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*ffbc3088Sdrh ** $Id: select.c,v 1.172 2004/05/21 01:29:06 drh Exp $ 16cce7d176Sdrh */ 17cce7d176Sdrh #include "sqliteInt.h" 18cce7d176Sdrh 19315555caSdrh 20cce7d176Sdrh /* 219bb61fe7Sdrh ** Allocate a new Select structure and return a pointer to that 229bb61fe7Sdrh ** structure. 23cce7d176Sdrh */ 244adee20fSdanielk1977 Select *sqlite3SelectNew( 25daffd0e5Sdrh ExprList *pEList, /* which columns to include in the result */ 26ad3cab52Sdrh SrcList *pSrc, /* the FROM clause -- which tables to scan */ 27daffd0e5Sdrh Expr *pWhere, /* the WHERE clause */ 28daffd0e5Sdrh ExprList *pGroupBy, /* the GROUP BY clause */ 29daffd0e5Sdrh Expr *pHaving, /* the HAVING clause */ 30daffd0e5Sdrh ExprList *pOrderBy, /* the ORDER BY clause */ 319bbca4c1Sdrh int isDistinct, /* true if the DISTINCT keyword is present */ 329bbca4c1Sdrh int nLimit, /* LIMIT value. -1 means not used */ 33ef0cae50Sdrh int nOffset /* OFFSET value. 0 means no offset */ 349bb61fe7Sdrh ){ 359bb61fe7Sdrh Select *pNew; 369bb61fe7Sdrh pNew = sqliteMalloc( sizeof(*pNew) ); 37daffd0e5Sdrh if( pNew==0 ){ 384adee20fSdanielk1977 sqlite3ExprListDelete(pEList); 394adee20fSdanielk1977 sqlite3SrcListDelete(pSrc); 404adee20fSdanielk1977 sqlite3ExprDelete(pWhere); 414adee20fSdanielk1977 sqlite3ExprListDelete(pGroupBy); 424adee20fSdanielk1977 sqlite3ExprDelete(pHaving); 434adee20fSdanielk1977 sqlite3ExprListDelete(pOrderBy); 44daffd0e5Sdrh }else{ 45b733d037Sdrh if( pEList==0 ){ 464adee20fSdanielk1977 pEList = sqlite3ExprListAppend(0, sqlite3Expr(TK_ALL,0,0,0), 0); 47b733d037Sdrh } 489bb61fe7Sdrh pNew->pEList = pEList; 499bb61fe7Sdrh pNew->pSrc = pSrc; 509bb61fe7Sdrh pNew->pWhere = pWhere; 519bb61fe7Sdrh pNew->pGroupBy = pGroupBy; 529bb61fe7Sdrh pNew->pHaving = pHaving; 539bb61fe7Sdrh pNew->pOrderBy = pOrderBy; 549bb61fe7Sdrh pNew->isDistinct = isDistinct; 5582c3d636Sdrh pNew->op = TK_SELECT; 569bbca4c1Sdrh pNew->nLimit = nLimit; 579bbca4c1Sdrh pNew->nOffset = nOffset; 587b58daeaSdrh pNew->iLimit = -1; 597b58daeaSdrh pNew->iOffset = -1; 60daffd0e5Sdrh } 619bb61fe7Sdrh return pNew; 629bb61fe7Sdrh } 639bb61fe7Sdrh 649bb61fe7Sdrh /* 6501f3f253Sdrh ** Given 1 to 3 identifiers preceeding the JOIN keyword, determine the 6601f3f253Sdrh ** type of join. Return an integer constant that expresses that type 6701f3f253Sdrh ** in terms of the following bit values: 6801f3f253Sdrh ** 6901f3f253Sdrh ** JT_INNER 7001f3f253Sdrh ** JT_OUTER 7101f3f253Sdrh ** JT_NATURAL 7201f3f253Sdrh ** JT_LEFT 7301f3f253Sdrh ** JT_RIGHT 7401f3f253Sdrh ** 7501f3f253Sdrh ** A full outer join is the combination of JT_LEFT and JT_RIGHT. 