xref: /sqlite-3.40.0/src/expr.c (revision efb699fc)
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 */
45bf3b721fSdanielk1977 char sqlite3ExprAffinity(Expr *pExpr){
46580c8c18Sdrh   int op;
47580c8c18Sdrh   pExpr = sqlite3ExprSkipCollate(pExpr);
489bec6fb3Smistachkin   if( pExpr->flags & EP_Generic ) return 0;
49580c8c18Sdrh   op = pExpr->op;
50487e262fSdrh   if( op==TK_SELECT ){
516ab3a2ecSdanielk1977     assert( pExpr->flags&EP_xIsSelect );
526ab3a2ecSdanielk1977     return sqlite3ExprAffinity(pExpr->x.pSelect->pEList->a[0].pExpr);
53a37cdde0Sdanielk1977   }
54db45bd5eSdrh   if( op==TK_REGISTER ) op = pExpr->op2;
55487e262fSdrh #ifndef SQLITE_OMIT_CAST
56487e262fSdrh   if( op==TK_CAST ){
5733e619fcSdrh     assert( !ExprHasProperty(pExpr, EP_IntValue) );
58fdaac671Sdrh     return sqlite3AffinityType(pExpr->u.zToken, 0);
59487e262fSdrh   }
60487e262fSdrh #endif
61eda079cdSdrh   if( (op==TK_AGG_COLUMN || op==TK_COLUMN) && pExpr->y.pTab ){
62eda079cdSdrh     return sqlite3TableColumnAffinity(pExpr->y.pTab, pExpr->iColumn);
637d10d5a6Sdrh   }
6480aa5453Sdan   if( op==TK_SELECT_COLUMN ){
6580aa5453Sdan     assert( pExpr->pLeft->flags&EP_xIsSelect );
6680aa5453Sdan     return sqlite3ExprAffinity(
6780aa5453Sdan         pExpr->pLeft->x.pSelect->pEList->a[pExpr->iColumn].pExpr
6880aa5453Sdan     );
6980aa5453Sdan   }
70a37cdde0Sdanielk1977   return pExpr->affinity;
71a37cdde0Sdanielk1977 }
72a37cdde0Sdanielk1977 
7353db1458Sdrh /*
748b4c40d8Sdrh ** Set the collating sequence for expression pExpr to be the collating
75ae80ddeaSdrh ** sequence named by pToken.   Return a pointer to a new Expr node that
76ae80ddeaSdrh ** implements the COLLATE operator.
770a8a406eSdrh **
780a8a406eSdrh ** If a memory allocation error occurs, that fact is recorded in pParse->db
790a8a406eSdrh ** and the pExpr parameter is returned unchanged.
808b4c40d8Sdrh */
814ef7efadSdrh Expr *sqlite3ExprAddCollateToken(
824ef7efadSdrh   Parse *pParse,           /* Parsing context */
834ef7efadSdrh   Expr *pExpr,             /* Add the "COLLATE" clause to this expression */
8480103fc6Sdan   const Token *pCollName,  /* Name of collating sequence */
8580103fc6Sdan   int dequote              /* True to dequote pCollName */
864ef7efadSdrh ){
870a8a406eSdrh   if( pCollName->n>0 ){
8880103fc6Sdan     Expr *pNew = sqlite3ExprAlloc(pParse->db, TK_COLLATE, pCollName, dequote);
89ae80ddeaSdrh     if( pNew ){
90ae80ddeaSdrh       pNew->pLeft = pExpr;
91a4c3c87eSdrh       pNew->flags |= EP_Collate|EP_Skip;
920a8a406eSdrh       pExpr = pNew;
93ae80ddeaSdrh     }
940a8a406eSdrh   }
950a8a406eSdrh   return pExpr;
960a8a406eSdrh }
970a8a406eSdrh Expr *sqlite3ExprAddCollateString(Parse *pParse, Expr *pExpr, const char *zC){
980a8a406eSdrh   Token s;
99261d8a51Sdrh   assert( zC!=0 );
10040aced5cSdrh   sqlite3TokenInit(&s, (char*)zC);
10180103fc6Sdan   return sqlite3ExprAddCollateToken(pParse, pExpr, &s, 0);
1020a8a406eSdrh }
1030a8a406eSdrh 
1040a8a406eSdrh /*
1050b8d255cSdrh ** Skip over any TK_COLLATE operators and any unlikely()
106a4c3c87eSdrh ** or likelihood() function at the root of an expression.
1070a8a406eSdrh */
1080a8a406eSdrh Expr *sqlite3ExprSkipCollate(Expr *pExpr){
109a4c3c87eSdrh   while( pExpr && ExprHasProperty(pExpr, EP_Skip) ){
110a4c3c87eSdrh     if( ExprHasProperty(pExpr, EP_Unlikely) ){
111cca9f3d2Sdrh       assert( !ExprHasProperty(pExpr, EP_xIsSelect) );
112cca9f3d2Sdrh       assert( pExpr->x.pList->nExpr>0 );
113a4c3c87eSdrh       assert( pExpr->op==TK_FUNCTION );
114cca9f3d2Sdrh       pExpr = pExpr->x.pList->a[0].pExpr;
115cca9f3d2Sdrh     }else{
1160b8d255cSdrh       assert( pExpr->op==TK_COLLATE );
117d91eba96Sdrh       pExpr = pExpr->pLeft;
118cca9f3d2Sdrh     }
119d91eba96Sdrh   }
1200a8a406eSdrh   return pExpr;
1218b4c40d8Sdrh }
1228b4c40d8Sdrh 
1238b4c40d8Sdrh /*
124ae80ddeaSdrh ** Return the collation sequence for the expression pExpr. If
125ae80ddeaSdrh ** there is no defined collating sequence, return NULL.
126ae80ddeaSdrh **
12770efa84dSdrh ** See also: sqlite3ExprNNCollSeq()
12870efa84dSdrh **
12970efa84dSdrh ** The sqlite3ExprNNCollSeq() works the same exact that it returns the
13070efa84dSdrh ** default collation if pExpr has no defined collation.
13170efa84dSdrh **
132ae80ddeaSdrh ** The collating sequence might be determined by a COLLATE operator
133ae80ddeaSdrh ** or by the presence of a column with a defined collating sequence.
134ae80ddeaSdrh ** COLLATE operators take first precedence.  Left operands take
135ae80ddeaSdrh ** precedence over right operands.
1360202b29eSdanielk1977 */
1377cedc8d4Sdanielk1977 CollSeq *sqlite3ExprCollSeq(Parse *pParse, Expr *pExpr){
138ae80ddeaSdrh   sqlite3 *db = pParse->db;
1397cedc8d4Sdanielk1977   CollSeq *pColl = 0;
1407d10d5a6Sdrh   Expr *p = pExpr;
141261d8a51Sdrh   while( p ){
142ae80ddeaSdrh     int op = p->op;
143fbb24d10Sdrh     if( p->flags & EP_Generic ) break;
144cb0e04f9Sdrh     if( op==TK_REGISTER ) op = p->op2;
145cb0e04f9Sdrh     if( (op==TK_AGG_COLUMN || op==TK_COLUMN || op==TK_TRIGGER)
146eda079cdSdrh      && p->y.pTab!=0
147ae80ddeaSdrh     ){
148eda079cdSdrh       /* op==TK_REGISTER && p->y.pTab!=0 happens when pExpr was originally
1497d10d5a6Sdrh       ** a TK_COLUMN but was previously evaluated and cached in a register */
1507d10d5a6Sdrh       int j = p->iColumn;
1517d10d5a6Sdrh       if( j>=0 ){
152eda079cdSdrh         const char *zColl = p->y.pTab->aCol[j].zColl;
153c4a64facSdrh         pColl = sqlite3FindCollSeq(db, ENC(db), zColl, 0);
1540202b29eSdanielk1977       }
1557d10d5a6Sdrh       break;
1567d10d5a6Sdrh     }
157e081d73cSdrh     if( op==TK_CAST || op==TK_UPLUS ){
158e081d73cSdrh       p = p->pLeft;
159e081d73cSdrh       continue;
160e081d73cSdrh     }
161cb0e04f9Sdrh     if( op==TK_COLLATE ){
162e081d73cSdrh       pColl = sqlite3GetCollSeq(pParse, ENC(db), 0, p->u.zToken);
163e081d73cSdrh       break;
164e081d73cSdrh     }
165ae80ddeaSdrh     if( p->flags & EP_Collate ){
1662308ed38Sdrh       if( p->pLeft && (p->pLeft->flags & EP_Collate)!=0 ){
1677d10d5a6Sdrh         p = p->pLeft;
168ae80ddeaSdrh       }else{
1692308ed38Sdrh         Expr *pNext  = p->pRight;
1706728cd91Sdrh         /* The Expr.x union is never used at the same time as Expr.pRight */
1716728cd91Sdrh         assert( p->x.pList==0 || p->pRight==0 );
1726728cd91Sdrh         /* p->flags holds EP_Collate and p->pLeft->flags does not.  And
1736728cd91Sdrh         ** p->x.pSelect cannot.  So if p->x.pLeft exists, it must hold at
1746728cd91Sdrh         ** least one EP_Collate. Thus the following two ALWAYS. */
1756728cd91Sdrh         if( p->x.pList!=0 && ALWAYS(!ExprHasProperty(p, EP_xIsSelect)) ){
1762308ed38Sdrh           int i;
1776728cd91Sdrh           for(i=0; ALWAYS(i<p->x.pList->nExpr); i++){
1782308ed38Sdrh             if( ExprHasProperty(p->x.pList->a[i].pExpr, EP_Collate) ){
1792308ed38Sdrh               pNext = p->x.pList->a[i].pExpr;
1802308ed38Sdrh               break;
1812308ed38Sdrh             }
1822308ed38Sdrh           }
1832308ed38Sdrh         }
1842308ed38Sdrh         p = pNext;
185ae80ddeaSdrh       }
186ae80ddeaSdrh     }else{
187ae80ddeaSdrh       break;
188ae80ddeaSdrh     }
1890202b29eSdanielk1977   }
1907cedc8d4Sdanielk1977   if( sqlite3CheckCollSeq(pParse, pColl) ){
1917cedc8d4Sdanielk1977     pColl = 0;
1927cedc8d4Sdanielk1977   }
1937cedc8d4Sdanielk1977   return pColl;
1940202b29eSdanielk1977 }
1950202b29eSdanielk1977 
1960202b29eSdanielk1977 /*
19770efa84dSdrh ** Return the collation sequence for the expression pExpr. If
19870efa84dSdrh ** there is no defined collating sequence, return a pointer to the
19970efa84dSdrh ** defautl collation sequence.
20070efa84dSdrh **
20170efa84dSdrh ** See also: sqlite3ExprCollSeq()
20270efa84dSdrh **
20370efa84dSdrh ** The sqlite3ExprCollSeq() routine works the same except that it
20470efa84dSdrh ** returns NULL if there is no defined collation.
20570efa84dSdrh */
20670efa84dSdrh CollSeq *sqlite3ExprNNCollSeq(Parse *pParse, Expr *pExpr){
20770efa84dSdrh   CollSeq *p = sqlite3ExprCollSeq(pParse, pExpr);
20870efa84dSdrh   if( p==0 ) p = pParse->db->pDfltColl;
20970efa84dSdrh   assert( p!=0 );
21070efa84dSdrh   return p;
21170efa84dSdrh }
21270efa84dSdrh 
21370efa84dSdrh /*
21470efa84dSdrh ** Return TRUE if the two expressions have equivalent collating sequences.
21570efa84dSdrh */
21670efa84dSdrh int sqlite3ExprCollSeqMatch(Parse *pParse, Expr *pE1, Expr *pE2){
21770efa84dSdrh   CollSeq *pColl1 = sqlite3ExprNNCollSeq(pParse, pE1);
21870efa84dSdrh   CollSeq *pColl2 = sqlite3ExprNNCollSeq(pParse, pE2);
21970efa84dSdrh   return sqlite3StrICmp(pColl1->zName, pColl2->zName)==0;
22070efa84dSdrh }
22170efa84dSdrh 
22270efa84dSdrh /*
223626a879aSdrh ** pExpr is an operand of a comparison operator.  aff2 is the
224626a879aSdrh ** type affinity of the other operand.  This routine returns the
22553db1458Sdrh ** type affinity that should be used for the comparison operator.
22653db1458Sdrh */
227e014a838Sdanielk1977 char sqlite3CompareAffinity(Expr *pExpr, char aff2){
228bf3b721fSdanielk1977   char aff1 = sqlite3ExprAffinity(pExpr);
229e014a838Sdanielk1977   if( aff1 && aff2 ){
2308df447f0Sdrh     /* Both sides of the comparison are columns. If one has numeric
2318df447f0Sdrh     ** affinity, use that. Otherwise use no affinity.
232e014a838Sdanielk1977     */
2338a51256cSdrh     if( sqlite3IsNumericAffinity(aff1) || sqlite3IsNumericAffinity(aff2) ){
234e014a838Sdanielk1977       return SQLITE_AFF_NUMERIC;
235e014a838Sdanielk1977     }else{
23605883a34Sdrh       return SQLITE_AFF_BLOB;
237e014a838Sdanielk1977     }
238e014a838Sdanielk1977   }else if( !aff1 && !aff2 ){
2395f6a87b3Sdrh     /* Neither side of the comparison is a column.  Compare the
2405f6a87b3Sdrh     ** results directly.
241e014a838Sdanielk1977     */
24205883a34Sdrh     return SQLITE_AFF_BLOB;
243e014a838Sdanielk1977   }else{
244e014a838Sdanielk1977     /* One side is a column, the other is not. Use the columns affinity. */
245fe05af87Sdrh     assert( aff1==0 || aff2==0 );
246e014a838Sdanielk1977     return (aff1 + aff2);
247e014a838Sdanielk1977   }
248e014a838Sdanielk1977 }
249e014a838Sdanielk1977 
25053db1458Sdrh /*
25153db1458Sdrh ** pExpr is a comparison operator.  Return the type affinity that should
25253db1458Sdrh ** be applied to both operands prior to doing the comparison.
25353db1458Sdrh */
254e014a838Sdanielk1977 static char comparisonAffinity(Expr *pExpr){
255e014a838Sdanielk1977   char aff;
256e014a838Sdanielk1977   assert( pExpr->op==TK_EQ || pExpr->op==TK_IN || pExpr->op==TK_LT ||
257e014a838Sdanielk1977           pExpr->op==TK_GT || pExpr->op==TK_GE || pExpr->op==TK_LE ||
2586a2fe093Sdrh           pExpr->op==TK_NE || pExpr->op==TK_IS || pExpr->op==TK_ISNOT );
259e014a838Sdanielk1977   assert( pExpr->pLeft );
260bf3b721fSdanielk1977   aff = sqlite3ExprAffinity(pExpr->pLeft);
261e014a838Sdanielk1977   if( pExpr->pRight ){
262e014a838Sdanielk1977     aff = sqlite3CompareAffinity(pExpr->pRight, aff);
2636ab3a2ecSdanielk1977   }else if( ExprHasProperty(pExpr, EP_xIsSelect) ){
2646ab3a2ecSdanielk1977     aff = sqlite3CompareAffinity(pExpr->x.pSelect->pEList->a[0].pExpr, aff);
26513ac46eeSdrh   }else if( aff==0 ){
26605883a34Sdrh     aff = SQLITE_AFF_BLOB;
267e014a838Sdanielk1977   }
268e014a838Sdanielk1977   return aff;
269e014a838Sdanielk1977 }
270e014a838Sdanielk1977 
271e014a838Sdanielk1977 /*
272e014a838Sdanielk1977 ** pExpr is a comparison expression, eg. '=', '<', IN(...) etc.
273e014a838Sdanielk1977 ** idx_affinity is the affinity of an indexed column. Return true
274e014a838Sdanielk1977 ** if the index with affinity idx_affinity may be used to implement
275e014a838Sdanielk1977 ** the comparison in pExpr.
276e014a838Sdanielk1977 */
277e014a838Sdanielk1977 int sqlite3IndexAffinityOk(Expr *pExpr, char idx_affinity){
278e014a838Sdanielk1977   char aff = comparisonAffinity(pExpr);
2798a51256cSdrh   switch( aff ){
28005883a34Sdrh     case SQLITE_AFF_BLOB:
2818a51256cSdrh       return 1;
2828a51256cSdrh     case SQLITE_AFF_TEXT:
2838a51256cSdrh       return idx_affinity==SQLITE_AFF_TEXT;
2848a51256cSdrh     default:
2858a51256cSdrh       return sqlite3IsNumericAffinity(idx_affinity);
2868a51256cSdrh   }
287e014a838Sdanielk1977 }
288e014a838Sdanielk1977 
289a37cdde0Sdanielk1977 /*
29035573356Sdrh ** Return the P5 value that should be used for a binary comparison
291a37cdde0Sdanielk1977 ** opcode (OP_Eq, OP_Ge etc.) used to compare pExpr1 and pExpr2.
292a37cdde0Sdanielk1977 */
29335573356Sdrh static u8 binaryCompareP5(Expr *pExpr1, Expr *pExpr2, int jumpIfNull){
29435573356Sdrh   u8 aff = (char)sqlite3ExprAffinity(pExpr2);
2951bd10f8aSdrh   aff = (u8)sqlite3CompareAffinity(pExpr1, aff) | (u8)jumpIfNull;
29635573356Sdrh   return aff;
297a37cdde0Sdanielk1977 }
298a37cdde0Sdanielk1977 
299a2e00042Sdrh /*
3000202b29eSdanielk1977 ** Return a pointer to the collation sequence that should be used by
3010202b29eSdanielk1977 ** a binary comparison operator comparing pLeft and pRight.
3020202b29eSdanielk1977 **
3030202b29eSdanielk1977 ** If the left hand expression has a collating sequence type, then it is
3040202b29eSdanielk1977 ** used. Otherwise the collation sequence for the right hand expression
3050202b29eSdanielk1977 ** is used, or the default (BINARY) if neither expression has a collating
3060202b29eSdanielk1977 ** type.
307bcbb04e5Sdanielk1977 **
308bcbb04e5Sdanielk1977 ** Argument pRight (but not pLeft) may be a null pointer. In this case,
309bcbb04e5Sdanielk1977 ** it is not considered.
3100202b29eSdanielk1977 */
311bcbb04e5Sdanielk1977 CollSeq *sqlite3BinaryCompareCollSeq(
312bcbb04e5Sdanielk1977   Parse *pParse,
313bcbb04e5Sdanielk1977   Expr *pLeft,
314bcbb04e5Sdanielk1977   Expr *pRight
315bcbb04e5Sdanielk1977 ){
316ec41ddacSdrh   CollSeq *pColl;
317ec41ddacSdrh   assert( pLeft );
318ae80ddeaSdrh   if( pLeft->flags & EP_Collate ){
319ae80ddeaSdrh     pColl = sqlite3ExprCollSeq(pParse, pLeft);
320ae80ddeaSdrh   }else if( pRight && (pRight->flags & EP_Collate)!=0 ){
321ae80ddeaSdrh     pColl = sqlite3ExprCollSeq(pParse, pRight);
322ec41ddacSdrh   }else{
323ec41ddacSdrh     pColl = sqlite3ExprCollSeq(pParse, pLeft);
3240202b29eSdanielk1977     if( !pColl ){
3257cedc8d4Sdanielk1977       pColl = sqlite3ExprCollSeq(pParse, pRight);
3260202b29eSdanielk1977     }
327ec41ddacSdrh   }
3280202b29eSdanielk1977   return pColl;
3290202b29eSdanielk1977 }
3300202b29eSdanielk1977 
3310202b29eSdanielk1977 /*
332be5c89acSdrh ** Generate code for a comparison operator.
333be5c89acSdrh */
334be5c89acSdrh static int codeCompare(
335be5c89acSdrh   Parse *pParse,    /* The parsing (and code generating) context */
336be5c89acSdrh   Expr *pLeft,      /* The left operand */
337be5c89acSdrh   Expr *pRight,     /* The right operand */
338be5c89acSdrh   int opcode,       /* The comparison opcode */
33935573356Sdrh   int in1, int in2, /* Register holding operands */
340be5c89acSdrh   int dest,         /* Jump here if true.  */
341be5c89acSdrh   int jumpIfNull    /* If true, jump if either operand is NULL */
342be5c89acSdrh ){
34335573356Sdrh   int p5;
34435573356Sdrh   int addr;
34535573356Sdrh   CollSeq *p4;
34635573356Sdrh 
34735573356Sdrh   p4 = sqlite3BinaryCompareCollSeq(pParse, pLeft, pRight);
34835573356Sdrh   p5 = binaryCompareP5(pLeft, pRight, jumpIfNull);
34935573356Sdrh   addr = sqlite3VdbeAddOp4(pParse->pVdbe, opcode, in2, dest, in1,
35035573356Sdrh                            (void*)p4, P4_COLLSEQ);
3511bd10f8aSdrh   sqlite3VdbeChangeP5(pParse->pVdbe, (u8)p5);
35235573356Sdrh   return addr;
353be5c89acSdrh }
354be5c89acSdrh 
355cfbb5e82Sdan /*
356870a0705Sdan ** Return true if expression pExpr is a vector, or false otherwise.
357d832da7fSdrh **
358d832da7fSdrh ** A vector is defined as any expression that results in two or more
359d832da7fSdrh ** columns of result.  Every TK_VECTOR node is an vector because the
360d832da7fSdrh ** parser will not generate a TK_VECTOR with fewer than two entries.
361d832da7fSdrh ** But a TK_SELECT might be either a vector or a scalar. It is only
362d832da7fSdrh ** considered a vector if it has two or more result columns.
363870a0705Sdan */
364870a0705Sdan int sqlite3ExprIsVector(Expr *pExpr){
36576dbe7a8Sdrh   return sqlite3ExprVectorSize(pExpr)>1;
366870a0705Sdan }
367870a0705Sdan 
368870a0705Sdan /*
369cfbb5e82Sdan ** If the expression passed as the only argument is of type TK_VECTOR
370cfbb5e82Sdan ** return the number of expressions in the vector. Or, if the expression
371cfbb5e82Sdan ** is a sub-select, return the number of columns in the sub-select. For
372cfbb5e82Sdan ** any other type of expression, return 1.
373cfbb5e82Sdan */
37471c57db0Sdan int sqlite3ExprVectorSize(Expr *pExpr){
37512abf408Sdrh   u8 op = pExpr->op;
37612abf408Sdrh   if( op==TK_REGISTER ) op = pExpr->op2;
37712abf408Sdrh   if( op==TK_VECTOR ){
37871c57db0Sdan     return pExpr->x.pList->nExpr;
37912abf408Sdrh   }else if( op==TK_SELECT ){
38076dbe7a8Sdrh     return pExpr->x.pSelect->pEList->nExpr;
38176dbe7a8Sdrh   }else{
38276dbe7a8Sdrh     return 1;
38376dbe7a8Sdrh   }
38471c57db0Sdan }
38571c57db0Sdan 
386ba00e30aSdan /*
387fc7f27b9Sdrh ** Return a pointer to a subexpression of pVector that is the i-th
388fc7f27b9Sdrh ** column of the vector (numbered starting with 0).  The caller must
389fc7f27b9Sdrh ** ensure that i is within range.
390fc7f27b9Sdrh **
39176dbe7a8Sdrh ** If pVector is really a scalar (and "scalar" here includes subqueries
39276dbe7a8Sdrh ** that return a single column!) then return pVector unmodified.
39376dbe7a8Sdrh **
394fc7f27b9Sdrh ** pVector retains ownership of the returned subexpression.
395fc7f27b9Sdrh **
396fc7f27b9Sdrh ** If the vector is a (SELECT ...) then the expression returned is
39776dbe7a8Sdrh ** just the expression for the i-th term of the result set, and may
39876dbe7a8Sdrh ** not be ready for evaluation because the table cursor has not yet
39976dbe7a8Sdrh ** been positioned.
400ba00e30aSdan */
401fc7f27b9Sdrh Expr *sqlite3VectorFieldSubexpr(Expr *pVector, int i){
402870a0705Sdan   assert( i<sqlite3ExprVectorSize(pVector) );
403870a0705Sdan   if( sqlite3ExprIsVector(pVector) ){
4049f24b53dSdrh     assert( pVector->op2==0 || pVector->op==TK_REGISTER );
4059f24b53dSdrh     if( pVector->op==TK_SELECT || pVector->op2==TK_SELECT ){
40671c57db0Sdan       return pVector->x.pSelect->pEList->a[i].pExpr;
407870a0705Sdan     }else{
40871c57db0Sdan       return pVector->x.pList->a[i].pExpr;
40971c57db0Sdan     }
410870a0705Sdan   }
411870a0705Sdan   return pVector;
412870a0705Sdan }
413fc7f27b9Sdrh 
414fc7f27b9Sdrh /*
415fc7f27b9Sdrh ** Compute and return a new Expr object which when passed to
416fc7f27b9Sdrh ** sqlite3ExprCode() will generate all necessary code to compute
417fc7f27b9Sdrh ** the iField-th column of the vector expression pVector.
418fc7f27b9Sdrh **
4198762ec19Sdrh ** It is ok for pVector to be a scalar (as long as iField==0).
4208762ec19Sdrh ** In that case, this routine works like sqlite3ExprDup().
4218762ec19Sdrh **
422fc7f27b9Sdrh ** The caller owns the returned Expr object and is responsible for
423fc7f27b9Sdrh ** ensuring that the returned value eventually gets freed.
424fc7f27b9Sdrh **
4258762ec19Sdrh ** The caller retains ownership of pVector.  If pVector is a TK_SELECT,
426fad0e70cSdan ** then the returned object will reference pVector and so pVector must remain
4278762ec19Sdrh ** valid for the life of the returned object.  If pVector is a TK_VECTOR
4288762ec19Sdrh ** or a scalar expression, then it can be deleted as soon as this routine
42976dbe7a8Sdrh ** returns.
4308762ec19Sdrh **
4318762ec19Sdrh ** A trick to cause a TK_SELECT pVector to be deleted together with
4328762ec19Sdrh ** the returned Expr object is to attach the pVector to the pRight field
4338762ec19Sdrh ** of the returned TK_SELECT_COLUMN Expr object.
434fc7f27b9Sdrh */
435fc7f27b9Sdrh Expr *sqlite3ExprForVectorField(
436fc7f27b9Sdrh   Parse *pParse,       /* Parsing context */
437fc7f27b9Sdrh   Expr *pVector,       /* The vector.  List of expressions or a sub-SELECT */
438a1251bc4Sdrh   int iField           /* Which column of the vector to return */
439fc7f27b9Sdrh ){
440fc7f27b9Sdrh   Expr *pRet;
441a1251bc4Sdrh   if( pVector->op==TK_SELECT ){
442a1251bc4Sdrh     assert( pVector->flags & EP_xIsSelect );
443fc7f27b9Sdrh     /* The TK_SELECT_COLUMN Expr node:
444fc7f27b9Sdrh     **
445966e2911Sdrh     ** pLeft:           pVector containing TK_SELECT.  Not deleted.
4468762ec19Sdrh     ** pRight:          not used.  But recursively deleted.
447fc7f27b9Sdrh     ** iColumn:         Index of a column in pVector
448966e2911Sdrh     ** iTable:          0 or the number of columns on the LHS of an assignment
449fc7f27b9Sdrh     ** pLeft->iTable:   First in an array of register holding result, or 0
450fc7f27b9Sdrh     **                  if the result is not yet computed.
451fc7f27b9Sdrh     **
452fc7f27b9Sdrh     ** sqlite3ExprDelete() specifically skips the recursive delete of
453fc7f27b9Sdrh     ** pLeft on TK_SELECT_COLUMN nodes.  But pRight is followed, so pVector
4548762ec19Sdrh     ** can be attached to pRight to cause this node to take ownership of
4558762ec19Sdrh     ** pVector.  Typically there will be multiple TK_SELECT_COLUMN nodes
4568762ec19Sdrh     ** with the same pLeft pointer to the pVector, but only one of them
4578762ec19Sdrh     ** will own the pVector.
458fc7f27b9Sdrh     */
459abfd35eaSdrh     pRet = sqlite3PExpr(pParse, TK_SELECT_COLUMN, 0, 0);
4608bd0d58eSdrh     if( pRet ){
4618bd0d58eSdrh       pRet->iColumn = iField;
4628bd0d58eSdrh       pRet->pLeft = pVector;
4638bd0d58eSdrh     }
464fc7f27b9Sdrh     assert( pRet==0 || pRet->iTable==0 );
465fc7f27b9Sdrh   }else{
466a1251bc4Sdrh     if( pVector->op==TK_VECTOR ) pVector = pVector->x.pList->a[iField].pExpr;
467a1251bc4Sdrh     pRet = sqlite3ExprDup(pParse->db, pVector, 0);
468fc7f27b9Sdrh   }
469fc7f27b9Sdrh   return pRet;
470fc7f27b9Sdrh }
47171c57db0Sdan 
4725c288b92Sdan /*
4735c288b92Sdan ** If expression pExpr is of type TK_SELECT, generate code to evaluate
4745c288b92Sdan ** it. Return the register in which the result is stored (or, if the
4755c288b92Sdan ** sub-select returns more than one column, the first in an array
4765c288b92Sdan ** of registers in which the result is stored).
4775c288b92Sdan **
4785c288b92Sdan ** If pExpr is not a TK_SELECT expression, return 0.
4795c288b92Sdan */
4805c288b92Sdan static int exprCodeSubselect(Parse *pParse, Expr *pExpr){
4818da209b1Sdan   int reg = 0;
482f9b2e05cSdan #ifndef SQLITE_OMIT_SUBQUERY
4835c288b92Sdan   if( pExpr->op==TK_SELECT ){
48485bcdce2Sdrh     reg = sqlite3CodeSubselect(pParse, pExpr);
4858da209b1Sdan   }
486f9b2e05cSdan #endif
4878da209b1Sdan   return reg;
4888da209b1Sdan }
4898da209b1Sdan 
4905c288b92Sdan /*
4915c288b92Sdan ** Argument pVector points to a vector expression - either a TK_VECTOR
492870a0705Sdan ** or TK_SELECT that returns more than one column. This function returns
493870a0705Sdan ** the register number of a register that contains the value of
494870a0705Sdan ** element iField of the vector.
495870a0705Sdan **
496870a0705Sdan ** If pVector is a TK_SELECT expression, then code for it must have
497870a0705Sdan ** already been generated using the exprCodeSubselect() routine. In this
498870a0705Sdan ** case parameter regSelect should be the first in an array of registers
499870a0705Sdan ** containing the results of the sub-select.
500870a0705Sdan **
501870a0705Sdan ** If pVector is of type TK_VECTOR, then code for the requested field
502870a0705Sdan ** is generated. In this case (*pRegFree) may be set to the number of
503870a0705Sdan ** a temporary register to be freed by the caller before returning.
5045c288b92Sdan **
5055c288b92Sdan ** Before returning, output parameter (*ppExpr) is set to point to the
5065c288b92Sdan ** Expr object corresponding to element iElem of the vector.
5075c288b92Sdan */
5085c288b92Sdan static int exprVectorRegister(
5095c288b92Sdan   Parse *pParse,                  /* Parse context */
5105c288b92Sdan   Expr *pVector,                  /* Vector to extract element from */
511870a0705Sdan   int iField,                     /* Field to extract from pVector */
5125c288b92Sdan   int regSelect,                  /* First in array of registers */
5135c288b92Sdan   Expr **ppExpr,                  /* OUT: Expression element */
5145c288b92Sdan   int *pRegFree                   /* OUT: Temp register to free */
5155c288b92Sdan ){
51612abf408Sdrh   u8 op = pVector->op;
517c1bcd9ccSdrh   assert( op==TK_VECTOR || op==TK_REGISTER || op==TK_SELECT );
51812abf408Sdrh   if( op==TK_REGISTER ){
51912abf408Sdrh     *ppExpr = sqlite3VectorFieldSubexpr(pVector, iField);
52012abf408Sdrh     return pVector->iTable+iField;
52112abf408Sdrh   }
52212abf408Sdrh   if( op==TK_SELECT ){
523870a0705Sdan     *ppExpr = pVector->x.pSelect->pEList->a[iField].pExpr;
524870a0705Sdan      return regSelect+iField;
5255c288b92Sdan   }
526870a0705Sdan   *ppExpr = pVector->x.pList->a[iField].pExpr;
5275c288b92Sdan   return sqlite3ExprCodeTemp(pParse, *ppExpr, pRegFree);
5285c288b92Sdan }
5295c288b92Sdan 
5305c288b92Sdan /*
5315c288b92Sdan ** Expression pExpr is a comparison between two vector values. Compute
53279752b6eSdrh ** the result of the comparison (1, 0, or NULL) and write that
53379752b6eSdrh ** result into register dest.
53479752b6eSdrh **
53579752b6eSdrh ** The caller must satisfy the following preconditions:
53679752b6eSdrh **
53779752b6eSdrh **    if pExpr->op==TK_IS:      op==TK_EQ and p5==SQLITE_NULLEQ
53879752b6eSdrh **    if pExpr->op==TK_ISNOT:   op==TK_NE and p5==SQLITE_NULLEQ
53979752b6eSdrh **    otherwise:                op==pExpr->op and p5==0
5405c288b92Sdan */
54179752b6eSdrh static void codeVectorCompare(
54279752b6eSdrh   Parse *pParse,        /* Code generator context */
54379752b6eSdrh   Expr *pExpr,          /* The comparison operation */
54479752b6eSdrh   int dest,             /* Write results into this register */
54579752b6eSdrh   u8 op,                /* Comparison operator */
54679752b6eSdrh   u8 p5                 /* SQLITE_NULLEQ or zero */
54779752b6eSdrh ){
54871c57db0Sdan   Vdbe *v = pParse->pVdbe;
54971c57db0Sdan   Expr *pLeft = pExpr->pLeft;
55071c57db0Sdan   Expr *pRight = pExpr->pRight;
55171c57db0Sdan   int nLeft = sqlite3ExprVectorSize(pLeft);
55271c57db0Sdan   int i;
55371c57db0Sdan   int regLeft = 0;
55471c57db0Sdan   int regRight = 0;
55579752b6eSdrh   u8 opx = op;
55679752b6eSdrh   int addrDone = sqlite3VdbeMakeLabel(v);
55771c57db0Sdan 
558245ce62eSdrh   if( nLeft!=sqlite3ExprVectorSize(pRight) ){
559245ce62eSdrh     sqlite3ErrorMsg(pParse, "row value misused");
560245ce62eSdrh     return;
561245ce62eSdrh   }
56271c57db0Sdan   assert( pExpr->op==TK_EQ || pExpr->op==TK_NE
56371c57db0Sdan        || pExpr->op==TK_IS || pExpr->op==TK_ISNOT
56471c57db0Sdan        || pExpr->op==TK_LT || pExpr->op==TK_GT
56571c57db0Sdan        || pExpr->op==TK_LE || pExpr->op==TK_GE
56671c57db0Sdan   );
56779752b6eSdrh   assert( pExpr->op==op || (pExpr->op==TK_IS && op==TK_EQ)
56879752b6eSdrh             || (pExpr->op==TK_ISNOT && op==TK_NE) );
56979752b6eSdrh   assert( p5==0 || pExpr->op!=op );
57079752b6eSdrh   assert( p5==SQLITE_NULLEQ || pExpr->op==op );
57171c57db0Sdan 
57279752b6eSdrh   p5 |= SQLITE_STOREP2;
57379752b6eSdrh   if( opx==TK_LE ) opx = TK_LT;
57479752b6eSdrh   if( opx==TK_GE ) opx = TK_GT;
5755c288b92Sdan 
5765c288b92Sdan   regLeft = exprCodeSubselect(pParse, pLeft);
5775c288b92Sdan   regRight = exprCodeSubselect(pParse, pRight);
5785c288b92Sdan 
579321e828dSdrh   for(i=0; 1 /*Loop exits by "break"*/; i++){
5805c288b92Sdan     int regFree1 = 0, regFree2 = 0;
5815c288b92Sdan     Expr *pL, *pR;
5825c288b92Sdan     int r1, r2;
583321e828dSdrh     assert( i>=0 && i<nLeft );
5845c288b92Sdan     r1 = exprVectorRegister(pParse, pLeft, i, regLeft, &pL, &regFree1);
5855c288b92Sdan     r2 = exprVectorRegister(pParse, pRight, i, regRight, &pR, &regFree2);
58679752b6eSdrh     codeCompare(pParse, pL, pR, opx, r1, r2, dest, p5);
58779752b6eSdrh     testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt);
58879752b6eSdrh     testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le);
58979752b6eSdrh     testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt);
59079752b6eSdrh     testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge);
59179752b6eSdrh     testcase(op==OP_Eq); VdbeCoverageIf(v,op==OP_Eq);
59279752b6eSdrh     testcase(op==OP_Ne); VdbeCoverageIf(v,op==OP_Ne);
59371c57db0Sdan     sqlite3ReleaseTempReg(pParse, regFree1);
59471c57db0Sdan     sqlite3ReleaseTempReg(pParse, regFree2);
59579752b6eSdrh     if( i==nLeft-1 ){
59679752b6eSdrh       break;
59771c57db0Sdan     }
59879752b6eSdrh     if( opx==TK_EQ ){
59979752b6eSdrh       sqlite3VdbeAddOp2(v, OP_IfNot, dest, addrDone); VdbeCoverage(v);
60079752b6eSdrh       p5 |= SQLITE_KEEPNULL;
60179752b6eSdrh     }else if( opx==TK_NE ){
60279752b6eSdrh       sqlite3VdbeAddOp2(v, OP_If, dest, addrDone); VdbeCoverage(v);
60379752b6eSdrh       p5 |= SQLITE_KEEPNULL;
604a2f62925Sdrh     }else{
605a2f62925Sdrh       assert( op==TK_LT || op==TK_GT || op==TK_LE || op==TK_GE );
606a2f62925Sdrh       sqlite3VdbeAddOp2(v, OP_ElseNotEq, 0, addrDone);
60779752b6eSdrh       VdbeCoverageIf(v, op==TK_LT);
60879752b6eSdrh       VdbeCoverageIf(v, op==TK_GT);
60979752b6eSdrh       VdbeCoverageIf(v, op==TK_LE);
61079752b6eSdrh       VdbeCoverageIf(v, op==TK_GE);
61179752b6eSdrh       if( i==nLeft-2 ) opx = op;
61271c57db0Sdan     }
61379752b6eSdrh   }
61479752b6eSdrh   sqlite3VdbeResolveLabel(v, addrDone);
61579752b6eSdrh }
61671c57db0Sdan 
6174b5255acSdanielk1977 #if SQLITE_MAX_EXPR_DEPTH>0
6184b5255acSdanielk1977 /*
6194b5255acSdanielk1977 ** Check that argument nHeight is less than or equal to the maximum
6204b5255acSdanielk1977 ** expression depth allowed. If it is not, leave an error message in
6214b5255acSdanielk1977 ** pParse.
6224b5255acSdanielk1977 */
6237d10d5a6Sdrh int sqlite3ExprCheckHeight(Parse *pParse, int nHeight){
6244b5255acSdanielk1977   int rc = SQLITE_OK;
6254b5255acSdanielk1977   int mxHeight = pParse->db->aLimit[SQLITE_LIMIT_EXPR_DEPTH];
6264b5255acSdanielk1977   if( nHeight>mxHeight ){
6274b5255acSdanielk1977     sqlite3ErrorMsg(pParse,
6284b5255acSdanielk1977        "Expression tree is too large (maximum depth %d)", mxHeight
6294b5255acSdanielk1977     );
6304b5255acSdanielk1977     rc = SQLITE_ERROR;
6314b5255acSdanielk1977   }
6324b5255acSdanielk1977   return rc;
6334b5255acSdanielk1977 }
6344b5255acSdanielk1977 
6354b5255acSdanielk1977 /* The following three functions, heightOfExpr(), heightOfExprList()
6364b5255acSdanielk1977 ** and heightOfSelect(), are used to determine the maximum height
6374b5255acSdanielk1977 ** of any expression tree referenced by the structure passed as the
6384b5255acSdanielk1977 ** first argument.
6394b5255acSdanielk1977 **
6404b5255acSdanielk1977 ** If this maximum height is greater than the current value pointed
6414b5255acSdanielk1977 ** to by pnHeight, the second parameter, then set *pnHeight to that
6424b5255acSdanielk1977 ** value.
6434b5255acSdanielk1977 */
6444b5255acSdanielk1977 static void heightOfExpr(Expr *p, int *pnHeight){
6454b5255acSdanielk1977   if( p ){
6464b5255acSdanielk1977     if( p->nHeight>*pnHeight ){
6474b5255acSdanielk1977       *pnHeight = p->nHeight;
6484b5255acSdanielk1977     }
6494b5255acSdanielk1977   }
6504b5255acSdanielk1977 }
6514b5255acSdanielk1977 static void heightOfExprList(ExprList *p, int *pnHeight){
6524b5255acSdanielk1977   if( p ){
6534b5255acSdanielk1977     int i;
6544b5255acSdanielk1977     for(i=0; i<p->nExpr; i++){
6554b5255acSdanielk1977       heightOfExpr(p->a[i].pExpr, pnHeight);
6564b5255acSdanielk1977     }
6574b5255acSdanielk1977   }
6584b5255acSdanielk1977 }
6591a3a3086Sdan static void heightOfSelect(Select *pSelect, int *pnHeight){
6601a3a3086Sdan   Select *p;
6611a3a3086Sdan   for(p=pSelect; p; p=p->pPrior){
6624b5255acSdanielk1977     heightOfExpr(p->pWhere, pnHeight);
6634b5255acSdanielk1977     heightOfExpr(p->pHaving, pnHeight);
6644b5255acSdanielk1977     heightOfExpr(p->pLimit, pnHeight);
6654b5255acSdanielk1977     heightOfExprList(p->pEList, pnHeight);
6664b5255acSdanielk1977     heightOfExprList(p->pGroupBy, pnHeight);
6674b5255acSdanielk1977     heightOfExprList(p->pOrderBy, pnHeight);
6684b5255acSdanielk1977   }
6694b5255acSdanielk1977 }
6704b5255acSdanielk1977 
6714b5255acSdanielk1977 /*
6724b5255acSdanielk1977 ** Set the Expr.nHeight variable in the structure passed as an
6734b5255acSdanielk1977 ** argument. An expression with no children, Expr.pList or
6744b5255acSdanielk1977 ** Expr.pSelect member has a height of 1. Any other expression
6754b5255acSdanielk1977 ** has a height equal to the maximum height of any other
6764b5255acSdanielk1977 ** referenced Expr plus one.
6772308ed38Sdrh **
6782308ed38Sdrh ** Also propagate EP_Propagate flags up from Expr.x.pList to Expr.flags,
6792308ed38Sdrh ** if appropriate.
6804b5255acSdanielk1977 */
6814b5255acSdanielk1977 static void exprSetHeight(Expr *p){
6824b5255acSdanielk1977   int nHeight = 0;
6834b5255acSdanielk1977   heightOfExpr(p->pLeft, &nHeight);
6844b5255acSdanielk1977   heightOfExpr(p->pRight, &nHeight);
6856ab3a2ecSdanielk1977   if( ExprHasProperty(p, EP_xIsSelect) ){
6866ab3a2ecSdanielk1977     heightOfSelect(p->x.pSelect, &nHeight);
6872308ed38Sdrh   }else if( p->x.pList ){
6886ab3a2ecSdanielk1977     heightOfExprList(p->x.pList, &nHeight);
6892308ed38Sdrh     p->flags |= EP_Propagate & sqlite3ExprListFlags(p->x.pList);
6906ab3a2ecSdanielk1977   }
6914b5255acSdanielk1977   p->nHeight = nHeight + 1;
6924b5255acSdanielk1977 }
6934b5255acSdanielk1977 
6944b5255acSdanielk1977 /*
6954b5255acSdanielk1977 ** Set the Expr.nHeight variable using the exprSetHeight() function. If
6964b5255acSdanielk1977 ** the height is greater than the maximum allowed expression depth,
6974b5255acSdanielk1977 ** leave an error in pParse.
6982308ed38Sdrh **
6992308ed38Sdrh ** Also propagate all EP_Propagate flags from the Expr.x.pList into
7002308ed38Sdrh ** Expr.flags.
7014b5255acSdanielk1977 */
7022308ed38Sdrh void sqlite3ExprSetHeightAndFlags(Parse *pParse, Expr *p){
70374893a4cSdrh   if( pParse->nErr ) return;
7044b5255acSdanielk1977   exprSetHeight(p);
7057d10d5a6Sdrh   sqlite3ExprCheckHeight(pParse, p->nHeight);
7064b5255acSdanielk1977 }
7074b5255acSdanielk1977 
7084b5255acSdanielk1977 /*
7094b5255acSdanielk1977 ** Return the maximum height of any expression tree referenced
7104b5255acSdanielk1977 ** by the select statement passed as an argument.
7114b5255acSdanielk1977 */
7124b5255acSdanielk1977 int sqlite3SelectExprHeight(Select *p){
7134b5255acSdanielk1977   int nHeight = 0;
7144b5255acSdanielk1977   heightOfSelect(p, &nHeight);
7154b5255acSdanielk1977   return nHeight;
7164b5255acSdanielk1977 }
7172308ed38Sdrh #else /* ABOVE:  Height enforcement enabled.  BELOW: Height enforcement off */
7182308ed38Sdrh /*
7192308ed38Sdrh ** Propagate all EP_Propagate flags from the Expr.x.pList into
7202308ed38Sdrh ** Expr.flags.
7212308ed38Sdrh */
7222308ed38Sdrh void sqlite3ExprSetHeightAndFlags(Parse *pParse, Expr *p){
7232308ed38Sdrh   if( p && p->x.pList && !ExprHasProperty(p, EP_xIsSelect) ){
7242308ed38Sdrh     p->flags |= EP_Propagate & sqlite3ExprListFlags(p->x.pList);
7252308ed38Sdrh   }
7262308ed38Sdrh }
7274b5255acSdanielk1977 #define exprSetHeight(y)
7284b5255acSdanielk1977 #endif /* SQLITE_MAX_EXPR_DEPTH>0 */
7294b5255acSdanielk1977 
730be5c89acSdrh /*
731b7916a78Sdrh ** This routine is the core allocator for Expr nodes.
732b7916a78Sdrh **
733a76b5dfcSdrh ** Construct a new expression node and return a pointer to it.  Memory
734b7916a78Sdrh ** for this node and for the pToken argument is a single allocation
735b7916a78Sdrh ** obtained from sqlite3DbMalloc().  The calling function
736a76b5dfcSdrh ** is responsible for making sure the node eventually gets freed.
737b7916a78Sdrh **
738b7916a78Sdrh ** If dequote is true, then the token (if it exists) is dequoted.
739e792b5b4Sdrh ** If dequote is false, no dequoting is performed.  The deQuote
740b7916a78Sdrh ** parameter is ignored if pToken is NULL or if the token does not
741b7916a78Sdrh ** appear to be quoted.  If the quotes were of the form "..." (double-quotes)
742b7916a78Sdrh ** then the EP_DblQuoted flag is set on the expression node.
