xref: /sqlite-3.40.0/src/wherecode.c (revision a4eeccdf)
16f82e85aSdrh /*
26f82e85aSdrh ** 2015-06-06
36f82e85aSdrh **
46f82e85aSdrh ** The author disclaims copyright to this source code.  In place of
56f82e85aSdrh ** a legal notice, here is a blessing:
66f82e85aSdrh **
76f82e85aSdrh **    May you do good and not evil.
86f82e85aSdrh **    May you find forgiveness for yourself and forgive others.
96f82e85aSdrh **    May you share freely, never taking more than you give.
106f82e85aSdrh **
116f82e85aSdrh *************************************************************************
126f82e85aSdrh ** This module contains C code that generates VDBE code used to process
136f82e85aSdrh ** the WHERE clause of SQL statements.
146f82e85aSdrh **
156f82e85aSdrh ** This file was split off from where.c on 2015-06-06 in order to reduce the
166f82e85aSdrh ** size of where.c and make it easier to edit.  This file contains the routines
176f82e85aSdrh ** that actually generate the bulk of the WHERE loop code.  The original where.c
186f82e85aSdrh ** file retains the code that does query planning and analysis.
196f82e85aSdrh */
206f82e85aSdrh #include "sqliteInt.h"
216f82e85aSdrh #include "whereInt.h"
226f82e85aSdrh 
236f82e85aSdrh #ifndef SQLITE_OMIT_EXPLAIN
241d9bc9b7Sdan 
251d9bc9b7Sdan /*
261d9bc9b7Sdan ** Return the name of the i-th column of the pIdx index.
271d9bc9b7Sdan */
281d9bc9b7Sdan static const char *explainIndexColumnName(Index *pIdx, int i){
291d9bc9b7Sdan   i = pIdx->aiColumn[i];
301d9bc9b7Sdan   if( i==XN_EXPR ) return "<expr>";
311d9bc9b7Sdan   if( i==XN_ROWID ) return "rowid";
32cf9d36d1Sdrh   return pIdx->pTable->aCol[i].zCnName;
331d9bc9b7Sdan }
341d9bc9b7Sdan 
356f82e85aSdrh /*
366f82e85aSdrh ** This routine is a helper for explainIndexRange() below
376f82e85aSdrh **
386f82e85aSdrh ** pStr holds the text of an expression that we are building up one term
396f82e85aSdrh ** at a time.  This routine adds a new term to the end of the expression.
406f82e85aSdrh ** Terms are separated by AND so add the "AND" text for second and subsequent
416f82e85aSdrh ** terms only.
426f82e85aSdrh */
436f82e85aSdrh static void explainAppendTerm(
446f82e85aSdrh   StrAccum *pStr,             /* The text expression being built */
451d9bc9b7Sdan   Index *pIdx,                /* Index to read column names from */
461d9bc9b7Sdan   int nTerm,                  /* Number of terms */
471d9bc9b7Sdan   int iTerm,                  /* Zero-based index of first term. */
481d9bc9b7Sdan   int bAnd,                   /* Non-zero to append " AND " */
496f82e85aSdrh   const char *zOp             /* Name of the operator */
506f82e85aSdrh ){
511d9bc9b7Sdan   int i;
521d9bc9b7Sdan 
531d9bc9b7Sdan   assert( nTerm>=1 );
540cdbe1aeSdrh   if( bAnd ) sqlite3_str_append(pStr, " AND ", 5);
551d9bc9b7Sdan 
560cdbe1aeSdrh   if( nTerm>1 ) sqlite3_str_append(pStr, "(", 1);
571d9bc9b7Sdan   for(i=0; i<nTerm; i++){
580cdbe1aeSdrh     if( i ) sqlite3_str_append(pStr, ",", 1);
590cdbe1aeSdrh     sqlite3_str_appendall(pStr, explainIndexColumnName(pIdx, iTerm+i));
601d9bc9b7Sdan   }
610cdbe1aeSdrh   if( nTerm>1 ) sqlite3_str_append(pStr, ")", 1);
621d9bc9b7Sdan 
630cdbe1aeSdrh   sqlite3_str_append(pStr, zOp, 1);
641d9bc9b7Sdan 
650cdbe1aeSdrh   if( nTerm>1 ) sqlite3_str_append(pStr, "(", 1);
661d9bc9b7Sdan   for(i=0; i<nTerm; i++){
670cdbe1aeSdrh     if( i ) sqlite3_str_append(pStr, ",", 1);
680cdbe1aeSdrh     sqlite3_str_append(pStr, "?", 1);
696f82e85aSdrh   }
700cdbe1aeSdrh   if( nTerm>1 ) sqlite3_str_append(pStr, ")", 1);
71c7c4680fSdrh }
72c7c4680fSdrh 
73c7c4680fSdrh /*
746f82e85aSdrh ** Argument pLevel describes a strategy for scanning table pTab. This
756f82e85aSdrh ** function appends text to pStr that describes the subset of table
766f82e85aSdrh ** rows scanned by the strategy in the form of an SQL expression.
776f82e85aSdrh **
786f82e85aSdrh ** For example, if the query:
796f82e85aSdrh **
806f82e85aSdrh **   SELECT * FROM t1 WHERE a=1 AND b>2;
816f82e85aSdrh **
826f82e85aSdrh ** is run and there is an index on (a, b), then this function returns a
836f82e85aSdrh ** string similar to:
846f82e85aSdrh **
856f82e85aSdrh **   "a=? AND b>?"
866f82e85aSdrh */
878faee877Sdrh static void explainIndexRange(StrAccum *pStr, WhereLoop *pLoop){
886f82e85aSdrh   Index *pIndex = pLoop->u.btree.pIndex;
896f82e85aSdrh   u16 nEq = pLoop->u.btree.nEq;
906f82e85aSdrh   u16 nSkip = pLoop->nSkip;
916f82e85aSdrh   int i, j;
926f82e85aSdrh 
936f82e85aSdrh   if( nEq==0 && (pLoop->wsFlags&(WHERE_BTM_LIMIT|WHERE_TOP_LIMIT))==0 ) return;
940cdbe1aeSdrh   sqlite3_str_append(pStr, " (", 2);
956f82e85aSdrh   for(i=0; i<nEq; i++){
96c7c4680fSdrh     const char *z = explainIndexColumnName(pIndex, i);
970cdbe1aeSdrh     if( i ) sqlite3_str_append(pStr, " AND ", 5);
980cdbe1aeSdrh     sqlite3_str_appendf(pStr, i>=nSkip ? "%s=?" : "ANY(%s)", z);
996f82e85aSdrh   }
1006f82e85aSdrh 
1016f82e85aSdrh   j = i;
1026f82e85aSdrh   if( pLoop->wsFlags&WHERE_BTM_LIMIT ){
1031d9bc9b7Sdan     explainAppendTerm(pStr, pIndex, pLoop->u.btree.nBtm, j, i, ">");
1041d9bc9b7Sdan     i = 1;
1056f82e85aSdrh   }
1066f82e85aSdrh   if( pLoop->wsFlags&WHERE_TOP_LIMIT ){
1071d9bc9b7Sdan     explainAppendTerm(pStr, pIndex, pLoop->u.btree.nTop, j, i, "<");
1086f82e85aSdrh   }
1090cdbe1aeSdrh   sqlite3_str_append(pStr, ")", 1);
1106f82e85aSdrh }
1116f82e85aSdrh 
1126f82e85aSdrh /*
1136f82e85aSdrh ** This function is a no-op unless currently processing an EXPLAIN QUERY PLAN
1146f82e85aSdrh ** command, or if either SQLITE_DEBUG or SQLITE_ENABLE_STMT_SCANSTATUS was
1156f82e85aSdrh ** defined at compile-time. If it is not a no-op, a single OP_Explain opcode
1166f82e85aSdrh ** is added to the output to describe the table scan strategy in pLevel.
1176f82e85aSdrh **
1186f82e85aSdrh ** If an OP_Explain opcode is added to the VM, its address is returned.
1196f82e85aSdrh ** Otherwise, if no OP_Explain is coded, zero is returned.
1206f82e85aSdrh */
1216f82e85aSdrh int sqlite3WhereExplainOneScan(
1226f82e85aSdrh   Parse *pParse,                  /* Parse context */
1236f82e85aSdrh   SrcList *pTabList,              /* Table list this loop refers to */
1246f82e85aSdrh   WhereLevel *pLevel,             /* Scan to write OP_Explain opcode for */
1256f82e85aSdrh   u16 wctrlFlags                  /* Flags passed to sqlite3WhereBegin() */
1266f82e85aSdrh ){
1276f82e85aSdrh   int ret = 0;
1286f82e85aSdrh #if !defined(SQLITE_DEBUG) && !defined(SQLITE_ENABLE_STMT_SCANSTATUS)
129ef7231b8Sdrh   if( sqlite3ParseToplevel(pParse)->explain==2 )
1306f82e85aSdrh #endif
1316f82e85aSdrh   {
1327601294aSdrh     SrcItem *pItem = &pTabList->a[pLevel->iFrom];
1336f82e85aSdrh     Vdbe *v = pParse->pVdbe;      /* VM being constructed */
1346f82e85aSdrh     sqlite3 *db = pParse->db;     /* Database handle */
1356f82e85aSdrh     int isSearch;                 /* True for a SEARCH. False for SCAN. */
1366f82e85aSdrh     WhereLoop *pLoop;             /* The controlling WhereLoop object */
1376f82e85aSdrh     u32 flags;                    /* Flags that describe this loop */
1386f82e85aSdrh     char *zMsg;                   /* Text to add to EQP output */
1396f82e85aSdrh     StrAccum str;                 /* EQP output string */
1406f82e85aSdrh     char zBuf[100];               /* Initial space for EQP output string */
1416f82e85aSdrh 
1426f82e85aSdrh     pLoop = pLevel->pWLoop;
1436f82e85aSdrh     flags = pLoop->wsFlags;
144ce943bc8Sdrh     if( (flags&WHERE_MULTI_OR) || (wctrlFlags&WHERE_OR_SUBCLAUSE) ) return 0;
1456f82e85aSdrh 
1466f82e85aSdrh     isSearch = (flags&(WHERE_BTM_LIMIT|WHERE_TOP_LIMIT))!=0
1476f82e85aSdrh             || ((flags&WHERE_VIRTUALTABLE)==0 && (pLoop->u.btree.nEq>0))
1486f82e85aSdrh             || (wctrlFlags&(WHERE_ORDERBY_MIN|WHERE_ORDERBY_MAX));
1496f82e85aSdrh 
1506f82e85aSdrh     sqlite3StrAccumInit(&str, db, zBuf, sizeof(zBuf), SQLITE_MAX_LENGTH);
151a979993bSdrh     str.printfFlags = SQLITE_PRINTF_INTERNAL;
1522f2091b1Sdrh     sqlite3_str_appendf(&str, "%s %S", isSearch ? "SEARCH" : "SCAN", pItem);
1536f82e85aSdrh     if( (flags & (WHERE_IPK|WHERE_VIRTUALTABLE))==0 ){
1546f82e85aSdrh       const char *zFmt = 0;
1556f82e85aSdrh       Index *pIdx;
1566f82e85aSdrh 
1576f82e85aSdrh       assert( pLoop->u.btree.pIndex!=0 );
1586f82e85aSdrh       pIdx = pLoop->u.btree.pIndex;
1596f82e85aSdrh       assert( !(flags&WHERE_AUTO_INDEX) || (flags&WHERE_IDX_ONLY) );
1606f82e85aSdrh       if( !HasRowid(pItem->pTab) && IsPrimaryKeyIndex(pIdx) ){
1616f82e85aSdrh         if( isSearch ){
1626f82e85aSdrh           zFmt = "PRIMARY KEY";
1636f82e85aSdrh         }
1646f82e85aSdrh       }else if( flags & WHERE_PARTIALIDX ){
1656f82e85aSdrh         zFmt = "AUTOMATIC PARTIAL COVERING INDEX";
1666f82e85aSdrh       }else if( flags & WHERE_AUTO_INDEX ){
1676f82e85aSdrh         zFmt = "AUTOMATIC COVERING INDEX";
1686f82e85aSdrh       }else if( flags & WHERE_IDX_ONLY ){
1696f82e85aSdrh         zFmt = "COVERING INDEX %s";
1706f82e85aSdrh       }else{
1716f82e85aSdrh         zFmt = "INDEX %s";
1726f82e85aSdrh       }
1736f82e85aSdrh       if( zFmt ){
1740cdbe1aeSdrh         sqlite3_str_append(&str, " USING ", 7);
1750cdbe1aeSdrh         sqlite3_str_appendf(&str, zFmt, pIdx->zName);
1768faee877Sdrh         explainIndexRange(&str, pLoop);
1776f82e85aSdrh       }
1786f82e85aSdrh     }else if( (flags & WHERE_IPK)!=0 && (flags & WHERE_CONSTRAINT)!=0 ){
179d37bea5bSdrh       const char *zRangeOp;
1806f82e85aSdrh       if( flags&(WHERE_COLUMN_EQ|WHERE_COLUMN_IN) ){
181d37bea5bSdrh         zRangeOp = "=";
1826f82e85aSdrh       }else if( (flags&WHERE_BOTH_LIMIT)==WHERE_BOTH_LIMIT ){
183d37bea5bSdrh         zRangeOp = ">? AND rowid<";
1846f82e85aSdrh       }else if( flags&WHERE_BTM_LIMIT ){
185d37bea5bSdrh         zRangeOp = ">";
1866f82e85aSdrh       }else{
1876f82e85aSdrh         assert( flags&WHERE_TOP_LIMIT);
188d37bea5bSdrh         zRangeOp = "<";
1896f82e85aSdrh       }
1900cdbe1aeSdrh       sqlite3_str_appendf(&str,
1910cdbe1aeSdrh           " USING INTEGER PRIMARY KEY (rowid%s?)",zRangeOp);
1926f82e85aSdrh     }
1936f82e85aSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
1946f82e85aSdrh     else if( (flags & WHERE_VIRTUALTABLE)!=0 ){
1950cdbe1aeSdrh       sqlite3_str_appendf(&str, " VIRTUAL TABLE INDEX %d:%s",
1966f82e85aSdrh                   pLoop->u.vtab.idxNum, pLoop->u.vtab.idxStr);
1976f82e85aSdrh     }
1986f82e85aSdrh #endif
1996f82e85aSdrh #ifdef SQLITE_EXPLAIN_ESTIMATED_ROWS
2006f82e85aSdrh     if( pLoop->nOut>=10 ){
2010cdbe1aeSdrh       sqlite3_str_appendf(&str, " (~%llu rows)",
2020cdbe1aeSdrh              sqlite3LogEstToInt(pLoop->nOut));
2036f82e85aSdrh     }else{
2040cdbe1aeSdrh       sqlite3_str_append(&str, " (~1 row)", 9);
2056f82e85aSdrh     }
2066f82e85aSdrh #endif
2076f82e85aSdrh     zMsg = sqlite3StrAccumFinish(&str);
208bd462bccSdrh     sqlite3ExplainBreakpoint("",zMsg);
209e2ca99c9Sdrh     ret = sqlite3VdbeAddOp4(v, OP_Explain, sqlite3VdbeCurrentAddr(v),
210e2ca99c9Sdrh                             pParse->addrExplain, 0, zMsg,P4_DYNAMIC);
2116f82e85aSdrh   }
2126f82e85aSdrh   return ret;
2136f82e85aSdrh }
2146f82e85aSdrh #endif /* SQLITE_OMIT_EXPLAIN */
2156f82e85aSdrh 
2166f82e85aSdrh #ifdef SQLITE_ENABLE_STMT_SCANSTATUS
2176f82e85aSdrh /*
2186f82e85aSdrh ** Configure the VM passed as the first argument with an
2196f82e85aSdrh ** sqlite3_stmt_scanstatus() entry corresponding to the scan used to
2206f82e85aSdrh ** implement level pLvl. Argument pSrclist is a pointer to the FROM
2216f82e85aSdrh ** clause that the scan reads data from.
2226f82e85aSdrh **
2236f82e85aSdrh ** If argument addrExplain is not 0, it must be the address of an
2246f82e85aSdrh ** OP_Explain instruction that describes the same loop.
2256f82e85aSdrh */
2266f82e85aSdrh void sqlite3WhereAddScanStatus(
2276f82e85aSdrh   Vdbe *v,                        /* Vdbe to add scanstatus entry to */
2286f82e85aSdrh   SrcList *pSrclist,              /* FROM clause pLvl reads data from */
2296f82e85aSdrh   WhereLevel *pLvl,               /* Level to add scanstatus() entry for */
2306f82e85aSdrh   int addrExplain                 /* Address of OP_Explain (or 0) */
2316f82e85aSdrh ){
2326f82e85aSdrh   const char *zObj = 0;
2336f82e85aSdrh   WhereLoop *pLoop = pLvl->pWLoop;
2346f82e85aSdrh   if( (pLoop->wsFlags & WHERE_VIRTUALTABLE)==0  &&  pLoop->u.btree.pIndex!=0 ){
2356f82e85aSdrh     zObj = pLoop->u.btree.pIndex->zName;
2366f82e85aSdrh   }else{
2376f82e85aSdrh     zObj = pSrclist->a[pLvl->iFrom].zName;
2386f82e85aSdrh   }
2396f82e85aSdrh   sqlite3VdbeScanStatus(
2406f82e85aSdrh       v, addrExplain, pLvl->addrBody, pLvl->addrVisit, pLoop->nOut, zObj
2416f82e85aSdrh   );
2426f82e85aSdrh }
2436f82e85aSdrh #endif
2446f82e85aSdrh 
2456f82e85aSdrh 
2466f82e85aSdrh /*
2476f82e85aSdrh ** Disable a term in the WHERE clause.  Except, do not disable the term
2486f82e85aSdrh ** if it controls a LEFT OUTER JOIN and it did not originate in the ON
2496f82e85aSdrh ** or USING clause of that join.
2506f82e85aSdrh **
2516f82e85aSdrh ** Consider the term t2.z='ok' in the following queries:
2526f82e85aSdrh **
2536f82e85aSdrh **   (1)  SELECT * FROM t1 LEFT JOIN t2 ON t1.a=t2.x WHERE t2.z='ok'
2546f82e85aSdrh **   (2)  SELECT * FROM t1 LEFT JOIN t2 ON t1.a=t2.x AND t2.z='ok'
2556f82e85aSdrh **   (3)  SELECT * FROM t1, t2 WHERE t1.a=t2.x AND t2.z='ok'
2566f82e85aSdrh **
2576f82e85aSdrh ** The t2.z='ok' is disabled in the in (2) because it originates
2586f82e85aSdrh ** in the ON clause.  The term is disabled in (3) because it is not part
2596f82e85aSdrh ** of a LEFT OUTER JOIN.  In (1), the term is not disabled.
2606f82e85aSdrh **
2616f82e85aSdrh ** Disabling a term causes that term to not be tested in the inner loop
2626f82e85aSdrh ** of the join.  Disabling is an optimization.  When terms are satisfied
2636f82e85aSdrh ** by indices, we disable them to prevent redundant tests in the inner
2646f82e85aSdrh ** loop.  We would get the correct results if nothing were ever disabled,
2656f82e85aSdrh ** but joins might run a little slower.  The trick is to disable as much
2666f82e85aSdrh ** as we can without disabling too much.  If we disabled in (1), we'd get
2676f82e85aSdrh ** the wrong answer.  See ticket #813.
2686f82e85aSdrh **
2696f82e85aSdrh ** If all the children of a term are disabled, then that term is also
2706f82e85aSdrh ** automatically disabled.  In this way, terms get disabled if derived
2716f82e85aSdrh ** virtual terms are tested first.  For example:
2726f82e85aSdrh **
2736f82e85aSdrh **      x GLOB 'abc*' AND x>='abc' AND x<'acd'
2746f82e85aSdrh **      \___________/     \______/     \_____/
2756f82e85aSdrh **         parent          child1       child2
2766f82e85aSdrh **
2776f82e85aSdrh ** Only the parent term was in the original WHERE clause.  The child1
2786f82e85aSdrh ** and child2 terms were added by the LIKE optimization.  If both of
2796f82e85aSdrh ** the virtual child terms are valid, then testing of the parent can be
2806f82e85aSdrh ** skipped.
2816f82e85aSdrh **
2826f82e85aSdrh ** Usually the parent term is marked as TERM_CODED.  But if the parent
2836f82e85aSdrh ** term was originally TERM_LIKE, then the parent gets TERM_LIKECOND instead.
2846f82e85aSdrh ** The TERM_LIKECOND marking indicates that the term should be coded inside
2856f82e85aSdrh ** a conditional such that is only evaluated on the second pass of a
2866f82e85aSdrh ** LIKE-optimization loop, when scanning BLOBs instead of strings.
2876f82e85aSdrh */
2886f82e85aSdrh static void disableTerm(WhereLevel *pLevel, WhereTerm *pTerm){
2896f82e85aSdrh   int nLoop = 0;
2909d9c41e2Sdrh   assert( pTerm!=0 );
2919d9c41e2Sdrh   while( (pTerm->wtFlags & TERM_CODED)==0
2926f82e85aSdrh       && (pLevel->iLeftJoin==0 || ExprHasProperty(pTerm->pExpr, EP_FromJoin))
2936f82e85aSdrh       && (pLevel->notReady & pTerm->prereqAll)==0
2946f82e85aSdrh   ){
2956f82e85aSdrh     if( nLoop && (pTerm->wtFlags & TERM_LIKE)!=0 ){
2966f82e85aSdrh       pTerm->wtFlags |= TERM_LIKECOND;
2976f82e85aSdrh     }else{
2986f82e85aSdrh       pTerm->wtFlags |= TERM_CODED;
2996f82e85aSdrh     }
30023634898Sdrh #ifdef WHERETRACE_ENABLED
30123634898Sdrh     if( sqlite3WhereTrace & 0x20000 ){
30223634898Sdrh       sqlite3DebugPrintf("DISABLE-");
30323634898Sdrh       sqlite3WhereTermPrint(pTerm, (int)(pTerm - (pTerm->pWC->a)));
30423634898Sdrh     }
30523634898Sdrh #endif
3066f82e85aSdrh     if( pTerm->iParent<0 ) break;
3076f82e85aSdrh     pTerm = &pTerm->pWC->a[pTerm->iParent];
3089d9c41e2Sdrh     assert( pTerm!=0 );
3096f82e85aSdrh     pTerm->nChild--;
3106f82e85aSdrh     if( pTerm->nChild!=0 ) break;
3116f82e85aSdrh     nLoop++;
3126f82e85aSdrh   }
3136f82e85aSdrh }
3146f82e85aSdrh 
3156f82e85aSdrh /*
3166f82e85aSdrh ** Code an OP_Affinity opcode to apply the column affinity string zAff
3176f82e85aSdrh ** to the n registers starting at base.
3186f82e85aSdrh **
31996fb16eeSdrh ** As an optimization, SQLITE_AFF_BLOB and SQLITE_AFF_NONE entries (which
32096fb16eeSdrh ** are no-ops) at the beginning and end of zAff are ignored.  If all entries
32196fb16eeSdrh ** in zAff are SQLITE_AFF_BLOB or SQLITE_AFF_NONE, then no code gets generated.
3226f82e85aSdrh **
3236f82e85aSdrh ** This routine makes its own copy of zAff so that the caller is free
3246f82e85aSdrh ** to modify zAff after this routine returns.
