdrh int nToken; 131633e619fcSdrh if( !ExprHasProperty(p, EP_IntValue) && p->u.zToken ){ 131733e619fcSdrh nToken = sqlite3Strlen30(p->u.zToken) + 1; 131833e619fcSdrh }else{ 131933e619fcSdrh nToken = 0; 132033e619fcSdrh } 13213c19469cSdrh if( dupFlags ){ 13226ab3a2ecSdanielk1977 assert( ExprHasProperty(p, EP_Reduced)==0 ); 13236ab3a2ecSdanielk1977 memcpy(zAlloc, p, nNewSize); 13246ab3a2ecSdanielk1977 }else{ 13253e6a1411Sdan u32 nSize = (u32)exprStructSize(p); 13266ab3a2ecSdanielk1977 memcpy(zAlloc, p, nSize); 132772ea29d7Sdrh if( nSize<EXPR_FULLSIZE ){ 13286ab3a2ecSdanielk1977 memset(&zAlloc[nSize], 0, EXPR_FULLSIZE-nSize); 13296ab3a2ecSdanielk1977 } 133072ea29d7Sdrh } 13316ab3a2ecSdanielk1977 133233e619fcSdrh /* Set the EP_Reduced, EP_TokenOnly, and EP_Static flags appropriately. */ 1333c5cd1249Sdrh pNew->flags &= ~(EP_Reduced|EP_TokenOnly|EP_Static|EP_MemToken); 133433e619fcSdrh pNew->flags |= nStructSize & (EP_Reduced|EP_TokenOnly); 133533e619fcSdrh pNew->flags |= staticFlag; 1336e7375bfaSdrh ExprClearVVAProperties(pNew); 1337e7375bfaSdrh if( dupFlags ){ 1338e7375bfaSdrh ExprSetVVAProperty(pNew, EP_Immutable); 1339e7375bfaSdrh } 13406ab3a2ecSdanielk1977 134133e619fcSdrh /* Copy the p->u.zToken string, if any. */ 13426ab3a2ecSdanielk1977 if( nToken ){ 134333e619fcSdrh char *zToken = pNew->u.zToken = (char*)&zAlloc[nNewSize]; 134433e619fcSdrh memcpy(zToken, p->u.zToken, nToken); 13456ab3a2ecSdanielk1977 } 13466ab3a2ecSdanielk1977 1347209bc522Sdrh if( 0==((p->flags|pNew->flags) & (EP_TokenOnly|EP_Leaf)) ){ 13486ab3a2ecSdanielk1977 /* Fill in the pNew->x.pSelect or pNew->x.pList member. */ 13496ab3a2ecSdanielk1977 if( ExprHasProperty(p, EP_xIsSelect) ){ 13503c19469cSdrh pNew->x.pSelect = sqlite3SelectDup(db, p->x.pSelect, dupFlags); 13516ab3a2ecSdanielk1977 }else{ 13523c19469cSdrh pNew->x.pList = sqlite3ExprListDup(db, p->x.pList, dupFlags); 13536ab3a2ecSdanielk1977 } 13546ab3a2ecSdanielk1977 } 13556ab3a2ecSdanielk1977 13566ab3a2ecSdanielk1977 /* Fill in pNew->pLeft and pNew->pRight. */ 13574f9adee2Sdan if( ExprHasProperty(pNew, EP_Reduced|EP_TokenOnly|EP_WinFunc) ){ 13583c19469cSdrh zAlloc += dupedExprNodeSize(p, dupFlags); 1359209bc522Sdrh if( !ExprHasProperty(pNew, EP_TokenOnly|EP_Leaf) ){ 13603c19469cSdrh pNew->pLeft = p->pLeft ? 13613c19469cSdrh exprDup(db, p->pLeft, EXPRDUP_REDUCE, &zAlloc) : 0; 13623c19469cSdrh pNew->pRight = p->pRight ? 13633c19469cSdrh exprDup(db, p->pRight, EXPRDUP_REDUCE, &zAlloc) : 0; 13646ab3a2ecSdanielk1977 } 136567a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC 1366eda079cdSdrh if( ExprHasProperty(p, EP_WinFunc) ){ 1367eda079cdSdrh pNew->y.pWin = sqlite3WindowDup(db, pNew, p->y.pWin); 1368eda079cdSdrh assert( ExprHasProperty(pNew, EP_WinFunc) ); 1369e2f781b9Sdan } 137067a9b8edSdan #endif /* SQLITE_OMIT_WINDOWFUNC */ 137153988068Sdrh if( pzBuffer ){ 137253988068Sdrh *pzBuffer = zAlloc; 137353988068Sdrh } 137453988068Sdrh }else{ 1375209bc522Sdrh if( !ExprHasProperty(p, EP_TokenOnly|EP_Leaf) ){ 13769854260bSdrh if( pNew->op==TK_SELECT_COLUMN ){ 13779854260bSdrh pNew->pLeft = p->pLeft; 137847073f62Sdrh assert( p->iColumn==0 || p->pRight==0 ); 137947073f62Sdrh assert( p->pRight==0 || p->pRight==p->pLeft ); 13809854260bSdrh }else{ 13816ab3a2ecSdanielk1977 pNew->pLeft = sqlite3ExprDup(db, p->pLeft, 0); 13829854260bSdrh } 13836ab3a2ecSdanielk1977 pNew->pRight = sqlite3ExprDup(db, p->pRight, 0); 13846ab3a2ecSdanielk1977 } 13856ab3a2ecSdanielk1977 } 13866ab3a2ecSdanielk1977 } 13876ab3a2ecSdanielk1977 return pNew; 13886ab3a2ecSdanielk1977 } 13896ab3a2ecSdanielk1977 13906ab3a2ecSdanielk1977 /* 1391bfe31e7fSdan ** Create and return a deep copy of the object passed as the second 1392bfe31e7fSdan ** argument. If an OOM condition is encountered, NULL is returned 1393bfe31e7fSdan ** and the db->mallocFailed flag set. 1394bfe31e7fSdan */ 1395eede6a53Sdan #ifndef SQLITE_OMIT_CTE 1396bfe31e7fSdan static With *withDup(sqlite3 *db, With *p){ 13974e9119d9Sdan With *pRet = 0; 13984e9119d9Sdan if( p ){ 1399d4de9f7bSdrh sqlite3_int64 nByte = sizeof(*p) + sizeof(p->a[0]) * (p->nCte-1); 14004e9119d9Sdan pRet = sqlite3DbMallocZero(db, nByte); 14014e9119d9Sdan if( pRet ){ 14024e9119d9Sdan int i; 14034e9119d9Sdan pRet->nCte = p->nCte; 14044e9119d9Sdan for(i=0; i<p->nCte; i++){ 14054e9119d9Sdan pRet->a[i].pSelect = sqlite3SelectDup(db, p->a[i].pSelect, 0); 14064e9119d9Sdan pRet->a[i].pCols = sqlite3ExprListDup(db, p->a[i].pCols, 0); 14074e9119d9Sdan pRet->a[i].zName = sqlite3DbStrDup(db, p->a[i].zName); 14084e9119d9Sdan } 14094e9119d9Sdan } 14104e9119d9Sdan } 14114e9119d9Sdan return pRet; 14124e9119d9Sdan } 1413eede6a53Sdan #else 1414eede6a53Sdan # define withDup(x,y) 0 1415eede6a53Sdan #endif 14164e9119d9Sdan 1417a8389975Sdrh #ifndef SQLITE_OMIT_WINDOWFUNC 1418a8389975Sdrh /* 1419a8389975Sdrh ** The gatherSelectWindows() procedure and its helper routine 1420a8389975Sdrh ** gatherSelectWindowsCallback() are used to scan all the expressions 1421a8389975Sdrh ** an a newly duplicated SELECT statement and gather all of the Window 1422a8389975Sdrh ** objects found there, assembling them onto the linked list at Select->pWin. 1423a8389975Sdrh */ 1424a8389975Sdrh static int gatherSelectWindowsCallback(Walker *pWalker, Expr *pExpr){ 14256ba7ab0dSdan if( pExpr->op==TK_FUNCTION && ExprHasProperty(pExpr, EP_WinFunc) ){ 142675b0821eSdan Select *pSelect = pWalker->u.pSelect; 142775b0821eSdan Window *pWin = pExpr->y.pWin; 142875b0821eSdan assert( pWin ); 14294f9adee2Sdan assert( IsWindowFunc(pExpr) ); 1430e0ae3f69Sdan assert( pWin->ppThis==0 ); 1431a3fcc000Sdan sqlite3WindowLink(pSelect, pWin); 1432a8389975Sdrh } 1433a8389975Sdrh return WRC_Continue; 1434a8389975Sdrh } 1435a37b6a5eSdrh static int gatherSelectWindowsSelectCallback(Walker *pWalker, Select *p){ 1436a37b6a5eSdrh return p==pWalker->u.pSelect ? WRC_Continue : WRC_Prune; 1437a37b6a5eSdrh } 1438a8389975Sdrh static void gatherSelectWindows(Select *p){ 1439a8389975Sdrh Walker w; 1440a8389975Sdrh w.xExprCallback = gatherSelectWindowsCallback; 1441a37b6a5eSdrh w.xSelectCallback = gatherSelectWindowsSelectCallback; 1442a37b6a5eSdrh w.xSelectCallback2 = 0; 14439c46c66cSdrh w.pParse = 0; 1444a8389975Sdrh w.u.pSelect = p; 1445a37b6a5eSdrh sqlite3WalkSelect(&w, p); 1446a8389975Sdrh } 1447a8389975Sdrh #endif 1448a8389975Sdrh 1449a8389975Sdrh 1450a76b5dfcSdrh /* 1451ff78bd2fSdrh ** The following group of routines make deep copies of expressions, 1452ff78bd2fSdrh ** expression lists, ID lists, and select statements. The copies can 1453ff78bd2fSdrh ** be deleted (by being passed to their respective ...Delete() routines) 1454ff78bd2fSdrh ** without effecting the originals. 1455ff78bd2fSdrh ** 14564adee20fSdanielk1977 ** The expression list, ID, and source lists return by sqlite3ExprListDup(), 14574adee20fSdanielk1977 ** sqlite3IdListDup(), and sqlite3SrcListDup() can not be further expanded 1458ad3cab52Sdrh ** by subsequent calls to sqlite*ListAppend() routines. 1459ff78bd2fSdrh ** 1460ad3cab52Sdrh ** Any tables that the SrcList might point to are not duplicated. 14616ab3a2ecSdanielk1977 ** 1462b7916a78Sdrh ** The flags parameter contains a combination of the EXPRDUP_XXX flags. 14636ab3a2ecSdanielk1977 ** If the EXPRDUP_REDUCE flag is set, then the structure returned is a 14646ab3a2ecSdanielk1977 ** truncated version of the usual Expr structure that will be stored as 14656ab3a2ecSdanielk1977 ** part of the in-memory representation of the database schema. 1466ff78bd2fSdrh */ 14676ab3a2ecSdanielk1977 Expr *sqlite3ExprDup(sqlite3 *db, Expr *p, int flags){ 146872ea29d7Sdrh assert( flags==0 || flags==EXPRDUP_REDUCE ); 14693c19469cSdrh return p ? exprDup(db, p, flags, 0) : 0; 1470ff78bd2fSdrh } 14716ab3a2ecSdanielk1977 ExprList *sqlite3ExprListDup(sqlite3 *db, ExprList *p, int flags){ 1472ff78bd2fSdrh ExprList *pNew; 1473145716b3Sdrh struct ExprList_item *pItem, *pOldItem; 1474ff78bd2fSdrh int i; 1475b163748eSdrh Expr *pPriorSelectCol = 0; 1476575fad65Sdrh assert( db!=0 ); 1477ff78bd2fSdrh if( p==0 ) return 0; 147897258194Sdrh pNew = sqlite3DbMallocRawNN(db, sqlite3DbMallocSize(db, p)); 1479ff78bd2fSdrh if( pNew==0 ) return 0; 1480a19543feSdrh pNew->nExpr = p->nExpr; 148150e43c50Sdrh pNew->nAlloc = p->nAlloc; 148243606175Sdrh pItem = pNew->a; 1483145716b3Sdrh pOldItem = p->a; 1484145716b3Sdrh for(i=0; i<p->nExpr; i++, pItem++, pOldItem++){ 14856ab3a2ecSdanielk1977 Expr *pOldExpr = pOldItem->pExpr; 148647073f62Sdrh Expr *pNewExpr; 1487b5526ea6Sdrh pItem->pExpr = sqlite3ExprDup(db, pOldExpr, flags); 148847073f62Sdrh if( pOldExpr 148947073f62Sdrh && pOldExpr->op==TK_SELECT_COLUMN 149047073f62Sdrh && (pNewExpr = pItem->pExpr)!=0 149147073f62Sdrh ){ 149247073f62Sdrh assert( pNewExpr->iColumn==0 || i>0 ); 149347073f62Sdrh if( pNewExpr->iColumn==0 ){ 149447073f62Sdrh assert( pOldExpr->pLeft==pOldExpr->pRight ); 1495b163748eSdrh pPriorSelectCol = pNewExpr->pLeft = pNewExpr->pRight; 1496b163748eSdrh }else{ 1497b163748eSdrh assert( i>0 ); 1498b163748eSdrh assert( pItem[-1].pExpr!=0 ); 1499b163748eSdrh assert( pNewExpr->iColumn==pItem[-1].pExpr->iColumn+1 ); 1500b163748eSdrh assert( pPriorSelectCol==pItem[-1].pExpr->pLeft ); 1501b163748eSdrh pNewExpr->pLeft = pPriorSelectCol; 150247073f62Sdrh } 150347073f62Sdrh } 150441cee668Sdrh pItem->zEName = sqlite3DbStrDup(db, pOldItem->zEName); 15056e11892dSdan pItem->sortFlags = pOldItem->sortFlags; 1506cbb9da33Sdrh pItem->eEName = pOldItem->eEName; 15073e7bc9caSdrh pItem->done = 0; 1508ae8e45cbSdan pItem->bNulls = pOldItem->bNulls; 150924e25d32Sdan pItem->bSorterRef = pOldItem->bSorterRef; 1510c2acc4e4Sdrh pItem->u = pOldItem->u; 1511ff78bd2fSdrh } 1512ff78bd2fSdrh return pNew; 1513ff78bd2fSdrh } 151493758c8dSdanielk1977 151593758c8dSdanielk1977 /* 151693758c8dSdanielk1977 ** If cursors, triggers, views and subqueries are all omitted from 151793758c8dSdanielk1977 ** the build, then none of the following routines, except for 151893758c8dSdanielk1977 ** sqlite3SelectDup(), can be called. sqlite3SelectDup() is sometimes 151993758c8dSdanielk1977 ** called with a NULL argument. 152093758c8dSdanielk1977 */ 15216a67fe8eSdanielk1977 #if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_TRIGGER) \ 15226a67fe8eSdanielk1977 || !defined(SQLITE_OMIT_SUBQUERY) 15236ab3a2ecSdanielk1977 SrcList *sqlite3SrcListDup(sqlite3 *db, SrcList *p, int flags){ 1524ad3cab52Sdrh SrcList *pNew; 1525ad3cab52Sdrh int i; 1526113088ecSdrh int nByte; 1527575fad65Sdrh assert( db!=0 ); 1528ad3cab52Sdrh if( p==0 ) return 0; 1529113088ecSdrh nByte = sizeof(*p) + (p->nSrc>0 ? sizeof(p->a[0]) * (p->nSrc-1) : 0); 1530575fad65Sdrh pNew = sqlite3DbMallocRawNN(db, nByte ); 1531ad3cab52Sdrh if( pNew==0 ) return 0; 15324305d103Sdrh pNew->nSrc = pNew->nAlloc = p->nSrc; 1533ad3cab52Sdrh for(i=0; i<p->nSrc; i++){ 15347601294aSdrh SrcItem *pNewItem = &pNew->a[i]; 15357601294aSdrh SrcItem *pOldItem = &p->a[i]; 1536ed8a3bb1Sdrh Table *pTab; 153741fb5cd1Sdan pNewItem->pSchema = pOldItem->pSchema; 153817435752Sdrh pNewItem->zDatabase = sqlite3DbStrDup(db, pOldItem->zDatabase); 153917435752Sdrh pNewItem->zName = sqlite3DbStrDup(db, pOldItem->zName); 154017435752Sdrh pNewItem->zAlias = sqlite3DbStrDup(db, pOldItem->zAlias); 15418a48b9c0Sdrh pNewItem->fg = pOldItem->fg; 15424efc4754Sdrh pNewItem->iCursor = pOldItem->iCursor; 15435b6a9ed4Sdrh pNewItem->addrFillSub = pOldItem->addrFillSub; 15445b6a9ed4Sdrh pNewItem->regReturn = pOldItem->regReturn; 15458a48b9c0Sdrh if( pNewItem->fg.isIndexedBy ){ 15468a48b9c0Sdrh pNewItem->u1.zIndexedBy = sqlite3DbStrDup(db, pOldItem->u1.zIndexedBy); 15478a48b9c0Sdrh } 1548a79e2a2dSdrh pNewItem->u2 = pOldItem->u2; 1549a79e2a2dSdrh if( pNewItem->fg.isCte ){ 1550a79e2a2dSdrh pNewItem->u2.pCteUse->nUse++; 1551a79e2a2dSdrh } 15528a48b9c0Sdrh if( pNewItem->fg.isTabFunc ){ 15538a48b9c0Sdrh pNewItem->u1.pFuncArg = 15548a48b9c0Sdrh sqlite3ExprListDup(db, pOldItem->u1.pFuncArg, flags); 15558a48b9c0Sdrh } 1556ed8a3bb1Sdrh pTab = pNewItem->pTab = pOldItem->pTab; 1557ed8a3bb1Sdrh if( pTab ){ 155879df7782Sdrh pTab->nTabRef++; 1559a1cb183dSdanielk1977 } 15606ab3a2ecSdanielk1977 pNewItem->pSelect = sqlite3SelectDup(db, pOldItem->pSelect, flags); 15616ab3a2ecSdanielk1977 pNewItem->pOn = sqlite3ExprDup(db, pOldItem->pOn, flags); 156217435752Sdrh pNewItem->pUsing = sqlite3IdListDup(db, pOldItem->pUsing); 15636c18b6e0Sdanielk1977 pNewItem->colUsed = pOldItem->colUsed; 1564ad3cab52Sdrh } 1565ad3cab52Sdrh return pNew; 1566ad3cab52Sdrh } 156717435752Sdrh IdList *sqlite3IdListDup(sqlite3 *db, IdList *p){ 1568ff78bd2fSdrh IdList *pNew; 1569ff78bd2fSdrh int i; 1570575fad65Sdrh assert( db!=0 ); 1571ff78bd2fSdrh if( p==0 ) return 0; 1572575fad65Sdrh pNew = sqlite3DbMallocRawNN(db, sizeof(*pNew) ); 1573ff78bd2fSdrh if( pNew==0 ) return 0; 15746c535158Sdrh pNew->nId = p->nId; 1575575fad65Sdrh pNew->a = sqlite3DbMallocRawNN(db, p->nId*sizeof(p->a[0]) ); 1576d5d56523Sdanielk1977 if( pNew->a==0 ){ 1577dbd6a7dcSdrh sqlite3DbFreeNN(db, pNew); 1578d5d56523Sdanielk1977 return 0; 1579d5d56523Sdanielk1977 } 15806c535158Sdrh /* Note that because the size of the allocation for p->a[] is not 15816c535158Sdrh ** necessarily a power of two, sqlite3IdListAppend() may not be called 15826c535158Sdrh ** on the duplicate created by this function. */ 1583ff78bd2fSdrh for(i=0; i<p->nId; i++){ 15844efc4754Sdrh struct IdList_item *pNewItem = &pNew->a[i]; 15854efc4754Sdrh struct IdList_item *pOldItem = &p->a[i]; 158617435752Sdrh pNewItem->zName = sqlite3DbStrDup(db, pOldItem->zName); 15874efc4754Sdrh pNewItem->idx = pOldItem->idx; 1588ff78bd2fSdrh } 1589ff78bd2fSdrh return pNew; 1590ff78bd2fSdrh } 1591a7466205Sdan Select *sqlite3SelectDup(sqlite3 *db, Select *pDup, int flags){ 1592a7466205Sdan Select *pRet = 0; 1593a7466205Sdan Select *pNext = 0; 1594a7466205Sdan Select **pp = &pRet; 1595a7466205Sdan Select *p; 1596a7466205Sdan 1597575fad65Sdrh assert( db!=0 ); 1598a7466205Sdan for(p=pDup; p; p=p->pPrior){ 1599a7466205Sdan Select *pNew = sqlite3DbMallocRawNN(db, sizeof(*p) ); 1600a7466205Sdan if( pNew==0 ) break; 1601b7916a78Sdrh pNew->pEList = sqlite3ExprListDup(db, p->pEList, flags); 16026ab3a2ecSdanielk1977 pNew->pSrc = sqlite3SrcListDup(db, p->pSrc, flags); 16036ab3a2ecSdanielk1977 pNew->pWhere = sqlite3ExprDup(db, p->pWhere, flags); 16046ab3a2ecSdanielk1977 pNew->pGroupBy = sqlite3ExprListDup(db, p->pGroupBy, flags); 16056ab3a2ecSdanielk1977 pNew->pHaving = sqlite3ExprDup(db, p->pHaving, flags); 16066ab3a2ecSdanielk1977 pNew->pOrderBy = sqlite3ExprListDup(db, p->pOrderBy, flags); 1607ff78bd2fSdrh pNew->op = p->op; 1608a7466205Sdan pNew->pNext = pNext; 1609a7466205Sdan pNew->pPrior = 0; 16106ab3a2ecSdanielk1977 pNew->pLimit = sqlite3ExprDup(db, p->pLimit, flags); 161192b01d53Sdrh pNew->iLimit = 0; 161292b01d53Sdrh pNew->iOffset = 0; 16137d10d5a6Sdrh pNew->selFlags = p->selFlags & ~SF_UsesEphemeral; 1614b9bb7c18Sdrh pNew->addrOpenEphm[0] = -1; 1615b9bb7c18Sdrh pNew->addrOpenEphm[1] = -1; 1616ec2da854Sdrh pNew->nSelectRow = p->nSelectRow; 16174e9119d9Sdan pNew->pWith = withDup(db, p->pWith); 161867a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC 16192e362f97Sdan pNew->pWin = 0; 1620c95f38d4Sdan pNew->pWinDefn = sqlite3WindowListDup(db, p->pWinDefn); 16214780b9adSdan if( p->pWin && db->mallocFailed==0 ) gatherSelectWindows(pNew); 162267a9b8edSdan #endif 1623fef37760Sdrh pNew->selId = p->selId; 1624a7466205Sdan *pp = pNew; 1625a7466205Sdan pp = &pNew->pPrior; 1626a7466205Sdan pNext = pNew; 1627a7466205Sdan } 1628a7466205Sdan 1629a7466205Sdan return pRet; 1630ff78bd2fSdrh } 163193758c8dSdanielk1977 #else 16326ab3a2ecSdanielk1977 Select *sqlite3SelectDup(sqlite3 *db, Select *p, int flags){ 163393758c8dSdanielk1977 assert( p==0 ); 163493758c8dSdanielk1977 return 0; 163593758c8dSdanielk1977 } 163693758c8dSdanielk1977 #endif 1637ff78bd2fSdrh 1638ff78bd2fSdrh 1639ff78bd2fSdrh /* 1640a76b5dfcSdrh ** Add a new element to the end of an expression list. If pList is 1641a76b5dfcSdrh ** initially NULL, then create a new expression list. 1642b7916a78Sdrh ** 1643a19543feSdrh ** The pList argument must be either NULL or a pointer to an ExprList 1644a19543feSdrh ** obtained from a prior call to sqlite3ExprListAppend(). This routine 1645a19543feSdrh ** may not be used with an ExprList obtained from sqlite3ExprListDup(). 1646a19543feSdrh ** Reason: This routine assumes that the number of slots in pList->a[] 1647a19543feSdrh ** is a power of two. That is true for sqlite3ExprListAppend() returns 1648a19543feSdrh ** but is not necessarily true from the return value of sqlite3ExprListDup(). 1649a19543feSdrh ** 1650b7916a78Sdrh ** If a memory allocation error occurs, the entire list is freed and 1651b7916a78Sdrh ** NULL is returned. If non-NULL is returned, then it is guaranteed 1652b7916a78Sdrh ** that the new entry was successfully appended. 1653a76b5dfcSdrh */ 165450e43c50Sdrh static const struct ExprList_item zeroItem; 165550e43c50Sdrh SQLITE_NOINLINE ExprList *sqlite3ExprListAppendNew( 165650e43c50Sdrh sqlite3 *db, /* Database handle. Used for memory allocation */ 165750e43c50Sdrh Expr *pExpr /* Expression to be appended. Might be NULL */ 165850e43c50Sdrh ){ 165950e43c50Sdrh struct ExprList_item *pItem; 166050e43c50Sdrh ExprList *pList; 166150e43c50Sdrh 166250e43c50Sdrh pList = sqlite3DbMallocRawNN(db, sizeof(ExprList)+sizeof(pList->a[0])*4 ); 166350e43c50Sdrh if( pList==0 ){ 166450e43c50Sdrh sqlite3ExprDelete(db, pExpr); 166550e43c50Sdrh return 0; 166650e43c50Sdrh } 166750e43c50Sdrh pList->nAlloc = 4; 166850e43c50Sdrh pList->nExpr = 1; 166950e43c50Sdrh pItem = &pList->a[0]; 167050e43c50Sdrh *pItem = zeroItem; 167150e43c50Sdrh pItem->pExpr = pExpr; 167250e43c50Sdrh return pList; 167350e43c50Sdrh } 167450e43c50Sdrh SQLITE_NOINLINE ExprList *sqlite3ExprListAppendGrow( 167550e43c50Sdrh sqlite3 *db, /* Database handle. Used for memory allocation */ 167650e43c50Sdrh ExprList *pList, /* List to which to append. Might be NULL */ 167750e43c50Sdrh Expr *pExpr /* Expression to be appended. Might be NULL */ 167850e43c50Sdrh ){ 167950e43c50Sdrh struct ExprList_item *pItem; 168050e43c50Sdrh ExprList *pNew; 168150e43c50Sdrh pList->nAlloc *= 2; 168250e43c50Sdrh pNew = sqlite3DbRealloc(db, pList, 168350e43c50Sdrh sizeof(*pList)+(pList->nAlloc-1)*sizeof(pList->a[0])); 168450e43c50Sdrh if( pNew==0 ){ 168550e43c50Sdrh sqlite3ExprListDelete(db, pList); 168650e43c50Sdrh sqlite3ExprDelete(db, pExpr); 168750e43c50Sdrh return 0; 168850e43c50Sdrh }else{ 168950e43c50Sdrh pList = pNew; 169050e43c50Sdrh } 169150e43c50Sdrh pItem = &pList->a[pList->nExpr++]; 169250e43c50Sdrh *pItem = zeroItem; 169350e43c50Sdrh pItem->pExpr = pExpr; 169450e43c50Sdrh return pList; 169550e43c50Sdrh } 169617435752Sdrh ExprList *sqlite3ExprListAppend( 169717435752Sdrh Parse *pParse, /* Parsing context */ 169817435752Sdrh ExprList *pList, /* List to which to append. Might be NULL */ 1699b7916a78Sdrh Expr *pExpr /* Expression to be appended. Might be NULL */ 170017435752Sdrh ){ 170143606175Sdrh struct ExprList_item *pItem; 1702a76b5dfcSdrh if( pList==0 ){ 170350e43c50Sdrh return sqlite3ExprListAppendNew(pParse->db,pExpr); 1704a76b5dfcSdrh } 170550e43c50Sdrh if( pList->nAlloc<pList->nExpr+1 ){ 170650e43c50Sdrh return sqlite3ExprListAppendGrow(pParse->db,pList,pExpr); 1707a76b5dfcSdrh } 170843606175Sdrh pItem = &pList->a[pList->nExpr++]; 170950e43c50Sdrh *pItem = zeroItem; 1710e94ddc9eSdanielk1977 pItem->pExpr = pExpr; 1711a76b5dfcSdrh return pList; 1712a76b5dfcSdrh } 1713a76b5dfcSdrh 1714a76b5dfcSdrh /* 17158762ec19Sdrh ** pColumns and pExpr form a vector assignment which is part of the SET 17168762ec19Sdrh ** clause of an UPDATE statement. Like this: 1717a1251bc4Sdrh ** 1718a1251bc4Sdrh ** (a,b,c) = (expr1,expr2,expr3) 1719a1251bc4Sdrh ** Or: (a,b,c) = (SELECT x,y,z FROM ....) 1720a1251bc4Sdrh ** 1721a1251bc4Sdrh ** For each term of the vector assignment, append new entries to the 1722b67343d0Sdrh ** expression list pList. In the case of a subquery on the RHS, append 1723a1251bc4Sdrh ** TK_SELECT_COLUMN expressions. 1724a1251bc4Sdrh */ 1725a1251bc4Sdrh ExprList *sqlite3ExprListAppendVector( 1726a1251bc4Sdrh Parse *pParse, /* Parsing context */ 1727a1251bc4Sdrh ExprList *pList, /* List to which to append. Might be NULL */ 1728a1251bc4Sdrh IdList *pColumns, /* List of names of LHS of the assignment */ 1729a1251bc4Sdrh Expr *pExpr /* Vector expression to be appended. Might be NULL */ 1730a1251bc4Sdrh ){ 1731a1251bc4Sdrh sqlite3 *db = pParse->db; 1732a1251bc4Sdrh int n; 1733a1251bc4Sdrh int i; 173466860af3Sdrh int iFirst = pList ? pList->nExpr : 0; 1735321e828dSdrh /* pColumns can only be NULL due to an OOM but an OOM will cause an 1736321e828dSdrh ** exit prior to this routine being invoked */ 1737321e828dSdrh if( NEVER(pColumns==0) ) goto vector_append_error; 1738a1251bc4Sdrh if( pExpr==0 ) goto vector_append_error; 1739966e2911Sdrh 1740966e2911Sdrh /* If the RHS is a vector, then we can immediately check to see that 1741966e2911Sdrh ** the size of the RHS and LHS match. But if the RHS is a SELECT, 1742966e2911Sdrh ** wildcards ("*") in the result set of the SELECT must be expanded before 1743966e2911Sdrh ** we can do the size check, so defer the size check until code generation. 1744966e2911Sdrh */ 1745966e2911Sdrh if( pExpr->op!=TK_SELECT && pColumns->nId!=(n=sqlite3ExprVectorSize(pExpr)) ){ 1746a1251bc4Sdrh sqlite3ErrorMsg(pParse, "%d columns assigned %d values", 1747a1251bc4Sdrh pColumns->nId, n); 1748a1251bc4Sdrh goto vector_append_error; 1749a1251bc4Sdrh } 1750966e2911Sdrh 1751966e2911Sdrh for(i=0; i<pColumns->nId; i++){ 1752a1251bc4Sdrh Expr *pSubExpr = sqlite3ExprForVectorField(pParse, pExpr, i); 1753554a9dc7Sdrh assert( pSubExpr!=0 || db->mallocFailed ); 1754554a9dc7Sdrh assert( pSubExpr==0 || pSubExpr->iTable==0 ); 1755554a9dc7Sdrh if( pSubExpr==0 ) continue; 1756554a9dc7Sdrh pSubExpr->iTable = pColumns->nId; 1757a1251bc4Sdrh pList = sqlite3ExprListAppend(pParse, pList, pSubExpr); 1758a1251bc4Sdrh if( pList ){ 175966860af3Sdrh assert( pList->nExpr==iFirst+i+1 ); 176041cee668Sdrh pList->a[pList->nExpr-1].zEName = pColumns->a[i].zName; 1761a1251bc4Sdrh pColumns->a[i].zName = 0; 1762a1251bc4Sdrh } 1763a1251bc4Sdrh } 1764966e2911Sdrh 1765ffe28059Sdrh if( !db->mallocFailed && pExpr->op==TK_SELECT && ALWAYS(pList!=0) ){ 1766966e2911Sdrh Expr *pFirst = pList->a[iFirst].pExpr; 1767f4dd26c5Sdrh assert( pFirst!=0 ); 1768966e2911Sdrh assert( pFirst->op==TK_SELECT_COLUMN ); 1769966e2911Sdrh 1770966e2911Sdrh /* Store the SELECT statement in pRight so it will be deleted when 1771966e2911Sdrh ** sqlite3ExprListDelete() is called */ 1772966e2911Sdrh pFirst->pRight = pExpr; 1773a1251bc4Sdrh pExpr = 0; 1774966e2911Sdrh 1775966e2911Sdrh /* Remember the size of the LHS in iTable so that we can check that 1776966e2911Sdrh ** the RHS and LHS sizes match during code generation. */ 1777966e2911Sdrh pFirst->iTable = pColumns->nId; 1778a1251bc4Sdrh } 1779a1251bc4Sdrh 1780a1251bc4Sdrh vector_append_error: 17818e34e406Sdrh sqlite3ExprUnmapAndDelete(pParse, pExpr); 1782a1251bc4Sdrh sqlite3IdListDelete(db, pColumns); 1783a1251bc4Sdrh return pList; 1784a1251bc4Sdrh } 1785a1251bc4Sdrh 1786a1251bc4Sdrh /* 1787bc622bc0Sdrh ** Set the sort order for the last element on the given ExprList. 1788bc622bc0Sdrh */ 17896e11892dSdan void sqlite3ExprListSetSortOrder(ExprList *p, int iSortOrder, int eNulls){ 17909105fd51Sdan struct ExprList_item *pItem; 1791bc622bc0Sdrh if( p==0 ) return; 1792bc622bc0Sdrh assert( p->nExpr>0 ); 17936e11892dSdan 17946e11892dSdan assert( SQLITE_SO_UNDEFINED<0 && SQLITE_SO_ASC==0 && SQLITE_SO_DESC>0 ); 17956e11892dSdan assert( iSortOrder==SQLITE_SO_UNDEFINED 17966e11892dSdan || iSortOrder==SQLITE_SO_ASC 17976e11892dSdan || iSortOrder==SQLITE_SO_DESC 17986e11892dSdan ); 17996e11892dSdan assert( eNulls==SQLITE_SO_UNDEFINED 18006e11892dSdan || eNulls==SQLITE_SO_ASC 18016e11892dSdan || eNulls==SQLITE_SO_DESC 18026e11892dSdan ); 18036e11892dSdan 18049105fd51Sdan pItem = &p->a[p->nExpr-1]; 18059105fd51Sdan assert( pItem->bNulls==0 ); 18069105fd51Sdan if( iSortOrder==SQLITE_SO_UNDEFINED ){ 18079105fd51Sdan iSortOrder = SQLITE_SO_ASC; 1808bc622bc0Sdrh } 18099105fd51Sdan pItem->sortFlags = (u8)iSortOrder; 18109105fd51Sdan 18119105fd51Sdan if( eNulls!=SQLITE_SO_UNDEFINED ){ 18129105fd51Sdan pItem->bNulls = 1; 18139105fd51Sdan if( iSortOrder!=eNulls ){ 18149105fd51Sdan pItem->sortFlags |= KEYINFO_ORDER_BIGNULL; 18159105fd51Sdan } 1816bc622bc0Sdrh } 1817bc622bc0Sdrh } 1818bc622bc0Sdrh 1819bc622bc0Sdrh /* 182041cee668Sdrh ** Set the ExprList.a[].zEName element of the most recently added item 1821b7916a78Sdrh ** on the expression list. 1822b7916a78Sdrh ** 1823b7916a78Sdrh ** pList might be NULL following an OOM error. But pName should never be 1824b7916a78Sdrh ** NULL. If a memory allocation fails, the pParse->db->mallocFailed flag 1825b7916a78Sdrh ** is set. 1826b7916a78Sdrh */ 1827b7916a78Sdrh void sqlite3ExprListSetName( 1828b7916a78Sdrh Parse *pParse, /* Parsing context */ 1829b7916a78Sdrh ExprList *pList, /* List to which to add the span. */ 1830b7916a78Sdrh Token *pName, /* Name to be added */ 1831b7916a78Sdrh int dequote /* True to cause the name to be dequoted */ 1832b7916a78Sdrh ){ 1833b7916a78Sdrh assert( pList!=0 || pParse->db->mallocFailed!=0 ); 18342d99f957Sdrh assert( pParse->eParseMode!=PARSE_MODE_UNMAP || dequote==0 ); 1835b7916a78Sdrh if( pList ){ 1836b7916a78Sdrh struct ExprList_item *pItem; 1837b7916a78Sdrh assert( pList->nExpr>0 ); 1838b7916a78Sdrh pItem = &pList->a[pList->nExpr-1]; 183941cee668Sdrh assert( pItem->zEName==0 ); 1840c4938ea2Sdrh assert( pItem->eEName==ENAME_NAME ); 184141cee668Sdrh pItem->zEName = sqlite3DbStrNDup(pParse->db, pName->z, pName->n); 184285f2c76cSdan if( dequote ){ 184385f2c76cSdan /* If dequote==0, then pName->z does not point to part of a DDL 184485f2c76cSdan ** statement handled by the parser. And so no token need be added 184585f2c76cSdan ** to the token-map. */ 184685f2c76cSdan sqlite3Dequote(pItem->zEName); 1847c9461eccSdan if( IN_RENAME_OBJECT ){ 184841cee668Sdrh sqlite3RenameTokenMap(pParse, (void*)pItem->zEName, pName); 18495be60c55Sdan } 1850b7916a78Sdrh } 1851b7916a78Sdrh } 185285f2c76cSdan } 1853b7916a78Sdrh 1854b7916a78Sdrh /* 1855b7916a78Sdrh ** Set the ExprList.a[].zSpan element of the most recently added item 1856b7916a78Sdrh ** on the expression list. 1857b7916a78Sdrh ** 1858b7916a78Sdrh ** pList might be NULL following an OOM error. But pSpan should never be 1859b7916a78Sdrh ** NULL. If a memory allocation fails, the pParse->db->mallocFailed flag 1860b7916a78Sdrh ** is set. 1861b7916a78Sdrh */ 1862b7916a78Sdrh void sqlite3ExprListSetSpan( 1863b7916a78Sdrh Parse *pParse, /* Parsing context */ 1864b7916a78Sdrh ExprList *pList, /* List to which to add the span. */ 18651be266baSdrh const char *zStart, /* Start of the span */ 18661be266baSdrh const char *zEnd /* End of the span */ 1867b7916a78Sdrh ){ 1868b7916a78Sdrh sqlite3 *db = pParse->db; 1869b7916a78Sdrh assert( pList!=0 || db->mallocFailed!=0 ); 1870b7916a78Sdrh if( pList ){ 1871b7916a78Sdrh struct ExprList_item *pItem = &pList->a[pList->nExpr-1]; 1872b7916a78Sdrh assert( pList->nExpr>0 ); 1873cbb9da33Sdrh if( pItem->zEName==0 ){ 1874cbb9da33Sdrh pItem->zEName = sqlite3DbSpanDup(db, zStart, zEnd); 1875cbb9da33Sdrh pItem->eEName = ENAME_SPAN; 1876cbb9da33Sdrh } 1877b7916a78Sdrh } 1878b7916a78Sdrh } 1879b7916a78Sdrh 1880b7916a78Sdrh /* 18817a15a4beSdanielk1977 ** If the expression list pEList contains more than iLimit elements, 18827a15a4beSdanielk1977 ** leave an error message in pParse. 18837a15a4beSdanielk1977 */ 18847a15a4beSdanielk1977 void sqlite3ExprListCheckLength( 18857a15a4beSdanielk1977 Parse *pParse, 18867a15a4beSdanielk1977 ExprList *pEList, 18877a15a4beSdanielk1977 const char *zObject 18887a15a4beSdanielk1977 ){ 1889b1a6c3c1Sdrh int mx = pParse->db->aLimit[SQLITE_LIMIT_COLUMN]; 1890c5499befSdrh testcase( pEList && pEList->nExpr==mx ); 1891c5499befSdrh testcase( pEList && pEList->nExpr==mx+1 ); 1892b1a6c3c1Sdrh if( pEList && pEList->nExpr>mx ){ 18937a15a4beSdanielk1977 sqlite3ErrorMsg(pParse, "too many columns in %s", zObject); 18947a15a4beSdanielk1977 } 18957a15a4beSdanielk1977 } 18967a15a4beSdanielk1977 18977a15a4beSdanielk1977 /* 1898a76b5dfcSdrh ** Delete an entire expression list. 1899a76b5dfcSdrh */ 1900affa855cSdrh static SQLITE_NOINLINE void exprListDeleteNN(sqlite3 *db, ExprList *pList){ 1901ac48b751Sdrh int i = pList->nExpr; 1902ac48b751Sdrh struct ExprList_item *pItem = pList->a; 1903ac48b751Sdrh assert( pList->nExpr>0 ); 1904ac48b751Sdrh do{ 1905633e6d57Sdrh sqlite3ExprDelete(db, pItem->pExpr); 190641cee668Sdrh sqlite3DbFree(db, pItem->zEName); 1907ac48b751Sdrh pItem++; 1908ac48b751Sdrh }while( --i>0 ); 1909dbd6a7dcSdrh sqlite3DbFreeNN(db, pList); 1910a76b5dfcSdrh } 1911affa855cSdrh void sqlite3ExprListDelete(sqlite3 *db, ExprList *pList){ 1912affa855cSdrh if( pList ) exprListDeleteNN(db, pList); 1913affa855cSdrh } 1914a76b5dfcSdrh 1915a76b5dfcSdrh /* 19162308ed38Sdrh ** Return the bitwise-OR of all Expr.flags fields in the given 19172308ed38Sdrh ** ExprList. 1918885a5b03Sdrh */ 19192308ed38Sdrh u32 sqlite3ExprListFlags(const ExprList *pList){ 1920885a5b03Sdrh int i; 19212308ed38Sdrh u32 m = 0; 1922508e2d00Sdrh assert( pList!=0 ); 1923885a5b03Sdrh for(i=0; i<pList->nExpr; i++){ 1924d0c73053Sdrh Expr *pExpr = pList->a[i].pExpr; 1925de845c2fSdrh assert( pExpr!