74333e619fcSdrh **
74433e619fcSdrh ** Special case:  If op==TK_INTEGER and pToken points to a string that
74533e619fcSdrh ** can be translated into a 32-bit integer, then the token is not
74633e619fcSdrh ** stored in u.zToken.  Instead, the integer values is written
74733e619fcSdrh ** into u.iValue and the EP_IntValue flag is set.  No extra storage
74833e619fcSdrh ** is allocated to hold the integer text and the dequote flag is ignored.
749a76b5dfcSdrh */
750b7916a78Sdrh Expr *sqlite3ExprAlloc(
751cca8a4adSdrh   sqlite3 *db,            /* Handle for sqlite3DbMallocRawNN() */
75217435752Sdrh   int op,                 /* Expression opcode */
753b7916a78Sdrh   const Token *pToken,    /* Token argument.  Might be NULL */
754b7916a78Sdrh   int dequote             /* True to dequote */
75517435752Sdrh ){
756a76b5dfcSdrh   Expr *pNew;
75733e619fcSdrh   int nExtra = 0;
758cf697396Sshane   int iValue = 0;
759b7916a78Sdrh 
760575fad65Sdrh   assert( db!=0 );
761b7916a78Sdrh   if( pToken ){
76233e619fcSdrh     if( op!=TK_INTEGER || pToken->z==0
76333e619fcSdrh           || sqlite3GetInt32(pToken->z, &iValue)==0 ){
764b7916a78Sdrh       nExtra = pToken->n+1;
765d50ffc41Sdrh       assert( iValue>=0 );
76633e619fcSdrh     }
767a76b5dfcSdrh   }
768575fad65Sdrh   pNew = sqlite3DbMallocRawNN(db, sizeof(Expr)+nExtra);
769b7916a78Sdrh   if( pNew ){
770ca3862dcSdrh     memset(pNew, 0, sizeof(Expr));
7711bd10f8aSdrh     pNew->op = (u8)op;
772a58fdfb1Sdanielk1977     pNew->iAgg = -1;
773a76b5dfcSdrh     if( pToken ){
77433e619fcSdrh       if( nExtra==0 ){
775b98a2e35Sdrh         pNew->flags |= EP_IntValue|EP_Leaf;
77633e619fcSdrh         pNew->u.iValue = iValue;
77733e619fcSdrh       }else{
77833e619fcSdrh         pNew->u.zToken = (char*)&pNew[1];
779b07028f7Sdrh         assert( pToken->z!=0 || pToken->n==0 );
780b07028f7Sdrh         if( pToken->n ) memcpy(pNew->u.zToken, pToken->z, pToken->n);
78133e619fcSdrh         pNew->u.zToken[pToken->n] = 0;
782244b9d6eSdrh         if( dequote && sqlite3Isquote(pNew->u.zToken[0]) ){
783244b9d6eSdrh           if( pNew->u.zToken[0]=='"' ) pNew->flags |= EP_DblQuoted;
78433e619fcSdrh           sqlite3Dequote(pNew->u.zToken);
785a34001c9Sdrh         }
786a34001c9Sdrh       }
78733e619fcSdrh     }
788b7916a78Sdrh #if SQLITE_MAX_EXPR_DEPTH>0
789b7916a78Sdrh     pNew->nHeight = 1;
790b7916a78Sdrh #endif
791a34001c9Sdrh   }
792a76b5dfcSdrh   return pNew;
793a76b5dfcSdrh }
794a76b5dfcSdrh 
795a76b5dfcSdrh /*
796b7916a78Sdrh ** Allocate a new expression node from a zero-terminated token that has
797b7916a78Sdrh ** already been dequoted.
798b7916a78Sdrh */
799b7916a78Sdrh Expr *sqlite3Expr(
800b7916a78Sdrh   sqlite3 *db,            /* Handle for sqlite3DbMallocZero() (may be null) */
801b7916a78Sdrh   int op,                 /* Expression opcode */
802b7916a78Sdrh   const char *zToken      /* Token argument.  Might be NULL */
803b7916a78Sdrh ){
804b7916a78Sdrh   Token x;
805b7916a78Sdrh   x.z = zToken;
806b40f06c6Sdrh   x.n = sqlite3Strlen30(zToken);
807b7916a78Sdrh   return sqlite3ExprAlloc(db, op, &x, 0);
808b7916a78Sdrh }
809b7916a78Sdrh 
810b7916a78Sdrh /*
811b7916a78Sdrh ** Attach subtrees pLeft and pRight to the Expr node pRoot.
812b7916a78Sdrh **
813b7916a78Sdrh ** If pRoot==NULL that means that a memory allocation error has occurred.
814b7916a78Sdrh ** In that case, delete the subtrees pLeft and pRight.
815b7916a78Sdrh */
816b7916a78Sdrh void sqlite3ExprAttachSubtrees(
817b7916a78Sdrh   sqlite3 *db,
818b7916a78Sdrh   Expr *pRoot,
819b7916a78Sdrh   Expr *pLeft,
820b7916a78Sdrh   Expr *pRight
821b7916a78Sdrh ){
822b7916a78Sdrh   if( pRoot==0 ){
823b7916a78Sdrh     assert( db->mallocFailed );
824b7916a78Sdrh     sqlite3ExprDelete(db, pLeft);
825b7916a78Sdrh     sqlite3ExprDelete(db, pRight);
826b7916a78Sdrh   }else{
827b7916a78Sdrh     if( pRight ){
828b7916a78Sdrh       pRoot->pRight = pRight;
829885a5b03Sdrh       pRoot->flags |= EP_Propagate & pRight->flags;
830b7916a78Sdrh     }
831b7916a78Sdrh     if( pLeft ){
832b7916a78Sdrh       pRoot->pLeft = pLeft;
833885a5b03Sdrh       pRoot->flags |= EP_Propagate & pLeft->flags;
834b7916a78Sdrh     }
835b7916a78Sdrh     exprSetHeight(pRoot);
836b7916a78Sdrh   }
837b7916a78Sdrh }
838b7916a78Sdrh 
839b7916a78Sdrh /*
84060ec914cSpeter.d.reid ** Allocate an Expr node which joins as many as two subtrees.
841b7916a78Sdrh **
842bf664469Sdrh ** One or both of the subtrees can be NULL.  Return a pointer to the new
843bf664469Sdrh ** Expr node.  Or, if an OOM error occurs, set pParse->db->mallocFailed,
844bf664469Sdrh ** free the subtrees and return NULL.
845206f3d96Sdrh */
84617435752Sdrh Expr *sqlite3PExpr(
84717435752Sdrh   Parse *pParse,          /* Parsing context */
84817435752Sdrh   int op,                 /* Expression opcode */
84917435752Sdrh   Expr *pLeft,            /* Left operand */
850abfd35eaSdrh   Expr *pRight            /* Right operand */
85117435752Sdrh ){
8525fb52caaSdrh   Expr *p;
8531167d327Sdrh   if( op==TK_AND && pParse->nErr==0 ){
8545fb52caaSdrh     /* Take advantage of short-circuit false optimization for AND */
8555fb52caaSdrh     p = sqlite3ExprAnd(pParse->db, pLeft, pRight);
8565fb52caaSdrh   }else{
857abfd35eaSdrh     p = sqlite3DbMallocRawNN(pParse->db, sizeof(Expr));
858abfd35eaSdrh     if( p ){
859abfd35eaSdrh       memset(p, 0, sizeof(Expr));
860abfd35eaSdrh       p->op = op & TKFLG_MASK;
861abfd35eaSdrh       p->iAgg = -1;
862abfd35eaSdrh     }
863b7916a78Sdrh     sqlite3ExprAttachSubtrees(pParse->db, p, pLeft, pRight);
8645fb52caaSdrh   }
8652b359bdbSdan   if( p ) {
8662b359bdbSdan     sqlite3ExprCheckHeight(pParse, p->nHeight);
8672b359bdbSdan   }
8684e0cff60Sdrh   return p;
8694e0cff60Sdrh }
8704e0cff60Sdrh 
8714e0cff60Sdrh /*
87208de4f79Sdrh ** Add pSelect to the Expr.x.pSelect field.  Or, if pExpr is NULL (due
87308de4f79Sdrh ** do a memory allocation failure) then delete the pSelect object.
87408de4f79Sdrh */
87508de4f79Sdrh void sqlite3PExprAddSelect(Parse *pParse, Expr *pExpr, Select *pSelect){
87608de4f79Sdrh   if( pExpr ){
87708de4f79Sdrh     pExpr->x.pSelect = pSelect;
87808de4f79Sdrh     ExprSetProperty(pExpr, EP_xIsSelect|EP_Subquery);
87908de4f79Sdrh     sqlite3ExprSetHeightAndFlags(pParse, pExpr);
88008de4f79Sdrh   }else{
88108de4f79Sdrh     assert( pParse->db->mallocFailed );
88208de4f79Sdrh     sqlite3SelectDelete(pParse->db, pSelect);
88308de4f79Sdrh   }
88408de4f79Sdrh }
88508de4f79Sdrh 
88608de4f79Sdrh 
88708de4f79Sdrh /*
888991a1985Sdrh ** If the expression is always either TRUE or FALSE (respectively),
889991a1985Sdrh ** then return 1.  If one cannot determine the truth value of the
890991a1985Sdrh ** expression at compile-time return 0.
891991a1985Sdrh **
892991a1985Sdrh ** This is an optimization.  If is OK to return 0 here even if
893991a1985Sdrh ** the expression really is always false or false (a false negative).
894991a1985Sdrh ** But it is a bug to return 1 if the expression might have different
895991a1985Sdrh ** boolean values in different circumstances (a false positive.)
8965fb52caaSdrh **
8975fb52caaSdrh ** Note that if the expression is part of conditional for a
8985fb52caaSdrh ** LEFT JOIN, then we cannot determine at compile-time whether or not
8995fb52caaSdrh ** is it true or false, so always return 0.
9005fb52caaSdrh */
901991a1985Sdrh static int exprAlwaysTrue(Expr *p){
902991a1985Sdrh   int v = 0;
903991a1985Sdrh   if( ExprHasProperty(p, EP_FromJoin) ) return 0;
904991a1985Sdrh   if( !sqlite3ExprIsInteger(p, &v) ) return 0;
905991a1985Sdrh   return v!=0;
906991a1985Sdrh }
9075fb52caaSdrh static int exprAlwaysFalse(Expr *p){
9085fb52caaSdrh   int v = 0;
9095fb52caaSdrh   if( ExprHasProperty(p, EP_FromJoin) ) return 0;
9105fb52caaSdrh   if( !sqlite3ExprIsInteger(p, &v) ) return 0;
9115fb52caaSdrh   return v==0;
9125fb52caaSdrh }
9135fb52caaSdrh 
9145fb52caaSdrh /*
91591bb0eedSdrh ** Join two expressions using an AND operator.  If either expression is
91691bb0eedSdrh ** NULL, then just return the other expression.
9175fb52caaSdrh **
9185fb52caaSdrh ** If one side or the other of the AND is known to be false, then instead
9195fb52caaSdrh ** of returning an AND expression, just return a constant expression with
9205fb52caaSdrh ** a value of false.
92191bb0eedSdrh */
9221e536953Sdanielk1977 Expr *sqlite3ExprAnd(sqlite3 *db, Expr *pLeft, Expr *pRight){
92391bb0eedSdrh   if( pLeft==0 ){
92491bb0eedSdrh     return pRight;
92591bb0eedSdrh   }else if( pRight==0 ){
92691bb0eedSdrh     return pLeft;
9275fb52caaSdrh   }else if( exprAlwaysFalse(pLeft) || exprAlwaysFalse(pRight) ){
9285fb52caaSdrh     sqlite3ExprDelete(db, pLeft);
9295fb52caaSdrh     sqlite3ExprDelete(db, pRight);
9305fb52caaSdrh     return sqlite3ExprAlloc(db, TK_INTEGER, &sqlite3IntTokens[0], 0);
93191bb0eedSdrh   }else{
932b7916a78Sdrh     Expr *pNew = sqlite3ExprAlloc(db, TK_AND, 0, 0);
933b7916a78Sdrh     sqlite3ExprAttachSubtrees(db, pNew, pLeft, pRight);
934b7916a78Sdrh     return pNew;
935a76b5dfcSdrh   }
936a76b5dfcSdrh }
937a76b5dfcSdrh 
938a76b5dfcSdrh /*
939a76b5dfcSdrh ** Construct a new expression node for a function with multiple
940a76b5dfcSdrh ** arguments.
941a76b5dfcSdrh */
942954733b3Sdrh Expr *sqlite3ExprFunction(
943954733b3Sdrh   Parse *pParse,        /* Parsing context */
944954733b3Sdrh   ExprList *pList,      /* Argument list */
945954733b3Sdrh   Token *pToken,        /* Name of the function */
946954733b3Sdrh   int eDistinct         /* SF_Distinct or SF_ALL or 0 */
947954733b3Sdrh ){
948a76b5dfcSdrh   Expr *pNew;
949633e6d57Sdrh   sqlite3 *db = pParse->db;
9504b202ae2Sdanielk1977   assert( pToken );
951b7916a78Sdrh   pNew = sqlite3ExprAlloc(db, TK_FUNCTION, pToken, 1);
952a76b5dfcSdrh   if( pNew==0 ){
953d9da78a2Sdrh     sqlite3ExprListDelete(db, pList); /* Avoid memory leak when malloc fails */
954a76b5dfcSdrh     return 0;
955a76b5dfcSdrh   }
956954733b3Sdrh   if( pList && pList->nExpr > pParse->db->aLimit[SQLITE_LIMIT_FUNCTION_ARG] ){
957954733b3Sdrh     sqlite3ErrorMsg(pParse, "too many arguments on function %T", pToken);
958954733b3Sdrh   }
9596ab3a2ecSdanielk1977   pNew->x.pList = pList;
960fca23557Sdrh   ExprSetProperty(pNew, EP_HasFunc);
9616ab3a2ecSdanielk1977   assert( !ExprHasProperty(pNew, EP_xIsSelect) );
9622308ed38Sdrh   sqlite3ExprSetHeightAndFlags(pParse, pNew);
963954733b3Sdrh   if( eDistinct==SF_Distinct ) ExprSetProperty(pNew, EP_Distinct);
964a76b5dfcSdrh   return pNew;
965a76b5dfcSdrh }
966a76b5dfcSdrh 
967a76b5dfcSdrh /*
968fa6bc000Sdrh ** Assign a variable number to an expression that encodes a wildcard
969fa6bc000Sdrh ** in the original SQL statement.
970fa6bc000Sdrh **
971fa6bc000Sdrh ** Wildcards consisting of a single "?" are assigned the next sequential
972fa6bc000Sdrh ** variable number.
973fa6bc000Sdrh **
974fa6bc000Sdrh ** Wildcards of the form "?nnn" are assigned the number "nnn".  We make
9759bf755ccSdrh ** sure "nnn" is not too big to avoid a denial of service attack when
976fa6bc000Sdrh ** the SQL statement comes from an external source.
977fa6bc000Sdrh **
97851f49f17Sdrh ** Wildcards of the form ":aaa", "@aaa", or "$aaa" are assigned the same number
979fa6bc000Sdrh ** as the previous instance of the same wildcard.  Or if this is the first
98060ec914cSpeter.d.reid ** instance of the wildcard, the next sequential variable number is
981fa6bc000Sdrh ** assigned.
982fa6bc000Sdrh */
983de25a88cSdrh void sqlite3ExprAssignVarNumber(Parse *pParse, Expr *pExpr, u32 n){
98417435752Sdrh   sqlite3 *db = pParse->db;
985b7916a78Sdrh   const char *z;
986f326d66dSdrh   ynVar x;
98717435752Sdrh 
988fa6bc000Sdrh   if( pExpr==0 ) return;
989c5cd1249Sdrh   assert( !ExprHasProperty(pExpr, EP_IntValue|EP_Reduced|EP_TokenOnly) );
99033e619fcSdrh   z = pExpr->u.zToken;
991b7916a78Sdrh   assert( z!=0 );
992b7916a78Sdrh   assert( z[0]!=0 );
993b1ed717fSmistachkin   assert( n==(u32)sqlite3Strlen30(z) );
994b7916a78Sdrh   if( z[1]==0 ){
995fa6bc000Sdrh     /* Wildcard of the form "?".  Assign the next variable number */
996b7916a78Sdrh     assert( z[0]=='?' );
997f326d66dSdrh     x = (ynVar)(++pParse->nVar);
998124c0b49Sdrh   }else{
999f326d66dSdrh     int doAdd = 0;
1000124c0b49Sdrh     if( z[0]=='?' ){
1001fa6bc000Sdrh       /* Wildcard of the form "?nnn".  Convert "nnn" to an integer and
1002fa6bc000Sdrh       ** use it as the variable number */
1003c8d735aeSdan       i64 i;
100418814dfbSdrh       int bOk;
100518814dfbSdrh       if( n==2 ){ /*OPTIMIZATION-IF-TRUE*/
100618814dfbSdrh         i = z[1]-'0';  /* The common case of ?N for a single digit N */
100718814dfbSdrh         bOk = 1;
100818814dfbSdrh       }else{
100918814dfbSdrh         bOk = 0==sqlite3Atoi64(&z[1], &i, n-1, SQLITE_UTF8);
101018814dfbSdrh       }
1011c5499befSdrh       testcase( i==0 );
1012c5499befSdrh       testcase( i==1 );
1013c5499befSdrh       testcase( i==db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER]-1 );
1014c5499befSdrh       testcase( i==db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER] );
1015c8d735aeSdan       if( bOk==0 || i<1 || i>db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER] ){
1016fa6bc000Sdrh         sqlite3ErrorMsg(pParse, "variable number must be between ?1 and ?%d",
1017bb4957f8Sdrh             db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER]);
1018c9b39288Sdrh         return;
1019fa6bc000Sdrh       }
10208e74e7baSdrh       x = (ynVar)i;
1021f326d66dSdrh       if( x>pParse->nVar ){
1022f326d66dSdrh         pParse->nVar = (int)x;
1023f326d66dSdrh         doAdd = 1;
1024f326d66dSdrh       }else if( sqlite3VListNumToName(pParse->pVList, x)==0 ){
1025f326d66dSdrh         doAdd = 1;
1026fa6bc000Sdrh       }
1027fa6bc000Sdrh     }else{
102851f49f17Sdrh       /* Wildcards like ":aaa", "$aaa" or "@aaa".  Reuse the same variable
1029fa6bc000Sdrh       ** number as the prior appearance of the same name, or if the name
1030fa6bc000Sdrh       ** has never appeared before, reuse the same variable number
1031fa6bc000Sdrh       */
10329bf755ccSdrh       x = (ynVar)sqlite3VListNameToNum(pParse->pVList, z, n);
10339bf755ccSdrh       if( x==0 ){
10349bf755ccSdrh         x = (ynVar)(++pParse->nVar);
1035f326d66dSdrh         doAdd = 1;
1036f326d66dSdrh       }
1037f326d66dSdrh     }
1038f326d66dSdrh     if( doAdd ){
10399bf755ccSdrh       pParse->pVList = sqlite3VListAdd(db, pParse->pVList, z, n, x);
1040fa6bc000Sdrh     }
1041fa6bc000Sdrh   }
1042c9b39288Sdrh   pExpr->iColumn = x;
1043f326d66dSdrh   if( x>db->aLimit[SQLITE_LIMIT_VARIABLE_NUMBER] ){
1044832b2664Sdanielk1977     sqlite3ErrorMsg(pParse, "too many SQL variables");
1045832b2664Sdanielk1977   }
1046fa6bc000Sdrh }
1047fa6bc000Sdrh 
1048fa6bc000Sdrh /*
1049f6963f99Sdan ** Recursively delete an expression tree.
1050a2e00042Sdrh */
10514f0010b1Sdrh static SQLITE_NOINLINE void sqlite3ExprDeleteNN(sqlite3 *db, Expr *p){
10524f0010b1Sdrh   assert( p!=0 );
1053d50ffc41Sdrh   /* Sanity check: Assert that the IntValue is non-negative if it exists */
1054d50ffc41Sdrh   assert( !ExprHasProperty(p, EP_IntValue) || p->u.iValue>=0 );
1055eda079cdSdrh 
1056eda079cdSdrh   assert( !ExprHasProperty(p, EP_WinFunc) || p->y.pWin!=0 || db->mallocFailed );
1057eda079cdSdrh   assert( p->op!=TK_FUNCTION || ExprHasProperty(p, EP_TokenOnly|EP_Reduced)
1058eda079cdSdrh           || p->y.pWin==0 || ExprHasProperty(p, EP_WinFunc) );
1059209bc522Sdrh #ifdef SQLITE_DEBUG
1060209bc522Sdrh   if( ExprHasProperty(p, EP_Leaf) && !ExprHasProperty(p, EP_TokenOnly) ){
1061209bc522Sdrh     assert( p->pLeft==0 );
1062209bc522Sdrh     assert( p->pRight==0 );
1063209bc522Sdrh     assert( p->x.pSelect==0 );
1064209bc522Sdrh   }
1065209bc522Sdrh #endif
1066209bc522Sdrh   if( !ExprHasProperty(p, (EP_TokenOnly|EP_Leaf)) ){
1067c5cd1249Sdrh     /* The Expr.x union is never used at the same time as Expr.pRight */
1068c5cd1249Sdrh     assert( p->x.pList==0 || p->pRight==0 );
10694910a76dSdrh     if( p->pLeft && p->op!=TK_SELECT_COLUMN ) sqlite3ExprDeleteNN(db, p->pLeft);
1070d1086679Sdrh     if( p->pRight ){
1071d1086679Sdrh       sqlite3ExprDeleteNN(db, p->pRight);
1072d1086679Sdrh     }else if( ExprHasProperty(p, EP_xIsSelect) ){
10736ab3a2ecSdanielk1977       sqlite3SelectDelete(db, p->x.pSelect);
10746ab3a2ecSdanielk1977     }else{
10756ab3a2ecSdanielk1977       sqlite3ExprListDelete(db, p->x.pList);
10766ab3a2ecSdanielk1977     }
1077eda079cdSdrh     if( ExprHasProperty(p, EP_WinFunc) ){
1078eda079cdSdrh       assert( p->op==TK_FUNCTION );
1079eda079cdSdrh       sqlite3WindowDelete(db, p->y.pWin);
108086fb6e17Sdan     }
10816ab3a2ecSdanielk1977   }
1082209bc522Sdrh   if( ExprHasProperty(p, EP_MemToken) ) sqlite3DbFree(db, p->u.zToken);
108333e619fcSdrh   if( !ExprHasProperty(p, EP_Static) ){
1084dbd6a7dcSdrh     sqlite3DbFreeNN(db, p);
1085a2e00042Sdrh   }
108633e619fcSdrh }
10874f0010b1Sdrh void sqlite3ExprDelete(sqlite3 *db, Expr *p){
10884f0010b1Sdrh   if( p ) sqlite3ExprDeleteNN(db, p);
10894f0010b1Sdrh }
1090a2e00042Sdrh 
1091d2687b77Sdrh /*
10926ab3a2ecSdanielk1977 ** Return the number of bytes allocated for the expression structure
10936ab3a2ecSdanielk1977 ** passed as the first argument. This is always one of EXPR_FULLSIZE,
10946ab3a2ecSdanielk1977 ** EXPR_REDUCEDSIZE or EXPR_TOKENONLYSIZE.
10956ab3a2ecSdanielk1977 */
10966ab3a2ecSdanielk1977 static int exprStructSize(Expr *p){
10976ab3a2ecSdanielk1977   if( ExprHasProperty(p, EP_TokenOnly) ) return EXPR_TOKENONLYSIZE;
10986ab3a2ecSdanielk1977   if( ExprHasProperty(p, EP_Reduced) ) return EXPR_REDUCEDSIZE;
10996ab3a2ecSdanielk1977   return EXPR_FULLSIZE;
11006ab3a2ecSdanielk1977 }
11016ab3a2ecSdanielk1977 
11026ab3a2ecSdanielk1977 /*
110333e619fcSdrh ** The dupedExpr*Size() routines each return the number of bytes required
110433e619fcSdrh ** to store a copy of an expression or expression tree.  They differ in
110533e619fcSdrh ** how much of the tree is measured.
110633e619fcSdrh **
110733e619fcSdrh **     dupedExprStructSize()     Size of only the Expr structure
110833e619fcSdrh **     dupedExprNodeSize()       Size of Expr + space for token
110933e619fcSdrh **     dupedExprSize()           Expr + token + subtree components
111033e619fcSdrh **
111133e619fcSdrh ***************************************************************************
111233e619fcSdrh **
111333e619fcSdrh ** The dupedExprStructSize() function returns two values OR-ed together:
111433e619fcSdrh ** (1) the space required for a copy of the Expr structure only and
111533e619fcSdrh ** (2) the EP_xxx flags that indicate what the structure size should be.
111633e619fcSdrh ** The return values is always one of:
111733e619fcSdrh **
111833e619fcSdrh **      EXPR_FULLSIZE
111933e619fcSdrh **      EXPR_REDUCEDSIZE   | EP_Reduced
112033e619fcSdrh **      EXPR_TOKENONLYSIZE | EP_TokenOnly
112133e619fcSdrh **
112233e619fcSdrh ** The size of the structure can be found by masking the return value
112333e619fcSdrh ** of this routine with 0xfff.  The flags can be found by masking the
112433e619fcSdrh ** return value with EP_Reduced|EP_TokenOnly.
112533e619fcSdrh **
112633e619fcSdrh ** Note that with flags==EXPRDUP_REDUCE, this routines works on full-size
112733e619fcSdrh ** (unreduced) Expr objects as they or originally constructed by the parser.
112833e619fcSdrh ** During expression analysis, extra information is computed and moved into
1129c95f38d4Sdan ** later parts of the Expr object and that extra information might get chopped
113033e619fcSdrh ** off if the expression is reduced.  Note also that it does not work to
113160ec914cSpeter.d.reid ** make an EXPRDUP_REDUCE copy of a reduced expression.  It is only legal
113233e619fcSdrh ** to reduce a pristine expression tree from the parser.  The implementation
113333e619fcSdrh ** of dupedExprStructSize() contain multiple assert() statements that attempt
113433e619fcSdrh ** to enforce this constraint.
11356ab3a2ecSdanielk1977 */
11366ab3a2ecSdanielk1977 static int dupedExprStructSize(Expr *p, int flags){
11376ab3a2ecSdanielk1977   int nSize;
113833e619fcSdrh   assert( flags==EXPRDUP_REDUCE || flags==0 ); /* Only one flag value allowed */
1139aecd8021Sdrh   assert( EXPR_FULLSIZE<=0xfff );
1140aecd8021Sdrh   assert( (0xfff & (EP_Reduced|EP_TokenOnly))==0 );
114167a9b8edSdan   if( 0==flags || p->op==TK_SELECT_COLUMN
114267a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC
1143eda079cdSdrh    || ExprHasProperty(p, EP_WinFunc)
114467a9b8edSdan #endif
114567a9b8edSdan   ){
11466ab3a2ecSdanielk1977     nSize = EXPR_FULLSIZE;
11476ab3a2ecSdanielk1977   }else{
1148c5cd1249Sdrh     assert( !ExprHasProperty(p, EP_TokenOnly|EP_Reduced) );
114933e619fcSdrh     assert( !ExprHasProperty(p, EP_FromJoin) );
1150c5cd1249Sdrh     assert( !ExprHasProperty(p, EP_MemToken) );
1151ebb6a65dSdrh     assert( !ExprHasProperty(p, EP_NoReduce) );
1152aecd8021Sdrh     if( p->pLeft || p->x.pList ){
115333e619fcSdrh       nSize = EXPR_REDUCEDSIZE | EP_Reduced;
115433e619fcSdrh     }else{
1155aecd8021Sdrh       assert( p->pRight==0 );
115633e619fcSdrh       nSize = EXPR_TOKENONLYSIZE | EP_TokenOnly;
115733e619fcSdrh     }
11586ab3a2ecSdanielk1977   }
11596ab3a2ecSdanielk1977   return nSize;
11606ab3a2ecSdanielk1977 }
11616ab3a2ecSdanielk1977 
11626ab3a2ecSdanielk1977 /*
116333e619fcSdrh ** This function returns the space in bytes required to store the copy
116433e619fcSdrh ** of the Expr structure and a copy of the Expr.u.zToken string (if that
116533e619fcSdrh ** string is defined.)
11666ab3a2ecSdanielk1977 */
11676ab3a2ecSdanielk1977 static int dupedExprNodeSize(Expr *p, int flags){
116833e619fcSdrh   int nByte = dupedExprStructSize(p, flags) & 0xfff;
116933e619fcSdrh   if( !ExprHasProperty(p, EP_IntValue) && p->u.zToken ){
11707301e774Sdrh     nByte += sqlite3Strlen30NN(p->u.zToken)+1;
11716ab3a2ecSdanielk1977   }
1172bc73971dSdanielk1977   return ROUND8(nByte);
11736ab3a2ecSdanielk1977 }
11746ab3a2ecSdanielk1977 
11756ab3a2ecSdanielk1977 /*
11766ab3a2ecSdanielk1977 ** Return the number of bytes required to create a duplicate of the
11776ab3a2ecSdanielk1977 ** expression passed as the first argument. The second argument is a
11786ab3a2ecSdanielk1977 ** mask containing EXPRDUP_XXX flags.
11796ab3a2ecSdanielk1977 **
11806ab3a2ecSdanielk1977 ** The value returned includes space to create a copy of the Expr struct
118133e619fcSdrh ** itself and the buffer referred to by Expr.u.zToken, if any.
11826ab3a2ecSdanielk1977 **
11836ab3a2ecSdanielk1977 ** If the EXPRDUP_REDUCE flag is set, then the return value includes
11846ab3a2ecSdanielk1977 ** space to duplicate all Expr nodes in the tree formed by Expr.pLeft
11856ab3a2ecSdanielk1977 ** and Expr.pRight variables (but not for any structures pointed to or
11866ab3a2ecSdanielk1977 ** descended from the Expr.x.pList or Expr.x.pSelect variables).
11876ab3a2ecSdanielk1977 */
11886ab3a2ecSdanielk1977 static int dupedExprSize(Expr *p, int flags){
11896ab3a2ecSdanielk1977   int nByte = 0;
11906ab3a2ecSdanielk1977   if( p ){
11916ab3a2ecSdanielk1977     nByte = dupedExprNodeSize(p, flags);
11926ab3a2ecSdanielk1977     if( flags&EXPRDUP_REDUCE ){
1193b7916a78Sdrh       nByte += dupedExprSize(p->pLeft, flags) + dupedExprSize(p->pRight, flags);
11946ab3a2ecSdanielk1977     }
11956ab3a2ecSdanielk1977   }
11966ab3a2ecSdanielk1977   return nByte;
11976ab3a2ecSdanielk1977 }
11986ab3a2ecSdanielk1977 
11996ab3a2ecSdanielk1977 /*
12006ab3a2ecSdanielk1977 ** This function is similar to sqlite3ExprDup(), except that if pzBuffer
12016ab3a2ecSdanielk1977 ** is not NULL then *pzBuffer is assumed to point to a buffer large enough
120233e619fcSdrh ** to store the copy of expression p, the copies of p->u.zToken
12036ab3a2ecSdanielk1977 ** (if applicable), and the copies of the p->pLeft and p->pRight expressions,
120460ec914cSpeter.d.reid ** if any. Before returning, *pzBuffer is set to the first byte past the
12056ab3a2ecSdanielk1977 ** portion of the buffer copied into by this function.
12066ab3a2ecSdanielk1977 */
12073c19469cSdrh static Expr *exprDup(sqlite3 *db, Expr *p, int dupFlags, u8 **pzBuffer){
12083c19469cSdrh   Expr *pNew;           /* Value to return */
12093c19469cSdrh   u8 *zAlloc;           /* Memory space from which to build Expr object */
12103c19469cSdrh   u32 staticFlag;       /* EP_Static if space not obtained from malloc */
12116ab3a2ecSdanielk1977 
12123c19469cSdrh   assert( db!=0 );
12133c19469cSdrh   assert( p );
12143c19469cSdrh   assert( dupFlags==0 || dupFlags==EXPRDUP_REDUCE );
12153c19469cSdrh   assert( pzBuffer==0 || dupFlags==EXPRDUP_REDUCE );
12166ab3a2ecSdanielk1977 
12176ab3a2ecSdanielk1977   /* Figure out where to write the new Expr structure. */
12186ab3a2ecSdanielk1977   if( pzBuffer ){
12196ab3a2ecSdanielk1977     zAlloc = *pzBuffer;
122033e619fcSdrh     staticFlag = EP_Static;
12216ab3a2ecSdanielk1977   }else{
12223c19469cSdrh     zAlloc = sqlite3DbMallocRawNN(db, dupedExprSize(p, dupFlags));
12233c19469cSdrh     staticFlag = 0;
12246ab3a2ecSdanielk1977   }
12256ab3a2ecSdanielk1977   pNew = (Expr *)zAlloc;
12266ab3a2ecSdanielk1977 
12276ab3a2ecSdanielk1977   if( pNew ){
12286ab3a2ecSdanielk1977     /* Set nNewSize to the size allocated for the structure pointed to
12296ab3a2ecSdanielk1977     ** by pNew. This is either EXPR_FULLSIZE, EXPR_REDUCEDSIZE or
12306ab3a2ecSdanielk1977     ** EXPR_TOKENONLYSIZE. nToken is set to the number of bytes consumed
123133e619fcSdrh     ** by the copy of the p->u.zToken string (if any).
12326ab3a2ecSdanielk1977     */
12333c19469cSdrh     const unsigned nStructSize = dupedExprStructSize(p, dupFlags);
123433e619fcSdrh     const int nNewSize = nStructSize & 0xfff;
123533e619fcSdrh     int nToken;
123633e619fcSdrh     if( !ExprHasProperty(p, EP_IntValue) && p->u.zToken ){
123733e619fcSdrh       nToken = sqlite3Strlen30(p->u.zToken) + 1;
123833e619fcSdrh     }else{
123933e619fcSdrh       nToken = 0;
124033e619fcSdrh     }
12413c19469cSdrh     if( dupFlags ){
12426ab3a2ecSdanielk1977       assert( ExprHasProperty(p, EP_Reduced)==0 );
12436ab3a2ecSdanielk1977       memcpy(zAlloc, p, nNewSize);
12446ab3a2ecSdanielk1977     }else{
12453e6a1411Sdan       u32 nSize = (u32)exprStructSize(p);
12466ab3a2ecSdanielk1977       memcpy(zAlloc, p, nSize);
124772ea29d7Sdrh       if( nSize<EXPR_FULLSIZE ){
12486ab3a2ecSdanielk1977         memset(&zAlloc[nSize], 0, EXPR_FULLSIZE-nSize);
12496ab3a2ecSdanielk1977       }
125072ea29d7Sdrh     }
12516ab3a2ecSdanielk1977 
125233e619fcSdrh     /* Set the EP_Reduced, EP_TokenOnly, and EP_Static flags appropriately. */
1253c5cd1249Sdrh     pNew->flags &= ~(EP_Reduced|EP_TokenOnly|EP_Static|EP_MemToken);
125433e619fcSdrh     pNew->flags |= nStructSize & (EP_Reduced|EP_TokenOnly);
125533e619fcSdrh     pNew->flags |= staticFlag;
12566ab3a2ecSdanielk1977 
125733e619fcSdrh     /* Copy the p->u.zToken string, if any. */
12586ab3a2ecSdanielk1977     if( nToken ){
125933e619fcSdrh       char *zToken = pNew->u.zToken = (char*)&zAlloc[nNewSize];
126033e619fcSdrh       memcpy(zToken, p->u.zToken, nToken);
12616ab3a2ecSdanielk1977     }
12626ab3a2ecSdanielk1977 
1263209bc522Sdrh     if( 0==((p->flags|pNew->flags) & (EP_TokenOnly|EP_Leaf)) ){
12646ab3a2ecSdanielk1977       /* Fill in the pNew->x.pSelect or pNew->x.pList member. */
12656ab3a2ecSdanielk1977       if( ExprHasProperty(p, EP_xIsSelect) ){
12663c19469cSdrh         pNew->x.pSelect = sqlite3SelectDup(db, p->x.pSelect, dupFlags);
12676ab3a2ecSdanielk1977       }else{
12683c19469cSdrh         pNew->x.pList = sqlite3ExprListDup(db, p->x.pList, dupFlags);
12696ab3a2ecSdanielk1977       }
12706ab3a2ecSdanielk1977     }
12716ab3a2ecSdanielk1977 
12726ab3a2ecSdanielk1977     /* Fill in pNew->pLeft and pNew->pRight. */
127353988068Sdrh     if( ExprHasProperty(pNew, EP_Reduced|EP_TokenOnly|EP_WinFunc) ){
12743c19469cSdrh       zAlloc += dupedExprNodeSize(p, dupFlags);
1275209bc522Sdrh       if( !ExprHasProperty(pNew, EP_TokenOnly|EP_Leaf) ){
12763c19469cSdrh         pNew->pLeft = p->pLeft ?
12773c19469cSdrh                       exprDup(db, p->pLeft, EXPRDUP_REDUCE, &zAlloc) : 0;
12783c19469cSdrh         pNew->pRight = p->pRight ?
12793c19469cSdrh                        exprDup(db, p->pRight, EXPRDUP_REDUCE, &zAlloc) : 0;
12806ab3a2ecSdanielk1977       }
128167a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC
1282eda079cdSdrh       if( ExprHasProperty(p, EP_WinFunc) ){
1283eda079cdSdrh         pNew->y.pWin = sqlite3WindowDup(db, pNew, p->y.pWin);
1284eda079cdSdrh         assert( ExprHasProperty(pNew, EP_WinFunc) );
1285e2f781b9Sdan       }
128667a9b8edSdan #endif /* SQLITE_OMIT_WINDOWFUNC */
128753988068Sdrh       if( pzBuffer ){
128853988068Sdrh         *pzBuffer = zAlloc;
128953988068Sdrh       }
129053988068Sdrh     }else{
1291209bc522Sdrh       if( !ExprHasProperty(p, EP_TokenOnly|EP_Leaf) ){
12929854260bSdrh         if( pNew->op==TK_SELECT_COLUMN ){
12939854260bSdrh           pNew->pLeft = p->pLeft;
129447073f62Sdrh           assert( p->iColumn==0 || p->pRight==0 );
129547073f62Sdrh           assert( p->pRight==0  || p->pRight==p->pLeft );
12969854260bSdrh         }else{
12976ab3a2ecSdanielk1977           pNew->pLeft = sqlite3ExprDup(db, p->pLeft, 0);
12989854260bSdrh         }
12996ab3a2ecSdanielk1977         pNew->pRight = sqlite3ExprDup(db, p->pRight, 0);
13006ab3a2ecSdanielk1977       }
13016ab3a2ecSdanielk1977     }
13026ab3a2ecSdanielk1977   }
13036ab3a2ecSdanielk1977   return pNew;
13046ab3a2ecSdanielk1977 }
13056ab3a2ecSdanielk1977 
13066ab3a2ecSdanielk1977 /*
1307bfe31e7fSdan ** Create and return a deep copy of the object passed as the second
1308bfe31e7fSdan ** argument. If an OOM condition is encountered, NULL is returned
1309bfe31e7fSdan ** and the db->mallocFailed flag set.
1310bfe31e7fSdan */
1311eede6a53Sdan #ifndef SQLITE_OMIT_CTE
1312bfe31e7fSdan static With *withDup(sqlite3 *db, With *p){
13134e9119d9Sdan   With *pRet = 0;
13144e9119d9Sdan   if( p ){
13154e9119d9Sdan     int nByte = sizeof(*p) + sizeof(p->a[0]) * (p->nCte-1);
13164e9119d9Sdan     pRet = sqlite3DbMallocZero(db, nByte);
13174e9119d9Sdan     if( pRet ){
13184e9119d9Sdan       int i;
13194e9119d9Sdan       pRet->nCte = p->nCte;
13204e9119d9Sdan       for(i=0; i<p->nCte; i++){
13214e9119d9Sdan         pRet->a[i].pSelect = sqlite3SelectDup(db, p->a[i].pSelect, 0);
13224e9119d9Sdan         pRet->a[i].pCols = sqlite3ExprListDup(db, p->a[i].pCols, 0);
13234e9119d9Sdan         pRet->a[i].zName = sqlite3DbStrDup(db, p->a[i].zName);
13244e9119d9Sdan       }
13254e9119d9Sdan     }
13264e9119d9Sdan   }
13274e9119d9Sdan   return pRet;
13284e9119d9Sdan }
1329eede6a53Sdan #else
1330eede6a53Sdan # define withDup(x,y) 0
1331eede6a53Sdan #endif
13324e9119d9Sdan 
1333a8389975Sdrh #ifndef SQLITE_OMIT_WINDOWFUNC
1334a8389975Sdrh /*
1335a8389975Sdrh ** The gatherSelectWindows() procedure and its helper routine
1336a8389975Sdrh ** gatherSelectWindowsCallback() are used to scan all the expressions
1337a8389975Sdrh ** an a newly duplicated SELECT statement and gather all of the Window
1338a8389975Sdrh ** objects found there, assembling them onto the linked list at Select->pWin.
1339a8389975Sdrh */
1340a8389975Sdrh static int gatherSelectWindowsCallback(Walker *pWalker, Expr *pExpr){
1341a8389975Sdrh   if( pExpr->op==TK_FUNCTION && pExpr->y.pWin!=0 ){
1342a8389975Sdrh     assert( ExprHasProperty(pExpr, EP_WinFunc) );
1343a8389975Sdrh     pExpr->y.pWin->pNextWin = pWalker->u.pSelect->pWin;
1344a8389975Sdrh     pWalker->u.pSelect->pWin = pExpr->y.pWin;
1345a8389975Sdrh   }
1346a8389975Sdrh   return WRC_Continue;
1347a8389975Sdrh }
1348a37b6a5eSdrh static int gatherSelectWindowsSelectCallback(Walker *pWalker, Select *p){
1349a37b6a5eSdrh   return p==pWalker->u.pSelect ? WRC_Continue : WRC_Prune;
1350a37b6a5eSdrh }
1351a8389975Sdrh static void gatherSelectWindows(Select *p){
1352a8389975Sdrh   Walker w;
1353a8389975Sdrh   w.xExprCallback = gatherSelectWindowsCallback;
1354a37b6a5eSdrh   w.xSelectCallback = gatherSelectWindowsSelectCallback;
1355a37b6a5eSdrh   w.xSelectCallback2 = 0;
1356a8389975Sdrh   w.u.pSelect = p;
1357a37b6a5eSdrh   sqlite3WalkSelect(&w, p);
1358a8389975Sdrh }
1359a8389975Sdrh #endif
1360a8389975Sdrh 
1361a8389975Sdrh 
1362a76b5dfcSdrh /*
1363ff78bd2fSdrh ** The following group of routines make deep copies of expressions,
1364ff78bd2fSdrh ** expression lists, ID lists, and select statements.  The copies can
1365ff78bd2fSdrh ** be deleted (by being passed to their respective ...Delete() routines)
1366ff78bd2fSdrh ** without effecting the originals.
1367ff78bd2fSdrh **
13684adee20fSdanielk1977 ** The expression list, ID, and source lists return by sqlite3ExprListDup(),
13694adee20fSdanielk1977 ** sqlite3IdListDup(), and sqlite3SrcListDup() can not be further expanded
1370ad3cab52Sdrh ** by subsequent calls to sqlite*ListAppend() routines.
1371ff78bd2fSdrh **
1372ad3cab52Sdrh ** Any tables that the SrcList might point to are not duplicated.
13736ab3a2ecSdanielk1977 **
1374b7916a78Sdrh ** The flags parameter contains a combination of the EXPRDUP_XXX flags.
13756ab3a2ecSdanielk1977 ** If the EXPRDUP_REDUCE flag is set, then the structure returned is a
13766ab3a2ecSdanielk1977 ** truncated version of the usual Expr structure that will be stored as
13776ab3a2ecSdanielk1977 ** part of the in-memory representation of the database schema.
1378ff78bd2fSdrh */
13796ab3a2ecSdanielk1977 Expr *sqlite3ExprDup(sqlite3 *db, Expr *p, int flags){
138072ea29d7Sdrh   assert( flags==0 || flags==EXPRDUP_REDUCE );
13813c19469cSdrh   return p ? exprDup(db, p, flags, 0) : 0;
1382ff78bd2fSdrh }
13836ab3a2ecSdanielk1977 ExprList *sqlite3ExprListDup(sqlite3 *db, ExprList *p, int flags){
1384ff78bd2fSdrh   ExprList *pNew;
1385145716b3Sdrh   struct ExprList_item *pItem, *pOldItem;
1386ff78bd2fSdrh   int i;
1387b163748eSdrh   Expr *pPriorSelectCol = 0;
1388575fad65Sdrh   assert( db!=0 );
1389ff78bd2fSdrh   if( p==0 ) return 0;
139097258194Sdrh   pNew = sqlite3DbMallocRawNN(db, sqlite3DbMallocSize(db, p));
1391ff78bd2fSdrh   if( pNew==0 ) return 0;
1392a19543feSdrh   pNew->nExpr = p->nExpr;
139343606175Sdrh   pItem = pNew->a;
1394145716b3Sdrh   pOldItem = p->a;
1395145716b3Sdrh   for(i=0; i<p->nExpr; i++, pItem++, pOldItem++){
13966ab3a2ecSdanielk1977     Expr *pOldExpr = pOldItem->pExpr;
139747073f62Sdrh     Expr *pNewExpr;
1398b5526ea6Sdrh     pItem->pExpr = sqlite3ExprDup(db, pOldExpr, flags);
139947073f62Sdrh     if( pOldExpr
140047073f62Sdrh      && pOldExpr->op==TK_SELECT_COLUMN
140147073f62Sdrh      && (pNewExpr = pItem->pExpr)!=0
140247073f62Sdrh     ){
140347073f62Sdrh       assert( pNewExpr->iColumn==0 || i>0 );
140447073f62Sdrh       if( pNewExpr->iColumn==0 ){
140547073f62Sdrh         assert( pOldExpr->pLeft==pOldExpr->pRight );
1406b163748eSdrh         pPriorSelectCol = pNewExpr->pLeft = pNewExpr->pRight;
1407b163748eSdrh       }else{
1408b163748eSdrh         assert( i>0 );
1409b163748eSdrh         assert( pItem[-1].pExpr!=0 );
1410b163748eSdrh         assert( pNewExpr->iColumn==pItem[-1].pExpr->iColumn+1 );
1411b163748eSdrh         assert( pPriorSelectCol==pItem[-1].pExpr->pLeft );
1412b163748eSdrh         pNewExpr->pLeft = pPriorSelectCol;
141347073f62Sdrh       }
141447073f62Sdrh     }
141517435752Sdrh     pItem->zName = sqlite3DbStrDup(db, pOldItem->zName);
1416b7916a78Sdrh     pItem->zSpan = sqlite3DbStrDup(db, pOldItem->zSpan);
1417145716b3Sdrh     pItem->sortOrder = pOldItem->sortOrder;
14183e7bc9caSdrh     pItem->done = 0;
14192c036cffSdrh     pItem->bSpanIsTab = pOldItem->bSpanIsTab;
142024e25d32Sdan     pItem->bSorterRef = pOldItem->bSorterRef;
1421c2acc4e4Sdrh     pItem->u = pOldItem->u;
1422ff78bd2fSdrh   }
1423ff78bd2fSdrh   return pNew;
1424ff78bd2fSdrh }
142593758c8dSdanielk1977 
142693758c8dSdanielk1977 /*
142793758c8dSdanielk1977 ** If cursors, triggers, views and subqueries are all omitted from
142893758c8dSdanielk1977 ** the build, then none of the following routines, except for
142993758c8dSdanielk1977 ** sqlite3SelectDup(), can be called. sqlite3SelectDup() is sometimes
143093758c8dSdanielk1977 ** called with a NULL argument.