7601f3f253Sdrh ** 7701f3f253Sdrh ** If an illegal or unsupported join type is seen, then still return 7801f3f253Sdrh ** a join type, but put an error in the pParse structure. 7901f3f253Sdrh */ 804adee20fSdanielk1977 int sqlite3JoinType(Parse *pParse, Token *pA, Token *pB, Token *pC){ 8101f3f253Sdrh int jointype = 0; 8201f3f253Sdrh Token *apAll[3]; 8301f3f253Sdrh Token *p; 8401f3f253Sdrh static struct { 8501f3f253Sdrh const char *zKeyword; 8601f3f253Sdrh int nChar; 8701f3f253Sdrh int code; 8801f3f253Sdrh } keywords[] = { 8901f3f253Sdrh { "natural", 7, JT_NATURAL }, 90195e6967Sdrh { "left", 4, JT_LEFT|JT_OUTER }, 91195e6967Sdrh { "right", 5, JT_RIGHT|JT_OUTER }, 92195e6967Sdrh { "full", 4, JT_LEFT|JT_RIGHT|JT_OUTER }, 9301f3f253Sdrh { "outer", 5, JT_OUTER }, 9401f3f253Sdrh { "inner", 5, JT_INNER }, 9501f3f253Sdrh { "cross", 5, JT_INNER }, 9601f3f253Sdrh }; 9701f3f253Sdrh int i, j; 9801f3f253Sdrh apAll[0] = pA; 9901f3f253Sdrh apAll[1] = pB; 10001f3f253Sdrh apAll[2] = pC; 101195e6967Sdrh for(i=0; i<3 && apAll[i]; i++){ 10201f3f253Sdrh p = apAll[i]; 10301f3f253Sdrh for(j=0; j<sizeof(keywords)/sizeof(keywords[0]); j++){ 10401f3f253Sdrh if( p->n==keywords[j].nChar 1054adee20fSdanielk1977 && sqlite3StrNICmp(p->z, keywords[j].zKeyword, p->n)==0 ){ 10601f3f253Sdrh jointype |= keywords[j].code; 10701f3f253Sdrh break; 10801f3f253Sdrh } 10901f3f253Sdrh } 11001f3f253Sdrh if( j>=sizeof(keywords)/sizeof(keywords[0]) ){ 11101f3f253Sdrh jointype |= JT_ERROR; 11201f3f253Sdrh break; 11301f3f253Sdrh } 11401f3f253Sdrh } 115ad2d8307Sdrh if( 116ad2d8307Sdrh (jointype & (JT_INNER|JT_OUTER))==(JT_INNER|JT_OUTER) || 117195e6967Sdrh (jointype & JT_ERROR)!=0 118ad2d8307Sdrh ){ 11901f3f253Sdrh static Token dummy = { 0, 0 }; 12001f3f253Sdrh char *zSp1 = " ", *zSp2 = " "; 12101f3f253Sdrh if( pB==0 ){ pB = &dummy; zSp1 = 0; } 12201f3f253Sdrh if( pC==0 ){ pC = &dummy; zSp2 = 0; } 1234adee20fSdanielk1977 sqlite3SetNString(&pParse->zErrMsg, "unknown or unsupported join type: ", 0, 12401f3f253Sdrh pA->z, pA->n, zSp1, 1, pB->z, pB->n, zSp2, 1, pC->z, pC->n, 0); 12501f3f253Sdrh pParse->nErr++; 12601f3f253Sdrh jointype = JT_INNER; 127195e6967Sdrh }else if( jointype & JT_RIGHT ){ 1284adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 129da93d238Sdrh "RIGHT and FULL OUTER JOINs are not currently supported"); 130195e6967Sdrh jointype = JT_INNER; 13101f3f253Sdrh } 13201f3f253Sdrh return jointype; 13301f3f253Sdrh } 13401f3f253Sdrh 13501f3f253Sdrh /* 136ad2d8307Sdrh ** Return the index of a column in a table. Return -1 if the column 137ad2d8307Sdrh ** is not contained in the table. 