=0 ); 1926de845c2fSdrh m |= pExpr->flags; 1927885a5b03Sdrh } 19282308ed38Sdrh return m; 1929885a5b03Sdrh } 1930885a5b03Sdrh 1931885a5b03Sdrh /* 19327e6f980bSdrh ** This is a SELECT-node callback for the expression walker that 19337e6f980bSdrh ** always "fails". By "fail" in this case, we mean set 19347e6f980bSdrh ** pWalker->eCode to zero and abort. 19357e6f980bSdrh ** 19367e6f980bSdrh ** This callback is used by multiple expression walkers. 19377e6f980bSdrh */ 19387e6f980bSdrh int sqlite3SelectWalkFail(Walker *pWalker, Select *NotUsed){ 19397e6f980bSdrh UNUSED_PARAMETER(NotUsed); 19407e6f980bSdrh pWalker->eCode = 0; 19417e6f980bSdrh return WRC_Abort; 19427e6f980bSdrh } 19437e6f980bSdrh 19447e6f980bSdrh /* 19450cbec59cSdrh ** Check the input string to see if it is "true" or "false" (in any case). 19460cbec59cSdrh ** 19470cbec59cSdrh ** If the string is.... Return 19480cbec59cSdrh ** "true" EP_IsTrue 19490cbec59cSdrh ** "false" EP_IsFalse 19500cbec59cSdrh ** anything else 0 19510cbec59cSdrh */ 19520cbec59cSdrh u32 sqlite3IsTrueOrFalse(const char *zIn){ 19530cbec59cSdrh if( sqlite3StrICmp(zIn, "true")==0 ) return EP_IsTrue; 19540cbec59cSdrh if( sqlite3StrICmp(zIn, "false")==0 ) return EP_IsFalse; 19550cbec59cSdrh return 0; 19560cbec59cSdrh } 19570cbec59cSdrh 19580cbec59cSdrh 19590cbec59cSdrh /* 1960171d16bbSdrh ** If the input expression is an ID with the name "true" or "false" 196196acafbeSdrh ** then convert it into an TK_TRUEFALSE term. Return non-zero if 196296acafbeSdrh ** the conversion happened, and zero if the expression is unaltered. 1963171d16bbSdrh */ 1964171d16bbSdrh int sqlite3ExprIdToTrueFalse(Expr *pExpr){ 19650cbec59cSdrh u32 v; 1966171d16bbSdrh assert( pExpr->op==TK_ID || pExpr->op==TK_STRING ); 196751d35b0fSdrh if( !ExprHasProperty(pExpr, EP_Quoted) 19680cbec59cSdrh && (v = sqlite3IsTrueOrFalse(pExpr->u.zToken))!=0 1969171d16bbSdrh ){ 1970171d16bbSdrh pExpr->op = TK_TRUEFALSE; 19710cbec59cSdrh ExprSetProperty(pExpr, v); 1972171d16bbSdrh return 1; 1973171d16bbSdrh } 1974171d16bbSdrh return 0; 1975171d16bbSdrh } 1976171d16bbSdrh 197743c4ac8bSdrh /* 197896acafbeSdrh ** The argument must be a TK_TRUEFALSE Expr node. Return 1 if it is TRUE 197943c4ac8bSdrh ** and 0 if it is FALSE. 198043c4ac8bSdrh */ 198196acafbeSdrh int sqlite3ExprTruthValue(const Expr *pExpr){ 19826ece353fSdan pExpr = sqlite3ExprSkipCollate((Expr*)pExpr); 198343c4ac8bSdrh assert( pExpr->op==TK_TRUEFALSE ); 198443c4ac8bSdrh assert( sqlite3StrICmp(pExpr->u.zToken,"true")==0 198543c4ac8bSdrh || sqlite3StrICmp(pExpr->u.zToken,"false")==0 ); 198643c4ac8bSdrh return pExpr->u.zToken[4]==0; 198743c4ac8bSdrh } 198843c4ac8bSdrh 198917180fcaSdrh /* 199017180fcaSdrh ** If pExpr is an AND or OR expression, try to simplify it by eliminating 199117180fcaSdrh ** terms that are always true or false. Return the simplified expression. 199217180fcaSdrh ** Or return the original expression if no simplification is possible. 199317180fcaSdrh ** 199417180fcaSdrh ** Examples: 199517180fcaSdrh ** 199617180fcaSdrh ** (x<10) AND true => (x<10) 199717180fcaSdrh ** (x<10) AND false => false 199817180fcaSdrh ** (x<10) AND (y=22 OR false) => (x<10) AND (y=22) 199917180fcaSdrh ** (x<10) AND (y=22 OR true) => (x<10) 200017180fcaSdrh ** (y=22) OR true => true 200117180fcaSdrh */ 200217180fcaSdrh Expr *sqlite3ExprSimplifiedAndOr(Expr *pExpr){ 200317180fcaSdrh assert( pExpr!=0 ); 200417180fcaSdrh if( pExpr->op==TK_AND || pExpr->op==TK_OR ){ 200517180fcaSdrh Expr *pRight = sqlite3ExprSimplifiedAndOr(pExpr->pRight); 200617180fcaSdrh Expr *pLeft = sqlite3ExprSimplifiedAndOr(pExpr->pLeft); 200717180fcaSdrh if( ExprAlwaysTrue(pLeft) || ExprAlwaysFalse(pRight) ){ 200817180fcaSdrh pExpr = pExpr->op==TK_AND ? pRight : pLeft; 200917180fcaSdrh }else if( ExprAlwaysTrue(pRight) || ExprAlwaysFalse(pLeft) ){ 201017180fcaSdrh pExpr = pExpr->op==TK_AND ? pLeft : pRight; 201117180fcaSdrh } 201217180fcaSdrh } 201317180fcaSdrh return pExpr; 201417180fcaSdrh } 201517180fcaSdrh 2016171d16bbSdrh 2017171d16bbSdrh /* 2018059b2d50Sdrh ** These routines are Walker callbacks used to check expressions to 2019059b2d50Sdrh ** see if they are "constant" for some definition of constant. The 2020059b2d50Sdrh ** Walker.eCode value determines the type of "constant" we are looking 2021059b2d50Sdrh ** for. 202273b211abSdrh ** 20237d10d5a6Sdrh ** These callback routines are used to implement the following: 2024626a879aSdrh ** 2025059b2d50Sdrh ** sqlite3ExprIsConstant() pWalker->eCode==1 2026059b2d50Sdrh ** sqlite3ExprIsConstantNotJoin() pWalker->eCode==2 2027fcb9f4f3Sdrh ** sqlite3ExprIsTableConstant() pWalker->eCode==3 2028059b2d50Sdrh ** sqlite3ExprIsConstantOrFunction() pWalker->eCode==4 or 5 202987abf5c0Sdrh ** 2030059b2d50Sdrh ** In all cases, the callbacks set Walker.eCode=0 and abort if the expression 2031059b2d50Sdrh ** is found to not be a constant. 203287abf5c0Sdrh ** 2033014fff20Sdrh ** The sqlite3ExprIsConstantOrFunction() is used for evaluating DEFAULT 2034014fff20Sdrh ** expressions in a CREATE TABLE statement. The Walker.eCode value is 5 20351e32bed3Sdrh ** when parsing an existing schema out of the sqlite_schema table and 4 2036014fff20Sdrh ** when processing a new CREATE TABLE statement. A bound parameter raises 2037014fff20Sdrh ** an error for new statements, but is silently converted 20381e32bed3Sdrh ** to NULL for existing schemas. This allows sqlite_schema tables that 2039feada2dfSdrh ** contain a bound parameter because they were generated by older versions 2040feada2dfSdrh ** of SQLite to be parsed by newer versions of SQLite without raising a 2041feada2dfSdrh ** malformed schema error. 2042626a879aSdrh */ 20437d10d5a6Sdrh static int exprNodeIsConstant(Walker *pWalker, Expr *pExpr){ 2044626a879aSdrh 2045059b2d50Sdrh /* If pWalker->eCode is 2 then any term of the expression that comes from 2046059b2d50Sdrh ** the ON or USING clauses of a left join disqualifies the expression 20470a168377Sdrh ** from being considered constant. */ 2048059b2d50Sdrh if( pWalker->eCode==2 && ExprHasProperty(pExpr, EP_FromJoin) ){ 2049059b2d50Sdrh pWalker->eCode = 0; 20507d10d5a6Sdrh return WRC_Abort; 20510a168377Sdrh } 20520a168377Sdrh 2053626a879aSdrh switch( pExpr->op ){ 2054eb55bd2fSdrh /* Consider functions to be constant if all their arguments are constant 2055059b2d50Sdrh ** and either pWalker->eCode==4 or 5 or the function has the 2056059b2d50Sdrh ** SQLITE_FUNC_CONST flag. */ 2057eb55bd2fSdrh case TK_FUNCTION: 2058a634c9e6Sdrh if( (pWalker->eCode>=4 || ExprHasProperty(pExpr,EP_ConstFunc)) 2059a634c9e6Sdrh && !ExprHasProperty(pExpr, EP_WinFunc) 2060a634c9e6Sdrh ){ 2061014fff20Sdrh if( pWalker->eCode==5 ) ExprSetProperty(pExpr, EP_FromDDL); 2062b1fba286Sdrh return WRC_Continue; 2063059b2d50Sdrh }else{ 2064059b2d50Sdrh pWalker->eCode = 0; 2065059b2d50Sdrh return WRC_Abort; 2066b1fba286Sdrh } 2067626a879aSdrh case TK_ID: 2068171d16bbSdrh /* Convert "true" or "false" in a DEFAULT clause into the 2069171d16bbSdrh ** appropriate TK_TRUEFALSE operator */ 2070e39ef31cSdrh if( sqlite3ExprIdToTrueFalse(pExpr) ){ 2071171d16bbSdrh return WRC_Prune; 2072171d16bbSdrh } 207308b92086Sdrh /* no break */ deliberate_fall_through 2074626a879aSdrh case TK_COLUMN: 2075626a879aSdrh case TK_AGG_FUNCTION: 207613449892Sdrh case TK_AGG_COLUMN: 2077c5499befSdrh testcase( pExpr->op==TK_ID ); 2078c5499befSdrh testcase( pExpr->op==TK_COLUMN ); 2079c5499befSdrh testcase( pExpr->op==TK_AGG_FUNCTION ); 2080c5499befSdrh testcase( pExpr->op==TK_AGG_COLUMN ); 208107aded63Sdrh if( ExprHasProperty(pExpr, EP_FixedCol) && pWalker->eCode!=2 ){ 2082efad2e23Sdrh return WRC_Continue; 2083efad2e23Sdrh } 2084059b2d50Sdrh if( pWalker->eCode==3 && pExpr->iTable==pWalker->u.iCur ){ 2085059b2d50Sdrh return WRC_Continue; 2086f43ce0b4Sdrh } 208708b92086Sdrh /* no break */ deliberate_fall_through 2088f43ce0b4Sdrh case TK_IF_NULL_ROW: 20896e341b93Sdrh case TK_REGISTER: 209074e0d966Sdrh case TK_DOT: 20919916048bSdrh testcase( pExpr->op==TK_REGISTER ); 2092f43ce0b4Sdrh testcase( pExpr->op==TK_IF_NULL_ROW ); 209374e0d966Sdrh testcase( pExpr->op==TK_DOT ); 2094059b2d50Sdrh pWalker->eCode = 0; 20957d10d5a6Sdrh return WRC_Abort; 2096feada2dfSdrh case TK_VARIABLE: 2097059b2d50Sdrh if( pWalker->eCode==5 ){ 2098feada2dfSdrh /* Silently convert bound parameters that appear inside of CREATE 2099feada2dfSdrh ** statements into a NULL when parsing the CREATE statement text out 21001e32bed3Sdrh ** of the sqlite_schema table */ 2101feada2dfSdrh pExpr->op = TK_NULL; 2102059b2d50Sdrh }else if( pWalker->eCode==4 ){ 2103feada2dfSdrh /* A bound parameter in a CREATE statement that originates from 2104feada2dfSdrh ** sqlite3_prepare() causes an error */ 2105059b2d50Sdrh pWalker->eCode = 0; 2106feada2dfSdrh return WRC_Abort; 2107feada2dfSdrh } 210808b92086Sdrh /* no break */ deliberate_fall_through 2109626a879aSdrh default: 21106e341b93Sdrh testcase( pExpr->op==TK_SELECT ); /* sqlite3SelectWalkFail() disallows */ 21116e341b93Sdrh testcase( pExpr->op==TK_EXISTS ); /* sqlite3SelectWalkFail() disallows */ 21127d10d5a6Sdrh return WRC_Continue; 2113626a879aSdrh } 2114626a879aSdrh } 2115059b2d50Sdrh static int exprIsConst(Expr *p, int initFlag, int iCur){ 21167d10d5a6Sdrh Walker w; 2117059b2d50Sdrh w.eCode = initFlag; 21187d10d5a6Sdrh w.xExprCallback = exprNodeIsConstant; 21197e6f980bSdrh w.xSelectCallback = sqlite3SelectWalkFail; 2120979dd1beSdrh #ifdef SQLITE_DEBUG 2121979dd1beSdrh w.xSelectCallback2 = sqlite3SelectWalkAssert2; 2122979dd1beSdrh #endif 2123059b2d50Sdrh w.u.iCur = iCur; 21247d10d5a6Sdrh sqlite3WalkExpr(&w, p); 2125059b2d50Sdrh return w.eCode; 21267d10d5a6Sdrh } 2127626a879aSdrh 2128626a879aSdrh /* 2129059b2d50Sdrh ** Walk an expression tree. Return non-zero if the expression is constant 2130eb55bd2fSdrh ** and 0 if it involves variables or function calls. 21312398937bSdrh ** 21322398937bSdrh ** For the purposes of this function, a double-quoted string (ex: "abc") 21332398937bSdrh ** is considered a variable but a single-quoted string (ex: 'abc') is 21342398937bSdrh ** a constant. 2135fef5208cSdrh */ 21364adee20fSdanielk1977 int sqlite3ExprIsConstant(Expr *p){ 2137059b2d50Sdrh return exprIsConst(p, 1, 0); 2138fef5208cSdrh } 2139fef5208cSdrh 2140fef5208cSdrh /* 214107aded63Sdrh ** Walk an expression tree. Return non-zero if 214207aded63Sdrh ** 214307aded63Sdrh ** (1) the expression is constant, and 214407aded63Sdrh ** (2) the expression does originate in the ON or USING clause 214507aded63Sdrh ** of a LEFT JOIN, and 214607aded63Sdrh ** (3) the expression does not contain any EP_FixedCol TK_COLUMN 214707aded63Sdrh ** operands created by the constant propagation optimization. 214807aded63Sdrh ** 214907aded63Sdrh ** When this routine returns true, it indicates that the expression 215007aded63Sdrh ** can be added to the pParse->pConstExpr list and evaluated once when 21519b258c54Sdrh ** the prepared statement starts up. See sqlite3ExprCodeRunJustOnce(). 21520a168377Sdrh */ 21530a168377Sdrh int sqlite3ExprIsConstantNotJoin(Expr *p){ 2154059b2d50Sdrh return exprIsConst(p, 2, 0); 21550a168377Sdrh } 21560a168377Sdrh 21570a168377Sdrh /* 2158fcb9f4f3Sdrh ** Walk an expression tree. Return non-zero if the expression is constant 2159059b2d50Sdrh ** for any single row of the table with cursor iCur. In other words, the 2160059b2d50Sdrh ** expression must not refer to any non-deterministic function nor any 2161059b2d50Sdrh ** table other than iCur. 2162059b2d50Sdrh */ 2163059b2d50Sdrh int sqlite3ExprIsTableConstant(Expr *p, int iCur){ 2164059b2d50Sdrh return exprIsConst(p, 3, iCur); 2165059b2d50Sdrh } 2166059b2d50Sdrh 2167ab31a845Sdan 2168ab31a845Sdan /* 2169ab31a845Sdan ** sqlite3WalkExpr() callback used by sqlite3ExprIsConstantOrGroupBy(). 2170ab31a845Sdan */ 2171ab31a845Sdan static int exprNodeIsConstantOrGroupBy(Walker *pWalker, Expr *pExpr){ 2172ab31a845Sdan ExprList *pGroupBy = pWalker->u.pGroupBy; 2173ab31a845Sdan int i; 2174ab31a845Sdan 2175ab31a845Sdan /* Check if pExpr is identical to any GROUP BY term. If so, consider 2176ab31a845Sdan ** it constant. */ 2177ab31a845Sdan for(i=0; i<pGroupBy->nExpr; i++){ 2178ab31a845Sdan Expr *p = pGroupBy->a[i].pExpr; 21795aa550cfSdan if( sqlite3ExprCompare(0, pExpr, p, -1)<2 ){ 218070efa84dSdrh CollSeq *pColl = sqlite3ExprNNCollSeq(pWalker->pParse, p); 2181efad2e23Sdrh if( sqlite3IsBinary(pColl) ){ 2182ab31a845Sdan return WRC_Prune; 2183ab31a845Sdan } 2184ab31a845Sdan } 2185ab31a845Sdan } 2186ab31a845Sdan 2187ab31a845Sdan /* Check if pExpr is a sub-select. If so, consider it variable. */ 2188ab31a845Sdan if( ExprHasProperty(pExpr, EP_xIsSelect) ){ 2189ab31a845Sdan pWalker->eCode = 0; 2190ab31a845Sdan return WRC_Abort; 2191ab31a845Sdan } 2192ab31a845Sdan 2193ab31a845Sdan return exprNodeIsConstant(pWalker, pExpr); 2194ab31a845Sdan } 2195ab31a845Sdan 2196ab31a845Sdan /* 2197ab31a845Sdan ** Walk the expression tree passed as the first argument. Return non-zero 2198ab31a845Sdan ** if the expression consists entirely of constants or copies of terms 2199ab31a845Sdan ** in pGroupBy that sort with the BINARY collation sequence. 2200ab314001Sdrh ** 2201ab314001Sdrh ** This routine is used to determine if a term of the HAVING clause can 2202ab314001Sdrh ** be promoted into the WHERE clause. In order for such a promotion to work, 2203ab314001Sdrh ** the value of the HAVING clause term must be the same for all members of 2204ab314001Sdrh ** a "group". The requirement that the GROUP BY term must be BINARY 2205ab314001Sdrh ** assumes that no other collating sequence will have a finer-grained 2206ab314001Sdrh ** grouping than binary. In other words (A=B COLLATE binary) implies 2207ab314001Sdrh ** A=B in every other collating sequence. The requirement that the 2208ab314001Sdrh ** GROUP BY be BINARY is stricter than necessary. It would also work 2209ab314001Sdrh ** to promote HAVING clauses that use the same alternative collating 2210ab314001Sdrh ** sequence as the GROUP BY term, but that is much harder to check, 2211ab314001Sdrh ** alternative collating sequences are uncommon, and this is only an 2212ab314001Sdrh ** optimization, so we take the easy way out and simply require the 2213ab314001Sdrh ** GROUP BY to use the BINARY collating sequence. 2214ab31a845Sdan */ 2215ab31a845Sdan int sqlite3ExprIsConstantOrGroupBy(Parse *pParse, Expr *p, ExprList *pGroupBy){ 2216ab31a845Sdan Walker w; 2217ab31a845Sdan w.eCode = 1; 2218ab31a845Sdan w.xExprCallback = exprNodeIsConstantOrGroupBy; 2219979dd1beSdrh w.xSelectCallback = 0; 2220ab31a845Sdan w.u.pGroupBy = pGroupBy; 2221ab31a845Sdan w.pParse = pParse; 2222ab31a845Sdan sqlite3WalkExpr(&w, p); 2223ab31a845Sdan return w.eCode; 2224ab31a845Sdan } 2225ab31a845Sdan 2226059b2d50Sdrh /* 2227014fff20Sdrh ** Walk an expression tree for the DEFAULT field of a column definition 2228014fff20Sdrh ** in a CREATE TABLE statement. Return non-zero if the expression is 2229014fff20Sdrh ** acceptable for use as a DEFAULT. That is to say, return non-zero if 2230014fff20Sdrh ** the expression is constant or a function call with constant arguments. 2231014fff20Sdrh ** Return and 0 if there are any variables. 2232014fff20Sdrh ** 22331e32bed3Sdrh ** isInit is true when parsing from sqlite_schema. isInit is false when 2234014fff20Sdrh ** processing a new CREATE TABLE statement. When isInit is true, parameters 2235014fff20Sdrh ** (such as ? or $abc) in the expression are converted into NULL. When 2236014fff20Sdrh ** isInit is false, parameters raise an error. Parameters should not be 2237014fff20Sdrh ** allowed in a CREATE TABLE statement, but some legacy versions of SQLite 22381e32bed3Sdrh ** allowed it, so we need to support it when reading sqlite_schema for 2239014fff20Sdrh ** backwards compatibility. 2240014fff20Sdrh ** 2241014fff20Sdrh ** If isInit is true, set EP_FromDDL on every TK_FUNCTION node. 2242eb55bd2fSdrh ** 2243eb55bd2fSdrh ** For the purposes of this function, a double-quoted string (ex: "abc") 2244eb55bd2fSdrh ** is considered a variable but a single-quoted string (ex: 'abc') is 2245eb55bd2fSdrh ** a constant. 2246eb55bd2fSdrh */ 2247feada2dfSdrh int sqlite3ExprIsConstantOrFunction(Expr *p, u8 isInit){ 2248feada2dfSdrh assert( isInit==0 || isInit==1 ); 2249059b2d50Sdrh return exprIsConst(p, 4+isInit, 0); 2250eb55bd2fSdrh } 2251eb55bd2fSdrh 22525b88bc4bSdrh #ifdef SQLITE_ENABLE_CURSOR_HINTS 22535b88bc4bSdrh /* 22545b88bc4bSdrh ** Walk an expression tree. Return 1 if the expression contains a 22555b88bc4bSdrh ** subquery of some kind. Return 0 if there are no subqueries. 22565b88bc4bSdrh */ 22575b88bc4bSdrh int sqlite3ExprContainsSubquery(Expr *p){ 22585b88bc4bSdrh Walker w; 2259bec2476aSdrh w.eCode = 1; 22605b88bc4bSdrh w.xExprCallback = sqlite3ExprWalkNoop; 22617e6f980bSdrh w.xSelectCallback = sqlite3SelectWalkFail; 2262979dd1beSdrh #ifdef SQLITE_DEBUG 2263979dd1beSdrh w.xSelectCallback2 = sqlite3SelectWalkAssert2; 2264979dd1beSdrh #endif 22655b88bc4bSdrh sqlite3WalkExpr(&w, p); 226607194bffSdrh return w.eCode==0; 22675b88bc4bSdrh } 22685b88bc4bSdrh #endif 22695b88bc4bSdrh 2270eb55bd2fSdrh /* 227173b211abSdrh ** If the expression p codes a constant integer that is small enough 2272202b2df7Sdrh ** to fit in a 32-bit integer, return 1 and put the value of the integer 2273202b2df7Sdrh ** in *pValue. If the expression is not an integer or if it is too big 2274202b2df7Sdrh ** to fit in a signed 32-bit integer, return 0 and leave *pValue unchanged. 2275e4de1febSdrh */ 22764adee20fSdanielk1977 int sqlite3ExprIsInteger(Expr *p, int *pValue){ 227792b01d53Sdrh int rc = 0; 22781d2d71a0Sdrh if( NEVER(p==0) ) return 0; /* Used to only happen following on OOM */ 2279cd92e84dSdrh 2280cd92e84dSdrh /* If an expression is an integer literal that fits in a signed 32-bit 2281cd92e84dSdrh ** integer, then the EP_IntValue flag will have already been set */ 2282cd92e84dSdrh assert( p->op!=TK_INTEGER || (p->flags & EP_IntValue)!=0 2283cd92e84dSdrh || sqlite3GetInt32(p->u.zToken, &rc)==0 ); 2284cd92e84dSdrh 228592b01d53Sdrh if( p->flags & EP_IntValue ){ 228633e619fcSdrh *pValue = p->u.iValue; 2287e4de1febSdrh return 1; 2288e4de1febSdrh } 228992b01d53Sdrh switch( p->op ){ 22904b59ab5eSdrh case TK_UPLUS: { 229192b01d53Sdrh rc = sqlite3ExprIsInteger(p->pLeft, pValue); 2292f6e369a1Sdrh break; 22934b59ab5eSdrh } 2294e4de1febSdrh case TK_UMINUS: { 2295e4de1febSdrh int v; 22964adee20fSdanielk1977 if( sqlite3ExprIsInteger(p->pLeft, &v) ){ 2297f6418891Smistachkin assert( v!=(-2147483647-1) ); 2298e4de1febSdrh *pValue = -v; 229992b01d53Sdrh rc = 1; 2300e4de1febSdrh } 2301e4de1febSdrh break; 2302e4de1febSdrh } 2303e4de1febSdrh default: break; 2304e4de1febSdrh } 230592b01d53Sdrh return rc; 2306e4de1febSdrh } 2307e4de1febSdrh 2308e4de1febSdrh /* 2309039fc32eSdrh ** Return FALSE if there is no chance that the expression can be NULL. 2310039fc32eSdrh ** 2311039fc32eSdrh ** If the expression might be NULL or if the expression is too complex 2312039fc32eSdrh ** to tell return TRUE. 2313039fc32eSdrh ** 2314039fc32eSdrh ** This routine is used as an optimization, to skip OP_IsNull opcodes 2315039fc32eSdrh ** when we know that a value cannot be NULL. Hence, a false positive 2316039fc32eSdrh ** (returning TRUE when in fact the expression can never be NULL) might 2317039fc32eSdrh ** be a small performance hit but is otherwise harmless. On the other 2318039fc32eSdrh ** hand, a false negative (returning FALSE when the result could be NULL) 2319039fc32eSdrh ** will likely result in an incorrect answer. So when in doubt, return 2320039fc32eSdrh ** TRUE. 2321039fc32eSdrh */ 2322039fc32eSdrh int sqlite3ExprCanBeNull(const Expr *p){ 2323039fc32eSdrh u8 op; 23249bfb0794Sdrh while( p->op==TK_UPLUS || p->op==TK_UMINUS ){ 23259bfb0794Sdrh p = p->pLeft; 23269bfb0794Sdrh } 2327039fc32eSdrh op = p->op; 2328039fc32eSdrh if( op==TK_REGISTER ) op = p->op2; 2329039fc32eSdrh switch( op ){ 2330039fc32eSdrh case TK_INTEGER: 2331039fc32eSdrh case TK_STRING: 2332039fc32eSdrh case TK_FLOAT: 2333039fc32eSdrh case TK_BLOB: 2334039fc32eSdrh return 0; 23357248a8b2Sdrh case TK_COLUMN: 233672673a24Sdrh return ExprHasProperty(p, EP_CanBeNull) || 2337eda079cdSdrh p->y.pTab==0 || /* Reference to column of index on expression */ 23384eac5f04Sdrh (p->iColumn>=0 23394eac5f04Sdrh && ALWAYS(p->y.pTab->aCol!=0) /* Defense against OOM problems */ 23404eac5f04Sdrh && p->y.pTab->aCol[p->iColumn].notNull==0); 2341039fc32eSdrh default: 2342039fc32eSdrh return 1; 2343039fc32eSdrh } 2344039fc32eSdrh } 2345039fc32eSdrh 2346039fc32eSdrh /* 2347039fc32eSdrh ** Return TRUE if the given expression is a constant which would be 2348039fc32eSdrh ** unchanged by OP_Affinity with the affinity given in the second 2349039fc32eSdrh ** argument. 2350039fc32eSdrh ** 2351039fc32eSdrh ** This routine is used to determine if the OP_Affinity operation 2352039fc32eSdrh ** can be omitted. When in doubt return FALSE. A false negative 2353039fc32eSdrh ** is harmless. A false positive, however, can result in the wrong 2354039fc32eSdrh ** answer. 2355039fc32eSdrh */ 2356039fc32eSdrh int sqlite3ExprNeedsNoAffinityChange(const Expr *p, char aff){ 2357039fc32eSdrh u8 op; 2358af866402Sdrh int unaryMinus = 0; 235905883a34Sdrh if( aff==SQLITE_AFF_BLOB ) return 1; 2360af866402Sdrh while( p->op==TK_UPLUS || p->op==TK_UMINUS ){ 2361af866402Sdrh if( p->op==TK_UMINUS ) unaryMinus = 1; 2362af866402Sdrh p = p->pLeft; 2363af866402Sdrh } 2364039fc32eSdrh op = p->op; 2365039fc32eSdrh if( op==TK_REGISTER ) op = p->op2; 2366039fc32eSdrh switch( op ){ 2367039fc32eSdrh case TK_INTEGER: { 23686a19865fSdrh return aff>=SQLITE_AFF_NUMERIC; 2369039fc32eSdrh } 2370039fc32eSdrh case TK_FLOAT: { 23716a19865fSdrh return aff>=SQLITE_AFF_NUMERIC; 2372039fc32eSdrh } 2373039fc32eSdrh case TK_STRING: { 2374af866402Sdrh return !unaryMinus && aff==SQLITE_AFF_TEXT; 2375039fc32eSdrh } 2376039fc32eSdrh case TK_BLOB: { 2377af866402Sdrh return !unaryMinus; 2378039fc32eSdrh } 23792f2855b6Sdrh case TK_COLUMN: { 238088376ca7Sdrh assert( p->iTable>=0 ); /* p cannot be part of a CHECK constraint */ 23816a19865fSdrh return aff>=SQLITE_AFF_NUMERIC && p->iColumn<0; 23822f2855b6Sdrh } 2383039fc32eSdrh default: { 2384039fc32eSdrh return 0; 2385039fc32eSdrh } 2386039fc32eSdrh } 2387039fc32eSdrh } 2388039fc32eSdrh 2389039fc32eSdrh /* 2390c4a3c779Sdrh ** Return TRUE if the given string is a row-id column name. 2391c4a3c779Sdrh */ 23924adee20fSdanielk1977 int sqlite3IsRowid(const char *z){ 23934adee20fSdanielk1977 if( sqlite3StrICmp(z, "_ROWID_")==0 ) return 1; 23944adee20fSdanielk1977 if( sqlite3StrICmp(z, "ROWID")==0 ) return 1; 23954adee20fSdanielk1977 if( sqlite3StrICmp(z, "OID")==0 ) return 1; 2396c4a3c779Sdrh return 0; 2397c4a3c779Sdrh } 2398c4a3c779Sdrh 23999a96b668Sdanielk1977 /* 240069c355bdSdrh ** pX is the RHS of an IN operator. If pX is a SELECT statement 240169c355bdSdrh ** that can be simplified to a direct table access, then return 240269c355bdSdrh ** a pointer to the SELECT statement. If pX is not a SELECT statement, 240369c355bdSdrh ** or if the SELECT statement needs to be manifested into a transient 240469c355bdSdrh ** table, then return NULL. 2405b287f4b6Sdrh */ 2406b287f4b6Sdrh #ifndef SQLITE_OMIT_SUBQUERY 24077b35a77bSdan static Select *isCandidateForInOpt(Expr *pX){ 240869c355bdSdrh Select *p; 2409b287f4b6Sdrh SrcList *pSrc; 2410b287f4b6Sdrh ExprList *pEList; 2411b287f4b6Sdrh Table *pTab; 2412cfbb5e82Sdan int i; 241369c355bdSdrh if( !ExprHasProperty(pX, EP_xIsSelect) ) return 0; /* Not a subquery */ 241469c355bdSdrh if( ExprHasProperty(pX, EP_VarSelect) ) return 0; /* Correlated subq */ 241569c355bdSdrh p = pX->x.pSelect; 2416b287f4b6Sdrh if( p->pPrior ) return 0; /* Not a compound SELECT */ 24177d10d5a6Sdrh if( p->selFlags & (SF_Distinct|SF_Aggregate) ){ 2418b74b1017Sdrh testcase( (p->selFlags & (SF_Distinct|SF_Aggregate))==SF_Distinct ); 2419b74b1017Sdrh testcase( (p->selFlags & (SF_Distinct|SF_Aggregate))==SF_Aggregate ); 24207d10d5a6Sdrh return 0; /* No DISTINCT keyword and no aggregate functions */ 24217d10d5a6Sdrh } 24222e26a602Sdrh assert( p->pGroupBy==0 ); /* Has no GROUP BY clause */ 2423b287f4b6Sdrh if( p->pLimit ) return 0; /* Has no LIMIT clause */ 2424b287f4b6Sdrh if( p->pWhere ) return 0; /* Has no WHERE clause */ 2425b287f4b6Sdrh pSrc = p->pSrc; 2426d1fa7bcaSdrh assert( pSrc!=0 ); 2427d1fa7bcaSdrh if( pSrc->nSrc!=1 ) return 0; /* Single term in FROM clause */ 2428b74b1017Sdrh if( pSrc->a[0].pSelect ) return 0; /* FROM is not a subquery or view */ 2429b287f4b6Sdrh pTab = pSrc->a[0].pTab; 243069c355bdSdrh assert( pTab!=0 ); 2431b74b1017Sdrh assert( pTab->pSelect==0 ); /* FROM clause is not a view */ 2432b287f4b6Sdrh if( IsVirtual(pTab) ) return 0; /* FROM clause not a virtual table */ 2433b287f4b6Sdrh pEList = p->pEList; 2434ac6b47d1Sdrh assert( pEList!=0 ); 24357b35a77bSdan /* All SELECT results must be columns. */ 2436cfbb5e82Sdan for(i=0; i<pEList->nExpr; i++){ 2437cfbb5e82Sdan Expr *pRes = pEList->a[i].pExpr; 2438cfbb5e82Sdan if( pRes->op!=TK_COLUMN ) return 0; 243969c355bdSdrh assert( pRes->iTable==pSrc->a[0].iCursor ); /* Not a correlated subquery */ 2440cfbb5e82Sdan } 244169c355bdSdrh return p; 2442b287f4b6Sdrh } 2443b287f4b6Sdrh #endif /* SQLITE_OMIT_SUBQUERY */ 2444b287f4b6Sdrh 2445f9b2e05cSdan #ifndef SQLITE_OMIT_SUBQUERY 24461d8cb21fSdan /* 24474c259e9fSdrh ** Generate code that checks the left-most column of index table iCur to see if 24484c259e9fSdrh ** it contains any NULL entries. Cause the register at regHasNull to be set 24496be515ebSdrh ** to a non-NULL value if iCur contains no NULLs. Cause register regHasNull 24506be515ebSdrh ** to be set to NULL if iCur contains one or more NULL values. 24516be515ebSdrh */ 24526be515ebSdrh static void sqlite3SetHasNullFlag(Vdbe *v, int iCur, int regHasNull){ 2453728e0f91Sdrh int addr1; 24546be515ebSdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, regHasNull); 2455728e0f91Sdrh addr1 = sqlite3VdbeAddOp1(v, OP_Rewind, iCur); VdbeCoverage(v); 24566be515ebSdrh sqlite3VdbeAddOp3(v, OP_Column, iCur, 0, regHasNull); 24576be515ebSdrh sqlite3VdbeChangeP5(v, OPFLAG_TYPEOFARG); 24584c259e9fSdrh VdbeComment((v, "first_entry_in(%d)", iCur)); 2459728e0f91Sdrh sqlite3VdbeJumpHere(v, addr1); 24606be515ebSdrh } 2461f9b2e05cSdan #endif 24626be515ebSdrh 2463bb53ecb1Sdrh 2464bb53ecb1Sdrh #ifndef SQLITE_OMIT_SUBQUERY 2465bb53ecb1Sdrh /* 2466bb53ecb1Sdrh ** The argument is an IN operator with a list (not a subquery) on the 2467bb53ecb1Sdrh ** right-hand side. Return TRUE if that list is constant. 2468bb53ecb1Sdrh */ 2469bb53ecb1Sdrh static int sqlite3InRhsIsConstant(Expr *pIn){ 2470bb53ecb1Sdrh Expr *pLHS; 2471bb53ecb1Sdrh int res; 2472bb53ecb1Sdrh assert( !ExprHasProperty(pIn, EP_xIsSelect) ); 2473bb53ecb1Sdrh pLHS = pIn->pLeft; 2474bb53ecb1Sdrh pIn->pLeft = 0; 2475bb53ecb1Sdrh res = sqlite3ExprIsConstant(pIn); 2476bb53ecb1Sdrh pIn->pLeft = pLHS; 2477bb53ecb1Sdrh return res; 2478bb53ecb1Sdrh } 2479bb53ecb1Sdrh #endif 2480bb53ecb1Sdrh 24816be515ebSdrh /* 24829a96b668Sdanielk1977 ** This function is used by the implementation of the IN (...) operator. 2483d4305ca6Sdrh ** The pX parameter is the expression on the RHS of the IN operator, which 2484d4305ca6Sdrh ** might be either a list of expressions or a subquery. 24859a96b668Sdanielk1977 ** 2486d4305ca6Sdrh ** The job of this routine is to find or create a b-tree object that can 2487d4305ca6Sdrh ** be used either to test for membership in the RHS set or to iterate through 2488d4305ca6Sdrh ** all members of the RHS set, skipping duplicates. 2489d4305ca6Sdrh ** 24903a85625dSdrh ** A cursor is opened on the b-tree object that is the RHS of the IN operator 2491d4305ca6Sdrh ** and pX->iTable is set to the index of that cursor. 2492d4305ca6Sdrh ** 2493b74b1017Sdrh ** The returned value of this function indicates the b-tree type, as follows: 24949a96b668Sdanielk1977 ** 24959a96b668Sdanielk1977 ** IN_INDEX_ROWID - The cursor was opened on a database table. 24961ccce449Sdrh ** IN_INDEX_INDEX_ASC - The cursor was opened on an ascending index. 24971ccce449Sdrh ** IN_INDEX_INDEX_DESC - The cursor was opened on a descending index. 24989a96b668Sdanielk1977 ** IN_INDEX_EPH - The cursor was opened on a specially created and 24999a96b668Sdanielk1977 ** populated epheremal table. 2500bb53ecb1Sdrh ** IN_INDEX_NOOP - No cursor was allocated. The IN operator must be 2501bb53ecb1Sdrh ** implemented as a sequence of comparisons. 25029a96b668Sdanielk1977 ** 2503d4305ca6Sdrh ** An existing b-tree might be used if the RHS expression pX is a simple 2504d4305ca6Sdrh ** subquery such as: 25059a96b668Sdanielk1977 ** 2506553168c7Sdan ** SELECT <column1>, <column2>... FROM <table> 25079a96b668Sdanielk1977 ** 2508d4305ca6Sdrh ** If the RHS of the IN operator is a list or a more complex subquery, then 2509d4305ca6Sdrh ** an ephemeral table might need to be generated from the RHS and then 251060ec914cSpeter.d.reid ** pX->iTable made to point to the ephemeral table instead of an 2511d4305ca6Sdrh ** existing table. 2512d4305ca6Sdrh ** 25137fc0ba0fSdrh ** The inFlags parameter must contain, at a minimum, one of the bits 25147fc0ba0fSdrh ** IN_INDEX_MEMBERSHIP or IN_INDEX_LOOP but not both. If inFlags contains 25157fc0ba0fSdrh ** IN_INDEX_MEMBERSHIP, then the generated table will be used for a fast 25167fc0ba0fSdrh ** membership test. When the IN_INDEX_LOOP bit is set, the IN index will 25177fc0ba0fSdrh ** be used to loop over all values of the RHS of the IN operator. 