1cce7d176Sdrh /* 2b19a2bc6Sdrh ** 2001 September 15 3cce7d176Sdrh ** 4b19a2bc6Sdrh ** The author disclaims copyright to this source code. In place of 5b19a2bc6Sdrh ** a legal notice, here is a blessing: 6cce7d176Sdrh ** 7b19a2bc6Sdrh ** May you do good and not evil. 8b19a2bc6Sdrh ** May you find forgiveness for yourself and forgive others. 9b19a2bc6Sdrh ** May you share freely, never taking more than you give. 10cce7d176Sdrh ** 11cce7d176Sdrh ************************************************************************* 12cce7d176Sdrh ** This file contains C code routines that are called by the parser 13b19a2bc6Sdrh ** to handle SELECT statements in SQLite. 14cce7d176Sdrh ** 15*0bd1f4eaSdrh ** $Id: select.c,v 1.91 2002/06/06 18:54:40 drh Exp $ 16cce7d176Sdrh */ 17cce7d176Sdrh #include "sqliteInt.h" 18cce7d176Sdrh 19cce7d176Sdrh /* 209bb61fe7Sdrh ** Allocate a new Select structure and return a pointer to that 219bb61fe7Sdrh ** structure. 22cce7d176Sdrh */ 239bb61fe7Sdrh Select *sqliteSelectNew( 24daffd0e5Sdrh ExprList *pEList, /* which columns to include in the result */ 25ad3cab52Sdrh SrcList *pSrc, /* the FROM clause -- which tables to scan */ 26daffd0e5Sdrh Expr *pWhere, /* the WHERE clause */ 27daffd0e5Sdrh ExprList *pGroupBy, /* the GROUP BY clause */ 28daffd0e5Sdrh Expr *pHaving, /* the HAVING clause */ 29daffd0e5Sdrh ExprList *pOrderBy, /* the ORDER BY clause */ 309bbca4c1Sdrh int isDistinct, /* true if the DISTINCT keyword is present */ 319bbca4c1Sdrh int nLimit, /* LIMIT value. -1 means not used */ 329bbca4c1Sdrh int nOffset /* OFFSET value. -1 means not used */ 339bb61fe7Sdrh ){ 349bb61fe7Sdrh Select *pNew; 359bb61fe7Sdrh pNew = sqliteMalloc( sizeof(*pNew) ); 36daffd0e5Sdrh if( pNew==0 ){ 37daffd0e5Sdrh sqliteExprListDelete(pEList); 38ad3cab52Sdrh sqliteSrcListDelete(pSrc); 39daffd0e5Sdrh sqliteExprDelete(pWhere); 40daffd0e5Sdrh sqliteExprListDelete(pGroupBy); 41daffd0e5Sdrh sqliteExprDelete(pHaving); 42daffd0e5Sdrh sqliteExprListDelete(pOrderBy); 43daffd0e5Sdrh }else{ 449bb61fe7Sdrh pNew->pEList = pEList; 459bb61fe7Sdrh pNew->pSrc = pSrc; 469bb61fe7Sdrh pNew->pWhere = pWhere; 479bb61fe7Sdrh pNew->pGroupBy = pGroupBy; 489bb61fe7Sdrh pNew->pHaving = pHaving; 499bb61fe7Sdrh pNew->pOrderBy = pOrderBy; 509bb61fe7Sdrh pNew->isDistinct = isDistinct; 5182c3d636Sdrh pNew->op = TK_SELECT; 529bbca4c1Sdrh pNew->nLimit = nLimit; 539bbca4c1Sdrh pNew->nOffset = nOffset; 54daffd0e5Sdrh } 559bb61fe7Sdrh return pNew; 569bb61fe7Sdrh } 579bb61fe7Sdrh 589bb61fe7Sdrh /* 5901f3f253Sdrh ** Given 1 to 3 identifiers preceeding the JOIN keyword, determine the 6001f3f253Sdrh ** type of join. Return an integer constant that expresses that type 6101f3f253Sdrh ** in terms of the following bit values: 6201f3f253Sdrh ** 6301f3f253Sdrh ** JT_INNER 6401f3f253Sdrh ** JT_OUTER 6501f3f253Sdrh ** JT_NATURAL 6601f3f253Sdrh ** JT_LEFT 6701f3f253Sdrh ** JT_RIGHT 6801f3f253Sdrh ** 6901f3f253Sdrh ** A full outer join is the combination of JT_LEFT and JT_RIGHT. 7001f3f253Sdrh ** 7101f3f253Sdrh ** If an illegal or unsupported join type is seen, then still return 7201f3f253Sdrh ** a join type, but put an error in the pParse structure. 7301f3f253Sdrh */ 7401f3f253Sdrh int sqliteJoinType(Parse *pParse, Token *pA, Token *pB, Token *pC){ 7501f3f253Sdrh int jointype = 0; 7601f3f253Sdrh Token *apAll[3]; 7701f3f253Sdrh Token *p; 7801f3f253Sdrh static struct { 7901f3f253Sdrh const char *zKeyword; 8001f3f253Sdrh int nChar; 8101f3f253Sdrh int code; 8201f3f253Sdrh } keywords[] = { 8301f3f253Sdrh { "natural", 7, JT_NATURAL }, 84195e6967Sdrh { "left", 4, JT_LEFT|JT_OUTER }, 85195e6967Sdrh { "right", 5, JT_RIGHT|JT_OUTER }, 86195e6967Sdrh { "full", 4, JT_LEFT|JT_RIGHT|JT_OUTER }, 8701f3f253Sdrh { "outer", 5, JT_OUTER }, 8801f3f253Sdrh { "inner", 5, JT_INNER }, 8901f3f253Sdrh { "cross", 5, JT_INNER }, 9001f3f253Sdrh }; 9101f3f253Sdrh int i, j; 9201f3f253Sdrh apAll[0] = pA; 9301f3f253Sdrh apAll[1] = pB; 9401f3f253Sdrh apAll[2] = pC; 95195e6967Sdrh for(i=0; i<3 && apAll[i]; i++){ 9601f3f253Sdrh p = apAll[i]; 9701f3f253Sdrh for(j=0; j<sizeof(keywords)/sizeof(keywords[0]); j++){ 9801f3f253Sdrh if( p->n==keywords[j].nChar 9901f3f253Sdrh && sqliteStrNICmp(p->z, keywords[j].zKeyword, p->n)==0 ){ 10001f3f253Sdrh jointype |= keywords[j].code; 10101f3f253Sdrh break; 10201f3f253Sdrh } 10301f3f253Sdrh } 10401f3f253Sdrh if( j>=sizeof(keywords)/sizeof(keywords[0]) ){ 10501f3f253Sdrh jointype |= JT_ERROR; 10601f3f253Sdrh break; 10701f3f253Sdrh } 10801f3f253Sdrh } 109ad2d8307Sdrh if( 110ad2d8307Sdrh (jointype & (JT_INNER|JT_OUTER))==(JT_INNER|JT_OUTER) || 111195e6967Sdrh (jointype & JT_ERROR)!=0 112ad2d8307Sdrh ){ 11301f3f253Sdrh static Token dummy = { 0, 0 }; 11401f3f253Sdrh char *zSp1 = " ", *zSp2 = " "; 11501f3f253Sdrh if( pB==0 ){ pB = &dummy; zSp1 = 0; } 11601f3f253Sdrh if( pC==0 ){ pC = &dummy; zSp2 = 0; } 11701f3f253Sdrh sqliteSetNString(&pParse->zErrMsg, "unknown or unsupported join type: ", 0, 11801f3f253Sdrh pA->z, pA->n, zSp1, 1, pB->z, pB->n, zSp2, 1, pC->z, pC->n, 0); 11901f3f253Sdrh pParse->nErr++; 12001f3f253Sdrh jointype = JT_INNER; 121195e6967Sdrh }else if( jointype & JT_RIGHT ){ 122195e6967Sdrh sqliteSetString(&pParse->zErrMsg, 123195e6967Sdrh "RIGHT and FULL OUTER JOINs are not currently supported", 0); 124195e6967Sdrh pParse->nErr++; 125195e6967Sdrh jointype = JT_INNER; 12601f3f253Sdrh } 12701f3f253Sdrh return jointype; 12801f3f253Sdrh } 12901f3f253Sdrh 13001f3f253Sdrh /* 131ad2d8307Sdrh ** Return the index of a column in a table. Return -1 if the column 132ad2d8307Sdrh ** is not contained in the table. 133ad2d8307Sdrh */ 134ad2d8307Sdrh static int columnIndex(Table *pTab, const char *zCol){ 135ad2d8307Sdrh int i; 136ad2d8307Sdrh for(i=0; i<pTab->nCol; i++){ 137ad2d8307Sdrh if( sqliteStrICmp(pTab->aCol[i].zName, zCol)==0 ) return i; 138ad2d8307Sdrh } 139ad2d8307Sdrh return -1; 140ad2d8307Sdrh } 141ad2d8307Sdrh 142ad2d8307Sdrh /* 143ad2d8307Sdrh ** Add a term to the WHERE expression in *ppExpr that requires the 144ad2d8307Sdrh ** zCol column to be equal in the two tables pTab1 and pTab2. 145ad2d8307Sdrh */ 146ad2d8307Sdrh static void addWhereTerm( 147ad2d8307Sdrh const char *zCol, /* Name of the column */ 148ad2d8307Sdrh const Table *pTab1, /* First table */ 149ad2d8307Sdrh const Table *pTab2, /* Second table */ 150ad2d8307Sdrh Expr **ppExpr /* Add the equality term to this expression */ 151ad2d8307Sdrh ){ 152ad2d8307Sdrh Token dummy; 153ad2d8307Sdrh Expr *pE1a, *pE1b, *pE1c; 154ad2d8307Sdrh Expr *pE2a, *pE2b, *pE2c; 155ad2d8307Sdrh Expr *pE; 156ad2d8307Sdrh 157ad2d8307Sdrh dummy.z = zCol; 158ad2d8307Sdrh dummy.n = strlen(zCol); 159ad2d8307Sdrh pE1a = sqliteExpr(TK_ID, 0, 0, &dummy); 160ad2d8307Sdrh pE2a = sqliteExpr(TK_ID, 0, 0, &dummy); 161ad2d8307Sdrh dummy.z = pTab1->zName; 162ad2d8307Sdrh dummy.n = strlen(dummy.z); 163ad2d8307Sdrh pE1b = sqliteExpr(TK_ID, 0, 0, &dummy); 164ad2d8307Sdrh dummy.z = pTab2->zName; 165ad2d8307Sdrh dummy.n = strlen(dummy.z); 166ad2d8307Sdrh pE2b = sqliteExpr(TK_ID, 0, 0, &dummy); 167ad2d8307Sdrh pE1c = sqliteExpr(TK_DOT, pE1b, pE1a, 0); 168ad2d8307Sdrh pE2c = sqliteExpr(TK_DOT, pE2b, pE2a, 0); 169ad2d8307Sdrh pE = sqliteExpr(TK_EQ, pE1c, pE2c, 0); 170ad2d8307Sdrh if( *ppExpr ){ 171ad2d8307Sdrh *ppExpr = sqliteExpr(TK_AND, *ppExpr, pE, 0); 172ad2d8307Sdrh }else{ 173ad2d8307Sdrh *ppExpr = pE; 174ad2d8307Sdrh } 175ad2d8307Sdrh } 176ad2d8307Sdrh 177ad2d8307Sdrh /* 178ad2d8307Sdrh ** This routine processes the join information for a SELECT statement. 179ad2d8307Sdrh ** ON and USING clauses are converted into extra terms of the WHERE clause. 180ad2d8307Sdrh ** NATURAL joins also create extra WHERE clause terms. 181ad2d8307Sdrh ** 182ad2d8307Sdrh ** This routine returns the number of errors encountered. 183ad2d8307Sdrh */ 184ad2d8307Sdrh static int sqliteProcessJoin(Parse *pParse, Select *p){ 185ad2d8307Sdrh SrcList *pSrc; 186ad2d8307Sdrh int i, j; 187ad2d8307Sdrh pSrc = p->pSrc; 188ad2d8307Sdrh for(i=0; i<pSrc->nSrc-1; i++){ 189ad2d8307Sdrh struct SrcList_item *pTerm = &pSrc->a[i]; 190ad2d8307Sdrh struct SrcList_item *pOther = &pSrc->a[i+1]; 191ad2d8307Sdrh 192ad2d8307Sdrh if( pTerm->pTab==0 || pOther->pTab==0 ) continue; 193ad2d8307Sdrh 194ad2d8307Sdrh /* When the NATURAL keyword is present, add WHERE clause terms for 195ad2d8307Sdrh ** every column that the two tables have in common. 196ad2d8307Sdrh */ 197ad2d8307Sdrh if( pTerm->jointype & JT_NATURAL ){ 198ad2d8307Sdrh Table *pTab; 199ad2d8307Sdrh if( pTerm->pOn || pTerm->pUsing ){ 200ad2d8307Sdrh sqliteSetString(&pParse->zErrMsg, "a NATURAL join may not have " 201ad2d8307Sdrh "an ON or USING clause", 0); 202ad2d8307Sdrh pParse->nErr++; 203ad2d8307Sdrh return 1; 204ad2d8307Sdrh } 205ad2d8307Sdrh pTab = pTerm->pTab; 206ad2d8307Sdrh for(j=0; j<pTab->nCol; j++){ 207ad2d8307Sdrh if( columnIndex(pOther->pTab, pTab->aCol[j].zName)>=0 ){ 208ad2d8307Sdrh addWhereTerm(pTab->aCol[j].zName, pTab, pOther->pTab, &p->pWhere); 209ad2d8307Sdrh } 210ad2d8307Sdrh } 211ad2d8307Sdrh } 212ad2d8307Sdrh 213ad2d8307Sdrh /* Disallow both ON and USING clauses in the same join 214ad2d8307Sdrh */ 215ad2d8307Sdrh if( pTerm->pOn && pTerm->pUsing ){ 216ad2d8307Sdrh sqliteSetString(&pParse->zErrMsg, "cannot have both ON and USING " 217ad2d8307Sdrh "clauses in the same join", 0); 218ad2d8307Sdrh pParse->nErr++; 219ad2d8307Sdrh return 1; 220ad2d8307Sdrh } 221ad2d8307Sdrh 222ad2d8307Sdrh /* Add the ON clause to the end of the WHERE clause, connected by 223ad2d8307Sdrh ** and AND operator. 224ad2d8307Sdrh */ 225ad2d8307Sdrh if( pTerm->pOn ){ 226ad2d8307Sdrh if( p->pWhere==0 ){ 227ad2d8307Sdrh p->pWhere = pTerm->pOn; 228ad2d8307Sdrh }else{ 229ad2d8307Sdrh p->pWhere = sqliteExpr(TK_AND, p->pWhere, pTerm->pOn, 0); 230ad2d8307Sdrh } 231ad2d8307Sdrh pTerm->pOn = 0; 232ad2d8307Sdrh } 233ad2d8307Sdrh 234ad2d8307Sdrh /* Create extra terms on the WHERE clause for each column named 235ad2d8307Sdrh ** in the USING clause. Example: If the two tables to be joined are 236ad2d8307Sdrh ** A and B and the USING clause names X, Y, and Z, then add this 237ad2d8307Sdrh ** to the WHERE clause: A.X=B.X AND A.Y=B.Y AND A.Z=B.Z 238ad2d8307Sdrh ** Report an error if any column mentioned in the USING clause is 239ad2d8307Sdrh ** not contained in both tables to be joined. 