138ad2d8307Sdrh */ 139ad2d8307Sdrh static int columnIndex(Table *pTab, const char *zCol){ 140ad2d8307Sdrh int i; 141ad2d8307Sdrh for(i=0; i<pTab->nCol; i++){ 1424adee20fSdanielk1977 if( sqlite3StrICmp(pTab->aCol[i].zName, zCol)==0 ) return i; 143ad2d8307Sdrh } 144ad2d8307Sdrh return -1; 145ad2d8307Sdrh } 146ad2d8307Sdrh 147ad2d8307Sdrh /* 148ad2d8307Sdrh ** Add a term to the WHERE expression in *ppExpr that requires the 149ad2d8307Sdrh ** zCol column to be equal in the two tables pTab1 and pTab2. 150ad2d8307Sdrh */ 151ad2d8307Sdrh static void addWhereTerm( 152ad2d8307Sdrh const char *zCol, /* Name of the column */ 153ad2d8307Sdrh const Table *pTab1, /* First table */ 154ad2d8307Sdrh const Table *pTab2, /* Second table */ 155ad2d8307Sdrh Expr **ppExpr /* Add the equality term to this expression */ 156ad2d8307Sdrh ){ 157ad2d8307Sdrh Token dummy; 158ad2d8307Sdrh Expr *pE1a, *pE1b, *pE1c; 159ad2d8307Sdrh Expr *pE2a, *pE2b, *pE2c; 160ad2d8307Sdrh Expr *pE; 161ad2d8307Sdrh 162ad2d8307Sdrh dummy.z = zCol; 163ad2d8307Sdrh dummy.n = strlen(zCol); 1644b59ab5eSdrh dummy.dyn = 0; 1654adee20fSdanielk1977 pE1a = sqlite3Expr(TK_ID, 0, 0, &dummy); 1664adee20fSdanielk1977 pE2a = sqlite3Expr(TK_ID, 0, 0, &dummy); 167ad2d8307Sdrh dummy.z = pTab1->zName; 168ad2d8307Sdrh dummy.n = strlen(dummy.z); 1694adee20fSdanielk1977 pE1b = sqlite3Expr(TK_ID, 0, 0, &dummy); 170ad2d8307Sdrh dummy.z = pTab2->zName; 171ad2d8307Sdrh dummy.n = strlen(dummy.z); 1724adee20fSdanielk1977 pE2b = sqlite3Expr(TK_ID, 0, 0, &dummy); 1734adee20fSdanielk1977 pE1c = sqlite3Expr(TK_DOT, pE1b, pE1a, 0); 1744adee20fSdanielk1977 pE2c = sqlite3Expr(TK_DOT, pE2b, pE2a, 0); 1754adee20fSdanielk1977 pE = sqlite3Expr(TK_EQ, pE1c, pE2c, 0); 1761f16230bSdrh ExprSetProperty(pE, EP_FromJoin); 177ad2d8307Sdrh if( *ppExpr ){ 1784adee20fSdanielk1977 *ppExpr = sqlite3Expr(TK_AND, *ppExpr, pE, 0); 179ad2d8307Sdrh }else{ 180ad2d8307Sdrh *ppExpr = pE; 181ad2d8307Sdrh } 182ad2d8307Sdrh } 183ad2d8307Sdrh 184ad2d8307Sdrh /* 1851f16230bSdrh ** Set the EP_FromJoin property on all terms of the given expression. 1861cc093c2Sdrh ** 187e78e8284Sdrh ** The EP_FromJoin property is used on terms of an expression to tell 1881cc093c2Sdrh ** the LEFT OUTER JOIN processing logic that this term is part of the 1891f16230bSdrh ** join restriction specified in the ON or USING clause and not a part 1901f16230bSdrh ** of the more general WHERE clause. These terms are moved over to the 1911f16230bSdrh ** WHERE clause during join processing but we need to remember that they 1921f16230bSdrh ** originated in the ON or USING clause. 