3256f82e85aSdrh */
3266f82e85aSdrh static void codeApplyAffinity(Parse *pParse, int base, int n, char *zAff){
3276f82e85aSdrh   Vdbe *v = pParse->pVdbe;
3286f82e85aSdrh   if( zAff==0 ){
3296f82e85aSdrh     assert( pParse->db->mallocFailed );
3306f82e85aSdrh     return;
3316f82e85aSdrh   }
3326f82e85aSdrh   assert( v!=0 );
3336f82e85aSdrh 
33496fb16eeSdrh   /* Adjust base and n to skip over SQLITE_AFF_BLOB and SQLITE_AFF_NONE
33596fb16eeSdrh   ** entries at the beginning and end of the affinity string.
3366f82e85aSdrh   */
33796fb16eeSdrh   assert( SQLITE_AFF_NONE<SQLITE_AFF_BLOB );
33896fb16eeSdrh   while( n>0 && zAff[0]<=SQLITE_AFF_BLOB ){
3396f82e85aSdrh     n--;
3406f82e85aSdrh     base++;
3416f82e85aSdrh     zAff++;
3426f82e85aSdrh   }
34396fb16eeSdrh   while( n>1 && zAff[n-1]<=SQLITE_AFF_BLOB ){
3446f82e85aSdrh     n--;
3456f82e85aSdrh   }
3466f82e85aSdrh 
3476f82e85aSdrh   /* Code the OP_Affinity opcode if there is anything left to do. */
3486f82e85aSdrh   if( n>0 ){
3499b34abeeSdrh     sqlite3VdbeAddOp4(v, OP_Affinity, base, n, 0, zAff, n);
3506f82e85aSdrh   }
3516f82e85aSdrh }
3526f82e85aSdrh 
353b7ca2177Sdan /*
354b7ca2177Sdan ** Expression pRight, which is the RHS of a comparison operation, is
355b7ca2177Sdan ** either a vector of n elements or, if n==1, a scalar expression.
356b7ca2177Sdan ** Before the comparison operation, affinity zAff is to be applied
357b7ca2177Sdan ** to the pRight values. This function modifies characters within the
358b7ca2177Sdan ** affinity string to SQLITE_AFF_BLOB if either:
359b7ca2177Sdan **
360b7ca2177Sdan **   * the comparison will be performed with no affinity, or
361b7ca2177Sdan **   * the affinity change in zAff is guaranteed not to change the value.
362b7ca2177Sdan */
363b7ca2177Sdan static void updateRangeAffinityStr(
364b7ca2177Sdan   Expr *pRight,                   /* RHS of comparison */
365b7ca2177Sdan   int n,                          /* Number of vector elements in comparison */
366b7ca2177Sdan   char *zAff                      /* Affinity string to modify */
367b7ca2177Sdan ){
368b7ca2177Sdan   int i;
369b7ca2177Sdan   for(i=0; i<n; i++){
370b7ca2177Sdan     Expr *p = sqlite3VectorFieldSubexpr(pRight, i);
371b7ca2177Sdan     if( sqlite3CompareAffinity(p, zAff[i])==SQLITE_AFF_BLOB
372b7ca2177Sdan      || sqlite3ExprNeedsNoAffinityChange(p, zAff[i])
373b7ca2177Sdan     ){
374b7ca2177Sdan       zAff[i] = SQLITE_AFF_BLOB;
375b7ca2177Sdan     }
376b7ca2177Sdan   }
377b7ca2177Sdan }
3786f82e85aSdrh 
3792410243eSdrh 
3802410243eSdrh /*
3812410243eSdrh ** pX is an expression of the form:  (vector) IN (SELECT ...)
3822410243eSdrh ** In other words, it is a vector IN operator with a SELECT clause on the
3832410243eSdrh ** LHS.  But not all terms in the vector are indexable and the terms might
3842410243eSdrh ** not be in the correct order for indexing.
3859b1ecb67Sdrh **
3862410243eSdrh ** This routine makes a copy of the input pX expression and then adjusts
3872410243eSdrh ** the vector on the LHS with corresponding changes to the SELECT so that
3882410243eSdrh ** the vector contains only index terms and those terms are in the correct
3892410243eSdrh ** order.  The modified IN expression is returned.  The caller is responsible
3902410243eSdrh ** for deleting the returned expression.
3912410243eSdrh **
3922410243eSdrh ** Example:
3932410243eSdrh **
3942410243eSdrh **    CREATE TABLE t1(a,b,c,d,e,f);
3952410243eSdrh **    CREATE INDEX t1x1 ON t1(e,c);
3962410243eSdrh **    SELECT * FROM t1 WHERE (a,b,c,d,e) IN (SELECT v,w,x,y,z FROM t2)
3972410243eSdrh **                           \_______________________________________/
3982410243eSdrh **                                     The pX expression
3992410243eSdrh **
4002410243eSdrh ** Since only columns e and c can be used with the index, in that order,
4012410243eSdrh ** the modified IN expression that is returned will be:
4022410243eSdrh **
4032410243eSdrh **        (e,c) IN (SELECT z,x FROM t2)
4042410243eSdrh **
4052410243eSdrh ** The reduced pX is different from the original (obviously) and thus is
4062410243eSdrh ** only used for indexing, to improve performance.  The original unaltered
4072410243eSdrh ** IN expression must also be run on each output row for correctness.
4089b1ecb67Sdrh */
4092410243eSdrh static Expr *removeUnindexableInClauseTerms(
4102410243eSdrh   Parse *pParse,        /* The parsing context */
4112410243eSdrh   int iEq,              /* Look at loop terms starting here */
4122410243eSdrh   WhereLoop *pLoop,     /* The current loop */
4132410243eSdrh   Expr *pX              /* The IN expression to be reduced */
4142410243eSdrh ){
4152410243eSdrh   sqlite3 *db = pParse->db;
41669843342Sdan   Expr *pNew;
41769843342Sdan   pNew = sqlite3ExprDup(db, pX, 0);
4182410243eSdrh   if( db->mallocFailed==0 ){
419*a4eeccdfSdrh     ExprList *pOrigRhs;         /* Original unmodified RHS */
420*a4eeccdfSdrh     ExprList *pOrigLhs;         /* Original unmodified LHS */
4212410243eSdrh     ExprList *pRhs = 0;         /* New RHS after modifications */
4222410243eSdrh     ExprList *pLhs = 0;         /* New LHS after mods */
4232410243eSdrh     int i;                      /* Loop counter */
4242410243eSdrh     Select *pSelect;            /* Pointer to the SELECT on the RHS */
4252410243eSdrh 
426*a4eeccdfSdrh     assert( ExprUseXSelect(pNew) );
427*a4eeccdfSdrh     pOrigRhs = pNew->x.pSelect->pEList;
428*a4eeccdfSdrh     assert( pNew->pLeft!=0 );
429*a4eeccdfSdrh     assert( ExprUseXList(pNew->pLeft) );
430*a4eeccdfSdrh     pOrigLhs = pNew->pLeft->x.pList;
4312410243eSdrh     for(i=iEq; i<pLoop->nLTerm; i++){
4322410243eSdrh       if( pLoop->aLTerm[i]->pExpr==pX ){
43375fa2663Sdrh         int iField = pLoop->aLTerm[i]->u.x.iField - 1;
434c6e519f3Sdrh         if( pOrigRhs->a[iField].pExpr==0 ) continue; /* Duplicate PK column */
4352410243eSdrh         pRhs = sqlite3ExprListAppend(pParse, pRhs, pOrigRhs->a[iField].pExpr);
4362410243eSdrh         pOrigRhs->a[iField].pExpr = 0;
4372410243eSdrh         assert( pOrigLhs->a[iField].pExpr!=0 );
4382410243eSdrh         pLhs = sqlite3ExprListAppend(pParse, pLhs, pOrigLhs->a[iField].pExpr);
4392410243eSdrh         pOrigLhs->a[iField].pExpr = 0;
4409b1ecb67Sdrh       }
4419b1ecb67Sdrh     }
4422410243eSdrh     sqlite3ExprListDelete(db, pOrigRhs);
4432410243eSdrh     sqlite3ExprListDelete(db, pOrigLhs);
4442410243eSdrh     pNew->pLeft->x.pList = pLhs;
4452410243eSdrh     pNew->x.pSelect->pEList = pRhs;
4462410243eSdrh     if( pLhs && pLhs->nExpr==1 ){
4472410243eSdrh       /* Take care here not to generate a TK_VECTOR containing only a
4482410243eSdrh       ** single value. Since the parser never creates such a vector, some
4492410243eSdrh       ** of the subroutines do not handle this case.  */
4502410243eSdrh       Expr *p = pLhs->a[0].pExpr;
4512410243eSdrh       pLhs->a[0].pExpr = 0;
4522410243eSdrh       sqlite3ExprDelete(db, pNew->pLeft);
4532410243eSdrh       pNew->pLeft = p;
4549b1ecb67Sdrh     }
4552410243eSdrh     pSelect = pNew->x.pSelect;
4562410243eSdrh     if( pSelect->pOrderBy ){
4572410243eSdrh       /* If the SELECT statement has an ORDER BY clause, zero the
4582410243eSdrh       ** iOrderByCol variables. These are set to non-zero when an
4592410243eSdrh       ** ORDER BY term exactly matches one of the terms of the
4602410243eSdrh       ** result-set. Since the result-set of the SELECT statement may
4612410243eSdrh       ** have been modified or reordered, these variables are no longer
4622410243eSdrh       ** set correctly.  Since setting them is just an optimization,
4632410243eSdrh       ** it's easiest just to zero them here.  */
4642410243eSdrh       ExprList *pOrderBy = pSelect->pOrderBy;
4652410243eSdrh       for(i=0; i<pOrderBy->nExpr; i++){
4662410243eSdrh         pOrderBy->a[i].u.x.iOrderByCol = 0;
4672410243eSdrh       }
4682410243eSdrh     }
4692410243eSdrh 
4702410243eSdrh #if 0
4712410243eSdrh     printf("For indexing, change the IN expr:\n");
4722410243eSdrh     sqlite3TreeViewExpr(0, pX, 0);
4732410243eSdrh     printf("Into:\n");
4742410243eSdrh     sqlite3TreeViewExpr(0, pNew, 0);
4752410243eSdrh #endif
4762410243eSdrh   }
4772410243eSdrh   return pNew;
4782410243eSdrh }
4799b1ecb67Sdrh 
4809b1ecb67Sdrh 
4816f82e85aSdrh /*
4826f82e85aSdrh ** Generate code for a single equality term of the WHERE clause.  An equality
4836f82e85aSdrh ** term can be either X=expr or X IN (...).   pTerm is the term to be
4846f82e85aSdrh ** coded.
4856f82e85aSdrh **
486099a0f5fSdrh ** The current value for the constraint is left in a register, the index
487099a0f5fSdrh ** of which is returned.  An attempt is made store the result in iTarget but
488099a0f5fSdrh ** this is only guaranteed for TK_ISNULL and TK_IN constraints.  If the
489099a0f5fSdrh ** constraint is a TK_EQ or TK_IS, then the current value might be left in
490099a0f5fSdrh ** some other register and it is the caller's responsibility to compensate.
4916f82e85aSdrh **
4924602b8e8Sdrh ** For a constraint of the form X=expr, the expression is evaluated in
4934602b8e8Sdrh ** straight-line code.  For constraints of the form X IN (...)
4946f82e85aSdrh ** this routine sets up a loop that will iterate over all values of X.
4956f82e85aSdrh */
4966f82e85aSdrh static int codeEqualityTerm(
4976f82e85aSdrh   Parse *pParse,      /* The parsing context */
4986f82e85aSdrh   WhereTerm *pTerm,   /* The term of the WHERE clause to be coded */
4996f82e85aSdrh   WhereLevel *pLevel, /* The level of the FROM clause we are working on */
5006f82e85aSdrh   int iEq,            /* Index of the equality term within this level */
5016f82e85aSdrh   int bRev,           /* True for reverse-order IN operations */
5026f82e85aSdrh   int iTarget         /* Attempt to leave results in this register */
5036f82e85aSdrh ){
5046f82e85aSdrh   Expr *pX = pTerm->pExpr;
5056f82e85aSdrh   Vdbe *v = pParse->pVdbe;
5066f82e85aSdrh   int iReg;                  /* Register holding results */
5076f82e85aSdrh 
5088da209b1Sdan   assert( pLevel->pWLoop->aLTerm[iEq]==pTerm );
5096f82e85aSdrh   assert( iTarget>0 );
5106f82e85aSdrh   if( pX->op==TK_EQ || pX->op==TK_IS ){
511fc7f27b9Sdrh     iReg = sqlite3ExprCodeTarget(pParse, pX->pRight, iTarget);
5126f82e85aSdrh   }else if( pX->op==TK_ISNULL ){
5136f82e85aSdrh     iReg = iTarget;
5146f82e85aSdrh     sqlite3VdbeAddOp2(v, OP_Null, 0, iReg);
5156f82e85aSdrh #ifndef SQLITE_OMIT_SUBQUERY
5166f82e85aSdrh   }else{
517ac6b47d1Sdrh     int eType = IN_INDEX_NOOP;
5186f82e85aSdrh     int iTab;
5196f82e85aSdrh     struct InLoop *pIn;
5206f82e85aSdrh     WhereLoop *pLoop = pLevel->pWLoop;
5218da209b1Sdan     int i;
5228da209b1Sdan     int nEq = 0;
5238da209b1Sdan     int *aiMap = 0;
5246f82e85aSdrh 
5256f82e85aSdrh     if( (pLoop->wsFlags & WHERE_VIRTUALTABLE)==0
5266f82e85aSdrh       && pLoop->u.btree.pIndex!=0
5276f82e85aSdrh       && pLoop->u.btree.pIndex->aSortOrder[iEq]
5286f82e85aSdrh     ){
5296f82e85aSdrh       testcase( iEq==0 );
5306f82e85aSdrh       testcase( bRev );
5316f82e85aSdrh       bRev = !bRev;
5326f82e85aSdrh     }
5336f82e85aSdrh     assert( pX->op==TK_IN );
5346f82e85aSdrh     iReg = iTarget;
5358da209b1Sdan 
5368da209b1Sdan     for(i=0; i<iEq; i++){
5378da209b1Sdan       if( pLoop->aLTerm[i] && pLoop->aLTerm[i]->pExpr==pX ){
5388da209b1Sdan         disableTerm(pLevel, pTerm);
5398da209b1Sdan         return iTarget;
5408da209b1Sdan       }
5418da209b1Sdan     }
5428da209b1Sdan     for(i=iEq;i<pLoop->nLTerm; i++){
5432410243eSdrh       assert( pLoop->aLTerm[i]!=0 );
5442410243eSdrh       if( pLoop->aLTerm[i]->pExpr==pX ) nEq++;
5458da209b1Sdan     }
5468da209b1Sdan 
5472c04131cSdrh     iTab = 0;
548*a4eeccdfSdrh     if( !ExprUseXSelect(pX) || pX->x.pSelect->pEList->nExpr==1 ){
5492c04131cSdrh       eType = sqlite3FindInIndex(pParse, pX, IN_INDEX_LOOP, 0, 0, &iTab);
5508da209b1Sdan     }else{
5518da209b1Sdan       sqlite3 *db = pParse->db;
5522410243eSdrh       pX = removeUnindexableInClauseTerms(pParse, iEq, pLoop, pX);
5539b1ecb67Sdrh 
554ac6b47d1Sdrh       if( !db->mallocFailed ){
555c7a77ae1Sdrh         aiMap = (int*)sqlite3DbMallocZero(pParse->db, sizeof(int)*nEq);
5562c04131cSdrh         eType = sqlite3FindInIndex(pParse, pX, IN_INDEX_LOOP, 0, aiMap, &iTab);
5572c04131cSdrh         pTerm->pExpr->iTable = iTab;
558ac6b47d1Sdrh       }
5592410243eSdrh       sqlite3ExprDelete(db, pX);
5602410243eSdrh       pX = pTerm->pExpr;
5618da209b1Sdan     }
5628da209b1Sdan 
5636f82e85aSdrh     if( eType==IN_INDEX_INDEX_DESC ){
5646f82e85aSdrh       testcase( bRev );
5656f82e85aSdrh       bRev = !bRev;
5666f82e85aSdrh     }
5676f82e85aSdrh     sqlite3VdbeAddOp2(v, bRev ? OP_Last : OP_Rewind, iTab, 0);
5686f82e85aSdrh     VdbeCoverageIf(v, bRev);
5696f82e85aSdrh     VdbeCoverageIf(v, !bRev);
5706f82e85aSdrh     assert( (pLoop->wsFlags & WHERE_MULTI_OR)==0 );
5718da209b1Sdan 
5726f82e85aSdrh     pLoop->wsFlags |= WHERE_IN_ABLE;
5736f82e85aSdrh     if( pLevel->u.in.nIn==0 ){
574ec4ccdbcSdrh       pLevel->addrNxt = sqlite3VdbeMakeLabel(pParse);
5756f82e85aSdrh     }
57646f0f4e5Sdrh     if( iEq>0 && (pLoop->wsFlags & WHERE_IN_SEEKSCAN)==0 ){
577fa17e134Sdrh       pLoop->wsFlags |= WHERE_IN_EARLYOUT;
578fa17e134Sdrh     }
5798da209b1Sdan 
5808da209b1Sdan     i = pLevel->u.in.nIn;
5818da209b1Sdan     pLevel->u.in.nIn += nEq;
5826f82e85aSdrh     pLevel->u.in.aInLoop =
5836f82e85aSdrh        sqlite3DbReallocOrFree(pParse->db, pLevel->u.in.aInLoop,
5846f82e85aSdrh                               sizeof(pLevel->u.in.aInLoop[0])*pLevel->u.in.nIn);
5856f82e85aSdrh     pIn = pLevel->u.in.aInLoop;
5866f82e85aSdrh     if( pIn ){
5878da209b1Sdan       int iMap = 0;               /* Index in aiMap[] */
5888da209b1Sdan       pIn += i;
5897887d7f2Sdan       for(i=iEq;i<pLoop->nLTerm; i++){
5908da209b1Sdan         if( pLoop->aLTerm[i]->pExpr==pX ){
591edc3537cSdan           int iOut = iReg + i - iEq;
5926f82e85aSdrh           if( eType==IN_INDEX_ROWID ){
593edc3537cSdan             pIn->addrInTop = sqlite3VdbeAddOp2(v, OP_Rowid, iTab, iOut);
5946f82e85aSdrh           }else{
5958da209b1Sdan             int iCol = aiMap ? aiMap[iMap++] : 0;
5968da209b1Sdan             pIn->addrInTop = sqlite3VdbeAddOp3(v,OP_Column,iTab, iCol, iOut);
5976f82e85aSdrh           }
59803181c8cSdrh           sqlite3VdbeAddOp1(v, OP_IsNull, iOut); VdbeCoverage(v);
5998da209b1Sdan           if( i==iEq ){
6008da209b1Sdan             pIn->iCur = iTab;
601f1949b66Sdrh             pIn->eEndLoopOp = bRev ? OP_Prev : OP_Next;
60274ebaadcSdan             if( iEq>0 ){
603a0368d93Sdrh               pIn->iBase = iReg - i;
604a0368d93Sdrh               pIn->nPrefix = i;
6058da209b1Sdan             }else{
60686d0ea75Sdrh               pIn->nPrefix = 0;
60786d0ea75Sdrh             }
60886d0ea75Sdrh           }else{
6098da209b1Sdan             pIn->eEndLoopOp = OP_Noop;
6108da209b1Sdan           }
6117887d7f2Sdan           pIn++;
6128da209b1Sdan         }
6138da209b1Sdan       }
61467306cb3Sdrh       testcase( iEq>0
61567306cb3Sdrh                 && (pLoop->wsFlags & WHERE_IN_SEEKSCAN)==0
61667306cb3Sdrh                 && (pLoop->wsFlags & WHERE_VIRTUALTABLE)!=0 );
61767306cb3Sdrh       if( iEq>0
61867306cb3Sdrh        && (pLoop->wsFlags & (WHERE_IN_SEEKSCAN|WHERE_VIRTUALTABLE))==0
61967306cb3Sdrh       ){
620fa17e134Sdrh         sqlite3VdbeAddOp3(v, OP_SeekHit, pLevel->iIdxCur, 0, iEq);
621fa17e134Sdrh       }
6226f82e85aSdrh     }else{
6236f82e85aSdrh       pLevel->u.in.nIn = 0;
6246f82e85aSdrh     }
6258da209b1Sdan     sqlite3DbFree(pParse->db, aiMap);
6266f82e85aSdrh #endif
6276f82e85aSdrh   }
62867656ac7Sdrh 
62967656ac7Sdrh   /* As an optimization, try to disable the WHERE clause term that is
63067656ac7Sdrh   ** driving the index as it will always be true.  The correct answer is
63167656ac7Sdrh   ** obtained regardless, but we might get the answer with fewer CPU cycles
63267656ac7Sdrh   ** by omitting the term.
63367656ac7Sdrh   **
63467656ac7Sdrh   ** But do not disable the term unless we are certain that the term is
63567656ac7Sdrh   ** not a transitive constraint.  For an example of where that does not
63667656ac7Sdrh   ** work, see https://sqlite.org/forum/forumpost/eb8613976a (2021-05-04)
63767656ac7Sdrh   */
63867656ac7Sdrh   if( (pLevel->pWLoop->wsFlags & WHERE_TRANSCONS)==0
63967656ac7Sdrh    || (pTerm->eOperator & WO_EQUIV)==0
64067656ac7Sdrh   ){
6416f82e85aSdrh     disableTerm(pLevel, pTerm);
64267656ac7Sdrh   }
64367656ac7Sdrh 
6446f82e85aSdrh   return iReg;
6456f82e85aSdrh }
6466f82e85aSdrh 
6476f82e85aSdrh /*
6486f82e85aSdrh ** Generate code that will evaluate all == and IN constraints for an
6496f82e85aSdrh ** index scan.
6506f82e85aSdrh **
6516f82e85aSdrh ** For example, consider table t1(a,b,c,d,e,f) with index i1(a,b,c).
6526f82e85aSdrh ** Suppose the WHERE clause is this:  a==5 AND b IN (1,2,3) AND c>5 AND c<10
6536f82e85aSdrh ** The index has as many as three equality constraints, but in this
6546f82e85aSdrh ** example, the third "c" value is an inequality.  So only two
6556f82e85aSdrh ** constraints are coded.  This routine will generate code to evaluate
6566f82e85aSdrh ** a==5 and b IN (1,2,3).  The current values for a and b will be stored
6576f82e85aSdrh ** in consecutive registers and the index of the first register is returned.
6586f82e85aSdrh **
6596f82e85aSdrh ** In the example above nEq==2.  But this subroutine works for any value
6606f82e85aSdrh ** of nEq including 0.  If nEq==0, this routine is nearly a no-op.
6616f82e85aSdrh ** The only thing it does is allocate the pLevel->iMem memory cell and
6626f82e85aSdrh ** compute the affinity string.
6636f82e85aSdrh **
6646f82e85aSdrh ** The nExtraReg parameter is 0 or 1.  It is 0 if all WHERE clause constraints
6656f82e85aSdrh ** are == or IN and are covered by the nEq.  nExtraReg is 1 if there is
6666f82e85aSdrh ** an inequality constraint (such as the "c>=5 AND c<10" in the example) that
6676f82e85aSdrh ** occurs after the nEq quality constraints.