143193758c8dSdanielk1977 */
14326a67fe8eSdanielk1977 #if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_TRIGGER) \
14336a67fe8eSdanielk1977  || !defined(SQLITE_OMIT_SUBQUERY)
14346ab3a2ecSdanielk1977 SrcList *sqlite3SrcListDup(sqlite3 *db, SrcList *p, int flags){
1435ad3cab52Sdrh   SrcList *pNew;
1436ad3cab52Sdrh   int i;
1437113088ecSdrh   int nByte;
1438575fad65Sdrh   assert( db!=0 );
1439ad3cab52Sdrh   if( p==0 ) return 0;
1440113088ecSdrh   nByte = sizeof(*p) + (p->nSrc>0 ? sizeof(p->a[0]) * (p->nSrc-1) : 0);
1441575fad65Sdrh   pNew = sqlite3DbMallocRawNN(db, nByte );
1442ad3cab52Sdrh   if( pNew==0 ) return 0;
14434305d103Sdrh   pNew->nSrc = pNew->nAlloc = p->nSrc;
1444ad3cab52Sdrh   for(i=0; i<p->nSrc; i++){
14454efc4754Sdrh     struct SrcList_item *pNewItem = &pNew->a[i];
14464efc4754Sdrh     struct SrcList_item *pOldItem = &p->a[i];
1447ed8a3bb1Sdrh     Table *pTab;
144841fb5cd1Sdan     pNewItem->pSchema = pOldItem->pSchema;
144917435752Sdrh     pNewItem->zDatabase = sqlite3DbStrDup(db, pOldItem->zDatabase);
145017435752Sdrh     pNewItem->zName = sqlite3DbStrDup(db, pOldItem->zName);
145117435752Sdrh     pNewItem->zAlias = sqlite3DbStrDup(db, pOldItem->zAlias);
14528a48b9c0Sdrh     pNewItem->fg = pOldItem->fg;
14534efc4754Sdrh     pNewItem->iCursor = pOldItem->iCursor;
14545b6a9ed4Sdrh     pNewItem->addrFillSub = pOldItem->addrFillSub;
14555b6a9ed4Sdrh     pNewItem->regReturn = pOldItem->regReturn;
14568a48b9c0Sdrh     if( pNewItem->fg.isIndexedBy ){
14578a48b9c0Sdrh       pNewItem->u1.zIndexedBy = sqlite3DbStrDup(db, pOldItem->u1.zIndexedBy);
14588a48b9c0Sdrh     }
14598a48b9c0Sdrh     pNewItem->pIBIndex = pOldItem->pIBIndex;
14608a48b9c0Sdrh     if( pNewItem->fg.isTabFunc ){
14618a48b9c0Sdrh       pNewItem->u1.pFuncArg =
14628a48b9c0Sdrh           sqlite3ExprListDup(db, pOldItem->u1.pFuncArg, flags);
14638a48b9c0Sdrh     }
1464ed8a3bb1Sdrh     pTab = pNewItem->pTab = pOldItem->pTab;
1465ed8a3bb1Sdrh     if( pTab ){
146679df7782Sdrh       pTab->nTabRef++;
1467a1cb183dSdanielk1977     }
14686ab3a2ecSdanielk1977     pNewItem->pSelect = sqlite3SelectDup(db, pOldItem->pSelect, flags);
14696ab3a2ecSdanielk1977     pNewItem->pOn = sqlite3ExprDup(db, pOldItem->pOn, flags);
147017435752Sdrh     pNewItem->pUsing = sqlite3IdListDup(db, pOldItem->pUsing);
14716c18b6e0Sdanielk1977     pNewItem->colUsed = pOldItem->colUsed;
1472ad3cab52Sdrh   }
1473ad3cab52Sdrh   return pNew;
1474ad3cab52Sdrh }
147517435752Sdrh IdList *sqlite3IdListDup(sqlite3 *db, IdList *p){
1476ff78bd2fSdrh   IdList *pNew;
1477ff78bd2fSdrh   int i;
1478575fad65Sdrh   assert( db!=0 );
1479ff78bd2fSdrh   if( p==0 ) return 0;
1480575fad65Sdrh   pNew = sqlite3DbMallocRawNN(db, sizeof(*pNew) );
1481ff78bd2fSdrh   if( pNew==0 ) return 0;
14826c535158Sdrh   pNew->nId = p->nId;
1483575fad65Sdrh   pNew->a = sqlite3DbMallocRawNN(db, p->nId*sizeof(p->a[0]) );
1484d5d56523Sdanielk1977   if( pNew->a==0 ){
1485dbd6a7dcSdrh     sqlite3DbFreeNN(db, pNew);
1486d5d56523Sdanielk1977     return 0;
1487d5d56523Sdanielk1977   }
14886c535158Sdrh   /* Note that because the size of the allocation for p->a[] is not
14896c535158Sdrh   ** necessarily a power of two, sqlite3IdListAppend() may not be called
14906c535158Sdrh   ** on the duplicate created by this function. */
1491ff78bd2fSdrh   for(i=0; i<p->nId; i++){
14924efc4754Sdrh     struct IdList_item *pNewItem = &pNew->a[i];
14934efc4754Sdrh     struct IdList_item *pOldItem = &p->a[i];
149417435752Sdrh     pNewItem->zName = sqlite3DbStrDup(db, pOldItem->zName);
14954efc4754Sdrh     pNewItem->idx = pOldItem->idx;
1496ff78bd2fSdrh   }
1497ff78bd2fSdrh   return pNew;
1498ff78bd2fSdrh }
1499a7466205Sdan Select *sqlite3SelectDup(sqlite3 *db, Select *pDup, int flags){
1500a7466205Sdan   Select *pRet = 0;
1501a7466205Sdan   Select *pNext = 0;
1502a7466205Sdan   Select **pp = &pRet;
1503a7466205Sdan   Select *p;
1504a7466205Sdan 
1505575fad65Sdrh   assert( db!=0 );
1506a7466205Sdan   for(p=pDup; p; p=p->pPrior){
1507a7466205Sdan     Select *pNew = sqlite3DbMallocRawNN(db, sizeof(*p) );
1508a7466205Sdan     if( pNew==0 ) break;
1509b7916a78Sdrh     pNew->pEList = sqlite3ExprListDup(db, p->pEList, flags);
15106ab3a2ecSdanielk1977     pNew->pSrc = sqlite3SrcListDup(db, p->pSrc, flags);
15116ab3a2ecSdanielk1977     pNew->pWhere = sqlite3ExprDup(db, p->pWhere, flags);
15126ab3a2ecSdanielk1977     pNew->pGroupBy = sqlite3ExprListDup(db, p->pGroupBy, flags);
15136ab3a2ecSdanielk1977     pNew->pHaving = sqlite3ExprDup(db, p->pHaving, flags);
15146ab3a2ecSdanielk1977     pNew->pOrderBy = sqlite3ExprListDup(db, p->pOrderBy, flags);
1515ff78bd2fSdrh     pNew->op = p->op;
1516a7466205Sdan     pNew->pNext = pNext;
1517a7466205Sdan     pNew->pPrior = 0;
15186ab3a2ecSdanielk1977     pNew->pLimit = sqlite3ExprDup(db, p->pLimit, flags);
151992b01d53Sdrh     pNew->iLimit = 0;
152092b01d53Sdrh     pNew->iOffset = 0;
15217d10d5a6Sdrh     pNew->selFlags = p->selFlags & ~SF_UsesEphemeral;
1522b9bb7c18Sdrh     pNew->addrOpenEphm[0] = -1;
1523b9bb7c18Sdrh     pNew->addrOpenEphm[1] = -1;
1524ec2da854Sdrh     pNew->nSelectRow = p->nSelectRow;
15254e9119d9Sdan     pNew->pWith = withDup(db, p->pWith);
152667a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC
15272e362f97Sdan     pNew->pWin = 0;
1528c95f38d4Sdan     pNew->pWinDefn = sqlite3WindowListDup(db, p->pWinDefn);
1529a8389975Sdrh     if( p->pWin ) gatherSelectWindows(pNew);
153067a9b8edSdan #endif
1531fef37760Sdrh     pNew->selId = p->selId;
1532a7466205Sdan     *pp = pNew;
1533a7466205Sdan     pp = &pNew->pPrior;
1534a7466205Sdan     pNext = pNew;
1535a7466205Sdan   }
1536a7466205Sdan 
1537a7466205Sdan   return pRet;
1538ff78bd2fSdrh }
153993758c8dSdanielk1977 #else
15406ab3a2ecSdanielk1977 Select *sqlite3SelectDup(sqlite3 *db, Select *p, int flags){
154193758c8dSdanielk1977   assert( p==0 );
154293758c8dSdanielk1977   return 0;
154393758c8dSdanielk1977 }
154493758c8dSdanielk1977 #endif
1545ff78bd2fSdrh 
1546ff78bd2fSdrh 
1547ff78bd2fSdrh /*
1548a76b5dfcSdrh ** Add a new element to the end of an expression list.  If pList is
1549a76b5dfcSdrh ** initially NULL, then create a new expression list.
1550b7916a78Sdrh **
1551a19543feSdrh ** The pList argument must be either NULL or a pointer to an ExprList
1552a19543feSdrh ** obtained from a prior call to sqlite3ExprListAppend().  This routine
1553a19543feSdrh ** may not be used with an ExprList obtained from sqlite3ExprListDup().
1554a19543feSdrh ** Reason:  This routine assumes that the number of slots in pList->a[]
1555a19543feSdrh ** is a power of two.  That is true for sqlite3ExprListAppend() returns
1556a19543feSdrh ** but is not necessarily true from the return value of sqlite3ExprListDup().
1557a19543feSdrh **
1558b7916a78Sdrh ** If a memory allocation error occurs, the entire list is freed and
1559b7916a78Sdrh ** NULL is returned.  If non-NULL is returned, then it is guaranteed
1560b7916a78Sdrh ** that the new entry was successfully appended.
1561a76b5dfcSdrh */
156217435752Sdrh ExprList *sqlite3ExprListAppend(
156317435752Sdrh   Parse *pParse,          /* Parsing context */
156417435752Sdrh   ExprList *pList,        /* List to which to append. Might be NULL */
1565b7916a78Sdrh   Expr *pExpr             /* Expression to be appended. Might be NULL */
156617435752Sdrh ){
156743606175Sdrh   struct ExprList_item *pItem;
156817435752Sdrh   sqlite3 *db = pParse->db;
1569575fad65Sdrh   assert( db!=0 );
1570a76b5dfcSdrh   if( pList==0 ){
1571575fad65Sdrh     pList = sqlite3DbMallocRawNN(db, sizeof(ExprList) );
1572a76b5dfcSdrh     if( pList==0 ){
1573d5d56523Sdanielk1977       goto no_mem;
1574a76b5dfcSdrh     }
1575c263f7c4Sdrh     pList->nExpr = 0;
1576a19543feSdrh   }else if( (pList->nExpr & (pList->nExpr-1))==0 ){
157743606175Sdrh     ExprList *pNew;
157843606175Sdrh     pNew = sqlite3DbRealloc(db, pList,
1579a19543feSdrh              sizeof(*pList)+(2*pList->nExpr - 1)*sizeof(pList->a[0]));
158043606175Sdrh     if( pNew==0 ){
1581d5d56523Sdanielk1977       goto no_mem;
1582a76b5dfcSdrh     }
158343606175Sdrh     pList = pNew;
1584a76b5dfcSdrh   }
158543606175Sdrh   pItem = &pList->a[pList->nExpr++];
1586a8b9793cSdrh   assert( offsetof(struct ExprList_item,zName)==sizeof(pItem->pExpr) );
1587a8b9793cSdrh   assert( offsetof(struct ExprList_item,pExpr)==0 );
1588a8b9793cSdrh   memset(&pItem->zName,0,sizeof(*pItem)-offsetof(struct ExprList_item,zName));
1589e94ddc9eSdanielk1977   pItem->pExpr = pExpr;
1590a76b5dfcSdrh   return pList;
1591d5d56523Sdanielk1977 
1592d5d56523Sdanielk1977 no_mem:
1593d5d56523Sdanielk1977   /* Avoid leaking memory if malloc has failed. */
1594633e6d57Sdrh   sqlite3ExprDelete(db, pExpr);
1595633e6d57Sdrh   sqlite3ExprListDelete(db, pList);
1596d5d56523Sdanielk1977   return 0;
1597a76b5dfcSdrh }
1598a76b5dfcSdrh 
1599a76b5dfcSdrh /*
16008762ec19Sdrh ** pColumns and pExpr form a vector assignment which is part of the SET
16018762ec19Sdrh ** clause of an UPDATE statement.  Like this:
1602a1251bc4Sdrh **
1603a1251bc4Sdrh **        (a,b,c) = (expr1,expr2,expr3)
1604a1251bc4Sdrh ** Or:    (a,b,c) = (SELECT x,y,z FROM ....)
1605a1251bc4Sdrh **
1606a1251bc4Sdrh ** For each term of the vector assignment, append new entries to the
1607b67343d0Sdrh ** expression list pList.  In the case of a subquery on the RHS, append
1608a1251bc4Sdrh ** TK_SELECT_COLUMN expressions.
1609a1251bc4Sdrh */
1610a1251bc4Sdrh ExprList *sqlite3ExprListAppendVector(
1611a1251bc4Sdrh   Parse *pParse,         /* Parsing context */
1612a1251bc4Sdrh   ExprList *pList,       /* List to which to append. Might be NULL */
1613a1251bc4Sdrh   IdList *pColumns,      /* List of names of LHS of the assignment */
1614a1251bc4Sdrh   Expr *pExpr            /* Vector expression to be appended. Might be NULL */
1615a1251bc4Sdrh ){
1616a1251bc4Sdrh   sqlite3 *db = pParse->db;
1617a1251bc4Sdrh   int n;
1618a1251bc4Sdrh   int i;
161966860af3Sdrh   int iFirst = pList ? pList->nExpr : 0;
1620321e828dSdrh   /* pColumns can only be NULL due to an OOM but an OOM will cause an
1621321e828dSdrh   ** exit prior to this routine being invoked */
1622321e828dSdrh   if( NEVER(pColumns==0) ) goto vector_append_error;
1623a1251bc4Sdrh   if( pExpr==0 ) goto vector_append_error;
1624966e2911Sdrh 
1625966e2911Sdrh   /* If the RHS is a vector, then we can immediately check to see that
1626966e2911Sdrh   ** the size of the RHS and LHS match.  But if the RHS is a SELECT,
1627966e2911Sdrh   ** wildcards ("*") in the result set of the SELECT must be expanded before
1628966e2911Sdrh   ** we can do the size check, so defer the size check until code generation.
1629966e2911Sdrh   */
1630966e2911Sdrh   if( pExpr->op!=TK_SELECT && pColumns->nId!=(n=sqlite3ExprVectorSize(pExpr)) ){
1631a1251bc4Sdrh     sqlite3ErrorMsg(pParse, "%d columns assigned %d values",
1632a1251bc4Sdrh                     pColumns->nId, n);
1633a1251bc4Sdrh     goto vector_append_error;
1634a1251bc4Sdrh   }
1635966e2911Sdrh 
1636966e2911Sdrh   for(i=0; i<pColumns->nId; i++){
1637a1251bc4Sdrh     Expr *pSubExpr = sqlite3ExprForVectorField(pParse, pExpr, i);
1638a1251bc4Sdrh     pList = sqlite3ExprListAppend(pParse, pList, pSubExpr);
1639a1251bc4Sdrh     if( pList ){
164066860af3Sdrh       assert( pList->nExpr==iFirst+i+1 );
1641a1251bc4Sdrh       pList->a[pList->nExpr-1].zName = pColumns->a[i].zName;
1642a1251bc4Sdrh       pColumns->a[i].zName = 0;
1643a1251bc4Sdrh     }
1644a1251bc4Sdrh   }
1645966e2911Sdrh 
1646ffe28059Sdrh   if( !db->mallocFailed && pExpr->op==TK_SELECT && ALWAYS(pList!=0) ){
1647966e2911Sdrh     Expr *pFirst = pList->a[iFirst].pExpr;
1648f4dd26c5Sdrh     assert( pFirst!=0 );
1649966e2911Sdrh     assert( pFirst->op==TK_SELECT_COLUMN );
1650966e2911Sdrh 
1651966e2911Sdrh     /* Store the SELECT statement in pRight so it will be deleted when
1652966e2911Sdrh     ** sqlite3ExprListDelete() is called */
1653966e2911Sdrh     pFirst->pRight = pExpr;
1654a1251bc4Sdrh     pExpr = 0;
1655966e2911Sdrh 
1656966e2911Sdrh     /* Remember the size of the LHS in iTable so that we can check that
1657966e2911Sdrh     ** the RHS and LHS sizes match during code generation. */
1658966e2911Sdrh     pFirst->iTable = pColumns->nId;
1659a1251bc4Sdrh   }
1660a1251bc4Sdrh 
1661a1251bc4Sdrh vector_append_error:
1662a1251bc4Sdrh   sqlite3ExprDelete(db, pExpr);
1663a1251bc4Sdrh   sqlite3IdListDelete(db, pColumns);
1664a1251bc4Sdrh   return pList;
1665a1251bc4Sdrh }
1666a1251bc4Sdrh 
1667a1251bc4Sdrh /*
1668bc622bc0Sdrh ** Set the sort order for the last element on the given ExprList.
1669bc622bc0Sdrh */
1670bc622bc0Sdrh void sqlite3ExprListSetSortOrder(ExprList *p, int iSortOrder){
1671bc622bc0Sdrh   if( p==0 ) return;
1672bc622bc0Sdrh   assert( SQLITE_SO_UNDEFINED<0 && SQLITE_SO_ASC>=0 && SQLITE_SO_DESC>0 );
1673bc622bc0Sdrh   assert( p->nExpr>0 );
1674bc622bc0Sdrh   if( iSortOrder<0 ){
1675bc622bc0Sdrh     assert( p->a[p->nExpr-1].sortOrder==SQLITE_SO_ASC );
1676bc622bc0Sdrh     return;
1677bc622bc0Sdrh   }
1678bc622bc0Sdrh   p->a[p->nExpr-1].sortOrder = (u8)iSortOrder;
1679bc622bc0Sdrh }
1680bc622bc0Sdrh 
1681bc622bc0Sdrh /*
1682b7916a78Sdrh ** Set the ExprList.a[].zName element of the most recently added item
1683b7916a78Sdrh ** on the expression list.
1684b7916a78Sdrh **
1685b7916a78Sdrh ** pList might be NULL following an OOM error.  But pName should never be
1686b7916a78Sdrh ** NULL.  If a memory allocation fails, the pParse->db->mallocFailed flag
1687b7916a78Sdrh ** is set.
1688b7916a78Sdrh */
1689b7916a78Sdrh void sqlite3ExprListSetName(
1690b7916a78Sdrh   Parse *pParse,          /* Parsing context */
1691b7916a78Sdrh   ExprList *pList,        /* List to which to add the span. */
1692b7916a78Sdrh   Token *pName,           /* Name to be added */
1693b7916a78Sdrh   int dequote             /* True to cause the name to be dequoted */
1694b7916a78Sdrh ){
1695b7916a78Sdrh   assert( pList!=0 || pParse->db->mallocFailed!=0 );
1696b7916a78Sdrh   if( pList ){
1697b7916a78Sdrh     struct ExprList_item *pItem;
1698b7916a78Sdrh     assert( pList->nExpr>0 );
1699b7916a78Sdrh     pItem = &pList->a[pList->nExpr-1];
1700b7916a78Sdrh     assert( pItem->zName==0 );
1701b7916a78Sdrh     pItem->zName = sqlite3DbStrNDup(pParse->db, pName->z, pName->n);
1702244b9d6eSdrh     if( dequote ) sqlite3Dequote(pItem->zName);
1703c9461eccSdan     if( IN_RENAME_OBJECT ){
170407e95233Sdan       sqlite3RenameTokenMap(pParse, (void*)pItem->zName, pName);
17055be60c55Sdan     }
1706b7916a78Sdrh   }
1707b7916a78Sdrh }
1708b7916a78Sdrh 
1709b7916a78Sdrh /*
1710b7916a78Sdrh ** Set the ExprList.a[].zSpan element of the most recently added item
1711b7916a78Sdrh ** on the expression list.
1712b7916a78Sdrh **
1713b7916a78Sdrh ** pList might be NULL following an OOM error.  But pSpan should never be
1714b7916a78Sdrh ** NULL.  If a memory allocation fails, the pParse->db->mallocFailed flag
1715b7916a78Sdrh ** is set.
1716b7916a78Sdrh */
1717b7916a78Sdrh void sqlite3ExprListSetSpan(
1718b7916a78Sdrh   Parse *pParse,          /* Parsing context */
1719b7916a78Sdrh   ExprList *pList,        /* List to which to add the span. */
17201be266baSdrh   const char *zStart,     /* Start of the span */
17211be266baSdrh   const char *zEnd        /* End of the span */
1722b7916a78Sdrh ){
1723b7916a78Sdrh   sqlite3 *db = pParse->db;
1724b7916a78Sdrh   assert( pList!=0 || db->mallocFailed!=0 );
1725b7916a78Sdrh   if( pList ){
1726b7916a78Sdrh     struct ExprList_item *pItem = &pList->a[pList->nExpr-1];
1727b7916a78Sdrh     assert( pList->nExpr>0 );
1728b7916a78Sdrh     sqlite3DbFree(db, pItem->zSpan);
17299b2e0435Sdrh     pItem->zSpan = sqlite3DbSpanDup(db, zStart, zEnd);
1730b7916a78Sdrh   }
1731b7916a78Sdrh }
1732b7916a78Sdrh 
1733b7916a78Sdrh /*
17347a15a4beSdanielk1977 ** If the expression list pEList contains more than iLimit elements,
17357a15a4beSdanielk1977 ** leave an error message in pParse.
17367a15a4beSdanielk1977 */
17377a15a4beSdanielk1977 void sqlite3ExprListCheckLength(
17387a15a4beSdanielk1977   Parse *pParse,
17397a15a4beSdanielk1977   ExprList *pEList,
17407a15a4beSdanielk1977   const char *zObject
17417a15a4beSdanielk1977 ){
1742b1a6c3c1Sdrh   int mx = pParse->db->aLimit[SQLITE_LIMIT_COLUMN];
1743c5499befSdrh   testcase( pEList && pEList->nExpr==mx );
1744c5499befSdrh   testcase( pEList && pEList->nExpr==mx+1 );
1745b1a6c3c1Sdrh   if( pEList && pEList->nExpr>mx ){
17467a15a4beSdanielk1977     sqlite3ErrorMsg(pParse, "too many columns in %s", zObject);
17477a15a4beSdanielk1977   }
17487a15a4beSdanielk1977 }
17497a15a4beSdanielk1977 
17507a15a4beSdanielk1977 /*
1751a76b5dfcSdrh ** Delete an entire expression list.
1752a76b5dfcSdrh */
1753affa855cSdrh static SQLITE_NOINLINE void exprListDeleteNN(sqlite3 *db, ExprList *pList){
1754ac48b751Sdrh   int i = pList->nExpr;
1755ac48b751Sdrh   struct ExprList_item *pItem =  pList->a;
1756ac48b751Sdrh   assert( pList->nExpr>0 );
1757ac48b751Sdrh   do{
1758633e6d57Sdrh     sqlite3ExprDelete(db, pItem->pExpr);
1759633e6d57Sdrh     sqlite3DbFree(db, pItem->zName);
1760b7916a78Sdrh     sqlite3DbFree(db, pItem->zSpan);
1761ac48b751Sdrh     pItem++;
1762ac48b751Sdrh   }while( --i>0 );
1763dbd6a7dcSdrh   sqlite3DbFreeNN(db, pList);
1764a76b5dfcSdrh }
1765affa855cSdrh void sqlite3ExprListDelete(sqlite3 *db, ExprList *pList){
1766affa855cSdrh   if( pList ) exprListDeleteNN(db, pList);
1767affa855cSdrh }
1768a76b5dfcSdrh 
1769a76b5dfcSdrh /*
17702308ed38Sdrh ** Return the bitwise-OR of all Expr.flags fields in the given
17712308ed38Sdrh ** ExprList.
1772885a5b03Sdrh */
17732308ed38Sdrh u32 sqlite3ExprListFlags(const ExprList *pList){
1774885a5b03Sdrh   int i;
17752308ed38Sdrh   u32 m = 0;
1776508e2d00Sdrh   assert( pList!=0 );
1777885a5b03Sdrh   for(i=0; i<pList->nExpr; i++){
1778d0c73053Sdrh      Expr *pExpr = pList->a[i].pExpr;
1779de845c2fSdrh      assert( pExpr!=0 );
1780de845c2fSdrh      m |= pExpr->flags;
1781885a5b03Sdrh   }
17822308ed38Sdrh   return m;
1783885a5b03Sdrh }
1784885a5b03Sdrh 
1785885a5b03Sdrh /*
17867e6f980bSdrh ** This is a SELECT-node callback for the expression walker that
17877e6f980bSdrh ** always "fails".  By "fail" in this case, we mean set
17887e6f980bSdrh ** pWalker->eCode to zero and abort.
17897e6f980bSdrh **
17907e6f980bSdrh ** This callback is used by multiple expression walkers.
17917e6f980bSdrh */
17927e6f980bSdrh int sqlite3SelectWalkFail(Walker *pWalker, Select *NotUsed){
17937e6f980bSdrh   UNUSED_PARAMETER(NotUsed);
17947e6f980bSdrh   pWalker->eCode = 0;
17957e6f980bSdrh   return WRC_Abort;
17967e6f980bSdrh }
17977e6f980bSdrh 
17987e6f980bSdrh /*
1799171d16bbSdrh ** If the input expression is an ID with the name "true" or "false"
180096acafbeSdrh ** then convert it into an TK_TRUEFALSE term.  Return non-zero if
180196acafbeSdrh ** the conversion happened, and zero if the expression is unaltered.
1802171d16bbSdrh */
1803171d16bbSdrh int sqlite3ExprIdToTrueFalse(Expr *pExpr){
1804171d16bbSdrh   assert( pExpr->op==TK_ID || pExpr->op==TK_STRING );
1805171d16bbSdrh   if( sqlite3StrICmp(pExpr->u.zToken, "true")==0
1806171d16bbSdrh    || sqlite3StrICmp(pExpr->u.zToken, "false")==0
1807171d16bbSdrh   ){
1808171d16bbSdrh     pExpr->op = TK_TRUEFALSE;
1809171d16bbSdrh     return 1;
1810171d16bbSdrh   }
1811171d16bbSdrh   return 0;
1812171d16bbSdrh }
1813171d16bbSdrh 
181443c4ac8bSdrh /*
181596acafbeSdrh ** The argument must be a TK_TRUEFALSE Expr node.  Return 1 if it is TRUE
181643c4ac8bSdrh ** and 0 if it is FALSE.
181743c4ac8bSdrh */
181896acafbeSdrh int sqlite3ExprTruthValue(const Expr *pExpr){
181943c4ac8bSdrh   assert( pExpr->op==TK_TRUEFALSE );
182043c4ac8bSdrh   assert( sqlite3StrICmp(pExpr->u.zToken,"true")==0
182143c4ac8bSdrh        || sqlite3StrICmp(pExpr->u.zToken,"false")==0 );
182243c4ac8bSdrh   return pExpr->u.zToken[4]==0;
182343c4ac8bSdrh }
182443c4ac8bSdrh 
1825171d16bbSdrh 
1826171d16bbSdrh /*
1827059b2d50Sdrh ** These routines are Walker callbacks used to check expressions to
1828059b2d50Sdrh ** see if they are "constant" for some definition of constant.  The
1829059b2d50Sdrh ** Walker.eCode value determines the type of "constant" we are looking
1830059b2d50Sdrh ** for.
183173b211abSdrh **
18327d10d5a6Sdrh ** These callback routines are used to implement the following:
1833626a879aSdrh **
1834059b2d50Sdrh **     sqlite3ExprIsConstant()                  pWalker->eCode==1
1835059b2d50Sdrh **     sqlite3ExprIsConstantNotJoin()           pWalker->eCode==2
1836fcb9f4f3Sdrh **     sqlite3ExprIsTableConstant()             pWalker->eCode==3
1837059b2d50Sdrh **     sqlite3ExprIsConstantOrFunction()        pWalker->eCode==4 or 5
183887abf5c0Sdrh **
1839059b2d50Sdrh ** In all cases, the callbacks set Walker.eCode=0 and abort if the expression
1840059b2d50Sdrh ** is found to not be a constant.
184187abf5c0Sdrh **
1842feada2dfSdrh ** The sqlite3ExprIsConstantOrFunction() is used for evaluating expressions
1843059b2d50Sdrh ** in a CREATE TABLE statement.  The Walker.eCode value is 5 when parsing
1844059b2d50Sdrh ** an existing schema and 4 when processing a new statement.  A bound
1845feada2dfSdrh ** parameter raises an error for new statements, but is silently converted
1846feada2dfSdrh ** to NULL for existing schemas.  This allows sqlite_master tables that
1847feada2dfSdrh ** contain a bound parameter because they were generated by older versions
1848feada2dfSdrh ** of SQLite to be parsed by newer versions of SQLite without raising a
1849feada2dfSdrh ** malformed schema error.
1850626a879aSdrh */
18517d10d5a6Sdrh static int exprNodeIsConstant(Walker *pWalker, Expr *pExpr){
1852626a879aSdrh 
1853059b2d50Sdrh   /* If pWalker->eCode is 2 then any term of the expression that comes from
1854059b2d50Sdrh   ** the ON or USING clauses of a left join disqualifies the expression
18550a168377Sdrh   ** from being considered constant. */
1856059b2d50Sdrh   if( pWalker->eCode==2 && ExprHasProperty(pExpr, EP_FromJoin) ){
1857059b2d50Sdrh     pWalker->eCode = 0;
18587d10d5a6Sdrh     return WRC_Abort;
18590a168377Sdrh   }
18600a168377Sdrh 
1861626a879aSdrh   switch( pExpr->op ){
1862eb55bd2fSdrh     /* Consider functions to be constant if all their arguments are constant
1863059b2d50Sdrh     ** and either pWalker->eCode==4 or 5 or the function has the
1864059b2d50Sdrh     ** SQLITE_FUNC_CONST flag. */
1865eb55bd2fSdrh     case TK_FUNCTION:
186663f84573Sdrh       if( pWalker->eCode>=4 || ExprHasProperty(pExpr,EP_ConstFunc) ){
1867b1fba286Sdrh         return WRC_Continue;
1868059b2d50Sdrh       }else{
1869059b2d50Sdrh         pWalker->eCode = 0;
1870059b2d50Sdrh         return WRC_Abort;
1871b1fba286Sdrh       }
1872626a879aSdrh     case TK_ID:
1873171d16bbSdrh       /* Convert "true" or "false" in a DEFAULT clause into the
1874171d16bbSdrh       ** appropriate TK_TRUEFALSE operator */
1875e39ef31cSdrh       if( sqlite3ExprIdToTrueFalse(pExpr) ){
1876171d16bbSdrh         return WRC_Prune;
1877171d16bbSdrh       }
1878171d16bbSdrh       /* Fall thru */
1879626a879aSdrh     case TK_COLUMN:
1880626a879aSdrh     case TK_AGG_FUNCTION:
188113449892Sdrh     case TK_AGG_COLUMN:
1882c5499befSdrh       testcase( pExpr->op==TK_ID );
1883c5499befSdrh       testcase( pExpr->op==TK_COLUMN );
1884c5499befSdrh       testcase( pExpr->op==TK_AGG_FUNCTION );
1885c5499befSdrh       testcase( pExpr->op==TK_AGG_COLUMN );
188607aded63Sdrh       if( ExprHasProperty(pExpr, EP_FixedCol) && pWalker->eCode!=2 ){
1887efad2e23Sdrh         return WRC_Continue;
1888efad2e23Sdrh       }
1889059b2d50Sdrh       if( pWalker->eCode==3 && pExpr->iTable==pWalker->u.iCur ){
1890059b2d50Sdrh         return WRC_Continue;
1891f43ce0b4Sdrh       }
1892f43ce0b4Sdrh       /* Fall through */
1893f43ce0b4Sdrh     case TK_IF_NULL_ROW:
18946e341b93Sdrh     case TK_REGISTER:
18959916048bSdrh       testcase( pExpr->op==TK_REGISTER );
1896f43ce0b4Sdrh       testcase( pExpr->op==TK_IF_NULL_ROW );
1897059b2d50Sdrh       pWalker->eCode = 0;
18987d10d5a6Sdrh       return WRC_Abort;
1899feada2dfSdrh     case TK_VARIABLE:
1900059b2d50Sdrh       if( pWalker->eCode==5 ){
1901feada2dfSdrh         /* Silently convert bound parameters that appear inside of CREATE
1902feada2dfSdrh         ** statements into a NULL when parsing the CREATE statement text out
1903feada2dfSdrh         ** of the sqlite_master table */
1904feada2dfSdrh         pExpr->op = TK_NULL;
1905059b2d50Sdrh       }else if( pWalker->eCode==4 ){
1906feada2dfSdrh         /* A bound parameter in a CREATE statement that originates from
1907feada2dfSdrh         ** sqlite3_prepare() causes an error */
1908059b2d50Sdrh         pWalker->eCode = 0;
1909feada2dfSdrh         return WRC_Abort;
1910feada2dfSdrh       }
1911feada2dfSdrh       /* Fall through */
1912626a879aSdrh     default:
19136e341b93Sdrh       testcase( pExpr->op==TK_SELECT ); /* sqlite3SelectWalkFail() disallows */
19146e341b93Sdrh       testcase( pExpr->op==TK_EXISTS ); /* sqlite3SelectWalkFail() disallows */
19157d10d5a6Sdrh       return WRC_Continue;
1916626a879aSdrh   }
1917626a879aSdrh }
1918059b2d50Sdrh static int exprIsConst(Expr *p, int initFlag, int iCur){
19197d10d5a6Sdrh   Walker w;
1920059b2d50Sdrh   w.eCode = initFlag;
19217d10d5a6Sdrh   w.xExprCallback = exprNodeIsConstant;
19227e6f980bSdrh   w.xSelectCallback = sqlite3SelectWalkFail;
1923979dd1beSdrh #ifdef SQLITE_DEBUG
1924979dd1beSdrh   w.xSelectCallback2 = sqlite3SelectWalkAssert2;
1925979dd1beSdrh #endif
1926059b2d50Sdrh   w.u.iCur = iCur;
19277d10d5a6Sdrh   sqlite3WalkExpr(&w, p);
1928059b2d50Sdrh   return w.eCode;
19297d10d5a6Sdrh }
1930626a879aSdrh 
1931626a879aSdrh /*
1932059b2d50Sdrh ** Walk an expression tree.  Return non-zero if the expression is constant
1933eb55bd2fSdrh ** and 0 if it involves variables or function calls.
19342398937bSdrh **
19352398937bSdrh ** For the purposes of this function, a double-quoted string (ex: "abc")
19362398937bSdrh ** is considered a variable but a single-quoted string (ex: 'abc') is
19372398937bSdrh ** a constant.
1938fef5208cSdrh */
19394adee20fSdanielk1977 int sqlite3ExprIsConstant(Expr *p){
1940059b2d50Sdrh   return exprIsConst(p, 1, 0);
1941fef5208cSdrh }
1942fef5208cSdrh 
1943fef5208cSdrh /*
194407aded63Sdrh ** Walk an expression tree.  Return non-zero if
194507aded63Sdrh **
194607aded63Sdrh **   (1) the expression is constant, and
194707aded63Sdrh **   (2) the expression does originate in the ON or USING clause
194807aded63Sdrh **       of a LEFT JOIN, and
194907aded63Sdrh **   (3) the expression does not contain any EP_FixedCol TK_COLUMN
195007aded63Sdrh **       operands created by the constant propagation optimization.
195107aded63Sdrh **
195207aded63Sdrh ** When this routine returns true, it indicates that the expression
195307aded63Sdrh ** can be added to the pParse->pConstExpr list and evaluated once when
195407aded63Sdrh ** the prepared statement starts up.  See sqlite3ExprCodeAtInit().
19550a168377Sdrh */
19560a168377Sdrh int sqlite3ExprIsConstantNotJoin(Expr *p){
1957059b2d50Sdrh   return exprIsConst(p, 2, 0);
19580a168377Sdrh }
19590a168377Sdrh 
19600a168377Sdrh /*
1961fcb9f4f3Sdrh ** Walk an expression tree.  Return non-zero if the expression is constant
1962059b2d50Sdrh ** for any single row of the table with cursor iCur.  In other words, the
1963059b2d50Sdrh ** expression must not refer to any non-deterministic function nor any
1964059b2d50Sdrh ** table other than iCur.
1965059b2d50Sdrh */
1966059b2d50Sdrh int sqlite3ExprIsTableConstant(Expr *p, int iCur){
1967059b2d50Sdrh   return exprIsConst(p, 3, iCur);
1968059b2d50Sdrh }
1969059b2d50Sdrh 
1970ab31a845Sdan 
1971ab31a845Sdan /*
1972ab31a845Sdan ** sqlite3WalkExpr() callback used by sqlite3ExprIsConstantOrGroupBy().
1973ab31a845Sdan */
1974ab31a845Sdan static int exprNodeIsConstantOrGroupBy(Walker *pWalker, Expr *pExpr){
1975ab31a845Sdan   ExprList *pGroupBy = pWalker->u.pGroupBy;
1976ab31a845Sdan   int i;
1977ab31a845Sdan 
1978ab31a845Sdan   /* Check if pExpr is identical to any GROUP BY term. If so, consider
1979ab31a845Sdan   ** it constant.  */
1980ab31a845Sdan   for(i=0; i<pGroupBy->nExpr; i++){
1981ab31a845Sdan     Expr *p = pGroupBy->a[i].pExpr;
19825aa550cfSdan     if( sqlite3ExprCompare(0, pExpr, p, -1)<2 ){
198370efa84dSdrh       CollSeq *pColl = sqlite3ExprNNCollSeq(pWalker->pParse, p);
1984efad2e23Sdrh       if( sqlite3IsBinary(pColl) ){
1985ab31a845Sdan         return WRC_Prune;
1986ab31a845Sdan       }
1987ab31a845Sdan     }
1988ab31a845Sdan   }
1989ab31a845Sdan 
1990ab31a845Sdan   /* Check if pExpr is a sub-select. If so, consider it variable. */
1991ab31a845Sdan   if( ExprHasProperty(pExpr, EP_xIsSelect) ){
1992ab31a845Sdan     pWalker->eCode = 0;
1993ab31a845Sdan     return WRC_Abort;
1994ab31a845Sdan   }
1995ab31a845Sdan 
1996ab31a845Sdan   return exprNodeIsConstant(pWalker, pExpr);
1997ab31a845Sdan }
1998ab31a845Sdan 
1999ab31a845Sdan /*
2000ab31a845Sdan ** Walk the expression tree passed as the first argument. Return non-zero
2001ab31a845Sdan ** if the expression consists entirely of constants or copies of terms
2002ab31a845Sdan ** in pGroupBy that sort with the BINARY collation sequence.
2003ab314001Sdrh **
2004ab314001Sdrh ** This routine is used to determine if a term of the HAVING clause can
2005ab314001Sdrh ** be promoted into the WHERE clause.  In order for such a promotion to work,
2006ab314001Sdrh ** the value of the HAVING clause term must be the same for all members of
2007ab314001Sdrh ** a "group".  The requirement that the GROUP BY term must be BINARY
2008ab314001Sdrh ** assumes that no other collating sequence will have a finer-grained
2009ab314001Sdrh ** grouping than binary.  In other words (A=B COLLATE binary) implies
2010ab314001Sdrh ** A=B in every other collating sequence.  The requirement that the
2011ab314001Sdrh ** GROUP BY be BINARY is stricter than necessary.  It would also work
2012ab314001Sdrh ** to promote HAVING clauses that use the same alternative collating
2013ab314001Sdrh ** sequence as the GROUP BY term, but that is much harder to check,
2014ab314001Sdrh ** alternative collating sequences are uncommon, and this is only an
2015ab314001Sdrh ** optimization, so we take the easy way out and simply require the
2016ab314001Sdrh ** GROUP BY to use the BINARY collating sequence.
2017ab31a845Sdan */
2018ab31a845Sdan int sqlite3ExprIsConstantOrGroupBy(Parse *pParse, Expr *p, ExprList *pGroupBy){
2019ab31a845Sdan   Walker w;
2020ab31a845Sdan   w.eCode = 1;
2021ab31a845Sdan   w.xExprCallback = exprNodeIsConstantOrGroupBy;
2022979dd1beSdrh   w.xSelectCallback = 0;
2023ab31a845Sdan   w.u.pGroupBy = pGroupBy;
2024ab31a845Sdan   w.pParse = pParse;
2025ab31a845Sdan   sqlite3WalkExpr(&w, p);
2026ab31a845Sdan   return w.eCode;
2027ab31a845Sdan }
2028ab31a845Sdan 
2029059b2d50Sdrh /*
2030059b2d50Sdrh ** Walk an expression tree.  Return non-zero if the expression is constant
2031eb55bd2fSdrh ** or a function call with constant arguments.  Return and 0 if there
2032eb55bd2fSdrh ** are any variables.
2033eb55bd2fSdrh **
2034eb55bd2fSdrh ** For the purposes of this function, a double-quoted string (ex: "abc")
2035eb55bd2fSdrh ** is considered a variable but a single-quoted string (ex: 'abc') is
2036eb55bd2fSdrh ** a constant.
2037eb55bd2fSdrh */
2038feada2dfSdrh int sqlite3ExprIsConstantOrFunction(Expr *p, u8 isInit){
2039feada2dfSdrh   assert( isInit==0 || isInit==1 );
2040059b2d50Sdrh   return exprIsConst(p, 4+isInit, 0);
2041eb55bd2fSdrh }
2042eb55bd2fSdrh 
20435b88bc4bSdrh #ifdef SQLITE_ENABLE_CURSOR_HINTS
20445b88bc4bSdrh /*
20455b88bc4bSdrh ** Walk an expression tree.  Return 1 if the expression contains a
20465b88bc4bSdrh ** subquery of some kind.  Return 0 if there are no subqueries.
20475b88bc4bSdrh */
20485b88bc4bSdrh int sqlite3ExprContainsSubquery(Expr *p){
20495b88bc4bSdrh   Walker w;
2050bec2476aSdrh   w.eCode = 1;
20515b88bc4bSdrh   w.xExprCallback = sqlite3ExprWalkNoop;
20527e6f980bSdrh   w.xSelectCallback = sqlite3SelectWalkFail;
2053979dd1beSdrh #ifdef SQLITE_DEBUG
2054979dd1beSdrh   w.xSelectCallback2 = sqlite3SelectWalkAssert2;
2055979dd1beSdrh #endif
20565b88bc4bSdrh   sqlite3WalkExpr(&w, p);
205707194bffSdrh   return w.eCode==0;
20585b88bc4bSdrh }
20595b88bc4bSdrh #endif
20605b88bc4bSdrh 
2061eb55bd2fSdrh /*
206273b211abSdrh ** If the expression p codes a constant integer that is small enough
2063202b2df7Sdrh ** to fit in a 32-bit integer, return 1 and put the value of the integer
2064202b2df7Sdrh ** in *pValue.  If the expression is not an integer or if it is too big
2065202b2df7Sdrh ** to fit in a signed 32-bit integer, return 0 and leave *pValue unchanged.
2066e4de1febSdrh */
20674adee20fSdanielk1977 int sqlite3ExprIsInteger(Expr *p, int *pValue){
206892b01d53Sdrh   int rc = 0;
2069ba28b5abSdrh   if( p==0 ) return 0;  /* Can only happen following on OOM */
2070cd92e84dSdrh 
2071cd92e84dSdrh   /* If an expression is an integer literal that fits in a signed 32-bit
2072cd92e84dSdrh   ** integer, then the EP_IntValue flag will have already been set */
2073cd92e84dSdrh   assert( p->op!=TK_INTEGER || (p->flags & EP_IntValue)!=0
2074cd92e84dSdrh            || sqlite3GetInt32(p->u.zToken, &rc)==0 );
2075cd92e84dSdrh 
207692b01d53Sdrh   if( p->flags & EP_IntValue ){
207733e619fcSdrh     *pValue = p->u.iValue;
2078e4de1febSdrh     return 1;
2079e4de1febSdrh   }
208092b01d53Sdrh   switch( p->op ){
20814b59ab5eSdrh     case TK_UPLUS: {
208292b01d53Sdrh       rc = sqlite3ExprIsInteger(p->pLeft, pValue);
2083f6e369a1Sdrh       break;
20844b59ab5eSdrh     }
2085e4de1febSdrh     case TK_UMINUS: {
2086e4de1febSdrh       int v;
20874adee20fSdanielk1977       if( sqlite3ExprIsInteger(p->pLeft, &v) ){
2088f6418891Smistachkin         assert( v!=(-2147483647-1) );
2089e4de1febSdrh         *pValue = -v;
209092b01d53Sdrh         rc = 1;
2091e4de1febSdrh       }
2092e4de1febSdrh       break;
2093e4de1febSdrh     }
2094e4de1febSdrh     default: break;
2095e4de1febSdrh   }
209692b01d53Sdrh   return rc;
2097e4de1febSdrh }
2098e4de1febSdrh 
2099e4de1febSdrh /*
2100039fc32eSdrh ** Return FALSE if there is no chance that the expression can be NULL.
2101039fc32eSdrh **
2102039fc32eSdrh ** If the expression might be NULL or if the expression is too complex
2103039fc32eSdrh ** to tell return TRUE.
2104039fc32eSdrh **
2105039fc32eSdrh ** This routine is used as an optimization, to skip OP_IsNull opcodes
2106039fc32eSdrh ** when we know that a value cannot be NULL.  Hence, a false positive
2107039fc32eSdrh ** (returning TRUE when in fact the expression can never be NULL) might
2108039fc32eSdrh ** be a small performance hit but is otherwise harmless.  On the other
2109039fc32eSdrh ** hand, a false negative (returning FALSE when the result could be NULL)
2110039fc32eSdrh ** will likely result in an incorrect answer.  So when in doubt, return
2111039fc32eSdrh ** TRUE.