1931cc093c2Sdrh */ 1941cc093c2Sdrh static void setJoinExpr(Expr *p){ 1951cc093c2Sdrh while( p ){ 1961f16230bSdrh ExprSetProperty(p, EP_FromJoin); 1971cc093c2Sdrh setJoinExpr(p->pLeft); 1981cc093c2Sdrh p = p->pRight; 1991cc093c2Sdrh } 2001cc093c2Sdrh } 2011cc093c2Sdrh 2021cc093c2Sdrh /* 203ad2d8307Sdrh ** This routine processes the join information for a SELECT statement. 204ad2d8307Sdrh ** ON and USING clauses are converted into extra terms of the WHERE clause. 205ad2d8307Sdrh ** NATURAL joins also create extra WHERE clause terms. 206ad2d8307Sdrh ** 207ad2d8307Sdrh ** This routine returns the number of errors encountered. 208ad2d8307Sdrh */ 209ad2d8307Sdrh static int sqliteProcessJoin(Parse *pParse, Select *p){ 210ad2d8307Sdrh SrcList *pSrc; 211ad2d8307Sdrh int i, j; 212ad2d8307Sdrh pSrc = p->pSrc; 213ad2d8307Sdrh for(i=0; i<pSrc->nSrc-1; i++){ 214ad2d8307Sdrh struct SrcList_item *pTerm = &pSrc->a[i]; 215ad2d8307Sdrh struct SrcList_item *pOther = &pSrc->a[i+1]; 216ad2d8307Sdrh 217ad2d8307Sdrh if( pTerm->pTab==0 || pOther->pTab==0 ) continue; 218ad2d8307Sdrh 219ad2d8307Sdrh /* When the NATURAL keyword is present, add WHERE clause terms for 220ad2d8307Sdrh ** every column that the two tables have in common. 221ad2d8307Sdrh */ 222ad2d8307Sdrh if( pTerm->jointype & JT_NATURAL ){ 223ad2d8307Sdrh Table *pTab; 224ad2d8307Sdrh if( pTerm->pOn || pTerm->pUsing ){ 2254adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "a NATURAL join may not have " 226ad2d8307Sdrh "an ON or USING clause", 0); 227ad2d8307Sdrh return 1; 228ad2d8307Sdrh } 229ad2d8307Sdrh pTab = pTerm->pTab; 230ad2d8307Sdrh for(j=0; j<pTab->nCol; j++){ 231ad2d8307Sdrh if( columnIndex(pOther->pTab, pTab->aCol[j].zName)>=0 ){ 232ad2d8307Sdrh addWhereTerm(pTab->aCol[j].zName, pTab, pOther->pTab, &p->pWhere); 233ad2d8307Sdrh } 234ad2d8307Sdrh } 235ad2d8307Sdrh } 236ad2d8307Sdrh 237ad2d8307Sdrh /* Disallow both ON and USING clauses in the same join 238ad2d8307Sdrh */ 239ad2d8307Sdrh if( pTerm->pOn && pTerm->pUsing ){ 2404adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "cannot have both ON and USING " 241da93d238Sdrh "clauses in the same join"); 242ad2d8307Sdrh return 1; 243ad2d8307Sdrh } 244ad2d8307Sdrh 245ad2d8307Sdrh /* Add the ON clause to the end of the WHERE clause, connected by 246ad2d8307Sdrh ** and AND operator. 