25183a85625dSdrh ** 25193a85625dSdrh ** When IN_INDEX_LOOP is used (and the b-tree will be used to iterate 25203a85625dSdrh ** through the set members) then the b-tree must not contain duplicates. 25217fc0ba0fSdrh ** An epheremal table will be created unless the selected columns are guaranteed 2522553168c7Sdan ** to be unique - either because it is an INTEGER PRIMARY KEY or due to 2523553168c7Sdan ** a UNIQUE constraint or index. 25240cdc022eSdanielk1977 ** 25253a85625dSdrh ** When IN_INDEX_MEMBERSHIP is used (and the b-tree will be used 25263a85625dSdrh ** for fast set membership tests) then an epheremal table must 2527553168c7Sdan ** be used unless <columns> is a single INTEGER PRIMARY KEY column or an 2528553168c7Sdan ** index can be found with the specified <columns> as its left-most. 25290cdc022eSdanielk1977 ** 2530bb53ecb1Sdrh ** If the IN_INDEX_NOOP_OK and IN_INDEX_MEMBERSHIP are both set and 2531bb53ecb1Sdrh ** if the RHS of the IN operator is a list (not a subquery) then this 2532bb53ecb1Sdrh ** routine might decide that creating an ephemeral b-tree for membership 2533bb53ecb1Sdrh ** testing is too expensive and return IN_INDEX_NOOP. In that case, the 2534bb53ecb1Sdrh ** calling routine should implement the IN operator using a sequence 2535bb53ecb1Sdrh ** of Eq or Ne comparison operations. 2536bb53ecb1Sdrh ** 2537b74b1017Sdrh ** When the b-tree is being used for membership tests, the calling function 25383a85625dSdrh ** might need to know whether or not the RHS side of the IN operator 2539e21a6e1dSdrh ** contains a NULL. If prRhsHasNull is not a NULL pointer and 25403a85625dSdrh ** if there is any chance that the (...) might contain a NULL value at 25410cdc022eSdanielk1977 ** runtime, then a register is allocated and the register number written 2542e21a6e1dSdrh ** to *prRhsHasNull. If there is no chance that the (...) contains a 2543e21a6e1dSdrh ** NULL value, then *prRhsHasNull is left unchanged. 25440cdc022eSdanielk1977 ** 2545e21a6e1dSdrh ** If a register is allocated and its location stored in *prRhsHasNull, then 25466be515ebSdrh ** the value in that register will be NULL if the b-tree contains one or more 25476be515ebSdrh ** NULL values, and it will be some non-NULL value if the b-tree contains no 25486be515ebSdrh ** NULL values. 2549553168c7Sdan ** 2550553168c7Sdan ** If the aiMap parameter is not NULL, it must point to an array containing 2551553168c7Sdan ** one element for each column returned by the SELECT statement on the RHS 2552553168c7Sdan ** of the IN(...) operator. The i'th entry of the array is populated with the 2553553168c7Sdan ** offset of the index column that matches the i'th column returned by the 2554553168c7Sdan ** SELECT. For example, if the expression and selected index are: 2555553168c7Sdan ** 2556553168c7Sdan ** (?,?,?) IN (SELECT a, b, c FROM t1) 2557553168c7Sdan ** CREATE INDEX i1 ON t1(b, c, a); 2558553168c7Sdan ** 2559553168c7Sdan ** then aiMap[] is populated with {2, 0, 1}. 25609a96b668Sdanielk1977 */ 2561284f4acaSdanielk1977 #ifndef SQLITE_OMIT_SUBQUERY 2562ba00e30aSdan int sqlite3FindInIndex( 25636fc8f364Sdrh Parse *pParse, /* Parsing context */ 25640167ef20Sdrh Expr *pX, /* The IN expression */ 25656fc8f364Sdrh u32 inFlags, /* IN_INDEX_LOOP, _MEMBERSHIP, and/or _NOOP_OK */ 25666fc8f364Sdrh int *prRhsHasNull, /* Register holding NULL status. See notes */ 25672c04131cSdrh int *aiMap, /* Mapping from Index fields to RHS fields */ 25682c04131cSdrh int *piTab /* OUT: index to use */ 2569ba00e30aSdan ){ 2570b74b1017Sdrh Select *p; /* SELECT to the right of IN operator */ 2571b74b1017Sdrh int eType = 0; /* Type of RHS table. IN_INDEX_* */ 2572b74b1017Sdrh int iTab = pParse->nTab++; /* Cursor of the RHS table */ 25733a85625dSdrh int mustBeUnique; /* True if RHS must be unique */ 2574b8475df8Sdrh Vdbe *v = sqlite3GetVdbe(pParse); /* Virtual machine being coded */ 25759a96b668Sdanielk1977 25761450bc6eSdrh assert( pX->op==TK_IN ); 25773a85625dSdrh mustBeUnique = (inFlags & IN_INDEX_LOOP)!=0; 25781450bc6eSdrh 25797b35a77bSdan /* If the RHS of this IN(...) operator is a SELECT, and if it matters 25807b35a77bSdan ** whether or not the SELECT result contains NULL values, check whether 2581870a0705Sdan ** or not NULL is actually possible (it may not be, for example, due 25827b35a77bSdan ** to NOT NULL constraints in the schema). If no NULL values are possible, 2583870a0705Sdan ** set prRhsHasNull to 0 before continuing. */ 25847b35a77bSdan if( prRhsHasNull && (pX->flags & EP_xIsSelect) ){ 25857b35a77bSdan int i; 25867b35a77bSdan ExprList *pEList = pX->x.pSelect->pEList; 25877b35a77bSdan for(i=0; i<pEList->nExpr; i++){ 25887b35a77bSdan if( sqlite3ExprCanBeNull(pEList->a[i].pExpr) ) break; 25897b35a77bSdan } 25907b35a77bSdan if( i==pEList->nExpr ){ 25917b35a77bSdan prRhsHasNull = 0; 25927b35a77bSdan } 25937b35a77bSdan } 25947b35a77bSdan 2595b74b1017Sdrh /* Check to see if an existing table or index can be used to 2596b74b1017Sdrh ** satisfy the query. This is preferable to generating a new 25977b35a77bSdan ** ephemeral table. */ 25987b35a77bSdan if( pParse->nErr==0 && (p = isCandidateForInOpt(pX))!=0 ){ 2599e1fb65a0Sdanielk1977 sqlite3 *db = pParse->db; /* Database connection */ 2600b07028f7Sdrh Table *pTab; /* Table <table>. */ 2601399062ccSdrh int iDb; /* Database idx for pTab */ 2602cfbb5e82Sdan ExprList *pEList = p->pEList; 2603cfbb5e82Sdan int nExpr = pEList->nExpr; 2604e1fb65a0Sdanielk1977 2605b07028f7Sdrh assert( p->pEList!=0 ); /* Because of isCandidateForInOpt(p) */ 2606b07028f7Sdrh assert( p->pEList->a[0].pExpr!=0 ); /* Because of isCandidateForInOpt(p) */ 2607b07028f7Sdrh assert( p->pSrc!=0 ); /* Because of isCandidateForInOpt(p) */ 2608b07028f7Sdrh pTab = p->pSrc->a[0].pTab; 2609b07028f7Sdrh 2610b22f7c83Sdrh /* Code an OP_Transaction and OP_TableLock for <table>. */ 2611e1fb65a0Sdanielk1977 iDb = sqlite3SchemaToIndex(db, pTab->pSchema); 2612099b385dSdrh assert( iDb>=0 && iDb<SQLITE_MAX_DB ); 2613e1fb65a0Sdanielk1977 sqlite3CodeVerifySchema(pParse, iDb); 2614e1fb65a0Sdanielk1977 sqlite3TableLock(pParse, iDb, pTab->tnum, 0, pTab->zName); 26159a96b668Sdanielk1977 2616a84a283dSdrh assert(v); /* sqlite3GetVdbe() has always been previously called */ 2617cfbb5e82Sdan if( nExpr==1 && pEList->a[0].pExpr->iColumn<0 ){ 261862659b2aSdrh /* The "x IN (SELECT rowid FROM table)" case */ 2619511f9e8dSdrh int iAddr = sqlite3VdbeAddOp0(v, OP_Once); 26207d176105Sdrh VdbeCoverage(v); 26219a96b668Sdanielk1977 26229a96b668Sdanielk1977 sqlite3OpenTable(pParse, iTab, iDb, pTab, OP_OpenRead); 26239a96b668Sdanielk1977 eType = IN_INDEX_ROWID; 2624d8852095Sdrh ExplainQueryPlan((pParse, 0, 2625d8852095Sdrh "USING ROWID SEARCH ON TABLE %s FOR IN-OPERATOR",pTab->zName)); 26269a96b668Sdanielk1977 sqlite3VdbeJumpHere(v, iAddr); 26279a96b668Sdanielk1977 }else{ 2628e1fb65a0Sdanielk1977 Index *pIdx; /* Iterator variable */ 2629cfbb5e82Sdan int affinity_ok = 1; 2630cfbb5e82Sdan int i; 2631cfbb5e82Sdan 2632cfbb5e82Sdan /* Check that the affinity that will be used to perform each 263362659b2aSdrh ** comparison is the same as the affinity of each column in table 263462659b2aSdrh ** on the RHS of the IN operator. If it not, it is not possible to 263562659b2aSdrh ** use any index of the RHS table. */ 2636cfbb5e82Sdan for(i=0; i<nExpr && affinity_ok; i++){ 2637fc7f27b9Sdrh Expr *pLhs = sqlite3VectorFieldSubexpr(pX->pLeft, i); 2638cfbb5e82Sdan int iCol = pEList->a[i].pExpr->iColumn; 26390dfa4f6fSdrh char idxaff = sqlite3TableColumnAffinity(pTab,iCol); /* RHS table */ 2640cfbb5e82Sdan char cmpaff = sqlite3CompareAffinity(pLhs, idxaff); 264162659b2aSdrh testcase( cmpaff==SQLITE_AFF_BLOB ); 264262659b2aSdrh testcase( cmpaff==SQLITE_AFF_TEXT ); 2643cfbb5e82Sdan switch( cmpaff ){ 2644cfbb5e82Sdan case SQLITE_AFF_BLOB: 2645cfbb5e82Sdan break; 2646cfbb5e82Sdan case SQLITE_AFF_TEXT: 264762659b2aSdrh /* sqlite3CompareAffinity() only returns TEXT if one side or the 264862659b2aSdrh ** other has no affinity and the other side is TEXT. Hence, 264962659b2aSdrh ** the only way for cmpaff to be TEXT is for idxaff to be TEXT 265062659b2aSdrh ** and for the term on the LHS of the IN to have no affinity. */ 265162659b2aSdrh assert( idxaff==SQLITE_AFF_TEXT ); 2652cfbb5e82Sdan break; 2653cfbb5e82Sdan default: 2654cfbb5e82Sdan affinity_ok = sqlite3IsNumericAffinity(idxaff); 2655cfbb5e82Sdan } 2656cfbb5e82Sdan } 2657e1fb65a0Sdanielk1977 2658a84a283dSdrh if( affinity_ok ){ 2659a84a283dSdrh /* Search for an existing index that will work for this IN operator */ 2660a84a283dSdrh for(pIdx=pTab->pIndex; pIdx && eType==0; pIdx=pIdx->pNext){ 2661a84a283dSdrh Bitmask colUsed; /* Columns of the index used */ 2662a84a283dSdrh Bitmask mCol; /* Mask for the current column */ 26636fc8f364Sdrh if( pIdx->nColumn<nExpr ) continue; 2664d4a4a361Sdrh if( pIdx->pPartIdxWhere!=0 ) continue; 2665a84a283dSdrh /* Maximum nColumn is BMS-2, not BMS-1, so that we can compute 2666a84a283dSdrh ** BITMASK(nExpr) without overflowing */ 2667a84a283dSdrh testcase( pIdx->nColumn==BMS-2 ); 2668a84a283dSdrh testcase( pIdx->nColumn==BMS-1 ); 2669a84a283dSdrh if( pIdx->nColumn>=BMS-1 ) continue; 26706fc8f364Sdrh if( mustBeUnique ){ 26716fc8f364Sdrh if( pIdx->nKeyCol>nExpr 26726fc8f364Sdrh ||(pIdx->nColumn>nExpr && !IsUniqueIndex(pIdx)) 26736fc8f364Sdrh ){ 2674a84a283dSdrh continue; /* This index is not unique over the IN RHS columns */ 2675cfbb5e82Sdan } 26766fc8f364Sdrh } 2677cfbb5e82Sdan 2678a84a283dSdrh colUsed = 0; /* Columns of index used so far */ 2679cfbb5e82Sdan for(i=0; i<nExpr; i++){ 2680fc7f27b9Sdrh Expr *pLhs = sqlite3VectorFieldSubexpr(pX->pLeft, i); 2681cfbb5e82Sdan Expr *pRhs = pEList->a[i].pExpr; 2682cfbb5e82Sdan CollSeq *pReq = sqlite3BinaryCompareCollSeq(pParse, pLhs, pRhs); 2683cfbb5e82Sdan int j; 2684cfbb5e82Sdan 26856fc8f364Sdrh assert( pReq!=0 || pRhs->iColumn==XN_ROWID || pParse->nErr ); 2686cfbb5e82Sdan for(j=0; j<nExpr; j++){ 2687cfbb5e82Sdan if( pIdx->aiColumn[j]!=pRhs->iColumn ) continue; 2688cfbb5e82Sdan assert( pIdx->azColl[j] ); 2689106526e1Sdrh if( pReq!=0 && sqlite3StrICmp(pReq->zName, pIdx->azColl[j])!=0 ){ 2690106526e1Sdrh continue; 2691106526e1Sdrh } 2692cfbb5e82Sdan break; 2693cfbb5e82Sdan } 2694cfbb5e82Sdan if( j==nExpr ) break; 2695a84a283dSdrh mCol = MASKBIT(j); 2696a84a283dSdrh if( mCol & colUsed ) break; /* Each column used only once */ 2697a84a283dSdrh colUsed |= mCol; 2698ba00e30aSdan if( aiMap ) aiMap[i] = j; 2699cfbb5e82Sdan } 2700cfbb5e82Sdan 2701a84a283dSdrh assert( i==nExpr || colUsed!=(MASKBIT(nExpr)-1) ); 2702a84a283dSdrh if( colUsed==(MASKBIT(nExpr)-1) ){ 2703a84a283dSdrh /* If we reach this point, that means the index pIdx is usable */ 2704511f9e8dSdrh int iAddr = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v); 2705e2ca99c9Sdrh ExplainQueryPlan((pParse, 0, 2706e2ca99c9Sdrh "USING INDEX %s FOR IN-OPERATOR",pIdx->zName)); 27072ec2fb22Sdrh sqlite3VdbeAddOp3(v, OP_OpenRead, iTab, pIdx->tnum, iDb); 27082ec2fb22Sdrh sqlite3VdbeSetP4KeyInfo(pParse, pIdx); 2709207872a4Sdanielk1977 VdbeComment((v, "%s", pIdx->zName)); 27101ccce449Sdrh assert( IN_INDEX_INDEX_DESC == IN_INDEX_INDEX_ASC+1 ); 27111ccce449Sdrh eType = IN_INDEX_INDEX_ASC + pIdx->aSortOrder[0]; 27129a96b668Sdanielk1977 27137b35a77bSdan if( prRhsHasNull ){ 27143480bfdaSdan #ifdef SQLITE_ENABLE_COLUMN_USED_MASK 2715cfbb5e82Sdan i64 mask = (1<<nExpr)-1; 27163480bfdaSdan sqlite3VdbeAddOp4Dup8(v, OP_ColumnsUsed, 2717cfbb5e82Sdan iTab, 0, 0, (u8*)&mask, P4_INT64); 27183480bfdaSdan #endif 2719b80dbdc2Sdrh *prRhsHasNull = ++pParse->nMem; 27207b35a77bSdan if( nExpr==1 ){ 27216be515ebSdrh sqlite3SetHasNullFlag(v, iTab, *prRhsHasNull); 27220cdc022eSdanielk1977 } 27237b35a77bSdan } 2724552fd454Sdrh sqlite3VdbeJumpHere(v, iAddr); 27259a96b668Sdanielk1977 } 2726a84a283dSdrh } /* End loop over indexes */ 2727a84a283dSdrh } /* End if( affinity_ok ) */ 2728a84a283dSdrh } /* End if not an rowid index */ 2729a84a283dSdrh } /* End attempt to optimize using an index */ 27309a96b668Sdanielk1977 2731bb53ecb1Sdrh /* If no preexisting index is available for the IN clause 2732bb53ecb1Sdrh ** and IN_INDEX_NOOP is an allowed reply 2733bb53ecb1Sdrh ** and the RHS of the IN operator is a list, not a subquery 273471c57db0Sdan ** and the RHS is not constant or has two or fewer terms, 273560ec914cSpeter.d.reid ** then it is not worth creating an ephemeral table to evaluate 2736bb53ecb1Sdrh ** the IN operator so return IN_INDEX_NOOP. 2737bb53ecb1Sdrh */ 2738bb53ecb1Sdrh if( eType==0 2739bb53ecb1Sdrh && (inFlags & IN_INDEX_NOOP_OK) 2740bb53ecb1Sdrh && !ExprHasProperty(pX, EP_xIsSelect) 2741bb53ecb1Sdrh && (!sqlite3InRhsIsConstant(pX) || pX->x.pList->nExpr<=2) 2742bb53ecb1Sdrh ){ 2743bb53ecb1Sdrh eType = IN_INDEX_NOOP; 2744bb53ecb1Sdrh } 2745bb53ecb1Sdrh 27469a96b668Sdanielk1977 if( eType==0 ){ 27474387006cSdrh /* Could not find an existing table or index to use as the RHS b-tree. 2748b74b1017Sdrh ** We will have to generate an ephemeral table to do the job. 2749b74b1017Sdrh */ 27508e23daf3Sdrh u32 savedNQueryLoop = pParse->nQueryLoop; 27510cdc022eSdanielk1977 int rMayHaveNull = 0; 275241a05b7bSdanielk1977 eType = IN_INDEX_EPH; 27533a85625dSdrh if( inFlags & IN_INDEX_LOOP ){ 27544a5acf8eSdrh pParse->nQueryLoop = 0; 2755e21a6e1dSdrh }else if( prRhsHasNull ){ 2756e21a6e1dSdrh *prRhsHasNull = rMayHaveNull = ++pParse->nMem; 2757cf4d38aaSdrh } 275885bcdce2Sdrh assert( pX->op==TK_IN ); 275950ef6716Sdrh sqlite3CodeRhsOfIN(pParse, pX, iTab); 276085bcdce2Sdrh if( rMayHaveNull ){ 27612c04131cSdrh sqlite3SetHasNullFlag(v, iTab, rMayHaveNull); 276285bcdce2Sdrh } 2763cf4d38aaSdrh pParse->nQueryLoop = savedNQueryLoop; 27649a96b668Sdanielk1977 } 2765ba00e30aSdan 2766ba00e30aSdan if( aiMap && eType!=IN_INDEX_INDEX_ASC && eType!=IN_INDEX_INDEX_DESC ){ 2767ba00e30aSdan int i, n; 2768ba00e30aSdan n = sqlite3ExprVectorSize(pX->pLeft); 2769ba00e30aSdan for(i=0; i<n; i++) aiMap[i] = i; 2770ba00e30aSdan } 27712c04131cSdrh *piTab = iTab; 27729a96b668Sdanielk1977 return eType; 27739a96b668Sdanielk1977 } 2774284f4acaSdanielk1977 #endif 2775626a879aSdrh 2776f9b2e05cSdan #ifndef SQLITE_OMIT_SUBQUERY 2777553168c7Sdan /* 2778553168c7Sdan ** Argument pExpr is an (?, ?...) IN(...) expression. This 2779553168c7Sdan ** function allocates and returns a nul-terminated string containing 2780553168c7Sdan ** the affinities to be used for each column of the comparison. 2781553168c7Sdan ** 2782553168c7Sdan ** It is the responsibility of the caller to ensure that the returned 2783553168c7Sdan ** string is eventually freed using sqlite3DbFree(). 2784553168c7Sdan */ 278571c57db0Sdan static char *exprINAffinity(Parse *pParse, Expr *pExpr){ 278671c57db0Sdan Expr *pLeft = pExpr->pLeft; 278771c57db0Sdan int nVal = sqlite3ExprVectorSize(pLeft); 2788553168c7Sdan Select *pSelect = (pExpr->flags & EP_xIsSelect) ? pExpr->x.pSelect : 0; 278971c57db0Sdan char *zRet; 279071c57db0Sdan 2791553168c7Sdan assert( pExpr->op==TK_IN ); 27925c258dc1Sdrh zRet = sqlite3DbMallocRaw(pParse->db, nVal+1); 279371c57db0Sdan if( zRet ){ 279471c57db0Sdan int i; 279571c57db0Sdan for(i=0; i<nVal; i++){ 2796fc7f27b9Sdrh Expr *pA = sqlite3VectorFieldSubexpr(pLeft, i); 2797553168c7Sdan char a = sqlite3ExprAffinity(pA); 2798553168c7Sdan if( pSelect ){ 2799553168c7Sdan zRet[i] = sqlite3CompareAffinity(pSelect->pEList->a[i].pExpr, a); 280071c57db0Sdan }else{ 2801553168c7Sdan zRet[i] = a; 280271c57db0Sdan } 280371c57db0Sdan } 280471c57db0Sdan zRet[nVal] = '\0'; 280571c57db0Sdan } 280671c57db0Sdan return zRet; 280771c57db0Sdan } 2808f9b2e05cSdan #endif 280971c57db0Sdan 28108da209b1Sdan #ifndef SQLITE_OMIT_SUBQUERY 28118da209b1Sdan /* 28128da209b1Sdan ** Load the Parse object passed as the first argument with an error 28138da209b1Sdan ** message of the form: 28148da209b1Sdan ** 28158da209b1Sdan ** "sub-select returns N columns - expected M" 28168da209b1Sdan */ 28178da209b1Sdan void sqlite3SubselectError(Parse *pParse, int nActual, int nExpect){ 2818a9ebfe20Sdrh if( pParse->nErr==0 ){ 28198da209b1Sdan const char *zFmt = "sub-select returns %d columns - expected %d"; 28208da209b1Sdan sqlite3ErrorMsg(pParse, zFmt, nActual, nExpect); 28218da209b1Sdan } 2822a9ebfe20Sdrh } 28238da209b1Sdan #endif 28248da209b1Sdan 2825626a879aSdrh /* 282644c5604cSdan ** Expression pExpr is a vector that has been used in a context where 282744c5604cSdan ** it is not permitted. If pExpr is a sub-select vector, this routine 282844c5604cSdan ** loads the Parse object with a message of the form: 282944c5604cSdan ** 283044c5604cSdan ** "sub-select returns N columns - expected 1" 283144c5604cSdan ** 283244c5604cSdan ** Or, if it is a regular scalar vector: 283344c5604cSdan ** 283444c5604cSdan ** "row value misused" 283544c5604cSdan */ 283644c5604cSdan void sqlite3VectorErrorMsg(Parse *pParse, Expr *pExpr){ 283744c5604cSdan #ifndef SQLITE_OMIT_SUBQUERY 283844c5604cSdan if( pExpr->flags & EP_xIsSelect ){ 283944c5604cSdan sqlite3SubselectError(pParse, pExpr->x.pSelect->pEList->nExpr, 1); 284044c5604cSdan }else 284144c5604cSdan #endif 284244c5604cSdan { 284344c5604cSdan sqlite3ErrorMsg(pParse, "row value misused"); 284444c5604cSdan } 284544c5604cSdan } 284644c5604cSdan 284785bcdce2Sdrh #ifndef SQLITE_OMIT_SUBQUERY 284844c5604cSdan /* 284985bcdce2Sdrh ** Generate code that will construct an ephemeral table containing all terms 285085bcdce2Sdrh ** in the RHS of an IN operator. The IN operator can be in either of two 285185bcdce2Sdrh ** forms: 2852626a879aSdrh ** 28539cbe6352Sdrh ** x IN (4,5,11) -- IN operator with list on right-hand side 28549cbe6352Sdrh ** x IN (SELECT a FROM b) -- IN operator with subquery on the right 2855fef5208cSdrh ** 28562c04131cSdrh ** The pExpr parameter is the IN operator. The cursor number for the 28572c04131cSdrh ** constructed ephermeral table is returned. The first time the ephemeral 28582c04131cSdrh ** table is computed, the cursor number is also stored in pExpr->iTable, 28592c04131cSdrh ** however the cursor number returned might not be the same, as it might 28602c04131cSdrh ** have been duplicated using OP_OpenDup. 286141a05b7bSdanielk1977 ** 286285bcdce2Sdrh ** If the LHS expression ("x" in the examples) is a column value, or 286385bcdce2Sdrh ** the SELECT statement returns a column value, then the affinity of that 286485bcdce2Sdrh ** column is used to build the index keys. If both 'x' and the 286585bcdce2Sdrh ** SELECT... statement are columns, then numeric affinity is used 286685bcdce2Sdrh ** if either column has NUMERIC or INTEGER affinity. If neither 286785bcdce2Sdrh ** 'x' nor the SELECT... statement are columns, then numeric affinity 286885bcdce2Sdrh ** is used. 2869cce7d176Sdrh */ 287085bcdce2Sdrh void sqlite3CodeRhsOfIN( 2871fd773cf9Sdrh Parse *pParse, /* Parsing context */ 287285bcdce2Sdrh Expr *pExpr, /* The IN operator */ 287350ef6716Sdrh int iTab /* Use this cursor number */ 287441a05b7bSdanielk1977 ){ 28752c04131cSdrh int addrOnce = 0; /* Address of the OP_Once instruction at top */ 287685bcdce2Sdrh int addr; /* Address of OP_OpenEphemeral instruction */ 287785bcdce2Sdrh Expr *pLeft; /* the LHS of the IN operator */ 287885bcdce2Sdrh KeyInfo *pKeyInfo = 0; /* Key information */ 287985bcdce2Sdrh int nVal; /* Size of vector pLeft */ 288085bcdce2Sdrh Vdbe *v; /* The prepared statement under construction */ 2881fc976065Sdanielk1977 28822c04131cSdrh v = pParse->pVdbe; 288385bcdce2Sdrh assert( v!=0 ); 288485bcdce2Sdrh 28852c04131cSdrh /* The evaluation of the IN must be repeated every time it 288639a11819Sdrh ** is encountered if any of the following is true: 288757dbd7b3Sdrh ** 288857dbd7b3Sdrh ** * The right-hand side is a correlated subquery 288957dbd7b3Sdrh ** * The right-hand side is an expression list containing variables 289057dbd7b3Sdrh ** * We are inside a trigger 289157dbd7b3Sdrh ** 28922c04131cSdrh ** If all of the above are false, then we can compute the RHS just once 28932c04131cSdrh ** and reuse it many names. 2894b3bce662Sdanielk1977 */ 2895efb699fcSdrh if( !ExprHasProperty(pExpr, EP_VarSelect) && pParse->iSelfTab==0 ){ 28962c04131cSdrh /* Reuse of the RHS is allowed */ 28972c04131cSdrh /* If this routine has already been coded, but the previous code 28982c04131cSdrh ** might not have been invoked yet, so invoke it now as a subroutine. 28992c04131cSdrh */ 29002c04131cSdrh if( ExprHasProperty(pExpr, EP_Subrtn) ){ 2901f9231c34Sdrh addrOnce = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v); 2902bd462bccSdrh if( ExprHasProperty(pExpr, EP_xIsSelect) ){ 2903bd462bccSdrh ExplainQueryPlan((pParse, 0, "REUSE LIST SUBQUERY %d", 2904bd462bccSdrh pExpr->x.pSelect->selId)); 2905bd462bccSdrh } 29062c04131cSdrh sqlite3VdbeAddOp2(v, OP_Gosub, pExpr->y.sub.regReturn, 29072c04131cSdrh pExpr->y.sub.iAddr); 29082c04131cSdrh sqlite3VdbeAddOp2(v, OP_OpenDup, iTab, pExpr->iTable); 2909f9231c34Sdrh sqlite3VdbeJumpHere(v, addrOnce); 29102c04131cSdrh return; 29112c04131cSdrh } 29122c04131cSdrh 29132c04131cSdrh /* Begin coding the subroutine */ 29142c04131cSdrh ExprSetProperty(pExpr, EP_Subrtn); 2915088489e8Sdrh assert( !ExprHasProperty(pExpr, EP_TokenOnly|EP_Reduced) ); 29162c04131cSdrh pExpr->y.sub.regReturn = ++pParse->nMem; 29172c04131cSdrh pExpr->y.sub.iAddr = 29182c04131cSdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, pExpr->y.sub.regReturn) + 1; 29192c04131cSdrh VdbeComment((v, "return address")); 29202c04131cSdrh 29212c04131cSdrh addrOnce = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v); 2922b3bce662Sdanielk1977 } 2923b3bce662Sdanielk1977 292485bcdce2Sdrh /* Check to see if this is a vector IN operator */ 292585bcdce2Sdrh pLeft = pExpr->pLeft; 292671c57db0Sdan nVal = sqlite3ExprVectorSize(pLeft); 2927e014a838Sdanielk1977 292885bcdce2Sdrh /* Construct the ephemeral table that will contain the content of 292985bcdce2Sdrh ** RHS of the IN operator. 2930fef5208cSdrh */ 29312c04131cSdrh pExpr->iTable = iTab; 293250ef6716Sdrh addr = sqlite3VdbeAddOp2(v, OP_OpenEphemeral, pExpr->iTable, nVal); 29332c04131cSdrh #ifdef SQLITE_ENABLE_EXPLAIN_COMMENTS 29342c04131cSdrh if( ExprHasProperty(pExpr, EP_xIsSelect) ){ 29352c04131cSdrh VdbeComment((v, "Result of SELECT %u", pExpr->x.pSelect->selId)); 29362c04131cSdrh }else{ 29372c04131cSdrh VdbeComment((v, "RHS of IN operator")); 29382c04131cSdrh } 29392c04131cSdrh #endif 294050ef6716Sdrh pKeyInfo = sqlite3KeyInfoAlloc(pParse->db, nVal, 1); 2941e014a838Sdanielk1977 29426ab3a2ecSdanielk1977 if( ExprHasProperty(pExpr, EP_xIsSelect) ){ 2943e014a838Sdanielk1977 /* Case 1: expr IN (SELECT ...) 2944e014a838Sdanielk1977 ** 2945e014a838Sdanielk1977 ** Generate code to write the results of the select into the temporary 2946e014a838Sdanielk1977 ** table allocated and opened above. 2947e014a838Sdanielk1977 */ 29484387006cSdrh Select *pSelect = pExpr->x.pSelect; 294971c57db0Sdan ExprList *pEList = pSelect->pEList; 29501013c932Sdrh 29512c04131cSdrh ExplainQueryPlan((pParse, 1, "%sLIST SUBQUERY %d", 29522c04131cSdrh addrOnce?"":"CORRELATED ", pSelect->selId 2953e2ca99c9Sdrh )); 295464bcb8cfSdrh /* If the LHS and RHS of the IN operator do not match, that 295564bcb8cfSdrh ** error will have been caught long before we reach this point. */ 295664bcb8cfSdrh if( ALWAYS(pEList->nExpr==nVal) ){ 295771c57db0Sdan SelectDest dest; 295871c57db0Sdan int i; 2959bd462bccSdrh sqlite3SelectDestInit(&dest, SRT_Set, iTab); 296071c57db0Sdan dest.zAffSdst = exprINAffinity(pParse, pExpr); 29614387006cSdrh pSelect->iLimit = 0; 29624387006cSdrh testcase( pSelect->selFlags & SF_Distinct ); 2963812ea833Sdrh testcase( pKeyInfo==0 ); /* Caused by OOM in sqlite3KeyInfoAlloc() */ 29644387006cSdrh if( sqlite3Select(pParse, pSelect, &dest) ){ 296571c57db0Sdan sqlite3DbFree(pParse->db, dest.zAffSdst); 29662ec2fb22Sdrh sqlite3KeyInfoUnref(pKeyInfo); 296785bcdce2Sdrh return; 296894ccde58Sdrh } 296971c57db0Sdan sqlite3DbFree(pParse->db, dest.zAffSdst); 2970812ea833Sdrh assert( pKeyInfo!=0 ); /* OOM will cause exit after sqlite3Select() */ 29713535ec3eSdrh assert( pEList!=0 ); 29723535ec3eSdrh assert( pEList->nExpr>0 ); 29732ec2fb22Sdrh assert( sqlite3KeyInfoIsWriteable(pKeyInfo) ); 297471c57db0Sdan for(i=0; i<nVal; i++){ 2975773d3afaSdan Expr *p = sqlite3VectorFieldSubexpr(pLeft, i); 297671c57db0Sdan pKeyInfo->aColl[i] = sqlite3BinaryCompareCollSeq( 297771c57db0Sdan pParse, p, pEList->a[i].pExpr 297871c57db0Sdan ); 297971c57db0Sdan } 298071c57db0Sdan } 2981a7d2db17Sdrh }else if( ALWAYS(pExpr->x.pList!=0) ){ 2982fef5208cSdrh /* Case 2: expr IN (exprlist) 2983fef5208cSdrh ** 2984e014a838Sdanielk1977 ** For each expression, build an index key from the evaluation and 2985e014a838Sdanielk1977 ** store it in the temporary table. If <expr> is a column, then use 2986e014a838Sdanielk1977 ** that columns affinity when building index keys. If <expr> is not 2987e014a838Sdanielk1977 ** a column, use numeric affinity. 2988fef5208cSdrh */ 298971c57db0Sdan char affinity; /* Affinity of the LHS of the IN */ 2990e014a838Sdanielk1977 int i; 29916ab3a2ecSdanielk1977 ExprList *pList = pExpr->x.pList; 299257dbd7b3Sdrh struct ExprList_item *pItem; 2993c324d446Sdan int r1, r2; 299471c57db0Sdan affinity = sqlite3ExprAffinity(pLeft); 299596fb16eeSdrh if( affinity<=SQLITE_AFF_NONE ){ 299605883a34Sdrh affinity = SQLITE_AFF_BLOB; 299795b39590Sdrh }else if( affinity==SQLITE_AFF_REAL ){ 299895b39590Sdrh affinity = SQLITE_AFF_NUMERIC; 2999e014a838Sdanielk1977 } 3000323df790Sdrh if( pKeyInfo ){ 30012ec2fb22Sdrh assert( sqlite3KeyInfoIsWriteable(pKeyInfo) ); 3002323df790Sdrh pKeyInfo->aColl[0] = sqlite3ExprCollSeq(pParse, pExpr->pLeft); 3003323df790Sdrh } 3004e014a838Sdanielk1977 3005e014a838Sdanielk1977 /* Loop through each expression in <exprlist>. */ 30062d401ab8Sdrh r1 = sqlite3GetTempReg(pParse); 30072d401ab8Sdrh r2 = sqlite3GetTempReg(pParse); 300857dbd7b3Sdrh for(i=pList->nExpr, pItem=pList->a; i>0; i--, pItem++){ 300957dbd7b3Sdrh Expr *pE2 = pItem->pExpr; 3010e014a838Sdanielk1977 301157dbd7b3Sdrh /* If the expression is not constant then we will need to 301257dbd7b3Sdrh ** disable the test that was generated above that makes sure 301357dbd7b3Sdrh ** this code only executes once. Because for a non-constant 301457dbd7b3Sdrh ** expression we need to rerun this code each time. 301557dbd7b3Sdrh */ 30162c04131cSdrh if( addrOnce && !sqlite3ExprIsConstant(pE2) ){ 30172c04131cSdrh sqlite3VdbeChangeToNoop(v, addrOnce); 30187ac0e562Sdan ExprClearProperty(pExpr, EP_Subrtn); 30192c04131cSdrh addrOnce = 0; 30204794b980Sdrh } 3021e014a838Sdanielk1977 3022e014a838Sdanielk1977 /* Evaluate the expression and insert it into the temp table */ 3023c324d446Sdan sqlite3ExprCode(pParse, pE2, r1); 3024c324d446Sdan sqlite3VdbeAddOp4(v, OP_MakeRecord, r1, 1, r2, &affinity, 1); 3025c324d446Sdan sqlite3VdbeAddOp4Int(v, OP_IdxInsert, iTab, r2, r1, 1); 3026fef5208cSdrh } 30272d401ab8Sdrh sqlite3ReleaseTempReg(pParse, r1); 30282d401ab8Sdrh sqlite3ReleaseTempReg(pParse, r2); 3029fef5208cSdrh } 3030323df790Sdrh if( pKeyInfo ){ 30312ec2fb22Sdrh sqlite3VdbeChangeP4(v, addr, (void *)pKeyInfo, P4_KEYINFO); 303241a05b7bSdanielk1977 } 30332c04131cSdrh if( addrOnce ){ 30342c04131cSdrh sqlite3VdbeJumpHere(v, addrOnce); 30352c04131cSdrh /* Subroutine return */ 30362c04131cSdrh sqlite3VdbeAddOp1(v, OP_Return, pExpr->y.sub.regReturn); 30372c04131cSdrh sqlite3VdbeChangeP1(v, pExpr->y.sub.iAddr-1, sqlite3VdbeCurrentAddr(v)-1); 30386d2566dfSdrh sqlite3ClearTempRegCache(pParse); 303985bcdce2Sdrh } 304085bcdce2Sdrh } 304185bcdce2Sdrh #endif /* SQLITE_OMIT_SUBQUERY */ 304285bcdce2Sdrh 304385bcdce2Sdrh /* 304485bcdce2Sdrh ** Generate code for scalar subqueries used as a subquery expression 304585bcdce2Sdrh ** or EXISTS operator: 304685bcdce2Sdrh ** 304785bcdce2Sdrh ** (SELECT a FROM b) -- subquery 304885bcdce2Sdrh ** EXISTS (SELECT a FROM b) -- EXISTS subquery 304985bcdce2Sdrh ** 305085bcdce2Sdrh ** The pExpr parameter is the SELECT or EXISTS operator to be coded. 305185bcdce2Sdrh ** 3052d86fe44aSdrh ** Return the register that holds the result. For a multi-column SELECT, 305385bcdce2Sdrh ** the result is stored in a contiguous array of registers and the 305485bcdce2Sdrh ** return value is the register of the left-most result column. 305585bcdce2Sdrh ** Return 0 if an error occurs. 305685bcdce2Sdrh */ 305785bcdce2Sdrh #ifndef SQLITE_OMIT_SUBQUERY 305885bcdce2Sdrh int sqlite3CodeSubselect(Parse *pParse, Expr *pExpr){ 30592c04131cSdrh int addrOnce = 0; /* Address of OP_Once at top of subroutine */ 306085bcdce2Sdrh int rReg = 0; /* Register storing resulting */ 306185bcdce2Sdrh Select *pSel; /* SELECT statement to encode */ 306285bcdce2Sdrh SelectDest dest; /* How to deal with SELECT result */ 306385bcdce2Sdrh int nReg; /* Registers to allocate */ 306485bcdce2Sdrh Expr *pLimit; /* New limit expression */ 30652c04131cSdrh 30662c04131cSdrh Vdbe *v = pParse->pVdbe; 306785bcdce2Sdrh assert( v!=0 ); 3068bd462bccSdrh testcase( pExpr->op==TK_EXISTS ); 3069bd462bccSdrh testcase( pExpr->op==TK_SELECT ); 3070bd462bccSdrh assert( pExpr->op==TK_EXISTS || pExpr->op==TK_SELECT ); 3071bd462bccSdrh assert( ExprHasProperty(pExpr, EP_xIsSelect) ); 3072bd462bccSdrh pSel = pExpr->x.pSelect; 307385bcdce2Sdrh 30745198ff57Sdrh /* The evaluation of the EXISTS/SELECT must be repeated every time it 307585bcdce2Sdrh ** is encountered if any of the following is true: 307685bcdce2Sdrh ** 307785bcdce2Sdrh ** * The right-hand side is a correlated subquery 307885bcdce2Sdrh ** * The right-hand side is an expression list containing variables 307985bcdce2Sdrh ** * We are inside a trigger 308085bcdce2Sdrh ** 308185bcdce2Sdrh ** If all of the above are false, then we can run this code just once 308285bcdce2Sdrh ** save the results, and reuse the same result on subsequent invocations. 