2112039fc32eSdrh */
2113039fc32eSdrh int sqlite3ExprCanBeNull(const Expr *p){
2114039fc32eSdrh   u8 op;
21159bfb0794Sdrh   while( p->op==TK_UPLUS || p->op==TK_UMINUS ){
21169bfb0794Sdrh     p = p->pLeft;
21179bfb0794Sdrh   }
2118039fc32eSdrh   op = p->op;
2119039fc32eSdrh   if( op==TK_REGISTER ) op = p->op2;
2120039fc32eSdrh   switch( op ){
2121039fc32eSdrh     case TK_INTEGER:
2122039fc32eSdrh     case TK_STRING:
2123039fc32eSdrh     case TK_FLOAT:
2124039fc32eSdrh     case TK_BLOB:
2125039fc32eSdrh       return 0;
21267248a8b2Sdrh     case TK_COLUMN:
212772673a24Sdrh       return ExprHasProperty(p, EP_CanBeNull) ||
2128eda079cdSdrh              p->y.pTab==0 ||  /* Reference to column of index on expression */
2129eda079cdSdrh              (p->iColumn>=0 && p->y.pTab->aCol[p->iColumn].notNull==0);
2130039fc32eSdrh     default:
2131039fc32eSdrh       return 1;
2132039fc32eSdrh   }
2133039fc32eSdrh }
2134039fc32eSdrh 
2135039fc32eSdrh /*
2136039fc32eSdrh ** Return TRUE if the given expression is a constant which would be
2137039fc32eSdrh ** unchanged by OP_Affinity with the affinity given in the second
2138039fc32eSdrh ** argument.
2139039fc32eSdrh **
2140039fc32eSdrh ** This routine is used to determine if the OP_Affinity operation
2141039fc32eSdrh ** can be omitted.  When in doubt return FALSE.  A false negative
2142039fc32eSdrh ** is harmless.  A false positive, however, can result in the wrong
2143039fc32eSdrh ** answer.
2144039fc32eSdrh */
2145039fc32eSdrh int sqlite3ExprNeedsNoAffinityChange(const Expr *p, char aff){
2146039fc32eSdrh   u8 op;
214705883a34Sdrh   if( aff==SQLITE_AFF_BLOB ) return 1;
2148cd7f457eSdrh   while( p->op==TK_UPLUS || p->op==TK_UMINUS ){ p = p->pLeft; }
2149039fc32eSdrh   op = p->op;
2150039fc32eSdrh   if( op==TK_REGISTER ) op = p->op2;
2151039fc32eSdrh   switch( op ){
2152039fc32eSdrh     case TK_INTEGER: {
2153039fc32eSdrh       return aff==SQLITE_AFF_INTEGER || aff==SQLITE_AFF_NUMERIC;
2154039fc32eSdrh     }
2155039fc32eSdrh     case TK_FLOAT: {
2156039fc32eSdrh       return aff==SQLITE_AFF_REAL || aff==SQLITE_AFF_NUMERIC;
2157039fc32eSdrh     }
2158039fc32eSdrh     case TK_STRING: {
2159039fc32eSdrh       return aff==SQLITE_AFF_TEXT;
2160039fc32eSdrh     }
2161039fc32eSdrh     case TK_BLOB: {
2162039fc32eSdrh       return 1;
2163039fc32eSdrh     }
21642f2855b6Sdrh     case TK_COLUMN: {
216588376ca7Sdrh       assert( p->iTable>=0 );  /* p cannot be part of a CHECK constraint */
216688376ca7Sdrh       return p->iColumn<0
21672f2855b6Sdrh           && (aff==SQLITE_AFF_INTEGER || aff==SQLITE_AFF_NUMERIC);
21682f2855b6Sdrh     }
2169039fc32eSdrh     default: {
2170039fc32eSdrh       return 0;
2171039fc32eSdrh     }
2172039fc32eSdrh   }
2173039fc32eSdrh }
2174039fc32eSdrh 
2175039fc32eSdrh /*
2176c4a3c779Sdrh ** Return TRUE if the given string is a row-id column name.
2177c4a3c779Sdrh */
21784adee20fSdanielk1977 int sqlite3IsRowid(const char *z){
21794adee20fSdanielk1977   if( sqlite3StrICmp(z, "_ROWID_")==0 ) return 1;
21804adee20fSdanielk1977   if( sqlite3StrICmp(z, "ROWID")==0 ) return 1;
21814adee20fSdanielk1977   if( sqlite3StrICmp(z, "OID")==0 ) return 1;
2182c4a3c779Sdrh   return 0;
2183c4a3c779Sdrh }
2184c4a3c779Sdrh 
21859a96b668Sdanielk1977 /*
218669c355bdSdrh ** pX is the RHS of an IN operator.  If pX is a SELECT statement
218769c355bdSdrh ** that can be simplified to a direct table access, then return
218869c355bdSdrh ** a pointer to the SELECT statement.  If pX is not a SELECT statement,
218969c355bdSdrh ** or if the SELECT statement needs to be manifested into a transient
219069c355bdSdrh ** table, then return NULL.
2191b287f4b6Sdrh */
2192b287f4b6Sdrh #ifndef SQLITE_OMIT_SUBQUERY
21937b35a77bSdan static Select *isCandidateForInOpt(Expr *pX){
219469c355bdSdrh   Select *p;
2195b287f4b6Sdrh   SrcList *pSrc;
2196b287f4b6Sdrh   ExprList *pEList;
2197b287f4b6Sdrh   Table *pTab;
2198cfbb5e82Sdan   int i;
219969c355bdSdrh   if( !ExprHasProperty(pX, EP_xIsSelect) ) return 0;  /* Not a subquery */
220069c355bdSdrh   if( ExprHasProperty(pX, EP_VarSelect)  ) return 0;  /* Correlated subq */
220169c355bdSdrh   p = pX->x.pSelect;
2202b287f4b6Sdrh   if( p->pPrior ) return 0;              /* Not a compound SELECT */
22037d10d5a6Sdrh   if( p->selFlags & (SF_Distinct|SF_Aggregate) ){
2204b74b1017Sdrh     testcase( (p->selFlags & (SF_Distinct|SF_Aggregate))==SF_Distinct );
2205b74b1017Sdrh     testcase( (p->selFlags & (SF_Distinct|SF_Aggregate))==SF_Aggregate );
22067d10d5a6Sdrh     return 0; /* No DISTINCT keyword and no aggregate functions */
22077d10d5a6Sdrh   }
2208b74b1017Sdrh   assert( p->pGroupBy==0 );              /* Has no GROUP BY clause */
2209b287f4b6Sdrh   if( p->pLimit ) return 0;              /* Has no LIMIT clause */
2210b287f4b6Sdrh   if( p->pWhere ) return 0;              /* Has no WHERE clause */
2211b287f4b6Sdrh   pSrc = p->pSrc;
2212d1fa7bcaSdrh   assert( pSrc!=0 );
2213d1fa7bcaSdrh   if( pSrc->nSrc!=1 ) return 0;          /* Single term in FROM clause */
2214b74b1017Sdrh   if( pSrc->a[0].pSelect ) return 0;     /* FROM is not a subquery or view */
2215b287f4b6Sdrh   pTab = pSrc->a[0].pTab;
221669c355bdSdrh   assert( pTab!=0 );
2217b74b1017Sdrh   assert( pTab->pSelect==0 );            /* FROM clause is not a view */
2218b287f4b6Sdrh   if( IsVirtual(pTab) ) return 0;        /* FROM clause not a virtual table */
2219b287f4b6Sdrh   pEList = p->pEList;
2220ac6b47d1Sdrh   assert( pEList!=0 );
22217b35a77bSdan   /* All SELECT results must be columns. */
2222cfbb5e82Sdan   for(i=0; i<pEList->nExpr; i++){
2223cfbb5e82Sdan     Expr *pRes = pEList->a[i].pExpr;
2224cfbb5e82Sdan     if( pRes->op!=TK_COLUMN ) return 0;
222569c355bdSdrh     assert( pRes->iTable==pSrc->a[0].iCursor );  /* Not a correlated subquery */
2226cfbb5e82Sdan   }
222769c355bdSdrh   return p;
2228b287f4b6Sdrh }
2229b287f4b6Sdrh #endif /* SQLITE_OMIT_SUBQUERY */
2230b287f4b6Sdrh 
2231f9b2e05cSdan #ifndef SQLITE_OMIT_SUBQUERY
22321d8cb21fSdan /*
22334c259e9fSdrh ** Generate code that checks the left-most column of index table iCur to see if
22344c259e9fSdrh ** it contains any NULL entries.  Cause the register at regHasNull to be set
22356be515ebSdrh ** to a non-NULL value if iCur contains no NULLs.  Cause register regHasNull
22366be515ebSdrh ** to be set to NULL if iCur contains one or more NULL values.
22376be515ebSdrh */
22386be515ebSdrh static void sqlite3SetHasNullFlag(Vdbe *v, int iCur, int regHasNull){
2239728e0f91Sdrh   int addr1;
22406be515ebSdrh   sqlite3VdbeAddOp2(v, OP_Integer, 0, regHasNull);
2241728e0f91Sdrh   addr1 = sqlite3VdbeAddOp1(v, OP_Rewind, iCur); VdbeCoverage(v);
22426be515ebSdrh   sqlite3VdbeAddOp3(v, OP_Column, iCur, 0, regHasNull);
22436be515ebSdrh   sqlite3VdbeChangeP5(v, OPFLAG_TYPEOFARG);
22444c259e9fSdrh   VdbeComment((v, "first_entry_in(%d)", iCur));
2245728e0f91Sdrh   sqlite3VdbeJumpHere(v, addr1);
22466be515ebSdrh }
2247f9b2e05cSdan #endif
22486be515ebSdrh 
2249bb53ecb1Sdrh 
2250bb53ecb1Sdrh #ifndef SQLITE_OMIT_SUBQUERY
2251bb53ecb1Sdrh /*
2252bb53ecb1Sdrh ** The argument is an IN operator with a list (not a subquery) on the
2253bb53ecb1Sdrh ** right-hand side.  Return TRUE if that list is constant.
2254bb53ecb1Sdrh */
2255bb53ecb1Sdrh static int sqlite3InRhsIsConstant(Expr *pIn){
2256bb53ecb1Sdrh   Expr *pLHS;
2257bb53ecb1Sdrh   int res;
2258bb53ecb1Sdrh   assert( !ExprHasProperty(pIn, EP_xIsSelect) );
2259bb53ecb1Sdrh   pLHS = pIn->pLeft;
2260bb53ecb1Sdrh   pIn->pLeft = 0;
2261bb53ecb1Sdrh   res = sqlite3ExprIsConstant(pIn);
2262bb53ecb1Sdrh   pIn->pLeft = pLHS;
2263bb53ecb1Sdrh   return res;
2264bb53ecb1Sdrh }
2265bb53ecb1Sdrh #endif
2266bb53ecb1Sdrh 
22676be515ebSdrh /*
22689a96b668Sdanielk1977 ** This function is used by the implementation of the IN (...) operator.
2269d4305ca6Sdrh ** The pX parameter is the expression on the RHS of the IN operator, which
2270d4305ca6Sdrh ** might be either a list of expressions or a subquery.
22719a96b668Sdanielk1977 **
2272d4305ca6Sdrh ** The job of this routine is to find or create a b-tree object that can
2273d4305ca6Sdrh ** be used either to test for membership in the RHS set or to iterate through
2274d4305ca6Sdrh ** all members of the RHS set, skipping duplicates.
2275d4305ca6Sdrh **
22763a85625dSdrh ** A cursor is opened on the b-tree object that is the RHS of the IN operator
2277d4305ca6Sdrh ** and pX->iTable is set to the index of that cursor.
2278d4305ca6Sdrh **
2279b74b1017Sdrh ** The returned value of this function indicates the b-tree type, as follows:
22809a96b668Sdanielk1977 **
22819a96b668Sdanielk1977 **   IN_INDEX_ROWID      - The cursor was opened on a database table.
22821ccce449Sdrh **   IN_INDEX_INDEX_ASC  - The cursor was opened on an ascending index.
22831ccce449Sdrh **   IN_INDEX_INDEX_DESC - The cursor was opened on a descending index.
22849a96b668Sdanielk1977 **   IN_INDEX_EPH        - The cursor was opened on a specially created and
22859a96b668Sdanielk1977 **                         populated epheremal table.
2286bb53ecb1Sdrh **   IN_INDEX_NOOP       - No cursor was allocated.  The IN operator must be
2287bb53ecb1Sdrh **                         implemented as a sequence of comparisons.
22889a96b668Sdanielk1977 **
2289d4305ca6Sdrh ** An existing b-tree might be used if the RHS expression pX is a simple
2290d4305ca6Sdrh ** subquery such as:
22919a96b668Sdanielk1977 **
2292553168c7Sdan **     SELECT <column1>, <column2>... FROM <table>
22939a96b668Sdanielk1977 **
2294d4305ca6Sdrh ** If the RHS of the IN operator is a list or a more complex subquery, then
2295d4305ca6Sdrh ** an ephemeral table might need to be generated from the RHS and then
229660ec914cSpeter.d.reid ** pX->iTable made to point to the ephemeral table instead of an
2297d4305ca6Sdrh ** existing table.
2298d4305ca6Sdrh **
22997fc0ba0fSdrh ** The inFlags parameter must contain, at a minimum, one of the bits
23007fc0ba0fSdrh ** IN_INDEX_MEMBERSHIP or IN_INDEX_LOOP but not both.  If inFlags contains
23017fc0ba0fSdrh ** IN_INDEX_MEMBERSHIP, then the generated table will be used for a fast
23027fc0ba0fSdrh ** membership test.  When the IN_INDEX_LOOP bit is set, the IN index will
23037fc0ba0fSdrh ** be used to loop over all values of the RHS of the IN operator.
23043a85625dSdrh **
23053a85625dSdrh ** When IN_INDEX_LOOP is used (and the b-tree will be used to iterate
23063a85625dSdrh ** through the set members) then the b-tree must not contain duplicates.
23077fc0ba0fSdrh ** An epheremal table will be created unless the selected columns are guaranteed
2308553168c7Sdan ** to be unique - either because it is an INTEGER PRIMARY KEY or due to
2309553168c7Sdan ** a UNIQUE constraint or index.
23100cdc022eSdanielk1977 **
23113a85625dSdrh ** When IN_INDEX_MEMBERSHIP is used (and the b-tree will be used
23123a85625dSdrh ** for fast set membership tests) then an epheremal table must
2313553168c7Sdan ** be used unless <columns> is a single INTEGER PRIMARY KEY column or an
2314553168c7Sdan ** index can be found with the specified <columns> as its left-most.
23150cdc022eSdanielk1977 **
2316bb53ecb1Sdrh ** If the IN_INDEX_NOOP_OK and IN_INDEX_MEMBERSHIP are both set and
2317bb53ecb1Sdrh ** if the RHS of the IN operator is a list (not a subquery) then this
2318bb53ecb1Sdrh ** routine might decide that creating an ephemeral b-tree for membership
2319bb53ecb1Sdrh ** testing is too expensive and return IN_INDEX_NOOP.  In that case, the
2320bb53ecb1Sdrh ** calling routine should implement the IN operator using a sequence
2321bb53ecb1Sdrh ** of Eq or Ne comparison operations.
2322bb53ecb1Sdrh **
2323b74b1017Sdrh ** When the b-tree is being used for membership tests, the calling function
23243a85625dSdrh ** might need to know whether or not the RHS side of the IN operator
2325e21a6e1dSdrh ** contains a NULL.  If prRhsHasNull is not a NULL pointer and
23263a85625dSdrh ** if there is any chance that the (...) might contain a NULL value at
23270cdc022eSdanielk1977 ** runtime, then a register is allocated and the register number written
2328e21a6e1dSdrh ** to *prRhsHasNull. If there is no chance that the (...) contains a
2329e21a6e1dSdrh ** NULL value, then *prRhsHasNull is left unchanged.
23300cdc022eSdanielk1977 **
2331e21a6e1dSdrh ** If a register is allocated and its location stored in *prRhsHasNull, then
23326be515ebSdrh ** the value in that register will be NULL if the b-tree contains one or more
23336be515ebSdrh ** NULL values, and it will be some non-NULL value if the b-tree contains no
23346be515ebSdrh ** NULL values.
2335553168c7Sdan **
2336553168c7Sdan ** If the aiMap parameter is not NULL, it must point to an array containing
2337553168c7Sdan ** one element for each column returned by the SELECT statement on the RHS
2338553168c7Sdan ** of the IN(...) operator. The i'th entry of the array is populated with the
2339553168c7Sdan ** offset of the index column that matches the i'th column returned by the
2340553168c7Sdan ** SELECT. For example, if the expression and selected index are:
2341553168c7Sdan **
2342553168c7Sdan **   (?,?,?) IN (SELECT a, b, c FROM t1)
2343553168c7Sdan **   CREATE INDEX i1 ON t1(b, c, a);
2344553168c7Sdan **
2345553168c7Sdan ** then aiMap[] is populated with {2, 0, 1}.
23469a96b668Sdanielk1977 */
2347284f4acaSdanielk1977 #ifndef SQLITE_OMIT_SUBQUERY
2348ba00e30aSdan int sqlite3FindInIndex(
23496fc8f364Sdrh   Parse *pParse,             /* Parsing context */
23506fc8f364Sdrh   Expr *pX,                  /* The right-hand side (RHS) of the IN operator */
23516fc8f364Sdrh   u32 inFlags,               /* IN_INDEX_LOOP, _MEMBERSHIP, and/or _NOOP_OK */
23526fc8f364Sdrh   int *prRhsHasNull,         /* Register holding NULL status.  See notes */
23532c04131cSdrh   int *aiMap,                /* Mapping from Index fields to RHS fields */
23542c04131cSdrh   int *piTab                 /* OUT: index to use */
2355ba00e30aSdan ){
2356b74b1017Sdrh   Select *p;                            /* SELECT to the right of IN operator */
2357b74b1017Sdrh   int eType = 0;                        /* Type of RHS table. IN_INDEX_* */
2358b74b1017Sdrh   int iTab = pParse->nTab++;            /* Cursor of the RHS table */
23593a85625dSdrh   int mustBeUnique;                     /* True if RHS must be unique */
2360b8475df8Sdrh   Vdbe *v = sqlite3GetVdbe(pParse);     /* Virtual machine being coded */
23619a96b668Sdanielk1977 
23621450bc6eSdrh   assert( pX->op==TK_IN );
23633a85625dSdrh   mustBeUnique = (inFlags & IN_INDEX_LOOP)!=0;
23641450bc6eSdrh 
23657b35a77bSdan   /* If the RHS of this IN(...) operator is a SELECT, and if it matters
23667b35a77bSdan   ** whether or not the SELECT result contains NULL values, check whether
2367870a0705Sdan   ** or not NULL is actually possible (it may not be, for example, due
23687b35a77bSdan   ** to NOT NULL constraints in the schema). If no NULL values are possible,
2369870a0705Sdan   ** set prRhsHasNull to 0 before continuing.  */
23707b35a77bSdan   if( prRhsHasNull && (pX->flags & EP_xIsSelect) ){
23717b35a77bSdan     int i;
23727b35a77bSdan     ExprList *pEList = pX->x.pSelect->pEList;
23737b35a77bSdan     for(i=0; i<pEList->nExpr; i++){
23747b35a77bSdan       if( sqlite3ExprCanBeNull(pEList->a[i].pExpr) ) break;
23757b35a77bSdan     }
23767b35a77bSdan     if( i==pEList->nExpr ){
23777b35a77bSdan       prRhsHasNull = 0;
23787b35a77bSdan     }
23797b35a77bSdan   }
23807b35a77bSdan 
2381b74b1017Sdrh   /* Check to see if an existing table or index can be used to
2382b74b1017Sdrh   ** satisfy the query.  This is preferable to generating a new
23837b35a77bSdan   ** ephemeral table.  */
23847b35a77bSdan   if( pParse->nErr==0 && (p = isCandidateForInOpt(pX))!=0 ){
2385e1fb65a0Sdanielk1977     sqlite3 *db = pParse->db;              /* Database connection */
2386b07028f7Sdrh     Table *pTab;                           /* Table <table>. */
2387ba00e30aSdan     i16 iDb;                               /* Database idx for pTab */
2388cfbb5e82Sdan     ExprList *pEList = p->pEList;
2389cfbb5e82Sdan     int nExpr = pEList->nExpr;
2390e1fb65a0Sdanielk1977 
2391b07028f7Sdrh     assert( p->pEList!=0 );             /* Because of isCandidateForInOpt(p) */
2392b07028f7Sdrh     assert( p->pEList->a[0].pExpr!=0 ); /* Because of isCandidateForInOpt(p) */
2393b07028f7Sdrh     assert( p->pSrc!=0 );               /* Because of isCandidateForInOpt(p) */
2394b07028f7Sdrh     pTab = p->pSrc->a[0].pTab;
2395b07028f7Sdrh 
2396b22f7c83Sdrh     /* Code an OP_Transaction and OP_TableLock for <table>. */
2397e1fb65a0Sdanielk1977     iDb = sqlite3SchemaToIndex(db, pTab->pSchema);
2398e1fb65a0Sdanielk1977     sqlite3CodeVerifySchema(pParse, iDb);
2399e1fb65a0Sdanielk1977     sqlite3TableLock(pParse, iDb, pTab->tnum, 0, pTab->zName);
24009a96b668Sdanielk1977 
2401a84a283dSdrh     assert(v);  /* sqlite3GetVdbe() has always been previously called */
2402cfbb5e82Sdan     if( nExpr==1 && pEList->a[0].pExpr->iColumn<0 ){
240362659b2aSdrh       /* The "x IN (SELECT rowid FROM table)" case */
2404511f9e8dSdrh       int iAddr = sqlite3VdbeAddOp0(v, OP_Once);
24057d176105Sdrh       VdbeCoverage(v);
24069a96b668Sdanielk1977 
24079a96b668Sdanielk1977       sqlite3OpenTable(pParse, iTab, iDb, pTab, OP_OpenRead);
24089a96b668Sdanielk1977       eType = IN_INDEX_ROWID;
2409d8852095Sdrh       ExplainQueryPlan((pParse, 0,
2410d8852095Sdrh             "USING ROWID SEARCH ON TABLE %s FOR IN-OPERATOR",pTab->zName));
24119a96b668Sdanielk1977       sqlite3VdbeJumpHere(v, iAddr);
24129a96b668Sdanielk1977     }else{
2413e1fb65a0Sdanielk1977       Index *pIdx;                         /* Iterator variable */
2414cfbb5e82Sdan       int affinity_ok = 1;
2415cfbb5e82Sdan       int i;
2416cfbb5e82Sdan 
2417cfbb5e82Sdan       /* Check that the affinity that will be used to perform each
241862659b2aSdrh       ** comparison is the same as the affinity of each column in table
241962659b2aSdrh       ** on the RHS of the IN operator.  If it not, it is not possible to
242062659b2aSdrh       ** use any index of the RHS table.  */
2421cfbb5e82Sdan       for(i=0; i<nExpr && affinity_ok; i++){
2422fc7f27b9Sdrh         Expr *pLhs = sqlite3VectorFieldSubexpr(pX->pLeft, i);
2423cfbb5e82Sdan         int iCol = pEList->a[i].pExpr->iColumn;
24240dfa4f6fSdrh         char idxaff = sqlite3TableColumnAffinity(pTab,iCol); /* RHS table */
2425cfbb5e82Sdan         char cmpaff = sqlite3CompareAffinity(pLhs, idxaff);
242662659b2aSdrh         testcase( cmpaff==SQLITE_AFF_BLOB );
242762659b2aSdrh         testcase( cmpaff==SQLITE_AFF_TEXT );
2428cfbb5e82Sdan         switch( cmpaff ){
2429cfbb5e82Sdan           case SQLITE_AFF_BLOB:
2430cfbb5e82Sdan             break;
2431cfbb5e82Sdan           case SQLITE_AFF_TEXT:
243262659b2aSdrh             /* sqlite3CompareAffinity() only returns TEXT if one side or the
243362659b2aSdrh             ** other has no affinity and the other side is TEXT.  Hence,
243462659b2aSdrh             ** the only way for cmpaff to be TEXT is for idxaff to be TEXT
243562659b2aSdrh             ** and for the term on the LHS of the IN to have no affinity. */
243662659b2aSdrh             assert( idxaff==SQLITE_AFF_TEXT );
2437cfbb5e82Sdan             break;
2438cfbb5e82Sdan           default:
2439cfbb5e82Sdan             affinity_ok = sqlite3IsNumericAffinity(idxaff);
2440cfbb5e82Sdan         }
2441cfbb5e82Sdan       }
2442e1fb65a0Sdanielk1977 
2443a84a283dSdrh       if( affinity_ok ){
2444a84a283dSdrh         /* Search for an existing index that will work for this IN operator */
2445a84a283dSdrh         for(pIdx=pTab->pIndex; pIdx && eType==0; pIdx=pIdx->pNext){
2446a84a283dSdrh           Bitmask colUsed;      /* Columns of the index used */
2447a84a283dSdrh           Bitmask mCol;         /* Mask for the current column */
24486fc8f364Sdrh           if( pIdx->nColumn<nExpr ) continue;
2449d4a4a361Sdrh           if( pIdx->pPartIdxWhere!=0 ) continue;
2450a84a283dSdrh           /* Maximum nColumn is BMS-2, not BMS-1, so that we can compute
2451a84a283dSdrh           ** BITMASK(nExpr) without overflowing */
2452a84a283dSdrh           testcase( pIdx->nColumn==BMS-2 );
2453a84a283dSdrh           testcase( pIdx->nColumn==BMS-1 );
2454a84a283dSdrh           if( pIdx->nColumn>=BMS-1 ) continue;
24556fc8f364Sdrh           if( mustBeUnique ){
24566fc8f364Sdrh             if( pIdx->nKeyCol>nExpr
24576fc8f364Sdrh              ||(pIdx->nColumn>nExpr && !IsUniqueIndex(pIdx))
24586fc8f364Sdrh             ){
2459a84a283dSdrh               continue;  /* This index is not unique over the IN RHS columns */
2460cfbb5e82Sdan             }
24616fc8f364Sdrh           }
2462cfbb5e82Sdan 
2463a84a283dSdrh           colUsed = 0;   /* Columns of index used so far */
2464cfbb5e82Sdan           for(i=0; i<nExpr; i++){
2465fc7f27b9Sdrh             Expr *pLhs = sqlite3VectorFieldSubexpr(pX->pLeft, i);
2466cfbb5e82Sdan             Expr *pRhs = pEList->a[i].pExpr;
2467cfbb5e82Sdan             CollSeq *pReq = sqlite3BinaryCompareCollSeq(pParse, pLhs, pRhs);
2468cfbb5e82Sdan             int j;
2469cfbb5e82Sdan 
24706fc8f364Sdrh             assert( pReq!=0 || pRhs->iColumn==XN_ROWID || pParse->nErr );
2471cfbb5e82Sdan             for(j=0; j<nExpr; j++){
2472cfbb5e82Sdan               if( pIdx->aiColumn[j]!=pRhs->iColumn ) continue;
2473cfbb5e82Sdan               assert( pIdx->azColl[j] );
2474106526e1Sdrh               if( pReq!=0 && sqlite3StrICmp(pReq->zName, pIdx->azColl[j])!=0 ){
2475106526e1Sdrh                 continue;
2476106526e1Sdrh               }
2477cfbb5e82Sdan               break;
2478cfbb5e82Sdan             }
2479cfbb5e82Sdan             if( j==nExpr ) break;
2480a84a283dSdrh             mCol = MASKBIT(j);
2481a84a283dSdrh             if( mCol & colUsed ) break; /* Each column used only once */
2482a84a283dSdrh             colUsed |= mCol;
2483ba00e30aSdan             if( aiMap ) aiMap[i] = j;
2484cfbb5e82Sdan           }
2485cfbb5e82Sdan 
2486a84a283dSdrh           assert( i==nExpr || colUsed!=(MASKBIT(nExpr)-1) );
2487a84a283dSdrh           if( colUsed==(MASKBIT(nExpr)-1) ){
2488a84a283dSdrh             /* If we reach this point, that means the index pIdx is usable */
2489511f9e8dSdrh             int iAddr = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v);
2490e2ca99c9Sdrh             ExplainQueryPlan((pParse, 0,
2491e2ca99c9Sdrh                               "USING INDEX %s FOR IN-OPERATOR",pIdx->zName));
24922ec2fb22Sdrh             sqlite3VdbeAddOp3(v, OP_OpenRead, iTab, pIdx->tnum, iDb);
24932ec2fb22Sdrh             sqlite3VdbeSetP4KeyInfo(pParse, pIdx);
2494207872a4Sdanielk1977             VdbeComment((v, "%s", pIdx->zName));
24951ccce449Sdrh             assert( IN_INDEX_INDEX_DESC == IN_INDEX_INDEX_ASC+1 );
24961ccce449Sdrh             eType = IN_INDEX_INDEX_ASC + pIdx->aSortOrder[0];
24979a96b668Sdanielk1977 
24987b35a77bSdan             if( prRhsHasNull ){
24993480bfdaSdan #ifdef SQLITE_ENABLE_COLUMN_USED_MASK
2500cfbb5e82Sdan               i64 mask = (1<<nExpr)-1;
25013480bfdaSdan               sqlite3VdbeAddOp4Dup8(v, OP_ColumnsUsed,
2502cfbb5e82Sdan                   iTab, 0, 0, (u8*)&mask, P4_INT64);
25033480bfdaSdan #endif
2504b80dbdc2Sdrh               *prRhsHasNull = ++pParse->nMem;
25057b35a77bSdan               if( nExpr==1 ){
25066be515ebSdrh                 sqlite3SetHasNullFlag(v, iTab, *prRhsHasNull);
25070cdc022eSdanielk1977               }
25087b35a77bSdan             }
2509552fd454Sdrh             sqlite3VdbeJumpHere(v, iAddr);
25109a96b668Sdanielk1977           }
2511a84a283dSdrh         } /* End loop over indexes */
2512a84a283dSdrh       } /* End if( affinity_ok ) */
2513a84a283dSdrh     } /* End if not an rowid index */
2514a84a283dSdrh   } /* End attempt to optimize using an index */
25159a96b668Sdanielk1977 
2516bb53ecb1Sdrh   /* If no preexisting index is available for the IN clause
2517bb53ecb1Sdrh   ** and IN_INDEX_NOOP is an allowed reply
2518bb53ecb1Sdrh   ** and the RHS of the IN operator is a list, not a subquery
251971c57db0Sdan   ** and the RHS is not constant or has two or fewer terms,
252060ec914cSpeter.d.reid   ** then it is not worth creating an ephemeral table to evaluate
2521bb53ecb1Sdrh   ** the IN operator so return IN_INDEX_NOOP.
2522bb53ecb1Sdrh   */
2523bb53ecb1Sdrh   if( eType==0
2524bb53ecb1Sdrh    && (inFlags & IN_INDEX_NOOP_OK)
2525bb53ecb1Sdrh    && !ExprHasProperty(pX, EP_xIsSelect)
2526bb53ecb1Sdrh    && (!sqlite3InRhsIsConstant(pX) || pX->x.pList->nExpr<=2)
2527bb53ecb1Sdrh   ){
2528bb53ecb1Sdrh     eType = IN_INDEX_NOOP;
2529bb53ecb1Sdrh   }
2530bb53ecb1Sdrh 
25319a96b668Sdanielk1977   if( eType==0 ){
25324387006cSdrh     /* Could not find an existing table or index to use as the RHS b-tree.
2533b74b1017Sdrh     ** We will have to generate an ephemeral table to do the job.
2534b74b1017Sdrh     */
25358e23daf3Sdrh     u32 savedNQueryLoop = pParse->nQueryLoop;
25360cdc022eSdanielk1977     int rMayHaveNull = 0;
253741a05b7bSdanielk1977     eType = IN_INDEX_EPH;
25383a85625dSdrh     if( inFlags & IN_INDEX_LOOP ){
25394a5acf8eSdrh       pParse->nQueryLoop = 0;
2540c5cd1249Sdrh       if( pX->pLeft->iColumn<0 && !ExprHasProperty(pX, EP_xIsSelect) ){
254141a05b7bSdanielk1977         eType = IN_INDEX_ROWID;
25420cdc022eSdanielk1977       }
2543e21a6e1dSdrh     }else if( prRhsHasNull ){
2544e21a6e1dSdrh       *prRhsHasNull = rMayHaveNull = ++pParse->nMem;
2545cf4d38aaSdrh     }
254685bcdce2Sdrh     assert( pX->op==TK_IN );
25472c04131cSdrh     sqlite3CodeRhsOfIN(pParse, pX, iTab, eType==IN_INDEX_ROWID);
254885bcdce2Sdrh     if( rMayHaveNull ){
25492c04131cSdrh       sqlite3SetHasNullFlag(v, iTab, rMayHaveNull);
255085bcdce2Sdrh     }
2551cf4d38aaSdrh     pParse->nQueryLoop = savedNQueryLoop;
25529a96b668Sdanielk1977   }
2553ba00e30aSdan 
2554ba00e30aSdan   if( aiMap && eType!=IN_INDEX_INDEX_ASC && eType!=IN_INDEX_INDEX_DESC ){
2555ba00e30aSdan     int i, n;
2556ba00e30aSdan     n = sqlite3ExprVectorSize(pX->pLeft);
2557ba00e30aSdan     for(i=0; i<n; i++) aiMap[i] = i;
2558ba00e30aSdan   }
25592c04131cSdrh   *piTab = iTab;
25609a96b668Sdanielk1977   return eType;
25619a96b668Sdanielk1977 }
2562284f4acaSdanielk1977 #endif
2563626a879aSdrh 
2564f9b2e05cSdan #ifndef SQLITE_OMIT_SUBQUERY
2565553168c7Sdan /*
2566553168c7Sdan ** Argument pExpr is an (?, ?...) IN(...) expression. This
2567553168c7Sdan ** function allocates and returns a nul-terminated string containing
2568553168c7Sdan ** the affinities to be used for each column of the comparison.
2569553168c7Sdan **
2570553168c7Sdan ** It is the responsibility of the caller to ensure that the returned
2571553168c7Sdan ** string is eventually freed using sqlite3DbFree().
2572553168c7Sdan */
257371c57db0Sdan static char *exprINAffinity(Parse *pParse, Expr *pExpr){
257471c57db0Sdan   Expr *pLeft = pExpr->pLeft;
257571c57db0Sdan   int nVal = sqlite3ExprVectorSize(pLeft);
2576553168c7Sdan   Select *pSelect = (pExpr->flags & EP_xIsSelect) ? pExpr->x.pSelect : 0;
257771c57db0Sdan   char *zRet;
257871c57db0Sdan 
2579553168c7Sdan   assert( pExpr->op==TK_IN );
25805c258dc1Sdrh   zRet = sqlite3DbMallocRaw(pParse->db, nVal+1);
258171c57db0Sdan   if( zRet ){
258271c57db0Sdan     int i;
258371c57db0Sdan     for(i=0; i<nVal; i++){
2584fc7f27b9Sdrh       Expr *pA = sqlite3VectorFieldSubexpr(pLeft, i);
2585553168c7Sdan       char a = sqlite3ExprAffinity(pA);
2586553168c7Sdan       if( pSelect ){
2587553168c7Sdan         zRet[i] = sqlite3CompareAffinity(pSelect->pEList->a[i].pExpr, a);
258871c57db0Sdan       }else{
2589553168c7Sdan         zRet[i] = a;
259071c57db0Sdan       }
259171c57db0Sdan     }
259271c57db0Sdan     zRet[nVal] = '\0';
259371c57db0Sdan   }
259471c57db0Sdan   return zRet;
259571c57db0Sdan }
2596f9b2e05cSdan #endif
259771c57db0Sdan 
25988da209b1Sdan #ifndef SQLITE_OMIT_SUBQUERY
25998da209b1Sdan /*
26008da209b1Sdan ** Load the Parse object passed as the first argument with an error
26018da209b1Sdan ** message of the form:
26028da209b1Sdan **
26038da209b1Sdan **   "sub-select returns N columns - expected M"
26048da209b1Sdan */
26058da209b1Sdan void sqlite3SubselectError(Parse *pParse, int nActual, int nExpect){
26068da209b1Sdan   const char *zFmt = "sub-select returns %d columns - expected %d";
26078da209b1Sdan   sqlite3ErrorMsg(pParse, zFmt, nActual, nExpect);
26088da209b1Sdan }
26098da209b1Sdan #endif
26108da209b1Sdan 
2611626a879aSdrh /*
261244c5604cSdan ** Expression pExpr is a vector that has been used in a context where
261344c5604cSdan ** it is not permitted. If pExpr is a sub-select vector, this routine
261444c5604cSdan ** loads the Parse object with a message of the form:
261544c5604cSdan **
261644c5604cSdan **   "sub-select returns N columns - expected 1"
261744c5604cSdan **
261844c5604cSdan ** Or, if it is a regular scalar vector:
261944c5604cSdan **
262044c5604cSdan **   "row value misused"
262144c5604cSdan */
262244c5604cSdan void sqlite3VectorErrorMsg(Parse *pParse, Expr *pExpr){
262344c5604cSdan #ifndef SQLITE_OMIT_SUBQUERY
262444c5604cSdan   if( pExpr->flags & EP_xIsSelect ){
262544c5604cSdan     sqlite3SubselectError(pParse, pExpr->x.pSelect->pEList->nExpr, 1);
262644c5604cSdan   }else
262744c5604cSdan #endif
262844c5604cSdan   {
262944c5604cSdan     sqlite3ErrorMsg(pParse, "row value misused");
263044c5604cSdan   }
263144c5604cSdan }
263244c5604cSdan 
263385bcdce2Sdrh #ifndef SQLITE_OMIT_SUBQUERY
263444c5604cSdan /*
263585bcdce2Sdrh ** Generate code that will construct an ephemeral table containing all terms
263685bcdce2Sdrh ** in the RHS of an IN operator.  The IN operator can be in either of two
263785bcdce2Sdrh ** forms:
2638626a879aSdrh **
26399cbe6352Sdrh **     x IN (4,5,11)              -- IN operator with list on right-hand side
26409cbe6352Sdrh **     x IN (SELECT a FROM b)     -- IN operator with subquery on the right
2641fef5208cSdrh **
26422c04131cSdrh ** The pExpr parameter is the IN operator.  The cursor number for the
26432c04131cSdrh ** constructed ephermeral table is returned.  The first time the ephemeral
26442c04131cSdrh ** table is computed, the cursor number is also stored in pExpr->iTable,
26452c04131cSdrh ** however the cursor number returned might not be the same, as it might
26462c04131cSdrh ** have been duplicated using OP_OpenDup.
264741a05b7bSdanielk1977 **
264885bcdce2Sdrh ** If parameter isRowid is non-zero, then LHS of the IN operator is guaranteed
264985bcdce2Sdrh ** to be a non-null integer. In this case, the ephemeral table can be an
265085bcdce2Sdrh ** table B-Tree that keyed by only integers.  The more general cases uses
265185bcdce2Sdrh ** an index B-Tree which can have arbitrary keys, but is slower to both
265285bcdce2Sdrh ** read and write.
2653fd773cf9Sdrh **
265485bcdce2Sdrh ** If the LHS expression ("x" in the examples) is a column value, or
265585bcdce2Sdrh ** the SELECT statement returns a column value, then the affinity of that
265685bcdce2Sdrh ** column is used to build the index keys. If both 'x' and the
265785bcdce2Sdrh ** SELECT... statement are columns, then numeric affinity is used
265885bcdce2Sdrh ** if either column has NUMERIC or INTEGER affinity. If neither
265985bcdce2Sdrh ** 'x' nor the SELECT... statement are columns, then numeric affinity
266085bcdce2Sdrh ** is used.
2661cce7d176Sdrh */
266285bcdce2Sdrh void sqlite3CodeRhsOfIN(
2663fd773cf9Sdrh   Parse *pParse,          /* Parsing context */
266485bcdce2Sdrh   Expr *pExpr,            /* The IN operator */
26652c04131cSdrh   int iTab,               /* Use this cursor number */
266685bcdce2Sdrh   int isRowid             /* If true, LHS is a rowid */
266741a05b7bSdanielk1977 ){
26682c04131cSdrh   int addrOnce = 0;           /* Address of the OP_Once instruction at top */
266985bcdce2Sdrh   int addr;                   /* Address of OP_OpenEphemeral instruction */
267085bcdce2Sdrh   Expr *pLeft;                /* the LHS of the IN operator */
267185bcdce2Sdrh   KeyInfo *pKeyInfo = 0;      /* Key information */
267285bcdce2Sdrh   int nVal;                   /* Size of vector pLeft */
267385bcdce2Sdrh   Vdbe *v;                    /* The prepared statement under construction */
2674fc976065Sdanielk1977 
26752c04131cSdrh   v = pParse->pVdbe;
267685bcdce2Sdrh   assert( v!=0 );
267785bcdce2Sdrh 
26782c04131cSdrh   /* The evaluation of the IN must be repeated every time it
267939a11819Sdrh   ** is encountered if any of the following is true:
268057dbd7b3Sdrh   **
268157dbd7b3Sdrh   **    *  The right-hand side is a correlated subquery
268257dbd7b3Sdrh   **    *  The right-hand side is an expression list containing variables
268357dbd7b3Sdrh   **    *  We are inside a trigger
268457dbd7b3Sdrh   **
26852c04131cSdrh   ** If all of the above are false, then we can compute the RHS just once
26862c04131cSdrh   ** and reuse it many names.
2687b3bce662Sdanielk1977   */
2688*efb699fcSdrh   if( !ExprHasProperty(pExpr, EP_VarSelect) && pParse->iSelfTab==0 ){
26892c04131cSdrh     /* Reuse of the RHS is allowed */
26902c04131cSdrh     /* If this routine has already been coded, but the previous code
26912c04131cSdrh     ** might not have been invoked yet, so invoke it now as a subroutine.
26922c04131cSdrh     */
26932c04131cSdrh     if( ExprHasProperty(pExpr, EP_Subrtn) ){
26942c04131cSdrh       sqlite3VdbeAddOp2(v, OP_Once, 0, sqlite3VdbeCurrentAddr(v)+3);
26952c04131cSdrh       sqlite3VdbeAddOp2(v, OP_Gosub, pExpr->y.sub.regReturn,
26962c04131cSdrh                         pExpr->y.sub.iAddr);
26972c04131cSdrh       sqlite3VdbeAddOp2(v, OP_OpenDup, iTab, pExpr->iTable);
26982c04131cSdrh       return;
26992c04131cSdrh     }
27002c04131cSdrh 
27012c04131cSdrh     /* Begin coding the subroutine */
27022c04131cSdrh     ExprSetProperty(pExpr, EP_Subrtn);
27032c04131cSdrh     pExpr->y.sub.regReturn = ++pParse->nMem;
27042c04131cSdrh     pExpr->y.sub.iAddr =
27052c04131cSdrh       sqlite3VdbeAddOp2(v, OP_Integer, 0, pExpr->y.sub.regReturn) + 1;
27062c04131cSdrh     VdbeComment((v, "return address"));
27072c04131cSdrh 
27082c04131cSdrh     addrOnce = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v);
2709b3bce662Sdanielk1977   }
2710b3bce662Sdanielk1977 
271185bcdce2Sdrh   /* Check to see if this is a vector IN operator */
271285bcdce2Sdrh   pLeft = pExpr->pLeft;
271371c57db0Sdan   nVal = sqlite3ExprVectorSize(pLeft);
2714553168c7Sdan   assert( !isRowid || nVal==1 );
2715e014a838Sdanielk1977 
271685bcdce2Sdrh   /* Construct the ephemeral table that will contain the content of
271785bcdce2Sdrh   ** RHS of the IN operator.
2718fef5208cSdrh   */
27192c04131cSdrh   pExpr->iTable = iTab;
272071c57db0Sdan   addr = sqlite3VdbeAddOp2(v, OP_OpenEphemeral,
272171c57db0Sdan       pExpr->iTable, (isRowid?0:nVal));
27222c04131cSdrh #ifdef SQLITE_ENABLE_EXPLAIN_COMMENTS
27232c04131cSdrh   if( ExprHasProperty(pExpr, EP_xIsSelect) ){
27242c04131cSdrh     VdbeComment((v, "Result of SELECT %u", pExpr->x.pSelect->selId));
27252c04131cSdrh   }else{
27262c04131cSdrh     VdbeComment((v, "RHS of IN operator"));
27272c04131cSdrh   }
27282c04131cSdrh #endif
272971c57db0Sdan   pKeyInfo = isRowid ? 0 : sqlite3KeyInfoAlloc(pParse->db, nVal, 1);
2730e014a838Sdanielk1977 
27316ab3a2ecSdanielk1977   if( ExprHasProperty(pExpr, EP_xIsSelect) ){
2732e014a838Sdanielk1977     /* Case 1:     expr IN (SELECT ...)
2733e014a838Sdanielk1977     **
2734e014a838Sdanielk1977     ** Generate code to write the results of the select into the temporary
2735e014a838Sdanielk1977     ** table allocated and opened above.
2736e014a838Sdanielk1977     */
27374387006cSdrh     Select *pSelect = pExpr->x.pSelect;
273871c57db0Sdan     ExprList *pEList = pSelect->pEList;
27391013c932Sdrh 
27402c04131cSdrh     ExplainQueryPlan((pParse, 1, "%sLIST SUBQUERY %d",
27412c04131cSdrh         addrOnce?"":"CORRELATED ", pSelect->selId
2742e2ca99c9Sdrh     ));
274341a05b7bSdanielk1977     assert( !isRowid );
274464bcb8cfSdrh     /* If the LHS and RHS of the IN operator do not match, that
274564bcb8cfSdrh     ** error will have been caught long before we reach this point. */
274664bcb8cfSdrh     if( ALWAYS(pEList->nExpr==nVal) ){
274771c57db0Sdan       SelectDest dest;
274871c57db0Sdan       int i;
27491013c932Sdrh       sqlite3SelectDestInit(&dest, SRT_Set, pExpr->iTable);
275071c57db0Sdan       dest.zAffSdst = exprINAffinity(pParse, pExpr);
27514387006cSdrh       pSelect->iLimit = 0;
27524387006cSdrh       testcase( pSelect->selFlags & SF_Distinct );
2753812ea833Sdrh       testcase( pKeyInfo==0 ); /* Caused by OOM in sqlite3KeyInfoAlloc() */
27544387006cSdrh       if( sqlite3Select(pParse, pSelect, &dest) ){
275571c57db0Sdan         sqlite3DbFree(pParse->db, dest.zAffSdst);
27562ec2fb22Sdrh         sqlite3KeyInfoUnref(pKeyInfo);
275785bcdce2Sdrh         return;
275894ccde58Sdrh       }
275971c57db0Sdan       sqlite3DbFree(pParse->db, dest.zAffSdst);
2760812ea833Sdrh       assert( pKeyInfo!=0 ); /* OOM will cause exit after sqlite3Select() */
27613535ec3eSdrh       assert( pEList!=0 );
27623535ec3eSdrh       assert( pEList->nExpr>0 );
27632ec2fb22Sdrh       assert( sqlite3KeyInfoIsWriteable(pKeyInfo) );
276471c57db0Sdan       for(i=0; i<nVal; i++){
2765773d3afaSdan         Expr *p = sqlite3VectorFieldSubexpr(pLeft, i);
276671c57db0Sdan         pKeyInfo->aColl[i] = sqlite3BinaryCompareCollSeq(
276771c57db0Sdan             pParse, p, pEList->a[i].pExpr
276871c57db0Sdan         );
276971c57db0Sdan       }
277071c57db0Sdan     }
2771a7d2db17Sdrh   }else if( ALWAYS(pExpr->x.pList!=0) ){
2772fef5208cSdrh     /* Case 2:     expr IN (exprlist)
2773fef5208cSdrh     **
2774e014a838Sdanielk1977     ** For each expression, build an index key from the evaluation and
2775e014a838Sdanielk1977     ** store it in the temporary table. If <expr> is a column, then use
2776e014a838Sdanielk1977     ** that columns affinity when building index keys. If <expr> is not
2777e014a838Sdanielk1977     ** a column, use numeric affinity.