240ad2d8307Sdrh */ 241ad2d8307Sdrh if( pTerm->pUsing ){ 242ad2d8307Sdrh IdList *pList; 243ad2d8307Sdrh int j; 244ad2d8307Sdrh assert( i<pSrc->nSrc-1 ); 245ad2d8307Sdrh pList = pTerm->pUsing; 246ad2d8307Sdrh for(j=0; j<pList->nId; j++){ 247ad2d8307Sdrh if( columnIndex(pTerm->pTab, pList->a[i].zName)<0 || 248ad2d8307Sdrh columnIndex(pOther->pTab, pList->a[i].zName)<0 ){ 249ad2d8307Sdrh sqliteSetString(&pParse->zErrMsg, "cannot join using column ", 250ad2d8307Sdrh pList->a[i].zName, " - column not present in both tables", 0); 251ad2d8307Sdrh pParse->nErr++; 252ad2d8307Sdrh return 1; 253ad2d8307Sdrh } 254ad2d8307Sdrh addWhereTerm(pList->a[i].zName, pTerm->pTab, pOther->pTab, &p->pWhere); 255ad2d8307Sdrh } 256ad2d8307Sdrh } 257ad2d8307Sdrh } 258ad2d8307Sdrh return 0; 259ad2d8307Sdrh } 260ad2d8307Sdrh 261ad2d8307Sdrh /* 2629bb61fe7Sdrh ** Delete the given Select structure and all of its substructures. 2639bb61fe7Sdrh */ 2649bb61fe7Sdrh void sqliteSelectDelete(Select *p){ 26582c3d636Sdrh if( p==0 ) return; 2669bb61fe7Sdrh sqliteExprListDelete(p->pEList); 267ad3cab52Sdrh sqliteSrcListDelete(p->pSrc); 2689bb61fe7Sdrh sqliteExprDelete(p->pWhere); 2699bb61fe7Sdrh sqliteExprListDelete(p->pGroupBy); 2709bb61fe7Sdrh sqliteExprDelete(p->pHaving); 2719bb61fe7Sdrh sqliteExprListDelete(p->pOrderBy); 27282c3d636Sdrh sqliteSelectDelete(p->pPrior); 273a76b5dfcSdrh sqliteFree(p->zSelect); 2749bb61fe7Sdrh sqliteFree(p); 2759bb61fe7Sdrh } 2769bb61fe7Sdrh 2779bb61fe7Sdrh /* 2782282792aSdrh ** Delete the aggregate information from the parse structure. 2792282792aSdrh */ 2801d83f052Sdrh static void sqliteAggregateInfoReset(Parse *pParse){ 2812282792aSdrh sqliteFree(pParse->aAgg); 2822282792aSdrh pParse->aAgg = 0; 2832282792aSdrh pParse->nAgg = 0; 2842282792aSdrh pParse->useAgg = 0; 2852282792aSdrh } 2862282792aSdrh 2872282792aSdrh /* 2882282792aSdrh ** This routine generates the code for the inside of the inner loop 2892282792aSdrh ** of a SELECT. 29082c3d636Sdrh ** 29182c3d636Sdrh ** The pEList is used to determine the values for each column in the 292967e8b73Sdrh ** result row. Except if pEList==NULL, then we just read nColumn 29382c3d636Sdrh ** elements from the srcTab table. 2942282792aSdrh */ 2952282792aSdrh static int selectInnerLoop( 2962282792aSdrh Parse *pParse, /* The parser context */ 2972282792aSdrh ExprList *pEList, /* List of values being extracted */ 29882c3d636Sdrh int srcTab, /* Pull data from this table */ 299967e8b73Sdrh int nColumn, /* Number of columns in the source table */ 3002282792aSdrh ExprList *pOrderBy, /* If not NULL, sort results using this key */ 3012282792aSdrh int distinct, /* If >=0, make sure results are distinct */ 3022282792aSdrh int eDest, /* How to dispose of the results */ 3032282792aSdrh int iParm, /* An argument to the disposal method */ 3042282792aSdrh int iContinue, /* Jump here to continue with next row */ 3052282792aSdrh int iBreak /* Jump here to break out of the inner loop */ 3062282792aSdrh ){ 3072282792aSdrh Vdbe *v = pParse->pVdbe; 3082282792aSdrh int i; 309daffd0e5Sdrh if( v==0 ) return 0; 3102282792aSdrh 311967e8b73Sdrh /* Pull the requested columns. 3122282792aSdrh */ 31382c3d636Sdrh if( pEList ){ 3142282792aSdrh for(i=0; i<pEList->nExpr; i++){ 3152282792aSdrh sqliteExprCode(pParse, pEList->a[i].pExpr); 3162282792aSdrh } 317967e8b73Sdrh nColumn = pEList->nExpr; 31882c3d636Sdrh }else{ 319967e8b73Sdrh for(i=0; i<nColumn; i++){ 32099fcd718Sdrh sqliteVdbeAddOp(v, OP_Column, srcTab, i); 32182c3d636Sdrh } 32282c3d636Sdrh } 3232282792aSdrh 324daffd0e5Sdrh /* If the DISTINCT keyword was present on the SELECT statement 325daffd0e5Sdrh ** and this row has been seen before, then do not make this row 326daffd0e5Sdrh ** part of the result. 3272282792aSdrh */ 328f5905aa7Sdrh if( distinct>=0 && pEList && pEList->nExpr>0 ){ 329*0bd1f4eaSdrh #if NULL_ALWAYS_DISTINCT 330*0bd1f4eaSdrh sqliteVdbeAddOp(v, OP_IsNull, -pEList->nExpr, sqliteVdbeCurrentAddr(v)+7); 331*0bd1f4eaSdrh #endif 33299fcd718Sdrh sqliteVdbeAddOp(v, OP_MakeKey, pEList->nExpr, 1); 333f5905aa7Sdrh sqliteVdbeAddOp(v, OP_Distinct, distinct, sqliteVdbeCurrentAddr(v)+3); 33499fcd718Sdrh sqliteVdbeAddOp(v, OP_Pop, pEList->nExpr+1, 0); 33599fcd718Sdrh sqliteVdbeAddOp(v, OP_Goto, 0, iContinue); 33699fcd718Sdrh sqliteVdbeAddOp(v, OP_String, 0, 0); 3376b12545fSdrh sqliteVdbeAddOp(v, OP_PutStrKey, distinct, 0); 3382282792aSdrh } 33982c3d636Sdrh 3402282792aSdrh /* If there is an ORDER BY clause, then store the results 3412282792aSdrh ** in a sorter. 3422282792aSdrh */ 3432282792aSdrh if( pOrderBy ){ 3442282792aSdrh char *zSortOrder; 34599fcd718Sdrh sqliteVdbeAddOp(v, OP_SortMakeRec, nColumn, 0); 3462282792aSdrh zSortOrder = sqliteMalloc( pOrderBy->nExpr + 1 ); 3472282792aSdrh if( zSortOrder==0 ) return 1; 3482282792aSdrh for(i=0; i<pOrderBy->nExpr; i++){ 349d8bc7086Sdrh zSortOrder[i] = pOrderBy->a[i].sortOrder ? '-' : '+'; 3502282792aSdrh sqliteExprCode(pParse, pOrderBy->a[i].pExpr); 3512282792aSdrh } 3522282792aSdrh zSortOrder[pOrderBy->nExpr] = 0; 35399fcd718Sdrh sqliteVdbeAddOp(v, OP_SortMakeKey, pOrderBy->nExpr, 0); 35499fcd718Sdrh sqliteVdbeChangeP3(v, -1, zSortOrder, strlen(zSortOrder)); 3556e142f54Sdrh sqliteFree(zSortOrder); 35699fcd718Sdrh sqliteVdbeAddOp(v, OP_SortPut, 0, 0); 3572282792aSdrh }else 3582282792aSdrh 35982c3d636Sdrh /* In this mode, write each query result to the key of the temporary 36082c3d636Sdrh ** table iParm. 3612282792aSdrh */ 36282c3d636Sdrh if( eDest==SRT_Union ){ 363*0bd1f4eaSdrh sqliteVdbeAddOp(v, OP_MakeRecord, nColumn, NULL_ALWAYS_DISTINCT); 364f5905aa7Sdrh sqliteVdbeAddOp(v, OP_String, 0, 0); 3656b12545fSdrh sqliteVdbeAddOp(v, OP_PutStrKey, iParm, 0); 36682c3d636Sdrh }else 36782c3d636Sdrh 3685974a30fSdrh /* Store the result as data using a unique key. 3695974a30fSdrh */ 3702d0794e3Sdrh if( eDest==SRT_Table || eDest==SRT_TempTable ){ 37199fcd718Sdrh sqliteVdbeAddOp(v, OP_MakeRecord, nColumn, 0); 37299fcd718Sdrh sqliteVdbeAddOp(v, OP_NewRecno, iParm, 0); 37399fcd718Sdrh sqliteVdbeAddOp(v, OP_Pull, 1, 0); 3746b12545fSdrh sqliteVdbeAddOp(v, OP_PutIntKey, iParm, 0); 3755974a30fSdrh }else 3765974a30fSdrh 37782c3d636Sdrh /* Construct a record from the query result, but instead of 37882c3d636Sdrh ** saving that record, use it as a key to delete elements from 37982c3d636Sdrh ** the temporary table iParm. 38082c3d636Sdrh */ 38182c3d636Sdrh if( eDest==SRT_Except ){ 382*0bd1f4eaSdrh int addr; 383*0bd1f4eaSdrh addr = sqliteVdbeAddOp(v, OP_MakeRecord, nColumn, NULL_ALWAYS_DISTINCT); 38499fcd718Sdrh sqliteVdbeAddOp(v, OP_NotFound, iParm, addr+3); 38599fcd718Sdrh sqliteVdbeAddOp(v, OP_Delete, iParm, 0); 3862282792aSdrh }else 3872282792aSdrh 3882282792aSdrh /* If we are creating a set for an "expr IN (SELECT ...)" construct, 3892282792aSdrh ** then there should be a single item on the stack. Write this 3902282792aSdrh ** item into the set table with bogus data. 3912282792aSdrh */ 3922282792aSdrh if( eDest==SRT_Set ){ 393967e8b73Sdrh assert( nColumn==1 ); 394f5905aa7Sdrh sqliteVdbeAddOp(v, OP_IsNull, -1, sqliteVdbeCurrentAddr(v)+3); 39599fcd718Sdrh sqliteVdbeAddOp(v, OP_String, 0, 0); 3966b12545fSdrh sqliteVdbeAddOp(v, OP_PutStrKey, iParm, 0); 3972282792aSdrh }else 3982282792aSdrh 39982c3d636Sdrh 4002282792aSdrh /* If this is a scalar select that is part of an expression, then 4012282792aSdrh ** store the results in the appropriate memory cell and break out 4022282792aSdrh ** of the scan loop. 4032282792aSdrh */ 4042282792aSdrh if( eDest==SRT_Mem ){ 405967e8b73Sdrh assert( nColumn==1 ); 4068721ce4aSdrh sqliteVdbeAddOp(v, OP_MemStore, iParm, 1); 40799fcd718Sdrh sqliteVdbeAddOp(v, OP_Goto, 0, iBreak); 4082282792aSdrh }else 4092282792aSdrh 410d7489c39Sdrh /* Discard the results. This is used for SELECT statements inside 411d7489c39Sdrh ** the body of a TRIGGER. The purpose of such selects is to call 412d7489c39Sdrh ** user-defined functions that have side effects. We do not care 413d7489c39Sdrh ** about the actual results of the select. 414d7489c39Sdrh */ 415d7489c39Sdrh if( eDest==SRT_Discard ){ 416d7489c39Sdrh sqliteVdbeAddOp(v, OP_Pop, nColumn, 0); 417d7489c39Sdrh }else 418d7489c39Sdrh 4192282792aSdrh /* If none of the above, send the data to the callback function. 4202282792aSdrh */ 4212282792aSdrh { 4229bbca4c1Sdrh sqliteVdbeAddOp(v, OP_Callback, nColumn, iBreak); 42382c3d636Sdrh } 42482c3d636Sdrh return 0; 42582c3d636Sdrh } 42682c3d636Sdrh 42782c3d636Sdrh /* 428d8bc7086Sdrh ** If the inner loop was generated using a non-null pOrderBy argument, 429d8bc7086Sdrh ** then the results were placed in a sorter. After the loop is terminated 430d8bc7086Sdrh ** we need to run the sorter and output the results. The following 431d8bc7086Sdrh ** routine generates the code needed to do that. 432d8bc7086Sdrh */ 433967e8b73Sdrh static void generateSortTail(Vdbe *v, int nColumn){ 434d8bc7086Sdrh int end = sqliteVdbeMakeLabel(v); 435d8bc7086Sdrh int addr; 43699fcd718Sdrh sqliteVdbeAddOp(v, OP_Sort, 0, 0); 43799fcd718Sdrh addr = sqliteVdbeAddOp(v, OP_SortNext, 0, end); 4389bbca4c1Sdrh sqliteVdbeAddOp(v, OP_SortCallback, nColumn, end); 43999fcd718Sdrh sqliteVdbeAddOp(v, OP_Goto, 0, addr); 44099fcd718Sdrh sqliteVdbeResolveLabel(v, end); 441a8b38d28Sdrh sqliteVdbeAddOp(v, OP_SortReset, 0, 0); 442d8bc7086Sdrh } 443d8bc7086Sdrh 444d8bc7086Sdrh /* 44582c3d636Sdrh ** Generate code that will tell the VDBE how many columns there 44682c3d636Sdrh ** are in the result and the name for each column. This information 44782c3d636Sdrh ** is used to provide "argc" and "azCol[]" values in the callback. 44882c3d636Sdrh */ 449832508b7Sdrh static void generateColumnNames( 450832508b7Sdrh Parse *pParse, /* Parser context */ 451832508b7Sdrh int base, /* VDBE cursor corresponding to first entry in pTabList */ 452ad3cab52Sdrh SrcList *pTabList, /* List of tables */ 453832508b7Sdrh ExprList *pEList /* Expressions defining the result set */ 454832508b7Sdrh ){ 455d8bc7086Sdrh Vdbe *v = pParse->pVdbe; 45682c3d636Sdrh int i; 457daffd0e5Sdrh if( pParse->colNamesSet || v==0 || sqlite_malloc_failed ) return; 458d8bc7086Sdrh pParse->colNamesSet = 1; 45999fcd718Sdrh sqliteVdbeAddOp(v, OP_ColumnCount, pEList->nExpr, 0); 46082c3d636Sdrh for(i=0; i<pEList->nExpr; i++){ 46182c3d636Sdrh Expr *p; 4621bee3d7bSdrh int showFullNames; 46382c3d636Sdrh if( pEList->a[i].zName ){ 46482c3d636Sdrh char *zName = pEList->a[i].zName; 46599fcd718Sdrh sqliteVdbeAddOp(v, OP_ColumnName, i, 0); 46699fcd718Sdrh sqliteVdbeChangeP3(v, -1, zName, strlen(zName)); 46782c3d636Sdrh continue; 46882c3d636Sdrh } 46982c3d636Sdrh p = pEList->a[i].pExpr; 470daffd0e5Sdrh if( p==0 ) continue; 4711bee3d7bSdrh showFullNames = (pParse->db->flags & SQLITE_FullColNames)!