6686f82e85aSdrh **
6696f82e85aSdrh ** This routine allocates a range of nEq+nExtraReg memory cells and returns
6706f82e85aSdrh ** the index of the first memory cell in that range. The code that
6716f82e85aSdrh ** calls this routine will use that memory range to store keys for
6726f82e85aSdrh ** start and termination conditions of the loop.
6736f82e85aSdrh ** key value of the loop.  If one or more IN operators appear, then
6746f82e85aSdrh ** this routine allocates an additional nEq memory cells for internal
6756f82e85aSdrh ** use.
6766f82e85aSdrh **
6776f82e85aSdrh ** Before returning, *pzAff is set to point to a buffer containing a
6786f82e85aSdrh ** copy of the column affinity string of the index allocated using
6796f82e85aSdrh ** sqlite3DbMalloc(). Except, entries in the copy of the string associated
6806f82e85aSdrh ** with equality constraints that use BLOB or NONE affinity are set to
6816f82e85aSdrh ** SQLITE_AFF_BLOB. This is to deal with SQL such as the following:
6826f82e85aSdrh **
6836f82e85aSdrh **   CREATE TABLE t1(a TEXT PRIMARY KEY, b);
6846f82e85aSdrh **   SELECT ... FROM t1 AS t2, t1 WHERE t1.a = t2.b;
6856f82e85aSdrh **
6866f82e85aSdrh ** In the example above, the index on t1(a) has TEXT affinity. But since
6876f82e85aSdrh ** the right hand side of the equality constraint (t2.b) has BLOB/NONE affinity,
6886f82e85aSdrh ** no conversion should be attempted before using a t2.b value as part of
6896f82e85aSdrh ** a key to search the index. Hence the first byte in the returned affinity
6906f82e85aSdrh ** string in this example would be set to SQLITE_AFF_BLOB.
6916f82e85aSdrh */
6926f82e85aSdrh static int codeAllEqualityTerms(
6936f82e85aSdrh   Parse *pParse,        /* Parsing context */
6946f82e85aSdrh   WhereLevel *pLevel,   /* Which nested loop of the FROM we are coding */
6956f82e85aSdrh   int bRev,             /* Reverse the order of IN operators */
6966f82e85aSdrh   int nExtraReg,        /* Number of extra registers to allocate */
6976f82e85aSdrh   char **pzAff          /* OUT: Set to point to affinity string */
6986f82e85aSdrh ){
6996f82e85aSdrh   u16 nEq;                      /* The number of == or IN constraints to code */
7006f82e85aSdrh   u16 nSkip;                    /* Number of left-most columns to skip */
7016f82e85aSdrh   Vdbe *v = pParse->pVdbe;      /* The vm under construction */
7026f82e85aSdrh   Index *pIdx;                  /* The index being used for this loop */
7036f82e85aSdrh   WhereTerm *pTerm;             /* A single constraint term */
7046f82e85aSdrh   WhereLoop *pLoop;             /* The WhereLoop object */
7056f82e85aSdrh   int j;                        /* Loop counter */
7066f82e85aSdrh   int regBase;                  /* Base register */
7076f82e85aSdrh   int nReg;                     /* Number of registers to allocate */
7086f82e85aSdrh   char *zAff;                   /* Affinity string to return */
7096f82e85aSdrh 
7106f82e85aSdrh   /* This module is only called on query plans that use an index. */
7116f82e85aSdrh   pLoop = pLevel->pWLoop;
7126f82e85aSdrh   assert( (pLoop->wsFlags & WHERE_VIRTUALTABLE)==0 );
7136f82e85aSdrh   nEq = pLoop->u.btree.nEq;
7146f82e85aSdrh   nSkip = pLoop->nSkip;
7156f82e85aSdrh   pIdx = pLoop->u.btree.pIndex;
7166f82e85aSdrh   assert( pIdx!=0 );
7176f82e85aSdrh 
7186f82e85aSdrh   /* Figure out how many memory cells we will need then allocate them.
7196f82e85aSdrh   */
7206f82e85aSdrh   regBase = pParse->nMem + 1;
7216f82e85aSdrh   nReg = pLoop->u.btree.nEq + nExtraReg;
7226f82e85aSdrh   pParse->nMem += nReg;
7236f82e85aSdrh 
724e9107698Sdrh   zAff = sqlite3DbStrDup(pParse->db,sqlite3IndexAffinityStr(pParse->db,pIdx));
7254df86af3Sdrh   assert( zAff!=0 || pParse->db->mallocFailed );
7266f82e85aSdrh 
7276f82e85aSdrh   if( nSkip ){
7286f82e85aSdrh     int iIdxCur = pLevel->iIdxCur;
72931536304Sdrh     sqlite3VdbeAddOp3(v, OP_Null, 0, regBase, regBase+nSkip-1);
7306f82e85aSdrh     sqlite3VdbeAddOp1(v, (bRev?OP_Last:OP_Rewind), iIdxCur);
7316f82e85aSdrh     VdbeCoverageIf(v, bRev==0);
7326f82e85aSdrh     VdbeCoverageIf(v, bRev!=0);
7336f82e85aSdrh     VdbeComment((v, "begin skip-scan on %s", pIdx->zName));
7346f82e85aSdrh     j = sqlite3VdbeAddOp0(v, OP_Goto);
7356f82e85aSdrh     pLevel->addrSkip = sqlite3VdbeAddOp4Int(v, (bRev?OP_SeekLT:OP_SeekGT),
7366f82e85aSdrh                             iIdxCur, 0, regBase, nSkip);
7376f82e85aSdrh     VdbeCoverageIf(v, bRev==0);
7386f82e85aSdrh     VdbeCoverageIf(v, bRev!=0);
7396f82e85aSdrh     sqlite3VdbeJumpHere(v, j);
7406f82e85aSdrh     for(j=0; j<nSkip; j++){
7416f82e85aSdrh       sqlite3VdbeAddOp3(v, OP_Column, iIdxCur, j, regBase+j);
7424b92f98cSdrh       testcase( pIdx->aiColumn[j]==XN_EXPR );
743e63e8a6cSdrh       VdbeComment((v, "%s", explainIndexColumnName(pIdx, j)));
7446f82e85aSdrh     }
7456f82e85aSdrh   }
7466f82e85aSdrh 
7476f82e85aSdrh   /* Evaluate the equality constraints
7486f82e85aSdrh   */
7496f82e85aSdrh   assert( zAff==0 || (int)strlen(zAff)>=nEq );
7506f82e85aSdrh   for(j=nSkip; j<nEq; j++){
7516f82e85aSdrh     int r1;
7526f82e85aSdrh     pTerm = pLoop->aLTerm[j];
7536f82e85aSdrh     assert( pTerm!=0 );
7546f82e85aSdrh     /* The following testcase is true for indices with redundant columns.
7556f82e85aSdrh     ** Ex: CREATE INDEX i1 ON t1(a,b,a); SELECT * FROM t1 WHERE a=0 AND b=0; */
7566f82e85aSdrh     testcase( (pTerm->wtFlags & TERM_CODED)!=0 );
7576f82e85aSdrh     testcase( pTerm->wtFlags & TERM_VIRTUAL );
7586f82e85aSdrh     r1 = codeEqualityTerm(pParse, pTerm, pLevel, j, bRev, regBase+j);
7596f82e85aSdrh     if( r1!=regBase+j ){
7606f82e85aSdrh       if( nReg==1 ){
7616f82e85aSdrh         sqlite3ReleaseTempReg(pParse, regBase);
7626f82e85aSdrh         regBase = r1;
7636f82e85aSdrh       }else{
764e9de6520Sdrh         sqlite3VdbeAddOp2(v, OP_Copy, r1, regBase+j);
7656f82e85aSdrh       }
7666f82e85aSdrh     }
76727189603Sdan     if( pTerm->eOperator & WO_IN ){
76827189603Sdan       if( pTerm->pExpr->flags & EP_xIsSelect ){
7691c12657fSdan         /* No affinity ever needs to be (or should be) applied to a value
7701c12657fSdan         ** from the RHS of an "? IN (SELECT ...)" expression. The
7711c12657fSdan         ** sqlite3FindInIndex() routine has already ensured that the
7721c12657fSdan         ** affinity of the comparison has been applied to the value.  */
773aaf8a064Sdrh         if( zAff ) zAff[j] = SQLITE_AFF_BLOB;
77427189603Sdan       }
775c097e122Sdrh     }else if( (pTerm->eOperator & WO_ISNULL)==0 ){
7761c12657fSdan       Expr *pRight = pTerm->pExpr->pRight;
7776f82e85aSdrh       if( (pTerm->wtFlags & TERM_IS)==0 && sqlite3ExprCanBeNull(pRight) ){
7786f82e85aSdrh         sqlite3VdbeAddOp2(v, OP_IsNull, regBase+j, pLevel->addrBrk);
7796f82e85aSdrh         VdbeCoverage(v);
7806f82e85aSdrh       }
7815e1a7dedSdrh       if( pParse->db->mallocFailed==0 && pParse->nErr==0 ){
7826f82e85aSdrh         if( sqlite3CompareAffinity(pRight, zAff[j])==SQLITE_AFF_BLOB ){
7836f82e85aSdrh           zAff[j] = SQLITE_AFF_BLOB;
7846f82e85aSdrh         }
7856f82e85aSdrh         if( sqlite3ExprNeedsNoAffinityChange(pRight, zAff[j]) ){
7866f82e85aSdrh           zAff[j] = SQLITE_AFF_BLOB;
7876f82e85aSdrh         }
7886f82e85aSdrh       }
7896f82e85aSdrh     }
7906f82e85aSdrh   }
7916f82e85aSdrh   *pzAff = zAff;
7926f82e85aSdrh   return regBase;
7936f82e85aSdrh }
7946f82e85aSdrh 
79541d2e66eSdrh #ifndef SQLITE_LIKE_DOESNT_MATCH_BLOBS
7966f82e85aSdrh /*
79744aebff2Sdrh ** If the most recently coded instruction is a constant range constraint
79844aebff2Sdrh ** (a string literal) that originated from the LIKE optimization, then
79944aebff2Sdrh ** set P3 and P5 on the OP_String opcode so that the string will be cast
80044aebff2Sdrh ** to a BLOB at appropriate times.
8016f82e85aSdrh **
8026f82e85aSdrh ** The LIKE optimization trys to evaluate "x LIKE 'abc%'" as a range
8036f82e85aSdrh ** expression: "x>='ABC' AND x<'abd'".  But this requires that the range
8046f82e85aSdrh ** scan loop run twice, once for strings and a second time for BLOBs.
8056f82e85aSdrh ** The OP_String opcodes on the second pass convert the upper and lower
806e234cfd1Smistachkin ** bound string constants to blobs.  This routine makes the necessary changes
8076f82e85aSdrh ** to the OP_String opcodes for that to happen.
80841d2e66eSdrh **
80941d2e66eSdrh ** Except, of course, if SQLITE_LIKE_DOESNT_MATCH_BLOBS is defined, then
81041d2e66eSdrh ** only the one pass through the string space is required, so this routine
81141d2e66eSdrh ** becomes a no-op.
8126f82e85aSdrh */
8136f82e85aSdrh static void whereLikeOptimizationStringFixup(
8146f82e85aSdrh   Vdbe *v,                /* prepared statement under construction */
8156f82e85aSdrh   WhereLevel *pLevel,     /* The loop that contains the LIKE operator */
8166f82e85aSdrh   WhereTerm *pTerm        /* The upper or lower bound just coded */
8176f82e85aSdrh ){
8186f82e85aSdrh   if( pTerm->wtFlags & TERM_LIKEOPT ){
8196f82e85aSdrh     VdbeOp *pOp;
8206f82e85aSdrh     assert( pLevel->iLikeRepCntr>0 );
8216f82e85aSdrh     pOp = sqlite3VdbeGetOp(v, -1);
8226f82e85aSdrh     assert( pOp!=0 );
8236f82e85aSdrh     assert( pOp->opcode==OP_String8
8246f82e85aSdrh             || pTerm->pWC->pWInfo->pParse->db->mallocFailed );
82544aebff2Sdrh     pOp->p3 = (int)(pLevel->iLikeRepCntr>>1);  /* Register holding counter */
82644aebff2Sdrh     pOp->p5 = (u8)(pLevel->iLikeRepCntr&1);    /* ASC or DESC */
8276f82e85aSdrh   }
8286f82e85aSdrh }
82941d2e66eSdrh #else
83041d2e66eSdrh # define whereLikeOptimizationStringFixup(A,B,C)
83141d2e66eSdrh #endif
8326f82e85aSdrh 
833bec2476aSdrh #ifdef SQLITE_ENABLE_CURSOR_HINTS
8342f2b0278Sdrh /*
8352f2b0278Sdrh ** Information is passed from codeCursorHint() down to individual nodes of
8362f2b0278Sdrh ** the expression tree (by sqlite3WalkExpr()) using an instance of this
8372f2b0278Sdrh ** structure.
8382f2b0278Sdrh */
8392f2b0278Sdrh struct CCurHint {
8402f2b0278Sdrh   int iTabCur;    /* Cursor for the main table */
8412f2b0278Sdrh   int iIdxCur;    /* Cursor for the index, if pIdx!=0.  Unused otherwise */
8422f2b0278Sdrh   Index *pIdx;    /* The index used to access the table */
8432f2b0278Sdrh };
8442f2b0278Sdrh 
8452f2b0278Sdrh /*
8462f2b0278Sdrh ** This function is called for every node of an expression that is a candidate
8472f2b0278Sdrh ** for a cursor hint on an index cursor.  For TK_COLUMN nodes that reference
8482f2b0278Sdrh ** the table CCurHint.iTabCur, verify that the same column can be
8492f2b0278Sdrh ** accessed through the index.  If it cannot, then set pWalker->eCode to 1.
8502f2b0278Sdrh */
8512f2b0278Sdrh static int codeCursorHintCheckExpr(Walker *pWalker, Expr *pExpr){
8522f2b0278Sdrh   struct CCurHint *pHint = pWalker->u.pCCurHint;
8532f2b0278Sdrh   assert( pHint->pIdx!=0 );
8542f2b0278Sdrh   if( pExpr->op==TK_COLUMN
8552f2b0278Sdrh    && pExpr->iTable==pHint->iTabCur
856b9bcf7caSdrh    && sqlite3TableColumnToIndex(pHint->pIdx, pExpr->iColumn)<0
8572f2b0278Sdrh   ){
8582f2b0278Sdrh     pWalker->eCode = 1;
8592f2b0278Sdrh   }
8602f2b0278Sdrh   return WRC_Continue;
8612f2b0278Sdrh }
8622f2b0278Sdrh 
863e6912fd8Sdan /*
864e6912fd8Sdan ** Test whether or not expression pExpr, which was part of a WHERE clause,
865e6912fd8Sdan ** should be included in the cursor-hint for a table that is on the rhs
866e6912fd8Sdan ** of a LEFT JOIN. Set Walker.eCode to non-zero before returning if the
867e6912fd8Sdan ** expression is not suitable.
868e6912fd8Sdan **
869e6912fd8Sdan ** An expression is unsuitable if it might evaluate to non NULL even if
870e6912fd8Sdan ** a TK_COLUMN node that does affect the value of the expression is set
871e6912fd8Sdan ** to NULL. For example:
872e6912fd8Sdan **
873e6912fd8Sdan **   col IS NULL
874e6912fd8Sdan **   col IS NOT NULL
875e6912fd8Sdan **   coalesce(col, 1)
876e6912fd8Sdan **   CASE WHEN col THEN 0 ELSE 1 END
877e6912fd8Sdan */
878e6912fd8Sdan static int codeCursorHintIsOrFunction(Walker *pWalker, Expr *pExpr){
8792b693d63Sdan   if( pExpr->op==TK_IS
880e6912fd8Sdan    || pExpr->op==TK_ISNULL || pExpr->op==TK_ISNOT
881e6912fd8Sdan    || pExpr->op==TK_NOTNULL || pExpr->op==TK_CASE
882e6912fd8Sdan   ){
883e6912fd8Sdan     pWalker->eCode = 1;
8842b693d63Sdan   }else if( pExpr->op==TK_FUNCTION ){
8852b693d63Sdan     int d1;
8861d42ea71Sdrh     char d2[4];
8872b693d63Sdan     if( 0==sqlite3IsLikeFunction(pWalker->pParse->db, pExpr, &d1, d2) ){
8882b693d63Sdan       pWalker->eCode = 1;
889e6912fd8Sdan     }
8902b693d63Sdan   }
8912b693d63Sdan 
892e6912fd8Sdan   return WRC_Continue;
893e6912fd8Sdan }
894e6912fd8Sdan 
895bec2476aSdrh 
896bec2476aSdrh /*
897bec2476aSdrh ** This function is called on every node of an expression tree used as an
898bec2476aSdrh ** argument to the OP_CursorHint instruction. If the node is a TK_COLUMN
8992f2b0278Sdrh ** that accesses any table other than the one identified by
9002f2b0278Sdrh ** CCurHint.iTabCur, then do the following:
901bec2476aSdrh **
902bec2476aSdrh **   1) allocate a register and code an OP_Column instruction to read
903bec2476aSdrh **      the specified column into the new register, and
904bec2476aSdrh **
905bec2476aSdrh **   2) transform the expression node to a TK_REGISTER node that reads
906bec2476aSdrh **      from the newly populated register.
9072f2b0278Sdrh **
9082f2b0278Sdrh ** Also, if the node is a TK_COLUMN that does access the table idenified
9092f2b0278Sdrh ** by pCCurHint.iTabCur, and an index is being used (which we will
9102f2b0278Sdrh ** know because CCurHint.pIdx!=0) then transform the TK_COLUMN into
9112f2b0278Sdrh ** an access of the index rather than the original table.
912bec2476aSdrh */
913bec2476aSdrh static int codeCursorHintFixExpr(Walker *pWalker, Expr *pExpr){
914bec2476aSdrh   int rc = WRC_Continue;
9152f2b0278Sdrh   struct CCurHint *pHint = pWalker->u.pCCurHint;
916be312ae9Sdan   if( pExpr->op==TK_COLUMN ){
9172f2b0278Sdrh     if( pExpr->iTable!=pHint->iTabCur ){
918bec2476aSdrh       int reg = ++pWalker->pParse->nMem;   /* Register for column value */
919e3e79213Sdan       sqlite3ExprCode(pWalker->pParse, pExpr, reg);
920bec2476aSdrh       pExpr->op = TK_REGISTER;
921bec2476aSdrh       pExpr->iTable = reg;
9222f2b0278Sdrh     }else if( pHint->pIdx!=0 ){
9232f2b0278Sdrh       pExpr->iTable = pHint->iIdxCur;
924b9bcf7caSdrh       pExpr->iColumn = sqlite3TableColumnToIndex(pHint->pIdx, pExpr->iColumn);
9252f2b0278Sdrh       assert( pExpr->iColumn>=0 );
9262f2b0278Sdrh     }
927bec2476aSdrh   }else if( pExpr->op==TK_AGG_FUNCTION ){
928bec2476aSdrh     /* An aggregate function in the WHERE clause of a query means this must
929bec2476aSdrh     ** be a correlated sub-query, and expression pExpr is an aggregate from
930bec2476aSdrh     ** the parent context. Do not walk the function arguments in this case.
931bec2476aSdrh     **
932bec2476aSdrh     ** todo: It should be possible to replace this node with a TK_REGISTER
933bec2476aSdrh     ** expression, as the result of the expression must be stored in a
934bec2476aSdrh     ** register at this point. The same holds for TK_AGG_COLUMN nodes. */
935bec2476aSdrh     rc = WRC_Prune;
936bec2476aSdrh   }
937bec2476aSdrh   return rc;
938bec2476aSdrh }
939bec2476aSdrh 
940bec2476aSdrh /*
941bec2476aSdrh ** Insert an OP_CursorHint instruction if it is appropriate to do so.
942bec2476aSdrh */
943bec2476aSdrh static void codeCursorHint(
9447601294aSdrh   SrcItem *pTabItem,  /* FROM clause item */
945b413a546Sdrh   WhereInfo *pWInfo,    /* The where clause */
946b413a546Sdrh   WhereLevel *pLevel,   /* Which loop to provide hints for */
947b413a546Sdrh   WhereTerm *pEndRange  /* Hint this end-of-scan boundary term if not NULL */
948bec2476aSdrh ){
949bec2476aSdrh   Parse *pParse = pWInfo->pParse;
950bec2476aSdrh   sqlite3 *db = pParse->db;
951bec2476aSdrh   Vdbe *v = pParse->pVdbe;
952bec2476aSdrh   Expr *pExpr = 0;
9532f2b0278Sdrh   WhereLoop *pLoop = pLevel->pWLoop;
954bec2476aSdrh   int iCur;
955bec2476aSdrh   WhereClause *pWC;
956bec2476aSdrh   WhereTerm *pTerm;
957b413a546Sdrh   int i, j;
9582f2b0278Sdrh   struct CCurHint sHint;
9592f2b0278Sdrh   Walker sWalker;
960bec2476aSdrh 
961bec2476aSdrh   if( OptimizationDisabled(db, SQLITE_CursorHints) ) return;
9622f2b0278Sdrh   iCur = pLevel->iTabCur;
9632f2b0278Sdrh   assert( iCur==pWInfo->pTabList->a[pLevel->iFrom].iCursor );
9642f2b0278Sdrh   sHint.iTabCur = iCur;
9652f2b0278Sdrh   sHint.iIdxCur = pLevel->iIdxCur;
9662f2b0278Sdrh   sHint.pIdx = pLoop->u.btree.pIndex;
9672f2b0278Sdrh   memset(&sWalker, 0, sizeof(sWalker));
9682f2b0278Sdrh   sWalker.pParse = pParse;
9692f2b0278Sdrh   sWalker.u.pCCurHint = &sHint;
970bec2476aSdrh   pWC = &pWInfo->sWC;
971bec2476aSdrh   for(i=0; i<pWC->nTerm; i++){
972bec2476aSdrh     pTerm = &pWC->a[i];
973bec2476aSdrh     if( pTerm->wtFlags & (TERM_VIRTUAL|TERM_CODED) ) continue;
974bec2476aSdrh     if( pTerm->prereqAll & pLevel->notReady ) continue;
975b324cf75Sdan 
976b324cf75Sdan     /* Any terms specified as part of the ON(...) clause for any LEFT
977b324cf75Sdan     ** JOIN for which the current table is not the rhs are omitted
978b324cf75Sdan     ** from the cursor-hint.
979b324cf75Sdan     **
980e6912fd8Sdan     ** If this table is the rhs of a LEFT JOIN, "IS" or "IS NULL" terms
981e6912fd8Sdan     ** that were specified as part of the WHERE clause must be excluded.
982e6912fd8Sdan     ** This is to address the following:
983b324cf75Sdan     **
984b324cf75Sdan     **   SELECT ... t1 LEFT JOIN t2 ON (t1.a=t2.b) WHERE t2.c IS NULL;
985b324cf75Sdan     **
986e6912fd8Sdan     ** Say there is a single row in t2 that matches (t1.a=t2.b), but its
987e6912fd8Sdan     ** t2.c values is not NULL. If the (t2.c IS NULL) constraint is
988e6912fd8Sdan     ** pushed down to the cursor, this row is filtered out, causing
989e6912fd8Sdan     ** SQLite to synthesize a row of NULL values. Which does match the
990e6912fd8Sdan     ** WHERE clause, and so the query returns a row. Which is incorrect.