308385bcdce2Sdrh */ 308485bcdce2Sdrh if( !ExprHasProperty(pExpr, EP_VarSelect) ){ 30855198ff57Sdrh /* If this routine has already been coded, then invoke it as a 30865198ff57Sdrh ** subroutine. */ 30875198ff57Sdrh if( ExprHasProperty(pExpr, EP_Subrtn) ){ 3088bd462bccSdrh ExplainQueryPlan((pParse, 0, "REUSE SUBQUERY %d", pSel->selId)); 30895198ff57Sdrh sqlite3VdbeAddOp2(v, OP_Gosub, pExpr->y.sub.regReturn, 30905198ff57Sdrh pExpr->y.sub.iAddr); 30915198ff57Sdrh return pExpr->iTable; 30925198ff57Sdrh } 30935198ff57Sdrh 30945198ff57Sdrh /* Begin coding the subroutine */ 30955198ff57Sdrh ExprSetProperty(pExpr, EP_Subrtn); 30965198ff57Sdrh pExpr->y.sub.regReturn = ++pParse->nMem; 30975198ff57Sdrh pExpr->y.sub.iAddr = 30985198ff57Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, pExpr->y.sub.regReturn) + 1; 30995198ff57Sdrh VdbeComment((v, "return address")); 31005198ff57Sdrh 31012c04131cSdrh addrOnce = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v); 3102fef5208cSdrh } 3103fef5208cSdrh 310485bcdce2Sdrh /* For a SELECT, generate code to put the values for all columns of 310539a11819Sdrh ** the first row into an array of registers and return the index of 310639a11819Sdrh ** the first register. 310739a11819Sdrh ** 310839a11819Sdrh ** If this is an EXISTS, write an integer 0 (not exists) or 1 (exists) 310939a11819Sdrh ** into a register and return that register number. 311039a11819Sdrh ** 311139a11819Sdrh ** In both cases, the query is augmented with "LIMIT 1". Any 311239a11819Sdrh ** preexisting limit is discarded in place of the new LIMIT 1. 3113fef5208cSdrh */ 3114bd462bccSdrh ExplainQueryPlan((pParse, 1, "%sSCALAR SUBQUERY %d", 3115bd462bccSdrh addrOnce?"":"CORRELATED ", pSel->selId)); 311671c57db0Sdan nReg = pExpr->op==TK_SELECT ? pSel->pEList->nExpr : 1; 311771c57db0Sdan sqlite3SelectDestInit(&dest, 0, pParse->nMem+1); 311871c57db0Sdan pParse->nMem += nReg; 311951522cd3Sdrh if( pExpr->op==TK_SELECT ){ 31206c8c8ce0Sdanielk1977 dest.eDest = SRT_Mem; 312153932ce8Sdrh dest.iSdst = dest.iSDParm; 312271c57db0Sdan dest.nSdst = nReg; 312371c57db0Sdan sqlite3VdbeAddOp3(v, OP_Null, 0, dest.iSDParm, dest.iSDParm+nReg-1); 3124d4e70ebdSdrh VdbeComment((v, "Init subquery result")); 312551522cd3Sdrh }else{ 31266c8c8ce0Sdanielk1977 dest.eDest = SRT_Exists; 31272b596da8Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, dest.iSDParm); 3128d4e70ebdSdrh VdbeComment((v, "Init EXISTS result")); 312951522cd3Sdrh } 31308c0833fbSdrh if( pSel->pLimit ){ 31317ca1347fSdrh /* The subquery already has a limit. If the pre-existing limit is X 31327ca1347fSdrh ** then make the new limit X<>0 so that the new limit is either 1 or 0 */ 31337ca1347fSdrh sqlite3 *db = pParse->db; 31345776ee5cSdrh pLimit = sqlite3Expr(db, TK_INTEGER, "0"); 31357ca1347fSdrh if( pLimit ){ 31367ca1347fSdrh pLimit->affExpr = SQLITE_AFF_NUMERIC; 31377ca1347fSdrh pLimit = sqlite3PExpr(pParse, TK_NE, 31387ca1347fSdrh sqlite3ExprDup(db, pSel->pLimit->pLeft, 0), pLimit); 31397ca1347fSdrh } 31407ca1347fSdrh sqlite3ExprDelete(db, pSel->pLimit->pLeft); 31418c0833fbSdrh pSel->pLimit->pLeft = pLimit; 31428c0833fbSdrh }else{ 31437ca1347fSdrh /* If there is no pre-existing limit add a limit of 1 */ 31445776ee5cSdrh pLimit = sqlite3Expr(pParse->db, TK_INTEGER, "1"); 31458c0833fbSdrh pSel->pLimit = sqlite3PExpr(pParse, TK_LIMIT, pLimit, 0); 31468c0833fbSdrh } 314748b5b041Sdrh pSel->iLimit = 0; 31487d10d5a6Sdrh if( sqlite3Select(pParse, pSel, &dest) ){ 31491450bc6eSdrh return 0; 315094ccde58Sdrh } 31512c04131cSdrh pExpr->iTable = rReg = dest.iSDParm; 3152ebb6a65dSdrh ExprSetVVAProperty(pExpr, EP_NoReduce); 31532c04131cSdrh if( addrOnce ){ 31542c04131cSdrh sqlite3VdbeJumpHere(v, addrOnce); 3155fc976065Sdanielk1977 31562c04131cSdrh /* Subroutine return */ 31572c04131cSdrh sqlite3VdbeAddOp1(v, OP_Return, pExpr->y.sub.regReturn); 31582c04131cSdrh sqlite3VdbeChangeP1(v, pExpr->y.sub.iAddr-1, sqlite3VdbeCurrentAddr(v)-1); 31596d2566dfSdrh sqlite3ClearTempRegCache(pParse); 31605198ff57Sdrh } 31612c04131cSdrh 31621450bc6eSdrh return rReg; 3163cce7d176Sdrh } 316451522cd3Sdrh #endif /* SQLITE_OMIT_SUBQUERY */ 3165cce7d176Sdrh 3166e3365e6cSdrh #ifndef SQLITE_OMIT_SUBQUERY 3167e3365e6cSdrh /* 31687b35a77bSdan ** Expr pIn is an IN(...) expression. This function checks that the 31697b35a77bSdan ** sub-select on the RHS of the IN() operator has the same number of 31707b35a77bSdan ** columns as the vector on the LHS. Or, if the RHS of the IN() is not 31717b35a77bSdan ** a sub-query, that the LHS is a vector of size 1. 31727b35a77bSdan */ 31737b35a77bSdan int sqlite3ExprCheckIN(Parse *pParse, Expr *pIn){ 31747b35a77bSdan int nVector = sqlite3ExprVectorSize(pIn->pLeft); 31757b35a77bSdan if( (pIn->flags & EP_xIsSelect) ){ 31767b35a77bSdan if( nVector!=pIn->x.pSelect->pEList->nExpr ){ 31777b35a77bSdan sqlite3SubselectError(pParse, pIn->x.pSelect->pEList->nExpr, nVector); 31787b35a77bSdan return 1; 31797b35a77bSdan } 31807b35a77bSdan }else if( nVector!=1 ){ 318144c5604cSdan sqlite3VectorErrorMsg(pParse, pIn->pLeft); 31827b35a77bSdan return 1; 31837b35a77bSdan } 31847b35a77bSdan return 0; 31857b35a77bSdan } 31867b35a77bSdan #endif 31877b35a77bSdan 31887b35a77bSdan #ifndef SQLITE_OMIT_SUBQUERY 31897b35a77bSdan /* 3190e3365e6cSdrh ** Generate code for an IN expression. 3191e3365e6cSdrh ** 3192e3365e6cSdrh ** x IN (SELECT ...) 3193e3365e6cSdrh ** x IN (value, value, ...) 3194e3365e6cSdrh ** 3195ecb87ac8Sdrh ** The left-hand side (LHS) is a scalar or vector expression. The 3196e347d3e8Sdrh ** right-hand side (RHS) is an array of zero or more scalar values, or a 3197e347d3e8Sdrh ** subquery. If the RHS is a subquery, the number of result columns must 3198e347d3e8Sdrh ** match the number of columns in the vector on the LHS. If the RHS is 3199e347d3e8Sdrh ** a list of values, the LHS must be a scalar. 3200e347d3e8Sdrh ** 3201e347d3e8Sdrh ** The IN operator is true if the LHS value is contained within the RHS. 3202e347d3e8Sdrh ** The result is false if the LHS is definitely not in the RHS. The 3203e347d3e8Sdrh ** result is NULL if the presence of the LHS in the RHS cannot be 3204e347d3e8Sdrh ** determined due to NULLs. 3205e3365e6cSdrh ** 32066be515ebSdrh ** This routine generates code that jumps to destIfFalse if the LHS is not 3207e3365e6cSdrh ** contained within the RHS. If due to NULLs we cannot determine if the LHS 3208e3365e6cSdrh ** is contained in the RHS then jump to destIfNull. If the LHS is contained 3209e3365e6cSdrh ** within the RHS then fall through. 3210ecb87ac8Sdrh ** 3211ecb87ac8Sdrh ** See the separate in-operator.md documentation file in the canonical 3212ecb87ac8Sdrh ** SQLite source tree for additional information. 3213e3365e6cSdrh */ 3214e3365e6cSdrh static void sqlite3ExprCodeIN( 3215e3365e6cSdrh Parse *pParse, /* Parsing and code generating context */ 3216e3365e6cSdrh Expr *pExpr, /* The IN expression */ 3217e3365e6cSdrh int destIfFalse, /* Jump here if LHS is not contained in the RHS */ 3218e3365e6cSdrh int destIfNull /* Jump here if the results are unknown due to NULLs */ 3219e3365e6cSdrh ){ 3220e3365e6cSdrh int rRhsHasNull = 0; /* Register that is true if RHS contains NULL values */ 3221e3365e6cSdrh int eType; /* Type of the RHS */ 3222e347d3e8Sdrh int rLhs; /* Register(s) holding the LHS values */ 3223e347d3e8Sdrh int rLhsOrig; /* LHS values prior to reordering by aiMap[] */ 3224e3365e6cSdrh Vdbe *v; /* Statement under construction */ 3225ba00e30aSdan int *aiMap = 0; /* Map from vector field to index column */ 3226ba00e30aSdan char *zAff = 0; /* Affinity string for comparisons */ 3227ecb87ac8Sdrh int nVector; /* Size of vectors for this IN operator */ 322812abf408Sdrh int iDummy; /* Dummy parameter to exprCodeVector() */ 3229e347d3e8Sdrh Expr *pLeft; /* The LHS of the IN operator */ 3230ecb87ac8Sdrh int i; /* loop counter */ 3231e347d3e8Sdrh int destStep2; /* Where to jump when NULLs seen in step 2 */ 3232e347d3e8Sdrh int destStep6 = 0; /* Start of code for Step 6 */ 3233e347d3e8Sdrh int addrTruthOp; /* Address of opcode that determines the IN is true */ 3234e347d3e8Sdrh int destNotNull; /* Jump here if a comparison is not true in step 6 */ 3235e347d3e8Sdrh int addrTop; /* Top of the step-6 loop */ 32362c04131cSdrh int iTab = 0; /* Index to use */ 3237c59b4acfSdan u8 okConstFactor = pParse->okConstFactor; 3238e3365e6cSdrh 3239e7375bfaSdrh assert( !ExprHasVVAProperty(pExpr,EP_Immutable) ); 3240e347d3e8Sdrh pLeft = pExpr->pLeft; 32417b35a77bSdan if( sqlite3ExprCheckIN(pParse, pExpr) ) return; 3242553168c7Sdan zAff = exprINAffinity(pParse, pExpr); 3243ba00e30aSdan nVector = sqlite3ExprVectorSize(pExpr->pLeft); 3244ba00e30aSdan aiMap = (int*)sqlite3DbMallocZero( 3245ba00e30aSdan pParse->db, nVector*(sizeof(int) + sizeof(char)) + 1 3246ba00e30aSdan ); 3247e347d3e8Sdrh if( pParse->db->mallocFailed ) goto sqlite3ExprCodeIN_oom_error; 32487b35a77bSdan 3249ba00e30aSdan /* Attempt to compute the RHS. After this step, if anything other than 32502c04131cSdrh ** IN_INDEX_NOOP is returned, the table opened with cursor iTab 3251ba00e30aSdan ** contains the values that make up the RHS. If IN_INDEX_NOOP is returned, 3252ba00e30aSdan ** the RHS has not yet been coded. */ 3253e3365e6cSdrh v = pParse->pVdbe; 3254e3365e6cSdrh assert( v!=0 ); /* OOM detected prior to this routine */ 3255e3365e6cSdrh VdbeNoopComment((v, "begin IN expr")); 3256bb53ecb1Sdrh eType = sqlite3FindInIndex(pParse, pExpr, 3257bb53ecb1Sdrh IN_INDEX_MEMBERSHIP | IN_INDEX_NOOP_OK, 32582c04131cSdrh destIfFalse==destIfNull ? 0 : &rRhsHasNull, 32592c04131cSdrh aiMap, &iTab); 3260e3365e6cSdrh 3261ba00e30aSdan assert( pParse->nErr || nVector==1 || eType==IN_INDEX_EPH 3262ba00e30aSdan || eType==IN_INDEX_INDEX_ASC || eType==IN_INDEX_INDEX_DESC 3263ba00e30aSdan ); 3264ecb87ac8Sdrh #ifdef SQLITE_DEBUG 3265ecb87ac8Sdrh /* Confirm that aiMap[] contains nVector integer values between 0 and 3266ecb87ac8Sdrh ** nVector-1. */ 3267ecb87ac8Sdrh for(i=0; i<nVector; i++){ 3268ecb87ac8Sdrh int j, cnt; 3269ecb87ac8Sdrh for(cnt=j=0; j<nVector; j++) if( aiMap[j]==i ) cnt++; 3270ecb87ac8Sdrh assert( cnt==1 ); 3271ecb87ac8Sdrh } 3272ecb87ac8Sdrh #endif 3273e3365e6cSdrh 3274ba00e30aSdan /* Code the LHS, the <expr> from "<expr> IN (...)". If the LHS is a 3275ba00e30aSdan ** vector, then it is stored in an array of nVector registers starting 3276ba00e30aSdan ** at r1. 3277e347d3e8Sdrh ** 3278e347d3e8Sdrh ** sqlite3FindInIndex() might have reordered the fields of the LHS vector 3279e347d3e8Sdrh ** so that the fields are in the same order as an existing index. The 3280e347d3e8Sdrh ** aiMap[] array contains a mapping from the original LHS field order to 3281e347d3e8Sdrh ** the field order that matches the RHS index. 3282c59b4acfSdan ** 3283c59b4acfSdan ** Avoid factoring the LHS of the IN(...) expression out of the loop, 3284c59b4acfSdan ** even if it is constant, as OP_Affinity may be used on the register 3285c59b4acfSdan ** by code generated below. */ 3286c59b4acfSdan assert( pParse->okConstFactor==okConstFactor ); 3287c59b4acfSdan pParse->okConstFactor = 0; 3288e347d3e8Sdrh rLhsOrig = exprCodeVector(pParse, pLeft, &iDummy); 3289c59b4acfSdan pParse->okConstFactor = okConstFactor; 3290e347d3e8Sdrh for(i=0; i<nVector && aiMap[i]==i; i++){} /* Are LHS fields reordered? */ 3291ecb87ac8Sdrh if( i==nVector ){ 3292e347d3e8Sdrh /* LHS fields are not reordered */ 3293e347d3e8Sdrh rLhs = rLhsOrig; 3294ecb87ac8Sdrh }else{ 3295ecb87ac8Sdrh /* Need to reorder the LHS fields according to aiMap */ 3296e347d3e8Sdrh rLhs = sqlite3GetTempRange(pParse, nVector); 3297ba00e30aSdan for(i=0; i<nVector; i++){ 3298e347d3e8Sdrh sqlite3VdbeAddOp3(v, OP_Copy, rLhsOrig+i, rLhs+aiMap[i], 0); 3299ba00e30aSdan } 3300ecb87ac8Sdrh } 3301e3365e6cSdrh 3302bb53ecb1Sdrh /* If sqlite3FindInIndex() did not find or create an index that is 3303bb53ecb1Sdrh ** suitable for evaluating the IN operator, then evaluate using a 3304bb53ecb1Sdrh ** sequence of comparisons. 3305e347d3e8Sdrh ** 3306e347d3e8Sdrh ** This is step (1) in the in-operator.md optimized algorithm. 3307bb53ecb1Sdrh */ 3308bb53ecb1Sdrh if( eType==IN_INDEX_NOOP ){ 3309bb53ecb1Sdrh ExprList *pList = pExpr->x.pList; 3310bb53ecb1Sdrh CollSeq *pColl = sqlite3ExprCollSeq(pParse, pExpr->pLeft); 3311ec4ccdbcSdrh int labelOk = sqlite3VdbeMakeLabel(pParse); 3312bb53ecb1Sdrh int r2, regToFree; 3313bb53ecb1Sdrh int regCkNull = 0; 3314bb53ecb1Sdrh int ii; 3315bb53ecb1Sdrh assert( !ExprHasProperty(pExpr, EP_xIsSelect) ); 3316bb53ecb1Sdrh if( destIfNull!=destIfFalse ){ 3317bb53ecb1Sdrh regCkNull = sqlite3GetTempReg(pParse); 3318e347d3e8Sdrh sqlite3VdbeAddOp3(v, OP_BitAnd, rLhs, rLhs, regCkNull); 3319bb53ecb1Sdrh } 3320bb53ecb1Sdrh for(ii=0; ii<pList->nExpr; ii++){ 33214fc83654Sdrh r2 = sqlite3ExprCodeTemp(pParse, pList->a[ii].pExpr, ®ToFree); 3322a976979bSdrh if( regCkNull && sqlite3ExprCanBeNull(pList->a[ii].pExpr) ){ 3323bb53ecb1Sdrh sqlite3VdbeAddOp3(v, OP_BitAnd, regCkNull, r2, regCkNull); 3324bb53ecb1Sdrh } 3325f6ea97eaSdrh sqlite3ReleaseTempReg(pParse, regToFree); 3326bb53ecb1Sdrh if( ii<pList->nExpr-1 || destIfNull!=destIfFalse ){ 33274799488eSdrh int op = rLhs!=r2 ? OP_Eq : OP_NotNull; 33284799488eSdrh sqlite3VdbeAddOp4(v, op, rLhs, labelOk, r2, 33294336b0e6Sdrh (void*)pColl, P4_COLLSEQ); 33304799488eSdrh VdbeCoverageIf(v, ii<pList->nExpr-1 && op==OP_Eq); 33314799488eSdrh VdbeCoverageIf(v, ii==pList->nExpr-1 && op==OP_Eq); 33324799488eSdrh VdbeCoverageIf(v, ii<pList->nExpr-1 && op==OP_NotNull); 33334799488eSdrh VdbeCoverageIf(v, ii==pList->nExpr-1 && op==OP_NotNull); 3334ba00e30aSdan sqlite3VdbeChangeP5(v, zAff[0]); 3335bb53ecb1Sdrh }else{ 33364799488eSdrh int op = rLhs!=r2 ? OP_Ne : OP_IsNull; 3337bb53ecb1Sdrh assert( destIfNull==destIfFalse ); 33384799488eSdrh sqlite3VdbeAddOp4(v, op, rLhs, destIfFalse, r2, 33394799488eSdrh (void*)pColl, P4_COLLSEQ); 33404799488eSdrh VdbeCoverageIf(v, op==OP_Ne); 33414799488eSdrh VdbeCoverageIf(v, op==OP_IsNull); 3342ba00e30aSdan sqlite3VdbeChangeP5(v, zAff[0] | SQLITE_JUMPIFNULL); 3343bb53ecb1Sdrh } 3344bb53ecb1Sdrh } 3345bb53ecb1Sdrh if( regCkNull ){ 3346bb53ecb1Sdrh sqlite3VdbeAddOp2(v, OP_IsNull, regCkNull, destIfNull); VdbeCoverage(v); 3347076e85f5Sdrh sqlite3VdbeGoto(v, destIfFalse); 3348bb53ecb1Sdrh } 3349bb53ecb1Sdrh sqlite3VdbeResolveLabel(v, labelOk); 3350bb53ecb1Sdrh sqlite3ReleaseTempReg(pParse, regCkNull); 3351e347d3e8Sdrh goto sqlite3ExprCodeIN_finished; 3352e347d3e8Sdrh } 3353bb53ecb1Sdrh 3354e347d3e8Sdrh /* Step 2: Check to see if the LHS contains any NULL columns. If the 3355e347d3e8Sdrh ** LHS does contain NULLs then the result must be either FALSE or NULL. 3356e347d3e8Sdrh ** We will then skip the binary search of the RHS. 3357e347d3e8Sdrh */ 3358094430ebSdrh if( destIfNull==destIfFalse ){ 3359e347d3e8Sdrh destStep2 = destIfFalse; 3360e347d3e8Sdrh }else{ 3361ec4ccdbcSdrh destStep2 = destStep6 = sqlite3VdbeMakeLabel(pParse); 3362e347d3e8Sdrh } 33634eac5f04Sdrh if( pParse->nErr ) goto sqlite3ExprCodeIN_finished; 3364d49fd4e8Sdan for(i=0; i<nVector; i++){ 3365fc7f27b9Sdrh Expr *p = sqlite3VectorFieldSubexpr(pExpr->pLeft, i); 3366d49fd4e8Sdan if( sqlite3ExprCanBeNull(p) ){ 3367e347d3e8Sdrh sqlite3VdbeAddOp2(v, OP_IsNull, rLhs+i, destStep2); 3368471b4b92Sdrh VdbeCoverage(v); 3369d49fd4e8Sdan } 3370d49fd4e8Sdan } 3371e3365e6cSdrh 3372e347d3e8Sdrh /* Step 3. The LHS is now known to be non-NULL. Do the binary search 3373e347d3e8Sdrh ** of the RHS using the LHS as a probe. If found, the result is 3374e347d3e8Sdrh ** true. 3375e347d3e8Sdrh */ 3376e3365e6cSdrh if( eType==IN_INDEX_ROWID ){ 3377e347d3e8Sdrh /* In this case, the RHS is the ROWID of table b-tree and so we also 3378e347d3e8Sdrh ** know that the RHS is non-NULL. Hence, we combine steps 3 and 4 3379e347d3e8Sdrh ** into a single opcode. */ 33802c04131cSdrh sqlite3VdbeAddOp3(v, OP_SeekRowid, iTab, destIfFalse, rLhs); 3381688852abSdrh VdbeCoverage(v); 3382e347d3e8Sdrh addrTruthOp = sqlite3VdbeAddOp0(v, OP_Goto); /* Return True */ 33837b35a77bSdan }else{ 3384e347d3e8Sdrh sqlite3VdbeAddOp4(v, OP_Affinity, rLhs, nVector, 0, zAff, nVector); 3385e347d3e8Sdrh if( destIfFalse==destIfNull ){ 3386e347d3e8Sdrh /* Combine Step 3 and Step 5 into a single opcode */ 33872c04131cSdrh sqlite3VdbeAddOp4Int(v, OP_NotFound, iTab, destIfFalse, 3388e347d3e8Sdrh rLhs, nVector); VdbeCoverage(v); 3389e347d3e8Sdrh goto sqlite3ExprCodeIN_finished; 3390e347d3e8Sdrh } 3391e347d3e8Sdrh /* Ordinary Step 3, for the case where FALSE and NULL are distinct */ 33922c04131cSdrh addrTruthOp = sqlite3VdbeAddOp4Int(v, OP_Found, iTab, 0, 3393e347d3e8Sdrh rLhs, nVector); VdbeCoverage(v); 3394e347d3e8Sdrh } 3395ba00e30aSdan 3396e347d3e8Sdrh /* Step 4. If the RHS is known to be non-NULL and we did not find 3397e347d3e8Sdrh ** an match on the search above, then the result must be FALSE. 3398e347d3e8Sdrh */ 3399e347d3e8Sdrh if( rRhsHasNull && nVector==1 ){ 3400e347d3e8Sdrh sqlite3VdbeAddOp2(v, OP_NotNull, rRhsHasNull, destIfFalse); 3401471b4b92Sdrh VdbeCoverage(v); 3402e347d3e8Sdrh } 34037b35a77bSdan 3404e347d3e8Sdrh /* Step 5. If we do not care about the difference between NULL and 3405e347d3e8Sdrh ** FALSE, then just return false. 3406e347d3e8Sdrh */ 3407e347d3e8Sdrh if( destIfFalse==destIfNull ) sqlite3VdbeGoto(v, destIfFalse); 3408e347d3e8Sdrh 3409e347d3e8Sdrh /* Step 6: Loop through rows of the RHS. Compare each row to the LHS. 3410e347d3e8Sdrh ** If any comparison is NULL, then the result is NULL. If all 3411e347d3e8Sdrh ** comparisons are FALSE then the final result is FALSE. 3412e347d3e8Sdrh ** 3413e347d3e8Sdrh ** For a scalar LHS, it is sufficient to check just the first row 3414e347d3e8Sdrh ** of the RHS. 3415e347d3e8Sdrh */ 3416e347d3e8Sdrh if( destStep6 ) sqlite3VdbeResolveLabel(v, destStep6); 34172c04131cSdrh addrTop = sqlite3VdbeAddOp2(v, OP_Rewind, iTab, destIfFalse); 3418471b4b92Sdrh VdbeCoverage(v); 3419e347d3e8Sdrh if( nVector>1 ){ 3420ec4ccdbcSdrh destNotNull = sqlite3VdbeMakeLabel(pParse); 3421e347d3e8Sdrh }else{ 3422e347d3e8Sdrh /* For nVector==1, combine steps 6 and 7 by immediately returning 3423e347d3e8Sdrh ** FALSE if the first comparison is not NULL */ 3424e347d3e8Sdrh destNotNull = destIfFalse; 3425e347d3e8Sdrh } 3426ba00e30aSdan for(i=0; i<nVector; i++){ 3427ba00e30aSdan Expr *p; 3428ba00e30aSdan CollSeq *pColl; 3429e347d3e8Sdrh int r3 = sqlite3GetTempReg(pParse); 3430fc7f27b9Sdrh p = sqlite3VectorFieldSubexpr(pLeft, i); 3431ba00e30aSdan pColl = sqlite3ExprCollSeq(pParse, p); 34322c04131cSdrh sqlite3VdbeAddOp3(v, OP_Column, iTab, i, r3); 3433e347d3e8Sdrh sqlite3VdbeAddOp4(v, OP_Ne, rLhs+i, destNotNull, r3, 343418016ad2Sdrh (void*)pColl, P4_COLLSEQ); 3435471b4b92Sdrh VdbeCoverage(v); 3436e347d3e8Sdrh sqlite3ReleaseTempReg(pParse, r3); 34377b35a77bSdan } 34387b35a77bSdan sqlite3VdbeAddOp2(v, OP_Goto, 0, destIfNull); 3439e347d3e8Sdrh if( nVector>1 ){ 3440e347d3e8Sdrh sqlite3VdbeResolveLabel(v, destNotNull); 34412c04131cSdrh sqlite3VdbeAddOp2(v, OP_Next, iTab, addrTop+1); 344218016ad2Sdrh VdbeCoverage(v); 3443e347d3e8Sdrh 3444e347d3e8Sdrh /* Step 7: If we reach this point, we know that the result must 3445e347d3e8Sdrh ** be false. */ 344618016ad2Sdrh sqlite3VdbeAddOp2(v, OP_Goto, 0, destIfFalse); 34477b35a77bSdan } 34487b35a77bSdan 3449e347d3e8Sdrh /* Jumps here in order to return true. */ 3450e347d3e8Sdrh sqlite3VdbeJumpHere(v, addrTruthOp); 3451e3365e6cSdrh 3452e347d3e8Sdrh sqlite3ExprCodeIN_finished: 3453e347d3e8Sdrh if( rLhs!=rLhsOrig ) sqlite3ReleaseTempReg(pParse, rLhs); 3454ecb87ac8Sdrh VdbeComment((v, "end IN expr")); 3455e347d3e8Sdrh sqlite3ExprCodeIN_oom_error: 3456ba00e30aSdan sqlite3DbFree(pParse->db, aiMap); 3457553168c7Sdan sqlite3DbFree(pParse->db, zAff); 3458e3365e6cSdrh } 3459e3365e6cSdrh #endif /* SQLITE_OMIT_SUBQUERY */ 3460e3365e6cSdrh 346113573c71Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT 3462598f1340Sdrh /* 3463598f1340Sdrh ** Generate an instruction that will put the floating point 34649cbf3425Sdrh ** value described by z[0..n-1] into register iMem. 34650cf19ed8Sdrh ** 34660cf19ed8Sdrh ** The z[] string will probably not be zero-terminated. But the 34670cf19ed8Sdrh ** z[n] character is guaranteed to be something that does not look 34680cf19ed8Sdrh ** like the continuation of the number. 3469598f1340Sdrh */ 3470b7916a78Sdrh static void codeReal(Vdbe *v, const char *z, int negateFlag, int iMem){ 3471fd773cf9Sdrh if( ALWAYS(z!=0) ){ 3472598f1340Sdrh double value; 34739339da1fSdrh sqlite3AtoF(z, &value, sqlite3Strlen30(z), SQLITE_UTF8); 3474d0015161Sdrh assert( !sqlite3IsNaN(value) ); /* The new AtoF never returns NaN */ 3475598f1340Sdrh if( negateFlag ) value = -value; 347697bae794Sdrh sqlite3VdbeAddOp4Dup8(v, OP_Real, 0, iMem, 0, (u8*)&value, P4_REAL); 3477598f1340Sdrh } 3478598f1340Sdrh } 347913573c71Sdrh #endif 3480598f1340Sdrh 3481598f1340Sdrh 3482598f1340Sdrh /* 3483fec19aadSdrh ** Generate an instruction that will put the integer describe by 34849cbf3425Sdrh ** text z[0..n-1] into register iMem. 34850cf19ed8Sdrh ** 34865f1d6b61Sshaneh ** Expr.u.zToken is always UTF8 and zero-terminated. 3487fec19aadSdrh */ 348813573c71Sdrh static void codeInteger(Parse *pParse, Expr *pExpr, int negFlag, int iMem){ 348913573c71Sdrh Vdbe *v = pParse->pVdbe; 349092b01d53Sdrh if( pExpr->flags & EP_IntValue ){ 349133e619fcSdrh int i = pExpr->u.iValue; 3492d50ffc41Sdrh assert( i>=0 ); 349392b01d53Sdrh if( negFlag ) i = -i; 349492b01d53Sdrh sqlite3VdbeAddOp2(v, OP_Integer, i, iMem); 3495fd773cf9Sdrh }else{ 34965f1d6b61Sshaneh int c; 34975f1d6b61Sshaneh i64 value; 3498fd773cf9Sdrh const char *z = pExpr->u.zToken; 3499fd773cf9Sdrh assert( z!=0 ); 35009296c18aSdrh c = sqlite3DecOrHexToI64(z, &value); 350184d4f1a3Sdrh if( (c==3 && !negFlag) || (c==2) || (negFlag && value==SMALLEST_INT64)){ 350213573c71Sdrh #ifdef SQLITE_OMIT_FLOATING_POINT 350313573c71Sdrh sqlite3ErrorMsg(pParse, "oversized integer: %s%s", negFlag ? "-" : "", z); 350413573c71Sdrh #else 35051b7ddc59Sdrh #ifndef SQLITE_OMIT_HEX_INTEGER 35069296c18aSdrh if( sqlite3_strnicmp(z,"0x",2)==0 ){ 350777320ea4Sdrh sqlite3ErrorMsg(pParse, "hex literal too big: %s%s", negFlag?"-":"",z); 35081b7ddc59Sdrh }else 35091b7ddc59Sdrh #endif 35101b7ddc59Sdrh { 3511b7916a78Sdrh codeReal(v, z, negFlag, iMem); 35129296c18aSdrh } 351313573c71Sdrh #endif 351477320ea4Sdrh }else{ 351584d4f1a3Sdrh if( negFlag ){ value = c==3 ? SMALLEST_INT64 : -value; } 351677320ea4Sdrh sqlite3VdbeAddOp4Dup8(v, OP_Int64, 0, iMem, 0, (u8*)&value, P4_INT64); 3517fec19aadSdrh } 3518fec19aadSdrh } 3519c9cf901dSdanielk1977 } 3520fec19aadSdrh 35215cd79239Sdrh 35221f9ca2c8Sdrh /* Generate code that will load into register regOut a value that is 35231f9ca2c8Sdrh ** appropriate for the iIdxCol-th column of index pIdx. 35241f9ca2c8Sdrh */ 35251f9ca2c8Sdrh void sqlite3ExprCodeLoadIndexColumn( 35261f9ca2c8Sdrh Parse *pParse, /* The parsing context */ 35271f9ca2c8Sdrh Index *pIdx, /* The index whose column is to be loaded */ 35281f9ca2c8Sdrh int iTabCur, /* Cursor pointing to a table row */ 35291f9ca2c8Sdrh int iIdxCol, /* The column of the index to be loaded */ 35301f9ca2c8Sdrh int regOut /* Store the index column value in this register */ 35311f9ca2c8Sdrh ){ 35321f9ca2c8Sdrh i16 iTabCol = pIdx->aiColumn[iIdxCol]; 35334b92f98cSdrh if( iTabCol==XN_EXPR ){ 35341f9ca2c8Sdrh assert( pIdx->aColExpr ); 35351f9ca2c8Sdrh assert( pIdx->aColExpr->nExpr>iIdxCol ); 35363e34eabcSdrh pParse->iSelfTab = iTabCur + 1; 35371c75c9d7Sdrh sqlite3ExprCodeCopy(pParse, pIdx->aColExpr->a[iIdxCol].pExpr, regOut); 35383e34eabcSdrh pParse->iSelfTab = 0; 35394b92f98cSdrh }else{ 35406df9c4b9Sdrh sqlite3ExprCodeGetColumnOfTable(pParse->pVdbe, pIdx->pTable, iTabCur, 35414b92f98cSdrh iTabCol, regOut); 35424b92f98cSdrh } 35431f9ca2c8Sdrh } 35441f9ca2c8Sdrh 3545e70fa7feSdrh #ifndef SQLITE_OMIT_GENERATED_COLUMNS 3546e70fa7feSdrh /* 3547e70fa7feSdrh ** Generate code that will compute the value of generated column pCol 3548e70fa7feSdrh ** and store the result in register regOut 3549e70fa7feSdrh */ 3550e70fa7feSdrh void sqlite3ExprCodeGeneratedColumn( 3551e70fa7feSdrh Parse *pParse, 3552e70fa7feSdrh Column *pCol, 3553e70fa7feSdrh int regOut 3554e70fa7feSdrh ){ 35554dad7ed5Sdrh int iAddr; 35564dad7ed5Sdrh Vdbe *v = pParse->pVdbe; 35574dad7ed5Sdrh assert( v!=0 ); 35584dad7ed5Sdrh assert( pParse->iSelfTab!=0 ); 35594dad7ed5Sdrh if( pParse->iSelfTab>0 ){ 35604dad7ed5Sdrh iAddr = sqlite3VdbeAddOp3(v, OP_IfNullRow, pParse->iSelfTab-1, 0, regOut); 35614dad7ed5Sdrh }else{ 35624dad7ed5Sdrh iAddr = 0; 35634dad7ed5Sdrh } 356424e39903Sdrh sqlite3ExprCodeCopy(pParse, pCol->pDflt, regOut); 3565e70fa7feSdrh if( pCol->affinity>=SQLITE_AFF_TEXT ){ 35664dad7ed5Sdrh sqlite3VdbeAddOp4(v, OP_Affinity, regOut, 1, 0, &pCol->affinity, 1); 3567e70fa7feSdrh } 35684dad7ed5Sdrh if( iAddr ) sqlite3VdbeJumpHere(v, iAddr); 3569e70fa7feSdrh } 3570e70fa7feSdrh #endif /* SQLITE_OMIT_GENERATED_COLUMNS */ 3571e70fa7feSdrh 35725cd79239Sdrh /* 35735c092e8aSdrh ** Generate code to extract the value of the iCol-th column of a table. 35745c092e8aSdrh */ 35755c092e8aSdrh void sqlite3ExprCodeGetColumnOfTable( 35766df9c4b9Sdrh Vdbe *v, /* Parsing context */ 35775c092e8aSdrh Table *pTab, /* The table containing the value */ 3578313619f5Sdrh int iTabCur, /* The table cursor. Or the PK cursor for WITHOUT ROWID */ 35795c092e8aSdrh int iCol, /* Index of the column to extract */ 3580313619f5Sdrh int regOut /* Extract the value into this register */ 35815c092e8aSdrh ){ 3582ab45fc04Sdrh Column *pCol; 358381f7b372Sdrh assert( v!=0 ); 3584aca19e19Sdrh if( pTab==0 ){ 3585aca19e19Sdrh sqlite3VdbeAddOp3(v, OP_Column, iTabCur, iCol, regOut); 3586aca19e19Sdrh return; 3587aca19e19Sdrh } 35885c092e8aSdrh if( iCol<0 || iCol==pTab->iPKey ){ 35895c092e8aSdrh sqlite3VdbeAddOp2(v, OP_Rowid, iTabCur, regOut); 35905c092e8aSdrh }else{ 359181f7b372Sdrh int op; 359281f7b372Sdrh int x; 359381f7b372Sdrh if( IsVirtual(pTab) ){ 359481f7b372Sdrh op = OP_VColumn; 359581f7b372Sdrh x = iCol; 359681f7b372Sdrh #ifndef SQLITE_OMIT_GENERATED_COLUMNS 3597ab45fc04Sdrh }else if( (pCol = &pTab->aCol[iCol])->colFlags & COLFLAG_VIRTUAL ){ 35986df9c4b9Sdrh Parse *pParse = sqlite3VdbeParser(v); 3599ab45fc04Sdrh if( pCol->colFlags & COLFLAG_BUSY ){ 3600ab45fc04Sdrh sqlite3ErrorMsg(pParse, "generated column loop on \"%s\"", pCol->zName); 3601ab45fc04Sdrh }else{ 360281f7b372Sdrh int savedSelfTab = pParse->iSelfTab; 3603ab45fc04Sdrh pCol->colFlags |= COLFLAG_BUSY; 360481f7b372Sdrh pParse->iSelfTab = iTabCur+1; 3605e70fa7feSdrh sqlite3ExprCodeGeneratedColumn(pParse, pCol, regOut); 360681f7b372Sdrh pParse->iSelfTab = savedSelfTab; 3607ab45fc04Sdrh pCol->colFlags &= ~COLFLAG_BUSY; 3608ab45fc04Sdrh } 360981f7b372Sdrh return; 361081f7b372Sdrh #endif 361181f7b372Sdrh }else if( !HasRowid(pTab) ){ 3612c5f808d8Sdrh testcase( iCol!=sqlite3TableColumnToStorage(pTab, iCol) ); 3613b9bcf7caSdrh x = sqlite3TableColumnToIndex(sqlite3PrimaryKeyIndex(pTab), iCol); 361481f7b372Sdrh op = OP_Column; 361581f7b372Sdrh }else{ 3616b9bcf7caSdrh x = sqlite3TableColumnToStorage(pTab,iCol); 3617c5f808d8Sdrh testcase( x!=iCol ); 361881f7b372Sdrh op = OP_Column; 3619ee0ec8e1Sdrh } 3620ee0ec8e1Sdrh sqlite3VdbeAddOp3(v, op, iTabCur, x, regOut); 36215c092e8aSdrh sqlite3ColumnDefault(v, pTab, iCol, regOut); 36225c092e8aSdrh } 36235c092e8aSdrh } 36245c092e8aSdrh 36255c092e8aSdrh /* 3626945498f3Sdrh ** Generate code that will extract the iColumn-th column from 36278c607191Sdrh ** table pTab and store the column value in register iReg. 3628e55cbd72Sdrh ** 3629e55cbd72Sdrh ** There must be an open cursor to pTab in iTable when this routine 3630e55cbd72Sdrh ** is called. If iColumn<0 then code is generated that extracts the rowid. 3631945498f3Sdrh */ 3632e55cbd72Sdrh int sqlite3ExprCodeGetColumn( 3633e55cbd72Sdrh Parse *pParse, /* Parsing and code generating context */ 36342133d822Sdrh Table *pTab, /* Description of the table we are reading from */ 36352133d822Sdrh int iColumn, /* Index of the table column */ 36362133d822Sdrh int iTable, /* The cursor pointing to the table */ 3637a748fdccSdrh int iReg, /* Store results here */ 3638ce78bc6eSdrh u8 p5 /* P5 value for OP_Column + FLAGS */ 36392133d822Sdrh ){ 364081f7b372Sdrh assert( pParse->pVdbe!=0 ); 36416df9c4b9Sdrh sqlite3ExprCodeGetColumnOfTable(pParse->pVdbe, pTab, iTable, iColumn, iReg); 3642a748fdccSdrh if( p5 ){ 364399670abbSdrh VdbeOp *pOp = sqlite3VdbeGetOp(pParse->pVdbe,-1); 364499670abbSdrh if( pOp->opcode==OP_Column ) pOp->p5 = p5; 3645a748fdccSdrh } 3646e55cbd72Sdrh return iReg; 3647e55cbd72Sdrh } 3648e55cbd72Sdrh 3649e55cbd72Sdrh /* 3650b21e7c70Sdrh ** Generate code to move content from registers iFrom...iFrom+nReg-1 365136a5d88dSdrh ** over to iTo..iTo+nReg-1. 3652e55cbd72Sdrh */ 3653b21e7c70Sdrh void sqlite3ExprCodeMove(Parse *pParse, int iFrom, int iTo, int nReg){ 3654079a3072Sdrh sqlite3VdbeAddOp3(pParse->pVdbe, OP_Move, iFrom, iTo, nReg); 3655945498f3Sdrh } 3656945498f3Sdrh 3657652fbf55Sdrh /* 365812abf408Sdrh ** Convert a scalar expression node to a TK_REGISTER referencing 365912abf408Sdrh ** register iReg. The caller must ensure that iReg already contains 366012abf408Sdrh ** the correct value for the expression. 