=0; 4721bee3d7bSdrh if( p->span.z && p->span.z[0] && !showFullNames ){ 47399fcd718Sdrh int addr = sqliteVdbeAddOp(v,OP_ColumnName, i, 0); 47499fcd718Sdrh sqliteVdbeChangeP3(v, -1, p->span.z, p->span.n); 475e1b6a5b8Sdrh sqliteVdbeCompressSpace(v, addr); 4761bee3d7bSdrh }else if( p->op==TK_COLUMN && pTabList ){ 477832508b7Sdrh Table *pTab = pTabList->a[p->iTable - base].pTab; 47897665873Sdrh char *zCol; 4798aff1015Sdrh int iCol = p->iColumn; 4808aff1015Sdrh if( iCol<0 ) iCol = pTab->iPKey; 48197665873Sdrh assert( iCol==-1 || (iCol>=0 && iCol<pTab->nCol) ); 48297665873Sdrh zCol = iCol<0 ? "_ROWID_" : pTab->aCol[iCol].zName; 483ad3cab52Sdrh if( pTabList->nSrc>1 || showFullNames ){ 48482c3d636Sdrh char *zName = 0; 48582c3d636Sdrh char *zTab; 48682c3d636Sdrh 487832508b7Sdrh zTab = pTabList->a[p->iTable - base].zAlias; 48801a34661Sdrh if( showFullNames || zTab==0 ) zTab = pTab->zName; 48997665873Sdrh sqliteSetString(&zName, zTab, ".", zCol, 0); 49099fcd718Sdrh sqliteVdbeAddOp(v, OP_ColumnName, i, 0); 49199fcd718Sdrh sqliteVdbeChangeP3(v, -1, zName, strlen(zName)); 49282c3d636Sdrh sqliteFree(zName); 49382c3d636Sdrh }else{ 49499fcd718Sdrh sqliteVdbeAddOp(v, OP_ColumnName, i, 0); 49522f70c32Sdrh sqliteVdbeChangeP3(v, -1, zCol, 0); 49682c3d636Sdrh } 4971bee3d7bSdrh }else if( p->span.z && p->span.z[0] ){ 4981bee3d7bSdrh int addr = sqliteVdbeAddOp(v,OP_ColumnName, i, 0); 4991bee3d7bSdrh sqliteVdbeChangeP3(v, -1, p->span.z, p->span.n); 5001bee3d7bSdrh sqliteVdbeCompressSpace(v, addr); 5011bee3d7bSdrh }else{ 5021bee3d7bSdrh char zName[30]; 5031bee3d7bSdrh assert( p->op!=TK_COLUMN || pTabList==0 ); 5041bee3d7bSdrh sprintf(zName, "column%d", i+1); 5051bee3d7bSdrh sqliteVdbeAddOp(v, OP_ColumnName, i, 0); 5061bee3d7bSdrh sqliteVdbeChangeP3(v, -1, zName, strlen(zName)); 50782c3d636Sdrh } 50882c3d636Sdrh } 50982c3d636Sdrh } 51082c3d636Sdrh 51182c3d636Sdrh /* 512d8bc7086Sdrh ** Name of the connection operator, used for error messages. 513d8bc7086Sdrh */ 514d8bc7086Sdrh static const char *selectOpName(int id){ 515d8bc7086Sdrh char *z; 516d8bc7086Sdrh switch( id ){ 517d8bc7086Sdrh case TK_ALL: z = "UNION ALL"; break; 518d8bc7086Sdrh case TK_INTERSECT: z = "INTERSECT"; break; 519d8bc7086Sdrh case TK_EXCEPT: z = "EXCEPT"; break; 520d8bc7086Sdrh default: z = "UNION"; break; 521d8bc7086Sdrh } 522d8bc7086Sdrh return z; 523d8bc7086Sdrh } 524d8bc7086Sdrh 525d8bc7086Sdrh /* 52622f70c32Sdrh ** Given a SELECT statement, generate a Table structure that describes 52722f70c32Sdrh ** the result set of that SELECT. 52822f70c32Sdrh */ 52922f70c32Sdrh Table *sqliteResultSetOfSelect(Parse *pParse, char *zTabName, Select *pSelect){ 53022f70c32Sdrh Table *pTab; 53122f70c32Sdrh int i; 53222f70c32Sdrh ExprList *pEList; 53322f70c32Sdrh static int fillInColumnList(Parse*, Select*); 53422f70c32Sdrh 53522f70c32Sdrh if( fillInColumnList(pParse, pSelect) ){ 53622f70c32Sdrh return 0; 53722f70c32Sdrh } 53822f70c32Sdrh pTab = sqliteMalloc( sizeof(Table) ); 53922f70c32Sdrh if( pTab==0 ){ 54022f70c32Sdrh return 0; 54122f70c32Sdrh } 54222f70c32Sdrh pTab->zName = zTabName ? sqliteStrDup(zTabName) : 0; 54322f70c32Sdrh pEList = pSelect->pEList; 54422f70c32Sdrh pTab->nCol = pEList->nExpr; 545417be79cSdrh assert( pTab->nCol>0 ); 54622f70c32Sdrh pTab->aCol = sqliteMalloc( sizeof(pTab->aCol[0])*pTab->nCol ); 54722f70c32Sdrh for(i=0; i<pTab->nCol; i++){ 54822f70c32Sdrh Expr *p; 54922f70c32Sdrh if( pEList->a[i].zName ){ 55022f70c32Sdrh pTab->aCol[i].zName = sqliteStrDup(pEList->a[i].zName); 55122f70c32Sdrh }else if( (p=pEList->a[i].pExpr)->span.z && p->span.z[0] ){ 55222f70c32Sdrh sqliteSetNString(&pTab->aCol[i].zName, p->span.z, p->span.n, 0); 553d820cb1bSdrh }else if( p->op==TK_DOT && p->pRight && p->pRight->token.z && 554d820cb1bSdrh p->pRight->token.z[0] ){ 555d820cb1bSdrh sqliteSetNString(&pTab->aCol[i].zName, 556d820cb1bSdrh p->pRight->token.z, p->pRight->token.n, 0); 55722f70c32Sdrh }else{ 55822f70c32Sdrh char zBuf[30]; 55922f70c32Sdrh sprintf(zBuf, "column%d", i+1); 56022f70c32Sdrh pTab->aCol[i].zName = sqliteStrDup(zBuf); 56122f70c32Sdrh } 56222f70c32Sdrh } 56322f70c32Sdrh pTab->iPKey = -1; 56422f70c32Sdrh return pTab; 56522f70c32Sdrh } 56622f70c32Sdrh 56722f70c32Sdrh /* 568ad2d8307Sdrh ** For the given SELECT statement, do three things. 569d8bc7086Sdrh ** 570ad3cab52Sdrh ** (1) Fill in the pTabList->a[].pTab fields in the SrcList that 571967e8b73Sdrh ** defines the set of tables that should be scanned. 572d8bc7086Sdrh ** 573ad2d8307Sdrh ** (2) Add terms to the WHERE clause to accomodate the NATURAL keyword 574ad2d8307Sdrh ** on joins and the ON and USING clause of joins. 575ad2d8307Sdrh ** 576ad2d8307Sdrh ** (3) Scan the list of columns in the result set (pEList) looking 57754473229Sdrh ** for instances of the "*" operator or the TABLE.* operator. 57854473229Sdrh ** If found, expand each "*" to be every column in every table 57954473229Sdrh ** and TABLE.* to be every column in TABLE. 580d8bc7086Sdrh ** 581d8bc7086Sdrh ** Return 0 on success. If there are problems, leave an error message 582d8bc7086Sdrh ** in pParse and return non-zero. 583d8bc7086Sdrh */ 584d8bc7086Sdrh static int fillInColumnList(Parse *pParse, Select *p){ 58554473229Sdrh int i, j, k, rc; 586ad3cab52Sdrh SrcList *pTabList; 587daffd0e5Sdrh ExprList *pEList; 588a76b5dfcSdrh Table *pTab; 589daffd0e5Sdrh 590daffd0e5Sdrh if( p==0 || p->pSrc==0 ) return 1; 591daffd0e5Sdrh pTabList = p->pSrc; 592daffd0e5Sdrh pEList = p->pEList; 593d8bc7086Sdrh 594d8bc7086Sdrh /* Look up every table in the table list. 595d8bc7086Sdrh */ 596ad3cab52Sdrh for(i=0; i<pTabList->nSrc; i++){ 597d8bc7086Sdrh if( pTabList->a[i].pTab ){ 598d8bc7086Sdrh /* This routine has run before! No need to continue */ 599d8bc7086Sdrh return 0; 600d8bc7086Sdrh } 601daffd0e5Sdrh if( pTabList->a[i].zName==0 ){ 60222f70c32Sdrh /* A sub-query in the FROM clause of a SELECT */ 60322f70c32Sdrh assert( pTabList->a[i].pSelect!=0 ); 604ad2d8307Sdrh if( pTabList->a[i].zAlias==0 ){ 605ad2d8307Sdrh char zFakeName[60]; 606ad2d8307Sdrh sprintf(zFakeName, "sqlite_subquery_%p_", 607ad2d8307Sdrh (void*)pTabList->a[i].pSelect); 608ad2d8307Sdrh sqliteSetString(&pTabList->a[i].zAlias, zFakeName, 0); 609ad2d8307Sdrh } 61022f70c32Sdrh pTabList->a[i].pTab = pTab = 61122f70c32Sdrh sqliteResultSetOfSelect(pParse, pTabList->a[i].zAlias, 61222f70c32Sdrh pTabList->a[i].pSelect); 61322f70c32Sdrh if( pTab==0 ){ 614daffd0e5Sdrh return 1; 615daffd0e5Sdrh } 61622f70c32Sdrh pTab->isTransient = 1; 61722f70c32Sdrh }else{ 618a76b5dfcSdrh /* An ordinary table or view name in the FROM clause */ 619a76b5dfcSdrh pTabList->a[i].pTab = pTab = 620a76b5dfcSdrh sqliteFindTable(pParse->db, pTabList->a[i].zName); 621a76b5dfcSdrh if( pTab==0 ){ 622d8bc7086Sdrh sqliteSetString(&pParse->zErrMsg, "no such table: ", 623d8bc7086Sdrh pTabList->a[i].zName, 0); 624d8bc7086Sdrh pParse->nErr++; 625d8bc7086Sdrh return 1; 626d8bc7086Sdrh } 627a76b5dfcSdrh if( pTab->pSelect ){ 628417be79cSdrh if( sqliteViewGetColumnNames(pParse, pTab) ){ 629417be79cSdrh return 1; 630417be79cSdrh } 631ff78bd2fSdrh pTabList->a[i].pSelect = sqliteSelectDup(pTab->pSelect); 632a76b5dfcSdrh } 633d8bc7086Sdrh } 63422f70c32Sdrh } 635d8bc7086Sdrh 636ad2d8307Sdrh /* Process NATURAL keywords, and ON and USING clauses of joins. 637ad2d8307Sdrh */ 638ad2d8307Sdrh if( sqliteProcessJoin(pParse, p) ) return 1; 639ad2d8307Sdrh 6407c917d19Sdrh /* For every "*" that occurs in the column list, insert the names of 64154473229Sdrh ** all columns in all tables. And for every TABLE.* insert the names 64254473229Sdrh ** of all columns in TABLE. The parser inserted a special expression 6437c917d19Sdrh ** with the TK_ALL operator for each "*" that it found in the column list. 6447c917d19Sdrh ** The following code just has to locate the TK_ALL expressions and expand 6457c917d19Sdrh ** each one to the list of all columns in all tables. 64654473229Sdrh ** 64754473229Sdrh ** The first loop just checks to see if there are any "*" operators 64854473229Sdrh ** that need expanding. 649d8bc7086Sdrh */ 6507c917d19Sdrh for(k=0; k<pEList->nExpr; k++){ 65154473229Sdrh Expr *pE = pEList->a[k].pExpr; 65254473229Sdrh if( pE->op==TK_ALL ) break; 65354473229Sdrh if( pE->op==TK_DOT && pE->pRight && pE->pRight->op==TK_ALL 65454473229Sdrh && pE->pLeft && pE->pLeft->op==TK_ID ) break; 6557c917d19Sdrh } 65654473229Sdrh rc = 0; 6577c917d19Sdrh if( k<pEList->nExpr ){ 65854473229Sdrh /* 65954473229Sdrh ** If we get here it means the result set contains one or more "*" 66054473229Sdrh ** operators that need to be expanded. Loop through each expression 66154473229Sdrh ** in the result set and expand them one by one. 66254473229Sdrh */ 6637c917d19Sdrh struct ExprList_item *a = pEList->a; 6647c917d19Sdrh ExprList *pNew = 0; 6657c917d19Sdrh for(k=0; k<pEList->nExpr; k++){ 66654473229Sdrh Expr *pE = a[k].pExpr; 66754473229Sdrh if( pE->op!=TK_ALL && 66854473229Sdrh (pE->op!=TK_DOT || pE->pRight==0 || pE->pRight->op!=TK_ALL) ){ 66954473229Sdrh /* This particular expression does not need to be expanded. 67054473229Sdrh */ 6717c917d19Sdrh pNew = sqliteExprListAppend(pNew, a[k].pExpr, 0); 6727c917d19Sdrh pNew->a[pNew->nExpr-1].zName = a[k].zName; 6737c917d19Sdrh a[k].pExpr = 0; 6747c917d19Sdrh a[k].zName = 0; 6757c917d19Sdrh }else{ 67654473229Sdrh /* This expression is a "*" or a "TABLE.*" and needs to be 67754473229Sdrh ** expanded. */ 67854473229Sdrh int tableSeen = 0; /* Set to 1 when TABLE matches */ 67954473229Sdrh Token *pName; /* text of name of TABLE */ 68054473229Sdrh if( pE->op==TK_DOT && pE->pLeft ){ 68154473229Sdrh pName = &pE->pLeft->token; 68254473229Sdrh }else{ 68354473229Sdrh pName = 0; 68454473229Sdrh } 685ad3cab52Sdrh for(i=0; i<pTabList->nSrc; i++){ 686d8bc7086Sdrh Table *pTab = pTabList->a[i].pTab; 68754473229Sdrh char *zTabName = pTabList->a[i].zAlias; 68854473229Sdrh if( zTabName==0 || zTabName[0]==0 ){ 68954473229Sdrh zTabName = pTab->zName; 69054473229Sdrh } 69154473229Sdrh if( pName && (zTabName==0 || zTabName[0]==0 || 692c754fa54Sdrh sqliteStrNICmp(pName->z, zTabName, pName->n)!