991e6912fd8Sdan     **
992e6912fd8Sdan     ** For the same reason, WHERE terms such as:
993e6912fd8Sdan     **
994e6912fd8Sdan     **   WHERE 1 = (t2.c IS NULL)
995e6912fd8Sdan     **
996e6912fd8Sdan     ** are also excluded. See codeCursorHintIsOrFunction() for details.
997b324cf75Sdan     */
998b324cf75Sdan     if( pTabItem->fg.jointype & JT_LEFT ){
999e6912fd8Sdan       Expr *pExpr = pTerm->pExpr;
1000e6912fd8Sdan       if( !ExprHasProperty(pExpr, EP_FromJoin)
1001e6912fd8Sdan        || pExpr->iRightJoinTable!=pTabItem->iCursor
1002b324cf75Sdan       ){
1003e6912fd8Sdan         sWalker.eCode = 0;
1004e6912fd8Sdan         sWalker.xExprCallback = codeCursorHintIsOrFunction;
1005e6912fd8Sdan         sqlite3WalkExpr(&sWalker, pTerm->pExpr);
1006e6912fd8Sdan         if( sWalker.eCode ) continue;
1007b324cf75Sdan       }
1008b324cf75Sdan     }else{
1009bec2476aSdrh       if( ExprHasProperty(pTerm->pExpr, EP_FromJoin) ) continue;
1010b324cf75Sdan     }
1011b413a546Sdrh 
1012b413a546Sdrh     /* All terms in pWLoop->aLTerm[] except pEndRange are used to initialize
1013bcf40a7fSdrh     ** the cursor.  These terms are not needed as hints for a pure range
1014bcf40a7fSdrh     ** scan (that has no == terms) so omit them. */
1015bcf40a7fSdrh     if( pLoop->u.btree.nEq==0 && pTerm!=pEndRange ){
1016bcf40a7fSdrh       for(j=0; j<pLoop->nLTerm && pLoop->aLTerm[j]!=pTerm; j++){}
1017bcf40a7fSdrh       if( j<pLoop->nLTerm ) continue;
1018b413a546Sdrh     }
1019b413a546Sdrh 
1020b413a546Sdrh     /* No subqueries or non-deterministic functions allowed */
1021bec2476aSdrh     if( sqlite3ExprContainsSubquery(pTerm->pExpr) ) continue;
1022b413a546Sdrh 
1023b413a546Sdrh     /* For an index scan, make sure referenced columns are actually in
1024b413a546Sdrh     ** the index. */
10252f2b0278Sdrh     if( sHint.pIdx!=0 ){
10262f2b0278Sdrh       sWalker.eCode = 0;
10272f2b0278Sdrh       sWalker.xExprCallback = codeCursorHintCheckExpr;
10282f2b0278Sdrh       sqlite3WalkExpr(&sWalker, pTerm->pExpr);
10292f2b0278Sdrh       if( sWalker.eCode ) continue;
10302f2b0278Sdrh     }
1031b413a546Sdrh 
1032b413a546Sdrh     /* If we survive all prior tests, that means this term is worth hinting */
1033d5c851c1Sdrh     pExpr = sqlite3ExprAnd(pParse, pExpr, sqlite3ExprDup(db, pTerm->pExpr, 0));
1034bec2476aSdrh   }
1035bec2476aSdrh   if( pExpr!=0 ){
1036bec2476aSdrh     sWalker.xExprCallback = codeCursorHintFixExpr;
1037bec2476aSdrh     sqlite3WalkExpr(&sWalker, pExpr);
10382f2b0278Sdrh     sqlite3VdbeAddOp4(v, OP_CursorHint,
10392f2b0278Sdrh                       (sHint.pIdx ? sHint.iIdxCur : sHint.iTabCur), 0, 0,
10402f2b0278Sdrh                       (const char*)pExpr, P4_EXPR);
1041bec2476aSdrh   }
1042bec2476aSdrh }
1043bec2476aSdrh #else
1044b324cf75Sdan # define codeCursorHint(A,B,C,D)  /* No-op */
1045bec2476aSdrh #endif /* SQLITE_ENABLE_CURSOR_HINTS */
10466f82e85aSdrh 
10476f82e85aSdrh /*
1048de892d96Sdan ** Cursor iCur is open on an intkey b-tree (a table). Register iRowid contains
1049de892d96Sdan ** a rowid value just read from cursor iIdxCur, open on index pIdx. This
1050de892d96Sdan ** function generates code to do a deferred seek of cursor iCur to the
1051de892d96Sdan ** rowid stored in register iRowid.
1052de892d96Sdan **
1053de892d96Sdan ** Normally, this is just:
1054de892d96Sdan **
1055170ad68aSdrh **   OP_DeferredSeek $iCur $iRowid
1056de892d96Sdan **
1057de892d96Sdan ** However, if the scan currently being coded is a branch of an OR-loop and
1058170ad68aSdrh ** the statement currently being coded is a SELECT, then P3 of OP_DeferredSeek
1059de892d96Sdan ** is set to iIdxCur and P4 is set to point to an array of integers
1060de892d96Sdan ** containing one entry for each column of the table cursor iCur is open
1061de892d96Sdan ** on. For each table column, if the column is the i'th column of the
1062de892d96Sdan ** index, then the corresponding array entry is set to (i+1). If the column
1063de892d96Sdan ** does not appear in the index at all, the array entry is set to 0.
1064de892d96Sdan */
1065de892d96Sdan static void codeDeferredSeek(
1066de892d96Sdan   WhereInfo *pWInfo,              /* Where clause context */
1067de892d96Sdan   Index *pIdx,                    /* Index scan is using */
1068de892d96Sdan   int iCur,                       /* Cursor for IPK b-tree */
1069de892d96Sdan   int iIdxCur                     /* Index cursor */
1070de892d96Sdan ){
1071de892d96Sdan   Parse *pParse = pWInfo->pParse; /* Parse context */
1072de892d96Sdan   Vdbe *v = pParse->pVdbe;        /* Vdbe to generate code within */
1073de892d96Sdan 
1074de892d96Sdan   assert( iIdxCur>0 );
1075de892d96Sdan   assert( pIdx->aiColumn[pIdx->nColumn-1]==-1 );
1076de892d96Sdan 
1077be3da241Sdrh   pWInfo->bDeferredSeek = 1;
1078170ad68aSdrh   sqlite3VdbeAddOp3(v, OP_DeferredSeek, iIdxCur, 0, iCur);
1079ce943bc8Sdrh   if( (pWInfo->wctrlFlags & WHERE_OR_SUBCLAUSE)
1080cddb6ba0Sdan    && DbMaskAllZero(sqlite3ParseToplevel(pParse)->writeMask)
1081de892d96Sdan   ){
1082de892d96Sdan     int i;
1083de892d96Sdan     Table *pTab = pIdx->pTable;
1084abc38158Sdrh     u32 *ai = (u32*)sqlite3DbMallocZero(pParse->db, sizeof(u32)*(pTab->nCol+1));
1085de892d96Sdan     if( ai ){
1086b1702026Sdrh       ai[0] = pTab->nCol;
1087de892d96Sdan       for(i=0; i<pIdx->nColumn-1; i++){
10884fb24c82Sdrh         int x1, x2;
1089de892d96Sdan         assert( pIdx->aiColumn[i]<pTab->nCol );
10904fb24c82Sdrh         x1 = pIdx->aiColumn[i];
10914fb24c82Sdrh         x2 = sqlite3TableColumnToStorage(pTab, x1);
10924fb24c82Sdrh         testcase( x1!=x2 );
1093bde3a4f6Smistachkin         if( x1>=0 ) ai[x2+1] = i+1;
1094de892d96Sdan       }
1095de892d96Sdan       sqlite3VdbeChangeP4(v, -1, (char*)ai, P4_INTARRAY);
1096de892d96Sdan     }
1097de892d96Sdan   }
1098de892d96Sdan }
1099de892d96Sdan 
1100553168c7Sdan /*
1101553168c7Sdan ** If the expression passed as the second argument is a vector, generate
1102553168c7Sdan ** code to write the first nReg elements of the vector into an array
1103553168c7Sdan ** of registers starting with iReg.
1104553168c7Sdan **
1105553168c7Sdan ** If the expression is not a vector, then nReg must be passed 1. In
1106553168c7Sdan ** this case, generate code to evaluate the expression and leave the
1107553168c7Sdan ** result in register iReg.
1108553168c7Sdan */
110971c57db0Sdan static void codeExprOrVector(Parse *pParse, Expr *p, int iReg, int nReg){
111071c57db0Sdan   assert( nReg>0 );
1111d03024d8Sdan   if( p && sqlite3ExprIsVector(p) ){
1112f9b2e05cSdan #ifndef SQLITE_OMIT_SUBQUERY
1113*a4eeccdfSdrh     if( ExprUseXSelect(p) ){
1114f9b2e05cSdan       Vdbe *v = pParse->pVdbe;
111585bcdce2Sdrh       int iSelect;
111685bcdce2Sdrh       assert( p->op==TK_SELECT );
111785bcdce2Sdrh       iSelect = sqlite3CodeSubselect(pParse, p);
1118f9b2e05cSdan       sqlite3VdbeAddOp3(v, OP_Copy, iSelect, iReg, nReg-1);
1119f9b2e05cSdan     }else
1120f9b2e05cSdan #endif
1121f9b2e05cSdan     {
112271c57db0Sdan       int i;
1123*a4eeccdfSdrh       const ExprList *pList;
1124*a4eeccdfSdrh       assert( ExprUseXList(p) );
1125*a4eeccdfSdrh       pList = p->x.pList;
112671c57db0Sdan       assert( nReg<=pList->nExpr );
112771c57db0Sdan       for(i=0; i<nReg; i++){
112871c57db0Sdan         sqlite3ExprCode(pParse, pList->a[i].pExpr, iReg+i);
112971c57db0Sdan       }
113071c57db0Sdan     }
113171c57db0Sdan   }else{
1132151446e7Sdan     assert( nReg==1 || pParse->nErr );
113371c57db0Sdan     sqlite3ExprCode(pParse, p, iReg);
113471c57db0Sdan   }
113571c57db0Sdan }
113671c57db0Sdan 
1137eac5fc04Sdrh /* An instance of the IdxExprTrans object carries information about a
1138eac5fc04Sdrh ** mapping from an expression on table columns into a column in an index
1139eac5fc04Sdrh ** down through the Walker.
1140eac5fc04Sdrh */
1141aca19e19Sdrh typedef struct IdxExprTrans {
1142aca19e19Sdrh   Expr *pIdxExpr;    /* The index expression */
1143aca19e19Sdrh   int iTabCur;       /* The cursor of the corresponding table */
1144aca19e19Sdrh   int iIdxCur;       /* The cursor for the index */
1145aca19e19Sdrh   int iIdxCol;       /* The column for the index */
1146c7476735Sdrh   int iTabCol;       /* The column for the table */
114736e678bcSdrh   WhereInfo *pWInfo; /* Complete WHERE clause information */
114836e678bcSdrh   sqlite3 *db;       /* Database connection (for malloc()) */
1149aca19e19Sdrh } IdxExprTrans;
1150aca19e19Sdrh 
115136e678bcSdrh /*
115236e678bcSdrh ** Preserve pExpr on the WhereETrans list of the WhereInfo.
115336e678bcSdrh */
115436e678bcSdrh static void preserveExpr(IdxExprTrans *pTrans, Expr *pExpr){
115536e678bcSdrh   WhereExprMod *pNew;
115636e678bcSdrh   pNew = sqlite3DbMallocRaw(pTrans->db, sizeof(*pNew));
115736e678bcSdrh   if( pNew==0 ) return;
115836e678bcSdrh   pNew->pNext = pTrans->pWInfo->pExprMods;
115936e678bcSdrh   pTrans->pWInfo->pExprMods = pNew;
116036e678bcSdrh   pNew->pExpr = pExpr;
116136e678bcSdrh   memcpy(&pNew->orig, pExpr, sizeof(*pExpr));
116236e678bcSdrh }
116336e678bcSdrh 
1164eac5fc04Sdrh /* The walker node callback used to transform matching expressions into
1165eac5fc04Sdrh ** a reference to an index column for an index on an expression.
1166eac5fc04Sdrh **
1167eac5fc04Sdrh ** If pExpr matches, then transform it into a reference to the index column
1168eac5fc04Sdrh ** that contains the value of pExpr.
1169eac5fc04Sdrh */
1170aca19e19Sdrh static int whereIndexExprTransNode(Walker *p, Expr *pExpr){
1171aca19e19Sdrh   IdxExprTrans *pX = p->u.pIdxTrans;
11725aa550cfSdan   if( sqlite3ExprCompare(0, pExpr, pX->pIdxExpr, pX->iTabCur)==0 ){
117336e678bcSdrh     preserveExpr(pX, pExpr);
1174b6ce71bdSdan     pExpr->affExpr = sqlite3ExprAffinity(pExpr);
1175aca19e19Sdrh     pExpr->op = TK_COLUMN;
1176aca19e19Sdrh     pExpr->iTable = pX->iIdxCur;
1177aca19e19Sdrh     pExpr->iColumn = pX->iIdxCol;
1178eda079cdSdrh     pExpr->y.pTab = 0;
11796c1c85caSdrh     testcase( ExprHasProperty(pExpr, EP_Skip) );
11806c1c85caSdrh     testcase( ExprHasProperty(pExpr, EP_Unlikely) );
11816c1c85caSdrh     ExprClearProperty(pExpr, EP_Skip|EP_Unlikely);
1182aca19e19Sdrh     return WRC_Prune;
1183aca19e19Sdrh   }else{
1184aca19e19Sdrh     return WRC_Continue;
1185aca19e19Sdrh   }
1186aca19e19Sdrh }
1187aca19e19Sdrh 
1188c7476735Sdrh #ifndef SQLITE_OMIT_GENERATED_COLUMNS
1189c7476735Sdrh /* A walker node callback that translates a column reference to a table
1190c7476735Sdrh ** into a corresponding column reference of an index.
1191c7476735Sdrh */
1192c7476735Sdrh static int whereIndexExprTransColumn(Walker *p, Expr *pExpr){
1193c7476735Sdrh   if( pExpr->op==TK_COLUMN ){
1194c7476735Sdrh     IdxExprTrans *pX = p->u.pIdxTrans;
1195c7476735Sdrh     if( pExpr->iTable==pX->iTabCur && pExpr->iColumn==pX->iTabCol ){
119657f7ece7Sdrh       assert( pExpr->y.pTab!=0 );
119736e678bcSdrh       preserveExpr(pX, pExpr);
119857f7ece7Sdrh       pExpr->affExpr = sqlite3TableColumnAffinity(pExpr->y.pTab,pExpr->iColumn);
1199c7476735Sdrh       pExpr->iTable = pX->iIdxCur;
1200c7476735Sdrh       pExpr->iColumn = pX->iIdxCol;
12014485ac1aSdrh       pExpr->y.pTab = 0;
1202c7476735Sdrh     }
1203c7476735Sdrh   }
1204c7476735Sdrh   return WRC_Continue;
1205c7476735Sdrh }
1206c7476735Sdrh #endif /* SQLITE_OMIT_GENERATED_COLUMNS */
1207c7476735Sdrh 
1208aca19e19Sdrh /*
1209f49759bfSdrh ** For an indexes on expression X, locate every instance of expression X
1210f49759bfSdrh ** in pExpr and change that subexpression into a reference to the appropriate
1211f49759bfSdrh ** column of the index.
1212c7476735Sdrh **
1213c7476735Sdrh ** 2019-10-24: Updated to also translate references to a VIRTUAL column in
1214c7476735Sdrh ** the table into references to the corresponding (stored) column of the
1215c7476735Sdrh ** index.
1216aca19e19Sdrh */
1217aca19e19Sdrh static void whereIndexExprTrans(
1218aca19e19Sdrh   Index *pIdx,      /* The Index */
1219aca19e19Sdrh   int iTabCur,      /* Cursor of the table that is being indexed */
1220aca19e19Sdrh   int iIdxCur,      /* Cursor of the index itself */
1221aca19e19Sdrh   WhereInfo *pWInfo /* Transform expressions in this WHERE clause */
1222aca19e19Sdrh ){
1223aca19e19Sdrh   int iIdxCol;               /* Column number of the index */
1224aca19e19Sdrh   ExprList *aColExpr;        /* Expressions that are indexed */
1225c7476735Sdrh   Table *pTab;
1226aca19e19Sdrh   Walker w;
1227aca19e19Sdrh   IdxExprTrans x;
1228aca19e19Sdrh   aColExpr = pIdx->aColExpr;
1229c7476735Sdrh   if( aColExpr==0 && !pIdx->bHasVCol ){
1230c7476735Sdrh     /* The index does not reference any expressions or virtual columns
1231c7476735Sdrh     ** so no translations are needed. */
1232c7476735Sdrh     return;
1233c7476735Sdrh   }
1234c7476735Sdrh   pTab = pIdx->pTable;
1235aca19e19Sdrh   memset(&w, 0, sizeof(w));
1236aca19e19Sdrh   w.u.pIdxTrans = &x;
1237aca19e19Sdrh   x.iTabCur = iTabCur;
1238aca19e19Sdrh   x.iIdxCur = iIdxCur;
123936e678bcSdrh   x.pWInfo = pWInfo;
124036e678bcSdrh   x.db = pWInfo->pParse->db;
1241c7476735Sdrh   for(iIdxCol=0; iIdxCol<pIdx->nColumn; iIdxCol++){
1242c7476735Sdrh     i16 iRef = pIdx->aiColumn[iIdxCol];
1243c7476735Sdrh     if( iRef==XN_EXPR ){
12447d4c94bcSdrh       assert( aColExpr!=0 && aColExpr->a[iIdxCol].pExpr!=0 );
1245aca19e19Sdrh       x.pIdxExpr = aColExpr->a[iIdxCol].pExpr;
1246e86f3402Sdrh       if( sqlite3ExprIsConstant(x.pIdxExpr) ) continue;
1247c7476735Sdrh       w.xExprCallback = whereIndexExprTransNode;
1248c7476735Sdrh #ifndef SQLITE_OMIT_GENERATED_COLUMNS
1249ed0c3485Sdrh     }else if( iRef>=0
1250ed0c3485Sdrh        && (pTab->aCol[iRef].colFlags & COLFLAG_VIRTUAL)!=0
125165b40093Sdrh        && ((pTab->aCol[iRef].colFlags & COLFLAG_HASCOLL)==0
125265b40093Sdrh            || sqlite3StrICmp(sqlite3ColumnColl(&pTab->aCol[iRef]),
125365b40093Sdrh                                                sqlite3StrBINARY)==0)
1254ed0c3485Sdrh     ){
1255ed0c3485Sdrh       /* Check to see if there are direct references to generated columns
1256ed0c3485Sdrh       ** that are contained in the index.  Pulling the generated column
1257ed0c3485Sdrh       ** out of the index is an optimization only - the main table is always
1258ed0c3485Sdrh       ** available if the index cannot be used.  To avoid unnecessary
1259ed0c3485Sdrh       ** complication, omit this optimization if the collating sequence for
1260ed0c3485Sdrh       ** the column is non-standard */
1261c7476735Sdrh       x.iTabCol = iRef;
1262c7476735Sdrh       w.xExprCallback = whereIndexExprTransColumn;
1263c7476735Sdrh #endif /* SQLITE_OMIT_GENERATED_COLUMNS */
1264c7476735Sdrh     }else{
1265c7476735Sdrh       continue;
1266c7476735Sdrh     }
1267c7476735Sdrh     x.iIdxCol = iIdxCol;
1268aca19e19Sdrh     sqlite3WalkExpr(&w, pWInfo->pWhere);
1269aca19e19Sdrh     sqlite3WalkExprList(&w, pWInfo->pOrderBy);
1270aca19e19Sdrh     sqlite3WalkExprList(&w, pWInfo->pResultSet);
1271aca19e19Sdrh   }
1272aca19e19Sdrh }
1273aca19e19Sdrh 
1274de892d96Sdan /*
1275610f11deSdrh ** The pTruth expression is always true because it is the WHERE clause
1276b531aa8fSdrh ** a partial index that is driving a query loop.  Look through all of the
1277b531aa8fSdrh ** WHERE clause terms on the query, and if any of those terms must be
1278b531aa8fSdrh ** true because pTruth is true, then mark those WHERE clause terms as
1279b531aa8fSdrh ** coded.
1280b531aa8fSdrh */
1281b531aa8fSdrh static void whereApplyPartialIndexConstraints(
1282b531aa8fSdrh   Expr *pTruth,
1283b531aa8fSdrh   int iTabCur,
1284b531aa8fSdrh   WhereClause *pWC
1285b531aa8fSdrh ){
1286b531aa8fSdrh   int i;
1287b531aa8fSdrh   WhereTerm *pTerm;
1288b531aa8fSdrh   while( pTruth->op==TK_AND ){
1289b531aa8fSdrh     whereApplyPartialIndexConstraints(pTruth->pLeft, iTabCur, pWC);
1290b531aa8fSdrh     pTruth = pTruth->pRight;
1291b531aa8fSdrh   }
1292b531aa8fSdrh   for(i=0, pTerm=pWC->a; i<pWC->nTerm; i++, pTerm++){
1293b531aa8fSdrh     Expr *pExpr;
1294b531aa8fSdrh     if( pTerm->wtFlags & TERM_CODED ) continue;
1295b531aa8fSdrh     pExpr = pTerm->pExpr;
1296b531aa8fSdrh     if( sqlite3ExprCompare(0, pExpr, pTruth, iTabCur)==0 ){
1297b531aa8fSdrh       pTerm->wtFlags |= TERM_CODED;
1298b531aa8fSdrh     }
1299b531aa8fSdrh   }
1300b531aa8fSdrh }
1301b531aa8fSdrh 
1302b531aa8fSdrh /*
13036f82e85aSdrh ** Generate code for the start of the iLevel-th loop in the WHERE clause
13046f82e85aSdrh ** implementation described by pWInfo.