3661a4c3c87eSdrh */ 3662069d1b1fSdan static void exprToRegister(Expr *pExpr, int iReg){ 36630d950af3Sdrh Expr *p = sqlite3ExprSkipCollateAndLikely(pExpr); 3664235667a8Sdrh if( NEVER(p==0) ) return; 3665a4c3c87eSdrh p->op2 = p->op; 3666a4c3c87eSdrh p->op = TK_REGISTER; 3667a4c3c87eSdrh p->iTable = iReg; 3668a4c3c87eSdrh ExprClearProperty(p, EP_Skip); 3669a4c3c87eSdrh } 3670a4c3c87eSdrh 367112abf408Sdrh /* 367212abf408Sdrh ** Evaluate an expression (either a vector or a scalar expression) and store 367312abf408Sdrh ** the result in continguous temporary registers. Return the index of 367412abf408Sdrh ** the first register used to store the result. 367512abf408Sdrh ** 367612abf408Sdrh ** If the returned result register is a temporary scalar, then also write 367712abf408Sdrh ** that register number into *piFreeable. If the returned result register 367812abf408Sdrh ** is not a temporary or if the expression is a vector set *piFreeable 367912abf408Sdrh ** to 0. 368012abf408Sdrh */ 368112abf408Sdrh static int exprCodeVector(Parse *pParse, Expr *p, int *piFreeable){ 368212abf408Sdrh int iResult; 368312abf408Sdrh int nResult = sqlite3ExprVectorSize(p); 368412abf408Sdrh if( nResult==1 ){ 368512abf408Sdrh iResult = sqlite3ExprCodeTemp(pParse, p, piFreeable); 368612abf408Sdrh }else{ 368712abf408Sdrh *piFreeable = 0; 368812abf408Sdrh if( p->op==TK_SELECT ){ 3689dd1bb43aSdrh #if SQLITE_OMIT_SUBQUERY 3690dd1bb43aSdrh iResult = 0; 3691dd1bb43aSdrh #else 369285bcdce2Sdrh iResult = sqlite3CodeSubselect(pParse, p); 3693dd1bb43aSdrh #endif 369412abf408Sdrh }else{ 369512abf408Sdrh int i; 369612abf408Sdrh iResult = pParse->nMem+1; 369712abf408Sdrh pParse->nMem += nResult; 369812abf408Sdrh for(i=0; i<nResult; i++){ 36994b725240Sdan sqlite3ExprCodeFactorable(pParse, p->x.pList->a[i].pExpr, i+iResult); 370012abf408Sdrh } 370112abf408Sdrh } 370212abf408Sdrh } 370312abf408Sdrh return iResult; 370412abf408Sdrh } 370512abf408Sdrh 370625c4296bSdrh /* 370792a27f7bSdrh ** If the last opcode is a OP_Copy, then set the do-not-merge flag (p5) 370892a27f7bSdrh ** so that a subsequent copy will not be merged into this one. 370992a27f7bSdrh */ 371092a27f7bSdrh static void setDoNotMergeFlagOnCopy(Vdbe *v){ 371192a27f7bSdrh if( sqlite3VdbeGetOp(v, -1)->opcode==OP_Copy ){ 371292a27f7bSdrh sqlite3VdbeChangeP5(v, 1); /* Tag trailing OP_Copy as not mergable */ 371392a27f7bSdrh } 371492a27f7bSdrh } 371592a27f7bSdrh 371692a27f7bSdrh /* 371725c4296bSdrh ** Generate code to implement special SQL functions that are implemented 371825c4296bSdrh ** in-line rather than by using the usual callbacks. 371925c4296bSdrh */ 372025c4296bSdrh static int exprCodeInlineFunction( 372125c4296bSdrh Parse *pParse, /* Parsing context */ 372225c4296bSdrh ExprList *pFarg, /* List of function arguments */ 372325c4296bSdrh int iFuncId, /* Function ID. One of the INTFUNC_... values */ 372425c4296bSdrh int target /* Store function result in this register */ 372525c4296bSdrh ){ 372625c4296bSdrh int nFarg; 372725c4296bSdrh Vdbe *v = pParse->pVdbe; 372825c4296bSdrh assert( v!=0 ); 372925c4296bSdrh assert( pFarg!=0 ); 373025c4296bSdrh nFarg = pFarg->nExpr; 373125c4296bSdrh assert( nFarg>0 ); /* All in-line functions have at least one argument */ 373225c4296bSdrh switch( iFuncId ){ 373325c4296bSdrh case INLINEFUNC_coalesce: { 373425c4296bSdrh /* Attempt a direct implementation of the built-in COALESCE() and 373525c4296bSdrh ** IFNULL() functions. This avoids unnecessary evaluation of 373625c4296bSdrh ** arguments past the first non-NULL argument. 373725c4296bSdrh */ 373825c4296bSdrh int endCoalesce = sqlite3VdbeMakeLabel(pParse); 373925c4296bSdrh int i; 374025c4296bSdrh assert( nFarg>=2 ); 374125c4296bSdrh sqlite3ExprCode(pParse, pFarg->a[0].pExpr, target); 374225c4296bSdrh for(i=1; i<nFarg; i++){ 374325c4296bSdrh sqlite3VdbeAddOp2(v, OP_NotNull, target, endCoalesce); 374425c4296bSdrh VdbeCoverage(v); 374525c4296bSdrh sqlite3ExprCode(pParse, pFarg->a[i].pExpr, target); 374625c4296bSdrh } 374792a27f7bSdrh setDoNotMergeFlagOnCopy(v); 374825c4296bSdrh sqlite3VdbeResolveLabel(v, endCoalesce); 374925c4296bSdrh break; 375025c4296bSdrh } 37513c0e606bSdrh case INLINEFUNC_iif: { 37523c0e606bSdrh Expr caseExpr; 37533c0e606bSdrh memset(&caseExpr, 0, sizeof(caseExpr)); 37543c0e606bSdrh caseExpr.op = TK_CASE; 37553c0e606bSdrh caseExpr.x.pList = pFarg; 37563c0e606bSdrh return sqlite3ExprCodeTarget(pParse, &caseExpr, target); 37573c0e606bSdrh } 375825c4296bSdrh 3759171c50ecSdrh default: { 376025c4296bSdrh /* The UNLIKELY() function is a no-op. The result is the value 376125c4296bSdrh ** of the first argument. 376225c4296bSdrh */ 3763171c50ecSdrh assert( nFarg==1 || nFarg==2 ); 376425c4296bSdrh target = sqlite3ExprCodeTarget(pParse, pFarg->a[0].pExpr, target); 376525c4296bSdrh break; 376625c4296bSdrh } 376725c4296bSdrh 3768171c50ecSdrh /*********************************************************************** 3769171c50ecSdrh ** Test-only SQL functions that are only usable if enabled 3770171c50ecSdrh ** via SQLITE_TESTCTRL_INTERNAL_FUNCTIONS 3771171c50ecSdrh */ 3772171c50ecSdrh case INLINEFUNC_expr_compare: { 3773171c50ecSdrh /* Compare two expressions using sqlite3ExprCompare() */ 3774171c50ecSdrh assert( nFarg==2 ); 3775171c50ecSdrh sqlite3VdbeAddOp2(v, OP_Integer, 3776171c50ecSdrh sqlite3ExprCompare(0,pFarg->a[0].pExpr, pFarg->a[1].pExpr,-1), 3777171c50ecSdrh target); 3778171c50ecSdrh break; 3779171c50ecSdrh } 3780171c50ecSdrh 3781171c50ecSdrh case INLINEFUNC_expr_implies_expr: { 3782171c50ecSdrh /* Compare two expressions using sqlite3ExprImpliesExpr() */ 3783171c50ecSdrh assert( nFarg==2 ); 3784171c50ecSdrh sqlite3VdbeAddOp2(v, OP_Integer, 3785171c50ecSdrh sqlite3ExprImpliesExpr(pParse,pFarg->a[0].pExpr, pFarg->a[1].pExpr,-1), 3786171c50ecSdrh target); 3787171c50ecSdrh break; 3788171c50ecSdrh } 3789171c50ecSdrh 3790171c50ecSdrh case INLINEFUNC_implies_nonnull_row: { 3791171c50ecSdrh /* REsult of sqlite3ExprImpliesNonNullRow() */ 3792171c50ecSdrh Expr *pA1; 3793171c50ecSdrh assert( nFarg==2 ); 3794171c50ecSdrh pA1 = pFarg->a[1].pExpr; 3795171c50ecSdrh if( pA1->op==TK_COLUMN ){ 3796171c50ecSdrh sqlite3VdbeAddOp2(v, OP_Integer, 3797171c50ecSdrh sqlite3ExprImpliesNonNullRow(pFarg->a[0].pExpr,pA1->iTable), 3798171c50ecSdrh target); 3799171c50ecSdrh }else{ 3800171c50ecSdrh sqlite3VdbeAddOp2(v, OP_Null, 0, target); 3801171c50ecSdrh } 3802171c50ecSdrh break; 3803171c50ecSdrh } 3804171c50ecSdrh 380525c4296bSdrh #ifdef SQLITE_DEBUG 380625c4296bSdrh case INLINEFUNC_affinity: { 380725c4296bSdrh /* The AFFINITY() function evaluates to a string that describes 380825c4296bSdrh ** the type affinity of the argument. This is used for testing of 380925c4296bSdrh ** the SQLite type logic. 381025c4296bSdrh */ 381125c4296bSdrh const char *azAff[] = { "blob", "text", "numeric", "integer", "real" }; 381225c4296bSdrh char aff; 381325c4296bSdrh assert( nFarg==1 ); 381425c4296bSdrh aff = sqlite3ExprAffinity(pFarg->a[0].pExpr); 381525c4296bSdrh sqlite3VdbeLoadString(v, target, 381625c4296bSdrh (aff<=SQLITE_AFF_NONE) ? "none" : azAff[aff-SQLITE_AFF_BLOB]); 381725c4296bSdrh break; 381825c4296bSdrh } 381925c4296bSdrh #endif 382025c4296bSdrh } 382125c4296bSdrh return target; 382225c4296bSdrh } 382325c4296bSdrh 382471c57db0Sdan 3825a4c3c87eSdrh /* 3826cce7d176Sdrh ** Generate code into the current Vdbe to evaluate the given 38272dcef11bSdrh ** expression. Attempt to store the results in register "target". 38282dcef11bSdrh ** Return the register where results are stored. 3829389a1adbSdrh ** 38308b213899Sdrh ** With this routine, there is no guarantee that results will 38312dcef11bSdrh ** be stored in target. The result might be stored in some other 38322dcef11bSdrh ** register if it is convenient to do so. The calling function 38332dcef11bSdrh ** must check the return code and move the results to the desired 38342dcef11bSdrh ** register. 3835cce7d176Sdrh */ 3836678ccce8Sdrh int sqlite3ExprCodeTarget(Parse *pParse, Expr *pExpr, int target){ 38372dcef11bSdrh Vdbe *v = pParse->pVdbe; /* The VM under construction */ 38382dcef11bSdrh int op; /* The opcode being coded */ 38392dcef11bSdrh int inReg = target; /* Results stored in register inReg */ 38402dcef11bSdrh int regFree1 = 0; /* If non-zero free this temporary register */ 38412dcef11bSdrh int regFree2 = 0; /* If non-zero free this temporary register */ 38427b35a77bSdan int r1, r2; /* Various register numbers */ 384310d1edf0Sdrh Expr tempX; /* Temporary expression node */ 384471c57db0Sdan int p5 = 0; 3845ffe07b2dSdrh 38469cbf3425Sdrh assert( target>0 && target<=pParse->nMem ); 3847b639a209Sdrh assert( v!=0 ); 3848389a1adbSdrh 38491efa8023Sdrh expr_code_doover: 3850389a1adbSdrh if( pExpr==0 ){ 3851389a1adbSdrh op = TK_NULL; 3852389a1adbSdrh }else{ 3853e7375bfaSdrh assert( !ExprHasVVAProperty(pExpr,EP_Immutable) ); 3854f2bc013cSdrh op = pExpr->op; 3855389a1adbSdrh } 3856f2bc013cSdrh switch( op ){ 385713449892Sdrh case TK_AGG_COLUMN: { 385813449892Sdrh AggInfo *pAggInfo = pExpr->pAggInfo; 38590934d640Sdrh struct AggInfo_col *pCol; 38600934d640Sdrh assert( pAggInfo!=0 ); 38610934d640Sdrh assert( pExpr->iAgg>=0 && pExpr->iAgg<pAggInfo->nColumn ); 38620934d640Sdrh pCol = &pAggInfo->aCol[pExpr->iAgg]; 386313449892Sdrh if( !pAggInfo->directMode ){ 38649de221dfSdrh assert( pCol->iMem>0 ); 3865c332cc30Sdrh return pCol->iMem; 386613449892Sdrh }else if( pAggInfo->useSortingIdx ){ 38670c76e892Sdrh Table *pTab = pCol->pTab; 38685134d135Sdan sqlite3VdbeAddOp3(v, OP_Column, pAggInfo->sortingIdxPTab, 3869389a1adbSdrh pCol->iSorterColumn, target); 38708d5cea6bSdrh if( pCol->iColumn<0 ){ 38718d5cea6bSdrh VdbeComment((v,"%s.rowid",pTab->zName)); 38728d5cea6bSdrh }else{ 38738d5cea6bSdrh VdbeComment((v,"%s.%s",pTab->zName,pTab->aCol[pCol->iColumn].zName)); 38748d5cea6bSdrh if( pTab->aCol[pCol->iColumn].affinity==SQLITE_AFF_REAL ){ 38758d5cea6bSdrh sqlite3VdbeAddOp1(v, OP_RealAffinity, target); 38768d5cea6bSdrh } 38770c76e892Sdrh } 3878c332cc30Sdrh return target; 387913449892Sdrh } 388013449892Sdrh /* Otherwise, fall thru into the TK_COLUMN case */ 388108b92086Sdrh /* no break */ deliberate_fall_through 388213449892Sdrh } 3883967e8b73Sdrh case TK_COLUMN: { 3884b2b9d3d7Sdrh int iTab = pExpr->iTable; 388567b9ba17Sdrh int iReg; 3886efad2e23Sdrh if( ExprHasProperty(pExpr, EP_FixedCol) ){ 3887d98f5324Sdrh /* This COLUMN expression is really a constant due to WHERE clause 3888d98f5324Sdrh ** constraints, and that constant is coded by the pExpr->pLeft 3889d98f5324Sdrh ** expresssion. However, make sure the constant has the correct 3890d98f5324Sdrh ** datatype by applying the Affinity of the table column to the 3891d98f5324Sdrh ** constant. 3892d98f5324Sdrh */ 389357f7ece7Sdrh int aff; 389467b9ba17Sdrh iReg = sqlite3ExprCodeTarget(pParse, pExpr->pLeft,target); 389557f7ece7Sdrh if( pExpr->y.pTab ){ 389657f7ece7Sdrh aff = sqlite3TableColumnAffinity(pExpr->y.pTab, pExpr->iColumn); 389757f7ece7Sdrh }else{ 389857f7ece7Sdrh aff = pExpr->affExpr; 389957f7ece7Sdrh } 390096fb16eeSdrh if( aff>SQLITE_AFF_BLOB ){ 3901d98f5324Sdrh static const char zAff[] = "B\000C\000D\000E"; 3902d98f5324Sdrh assert( SQLITE_AFF_BLOB=='A' ); 3903d98f5324Sdrh assert( SQLITE_AFF_TEXT=='B' ); 3904d98f5324Sdrh sqlite3VdbeAddOp4(v, OP_Affinity, iReg, 1, 0, 3905d98f5324Sdrh &zAff[(aff-'B')*2], P4_STATIC); 3906d98f5324Sdrh } 3907d98f5324Sdrh return iReg; 3908efad2e23Sdrh } 3909b2b9d3d7Sdrh if( iTab<0 ){ 39106e97f8ecSdrh if( pParse->iSelfTab<0 ){ 39119942ef0dSdrh /* Other columns in the same row for CHECK constraints or 39129942ef0dSdrh ** generated columns or for inserting into partial index. 39139942ef0dSdrh ** The row is unpacked into registers beginning at 39149942ef0dSdrh ** 0-(pParse->iSelfTab). The rowid (if any) is in a register 39159942ef0dSdrh ** immediately prior to the first column. 39169942ef0dSdrh */ 39179942ef0dSdrh Column *pCol; 39189942ef0dSdrh Table *pTab = pExpr->y.pTab; 39199942ef0dSdrh int iSrc; 3920c5f808d8Sdrh int iCol = pExpr->iColumn; 39219942ef0dSdrh assert( pTab!=0 ); 3922c5f808d8Sdrh assert( iCol>=XN_ROWID ); 3923b0cbcd0eSdrh assert( iCol<pTab->nCol ); 3924c5f808d8Sdrh if( iCol<0 ){ 39259942ef0dSdrh return -1-pParse->iSelfTab; 39269942ef0dSdrh } 3927c5f808d8Sdrh pCol = pTab->aCol + iCol; 3928c5f808d8Sdrh testcase( iCol!=sqlite3TableColumnToStorage(pTab,iCol) ); 3929c5f808d8Sdrh iSrc = sqlite3TableColumnToStorage(pTab, iCol) - pParse->iSelfTab; 39309942ef0dSdrh #ifndef SQLITE_OMIT_GENERATED_COLUMNS 39319942ef0dSdrh if( pCol->colFlags & COLFLAG_GENERATED ){ 39324e8e533bSdrh if( pCol->colFlags & COLFLAG_BUSY ){ 39334e8e533bSdrh sqlite3ErrorMsg(pParse, "generated column loop on \"%s\"", 39344e8e533bSdrh pCol->zName); 39354e8e533bSdrh return 0; 39364e8e533bSdrh } 39374e8e533bSdrh pCol->colFlags |= COLFLAG_BUSY; 39384e8e533bSdrh if( pCol->colFlags & COLFLAG_NOTAVAIL ){ 3939e70fa7feSdrh sqlite3ExprCodeGeneratedColumn(pParse, pCol, iSrc); 39404e8e533bSdrh } 39414e8e533bSdrh pCol->colFlags &= ~(COLFLAG_BUSY|COLFLAG_NOTAVAIL); 3942dd6cc9b5Sdrh return iSrc; 39439942ef0dSdrh }else 39449942ef0dSdrh #endif /* SQLITE_OMIT_GENERATED_COLUMNS */ 39459942ef0dSdrh if( pCol->affinity==SQLITE_AFF_REAL ){ 39469942ef0dSdrh sqlite3VdbeAddOp2(v, OP_SCopy, iSrc, target); 3947bffdd636Sdrh sqlite3VdbeAddOp1(v, OP_RealAffinity, target); 3948bffdd636Sdrh return target; 3949bffdd636Sdrh }else{ 39509942ef0dSdrh return iSrc; 3951bffdd636Sdrh } 3952c4a3c779Sdrh }else{ 39531f9ca2c8Sdrh /* Coding an expression that is part of an index where column names 39541f9ca2c8Sdrh ** in the index refer to the table to which the index belongs */ 39553e34eabcSdrh iTab = pParse->iSelfTab - 1; 39562282792aSdrh } 3957b2b9d3d7Sdrh } 395867b9ba17Sdrh iReg = sqlite3ExprCodeGetColumn(pParse, pExpr->y.pTab, 3959b2b9d3d7Sdrh pExpr->iColumn, iTab, target, 3960b2b9d3d7Sdrh pExpr->op2); 396167b9ba17Sdrh if( pExpr->y.pTab==0 && pExpr->affExpr==SQLITE_AFF_REAL ){ 396267b9ba17Sdrh sqlite3VdbeAddOp1(v, OP_RealAffinity, iReg); 396367b9ba17Sdrh } 396467b9ba17Sdrh return iReg; 3965cce7d176Sdrh } 3966cce7d176Sdrh case TK_INTEGER: { 396713573c71Sdrh codeInteger(pParse, pExpr, 0, target); 3968c332cc30Sdrh return target; 396951e9a445Sdrh } 39708abed7b9Sdrh case TK_TRUEFALSE: { 397196acafbeSdrh sqlite3VdbeAddOp2(v, OP_Integer, sqlite3ExprTruthValue(pExpr), target); 3972007c843bSdrh return target; 3973007c843bSdrh } 397413573c71Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT 3975598f1340Sdrh case TK_FLOAT: { 397633e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 397733e619fcSdrh codeReal(v, pExpr->u.zToken, 0, target); 3978c332cc30Sdrh return target; 3979598f1340Sdrh } 398013573c71Sdrh #endif 3981fec19aadSdrh case TK_STRING: { 398233e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 3983076e85f5Sdrh sqlite3VdbeLoadString(v, target, pExpr->u.zToken); 3984c332cc30Sdrh return target; 3985cce7d176Sdrh } 3986aac30f9bSdrh default: { 3987c29af653Sdrh /* Make NULL the default case so that if a bug causes an illegal 3988c29af653Sdrh ** Expr node to be passed into this function, it will be handled 39899524a7eaSdrh ** sanely and not crash. But keep the assert() to bring the problem 39909524a7eaSdrh ** to the attention of the developers. */ 39919524a7eaSdrh assert( op==TK_NULL ); 39929de221dfSdrh sqlite3VdbeAddOp2(v, OP_Null, 0, target); 3993c332cc30Sdrh return target; 3994f0863fe5Sdrh } 39955338a5f7Sdanielk1977 #ifndef SQLITE_OMIT_BLOB_LITERAL 3996c572ef7fSdanielk1977 case TK_BLOB: { 39976c8c6cecSdrh int n; 39986c8c6cecSdrh const char *z; 3999ca48c90fSdrh char *zBlob; 400033e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 400133e619fcSdrh assert( pExpr->u.zToken[0]=='x' || pExpr->u.zToken[0]=='X' ); 400233e619fcSdrh assert( pExpr->u.zToken[1]=='\'' ); 400333e619fcSdrh z = &pExpr->u.zToken[2]; 4004b7916a78Sdrh n = sqlite3Strlen30(z) - 1; 4005b7916a78Sdrh assert( z[n]=='\'' ); 4006ca48c90fSdrh zBlob = sqlite3HexToBlob(sqlite3VdbeDb(v), z, n); 4007ca48c90fSdrh sqlite3VdbeAddOp4(v, OP_Blob, n/2, target, 0, zBlob, P4_DYNAMIC); 4008c332cc30Sdrh return target; 4009c572ef7fSdanielk1977 } 40105338a5f7Sdanielk1977 #endif 401150457896Sdrh case TK_VARIABLE: { 401233e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 401333e619fcSdrh assert( pExpr->u.zToken!=0 ); 401433e619fcSdrh assert( pExpr->u.zToken[0]!=0 ); 4015eaf52d88Sdrh sqlite3VdbeAddOp2(v, OP_Variable, pExpr->iColumn, target); 401633e619fcSdrh if( pExpr->u.zToken[1]!=0 ){ 40179bf755ccSdrh const char *z = sqlite3VListNumToName(pParse->pVList, pExpr->iColumn); 40189524a7eaSdrh assert( pExpr->u.zToken[0]=='?' || (z && !strcmp(pExpr->u.zToken, z)) ); 4019ce1bbe51Sdrh pParse->pVList[0] = 0; /* Indicate VList may no longer be enlarged */ 40209bf755ccSdrh sqlite3VdbeAppendP4(v, (char*)z, P4_STATIC); 40219bf755ccSdrh } 4022c332cc30Sdrh return target; 402350457896Sdrh } 40244e0cff60Sdrh case TK_REGISTER: { 4025c332cc30Sdrh return pExpr->iTable; 40264e0cff60Sdrh } 4027487e262fSdrh #ifndef SQLITE_OMIT_CAST 4028487e262fSdrh case TK_CAST: { 4029487e262fSdrh /* Expressions of the form: CAST(pLeft AS token) */ 40302dcef11bSdrh inReg = sqlite3ExprCodeTarget(pParse, pExpr->pLeft, target); 40311735fa88Sdrh if( inReg!=target ){ 40321735fa88Sdrh sqlite3VdbeAddOp2(v, OP_SCopy, inReg, target); 40331735fa88Sdrh inReg = target; 40341735fa88Sdrh } 40354169e430Sdrh sqlite3VdbeAddOp2(v, OP_Cast, target, 40364169e430Sdrh sqlite3AffinityType(pExpr->u.zToken, 0)); 4037c332cc30Sdrh return inReg; 4038487e262fSdrh } 4039487e262fSdrh #endif /* SQLITE_OMIT_CAST */ 404071c57db0Sdan case TK_IS: 404171c57db0Sdan case TK_ISNOT: 404271c57db0Sdan op = (op==TK_IS) ? TK_EQ : TK_NE; 404371c57db0Sdan p5 = SQLITE_NULLEQ; 404471c57db0Sdan /* fall-through */ 4045c9b84a1fSdrh case TK_LT: 4046c9b84a1fSdrh case TK_LE: 4047c9b84a1fSdrh case TK_GT: 4048c9b84a1fSdrh case TK_GE: 4049c9b84a1fSdrh case TK_NE: 4050c9b84a1fSdrh case TK_EQ: { 405171c57db0Sdan Expr *pLeft = pExpr->pLeft; 4052625015e0Sdan if( sqlite3ExprIsVector(pLeft) ){ 405379752b6eSdrh codeVectorCompare(pParse, pExpr, target, op, p5); 405471c57db0Sdan }else{ 405571c57db0Sdan r1 = sqlite3ExprCodeTemp(pParse, pLeft, ®Free1); 4056b6da74ebSdrh r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, ®Free2); 4057*871e7ff4Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 1, inReg); 4058*871e7ff4Sdrh codeCompare(pParse, pLeft, pExpr->pRight, op, r1, r2, 4059*871e7ff4Sdrh sqlite3VdbeCurrentAddr(v)+2, p5, 4060898c527eSdrh ExprHasProperty(pExpr,EP_Commuted)); 4061*871e7ff4Sdrh if( p5==SQLITE_NULLEQ ){ 4062*871e7ff4Sdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, inReg); 4063*871e7ff4Sdrh }else{ 4064*871e7ff4Sdrh sqlite3VdbeAddOp3(v, OP_ZeroOrNull, r1, inReg, r2); 4065*871e7ff4Sdrh } 40667d176105Sdrh assert(TK_LT==OP_Lt); testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt); 40677d176105Sdrh assert(TK_LE==OP_Le); testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le); 40687d176105Sdrh assert(TK_GT==OP_Gt); testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt); 40697d176105Sdrh assert(TK_GE==OP_Ge); testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge); 40707d176105Sdrh assert(TK_EQ==OP_Eq); testcase(op==OP_Eq); VdbeCoverageIf(v,op==OP_Eq); 40717d176105Sdrh assert(TK_NE==OP_Ne); testcase(op==OP_Ne); VdbeCoverageIf(v,op==OP_Ne); 4072c5499befSdrh testcase( regFree1==0 ); 4073c5499befSdrh testcase( regFree2==0 ); 4074c9b84a1fSdrh } 40756a2fe093Sdrh break; 40766a2fe093Sdrh } 4077cce7d176Sdrh case TK_AND: 4078cce7d176Sdrh case TK_OR: 4079cce7d176Sdrh case TK_PLUS: 4080cce7d176Sdrh case TK_STAR: 4081cce7d176Sdrh case TK_MINUS: 4082bf4133cbSdrh case TK_REM: 4083bf4133cbSdrh case TK_BITAND: 4084bf4133cbSdrh case TK_BITOR: 408517c40294Sdrh case TK_SLASH: 4086bf4133cbSdrh case TK_LSHIFT: 4087855eb1cfSdrh case TK_RSHIFT: 40880040077dSdrh case TK_CONCAT: { 40897d176105Sdrh assert( TK_AND==OP_And ); testcase( op==TK_AND ); 40907d176105Sdrh assert( TK_OR==OP_Or ); testcase( op==TK_OR ); 40917d176105Sdrh assert( TK_PLUS==OP_Add ); testcase( op==TK_PLUS ); 40927d176105Sdrh assert( TK_MINUS==OP_Subtract ); testcase( op==TK_MINUS ); 40937d176105Sdrh assert( TK_REM==OP_Remainder ); testcase( op==TK_REM ); 40947d176105Sdrh assert( TK_BITAND==OP_BitAnd ); testcase( op==TK_BITAND ); 40957d176105Sdrh assert( TK_BITOR==OP_BitOr ); testcase( op==TK_BITOR ); 40967d176105Sdrh assert( TK_SLASH==OP_Divide ); testcase( op==TK_SLASH ); 40977d176105Sdrh assert( TK_LSHIFT==OP_ShiftLeft ); testcase( op==TK_LSHIFT ); 40987d176105Sdrh assert( TK_RSHIFT==OP_ShiftRight ); testcase( op==TK_RSHIFT ); 40997d176105Sdrh assert( TK_CONCAT==OP_Concat ); testcase( op==TK_CONCAT ); 41002dcef11bSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 41012dcef11bSdrh r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, ®Free2); 41025b6afba9Sdrh sqlite3VdbeAddOp3(v, op, r2, r1, target); 4103c5499befSdrh testcase( regFree1==0 ); 4104c5499befSdrh testcase( regFree2==0 ); 41050040077dSdrh break; 41060040077dSdrh } 4107cce7d176Sdrh case TK_UMINUS: { 4108fec19aadSdrh Expr *pLeft = pExpr->pLeft; 4109fec19aadSdrh assert( pLeft ); 411013573c71Sdrh if( pLeft->op==TK_INTEGER ){ 411113573c71Sdrh codeInteger(pParse, pLeft, 1, target); 4112c332cc30Sdrh return target; 411313573c71Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT 411413573c71Sdrh }else if( pLeft->op==TK_FLOAT ){ 411533e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 411633e619fcSdrh codeReal(v, pLeft->u.zToken, 1, target); 4117c332cc30Sdrh return target; 411813573c71Sdrh #endif 41193c84ddffSdrh }else{ 412010d1edf0Sdrh tempX.op = TK_INTEGER; 412110d1edf0Sdrh tempX.flags = EP_IntValue|EP_TokenOnly; 412210d1edf0Sdrh tempX.u.iValue = 0; 4123e7375bfaSdrh ExprClearVVAProperties(&tempX); 412410d1edf0Sdrh r1 = sqlite3ExprCodeTemp(pParse, &tempX, ®Free1); 4125e55cbd72Sdrh r2 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free2); 41262dcef11bSdrh sqlite3VdbeAddOp3(v, OP_Subtract, r2, r1, target); 4127c5499befSdrh testcase( regFree2==0 ); 41283c84ddffSdrh } 41296e142f54Sdrh break; 41306e142f54Sdrh } 4131bf4133cbSdrh case TK_BITNOT: 41326e142f54Sdrh case TK_NOT: { 41337d176105Sdrh assert( TK_BITNOT==OP_BitNot ); testcase( op==TK_BITNOT ); 41347d176105Sdrh assert( TK_NOT==OP_Not ); testcase( op==TK_NOT ); 4135e99fa2afSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 4136e99fa2afSdrh testcase( regFree1==0 ); 4137e99fa2afSdrh sqlite3VdbeAddOp2(v, op, r1, inReg); 4138cce7d176Sdrh break; 4139cce7d176Sdrh } 41408abed7b9Sdrh case TK_TRUTH: { 414196acafbeSdrh int isTrue; /* IS TRUE or IS NOT TRUE */ 414296acafbeSdrh int bNormal; /* IS TRUE or IS FALSE */ 4143007c843bSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 4144007c843bSdrh testcase( regFree1==0 ); 414596acafbeSdrh isTrue = sqlite3ExprTruthValue(pExpr->pRight); 414696acafbeSdrh bNormal = pExpr->op2==TK_IS; 414796acafbeSdrh testcase( isTrue && bNormal); 414896acafbeSdrh testcase( !isTrue && bNormal); 414996acafbeSdrh sqlite3VdbeAddOp4Int(v, OP_IsTrue, r1, inReg, !isTrue, isTrue ^ bNormal); 4150007c843bSdrh break; 4151007c843bSdrh } 4152cce7d176Sdrh case TK_ISNULL: 4153cce7d176Sdrh case TK_NOTNULL: { 41546a288a33Sdrh int addr; 41557d176105Sdrh assert( TK_ISNULL==OP_IsNull ); testcase( op==TK_ISNULL ); 41567d176105Sdrh assert( TK_NOTNULL==OP_NotNull ); testcase( op==TK_NOTNULL ); 41579de221dfSdrh sqlite3VdbeAddOp2(v, OP_Integer, 1, target); 41582dcef11bSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 4159c5499befSdrh testcase( regFree1==0 ); 41602dcef11bSdrh addr = sqlite3VdbeAddOp1(v, op, r1); 41617d176105Sdrh VdbeCoverageIf(v, op==TK_ISNULL); 41627d176105Sdrh VdbeCoverageIf(v, op==TK_NOTNULL); 4163a976979bSdrh sqlite3VdbeAddOp2(v, OP_Integer, 0, target); 41646a288a33Sdrh sqlite3VdbeJumpHere(v, addr); 4165a37cdde0Sdanielk1977 break; 4166f2bc013cSdrh } 41672282792aSdrh case TK_AGG_FUNCTION: { 416813449892Sdrh AggInfo *pInfo = pExpr->pAggInfo; 41690934d640Sdrh if( pInfo==0 41700934d640Sdrh || NEVER(pExpr->iAgg<0) 41710934d640Sdrh || NEVER(pExpr->iAgg>=pInfo->nFunc) 41720934d640Sdrh ){ 417333e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 417433e619fcSdrh sqlite3ErrorMsg(pParse, "misuse of aggregate: %s()", pExpr->u.zToken); 41757e56e711Sdrh }else{ 4176c332cc30Sdrh return pInfo->aFunc[pExpr->iAgg].iMem; 41777e56e711Sdrh } 41782282792aSdrh break; 41792282792aSdrh } 4180cce7d176Sdrh case TK_FUNCTION: { 418112ffee8cSdrh ExprList *pFarg; /* List of function arguments */ 418212ffee8cSdrh int nFarg; /* Number of function arguments */ 418312ffee8cSdrh FuncDef *pDef; /* The function definition object */ 418412ffee8cSdrh const char *zId; /* The function name */ 4185693e6719Sdrh u32 constMask = 0; /* Mask of function arguments that are constant */ 418612ffee8cSdrh int i; /* Loop counter */ 4187c332cc30Sdrh sqlite3 *db = pParse->db; /* The database connection */ 418812ffee8cSdrh u8 enc = ENC(db); /* The text encoding used by this database */ 418912ffee8cSdrh CollSeq *pColl = 0; /* A collating sequence */ 419017435752Sdrh 419167a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC 4192eda079cdSdrh if( ExprHasProperty(pExpr, EP_WinFunc) ){ 4193eda079cdSdrh return pExpr->y.pWin->regResult; 419486fb6e17Sdan } 419567a9b8edSdan #endif 419686fb6e17Sdan 41971e9b53f9Sdrh if( ConstFactorOk(pParse) && sqlite3ExprIsConstantNotJoin(pExpr) ){ 41989b258c54Sdrh /* SQL functions can be expensive. So try to avoid running them 41999b258c54Sdrh ** multiple times if we know they always give the same result */ 42009b258c54Sdrh return sqlite3ExprCodeRunJustOnce(pParse, pExpr, -1); 42011e9b53f9Sdrh } 42026ab3a2ecSdanielk1977 assert( !ExprHasProperty(pExpr, EP_xIsSelect) ); 4203e7375bfaSdrh assert( !ExprHasProperty(pExpr, EP_TokenOnly) ); 420412ffee8cSdrh pFarg = pExpr->x.pList; 420512ffee8cSdrh nFarg = pFarg ? pFarg->nExpr : 0; 420633e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 420733e619fcSdrh zId = pExpr->u.zToken; 420880738d9cSdrh pDef = sqlite3FindFunction(db, zId, nFarg, enc, 0); 4209cc15313cSdrh #ifdef SQLITE_ENABLE_UNKNOWN_SQL_FUNCTION 4210cc15313cSdrh if( pDef==0 && pParse->explain ){ 4211cc15313cSdrh pDef = sqlite3FindFunction(db, "unknown", nFarg, enc, 0); 4212cc15313cSdrh } 4213cc15313cSdrh #endif 4214b6e9f7a4Sdan if( pDef==0 || pDef->xFinalize!=0 ){ 421580738d9cSdrh sqlite3ErrorMsg(pParse, "unknown function: %s()", zId); 4216feb306f5Sdrh break; 4217feb306f5Sdrh } 421825c4296bSdrh if( pDef->funcFlags & SQLITE_FUNC_INLINE ){ 42190dfa5255Sdrh assert( (pDef->funcFlags & SQLITE_FUNC_UNSAFE)==0 ); 42200dfa5255Sdrh assert( (pDef->funcFlags & SQLITE_FUNC_DIRECT)==0 ); 422125c4296bSdrh return exprCodeInlineFunction(pParse, pFarg, 422225c4296bSdrh SQLITE_PTR_TO_INT(pDef->pUserData), target); 42232eeca204Sdrh }else if( pDef->funcFlags & (SQLITE_FUNC_DIRECT|SQLITE_FUNC_UNSAFE) ){ 42240dfa5255Sdrh sqlite3ExprFunctionUsable(pParse, pExpr, pDef); 4225ae6bb957Sdrh } 4226a1a523a5Sdrh 4227d1a01edaSdrh for(i=0; i<nFarg; i++){ 4228d1a01edaSdrh if( i<32 && sqlite3ExprIsConstant(pFarg->a[i].pExpr) ){ 4229693e6719Sdrh testcase( i==31 ); 4230693e6719Sdrh constMask |= MASKBIT32(i); 4231d1a01edaSdrh } 4232d1a01edaSdrh if( (pDef->funcFlags & SQLITE_FUNC_NEEDCOLL)!=0 && !pColl ){ 4233d1a01edaSdrh pColl = sqlite3ExprCollSeq(pParse, pFarg->a[i].pExpr); 4234d1a01edaSdrh } 4235d1a01edaSdrh } 423612ffee8cSdrh if( pFarg ){ 4237d1a01edaSdrh if( constMask ){ 4238d1a01edaSdrh r1 = pParse->nMem+1; 4239d1a01edaSdrh pParse->nMem += nFarg; 4240d1a01edaSdrh }else{ 424112ffee8cSdrh r1 = sqlite3GetTempRange(pParse, nFarg); 4242d1a01edaSdrh } 4243a748fdccSdrh 4244a748fdccSdrh /* For length() and typeof() functions with a column argument, 4245a748fdccSdrh ** set the P5 parameter to the OP_Column opcode to OPFLAG_LENGTHARG 4246a748fdccSdrh ** or OPFLAG_TYPEOFARG respectively, to avoid unnecessary data 4247a748fdccSdrh ** loading. 4248a748fdccSdrh */ 4249d36e1041Sdrh if( (pDef->funcFlags & (SQLITE_FUNC_LENGTH|SQLITE_FUNC_TYPEOF))!=0 ){ 42504e245a4cSdrh u8 exprOp; 4251a748fdccSdrh assert( nFarg==1 ); 4252a748fdccSdrh assert( pFarg->a[0].pExpr!=0 ); 42534e245a4cSdrh exprOp = pFarg->a[0].pExpr->op; 42544e245a4cSdrh if( exprOp==TK_COLUMN || exprOp==TK_AGG_COLUMN ){ 4255a748fdccSdrh assert( SQLITE_FUNC_LENGTH==OPFLAG_LENGTHARG ); 4256a748fdccSdrh assert( SQLITE_FUNC_TYPEOF==OPFLAG_TYPEOFARG ); 4257b1fba286Sdrh testcase( pDef->funcFlags & OPFLAG_LENGTHARG ); 4258b1fba286Sdrh pFarg->a[0].pExpr->op2 = 4259b1fba286Sdrh pDef->funcFlags & (OPFLAG_LENGTHARG|OPFLAG_TYPEOFARG); 4260a748fdccSdrh } 4261a748fdccSdrh } 4262a748fdccSdrh 42635579d59fSdrh sqlite3ExprCodeExprList(pParse, pFarg, r1, 0, 4264d1a01edaSdrh SQLITE_ECEL_DUP|SQLITE_ECEL_FACTOR); 4265892d3179Sdrh }else{ 426612ffee8cSdrh r1 = 0; 4267892d3179Sdrh } 4268b7f6f68fSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE 4269a43fa227Sdrh /* Possibly overload the function if the first argument is 4270a43fa227Sdrh ** a virtual table column. 4271a43fa227Sdrh ** 4272a43fa227Sdrh ** For infix functions (LIKE, GLOB, REGEXP, and MATCH) use the 4273a43fa227Sdrh ** second argument, not the first, as the argument to test to 4274a43fa227Sdrh ** see if it is a column in a virtual table. This is done because 4275a43fa227Sdrh ** the left operand of infix functions (the operand we want to 4276a43fa227Sdrh ** control overloading) ends up as the second argument to the 4277a43fa227Sdrh ** function. The expression "A glob B" is equivalent to 4278a43fa227Sdrh ** "glob(B,A). We want to use the A in "A glob B" to test 4279a43fa227Sdrh ** for function overloading. But we use the B term in "glob(B,A)". 