=0 || 693c754fa54Sdrh zTabName[pName->n]!=0) ){ 69454473229Sdrh continue; 69554473229Sdrh } 69654473229Sdrh tableSeen = 1; 697d8bc7086Sdrh for(j=0; j<pTab->nCol; j++){ 69822f70c32Sdrh Expr *pExpr, *pLeft, *pRight; 699ad2d8307Sdrh char *zName = pTab->aCol[j].zName; 700ad2d8307Sdrh 701ad2d8307Sdrh if( i>0 && (pTabList->a[i-1].jointype & JT_NATURAL)!=0 && 702ad2d8307Sdrh columnIndex(pTabList->a[i-1].pTab, zName)>=0 ){ 703ad2d8307Sdrh /* In a NATURAL join, omit the join columns from the 704ad2d8307Sdrh ** table on the right */ 705ad2d8307Sdrh continue; 706ad2d8307Sdrh } 707ad2d8307Sdrh if( i>0 && sqliteIdListIndex(pTabList->a[i-1].pUsing, zName)>=0 ){ 708ad2d8307Sdrh /* In a join with a USING clause, omit columns in the 709ad2d8307Sdrh ** using clause from the table on the right. */ 710ad2d8307Sdrh continue; 711ad2d8307Sdrh } 71222f70c32Sdrh pRight = sqliteExpr(TK_ID, 0, 0, 0); 71322f70c32Sdrh if( pRight==0 ) break; 714ad2d8307Sdrh pRight->token.z = zName; 715ad2d8307Sdrh pRight->token.n = strlen(zName); 71654473229Sdrh if( zTabName ){ 71722f70c32Sdrh pLeft = sqliteExpr(TK_ID, 0, 0, 0); 71822f70c32Sdrh if( pLeft==0 ) break; 71954473229Sdrh pLeft->token.z = zTabName; 72054473229Sdrh pLeft->token.n = strlen(zTabName); 72122f70c32Sdrh pExpr = sqliteExpr(TK_DOT, pLeft, pRight, 0); 72222f70c32Sdrh if( pExpr==0 ) break; 72322f70c32Sdrh }else{ 72422f70c32Sdrh pExpr = pRight; 72522f70c32Sdrh pExpr->span = pExpr->token; 72622f70c32Sdrh } 7277c917d19Sdrh pNew = sqliteExprListAppend(pNew, pExpr, 0); 728d8bc7086Sdrh } 729d8bc7086Sdrh } 73054473229Sdrh if( !tableSeen ){ 73154473229Sdrh assert( pName!=0 ); 73254473229Sdrh sqliteSetNString(&pParse->zErrMsg, "no such table: ", -1, 73354473229Sdrh pName->z, pName->n, 0); 73454473229Sdrh rc = 1; 73554473229Sdrh } 7367c917d19Sdrh } 7377c917d19Sdrh } 7387c917d19Sdrh sqliteExprListDelete(pEList); 7397c917d19Sdrh p->pEList = pNew; 740d8bc7086Sdrh } 74154473229Sdrh return rc; 742d8bc7086Sdrh } 743d8bc7086Sdrh 744d8bc7086Sdrh /* 745ff78bd2fSdrh ** This routine recursively unlinks the Select.pSrc.a[].pTab pointers 746ff78bd2fSdrh ** in a select structure. It just sets the pointers to NULL. This 747ff78bd2fSdrh ** routine is recursive in the sense that if the Select.pSrc.a[].pSelect 748ff78bd2fSdrh ** pointer is not NULL, this routine is called recursively on that pointer. 749ff78bd2fSdrh ** 750ff78bd2fSdrh ** This routine is called on the Select structure that defines a 751ff78bd2fSdrh ** VIEW in order to undo any bindings to tables. This is necessary 752ff78bd2fSdrh ** because those tables might be DROPed by a subsequent SQL command. 753ff78bd2fSdrh */ 754ff78bd2fSdrh void sqliteSelectUnbind(Select *p){ 755ff78bd2fSdrh int i; 756ad3cab52Sdrh SrcList *pSrc = p->pSrc; 757ff78bd2fSdrh Table *pTab; 758ff78bd2fSdrh if( p==0 ) return; 759ad3cab52Sdrh for(i=0; i<pSrc->nSrc; i++){ 760ff78bd2fSdrh if( (pTab = pSrc->a[i].pTab)!=0 ){ 761ff78bd2fSdrh if( pTab->isTransient ){ 762ff78bd2fSdrh sqliteDeleteTable(0, pTab); 763ff78bd2fSdrh sqliteSelectDelete(pSrc->a[i].pSelect); 764ff78bd2fSdrh pSrc->a[i].pSelect = 0; 765ff78bd2fSdrh } 766ff78bd2fSdrh pSrc->a[i].pTab = 0; 767ff78bd2fSdrh if( pSrc->a[i].pSelect ){ 768ff78bd2fSdrh sqliteSelectUnbind(pSrc->a[i].pSelect); 769ff78bd2fSdrh } 770ff78bd2fSdrh } 771ff78bd2fSdrh } 772ff78bd2fSdrh } 773ff78bd2fSdrh 774ff78bd2fSdrh /* 775d8bc7086Sdrh ** This routine associates entries in an ORDER BY expression list with 776d8bc7086Sdrh ** columns in a result. For each ORDER BY expression, the opcode of 777967e8b73Sdrh ** the top-level node is changed to TK_COLUMN and the iColumn value of 778d8bc7086Sdrh ** the top-level node is filled in with column number and the iTable 779d8bc7086Sdrh ** value of the top-level node is filled with iTable parameter. 780d8bc7086Sdrh ** 781d8bc7086Sdrh ** If there are prior SELECT clauses, they are processed first. A match 782d8bc7086Sdrh ** in an earlier SELECT takes precedence over a later SELECT. 783d8bc7086Sdrh ** 784d8bc7086Sdrh ** Any entry that does not match is flagged as an error. The number 785d8bc7086Sdrh ** of errors is returned. 786d8bc7086Sdrh */ 787d8bc7086Sdrh static int matchOrderbyToColumn( 788d8bc7086Sdrh Parse *pParse, /* A place to leave error messages */ 789d8bc7086Sdrh Select *pSelect, /* Match to result columns of this SELECT */ 790d8bc7086Sdrh ExprList *pOrderBy, /* The ORDER BY values to match against columns */ 791e4de1febSdrh int iTable, /* Insert this value in iTable */ 792d8bc7086Sdrh int mustComplete /* If TRUE all ORDER BYs must match */ 793d8bc7086Sdrh ){ 794d8bc7086Sdrh int nErr = 0; 795d8bc7086Sdrh int i, j; 796d8bc7086Sdrh ExprList *pEList; 797d8bc7086Sdrh 798daffd0e5Sdrh if( pSelect==0 || pOrderBy==0 ) return 1; 799d8bc7086Sdrh if( mustComplete ){ 800d8bc7086Sdrh for(i=0; i<pOrderBy->nExpr; i++){ pOrderBy->a[i].done = 0; } 801d8bc7086Sdrh } 802d8bc7086Sdrh if( fillInColumnList(pParse, pSelect) ){ 803d8bc7086Sdrh return 1; 804d8bc7086Sdrh } 805d8bc7086Sdrh if( pSelect->pPrior ){ 80692cd52f5Sdrh if( matchOrderbyToColumn(pParse, pSelect->pPrior, pOrderBy, iTable, 0) ){ 80792cd52f5Sdrh return 1; 80892cd52f5Sdrh } 809d8bc7086Sdrh } 810d8bc7086Sdrh pEList = pSelect->pEList; 811d8bc7086Sdrh for(i=0; i<pOrderBy->nExpr; i++){ 812d8bc7086Sdrh Expr *pE = pOrderBy->a[i].pExpr; 813e4de1febSdrh int iCol = -1; 814d8bc7086Sdrh if( pOrderBy->a[i].done ) continue; 815e4de1febSdrh if( sqliteExprIsInteger(pE, &iCol) ){ 816e4de1febSdrh if( iCol<=0 || iCol>pEList->nExpr ){ 817e4de1febSdrh char zBuf[200]; 818e4de1febSdrh sprintf(zBuf,"ORDER BY position %d should be between 1 and %d", 819e4de1febSdrh iCol, pEList->nExpr); 820e4de1febSdrh sqliteSetString(&pParse->zErrMsg, zBuf, 0); 821e4de1febSdrh pParse->nErr++; 822e4de1febSdrh nErr++; 823e4de1febSdrh break; 824e4de1febSdrh } 825e4de1febSdrh iCol--; 826e4de1febSdrh } 827e4de1febSdrh for(j=0; iCol<0 && j<pEList->nExpr; j++){ 8284cfa7934Sdrh if( pEList->a[j].zName && (pE->op==TK_ID || pE->op==TK_STRING) ){ 829a76b5dfcSdrh char *zName, *zLabel; 830a76b5dfcSdrh zName = pEList->a[j].zName; 831a76b5dfcSdrh assert( pE->token.z ); 832a76b5dfcSdrh zLabel = sqliteStrNDup(pE->token.z, pE->token.n); 833d8bc7086Sdrh sqliteDequote(zLabel); 834d8bc7086Sdrh if( sqliteStrICmp(zName, zLabel)==0 ){ 835e4de1febSdrh iCol = j; 836d8bc7086Sdrh } 8376e142f54Sdrh sqliteFree(zLabel); 838d8bc7086Sdrh } 839e4de1febSdrh if( iCol<0 && sqliteExprCompare(pE, pEList->a[j].pExpr) ){ 840e4de1febSdrh iCol = j; 841d8bc7086Sdrh } 842e4de1febSdrh } 843e4de1febSdrh if( iCol>=0 ){ 844967e8b73Sdrh pE->op = TK_COLUMN; 845e4de1febSdrh pE->iColumn = iCol; 846d8bc7086Sdrh pE->iTable = iTable; 847d8bc7086Sdrh pOrderBy->a[i].done = 1; 848d8bc7086Sdrh } 849e4de1febSdrh if( iCol<0 && mustComplete ){ 850d8bc7086Sdrh char zBuf[30]; 851d8bc7086Sdrh sprintf(zBuf,"%d",i+1); 852d8bc7086Sdrh sqliteSetString(&pParse->zErrMsg, "ORDER BY term number ", zBuf, 853d8bc7086Sdrh " does not match any result column", 0); 854d8bc7086Sdrh pParse->nErr++; 855d8bc7086Sdrh nErr++; 856d8bc7086Sdrh break; 857d8bc7086Sdrh } 858d8bc7086Sdrh } 859d8bc7086Sdrh return nErr; 860d8bc7086Sdrh } 861d8bc7086Sdrh 862d8bc7086Sdrh /* 863d8bc7086Sdrh ** Get a VDBE for the given parser context. Create a new one if necessary. 864d8bc7086Sdrh ** If an error occurs, return NULL and leave a message in pParse. 865d8bc7086Sdrh */ 866d8bc7086Sdrh Vdbe *sqliteGetVdbe(Parse *pParse){ 867d8bc7086Sdrh Vdbe *v = pParse->pVdbe; 868d8bc7086Sdrh if( v==0 ){ 8694c504391Sdrh v = pParse->pVdbe = sqliteVdbeCreate(pParse->db); 870d8bc7086Sdrh } 871d8bc7086Sdrh return v; 872d8bc7086Sdrh } 873d8bc7086Sdrh 874d8bc7086Sdrh 875d8bc7086Sdrh /* 87682c3d636Sdrh ** This routine is called to process a query that is really the union 87782c3d636Sdrh ** or intersection of two or more separate queries. 87882c3d636Sdrh */ 87982c3d636Sdrh static int multiSelect(Parse *pParse, Select *p, int eDest, int iParm){ 88010e5e3cfSdrh int rc; /* Success code from a subroutine */ 88110e5e3cfSdrh Select *pPrior; /* Another SELECT immediately to our left */ 88210e5e3cfSdrh Vdbe *v; /* Generate code to this VDBE */ 88310e5e3cfSdrh int base; /* Baseline value for pParse->nTab */ 88482c3d636Sdrh 885d8bc7086Sdrh /* Make sure there is no ORDER BY clause on prior SELECTs. Only the 886d8bc7086Sdrh ** last SELECT in the series may have an ORDER BY. 88782c3d636Sdrh */ 888daffd0e5Sdrh if( p==0 || p->pPrior==0 ) return 1; 889d8bc7086Sdrh pPrior = p->pPrior; 890d8bc7086Sdrh if( pPrior->pOrderBy ){ 891d8bc7086Sdrh sqliteSetString(&pParse->zErrMsg,"ORDER BY clause should come after ", 892d8bc7086Sdrh selectOpName(p->op), " not before", 0); 89382c3d636Sdrh pParse->nErr++; 89482c3d636Sdrh return 1; 89582c3d636Sdrh } 89682c3d636Sdrh 897d8bc7086Sdrh /* Make sure we have a valid query engine. If not, create a new one. 898d8bc7086Sdrh */ 899d8bc7086Sdrh v = sqliteGetVdbe(pParse); 900d8bc7086Sdrh if( v==0 ) return 1; 901d8bc7086Sdrh 9021cc3d75fSdrh /* Create the destination temporary table if necessary 9031cc3d75fSdrh */ 9041cc3d75fSdrh if( eDest==SRT_TempTable ){ 9051cc3d75fSdrh sqliteVdbeAddOp(v, OP_OpenTemp, iParm, 0); 9061cc3d75fSdrh eDest = SRT_Table; 9071cc3d75fSdrh } 9081cc3d75fSdrh 909d8bc7086Sdrh /* Process the UNION or INTERSECTION 910d8bc7086Sdrh */ 91110e5e3cfSdrh base = pParse->nTab; 91282c3d636Sdrh switch( p->op ){ 913d8bc7086Sdrh case TK_ALL: 91482c3d636Sdrh case TK_EXCEPT: 91582c3d636Sdrh case TK_UNION: { 916d8bc7086Sdrh int unionTab; /* Cursor number of the temporary table holding result */ 917d8bc7086Sdrh int op; /* One of the SRT_ operations to apply to self */ 918d8bc7086Sdrh int priorOp; /* The SRT_ operation to apply to prior selects */ 91982c3d636Sdrh 920d8bc7086Sdrh priorOp = p->op==TK_ALL ? SRT_Table : SRT_Union; 921d8bc7086Sdrh if( eDest==priorOp ){ 922d8bc7086Sdrh /* We can reuse a temporary table generated by a SELECT to our 923d8bc7086Sdrh ** right. This also means we are not the right-most select and so 924d8bc7086Sdrh ** we cannot have an ORDER BY clause 925d8bc7086Sdrh */ 92682c3d636Sdrh unionTab = iParm; 927d8bc7086Sdrh assert( p->pOrderBy==0 ); 92882c3d636Sdrh }else{ 929d8bc7086Sdrh /* We will need to create our own temporary table to hold the 930d8bc7086Sdrh ** intermediate results. 