13056f82e85aSdrh */
13066f82e85aSdrh Bitmask sqlite3WhereCodeOneLoopStart(
130747df8a2cSdrh   Parse *pParse,       /* Parsing context */
130847df8a2cSdrh   Vdbe *v,             /* Prepared statement under construction */
13096f82e85aSdrh   WhereInfo *pWInfo,   /* Complete information about the WHERE clause */
13106f82e85aSdrh   int iLevel,          /* Which level of pWInfo->a[] should be coded */
131147df8a2cSdrh   WhereLevel *pLevel,  /* The current level pointer */
13126f82e85aSdrh   Bitmask notReady     /* Which tables are currently available */
13136f82e85aSdrh ){
13146f82e85aSdrh   int j, k;            /* Loop counters */
13156f82e85aSdrh   int iCur;            /* The VDBE cursor for the table */
13166f82e85aSdrh   int addrNxt;         /* Where to jump to continue with the next IN case */
13176f82e85aSdrh   int bRev;            /* True if we need to scan in reverse order */
13186f82e85aSdrh   WhereLoop *pLoop;    /* The WhereLoop object being coded */
13196f82e85aSdrh   WhereClause *pWC;    /* Decomposition of the entire WHERE clause */
13206f82e85aSdrh   WhereTerm *pTerm;               /* A WHERE clause term */
13216f82e85aSdrh   sqlite3 *db;                    /* Database connection */
13227601294aSdrh   SrcItem *pTabItem;              /* FROM clause term being coded */
13236f82e85aSdrh   int addrBrk;                    /* Jump here to break out of the loop */
13243a3b420aSdrh   int addrHalt;                   /* addrBrk for the outermost loop */
13256f82e85aSdrh   int addrCont;                   /* Jump here to continue with next cycle */
13266f82e85aSdrh   int iRowidReg = 0;        /* Rowid is stored in this register, if not zero */
13276f82e85aSdrh   int iReleaseReg = 0;      /* Temp register to free before returning */
13286f654a40Sdan   Index *pIdx = 0;          /* Index used by loop (if any) */
1329ebc63013Sdan   int iLoop;                /* Iteration of constraint generator loop */
13306f82e85aSdrh 
13316f82e85aSdrh   pWC = &pWInfo->sWC;
13326f82e85aSdrh   db = pParse->db;
13336f82e85aSdrh   pLoop = pLevel->pWLoop;
13346f82e85aSdrh   pTabItem = &pWInfo->pTabList->a[pLevel->iFrom];
13356f82e85aSdrh   iCur = pTabItem->iCursor;
13366f82e85aSdrh   pLevel->notReady = notReady & ~sqlite3WhereGetMask(&pWInfo->sMaskSet, iCur);
13376f82e85aSdrh   bRev = (pWInfo->revMask>>iLevel)&1;
13386f82e85aSdrh   VdbeModuleComment((v, "Begin WHERE-loop%d: %s",iLevel,pTabItem->pTab->zName));
1339118efd16Sdrh #if WHERETRACE_ENABLED /* 0x20800 */
1340118efd16Sdrh   if( sqlite3WhereTrace & 0x800 ){
1341a4b2df5cSdrh     sqlite3DebugPrintf("Coding level %d of %d:  notReady=%llx  iFrom=%d\n",
1342a4b2df5cSdrh        iLevel, pWInfo->nLevel, (u64)notReady, pLevel->iFrom);
1343118efd16Sdrh     sqlite3WhereLoopPrint(pLoop, pWC);
1344118efd16Sdrh   }
1345118efd16Sdrh   if( sqlite3WhereTrace & 0x20000 ){
1346f1bb31e2Sdrh     if( iLevel==0 ){
1347f1bb31e2Sdrh       sqlite3DebugPrintf("WHERE clause being coded:\n");
1348f1bb31e2Sdrh       sqlite3TreeViewExpr(0, pWInfo->pWhere, 0);
1349f1bb31e2Sdrh     }
1350f1bb31e2Sdrh     sqlite3DebugPrintf("All WHERE-clause terms before coding:\n");
1351118efd16Sdrh     sqlite3WhereClausePrint(pWC);
1352118efd16Sdrh   }
1353118efd16Sdrh #endif
13546f82e85aSdrh 
13556f82e85aSdrh   /* Create labels for the "break" and "continue" instructions
13566f82e85aSdrh   ** for the current loop.  Jump to addrBrk to break out of a loop.
13576f82e85aSdrh   ** Jump to cont to go immediately to the next iteration of the
13586f82e85aSdrh   ** loop.
13596f82e85aSdrh   **
13606f82e85aSdrh   ** When there is an IN operator, we also have a "addrNxt" label that
13616f82e85aSdrh   ** means to continue with the next IN value combination.  When
13626f82e85aSdrh   ** there are no IN operators in the constraints, the "addrNxt" label
13636f82e85aSdrh   ** is the same as "addrBrk".
13646f82e85aSdrh   */
1365ec4ccdbcSdrh   addrBrk = pLevel->addrBrk = pLevel->addrNxt = sqlite3VdbeMakeLabel(pParse);
1366ec4ccdbcSdrh   addrCont = pLevel->addrCont = sqlite3VdbeMakeLabel(pParse);
13676f82e85aSdrh 
13686f82e85aSdrh   /* If this is the right table of a LEFT OUTER JOIN, allocate and
13696f82e85aSdrh   ** initialize a memory cell that records if this table matches any
13706f82e85aSdrh   ** row of the left table of the join.
13716f82e85aSdrh   */
1372820fcd2cSdan   assert( (pWInfo->wctrlFlags & WHERE_OR_SUBCLAUSE)
1373820fcd2cSdan        || pLevel->iFrom>0 || (pTabItem[0].fg.jointype & JT_LEFT)==0
1374820fcd2cSdan   );
13758a48b9c0Sdrh   if( pLevel->iFrom>0 && (pTabItem[0].fg.jointype & JT_LEFT)!=0 ){
13766f82e85aSdrh     pLevel->iLeftJoin = ++pParse->nMem;
13776f82e85aSdrh     sqlite3VdbeAddOp2(v, OP_Integer, 0, pLevel->iLeftJoin);
13786f82e85aSdrh     VdbeComment((v, "init LEFT JOIN no-match flag"));
13796f82e85aSdrh   }
13806f82e85aSdrh 
13813a3b420aSdrh   /* Compute a safe address to jump to if we discover that the table for
13823a3b420aSdrh   ** this loop is empty and can never contribute content. */
13833a3b420aSdrh   for(j=iLevel; j>0 && pWInfo->a[j].iLeftJoin==0; j--){}
13843a3b420aSdrh   addrHalt = pWInfo->a[j].addrBrk;
13853a3b420aSdrh 
13866f82e85aSdrh   /* Special case of a FROM clause subquery implemented as a co-routine */
13878a48b9c0Sdrh   if( pTabItem->fg.viaCoroutine ){
13886f82e85aSdrh     int regYield = pTabItem->regReturn;
13896f82e85aSdrh     sqlite3VdbeAddOp3(v, OP_InitCoroutine, regYield, 0, pTabItem->addrFillSub);
13906f82e85aSdrh     pLevel->p2 =  sqlite3VdbeAddOp2(v, OP_Yield, regYield, addrBrk);
13916f82e85aSdrh     VdbeCoverage(v);
1392fef37760Sdrh     VdbeComment((v, "next row of %s", pTabItem->pTab->zName));
13936f82e85aSdrh     pLevel->op = OP_Goto;
13946f82e85aSdrh   }else
13956f82e85aSdrh 
13966f82e85aSdrh #ifndef SQLITE_OMIT_VIRTUALTABLE
13976f82e85aSdrh   if(  (pLoop->wsFlags & WHERE_VIRTUALTABLE)!=0 ){
13986f82e85aSdrh     /* Case 1:  The table is a virtual-table.  Use the VFilter and VNext
13996f82e85aSdrh     **          to access the data.
14006f82e85aSdrh     */
14016f82e85aSdrh     int iReg;   /* P3 Value for OP_VFilter */
14026f82e85aSdrh     int addrNotFound;
14036f82e85aSdrh     int nConstraint = pLoop->nLTerm;
1404dbc49161Sdrh     int iIn;    /* Counter for IN constraints */
14056f82e85aSdrh 
14066f82e85aSdrh     iReg = sqlite3GetTempRange(pParse, nConstraint+2);
14076f82e85aSdrh     addrNotFound = pLevel->addrBrk;
14086f82e85aSdrh     for(j=0; j<nConstraint; j++){
14096f82e85aSdrh       int iTarget = iReg+j+2;
14106f82e85aSdrh       pTerm = pLoop->aLTerm[j];
1411599d5764Sdrh       if( NEVER(pTerm==0) ) continue;
14126f82e85aSdrh       if( pTerm->eOperator & WO_IN ){
14136f82e85aSdrh         codeEqualityTerm(pParse, pTerm, pLevel, j, bRev, iTarget);
14146f82e85aSdrh         addrNotFound = pLevel->addrNxt;
14156f82e85aSdrh       }else{
14166256c1c2Sdan         Expr *pRight = pTerm->pExpr->pRight;
14176256c1c2Sdan         codeExprOrVector(pParse, pRight, iTarget, 1);
14186256c1c2Sdan       }
14196f82e85aSdrh     }
14206f82e85aSdrh     sqlite3VdbeAddOp2(v, OP_Integer, pLoop->u.vtab.idxNum, iReg);
14216f82e85aSdrh     sqlite3VdbeAddOp2(v, OP_Integer, nConstraint, iReg+1);
14226f82e85aSdrh     sqlite3VdbeAddOp4(v, OP_VFilter, iCur, addrNotFound, iReg,
14236f82e85aSdrh                       pLoop->u.vtab.idxStr,
1424861b1307Sdrh                       pLoop->u.vtab.needFree ? P4_DYNAMIC : P4_STATIC);
14256f82e85aSdrh     VdbeCoverage(v);
14266f82e85aSdrh     pLoop->u.vtab.needFree = 0;
1427bc2e9514Sdrh     /* An OOM inside of AddOp4(OP_VFilter) instruction above might have freed
1428bc2e9514Sdrh     ** the u.vtab.idxStr.  NULL it out to prevent a use-after-free */
1429bc2e9514Sdrh     if( db->mallocFailed ) pLoop->u.vtab.idxStr = 0;
14306f82e85aSdrh     pLevel->p1 = iCur;
1431354474adSdan     pLevel->op = pWInfo->eOnePass ? OP_Noop : OP_VNext;
14326f82e85aSdrh     pLevel->p2 = sqlite3VdbeCurrentAddr(v);
1433dbc49161Sdrh     iIn = pLevel->u.in.nIn;
1434dbc49161Sdrh     for(j=nConstraint-1; j>=0; j--){
1435dbc49161Sdrh       pTerm = pLoop->aLTerm[j];
143668748ec5Sdrh       if( (pTerm->eOperator & WO_IN)!=0 ) iIn--;
1437dbc49161Sdrh       if( j<16 && (pLoop->u.vtab.omitMask>>j)&1 ){
1438dbc49161Sdrh         disableTerm(pLevel, pTerm);
14394ec3e820Sdrh       }else if( (pTerm->eOperator & WO_IN)!=0
14404ec3e820Sdrh         && sqlite3ExprVectorSize(pTerm->pExpr->pLeft)==1
14412d82269cSdan       ){
1442dbc49161Sdrh         Expr *pCompare;  /* The comparison operator */
1443dbc49161Sdrh         Expr *pRight;    /* RHS of the comparison */
1444dbc49161Sdrh         VdbeOp *pOp;     /* Opcode to access the value of the IN constraint */
1445dbc49161Sdrh 
1446dbc49161Sdrh         /* Reload the constraint value into reg[iReg+j+2].  The same value
1447dbc49161Sdrh         ** was loaded into the same register prior to the OP_VFilter, but
1448dbc49161Sdrh         ** the xFilter implementation might have changed the datatype or
1449dbc49161Sdrh         ** encoding of the value in the register, so it *must* be reloaded. */
1450dbc49161Sdrh         assert( pLevel->u.in.aInLoop!=0 || db->mallocFailed );
1451fb826b8cSdrh         if( !db->mallocFailed ){
145268748ec5Sdrh           assert( iIn>=0 && iIn<pLevel->u.in.nIn );
145368748ec5Sdrh           pOp = sqlite3VdbeGetOp(v, pLevel->u.in.aInLoop[iIn].addrInTop);
1454dbc49161Sdrh           assert( pOp->opcode==OP_Column || pOp->opcode==OP_Rowid );
1455dbc49161Sdrh           assert( pOp->opcode!=OP_Column || pOp->p3==iReg+j+2 );
1456dbc49161Sdrh           assert( pOp->opcode!=OP_Rowid || pOp->p2==iReg+j+2 );
1457dbc49161Sdrh           testcase( pOp->opcode==OP_Rowid );
1458dbc49161Sdrh           sqlite3VdbeAddOp3(v, pOp->opcode, pOp->p1, pOp->p2, pOp->p3);
1459dbc49161Sdrh         }
1460dbc49161Sdrh 
1461dbc49161Sdrh         /* Generate code that will continue to the next row if
1462dbc49161Sdrh         ** the IN constraint is not satisfied */
1463abfd35eaSdrh         pCompare = sqlite3PExpr(pParse, TK_EQ, 0, 0);
1464dbc49161Sdrh         assert( pCompare!=0 || db->mallocFailed );
1465dbc49161Sdrh         if( pCompare ){
1466dbc49161Sdrh           pCompare->pLeft = pTerm->pExpr->pLeft;
1467dbc49161Sdrh           pCompare->pRight = pRight = sqlite3Expr(db, TK_REGISTER, 0);
1468237b2b71Sdrh           if( pRight ){
1469237b2b71Sdrh             pRight->iTable = iReg+j+2;
1470d03f77aeSdan             sqlite3ExprIfFalse(
1471d03f77aeSdan                 pParse, pCompare, pLevel->addrCont, SQLITE_JUMPIFNULL
1472d03f77aeSdan             );
1473237b2b71Sdrh           }
1474dbc49161Sdrh           pCompare->pLeft = 0;
1475dbc49161Sdrh           sqlite3ExprDelete(db, pCompare);
1476dbc49161Sdrh         }
1477dbc49161Sdrh       }
1478dbc49161Sdrh     }
147968748ec5Sdrh     assert( iIn==0 || db->mallocFailed );
1480ba26faa3Sdrh     /* These registers need to be preserved in case there is an IN operator
1481ba26faa3Sdrh     ** loop.  So we could deallocate the registers here (and potentially
1482ba26faa3Sdrh     ** reuse them later) if (pLoop->wsFlags & WHERE_IN_ABLE)==0.  But it seems
1483ba26faa3Sdrh     ** simpler and safer to simply not reuse the registers.
1484ba26faa3Sdrh     **
1485ba26faa3Sdrh     **    sqlite3ReleaseTempRange(pParse, iReg, nConstraint+2);
1486ba26faa3Sdrh     */
14876f82e85aSdrh   }else
14886f82e85aSdrh #endif /* SQLITE_OMIT_VIRTUALTABLE */
14896f82e85aSdrh 
14906f82e85aSdrh   if( (pLoop->wsFlags & WHERE_IPK)!=0
14916f82e85aSdrh    && (pLoop->wsFlags & (WHERE_COLUMN_IN|WHERE_COLUMN_EQ))!=0
14926f82e85aSdrh   ){
14936f82e85aSdrh     /* Case 2:  We can directly reference a single row using an
14946f82e85aSdrh     **          equality comparison against the ROWID field.  Or
14956f82e85aSdrh     **          we reference multiple rows using a "rowid IN (...)"
14966f82e85aSdrh     **          construct.
14976f82e85aSdrh     */
14986f82e85aSdrh     assert( pLoop->u.btree.nEq==1 );
14996f82e85aSdrh     pTerm = pLoop->aLTerm[0];
15006f82e85aSdrh     assert( pTerm!=0 );
15016f82e85aSdrh     assert( pTerm->pExpr!=0 );
15026f82e85aSdrh     testcase( pTerm->wtFlags & TERM_VIRTUAL );
15036f82e85aSdrh     iReleaseReg = ++pParse->nMem;
15046f82e85aSdrh     iRowidReg = codeEqualityTerm(pParse, pTerm, pLevel, 0, bRev, iReleaseReg);
15056f82e85aSdrh     if( iRowidReg!=iReleaseReg ) sqlite3ReleaseTempReg(pParse, iReleaseReg);
15066f82e85aSdrh     addrNxt = pLevel->addrNxt;
1507eeb9565aSdrh     sqlite3VdbeAddOp3(v, OP_SeekRowid, iCur, addrNxt, iRowidReg);
15086f82e85aSdrh     VdbeCoverage(v);
15096f82e85aSdrh     pLevel->op = OP_Noop;
15106f82e85aSdrh   }else if( (pLoop->wsFlags & WHERE_IPK)!=0
15116f82e85aSdrh          && (pLoop->wsFlags & WHERE_COLUMN_RANGE)!=0
15126f82e85aSdrh   ){
15136f82e85aSdrh     /* Case 3:  We have an inequality comparison against the ROWID field.
15146f82e85aSdrh     */
15156f82e85aSdrh     int testOp = OP_Noop;
15166f82e85aSdrh     int start;
15176f82e85aSdrh     int memEndValue = 0;
15186f82e85aSdrh     WhereTerm *pStart, *pEnd;
15196f82e85aSdrh 
15206f82e85aSdrh     j = 0;
15216f82e85aSdrh     pStart = pEnd = 0;
15226f82e85aSdrh     if( pLoop->wsFlags & WHERE_BTM_LIMIT ) pStart = pLoop->aLTerm[j++];
15236f82e85aSdrh     if( pLoop->wsFlags & WHERE_TOP_LIMIT ) pEnd = pLoop->aLTerm[j++];
15246f82e85aSdrh     assert( pStart!=0 || pEnd!=0 );
15256f82e85aSdrh     if( bRev ){
15266f82e85aSdrh       pTerm = pStart;
15276f82e85aSdrh       pStart = pEnd;
15286f82e85aSdrh       pEnd = pTerm;
15296f82e85aSdrh     }
1530b324cf75Sdan     codeCursorHint(pTabItem, pWInfo, pLevel, pEnd);
15316f82e85aSdrh     if( pStart ){
15326f82e85aSdrh       Expr *pX;             /* The expression that defines the start bound */
15336f82e85aSdrh       int r1, rTemp;        /* Registers for holding the start boundary */
153419ff12ddSdan       int op;               /* Cursor seek operation */
15356f82e85aSdrh 
15366f82e85aSdrh       /* The following constant maps TK_xx codes into corresponding
15376f82e85aSdrh       ** seek opcodes.  It depends on a particular ordering of TK_xx
15386f82e85aSdrh       */
15396f82e85aSdrh       const u8 aMoveOp[] = {
15406f82e85aSdrh            /* TK_GT */  OP_SeekGT,
15416f82e85aSdrh            /* TK_LE */  OP_SeekLE,
15426f82e85aSdrh            /* TK_LT */  OP_SeekLT,
15436f82e85aSdrh            /* TK_GE */  OP_SeekGE
15446f82e85aSdrh       };
15456f82e85aSdrh       assert( TK_LE==TK_GT+1 );      /* Make sure the ordering.. */
15466f82e85aSdrh       assert( TK_LT==TK_GT+2 );      /*  ... of the TK_xx values... */
15476f82e85aSdrh       assert( TK_GE==TK_GT+3 );      /*  ... is correcct. */
15486f82e85aSdrh 
15496f82e85aSdrh       assert( (pStart->wtFlags & TERM_VNULL)==0 );
15506f82e85aSdrh       testcase( pStart->wtFlags & TERM_VIRTUAL );
15516f82e85aSdrh       pX = pStart->pExpr;
15526f82e85aSdrh       assert( pX!=0 );
15536f82e85aSdrh       testcase( pStart->leftCursor!=iCur ); /* transitive constraints */
1554625015e0Sdan       if( sqlite3ExprIsVector(pX->pRight) ){
155519ff12ddSdan         r1 = rTemp = sqlite3GetTempReg(pParse);
155619ff12ddSdan         codeExprOrVector(pParse, pX->pRight, r1, 1);
15574d1c6845Sdrh         testcase( pX->op==TK_GT );
15584d1c6845Sdrh         testcase( pX->op==TK_GE );
15594d1c6845Sdrh         testcase( pX->op==TK_LT );
15604d1c6845Sdrh         testcase( pX->op==TK_LE );
15614d1c6845Sdrh         op = aMoveOp[((pX->op - TK_GT - 1) & 0x3) | 0x1];
15624d1c6845Sdrh         assert( pX->op!=TK_GT || op==OP_SeekGE );
15634d1c6845Sdrh         assert( pX->op!=TK_GE || op==OP_SeekGE );
15644d1c6845Sdrh         assert( pX->op!=TK_LT || op==OP_SeekLE );
15654d1c6845Sdrh         assert( pX->op!=TK_LE || op==OP_SeekLE );
156619ff12ddSdan       }else{
15676f82e85aSdrh         r1 = sqlite3ExprCodeTemp(pParse, pX->pRight, &rTemp);
156819ff12ddSdan         disableTerm(pLevel, pStart);
156919ff12ddSdan         op = aMoveOp[(pX->op - TK_GT)];
157019ff12ddSdan       }
157119ff12ddSdan       sqlite3VdbeAddOp3(v, op, iCur, addrBrk, r1);
15726f82e85aSdrh       VdbeComment((v, "pk"));
15736f82e85aSdrh       VdbeCoverageIf(v, pX->op==TK_GT);
15746f82e85aSdrh       VdbeCoverageIf(v, pX->op==TK_LE);
15756f82e85aSdrh       VdbeCoverageIf(v, pX->op==TK_LT);
15766f82e85aSdrh       VdbeCoverageIf(v, pX->op==TK_GE);
15776f82e85aSdrh       sqlite3ReleaseTempReg(pParse, rTemp);
15786f82e85aSdrh     }else{
15793a3b420aSdrh       sqlite3VdbeAddOp2(v, bRev ? OP_Last : OP_Rewind, iCur, addrHalt);
15806f82e85aSdrh       VdbeCoverageIf(v, bRev==0);
15816f82e85aSdrh       VdbeCoverageIf(v, bRev!=0);
15826f82e85aSdrh     }
15836f82e85aSdrh     if( pEnd ){
15846f82e85aSdrh       Expr *pX;
15856f82e85aSdrh       pX = pEnd->pExpr;
15866f82e85aSdrh       assert( pX!=0 );
15876f82e85aSdrh       assert( (pEnd->wtFlags & TERM_VNULL)==0 );
15886f82e85aSdrh       testcase( pEnd->leftCursor!=iCur ); /* Transitive constraints */
15896f82e85aSdrh       testcase( pEnd->wtFlags & TERM_VIRTUAL );
15906f82e85aSdrh       memEndValue = ++pParse->nMem;
159119ff12ddSdan       codeExprOrVector(pParse, pX->pRight, memEndValue, 1);
1592625015e0Sdan       if( 0==sqlite3ExprIsVector(pX->pRight)
1593625015e0Sdan        && (pX->op==TK_LT || pX->op==TK_GT)
1594625015e0Sdan       ){
15956f82e85aSdrh         testOp = bRev ? OP_Le : OP_Ge;
15966f82e85aSdrh       }else{
15976f82e85aSdrh         testOp = bRev ? OP_Lt : OP_Gt;
15986f82e85aSdrh       }
1599553168c7Sdan       if( 0==sqlite3ExprIsVector(pX->pRight) ){
16006f82e85aSdrh         disableTerm(pLevel, pEnd);
16016f82e85aSdrh       }
1602553168c7Sdan     }
16036f82e85aSdrh     start = sqlite3VdbeCurrentAddr(v);
16046f82e85aSdrh     pLevel->op = bRev ? OP_Prev : OP_Next;
16056f82e85aSdrh     pLevel->p1 = iCur;
16066f82e85aSdrh     pLevel->p2 = start;
16076f82e85aSdrh     assert( pLevel->p5==0 );
16086f82e85aSdrh     if( testOp!=OP_Noop ){
16096f82e85aSdrh       iRowidReg = ++pParse->nMem;
16106f82e85aSdrh       sqlite3VdbeAddOp2(v, OP_Rowid, iCur, iRowidReg);
16116f82e85aSdrh       sqlite3VdbeAddOp3(v, testOp, memEndValue, addrBrk, iRowidReg);
16126f82e85aSdrh       VdbeCoverageIf(v, testOp==OP_Le);
16136f82e85aSdrh       VdbeCoverageIf(v, testOp==OP_Lt);
16146f82e85aSdrh       VdbeCoverageIf(v, testOp==OP_Ge);
16156f82e85aSdrh       VdbeCoverageIf(v, testOp==OP_Gt);
16166f82e85aSdrh       sqlite3VdbeChangeP5(v, SQLITE_AFF_NUMERIC | SQLITE_JUMPIFNULL);
16176f82e85aSdrh     }
16186f82e85aSdrh   }else if( pLoop->wsFlags & WHERE_INDEXED ){
16196f82e85aSdrh     /* Case 4: A scan using an index.