2778fef5208cSdrh     */
277971c57db0Sdan     char affinity;            /* Affinity of the LHS of the IN */
2780e014a838Sdanielk1977     int i;
27816ab3a2ecSdanielk1977     ExprList *pList = pExpr->x.pList;
278257dbd7b3Sdrh     struct ExprList_item *pItem;
2783ecc31805Sdrh     int r1, r2, r3;
278471c57db0Sdan     affinity = sqlite3ExprAffinity(pLeft);
2785e014a838Sdanielk1977     if( !affinity ){
278605883a34Sdrh       affinity = SQLITE_AFF_BLOB;
2787e014a838Sdanielk1977     }
2788323df790Sdrh     if( pKeyInfo ){
27892ec2fb22Sdrh       assert( sqlite3KeyInfoIsWriteable(pKeyInfo) );
2790323df790Sdrh       pKeyInfo->aColl[0] = sqlite3ExprCollSeq(pParse, pExpr->pLeft);
2791323df790Sdrh     }
2792e014a838Sdanielk1977 
2793e014a838Sdanielk1977     /* Loop through each expression in <exprlist>. */
27942d401ab8Sdrh     r1 = sqlite3GetTempReg(pParse);
27952d401ab8Sdrh     r2 = sqlite3GetTempReg(pParse);
279621cd29abSdan     if( isRowid ) sqlite3VdbeAddOp4(v, OP_Blob, 0, r2, 0, "", P4_STATIC);
279757dbd7b3Sdrh     for(i=pList->nExpr, pItem=pList->a; i>0; i--, pItem++){
279857dbd7b3Sdrh       Expr *pE2 = pItem->pExpr;
2799e05c929bSdrh       int iValToIns;
2800e014a838Sdanielk1977 
280157dbd7b3Sdrh       /* If the expression is not constant then we will need to
280257dbd7b3Sdrh       ** disable the test that was generated above that makes sure
280357dbd7b3Sdrh       ** this code only executes once.  Because for a non-constant
280457dbd7b3Sdrh       ** expression we need to rerun this code each time.
280557dbd7b3Sdrh       */
28062c04131cSdrh       if( addrOnce && !sqlite3ExprIsConstant(pE2) ){
28072c04131cSdrh         sqlite3VdbeChangeToNoop(v, addrOnce);
28082c04131cSdrh         addrOnce = 0;
28094794b980Sdrh       }
2810e014a838Sdanielk1977 
2811e014a838Sdanielk1977       /* Evaluate the expression and insert it into the temp table */
2812e05c929bSdrh       if( isRowid && sqlite3ExprIsInteger(pE2, &iValToIns) ){
2813e05c929bSdrh         sqlite3VdbeAddOp3(v, OP_InsertInt, pExpr->iTable, r2, iValToIns);
2814e05c929bSdrh       }else{
2815ecc31805Sdrh         r3 = sqlite3ExprCodeTarget(pParse, pE2, r1);
281641a05b7bSdanielk1977         if( isRowid ){
2817e05c929bSdrh           sqlite3VdbeAddOp2(v, OP_MustBeInt, r3,
2818e05c929bSdrh                             sqlite3VdbeCurrentAddr(v)+2);
2819688852abSdrh           VdbeCoverage(v);
282041a05b7bSdanielk1977           sqlite3VdbeAddOp3(v, OP_Insert, pExpr->iTable, r2, r3);
282141a05b7bSdanielk1977         }else{
2822ecc31805Sdrh           sqlite3VdbeAddOp4(v, OP_MakeRecord, r3, 1, r2, &affinity, 1);
28239b4eaebcSdrh           sqlite3VdbeAddOp4Int(v, OP_IdxInsert, pExpr->iTable, r2, r3, 1);
2824fef5208cSdrh         }
282541a05b7bSdanielk1977       }
2826e05c929bSdrh     }
28272d401ab8Sdrh     sqlite3ReleaseTempReg(pParse, r1);
28282d401ab8Sdrh     sqlite3ReleaseTempReg(pParse, r2);
2829fef5208cSdrh   }
2830323df790Sdrh   if( pKeyInfo ){
28312ec2fb22Sdrh     sqlite3VdbeChangeP4(v, addr, (void *)pKeyInfo, P4_KEYINFO);
283241a05b7bSdanielk1977   }
28332c04131cSdrh   if( addrOnce ){
28342c04131cSdrh     sqlite3VdbeJumpHere(v, addrOnce);
28352c04131cSdrh     /* Subroutine return */
28362c04131cSdrh     sqlite3VdbeAddOp1(v, OP_Return, pExpr->y.sub.regReturn);
28372c04131cSdrh     sqlite3VdbeChangeP1(v, pExpr->y.sub.iAddr-1, sqlite3VdbeCurrentAddr(v)-1);
283885bcdce2Sdrh   }
283985bcdce2Sdrh }
284085bcdce2Sdrh #endif /* SQLITE_OMIT_SUBQUERY */
284185bcdce2Sdrh 
284285bcdce2Sdrh /*
284385bcdce2Sdrh ** Generate code for scalar subqueries used as a subquery expression
284485bcdce2Sdrh ** or EXISTS operator:
284585bcdce2Sdrh **
284685bcdce2Sdrh **     (SELECT a FROM b)          -- subquery
284785bcdce2Sdrh **     EXISTS (SELECT a FROM b)   -- EXISTS subquery
284885bcdce2Sdrh **
284985bcdce2Sdrh ** The pExpr parameter is the SELECT or EXISTS operator to be coded.
285085bcdce2Sdrh **
285185bcdce2Sdrh ** The register that holds the result.  For a multi-column SELECT,
285285bcdce2Sdrh ** the result is stored in a contiguous array of registers and the
285385bcdce2Sdrh ** return value is the register of the left-most result column.
285485bcdce2Sdrh ** Return 0 if an error occurs.
285585bcdce2Sdrh */
285685bcdce2Sdrh #ifndef SQLITE_OMIT_SUBQUERY
285785bcdce2Sdrh int sqlite3CodeSubselect(Parse *pParse, Expr *pExpr){
28582c04131cSdrh   int addrOnce = 0;           /* Address of OP_Once at top of subroutine */
285985bcdce2Sdrh   int rReg = 0;               /* Register storing resulting */
286085bcdce2Sdrh   Select *pSel;               /* SELECT statement to encode */
286185bcdce2Sdrh   SelectDest dest;            /* How to deal with SELECT result */
286285bcdce2Sdrh   int nReg;                   /* Registers to allocate */
286385bcdce2Sdrh   Expr *pLimit;               /* New limit expression */
28642c04131cSdrh 
28652c04131cSdrh   Vdbe *v = pParse->pVdbe;
286685bcdce2Sdrh   assert( v!=0 );
286785bcdce2Sdrh 
28682c04131cSdrh   /* If this routine has already been coded, then invoke it as a subroutine. */
28692c04131cSdrh   if( ExprHasProperty(pExpr, EP_Subrtn) ){
28702c04131cSdrh     sqlite3VdbeAddOp2(v, OP_Gosub, pExpr->y.sub.regReturn, pExpr->y.sub.iAddr);
28712c04131cSdrh     return pExpr->iTable;
28722c04131cSdrh   }
28732c04131cSdrh 
28742c04131cSdrh   /* Begin coding the subroutine */
28752c04131cSdrh   ExprSetProperty(pExpr, EP_Subrtn);
28762c04131cSdrh   pExpr->y.sub.regReturn = ++pParse->nMem;
28772c04131cSdrh   pExpr->y.sub.iAddr =
28782c04131cSdrh     sqlite3VdbeAddOp2(v, OP_Integer, 0, pExpr->y.sub.regReturn) + 1;
28792c04131cSdrh   VdbeComment((v, "return address"));
28802c04131cSdrh 
28812c04131cSdrh   /* The evaluation of the IN/EXISTS/SELECT must be repeated every time it
288285bcdce2Sdrh   ** is encountered if any of the following is true:
288385bcdce2Sdrh   **
288485bcdce2Sdrh   **    *  The right-hand side is a correlated subquery
288585bcdce2Sdrh   **    *  The right-hand side is an expression list containing variables
288685bcdce2Sdrh   **    *  We are inside a trigger
288785bcdce2Sdrh   **
288885bcdce2Sdrh   ** If all of the above are false, then we can run this code just once
288985bcdce2Sdrh   ** save the results, and reuse the same result on subsequent invocations.
289085bcdce2Sdrh   */
289185bcdce2Sdrh   if( !ExprHasProperty(pExpr, EP_VarSelect) ){
28922c04131cSdrh     addrOnce = sqlite3VdbeAddOp0(v, OP_Once); VdbeCoverage(v);
2893fef5208cSdrh   }
2894fef5208cSdrh 
289585bcdce2Sdrh   /* For a SELECT, generate code to put the values for all columns of
289639a11819Sdrh   ** the first row into an array of registers and return the index of
289739a11819Sdrh   ** the first register.
289839a11819Sdrh   **
289939a11819Sdrh   ** If this is an EXISTS, write an integer 0 (not exists) or 1 (exists)
290039a11819Sdrh   ** into a register and return that register number.
290139a11819Sdrh   **
290239a11819Sdrh   ** In both cases, the query is augmented with "LIMIT 1".  Any
290339a11819Sdrh   ** preexisting limit is discarded in place of the new LIMIT 1.
2904fef5208cSdrh   */
2905cf697396Sshane   testcase( pExpr->op==TK_EXISTS );
2906cf697396Sshane   testcase( pExpr->op==TK_SELECT );
2907cf697396Sshane   assert( pExpr->op==TK_EXISTS || pExpr->op==TK_SELECT );
29086ab3a2ecSdanielk1977   assert( ExprHasProperty(pExpr, EP_xIsSelect) );
290971c57db0Sdan 
29106ab3a2ecSdanielk1977   pSel = pExpr->x.pSelect;
2911e2ca99c9Sdrh   ExplainQueryPlan((pParse, 1, "%sSCALAR SUBQUERY",
29122c04131cSdrh         addrOnce?"":"CORRELATED "));
291371c57db0Sdan   nReg = pExpr->op==TK_SELECT ? pSel->pEList->nExpr : 1;
291471c57db0Sdan   sqlite3SelectDestInit(&dest, 0, pParse->nMem+1);
291571c57db0Sdan   pParse->nMem += nReg;
291651522cd3Sdrh   if( pExpr->op==TK_SELECT ){
29176c8c8ce0Sdanielk1977     dest.eDest = SRT_Mem;
291853932ce8Sdrh     dest.iSdst = dest.iSDParm;
291971c57db0Sdan     dest.nSdst = nReg;
292071c57db0Sdan     sqlite3VdbeAddOp3(v, OP_Null, 0, dest.iSDParm, dest.iSDParm+nReg-1);
2921d4e70ebdSdrh     VdbeComment((v, "Init subquery result"));
292251522cd3Sdrh   }else{
29236c8c8ce0Sdanielk1977     dest.eDest = SRT_Exists;
29242b596da8Sdrh     sqlite3VdbeAddOp2(v, OP_Integer, 0, dest.iSDParm);
2925d4e70ebdSdrh     VdbeComment((v, "Init EXISTS result"));
292651522cd3Sdrh   }
29278c0833fbSdrh   pLimit = sqlite3ExprAlloc(pParse->db, TK_INTEGER,&sqlite3IntTokens[1], 0);
29288c0833fbSdrh   if( pSel->pLimit ){
29298c0833fbSdrh     sqlite3ExprDelete(pParse->db, pSel->pLimit->pLeft);
29308c0833fbSdrh     pSel->pLimit->pLeft = pLimit;
29318c0833fbSdrh   }else{
29328c0833fbSdrh     pSel->pLimit = sqlite3PExpr(pParse, TK_LIMIT, pLimit, 0);
29338c0833fbSdrh   }
293448b5b041Sdrh   pSel->iLimit = 0;
29357d10d5a6Sdrh   if( sqlite3Select(pParse, pSel, &dest) ){
29361450bc6eSdrh     return 0;
293794ccde58Sdrh   }
29382c04131cSdrh   pExpr->iTable = rReg = dest.iSDParm;
2939ebb6a65dSdrh   ExprSetVVAProperty(pExpr, EP_NoReduce);
29402c04131cSdrh   if( addrOnce ){
29412c04131cSdrh     sqlite3VdbeJumpHere(v, addrOnce);
2942b3bce662Sdanielk1977   }
2943fc976065Sdanielk1977 
29442c04131cSdrh   /* Subroutine return */
29452c04131cSdrh   sqlite3VdbeAddOp1(v, OP_Return, pExpr->y.sub.regReturn);
29462c04131cSdrh   sqlite3VdbeChangeP1(v, pExpr->y.sub.iAddr-1, sqlite3VdbeCurrentAddr(v)-1);
29472c04131cSdrh 
29481450bc6eSdrh   return rReg;
2949cce7d176Sdrh }
295051522cd3Sdrh #endif /* SQLITE_OMIT_SUBQUERY */
2951cce7d176Sdrh 
2952e3365e6cSdrh #ifndef SQLITE_OMIT_SUBQUERY
2953e3365e6cSdrh /*
29547b35a77bSdan ** Expr pIn is an IN(...) expression. This function checks that the
29557b35a77bSdan ** sub-select on the RHS of the IN() operator has the same number of
29567b35a77bSdan ** columns as the vector on the LHS. Or, if the RHS of the IN() is not
29577b35a77bSdan ** a sub-query, that the LHS is a vector of size 1.
29587b35a77bSdan */
29597b35a77bSdan int sqlite3ExprCheckIN(Parse *pParse, Expr *pIn){
29607b35a77bSdan   int nVector = sqlite3ExprVectorSize(pIn->pLeft);
29617b35a77bSdan   if( (pIn->flags & EP_xIsSelect) ){
29627b35a77bSdan     if( nVector!=pIn->x.pSelect->pEList->nExpr ){
29637b35a77bSdan       sqlite3SubselectError(pParse, pIn->x.pSelect->pEList->nExpr, nVector);
29647b35a77bSdan       return 1;
29657b35a77bSdan     }
29667b35a77bSdan   }else if( nVector!=1 ){
296744c5604cSdan     sqlite3VectorErrorMsg(pParse, pIn->pLeft);
29687b35a77bSdan     return 1;
29697b35a77bSdan   }
29707b35a77bSdan   return 0;
29717b35a77bSdan }
29727b35a77bSdan #endif
29737b35a77bSdan 
29747b35a77bSdan #ifndef SQLITE_OMIT_SUBQUERY
29757b35a77bSdan /*
2976e3365e6cSdrh ** Generate code for an IN expression.
2977e3365e6cSdrh **
2978e3365e6cSdrh **      x IN (SELECT ...)
2979e3365e6cSdrh **      x IN (value, value, ...)
2980e3365e6cSdrh **
2981ecb87ac8Sdrh ** The left-hand side (LHS) is a scalar or vector expression.  The
2982e347d3e8Sdrh ** right-hand side (RHS) is an array of zero or more scalar values, or a
2983e347d3e8Sdrh ** subquery.  If the RHS is a subquery, the number of result columns must
2984e347d3e8Sdrh ** match the number of columns in the vector on the LHS.  If the RHS is
2985e347d3e8Sdrh ** a list of values, the LHS must be a scalar.
2986e347d3e8Sdrh **
2987e347d3e8Sdrh ** The IN operator is true if the LHS value is contained within the RHS.
2988e347d3e8Sdrh ** The result is false if the LHS is definitely not in the RHS.  The
2989e347d3e8Sdrh ** result is NULL if the presence of the LHS in the RHS cannot be
2990e347d3e8Sdrh ** determined due to NULLs.
2991e3365e6cSdrh **
29926be515ebSdrh ** This routine generates code that jumps to destIfFalse if the LHS is not
2993e3365e6cSdrh ** contained within the RHS.  If due to NULLs we cannot determine if the LHS
2994e3365e6cSdrh ** is contained in the RHS then jump to destIfNull.  If the LHS is contained
2995e3365e6cSdrh ** within the RHS then fall through.
2996ecb87ac8Sdrh **
2997ecb87ac8Sdrh ** See the separate in-operator.md documentation file in the canonical
2998ecb87ac8Sdrh ** SQLite source tree for additional information.
2999e3365e6cSdrh */
3000e3365e6cSdrh static void sqlite3ExprCodeIN(
3001e3365e6cSdrh   Parse *pParse,        /* Parsing and code generating context */
3002e3365e6cSdrh   Expr *pExpr,          /* The IN expression */
3003e3365e6cSdrh   int destIfFalse,      /* Jump here if LHS is not contained in the RHS */
3004e3365e6cSdrh   int destIfNull        /* Jump here if the results are unknown due to NULLs */
3005e3365e6cSdrh ){
3006e3365e6cSdrh   int rRhsHasNull = 0;  /* Register that is true if RHS contains NULL values */
3007e3365e6cSdrh   int eType;            /* Type of the RHS */
3008e347d3e8Sdrh   int rLhs;             /* Register(s) holding the LHS values */
3009e347d3e8Sdrh   int rLhsOrig;         /* LHS values prior to reordering by aiMap[] */
3010e3365e6cSdrh   Vdbe *v;              /* Statement under construction */
3011ba00e30aSdan   int *aiMap = 0;       /* Map from vector field to index column */
3012ba00e30aSdan   char *zAff = 0;       /* Affinity string for comparisons */
3013ecb87ac8Sdrh   int nVector;          /* Size of vectors for this IN operator */
301412abf408Sdrh   int iDummy;           /* Dummy parameter to exprCodeVector() */
3015e347d3e8Sdrh   Expr *pLeft;          /* The LHS of the IN operator */
3016ecb87ac8Sdrh   int i;                /* loop counter */
3017e347d3e8Sdrh   int destStep2;        /* Where to jump when NULLs seen in step 2 */
3018e347d3e8Sdrh   int destStep6 = 0;    /* Start of code for Step 6 */
3019e347d3e8Sdrh   int addrTruthOp;      /* Address of opcode that determines the IN is true */
3020e347d3e8Sdrh   int destNotNull;      /* Jump here if a comparison is not true in step 6 */
3021e347d3e8Sdrh   int addrTop;          /* Top of the step-6 loop */
30222c04131cSdrh   int iTab = 0;         /* Index to use */
3023e3365e6cSdrh 
3024e347d3e8Sdrh   pLeft = pExpr->pLeft;
30257b35a77bSdan   if( sqlite3ExprCheckIN(pParse, pExpr) ) return;
3026553168c7Sdan   zAff = exprINAffinity(pParse, pExpr);
3027ba00e30aSdan   nVector = sqlite3ExprVectorSize(pExpr->pLeft);
3028ba00e30aSdan   aiMap = (int*)sqlite3DbMallocZero(
3029ba00e30aSdan       pParse->db, nVector*(sizeof(int) + sizeof(char)) + 1
3030ba00e30aSdan   );
3031e347d3e8Sdrh   if( pParse->db->mallocFailed ) goto sqlite3ExprCodeIN_oom_error;
30327b35a77bSdan 
3033ba00e30aSdan   /* Attempt to compute the RHS. After this step, if anything other than
30342c04131cSdrh   ** IN_INDEX_NOOP is returned, the table opened with cursor iTab
3035ba00e30aSdan   ** contains the values that make up the RHS. If IN_INDEX_NOOP is returned,
3036ba00e30aSdan   ** the RHS has not yet been coded.  */
3037e3365e6cSdrh   v = pParse->pVdbe;
3038e3365e6cSdrh   assert( v!=0 );       /* OOM detected prior to this routine */
3039e3365e6cSdrh   VdbeNoopComment((v, "begin IN expr"));
3040bb53ecb1Sdrh   eType = sqlite3FindInIndex(pParse, pExpr,
3041bb53ecb1Sdrh                              IN_INDEX_MEMBERSHIP | IN_INDEX_NOOP_OK,
30422c04131cSdrh                              destIfFalse==destIfNull ? 0 : &rRhsHasNull,
30432c04131cSdrh                              aiMap, &iTab);
3044e3365e6cSdrh 
3045ba00e30aSdan   assert( pParse->nErr || nVector==1 || eType==IN_INDEX_EPH
3046ba00e30aSdan        || eType==IN_INDEX_INDEX_ASC || eType==IN_INDEX_INDEX_DESC
3047ba00e30aSdan   );
3048ecb87ac8Sdrh #ifdef SQLITE_DEBUG
3049ecb87ac8Sdrh   /* Confirm that aiMap[] contains nVector integer values between 0 and
3050ecb87ac8Sdrh   ** nVector-1. */
3051ecb87ac8Sdrh   for(i=0; i<nVector; i++){
3052ecb87ac8Sdrh     int j, cnt;
3053ecb87ac8Sdrh     for(cnt=j=0; j<nVector; j++) if( aiMap[j]==i ) cnt++;
3054ecb87ac8Sdrh     assert( cnt==1 );
3055ecb87ac8Sdrh   }
3056ecb87ac8Sdrh #endif
3057e3365e6cSdrh 
3058ba00e30aSdan   /* Code the LHS, the <expr> from "<expr> IN (...)". If the LHS is a
3059ba00e30aSdan   ** vector, then it is stored in an array of nVector registers starting
3060ba00e30aSdan   ** at r1.
3061e347d3e8Sdrh   **
3062e347d3e8Sdrh   ** sqlite3FindInIndex() might have reordered the fields of the LHS vector
3063e347d3e8Sdrh   ** so that the fields are in the same order as an existing index.   The
3064e347d3e8Sdrh   ** aiMap[] array contains a mapping from the original LHS field order to
3065e347d3e8Sdrh   ** the field order that matches the RHS index.
3066e3365e6cSdrh   */
3067e347d3e8Sdrh   rLhsOrig = exprCodeVector(pParse, pLeft, &iDummy);
3068e347d3e8Sdrh   for(i=0; i<nVector && aiMap[i]==i; i++){} /* Are LHS fields reordered? */
3069ecb87ac8Sdrh   if( i==nVector ){
3070e347d3e8Sdrh     /* LHS fields are not reordered */
3071e347d3e8Sdrh     rLhs = rLhsOrig;
3072ecb87ac8Sdrh   }else{
3073ecb87ac8Sdrh     /* Need to reorder the LHS fields according to aiMap */
3074e347d3e8Sdrh     rLhs = sqlite3GetTempRange(pParse, nVector);
3075ba00e30aSdan     for(i=0; i<nVector; i++){
3076e347d3e8Sdrh       sqlite3VdbeAddOp3(v, OP_Copy, rLhsOrig+i, rLhs+aiMap[i], 0);
3077ba00e30aSdan     }
3078ecb87ac8Sdrh   }
3079e3365e6cSdrh 
3080bb53ecb1Sdrh   /* If sqlite3FindInIndex() did not find or create an index that is
3081bb53ecb1Sdrh   ** suitable for evaluating the IN operator, then evaluate using a
3082bb53ecb1Sdrh   ** sequence of comparisons.
3083e347d3e8Sdrh   **
3084e347d3e8Sdrh   ** This is step (1) in the in-operator.md optimized algorithm.
3085bb53ecb1Sdrh   */
3086bb53ecb1Sdrh   if( eType==IN_INDEX_NOOP ){
3087bb53ecb1Sdrh     ExprList *pList = pExpr->x.pList;
3088bb53ecb1Sdrh     CollSeq *pColl = sqlite3ExprCollSeq(pParse, pExpr->pLeft);
3089bb53ecb1Sdrh     int labelOk = sqlite3VdbeMakeLabel(v);
3090bb53ecb1Sdrh     int r2, regToFree;
3091bb53ecb1Sdrh     int regCkNull = 0;
3092bb53ecb1Sdrh     int ii;
3093bb53ecb1Sdrh     assert( !ExprHasProperty(pExpr, EP_xIsSelect) );
3094bb53ecb1Sdrh     if( destIfNull!=destIfFalse ){
3095bb53ecb1Sdrh       regCkNull = sqlite3GetTempReg(pParse);
3096e347d3e8Sdrh       sqlite3VdbeAddOp3(v, OP_BitAnd, rLhs, rLhs, regCkNull);
3097bb53ecb1Sdrh     }
3098bb53ecb1Sdrh     for(ii=0; ii<pList->nExpr; ii++){
3099bb53ecb1Sdrh       r2 = sqlite3ExprCodeTemp(pParse, pList->a[ii].pExpr, &regToFree);
3100a976979bSdrh       if( regCkNull && sqlite3ExprCanBeNull(pList->a[ii].pExpr) ){
3101bb53ecb1Sdrh         sqlite3VdbeAddOp3(v, OP_BitAnd, regCkNull, r2, regCkNull);
3102bb53ecb1Sdrh       }
3103bb53ecb1Sdrh       if( ii<pList->nExpr-1 || destIfNull!=destIfFalse ){
3104e347d3e8Sdrh         sqlite3VdbeAddOp4(v, OP_Eq, rLhs, labelOk, r2,
31054336b0e6Sdrh                           (void*)pColl, P4_COLLSEQ);
31064336b0e6Sdrh         VdbeCoverageIf(v, ii<pList->nExpr-1);
31074336b0e6Sdrh         VdbeCoverageIf(v, ii==pList->nExpr-1);
3108ba00e30aSdan         sqlite3VdbeChangeP5(v, zAff[0]);
3109bb53ecb1Sdrh       }else{
3110bb53ecb1Sdrh         assert( destIfNull==destIfFalse );
3111e347d3e8Sdrh         sqlite3VdbeAddOp4(v, OP_Ne, rLhs, destIfFalse, r2,
3112bb53ecb1Sdrh                           (void*)pColl, P4_COLLSEQ); VdbeCoverage(v);
3113ba00e30aSdan         sqlite3VdbeChangeP5(v, zAff[0] | SQLITE_JUMPIFNULL);
3114bb53ecb1Sdrh       }
3115bb53ecb1Sdrh       sqlite3ReleaseTempReg(pParse, regToFree);
3116bb53ecb1Sdrh     }
3117bb53ecb1Sdrh     if( regCkNull ){
3118bb53ecb1Sdrh       sqlite3VdbeAddOp2(v, OP_IsNull, regCkNull, destIfNull); VdbeCoverage(v);
3119076e85f5Sdrh       sqlite3VdbeGoto(v, destIfFalse);
3120bb53ecb1Sdrh     }
3121bb53ecb1Sdrh     sqlite3VdbeResolveLabel(v, labelOk);
3122bb53ecb1Sdrh     sqlite3ReleaseTempReg(pParse, regCkNull);
3123e347d3e8Sdrh     goto sqlite3ExprCodeIN_finished;
3124e347d3e8Sdrh   }
3125bb53ecb1Sdrh 
3126e347d3e8Sdrh   /* Step 2: Check to see if the LHS contains any NULL columns.  If the
3127e347d3e8Sdrh   ** LHS does contain NULLs then the result must be either FALSE or NULL.
3128e347d3e8Sdrh   ** We will then skip the binary search of the RHS.
3129e347d3e8Sdrh   */
3130094430ebSdrh   if( destIfNull==destIfFalse ){
3131e347d3e8Sdrh     destStep2 = destIfFalse;
3132e347d3e8Sdrh   }else{
3133e347d3e8Sdrh     destStep2 = destStep6 = sqlite3VdbeMakeLabel(v);
3134e347d3e8Sdrh   }
3135d49fd4e8Sdan   for(i=0; i<nVector; i++){
3136fc7f27b9Sdrh     Expr *p = sqlite3VectorFieldSubexpr(pExpr->pLeft, i);
3137d49fd4e8Sdan     if( sqlite3ExprCanBeNull(p) ){
3138e347d3e8Sdrh       sqlite3VdbeAddOp2(v, OP_IsNull, rLhs+i, destStep2);
3139471b4b92Sdrh       VdbeCoverage(v);
3140d49fd4e8Sdan     }
3141d49fd4e8Sdan   }
3142e3365e6cSdrh 
3143e347d3e8Sdrh   /* Step 3.  The LHS is now known to be non-NULL.  Do the binary search
3144e347d3e8Sdrh   ** of the RHS using the LHS as a probe.  If found, the result is
3145e347d3e8Sdrh   ** true.
3146e347d3e8Sdrh   */
3147e3365e6cSdrh   if( eType==IN_INDEX_ROWID ){
3148e347d3e8Sdrh     /* In this case, the RHS is the ROWID of table b-tree and so we also
3149e347d3e8Sdrh     ** know that the RHS is non-NULL.  Hence, we combine steps 3 and 4
3150e347d3e8Sdrh     ** into a single opcode. */
31512c04131cSdrh     sqlite3VdbeAddOp3(v, OP_SeekRowid, iTab, destIfFalse, rLhs);
3152688852abSdrh     VdbeCoverage(v);
3153e347d3e8Sdrh     addrTruthOp = sqlite3VdbeAddOp0(v, OP_Goto);  /* Return True */
31547b35a77bSdan   }else{
3155e347d3e8Sdrh     sqlite3VdbeAddOp4(v, OP_Affinity, rLhs, nVector, 0, zAff, nVector);
3156e347d3e8Sdrh     if( destIfFalse==destIfNull ){
3157e347d3e8Sdrh       /* Combine Step 3 and Step 5 into a single opcode */
31582c04131cSdrh       sqlite3VdbeAddOp4Int(v, OP_NotFound, iTab, destIfFalse,
3159e347d3e8Sdrh                            rLhs, nVector); VdbeCoverage(v);
3160e347d3e8Sdrh       goto sqlite3ExprCodeIN_finished;
3161e347d3e8Sdrh     }
3162e347d3e8Sdrh     /* Ordinary Step 3, for the case where FALSE and NULL are distinct */
31632c04131cSdrh     addrTruthOp = sqlite3VdbeAddOp4Int(v, OP_Found, iTab, 0,
3164e347d3e8Sdrh                                       rLhs, nVector); VdbeCoverage(v);
3165e347d3e8Sdrh   }
3166ba00e30aSdan 
3167e347d3e8Sdrh   /* Step 4.  If the RHS is known to be non-NULL and we did not find
3168e347d3e8Sdrh   ** an match on the search above, then the result must be FALSE.
3169e347d3e8Sdrh   */
3170e347d3e8Sdrh   if( rRhsHasNull && nVector==1 ){
3171e347d3e8Sdrh     sqlite3VdbeAddOp2(v, OP_NotNull, rRhsHasNull, destIfFalse);
3172471b4b92Sdrh     VdbeCoverage(v);
3173e347d3e8Sdrh   }
31747b35a77bSdan 
3175e347d3e8Sdrh   /* Step 5.  If we do not care about the difference between NULL and
3176e347d3e8Sdrh   ** FALSE, then just return false.
3177e347d3e8Sdrh   */
3178e347d3e8Sdrh   if( destIfFalse==destIfNull ) sqlite3VdbeGoto(v, destIfFalse);
3179e347d3e8Sdrh 
3180e347d3e8Sdrh   /* Step 6: Loop through rows of the RHS.  Compare each row to the LHS.
3181e347d3e8Sdrh   ** If any comparison is NULL, then the result is NULL.  If all
3182e347d3e8Sdrh   ** comparisons are FALSE then the final result is FALSE.
3183e347d3e8Sdrh   **
3184e347d3e8Sdrh   ** For a scalar LHS, it is sufficient to check just the first row
3185e347d3e8Sdrh   ** of the RHS.
3186e347d3e8Sdrh   */
3187e347d3e8Sdrh   if( destStep6 ) sqlite3VdbeResolveLabel(v, destStep6);
31882c04131cSdrh   addrTop = sqlite3VdbeAddOp2(v, OP_Rewind, iTab, destIfFalse);
3189471b4b92Sdrh   VdbeCoverage(v);
3190e347d3e8Sdrh   if( nVector>1 ){
3191e347d3e8Sdrh     destNotNull = sqlite3VdbeMakeLabel(v);
3192e347d3e8Sdrh   }else{
3193e347d3e8Sdrh     /* For nVector==1, combine steps 6 and 7 by immediately returning
3194e347d3e8Sdrh     ** FALSE if the first comparison is not NULL */
3195e347d3e8Sdrh     destNotNull = destIfFalse;
3196e347d3e8Sdrh   }
3197ba00e30aSdan   for(i=0; i<nVector; i++){
3198ba00e30aSdan     Expr *p;
3199ba00e30aSdan     CollSeq *pColl;
3200e347d3e8Sdrh     int r3 = sqlite3GetTempReg(pParse);
3201fc7f27b9Sdrh     p = sqlite3VectorFieldSubexpr(pLeft, i);
3202ba00e30aSdan     pColl = sqlite3ExprCollSeq(pParse, p);
32032c04131cSdrh     sqlite3VdbeAddOp3(v, OP_Column, iTab, i, r3);
3204e347d3e8Sdrh     sqlite3VdbeAddOp4(v, OP_Ne, rLhs+i, destNotNull, r3,
320518016ad2Sdrh                       (void*)pColl, P4_COLLSEQ);
3206471b4b92Sdrh     VdbeCoverage(v);
3207e347d3e8Sdrh     sqlite3ReleaseTempReg(pParse, r3);
32087b35a77bSdan   }
32097b35a77bSdan   sqlite3VdbeAddOp2(v, OP_Goto, 0, destIfNull);
3210e347d3e8Sdrh   if( nVector>1 ){
3211e347d3e8Sdrh     sqlite3VdbeResolveLabel(v, destNotNull);
32122c04131cSdrh     sqlite3VdbeAddOp2(v, OP_Next, iTab, addrTop+1);
321318016ad2Sdrh     VdbeCoverage(v);
3214e347d3e8Sdrh 
3215e347d3e8Sdrh     /* Step 7:  If we reach this point, we know that the result must
3216e347d3e8Sdrh     ** be false. */
321718016ad2Sdrh     sqlite3VdbeAddOp2(v, OP_Goto, 0, destIfFalse);
32187b35a77bSdan   }
32197b35a77bSdan 
3220e347d3e8Sdrh   /* Jumps here in order to return true. */
3221e347d3e8Sdrh   sqlite3VdbeJumpHere(v, addrTruthOp);
3222e3365e6cSdrh 
3223e347d3e8Sdrh sqlite3ExprCodeIN_finished:
3224e347d3e8Sdrh   if( rLhs!=rLhsOrig ) sqlite3ReleaseTempReg(pParse, rLhs);
3225ecb87ac8Sdrh   VdbeComment((v, "end IN expr"));
3226e347d3e8Sdrh sqlite3ExprCodeIN_oom_error:
3227ba00e30aSdan   sqlite3DbFree(pParse->db, aiMap);
3228553168c7Sdan   sqlite3DbFree(pParse->db, zAff);
3229e3365e6cSdrh }
3230e3365e6cSdrh #endif /* SQLITE_OMIT_SUBQUERY */
3231e3365e6cSdrh 
323213573c71Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT
3233598f1340Sdrh /*
3234598f1340Sdrh ** Generate an instruction that will put the floating point
32359cbf3425Sdrh ** value described by z[0..n-1] into register iMem.
32360cf19ed8Sdrh **
32370cf19ed8Sdrh ** The z[] string will probably not be zero-terminated.  But the
32380cf19ed8Sdrh ** z[n] character is guaranteed to be something that does not look
32390cf19ed8Sdrh ** like the continuation of the number.
3240598f1340Sdrh */
3241b7916a78Sdrh static void codeReal(Vdbe *v, const char *z, int negateFlag, int iMem){
3242fd773cf9Sdrh   if( ALWAYS(z!=0) ){
3243598f1340Sdrh     double value;
32449339da1fSdrh     sqlite3AtoF(z, &value, sqlite3Strlen30(z), SQLITE_UTF8);
3245d0015161Sdrh     assert( !sqlite3IsNaN(value) ); /* The new AtoF never returns NaN */
3246598f1340Sdrh     if( negateFlag ) value = -value;
324797bae794Sdrh     sqlite3VdbeAddOp4Dup8(v, OP_Real, 0, iMem, 0, (u8*)&value, P4_REAL);
3248598f1340Sdrh   }
3249598f1340Sdrh }
325013573c71Sdrh #endif
3251598f1340Sdrh 
3252598f1340Sdrh 
3253598f1340Sdrh /*
3254fec19aadSdrh ** Generate an instruction that will put the integer describe by
32559cbf3425Sdrh ** text z[0..n-1] into register iMem.
32560cf19ed8Sdrh **
32575f1d6b61Sshaneh ** Expr.u.zToken is always UTF8 and zero-terminated.
3258fec19aadSdrh */
325913573c71Sdrh static void codeInteger(Parse *pParse, Expr *pExpr, int negFlag, int iMem){
326013573c71Sdrh   Vdbe *v = pParse->pVdbe;
326192b01d53Sdrh   if( pExpr->flags & EP_IntValue ){
326233e619fcSdrh     int i = pExpr->u.iValue;
3263d50ffc41Sdrh     assert( i>=0 );
326492b01d53Sdrh     if( negFlag ) i = -i;
326592b01d53Sdrh     sqlite3VdbeAddOp2(v, OP_Integer, i, iMem);
3266fd773cf9Sdrh   }else{
32675f1d6b61Sshaneh     int c;
32685f1d6b61Sshaneh     i64 value;
3269fd773cf9Sdrh     const char *z = pExpr->u.zToken;
3270fd773cf9Sdrh     assert( z!=0 );
32719296c18aSdrh     c = sqlite3DecOrHexToI64(z, &value);
327284d4f1a3Sdrh     if( (c==3 && !negFlag) || (c==2) || (negFlag && value==SMALLEST_INT64)){
327313573c71Sdrh #ifdef SQLITE_OMIT_FLOATING_POINT
327413573c71Sdrh       sqlite3ErrorMsg(pParse, "oversized integer: %s%s", negFlag ? "-" : "", z);
327513573c71Sdrh #else
32761b7ddc59Sdrh #ifndef SQLITE_OMIT_HEX_INTEGER
32779296c18aSdrh       if( sqlite3_strnicmp(z,"0x",2)==0 ){
327877320ea4Sdrh         sqlite3ErrorMsg(pParse, "hex literal too big: %s%s", negFlag?"-":"",z);
32791b7ddc59Sdrh       }else
32801b7ddc59Sdrh #endif
32811b7ddc59Sdrh       {
3282b7916a78Sdrh         codeReal(v, z, negFlag, iMem);
32839296c18aSdrh       }
328413573c71Sdrh #endif
328577320ea4Sdrh     }else{
328684d4f1a3Sdrh       if( negFlag ){ value = c==3 ? SMALLEST_INT64 : -value; }
328777320ea4Sdrh       sqlite3VdbeAddOp4Dup8(v, OP_Int64, 0, iMem, 0, (u8*)&value, P4_INT64);
3288fec19aadSdrh     }
3289fec19aadSdrh   }
3290c9cf901dSdanielk1977 }
3291fec19aadSdrh 
32925cd79239Sdrh 
32931f9ca2c8Sdrh /* Generate code that will load into register regOut a value that is
32941f9ca2c8Sdrh ** appropriate for the iIdxCol-th column of index pIdx.
32951f9ca2c8Sdrh */
32961f9ca2c8Sdrh void sqlite3ExprCodeLoadIndexColumn(
32971f9ca2c8Sdrh   Parse *pParse,  /* The parsing context */
32981f9ca2c8Sdrh   Index *pIdx,    /* The index whose column is to be loaded */
32991f9ca2c8Sdrh   int iTabCur,    /* Cursor pointing to a table row */
33001f9ca2c8Sdrh   int iIdxCol,    /* The column of the index to be loaded */
33011f9ca2c8Sdrh   int regOut      /* Store the index column value in this register */
33021f9ca2c8Sdrh ){
33031f9ca2c8Sdrh   i16 iTabCol = pIdx->aiColumn[iIdxCol];
33044b92f98cSdrh   if( iTabCol==XN_EXPR ){
33051f9ca2c8Sdrh     assert( pIdx->aColExpr );
33061f9ca2c8Sdrh     assert( pIdx->aColExpr->nExpr>iIdxCol );
33073e34eabcSdrh     pParse->iSelfTab = iTabCur + 1;
33081c75c9d7Sdrh     sqlite3ExprCodeCopy(pParse, pIdx->aColExpr->a[iIdxCol].pExpr, regOut);
33093e34eabcSdrh     pParse->iSelfTab = 0;
33104b92f98cSdrh   }else{
33114b92f98cSdrh     sqlite3ExprCodeGetColumnOfTable(pParse->pVdbe, pIdx->pTable, iTabCur,
33124b92f98cSdrh                                     iTabCol, regOut);
33134b92f98cSdrh   }
33141f9ca2c8Sdrh }
33151f9ca2c8Sdrh 
33165cd79239Sdrh /*
33175c092e8aSdrh ** Generate code to extract the value of the iCol-th column of a table.
33185c092e8aSdrh */
33195c092e8aSdrh void sqlite3ExprCodeGetColumnOfTable(
33205c092e8aSdrh   Vdbe *v,        /* The VDBE under construction */
33215c092e8aSdrh   Table *pTab,    /* The table containing the value */
3322313619f5Sdrh   int iTabCur,    /* The table cursor.  Or the PK cursor for WITHOUT ROWID */
33235c092e8aSdrh   int iCol,       /* Index of the column to extract */
3324313619f5Sdrh   int regOut      /* Extract the value into this register */
33255c092e8aSdrh ){
3326aca19e19Sdrh   if( pTab==0 ){
3327aca19e19Sdrh     sqlite3VdbeAddOp3(v, OP_Column, iTabCur, iCol, regOut);
3328aca19e19Sdrh     return;
3329aca19e19Sdrh   }
33305c092e8aSdrh   if( iCol<0 || iCol==pTab->iPKey ){
33315c092e8aSdrh     sqlite3VdbeAddOp2(v, OP_Rowid, iTabCur, regOut);
33325c092e8aSdrh   }else{
33335c092e8aSdrh     int op = IsVirtual(pTab) ? OP_VColumn : OP_Column;
3334ee0ec8e1Sdrh     int x = iCol;
333535db31b2Sdrh     if( !HasRowid(pTab) && !IsVirtual(pTab) ){
3336ee0ec8e1Sdrh       x = sqlite3ColumnOfIndex(sqlite3PrimaryKeyIndex(pTab), iCol);
3337ee0ec8e1Sdrh     }
3338ee0ec8e1Sdrh     sqlite3VdbeAddOp3(v, op, iTabCur, x, regOut);
33395c092e8aSdrh   }
33405c092e8aSdrh   if( iCol>=0 ){
33415c092e8aSdrh     sqlite3ColumnDefault(v, pTab, iCol, regOut);
33425c092e8aSdrh   }
33435c092e8aSdrh }
33445c092e8aSdrh 
33455c092e8aSdrh /*
3346945498f3Sdrh ** Generate code that will extract the iColumn-th column from
33478c607191Sdrh ** table pTab and store the column value in register iReg.
3348e55cbd72Sdrh **
3349e55cbd72Sdrh ** There must be an open cursor to pTab in iTable when this routine
3350e55cbd72Sdrh ** is called.  If iColumn<0 then code is generated that extracts the rowid.
3351945498f3Sdrh */
3352e55cbd72Sdrh int sqlite3ExprCodeGetColumn(
3353e55cbd72Sdrh   Parse *pParse,   /* Parsing and code generating context */
33542133d822Sdrh   Table *pTab,     /* Description of the table we are reading from */
33552133d822Sdrh   int iColumn,     /* Index of the table column */
33562133d822Sdrh   int iTable,      /* The cursor pointing to the table */
3357a748fdccSdrh   int iReg,        /* Store results here */
3358ce78bc6eSdrh   u8 p5            /* P5 value for OP_Column + FLAGS */
33592133d822Sdrh ){
3360e55cbd72Sdrh   Vdbe *v = pParse->pVdbe;
3361e55cbd72Sdrh   assert( v!=0 );
33625c092e8aSdrh   sqlite3ExprCodeGetColumnOfTable(v, pTab, iTable, iColumn, iReg);
3363a748fdccSdrh   if( p5 ){
3364a748fdccSdrh     sqlite3VdbeChangeP5(v, p5);
3365a748fdccSdrh   }
3366e55cbd72Sdrh   return iReg;
3367e55cbd72Sdrh }
3368e55cbd72Sdrh 
3369e55cbd72Sdrh /*
3370b21e7c70Sdrh ** Generate code to move content from registers iFrom...iFrom+nReg-1
337136a5d88dSdrh ** over to iTo..iTo+nReg-1.
3372e55cbd72Sdrh */
3373b21e7c70Sdrh void sqlite3ExprCodeMove(Parse *pParse, int iFrom, int iTo, int nReg){
3374e8e4af76Sdrh   assert( iFrom>=iTo+nReg || iFrom+nReg<=iTo );
3375079a3072Sdrh   sqlite3VdbeAddOp3(pParse->pVdbe, OP_Move, iFrom, iTo, nReg);
3376945498f3Sdrh }
3377945498f3Sdrh 
3378652fbf55Sdrh /*
337912abf408Sdrh ** Convert a scalar expression node to a TK_REGISTER referencing
338012abf408Sdrh ** register iReg.  The caller must ensure that iReg already contains
338112abf408Sdrh ** the correct value for the expression.
3382a4c3c87eSdrh */
3383a4c3c87eSdrh static void exprToRegister(Expr *p, int iReg){
3384a4c3c87eSdrh   p->op2 = p->op;
3385a4c3c87eSdrh   p->op = TK_REGISTER;
3386a4c3c87eSdrh   p->iTable = iReg;
3387a4c3c87eSdrh   ExprClearProperty(p, EP_Skip);
3388a4c3c87eSdrh }
3389a4c3c87eSdrh 
339012abf408Sdrh /*
339112abf408Sdrh ** Evaluate an expression (either a vector or a scalar expression) and store
339212abf408Sdrh ** the result in continguous temporary registers.  Return the index of
339312abf408Sdrh ** the first register used to store the result.