931d8bc7086Sdrh */ 93282c3d636Sdrh unionTab = pParse->nTab++; 933d8bc7086Sdrh if( p->pOrderBy 934d8bc7086Sdrh && matchOrderbyToColumn(pParse, p, p->pOrderBy, unionTab, 1) ){ 935d8bc7086Sdrh return 1; 936d8bc7086Sdrh } 937d8bc7086Sdrh if( p->op!=TK_ALL ){ 938c6b52df3Sdrh sqliteVdbeAddOp(v, OP_OpenTemp, unionTab, 1); 93999fcd718Sdrh sqliteVdbeAddOp(v, OP_KeyAsData, unionTab, 1); 940345fda3eSdrh }else{ 94199fcd718Sdrh sqliteVdbeAddOp(v, OP_OpenTemp, unionTab, 0); 94282c3d636Sdrh } 943d8bc7086Sdrh } 944d8bc7086Sdrh 945d8bc7086Sdrh /* Code the SELECT statements to our left 946d8bc7086Sdrh */ 947832508b7Sdrh rc = sqliteSelect(pParse, pPrior, priorOp, unionTab, 0, 0, 0); 94882c3d636Sdrh if( rc ) return rc; 949d8bc7086Sdrh 950d8bc7086Sdrh /* Code the current SELECT statement 951d8bc7086Sdrh */ 952d8bc7086Sdrh switch( p->op ){ 953d8bc7086Sdrh case TK_EXCEPT: op = SRT_Except; break; 954d8bc7086Sdrh case TK_UNION: op = SRT_Union; break; 955d8bc7086Sdrh case TK_ALL: op = SRT_Table; break; 956d8bc7086Sdrh } 95782c3d636Sdrh p->pPrior = 0; 958832508b7Sdrh rc = sqliteSelect(pParse, p, op, unionTab, 0, 0, 0); 95982c3d636Sdrh p->pPrior = pPrior; 96082c3d636Sdrh if( rc ) return rc; 961d8bc7086Sdrh 962d8bc7086Sdrh /* Convert the data in the temporary table into whatever form 963d8bc7086Sdrh ** it is that we currently need. 964d8bc7086Sdrh */ 965d8bc7086Sdrh if( eDest!=priorOp ){ 9666b56344dSdrh int iCont, iBreak, iStart; 96782c3d636Sdrh assert( p->pEList ); 96841202ccaSdrh if( eDest==SRT_Callback ){ 969832508b7Sdrh generateColumnNames(pParse, p->base, 0, p->pEList); 97041202ccaSdrh } 97182c3d636Sdrh iBreak = sqliteVdbeMakeLabel(v); 9726b56344dSdrh iCont = sqliteVdbeMakeLabel(v); 9736b56344dSdrh sqliteVdbeAddOp(v, OP_Rewind, unionTab, iBreak); 9746b56344dSdrh iStart = sqliteVdbeCurrentAddr(v); 97582c3d636Sdrh rc = selectInnerLoop(pParse, 0, unionTab, p->pEList->nExpr, 976d8bc7086Sdrh p->pOrderBy, -1, eDest, iParm, 97782c3d636Sdrh iCont, iBreak); 97882c3d636Sdrh if( rc ) return 1; 9796b56344dSdrh sqliteVdbeResolveLabel(v, iCont); 9806b56344dSdrh sqliteVdbeAddOp(v, OP_Next, unionTab, iStart); 98199fcd718Sdrh sqliteVdbeResolveLabel(v, iBreak); 98299fcd718Sdrh sqliteVdbeAddOp(v, OP_Close, unionTab, 0); 983d8bc7086Sdrh if( p->pOrderBy ){ 984d8bc7086Sdrh generateSortTail(v, p->pEList->nExpr); 985d8bc7086Sdrh } 98682c3d636Sdrh } 98782c3d636Sdrh break; 98882c3d636Sdrh } 98982c3d636Sdrh case TK_INTERSECT: { 99082c3d636Sdrh int tab1, tab2; 9916b56344dSdrh int iCont, iBreak, iStart; 99282c3d636Sdrh 993d8bc7086Sdrh /* INTERSECT is different from the others since it requires 9946206d50aSdrh ** two temporary tables. Hence it has its own case. Begin 995d8bc7086Sdrh ** by allocating the tables we will need. 996d8bc7086Sdrh */ 99782c3d636Sdrh tab1 = pParse->nTab++; 99882c3d636Sdrh tab2 = pParse->nTab++; 999d8bc7086Sdrh if( p->pOrderBy && matchOrderbyToColumn(pParse,p,p->pOrderBy,tab1,1) ){ 1000d8bc7086Sdrh return 1; 1001d8bc7086Sdrh } 1002c6b52df3Sdrh sqliteVdbeAddOp(v, OP_OpenTemp, tab1, 1); 100399fcd718Sdrh sqliteVdbeAddOp(v, OP_KeyAsData, tab1, 1); 1004d8bc7086Sdrh 1005d8bc7086Sdrh /* Code the SELECTs to our left into temporary table "tab1". 1006d8bc7086Sdrh */ 1007832508b7Sdrh rc = sqliteSelect(pParse, pPrior, SRT_Union, tab1, 0, 0, 0); 100882c3d636Sdrh if( rc ) return rc; 1009d8bc7086Sdrh 1010d8bc7086Sdrh /* Code the current SELECT into temporary table "tab2" 1011d8bc7086Sdrh */ 1012c6b52df3Sdrh sqliteVdbeAddOp(v, OP_OpenTemp, tab2, 1); 101399fcd718Sdrh sqliteVdbeAddOp(v, OP_KeyAsData, tab2, 1); 101482c3d636Sdrh p->pPrior = 0; 1015832508b7Sdrh rc = sqliteSelect(pParse, p, SRT_Union, tab2, 0, 0, 0); 101682c3d636Sdrh p->pPrior = pPrior; 101782c3d636Sdrh if( rc ) return rc; 1018d8bc7086Sdrh 1019d8bc7086Sdrh /* Generate code to take the intersection of the two temporary 1020d8bc7086Sdrh ** tables. 1021d8bc7086Sdrh */ 102282c3d636Sdrh assert( p->pEList ); 102341202ccaSdrh if( eDest==SRT_Callback ){ 1024832508b7Sdrh generateColumnNames(pParse, p->base, 0, p->pEList); 102541202ccaSdrh } 102682c3d636Sdrh iBreak = sqliteVdbeMakeLabel(v); 10276b56344dSdrh iCont = sqliteVdbeMakeLabel(v); 10286b56344dSdrh sqliteVdbeAddOp(v, OP_Rewind, tab1, iBreak); 10296b56344dSdrh iStart = sqliteVdbeAddOp(v, OP_FullKey, tab1, 0); 103099fcd718Sdrh sqliteVdbeAddOp(v, OP_NotFound, tab2, iCont); 103182c3d636Sdrh rc = selectInnerLoop(pParse, 0, tab1, p->pEList->nExpr, 1032d8bc7086Sdrh p->pOrderBy, -1, eDest, iParm, 103382c3d636Sdrh iCont, iBreak); 103482c3d636Sdrh if( rc ) return 1; 10356b56344dSdrh sqliteVdbeResolveLabel(v, iCont); 10366b56344dSdrh sqliteVdbeAddOp(v, OP_Next, tab1, iStart); 103799fcd718Sdrh sqliteVdbeResolveLabel(v, iBreak); 103899fcd718Sdrh sqliteVdbeAddOp(v, OP_Close, tab2, 0); 103999fcd718Sdrh sqliteVdbeAddOp(v, OP_Close, tab1, 0); 1040d8bc7086Sdrh if( p->pOrderBy ){ 1041d8bc7086Sdrh generateSortTail(v, p->pEList->nExpr); 1042d8bc7086Sdrh } 104382c3d636Sdrh break; 104482c3d636Sdrh } 104582c3d636Sdrh } 104682c3d636Sdrh assert( p->pEList && pPrior->pEList ); 104782c3d636Sdrh if( p->pEList->nExpr!=pPrior->pEList->nExpr ){ 1048d8bc7086Sdrh sqliteSetString(&pParse->zErrMsg, "SELECTs to the left and right of ", 1049d8bc7086Sdrh selectOpName(p->op), " do not have the same number of result columns", 0); 105082c3d636Sdrh pParse->nErr++; 105182c3d636Sdrh return 1; 10522282792aSdrh } 105310e5e3cfSdrh pParse->nTab = base; 10542282792aSdrh return 0; 10552282792aSdrh } 10562282792aSdrh 10572282792aSdrh /* 1058832508b7Sdrh ** Recursively scan through an expression tree. For every reference 1059832508b7Sdrh ** to a column in table number iFrom, change that reference to the 1060832508b7Sdrh ** same column in table number iTo. 1061832508b7Sdrh */ 1062832508b7Sdrh static void changeTables(Expr *pExpr, int iFrom, int iTo){ 1063832508b7Sdrh if( pExpr==0 ) return; 1064832508b7Sdrh if( pExpr->op==TK_COLUMN && pExpr->iTable==iFrom ){ 1065832508b7Sdrh pExpr->iTable = iTo; 1066832508b7Sdrh }else{ 10671b2e0329Sdrh static void changeTablesInList(ExprList*, int, int); 1068832508b7Sdrh changeTables(pExpr->pLeft, iFrom, iTo); 1069832508b7Sdrh changeTables(pExpr->pRight, iFrom, iTo); 10701b2e0329Sdrh changeTablesInList(pExpr->pList, iFrom, iTo); 1071832508b7Sdrh } 1072832508b7Sdrh } 10731b2e0329Sdrh static void changeTablesInList(ExprList *pList, int iFrom, int iTo){ 10741b2e0329Sdrh if( pList ){ 10751b2e0329Sdrh int i; 10761b2e0329Sdrh for(i=0; i<pList->nExpr; i++){ 10771b2e0329Sdrh changeTables(pList->a[i].pExpr, iFrom, iTo); 10781b2e0329Sdrh } 1079832508b7Sdrh } 1080832508b7Sdrh } 1081832508b7Sdrh 1082832508b7Sdrh /* 1083832508b7Sdrh ** Scan through the expression pExpr. Replace every reference to 1084832508b7Sdrh ** a column in table number iTable with a copy of the corresponding 108584e59207Sdrh ** entry in pEList. (But leave references to the ROWID column 108684e59207Sdrh ** unchanged.) When making a copy of an expression in pEList, change 108784e59207Sdrh ** references to columns in table iSub into references to table iTable. 1088832508b7Sdrh ** 1089832508b7Sdrh ** This routine is part of the flattening procedure. A subquery 1090832508b7Sdrh ** whose result set is defined by pEList appears as entry in the 1091832508b7Sdrh ** FROM clause of a SELECT such that the VDBE cursor assigned to that 1092832508b7Sdrh ** FORM clause entry is iTable. This routine make the necessary 1093832508b7Sdrh ** changes to pExpr so that it refers directly to the source table 1094832508b7Sdrh ** of the subquery rather the result set of the subquery. 1095832508b7Sdrh */ 1096832508b7Sdrh static void substExpr(Expr *pExpr, int iTable, ExprList *pEList, int iSub){ 1097832508b7Sdrh if( pExpr==0 ) return; 109884e59207Sdrh if( pExpr->op==TK_COLUMN && pExpr->iTable==iTable && pExpr->iColumn>=0 ){ 1099832508b7Sdrh Expr *pNew; 110084e59207Sdrh assert( pEList!=0 && pExpr->iColumn<pEList->nExpr ); 1101832508b7Sdrh assert( pExpr->pLeft==0 && pExpr->pRight==0 && pExpr->pList==0 ); 1102832508b7Sdrh pNew = pEList->a[pExpr->iColumn].pExpr; 1103832508b7Sdrh assert( pNew!=0 ); 1104832508b7Sdrh pExpr->op = pNew->op; 1105832508b7Sdrh pExpr->pLeft = sqliteExprDup(pNew->pLeft); 1106832508b7Sdrh pExpr->pRight = sqliteExprDup(pNew->pRight); 1107832508b7Sdrh pExpr->pList = sqliteExprListDup(pNew->pList); 1108832508b7Sdrh pExpr->iTable = pNew->iTable; 1109832508b7Sdrh pExpr->iColumn = pNew->iColumn; 1110832508b7Sdrh pExpr->iAgg = pNew->iAgg; 11111b2e0329Sdrh pExpr->token = pNew->token; 1112832508b7Sdrh if( iSub!=iTable ){ 1113832508b7Sdrh changeTables(pExpr, iSub, iTable); 1114832508b7Sdrh } 1115832508b7Sdrh }else{ 1116832508b7Sdrh static void substExprList(ExprList*,int,ExprList*,int); 1117832508b7Sdrh substExpr(pExpr->pLeft, iTable, pEList, iSub); 1118832508b7Sdrh substExpr(pExpr->pRight, iTable, pEList, iSub); 1119832508b7Sdrh substExprList(pExpr->pList, iTable, pEList, iSub); 1120832508b7Sdrh } 1121832508b7Sdrh } 1122832508b7Sdrh static void 1123832508b7Sdrh substExprList(ExprList *pList, int iTable, ExprList *pEList, int iSub){ 1124832508b7Sdrh int i; 1125832508b7Sdrh if( pList==0 ) return; 1126832508b7Sdrh for(i=0; i<pList->nExpr; i++){ 1127832508b7Sdrh substExpr(pList->a[i].pExpr, iTable, pEList, iSub); 1128832508b7Sdrh } 1129832508b7Sdrh } 1130832508b7Sdrh 1131832508b7Sdrh /* 11321350b030Sdrh ** This routine attempts to flatten subqueries in order to speed 11331350b030Sdrh ** execution. It returns 1 if it makes changes and 0 if no flattening 11341350b030Sdrh ** occurs. 11351350b030Sdrh ** 11361350b030Sdrh ** To understand the concept of flattening, consider the following 11371350b030Sdrh ** query: 11381350b030Sdrh ** 11391350b030Sdrh ** SELECT a FROM (SELECT x+y AS a FROM t1 WHERE z<100) WHERE a>5 11401350b030Sdrh ** 11411350b030Sdrh ** The default way of implementing this query is to execute the 11421350b030Sdrh ** subquery first and store the results in a temporary table, then 11431350b030Sdrh ** run the outer query on that temporary table. This requires two 11441350b030Sdrh ** passes over the data. Furthermore, because the temporary table 11451350b030Sdrh ** has no indices, the WHERE clause on the outer query cannot be 1146832508b7Sdrh ** optimized. 