16206f82e85aSdrh     **
16216f82e85aSdrh     **         The WHERE clause may contain zero or more equality
16226f82e85aSdrh     **         terms ("==" or "IN" operators) that refer to the N
16236f82e85aSdrh     **         left-most columns of the index. It may also contain
16246f82e85aSdrh     **         inequality constraints (>, <, >= or <=) on the indexed
16256f82e85aSdrh     **         column that immediately follows the N equalities. Only
16266f82e85aSdrh     **         the right-most column can be an inequality - the rest must
16276f82e85aSdrh     **         use the "==" and "IN" operators. For example, if the
16286f82e85aSdrh     **         index is on (x,y,z), then the following clauses are all
16296f82e85aSdrh     **         optimized:
16306f82e85aSdrh     **
16316f82e85aSdrh     **            x=5
16326f82e85aSdrh     **            x=5 AND y=10
16336f82e85aSdrh     **            x=5 AND y<10
16346f82e85aSdrh     **            x=5 AND y>5 AND y<10
16356f82e85aSdrh     **            x=5 AND y=5 AND z<=10
16366f82e85aSdrh     **
16376f82e85aSdrh     **         The z<10 term of the following cannot be used, only
16386f82e85aSdrh     **         the x=5 term:
16396f82e85aSdrh     **
16406f82e85aSdrh     **            x=5 AND z<10
16416f82e85aSdrh     **
16426f82e85aSdrh     **         N may be zero if there are inequality constraints.
16436f82e85aSdrh     **         If there are no inequality constraints, then N is at
16446f82e85aSdrh     **         least one.
16456f82e85aSdrh     **
16466f82e85aSdrh     **         This case is also used when there are no WHERE clause
16476f82e85aSdrh     **         constraints but an index is selected anyway, in order
16486f82e85aSdrh     **         to force the output order to conform to an ORDER BY.
16496f82e85aSdrh     */
16506f82e85aSdrh     static const u8 aStartOp[] = {
16516f82e85aSdrh       0,
16526f82e85aSdrh       0,
16536f82e85aSdrh       OP_Rewind,           /* 2: (!start_constraints && startEq &&  !bRev) */
16546f82e85aSdrh       OP_Last,             /* 3: (!start_constraints && startEq &&   bRev) */
16556f82e85aSdrh       OP_SeekGT,           /* 4: (start_constraints  && !startEq && !bRev) */
16566f82e85aSdrh       OP_SeekLT,           /* 5: (start_constraints  && !startEq &&  bRev) */
16576f82e85aSdrh       OP_SeekGE,           /* 6: (start_constraints  &&  startEq && !bRev) */
16586f82e85aSdrh       OP_SeekLE            /* 7: (start_constraints  &&  startEq &&  bRev) */
16596f82e85aSdrh     };
16606f82e85aSdrh     static const u8 aEndOp[] = {
16616f82e85aSdrh       OP_IdxGE,            /* 0: (end_constraints && !bRev && !endEq) */
16626f82e85aSdrh       OP_IdxGT,            /* 1: (end_constraints && !bRev &&  endEq) */
16636f82e85aSdrh       OP_IdxLE,            /* 2: (end_constraints &&  bRev && !endEq) */
16646f82e85aSdrh       OP_IdxLT,            /* 3: (end_constraints &&  bRev &&  endEq) */
16656f82e85aSdrh     };
16666f82e85aSdrh     u16 nEq = pLoop->u.btree.nEq;     /* Number of == or IN terms */
166771c57db0Sdan     u16 nBtm = pLoop->u.btree.nBtm;   /* Length of BTM vector */
166871c57db0Sdan     u16 nTop = pLoop->u.btree.nTop;   /* Length of TOP vector */
16696f82e85aSdrh     int regBase;                 /* Base register holding constraint values */
16706f82e85aSdrh     WhereTerm *pRangeStart = 0;  /* Inequality constraint at range start */
16716f82e85aSdrh     WhereTerm *pRangeEnd = 0;    /* Inequality constraint at range end */
16726f82e85aSdrh     int startEq;                 /* True if range start uses ==, >= or <= */
16736f82e85aSdrh     int endEq;                   /* True if range end uses ==, >= or <= */
16746f82e85aSdrh     int start_constraints;       /* Start of range is constrained */
16756f82e85aSdrh     int nConstraint;             /* Number of constraint terms */
16766f82e85aSdrh     int iIdxCur;                 /* The VDBE cursor for the index */
16776f82e85aSdrh     int nExtraReg = 0;           /* Number of extra registers needed */
16786f82e85aSdrh     int op;                      /* Instruction opcode */
16796f82e85aSdrh     char *zStartAff;             /* Affinity for start of range constraint */
1680b7ca2177Sdan     char *zEndAff = 0;           /* Affinity for end of range constraint */
16816f82e85aSdrh     u8 bSeekPastNull = 0;        /* True to seek past initial nulls */
16826f82e85aSdrh     u8 bStopAtNull = 0;          /* Add condition to terminate at NULLs */
168347df8a2cSdrh     int omitTable;               /* True if we use the index only */
168474e1b861Sdrh     int regBignull = 0;          /* big-null flag register */
168504e70ce0Sdrh     int addrSeekScan = 0;        /* Opcode of the OP_SeekScan, if any */
16866f82e85aSdrh 
16876f82e85aSdrh     pIdx = pLoop->u.btree.pIndex;
16886f82e85aSdrh     iIdxCur = pLevel->iIdxCur;
16896f82e85aSdrh     assert( nEq>=pLoop->nSkip );
16906f82e85aSdrh 
16916f82e85aSdrh     /* Find any inequality constraint terms for the start and end
16926f82e85aSdrh     ** of the range.
16936f82e85aSdrh     */
16946f82e85aSdrh     j = nEq;
16956f82e85aSdrh     if( pLoop->wsFlags & WHERE_BTM_LIMIT ){
16966f82e85aSdrh       pRangeStart = pLoop->aLTerm[j++];
169771c57db0Sdan       nExtraReg = MAX(nExtraReg, pLoop->u.btree.nBtm);
16986f82e85aSdrh       /* Like optimization range constraints always occur in pairs */
16996f82e85aSdrh       assert( (pRangeStart->wtFlags & TERM_LIKEOPT)==0 ||
17006f82e85aSdrh               (pLoop->wsFlags & WHERE_TOP_LIMIT)!=0 );
17016f82e85aSdrh     }
17026f82e85aSdrh     if( pLoop->wsFlags & WHERE_TOP_LIMIT ){
17036f82e85aSdrh       pRangeEnd = pLoop->aLTerm[j++];
170471c57db0Sdan       nExtraReg = MAX(nExtraReg, pLoop->u.btree.nTop);
170541d2e66eSdrh #ifndef SQLITE_LIKE_DOESNT_MATCH_BLOBS
17066f82e85aSdrh       if( (pRangeEnd->wtFlags & TERM_LIKEOPT)!=0 ){
17076f82e85aSdrh         assert( pRangeStart!=0 );                     /* LIKE opt constraints */
17086f82e85aSdrh         assert( pRangeStart->wtFlags & TERM_LIKEOPT );   /* occur in pairs */
170944aebff2Sdrh         pLevel->iLikeRepCntr = (u32)++pParse->nMem;
171044aebff2Sdrh         sqlite3VdbeAddOp2(v, OP_Integer, 1, (int)pLevel->iLikeRepCntr);
17116f82e85aSdrh         VdbeComment((v, "LIKE loop counter"));
17126f82e85aSdrh         pLevel->addrLikeRep = sqlite3VdbeCurrentAddr(v);
171344aebff2Sdrh         /* iLikeRepCntr actually stores 2x the counter register number.  The
171444aebff2Sdrh         ** bottom bit indicates whether the search order is ASC or DESC. */
171544aebff2Sdrh         testcase( bRev );
171644aebff2Sdrh         testcase( pIdx->aSortOrder[nEq]==SQLITE_SO_DESC );
171744aebff2Sdrh         assert( (bRev & ~1)==0 );
171844aebff2Sdrh         pLevel->iLikeRepCntr <<=1;
171944aebff2Sdrh         pLevel->iLikeRepCntr |= bRev ^ (pIdx->aSortOrder[nEq]==SQLITE_SO_DESC);
17206f82e85aSdrh       }
172141d2e66eSdrh #endif
172248590fcbSdrh       if( pRangeStart==0 ){
172348590fcbSdrh         j = pIdx->aiColumn[nEq];
172448590fcbSdrh         if( (j>=0 && pIdx->pTable->aCol[j].notNull==0) || j==XN_EXPR ){
17256f82e85aSdrh           bSeekPastNull = 1;
17266f82e85aSdrh         }
17276f82e85aSdrh       }
172848590fcbSdrh     }
17296f82e85aSdrh     assert( pRangeEnd==0 || (pRangeEnd->wtFlags & TERM_VNULL)==0 );
17306f82e85aSdrh 
173115750a26Sdan     /* If the WHERE_BIGNULL_SORT flag is set, then index column nEq uses
173215750a26Sdan     ** a non-default "big-null" sort (either ASC NULLS LAST or DESC NULLS
173315750a26Sdan     ** FIRST). In both cases separate ordered scans are made of those
173415750a26Sdan     ** index entries for which the column is null and for those for which
173515750a26Sdan     ** it is not. For an ASC sort, the non-NULL entries are scanned first.
173615750a26Sdan     ** For DESC, NULL entries are scanned first.
173715750a26Sdan     */
173815750a26Sdan     if( (pLoop->wsFlags & (WHERE_TOP_LIMIT|WHERE_BTM_LIMIT))==0
173915750a26Sdan      && (pLoop->wsFlags & WHERE_BIGNULL_SORT)!=0
174015750a26Sdan     ){
174115750a26Sdan       assert( bSeekPastNull==0 && nExtraReg==0 && nBtm==0 && nTop==0 );
174215750a26Sdan       assert( pRangeEnd==0 && pRangeStart==0 );
17434adb1d00Sdan       testcase( pLoop->nSkip>0 );
174415750a26Sdan       nExtraReg = 1;
174515750a26Sdan       bSeekPastNull = 1;
174615750a26Sdan       pLevel->regBignull = regBignull = ++pParse->nMem;
17477f05d52cSdrh       if( pLevel->iLeftJoin ){
17487f05d52cSdrh         sqlite3VdbeAddOp2(v, OP_Integer, 0, regBignull);
17497f05d52cSdrh       }
1750cc491f4bSdan       pLevel->addrBignull = sqlite3VdbeMakeLabel(pParse);
175115750a26Sdan     }
175215750a26Sdan 
17536f82e85aSdrh     /* If we are doing a reverse order scan on an ascending index, or
17546f82e85aSdrh     ** a forward order scan on a descending index, interchange the
17556f82e85aSdrh     ** start and end terms (pRangeStart and pRangeEnd).
17566f82e85aSdrh     */
17577ffb16b4Sdrh     if( (nEq<pIdx->nColumn && bRev==(pIdx->aSortOrder[nEq]==SQLITE_SO_ASC)) ){
17586f82e85aSdrh       SWAP(WhereTerm *, pRangeEnd, pRangeStart);
17596f82e85aSdrh       SWAP(u8, bSeekPastNull, bStopAtNull);
176071c57db0Sdan       SWAP(u8, nBtm, nTop);
17616f82e85aSdrh     }
17626f82e85aSdrh 
1763df1b52e7Sdan     if( iLevel>0 && (pLoop->wsFlags & WHERE_IN_SEEKSCAN)!=0 ){
1764df1b52e7Sdan       /* In case OP_SeekScan is used, ensure that the index cursor does not
1765df1b52e7Sdan       ** point to a valid row for the first iteration of this loop. */
1766df1b52e7Sdan       sqlite3VdbeAddOp1(v, OP_NullRow, iIdxCur);
1767df1b52e7Sdan     }
1768df1b52e7Sdan 
1769bcf40a7fSdrh     /* Generate code to evaluate all constraint terms using == or IN
1770bcf40a7fSdrh     ** and store the values of those terms in an array of registers
1771bcf40a7fSdrh     ** starting at regBase.
1772bcf40a7fSdrh     */
1773b324cf75Sdan     codeCursorHint(pTabItem, pWInfo, pLevel, pRangeEnd);
1774bcf40a7fSdrh     regBase = codeAllEqualityTerms(pParse,pLevel,bRev,nExtraReg,&zStartAff);
1775bcf40a7fSdrh     assert( zStartAff==0 || sqlite3Strlen30(zStartAff)>=nEq );
1776b7ca2177Sdan     if( zStartAff && nTop ){
1777b7ca2177Sdan       zEndAff = sqlite3DbStrDup(db, &zStartAff[nEq]);
1778b7ca2177Sdan     }
1779cc491f4bSdan     addrNxt = (regBignull ? pLevel->addrBignull : pLevel->addrNxt);
1780bcf40a7fSdrh 
17816f82e85aSdrh     testcase( pRangeStart && (pRangeStart->eOperator & WO_LE)!=0 );
17826f82e85aSdrh     testcase( pRangeStart && (pRangeStart->eOperator & WO_GE)!=0 );
17836f82e85aSdrh     testcase( pRangeEnd && (pRangeEnd->eOperator & WO_LE)!=0 );
17846f82e85aSdrh     testcase( pRangeEnd && (pRangeEnd->eOperator & WO_GE)!=0 );
17856f82e85aSdrh     startEq = !pRangeStart || pRangeStart->eOperator & (WO_LE|WO_GE);
17866f82e85aSdrh     endEq =   !pRangeEnd || pRangeEnd->eOperator & (WO_LE|WO_GE);
17876f82e85aSdrh     start_constraints = pRangeStart || nEq>0;
17886f82e85aSdrh 
17896f82e85aSdrh     /* Seek the index cursor to the start of the range. */
17906f82e85aSdrh     nConstraint = nEq;
17916f82e85aSdrh     if( pRangeStart ){
17926f82e85aSdrh       Expr *pRight = pRangeStart->pExpr->pRight;
179371c57db0Sdan       codeExprOrVector(pParse, pRight, regBase+nEq, nBtm);
17946f82e85aSdrh       whereLikeOptimizationStringFixup(v, pLevel, pRangeStart);
1795395a60daSdrh       if( (pRangeStart->wtFlags & TERM_VNULL)==0
17966f82e85aSdrh        && sqlite3ExprCanBeNull(pRight)
17976f82e85aSdrh       ){
17986f82e85aSdrh         sqlite3VdbeAddOp2(v, OP_IsNull, regBase+nEq, addrNxt);
17996f82e85aSdrh         VdbeCoverage(v);
18006f82e85aSdrh       }
18016f82e85aSdrh       if( zStartAff ){
1802e3c6b61cSdrh         updateRangeAffinityStr(pRight, nBtm, &zStartAff[nEq]);
18036f82e85aSdrh       }
180471c57db0Sdan       nConstraint += nBtm;
18056f82e85aSdrh       testcase( pRangeStart->wtFlags & TERM_VIRTUAL );
1806625015e0Sdan       if( sqlite3ExprIsVector(pRight)==0 ){
180771c57db0Sdan         disableTerm(pLevel, pRangeStart);
180871c57db0Sdan       }else{
180971c57db0Sdan         startEq = 1;
181071c57db0Sdan       }
1811426f4ab0Sdrh       bSeekPastNull = 0;
18126f82e85aSdrh     }else if( bSeekPastNull ){
18136f82e85aSdrh       startEq = 0;
18140086e078Sdrh       sqlite3VdbeAddOp2(v, OP_Null, 0, regBase+nEq);
18156f82e85aSdrh       start_constraints = 1;
18160086e078Sdrh       nConstraint++;
181715750a26Sdan     }else if( regBignull ){
181815750a26Sdan       sqlite3VdbeAddOp2(v, OP_Null, 0, regBase+nEq);
181915750a26Sdan       start_constraints = 1;
182015750a26Sdan       nConstraint++;
18216f82e85aSdrh     }
18226f82e85aSdrh     codeApplyAffinity(pParse, regBase, nConstraint - bSeekPastNull, zStartAff);
18230bf2ad6aSdrh     if( pLoop->nSkip>0 && nConstraint==pLoop->nSkip ){
18240bf2ad6aSdrh       /* The skip-scan logic inside the call to codeAllEqualityConstraints()
18250bf2ad6aSdrh       ** above has already left the cursor sitting on the correct row,
18260bf2ad6aSdrh       ** so no further seeking is needed */
18270bf2ad6aSdrh     }else{
182815750a26Sdan       if( regBignull ){
1829ec3dda5bSdrh         sqlite3VdbeAddOp2(v, OP_Integer, 1, regBignull);
1830a31d3554Sdrh         VdbeComment((v, "NULL-scan pass ctr"));
183115750a26Sdan       }
183215750a26Sdan 
18336f82e85aSdrh       op = aStartOp[(start_constraints<<2) + (startEq<<1) + bRev];
18346f82e85aSdrh       assert( op!=0 );
18357d14ffe4Sdrh       if( (pLoop->wsFlags & WHERE_IN_SEEKSCAN)!=0 && op==OP_SeekGE ){
183668cf0aceSdrh         assert( regBignull==0 );
18374f65b3bbSdrh         /* TUNING:  The OP_SeekScan opcode seeks to reduce the number
18384f65b3bbSdrh         ** of expensive seek operations by replacing a single seek with
18394f65b3bbSdrh         ** 1 or more step operations.  The question is, how many steps
18404f65b3bbSdrh         ** should we try before giving up and going with a seek.  The cost
18414f65b3bbSdrh         ** of a seek is proportional to the logarithm of the of the number
18424f65b3bbSdrh         ** of entries in the tree, so basing the number of steps to try
18434f65b3bbSdrh         ** on the estimated number of rows in the btree seems like a good
18444f65b3bbSdrh         ** guess. */
184504e70ce0Sdrh         addrSeekScan = sqlite3VdbeAddOp1(v, OP_SeekScan,
184604e70ce0Sdrh                                          (pIdx->aiRowLogEst[0]+9)/10);
18474f65b3bbSdrh         VdbeCoverage(v);
184868cf0aceSdrh       }
18496f82e85aSdrh       sqlite3VdbeAddOp4Int(v, op, iIdxCur, addrNxt, regBase, nConstraint);
18506f82e85aSdrh       VdbeCoverage(v);
18516f82e85aSdrh       VdbeCoverageIf(v, op==OP_Rewind);  testcase( op==OP_Rewind );
18526f82e85aSdrh       VdbeCoverageIf(v, op==OP_Last);    testcase( op==OP_Last );
18536f82e85aSdrh       VdbeCoverageIf(v, op==OP_SeekGT);  testcase( op==OP_SeekGT );
18546f82e85aSdrh       VdbeCoverageIf(v, op==OP_SeekGE);  testcase( op==OP_SeekGE );
18556f82e85aSdrh       VdbeCoverageIf(v, op==OP_SeekLE);  testcase( op==OP_SeekLE );
18566f82e85aSdrh       VdbeCoverageIf(v, op==OP_SeekLT);  testcase( op==OP_SeekLT );
1857ddd7421cSdan 
18580086e078Sdrh       assert( bSeekPastNull==0 || bStopAtNull==0 );
185915750a26Sdan       if( regBignull ){
18600086e078Sdrh         assert( bSeekPastNull==1 || bStopAtNull==1 );
18615f6a4ea2Sdrh         assert( bSeekPastNull==!bStopAtNull );
18620086e078Sdrh         assert( bStopAtNull==startEq );
1863ddd7421cSdan         sqlite3VdbeAddOp2(v, OP_Goto, 0, sqlite3VdbeCurrentAddr(v)+2);
18640086e078Sdrh         op = aStartOp[(nConstraint>1)*4 + 2 + bRev];
18650086e078Sdrh         sqlite3VdbeAddOp4Int(v, op, iIdxCur, addrNxt, regBase,
18660086e078Sdrh                              nConstraint-startEq);
1867505ae9deSdrh         VdbeCoverage(v);
1868505ae9deSdrh         VdbeCoverageIf(v, op==OP_Rewind);  testcase( op==OP_Rewind );
1869505ae9deSdrh         VdbeCoverageIf(v, op==OP_Last);    testcase( op==OP_Last );
1870505ae9deSdrh         VdbeCoverageIf(v, op==OP_SeekGE);  testcase( op==OP_SeekGE );
1871505ae9deSdrh         VdbeCoverageIf(v, op==OP_SeekLE);  testcase( op==OP_SeekLE );
18720086e078Sdrh         assert( op==OP_Rewind || op==OP_Last || op==OP_SeekGE || op==OP_SeekLE);
1873ddd7421cSdan       }
1874a6d2f8ebSdrh     }
18756f82e85aSdrh 
18766f82e85aSdrh     /* Load the value for the inequality constraint at the end of the
18776f82e85aSdrh     ** range (if any).