339412abf408Sdrh **
339512abf408Sdrh ** If the returned result register is a temporary scalar, then also write
339612abf408Sdrh ** that register number into *piFreeable.  If the returned result register
339712abf408Sdrh ** is not a temporary or if the expression is a vector set *piFreeable
339812abf408Sdrh ** to 0.
339912abf408Sdrh */
340012abf408Sdrh static int exprCodeVector(Parse *pParse, Expr *p, int *piFreeable){
340112abf408Sdrh   int iResult;
340212abf408Sdrh   int nResult = sqlite3ExprVectorSize(p);
340312abf408Sdrh   if( nResult==1 ){
340412abf408Sdrh     iResult = sqlite3ExprCodeTemp(pParse, p, piFreeable);
340512abf408Sdrh   }else{
340612abf408Sdrh     *piFreeable = 0;
340712abf408Sdrh     if( p->op==TK_SELECT ){
3408dd1bb43aSdrh #if SQLITE_OMIT_SUBQUERY
3409dd1bb43aSdrh       iResult = 0;
3410dd1bb43aSdrh #else
341185bcdce2Sdrh       iResult = sqlite3CodeSubselect(pParse, p);
3412dd1bb43aSdrh #endif
341312abf408Sdrh     }else{
341412abf408Sdrh       int i;
341512abf408Sdrh       iResult = pParse->nMem+1;
341612abf408Sdrh       pParse->nMem += nResult;
341712abf408Sdrh       for(i=0; i<nResult; i++){
34184b725240Sdan         sqlite3ExprCodeFactorable(pParse, p->x.pList->a[i].pExpr, i+iResult);
341912abf408Sdrh       }
342012abf408Sdrh     }
342112abf408Sdrh   }
342212abf408Sdrh   return iResult;
342312abf408Sdrh }
342412abf408Sdrh 
342571c57db0Sdan 
3426a4c3c87eSdrh /*
3427cce7d176Sdrh ** Generate code into the current Vdbe to evaluate the given
34282dcef11bSdrh ** expression.  Attempt to store the results in register "target".
34292dcef11bSdrh ** Return the register where results are stored.
3430389a1adbSdrh **
34318b213899Sdrh ** With this routine, there is no guarantee that results will
34322dcef11bSdrh ** be stored in target.  The result might be stored in some other
34332dcef11bSdrh ** register if it is convenient to do so.  The calling function
34342dcef11bSdrh ** must check the return code and move the results to the desired
34352dcef11bSdrh ** register.
3436cce7d176Sdrh */
3437678ccce8Sdrh int sqlite3ExprCodeTarget(Parse *pParse, Expr *pExpr, int target){
34382dcef11bSdrh   Vdbe *v = pParse->pVdbe;  /* The VM under construction */
34392dcef11bSdrh   int op;                   /* The opcode being coded */
34402dcef11bSdrh   int inReg = target;       /* Results stored in register inReg */
34412dcef11bSdrh   int regFree1 = 0;         /* If non-zero free this temporary register */
34422dcef11bSdrh   int regFree2 = 0;         /* If non-zero free this temporary register */
34437b35a77bSdan   int r1, r2;               /* Various register numbers */
344410d1edf0Sdrh   Expr tempX;               /* Temporary expression node */
344571c57db0Sdan   int p5 = 0;
3446ffe07b2dSdrh 
34479cbf3425Sdrh   assert( target>0 && target<=pParse->nMem );
344820411ea7Sdrh   if( v==0 ){
344920411ea7Sdrh     assert( pParse->db->mallocFailed );
345020411ea7Sdrh     return 0;
345120411ea7Sdrh   }
3452389a1adbSdrh 
34531efa8023Sdrh expr_code_doover:
3454389a1adbSdrh   if( pExpr==0 ){
3455389a1adbSdrh     op = TK_NULL;
3456389a1adbSdrh   }else{
3457f2bc013cSdrh     op = pExpr->op;
3458389a1adbSdrh   }
3459f2bc013cSdrh   switch( op ){
346013449892Sdrh     case TK_AGG_COLUMN: {
346113449892Sdrh       AggInfo *pAggInfo = pExpr->pAggInfo;
346213449892Sdrh       struct AggInfo_col *pCol = &pAggInfo->aCol[pExpr->iAgg];
346313449892Sdrh       if( !pAggInfo->directMode ){
34649de221dfSdrh         assert( pCol->iMem>0 );
3465c332cc30Sdrh         return pCol->iMem;
346613449892Sdrh       }else if( pAggInfo->useSortingIdx ){
34675134d135Sdan         sqlite3VdbeAddOp3(v, OP_Column, pAggInfo->sortingIdxPTab,
3468389a1adbSdrh                               pCol->iSorterColumn, target);
3469c332cc30Sdrh         return target;
347013449892Sdrh       }
347113449892Sdrh       /* Otherwise, fall thru into the TK_COLUMN case */
347213449892Sdrh     }
3473967e8b73Sdrh     case TK_COLUMN: {
3474b2b9d3d7Sdrh       int iTab = pExpr->iTable;
3475efad2e23Sdrh       if( ExprHasProperty(pExpr, EP_FixedCol) ){
3476d98f5324Sdrh         /* This COLUMN expression is really a constant due to WHERE clause
3477d98f5324Sdrh         ** constraints, and that constant is coded by the pExpr->pLeft
3478d98f5324Sdrh         ** expresssion.  However, make sure the constant has the correct
3479d98f5324Sdrh         ** datatype by applying the Affinity of the table column to the
3480d98f5324Sdrh         ** constant.
3481d98f5324Sdrh         */
3482d98f5324Sdrh         int iReg = sqlite3ExprCodeTarget(pParse, pExpr->pLeft,target);
3483eda079cdSdrh         int aff = sqlite3TableColumnAffinity(pExpr->y.pTab, pExpr->iColumn);
3484d98f5324Sdrh         if( aff!=SQLITE_AFF_BLOB ){
3485d98f5324Sdrh           static const char zAff[] = "B\000C\000D\000E";
3486d98f5324Sdrh           assert( SQLITE_AFF_BLOB=='A' );
3487d98f5324Sdrh           assert( SQLITE_AFF_TEXT=='B' );
3488d98f5324Sdrh           if( iReg!=target ){
3489d98f5324Sdrh             sqlite3VdbeAddOp2(v, OP_SCopy, iReg, target);
3490d98f5324Sdrh             iReg = target;
3491d98f5324Sdrh           }
3492d98f5324Sdrh           sqlite3VdbeAddOp4(v, OP_Affinity, iReg, 1, 0,
3493d98f5324Sdrh                             &zAff[(aff-'B')*2], P4_STATIC);
3494d98f5324Sdrh         }
3495d98f5324Sdrh         return iReg;
3496efad2e23Sdrh       }
3497b2b9d3d7Sdrh       if( iTab<0 ){
34986e97f8ecSdrh         if( pParse->iSelfTab<0 ){
3499b2b9d3d7Sdrh           /* Generating CHECK constraints or inserting into partial index */
35006e97f8ecSdrh           return pExpr->iColumn - pParse->iSelfTab;
3501c4a3c779Sdrh         }else{
35021f9ca2c8Sdrh           /* Coding an expression that is part of an index where column names
35031f9ca2c8Sdrh           ** in the index refer to the table to which the index belongs */
35043e34eabcSdrh           iTab = pParse->iSelfTab - 1;
35052282792aSdrh         }
3506b2b9d3d7Sdrh       }
3507eda079cdSdrh       return sqlite3ExprCodeGetColumn(pParse, pExpr->y.pTab,
3508b2b9d3d7Sdrh                                pExpr->iColumn, iTab, target,
3509b2b9d3d7Sdrh                                pExpr->op2);
3510cce7d176Sdrh     }
3511cce7d176Sdrh     case TK_INTEGER: {
351213573c71Sdrh       codeInteger(pParse, pExpr, 0, target);
3513c332cc30Sdrh       return target;
351451e9a445Sdrh     }
35158abed7b9Sdrh     case TK_TRUEFALSE: {
351696acafbeSdrh       sqlite3VdbeAddOp2(v, OP_Integer, sqlite3ExprTruthValue(pExpr), target);
3517007c843bSdrh       return target;
3518007c843bSdrh     }
351913573c71Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT
3520598f1340Sdrh     case TK_FLOAT: {
352133e619fcSdrh       assert( !ExprHasProperty(pExpr, EP_IntValue) );
352233e619fcSdrh       codeReal(v, pExpr->u.zToken, 0, target);
3523c332cc30Sdrh       return target;
3524598f1340Sdrh     }
352513573c71Sdrh #endif
3526fec19aadSdrh     case TK_STRING: {
352733e619fcSdrh       assert( !ExprHasProperty(pExpr, EP_IntValue) );
3528076e85f5Sdrh       sqlite3VdbeLoadString(v, target, pExpr->u.zToken);
3529c332cc30Sdrh       return target;
3530cce7d176Sdrh     }
3531f0863fe5Sdrh     case TK_NULL: {
35329de221dfSdrh       sqlite3VdbeAddOp2(v, OP_Null, 0, target);
3533c332cc30Sdrh       return target;
3534f0863fe5Sdrh     }
35355338a5f7Sdanielk1977 #ifndef SQLITE_OMIT_BLOB_LITERAL
3536c572ef7fSdanielk1977     case TK_BLOB: {
35376c8c6cecSdrh       int n;
35386c8c6cecSdrh       const char *z;
3539ca48c90fSdrh       char *zBlob;
354033e619fcSdrh       assert( !ExprHasProperty(pExpr, EP_IntValue) );
354133e619fcSdrh       assert( pExpr->u.zToken[0]=='x' || pExpr->u.zToken[0]=='X' );
354233e619fcSdrh       assert( pExpr->u.zToken[1]=='\'' );
354333e619fcSdrh       z = &pExpr->u.zToken[2];
3544b7916a78Sdrh       n = sqlite3Strlen30(z) - 1;
3545b7916a78Sdrh       assert( z[n]=='\'' );
3546ca48c90fSdrh       zBlob = sqlite3HexToBlob(sqlite3VdbeDb(v), z, n);
3547ca48c90fSdrh       sqlite3VdbeAddOp4(v, OP_Blob, n/2, target, 0, zBlob, P4_DYNAMIC);
3548c332cc30Sdrh       return target;
3549c572ef7fSdanielk1977     }
35505338a5f7Sdanielk1977 #endif
355150457896Sdrh     case TK_VARIABLE: {
355233e619fcSdrh       assert( !ExprHasProperty(pExpr, EP_IntValue) );
355333e619fcSdrh       assert( pExpr->u.zToken!=0 );
355433e619fcSdrh       assert( pExpr->u.zToken[0]!=0 );
3555eaf52d88Sdrh       sqlite3VdbeAddOp2(v, OP_Variable, pExpr->iColumn, target);
355633e619fcSdrh       if( pExpr->u.zToken[1]!=0 ){
35579bf755ccSdrh         const char *z = sqlite3VListNumToName(pParse->pVList, pExpr->iColumn);
35589bf755ccSdrh         assert( pExpr->u.zToken[0]=='?' || strcmp(pExpr->u.zToken, z)==0 );
3559ce1bbe51Sdrh         pParse->pVList[0] = 0; /* Indicate VList may no longer be enlarged */
35609bf755ccSdrh         sqlite3VdbeAppendP4(v, (char*)z, P4_STATIC);
35619bf755ccSdrh       }
3562c332cc30Sdrh       return target;
356350457896Sdrh     }
35644e0cff60Sdrh     case TK_REGISTER: {
3565c332cc30Sdrh       return pExpr->iTable;
35664e0cff60Sdrh     }
3567487e262fSdrh #ifndef SQLITE_OMIT_CAST
3568487e262fSdrh     case TK_CAST: {
3569487e262fSdrh       /* Expressions of the form:   CAST(pLeft AS token) */
35702dcef11bSdrh       inReg = sqlite3ExprCodeTarget(pParse, pExpr->pLeft, target);
35711735fa88Sdrh       if( inReg!=target ){
35721735fa88Sdrh         sqlite3VdbeAddOp2(v, OP_SCopy, inReg, target);
35731735fa88Sdrh         inReg = target;
35741735fa88Sdrh       }
35754169e430Sdrh       sqlite3VdbeAddOp2(v, OP_Cast, target,
35764169e430Sdrh                         sqlite3AffinityType(pExpr->u.zToken, 0));
3577c332cc30Sdrh       return inReg;
3578487e262fSdrh     }
3579487e262fSdrh #endif /* SQLITE_OMIT_CAST */
358071c57db0Sdan     case TK_IS:
358171c57db0Sdan     case TK_ISNOT:
358271c57db0Sdan       op = (op==TK_IS) ? TK_EQ : TK_NE;
358371c57db0Sdan       p5 = SQLITE_NULLEQ;
358471c57db0Sdan       /* fall-through */
3585c9b84a1fSdrh     case TK_LT:
3586c9b84a1fSdrh     case TK_LE:
3587c9b84a1fSdrh     case TK_GT:
3588c9b84a1fSdrh     case TK_GE:
3589c9b84a1fSdrh     case TK_NE:
3590c9b84a1fSdrh     case TK_EQ: {
359171c57db0Sdan       Expr *pLeft = pExpr->pLeft;
3592625015e0Sdan       if( sqlite3ExprIsVector(pLeft) ){
359379752b6eSdrh         codeVectorCompare(pParse, pExpr, target, op, p5);
359471c57db0Sdan       }else{
359571c57db0Sdan         r1 = sqlite3ExprCodeTemp(pParse, pLeft, &regFree1);
3596b6da74ebSdrh         r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, &regFree2);
359771c57db0Sdan         codeCompare(pParse, pLeft, pExpr->pRight, op,
359871c57db0Sdan             r1, r2, inReg, SQLITE_STOREP2 | p5);
35997d176105Sdrh         assert(TK_LT==OP_Lt); testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt);
36007d176105Sdrh         assert(TK_LE==OP_Le); testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le);
36017d176105Sdrh         assert(TK_GT==OP_Gt); testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt);
36027d176105Sdrh         assert(TK_GE==OP_Ge); testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge);
36037d176105Sdrh         assert(TK_EQ==OP_Eq); testcase(op==OP_Eq); VdbeCoverageIf(v,op==OP_Eq);
36047d176105Sdrh         assert(TK_NE==OP_Ne); testcase(op==OP_Ne); VdbeCoverageIf(v,op==OP_Ne);
3605c5499befSdrh         testcase( regFree1==0 );
3606c5499befSdrh         testcase( regFree2==0 );
3607c9b84a1fSdrh       }
36086a2fe093Sdrh       break;
36096a2fe093Sdrh     }
3610cce7d176Sdrh     case TK_AND:
3611cce7d176Sdrh     case TK_OR:
3612cce7d176Sdrh     case TK_PLUS:
3613cce7d176Sdrh     case TK_STAR:
3614cce7d176Sdrh     case TK_MINUS:
3615bf4133cbSdrh     case TK_REM:
3616bf4133cbSdrh     case TK_BITAND:
3617bf4133cbSdrh     case TK_BITOR:
361817c40294Sdrh     case TK_SLASH:
3619bf4133cbSdrh     case TK_LSHIFT:
3620855eb1cfSdrh     case TK_RSHIFT:
36210040077dSdrh     case TK_CONCAT: {
36227d176105Sdrh       assert( TK_AND==OP_And );            testcase( op==TK_AND );
36237d176105Sdrh       assert( TK_OR==OP_Or );              testcase( op==TK_OR );
36247d176105Sdrh       assert( TK_PLUS==OP_Add );           testcase( op==TK_PLUS );
36257d176105Sdrh       assert( TK_MINUS==OP_Subtract );     testcase( op==TK_MINUS );
36267d176105Sdrh       assert( TK_REM==OP_Remainder );      testcase( op==TK_REM );
36277d176105Sdrh       assert( TK_BITAND==OP_BitAnd );      testcase( op==TK_BITAND );
36287d176105Sdrh       assert( TK_BITOR==OP_BitOr );        testcase( op==TK_BITOR );
36297d176105Sdrh       assert( TK_SLASH==OP_Divide );       testcase( op==TK_SLASH );
36307d176105Sdrh       assert( TK_LSHIFT==OP_ShiftLeft );   testcase( op==TK_LSHIFT );
36317d176105Sdrh       assert( TK_RSHIFT==OP_ShiftRight );  testcase( op==TK_RSHIFT );
36327d176105Sdrh       assert( TK_CONCAT==OP_Concat );      testcase( op==TK_CONCAT );
36332dcef11bSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
36342dcef11bSdrh       r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, &regFree2);
36355b6afba9Sdrh       sqlite3VdbeAddOp3(v, op, r2, r1, target);
3636c5499befSdrh       testcase( regFree1==0 );
3637c5499befSdrh       testcase( regFree2==0 );
36380040077dSdrh       break;
36390040077dSdrh     }
3640cce7d176Sdrh     case TK_UMINUS: {
3641fec19aadSdrh       Expr *pLeft = pExpr->pLeft;
3642fec19aadSdrh       assert( pLeft );
364313573c71Sdrh       if( pLeft->op==TK_INTEGER ){
364413573c71Sdrh         codeInteger(pParse, pLeft, 1, target);
3645c332cc30Sdrh         return target;
364613573c71Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT
364713573c71Sdrh       }else if( pLeft->op==TK_FLOAT ){
364833e619fcSdrh         assert( !ExprHasProperty(pExpr, EP_IntValue) );
364933e619fcSdrh         codeReal(v, pLeft->u.zToken, 1, target);
3650c332cc30Sdrh         return target;
365113573c71Sdrh #endif
36523c84ddffSdrh       }else{
365310d1edf0Sdrh         tempX.op = TK_INTEGER;
365410d1edf0Sdrh         tempX.flags = EP_IntValue|EP_TokenOnly;
365510d1edf0Sdrh         tempX.u.iValue = 0;
365610d1edf0Sdrh         r1 = sqlite3ExprCodeTemp(pParse, &tempX, &regFree1);
3657e55cbd72Sdrh         r2 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree2);
36582dcef11bSdrh         sqlite3VdbeAddOp3(v, OP_Subtract, r2, r1, target);
3659c5499befSdrh         testcase( regFree2==0 );
36603c84ddffSdrh       }
36616e142f54Sdrh       break;
36626e142f54Sdrh     }
3663bf4133cbSdrh     case TK_BITNOT:
36646e142f54Sdrh     case TK_NOT: {
36657d176105Sdrh       assert( TK_BITNOT==OP_BitNot );   testcase( op==TK_BITNOT );
36667d176105Sdrh       assert( TK_NOT==OP_Not );         testcase( op==TK_NOT );
3667e99fa2afSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
3668e99fa2afSdrh       testcase( regFree1==0 );
3669e99fa2afSdrh       sqlite3VdbeAddOp2(v, op, r1, inReg);
3670cce7d176Sdrh       break;
3671cce7d176Sdrh     }
36728abed7b9Sdrh     case TK_TRUTH: {
367396acafbeSdrh       int isTrue;    /* IS TRUE or IS NOT TRUE */
367496acafbeSdrh       int bNormal;   /* IS TRUE or IS FALSE */
3675007c843bSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
3676007c843bSdrh       testcase( regFree1==0 );
367796acafbeSdrh       isTrue = sqlite3ExprTruthValue(pExpr->pRight);
367896acafbeSdrh       bNormal = pExpr->op2==TK_IS;
367996acafbeSdrh       testcase( isTrue && bNormal);
368096acafbeSdrh       testcase( !isTrue && bNormal);
368196acafbeSdrh       sqlite3VdbeAddOp4Int(v, OP_IsTrue, r1, inReg, !isTrue, isTrue ^ bNormal);
3682007c843bSdrh       break;
3683007c843bSdrh     }
3684cce7d176Sdrh     case TK_ISNULL:
3685cce7d176Sdrh     case TK_NOTNULL: {
36866a288a33Sdrh       int addr;
36877d176105Sdrh       assert( TK_ISNULL==OP_IsNull );   testcase( op==TK_ISNULL );
36887d176105Sdrh       assert( TK_NOTNULL==OP_NotNull ); testcase( op==TK_NOTNULL );
36899de221dfSdrh       sqlite3VdbeAddOp2(v, OP_Integer, 1, target);
36902dcef11bSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
3691c5499befSdrh       testcase( regFree1==0 );
36922dcef11bSdrh       addr = sqlite3VdbeAddOp1(v, op, r1);
36937d176105Sdrh       VdbeCoverageIf(v, op==TK_ISNULL);
36947d176105Sdrh       VdbeCoverageIf(v, op==TK_NOTNULL);
3695a976979bSdrh       sqlite3VdbeAddOp2(v, OP_Integer, 0, target);
36966a288a33Sdrh       sqlite3VdbeJumpHere(v, addr);
3697a37cdde0Sdanielk1977       break;
3698f2bc013cSdrh     }
36992282792aSdrh     case TK_AGG_FUNCTION: {
370013449892Sdrh       AggInfo *pInfo = pExpr->pAggInfo;
37017e56e711Sdrh       if( pInfo==0 ){
370233e619fcSdrh         assert( !ExprHasProperty(pExpr, EP_IntValue) );
370333e619fcSdrh         sqlite3ErrorMsg(pParse, "misuse of aggregate: %s()", pExpr->u.zToken);
37047e56e711Sdrh       }else{
3705c332cc30Sdrh         return pInfo->aFunc[pExpr->iAgg].iMem;
37067e56e711Sdrh       }
37072282792aSdrh       break;
37082282792aSdrh     }
3709cce7d176Sdrh     case TK_FUNCTION: {
371012ffee8cSdrh       ExprList *pFarg;       /* List of function arguments */
371112ffee8cSdrh       int nFarg;             /* Number of function arguments */
371212ffee8cSdrh       FuncDef *pDef;         /* The function definition object */
371312ffee8cSdrh       const char *zId;       /* The function name */
3714693e6719Sdrh       u32 constMask = 0;     /* Mask of function arguments that are constant */
371512ffee8cSdrh       int i;                 /* Loop counter */
3716c332cc30Sdrh       sqlite3 *db = pParse->db;  /* The database connection */
371712ffee8cSdrh       u8 enc = ENC(db);      /* The text encoding used by this database */
371812ffee8cSdrh       CollSeq *pColl = 0;    /* A collating sequence */
371917435752Sdrh 
372067a9b8edSdan #ifndef SQLITE_OMIT_WINDOWFUNC
3721eda079cdSdrh       if( ExprHasProperty(pExpr, EP_WinFunc) ){
3722eda079cdSdrh         return pExpr->y.pWin->regResult;
372386fb6e17Sdan       }
372467a9b8edSdan #endif
372586fb6e17Sdan 
37261e9b53f9Sdrh       if( ConstFactorOk(pParse) && sqlite3ExprIsConstantNotJoin(pExpr) ){
372749c5ab24Sdrh         /* SQL functions can be expensive. So try to move constant functions
3728ad879ffdSdrh         ** out of the inner loop, even if that means an extra OP_Copy. */
3729ad879ffdSdrh         return sqlite3ExprCodeAtInit(pParse, pExpr, -1);
37301e9b53f9Sdrh       }
37316ab3a2ecSdanielk1977       assert( !ExprHasProperty(pExpr, EP_xIsSelect) );
3732c5cd1249Sdrh       if( ExprHasProperty(pExpr, EP_TokenOnly) ){
373312ffee8cSdrh         pFarg = 0;
373412ffee8cSdrh       }else{
373512ffee8cSdrh         pFarg = pExpr->x.pList;
373612ffee8cSdrh       }
373712ffee8cSdrh       nFarg = pFarg ? pFarg->nExpr : 0;
373833e619fcSdrh       assert( !ExprHasProperty(pExpr, EP_IntValue) );
373933e619fcSdrh       zId = pExpr->u.zToken;
374080738d9cSdrh       pDef = sqlite3FindFunction(db, zId, nFarg, enc, 0);
3741cc15313cSdrh #ifdef SQLITE_ENABLE_UNKNOWN_SQL_FUNCTION
3742cc15313cSdrh       if( pDef==0 && pParse->explain ){
3743cc15313cSdrh         pDef = sqlite3FindFunction(db, "unknown", nFarg, enc, 0);
3744cc15313cSdrh       }
3745cc15313cSdrh #endif
3746b6e9f7a4Sdan       if( pDef==0 || pDef->xFinalize!=0 ){
374780738d9cSdrh         sqlite3ErrorMsg(pParse, "unknown function: %s()", zId);
3748feb306f5Sdrh         break;
3749feb306f5Sdrh       }
3750ae6bb957Sdrh 
3751ae6bb957Sdrh       /* Attempt a direct implementation of the built-in COALESCE() and
375260ec914cSpeter.d.reid       ** IFNULL() functions.  This avoids unnecessary evaluation of
3753ae6bb957Sdrh       ** arguments past the first non-NULL argument.
3754ae6bb957Sdrh       */
3755d36e1041Sdrh       if( pDef->funcFlags & SQLITE_FUNC_COALESCE ){
3756ae6bb957Sdrh         int endCoalesce = sqlite3VdbeMakeLabel(v);
3757ae6bb957Sdrh         assert( nFarg>=2 );
3758ae6bb957Sdrh         sqlite3ExprCode(pParse, pFarg->a[0].pExpr, target);
3759ae6bb957Sdrh         for(i=1; i<nFarg; i++){
3760ae6bb957Sdrh           sqlite3VdbeAddOp2(v, OP_NotNull, target, endCoalesce);
3761688852abSdrh           VdbeCoverage(v);
3762ae6bb957Sdrh           sqlite3ExprCode(pParse, pFarg->a[i].pExpr, target);
3763ae6bb957Sdrh         }
3764ae6bb957Sdrh         sqlite3VdbeResolveLabel(v, endCoalesce);
3765ae6bb957Sdrh         break;
3766ae6bb957Sdrh       }
3767ae6bb957Sdrh 
3768cca9f3d2Sdrh       /* The UNLIKELY() function is a no-op.  The result is the value
3769cca9f3d2Sdrh       ** of the first argument.
3770cca9f3d2Sdrh       */
3771cca9f3d2Sdrh       if( pDef->funcFlags & SQLITE_FUNC_UNLIKELY ){
3772cca9f3d2Sdrh         assert( nFarg>=1 );
3773c332cc30Sdrh         return sqlite3ExprCodeTarget(pParse, pFarg->a[0].pExpr, target);
3774cca9f3d2Sdrh       }
3775ae6bb957Sdrh 
377654240751Sdrh #ifdef SQLITE_DEBUG
3777a1a523a5Sdrh       /* The AFFINITY() function evaluates to a string that describes
3778a1a523a5Sdrh       ** the type affinity of the argument.  This is used for testing of
3779a1a523a5Sdrh       ** the SQLite type logic.
3780a1a523a5Sdrh       */
3781a1a523a5Sdrh       if( pDef->funcFlags & SQLITE_FUNC_AFFINITY ){
3782a1a523a5Sdrh         const char *azAff[] = { "blob", "text", "numeric", "integer", "real" };
3783a1a523a5Sdrh         char aff;
3784a1a523a5Sdrh         assert( nFarg==1 );
3785a1a523a5Sdrh         aff = sqlite3ExprAffinity(pFarg->a[0].pExpr);
3786a1a523a5Sdrh         sqlite3VdbeLoadString(v, target,
3787a1a523a5Sdrh                               aff ? azAff[aff-SQLITE_AFF_BLOB] : "none");
3788a1a523a5Sdrh         return target;
3789a1a523a5Sdrh       }
379054240751Sdrh #endif
3791a1a523a5Sdrh 
3792d1a01edaSdrh       for(i=0; i<nFarg; i++){
3793d1a01edaSdrh         if( i<32 && sqlite3ExprIsConstant(pFarg->a[i].pExpr) ){
3794693e6719Sdrh           testcase( i==31 );
3795693e6719Sdrh           constMask |= MASKBIT32(i);
3796d1a01edaSdrh         }
3797d1a01edaSdrh         if( (pDef->funcFlags & SQLITE_FUNC_NEEDCOLL)!=0 && !pColl ){
3798d1a01edaSdrh           pColl = sqlite3ExprCollSeq(pParse, pFarg->a[i].pExpr);
3799d1a01edaSdrh         }
3800d1a01edaSdrh       }
380112ffee8cSdrh       if( pFarg ){
3802d1a01edaSdrh         if( constMask ){
3803d1a01edaSdrh           r1 = pParse->nMem+1;
3804d1a01edaSdrh           pParse->nMem += nFarg;
3805d1a01edaSdrh         }else{
380612ffee8cSdrh           r1 = sqlite3GetTempRange(pParse, nFarg);
3807d1a01edaSdrh         }
3808a748fdccSdrh 
3809a748fdccSdrh         /* For length() and typeof() functions with a column argument,
3810a748fdccSdrh         ** set the P5 parameter to the OP_Column opcode to OPFLAG_LENGTHARG
3811a748fdccSdrh         ** or OPFLAG_TYPEOFARG respectively, to avoid unnecessary data
3812a748fdccSdrh         ** loading.
3813a748fdccSdrh         */
3814d36e1041Sdrh         if( (pDef->funcFlags & (SQLITE_FUNC_LENGTH|SQLITE_FUNC_TYPEOF))!=0 ){
38154e245a4cSdrh           u8 exprOp;
3816a748fdccSdrh           assert( nFarg==1 );
3817a748fdccSdrh           assert( pFarg->a[0].pExpr!=0 );
38184e245a4cSdrh           exprOp = pFarg->a[0].pExpr->op;
38194e245a4cSdrh           if( exprOp==TK_COLUMN || exprOp==TK_AGG_COLUMN ){
3820a748fdccSdrh             assert( SQLITE_FUNC_LENGTH==OPFLAG_LENGTHARG );
3821a748fdccSdrh             assert( SQLITE_FUNC_TYPEOF==OPFLAG_TYPEOFARG );
3822b1fba286Sdrh             testcase( pDef->funcFlags & OPFLAG_LENGTHARG );
3823b1fba286Sdrh             pFarg->a[0].pExpr->op2 =
3824b1fba286Sdrh                   pDef->funcFlags & (OPFLAG_LENGTHARG|OPFLAG_TYPEOFARG);
3825a748fdccSdrh           }
3826a748fdccSdrh         }
3827a748fdccSdrh 
38285579d59fSdrh         sqlite3ExprCodeExprList(pParse, pFarg, r1, 0,
3829d1a01edaSdrh                                 SQLITE_ECEL_DUP|SQLITE_ECEL_FACTOR);
3830892d3179Sdrh       }else{
383112ffee8cSdrh         r1 = 0;
3832892d3179Sdrh       }
3833b7f6f68fSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
3834a43fa227Sdrh       /* Possibly overload the function if the first argument is
3835a43fa227Sdrh       ** a virtual table column.
3836a43fa227Sdrh       **
3837a43fa227Sdrh       ** For infix functions (LIKE, GLOB, REGEXP, and MATCH) use the
3838a43fa227Sdrh       ** second argument, not the first, as the argument to test to
3839a43fa227Sdrh       ** see if it is a column in a virtual table.  This is done because
3840a43fa227Sdrh       ** the left operand of infix functions (the operand we want to
3841a43fa227Sdrh       ** control overloading) ends up as the second argument to the
3842a43fa227Sdrh       ** function.  The expression "A glob B" is equivalent to
3843a43fa227Sdrh       ** "glob(B,A).  We want to use the A in "A glob B" to test
3844a43fa227Sdrh       ** for function overloading.  But we use the B term in "glob(B,A)".
3845a43fa227Sdrh       */
384659155065Sdrh       if( nFarg>=2 && ExprHasProperty(pExpr, EP_InfixFunc) ){
384712ffee8cSdrh         pDef = sqlite3VtabOverloadFunction(db, pDef, nFarg, pFarg->a[1].pExpr);
384812ffee8cSdrh       }else if( nFarg>0 ){
384912ffee8cSdrh         pDef = sqlite3VtabOverloadFunction(db, pDef, nFarg, pFarg->a[0].pExpr);
3850b7f6f68fSdrh       }
3851b7f6f68fSdrh #endif
3852d36e1041Sdrh       if( pDef->funcFlags & SQLITE_FUNC_NEEDCOLL ){
38538b213899Sdrh         if( !pColl ) pColl = db->pDfltColl;
385466a5167bSdrh         sqlite3VdbeAddOp4(v, OP_CollSeq, 0, 0, 0, (char *)pColl, P4_COLLSEQ);
3855682f68b0Sdanielk1977       }
3856092457b1Sdrh #ifdef SQLITE_ENABLE_OFFSET_SQL_FUNC
3857092457b1Sdrh       if( pDef->funcFlags & SQLITE_FUNC_OFFSET ){
38582fc865c1Sdrh         Expr *pArg = pFarg->a[0].pExpr;
38592fc865c1Sdrh         if( pArg->op==TK_COLUMN ){
3860092457b1Sdrh           sqlite3VdbeAddOp3(v, OP_Offset, pArg->iTable, pArg->iColumn, target);
38612fc865c1Sdrh         }else{
38622fc865c1Sdrh           sqlite3VdbeAddOp2(v, OP_Null, 0, target);
38632fc865c1Sdrh         }
3864092457b1Sdrh       }else
3865092457b1Sdrh #endif
3866092457b1Sdrh       {
38673e34eabcSdrh         sqlite3VdbeAddOp4(v, pParse->iSelfTab ? OP_PureFunc0 : OP_Function0,
38683e34eabcSdrh                           constMask, r1, target, (char*)pDef, P4_FUNCDEF);
386912ffee8cSdrh         sqlite3VdbeChangeP5(v, (u8)nFarg);
38702fc865c1Sdrh       }
3871d1a01edaSdrh       if( nFarg && constMask==0 ){
387212ffee8cSdrh         sqlite3ReleaseTempRange(pParse, r1, nFarg);
38732dcef11bSdrh       }
3874c332cc30Sdrh       return target;
38756ec2733bSdrh     }
3876fe2093d7Sdrh #ifndef SQLITE_OMIT_SUBQUERY
3877fe2093d7Sdrh     case TK_EXISTS:
387819a775c2Sdrh     case TK_SELECT: {
38798da209b1Sdan       int nCol;
3880c5499befSdrh       testcase( op==TK_EXISTS );
3881c5499befSdrh       testcase( op==TK_SELECT );
38828da209b1Sdan       if( op==TK_SELECT && (nCol = pExpr->x.pSelect->pEList->nExpr)!=1 ){
38838da209b1Sdan         sqlite3SubselectError(pParse, nCol, 1);
38848da209b1Sdan       }else{
388585bcdce2Sdrh         return sqlite3CodeSubselect(pParse, pExpr);
38868da209b1Sdan       }
388719a775c2Sdrh       break;
388819a775c2Sdrh     }
3889fc7f27b9Sdrh     case TK_SELECT_COLUMN: {
3890966e2911Sdrh       int n;
3891fc7f27b9Sdrh       if( pExpr->pLeft->iTable==0 ){
389285bcdce2Sdrh         pExpr->pLeft->iTable = sqlite3CodeSubselect(pParse, pExpr->pLeft);
3893fc7f27b9Sdrh       }
3894966e2911Sdrh       assert( pExpr->iTable==0 || pExpr->pLeft->op==TK_SELECT );
3895966e2911Sdrh       if( pExpr->iTable
3896966e2911Sdrh        && pExpr->iTable!=(n = sqlite3ExprVectorSize(pExpr->pLeft))
3897966e2911Sdrh       ){
3898966e2911Sdrh         sqlite3ErrorMsg(pParse, "%d columns assigned %d values",
3899966e2911Sdrh                                 pExpr->iTable, n);
3900966e2911Sdrh       }
3901c332cc30Sdrh       return pExpr->pLeft->iTable + pExpr->iColumn;
3902fc7f27b9Sdrh     }
3903fef5208cSdrh     case TK_IN: {
3904e3365e6cSdrh       int destIfFalse = sqlite3VdbeMakeLabel(v);
3905e3365e6cSdrh       int destIfNull = sqlite3VdbeMakeLabel(v);
3906e3365e6cSdrh       sqlite3VdbeAddOp2(v, OP_Null, 0, target);
3907e3365e6cSdrh       sqlite3ExprCodeIN(pParse, pExpr, destIfFalse, destIfNull);
390866ba23ceSdrh       sqlite3VdbeAddOp2(v, OP_Integer, 1, target);
3909e3365e6cSdrh       sqlite3VdbeResolveLabel(v, destIfFalse);
3910e3365e6cSdrh       sqlite3VdbeAddOp2(v, OP_AddImm, target, 0);
3911e3365e6cSdrh       sqlite3VdbeResolveLabel(v, destIfNull);
3912c332cc30Sdrh       return target;
3913fef5208cSdrh     }
3914e3365e6cSdrh #endif /* SQLITE_OMIT_SUBQUERY */
3915e3365e6cSdrh 
3916e3365e6cSdrh 
39172dcef11bSdrh     /*
39182dcef11bSdrh     **    x BETWEEN y AND z
39192dcef11bSdrh     **
39202dcef11bSdrh     ** This is equivalent to
39212dcef11bSdrh     **
39222dcef11bSdrh     **    x>=y AND x<=z
39232dcef11bSdrh     **
39242dcef11bSdrh     ** X is stored in pExpr->pLeft.
39252dcef11bSdrh     ** Y is stored in pExpr->pList->a[0].pExpr.
39262dcef11bSdrh     ** Z is stored in pExpr->pList->a[1].pExpr.
39272dcef11bSdrh     */
3928fef5208cSdrh     case TK_BETWEEN: {
392971c57db0Sdan       exprCodeBetween(pParse, pExpr, target, 0, 0);
3930c332cc30Sdrh       return target;
3931fef5208cSdrh     }
393294fa9c41Sdrh     case TK_SPAN:
3933ae80ddeaSdrh     case TK_COLLATE:
39344f07e5fbSdrh     case TK_UPLUS: {
39351efa8023Sdrh       pExpr = pExpr->pLeft;
393659ee43a7Sdrh       goto expr_code_doover; /* 2018-04-28: Prevent deep recursion. OSSFuzz. */
3937a2e00042Sdrh     }
39382dcef11bSdrh 
3939165921a7Sdan     case TK_TRIGGER: {
394065a7cd16Sdan       /* If the opcode is TK_TRIGGER, then the expression is a reference
394165a7cd16Sdan       ** to a column in the new.* or old.* pseudo-tables available to
394265a7cd16Sdan       ** trigger programs. In this case Expr.iTable is set to 1 for the
394365a7cd16Sdan       ** new.* pseudo-table, or 0 for the old.* pseudo-table. Expr.iColumn
394465a7cd16Sdan       ** is set to the column of the pseudo-table to read, or to -1 to
394565a7cd16Sdan       ** read the rowid field.
394665a7cd16Sdan       **
394765a7cd16Sdan       ** The expression is implemented using an OP_Param opcode. The p1
394865a7cd16Sdan       ** parameter is set to 0 for an old.rowid reference, or to (i+1)
394965a7cd16Sdan       ** to reference another column of the old.* pseudo-table, where
395065a7cd16Sdan       ** i is the index of the column. For a new.rowid reference, p1 is
395165a7cd16Sdan       ** set to (n+1), where n is the number of columns in each pseudo-table.
395265a7cd16Sdan       ** For a reference to any other column in the new.* pseudo-table, p1
395365a7cd16Sdan       ** is set to (n+2+i), where n and i are as defined previously. For
395465a7cd16Sdan       ** example, if the table on which triggers are being fired is
395565a7cd16Sdan       ** declared as:
395665a7cd16Sdan       **
395765a7cd16Sdan       **   CREATE TABLE t1(a, b);
395865a7cd16Sdan       **
395965a7cd16Sdan       ** Then p1 is interpreted as follows:
396065a7cd16Sdan       **
396165a7cd16Sdan       **   p1==0   ->    old.rowid     p1==3   ->    new.rowid
396265a7cd16Sdan       **   p1==1   ->    old.a         p1==4   ->    new.a
396365a7cd16Sdan       **   p1==2   ->    old.b         p1==5   ->    new.b
396465a7cd16Sdan       */
3965eda079cdSdrh       Table *pTab = pExpr->y.pTab;
396665a7cd16Sdan       int p1 = pExpr->iTable * (pTab->nCol+1) + 1 + pExpr->iColumn;
396765a7cd16Sdan 
396865a7cd16Sdan       assert( pExpr->iTable==0 || pExpr->iTable==1 );
396965a7cd16Sdan       assert( pExpr->iColumn>=-1 && pExpr->iColumn<pTab->nCol );
397065a7cd16Sdan       assert( pTab->iPKey<0 || pExpr->iColumn!=pTab->iPKey );
397165a7cd16Sdan       assert( p1>=0 && p1<(pTab->nCol*2+2) );
397265a7cd16Sdan 
397365a7cd16Sdan       sqlite3VdbeAddOp2(v, OP_Param, p1, target);
3974896494e8Sdrh       VdbeComment((v, "r[%d]=%s.%s", target,
3975165921a7Sdan         (pExpr->iTable ? "new" : "old"),
3976eda079cdSdrh         (pExpr->iColumn<0 ? "rowid" : pExpr->y.pTab->aCol[pExpr->iColumn].zName)
3977165921a7Sdan       ));
397865a7cd16Sdan 
397944dbca83Sdrh #ifndef SQLITE_OMIT_FLOATING_POINT
398065a7cd16Sdan       /* If the column has REAL affinity, it may currently be stored as an
3981113762a2Sdrh       ** integer. Use OP_RealAffinity to make sure it is really real.
3982113762a2Sdrh       **
3983113762a2Sdrh       ** EVIDENCE-OF: R-60985-57662 SQLite will convert the value back to
3984113762a2Sdrh       ** floating point when extracting it from the record.  */
39852832ad42Sdan       if( pExpr->iColumn>=0
39862832ad42Sdan        && pTab->aCol[pExpr->iColumn].affinity==SQLITE_AFF_REAL
39872832ad42Sdan       ){
39882832ad42Sdan         sqlite3VdbeAddOp1(v, OP_RealAffinity, target);
39892832ad42Sdan       }
399044dbca83Sdrh #endif
3991165921a7Sdan       break;
3992165921a7Sdan     }
3993165921a7Sdan 
399471c57db0Sdan     case TK_VECTOR: {
3995e835bc12Sdrh       sqlite3ErrorMsg(pParse, "row value misused");
399671c57db0Sdan       break;
399771c57db0Sdan     }
399871c57db0Sdan 
399931d6fd55Sdrh     case TK_IF_NULL_ROW: {
400031d6fd55Sdrh       int addrINR;
400131d6fd55Sdrh       addrINR = sqlite3VdbeAddOp1(v, OP_IfNullRow, pExpr->iTable);
400231d6fd55Sdrh       inReg = sqlite3ExprCodeTarget(pParse, pExpr->pLeft, target);
400331d6fd55Sdrh       sqlite3VdbeJumpHere(v, addrINR);
400431d6fd55Sdrh       sqlite3VdbeChangeP3(v, addrINR, inReg);
400531d6fd55Sdrh       break;
400631d6fd55Sdrh     }
400731d6fd55Sdrh 
40082dcef11bSdrh     /*
40092dcef11bSdrh     ** Form A:
40102dcef11bSdrh     **   CASE x WHEN e1 THEN r1 WHEN e2 THEN r2 ... WHEN eN THEN rN ELSE y END
40112dcef11bSdrh     **
40122dcef11bSdrh     ** Form B:
40132dcef11bSdrh     **   CASE WHEN e1 THEN r1 WHEN e2 THEN r2 ... WHEN eN THEN rN ELSE y END
40142dcef11bSdrh     **
40152dcef11bSdrh     ** Form A is can be transformed into the equivalent form B as follows:
40162dcef11bSdrh     **   CASE WHEN x=e1 THEN r1 WHEN x=e2 THEN r2 ...
40172dcef11bSdrh     **        WHEN x=eN THEN rN ELSE y END
40182dcef11bSdrh     **
40192dcef11bSdrh     ** X (if it exists) is in pExpr->pLeft.
4020c5cd1249Sdrh     ** Y is in the last element of pExpr->x.pList if pExpr->x.pList->nExpr is
4021c5cd1249Sdrh     ** odd.  The Y is also optional.  If the number of elements in x.pList
4022c5cd1249Sdrh     ** is even, then Y is omitted and the "otherwise" result is NULL.
40232dcef11bSdrh     ** Ei is in pExpr->pList->a[i*2] and Ri is pExpr->pList->a[i*2+1].
40242dcef11bSdrh     **
40252dcef11bSdrh     ** The result of the expression is the Ri for the first matching Ei,
40262dcef11bSdrh     ** or if there is no matching Ei, the ELSE term Y, or if there is
40272dcef11bSdrh     ** no ELSE term, NULL.
40282dcef11bSdrh     */
402933cd4909Sdrh     default: assert( op==TK_CASE ); {
40302dcef11bSdrh       int endLabel;                     /* GOTO label for end of CASE stmt */
40312dcef11bSdrh       int nextCase;                     /* GOTO label for next WHEN clause */
40322dcef11bSdrh       int nExpr;                        /* 2x number of WHEN terms */
40332dcef11bSdrh       int i;                            /* Loop counter */
40342dcef11bSdrh       ExprList *pEList;                 /* List of WHEN terms */
40352dcef11bSdrh       struct ExprList_item *aListelem;  /* Array of WHEN terms */
40362dcef11bSdrh       Expr opCompare;                   /* The X==Ei expression */
40372dcef11bSdrh       Expr *pX;                         /* The X expression */
40381bd10f8aSdrh       Expr *pTest = 0;                  /* X==Ei (form A) or just Ei (form B) */
403917a7f8ddSdrh 
40406ab3a2ecSdanielk1977       assert( !ExprHasProperty(pExpr, EP_xIsSelect) && pExpr->x.pList );
40416ab3a2ecSdanielk1977       assert(pExpr->x.pList->nExpr > 0);
40426ab3a2ecSdanielk1977       pEList = pExpr->x.pList;
4043be5c89acSdrh       aListelem = pEList->a;
4044be5c89acSdrh       nExpr = pEList->nExpr;
40452dcef11bSdrh       endLabel = sqlite3VdbeMakeLabel(v);
40462dcef11bSdrh       if( (pX = pExpr->pLeft)!=0 ){
404710d1edf0Sdrh         tempX = *pX;
404833cd4909Sdrh         testcase( pX->op==TK_COLUMN );
404912abf408Sdrh         exprToRegister(&tempX, exprCodeVector(pParse, &tempX, &regFree1));
4050c5499befSdrh         testcase( regFree1==0 );
4051abb9d5f1Sdrh         memset(&opCompare, 0, sizeof(opCompare));
40522dcef11bSdrh         opCompare.op = TK_EQ;
405310d1edf0Sdrh         opCompare.pLeft = &tempX;
40542dcef11bSdrh         pTest = &opCompare;
40558b1db07fSdrh         /* Ticket b351d95f9cd5ef17e9d9dbae18f5ca8611190001:
40568b1db07fSdrh         ** The value in regFree1 might get SCopy-ed into the file result.