11471350b030Sdrh ** 1148832508b7Sdrh ** This routine attempts to rewrite queries such as the above into 11491350b030Sdrh ** a single flat select, like this: 11501350b030Sdrh ** 11511350b030Sdrh ** SELECT x+y AS a FROM t1 WHERE z<100 AND a>5 11521350b030Sdrh ** 11531350b030Sdrh ** The code generated for this simpification gives the same result 1154832508b7Sdrh ** but only has to scan the data once. And because indices might 1155832508b7Sdrh ** exist on the table t1, a complete scan of the data might be 1156832508b7Sdrh ** avoided. 11571350b030Sdrh ** 1158832508b7Sdrh ** Flattening is only attempted if all of the following are true: 11591350b030Sdrh ** 1160832508b7Sdrh ** (1) The subquery and the outer query do not both use aggregates. 11611350b030Sdrh ** 1162832508b7Sdrh ** (2) The subquery is not an aggregate or the outer query is not a join. 1163832508b7Sdrh ** 1164832508b7Sdrh ** (3) The subquery is not a join. 1165832508b7Sdrh ** 1166832508b7Sdrh ** (4) The subquery is not DISTINCT or the outer query is not a join. 1167832508b7Sdrh ** 1168832508b7Sdrh ** (5) The subquery is not DISTINCT or the outer query does not use 1169832508b7Sdrh ** aggregates. 1170832508b7Sdrh ** 1171832508b7Sdrh ** (6) The subquery does not use aggregates or the outer query is not 1172832508b7Sdrh ** DISTINCT. 1173832508b7Sdrh ** 117408192d5fSdrh ** (7) The subquery has a FROM clause. 117508192d5fSdrh ** 1176832508b7Sdrh ** In this routine, the "p" parameter is a pointer to the outer query. 1177832508b7Sdrh ** The subquery is p->pSrc->a[iFrom]. isAgg is true if the outer query 1178832508b7Sdrh ** uses aggregates and subqueryIsAgg is true if the subquery uses aggregates. 1179832508b7Sdrh ** 1180832508b7Sdrh ** If flattening is not attempted, this routine is a no-op and return 0. 1181832508b7Sdrh ** If flattening is attempted this routine returns 1. 1182832508b7Sdrh ** 1183832508b7Sdrh ** All of the expression analysis must occur on both the outer query and 1184832508b7Sdrh ** the subquery before this routine runs. 11851350b030Sdrh */ 1186832508b7Sdrh int flattenSubquery(Select *p, int iFrom, int isAgg, int subqueryIsAgg){ 11870bb28106Sdrh Select *pSub; /* The inner query or "subquery" */ 1188ad3cab52Sdrh SrcList *pSrc; /* The FROM clause of the outer query */ 1189ad3cab52Sdrh SrcList *pSubSrc; /* The FROM clause of the subquery */ 11900bb28106Sdrh ExprList *pList; /* The result set of the outer query */ 1191832508b7Sdrh int i; 1192832508b7Sdrh int iParent, iSub; 1193832508b7Sdrh Expr *pWhere; 11941350b030Sdrh 1195832508b7Sdrh /* Check to see if flattening is permitted. Return 0 if not. 1196832508b7Sdrh */ 1197832508b7Sdrh if( p==0 ) return 0; 1198832508b7Sdrh pSrc = p->pSrc; 1199ad3cab52Sdrh assert( pSrc && iFrom>=0 && iFrom<pSrc->nSrc ); 1200832508b7Sdrh pSub = pSrc->a[iFrom].pSelect; 1201832508b7Sdrh assert( pSub!=0 ); 1202832508b7Sdrh if( isAgg && subqueryIsAgg ) return 0; 1203ad3cab52Sdrh if( subqueryIsAgg && pSrc->nSrc>1 ) return 0; 1204832508b7Sdrh pSubSrc = pSub->pSrc; 1205832508b7Sdrh assert( pSubSrc ); 1206ad3cab52Sdrh if( pSubSrc->nSrc!=1 ) return 0; 1207ad3cab52Sdrh if( pSub->isDistinct && pSrc->nSrc>1 ) return 0; 1208832508b7Sdrh if( pSub->isDistinct && isAgg ) return 0; 1209832508b7Sdrh if( p->isDistinct && subqueryIsAgg ) return 0; 1210832508b7Sdrh 12110bb28106Sdrh /* If we reach this point, it means flattening is permitted for the 1212832508b7Sdrh ** i-th entry of the FROM clause in the outer query. 1213832508b7Sdrh */ 1214832508b7Sdrh iParent = p->base + iFrom; 1215832508b7Sdrh iSub = pSub->base; 1216832508b7Sdrh substExprList(p->pEList, iParent, pSub->pEList, iSub); 1217832508b7Sdrh pList = p->pEList; 1218832508b7Sdrh for(i=0; i<pList->nExpr; i++){ 1219832508b7Sdrh if( pList->a[i].zName==0 ){ 1220832508b7Sdrh Expr *pExpr = pList->a[i].pExpr; 1221832508b7Sdrh pList->a[i].zName = sqliteStrNDup(pExpr->span.z, pExpr->span.n); 1222832508b7Sdrh } 1223832508b7Sdrh } 12241b2e0329Sdrh if( isAgg ){ 1225832508b7Sdrh substExprList(p->pGroupBy, iParent, pSub->pEList, iSub); 1226832508b7Sdrh substExpr(p->pHaving, iParent, pSub->pEList, iSub); 12271b2e0329Sdrh } 1228832508b7Sdrh substExprList(p->pOrderBy, iParent, pSub->pEList, iSub); 1229832508b7Sdrh if( pSub->pWhere ){ 1230832508b7Sdrh pWhere = sqliteExprDup(pSub->pWhere); 1231832508b7Sdrh if( iParent!=iSub ){ 1232832508b7Sdrh changeTables(pWhere, iSub, iParent); 1233832508b7Sdrh } 1234832508b7Sdrh }else{ 1235832508b7Sdrh pWhere = 0; 1236832508b7Sdrh } 1237832508b7Sdrh if( subqueryIsAgg ){ 1238832508b7Sdrh assert( p->pHaving==0 ); 12391b2e0329Sdrh p->pHaving = p->pWhere; 12401b2e0329Sdrh p->pWhere = pWhere; 1241832508b7Sdrh substExpr(p->pHaving, iParent, pSub->pEList, iSub); 12421b2e0329Sdrh if( pSub->pHaving ){ 12431b2e0329Sdrh Expr *pHaving = sqliteExprDup(pSub->pHaving); 12441b2e0329Sdrh if( iParent!=iSub ){ 12451b2e0329Sdrh changeTables(pHaving, iSub, iParent); 12461b2e0329Sdrh } 12471b2e0329Sdrh if( p->pHaving ){ 12481b2e0329Sdrh p->pHaving = sqliteExpr(TK_AND, p->pHaving, pHaving, 0); 12491b2e0329Sdrh }else{ 12501b2e0329Sdrh p->pHaving = pHaving; 12511b2e0329Sdrh } 12521b2e0329Sdrh } 12531b2e0329Sdrh assert( p->pGroupBy==0 ); 12541b2e0329Sdrh p->pGroupBy = sqliteExprListDup(pSub->pGroupBy); 12551b2e0329Sdrh if( iParent!=iSub ){ 12561b2e0329Sdrh changeTablesInList(p->pGroupBy, iSub, iParent); 12571b2e0329Sdrh } 1258832508b7Sdrh }else if( p->pWhere==0 ){ 1259832508b7Sdrh p->pWhere = pWhere; 1260832508b7Sdrh }else{ 1261832508b7Sdrh substExpr(p->pWhere, iParent, pSub->pEList, iSub); 1262832508b7Sdrh if( pWhere ){ 1263832508b7Sdrh p->pWhere = sqliteExpr(TK_AND, p->pWhere, pWhere, 0); 1264832508b7Sdrh } 1265832508b7Sdrh } 1266832508b7Sdrh p->isDistinct = p->isDistinct || pSub->isDistinct; 1267832508b7Sdrh if( pSrc->a[iFrom].pTab && pSrc->a[iFrom].pTab->isTransient ){ 1268832508b7Sdrh sqliteDeleteTable(0, pSrc->a[iFrom].pTab); 1269832508b7Sdrh } 1270832508b7Sdrh pSrc->a[iFrom].pTab = pSubSrc->a[0].pTab; 1271832508b7Sdrh pSubSrc->a[0].pTab = 0; 1272832508b7Sdrh pSrc->a[iFrom].pSelect = pSubSrc->a[0].pSelect; 1273832508b7Sdrh pSubSrc->a[0].pSelect = 0; 1274832508b7Sdrh sqliteSelectDelete(pSub); 1275832508b7Sdrh return 1; 12761350b030Sdrh } 12771350b030Sdrh 12781350b030Sdrh /* 12799562b551Sdrh ** Analyze the SELECT statement passed in as an argument to see if it 12809562b551Sdrh ** is a simple min() or max() query. If it is and this query can be 12819562b551Sdrh ** satisfied using a single seek to the beginning or end of an index, 12829562b551Sdrh ** then generate the code for this SELECT return 1. If this is not a 12839562b551Sdrh ** simple min() or max() query, then return 0; 12849562b551Sdrh ** 12859562b551Sdrh ** A simply min() or max() query looks like this: 12869562b551Sdrh ** 12879562b551Sdrh ** SELECT min(a) FROM table; 12889562b551Sdrh ** SELECT max(a) FROM table; 12899562b551Sdrh ** 12909562b551Sdrh ** The query may have only a single table in its FROM argument. There 12919562b551Sdrh ** can be no GROUP BY or HAVING or WHERE clauses. The result set must 12929562b551Sdrh ** be the min() or max() of a single column of the table. The column 12939562b551Sdrh ** in the min() or max() function must be indexed. 12949562b551Sdrh ** 12959562b551Sdrh ** The parameters to this routine are the same as for sqliteSelect(). 12969562b551Sdrh ** See the header comment on that routine for additional information. 12979562b551Sdrh */ 12989562b551Sdrh static int simpleMinMaxQuery(Parse *pParse, Select *p, int eDest, int iParm){ 12999562b551Sdrh Expr *pExpr; 13009562b551Sdrh int iCol; 13019562b551Sdrh Table *pTab; 13029562b551Sdrh Index *pIdx; 13039562b551Sdrh int base; 13049562b551Sdrh Vdbe *v; 13059562b551Sdrh int openOp; 13069562b551Sdrh int seekOp; 13079562b551Sdrh int cont; 13089562b551Sdrh ExprList eList; 13099562b551Sdrh struct ExprList_item eListItem; 13109562b551Sdrh 13119562b551Sdrh /* Check to see if this query is a simple min() or max() query. Return 13129562b551Sdrh ** zero if it is not. 13139562b551Sdrh */ 13149562b551Sdrh if( p->pGroupBy || p->pHaving || p->pWhere ) return 0; 1315ad3cab52Sdrh if( p->pSrc->nSrc!=1 ) return 0; 13169562b551Sdrh if( p->pEList->nExpr!=1 ) return 0; 13179562b551Sdrh pExpr = p->pEList->a[0].pExpr; 13189562b551Sdrh if( pExpr->op!=TK_AGG_FUNCTION ) return 0; 13199562b551Sdrh if( pExpr->pList==0 || pExpr->pList->nExpr!=1 ) return 0; 13200bce8354Sdrh if( pExpr->token.n!=3 ) return 0; 13210bce8354Sdrh if( sqliteStrNICmp(pExpr->token.z,"min",3)==0 ){ 13220bce8354Sdrh seekOp = OP_Rewind; 13230bce8354Sdrh }else if( sqliteStrNICmp(pExpr->token.z,"max",3)==0 ){ 13240bce8354Sdrh seekOp = OP_Last; 13250bce8354Sdrh }else{ 13260bce8354Sdrh return 0; 13270bce8354Sdrh } 13289562b551Sdrh pExpr = pExpr->pList->a[0].pExpr; 13299562b551Sdrh if( pExpr->op!=TK_COLUMN ) return 0; 13309562b551Sdrh iCol = pExpr->iColumn; 13319562b551Sdrh pTab = p->pSrc->a[0].pTab; 13329562b551Sdrh 13339562b551Sdrh /* If we get to here, it means the query is of the correct form. 133417f71934Sdrh ** Check to make sure we have an index and make pIdx point to the 133517f71934Sdrh ** appropriate index. If the min() or max() is on an INTEGER PRIMARY 133617f71934Sdrh ** key column, no index is necessary so set pIdx to NULL. If no 133717f71934Sdrh ** usable index is found, return 0. 13389562b551Sdrh */ 13399562b551Sdrh if( iCol<0 ){ 13409562b551Sdrh pIdx = 0; 13419562b551Sdrh }else{ 13429562b551Sdrh for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){ 13439562b551Sdrh assert( pIdx->nColumn>=1 ); 13449562b551Sdrh if( pIdx->aiColumn[0]==iCol ) break; 13459562b551Sdrh } 13469562b551Sdrh if( pIdx==0 ) return 0; 13479562b551Sdrh } 13489562b551Sdrh 134917f71934Sdrh /* Identify column names if we will be using the callback. This 13509562b551Sdrh ** step is skipped if the output is going to a table or a memory cell. 13519562b551Sdrh */ 13529562b551Sdrh v = sqliteGetVdbe(pParse); 13539562b551Sdrh if( v==0 ) return 0; 13549562b551Sdrh if( eDest==SRT_Callback ){ 1355832508b7Sdrh generateColumnNames(pParse, p->base, p->pSrc, p->pEList); 13569562b551Sdrh } 13579562b551Sdrh 135817f71934Sdrh /* Generating code to find the min or the max. Basically all we have 135917f71934Sdrh ** to do is find the first or the last entry in the chosen index. If 136017f71934Sdrh ** the min() or max() is on the INTEGER PRIMARY KEY, then find the first 136117f71934Sdrh ** or last entry in the main table. 