18786f82e85aSdrh     */
18796f82e85aSdrh     nConstraint = nEq;
18806f82e85aSdrh     if( pRangeEnd ){
18816f82e85aSdrh       Expr *pRight = pRangeEnd->pExpr->pRight;
188271c57db0Sdan       codeExprOrVector(pParse, pRight, regBase+nEq, nTop);
18836f82e85aSdrh       whereLikeOptimizationStringFixup(v, pLevel, pRangeEnd);
1884395a60daSdrh       if( (pRangeEnd->wtFlags & TERM_VNULL)==0
18856f82e85aSdrh        && sqlite3ExprCanBeNull(pRight)
18866f82e85aSdrh       ){
18876f82e85aSdrh         sqlite3VdbeAddOp2(v, OP_IsNull, regBase+nEq, addrNxt);
18886f82e85aSdrh         VdbeCoverage(v);
18896f82e85aSdrh       }
18900c36fca0Sdrh       if( zEndAff ){
1891e3c6b61cSdrh         updateRangeAffinityStr(pRight, nTop, zEndAff);
1892b7ca2177Sdan         codeApplyAffinity(pParse, regBase+nEq, nTop, zEndAff);
18930c36fca0Sdrh       }else{
18940c36fca0Sdrh         assert( pParse->db->mallocFailed );
18950c36fca0Sdrh       }
189671c57db0Sdan       nConstraint += nTop;
18976f82e85aSdrh       testcase( pRangeEnd->wtFlags & TERM_VIRTUAL );
189871c57db0Sdan 
1899625015e0Sdan       if( sqlite3ExprIsVector(pRight)==0 ){
190071c57db0Sdan         disableTerm(pLevel, pRangeEnd);
190171c57db0Sdan       }else{
190271c57db0Sdan         endEq = 1;
190371c57db0Sdan       }
19046f82e85aSdrh     }else if( bStopAtNull ){
190515750a26Sdan       if( regBignull==0 ){
19066f82e85aSdrh         sqlite3VdbeAddOp2(v, OP_Null, 0, regBase+nEq);
19076f82e85aSdrh         endEq = 0;
190815750a26Sdan       }
19096f82e85aSdrh       nConstraint++;
19106f82e85aSdrh     }
19116f82e85aSdrh     sqlite3DbFree(db, zStartAff);
1912b7ca2177Sdan     sqlite3DbFree(db, zEndAff);
19136f82e85aSdrh 
19146f82e85aSdrh     /* Top of the loop body */
19156f82e85aSdrh     pLevel->p2 = sqlite3VdbeCurrentAddr(v);
19166f82e85aSdrh 
19176f82e85aSdrh     /* Check if the index cursor is past the end of the range. */
19186f82e85aSdrh     if( nConstraint ){
191915750a26Sdan       if( regBignull ){
19205f6a4ea2Sdrh         /* Except, skip the end-of-range check while doing the NULL-scan */
1921ec3dda5bSdrh         sqlite3VdbeAddOp2(v, OP_IfNot, regBignull, sqlite3VdbeCurrentAddr(v)+3);
1922a31d3554Sdrh         VdbeComment((v, "If NULL-scan 2nd pass"));
1923505ae9deSdrh         VdbeCoverage(v);
192415750a26Sdan       }
19256f82e85aSdrh       op = aEndOp[bRev*2 + endEq];
19266f82e85aSdrh       sqlite3VdbeAddOp4Int(v, op, iIdxCur, addrNxt, regBase, nConstraint);
19276f82e85aSdrh       testcase( op==OP_IdxGT );  VdbeCoverageIf(v, op==OP_IdxGT );
19286f82e85aSdrh       testcase( op==OP_IdxGE );  VdbeCoverageIf(v, op==OP_IdxGE );
19296f82e85aSdrh       testcase( op==OP_IdxLT );  VdbeCoverageIf(v, op==OP_IdxLT );
19306f82e85aSdrh       testcase( op==OP_IdxLE );  VdbeCoverageIf(v, op==OP_IdxLE );
193104e70ce0Sdrh       if( addrSeekScan ) sqlite3VdbeJumpHere(v, addrSeekScan);
19326f82e85aSdrh     }
193315750a26Sdan     if( regBignull ){
19345f6a4ea2Sdrh       /* During a NULL-scan, check to see if we have reached the end of
19355f6a4ea2Sdrh       ** the NULLs */
19365f6a4ea2Sdrh       assert( bSeekPastNull==!bStopAtNull );
19375f6a4ea2Sdrh       assert( bSeekPastNull+bStopAtNull==1 );
19385f6a4ea2Sdrh       assert( nConstraint+bSeekPastNull>0 );
1939ec3dda5bSdrh       sqlite3VdbeAddOp2(v, OP_If, regBignull, sqlite3VdbeCurrentAddr(v)+2);
1940a31d3554Sdrh       VdbeComment((v, "If NULL-scan 1st pass"));
1941505ae9deSdrh       VdbeCoverage(v);
19425f6a4ea2Sdrh       op = aEndOp[bRev*2 + bSeekPastNull];
19435f6a4ea2Sdrh       sqlite3VdbeAddOp4Int(v, op, iIdxCur, addrNxt, regBase,
19445f6a4ea2Sdrh                            nConstraint+bSeekPastNull);
1945505ae9deSdrh       testcase( op==OP_IdxGT );  VdbeCoverageIf(v, op==OP_IdxGT );
1946505ae9deSdrh       testcase( op==OP_IdxGE );  VdbeCoverageIf(v, op==OP_IdxGE );
1947505ae9deSdrh       testcase( op==OP_IdxLT );  VdbeCoverageIf(v, op==OP_IdxLT );
1948505ae9deSdrh       testcase( op==OP_IdxLE );  VdbeCoverageIf(v, op==OP_IdxLE );
194915750a26Sdan     }
19506f82e85aSdrh 
1951f761d937Sdrh     if( (pLoop->wsFlags & WHERE_IN_EARLYOUT)!=0 ){
1952fa17e134Sdrh       sqlite3VdbeAddOp3(v, OP_SeekHit, iIdxCur, nEq, nEq);
19538c2b6d78Sdrh     }
19548c2b6d78Sdrh 
19556f82e85aSdrh     /* Seek the table cursor, if required */
195647df8a2cSdrh     omitTable = (pLoop->wsFlags & WHERE_IDX_ONLY)!=0
195747df8a2cSdrh            && (pWInfo->wctrlFlags & WHERE_OR_SUBCLAUSE)==0;
19586f82e85aSdrh     if( omitTable ){
19596f82e85aSdrh       /* pIdx is a covering index.  No need to access the main table. */
19606f82e85aSdrh     }else if( HasRowid(pIdx->pTable) ){
1961784c1b93Sdrh       codeDeferredSeek(pWInfo, pIdx, iCur, iIdxCur);
19626f82e85aSdrh     }else if( iCur!=iIdxCur ){
19636f82e85aSdrh       Index *pPk = sqlite3PrimaryKeyIndex(pIdx->pTable);
19646f82e85aSdrh       iRowidReg = sqlite3GetTempRange(pParse, pPk->nKeyCol);
19656f82e85aSdrh       for(j=0; j<pPk->nKeyCol; j++){
1966b9bcf7caSdrh         k = sqlite3TableColumnToIndex(pIdx, pPk->aiColumn[j]);
19676f82e85aSdrh         sqlite3VdbeAddOp3(v, OP_Column, iIdxCur, k, iRowidReg+j);
19686f82e85aSdrh       }
19696f82e85aSdrh       sqlite3VdbeAddOp4Int(v, OP_NotFound, iCur, addrCont,
19706f82e85aSdrh                            iRowidReg, pPk->nKeyCol); VdbeCoverage(v);
19716f82e85aSdrh     }
19726f82e85aSdrh 
1973db535390Sdrh     if( pLevel->iLeftJoin==0 ){
1974eac5fc04Sdrh       /* If pIdx is an index on one or more expressions, then look through
1975eac5fc04Sdrh       ** all the expressions in pWInfo and try to transform matching expressions
1976c7476735Sdrh       ** into reference to index columns.  Also attempt to translate references
1977c7476735Sdrh       ** to virtual columns in the table into references to (stored) columns
1978c7476735Sdrh       ** of the index.
19794da04f78Sdan       **
19804da04f78Sdan       ** Do not do this for the RHS of a LEFT JOIN. This is because the
19814da04f78Sdan       ** expression may be evaluated after OP_NullRow has been executed on
19824da04f78Sdan       ** the cursor. In this case it is important to do the full evaluation,
19834da04f78Sdan       ** as the result of the expression may not be NULL, even if all table
19845776c139Sdrh       ** column values are.  https://www.sqlite.org/src/info/7fa8049685b50b5a
19858851e100Sdrh       **
19868851e100Sdrh       ** Also, do not do this when processing one index an a multi-index
19878851e100Sdrh       ** OR clause, since the transformation will become invalid once we
19888851e100Sdrh       ** move forward to the next index.
19898851e100Sdrh       ** https://sqlite.org/src/info/4e8e4857d32d401f
1990eac5fc04Sdrh       */
1991db535390Sdrh       if( (pWInfo->wctrlFlags & WHERE_OR_SUBCLAUSE)==0 ){
1992aca19e19Sdrh         whereIndexExprTrans(pIdx, iCur, iIdxCur, pWInfo);
19934da04f78Sdan       }
1994aca19e19Sdrh 
1995b531aa8fSdrh       /* If a partial index is driving the loop, try to eliminate WHERE clause
1996b531aa8fSdrh       ** terms from the query that must be true due to the WHERE clause of
1997db535390Sdrh       ** the partial index.
1998db535390Sdrh       **
1999db535390Sdrh       ** 2019-11-02 ticket 623eff57e76d45f6: This optimization does not work
2000db535390Sdrh       ** for a LEFT JOIN.
2001b531aa8fSdrh       */
2002b531aa8fSdrh       if( pIdx->pPartIdxWhere ){
2003b531aa8fSdrh         whereApplyPartialIndexConstraints(pIdx->pPartIdxWhere, iCur, pWC);
2004b531aa8fSdrh       }
2005db535390Sdrh     }else{
2006db535390Sdrh       testcase( pIdx->pPartIdxWhere );
200706fc2455Sdrh       /* The following assert() is not a requirement, merely an observation:
200806fc2455Sdrh       ** The OR-optimization doesn't work for the right hand table of
200906fc2455Sdrh       ** a LEFT JOIN: */
201006fc2455Sdrh       assert( (pWInfo->wctrlFlags & WHERE_OR_SUBCLAUSE)==0 );
2011db535390Sdrh     }
2012b531aa8fSdrh 
201371c57db0Sdan     /* Record the instruction used to terminate the loop. */
20146f82e85aSdrh     if( pLoop->wsFlags & WHERE_ONEROW ){
20156f82e85aSdrh       pLevel->op = OP_Noop;
20166f82e85aSdrh     }else if( bRev ){
20176f82e85aSdrh       pLevel->op = OP_Prev;
20186f82e85aSdrh     }else{
20196f82e85aSdrh       pLevel->op = OP_Next;
20206f82e85aSdrh     }
20216f82e85aSdrh     pLevel->p1 = iIdxCur;
20226f82e85aSdrh     pLevel->p3 = (pLoop->wsFlags&WHERE_UNQ_WANTED)!=0 ? 1:0;
20236f82e85aSdrh     if( (pLoop->wsFlags & WHERE_CONSTRAINT)==0 ){
20246f82e85aSdrh       pLevel->p5 = SQLITE_STMTSTATUS_FULLSCAN_STEP;
20256f82e85aSdrh     }else{
20266f82e85aSdrh       assert( pLevel->p5==0 );
20276f82e85aSdrh     }
20286f654a40Sdan     if( omitTable ) pIdx = 0;
20296f82e85aSdrh   }else
20306f82e85aSdrh 
20316f82e85aSdrh #ifndef SQLITE_OMIT_OR_OPTIMIZATION
20326f82e85aSdrh   if( pLoop->wsFlags & WHERE_MULTI_OR ){
20336f82e85aSdrh     /* Case 5:  Two or more separately indexed terms connected by OR
20346f82e85aSdrh     **
20356f82e85aSdrh     ** Example:
20366f82e85aSdrh     **
20376f82e85aSdrh     **   CREATE TABLE t1(a,b,c,d);
20386f82e85aSdrh     **   CREATE INDEX i1 ON t1(a);
20396f82e85aSdrh     **   CREATE INDEX i2 ON t1(b);
20406f82e85aSdrh     **   CREATE INDEX i3 ON t1(c);
20416f82e85aSdrh     **
20426f82e85aSdrh     **   SELECT * FROM t1 WHERE a=5 OR b=7 OR (c=11 AND d=13)
20436f82e85aSdrh     **
20446f82e85aSdrh     ** In the example, there are three indexed terms connected by OR.
20456f82e85aSdrh     ** The top of the loop looks like this:
20466f82e85aSdrh     **
20476f82e85aSdrh     **          Null       1                # Zero the rowset in reg 1
20486f82e85aSdrh     **
20496f82e85aSdrh     ** Then, for each indexed term, the following. The arguments to
20506f82e85aSdrh     ** RowSetTest are such that the rowid of the current row is inserted
20516f82e85aSdrh     ** into the RowSet. If it is already present, control skips the
20526f82e85aSdrh     ** Gosub opcode and jumps straight to the code generated by WhereEnd().
20536f82e85aSdrh     **
20546f82e85aSdrh     **        sqlite3WhereBegin(<term>)
20556f82e85aSdrh     **          RowSetTest                  # Insert rowid into rowset
20566f82e85aSdrh     **          Gosub      2 A
20576f82e85aSdrh     **        sqlite3WhereEnd()
20586f82e85aSdrh     **
20596f82e85aSdrh     ** Following the above, code to terminate the loop. Label A, the target
20606f82e85aSdrh     ** of the Gosub above, jumps to the instruction right after the Goto.
20616f82e85aSdrh     **
20626f82e85aSdrh     **          Null       1                # Zero the rowset in reg 1
20636f82e85aSdrh     **          Goto       B                # The loop is finished.
20646f82e85aSdrh     **
20656f82e85aSdrh     **       A: <loop body>                 # Return data, whatever.
20666f82e85aSdrh     **
20676f82e85aSdrh     **          Return     2                # Jump back to the Gosub
20686f82e85aSdrh     **
20696f82e85aSdrh     **       B: <after the loop>
20706f82e85aSdrh     **
20716f82e85aSdrh     ** Added 2014-05-26: If the table is a WITHOUT ROWID table, then
20726f82e85aSdrh     ** use an ephemeral index instead of a RowSet to record the primary
20736f82e85aSdrh     ** keys of the rows we have already seen.
20746f82e85aSdrh     **
20756f82e85aSdrh     */
20766f82e85aSdrh     WhereClause *pOrWc;    /* The OR-clause broken out into subterms */
20776f82e85aSdrh     SrcList *pOrTab;       /* Shortened table list or OR-clause generation */
20786f82e85aSdrh     Index *pCov = 0;             /* Potential covering index (or NULL) */
20796f82e85aSdrh     int iCovCur = pParse->nTab++;  /* Cursor used for index scans (if any) */
20806f82e85aSdrh 
20816f82e85aSdrh     int regReturn = ++pParse->nMem;           /* Register used with OP_Gosub */
20826f82e85aSdrh     int regRowset = 0;                        /* Register for RowSet object */
20836f82e85aSdrh     int regRowid = 0;                         /* Register holding rowid */
2084ec4ccdbcSdrh     int iLoopBody = sqlite3VdbeMakeLabel(pParse);/* Start of loop body */
20856f82e85aSdrh     int iRetInit;                             /* Address of regReturn init */
20866f82e85aSdrh     int untestedTerms = 0;             /* Some terms not completely tested */
20876f82e85aSdrh     int ii;                            /* Loop counter */
20886f82e85aSdrh     Expr *pAndExpr = 0;                /* An ".. AND (...)" expression */
20896f82e85aSdrh     Table *pTab = pTabItem->pTab;
20906f82e85aSdrh 
20916f82e85aSdrh     pTerm = pLoop->aLTerm[0];
20926f82e85aSdrh     assert( pTerm!=0 );
20936f82e85aSdrh     assert( pTerm->eOperator & WO_OR );
20946f82e85aSdrh     assert( (pTerm->wtFlags & TERM_ORINFO)!=0 );
20956f82e85aSdrh     pOrWc = &pTerm->u.pOrInfo->wc;
20966f82e85aSdrh     pLevel->op = OP_Return;
20976f82e85aSdrh     pLevel->p1 = regReturn;
20986f82e85aSdrh 
20996f82e85aSdrh     /* Set up a new SrcList in pOrTab containing the table being scanned
21006f82e85aSdrh     ** by this loop in the a[0] slot and all notReady tables in a[1..] slots.
21016f82e85aSdrh     ** This becomes the SrcList in the recursive call to sqlite3WhereBegin().
21026f82e85aSdrh     */
21036f82e85aSdrh     if( pWInfo->nLevel>1 ){
21046f82e85aSdrh       int nNotReady;                 /* The number of notReady tables */
21057601294aSdrh       SrcItem *origSrc;              /* Original list of tables */
21066f82e85aSdrh       nNotReady = pWInfo->nLevel - iLevel - 1;
21076f82e85aSdrh       pOrTab = sqlite3StackAllocRaw(db,
21086f82e85aSdrh                             sizeof(*pOrTab)+ nNotReady*sizeof(pOrTab->a[0]));
21096f82e85aSdrh       if( pOrTab==0 ) return notReady;
21106f82e85aSdrh       pOrTab->nAlloc = (u8)(nNotReady + 1);
21116f82e85aSdrh       pOrTab->nSrc = pOrTab->nAlloc;
21126f82e85aSdrh       memcpy(pOrTab->a, pTabItem, sizeof(*pTabItem));
21136f82e85aSdrh       origSrc = pWInfo->pTabList->a;
21146f82e85aSdrh       for(k=1; k<=nNotReady; k++){
21156f82e85aSdrh         memcpy(&pOrTab->a[k], &origSrc[pLevel[k].iFrom], sizeof(pOrTab->a[k]));
21166f82e85aSdrh       }
21176f82e85aSdrh     }else{
21186f82e85aSdrh       pOrTab = pWInfo->pTabList;
21196f82e85aSdrh     }
21206f82e85aSdrh 
21216f82e85aSdrh     /* Initialize the rowset register to contain NULL. An SQL NULL is
21226f82e85aSdrh     ** equivalent to an empty rowset.  Or, create an ephemeral index
21236f82e85aSdrh     ** capable of holding primary keys in the case of a WITHOUT ROWID.
21246f82e85aSdrh     **
21256f82e85aSdrh     ** Also initialize regReturn to contain the address of the instruction
21266f82e85aSdrh     ** immediately following the OP_Return at the bottom of the loop. This
21276f82e85aSdrh     ** is required in a few obscure LEFT JOIN cases where control jumps
21286f82e85aSdrh     ** over the top of the loop into the body of it. In this case the
21296f82e85aSdrh     ** correct response for the end-of-loop code (the OP_Return) is to
21306f82e85aSdrh     ** fall through to the next instruction, just as an OP_Next does if
21316f82e85aSdrh     ** called on an uninitialized cursor.
21326f82e85aSdrh     */
21336f82e85aSdrh     if( (pWInfo->wctrlFlags & WHERE_DUPLICATES_OK)==0 ){
21346f82e85aSdrh       if( HasRowid(pTab) ){
21356f82e85aSdrh         regRowset = ++pParse->nMem;
21366f82e85aSdrh         sqlite3VdbeAddOp2(v, OP_Null, 0, regRowset);
21376f82e85aSdrh       }else{
21386f82e85aSdrh         Index *pPk = sqlite3PrimaryKeyIndex(pTab);
21396f82e85aSdrh         regRowset = pParse->nTab++;
21406f82e85aSdrh         sqlite3VdbeAddOp2(v, OP_OpenEphemeral, regRowset, pPk->nKeyCol);
21416f82e85aSdrh         sqlite3VdbeSetP4KeyInfo(pParse, pPk);
21426f82e85aSdrh       }
21436f82e85aSdrh       regRowid = ++pParse->nMem;
21446f82e85aSdrh     }
21456f82e85aSdrh     iRetInit = sqlite3VdbeAddOp2(v, OP_Integer, 0, regReturn);
21466f82e85aSdrh 
21476f82e85aSdrh     /* If the original WHERE clause is z of the form:  (x1 OR x2 OR ...) AND y
21486f82e85aSdrh     ** Then for every term xN, evaluate as the subexpression: xN AND z
21496f82e85aSdrh     ** That way, terms in y that are factored into the disjunction will
21506f82e85aSdrh     ** be picked up by the recursive calls to sqlite3WhereBegin() below.
21516f82e85aSdrh     **
21526f82e85aSdrh     ** Actually, each subexpression is converted to "xN AND w" where w is
21536f82e85aSdrh     ** the "interesting" terms of z - terms that did not originate in the
21546f82e85aSdrh     ** ON or USING clause of a LEFT JOIN, and terms that are usable as
21556f82e85aSdrh     ** indices.
21566f82e85aSdrh     **
21576f82e85aSdrh     ** This optimization also only applies if the (x1 OR x2 OR ...) term
21586f82e85aSdrh     ** is not contained in the ON clause of a LEFT JOIN.
21596f82e85aSdrh     ** See ticket http://www.sqlite.org/src/info/f2369304e4
21606f82e85aSdrh     */
21616f82e85aSdrh     if( pWC->nTerm>1 ){
21626f82e85aSdrh       int iTerm;
21636f82e85aSdrh       for(iTerm=0; iTerm<pWC->nTerm; iTerm++){
21646f82e85aSdrh         Expr *pExpr = pWC->a[iTerm].pExpr;
21656f82e85aSdrh         if( &pWC->a[iTerm] == pTerm ) continue;
21663b83f0cdSdrh         testcase( pWC->a[iTerm].wtFlags & TERM_VIRTUAL );
21673b83f0cdSdrh         testcase( pWC->a[iTerm].wtFlags & TERM_CODED );
21683b83f0cdSdrh         if( (pWC->a[iTerm].wtFlags & (TERM_VIRTUAL|TERM_CODED))!=0 ) continue;
21696f82e85aSdrh         if( (pWC->a[iTerm].eOperator & WO_ALL)==0 ) continue;
21706f82e85aSdrh         testcase( pWC->a[iTerm].wtFlags & TERM_ORINFO );
21716f82e85aSdrh         pExpr = sqlite3ExprDup(db, pExpr, 0);
2172d5c851c1Sdrh         pAndExpr = sqlite3ExprAnd(pParse, pAndExpr, pExpr);
21736f82e85aSdrh       }
21746f82e85aSdrh       if( pAndExpr ){
2175f1722baaSdrh         /* The extra 0x10000 bit on the opcode is masked off and does not
2176f1722baaSdrh         ** become part of the new Expr.op.  However, it does make the
2177f1722baaSdrh         ** op==TK_AND comparison inside of sqlite3PExpr() false, and this
217893ffb50fSdrh         ** prevents sqlite3PExpr() from applying the AND short-circuit
2179f1722baaSdrh         ** optimization, which we do not want here. */
2180f1722baaSdrh         pAndExpr = sqlite3PExpr(pParse, TK_AND|0x10000, 0, pAndExpr);
21816f82e85aSdrh       }
21826f82e85aSdrh     }
21836f82e85aSdrh 
21846f82e85aSdrh     /* Run a separate WHERE clause for each term of the OR clause.  After
21856f82e85aSdrh     ** eliminating duplicates from other WHERE clauses, the action for each
21866f82e85aSdrh     ** sub-WHERE clause is to to invoke the main loop body as a subroutine.
21876f82e85aSdrh     */
21885d72d924Sdrh     ExplainQueryPlan((pParse, 1, "MULTI-INDEX OR"));
21896f82e85aSdrh     for(ii=0; ii<pOrWc->nTerm; ii++){
21906f82e85aSdrh       WhereTerm *pOrTerm = &pOrWc->a[ii];
21916f82e85aSdrh       if( pOrTerm->leftCursor==iCur || (pOrTerm->eOperator & WO_AND)!=0 ){
21926f82e85aSdrh         WhereInfo *pSubWInfo;           /* Info for single OR-term scan */
21936f82e85aSdrh         Expr *pOrExpr = pOrTerm->pExpr; /* Current OR clause term */
219493ffb50fSdrh         Expr *pDelete;                  /* Local copy of OR clause term */
2195728e0f91Sdrh         int jmp1 = 0;                   /* Address of jump operation */
21963b8eb08bSdrh         testcase( (pTabItem[0].fg.jointype & JT_LEFT)!=0
21973b8eb08bSdrh                && !ExprHasProperty(pOrExpr, EP_FromJoin)
21983b8eb08bSdrh         ); /* See TH3 vtab25.400 and ticket 614b25314c766238 */
219993ffb50fSdrh         pDelete = pOrExpr = sqlite3ExprDup(db, pOrExpr, 0);
220093ffb50fSdrh         if( db->mallocFailed ){
220193ffb50fSdrh           sqlite3ExprDelete(db, pDelete);
220293ffb50fSdrh           continue;
220393ffb50fSdrh         }
2204820fcd2cSdan         if( pAndExpr ){
22056f82e85aSdrh           pAndExpr->pLeft = pOrExpr;
22066f82e85aSdrh           pOrExpr = pAndExpr;
22076f82e85aSdrh         }
22086f82e85aSdrh         /* Loop through table entries that match term pOrTerm. */
2209bd462bccSdrh         ExplainQueryPlan((pParse, 1, "INDEX %d", ii+1));
22106f82e85aSdrh         WHERETRACE(0xffff, ("Subplan for OR-clause:\n"));
22116f82e85aSdrh         pSubWInfo = sqlite3WhereBegin(pParse, pOrTab, pOrExpr, 0, 0,
221268c0c710Sdrh                                       WHERE_OR_SUBCLAUSE, iCovCur);
22136f82e85aSdrh         assert( pSubWInfo || pParse->nErr || db->mallocFailed );
22146f82e85aSdrh         if( pSubWInfo ){
22156f82e85aSdrh           WhereLoop *pSubLoop;
22166f82e85aSdrh           int addrExplain = sqlite3WhereExplainOneScan(
2217e2188f0bSdrh               pParse, pOrTab, &pSubWInfo->a[0], 0
22186f82e85aSdrh           );
22196f82e85aSdrh           sqlite3WhereAddScanStatus(v, pOrTab, &pSubWInfo->a[0], addrExplain);
22206f82e85aSdrh 
22216f82e85aSdrh           /* This is the sub-WHERE clause body.  First skip over
22226f82e85aSdrh           ** duplicate rows from prior sub-WHERE clauses, and record the
22236f82e85aSdrh           ** rowid (or PRIMARY KEY) for the current row so that the same
22246f82e85aSdrh           ** row will be skipped in subsequent sub-WHERE clauses.