4280a43fa227Sdrh */ 428159155065Sdrh if( nFarg>=2 && ExprHasProperty(pExpr, EP_InfixFunc) ){ 428212ffee8cSdrh pDef = sqlite3VtabOverloadFunction(db, pDef, nFarg, pFarg->a[1].pExpr); 428312ffee8cSdrh }else if( nFarg>0 ){ 428412ffee8cSdrh pDef = sqlite3VtabOverloadFunction(db, pDef, nFarg, pFarg->a[0].pExpr); 4285b7f6f68fSdrh } 4286b7f6f68fSdrh #endif 4287d36e1041Sdrh if( pDef->funcFlags & SQLITE_FUNC_NEEDCOLL ){ 42888b213899Sdrh if( !pColl ) pColl = db->pDfltColl; 428966a5167bSdrh sqlite3VdbeAddOp4(v, OP_CollSeq, 0, 0, 0, (char *)pColl, P4_COLLSEQ); 4290682f68b0Sdanielk1977 } 4291092457b1Sdrh #ifdef SQLITE_ENABLE_OFFSET_SQL_FUNC 4292092457b1Sdrh if( pDef->funcFlags & SQLITE_FUNC_OFFSET ){ 42932fc865c1Sdrh Expr *pArg = pFarg->a[0].pExpr; 42942fc865c1Sdrh if( pArg->op==TK_COLUMN ){ 4295092457b1Sdrh sqlite3VdbeAddOp3(v, OP_Offset, pArg->iTable, pArg->iColumn, target); 42962fc865c1Sdrh }else{ 42972fc865c1Sdrh sqlite3VdbeAddOp2(v, OP_Null, 0, target); 42982fc865c1Sdrh } 4299092457b1Sdrh }else 4300092457b1Sdrh #endif 4301092457b1Sdrh { 4302920cf596Sdrh sqlite3VdbeAddFunctionCall(pParse, constMask, r1, target, nFarg, 430320cee7d0Sdrh pDef, pExpr->op2); 43042fc865c1Sdrh } 430513d79502Sdrh if( nFarg ){ 430613d79502Sdrh if( constMask==0 ){ 430712ffee8cSdrh sqlite3ReleaseTempRange(pParse, r1, nFarg); 430813d79502Sdrh }else{ 43093aef2fb1Sdrh sqlite3VdbeReleaseRegisters(pParse, r1, nFarg, constMask, 1); 431013d79502Sdrh } 43112dcef11bSdrh } 4312c332cc30Sdrh return target; 43136ec2733bSdrh } 4314fe2093d7Sdrh #ifndef SQLITE_OMIT_SUBQUERY 4315fe2093d7Sdrh case TK_EXISTS: 431619a775c2Sdrh case TK_SELECT: { 43178da209b1Sdan int nCol; 4318c5499befSdrh testcase( op==TK_EXISTS ); 4319c5499befSdrh testcase( op==TK_SELECT ); 4320d8d335d7Sdrh if( pParse->db->mallocFailed ){ 4321d8d335d7Sdrh return 0; 4322d8d335d7Sdrh }else if( op==TK_SELECT && (nCol = pExpr->x.pSelect->pEList->nExpr)!=1 ){ 43238da209b1Sdan sqlite3SubselectError(pParse, nCol, 1); 43248da209b1Sdan }else{ 432585bcdce2Sdrh return sqlite3CodeSubselect(pParse, pExpr); 43268da209b1Sdan } 432719a775c2Sdrh break; 432819a775c2Sdrh } 4329fc7f27b9Sdrh case TK_SELECT_COLUMN: { 4330966e2911Sdrh int n; 4331fc7f27b9Sdrh if( pExpr->pLeft->iTable==0 ){ 433285bcdce2Sdrh pExpr->pLeft->iTable = sqlite3CodeSubselect(pParse, pExpr->pLeft); 4333fc7f27b9Sdrh } 4334966e2911Sdrh assert( pExpr->iTable==0 || pExpr->pLeft->op==TK_SELECT ); 4335554a9dc7Sdrh if( pExpr->iTable!=0 4336966e2911Sdrh && pExpr->iTable!=(n = sqlite3ExprVectorSize(pExpr->pLeft)) 4337966e2911Sdrh ){ 4338966e2911Sdrh sqlite3ErrorMsg(pParse, "%d columns assigned %d values", 4339966e2911Sdrh pExpr->iTable, n); 4340966e2911Sdrh } 4341c332cc30Sdrh return pExpr->pLeft->iTable + pExpr->iColumn; 4342fc7f27b9Sdrh } 4343fef5208cSdrh case TK_IN: { 4344ec4ccdbcSdrh int destIfFalse = sqlite3VdbeMakeLabel(pParse); 4345ec4ccdbcSdrh int destIfNull = sqlite3VdbeMakeLabel(pParse); 4346e3365e6cSdrh sqlite3VdbeAddOp2(v, OP_Null, 0, target); 4347e3365e6cSdrh sqlite3ExprCodeIN(pParse, pExpr, destIfFalse, destIfNull); 434866ba23ceSdrh sqlite3VdbeAddOp2(v, OP_Integer, 1, target); 4349e3365e6cSdrh sqlite3VdbeResolveLabel(v, destIfFalse); 4350e3365e6cSdrh sqlite3VdbeAddOp2(v, OP_AddImm, target, 0); 4351e3365e6cSdrh sqlite3VdbeResolveLabel(v, destIfNull); 4352c332cc30Sdrh return target; 4353fef5208cSdrh } 4354e3365e6cSdrh #endif /* SQLITE_OMIT_SUBQUERY */ 4355e3365e6cSdrh 4356e3365e6cSdrh 43572dcef11bSdrh /* 43582dcef11bSdrh ** x BETWEEN y AND z 43592dcef11bSdrh ** 43602dcef11bSdrh ** This is equivalent to 43612dcef11bSdrh ** 43622dcef11bSdrh ** x>=y AND x<=z 43632dcef11bSdrh ** 43642dcef11bSdrh ** X is stored in pExpr->pLeft. 43652dcef11bSdrh ** Y is stored in pExpr->pList->a[0].pExpr. 43662dcef11bSdrh ** Z is stored in pExpr->pList->a[1].pExpr. 43672dcef11bSdrh */ 4368fef5208cSdrh case TK_BETWEEN: { 436971c57db0Sdan exprCodeBetween(pParse, pExpr, target, 0, 0); 4370c332cc30Sdrh return target; 4371fef5208cSdrh } 437294fa9c41Sdrh case TK_SPAN: 4373ae80ddeaSdrh case TK_COLLATE: 43744f07e5fbSdrh case TK_UPLUS: { 43751efa8023Sdrh pExpr = pExpr->pLeft; 437659ee43a7Sdrh goto expr_code_doover; /* 2018-04-28: Prevent deep recursion. OSSFuzz. */ 4377a2e00042Sdrh } 43782dcef11bSdrh 4379165921a7Sdan case TK_TRIGGER: { 438065a7cd16Sdan /* If the opcode is TK_TRIGGER, then the expression is a reference 438165a7cd16Sdan ** to a column in the new.* or old.* pseudo-tables available to 438265a7cd16Sdan ** trigger programs. In this case Expr.iTable is set to 1 for the 438365a7cd16Sdan ** new.* pseudo-table, or 0 for the old.* pseudo-table. Expr.iColumn 438465a7cd16Sdan ** is set to the column of the pseudo-table to read, or to -1 to 438565a7cd16Sdan ** read the rowid field. 438665a7cd16Sdan ** 438765a7cd16Sdan ** The expression is implemented using an OP_Param opcode. The p1 438865a7cd16Sdan ** parameter is set to 0 for an old.rowid reference, or to (i+1) 438965a7cd16Sdan ** to reference another column of the old.* pseudo-table, where 439065a7cd16Sdan ** i is the index of the column. For a new.rowid reference, p1 is 439165a7cd16Sdan ** set to (n+1), where n is the number of columns in each pseudo-table. 439265a7cd16Sdan ** For a reference to any other column in the new.* pseudo-table, p1 439365a7cd16Sdan ** is set to (n+2+i), where n and i are as defined previously. For 439465a7cd16Sdan ** example, if the table on which triggers are being fired is 439565a7cd16Sdan ** declared as: 439665a7cd16Sdan ** 439765a7cd16Sdan ** CREATE TABLE t1(a, b); 439865a7cd16Sdan ** 439965a7cd16Sdan ** Then p1 is interpreted as follows: 440065a7cd16Sdan ** 440165a7cd16Sdan ** p1==0 -> old.rowid p1==3 -> new.rowid 440265a7cd16Sdan ** p1==1 -> old.a p1==4 -> new.a 440365a7cd16Sdan ** p1==2 -> old.b p1==5 -> new.b 440465a7cd16Sdan */ 4405eda079cdSdrh Table *pTab = pExpr->y.pTab; 4406dd6cc9b5Sdrh int iCol = pExpr->iColumn; 4407dd6cc9b5Sdrh int p1 = pExpr->iTable * (pTab->nCol+1) + 1 44087fe2fc0dSdrh + sqlite3TableColumnToStorage(pTab, iCol); 440965a7cd16Sdan 441065a7cd16Sdan assert( pExpr->iTable==0 || pExpr->iTable==1 ); 4411dd6cc9b5Sdrh assert( iCol>=-1 && iCol<pTab->nCol ); 4412dd6cc9b5Sdrh assert( pTab->iPKey<0 || iCol!=pTab->iPKey ); 441365a7cd16Sdan assert( p1>=0 && p1<(pTab->nCol*2+2) ); 441465a7cd16Sdan 441565a7cd16Sdan sqlite3VdbeAddOp2(v, OP_Param, p1, target); 4416896494e8Sdrh VdbeComment((v, "r[%d]=%s.%s", target, 4417165921a7Sdan (pExpr->iTable ? "new" : "old"), 4418dd6cc9b5Sdrh (pExpr->iColumn<0 ? "rowid" : pExpr->y.pTab->aCol[iCol].zName) 4419165921a7Sdan )); 442065a7cd16Sdan 442144dbca83Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT 442265a7cd16Sdan /* If the column has REAL affinity, it may currently be stored as an 4423113762a2Sdrh ** integer. Use OP_RealAffinity to make sure it is really real. 4424113762a2Sdrh ** 4425113762a2Sdrh ** EVIDENCE-OF: R-60985-57662 SQLite will convert the value back to 4426113762a2Sdrh ** floating point when extracting it from the record. */ 4427dd6cc9b5Sdrh if( iCol>=0 && pTab->aCol[iCol].affinity==SQLITE_AFF_REAL ){ 44282832ad42Sdan sqlite3VdbeAddOp1(v, OP_RealAffinity, target); 44292832ad42Sdan } 443044dbca83Sdrh #endif 4431165921a7Sdan break; 4432165921a7Sdan } 4433165921a7Sdan 443471c57db0Sdan case TK_VECTOR: { 4435e835bc12Sdrh sqlite3ErrorMsg(pParse, "row value misused"); 443671c57db0Sdan break; 443771c57db0Sdan } 443871c57db0Sdan 44399e9a67adSdrh /* TK_IF_NULL_ROW Expr nodes are inserted ahead of expressions 44409e9a67adSdrh ** that derive from the right-hand table of a LEFT JOIN. The 44419e9a67adSdrh ** Expr.iTable value is the table number for the right-hand table. 44429e9a67adSdrh ** The expression is only evaluated if that table is not currently 44439e9a67adSdrh ** on a LEFT JOIN NULL row. 44449e9a67adSdrh */ 444531d6fd55Sdrh case TK_IF_NULL_ROW: { 444631d6fd55Sdrh int addrINR; 44479e9a67adSdrh u8 okConstFactor = pParse->okConstFactor; 444831d6fd55Sdrh addrINR = sqlite3VdbeAddOp1(v, OP_IfNullRow, pExpr->iTable); 44499e9a67adSdrh /* Temporarily disable factoring of constant expressions, since 44509e9a67adSdrh ** even though expressions may appear to be constant, they are not 44519e9a67adSdrh ** really constant because they originate from the right-hand side 44529e9a67adSdrh ** of a LEFT JOIN. */ 44539e9a67adSdrh pParse->okConstFactor = 0; 445431d6fd55Sdrh inReg = sqlite3ExprCodeTarget(pParse, pExpr->pLeft, target); 44559e9a67adSdrh pParse->okConstFactor = okConstFactor; 445631d6fd55Sdrh sqlite3VdbeJumpHere(v, addrINR); 445731d6fd55Sdrh sqlite3VdbeChangeP3(v, addrINR, inReg); 445831d6fd55Sdrh break; 445931d6fd55Sdrh } 446031d6fd55Sdrh 44612dcef11bSdrh /* 44622dcef11bSdrh ** Form A: 44632dcef11bSdrh ** CASE x WHEN e1 THEN r1 WHEN e2 THEN r2 ... WHEN eN THEN rN ELSE y END 44642dcef11bSdrh ** 44652dcef11bSdrh ** Form B: 44662dcef11bSdrh ** CASE WHEN e1 THEN r1 WHEN e2 THEN r2 ... WHEN eN THEN rN ELSE y END 44672dcef11bSdrh ** 44682dcef11bSdrh ** Form A is can be transformed into the equivalent form B as follows: 44692dcef11bSdrh ** CASE WHEN x=e1 THEN r1 WHEN x=e2 THEN r2 ... 44702dcef11bSdrh ** WHEN x=eN THEN rN ELSE y END 44712dcef11bSdrh ** 44722dcef11bSdrh ** X (if it exists) is in pExpr->pLeft. 4473c5cd1249Sdrh ** Y is in the last element of pExpr->x.pList if pExpr->x.pList->nExpr is 4474c5cd1249Sdrh ** odd. The Y is also optional. If the number of elements in x.pList 4475c5cd1249Sdrh ** is even, then Y is omitted and the "otherwise" result is NULL. 44762dcef11bSdrh ** Ei is in pExpr->pList->a[i*2] and Ri is pExpr->pList->a[i*2+1]. 44772dcef11bSdrh ** 44782dcef11bSdrh ** The result of the expression is the Ri for the first matching Ei, 44792dcef11bSdrh ** or if there is no matching Ei, the ELSE term Y, or if there is 44802dcef11bSdrh ** no ELSE term, NULL. 44812dcef11bSdrh */ 4482aac30f9bSdrh case TK_CASE: { 44832dcef11bSdrh int endLabel; /* GOTO label for end of CASE stmt */ 44842dcef11bSdrh int nextCase; /* GOTO label for next WHEN clause */ 44852dcef11bSdrh int nExpr; /* 2x number of WHEN terms */ 44862dcef11bSdrh int i; /* Loop counter */ 44872dcef11bSdrh ExprList *pEList; /* List of WHEN terms */ 44882dcef11bSdrh struct ExprList_item *aListelem; /* Array of WHEN terms */ 44892dcef11bSdrh Expr opCompare; /* The X==Ei expression */ 44902dcef11bSdrh Expr *pX; /* The X expression */ 44911bd10f8aSdrh Expr *pTest = 0; /* X==Ei (form A) or just Ei (form B) */ 44928b65e591Sdan Expr *pDel = 0; 44938b65e591Sdan sqlite3 *db = pParse->db; 449417a7f8ddSdrh 44956ab3a2ecSdanielk1977 assert( !ExprHasProperty(pExpr, EP_xIsSelect) && pExpr->x.pList ); 44966ab3a2ecSdanielk1977 assert(pExpr->x.pList->nExpr > 0); 44976ab3a2ecSdanielk1977 pEList = pExpr->x.pList; 4498be5c89acSdrh aListelem = pEList->a; 4499be5c89acSdrh nExpr = pEList->nExpr; 4500ec4ccdbcSdrh endLabel = sqlite3VdbeMakeLabel(pParse); 45012dcef11bSdrh if( (pX = pExpr->pLeft)!=0 ){ 45028b65e591Sdan pDel = sqlite3ExprDup(db, pX, 0); 45038b65e591Sdan if( db->mallocFailed ){ 45048b65e591Sdan sqlite3ExprDelete(db, pDel); 45058b65e591Sdan break; 45068b65e591Sdan } 450733cd4909Sdrh testcase( pX->op==TK_COLUMN ); 45088b65e591Sdan exprToRegister(pDel, exprCodeVector(pParse, pDel, ®Free1)); 4509c5499befSdrh testcase( regFree1==0 ); 4510abb9d5f1Sdrh memset(&opCompare, 0, sizeof(opCompare)); 45112dcef11bSdrh opCompare.op = TK_EQ; 45128b65e591Sdan opCompare.pLeft = pDel; 45132dcef11bSdrh pTest = &opCompare; 45148b1db07fSdrh /* Ticket b351d95f9cd5ef17e9d9dbae18f5ca8611190001: 45158b1db07fSdrh ** The value in regFree1 might get SCopy-ed into the file result. 45168b1db07fSdrh ** So make sure that the regFree1 register is not reused for other 45178b1db07fSdrh ** purposes and possibly overwritten. */ 45188b1db07fSdrh regFree1 = 0; 4519cce7d176Sdrh } 4520c5cd1249Sdrh for(i=0; i<nExpr-1; i=i+2){ 45212dcef11bSdrh if( pX ){ 45221bd10f8aSdrh assert( pTest!=0 ); 45232dcef11bSdrh opCompare.pRight = aListelem[i].pExpr; 4524f5905aa7Sdrh }else{ 45252dcef11bSdrh pTest = aListelem[i].pExpr; 452617a7f8ddSdrh } 4527ec4ccdbcSdrh nextCase = sqlite3VdbeMakeLabel(pParse); 452833cd4909Sdrh testcase( pTest->op==TK_COLUMN ); 45292dcef11bSdrh sqlite3ExprIfFalse(pParse, pTest, nextCase, SQLITE_JUMPIFNULL); 4530c5499befSdrh testcase( aListelem[i+1].pExpr->op==TK_COLUMN ); 45319de221dfSdrh sqlite3ExprCode(pParse, aListelem[i+1].pExpr, target); 4532076e85f5Sdrh sqlite3VdbeGoto(v, endLabel); 45332dcef11bSdrh sqlite3VdbeResolveLabel(v, nextCase); 4534f570f011Sdrh } 4535c5cd1249Sdrh if( (nExpr&1)!=0 ){ 4536c5cd1249Sdrh sqlite3ExprCode(pParse, pEList->a[nExpr-1].pExpr, target); 453717a7f8ddSdrh }else{ 45389de221dfSdrh sqlite3VdbeAddOp2(v, OP_Null, 0, target); 453917a7f8ddSdrh } 45408b65e591Sdan sqlite3ExprDelete(db, pDel); 454192a27f7bSdrh setDoNotMergeFlagOnCopy(v); 45422dcef11bSdrh sqlite3VdbeResolveLabel(v, endLabel); 45436f34903eSdanielk1977 break; 45446f34903eSdanielk1977 } 45455338a5f7Sdanielk1977 #ifndef SQLITE_OMIT_TRIGGER 45466f34903eSdanielk1977 case TK_RAISE: { 45471194904bSdrh assert( pExpr->affExpr==OE_Rollback 45481194904bSdrh || pExpr->affExpr==OE_Abort 45491194904bSdrh || pExpr->affExpr==OE_Fail 45501194904bSdrh || pExpr->affExpr==OE_Ignore 4551165921a7Sdan ); 45529e5fdc41Sdrh if( !pParse->pTriggerTab && !pParse->nested ){ 4553e0af83acSdan sqlite3ErrorMsg(pParse, 4554e0af83acSdan "RAISE() may only be used within a trigger-program"); 4555e0af83acSdan return 0; 4556e0af83acSdan } 45571194904bSdrh if( pExpr->affExpr==OE_Abort ){ 4558e0af83acSdan sqlite3MayAbort(pParse); 4559e0af83acSdan } 456033e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 45611194904bSdrh if( pExpr->affExpr==OE_Ignore ){ 4562e0af83acSdan sqlite3VdbeAddOp4( 4563e0af83acSdan v, OP_Halt, SQLITE_OK, OE_Ignore, 0, pExpr->u.zToken,0); 4564688852abSdrh VdbeCoverage(v); 4565e0af83acSdan }else{ 45669e5fdc41Sdrh sqlite3HaltConstraint(pParse, 45679e5fdc41Sdrh pParse->pTriggerTab ? SQLITE_CONSTRAINT_TRIGGER : SQLITE_ERROR, 45681194904bSdrh pExpr->affExpr, pExpr->u.zToken, 0, 0); 4569e0af83acSdan } 4570e0af83acSdan 4571ffe07b2dSdrh break; 457217a7f8ddSdrh } 45735338a5f7Sdanielk1977 #endif 4574ffe07b2dSdrh } 45752dcef11bSdrh sqlite3ReleaseTempReg(pParse, regFree1); 45762dcef11bSdrh sqlite3ReleaseTempReg(pParse, regFree2); 45772dcef11bSdrh return inReg; 45785b6afba9Sdrh } 45792dcef11bSdrh 45802dcef11bSdrh /* 45819b258c54Sdrh ** Generate code that will evaluate expression pExpr just one time 45829b258c54Sdrh ** per prepared statement execution. 45839b258c54Sdrh ** 45849b258c54Sdrh ** If the expression uses functions (that might throw an exception) then 45859b258c54Sdrh ** guard them with an OP_Once opcode to ensure that the code is only executed 45869b258c54Sdrh ** once. If no functions are involved, then factor the code out and put it at 45879b258c54Sdrh ** the end of the prepared statement in the initialization section. 45881e9b53f9Sdrh ** 4589ad879ffdSdrh ** If regDest>=0 then the result is always stored in that register and the 4590ad879ffdSdrh ** result is not reusable. If regDest<0 then this routine is free to 4591ad879ffdSdrh ** store the value whereever it wants. The register where the expression 45929b258c54Sdrh ** is stored is returned. When regDest<0, two identical expressions might 45939b258c54Sdrh ** code to the same register, if they do not contain function calls and hence 45949b258c54Sdrh ** are factored out into the initialization section at the end of the 45959b258c54Sdrh ** prepared statement. 4596d1a01edaSdrh */ 45979b258c54Sdrh int sqlite3ExprCodeRunJustOnce( 4598d673cddaSdrh Parse *pParse, /* Parsing context */ 4599d673cddaSdrh Expr *pExpr, /* The expression to code when the VDBE initializes */ 4600ad879ffdSdrh int regDest /* Store the value in this register */ 4601d673cddaSdrh ){ 4602d1a01edaSdrh ExprList *p; 4603d9f158e7Sdrh assert( ConstFactorOk(pParse) ); 4604d1a01edaSdrh p = pParse->pConstExpr; 4605ad879ffdSdrh if( regDest<0 && p ){ 46061e9b53f9Sdrh struct ExprList_item *pItem; 46071e9b53f9Sdrh int i; 46081e9b53f9Sdrh for(pItem=p->a, i=p->nExpr; i>0; pItem++, i--){ 46095aa550cfSdan if( pItem->reusable && sqlite3ExprCompare(0,pItem->pExpr,pExpr,-1)==0 ){ 46101e9b53f9Sdrh return pItem->u.iConstExprReg; 46111e9b53f9Sdrh } 46121e9b53f9Sdrh } 46131e9b53f9Sdrh } 4614d1a01edaSdrh pExpr = sqlite3ExprDup(pParse->db, pExpr, 0); 461538dfbdaeSdrh if( pExpr!=0 && ExprHasProperty(pExpr, EP_HasFunc) ){ 461638dfbdaeSdrh Vdbe *v = pParse->pVdbe; 461738dfbdaeSdrh int addr; 461838dfbdaeSdrh assert( v ); 461938dfbdaeSdrh addr = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v); 462038dfbdaeSdrh pParse->okConstFactor = 0; 462138dfbdaeSdrh if( !pParse->db->mallocFailed ){ 46229b258c54Sdrh if( regDest<0 ) regDest = ++pParse->nMem; 462338dfbdaeSdrh sqlite3ExprCode(pParse, pExpr, regDest); 462438dfbdaeSdrh } 462538dfbdaeSdrh pParse->okConstFactor = 1; 462638dfbdaeSdrh sqlite3ExprDelete(pParse->db, pExpr); 462738dfbdaeSdrh sqlite3VdbeJumpHere(v, addr); 462838dfbdaeSdrh }else{ 4629d1a01edaSdrh p = sqlite3ExprListAppend(pParse, p, pExpr); 4630d673cddaSdrh if( p ){ 4631d673cddaSdrh struct ExprList_item *pItem = &p->a[p->nExpr-1]; 4632ad879ffdSdrh pItem->reusable = regDest<0; 46339b258c54Sdrh if( regDest<0 ) regDest = ++pParse->nMem; 4634d673cddaSdrh pItem->u.iConstExprReg = regDest; 4635d673cddaSdrh } 4636d1a01edaSdrh pParse->pConstExpr = p; 463738dfbdaeSdrh } 46381e9b53f9Sdrh return regDest; 4639d1a01edaSdrh } 4640d1a01edaSdrh 4641d1a01edaSdrh /* 46422dcef11bSdrh ** Generate code to evaluate an expression and store the results 46432dcef11bSdrh ** into a register. Return the register number where the results 46442dcef11bSdrh ** are stored. 46452dcef11bSdrh ** 46462dcef11bSdrh ** If the register is a temporary register that can be deallocated, 4647678ccce8Sdrh ** then write its number into *pReg. If the result register is not 46482dcef11bSdrh ** a temporary, then set *pReg to zero. 4649f30a969bSdrh ** 4650f30a969bSdrh ** If pExpr is a constant, then this routine might generate this 4651f30a969bSdrh ** code to fill the register in the initialization section of the 4652f30a969bSdrh ** VDBE program, in order to factor it out of the evaluation loop. 46532dcef11bSdrh */ 46542dcef11bSdrh int sqlite3ExprCodeTemp(Parse *pParse, Expr *pExpr, int *pReg){ 4655f30a969bSdrh int r2; 46560d950af3Sdrh pExpr = sqlite3ExprSkipCollateAndLikely(pExpr); 4657d9f158e7Sdrh if( ConstFactorOk(pParse) 4658235667a8Sdrh && ALWAYS(pExpr!=0) 4659f30a969bSdrh && pExpr->op!=TK_REGISTER 4660f30a969bSdrh && sqlite3ExprIsConstantNotJoin(pExpr) 4661f30a969bSdrh ){ 4662f30a969bSdrh *pReg = 0; 46639b258c54Sdrh r2 = sqlite3ExprCodeRunJustOnce(pParse, pExpr, -1); 4664f30a969bSdrh }else{ 46652dcef11bSdrh int r1 = sqlite3GetTempReg(pParse); 4666f30a969bSdrh r2 = sqlite3ExprCodeTarget(pParse, pExpr, r1); 46672dcef11bSdrh if( r2==r1 ){ 46682dcef11bSdrh *pReg = r1; 46692dcef11bSdrh }else{ 46702dcef11bSdrh sqlite3ReleaseTempReg(pParse, r1); 46712dcef11bSdrh *pReg = 0; 46722dcef11bSdrh } 4673f30a969bSdrh } 46742dcef11bSdrh return r2; 46752dcef11bSdrh } 46762dcef11bSdrh 46772dcef11bSdrh /* 46782dcef11bSdrh ** Generate code that will evaluate expression pExpr and store the 46792dcef11bSdrh ** results in register target. The results are guaranteed to appear 46802dcef11bSdrh ** in register target. 46812dcef11bSdrh */ 468205a86c5cSdrh void sqlite3ExprCode(Parse *pParse, Expr *pExpr, int target){ 46839cbf3425Sdrh int inReg; 46849cbf3425Sdrh 4685e7375bfaSdrh assert( pExpr==0 || !ExprHasVVAProperty(pExpr,EP_Immutable) ); 46869cbf3425Sdrh assert( target>0 && target<=pParse->nMem ); 46871c75c9d7Sdrh assert( pParse->pVdbe!=0 || pParse->db->mallocFailed ); 4688b639a209Sdrh if( pParse->pVdbe==0 ) return; 4689b639a209Sdrh inReg = sqlite3ExprCodeTarget(pParse, pExpr, target); 4690b639a209Sdrh if( inReg!=target ){ 4691629b88c6Sdrh u8 op; 4692629b88c6Sdrh if( ExprHasProperty(pExpr,EP_Subquery) ){ 4693629b88c6Sdrh op = OP_Copy; 4694629b88c6Sdrh }else{ 4695629b88c6Sdrh op = OP_SCopy; 4696629b88c6Sdrh } 4697629b88c6Sdrh sqlite3VdbeAddOp2(pParse->pVdbe, op, inReg, target); 469817a7f8ddSdrh } 4699ebc16717Sdrh } 4700cce7d176Sdrh 4701cce7d176Sdrh /* 47021c75c9d7Sdrh ** Make a transient copy of expression pExpr and then code it using 47031c75c9d7Sdrh ** sqlite3ExprCode(). This routine works just like sqlite3ExprCode() 47041c75c9d7Sdrh ** except that the input expression is guaranteed to be unchanged. 47051c75c9d7Sdrh */ 47061c75c9d7Sdrh void sqlite3ExprCodeCopy(Parse *pParse, Expr *pExpr, int target){ 47071c75c9d7Sdrh sqlite3 *db = pParse->db; 47081c75c9d7Sdrh pExpr = sqlite3ExprDup(db, pExpr, 0); 47091c75c9d7Sdrh if( !db->mallocFailed ) sqlite3ExprCode(pParse, pExpr, target); 47101c75c9d7Sdrh sqlite3ExprDelete(db, pExpr); 47111c75c9d7Sdrh } 47121c75c9d7Sdrh 47131c75c9d7Sdrh /* 471405a86c5cSdrh ** Generate code that will evaluate expression pExpr and store the 471505a86c5cSdrh ** results in register target. The results are guaranteed to appear 471605a86c5cSdrh ** in register target. If the expression is constant, then this routine 471705a86c5cSdrh ** might choose to code the expression at initialization time. 471805a86c5cSdrh */ 471905a86c5cSdrh void sqlite3ExprCodeFactorable(Parse *pParse, Expr *pExpr, int target){ 4720b8b06690Sdrh if( pParse->okConstFactor && sqlite3ExprIsConstantNotJoin(pExpr) ){ 47219b258c54Sdrh sqlite3ExprCodeRunJustOnce(pParse, pExpr, target); 472205a86c5cSdrh }else{ 4723088489e8Sdrh sqlite3ExprCodeCopy(pParse, pExpr, target); 472405a86c5cSdrh } 4725cce7d176Sdrh } 4726cce7d176Sdrh 4727cce7d176Sdrh /* 4728268380caSdrh ** Generate code that pushes the value of every element of the given 47299cbf3425Sdrh ** expression list into a sequence of registers beginning at target. 4730268380caSdrh ** 47313df6c3b1Sdrh ** Return the number of elements evaluated. The number returned will 47323df6c3b1Sdrh ** usually be pList->nExpr but might be reduced if SQLITE_ECEL_OMITREF 47333df6c3b1Sdrh ** is defined. 4734d1a01edaSdrh ** 4735d1a01edaSdrh ** The SQLITE_ECEL_DUP flag prevents the arguments from being 4736d1a01edaSdrh ** filled using OP_SCopy. OP_Copy must be used instead. 4737d1a01edaSdrh ** 4738d1a01edaSdrh ** The SQLITE_ECEL_FACTOR argument allows constant arguments to be 4739d1a01edaSdrh ** factored out into initialization code. 4740b0df9634Sdrh ** 4741b0df9634Sdrh ** The SQLITE_ECEL_REF flag means that expressions in the list with 4742b0df9634Sdrh ** ExprList.a[].u.x.iOrderByCol>0 have already been evaluated and stored 4743b0df9634Sdrh ** in registers at srcReg, and so the value can be copied from there. 47443df6c3b1Sdrh ** If SQLITE_ECEL_OMITREF is also set, then the values with u.x.iOrderByCol>0 47453df6c3b1Sdrh ** are simply omitted rather than being copied from srcReg. 4746268380caSdrh */ 47474adee20fSdanielk1977 int sqlite3ExprCodeExprList( 4748268380caSdrh Parse *pParse, /* Parsing context */ 4749389a1adbSdrh ExprList *pList, /* The expression list to be coded */ 4750191b54cbSdrh int target, /* Where to write results */ 47515579d59fSdrh int srcReg, /* Source registers if SQLITE_ECEL_REF */ 4752d1a01edaSdrh u8 flags /* SQLITE_ECEL_* flags */ 4753268380caSdrh ){ 4754268380caSdrh struct ExprList_item *pItem; 47555579d59fSdrh int i, j, n; 4756d1a01edaSdrh u8 copyOp = (flags & SQLITE_ECEL_DUP) ? OP_Copy : OP_SCopy; 47575579d59fSdrh Vdbe *v = pParse->pVdbe; 47589d8b3072Sdrh assert( pList!=0 ); 47599cbf3425Sdrh assert( target>0 ); 4760d81a142bSdrh assert( pParse->pVdbe!=0 ); /* Never gets this far otherwise */ 4761268380caSdrh n = pList->nExpr; 4762d9f158e7Sdrh if( !ConstFactorOk(pParse) ) flags &= ~SQLITE_ECEL_FACTOR; 4763191b54cbSdrh for(pItem=pList->a, i=0; i<n; i++, pItem++){ 47647445ffe2Sdrh Expr *pExpr = pItem->pExpr; 476524e25d32Sdan #ifdef SQLITE_ENABLE_SORTER_REFERENCES 476624e25d32Sdan if( pItem->bSorterRef ){ 476724e25d32Sdan i--; 476824e25d32Sdan n--; 476924e25d32Sdan }else 477024e25d32Sdan #endif 4771257c13faSdan if( (flags & SQLITE_ECEL_REF)!=0 && (j = pItem->u.x.iOrderByCol)>0 ){ 4772257c13faSdan if( flags & SQLITE_ECEL_OMITREF ){ 4773257c13faSdan i--; 4774257c13faSdan n--; 4775257c13faSdan }else{ 47765579d59fSdrh sqlite3VdbeAddOp2(v, copyOp, j+srcReg-1, target+i); 4777257c13faSdan } 4778b8b06690Sdrh }else if( (flags & SQLITE_ECEL_FACTOR)!=0 4779b8b06690Sdrh && sqlite3ExprIsConstantNotJoin(pExpr) 4780b8b06690Sdrh ){ 47819b258c54Sdrh sqlite3ExprCodeRunJustOnce(pParse, pExpr, target+i); 4782d1a01edaSdrh }else{ 47837445ffe2Sdrh int inReg = sqlite3ExprCodeTarget(pParse, pExpr, target+i); 4784746fd9ccSdrh if( inReg!=target+i ){ 47854eded604Sdrh VdbeOp *pOp; 47864eded604Sdrh if( copyOp==OP_Copy 47874eded604Sdrh && (pOp=sqlite3VdbeGetOp(v, -1))->opcode==OP_Copy 47884eded604Sdrh && pOp->p1+pOp->p3+1==inReg 47894eded604Sdrh && pOp->p2+pOp->p3+1==target+i 479090996885Sdrh && pOp->p5==0 /* The do-not-merge flag must be clear */ 47914eded604Sdrh ){ 47924eded604Sdrh pOp->p3++; 47934eded604Sdrh }else{ 47944eded604Sdrh sqlite3VdbeAddOp2(v, copyOp, inReg, target+i); 47954eded604Sdrh } 4796d1a01edaSdrh } 4797d176611bSdrh } 4798268380caSdrh } 4799f9b596ebSdrh return n; 4800268380caSdrh } 4801268380caSdrh 4802268380caSdrh /* 480336c563a2Sdrh ** Generate code for a BETWEEN operator. 480436c563a2Sdrh ** 480536c563a2Sdrh ** x BETWEEN y AND z 480636c563a2Sdrh ** 480736c563a2Sdrh ** The above is equivalent to 480836c563a2Sdrh ** 480936c563a2Sdrh ** x>=y AND x<=z 481036c563a2Sdrh ** 481136c563a2Sdrh ** Code it as such, taking care to do the common subexpression 481260ec914cSpeter.d.reid ** elimination of x. 481384b19a3dSdrh ** 481484b19a3dSdrh ** The xJumpIf parameter determines details: 481584b19a3dSdrh ** 481684b19a3dSdrh ** NULL: Store the boolean result in reg[dest] 481784b19a3dSdrh ** sqlite3ExprIfTrue: Jump to dest if true 481884b19a3dSdrh ** sqlite3ExprIfFalse: Jump to dest if false 481984b19a3dSdrh ** 482084b19a3dSdrh ** The jumpIfNull parameter is ignored if xJumpIf is NULL. 482136c563a2Sdrh */ 482236c563a2Sdrh static void exprCodeBetween( 482336c563a2Sdrh Parse *pParse, /* Parsing and code generating context */ 482436c563a2Sdrh Expr *pExpr, /* The BETWEEN expression */ 482584b19a3dSdrh int dest, /* Jump destination or storage location */ 482684b19a3dSdrh void (*xJump)(Parse*,Expr*,int,int), /* Action to take */ 482736c563a2Sdrh int jumpIfNull /* Take the jump if the BETWEEN is NULL */ 482836c563a2Sdrh ){ 482936c563a2Sdrh Expr exprAnd; /* The AND operator in x>=y AND x<=z */ 483036c563a2Sdrh Expr compLeft; /* The x>=y term */ 483136c563a2Sdrh Expr compRight; /* The x<=z term */ 4832db45bd5eSdrh int regFree1 = 0; /* Temporary use register */ 48338b65e591Sdan Expr *pDel = 0; 48348b65e591Sdan sqlite3 *db = pParse->db; 483584b19a3dSdrh 483671c57db0Sdan memset(&compLeft, 0, sizeof(Expr)); 483771c57db0Sdan memset(&compRight, 0, sizeof(Expr)); 483871c57db0Sdan memset(&exprAnd, 0, sizeof(Expr)); 4839db45bd5eSdrh 4840db45bd5eSdrh assert( !ExprHasProperty(pExpr, EP_xIsSelect) ); 48418b65e591Sdan pDel = sqlite3ExprDup(db, pExpr->pLeft, 0); 48428b65e591Sdan if( db->mallocFailed==0 ){ 484336c563a2Sdrh exprAnd.op = TK_AND; 484436c563a2Sdrh exprAnd.pLeft = &compLeft; 484536c563a2Sdrh exprAnd.pRight = &compRight; 484636c563a2Sdrh compLeft.op = TK_GE; 48478b65e591Sdan compLeft.pLeft = pDel; 484836c563a2Sdrh compLeft.pRight = pExpr->x.pList->a[0].pExpr; 484936c563a2Sdrh compRight.op = TK_LE; 48508b65e591Sdan compRight.pLeft = pDel; 485136c563a2Sdrh compRight.pRight = pExpr->x.pList->a[1].pExpr; 48528b65e591Sdan exprToRegister(pDel, exprCodeVector(pParse, pDel, ®Free1)); 485384b19a3dSdrh if( xJump ){ 485484b19a3dSdrh xJump(pParse, &exprAnd, dest, jumpIfNull); 485536c563a2Sdrh }else{ 485636fd41e5Sdrh /* Mark the expression is being from the ON or USING clause of a join 485736fd41e5Sdrh ** so that the sqlite3ExprCodeTarget() routine will not attempt to move 485836fd41e5Sdrh ** it into the Parse.pConstExpr list. We should use a new bit for this, 485936fd41e5Sdrh ** for clarity, but we are out of bits in the Expr.flags field so we 486036fd41e5Sdrh ** have to reuse the EP_FromJoin bit. Bummer. */ 48618b65e591Sdan pDel->flags |= EP_FromJoin; 486271c57db0Sdan sqlite3ExprCodeTarget(pParse, &exprAnd, dest); 486336c563a2Sdrh } 4864db45bd5eSdrh sqlite3ReleaseTempReg(pParse, regFree1); 48658b65e591Sdan } 48668b65e591Sdan sqlite3ExprDelete(db, pDel); 486736c563a2Sdrh 486836c563a2Sdrh /* Ensure adequate test coverage */ 4869db45bd5eSdrh testcase( xJump==sqlite3ExprIfTrue && jumpIfNull==0 && regFree1==0 ); 4870db45bd5eSdrh testcase( xJump==sqlite3ExprIfTrue && jumpIfNull==0 && regFree1!=0 ); 4871db45bd5eSdrh testcase( xJump==sqlite3ExprIfTrue && jumpIfNull!=0 && regFree1==0 ); 4872db45bd5eSdrh testcase( xJump==sqlite3ExprIfTrue && jumpIfNull!=0 && regFree1!=0 ); 4873db45bd5eSdrh testcase( xJump==sqlite3ExprIfFalse && jumpIfNull==0 && regFree1==0 ); 4874db45bd5eSdrh testcase( xJump==sqlite3ExprIfFalse && jumpIfNull==0 && regFree1!=0 ); 4875db45bd5eSdrh testcase( xJump==sqlite3ExprIfFalse && jumpIfNull!=0 && regFree1==0 ); 4876db45bd5eSdrh testcase( xJump==sqlite3ExprIfFalse && jumpIfNull!=0 && regFree1!=0 ); 487784b19a3dSdrh testcase( xJump==0 ); 487836c563a2Sdrh } 487936c563a2Sdrh 488036c563a2Sdrh /* 4881cce7d176Sdrh ** Generate code for a boolean expression such that a jump is made 4882cce7d176Sdrh ** to the label "dest" if the expression is true but execution 4883cce7d176Sdrh ** continues straight thru if the expression is false. 4884f5905aa7Sdrh ** 4885f5905aa7Sdrh ** If the expression evaluates to NULL (neither true nor false), then 488635573356Sdrh ** take the jump if the jumpIfNull flag is SQLITE_JUMPIFNULL. 