13629562b551Sdrh */ 13635cf8e8c7Sdrh if( !pParse->schemaVerified && (pParse->db->flags & SQLITE_InTrans)==0 ){ 13645cf8e8c7Sdrh sqliteVdbeAddOp(v, OP_VerifyCookie, pParse->db->schema_cookie, 0); 13655cf8e8c7Sdrh pParse->schemaVerified = 1; 13665cf8e8c7Sdrh } 13679562b551Sdrh openOp = pTab->isTemp ? OP_OpenAux : OP_Open; 1368832508b7Sdrh base = p->base; 13699562b551Sdrh sqliteVdbeAddOp(v, openOp, base, pTab->tnum); 13705cf8e8c7Sdrh sqliteVdbeChangeP3(v, -1, pTab->zName, P3_STATIC); 13719562b551Sdrh if( pIdx==0 ){ 13729562b551Sdrh sqliteVdbeAddOp(v, seekOp, base, 0); 13739562b551Sdrh }else{ 13749562b551Sdrh sqliteVdbeAddOp(v, openOp, base+1, pIdx->tnum); 13755cf8e8c7Sdrh sqliteVdbeChangeP3(v, -1, pIdx->zName, P3_STATIC); 13769562b551Sdrh sqliteVdbeAddOp(v, seekOp, base+1, 0); 13779562b551Sdrh sqliteVdbeAddOp(v, OP_IdxRecno, base+1, 0); 13789562b551Sdrh sqliteVdbeAddOp(v, OP_Close, base+1, 0); 13799562b551Sdrh sqliteVdbeAddOp(v, OP_MoveTo, base, 0); 13809562b551Sdrh } 13815cf8e8c7Sdrh eList.nExpr = 1; 13825cf8e8c7Sdrh memset(&eListItem, 0, sizeof(eListItem)); 13835cf8e8c7Sdrh eList.a = &eListItem; 13845cf8e8c7Sdrh eList.a[0].pExpr = pExpr; 13859562b551Sdrh cont = sqliteVdbeMakeLabel(v); 13869562b551Sdrh selectInnerLoop(pParse, &eList, base, 1, 0, -1, eDest, iParm, cont, cont); 13879562b551Sdrh sqliteVdbeResolveLabel(v, cont); 13889562b551Sdrh sqliteVdbeAddOp(v, OP_Close, base, 0); 13899562b551Sdrh return 1; 13909562b551Sdrh } 13919562b551Sdrh 13929562b551Sdrh /* 13939bb61fe7Sdrh ** Generate code for the given SELECT statement. 13949bb61fe7Sdrh ** 1395fef5208cSdrh ** The results are distributed in various ways depending on the 1396fef5208cSdrh ** value of eDest and iParm. 1397fef5208cSdrh ** 1398fef5208cSdrh ** eDest Value Result 1399fef5208cSdrh ** ------------ ------------------------------------------- 1400fef5208cSdrh ** SRT_Callback Invoke the callback for each row of the result. 1401fef5208cSdrh ** 1402fef5208cSdrh ** SRT_Mem Store first result in memory cell iParm 1403fef5208cSdrh ** 1404fef5208cSdrh ** SRT_Set Store results as keys of a table with cursor iParm 1405fef5208cSdrh ** 140682c3d636Sdrh ** SRT_Union Store results as a key in a temporary table iParm 140782c3d636Sdrh ** 1408c4a3c779Sdrh ** SRT_Except Remove results form the temporary table iParm. 1409c4a3c779Sdrh ** 1410c4a3c779Sdrh ** SRT_Table Store results in temporary table iParm 14119bb61fe7Sdrh ** 14129bb61fe7Sdrh ** This routine returns the number of errors. If any errors are 14139bb61fe7Sdrh ** encountered, then an appropriate error message is left in 14149bb61fe7Sdrh ** pParse->zErrMsg. 14159bb61fe7Sdrh ** 14169bb61fe7Sdrh ** This routine does NOT free the Select structure passed in. The 14179bb61fe7Sdrh ** calling function needs to do that. 14181b2e0329Sdrh ** 14191b2e0329Sdrh ** The pParent, parentTab, and *pParentAgg fields are filled in if this 14201b2e0329Sdrh ** SELECT is a subquery. This routine may try to combine this SELECT 14211b2e0329Sdrh ** with its parent to form a single flat query. In so doing, it might 14221b2e0329Sdrh ** change the parent query from a non-aggregate to an aggregate query. 14231b2e0329Sdrh ** For that reason, the pParentAgg flag is passed as a pointer, so it 14241b2e0329Sdrh ** can be changed. 14259bb61fe7Sdrh */ 14269bb61fe7Sdrh int sqliteSelect( 1427cce7d176Sdrh Parse *pParse, /* The parser context */ 14289bb61fe7Sdrh Select *p, /* The SELECT statement being coded. */ 142982c3d636Sdrh int eDest, /* One of: SRT_Callback Mem Set Union Except */ 1430832508b7Sdrh int iParm, /* Save result in this memory location, if >=0 */ 1431832508b7Sdrh Select *pParent, /* Another SELECT for which this is a sub-query */ 1432832508b7Sdrh int parentTab, /* Index in pParent->pSrc of this query */ 14331b2e0329Sdrh int *pParentAgg /* True if pParent uses aggregate functions */ 1434cce7d176Sdrh ){ 1435d8bc7086Sdrh int i; 1436cce7d176Sdrh WhereInfo *pWInfo; 1437cce7d176Sdrh Vdbe *v; 1438cce7d176Sdrh int isAgg = 0; /* True for select lists like "count(*)" */ 1439a2e00042Sdrh ExprList *pEList; /* List of columns to extract. */ 1440ad3cab52Sdrh SrcList *pTabList; /* List of tables to select from */ 14419bb61fe7Sdrh Expr *pWhere; /* The WHERE clause. May be NULL */ 14429bb61fe7Sdrh ExprList *pOrderBy; /* The ORDER BY clause. May be NULL */ 14432282792aSdrh ExprList *pGroupBy; /* The GROUP BY clause. May be NULL */ 14442282792aSdrh Expr *pHaving; /* The HAVING clause. May be NULL */ 144519a775c2Sdrh int isDistinct; /* True if the DISTINCT keyword is present */ 144619a775c2Sdrh int distinct; /* Table to use for the distinct set */ 144710e5e3cfSdrh int base; /* First cursor available for use */ 14481d83f052Sdrh int rc = 1; /* Value to return from this function */ 14499bb61fe7Sdrh 1450daffd0e5Sdrh if( sqlite_malloc_failed || pParse->nErr || p==0 ) return 1; 1451daffd0e5Sdrh 145282c3d636Sdrh /* If there is are a sequence of queries, do the earlier ones first. 145382c3d636Sdrh */ 145482c3d636Sdrh if( p->pPrior ){ 145582c3d636Sdrh return multiSelect(pParse, p, eDest, iParm); 145682c3d636Sdrh } 145782c3d636Sdrh 145882c3d636Sdrh /* Make local copies of the parameters for this query. 145982c3d636Sdrh */ 14609bb61fe7Sdrh pTabList = p->pSrc; 14619bb61fe7Sdrh pWhere = p->pWhere; 14629bb61fe7Sdrh pOrderBy = p->pOrderBy; 14632282792aSdrh pGroupBy = p->pGroupBy; 14642282792aSdrh pHaving = p->pHaving; 146519a775c2Sdrh isDistinct = p->isDistinct; 14669bb61fe7Sdrh 1467832508b7Sdrh /* Allocate a block of VDBE cursors, one for each table in the FROM clause. 1468832508b7Sdrh ** The WHERE processing requires that the cursors for the tables in the 1469832508b7Sdrh ** FROM clause be consecutive. 147010e5e3cfSdrh */ 1471832508b7Sdrh base = p->base = pParse->nTab; 1472ad3cab52Sdrh pParse->nTab += pTabList->nSrc; 147310e5e3cfSdrh 14749bb61fe7Sdrh /* 14759bb61fe7Sdrh ** Do not even attempt to generate any code if we have already seen 14769bb61fe7Sdrh ** errors before this routine starts. 14779bb61fe7Sdrh */ 14781d83f052Sdrh if( pParse->nErr>0 ) goto select_end; 1479cce7d176Sdrh 1480d8bc7086Sdrh /* Look up every table in the table list and create an appropriate 1481d8bc7086Sdrh ** columnlist in pEList if there isn't one already. (The parser leaves 1482967e8b73Sdrh ** a NULL in the p->pEList if the SQL said "SELECT * FROM ...") 1483cce7d176Sdrh */ 1484d8bc7086Sdrh if( fillInColumnList(pParse, p) ){ 14851d83f052Sdrh goto select_end; 1486cce7d176Sdrh } 1487ad2d8307Sdrh pWhere = p->pWhere; 1488d8bc7086Sdrh pEList = p->pEList; 14891d83f052Sdrh if( pEList==0 ) goto select_end; 1490cce7d176Sdrh 14912282792aSdrh /* If writing to memory or generating a set 14922282792aSdrh ** only a single column may be output. 149319a775c2Sdrh */ 1494fef5208cSdrh if( (eDest==SRT_Mem || eDest==SRT_Set) && pEList->nExpr>1 ){ 149519a775c2Sdrh sqliteSetString(&pParse->zErrMsg, "only a single result allowed for " 149619a775c2Sdrh "a SELECT that is part of an expression", 0); 149719a775c2Sdrh pParse->nErr++; 14981d83f052Sdrh goto select_end; 149919a775c2Sdrh } 150019a775c2Sdrh 15012282792aSdrh /* ORDER BY is ignored if we are not sending the result to a callback. 15022282792aSdrh */ 15032282792aSdrh if( eDest!=SRT_Callback ){ 1504acd4c695Sdrh pOrderBy = 0; 15052282792aSdrh } 15062282792aSdrh 150710e5e3cfSdrh /* At this point, we should have allocated all the cursors that we 1508832508b7Sdrh ** need to handle subquerys and temporary tables. 150910e5e3cfSdrh ** 1510967e8b73Sdrh ** Resolve the column names and do a semantics check on all the expressions. 15112282792aSdrh */ 15124794b980Sdrh for(i=0; i<pEList->nExpr; i++){ 1513832508b7Sdrh if( sqliteExprResolveIds(pParse, base, pTabList, 0, pEList->a[i].pExpr) ){ 15141d83f052Sdrh goto select_end; 1515cce7d176Sdrh } 15162282792aSdrh if( sqliteExprCheck(pParse, pEList->a[i].pExpr, 1, &isAgg) ){ 15171d83f052Sdrh goto select_end; 1518cce7d176Sdrh } 1519cce7d176Sdrh } 1520cce7d176Sdrh if( pWhere ){ 1521832508b7Sdrh if( sqliteExprResolveIds(pParse, base, pTabList, pEList, pWhere) ){ 15221d83f052Sdrh goto select_end; 1523cce7d176Sdrh } 1524cce7d176Sdrh if( sqliteExprCheck(pParse, pWhere, 0, 0) ){ 15251d83f052Sdrh goto select_end; 1526cce7d176Sdrh } 1527cce7d176Sdrh } 1528cce7d176Sdrh if( pOrderBy ){ 1529cce7d176Sdrh for(i=0; i<pOrderBy->nExpr; i++){ 15302282792aSdrh Expr *pE = pOrderBy->a[i].pExpr; 15319208643dSdrh if( sqliteExprIsConstant(pE) ){ 1532e4de1febSdrh int iCol; 1533e4de1febSdrh if( sqliteExprIsInteger(pE, &iCol)==0 ){ 15349208643dSdrh sqliteSetString(&pParse->zErrMsg, 1535e4de1febSdrh "ORDER BY terms must not be non-integer constants", 0); 15369208643dSdrh pParse->nErr++; 15371d83f052Sdrh goto select_end; 1538e4de1febSdrh }else if( iCol<=0 || iCol>pEList->nExpr ){ 1539e4de1febSdrh char zBuf[2000]; 1540e4de1febSdrh sprintf(zBuf,"ORDER BY column number %d out of range - should be " 1541e4de1febSdrh "between 1 and %d", iCol, pEList->nExpr); 1542e4de1febSdrh sqliteSetString(&pParse->zErrMsg, zBuf, 0); 1543e4de1febSdrh pParse->nErr++; 1544e4de1febSdrh goto select_end; 1545e4de1febSdrh } 1546e4de1febSdrh sqliteExprDelete(pE); 1547e4de1febSdrh pE = pOrderBy->a[i].pExpr = sqliteExprDup(pEList->a[iCol-1].pExpr); 15489208643dSdrh } 1549832508b7Sdrh if( sqliteExprResolveIds(pParse, base, pTabList, pEList, pE) ){ 15501d83f052Sdrh goto select_end; 1551cce7d176Sdrh } 15522282792aSdrh if( sqliteExprCheck(pParse, pE, isAgg, 0) ){ 15531d83f052Sdrh goto select_end; 1554cce7d176Sdrh } 1555cce7d176Sdrh } 1556cce7d176Sdrh } 15572282792aSdrh if( pGroupBy ){ 15582282792aSdrh for(i=0; i<pGroupBy->nExpr; i++){ 15592282792aSdrh Expr *pE = pGroupBy->a[i].pExpr; 15609208643dSdrh if( sqliteExprIsConstant(pE) ){ 15619208643dSdrh sqliteSetString(&pParse->zErrMsg, 15629208643dSdrh "GROUP BY expressions should not be constant", 0); 15639208643dSdrh pParse->nErr++; 