40578b1db07fSdrh         ** So make sure that the regFree1 register is not reused for other
40588b1db07fSdrh         ** purposes and possibly overwritten.  */
40598b1db07fSdrh         regFree1 = 0;
4060cce7d176Sdrh       }
4061c5cd1249Sdrh       for(i=0; i<nExpr-1; i=i+2){
40622dcef11bSdrh         if( pX ){
40631bd10f8aSdrh           assert( pTest!=0 );
40642dcef11bSdrh           opCompare.pRight = aListelem[i].pExpr;
4065f5905aa7Sdrh         }else{
40662dcef11bSdrh           pTest = aListelem[i].pExpr;
406717a7f8ddSdrh         }
40682dcef11bSdrh         nextCase = sqlite3VdbeMakeLabel(v);
406933cd4909Sdrh         testcase( pTest->op==TK_COLUMN );
40702dcef11bSdrh         sqlite3ExprIfFalse(pParse, pTest, nextCase, SQLITE_JUMPIFNULL);
4071c5499befSdrh         testcase( aListelem[i+1].pExpr->op==TK_COLUMN );
40729de221dfSdrh         sqlite3ExprCode(pParse, aListelem[i+1].pExpr, target);
4073076e85f5Sdrh         sqlite3VdbeGoto(v, endLabel);
40742dcef11bSdrh         sqlite3VdbeResolveLabel(v, nextCase);
4075f570f011Sdrh       }
4076c5cd1249Sdrh       if( (nExpr&1)!=0 ){
4077c5cd1249Sdrh         sqlite3ExprCode(pParse, pEList->a[nExpr-1].pExpr, target);
407817a7f8ddSdrh       }else{
40799de221dfSdrh         sqlite3VdbeAddOp2(v, OP_Null, 0, target);
408017a7f8ddSdrh       }
40812dcef11bSdrh       sqlite3VdbeResolveLabel(v, endLabel);
40826f34903eSdanielk1977       break;
40836f34903eSdanielk1977     }
40845338a5f7Sdanielk1977 #ifndef SQLITE_OMIT_TRIGGER
40856f34903eSdanielk1977     case TK_RAISE: {
4086165921a7Sdan       assert( pExpr->affinity==OE_Rollback
4087165921a7Sdan            || pExpr->affinity==OE_Abort
4088165921a7Sdan            || pExpr->affinity==OE_Fail
4089165921a7Sdan            || pExpr->affinity==OE_Ignore
4090165921a7Sdan       );
4091e0af83acSdan       if( !pParse->pTriggerTab ){
4092e0af83acSdan         sqlite3ErrorMsg(pParse,
4093e0af83acSdan                        "RAISE() may only be used within a trigger-program");
4094e0af83acSdan         return 0;
4095e0af83acSdan       }
4096e0af83acSdan       if( pExpr->affinity==OE_Abort ){
4097e0af83acSdan         sqlite3MayAbort(pParse);
4098e0af83acSdan       }
409933e619fcSdrh       assert( !ExprHasProperty(pExpr, EP_IntValue) );
4100e0af83acSdan       if( pExpr->affinity==OE_Ignore ){
4101e0af83acSdan         sqlite3VdbeAddOp4(
4102e0af83acSdan             v, OP_Halt, SQLITE_OK, OE_Ignore, 0, pExpr->u.zToken,0);
4103688852abSdrh         VdbeCoverage(v);
4104e0af83acSdan       }else{
4105433dccfbSdrh         sqlite3HaltConstraint(pParse, SQLITE_CONSTRAINT_TRIGGER,
4106f9c8ce3cSdrh                               pExpr->affinity, pExpr->u.zToken, 0, 0);
4107e0af83acSdan       }
4108e0af83acSdan 
4109ffe07b2dSdrh       break;
411017a7f8ddSdrh     }
41115338a5f7Sdanielk1977 #endif
4112ffe07b2dSdrh   }
41132dcef11bSdrh   sqlite3ReleaseTempReg(pParse, regFree1);
41142dcef11bSdrh   sqlite3ReleaseTempReg(pParse, regFree2);
41152dcef11bSdrh   return inReg;
41165b6afba9Sdrh }
41172dcef11bSdrh 
41182dcef11bSdrh /*
4119d1a01edaSdrh ** Factor out the code of the given expression to initialization time.
41201e9b53f9Sdrh **
4121ad879ffdSdrh ** If regDest>=0 then the result is always stored in that register and the
4122ad879ffdSdrh ** result is not reusable.  If regDest<0 then this routine is free to
4123ad879ffdSdrh ** store the value whereever it wants.  The register where the expression
4124ad879ffdSdrh ** is stored is returned.  When regDest<0, two identical expressions will
4125ad879ffdSdrh ** code to the same register.
4126d1a01edaSdrh */
41271e9b53f9Sdrh int sqlite3ExprCodeAtInit(
4128d673cddaSdrh   Parse *pParse,    /* Parsing context */
4129d673cddaSdrh   Expr *pExpr,      /* The expression to code when the VDBE initializes */
4130ad879ffdSdrh   int regDest       /* Store the value in this register */
4131d673cddaSdrh ){
4132d1a01edaSdrh   ExprList *p;
4133d9f158e7Sdrh   assert( ConstFactorOk(pParse) );
4134d1a01edaSdrh   p = pParse->pConstExpr;
4135ad879ffdSdrh   if( regDest<0 && p ){
41361e9b53f9Sdrh     struct ExprList_item *pItem;
41371e9b53f9Sdrh     int i;
41381e9b53f9Sdrh     for(pItem=p->a, i=p->nExpr; i>0; pItem++, i--){
41395aa550cfSdan       if( pItem->reusable && sqlite3ExprCompare(0,pItem->pExpr,pExpr,-1)==0 ){
41401e9b53f9Sdrh         return pItem->u.iConstExprReg;
41411e9b53f9Sdrh       }
41421e9b53f9Sdrh     }
41431e9b53f9Sdrh   }
4144d1a01edaSdrh   pExpr = sqlite3ExprDup(pParse->db, pExpr, 0);
4145d1a01edaSdrh   p = sqlite3ExprListAppend(pParse, p, pExpr);
4146d673cddaSdrh   if( p ){
4147d673cddaSdrh      struct ExprList_item *pItem = &p->a[p->nExpr-1];
4148ad879ffdSdrh      pItem->reusable = regDest<0;
4149ad879ffdSdrh      if( regDest<0 ) regDest = ++pParse->nMem;
4150d673cddaSdrh      pItem->u.iConstExprReg = regDest;
4151d673cddaSdrh   }
4152d1a01edaSdrh   pParse->pConstExpr = p;
41531e9b53f9Sdrh   return regDest;
4154d1a01edaSdrh }
4155d1a01edaSdrh 
4156d1a01edaSdrh /*
41572dcef11bSdrh ** Generate code to evaluate an expression and store the results
41582dcef11bSdrh ** into a register.  Return the register number where the results
41592dcef11bSdrh ** are stored.
41602dcef11bSdrh **
41612dcef11bSdrh ** If the register is a temporary register that can be deallocated,
4162678ccce8Sdrh ** then write its number into *pReg.  If the result register is not
41632dcef11bSdrh ** a temporary, then set *pReg to zero.
4164f30a969bSdrh **
4165f30a969bSdrh ** If pExpr is a constant, then this routine might generate this
4166f30a969bSdrh ** code to fill the register in the initialization section of the
4167f30a969bSdrh ** VDBE program, in order to factor it out of the evaluation loop.
41682dcef11bSdrh */
41692dcef11bSdrh int sqlite3ExprCodeTemp(Parse *pParse, Expr *pExpr, int *pReg){
4170f30a969bSdrh   int r2;
4171f30a969bSdrh   pExpr = sqlite3ExprSkipCollate(pExpr);
4172d9f158e7Sdrh   if( ConstFactorOk(pParse)
4173f30a969bSdrh    && pExpr->op!=TK_REGISTER
4174f30a969bSdrh    && sqlite3ExprIsConstantNotJoin(pExpr)
4175f30a969bSdrh   ){
4176f30a969bSdrh     *pReg  = 0;
4177ad879ffdSdrh     r2 = sqlite3ExprCodeAtInit(pParse, pExpr, -1);
4178f30a969bSdrh   }else{
41792dcef11bSdrh     int r1 = sqlite3GetTempReg(pParse);
4180f30a969bSdrh     r2 = sqlite3ExprCodeTarget(pParse, pExpr, r1);
41812dcef11bSdrh     if( r2==r1 ){
41822dcef11bSdrh       *pReg = r1;
41832dcef11bSdrh     }else{
41842dcef11bSdrh       sqlite3ReleaseTempReg(pParse, r1);
41852dcef11bSdrh       *pReg = 0;
41862dcef11bSdrh     }
4187f30a969bSdrh   }
41882dcef11bSdrh   return r2;
41892dcef11bSdrh }
41902dcef11bSdrh 
41912dcef11bSdrh /*
41922dcef11bSdrh ** Generate code that will evaluate expression pExpr and store the
41932dcef11bSdrh ** results in register target.  The results are guaranteed to appear
41942dcef11bSdrh ** in register target.
41952dcef11bSdrh */
419605a86c5cSdrh void sqlite3ExprCode(Parse *pParse, Expr *pExpr, int target){
41979cbf3425Sdrh   int inReg;
41989cbf3425Sdrh 
41999cbf3425Sdrh   assert( target>0 && target<=pParse->nMem );
4200ebc16717Sdrh   if( pExpr && pExpr->op==TK_REGISTER ){
4201ebc16717Sdrh     sqlite3VdbeAddOp2(pParse->pVdbe, OP_Copy, pExpr->iTable, target);
4202ebc16717Sdrh   }else{
42039cbf3425Sdrh     inReg = sqlite3ExprCodeTarget(pParse, pExpr, target);
42041c75c9d7Sdrh     assert( pParse->pVdbe!=0 || pParse->db->mallocFailed );
42050e359b30Sdrh     if( inReg!=target && pParse->pVdbe ){
42069cbf3425Sdrh       sqlite3VdbeAddOp2(pParse->pVdbe, OP_SCopy, inReg, target);
420717a7f8ddSdrh     }
4208ebc16717Sdrh   }
4209cce7d176Sdrh }
4210cce7d176Sdrh 
4211cce7d176Sdrh /*
42121c75c9d7Sdrh ** Make a transient copy of expression pExpr and then code it using
42131c75c9d7Sdrh ** sqlite3ExprCode().  This routine works just like sqlite3ExprCode()
42141c75c9d7Sdrh ** except that the input expression is guaranteed to be unchanged.
42151c75c9d7Sdrh */
42161c75c9d7Sdrh void sqlite3ExprCodeCopy(Parse *pParse, Expr *pExpr, int target){
42171c75c9d7Sdrh   sqlite3 *db = pParse->db;
42181c75c9d7Sdrh   pExpr = sqlite3ExprDup(db, pExpr, 0);
42191c75c9d7Sdrh   if( !db->mallocFailed ) sqlite3ExprCode(pParse, pExpr, target);
42201c75c9d7Sdrh   sqlite3ExprDelete(db, pExpr);
42211c75c9d7Sdrh }
42221c75c9d7Sdrh 
42231c75c9d7Sdrh /*
422405a86c5cSdrh ** Generate code that will evaluate expression pExpr and store the
422505a86c5cSdrh ** results in register target.  The results are guaranteed to appear
422605a86c5cSdrh ** in register target.  If the expression is constant, then this routine
422705a86c5cSdrh ** might choose to code the expression at initialization time.
422805a86c5cSdrh */
422905a86c5cSdrh void sqlite3ExprCodeFactorable(Parse *pParse, Expr *pExpr, int target){
4230b8b06690Sdrh   if( pParse->okConstFactor && sqlite3ExprIsConstantNotJoin(pExpr) ){
4231ad879ffdSdrh     sqlite3ExprCodeAtInit(pParse, pExpr, target);
423205a86c5cSdrh   }else{
423305a86c5cSdrh     sqlite3ExprCode(pParse, pExpr, target);
423405a86c5cSdrh   }
4235cce7d176Sdrh }
4236cce7d176Sdrh 
4237cce7d176Sdrh /*
423860ec914cSpeter.d.reid ** Generate code that evaluates the given expression and puts the result
4239de4fcfddSdrh ** in register target.
424025303780Sdrh **
42412dcef11bSdrh ** Also make a copy of the expression results into another "cache" register
42422dcef11bSdrh ** and modify the expression so that the next time it is evaluated,
42432dcef11bSdrh ** the result is a copy of the cache register.
42442dcef11bSdrh **
42452dcef11bSdrh ** This routine is used for expressions that are used multiple
42462dcef11bSdrh ** times.  They are evaluated once and the results of the expression
42472dcef11bSdrh ** are reused.
424825303780Sdrh */
424905a86c5cSdrh void sqlite3ExprCodeAndCache(Parse *pParse, Expr *pExpr, int target){
425025303780Sdrh   Vdbe *v = pParse->pVdbe;
425125303780Sdrh   int iMem;
425205a86c5cSdrh 
425305a86c5cSdrh   assert( target>0 );
425405a86c5cSdrh   assert( pExpr->op!=TK_REGISTER );
425505a86c5cSdrh   sqlite3ExprCode(pParse, pExpr, target);
42562dcef11bSdrh   iMem = ++pParse->nMem;
425705a86c5cSdrh   sqlite3VdbeAddOp2(v, OP_Copy, target, iMem);
4258a4c3c87eSdrh   exprToRegister(pExpr, iMem);
425925303780Sdrh }
42607e02e5e6Sdrh 
4261678ccce8Sdrh /*
4262268380caSdrh ** Generate code that pushes the value of every element of the given
42639cbf3425Sdrh ** expression list into a sequence of registers beginning at target.
4264268380caSdrh **
42653df6c3b1Sdrh ** Return the number of elements evaluated.  The number returned will
42663df6c3b1Sdrh ** usually be pList->nExpr but might be reduced if SQLITE_ECEL_OMITREF
42673df6c3b1Sdrh ** is defined.
4268d1a01edaSdrh **
4269d1a01edaSdrh ** The SQLITE_ECEL_DUP flag prevents the arguments from being
4270d1a01edaSdrh ** filled using OP_SCopy.  OP_Copy must be used instead.
4271d1a01edaSdrh **
4272d1a01edaSdrh ** The SQLITE_ECEL_FACTOR argument allows constant arguments to be
4273d1a01edaSdrh ** factored out into initialization code.
4274b0df9634Sdrh **
4275b0df9634Sdrh ** The SQLITE_ECEL_REF flag means that expressions in the list with
4276b0df9634Sdrh ** ExprList.a[].u.x.iOrderByCol>0 have already been evaluated and stored
4277b0df9634Sdrh ** in registers at srcReg, and so the value can be copied from there.
42783df6c3b1Sdrh ** If SQLITE_ECEL_OMITREF is also set, then the values with u.x.iOrderByCol>0
42793df6c3b1Sdrh ** are simply omitted rather than being copied from srcReg.
4280268380caSdrh */
42814adee20fSdanielk1977 int sqlite3ExprCodeExprList(
4282268380caSdrh   Parse *pParse,     /* Parsing context */
4283389a1adbSdrh   ExprList *pList,   /* The expression list to be coded */
4284191b54cbSdrh   int target,        /* Where to write results */
42855579d59fSdrh   int srcReg,        /* Source registers if SQLITE_ECEL_REF */
4286d1a01edaSdrh   u8 flags           /* SQLITE_ECEL_* flags */
4287268380caSdrh ){
4288268380caSdrh   struct ExprList_item *pItem;
42895579d59fSdrh   int i, j, n;
4290d1a01edaSdrh   u8 copyOp = (flags & SQLITE_ECEL_DUP) ? OP_Copy : OP_SCopy;
42915579d59fSdrh   Vdbe *v = pParse->pVdbe;
42929d8b3072Sdrh   assert( pList!=0 );
42939cbf3425Sdrh   assert( target>0 );
4294d81a142bSdrh   assert( pParse->pVdbe!=0 );  /* Never gets this far otherwise */
4295268380caSdrh   n = pList->nExpr;
4296d9f158e7Sdrh   if( !ConstFactorOk(pParse) ) flags &= ~SQLITE_ECEL_FACTOR;
4297191b54cbSdrh   for(pItem=pList->a, i=0; i<n; i++, pItem++){
42987445ffe2Sdrh     Expr *pExpr = pItem->pExpr;
429924e25d32Sdan #ifdef SQLITE_ENABLE_SORTER_REFERENCES
430024e25d32Sdan     if( pItem->bSorterRef ){
430124e25d32Sdan       i--;
430224e25d32Sdan       n--;
430324e25d32Sdan     }else
430424e25d32Sdan #endif
4305257c13faSdan     if( (flags & SQLITE_ECEL_REF)!=0 && (j = pItem->u.x.iOrderByCol)>0 ){
4306257c13faSdan       if( flags & SQLITE_ECEL_OMITREF ){
4307257c13faSdan         i--;
4308257c13faSdan         n--;
4309257c13faSdan       }else{
43105579d59fSdrh         sqlite3VdbeAddOp2(v, copyOp, j+srcReg-1, target+i);
4311257c13faSdan       }
4312b8b06690Sdrh     }else if( (flags & SQLITE_ECEL_FACTOR)!=0
4313b8b06690Sdrh            && sqlite3ExprIsConstantNotJoin(pExpr)
4314b8b06690Sdrh     ){
4315ad879ffdSdrh       sqlite3ExprCodeAtInit(pParse, pExpr, target+i);
4316d1a01edaSdrh     }else{
43177445ffe2Sdrh       int inReg = sqlite3ExprCodeTarget(pParse, pExpr, target+i);
4318746fd9ccSdrh       if( inReg!=target+i ){
43194eded604Sdrh         VdbeOp *pOp;
43204eded604Sdrh         if( copyOp==OP_Copy
43214eded604Sdrh          && (pOp=sqlite3VdbeGetOp(v, -1))->opcode==OP_Copy
43224eded604Sdrh          && pOp->p1+pOp->p3+1==inReg
43234eded604Sdrh          && pOp->p2+pOp->p3+1==target+i
43244eded604Sdrh         ){
43254eded604Sdrh           pOp->p3++;
43264eded604Sdrh         }else{
43274eded604Sdrh           sqlite3VdbeAddOp2(v, copyOp, inReg, target+i);
43284eded604Sdrh         }
4329d1a01edaSdrh       }
4330d176611bSdrh     }
4331268380caSdrh   }
4332f9b596ebSdrh   return n;
4333268380caSdrh }
4334268380caSdrh 
4335268380caSdrh /*
433636c563a2Sdrh ** Generate code for a BETWEEN operator.
433736c563a2Sdrh **
433836c563a2Sdrh **    x BETWEEN y AND z
433936c563a2Sdrh **
434036c563a2Sdrh ** The above is equivalent to
434136c563a2Sdrh **
434236c563a2Sdrh **    x>=y AND x<=z
434336c563a2Sdrh **
434436c563a2Sdrh ** Code it as such, taking care to do the common subexpression
434560ec914cSpeter.d.reid ** elimination of x.
434684b19a3dSdrh **
434784b19a3dSdrh ** The xJumpIf parameter determines details:
434884b19a3dSdrh **
434984b19a3dSdrh **    NULL:                   Store the boolean result in reg[dest]
435084b19a3dSdrh **    sqlite3ExprIfTrue:      Jump to dest if true
435184b19a3dSdrh **    sqlite3ExprIfFalse:     Jump to dest if false
435284b19a3dSdrh **
435384b19a3dSdrh ** The jumpIfNull parameter is ignored if xJumpIf is NULL.
435436c563a2Sdrh */
435536c563a2Sdrh static void exprCodeBetween(
435636c563a2Sdrh   Parse *pParse,    /* Parsing and code generating context */
435736c563a2Sdrh   Expr *pExpr,      /* The BETWEEN expression */
435884b19a3dSdrh   int dest,         /* Jump destination or storage location */
435984b19a3dSdrh   void (*xJump)(Parse*,Expr*,int,int), /* Action to take */
436036c563a2Sdrh   int jumpIfNull    /* Take the jump if the BETWEEN is NULL */
436136c563a2Sdrh ){
436236c563a2Sdrh  Expr exprAnd;     /* The AND operator in  x>=y AND x<=z  */
436336c563a2Sdrh   Expr compLeft;    /* The  x>=y  term */
436436c563a2Sdrh   Expr compRight;   /* The  x<=z  term */
4365db45bd5eSdrh   Expr exprX;       /* The  x  subexpression */
4366db45bd5eSdrh   int regFree1 = 0; /* Temporary use register */
436784b19a3dSdrh 
436836c563a2Sdrh 
436971c57db0Sdan   memset(&compLeft, 0, sizeof(Expr));
437071c57db0Sdan   memset(&compRight, 0, sizeof(Expr));
437171c57db0Sdan   memset(&exprAnd, 0, sizeof(Expr));
4372db45bd5eSdrh 
4373db45bd5eSdrh   assert( !ExprHasProperty(pExpr, EP_xIsSelect) );
4374db45bd5eSdrh   exprX = *pExpr->pLeft;
437536c563a2Sdrh   exprAnd.op = TK_AND;
437636c563a2Sdrh   exprAnd.pLeft = &compLeft;
437736c563a2Sdrh   exprAnd.pRight = &compRight;
437836c563a2Sdrh   compLeft.op = TK_GE;
4379db45bd5eSdrh   compLeft.pLeft = &exprX;
438036c563a2Sdrh   compLeft.pRight = pExpr->x.pList->a[0].pExpr;
438136c563a2Sdrh   compRight.op = TK_LE;
4382db45bd5eSdrh   compRight.pLeft = &exprX;
438336c563a2Sdrh   compRight.pRight = pExpr->x.pList->a[1].pExpr;
438412abf408Sdrh   exprToRegister(&exprX, exprCodeVector(pParse, &exprX, &regFree1));
438584b19a3dSdrh   if( xJump ){
438684b19a3dSdrh     xJump(pParse, &exprAnd, dest, jumpIfNull);
438736c563a2Sdrh   }else{
438836fd41e5Sdrh     /* Mark the expression is being from the ON or USING clause of a join
438936fd41e5Sdrh     ** so that the sqlite3ExprCodeTarget() routine will not attempt to move
439036fd41e5Sdrh     ** it into the Parse.pConstExpr list.  We should use a new bit for this,
439136fd41e5Sdrh     ** for clarity, but we are out of bits in the Expr.flags field so we
439236fd41e5Sdrh     ** have to reuse the EP_FromJoin bit.  Bummer. */
4393db45bd5eSdrh     exprX.flags |= EP_FromJoin;
439471c57db0Sdan     sqlite3ExprCodeTarget(pParse, &exprAnd, dest);
439536c563a2Sdrh   }
4396db45bd5eSdrh   sqlite3ReleaseTempReg(pParse, regFree1);
439736c563a2Sdrh 
439836c563a2Sdrh   /* Ensure adequate test coverage */
4399db45bd5eSdrh   testcase( xJump==sqlite3ExprIfTrue  && jumpIfNull==0 && regFree1==0 );
4400db45bd5eSdrh   testcase( xJump==sqlite3ExprIfTrue  && jumpIfNull==0 && regFree1!=0 );
4401db45bd5eSdrh   testcase( xJump==sqlite3ExprIfTrue  && jumpIfNull!=0 && regFree1==0 );
4402db45bd5eSdrh   testcase( xJump==sqlite3ExprIfTrue  && jumpIfNull!=0 && regFree1!=0 );
4403db45bd5eSdrh   testcase( xJump==sqlite3ExprIfFalse && jumpIfNull==0 && regFree1==0 );
4404db45bd5eSdrh   testcase( xJump==sqlite3ExprIfFalse && jumpIfNull==0 && regFree1!=0 );
4405db45bd5eSdrh   testcase( xJump==sqlite3ExprIfFalse && jumpIfNull!=0 && regFree1==0 );
4406db45bd5eSdrh   testcase( xJump==sqlite3ExprIfFalse && jumpIfNull!=0 && regFree1!=0 );
440784b19a3dSdrh   testcase( xJump==0 );
440836c563a2Sdrh }
440936c563a2Sdrh 
441036c563a2Sdrh /*
4411cce7d176Sdrh ** Generate code for a boolean expression such that a jump is made
4412cce7d176Sdrh ** to the label "dest" if the expression is true but execution
4413cce7d176Sdrh ** continues straight thru if the expression is false.
4414f5905aa7Sdrh **
4415f5905aa7Sdrh ** If the expression evaluates to NULL (neither true nor false), then
441635573356Sdrh ** take the jump if the jumpIfNull flag is SQLITE_JUMPIFNULL.
4417f2bc013cSdrh **
4418f2bc013cSdrh ** This code depends on the fact that certain token values (ex: TK_EQ)
4419f2bc013cSdrh ** are the same as opcode values (ex: OP_Eq) that implement the corresponding
4420f2bc013cSdrh ** operation.  Special comments in vdbe.c and the mkopcodeh.awk script in
4421f2bc013cSdrh ** the make process cause these values to align.  Assert()s in the code
4422f2bc013cSdrh ** below verify that the numbers are aligned correctly.
4423cce7d176Sdrh */
44244adee20fSdanielk1977 void sqlite3ExprIfTrue(Parse *pParse, Expr *pExpr, int dest, int jumpIfNull){
4425cce7d176Sdrh   Vdbe *v = pParse->pVdbe;
4426cce7d176Sdrh   int op = 0;
44272dcef11bSdrh   int regFree1 = 0;
44282dcef11bSdrh   int regFree2 = 0;
44292dcef11bSdrh   int r1, r2;
44302dcef11bSdrh 
443135573356Sdrh   assert( jumpIfNull==SQLITE_JUMPIFNULL || jumpIfNull==0 );
443248864df9Smistachkin   if( NEVER(v==0) )     return;  /* Existence of VDBE checked by caller */
443333cd4909Sdrh   if( NEVER(pExpr==0) ) return;  /* No way this can happen */
4434f2bc013cSdrh   op = pExpr->op;
44357b35a77bSdan   switch( op ){
4436cce7d176Sdrh     case TK_AND: {
44374adee20fSdanielk1977       int d2 = sqlite3VdbeMakeLabel(v);
4438c5499befSdrh       testcase( jumpIfNull==0 );
443935573356Sdrh       sqlite3ExprIfFalse(pParse, pExpr->pLeft, d2,jumpIfNull^SQLITE_JUMPIFNULL);
44404adee20fSdanielk1977       sqlite3ExprIfTrue(pParse, pExpr->pRight, dest, jumpIfNull);
44414adee20fSdanielk1977       sqlite3VdbeResolveLabel(v, d2);
4442cce7d176Sdrh       break;
4443cce7d176Sdrh     }
4444cce7d176Sdrh     case TK_OR: {
4445c5499befSdrh       testcase( jumpIfNull==0 );
44464adee20fSdanielk1977       sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest, jumpIfNull);
44474adee20fSdanielk1977       sqlite3ExprIfTrue(pParse, pExpr->pRight, dest, jumpIfNull);
4448cce7d176Sdrh       break;
4449cce7d176Sdrh     }
4450cce7d176Sdrh     case TK_NOT: {
4451c5499befSdrh       testcase( jumpIfNull==0 );
44524adee20fSdanielk1977       sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest, jumpIfNull);
4453cce7d176Sdrh       break;
4454cce7d176Sdrh     }
44558abed7b9Sdrh     case TK_TRUTH: {
445696acafbeSdrh       int isNot;      /* IS NOT TRUE or IS NOT FALSE */
445796acafbeSdrh       int isTrue;     /* IS TRUE or IS NOT TRUE */
4458007c843bSdrh       testcase( jumpIfNull==0 );
44598abed7b9Sdrh       isNot = pExpr->op2==TK_ISNOT;
446096acafbeSdrh       isTrue = sqlite3ExprTruthValue(pExpr->pRight);
446143c4ac8bSdrh       testcase( isTrue && isNot );
446296acafbeSdrh       testcase( !isTrue && isNot );
446343c4ac8bSdrh       if( isTrue ^ isNot ){
44648abed7b9Sdrh         sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest,
44658abed7b9Sdrh                           isNot ? SQLITE_JUMPIFNULL : 0);
44668abed7b9Sdrh       }else{
44678abed7b9Sdrh         sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest,
44688abed7b9Sdrh                            isNot ? SQLITE_JUMPIFNULL : 0);
44698abed7b9Sdrh       }
4470007c843bSdrh       break;
4471007c843bSdrh     }
4472de845c2fSdrh     case TK_IS:
4473de845c2fSdrh     case TK_ISNOT:
4474de845c2fSdrh       testcase( op==TK_IS );
4475de845c2fSdrh       testcase( op==TK_ISNOT );
4476de845c2fSdrh       op = (op==TK_IS) ? TK_EQ : TK_NE;
4477de845c2fSdrh       jumpIfNull = SQLITE_NULLEQ;
4478de845c2fSdrh       /* Fall thru */
4479cce7d176Sdrh     case TK_LT:
4480cce7d176Sdrh     case TK_LE:
4481cce7d176Sdrh     case TK_GT:
4482cce7d176Sdrh     case TK_GE:
4483cce7d176Sdrh     case TK_NE:
44840ac65892Sdrh     case TK_EQ: {
4485625015e0Sdan       if( sqlite3ExprIsVector(pExpr->pLeft) ) goto default_expr;
4486c5499befSdrh       testcase( jumpIfNull==0 );
4487b6da74ebSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
4488b6da74ebSdrh       r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, &regFree2);
448935573356Sdrh       codeCompare(pParse, pExpr->pLeft, pExpr->pRight, op,
44902dcef11bSdrh                   r1, r2, dest, jumpIfNull);
44917d176105Sdrh       assert(TK_LT==OP_Lt); testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt);
44927d176105Sdrh       assert(TK_LE==OP_Le); testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le);
44937d176105Sdrh       assert(TK_GT==OP_Gt); testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt);
44947d176105Sdrh       assert(TK_GE==OP_Ge); testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge);
4495de845c2fSdrh       assert(TK_EQ==OP_Eq); testcase(op==OP_Eq);
4496de845c2fSdrh       VdbeCoverageIf(v, op==OP_Eq && jumpIfNull==SQLITE_NULLEQ);
4497de845c2fSdrh       VdbeCoverageIf(v, op==OP_Eq && jumpIfNull!=SQLITE_NULLEQ);
4498de845c2fSdrh       assert(TK_NE==OP_Ne); testcase(op==OP_Ne);
4499de845c2fSdrh       VdbeCoverageIf(v, op==OP_Ne && jumpIfNull==SQLITE_NULLEQ);
4500de845c2fSdrh       VdbeCoverageIf(v, op==OP_Ne && jumpIfNull!=SQLITE_NULLEQ);
45016a2fe093Sdrh       testcase( regFree1==0 );
45026a2fe093Sdrh       testcase( regFree2==0 );
45036a2fe093Sdrh       break;
45046a2fe093Sdrh     }
4505cce7d176Sdrh     case TK_ISNULL:
4506cce7d176Sdrh     case TK_NOTNULL: {
45077d176105Sdrh       assert( TK_ISNULL==OP_IsNull );   testcase( op==TK_ISNULL );
45087d176105Sdrh       assert( TK_NOTNULL==OP_NotNull ); testcase( op==TK_NOTNULL );
45092dcef11bSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
45102dcef11bSdrh       sqlite3VdbeAddOp2(v, op, r1, dest);
45117d176105Sdrh       VdbeCoverageIf(v, op==TK_ISNULL);
45127d176105Sdrh       VdbeCoverageIf(v, op==TK_NOTNULL);
4513c5499befSdrh       testcase( regFree1==0 );
4514cce7d176Sdrh       break;
4515cce7d176Sdrh     }
4516fef5208cSdrh     case TK_BETWEEN: {
45175c03f30aSdrh       testcase( jumpIfNull==0 );
451871c57db0Sdan       exprCodeBetween(pParse, pExpr, dest, sqlite3ExprIfTrue, jumpIfNull);
4519fef5208cSdrh       break;
4520fef5208cSdrh     }
4521bb201344Sshaneh #ifndef SQLITE_OMIT_SUBQUERY
4522e3365e6cSdrh     case TK_IN: {
4523e3365e6cSdrh       int destIfFalse = sqlite3VdbeMakeLabel(v);
4524e3365e6cSdrh       int destIfNull = jumpIfNull ? dest : destIfFalse;
4525e3365e6cSdrh       sqlite3ExprCodeIN(pParse, pExpr, destIfFalse, destIfNull);
4526076e85f5Sdrh       sqlite3VdbeGoto(v, dest);
4527e3365e6cSdrh       sqlite3VdbeResolveLabel(v, destIfFalse);
4528e3365e6cSdrh       break;
4529e3365e6cSdrh     }
4530bb201344Sshaneh #endif
4531cce7d176Sdrh     default: {
45327b35a77bSdan     default_expr:
4533991a1985Sdrh       if( exprAlwaysTrue(pExpr) ){
4534076e85f5Sdrh         sqlite3VdbeGoto(v, dest);
4535991a1985Sdrh       }else if( exprAlwaysFalse(pExpr) ){
4536991a1985Sdrh         /* No-op */
4537991a1985Sdrh       }else{
45382dcef11bSdrh         r1 = sqlite3ExprCodeTemp(pParse, pExpr, &regFree1);
45392dcef11bSdrh         sqlite3VdbeAddOp3(v, OP_If, r1, dest, jumpIfNull!=0);
4540688852abSdrh         VdbeCoverage(v);
4541c5499befSdrh         testcase( regFree1==0 );
4542c5499befSdrh         testcase( jumpIfNull==0 );
4543991a1985Sdrh       }
4544cce7d176Sdrh       break;
4545cce7d176Sdrh     }
4546cce7d176Sdrh   }
45472dcef11bSdrh   sqlite3ReleaseTempReg(pParse, regFree1);
45482dcef11bSdrh   sqlite3ReleaseTempReg(pParse, regFree2);
4549cce7d176Sdrh }
4550cce7d176Sdrh 
4551cce7d176Sdrh /*
455266b89c8fSdrh ** Generate code for a boolean expression such that a jump is made
4553cce7d176Sdrh ** to the label "dest" if the expression is false but execution
4554cce7d176Sdrh ** continues straight thru if the expression is true.
4555f5905aa7Sdrh **
4556f5905aa7Sdrh ** If the expression evaluates to NULL (neither true nor false) then
455735573356Sdrh ** jump if jumpIfNull is SQLITE_JUMPIFNULL or fall through if jumpIfNull
455835573356Sdrh ** is 0.
4559cce7d176Sdrh */
45604adee20fSdanielk1977 void sqlite3ExprIfFalse(Parse *pParse, Expr *pExpr, int dest, int jumpIfNull){
4561cce7d176Sdrh   Vdbe *v = pParse->pVdbe;
4562cce7d176Sdrh   int op = 0;
45632dcef11bSdrh   int regFree1 = 0;
45642dcef11bSdrh   int regFree2 = 0;
45652dcef11bSdrh   int r1, r2;
45662dcef11bSdrh 
456735573356Sdrh   assert( jumpIfNull==SQLITE_JUMPIFNULL || jumpIfNull==0 );
456848864df9Smistachkin   if( NEVER(v==0) ) return; /* Existence of VDBE checked by caller */
456933cd4909Sdrh   if( pExpr==0 )    return;
4570f2bc013cSdrh 
4571f2bc013cSdrh   /* The value of pExpr->op and op are related as follows:
4572f2bc013cSdrh   **
4573f2bc013cSdrh   **       pExpr->op            op
4574f2bc013cSdrh   **       ---------          ----------
4575f2bc013cSdrh   **       TK_ISNULL          OP_NotNull
4576f2bc013cSdrh   **       TK_NOTNULL         OP_IsNull
4577f2bc013cSdrh   **       TK_NE              OP_Eq
4578f2bc013cSdrh   **       TK_EQ              OP_Ne
4579f2bc013cSdrh   **       TK_GT              OP_Le
4580f2bc013cSdrh   **       TK_LE              OP_Gt
4581f2bc013cSdrh   **       TK_GE              OP_Lt
4582f2bc013cSdrh   **       TK_LT              OP_Ge
4583f2bc013cSdrh   **
4584f2bc013cSdrh   ** For other values of pExpr->op, op is undefined and unused.
4585f2bc013cSdrh   ** The value of TK_ and OP_ constants are arranged such that we
4586f2bc013cSdrh   ** can compute the mapping above using the following expression.
4587f2bc013cSdrh   ** Assert()s verify that the computation is correct.
4588f2bc013cSdrh   */
4589f2bc013cSdrh   op = ((pExpr->op+(TK_ISNULL&1))^1)-(TK_ISNULL&1);
4590f2bc013cSdrh 
4591f2bc013cSdrh   /* Verify correct alignment of TK_ and OP_ constants
4592f2bc013cSdrh   */
4593f2bc013cSdrh   assert( pExpr->op!=TK_ISNULL || op==OP_NotNull );
4594f2bc013cSdrh   assert( pExpr->op!=TK_NOTNULL || op==OP_IsNull );
4595f2bc013cSdrh   assert( pExpr->op!=TK_NE || op==OP_Eq );
4596f2bc013cSdrh   assert( pExpr->op!=TK_EQ || op==OP_Ne );
4597f2bc013cSdrh   assert( pExpr->op!=TK_LT || op==OP_Ge );
4598f2bc013cSdrh   assert( pExpr->op!=TK_LE || op==OP_Gt );
4599f2bc013cSdrh   assert( pExpr->op!=TK_GT || op==OP_Le );
4600f2bc013cSdrh   assert( pExpr->op!=TK_GE || op==OP_Lt );
4601f2bc013cSdrh 
4602ba00e30aSdan   switch( pExpr->op ){
4603cce7d176Sdrh     case TK_AND: {
4604c5499befSdrh       testcase( jumpIfNull==0 );
46054adee20fSdanielk1977       sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest, jumpIfNull);
46064adee20fSdanielk1977       sqlite3ExprIfFalse(pParse, pExpr->pRight, dest, jumpIfNull);
4607cce7d176Sdrh       break;
4608cce7d176Sdrh     }
4609cce7d176Sdrh     case TK_OR: {
46104adee20fSdanielk1977       int d2 = sqlite3VdbeMakeLabel(v);
4611c5499befSdrh       testcase( jumpIfNull==0 );
461235573356Sdrh       sqlite3ExprIfTrue(pParse, pExpr->pLeft, d2, jumpIfNull^SQLITE_JUMPIFNULL);
46134adee20fSdanielk1977       sqlite3ExprIfFalse(pParse, pExpr->pRight, dest, jumpIfNull);
46144adee20fSdanielk1977       sqlite3VdbeResolveLabel(v, d2);
4615cce7d176Sdrh       break;
4616cce7d176Sdrh     }
4617cce7d176Sdrh     case TK_NOT: {
46185c03f30aSdrh       testcase( jumpIfNull==0 );
46194adee20fSdanielk1977       sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest, jumpIfNull);
4620cce7d176Sdrh       break;
4621cce7d176Sdrh     }
46228abed7b9Sdrh     case TK_TRUTH: {
462396acafbeSdrh       int isNot;   /* IS NOT TRUE or IS NOT FALSE */
462496acafbeSdrh       int isTrue;  /* IS TRUE or IS NOT TRUE */
46258abed7b9Sdrh       testcase( jumpIfNull==0 );
46268abed7b9Sdrh       isNot = pExpr->op2==TK_ISNOT;
462796acafbeSdrh       isTrue = sqlite3ExprTruthValue(pExpr->pRight);
462843c4ac8bSdrh       testcase( isTrue && isNot );
462996acafbeSdrh       testcase( !isTrue && isNot );
463043c4ac8bSdrh       if( isTrue ^ isNot ){
46318abed7b9Sdrh         /* IS TRUE and IS NOT FALSE */
46328abed7b9Sdrh         sqlite3ExprIfFalse(pParse, pExpr->pLeft, dest,
46338abed7b9Sdrh                            isNot ? 0 : SQLITE_JUMPIFNULL);
46348abed7b9Sdrh 
46358abed7b9Sdrh       }else{
46368abed7b9Sdrh         /* IS FALSE and IS NOT TRUE */
46378abed7b9Sdrh         sqlite3ExprIfTrue(pParse, pExpr->pLeft, dest,
46388abed7b9Sdrh                           isNot ? 0 : SQLITE_JUMPIFNULL);
46398abed7b9Sdrh       }
4640007c843bSdrh       break;
4641007c843bSdrh     }
4642de845c2fSdrh     case TK_IS:
4643de845c2fSdrh     case TK_ISNOT:
4644de845c2fSdrh       testcase( pExpr->op==TK_IS );
4645de845c2fSdrh       testcase( pExpr->op==TK_ISNOT );
4646de845c2fSdrh       op = (pExpr->op==TK_IS) ? TK_NE : TK_EQ;
4647de845c2fSdrh       jumpIfNull = SQLITE_NULLEQ;
4648de845c2fSdrh       /* Fall thru */
4649cce7d176Sdrh     case TK_LT:
4650cce7d176Sdrh     case TK_LE:
4651cce7d176Sdrh     case TK_GT:
4652cce7d176Sdrh     case TK_GE:
4653cce7d176Sdrh     case TK_NE:
4654cce7d176Sdrh     case TK_EQ: {
4655625015e0Sdan       if( sqlite3ExprIsVector(pExpr->pLeft) ) goto default_expr;
4656c5499befSdrh       testcase( jumpIfNull==0 );
4657b6da74ebSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
4658b6da74ebSdrh       r2 = sqlite3ExprCodeTemp(pParse, pExpr->pRight, &regFree2);
465935573356Sdrh       codeCompare(pParse, pExpr->pLeft, pExpr->pRight, op,
46602dcef11bSdrh                   r1, r2, dest, jumpIfNull);
46617d176105Sdrh       assert(TK_LT==OP_Lt); testcase(op==OP_Lt); VdbeCoverageIf(v,op==OP_Lt);
46627d176105Sdrh       assert(TK_LE==OP_Le); testcase(op==OP_Le); VdbeCoverageIf(v,op==OP_Le);
46637d176105Sdrh       assert(TK_GT==OP_Gt); testcase(op==OP_Gt); VdbeCoverageIf(v,op==OP_Gt);
46647d176105Sdrh       assert(TK_GE==OP_Ge); testcase(op==OP_Ge); VdbeCoverageIf(v,op==OP_Ge);
4665de845c2fSdrh       assert(TK_EQ==OP_Eq); testcase(op==OP_Eq);
4666de845c2fSdrh       VdbeCoverageIf(v, op==OP_Eq && jumpIfNull!=SQLITE_NULLEQ);
4667de845c2fSdrh       VdbeCoverageIf(v, op==OP_Eq && jumpIfNull==SQLITE_NULLEQ);
4668de845c2fSdrh       assert(TK_NE==OP_Ne); testcase(op==OP_Ne);
4669de845c2fSdrh       VdbeCoverageIf(v, op==OP_Ne && jumpIfNull!=SQLITE_NULLEQ);
4670de845c2fSdrh       VdbeCoverageIf(v, op==OP_Ne && jumpIfNull==SQLITE_NULLEQ);
46716a2fe093Sdrh       testcase( regFree1==0 );
46726a2fe093Sdrh       testcase( regFree2==0 );
46736a2fe093Sdrh       break;
46746a2fe093Sdrh     }
4675cce7d176Sdrh     case TK_ISNULL:
4676cce7d176Sdrh     case TK_NOTNULL: {
46772dcef11bSdrh       r1 = sqlite3ExprCodeTemp(pParse, pExpr->pLeft, &regFree1);
46782dcef11bSdrh       sqlite3VdbeAddOp2(v, op, r1, dest);
46797d176105Sdrh       testcase( op==TK_ISNULL );   VdbeCoverageIf(v, op==TK_ISNULL);
46807d176105Sdrh       testcase( op==TK_NOTNULL );  VdbeCoverageIf(v, op==TK_NOTNULL);
4681c5499befSdrh       testcase( regFree1==0 );
4682cce7d176Sdrh       break;
4683cce7d176Sdrh     }
4684fef5208cSdrh     case TK_BETWEEN: {
46855c03f30aSdrh       testcase( jumpIfNull==0 );
468671c57db0Sdan       exprCodeBetween(pParse, pExpr, dest, sqlite3ExprIfFalse, jumpIfNull);
4687fef5208cSdrh       break;
4688fef5208cSdrh     }
4689bb201344Sshaneh #ifndef SQLITE_OMIT_SUBQUERY
4690e3365e6cSdrh     case TK_IN: {
4691e3365e6cSdrh       if( jumpIfNull ){
4692e3365e6cSdrh         sqlite3ExprCodeIN(pParse, pExpr, dest, dest);
4693e3365e6cSdrh       }else{
4694e3365e6cSdrh         int destIfNull = sqlite3VdbeMakeLabel(v);
4695e3365e6cSdrh         sqlite3ExprCodeIN(pParse, pExpr, dest, destIfNull);
4696e3365e6cSdrh         sqlite3VdbeResolveLabel(v, destIfNull);
4697e3365e6cSdrh       }
4698e3365e6cSdrh       break;
4699e3365e6cSdrh     }
4700bb201344Sshaneh #endif
4701cce7d176Sdrh     default: {
4702ba00e30aSdan     default_expr:
4703991a1985Sdrh       if( exprAlwaysFalse(pExpr) ){
4704076e85f5Sdrh         sqlite3VdbeGoto(v, dest);
4705991a1985Sdrh       }else if( exprAlwaysTrue(pExpr) ){
4706991a1985Sdrh         /* no-op */
4707991a1985Sdrh       }else{
47082dcef11bSdrh         r1 = sqlite3ExprCodeTemp(pParse, pExpr, &regFree1);
47092dcef11bSdrh         sqlite3VdbeAddOp3(v, OP_IfNot, r1, dest, jumpIfNull!=0);
4710688852abSdrh         VdbeCoverage(v);
4711c5499befSdrh         testcase( regFree1==0 );
4712c5499befSdrh         testcase( jumpIfNull==0 );
4713991a1985Sdrh       }
4714cce7d176Sdrh       break;
4715cce7d176Sdrh     }
4716cce7d176Sdrh   }
47172dcef11bSdrh   sqlite3ReleaseTempReg(pParse, regFree1);
47182dcef11bSdrh   sqlite3ReleaseTempReg(pParse, regFree2);
4719cce7d176Sdrh }
47202282792aSdrh 
47212282792aSdrh /*
472272bc8208Sdrh ** Like sqlite3ExprIfFalse() except that a copy is made of pExpr before
472372bc8208Sdrh ** code generation, and that copy is deleted after code generation. This
472472bc8208Sdrh ** ensures that the original pExpr is unchanged.
472572bc8208Sdrh */
472672bc8208Sdrh void sqlite3ExprIfFalseDup(Parse *pParse, Expr *pExpr, int dest,int jumpIfNull){
472772bc8208Sdrh   sqlite3 *db = pParse->db;
472872bc8208Sdrh   Expr *pCopy = sqlite3ExprDup(db, pExpr, 0);
472972bc8208Sdrh   if( db->mallocFailed==0 ){
473072bc8208Sdrh     sqlite3ExprIfFalse(pParse, pCopy, dest, jumpIfNull);
473172bc8208Sdrh   }
473272bc8208Sdrh   sqlite3ExprDelete(db, pCopy);
473372bc8208Sdrh }
473472bc8208Sdrh 
47355aa550cfSdan /*
47365aa550cfSdan ** Expression pVar is guaranteed to be an SQL variable. pExpr may be any
47375aa550cfSdan ** type of expression.