4887f2bc013cSdrh ** 4888f2bc013cSdrh ** This code depends on the fact that certain token values (ex: TK_EQ) 4889f2bc013cSdrh ** are the same as opcode values (ex: OP_Eq) that implement the corresponding 4890f2bc013cSdrh ** operation. Special comments in vdbe.c and the mkopcodeh.awk script in 4891f2bc013cSdrh ** the make process cause these values to align. Assert()s in the code 4892f2bc013cSdrh ** below verify that the numbers are aligned correctly. 4893cce7d176Sdrh */ 48944adee20fSdanielk1977 void sqlite3ExprIfTrue(Parse *pParse, Expr *pExpr, int dest, int jumpIfNull){ 4895cce7d176Sdrh Vdbe *v = pParse->pVdbe; 4896cce7d176Sdrh int op = 0; 48972dcef11bSdrh int regFree1 = 0; 48982dcef11bSdrh int regFree2 = 0; 48992dcef11bSdrh int r1, r2; 49002dcef11bSdrh 490135573356Sdrh assert( jumpIfNull==SQLITE_JUMPIFNULL || jumpIfNull==0 ); 490248864df9Smistachkin if( NEVER(v==0) ) return; /* Existence of VDBE checked by caller */ 490333cd4909Sdrh if( NEVER(pExpr==0) ) return; /* No way this can happen */ 4904e7375bfaSdrh assert( !ExprHasVVAProperty(pExpr, EP_Immutable) ); 4905f2bc013cSdrh op = pExpr->op; 49067b35a77bSdan switch( op ){ 490717180fcaSdrh case TK_AND: 490817180fcaSdrh case TK_OR: { 490917180fcaSdrh Expr *pAlt = sqlite3ExprSimplifiedAndOr(pExpr); 491017180fcaSdrh if( pAlt!=pExpr ){ 491117180fcaSdrh sqlite3ExprIfTrue(pParse, pAlt, dest, jumpIfNull); 491217180fcaSdrh }else if( op==TK_AND ){ 4913ec4ccdbcSdrh int d2 = sqlite3VdbeMakeLabel(pParse); 4914c5499befSdrh testcase( jumpIfNull==0 ); 491517180fcaSdrh sqlite3ExprIfFalse(pParse, pExpr->pLeft, d2, 491617180fcaSdrh jumpIfNull^SQLITE_JUMPIFNULL); 49174adee20fSdanielk1977 sqlite3ExprIfTrue(pParse, pExpr->pRight, dest, jumpIfNull); 49184adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, d2); 491917180fcaSdrh }else{ 4920c5499befSdrh testcase( jumpIfNull==0 ); 49214adee20fSdanielk1977 sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest, jumpIfNull); 49224adee20fSdanielk1977 sqlite3ExprIfTrue(pParse, pExpr->pRight, dest, jumpIfNull); 492317180fcaSdrh } 4924cce7d176Sdrh break; 4925cce7d176Sdrh } 4926cce7d176Sdrh case TK_NOT: { 4927c5499befSdrh testcase( jumpIfNull==0 ); 49284adee20fSdanielk1977 sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest, jumpIfNull); 4929cce7d176Sdrh break; 4930cce7d176Sdrh } 49318abed7b9Sdrh case TK_TRUTH: { 493296acafbeSdrh int isNot; /* IS NOT TRUE or IS NOT FALSE */ 493396acafbeSdrh int isTrue; /* IS TRUE or IS NOT TRUE */ 4934007c843bSdrh testcase( jumpIfNull==0 ); 49358abed7b9Sdrh isNot = pExpr->op2==TK_ISNOT; 493696acafbeSdrh isTrue = sqlite3ExprTruthValue(pExpr->pRight); 493743c4ac8bSdrh testcase( isTrue && isNot ); 493896acafbeSdrh testcase( !isTrue && isNot ); 493943c4ac8bSdrh if( isTrue ^ isNot ){ 49408abed7b9Sdrh sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest, 49418abed7b9Sdrh isNot ? SQLITE_JUMPIFNULL : 0); 49428abed7b9Sdrh }else{ 49438abed7b9Sdrh sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest, 49448abed7b9Sdrh isNot ? SQLITE_JUMPIFNULL : 0); 49458abed7b9Sdrh } 4946007c843bSdrh break; 4947007c843bSdrh } 4948de845c2fSdrh case TK_IS: 4949de845c2fSdrh case TK_ISNOT: 4950de845c2fSdrh testcase( op==TK_IS ); 4951de845c2fSdrh testcase( op==TK_ISNOT ); 4952de845c2fSdrh op = (op==TK_IS) ? TK_EQ : TK_NE; 4953de845c2fSdrh jumpIfNull = SQLITE_NULLEQ; 495408b92086Sdrh /* no break */ deliberate_fall_through 4955cce7d176Sdrh case TK_LT: 4956cce7d176Sdrh case TK_LE: 4957cce7d176Sdrh case TK_GT: 4958cce7d176Sdrh case TK_GE: 4959cce7d176Sdrh case TK_NE: 49600ac65892Sdrh case TK_EQ: { 4961625015e0Sdan if( sqlite3ExprIsVector(pExpr->pLeft) ) goto default_expr; 4962c5499befSdrh testcase( jumpIfNull==0 ); 4963b6da74ebSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 4964b6da74ebSdrh r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, ®Free2); 496535573356Sdrh codeCompare(pParse, pExpr->pLeft, pExpr->pRight, op, 4966898c527eSdrh r1, r2, dest, jumpIfNull, ExprHasProperty(pExpr,EP_Commuted)); 49677d176105Sdrh assert(TK_LT==OP_Lt); testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt); 49687d176105Sdrh assert(TK_LE==OP_Le); testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le); 49697d176105Sdrh assert(TK_GT==OP_Gt); testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt); 49707d176105Sdrh assert(TK_GE==OP_Ge); testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge); 4971de845c2fSdrh assert(TK_EQ==OP_Eq); testcase(op==OP_Eq); 4972de845c2fSdrh VdbeCoverageIf(v, op==OP_Eq && jumpIfNull==SQLITE_NULLEQ); 4973de845c2fSdrh VdbeCoverageIf(v, op==OP_Eq && jumpIfNull!=SQLITE_NULLEQ); 4974de845c2fSdrh assert(TK_NE==OP_Ne); testcase(op==OP_Ne); 4975de845c2fSdrh VdbeCoverageIf(v, op==OP_Ne && jumpIfNull==SQLITE_NULLEQ); 4976de845c2fSdrh VdbeCoverageIf(v, op==OP_Ne && jumpIfNull!=SQLITE_NULLEQ); 49776a2fe093Sdrh testcase( regFree1==0 ); 49786a2fe093Sdrh testcase( regFree2==0 ); 49796a2fe093Sdrh break; 49806a2fe093Sdrh } 4981cce7d176Sdrh case TK_ISNULL: 4982cce7d176Sdrh case TK_NOTNULL: { 49837d176105Sdrh assert( TK_ISNULL==OP_IsNull ); testcase( op==TK_ISNULL ); 49847d176105Sdrh assert( TK_NOTNULL==OP_NotNull ); testcase( op==TK_NOTNULL ); 49852dcef11bSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 49862dcef11bSdrh sqlite3VdbeAddOp2(v, op, r1, dest); 49877d176105Sdrh VdbeCoverageIf(v, op==TK_ISNULL); 49887d176105Sdrh VdbeCoverageIf(v, op==TK_NOTNULL); 4989c5499befSdrh testcase( regFree1==0 ); 4990cce7d176Sdrh break; 4991cce7d176Sdrh } 4992fef5208cSdrh case TK_BETWEEN: { 49935c03f30aSdrh testcase( jumpIfNull==0 ); 499471c57db0Sdan exprCodeBetween(pParse, pExpr, dest, sqlite3ExprIfTrue, jumpIfNull); 4995fef5208cSdrh break; 4996fef5208cSdrh } 4997bb201344Sshaneh #ifndef SQLITE_OMIT_SUBQUERY 4998e3365e6cSdrh case TK_IN: { 4999ec4ccdbcSdrh int destIfFalse = sqlite3VdbeMakeLabel(pParse); 5000e3365e6cSdrh int destIfNull = jumpIfNull ? dest : destIfFalse; 5001e3365e6cSdrh sqlite3ExprCodeIN(pParse, pExpr, destIfFalse, destIfNull); 5002076e85f5Sdrh sqlite3VdbeGoto(v, dest); 5003e3365e6cSdrh sqlite3VdbeResolveLabel(v, destIfFalse); 5004e3365e6cSdrh break; 5005e3365e6cSdrh } 5006bb201344Sshaneh #endif 5007cce7d176Sdrh default: { 50087b35a77bSdan default_expr: 5009ad31727fSdrh if( ExprAlwaysTrue(pExpr) ){ 5010076e85f5Sdrh sqlite3VdbeGoto(v, dest); 5011ad31727fSdrh }else if( ExprAlwaysFalse(pExpr) ){ 5012991a1985Sdrh /* No-op */ 5013991a1985Sdrh }else{ 50142dcef11bSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr, ®Free1); 50152dcef11bSdrh sqlite3VdbeAddOp3(v, OP_If, r1, dest, jumpIfNull!=0); 5016688852abSdrh VdbeCoverage(v); 5017c5499befSdrh testcase( regFree1==0 ); 5018c5499befSdrh testcase( jumpIfNull==0 ); 5019991a1985Sdrh } 5020cce7d176Sdrh break; 5021cce7d176Sdrh } 5022cce7d176Sdrh } 50232dcef11bSdrh sqlite3ReleaseTempReg(pParse, regFree1); 50242dcef11bSdrh sqlite3ReleaseTempReg(pParse, regFree2); 5025cce7d176Sdrh } 5026cce7d176Sdrh 5027cce7d176Sdrh /* 502866b89c8fSdrh ** Generate code for a boolean expression such that a jump is made 5029cce7d176Sdrh ** to the label "dest" if the expression is false but execution 5030cce7d176Sdrh ** continues straight thru if the expression is true. 5031f5905aa7Sdrh ** 5032f5905aa7Sdrh ** If the expression evaluates to NULL (neither true nor false) then 503335573356Sdrh ** jump if jumpIfNull is SQLITE_JUMPIFNULL or fall through if jumpIfNull 503435573356Sdrh ** is 0. 5035cce7d176Sdrh */ 50364adee20fSdanielk1977 void sqlite3ExprIfFalse(Parse *pParse, Expr *pExpr, int dest, int jumpIfNull){ 5037cce7d176Sdrh Vdbe *v = pParse->pVdbe; 5038cce7d176Sdrh int op = 0; 50392dcef11bSdrh int regFree1 = 0; 50402dcef11bSdrh int regFree2 = 0; 50412dcef11bSdrh int r1, r2; 50422dcef11bSdrh 504335573356Sdrh assert( jumpIfNull==SQLITE_JUMPIFNULL || jumpIfNull==0 ); 504448864df9Smistachkin if( NEVER(v==0) ) return; /* Existence of VDBE checked by caller */ 504533cd4909Sdrh if( pExpr==0 ) return; 5046e7375bfaSdrh assert( !ExprHasVVAProperty(pExpr,EP_Immutable) ); 5047f2bc013cSdrh 5048f2bc013cSdrh /* The value of pExpr->op and op are related as follows: 5049f2bc013cSdrh ** 5050f2bc013cSdrh ** pExpr->op op 5051f2bc013cSdrh ** --------- ---------- 5052f2bc013cSdrh ** TK_ISNULL OP_NotNull 5053f2bc013cSdrh ** TK_NOTNULL OP_IsNull 5054f2bc013cSdrh ** TK_NE OP_Eq 5055f2bc013cSdrh ** TK_EQ OP_Ne 5056f2bc013cSdrh ** TK_GT OP_Le 5057f2bc013cSdrh ** TK_LE OP_Gt 5058f2bc013cSdrh ** TK_GE OP_Lt 5059f2bc013cSdrh ** TK_LT OP_Ge 5060f2bc013cSdrh ** 5061f2bc013cSdrh ** For other values of pExpr->op, op is undefined and unused. 5062f2bc013cSdrh ** The value of TK_ and OP_ constants are arranged such that we 5063f2bc013cSdrh ** can compute the mapping above using the following expression. 5064f2bc013cSdrh ** Assert()s verify that the computation is correct. 5065f2bc013cSdrh */ 5066f2bc013cSdrh op = ((pExpr->op+(TK_ISNULL&1))^1)-(TK_ISNULL&1); 5067f2bc013cSdrh 5068f2bc013cSdrh /* Verify correct alignment of TK_ and OP_ constants 5069f2bc013cSdrh */ 5070f2bc013cSdrh assert( pExpr->op!=TK_ISNULL || op==OP_NotNull ); 5071f2bc013cSdrh assert( pExpr->op!=TK_NOTNULL || op==OP_IsNull ); 5072f2bc013cSdrh assert( pExpr->op!=TK_NE || op==OP_Eq ); 5073f2bc013cSdrh assert( pExpr->op!=TK_EQ || op==OP_Ne ); 5074f2bc013cSdrh assert( pExpr->op!=TK_LT || op==OP_Ge ); 5075f2bc013cSdrh assert( pExpr->op!=TK_LE || op==OP_Gt ); 5076f2bc013cSdrh assert( pExpr->op!=TK_GT || op==OP_Le ); 5077f2bc013cSdrh assert( pExpr->op!=TK_GE || op==OP_Lt ); 5078f2bc013cSdrh 5079ba00e30aSdan switch( pExpr->op ){ 508017180fcaSdrh case TK_AND: 508117180fcaSdrh case TK_OR: { 508217180fcaSdrh Expr *pAlt = sqlite3ExprSimplifiedAndOr(pExpr); 508317180fcaSdrh if( pAlt!=pExpr ){ 508417180fcaSdrh sqlite3ExprIfFalse(pParse, pAlt, dest, jumpIfNull); 508517180fcaSdrh }else if( pExpr->op==TK_AND ){ 5086c5499befSdrh testcase( jumpIfNull==0 ); 50874adee20fSdanielk1977 sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest, jumpIfNull); 50884adee20fSdanielk1977 sqlite3ExprIfFalse(pParse, pExpr->pRight, dest, jumpIfNull); 508917180fcaSdrh }else{ 5090ec4ccdbcSdrh int d2 = sqlite3VdbeMakeLabel(pParse); 5091c5499befSdrh testcase( jumpIfNull==0 ); 509217180fcaSdrh sqlite3ExprIfTrue(pParse, pExpr->pLeft, d2, 509317180fcaSdrh jumpIfNull^SQLITE_JUMPIFNULL); 50944adee20fSdanielk1977 sqlite3ExprIfFalse(pParse, pExpr->pRight, dest, jumpIfNull); 50954adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, d2); 509617180fcaSdrh } 5097cce7d176Sdrh break; 5098cce7d176Sdrh } 5099cce7d176Sdrh case TK_NOT: { 51005c03f30aSdrh testcase( jumpIfNull==0 ); 51014adee20fSdanielk1977 sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest, jumpIfNull); 5102cce7d176Sdrh break; 5103cce7d176Sdrh } 51048abed7b9Sdrh case TK_TRUTH: { 510596acafbeSdrh int isNot; /* IS NOT TRUE or IS NOT FALSE */ 510696acafbeSdrh int isTrue; /* IS TRUE or IS NOT TRUE */ 51078abed7b9Sdrh testcase( jumpIfNull==0 ); 51088abed7b9Sdrh isNot = pExpr->op2==TK_ISNOT; 510996acafbeSdrh isTrue = sqlite3ExprTruthValue(pExpr->pRight); 511043c4ac8bSdrh testcase( isTrue && isNot ); 511196acafbeSdrh testcase( !isTrue && isNot ); 511243c4ac8bSdrh if( isTrue ^ isNot ){ 51138abed7b9Sdrh /* IS TRUE and IS NOT FALSE */ 51148abed7b9Sdrh sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest, 51158abed7b9Sdrh isNot ? 0 : SQLITE_JUMPIFNULL); 51168abed7b9Sdrh 51178abed7b9Sdrh }else{ 51188abed7b9Sdrh /* IS FALSE and IS NOT TRUE */ 51198abed7b9Sdrh sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest, 51208abed7b9Sdrh isNot ? 0 : SQLITE_JUMPIFNULL); 51218abed7b9Sdrh } 5122007c843bSdrh break; 5123007c843bSdrh } 5124de845c2fSdrh case TK_IS: 5125de845c2fSdrh case TK_ISNOT: 5126de845c2fSdrh testcase( pExpr->op==TK_IS ); 5127de845c2fSdrh testcase( pExpr->op==TK_ISNOT ); 5128de845c2fSdrh op = (pExpr->op==TK_IS) ? TK_NE : TK_EQ; 5129de845c2fSdrh jumpIfNull = SQLITE_NULLEQ; 513008b92086Sdrh /* no break */ deliberate_fall_through 5131cce7d176Sdrh case TK_LT: 5132cce7d176Sdrh case TK_LE: 5133cce7d176Sdrh case TK_GT: 5134cce7d176Sdrh case TK_GE: 5135cce7d176Sdrh case TK_NE: 5136cce7d176Sdrh case TK_EQ: { 5137625015e0Sdan if( sqlite3ExprIsVector(pExpr->pLeft) ) goto default_expr; 5138c5499befSdrh testcase( jumpIfNull==0 ); 5139b6da74ebSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 5140b6da74ebSdrh r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, ®Free2); 514135573356Sdrh codeCompare(pParse, pExpr->pLeft, pExpr->pRight, op, 5142898c527eSdrh r1, r2, dest, jumpIfNull,ExprHasProperty(pExpr,EP_Commuted)); 51437d176105Sdrh assert(TK_LT==OP_Lt); testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt); 51447d176105Sdrh assert(TK_LE==OP_Le); testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le); 51457d176105Sdrh assert(TK_GT==OP_Gt); testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt); 51467d176105Sdrh assert(TK_GE==OP_Ge); testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge); 5147de845c2fSdrh assert(TK_EQ==OP_Eq); testcase(op==OP_Eq); 5148de845c2fSdrh VdbeCoverageIf(v, op==OP_Eq && jumpIfNull!=SQLITE_NULLEQ); 5149de845c2fSdrh VdbeCoverageIf(v, op==OP_Eq && jumpIfNull==SQLITE_NULLEQ); 5150de845c2fSdrh assert(TK_NE==OP_Ne); testcase(op==OP_Ne); 5151de845c2fSdrh VdbeCoverageIf(v, op==OP_Ne && jumpIfNull!=SQLITE_NULLEQ); 5152de845c2fSdrh VdbeCoverageIf(v, op==OP_Ne && jumpIfNull==SQLITE_NULLEQ); 51536a2fe093Sdrh testcase( regFree1==0 ); 51546a2fe093Sdrh testcase( regFree2==0 ); 51556a2fe093Sdrh break; 51566a2fe093Sdrh } 5157cce7d176Sdrh case TK_ISNULL: 5158cce7d176Sdrh case TK_NOTNULL: { 51592dcef11bSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, ®Free1); 51602dcef11bSdrh sqlite3VdbeAddOp2(v, op, r1, dest); 51617d176105Sdrh testcase( op==TK_ISNULL ); VdbeCoverageIf(v, op==TK_ISNULL); 51627d176105Sdrh testcase( op==TK_NOTNULL ); VdbeCoverageIf(v, op==TK_NOTNULL); 5163c5499befSdrh testcase( regFree1==0 ); 5164cce7d176Sdrh break; 5165cce7d176Sdrh } 5166fef5208cSdrh case TK_BETWEEN: { 51675c03f30aSdrh testcase( jumpIfNull==0 ); 516871c57db0Sdan exprCodeBetween(pParse, pExpr, dest, sqlite3ExprIfFalse, jumpIfNull); 5169fef5208cSdrh break; 5170fef5208cSdrh } 5171bb201344Sshaneh #ifndef SQLITE_OMIT_SUBQUERY 5172e3365e6cSdrh case TK_IN: { 5173e3365e6cSdrh if( jumpIfNull ){ 5174e3365e6cSdrh sqlite3ExprCodeIN(pParse, pExpr, dest, dest); 5175e3365e6cSdrh }else{ 5176ec4ccdbcSdrh int destIfNull = sqlite3VdbeMakeLabel(pParse); 5177e3365e6cSdrh sqlite3ExprCodeIN(pParse, pExpr, dest, destIfNull); 5178e3365e6cSdrh sqlite3VdbeResolveLabel(v, destIfNull); 5179e3365e6cSdrh } 5180e3365e6cSdrh break; 5181e3365e6cSdrh } 5182bb201344Sshaneh #endif 5183cce7d176Sdrh default: { 5184ba00e30aSdan default_expr: 5185ad31727fSdrh if( ExprAlwaysFalse(pExpr) ){ 5186076e85f5Sdrh sqlite3VdbeGoto(v, dest); 5187ad31727fSdrh }else if( ExprAlwaysTrue(pExpr) ){ 5188991a1985Sdrh /* no-op */ 5189991a1985Sdrh }else{ 51902dcef11bSdrh r1 = sqlite3ExprCodeTemp(pParse, pExpr, ®Free1); 51912dcef11bSdrh sqlite3VdbeAddOp3(v, OP_IfNot, r1, dest, jumpIfNull!=0); 5192688852abSdrh VdbeCoverage(v); 5193c5499befSdrh testcase( regFree1==0 ); 5194c5499befSdrh testcase( jumpIfNull==0 ); 5195991a1985Sdrh } 5196cce7d176Sdrh break; 5197cce7d176Sdrh } 5198cce7d176Sdrh } 51992dcef11bSdrh sqlite3ReleaseTempReg(pParse, regFree1); 52002dcef11bSdrh sqlite3ReleaseTempReg(pParse, regFree2); 5201cce7d176Sdrh } 52022282792aSdrh 52032282792aSdrh /* 520472bc8208Sdrh ** Like sqlite3ExprIfFalse() except that a copy is made of pExpr before 520572bc8208Sdrh ** code generation, and that copy is deleted after code generation. This 520672bc8208Sdrh ** ensures that the original pExpr is unchanged. 520772bc8208Sdrh */ 520872bc8208Sdrh void sqlite3ExprIfFalseDup(Parse *pParse, Expr *pExpr, int dest,int jumpIfNull){ 520972bc8208Sdrh sqlite3 *db = pParse->db; 521072bc8208Sdrh Expr *pCopy = sqlite3ExprDup(db, pExpr, 0); 521172bc8208Sdrh if( db->mallocFailed==0 ){ 521272bc8208Sdrh sqlite3ExprIfFalse(pParse, pCopy, dest, jumpIfNull); 521372bc8208Sdrh } 521472bc8208Sdrh sqlite3ExprDelete(db, pCopy); 521572bc8208Sdrh } 521672bc8208Sdrh 52175aa550cfSdan /* 52185aa550cfSdan ** Expression pVar is guaranteed to be an SQL variable. pExpr may be any 52195aa550cfSdan ** type of expression. 52205aa550cfSdan ** 52215aa550cfSdan ** If pExpr is a simple SQL value - an integer, real, string, blob 52225aa550cfSdan ** or NULL value - then the VDBE currently being prepared is configured 52235aa550cfSdan ** to re-prepare each time a new value is bound to variable pVar. 52245aa550cfSdan ** 52255aa550cfSdan ** Additionally, if pExpr is a simple SQL value and the value is the 52265aa550cfSdan ** same as that currently bound to variable pVar, non-zero is returned. 52275aa550cfSdan ** Otherwise, if the values are not the same or if pExpr is not a simple 52285aa550cfSdan ** SQL value, zero is returned. 52295aa550cfSdan */ 52305aa550cfSdan static int exprCompareVariable(Parse *pParse, Expr *pVar, Expr *pExpr){ 52315aa550cfSdan int res = 0; 5232c0804226Sdrh int iVar; 5233c0804226Sdrh sqlite3_value *pL, *pR = 0; 52345aa550cfSdan 52355aa550cfSdan sqlite3ValueFromExpr(pParse->db, pExpr, SQLITE_UTF8, SQLITE_AFF_BLOB, &pR); 5236c0804226Sdrh if( pR ){ 5237c0804226Sdrh iVar = pVar->iColumn; 5238c0804226Sdrh sqlite3VdbeSetVarmask(pParse->pVdbe, iVar); 5239c0804226Sdrh pL = sqlite3VdbeGetBoundValue(pParse->pReprepare, iVar, SQLITE_AFF_BLOB); 52405aa307e2Sdrh if( pL ){ 52415aa307e2Sdrh if( sqlite3_value_type(pL)==SQLITE_TEXT ){ 52425aa307e2Sdrh sqlite3_value_text(pL); /* Make sure the encoding is UTF-8 */ 52435aa307e2Sdrh } 52445aa307e2Sdrh res = 0==sqlite3MemCompare(pL, pR, 0); 52455aa550cfSdan } 52465aa550cfSdan sqlite3ValueFree(pR); 52475aa550cfSdan sqlite3ValueFree(pL); 52485aa550cfSdan } 52495aa550cfSdan 52505aa550cfSdan return res; 52515aa550cfSdan } 525272bc8208Sdrh 525372bc8208Sdrh /* 52541d9da70aSdrh ** Do a deep comparison of two expression trees. Return 0 if the two 52551d9da70aSdrh ** expressions are completely identical. Return 1 if they differ only 52561d9da70aSdrh ** by a COLLATE operator at the top level. Return 2 if there are differences 52571d9da70aSdrh ** other than the top-level COLLATE operator. 5258d40aab0eSdrh ** 5259619a1305Sdrh ** If any subelement of pB has Expr.iTable==(-1) then it is allowed 5260619a1305Sdrh ** to compare equal to an equivalent element in pA with Expr.iTable==iTab. 5261619a1305Sdrh ** 526266518ca7Sdrh ** The pA side might be using TK_REGISTER. If that is the case and pB is 526366518ca7Sdrh ** not using TK_REGISTER but is otherwise equivalent, then still return 0. 526466518ca7Sdrh ** 52651d9da70aSdrh ** Sometimes this routine will return 2 even if the two expressions 5266d40aab0eSdrh ** really are equivalent. If we cannot prove that the expressions are 52671d9da70aSdrh ** identical, we return 2 just to be safe. So if this routine 52681d9da70aSdrh ** returns 2, then you do not really know for certain if the two 52691d9da70aSdrh ** expressions are the same. But if you get a 0 or 1 return, then you 5270d40aab0eSdrh ** can be sure the expressions are the same. In the places where 52711d9da70aSdrh ** this routine is used, it does not hurt to get an extra 2 - that 5272d40aab0eSdrh ** just might result in some slightly slower code. But returning 52731d9da70aSdrh ** an incorrect 0 or 1 could lead to a malfunction. 52745aa550cfSdan ** 5275c0804226Sdrh ** If pParse is not NULL then TK_VARIABLE terms in pA with bindings in 5276c0804226Sdrh ** pParse->pReprepare can be matched against literals in pB. The 5277c0804226Sdrh ** pParse->pVdbe->expmask bitmask is updated for each variable referenced. 5278c0804226Sdrh ** If pParse is NULL (the normal case) then any TK_VARIABLE term in 5279c0804226Sdrh ** Argument pParse should normally be NULL. If it is not NULL and pA or 5280c0804226Sdrh ** pB causes a return value of 2. 52812282792aSdrh */ 52825aa550cfSdan int sqlite3ExprCompare(Parse *pParse, Expr *pA, Expr *pB, int iTab){ 528310d1edf0Sdrh u32 combinedFlags; 52844b202ae2Sdanielk1977 if( pA==0 || pB==0 ){ 52851d9da70aSdrh return pB==pA ? 0 : 2; 52862282792aSdrh } 52875aa550cfSdan if( pParse && pA->op==TK_VARIABLE && exprCompareVariable(pParse, pA, pB) ){ 52885aa550cfSdan return 0; 52895aa550cfSdan } 529010d1edf0Sdrh combinedFlags = pA->flags | pB->flags; 529110d1edf0Sdrh if( combinedFlags & EP_IntValue ){ 529210d1edf0Sdrh if( (pA->flags&pB->flags&EP_IntValue)!=0 && pA->u.iValue==pB->u.iValue ){ 529310d1edf0Sdrh return 0; 529410d1edf0Sdrh } 52951d9da70aSdrh return 2; 52966ab3a2ecSdanielk1977 } 529716dd3985Sdan if( pA->op!=pB->op || pA->op==TK_RAISE ){ 52985aa550cfSdan if( pA->op==TK_COLLATE && sqlite3ExprCompare(pParse, pA->pLeft,pB,iTab)<2 ){ 5299ae80ddeaSdrh return 1; 5300ae80ddeaSdrh } 53015aa550cfSdan if( pB->op==TK_COLLATE && sqlite3ExprCompare(pParse, pA,pB->pLeft,iTab)<2 ){ 5302ae80ddeaSdrh return 1; 5303ae80ddeaSdrh } 5304ae80ddeaSdrh return 2; 5305ae80ddeaSdrh } 53062edc5fd7Sdrh if( pA->op!=TK_COLUMN && pA->op!=TK_AGG_COLUMN && pA->u.zToken ){ 53074f9adee2Sdan if( pA->op==TK_FUNCTION || pA->op==TK_AGG_FUNCTION ){ 5308390b88a4Sdrh if( sqlite3StrICmp(pA->u.zToken,pB->u.zToken)!=0 ) return 2; 5309eda079cdSdrh #ifndef SQLITE_OMIT_WINDOWFUNC 53104f9adee2Sdan assert( pA->op==pB->op ); 53114f9adee2Sdan if( ExprHasProperty(pA,EP_WinFunc)!=ExprHasProperty(pB,EP_WinFunc) ){ 53124f9adee2Sdan return 2; 53134f9adee2Sdan } 5314eda079cdSdrh if( ExprHasProperty(pA,EP_WinFunc) ){ 53154f9adee2Sdan if( sqlite3WindowCompare(pParse, pA->y.pWin, pB->y.pWin, 1)!=0 ){ 53164f9adee2Sdan return 2; 53174f9adee2Sdan } 5318eda079cdSdrh } 5319eda079cdSdrh #endif 5320f20bbc5fSdrh }else if( pA->op==TK_NULL ){ 5321f20bbc5fSdrh return 0; 5322d5af5420Sdrh }else if( pA->op==TK_COLLATE ){ 5323e79f6299Sdrh if( sqlite3_stricmp(pA->u.zToken,pB->u.zToken)!=0 ) return 2; 5324f20bbc5fSdrh }else if( ALWAYS(pB->u.zToken!=0) && strcmp(pA->u.zToken,pB->u.zToken)!=0 ){ 5325d5af5420Sdrh return 2; 532610d1edf0Sdrh } 532710d1edf0Sdrh } 5328898c527eSdrh if( (pA->flags & (EP_Distinct|EP_Commuted)) 5329898c527eSdrh != (pB->flags & (EP_Distinct|EP_Commuted)) ) return 2; 5330e7375bfaSdrh if( ALWAYS((combinedFlags & EP_TokenOnly)==0) ){ 533110d1edf0Sdrh if( combinedFlags & EP_xIsSelect ) return 2; 5332efad2e23Sdrh if( (combinedFlags & EP_FixedCol)==0 5333efad2e23Sdrh && sqlite3ExprCompare(pParse, pA->pLeft, pB->pLeft, iTab) ) return 2; 53345aa550cfSdan if( sqlite3ExprCompare(pParse, pA->pRight, pB->pRight, iTab) ) return 2; 5335619a1305Sdrh if( sqlite3ExprListCompare(pA->x.pList, pB->x.pList, iTab) ) return 2; 533603c5c213Sdrh if( pA->op!=TK_STRING 533703c5c213Sdrh && pA->op!=TK_TRUEFALSE 5338e7375bfaSdrh && ALWAYS((combinedFlags & EP_Reduced)==0) 533903c5c213Sdrh ){ 5340619a1305Sdrh if( pA->iColumn!=pB->iColumn ) return 2; 53419b258c54Sdrh if( pA->op2!=pB->op2 && pA->op==TK_TRUTH ) return 2; 53420f28e1bdSdrh if( pA->op!=TK_IN && pA->iTable!=pB->iTable && pA->iTable!=iTab ){ 53430f28e1bdSdrh return 2; 53440f28e1bdSdrh } 53451d9da70aSdrh } 53461d9da70aSdrh } 53472646da7eSdrh return 0; 53482646da7eSdrh } 53492282792aSdrh 53508c6f666bSdrh /* 5351fbb6e9ffSdan ** Compare two ExprList objects. Return 0 if they are identical, 1 5352fbb6e9ffSdan ** if they are certainly different, or 2 if it is not possible to 5353fbb6e9ffSdan ** determine if they are identical or not. 53548c6f666bSdrh ** 5355619a1305Sdrh ** If any subelement of pB has Expr.iTable==(-1) then it is allowed 5356619a1305Sdrh ** to compare equal to an equivalent element in pA with Expr.iTable==iTab. 5357619a1305Sdrh ** 53588c6f666bSdrh ** This routine might return non-zero for equivalent ExprLists. The 53598c6f666bSdrh ** only consequence will be disabled optimizations. But this routine 53608c6f666bSdrh ** must never return 0 if the two ExprList objects are different, or 53618c6f666bSdrh ** a malfunction will result. 53628c6f666bSdrh ** 53638c6f666bSdrh ** Two NULL pointers are considered to be the same. But a NULL pointer 53648c6f666bSdrh ** always differs from a non-NULL pointer. 53658c6f666bSdrh */ 5366619a1305Sdrh int sqlite3ExprListCompare(ExprList *pA, ExprList *pB, int iTab){ 53678c6f666bSdrh int i; 53688c6f666bSdrh if( pA==0 && pB==0 ) return 0; 53698c6f666bSdrh if( pA==0 || pB==0 ) return 1; 53708c6f666bSdrh if( pA->nExpr!=pB->nExpr ) return 1; 53718c6f666bSdrh for(i=0; i<pA->nExpr; i++){ 5372fbb6e9ffSdan int res; 53738c6f666bSdrh Expr *pExprA = pA->a[i].pExpr; 53748c6f666bSdrh Expr *pExprB = pB->a[i].pExpr; 53756e11892dSdan if( pA->a[i].sortFlags!=pB->a[i].sortFlags ) return 1; 5376fbb6e9ffSdan if( (res = sqlite3ExprCompare(0, pExprA, pExprB, iTab)) ) return res; 53778c6f666bSdrh } 53788c6f666bSdrh return 0; 53798c6f666bSdrh } 538013449892Sdrh 53812282792aSdrh /* 5382f9463dfbSdrh ** Like sqlite3ExprCompare() except COLLATE operators at the top-level 5383f9463dfbSdrh ** are ignored. 5384f9463dfbSdrh */ 5385f9463dfbSdrh int sqlite3ExprCompareSkip(Expr *pA, Expr *pB, int iTab){ 53865aa550cfSdan return sqlite3ExprCompare(0, 53870d950af3Sdrh sqlite3ExprSkipCollateAndLikely(pA), 53880d950af3Sdrh sqlite3ExprSkipCollateAndLikely(pB), 5389f9463dfbSdrh iTab); 5390f9463dfbSdrh } 5391f9463dfbSdrh 5392f9463dfbSdrh /* 5393c51cf864Sdrh ** Return non-zero if Expr p can only be true if pNN is not NULL. 53947a231b49Sdrh ** 53957a231b49Sdrh ** Or if seenNot is true, return non-zero if Expr p can only be 53967a231b49Sdrh ** non-NULL if pNN is not NULL 5397c51cf864Sdrh */ 5398c51cf864Sdrh static int exprImpliesNotNull( 5399c51cf864Sdrh Parse *pParse, /* Parsing context */ 5400c51cf864Sdrh Expr *p, /* The expression to be checked */ 5401c51cf864Sdrh Expr *pNN, /* The expression that is NOT NULL */ 5402c51cf864Sdrh int iTab, /* Table being evaluated */ 54037a231b49Sdrh int seenNot /* Return true only if p can be any non-NULL value */ 5404c51cf864Sdrh ){ 5405c51cf864Sdrh assert( p ); 5406c51cf864Sdrh assert( pNN ); 540714c865e8Sdrh if( sqlite3ExprCompare(pParse, p, pNN, iTab)==0 ){ 540814c865e8Sdrh return pNN->op!=TK_NULL; 540914c865e8Sdrh } 5410c51cf864Sdrh switch( p->op ){ 5411c51cf864Sdrh case TK_IN: { 5412c51cf864Sdrh if( seenNot && ExprHasProperty(p, EP_xIsSelect) ) return 0; 5413c51cf864Sdrh assert( ExprHasProperty(p,EP_xIsSelect) 5414c51cf864Sdrh || (p->x.pList!=0 && p->x.pList->nExpr>0) ); 5415ae144a1cSdrh return exprImpliesNotNull(pParse, p->pLeft, pNN, iTab, 1); 5416c51cf864Sdrh } 5417c51cf864Sdrh case TK_BETWEEN: { 5418c51cf864Sdrh ExprList *pList = p->x.pList; 5419c51cf864Sdrh assert( pList!=0 ); 5420c51cf864Sdrh assert( pList->nExpr==2 ); 5421c51cf864Sdrh if( seenNot ) return 0; 54227a231b49Sdrh if( exprImpliesNotNull(pParse, pList->a[0].pExpr, pNN, iTab, 1) 54237a231b49Sdrh || exprImpliesNotNull(pParse, pList->a[1].pExpr, pNN, iTab, 1) 5424c51cf864Sdrh ){ 5425c51cf864Sdrh return 1; 5426c51cf864Sdrh } 54277a231b49Sdrh return exprImpliesNotNull(pParse, p->pLeft, pNN, iTab, 1); 5428c51cf864Sdrh } 5429c51cf864Sdrh case TK_EQ: 5430c51cf864Sdrh case TK_NE: 5431c51cf864Sdrh case TK_LT: 5432c51cf864Sdrh case TK_LE: 5433c51cf864Sdrh case TK_GT: 5434c51cf864Sdrh case TK_GE: 5435c51cf864Sdrh case TK_PLUS: 5436c51cf864Sdrh case TK_MINUS: 54379d23ea74Sdan case TK_BITOR: 54389d23ea74Sdan case TK_LSHIFT: 54399d23ea74Sdan case TK_RSHIFT: 54409d23ea74Sdan case TK_CONCAT: 54419d23ea74Sdan seenNot = 1; 544208b92086Sdrh /* no break */ deliberate_fall_through 5443c51cf864Sdrh case TK_STAR: 5444c51cf864Sdrh case TK_REM: 5445c51cf864Sdrh case TK_BITAND: 54469d23ea74Sdan case TK_SLASH: { 5447c51cf864Sdrh if( exprImpliesNotNull(pParse, p->pRight, pNN, iTab, seenNot) ) return 1; 544808b92086Sdrh /* no break */ deliberate_fall_through 5449c51cf864Sdrh } 5450c51cf864Sdrh case TK_SPAN: 5451c51cf864Sdrh case TK_COLLATE: 5452c51cf864Sdrh case TK_UPLUS: 5453c51cf864Sdrh case TK_UMINUS: { 5454c51cf864Sdrh return exprImpliesNotNull(pParse, p->pLeft, pNN, iTab, seenNot); 5455c51cf864Sdrh } 5456c51cf864Sdrh case TK_TRUTH: { 5457c51cf864Sdrh if( seenNot ) return 0; 5458c51cf864Sdrh if( p->op2!=TK_IS ) return 0; 545938cefc83Sdrh return exprImpliesNotNull(pParse, p->pLeft, pNN, iTab, 1); 5460c51cf864Sdrh } 54611cd382e3Sdan case TK_BITNOT: 5462c51cf864Sdrh case TK_NOT: { 5463c51cf864Sdrh return exprImpliesNotNull(pParse, p->pLeft, pNN, iTab, 1); 5464c51cf864Sdrh } 5465c51cf864Sdrh } 5466c51cf864Sdrh return 0; 5467c51cf864Sdrh } 5468c51cf864Sdrh 5469c51cf864Sdrh /* 54704bd5f73fSdrh ** Return true if we can prove the pE2 will always be true if pE1 is 54714bd5f73fSdrh ** true. Return false if we cannot complete the proof or if pE2 might 54724bd5f73fSdrh ** be false. Examples: 54734bd5f73fSdrh ** 5474619a1305Sdrh ** pE1: x==5 pE2: x==5 Result: true 54754bd5f73fSdrh ** pE1: x>0 pE2: x==5 Result: false 5476619a1305Sdrh ** pE1: x=21 pE2: x=21 OR y=43 Result: true 54774bd5f73fSdrh ** pE1: x!=123 pE2: x IS NOT NULL Result: true 5478619a1305Sdrh ** pE1: x!=?1 pE2: x IS NOT NULL Result: true 5479619a1305Sdrh ** pE1: x IS NULL pE2: x IS NOT NULL Result: false 5480619a1305Sdrh ** pE1: x IS ?2 pE2: x IS NOT NULL Reuslt: false 54814bd5f73fSdrh ** 54824bd5f73fSdrh ** When comparing TK_COLUMN nodes between pE1 and pE2, if pE2 has 54834bd5f73fSdrh ** Expr.iTable<0 then assume a table number given by iTab. 54844bd5f73fSdrh ** 5485c0804226Sdrh ** If pParse is not NULL, then the values of bound variables in pE1 are 5486c0804226Sdrh ** compared against literal values in pE2 and pParse->pVdbe->expmask is 5487c0804226Sdrh ** modified to record which bound variables are referenced. If pParse 5488c0804226Sdrh ** is NULL, then false will be returned if pE1 contains any bound variables. 