15641d83f052Sdrh goto select_end; 15659208643dSdrh } 1566832508b7Sdrh if( sqliteExprResolveIds(pParse, base, pTabList, pEList, pE) ){ 15671d83f052Sdrh goto select_end; 15682282792aSdrh } 15692282792aSdrh if( sqliteExprCheck(pParse, pE, isAgg, 0) ){ 15701d83f052Sdrh goto select_end; 15712282792aSdrh } 15722282792aSdrh } 15732282792aSdrh } 15742282792aSdrh if( pHaving ){ 15752282792aSdrh if( pGroupBy==0 ){ 1576da93281eSdrh sqliteSetString(&pParse->zErrMsg, "a GROUP BY clause is required " 1577da93281eSdrh "before HAVING", 0); 15782282792aSdrh pParse->nErr++; 15791d83f052Sdrh goto select_end; 15802282792aSdrh } 1581832508b7Sdrh if( sqliteExprResolveIds(pParse, base, pTabList, pEList, pHaving) ){ 15821d83f052Sdrh goto select_end; 15832282792aSdrh } 1584da93281eSdrh if( sqliteExprCheck(pParse, pHaving, isAgg, 0) ){ 15851d83f052Sdrh goto select_end; 15862282792aSdrh } 1587cce7d176Sdrh } 1588cce7d176Sdrh 15899562b551Sdrh /* Check for the special case of a min() or max() function by itself 15909562b551Sdrh ** in the result set. 15919562b551Sdrh */ 15929562b551Sdrh if( simpleMinMaxQuery(pParse, p, eDest, iParm) ){ 15935cf8e8c7Sdrh rc = 0; 15949562b551Sdrh goto select_end; 15959562b551Sdrh } 15969562b551Sdrh 1597d820cb1bSdrh /* Begin generating code. 1598d820cb1bSdrh */ 1599d820cb1bSdrh v = sqliteGetVdbe(pParse); 1600d820cb1bSdrh if( v==0 ) goto select_end; 1601d820cb1bSdrh 16020bb28106Sdrh /* Identify column names if we will be using in the callback. This 16030bb28106Sdrh ** step is skipped if the output is going to a table or a memory cell. 16040bb28106Sdrh */ 16050bb28106Sdrh if( eDest==SRT_Callback ){ 16060bb28106Sdrh generateColumnNames(pParse, p->base, pTabList, pEList); 16070bb28106Sdrh } 16080bb28106Sdrh 16090bb28106Sdrh /* Set the limiter 16100bb28106Sdrh */ 16110bb28106Sdrh if( p->nLimit<=0 ){ 16120bb28106Sdrh p->nOffset = 0; 16130bb28106Sdrh }else{ 16140bb28106Sdrh if( p->nOffset<0 ) p->nOffset = 0; 16150bb28106Sdrh sqliteVdbeAddOp(v, OP_Limit, p->nLimit, p->nOffset); 16160bb28106Sdrh } 16170bb28106Sdrh 1618d820cb1bSdrh /* Generate code for all sub-queries in the FROM clause 1619d820cb1bSdrh */ 1620ad3cab52Sdrh for(i=0; i<pTabList->nSrc; i++){ 1621a76b5dfcSdrh if( pTabList->a[i].pSelect==0 ) continue; 16222d0794e3Sdrh sqliteSelect(pParse, pTabList->a[i].pSelect, SRT_TempTable, base+i, 16231b2e0329Sdrh p, i, &isAgg); 1624832508b7Sdrh pTabList = p->pSrc; 1625832508b7Sdrh pWhere = p->pWhere; 1626acd4c695Sdrh if( eDest==SRT_Callback ){ 1627832508b7Sdrh pOrderBy = p->pOrderBy; 1628acd4c695Sdrh } 1629832508b7Sdrh pGroupBy = p->pGroupBy; 1630832508b7Sdrh pHaving = p->pHaving; 1631832508b7Sdrh isDistinct = p->isDistinct; 16321b2e0329Sdrh } 16331b2e0329Sdrh 16341b2e0329Sdrh /* Check to see if this is a subquery that can be "flattened" into its parent. 16351b2e0329Sdrh ** If flattening is a possiblity, do so and return immediately. 16361b2e0329Sdrh */ 16371b2e0329Sdrh if( pParent && pParentAgg && 16381b2e0329Sdrh flattenSubquery(pParent, parentTab, *pParentAgg, isAgg) ){ 16391b2e0329Sdrh if( isAgg ) *pParentAgg = 1; 16401b2e0329Sdrh return rc; 16411b2e0329Sdrh } 1642832508b7Sdrh 16432d0794e3Sdrh /* If the output is destined for a temporary table, open that table. 16442d0794e3Sdrh */ 16452d0794e3Sdrh if( eDest==SRT_TempTable ){ 16462d0794e3Sdrh sqliteVdbeAddOp(v, OP_OpenTemp, iParm, 0); 16472d0794e3Sdrh } 16482d0794e3Sdrh 16492282792aSdrh /* Do an analysis of aggregate expressions. 1650efb7251dSdrh */ 1651d820cb1bSdrh sqliteAggregateInfoReset(pParse); 16522282792aSdrh if( isAgg ){ 16530bce8354Sdrh assert( pParse->nAgg==0 ); 16542282792aSdrh for(i=0; i<pEList->nExpr; i++){ 16552282792aSdrh if( sqliteExprAnalyzeAggregates(pParse, pEList->a[i].pExpr) ){ 16561d83f052Sdrh goto select_end; 16572282792aSdrh } 16582282792aSdrh } 16592282792aSdrh if( pGroupBy ){ 16602282792aSdrh for(i=0; i<pGroupBy->nExpr; i++){ 16612282792aSdrh if( sqliteExprAnalyzeAggregates(pParse, pGroupBy->a[i].pExpr) ){ 16621d83f052Sdrh goto select_end; 16632282792aSdrh } 16642282792aSdrh } 16652282792aSdrh } 16662282792aSdrh if( pHaving && sqliteExprAnalyzeAggregates(pParse, pHaving) ){ 16671d83f052Sdrh goto select_end; 16682282792aSdrh } 1669191b690eSdrh if( pOrderBy ){ 1670191b690eSdrh for(i=0; i<pOrderBy->nExpr; i++){ 1671191b690eSdrh if( sqliteExprAnalyzeAggregates(pParse, pOrderBy->a[i].pExpr) ){ 16721d83f052Sdrh goto select_end; 1673191b690eSdrh } 1674191b690eSdrh } 1675191b690eSdrh } 1676efb7251dSdrh } 1677efb7251dSdrh 16782282792aSdrh /* Reset the aggregator 1679cce7d176Sdrh */ 1680cce7d176Sdrh if( isAgg ){ 168199fcd718Sdrh sqliteVdbeAddOp(v, OP_AggReset, 0, pParse->nAgg); 1682e5095355Sdrh for(i=0; i<pParse->nAgg; i++){ 16830bce8354Sdrh FuncDef *pFunc; 16840bce8354Sdrh if( (pFunc = pParse->aAgg[i].pFunc)!=0 && pFunc->xFinalize!=0 ){ 16851350b030Sdrh sqliteVdbeAddOp(v, OP_AggInit, 0, i); 16860bce8354Sdrh sqliteVdbeChangeP3(v, -1, (char*)pFunc, P3_POINTER); 1687e5095355Sdrh } 1688e5095355Sdrh } 16891bee3d7bSdrh if( pGroupBy==0 ){ 16901bee3d7bSdrh sqliteVdbeAddOp(v, OP_String, 0, 0); 16911bee3d7bSdrh sqliteVdbeAddOp(v, OP_AggFocus, 0, 0); 16921bee3d7bSdrh } 1693cce7d176Sdrh } 1694cce7d176Sdrh 169519a775c2Sdrh /* Initialize the memory cell to NULL 169619a775c2Sdrh */ 1697fef5208cSdrh if( eDest==SRT_Mem ){ 169899fcd718Sdrh sqliteVdbeAddOp(v, OP_String, 0, 0); 16998721ce4aSdrh sqliteVdbeAddOp(v, OP_MemStore, iParm, 1); 170019a775c2Sdrh } 170119a775c2Sdrh 1702832508b7Sdrh /* Open a temporary table to use for the distinct set. 1703cce7d176Sdrh */ 170419a775c2Sdrh if( isDistinct ){ 1705832508b7Sdrh distinct = pParse->nTab++; 1706c6b52df3Sdrh sqliteVdbeAddOp(v, OP_OpenTemp, distinct, 1); 1707832508b7Sdrh }else{ 1708832508b7Sdrh distinct = -1; 1709efb7251dSdrh } 1710832508b7Sdrh 1711832508b7Sdrh /* Begin the database scan 1712832508b7Sdrh */ 1713832508b7Sdrh pWInfo = sqliteWhereBegin(pParse, p->base, pTabList, pWhere, 0); 17141d83f052Sdrh if( pWInfo==0 ) goto select_end; 1715cce7d176Sdrh 17162282792aSdrh /* Use the standard inner loop if we are not dealing with 17172282792aSdrh ** aggregates 1718cce7d176Sdrh */ 1719da9d6c45Sdrh if( !isAgg ){ 172082c3d636Sdrh if( selectInnerLoop(pParse, pEList, 0, 0, pOrderBy, distinct, eDest, iParm, 17212282792aSdrh pWInfo->iContinue, pWInfo->iBreak) ){ 17221d83f052Sdrh goto select_end; 1723cce7d176Sdrh } 1724da9d6c45Sdrh } 1725cce7d176Sdrh 17262282792aSdrh /* If we are dealing with aggregates, then to the special aggregate 17272282792aSdrh ** processing. 1728efb7251dSdrh */ 17292282792aSdrh else{ 17302282792aSdrh if( pGroupBy ){ 17311bee3d7bSdrh int lbl1; 17322282792aSdrh for(i=0; i<pGroupBy->nExpr; i++){ 17332282792aSdrh sqliteExprCode(pParse, pGroupBy->a[i].pExpr); 1734efb7251dSdrh } 173599fcd718Sdrh sqliteVdbeAddOp(v, OP_MakeKey, pGroupBy->nExpr, 0); 17361bee3d7bSdrh lbl1 = sqliteVdbeMakeLabel(v); 173799fcd718Sdrh sqliteVdbeAddOp(v, OP_AggFocus, 0, lbl1); 17382282792aSdrh for(i=0; i<pParse->nAgg; i++){ 17392282792aSdrh if( pParse->aAgg[i].isAgg ) continue; 17402282792aSdrh sqliteExprCode(pParse, pParse->aAgg[i].pExpr); 174199fcd718Sdrh sqliteVdbeAddOp(v, OP_AggSet, 0, i); 17422282792aSdrh } 17432282792aSdrh sqliteVdbeResolveLabel(v, lbl1); 17442282792aSdrh } 17452282792aSdrh for(i=0; i<pParse->nAgg; i++){ 17462282792aSdrh Expr *pE; 17470bce8354Sdrh int j; 17482282792aSdrh if( !pParse->aAgg[i].isAgg ) continue; 17492282792aSdrh pE = pParse->aAgg[i].pExpr; 17502282792aSdrh assert( pE->op==TK_AGG_FUNCTION ); 17510bce8354Sdrh if( pE->pList ){ 1752e5095355Sdrh for(j=0; j<pE->pList->nExpr; j++){ 1753e5095355Sdrh sqliteExprCode(pParse, pE->pList->a[j].pExpr); 1754e5095355Sdrh } 17552282792aSdrh } 17561350b030Sdrh sqliteVdbeAddOp(v, OP_Integer, i, 0); 1757f55f25f0Sdrh sqliteVdbeAddOp(v, OP_AggFunc, 0, pE->pList ? pE->pList->nExpr : 0); 17580bce8354Sdrh assert( pParse->aAgg[i].pFunc!=0 ); 17590bce8354Sdrh assert( pParse->aAgg[i].pFunc->xStep!=0 ); 17600bce8354Sdrh sqliteVdbeChangeP3(v, -1, (char*)pParse->aAgg[i].pFunc, P3_POINTER); 17612282792aSdrh } 17622282792aSdrh } 17632282792aSdrh 1764cce7d176Sdrh /* End the database scan loop. 1765cce7d176Sdrh */ 1766cce7d176Sdrh sqliteWhereEnd(pWInfo); 1767cce7d176Sdrh 17682282792aSdrh /* If we are processing aggregates, we need to set up a second loop 17692282792aSdrh ** over all of the aggregate values and process them. 17702282792aSdrh */ 17712282792aSdrh if( isAgg ){ 17722282792aSdrh int endagg = sqliteVdbeMakeLabel(v); 17732282792aSdrh int startagg; 177499fcd718Sdrh startagg = sqliteVdbeAddOp(v, OP_AggNext, 0, endagg); 17752282792aSdrh pParse->useAgg = 1; 17762282792aSdrh if( pHaving ){ 1777f5905aa7Sdrh sqliteExprIfFalse(pParse, pHaving, startagg, 1); 17782282792aSdrh } 177982c3d636Sdrh if( selectInnerLoop(pParse, pEList, 0, 0, pOrderBy, distinct, eDest, iParm, 17802282792aSdrh startagg, endagg) ){ 17811d83f052Sdrh goto select_end; 17822282792aSdrh } 178399fcd718Sdrh sqliteVdbeAddOp(v, OP_Goto, 0, startagg); 178499fcd718Sdrh sqliteVdbeResolveLabel(v, endagg); 178599fcd718Sdrh sqliteVdbeAddOp(v, OP_Noop, 0, 0); 17862282792aSdrh pParse->useAgg = 0; 17872282792aSdrh } 17882282792aSdrh 1789cce7d176Sdrh /* If there is an ORDER BY clause, then we need to sort the results 1790cce7d176Sdrh ** and send them to the callback one by one. 1791cce7d176Sdrh */ 1792cce7d176Sdrh if( pOrderBy ){ 1793d8bc7086Sdrh generateSortTail(v, pEList->nExpr); 1794cce7d176Sdrh } 17956a535340Sdrh 17966a535340Sdrh 17976a535340Sdrh /* Issue a null callback if that is what the user wants. 17986a535340Sdrh */ 17996a535340Sdrh if( (pParse->db->flags & SQLITE_NullCallback)!=0 && eDest==SRT_Callback ){ 18006a535340Sdrh sqliteVdbeAddOp(v, OP_NullCallback, pEList->nExpr, 0); 18016a535340Sdrh } 18026a535340Sdrh 18031d83f052Sdrh /* The SELECT was successfully coded. Set the return code to 0 18041d83f052Sdrh ** to indicate no errors. 18051d83f052Sdrh */ 18061d83f052Sdrh rc = 0; 18071d83f052Sdrh 18081d83f052Sdrh /* Control jumps to here if an error is encountered above, or upon 18091d83f052Sdrh ** successful coding of the SELECT. 18101d83f052Sdrh */ 18111d83f052Sdrh select_end: 1812832508b7Sdrh pParse->nTab = base; 18131d83f052Sdrh sqliteAggregateInfoReset(pParse); 18141d83f052Sdrh return rc; 1815cce7d176Sdrh } 1816