22256f82e85aSdrh           */
22266f82e85aSdrh           if( (pWInfo->wctrlFlags & WHERE_DUPLICATES_OK)==0 ){
22276f82e85aSdrh             int iSet = ((ii==pOrWc->nTerm-1)?-1:ii);
22286f82e85aSdrh             if( HasRowid(pTab) ){
22296df9c4b9Sdrh               sqlite3ExprCodeGetColumnOfTable(v, pTab, iCur, -1, regRowid);
2230728e0f91Sdrh               jmp1 = sqlite3VdbeAddOp4Int(v, OP_RowSetTest, regRowset, 0,
22318c607191Sdrh                                           regRowid, iSet);
22326f82e85aSdrh               VdbeCoverage(v);
22336f82e85aSdrh             }else{
22346f82e85aSdrh               Index *pPk = sqlite3PrimaryKeyIndex(pTab);
22356f82e85aSdrh               int nPk = pPk->nKeyCol;
22366f82e85aSdrh               int iPk;
22378c607191Sdrh               int r;
22386f82e85aSdrh 
22396f82e85aSdrh               /* Read the PK into an array of temp registers. */
22406f82e85aSdrh               r = sqlite3GetTempRange(pParse, nPk);
22416f82e85aSdrh               for(iPk=0; iPk<nPk; iPk++){
22426f82e85aSdrh                 int iCol = pPk->aiColumn[iPk];
22436df9c4b9Sdrh                 sqlite3ExprCodeGetColumnOfTable(v, pTab, iCur, iCol,r+iPk);
22446f82e85aSdrh               }
22456f82e85aSdrh 
22466f82e85aSdrh               /* Check if the temp table already contains this key. If so,
22476f82e85aSdrh               ** the row has already been included in the result set and
22486f82e85aSdrh               ** can be ignored (by jumping past the Gosub below). Otherwise,
22496f82e85aSdrh               ** insert the key into the temp table and proceed with processing
22506f82e85aSdrh               ** the row.
22516f82e85aSdrh               **
22526f82e85aSdrh               ** Use some of the same optimizations as OP_RowSetTest: If iSet
22536f82e85aSdrh               ** is zero, assume that the key cannot already be present in
22546f82e85aSdrh               ** the temp table. And if iSet is -1, assume that there is no
22556f82e85aSdrh               ** need to insert the key into the temp table, as it will never
22566f82e85aSdrh               ** be tested for.  */
22576f82e85aSdrh               if( iSet ){
2258728e0f91Sdrh                 jmp1 = sqlite3VdbeAddOp4Int(v, OP_Found, regRowset, 0, r, nPk);
22596f82e85aSdrh                 VdbeCoverage(v);
22606f82e85aSdrh               }
22616f82e85aSdrh               if( iSet>=0 ){
22626f82e85aSdrh                 sqlite3VdbeAddOp3(v, OP_MakeRecord, r, nPk, regRowid);
22639b4eaebcSdrh                 sqlite3VdbeAddOp4Int(v, OP_IdxInsert, regRowset, regRowid,
22649b4eaebcSdrh                                      r, nPk);
22656f82e85aSdrh                 if( iSet ) sqlite3VdbeChangeP5(v, OPFLAG_USESEEKRESULT);
22666f82e85aSdrh               }
22676f82e85aSdrh 
22686f82e85aSdrh               /* Release the array of temp registers */
22696f82e85aSdrh               sqlite3ReleaseTempRange(pParse, r, nPk);
22706f82e85aSdrh             }
22716f82e85aSdrh           }
22726f82e85aSdrh 
22736f82e85aSdrh           /* Invoke the main loop body as a subroutine */
22746f82e85aSdrh           sqlite3VdbeAddOp2(v, OP_Gosub, regReturn, iLoopBody);
22756f82e85aSdrh 
22766f82e85aSdrh           /* Jump here (skipping the main loop body subroutine) if the
22776f82e85aSdrh           ** current sub-WHERE row is a duplicate from prior sub-WHEREs. */
2278728e0f91Sdrh           if( jmp1 ) sqlite3VdbeJumpHere(v, jmp1);
22796f82e85aSdrh 
22806f82e85aSdrh           /* The pSubWInfo->untestedTerms flag means that this OR term
22816f82e85aSdrh           ** contained one or more AND term from a notReady table.  The
22826f82e85aSdrh           ** terms from the notReady table could not be tested and will
22836f82e85aSdrh           ** need to be tested later.
22846f82e85aSdrh           */
22856f82e85aSdrh           if( pSubWInfo->untestedTerms ) untestedTerms = 1;
22866f82e85aSdrh 
22876f82e85aSdrh           /* If all of the OR-connected terms are optimized using the same
22886f82e85aSdrh           ** index, and the index is opened using the same cursor number
22896f82e85aSdrh           ** by each call to sqlite3WhereBegin() made by this loop, it may
22906f82e85aSdrh           ** be possible to use that index as a covering index.
22916f82e85aSdrh           **
22926f82e85aSdrh           ** If the call to sqlite3WhereBegin() above resulted in a scan that
22936f82e85aSdrh           ** uses an index, and this is either the first OR-connected term
22946f82e85aSdrh           ** processed or the index is the same as that used by all previous
22956f82e85aSdrh           ** terms, set pCov to the candidate covering index. Otherwise, set
22966f82e85aSdrh           ** pCov to NULL to indicate that no candidate covering index will
22976f82e85aSdrh           ** be available.
22986f82e85aSdrh           */
22996f82e85aSdrh           pSubLoop = pSubWInfo->a[0].pWLoop;
23006f82e85aSdrh           assert( (pSubLoop->wsFlags & WHERE_AUTO_INDEX)==0 );
23016f82e85aSdrh           if( (pSubLoop->wsFlags & WHERE_INDEXED)!=0
23026f82e85aSdrh            && (ii==0 || pSubLoop->u.btree.pIndex==pCov)
23036f82e85aSdrh            && (HasRowid(pTab) || !IsPrimaryKeyIndex(pSubLoop->u.btree.pIndex))
23046f82e85aSdrh           ){
23056f82e85aSdrh             assert( pSubWInfo->a[0].iIdxCur==iCovCur );
23066f82e85aSdrh             pCov = pSubLoop->u.btree.pIndex;
23076f82e85aSdrh           }else{
23086f82e85aSdrh             pCov = 0;
23096f82e85aSdrh           }
231068c0c710Sdrh           if( sqlite3WhereUsesDeferredSeek(pSubWInfo) ){
231168c0c710Sdrh             pWInfo->bDeferredSeek = 1;
231268c0c710Sdrh           }
23136f82e85aSdrh 
23146f82e85aSdrh           /* Finish the loop through table entries that match term pOrTerm. */
23156f82e85aSdrh           sqlite3WhereEnd(pSubWInfo);
2316bd462bccSdrh           ExplainQueryPlanPop(pParse);
23176f82e85aSdrh         }
231893ffb50fSdrh         sqlite3ExprDelete(db, pDelete);
23196f82e85aSdrh       }
23206f82e85aSdrh     }
23215d72d924Sdrh     ExplainQueryPlanPop(pParse);
23226f82e85aSdrh     pLevel->u.pCovidx = pCov;
23236f82e85aSdrh     if( pCov ) pLevel->iIdxCur = iCovCur;
23246f82e85aSdrh     if( pAndExpr ){
23256f82e85aSdrh       pAndExpr->pLeft = 0;
23266f82e85aSdrh       sqlite3ExprDelete(db, pAndExpr);
23276f82e85aSdrh     }
23286f82e85aSdrh     sqlite3VdbeChangeP1(v, iRetInit, sqlite3VdbeCurrentAddr(v));
2329076e85f5Sdrh     sqlite3VdbeGoto(v, pLevel->addrBrk);
23306f82e85aSdrh     sqlite3VdbeResolveLabel(v, iLoopBody);
23316f82e85aSdrh 
2332dd2d9a3dSdrh     if( pWInfo->nLevel>1 ){ sqlite3StackFree(db, pOrTab); }
23336f82e85aSdrh     if( !untestedTerms ) disableTerm(pLevel, pTerm);
23346f82e85aSdrh   }else
23356f82e85aSdrh #endif /* SQLITE_OMIT_OR_OPTIMIZATION */
23366f82e85aSdrh 
23376f82e85aSdrh   {
23386f82e85aSdrh     /* Case 6:  There is no usable index.  We must do a complete
23396f82e85aSdrh     **          scan of the entire table.
23406f82e85aSdrh     */
23416f82e85aSdrh     static const u8 aStep[] = { OP_Next, OP_Prev };
23426f82e85aSdrh     static const u8 aStart[] = { OP_Rewind, OP_Last };
23436f82e85aSdrh     assert( bRev==0 || bRev==1 );
23448a48b9c0Sdrh     if( pTabItem->fg.isRecursive ){
23456f82e85aSdrh       /* Tables marked isRecursive have only a single row that is stored in
23466f82e85aSdrh       ** a pseudo-cursor.  No need to Rewind or Next such cursors. */
23476f82e85aSdrh       pLevel->op = OP_Noop;
23486f82e85aSdrh     }else{
2349b324cf75Sdan       codeCursorHint(pTabItem, pWInfo, pLevel, 0);
23506f82e85aSdrh       pLevel->op = aStep[bRev];
23516f82e85aSdrh       pLevel->p1 = iCur;
23523a3b420aSdrh       pLevel->p2 = 1 + sqlite3VdbeAddOp2(v, aStart[bRev], iCur, addrHalt);
23536f82e85aSdrh       VdbeCoverageIf(v, bRev==0);
23546f82e85aSdrh       VdbeCoverageIf(v, bRev!=0);
23556f82e85aSdrh       pLevel->p5 = SQLITE_STMTSTATUS_FULLSCAN_STEP;
23566f82e85aSdrh     }
23576f82e85aSdrh   }
23586f82e85aSdrh 
23596f82e85aSdrh #ifdef SQLITE_ENABLE_STMT_SCANSTATUS
23606f82e85aSdrh   pLevel->addrVisit = sqlite3VdbeCurrentAddr(v);
23616f82e85aSdrh #endif
23626f82e85aSdrh 
23636f82e85aSdrh   /* Insert code to test every subexpression that can be completely
23646f82e85aSdrh   ** computed using the current set of tables.
23656f654a40Sdan   **
2366ebc63013Sdan   ** This loop may run between one and three times, depending on the
2367ebc63013Sdan   ** constraints to be generated. The value of stack variable iLoop
2368ebc63013Sdan   ** determines the constraints coded by each iteration, as follows:
2369ebc63013Sdan   **
2370ebc63013Sdan   ** iLoop==1: Code only expressions that are entirely covered by pIdx.
2371ebc63013Sdan   ** iLoop==2: Code remaining expressions that do not contain correlated
2372ebc63013Sdan   **           sub-queries.
2373ebc63013Sdan   ** iLoop==3: Code all remaining expressions.
2374ebc63013Sdan   **
2375ebc63013Sdan   ** An effort is made to skip unnecessary iterations of the loop.
23766ab3eb5dSdrh   */
2377ebc63013Sdan   iLoop = (pIdx ? 1 : 2);
23786ab3eb5dSdrh   do{
2379ebc63013Sdan     int iNext = 0;                /* Next value for iLoop */
23806f82e85aSdrh     for(pTerm=pWC->a, j=pWC->nTerm; j>0; j--, pTerm++){
23816f82e85aSdrh       Expr *pE;
23826f82e85aSdrh       int skipLikeAddr = 0;
23836f82e85aSdrh       testcase( pTerm->wtFlags & TERM_VIRTUAL );
23846f82e85aSdrh       testcase( pTerm->wtFlags & TERM_CODED );
23856f82e85aSdrh       if( pTerm->wtFlags & (TERM_VIRTUAL|TERM_CODED) ) continue;
23866f82e85aSdrh       if( (pTerm->prereqAll & pLevel->notReady)!=0 ){
23876f82e85aSdrh         testcase( pWInfo->untestedTerms==0
2388ce943bc8Sdrh             && (pWInfo->wctrlFlags & WHERE_OR_SUBCLAUSE)!=0 );
23896f82e85aSdrh         pWInfo->untestedTerms = 1;
23906f82e85aSdrh         continue;
23916f82e85aSdrh       }
23926f82e85aSdrh       pE = pTerm->pExpr;
23936f82e85aSdrh       assert( pE!=0 );
2394820fcd2cSdan       if( (pTabItem->fg.jointype&JT_LEFT) && !ExprHasProperty(pE,EP_FromJoin) ){
23956f654a40Sdan         continue;
23966f654a40Sdan       }
2397ebc63013Sdan 
23988674ec5aSdan       if( iLoop==1 && !sqlite3ExprCoveredByIndex(pE, pLevel->iTabCur, pIdx) ){
2399ebc63013Sdan         iNext = 2;
24006f82e85aSdrh         continue;
24016f82e85aSdrh       }
2402d3930b12Sdan       if( iLoop<3 && (pTerm->wtFlags & TERM_VARSELECT) ){
2403ebc63013Sdan         if( iNext==0 ) iNext = 3;
2404ebc63013Sdan         continue;
2405ebc63013Sdan       }
2406ebc63013Sdan 
24074de3353dSdrh       if( (pTerm->wtFlags & TERM_LIKECOND)!=0 ){
240844aebff2Sdrh         /* If the TERM_LIKECOND flag is set, that means that the range search
240944aebff2Sdrh         ** is sufficient to guarantee that the LIKE operator is true, so we
241044aebff2Sdrh         ** can skip the call to the like(A,B) function.  But this only works
241144aebff2Sdrh         ** for strings.  So do not skip the call to the function on the pass
241244aebff2Sdrh         ** that compares BLOBs. */
241341d2e66eSdrh #ifdef SQLITE_LIKE_DOESNT_MATCH_BLOBS
241441d2e66eSdrh         continue;
241541d2e66eSdrh #else
241644aebff2Sdrh         u32 x = pLevel->iLikeRepCntr;
24174de3353dSdrh         if( x>0 ){
241844aebff2Sdrh           skipLikeAddr = sqlite3VdbeAddOp1(v, (x&1)?OP_IfNot:OP_If,(int)(x>>1));
24196f88359dSdrh           VdbeCoverageIf(v, (x&1)==1);
24206f88359dSdrh           VdbeCoverageIf(v, (x&1)==0);
24214de3353dSdrh         }
242241d2e66eSdrh #endif
24236f82e85aSdrh       }
242466a0bf31Sdrh #ifdef WHERETRACE_ENABLED /* 0xffff */
242566a0bf31Sdrh       if( sqlite3WhereTrace ){
242666a0bf31Sdrh         VdbeNoopComment((v, "WhereTerm[%d] (%p) priority=%d",
242766a0bf31Sdrh                          pWC->nTerm-j, pTerm, iLoop));
242866a0bf31Sdrh       }
2429118efd16Sdrh       if( sqlite3WhereTrace & 0x800 ){
2430118efd16Sdrh         sqlite3DebugPrintf("Coding auxiliary constraint:\n");
2431118efd16Sdrh         sqlite3WhereTermPrint(pTerm, pWC->nTerm-j);
2432118efd16Sdrh       }
243366a0bf31Sdrh #endif
24346f82e85aSdrh       sqlite3ExprIfFalse(pParse, pE, addrCont, SQLITE_JUMPIFNULL);
24356f82e85aSdrh       if( skipLikeAddr ) sqlite3VdbeJumpHere(v, skipLikeAddr);
24366f82e85aSdrh       pTerm->wtFlags |= TERM_CODED;
24376f82e85aSdrh     }
2438ebc63013Sdan     iLoop = iNext;
2439ebc63013Sdan   }while( iLoop>0 );
24406f82e85aSdrh 
24416f82e85aSdrh   /* Insert code to test for implied constraints based on transitivity
24426f82e85aSdrh   ** of the "==" operator.
24436f82e85aSdrh   **
24446f82e85aSdrh   ** Example: If the WHERE clause contains "t1.a=t2.b" and "t2.b=123"
24456f82e85aSdrh   ** and we are coding the t1 loop and the t2 loop has not yet coded,
24466f82e85aSdrh   ** then we cannot use the "t1.a=t2.b" constraint, but we can code
24476f82e85aSdrh   ** the implied "t1.a=123" constraint.
24486f82e85aSdrh   */
24496f82e85aSdrh   for(pTerm=pWC->a, j=pWC->nTerm; j>0; j--, pTerm++){
2450cb43a937Sdrh     Expr *pE, sEAlt;
24516f82e85aSdrh     WhereTerm *pAlt;
24526f82e85aSdrh     if( pTerm->wtFlags & (TERM_VIRTUAL|TERM_CODED) ) continue;
24536f82e85aSdrh     if( (pTerm->eOperator & (WO_EQ|WO_IS))==0 ) continue;
24546f82e85aSdrh     if( (pTerm->eOperator & WO_EQUIV)==0 ) continue;
24556f82e85aSdrh     if( pTerm->leftCursor!=iCur ) continue;
2456a4b2df5cSdrh     if( pTabItem->fg.jointype & JT_LEFT ) continue;
24576f82e85aSdrh     pE = pTerm->pExpr;
2458118efd16Sdrh #ifdef WHERETRACE_ENABLED /* 0x800 */
2459118efd16Sdrh     if( sqlite3WhereTrace & 0x800 ){
2460118efd16Sdrh       sqlite3DebugPrintf("Coding transitive constraint:\n");
2461118efd16Sdrh       sqlite3WhereTermPrint(pTerm, pWC->nTerm-j);
2462118efd16Sdrh     }
2463118efd16Sdrh #endif
2464f1bb31e2Sdrh     assert( !ExprHasProperty(pE, EP_FromJoin) );
24656f82e85aSdrh     assert( (pTerm->prereqRight & pLevel->notReady)!=0 );
246675fa2663Sdrh     pAlt = sqlite3WhereFindTerm(pWC, iCur, pTerm->u.x.leftColumn, notReady,
24676f82e85aSdrh                     WO_EQ|WO_IN|WO_IS, 0);
24686f82e85aSdrh     if( pAlt==0 ) continue;
24696f82e85aSdrh     if( pAlt->wtFlags & (TERM_CODED) ) continue;
2470a916b570Sdan     if( (pAlt->eOperator & WO_IN)
2471*a4eeccdfSdrh      && ExprUseXSelect(pAlt->pExpr)
2472a599e150Sdrh      && (pAlt->pExpr->x.pSelect->pEList->nExpr>1)
2473a916b570Sdan     ){
2474a916b570Sdan       continue;
2475a916b570Sdan     }
24766f82e85aSdrh     testcase( pAlt->eOperator & WO_EQ );
24776f82e85aSdrh     testcase( pAlt->eOperator & WO_IS );
24786f82e85aSdrh     testcase( pAlt->eOperator & WO_IN );
24796f82e85aSdrh     VdbeModuleComment((v, "begin transitive constraint"));
2480cb43a937Sdrh     sEAlt = *pAlt->pExpr;
2481cb43a937Sdrh     sEAlt.pLeft = pE->pLeft;
2482cb43a937Sdrh     sqlite3ExprIfFalse(pParse, &sEAlt, addrCont, SQLITE_JUMPIFNULL);
2483240e36c0Sdan     pAlt->wtFlags |= TERM_CODED;
24846f82e85aSdrh   }
24856f82e85aSdrh 
24866f82e85aSdrh   /* For a LEFT OUTER JOIN, generate code that will record the fact that
24876f82e85aSdrh   ** at least one row of the right table has matched the left table.
24886f82e85aSdrh   */
24896f82e85aSdrh   if( pLevel->iLeftJoin ){
24906f82e85aSdrh     pLevel->addrFirst = sqlite3VdbeCurrentAddr(v);
24916f82e85aSdrh     sqlite3VdbeAddOp2(v, OP_Integer, 1, pLevel->iLeftJoin);
24926f82e85aSdrh     VdbeComment((v, "record LEFT JOIN hit"));
24936f82e85aSdrh     for(pTerm=pWC->a, j=0; j<pWC->nTerm; j++, pTerm++){
24946f82e85aSdrh       testcase( pTerm->wtFlags & TERM_VIRTUAL );
24956f82e85aSdrh       testcase( pTerm->wtFlags & TERM_CODED );
24966f82e85aSdrh       if( pTerm->wtFlags & (TERM_VIRTUAL|TERM_CODED) ) continue;
24976f82e85aSdrh       if( (pTerm->prereqAll & pLevel->notReady)!=0 ){
24986f82e85aSdrh         assert( pWInfo->untestedTerms );
24996f82e85aSdrh         continue;
25006f82e85aSdrh       }
25016f82e85aSdrh       assert( pTerm->pExpr );
25026f82e85aSdrh       sqlite3ExprIfFalse(pParse, pTerm->pExpr, addrCont, SQLITE_JUMPIFNULL);
25036f82e85aSdrh       pTerm->wtFlags |= TERM_CODED;
25046f82e85aSdrh     }
25056f82e85aSdrh   }
25066f82e85aSdrh 
2507118efd16Sdrh #if WHERETRACE_ENABLED /* 0x20800 */
2508118efd16Sdrh   if( sqlite3WhereTrace & 0x20000 ){
2509f1bb31e2Sdrh     sqlite3DebugPrintf("All WHERE-clause terms after coding level %d:\n",
2510f1bb31e2Sdrh                        iLevel);
2511118efd16Sdrh     sqlite3WhereClausePrint(pWC);
2512118efd16Sdrh   }
2513118efd16Sdrh   if( sqlite3WhereTrace & 0x800 ){
2514118efd16Sdrh     sqlite3DebugPrintf("End Coding level %d:  notReady=%llx\n",
2515118efd16Sdrh        iLevel, (u64)pLevel->notReady);
2516118efd16Sdrh   }
2517118efd16Sdrh #endif
25186f82e85aSdrh   return pLevel->notReady;
25196f82e85aSdrh }
2520