47385aa550cfSdan **
47395aa550cfSdan ** If pExpr is a simple SQL value - an integer, real, string, blob
47405aa550cfSdan ** or NULL value - then the VDBE currently being prepared is configured
47415aa550cfSdan ** to re-prepare each time a new value is bound to variable pVar.
47425aa550cfSdan **
47435aa550cfSdan ** Additionally, if pExpr is a simple SQL value and the value is the
47445aa550cfSdan ** same as that currently bound to variable pVar, non-zero is returned.
47455aa550cfSdan ** Otherwise, if the values are not the same or if pExpr is not a simple
47465aa550cfSdan ** SQL value, zero is returned.
47475aa550cfSdan */
47485aa550cfSdan static int exprCompareVariable(Parse *pParse, Expr *pVar, Expr *pExpr){
47495aa550cfSdan   int res = 0;
4750c0804226Sdrh   int iVar;
4751c0804226Sdrh   sqlite3_value *pL, *pR = 0;
47525aa550cfSdan 
47535aa550cfSdan   sqlite3ValueFromExpr(pParse->db, pExpr, SQLITE_UTF8, SQLITE_AFF_BLOB, &pR);
4754c0804226Sdrh   if( pR ){
4755c0804226Sdrh     iVar = pVar->iColumn;
4756c0804226Sdrh     sqlite3VdbeSetVarmask(pParse->pVdbe, iVar);
4757c0804226Sdrh     pL = sqlite3VdbeGetBoundValue(pParse->pReprepare, iVar, SQLITE_AFF_BLOB);
47585aa307e2Sdrh     if( pL ){
47595aa307e2Sdrh       if( sqlite3_value_type(pL)==SQLITE_TEXT ){
47605aa307e2Sdrh         sqlite3_value_text(pL); /* Make sure the encoding is UTF-8 */
47615aa307e2Sdrh       }
47625aa307e2Sdrh       res =  0==sqlite3MemCompare(pL, pR, 0);
47635aa550cfSdan     }
47645aa550cfSdan     sqlite3ValueFree(pR);
47655aa550cfSdan     sqlite3ValueFree(pL);
47665aa550cfSdan   }
47675aa550cfSdan 
47685aa550cfSdan   return res;
47695aa550cfSdan }
477072bc8208Sdrh 
477172bc8208Sdrh /*
47721d9da70aSdrh ** Do a deep comparison of two expression trees.  Return 0 if the two
47731d9da70aSdrh ** expressions are completely identical.  Return 1 if they differ only
47741d9da70aSdrh ** by a COLLATE operator at the top level.  Return 2 if there are differences
47751d9da70aSdrh ** other than the top-level COLLATE operator.
4776d40aab0eSdrh **
4777619a1305Sdrh ** If any subelement of pB has Expr.iTable==(-1) then it is allowed
4778619a1305Sdrh ** to compare equal to an equivalent element in pA with Expr.iTable==iTab.
4779619a1305Sdrh **
478066518ca7Sdrh ** The pA side might be using TK_REGISTER.  If that is the case and pB is
478166518ca7Sdrh ** not using TK_REGISTER but is otherwise equivalent, then still return 0.
478266518ca7Sdrh **
47831d9da70aSdrh ** Sometimes this routine will return 2 even if the two expressions
4784d40aab0eSdrh ** really are equivalent.  If we cannot prove that the expressions are
47851d9da70aSdrh ** identical, we return 2 just to be safe.  So if this routine
47861d9da70aSdrh ** returns 2, then you do not really know for certain if the two
47871d9da70aSdrh ** expressions are the same.  But if you get a 0 or 1 return, then you
4788d40aab0eSdrh ** can be sure the expressions are the same.  In the places where
47891d9da70aSdrh ** this routine is used, it does not hurt to get an extra 2 - that
4790d40aab0eSdrh ** just might result in some slightly slower code.  But returning
47911d9da70aSdrh ** an incorrect 0 or 1 could lead to a malfunction.
47925aa550cfSdan **
4793c0804226Sdrh ** If pParse is not NULL then TK_VARIABLE terms in pA with bindings in
4794c0804226Sdrh ** pParse->pReprepare can be matched against literals in pB.  The
4795c0804226Sdrh ** pParse->pVdbe->expmask bitmask is updated for each variable referenced.
4796c0804226Sdrh ** If pParse is NULL (the normal case) then any TK_VARIABLE term in
4797c0804226Sdrh ** Argument pParse should normally be NULL. If it is not NULL and pA or
4798c0804226Sdrh ** pB causes a return value of 2.
47992282792aSdrh */
48005aa550cfSdan int sqlite3ExprCompare(Parse *pParse, Expr *pA, Expr *pB, int iTab){
480110d1edf0Sdrh   u32 combinedFlags;
48024b202ae2Sdanielk1977   if( pA==0 || pB==0 ){
48031d9da70aSdrh     return pB==pA ? 0 : 2;
48042282792aSdrh   }
48055aa550cfSdan   if( pParse && pA->op==TK_VARIABLE && exprCompareVariable(pParse, pA, pB) ){
48065aa550cfSdan     return 0;
48075aa550cfSdan   }
480810d1edf0Sdrh   combinedFlags = pA->flags | pB->flags;
480910d1edf0Sdrh   if( combinedFlags & EP_IntValue ){
481010d1edf0Sdrh     if( (pA->flags&pB->flags&EP_IntValue)!=0 && pA->u.iValue==pB->u.iValue ){
481110d1edf0Sdrh       return 0;
481210d1edf0Sdrh     }
48131d9da70aSdrh     return 2;
48146ab3a2ecSdanielk1977   }
481516dd3985Sdan   if( pA->op!=pB->op || pA->op==TK_RAISE ){
48165aa550cfSdan     if( pA->op==TK_COLLATE && sqlite3ExprCompare(pParse, pA->pLeft,pB,iTab)<2 ){
4817ae80ddeaSdrh       return 1;
4818ae80ddeaSdrh     }
48195aa550cfSdan     if( pB->op==TK_COLLATE && sqlite3ExprCompare(pParse, pA,pB->pLeft,iTab)<2 ){
4820ae80ddeaSdrh       return 1;
4821ae80ddeaSdrh     }
4822ae80ddeaSdrh     return 2;
4823ae80ddeaSdrh   }
48242edc5fd7Sdrh   if( pA->op!=TK_COLUMN && pA->op!=TK_AGG_COLUMN && pA->u.zToken ){
4825390b88a4Sdrh     if( pA->op==TK_FUNCTION ){
4826390b88a4Sdrh       if( sqlite3StrICmp(pA->u.zToken,pB->u.zToken)!=0 ) return 2;
4827eda079cdSdrh #ifndef SQLITE_OMIT_WINDOWFUNC
4828eda079cdSdrh       /* Justification for the assert():
4829eda079cdSdrh       ** window functions have p->op==TK_FUNCTION but aggregate functions
4830eda079cdSdrh       ** have p->op==TK_AGG_FUNCTION.  So any comparison between an aggregate
4831eda079cdSdrh       ** function and a window function should have failed before reaching
4832eda079cdSdrh       ** this point.  And, it is not possible to have a window function and
4833eda079cdSdrh       ** a scalar function with the same name and number of arguments.  So
4834eda079cdSdrh       ** if we reach this point, either A and B both window functions or
4835eda079cdSdrh       ** neither are a window functions. */
4836eda079cdSdrh       assert( ExprHasProperty(pA,EP_WinFunc)==ExprHasProperty(pB,EP_WinFunc) );
4837eda079cdSdrh       if( ExprHasProperty(pA,EP_WinFunc) ){
4838eda079cdSdrh         if( sqlite3WindowCompare(pParse,pA->y.pWin,pB->y.pWin)!=0 ) return 2;
4839eda079cdSdrh       }
4840eda079cdSdrh #endif
4841d5af5420Sdrh     }else if( pA->op==TK_COLLATE ){
4842e79f6299Sdrh       if( sqlite3_stricmp(pA->u.zToken,pB->u.zToken)!=0 ) return 2;
4843efad2e23Sdrh     }else if( strcmp(pA->u.zToken,pB->u.zToken)!=0 ){
4844d5af5420Sdrh       return 2;
484510d1edf0Sdrh     }
484610d1edf0Sdrh   }
484710d1edf0Sdrh   if( (pA->flags & EP_Distinct)!=(pB->flags & EP_Distinct) ) return 2;
484889b6de03Sdrh   if( (combinedFlags & EP_TokenOnly)==0 ){
484910d1edf0Sdrh     if( combinedFlags & EP_xIsSelect ) return 2;
4850efad2e23Sdrh     if( (combinedFlags & EP_FixedCol)==0
4851efad2e23Sdrh      && sqlite3ExprCompare(pParse, pA->pLeft, pB->pLeft, iTab) ) return 2;
48525aa550cfSdan     if( sqlite3ExprCompare(pParse, pA->pRight, pB->pRight, iTab) ) return 2;
4853619a1305Sdrh     if( sqlite3ExprListCompare(pA->x.pList, pB->x.pList, iTab) ) return 2;
485403c5c213Sdrh     if( pA->op!=TK_STRING
485503c5c213Sdrh      && pA->op!=TK_TRUEFALSE
485603c5c213Sdrh      && (combinedFlags & EP_Reduced)==0
485703c5c213Sdrh     ){
4858619a1305Sdrh       if( pA->iColumn!=pB->iColumn ) return 2;
485966518ca7Sdrh       if( pA->iTable!=pB->iTable
486085f8aa79Sdrh        && (pA->iTable!=iTab || NEVER(pB->iTable>=0)) ) return 2;
48611d9da70aSdrh     }
48621d9da70aSdrh   }
48632646da7eSdrh   return 0;
48642646da7eSdrh }
48652282792aSdrh 
48668c6f666bSdrh /*
48678c6f666bSdrh ** Compare two ExprList objects.  Return 0 if they are identical and
48688c6f666bSdrh ** non-zero if they differ in any way.
48698c6f666bSdrh **
4870619a1305Sdrh ** If any subelement of pB has Expr.iTable==(-1) then it is allowed
4871619a1305Sdrh ** to compare equal to an equivalent element in pA with Expr.iTable==iTab.
4872619a1305Sdrh **
48738c6f666bSdrh ** This routine might return non-zero for equivalent ExprLists.  The
48748c6f666bSdrh ** only consequence will be disabled optimizations.  But this routine
48758c6f666bSdrh ** must never return 0 if the two ExprList objects are different, or
48768c6f666bSdrh ** a malfunction will result.
48778c6f666bSdrh **
48788c6f666bSdrh ** Two NULL pointers are considered to be the same.  But a NULL pointer
48798c6f666bSdrh ** always differs from a non-NULL pointer.
48808c6f666bSdrh */
4881619a1305Sdrh int sqlite3ExprListCompare(ExprList *pA, ExprList *pB, int iTab){
48828c6f666bSdrh   int i;
48838c6f666bSdrh   if( pA==0 && pB==0 ) return 0;
48848c6f666bSdrh   if( pA==0 || pB==0 ) return 1;
48858c6f666bSdrh   if( pA->nExpr!=pB->nExpr ) return 1;
48868c6f666bSdrh   for(i=0; i<pA->nExpr; i++){
48878c6f666bSdrh     Expr *pExprA = pA->a[i].pExpr;
48888c6f666bSdrh     Expr *pExprB = pB->a[i].pExpr;
48898c6f666bSdrh     if( pA->a[i].sortOrder!=pB->a[i].sortOrder ) return 1;
48905aa550cfSdan     if( sqlite3ExprCompare(0, pExprA, pExprB, iTab) ) return 1;
48918c6f666bSdrh   }
48928c6f666bSdrh   return 0;
48938c6f666bSdrh }
489413449892Sdrh 
48952282792aSdrh /*
4896f9463dfbSdrh ** Like sqlite3ExprCompare() except COLLATE operators at the top-level
4897f9463dfbSdrh ** are ignored.
4898f9463dfbSdrh */
4899f9463dfbSdrh int sqlite3ExprCompareSkip(Expr *pA, Expr *pB, int iTab){
49005aa550cfSdan   return sqlite3ExprCompare(0,
4901f9463dfbSdrh              sqlite3ExprSkipCollate(pA),
4902f9463dfbSdrh              sqlite3ExprSkipCollate(pB),
4903f9463dfbSdrh              iTab);
4904f9463dfbSdrh }
4905f9463dfbSdrh 
4906f9463dfbSdrh /*
49074bd5f73fSdrh ** Return true if we can prove the pE2 will always be true if pE1 is
49084bd5f73fSdrh ** true.  Return false if we cannot complete the proof or if pE2 might
49094bd5f73fSdrh ** be false.  Examples:
49104bd5f73fSdrh **
4911619a1305Sdrh **     pE1: x==5       pE2: x==5             Result: true
49124bd5f73fSdrh **     pE1: x>0        pE2: x==5             Result: false
4913619a1305Sdrh **     pE1: x=21       pE2: x=21 OR y=43     Result: true
49144bd5f73fSdrh **     pE1: x!=123     pE2: x IS NOT NULL    Result: true
4915619a1305Sdrh **     pE1: x!=?1      pE2: x IS NOT NULL    Result: true
4916619a1305Sdrh **     pE1: x IS NULL  pE2: x IS NOT NULL    Result: false
4917619a1305Sdrh **     pE1: x IS ?2    pE2: x IS NOT NULL    Reuslt: false
49184bd5f73fSdrh **
49194bd5f73fSdrh ** When comparing TK_COLUMN nodes between pE1 and pE2, if pE2 has
49204bd5f73fSdrh ** Expr.iTable<0 then assume a table number given by iTab.
49214bd5f73fSdrh **
4922c0804226Sdrh ** If pParse is not NULL, then the values of bound variables in pE1 are
4923c0804226Sdrh ** compared against literal values in pE2 and pParse->pVdbe->expmask is
4924c0804226Sdrh ** modified to record which bound variables are referenced.  If pParse
4925c0804226Sdrh ** is NULL, then false will be returned if pE1 contains any bound variables.
4926c0804226Sdrh **
49274bd5f73fSdrh ** When in doubt, return false.  Returning true might give a performance
49284bd5f73fSdrh ** improvement.  Returning false might cause a performance reduction, but
49294bd5f73fSdrh ** it will always give the correct answer and is hence always safe.
49304bd5f73fSdrh */
49315aa550cfSdan int sqlite3ExprImpliesExpr(Parse *pParse, Expr *pE1, Expr *pE2, int iTab){
49325aa550cfSdan   if( sqlite3ExprCompare(pParse, pE1, pE2, iTab)==0 ){
4933619a1305Sdrh     return 1;
4934619a1305Sdrh   }
4935619a1305Sdrh   if( pE2->op==TK_OR
49365aa550cfSdan    && (sqlite3ExprImpliesExpr(pParse, pE1, pE2->pLeft, iTab)
49375aa550cfSdan              || sqlite3ExprImpliesExpr(pParse, pE1, pE2->pRight, iTab) )
4938619a1305Sdrh   ){
4939619a1305Sdrh     return 1;
4940619a1305Sdrh   }
49411ad93a00Sdrh   if( pE2->op==TK_NOTNULL && pE1->op!=TK_ISNULL && pE1->op!=TK_IS ){
49421ad93a00Sdrh     Expr *pX = sqlite3ExprSkipCollate(pE1->pLeft);
49431ad93a00Sdrh     testcase( pX!=pE1->pLeft );
49445aa550cfSdan     if( sqlite3ExprCompare(pParse, pX, pE2->pLeft, iTab)==0 ) return 1;
4945619a1305Sdrh   }
4946619a1305Sdrh   return 0;
49474bd5f73fSdrh }
49484bd5f73fSdrh 
49494bd5f73fSdrh /*
49502589787cSdrh ** This is the Expr node callback for sqlite3ExprImpliesNotNullRow().
49512589787cSdrh ** If the expression node requires that the table at pWalker->iCur
4952f8937f90Sdrh ** have one or more non-NULL column, then set pWalker->eCode to 1 and abort.
4953f8937f90Sdrh **
4954f8937f90Sdrh ** This routine controls an optimization.  False positives (setting
4955f8937f90Sdrh ** pWalker->eCode to 1 when it should not be) are deadly, but false-negatives
4956f8937f90Sdrh ** (never setting pWalker->eCode) is a harmless missed optimization.
49572589787cSdrh */
49582589787cSdrh static int impliesNotNullRow(Walker *pWalker, Expr *pExpr){
4959f8937f90Sdrh   testcase( pExpr->op==TK_AGG_COLUMN );
4960821b610bSdrh   testcase( pExpr->op==TK_AGG_FUNCTION );
49612589787cSdrh   if( ExprHasProperty(pExpr, EP_FromJoin) ) return WRC_Prune;
49622589787cSdrh   switch( pExpr->op ){
49630493222fSdan     case TK_ISNOT:
4964a1054dccSdan     case TK_NOT:
49652589787cSdrh     case TK_ISNULL:
49662589787cSdrh     case TK_IS:
49672589787cSdrh     case TK_OR:
49682c492061Sdrh     case TK_CASE:
4969e3eff266Sdrh     case TK_IN:
49702589787cSdrh     case TK_FUNCTION:
49710493222fSdan       testcase( pExpr->op==TK_ISNOT );
49720493222fSdan       testcase( pExpr->op==TK_NOT );
4973821b610bSdrh       testcase( pExpr->op==TK_ISNULL );
4974821b610bSdrh       testcase( pExpr->op==TK_IS );
4975821b610bSdrh       testcase( pExpr->op==TK_OR );
4976821b610bSdrh       testcase( pExpr->op==TK_CASE );
4977821b610bSdrh       testcase( pExpr->op==TK_IN );
4978821b610bSdrh       testcase( pExpr->op==TK_FUNCTION );
49792589787cSdrh       return WRC_Prune;
49802589787cSdrh     case TK_COLUMN:
49812589787cSdrh       if( pWalker->u.iCur==pExpr->iTable ){
49822589787cSdrh         pWalker->eCode = 1;
49832589787cSdrh         return WRC_Abort;
49842589787cSdrh       }
49852589787cSdrh       return WRC_Prune;
49869881155dSdrh 
49879881155dSdrh     /* Virtual tables are allowed to use constraints like x=NULL.  So
49889881155dSdrh     ** a term of the form x=y does not prove that y is not null if x
49899881155dSdrh     ** is the column of a virtual table */
49909881155dSdrh     case TK_EQ:
49919881155dSdrh     case TK_NE:
49929881155dSdrh     case TK_LT:
49939881155dSdrh     case TK_LE:
49949881155dSdrh     case TK_GT:
49959881155dSdrh     case TK_GE:
49969881155dSdrh       testcase( pExpr->op==TK_EQ );
49979881155dSdrh       testcase( pExpr->op==TK_NE );
49989881155dSdrh       testcase( pExpr->op==TK_LT );
49999881155dSdrh       testcase( pExpr->op==TK_LE );
50009881155dSdrh       testcase( pExpr->op==TK_GT );
50019881155dSdrh       testcase( pExpr->op==TK_GE );
5002eda079cdSdrh       if( (pExpr->pLeft->op==TK_COLUMN && IsVirtual(pExpr->pLeft->y.pTab))
5003eda079cdSdrh        || (pExpr->pRight->op==TK_COLUMN && IsVirtual(pExpr->pRight->y.pTab))
50049881155dSdrh       ){
50059881155dSdrh        return WRC_Prune;
50069881155dSdrh       }
50072589787cSdrh     default:
50082589787cSdrh       return WRC_Continue;
50092589787cSdrh   }
50102589787cSdrh }
50112589787cSdrh 
50122589787cSdrh /*
50132589787cSdrh ** Return true (non-zero) if expression p can only be true if at least
50142589787cSdrh ** one column of table iTab is non-null.  In other words, return true
50152589787cSdrh ** if expression p will always be NULL or false if every column of iTab
50162589787cSdrh ** is NULL.
50172589787cSdrh **
5018821b610bSdrh ** False negatives are acceptable.  In other words, it is ok to return
5019821b610bSdrh ** zero even if expression p will never be true of every column of iTab
5020821b610bSdrh ** is NULL.  A false negative is merely a missed optimization opportunity.
5021821b610bSdrh **
5022821b610bSdrh ** False positives are not allowed, however.  A false positive may result
5023821b610bSdrh ** in an incorrect answer.
5024821b610bSdrh **
50252589787cSdrh ** Terms of p that are marked with EP_FromJoin (and hence that come from
50262589787cSdrh ** the ON or USING clauses of LEFT JOINS) are excluded from the analysis.
50272589787cSdrh **
50282589787cSdrh ** This routine is used to check if a LEFT JOIN can be converted into
50292589787cSdrh ** an ordinary JOIN.  The p argument is the WHERE clause.  If the WHERE
50302589787cSdrh ** clause requires that some column of the right table of the LEFT JOIN
50312589787cSdrh ** be non-NULL, then the LEFT JOIN can be safely converted into an
50322589787cSdrh ** ordinary join.
50332589787cSdrh */
50342589787cSdrh int sqlite3ExprImpliesNonNullRow(Expr *p, int iTab){
50352589787cSdrh   Walker w;
50362589787cSdrh   w.xExprCallback = impliesNotNullRow;
50372589787cSdrh   w.xSelectCallback = 0;
50382589787cSdrh   w.xSelectCallback2 = 0;
50392589787cSdrh   w.eCode = 0;
50402589787cSdrh   w.u.iCur = iTab;
50412589787cSdrh   sqlite3WalkExpr(&w, p);
50422589787cSdrh   return w.eCode;
50432589787cSdrh }
50442589787cSdrh 
50452589787cSdrh /*
5046030796dfSdrh ** An instance of the following structure is used by the tree walker
50472409f8a1Sdrh ** to determine if an expression can be evaluated by reference to the
50482409f8a1Sdrh ** index only, without having to do a search for the corresponding
50492409f8a1Sdrh ** table entry.  The IdxCover.pIdx field is the index.  IdxCover.iCur
50502409f8a1Sdrh ** is the cursor for the table.
50512409f8a1Sdrh */
50522409f8a1Sdrh struct IdxCover {
50532409f8a1Sdrh   Index *pIdx;     /* The index to be tested for coverage */
50542409f8a1Sdrh   int iCur;        /* Cursor number for the table corresponding to the index */
50552409f8a1Sdrh };
50562409f8a1Sdrh 
50572409f8a1Sdrh /*
50582409f8a1Sdrh ** Check to see if there are references to columns in table
50592409f8a1Sdrh ** pWalker->u.pIdxCover->iCur can be satisfied using the index
50602409f8a1Sdrh ** pWalker->u.pIdxCover->pIdx.
50612409f8a1Sdrh */
50622409f8a1Sdrh static int exprIdxCover(Walker *pWalker, Expr *pExpr){
50632409f8a1Sdrh   if( pExpr->op==TK_COLUMN
50642409f8a1Sdrh    && pExpr->iTable==pWalker->u.pIdxCover->iCur
50652409f8a1Sdrh    && sqlite3ColumnOfIndex(pWalker->u.pIdxCover->pIdx, pExpr->iColumn)<0
50662409f8a1Sdrh   ){
50672409f8a1Sdrh     pWalker->eCode = 1;
50682409f8a1Sdrh     return WRC_Abort;
50692409f8a1Sdrh   }
50702409f8a1Sdrh   return WRC_Continue;
50712409f8a1Sdrh }
50722409f8a1Sdrh 
50732409f8a1Sdrh /*
5074e604ec0bSdrh ** Determine if an index pIdx on table with cursor iCur contains will
5075e604ec0bSdrh ** the expression pExpr.  Return true if the index does cover the
5076e604ec0bSdrh ** expression and false if the pExpr expression references table columns
5077e604ec0bSdrh ** that are not found in the index pIdx.
50782409f8a1Sdrh **
50792409f8a1Sdrh ** An index covering an expression means that the expression can be
50802409f8a1Sdrh ** evaluated using only the index and without having to lookup the
50812409f8a1Sdrh ** corresponding table entry.
50822409f8a1Sdrh */
50832409f8a1Sdrh int sqlite3ExprCoveredByIndex(
50842409f8a1Sdrh   Expr *pExpr,        /* The index to be tested */
50852409f8a1Sdrh   int iCur,           /* The cursor number for the corresponding table */
50862409f8a1Sdrh   Index *pIdx         /* The index that might be used for coverage */
50872409f8a1Sdrh ){
50882409f8a1Sdrh   Walker w;
50892409f8a1Sdrh   struct IdxCover xcov;
50902409f8a1Sdrh   memset(&w, 0, sizeof(w));
50912409f8a1Sdrh   xcov.iCur = iCur;
50922409f8a1Sdrh   xcov.pIdx = pIdx;
50932409f8a1Sdrh   w.xExprCallback = exprIdxCover;
50942409f8a1Sdrh   w.u.pIdxCover = &xcov;
50952409f8a1Sdrh   sqlite3WalkExpr(&w, pExpr);
50962409f8a1Sdrh   return !w.eCode;
50972409f8a1Sdrh }
50982409f8a1Sdrh 
50992409f8a1Sdrh 
51002409f8a1Sdrh /*
51012409f8a1Sdrh ** An instance of the following structure is used by the tree walker
5102030796dfSdrh ** to count references to table columns in the arguments of an
5103ed551b95Sdrh ** aggregate function, in order to implement the
5104ed551b95Sdrh ** sqlite3FunctionThisSrc() routine.
5105374fdce4Sdrh */
5106030796dfSdrh struct SrcCount {
5107030796dfSdrh   SrcList *pSrc;   /* One particular FROM clause in a nested query */
5108030796dfSdrh   int nThis;       /* Number of references to columns in pSrcList */
5109030796dfSdrh   int nOther;      /* Number of references to columns in other FROM clauses */
5110030796dfSdrh };
5111030796dfSdrh 
5112030796dfSdrh /*
5113030796dfSdrh ** Count the number of references to columns.
5114030796dfSdrh */
5115030796dfSdrh static int exprSrcCount(Walker *pWalker, Expr *pExpr){
5116fb0a6081Sdrh   /* The NEVER() on the second term is because sqlite3FunctionUsesThisSrc()
5117fb0a6081Sdrh   ** is always called before sqlite3ExprAnalyzeAggregates() and so the
5118fb0a6081Sdrh   ** TK_COLUMNs have not yet been converted into TK_AGG_COLUMN.  If
5119fb0a6081Sdrh   ** sqlite3FunctionUsesThisSrc() is used differently in the future, the
5120fb0a6081Sdrh   ** NEVER() will need to be removed. */
5121fb0a6081Sdrh   if( pExpr->op==TK_COLUMN || NEVER(pExpr->op==TK_AGG_COLUMN) ){
5122374fdce4Sdrh     int i;
5123030796dfSdrh     struct SrcCount *p = pWalker->u.pSrcCount;
5124030796dfSdrh     SrcList *pSrc = p->pSrc;
5125655814d2Sdrh     int nSrc = pSrc ? pSrc->nSrc : 0;
5126655814d2Sdrh     for(i=0; i<nSrc; i++){
5127030796dfSdrh       if( pExpr->iTable==pSrc->a[i].iCursor ) break;
5128374fdce4Sdrh     }
5129655814d2Sdrh     if( i<nSrc ){
5130030796dfSdrh       p->nThis++;
5131374fdce4Sdrh     }else{
5132030796dfSdrh       p->nOther++;
5133374fdce4Sdrh     }
5134374fdce4Sdrh   }
5135030796dfSdrh   return WRC_Continue;
5136030796dfSdrh }
5137374fdce4Sdrh 
5138374fdce4Sdrh /*
5139030796dfSdrh ** Determine if any of the arguments to the pExpr Function reference
5140030796dfSdrh ** pSrcList.  Return true if they do.  Also return true if the function
5141030796dfSdrh ** has no arguments or has only constant arguments.  Return false if pExpr
5142030796dfSdrh ** references columns but not columns of tables found in pSrcList.
5143374fdce4Sdrh */
5144030796dfSdrh int sqlite3FunctionUsesThisSrc(Expr *pExpr, SrcList *pSrcList){
5145374fdce4Sdrh   Walker w;
5146030796dfSdrh   struct SrcCount cnt;
5147374fdce4Sdrh   assert( pExpr->op==TK_AGG_FUNCTION );
5148030796dfSdrh   w.xExprCallback = exprSrcCount;
5149979dd1beSdrh   w.xSelectCallback = 0;
5150030796dfSdrh   w.u.pSrcCount = &cnt;
5151030796dfSdrh   cnt.pSrc = pSrcList;
5152030796dfSdrh   cnt.nThis = 0;
5153030796dfSdrh   cnt.nOther = 0;
5154030796dfSdrh   sqlite3WalkExprList(&w, pExpr->x.pList);
5155030796dfSdrh   return cnt.nThis>0 || cnt.nOther==0;
5156374fdce4Sdrh }
5157374fdce4Sdrh 
5158374fdce4Sdrh /*
515913449892Sdrh ** Add a new element to the pAggInfo->aCol[] array.  Return the index of
516013449892Sdrh ** the new element.  Return a negative number if malloc fails.
51612282792aSdrh */
516217435752Sdrh static int addAggInfoColumn(sqlite3 *db, AggInfo *pInfo){
516313449892Sdrh   int i;
5164cf643729Sdrh   pInfo->aCol = sqlite3ArrayAllocate(
516517435752Sdrh        db,
5166cf643729Sdrh        pInfo->aCol,
5167cf643729Sdrh        sizeof(pInfo->aCol[0]),
5168cf643729Sdrh        &pInfo->nColumn,
5169cf643729Sdrh        &i
5170cf643729Sdrh   );
517113449892Sdrh   return i;
51722282792aSdrh }
517313449892Sdrh 
517413449892Sdrh /*
517513449892Sdrh ** Add a new element to the pAggInfo->aFunc[] array.  Return the index of
517613449892Sdrh ** the new element.  Return a negative number if malloc fails.
517713449892Sdrh */
517817435752Sdrh static int addAggInfoFunc(sqlite3 *db, AggInfo *pInfo){
517913449892Sdrh   int i;
5180cf643729Sdrh   pInfo->aFunc = sqlite3ArrayAllocate(
518117435752Sdrh        db,
5182cf643729Sdrh        pInfo->aFunc,
5183cf643729Sdrh        sizeof(pInfo->aFunc[0]),
5184cf643729Sdrh        &pInfo->nFunc,
5185cf643729Sdrh        &i
5186cf643729Sdrh   );
518713449892Sdrh   return i;
51882282792aSdrh }
51892282792aSdrh 
51902282792aSdrh /*
51917d10d5a6Sdrh ** This is the xExprCallback for a tree walker.  It is used to
51927d10d5a6Sdrh ** implement sqlite3ExprAnalyzeAggregates().  See sqlite3ExprAnalyzeAggregates
5193626a879aSdrh ** for additional information.
51942282792aSdrh */
51957d10d5a6Sdrh static int analyzeAggregate(Walker *pWalker, Expr *pExpr){
51962282792aSdrh   int i;
51977d10d5a6Sdrh   NameContext *pNC = pWalker->u.pNC;
5198a58fdfb1Sdanielk1977   Parse *pParse = pNC->pParse;
5199a58fdfb1Sdanielk1977   SrcList *pSrcList = pNC->pSrcList;
520025c3b8caSdrh   AggInfo *pAggInfo = pNC->uNC.pAggInfo;
520113449892Sdrh 
520225c3b8caSdrh   assert( pNC->ncFlags & NC_UAggInfo );
52032282792aSdrh   switch( pExpr->op ){
520489c69d00Sdrh     case TK_AGG_COLUMN:
5205967e8b73Sdrh     case TK_COLUMN: {
52068b213899Sdrh       testcase( pExpr->op==TK_AGG_COLUMN );
52078b213899Sdrh       testcase( pExpr->op==TK_COLUMN );
520813449892Sdrh       /* Check to see if the column is in one of the tables in the FROM
520913449892Sdrh       ** clause of the aggregate query */
521020bc393cSdrh       if( ALWAYS(pSrcList!=0) ){
521113449892Sdrh         struct SrcList_item *pItem = pSrcList->a;
521213449892Sdrh         for(i=0; i<pSrcList->nSrc; i++, pItem++){
521313449892Sdrh           struct AggInfo_col *pCol;
5214c5cd1249Sdrh           assert( !ExprHasProperty(pExpr, EP_TokenOnly|EP_Reduced) );
521513449892Sdrh           if( pExpr->iTable==pItem->iCursor ){
521613449892Sdrh             /* If we reach this point, it means that pExpr refers to a table
521713449892Sdrh             ** that is in the FROM clause of the aggregate query.
521813449892Sdrh             **
521913449892Sdrh             ** Make an entry for the column in pAggInfo->aCol[] if there
522013449892Sdrh             ** is not an entry there already.
522113449892Sdrh             */
52227f906d63Sdrh             int k;
522313449892Sdrh             pCol = pAggInfo->aCol;
52247f906d63Sdrh             for(k=0; k<pAggInfo->nColumn; k++, pCol++){
522513449892Sdrh               if( pCol->iTable==pExpr->iTable &&
522613449892Sdrh                   pCol->iColumn==pExpr->iColumn ){
52272282792aSdrh                 break;
52282282792aSdrh               }
52292282792aSdrh             }
52301e536953Sdanielk1977             if( (k>=pAggInfo->nColumn)
52311e536953Sdanielk1977              && (k = addAggInfoColumn(pParse->db, pAggInfo))>=0
52321e536953Sdanielk1977             ){
52337f906d63Sdrh               pCol = &pAggInfo->aCol[k];
5234eda079cdSdrh               pCol->pTab = pExpr->y.pTab;
523513449892Sdrh               pCol->iTable = pExpr->iTable;
523613449892Sdrh               pCol->iColumn = pExpr->iColumn;
52370a07c107Sdrh               pCol->iMem = ++pParse->nMem;
523813449892Sdrh               pCol->iSorterColumn = -1;
52395774b806Sdrh               pCol->pExpr = pExpr;
524013449892Sdrh               if( pAggInfo->pGroupBy ){
524113449892Sdrh                 int j, n;
524213449892Sdrh                 ExprList *pGB = pAggInfo->pGroupBy;
524313449892Sdrh                 struct ExprList_item *pTerm = pGB->a;
524413449892Sdrh                 n = pGB->nExpr;
524513449892Sdrh                 for(j=0; j<n; j++, pTerm++){
524613449892Sdrh                   Expr *pE = pTerm->pExpr;
524713449892Sdrh                   if( pE->op==TK_COLUMN && pE->iTable==pExpr->iTable &&
524813449892Sdrh                       pE->iColumn==pExpr->iColumn ){
524913449892Sdrh                     pCol->iSorterColumn = j;
525013449892Sdrh                     break;
52512282792aSdrh                   }
525213449892Sdrh                 }
525313449892Sdrh               }
525413449892Sdrh               if( pCol->iSorterColumn<0 ){
525513449892Sdrh                 pCol->iSorterColumn = pAggInfo->nSortingColumn++;
525613449892Sdrh               }
525713449892Sdrh             }
525813449892Sdrh             /* There is now an entry for pExpr in pAggInfo->aCol[] (either
525913449892Sdrh             ** because it was there before or because we just created it).
526013449892Sdrh             ** Convert the pExpr to be a TK_AGG_COLUMN referring to that
526113449892Sdrh             ** pAggInfo->aCol[] entry.
526213449892Sdrh             */
5263ebb6a65dSdrh             ExprSetVVAProperty(pExpr, EP_NoReduce);
526413449892Sdrh             pExpr->pAggInfo = pAggInfo;
526513449892Sdrh             pExpr->op = TK_AGG_COLUMN;
5266cf697396Sshane             pExpr->iAgg = (i16)k;
526713449892Sdrh             break;
526813449892Sdrh           } /* endif pExpr->iTable==pItem->iCursor */
526913449892Sdrh         } /* end loop over pSrcList */
5270a58fdfb1Sdanielk1977       }
52717d10d5a6Sdrh       return WRC_Prune;
52722282792aSdrh     }
52732282792aSdrh     case TK_AGG_FUNCTION: {
52743a8c4be7Sdrh       if( (pNC->ncFlags & NC_InAggFunc)==0
5275ed551b95Sdrh        && pWalker->walkerDepth==pExpr->op2
52763a8c4be7Sdrh       ){
527713449892Sdrh         /* Check to see if pExpr is a duplicate of another aggregate
527813449892Sdrh         ** function that is already in the pAggInfo structure
527913449892Sdrh         */
528013449892Sdrh         struct AggInfo_func *pItem = pAggInfo->aFunc;
528113449892Sdrh         for(i=0; i<pAggInfo->nFunc; i++, pItem++){
52825aa550cfSdan           if( sqlite3ExprCompare(0, pItem->pExpr, pExpr, -1)==0 ){
52832282792aSdrh             break;
52842282792aSdrh           }
52852282792aSdrh         }
528613449892Sdrh         if( i>=pAggInfo->nFunc ){
528713449892Sdrh           /* pExpr is original.  Make a new entry in pAggInfo->aFunc[]
528813449892Sdrh           */
528914db2665Sdanielk1977           u8 enc = ENC(pParse->db);
52901e536953Sdanielk1977           i = addAggInfoFunc(pParse->db, pAggInfo);
529113449892Sdrh           if( i>=0 ){
52926ab3a2ecSdanielk1977             assert( !ExprHasProperty(pExpr, EP_xIsSelect) );
529313449892Sdrh             pItem = &pAggInfo->aFunc[i];
529413449892Sdrh             pItem->pExpr = pExpr;
52950a07c107Sdrh             pItem->iMem = ++pParse->nMem;
529633e619fcSdrh             assert( !ExprHasProperty(pExpr, EP_IntValue) );
529713449892Sdrh             pItem->pFunc = sqlite3FindFunction(pParse->db,
529880738d9cSdrh                    pExpr->u.zToken,
52996ab3a2ecSdanielk1977                    pExpr->x.pList ? pExpr->x.pList->nExpr : 0, enc, 0);
5300fd357974Sdrh             if( pExpr->flags & EP_Distinct ){
5301fd357974Sdrh               pItem->iDistinct = pParse->nTab++;
5302fd357974Sdrh             }else{
5303fd357974Sdrh               pItem->iDistinct = -1;
5304fd357974Sdrh             }
53052282792aSdrh           }
530613449892Sdrh         }
530713449892Sdrh         /* Make pExpr point to the appropriate pAggInfo->aFunc[] entry
530813449892Sdrh         */
5309c5cd1249Sdrh         assert( !ExprHasProperty(pExpr, EP_TokenOnly|EP_Reduced) );
5310ebb6a65dSdrh         ExprSetVVAProperty(pExpr, EP_NoReduce);
5311cf697396Sshane         pExpr->iAgg = (i16)i;
531213449892Sdrh         pExpr->pAggInfo = pAggInfo;
53133a8c4be7Sdrh         return WRC_Prune;
53146e83a57fSdrh       }else{
53156e83a57fSdrh         return WRC_Continue;
53166e83a57fSdrh       }
53172282792aSdrh     }
5318a58fdfb1Sdanielk1977   }
53197d10d5a6Sdrh   return WRC_Continue;
53207d10d5a6Sdrh }
53217d10d5a6Sdrh static int analyzeAggregatesInSelect(Walker *pWalker, Select *pSelect){
5322d5a336efSdrh   UNUSED_PARAMETER(pSelect);
5323979dd1beSdrh   pWalker->walkerDepth++;
53247d10d5a6Sdrh   return WRC_Continue;
5325a58fdfb1Sdanielk1977 }
5326979dd1beSdrh static void analyzeAggregatesInSelectEnd(Walker *pWalker, Select *pSelect){
5327979dd1beSdrh   UNUSED_PARAMETER(pSelect);
5328979dd1beSdrh   pWalker->walkerDepth--;
5329979dd1beSdrh }
5330626a879aSdrh 
5331626a879aSdrh /*
5332e8abb4caSdrh ** Analyze the pExpr expression looking for aggregate functions and
5333e8abb4caSdrh ** for variables that need to be added to AggInfo object that pNC->pAggInfo
5334e8abb4caSdrh ** points to.  Additional entries are made on the AggInfo object as
5335e8abb4caSdrh ** necessary.
5336626a879aSdrh **
5337626a879aSdrh ** This routine should only be called after the expression has been
53387d10d5a6Sdrh ** analyzed by sqlite3ResolveExprNames().
5339626a879aSdrh */
5340d2b3e23bSdrh void sqlite3ExprAnalyzeAggregates(NameContext *pNC, Expr *pExpr){
53417d10d5a6Sdrh   Walker w;
53427d10d5a6Sdrh   w.xExprCallback = analyzeAggregate;
53437d10d5a6Sdrh   w.xSelectCallback = analyzeAggregatesInSelect;
5344979dd1beSdrh   w.xSelectCallback2 = analyzeAggregatesInSelectEnd;
5345979dd1beSdrh   w.walkerDepth = 0;
53467d10d5a6Sdrh   w.u.pNC = pNC;
534720bc393cSdrh   assert( pNC->pSrcList!=0 );
53487d10d5a6Sdrh   sqlite3WalkExpr(&w, pExpr);
53492282792aSdrh }
53505d9a4af9Sdrh 
53515d9a4af9Sdrh /*
53525d9a4af9Sdrh ** Call sqlite3ExprAnalyzeAggregates() for every expression in an
53535d9a4af9Sdrh ** expression list.  Return the number of errors.
53545d9a4af9Sdrh **
53555d9a4af9Sdrh ** If an error is found, the analysis is cut short.
53565d9a4af9Sdrh */
5357d2b3e23bSdrh void sqlite3ExprAnalyzeAggList(NameContext *pNC, ExprList *pList){
53585d9a4af9Sdrh   struct ExprList_item *pItem;
53595d9a4af9Sdrh   int i;
53605d9a4af9Sdrh   if( pList ){
5361d2b3e23bSdrh     for(pItem=pList->a, i=0; i<pList->nExpr; i++, pItem++){
5362d2b3e23bSdrh       sqlite3ExprAnalyzeAggregates(pNC, pItem->pExpr);
53635d9a4af9Sdrh     }
53645d9a4af9Sdrh   }
53655d9a4af9Sdrh }
5366892d3179Sdrh 
5367892d3179Sdrh /*
5368ceea3321Sdrh ** Allocate a single new register for use to hold some intermediate result.
5369892d3179Sdrh */
5370892d3179Sdrh int sqlite3GetTempReg(Parse *pParse){
5371e55cbd72Sdrh   if( pParse->nTempReg==0 ){
5372892d3179Sdrh     return ++pParse->nMem;
5373892d3179Sdrh   }
53742f425f6bSdanielk1977   return pParse->aTempReg[--pParse->nTempReg];
5375892d3179Sdrh }
5376ceea3321Sdrh 
5377ceea3321Sdrh /*
5378ceea3321Sdrh ** Deallocate a register, making available for reuse for some other
5379ceea3321Sdrh ** purpose.
5380ceea3321Sdrh */
5381892d3179Sdrh void sqlite3ReleaseTempReg(Parse *pParse, int iReg){
53822dcef11bSdrh   if( iReg && pParse->nTempReg<ArraySize(pParse->aTempReg) ){
5383892d3179Sdrh     pParse->aTempReg[pParse->nTempReg++] = iReg;
5384892d3179Sdrh   }
5385892d3179Sdrh }
5386892d3179Sdrh 
5387892d3179Sdrh /*
5388ed24da4bSdrh ** Allocate or deallocate a block of nReg consecutive registers.
5389892d3179Sdrh */
5390892d3179Sdrh int sqlite3GetTempRange(Parse *pParse, int nReg){
5391e55cbd72Sdrh   int i, n;
5392ed24da4bSdrh   if( nReg==1 ) return sqlite3GetTempReg(pParse);
5393892d3179Sdrh   i = pParse->iRangeReg;
5394e55cbd72Sdrh   n = pParse->nRangeReg;
5395f49f3523Sdrh   if( nReg<=n ){
5396892d3179Sdrh     pParse->iRangeReg += nReg;
5397892d3179Sdrh     pParse->nRangeReg -= nReg;
5398892d3179Sdrh   }else{
5399892d3179Sdrh     i = pParse->nMem+1;
5400892d3179Sdrh     pParse->nMem += nReg;
5401892d3179Sdrh   }
5402892d3179Sdrh   return i;
5403892d3179Sdrh }
5404892d3179Sdrh void sqlite3ReleaseTempRange(Parse *pParse, int iReg, int nReg){
5405ed24da4bSdrh   if( nReg==1 ){
5406ed24da4bSdrh     sqlite3ReleaseTempReg(pParse, iReg);
5407ed24da4bSdrh     return;
5408ed24da4bSdrh   }
5409892d3179Sdrh   if( nReg>pParse->nRangeReg ){
5410892d3179Sdrh     pParse->nRangeReg = nReg;
5411892d3179Sdrh     pParse->iRangeReg = iReg;
5412892d3179Sdrh   }
5413892d3179Sdrh }
5414cdc69557Sdrh 
5415cdc69557Sdrh /*
5416cdc69557Sdrh ** Mark all temporary registers as being unavailable for reuse.
5417cdc69557Sdrh */
5418cdc69557Sdrh void sqlite3ClearTempRegCache(Parse *pParse){
5419cdc69557Sdrh   pParse->nTempReg = 0;
5420cdc69557Sdrh   pParse->nRangeReg = 0;
5421cdc69557Sdrh }
5422bb9b5f26Sdrh 
5423bb9b5f26Sdrh /*
5424bb9b5f26Sdrh ** Validate that no temporary register falls within the range of
5425bb9b5f26Sdrh ** iFirst..iLast, inclusive.  This routine is only call from within assert()
5426bb9b5f26Sdrh ** statements.
5427bb9b5f26Sdrh */
5428bb9b5f26Sdrh #ifdef SQLITE_DEBUG
5429bb9b5f26Sdrh int sqlite3NoTempsInRange(Parse *pParse, int iFirst, int iLast){
5430bb9b5f26Sdrh   int i;
5431bb9b5f26Sdrh   if( pParse->nRangeReg>0
54323963e584Sdrh    && pParse->iRangeReg+pParse->nRangeReg > iFirst
54333963e584Sdrh    && pParse->iRangeReg <= iLast
5434bb9b5f26Sdrh   ){
5435bb9b5f26Sdrh      return 0;
5436bb9b5f26Sdrh   }
5437bb9b5f26Sdrh   for(i=0; i<pParse->nTempReg; i++){
5438bb9b5f26Sdrh     if( pParse->aTempReg[i]>=iFirst && pParse->aTempReg[i]<=iLast ){
5439bb9b5f26Sdrh       return 0;
5440bb9b5f26Sdrh     }
5441bb9b5f26Sdrh   }
5442bb9b5f26Sdrh   return 1;
5443bb9b5f26Sdrh }
5444bb9b5f26Sdrh #endif /* SQLITE_DEBUG */
5445