5489c0804226Sdrh ** 54904bd5f73fSdrh ** When in doubt, return false. Returning true might give a performance 54914bd5f73fSdrh ** improvement. Returning false might cause a performance reduction, but 54924bd5f73fSdrh ** it will always give the correct answer and is hence always safe. 54934bd5f73fSdrh */ 54945aa550cfSdan int sqlite3ExprImpliesExpr(Parse *pParse, Expr *pE1, Expr *pE2, int iTab){ 54955aa550cfSdan if( sqlite3ExprCompare(pParse, pE1, pE2, iTab)==0 ){ 5496619a1305Sdrh return 1; 5497619a1305Sdrh } 5498619a1305Sdrh if( pE2->op==TK_OR 54995aa550cfSdan && (sqlite3ExprImpliesExpr(pParse, pE1, pE2->pLeft, iTab) 55005aa550cfSdan || sqlite3ExprImpliesExpr(pParse, pE1, pE2->pRight, iTab) ) 5501619a1305Sdrh ){ 5502619a1305Sdrh return 1; 5503619a1305Sdrh } 5504664d6d13Sdrh if( pE2->op==TK_NOTNULL 5505c51cf864Sdrh && exprImpliesNotNull(pParse, pE1, pE2->pLeft, iTab, 0) 5506664d6d13Sdrh ){ 5507c51cf864Sdrh return 1; 5508619a1305Sdrh } 5509619a1305Sdrh return 0; 55104bd5f73fSdrh } 55114bd5f73fSdrh 55124bd5f73fSdrh /* 55136c68d759Sdrh ** This is the Expr node callback for sqlite3ExprImpliesNonNullRow(). 55142589787cSdrh ** If the expression node requires that the table at pWalker->iCur 5515f8937f90Sdrh ** have one or more non-NULL column, then set pWalker->eCode to 1 and abort. 5516f8937f90Sdrh ** 5517f8937f90Sdrh ** This routine controls an optimization. False positives (setting 5518f8937f90Sdrh ** pWalker->eCode to 1 when it should not be) are deadly, but false-negatives 5519f8937f90Sdrh ** (never setting pWalker->eCode) is a harmless missed optimization. 55202589787cSdrh */ 55212589787cSdrh static int impliesNotNullRow(Walker *pWalker, Expr *pExpr){ 5522f8937f90Sdrh testcase( pExpr->op==TK_AGG_COLUMN ); 5523821b610bSdrh testcase( pExpr->op==TK_AGG_FUNCTION ); 55242589787cSdrh if( ExprHasProperty(pExpr, EP_FromJoin) ) return WRC_Prune; 55252589787cSdrh switch( pExpr->op ){ 55260493222fSdan case TK_ISNOT: 55272589787cSdrh case TK_ISNULL: 5528d5793672Sdrh case TK_NOTNULL: 55292589787cSdrh case TK_IS: 55302589787cSdrh case TK_OR: 55316c68d759Sdrh case TK_VECTOR: 55322c492061Sdrh case TK_CASE: 5533e3eff266Sdrh case TK_IN: 55342589787cSdrh case TK_FUNCTION: 5535da03c1e6Sdan case TK_TRUTH: 55360493222fSdan testcase( pExpr->op==TK_ISNOT ); 5537821b610bSdrh testcase( pExpr->op==TK_ISNULL ); 5538d5793672Sdrh testcase( pExpr->op==TK_NOTNULL ); 5539821b610bSdrh testcase( pExpr->op==TK_IS ); 5540821b610bSdrh testcase( pExpr->op==TK_OR ); 55416c68d759Sdrh testcase( pExpr->op==TK_VECTOR ); 5542821b610bSdrh testcase( pExpr->op==TK_CASE ); 5543821b610bSdrh testcase( pExpr->op==TK_IN ); 5544821b610bSdrh testcase( pExpr->op==TK_FUNCTION ); 5545da03c1e6Sdan testcase( pExpr->op==TK_TRUTH ); 55462589787cSdrh return WRC_Prune; 55472589787cSdrh case TK_COLUMN: 55482589787cSdrh if( pWalker->u.iCur==pExpr->iTable ){ 55492589787cSdrh pWalker->eCode = 1; 55502589787cSdrh return WRC_Abort; 55512589787cSdrh } 55522589787cSdrh return WRC_Prune; 55539881155dSdrh 55549d23ea74Sdan case TK_AND: 5555aef81674Sdrh if( pWalker->eCode==0 ){ 55560287c951Sdan sqlite3WalkExpr(pWalker, pExpr->pLeft); 55570287c951Sdan if( pWalker->eCode ){ 55580287c951Sdan pWalker->eCode = 0; 55590287c951Sdan sqlite3WalkExpr(pWalker, pExpr->pRight); 55609d23ea74Sdan } 5561aef81674Sdrh } 55629d23ea74Sdan return WRC_Prune; 55639d23ea74Sdan 55649d23ea74Sdan case TK_BETWEEN: 55651d24a531Sdan if( sqlite3WalkExpr(pWalker, pExpr->pLeft)==WRC_Abort ){ 55661d24a531Sdan assert( pWalker->eCode ); 55671d24a531Sdan return WRC_Abort; 55681d24a531Sdan } 55699d23ea74Sdan return WRC_Prune; 55709d23ea74Sdan 55719881155dSdrh /* Virtual tables are allowed to use constraints like x=NULL. So 55729881155dSdrh ** a term of the form x=y does not prove that y is not null if x 55739881155dSdrh ** is the column of a virtual table */ 55749881155dSdrh case TK_EQ: 55759881155dSdrh case TK_NE: 55769881155dSdrh case TK_LT: 55779881155dSdrh case TK_LE: 55789881155dSdrh case TK_GT: 557978d1d225Sdrh case TK_GE: { 558078d1d225Sdrh Expr *pLeft = pExpr->pLeft; 558178d1d225Sdrh Expr *pRight = pExpr->pRight; 55829881155dSdrh testcase( pExpr->op==TK_EQ ); 55839881155dSdrh testcase( pExpr->op==TK_NE ); 55849881155dSdrh testcase( pExpr->op==TK_LT ); 55859881155dSdrh testcase( pExpr->op==TK_LE ); 55869881155dSdrh testcase( pExpr->op==TK_GT ); 55879881155dSdrh testcase( pExpr->op==TK_GE ); 558878d1d225Sdrh /* The y.pTab=0 assignment in wherecode.c always happens after the 558978d1d225Sdrh ** impliesNotNullRow() test */ 559078d1d225Sdrh if( (pLeft->op==TK_COLUMN && ALWAYS(pLeft->y.pTab!=0) 559178d1d225Sdrh && IsVirtual(pLeft->y.pTab)) 559278d1d225Sdrh || (pRight->op==TK_COLUMN && ALWAYS(pRight->y.pTab!=0) 559378d1d225Sdrh && IsVirtual(pRight->y.pTab)) 55949881155dSdrh ){ 55959881155dSdrh return WRC_Prune; 55969881155dSdrh } 559708b92086Sdrh /* no break */ deliberate_fall_through 559878d1d225Sdrh } 55992589787cSdrh default: 56002589787cSdrh return WRC_Continue; 56012589787cSdrh } 56022589787cSdrh } 56032589787cSdrh 56042589787cSdrh /* 56052589787cSdrh ** Return true (non-zero) if expression p can only be true if at least 56062589787cSdrh ** one column of table iTab is non-null. In other words, return true 56072589787cSdrh ** if expression p will always be NULL or false if every column of iTab 56082589787cSdrh ** is NULL. 56092589787cSdrh ** 5610821b610bSdrh ** False negatives are acceptable. In other words, it is ok to return 5611821b610bSdrh ** zero even if expression p will never be true of every column of iTab 5612821b610bSdrh ** is NULL. A false negative is merely a missed optimization opportunity. 5613821b610bSdrh ** 5614821b610bSdrh ** False positives are not allowed, however. A false positive may result 5615821b610bSdrh ** in an incorrect answer. 5616821b610bSdrh ** 56172589787cSdrh ** Terms of p that are marked with EP_FromJoin (and hence that come from 56182589787cSdrh ** the ON or USING clauses of LEFT JOINS) are excluded from the analysis. 56192589787cSdrh ** 56202589787cSdrh ** This routine is used to check if a LEFT JOIN can be converted into 56212589787cSdrh ** an ordinary JOIN. The p argument is the WHERE clause. If the WHERE 56222589787cSdrh ** clause requires that some column of the right table of the LEFT JOIN 56232589787cSdrh ** be non-NULL, then the LEFT JOIN can be safely converted into an 56242589787cSdrh ** ordinary join. 56252589787cSdrh */ 56262589787cSdrh int sqlite3ExprImpliesNonNullRow(Expr *p, int iTab){ 56272589787cSdrh Walker w; 56280d950af3Sdrh p = sqlite3ExprSkipCollateAndLikely(p); 56294a254f98Sdrh if( p==0 ) return 0; 56304a254f98Sdrh if( p->op==TK_NOTNULL ){ 5631d6db6598Sdrh p = p->pLeft; 5632a1698993Sdrh }else{ 5633a1698993Sdrh while( p->op==TK_AND ){ 56344a254f98Sdrh if( sqlite3ExprImpliesNonNullRow(p->pLeft, iTab) ) return 1; 56354a254f98Sdrh p = p->pRight; 5636d6db6598Sdrh } 5637a1698993Sdrh } 56382589787cSdrh w.xExprCallback = impliesNotNullRow; 56392589787cSdrh w.xSelectCallback = 0; 56402589787cSdrh w.xSelectCallback2 = 0; 56412589787cSdrh w.eCode = 0; 56422589787cSdrh w.u.iCur = iTab; 56432589787cSdrh sqlite3WalkExpr(&w, p); 56442589787cSdrh return w.eCode; 56452589787cSdrh } 56462589787cSdrh 56472589787cSdrh /* 5648030796dfSdrh ** An instance of the following structure is used by the tree walker 56492409f8a1Sdrh ** to determine if an expression can be evaluated by reference to the 56502409f8a1Sdrh ** index only, without having to do a search for the corresponding 56512409f8a1Sdrh ** table entry. The IdxCover.pIdx field is the index. IdxCover.iCur 56522409f8a1Sdrh ** is the cursor for the table. 56532409f8a1Sdrh */ 56542409f8a1Sdrh struct IdxCover { 56552409f8a1Sdrh Index *pIdx; /* The index to be tested for coverage */ 56562409f8a1Sdrh int iCur; /* Cursor number for the table corresponding to the index */ 56572409f8a1Sdrh }; 56582409f8a1Sdrh 56592409f8a1Sdrh /* 56602409f8a1Sdrh ** Check to see if there are references to columns in table 56612409f8a1Sdrh ** pWalker->u.pIdxCover->iCur can be satisfied using the index 56622409f8a1Sdrh ** pWalker->u.pIdxCover->pIdx. 56632409f8a1Sdrh */ 56642409f8a1Sdrh static int exprIdxCover(Walker *pWalker, Expr *pExpr){ 56652409f8a1Sdrh if( pExpr->op==TK_COLUMN 56662409f8a1Sdrh && pExpr->iTable==pWalker->u.pIdxCover->iCur 5667b9bcf7caSdrh && sqlite3TableColumnToIndex(pWalker->u.pIdxCover->pIdx, pExpr->iColumn)<0 56682409f8a1Sdrh ){ 56692409f8a1Sdrh pWalker->eCode = 1; 56702409f8a1Sdrh return WRC_Abort; 56712409f8a1Sdrh } 56722409f8a1Sdrh return WRC_Continue; 56732409f8a1Sdrh } 56742409f8a1Sdrh 56752409f8a1Sdrh /* 5676e604ec0bSdrh ** Determine if an index pIdx on table with cursor iCur contains will 5677e604ec0bSdrh ** the expression pExpr. Return true if the index does cover the 5678e604ec0bSdrh ** expression and false if the pExpr expression references table columns 5679e604ec0bSdrh ** that are not found in the index pIdx. 56802409f8a1Sdrh ** 56812409f8a1Sdrh ** An index covering an expression means that the expression can be 56822409f8a1Sdrh ** evaluated using only the index and without having to lookup the 56832409f8a1Sdrh ** corresponding table entry. 56842409f8a1Sdrh */ 56852409f8a1Sdrh int sqlite3ExprCoveredByIndex( 56862409f8a1Sdrh Expr *pExpr, /* The index to be tested */ 56872409f8a1Sdrh int iCur, /* The cursor number for the corresponding table */ 56882409f8a1Sdrh Index *pIdx /* The index that might be used for coverage */ 56892409f8a1Sdrh ){ 56902409f8a1Sdrh Walker w; 56912409f8a1Sdrh struct IdxCover xcov; 56922409f8a1Sdrh memset(&w, 0, sizeof(w)); 56932409f8a1Sdrh xcov.iCur = iCur; 56942409f8a1Sdrh xcov.pIdx = pIdx; 56952409f8a1Sdrh w.xExprCallback = exprIdxCover; 56962409f8a1Sdrh w.u.pIdxCover = &xcov; 56972409f8a1Sdrh sqlite3WalkExpr(&w, pExpr); 56982409f8a1Sdrh return !w.eCode; 56992409f8a1Sdrh } 57002409f8a1Sdrh 57012409f8a1Sdrh 57022409f8a1Sdrh /* 57032409f8a1Sdrh ** An instance of the following structure is used by the tree walker 5704030796dfSdrh ** to count references to table columns in the arguments of an 5705ed551b95Sdrh ** aggregate function, in order to implement the 5706ed551b95Sdrh ** sqlite3FunctionThisSrc() routine. 5707374fdce4Sdrh */ 5708030796dfSdrh struct SrcCount { 5709030796dfSdrh SrcList *pSrc; /* One particular FROM clause in a nested query */ 5710ed41a96bSdan int iSrcInner; /* Smallest cursor number in this context */ 5711030796dfSdrh int nThis; /* Number of references to columns in pSrcList */ 5712030796dfSdrh int nOther; /* Number of references to columns in other FROM clauses */ 5713030796dfSdrh }; 5714030796dfSdrh 5715030796dfSdrh /* 5716ed41a96bSdan ** xSelect callback for sqlite3FunctionUsesThisSrc(). If this is the first 5717ed41a96bSdan ** SELECT with a FROM clause encountered during this iteration, set 5718ed41a96bSdan ** SrcCount.iSrcInner to the cursor number of the leftmost object in 5719ed41a96bSdan ** the FROM cause. 5720ed41a96bSdan */ 5721ed41a96bSdan static int selectSrcCount(Walker *pWalker, Select *pSel){ 5722ed41a96bSdan struct SrcCount *p = pWalker->u.pSrcCount; 5723bc050b8fSdrh if( p->iSrcInner==0x7FFFFFFF && ALWAYS(pSel->pSrc) && pSel->pSrc->nSrc ){ 5724ed41a96bSdan pWalker->u.pSrcCount->iSrcInner = pSel->pSrc->a[0].iCursor; 5725ed41a96bSdan } 5726ed41a96bSdan return WRC_Continue; 5727ed41a96bSdan } 5728ed41a96bSdan 5729ed41a96bSdan /* 5730030796dfSdrh ** Count the number of references to columns. 5731030796dfSdrh */ 5732030796dfSdrh static int exprSrcCount(Walker *pWalker, Expr *pExpr){ 5733b4b36306Sdan /* There was once a NEVER() on the second term on the grounds that 5734b4b36306Sdan ** sqlite3FunctionUsesThisSrc() was always called before 5735b4b36306Sdan ** sqlite3ExprAnalyzeAggregates() and so the TK_COLUMNs have not yet 5736b4b36306Sdan ** been converted into TK_AGG_COLUMN. But this is no longer true due 5737b4b36306Sdan ** to window functions - sqlite3WindowRewrite() may now indirectly call 5738b4b36306Sdan ** FunctionUsesThisSrc() when creating a new sub-select. */ 5739b4b36306Sdan if( pExpr->op==TK_COLUMN || pExpr->op==TK_AGG_COLUMN ){ 5740374fdce4Sdrh int i; 5741030796dfSdrh struct SrcCount *p = pWalker->u.pSrcCount; 5742030796dfSdrh SrcList *pSrc = p->pSrc; 5743655814d2Sdrh int nSrc = pSrc ? pSrc->nSrc : 0; 5744655814d2Sdrh for(i=0; i<nSrc; i++){ 5745030796dfSdrh if( pExpr->iTable==pSrc->a[i].iCursor ) break; 5746374fdce4Sdrh } 5747655814d2Sdrh if( i<nSrc ){ 5748030796dfSdrh p->nThis++; 5749ed41a96bSdan }else if( pExpr->iTable<p->iSrcInner ){ 575080f6bfc0Sdrh /* In a well-formed parse tree (no name resolution errors), 575135a38e08Sdrh ** TK_COLUMN nodes with smaller Expr.iTable values are in an 575280f6bfc0Sdrh ** outer context. Those are the only ones to count as "other" */ 5753030796dfSdrh p->nOther++; 5754374fdce4Sdrh } 5755374fdce4Sdrh } 5756030796dfSdrh return WRC_Continue; 5757030796dfSdrh } 5758374fdce4Sdrh 5759374fdce4Sdrh /* 5760030796dfSdrh ** Determine if any of the arguments to the pExpr Function reference 5761030796dfSdrh ** pSrcList. Return true if they do. Also return true if the function 5762030796dfSdrh ** has no arguments or has only constant arguments. Return false if pExpr 5763030796dfSdrh ** references columns but not columns of tables found in pSrcList. 5764374fdce4Sdrh */ 5765030796dfSdrh int sqlite3FunctionUsesThisSrc(Expr *pExpr, SrcList *pSrcList){ 5766374fdce4Sdrh Walker w; 5767030796dfSdrh struct SrcCount cnt; 5768374fdce4Sdrh assert( pExpr->op==TK_AGG_FUNCTION ); 576980f6bfc0Sdrh memset(&w, 0, sizeof(w)); 5770030796dfSdrh w.xExprCallback = exprSrcCount; 5771ed41a96bSdan w.xSelectCallback = selectSrcCount; 5772030796dfSdrh w.u.pSrcCount = &cnt; 5773030796dfSdrh cnt.pSrc = pSrcList; 5774ed41a96bSdan cnt.iSrcInner = (pSrcList&&pSrcList->nSrc)?pSrcList->a[0].iCursor:0x7FFFFFFF; 5775030796dfSdrh cnt.nThis = 0; 5776030796dfSdrh cnt.nOther = 0; 5777030796dfSdrh sqlite3WalkExprList(&w, pExpr->x.pList); 57785e484cb3Sdan #ifndef SQLITE_OMIT_WINDOWFUNC 57795e484cb3Sdan if( ExprHasProperty(pExpr, EP_WinFunc) ){ 57805e484cb3Sdan sqlite3WalkExpr(&w, pExpr->y.pWin->pFilter); 57815e484cb3Sdan } 57825e484cb3Sdan #endif 5783030796dfSdrh return cnt.nThis>0 || cnt.nOther==0; 5784374fdce4Sdrh } 5785374fdce4Sdrh 5786374fdce4Sdrh /* 578789636628Sdrh ** This is a Walker expression node callback. 578889636628Sdrh ** 578989636628Sdrh ** For Expr nodes that contain pAggInfo pointers, make sure the AggInfo 579089636628Sdrh ** object that is referenced does not refer directly to the Expr. If 579189636628Sdrh ** it does, make a copy. This is done because the pExpr argument is 579289636628Sdrh ** subject to change. 579389636628Sdrh ** 579489636628Sdrh ** The copy is stored on pParse->pConstExpr with a register number of 0. 579589636628Sdrh ** This will cause the expression to be deleted automatically when the 579689636628Sdrh ** Parse object is destroyed, but the zero register number means that it 579789636628Sdrh ** will not generate any code in the preamble. 579889636628Sdrh */ 579989636628Sdrh static int agginfoPersistExprCb(Walker *pWalker, Expr *pExpr){ 58002f82acc0Sdrh if( ALWAYS(!ExprHasProperty(pExpr, EP_TokenOnly|EP_Reduced)) 580189636628Sdrh && pExpr->pAggInfo!=0 580289636628Sdrh ){ 580389636628Sdrh AggInfo *pAggInfo = pExpr->pAggInfo; 580489636628Sdrh int iAgg = pExpr->iAgg; 580589636628Sdrh Parse *pParse = pWalker->pParse; 580689636628Sdrh sqlite3 *db = pParse->db; 58072f82acc0Sdrh assert( pExpr->op==TK_AGG_COLUMN || pExpr->op==TK_AGG_FUNCTION ); 58082f82acc0Sdrh if( pExpr->op==TK_AGG_COLUMN ){ 580989636628Sdrh assert( iAgg>=0 && iAgg<pAggInfo->nColumn ); 581081185a51Sdrh if( pAggInfo->aCol[iAgg].pCExpr==pExpr ){ 581189636628Sdrh pExpr = sqlite3ExprDup(db, pExpr, 0); 581289636628Sdrh if( pExpr ){ 581381185a51Sdrh pAggInfo->aCol[iAgg].pCExpr = pExpr; 581489636628Sdrh pParse->pConstExpr = 581589636628Sdrh sqlite3ExprListAppend(pParse, pParse->pConstExpr, pExpr); 581689636628Sdrh } 581789636628Sdrh } 581889636628Sdrh }else{ 581989636628Sdrh assert( iAgg>=0 && iAgg<pAggInfo->nFunc ); 582081185a51Sdrh if( pAggInfo->aFunc[iAgg].pFExpr==pExpr ){ 582189636628Sdrh pExpr = sqlite3ExprDup(db, pExpr, 0); 582289636628Sdrh if( pExpr ){ 582381185a51Sdrh pAggInfo->aFunc[iAgg].pFExpr = pExpr; 582489636628Sdrh pParse->pConstExpr = 582589636628Sdrh sqlite3ExprListAppend(pParse, pParse->pConstExpr, pExpr); 582689636628Sdrh } 582789636628Sdrh } 582889636628Sdrh } 582989636628Sdrh } 583089636628Sdrh return WRC_Continue; 583189636628Sdrh } 583289636628Sdrh 583389636628Sdrh /* 583489636628Sdrh ** Initialize a Walker object so that will persist AggInfo entries referenced 583589636628Sdrh ** by the tree that is walked. 583689636628Sdrh */ 583789636628Sdrh void sqlite3AggInfoPersistWalkerInit(Walker *pWalker, Parse *pParse){ 583889636628Sdrh memset(pWalker, 0, sizeof(*pWalker)); 583989636628Sdrh pWalker->pParse = pParse; 584089636628Sdrh pWalker->xExprCallback = agginfoPersistExprCb; 584189636628Sdrh pWalker->xSelectCallback = sqlite3SelectWalkNoop; 584289636628Sdrh } 584389636628Sdrh 584489636628Sdrh /* 584513449892Sdrh ** Add a new element to the pAggInfo->aCol[] array. Return the index of 584613449892Sdrh ** the new element. Return a negative number if malloc fails. 58472282792aSdrh */ 584817435752Sdrh static int addAggInfoColumn(sqlite3 *db, AggInfo *pInfo){ 584913449892Sdrh int i; 5850cf643729Sdrh pInfo->aCol = sqlite3ArrayAllocate( 585117435752Sdrh db, 5852cf643729Sdrh pInfo->aCol, 5853cf643729Sdrh sizeof(pInfo->aCol[0]), 5854cf643729Sdrh &pInfo->nColumn, 5855cf643729Sdrh &i 5856cf643729Sdrh ); 585713449892Sdrh return i; 58582282792aSdrh } 585913449892Sdrh 586013449892Sdrh /* 586113449892Sdrh ** Add a new element to the pAggInfo->aFunc[] array. Return the index of 586213449892Sdrh ** the new element. Return a negative number if malloc fails. 586313449892Sdrh */ 586417435752Sdrh static int addAggInfoFunc(sqlite3 *db, AggInfo *pInfo){ 586513449892Sdrh int i; 5866cf643729Sdrh pInfo->aFunc = sqlite3ArrayAllocate( 586717435752Sdrh db, 5868cf643729Sdrh pInfo->aFunc, 5869cf643729Sdrh sizeof(pInfo->aFunc[0]), 5870cf643729Sdrh &pInfo->nFunc, 5871cf643729Sdrh &i 5872cf643729Sdrh ); 587313449892Sdrh return i; 58742282792aSdrh } 58752282792aSdrh 58762282792aSdrh /* 58777d10d5a6Sdrh ** This is the xExprCallback for a tree walker. It is used to 58787d10d5a6Sdrh ** implement sqlite3ExprAnalyzeAggregates(). See sqlite3ExprAnalyzeAggregates 5879626a879aSdrh ** for additional information. 58802282792aSdrh */ 58817d10d5a6Sdrh static int analyzeAggregate(Walker *pWalker, Expr *pExpr){ 58822282792aSdrh int i; 58837d10d5a6Sdrh NameContext *pNC = pWalker->u.pNC; 5884a58fdfb1Sdanielk1977 Parse *pParse = pNC->pParse; 5885a58fdfb1Sdanielk1977 SrcList *pSrcList = pNC->pSrcList; 588625c3b8caSdrh AggInfo *pAggInfo = pNC->uNC.pAggInfo; 588713449892Sdrh 588825c3b8caSdrh assert( pNC->ncFlags & NC_UAggInfo ); 58892282792aSdrh switch( pExpr->op ){ 589089c69d00Sdrh case TK_AGG_COLUMN: 5891967e8b73Sdrh case TK_COLUMN: { 58928b213899Sdrh testcase( pExpr->op==TK_AGG_COLUMN ); 58938b213899Sdrh testcase( pExpr->op==TK_COLUMN ); 589413449892Sdrh /* Check to see if the column is in one of the tables in the FROM 589513449892Sdrh ** clause of the aggregate query */ 589620bc393cSdrh if( ALWAYS(pSrcList!=0) ){ 58977601294aSdrh SrcItem *pItem = pSrcList->a; 589813449892Sdrh for(i=0; i<pSrcList->nSrc; i++, pItem++){ 589913449892Sdrh struct AggInfo_col *pCol; 5900c5cd1249Sdrh assert( !ExprHasProperty(pExpr, EP_TokenOnly|EP_Reduced) ); 590113449892Sdrh if( pExpr->iTable==pItem->iCursor ){ 590213449892Sdrh /* If we reach this point, it means that pExpr refers to a table 590313449892Sdrh ** that is in the FROM clause of the aggregate query. 590413449892Sdrh ** 590513449892Sdrh ** Make an entry for the column in pAggInfo->aCol[] if there 590613449892Sdrh ** is not an entry there already. 590713449892Sdrh */ 59087f906d63Sdrh int k; 590913449892Sdrh pCol = pAggInfo->aCol; 59107f906d63Sdrh for(k=0; k<pAggInfo->nColumn; k++, pCol++){ 591113449892Sdrh if( pCol->iTable==pExpr->iTable && 591213449892Sdrh pCol->iColumn==pExpr->iColumn ){ 59132282792aSdrh break; 59142282792aSdrh } 59152282792aSdrh } 59161e536953Sdanielk1977 if( (k>=pAggInfo->nColumn) 59171e536953Sdanielk1977 && (k = addAggInfoColumn(pParse->db, pAggInfo))>=0 59181e536953Sdanielk1977 ){ 59197f906d63Sdrh pCol = &pAggInfo->aCol[k]; 5920eda079cdSdrh pCol->pTab = pExpr->y.pTab; 592113449892Sdrh pCol->iTable = pExpr->iTable; 592213449892Sdrh pCol->iColumn = pExpr->iColumn; 59230a07c107Sdrh pCol->iMem = ++pParse->nMem; 592413449892Sdrh pCol->iSorterColumn = -1; 592581185a51Sdrh pCol->pCExpr = pExpr; 592613449892Sdrh if( pAggInfo->pGroupBy ){ 592713449892Sdrh int j, n; 592813449892Sdrh ExprList *pGB = pAggInfo->pGroupBy; 592913449892Sdrh struct ExprList_item *pTerm = pGB->a; 593013449892Sdrh n = pGB->nExpr; 593113449892Sdrh for(j=0; j<n; j++, pTerm++){ 593213449892Sdrh Expr *pE = pTerm->pExpr; 593313449892Sdrh if( pE->op==TK_COLUMN && pE->iTable==pExpr->iTable && 593413449892Sdrh pE->iColumn==pExpr->iColumn ){ 593513449892Sdrh pCol->iSorterColumn = j; 593613449892Sdrh break; 59372282792aSdrh } 593813449892Sdrh } 593913449892Sdrh } 594013449892Sdrh if( pCol->iSorterColumn<0 ){ 594113449892Sdrh pCol->iSorterColumn = pAggInfo->nSortingColumn++; 594213449892Sdrh } 594313449892Sdrh } 594413449892Sdrh /* There is now an entry for pExpr in pAggInfo->aCol[] (either 594513449892Sdrh ** because it was there before or because we just created it). 594613449892Sdrh ** Convert the pExpr to be a TK_AGG_COLUMN referring to that 594713449892Sdrh ** pAggInfo->aCol[] entry. 594813449892Sdrh */ 5949ebb6a65dSdrh ExprSetVVAProperty(pExpr, EP_NoReduce); 595013449892Sdrh pExpr->pAggInfo = pAggInfo; 595113449892Sdrh pExpr->op = TK_AGG_COLUMN; 5952cf697396Sshane pExpr->iAgg = (i16)k; 595313449892Sdrh break; 595413449892Sdrh } /* endif pExpr->iTable==pItem->iCursor */ 595513449892Sdrh } /* end loop over pSrcList */ 5956a58fdfb1Sdanielk1977 } 59577d10d5a6Sdrh return WRC_Prune; 59582282792aSdrh } 59592282792aSdrh case TK_AGG_FUNCTION: { 59603a8c4be7Sdrh if( (pNC->ncFlags & NC_InAggFunc)==0 5961ed551b95Sdrh && pWalker->walkerDepth==pExpr->op2 59623a8c4be7Sdrh ){ 596313449892Sdrh /* Check to see if pExpr is a duplicate of another aggregate 596413449892Sdrh ** function that is already in the pAggInfo structure 596513449892Sdrh */ 596613449892Sdrh struct AggInfo_func *pItem = pAggInfo->aFunc; 596713449892Sdrh for(i=0; i<pAggInfo->nFunc; i++, pItem++){ 596881185a51Sdrh if( sqlite3ExprCompare(0, pItem->pFExpr, pExpr, -1)==0 ){ 59692282792aSdrh break; 59702282792aSdrh } 59712282792aSdrh } 597213449892Sdrh if( i>=pAggInfo->nFunc ){ 597313449892Sdrh /* pExpr is original. Make a new entry in pAggInfo->aFunc[] 597413449892Sdrh */ 597514db2665Sdanielk1977 u8 enc = ENC(pParse->db); 59761e536953Sdanielk1977 i = addAggInfoFunc(pParse->db, pAggInfo); 597713449892Sdrh if( i>=0 ){ 59786ab3a2ecSdanielk1977 assert( !ExprHasProperty(pExpr, EP_xIsSelect) ); 597913449892Sdrh pItem = &pAggInfo->aFunc[i]; 598081185a51Sdrh pItem->pFExpr = pExpr; 59810a07c107Sdrh pItem->iMem = ++pParse->nMem; 598233e619fcSdrh assert( !ExprHasProperty(pExpr, EP_IntValue) ); 598313449892Sdrh pItem->pFunc = sqlite3FindFunction(pParse->db, 598480738d9cSdrh pExpr->u.zToken, 59856ab3a2ecSdanielk1977 pExpr->x.pList ? pExpr->x.pList->nExpr : 0, enc, 0); 5986fd357974Sdrh if( pExpr->flags & EP_Distinct ){ 5987fd357974Sdrh pItem->iDistinct = pParse->nTab++; 5988fd357974Sdrh }else{ 5989fd357974Sdrh pItem->iDistinct = -1; 5990fd357974Sdrh } 59912282792aSdrh } 599213449892Sdrh } 599313449892Sdrh /* Make pExpr point to the appropriate pAggInfo->aFunc[] entry 599413449892Sdrh */ 5995c5cd1249Sdrh assert( !ExprHasProperty(pExpr, EP_TokenOnly|EP_Reduced) ); 5996ebb6a65dSdrh ExprSetVVAProperty(pExpr, EP_NoReduce); 5997cf697396Sshane pExpr->iAgg = (i16)i; 599813449892Sdrh pExpr->pAggInfo = pAggInfo; 59993a8c4be7Sdrh return WRC_Prune; 60006e83a57fSdrh }else{ 60016e83a57fSdrh return WRC_Continue; 60026e83a57fSdrh } 60032282792aSdrh } 6004a58fdfb1Sdanielk1977 } 60057d10d5a6Sdrh return WRC_Continue; 60067d10d5a6Sdrh } 6007626a879aSdrh 6008626a879aSdrh /* 6009e8abb4caSdrh ** Analyze the pExpr expression looking for aggregate functions and 6010e8abb4caSdrh ** for variables that need to be added to AggInfo object that pNC->pAggInfo 6011e8abb4caSdrh ** points to. Additional entries are made on the AggInfo object as 6012e8abb4caSdrh ** necessary. 6013626a879aSdrh ** 6014626a879aSdrh ** This routine should only be called after the expression has been 60157d10d5a6Sdrh ** analyzed by sqlite3ResolveExprNames(). 6016626a879aSdrh */ 6017d2b3e23bSdrh void sqlite3ExprAnalyzeAggregates(NameContext *pNC, Expr *pExpr){ 60187d10d5a6Sdrh Walker w; 60197d10d5a6Sdrh w.xExprCallback = analyzeAggregate; 6020e40cc16bSdrh w.xSelectCallback = sqlite3WalkerDepthIncrease; 6021e40cc16bSdrh w.xSelectCallback2 = sqlite3WalkerDepthDecrease; 6022979dd1beSdrh w.walkerDepth = 0; 60237d10d5a6Sdrh w.u.pNC = pNC; 6024d9995031Sdan w.pParse = 0; 602520bc393cSdrh assert( pNC->pSrcList!=0 ); 60267d10d5a6Sdrh sqlite3WalkExpr(&w, pExpr); 60272282792aSdrh } 60285d9a4af9Sdrh 60295d9a4af9Sdrh /* 60305d9a4af9Sdrh ** Call sqlite3ExprAnalyzeAggregates() for every expression in an 60315d9a4af9Sdrh ** expression list. Return the number of errors. 60325d9a4af9Sdrh ** 60335d9a4af9Sdrh ** If an error is found, the analysis is cut short. 60345d9a4af9Sdrh */ 6035d2b3e23bSdrh void sqlite3ExprAnalyzeAggList(NameContext *pNC, ExprList *pList){ 60365d9a4af9Sdrh struct ExprList_item *pItem; 60375d9a4af9Sdrh int i; 60385d9a4af9Sdrh if( pList ){ 6039d2b3e23bSdrh for(pItem=pList->a, i=0; i<pList->nExpr; i++, pItem++){ 6040d2b3e23bSdrh sqlite3ExprAnalyzeAggregates(pNC, pItem->pExpr); 60415d9a4af9Sdrh } 60425d9a4af9Sdrh } 60435d9a4af9Sdrh } 6044892d3179Sdrh 6045892d3179Sdrh /* 6046ceea3321Sdrh ** Allocate a single new register for use to hold some intermediate result. 6047892d3179Sdrh */ 6048892d3179Sdrh int sqlite3GetTempReg(Parse *pParse){ 6049e55cbd72Sdrh if( pParse->nTempReg==0 ){ 6050892d3179Sdrh return ++pParse->nMem; 6051892d3179Sdrh } 60522f425f6bSdanielk1977 return pParse->aTempReg[--pParse->nTempReg]; 6053892d3179Sdrh } 6054ceea3321Sdrh 6055ceea3321Sdrh /* 6056ceea3321Sdrh ** Deallocate a register, making available for reuse for some other 6057ceea3321Sdrh ** purpose. 6058ceea3321Sdrh */ 6059892d3179Sdrh void sqlite3ReleaseTempReg(Parse *pParse, int iReg){ 606013d79502Sdrh if( iReg ){ 60613aef2fb1Sdrh sqlite3VdbeReleaseRegisters(pParse, iReg, 1, 0, 0); 606213d79502Sdrh if( pParse->nTempReg<ArraySize(pParse->aTempReg) ){ 6063892d3179Sdrh pParse->aTempReg[pParse->nTempReg++] = iReg; 6064892d3179Sdrh } 6065892d3179Sdrh } 606613d79502Sdrh } 6067892d3179Sdrh 6068892d3179Sdrh /* 6069ed24da4bSdrh ** Allocate or deallocate a block of nReg consecutive registers. 6070892d3179Sdrh */ 6071892d3179Sdrh int sqlite3GetTempRange(Parse *pParse, int nReg){ 6072e55cbd72Sdrh int i, n; 6073ed24da4bSdrh if( nReg==1 ) return sqlite3GetTempReg(pParse); 6074892d3179Sdrh i = pParse->iRangeReg; 6075e55cbd72Sdrh n = pParse->nRangeReg; 6076f49f3523Sdrh if( nReg<=n ){ 6077892d3179Sdrh pParse->iRangeReg += nReg; 6078892d3179Sdrh pParse->nRangeReg -= nReg; 6079892d3179Sdrh }else{ 6080892d3179Sdrh i = pParse->nMem+1; 6081892d3179Sdrh pParse->nMem += nReg; 6082892d3179Sdrh } 6083892d3179Sdrh return i; 6084892d3179Sdrh } 6085892d3179Sdrh void sqlite3ReleaseTempRange(Parse *pParse, int iReg, int nReg){ 6086ed24da4bSdrh if( nReg==1 ){ 6087ed24da4bSdrh sqlite3ReleaseTempReg(pParse, iReg); 6088ed24da4bSdrh return; 6089ed24da4bSdrh } 60903aef2fb1Sdrh sqlite3VdbeReleaseRegisters(pParse, iReg, nReg, 0, 0); 6091892d3179Sdrh if( nReg>pParse->nRangeReg ){ 6092892d3179Sdrh pParse->nRangeReg = nReg; 6093892d3179Sdrh pParse->iRangeReg = iReg; 6094892d3179Sdrh } 6095892d3179Sdrh } 6096cdc69557Sdrh 6097cdc69557Sdrh /* 6098cdc69557Sdrh ** Mark all temporary registers as being unavailable for reuse. 60996d2566dfSdrh ** 61006d2566dfSdrh ** Always invoke this procedure after coding a subroutine or co-routine 61016d2566dfSdrh ** that might be invoked from other parts of the code, to ensure that 61026d2566dfSdrh ** the sub/co-routine does not use registers in common with the code that 61036d2566dfSdrh ** invokes the sub/co-routine. 6104cdc69557Sdrh */ 6105cdc69557Sdrh void sqlite3ClearTempRegCache(Parse *pParse){ 6106cdc69557Sdrh pParse->nTempReg = 0; 6107cdc69557Sdrh pParse->nRangeReg = 0; 6108cdc69557Sdrh } 6109bb9b5f26Sdrh 6110bb9b5f26Sdrh /* 6111bb9b5f26Sdrh ** Validate that no temporary register falls within the range of 6112bb9b5f26Sdrh ** iFirst..iLast, inclusive. This routine is only call from within assert() 6113bb9b5f26Sdrh ** statements. 6114bb9b5f26Sdrh */ 6115bb9b5f26Sdrh #ifdef SQLITE_DEBUG 6116bb9b5f26Sdrh int sqlite3NoTempsInRange(Parse *pParse, int iFirst, int iLast){ 6117bb9b5f26Sdrh int i; 6118bb9b5f26Sdrh if( pParse->nRangeReg>0 61193963e584Sdrh && pParse->iRangeReg+pParse->nRangeReg > iFirst 61203963e584Sdrh && pParse->iRangeReg <= iLast 6121bb9b5f26Sdrh ){ 6122bb9b5f26Sdrh return 0; 6123bb9b5f26Sdrh } 6124bb9b5f26Sdrh for(i=0; i<pParse->nTempReg; i++){ 6125bb9b5f26Sdrh if( pParse->aTempReg[i]>=iFirst && pParse->aTempReg[i]<=iLast ){ 6126bb9b5f26Sdrh return 0; 6127bb9b5f26Sdrh } 6128bb9b5f26Sdrh } 6129bb9b5f26Sdrh return 1; 6130bb9b5f26Sdrh } 6131bb9b5f26Sdrh #endif /* SQLITE_DEBUG */ 6132