247ad2d8307Sdrh */ 248ad2d8307Sdrh if( pTerm->pOn ){ 2491cc093c2Sdrh setJoinExpr(pTerm->pOn); 250ad2d8307Sdrh if( p->pWhere==0 ){ 251ad2d8307Sdrh p->pWhere = pTerm->pOn; 252ad2d8307Sdrh }else{ 2534adee20fSdanielk1977 p->pWhere = sqlite3Expr(TK_AND, p->pWhere, pTerm->pOn, 0); 254ad2d8307Sdrh } 255ad2d8307Sdrh pTerm->pOn = 0; 256ad2d8307Sdrh } 257ad2d8307Sdrh 258ad2d8307Sdrh /* Create extra terms on the WHERE clause for each column named 259ad2d8307Sdrh ** in the USING clause. Example: If the two tables to be joined are 260ad2d8307Sdrh ** A and B and the USING clause names X, Y, and Z, then add this 261ad2d8307Sdrh ** to the WHERE clause: A.X=B.X AND A.Y=B.Y AND A.Z=B.Z 262ad2d8307Sdrh ** Report an error if any column mentioned in the USING clause is 263ad2d8307Sdrh ** not contained in both tables to be joined. 264ad2d8307Sdrh */ 265ad2d8307Sdrh if( pTerm->pUsing ){ 266ad2d8307Sdrh IdList *pList; 267ad2d8307Sdrh int j; 268ad2d8307Sdrh assert( i<pSrc->nSrc-1 ); 269ad2d8307Sdrh pList = pTerm->pUsing; 270ad2d8307Sdrh for(j=0; j<pList->nId; j++){ 271bf5cd97eSdrh if( columnIndex(pTerm->pTab, pList->a[j].zName)<0 || 272bf5cd97eSdrh columnIndex(pOther->pTab, pList->a[j].zName)<0 ){ 2734adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "cannot join using column %s - column " 274da93d238Sdrh "not present in both tables", pList->a[j].zName); 275ad2d8307Sdrh return 1; 276ad2d8307Sdrh } 277bf5cd97eSdrh addWhereTerm(pList->a[j].zName, pTerm->pTab, pOther->pTab, &p->pWhere); 278ad2d8307Sdrh } 279ad2d8307Sdrh } 280ad2d8307Sdrh } 281ad2d8307Sdrh return 0; 282ad2d8307Sdrh } 283ad2d8307Sdrh 284ad2d8307Sdrh /* 2859bb61fe7Sdrh ** Delete the given Select structure and all of its substructures. 2869bb61fe7Sdrh */ 2874adee20fSdanielk1977 void sqlite3SelectDelete(Select *p){ 28882c3d636Sdrh if( p==0 ) return; 2894adee20fSdanielk1977 sqlite3ExprListDelete(p->pEList); 2904adee20fSdanielk1977 sqlite3SrcListDelete(p->pSrc); 2914adee20fSdanielk1977 sqlite3ExprDelete(p->pWhere); 2924adee20fSdanielk1977 sqlite3ExprListDelete(p->pGroupBy); 2934adee20fSdanielk1977 sqlite3ExprDelete(p->pHaving); 2944adee20fSdanielk1977 sqlite3ExprListDelete(p->pOrderBy); 2954adee20fSdanielk1977 sqlite3SelectDelete(p->pPrior); 296a76b5dfcSdrh sqliteFree(p->zSelect); 2979bb61fe7Sdrh sqliteFree(p); 2989bb61fe7Sdrh } 2999bb61fe7Sdrh 3009bb61fe7Sdrh /* 3012282792aSdrh ** Delete the aggregate information from the parse structure. 3022282792aSdrh */ 3031d83f052Sdrh static void sqliteAggregateInfoReset(Parse *pParse){ 3042282792aSdrh sqliteFree(pParse->aAgg); 3052282792aSdrh pParse->aAgg = 0; 3062282792aSdrh pParse->nAgg = 0; 3072282792aSdrh pParse->useAgg = 0; 3082282792aSdrh } 3092282792aSdrh 3102282792aSdrh /* 311c926afbcSdrh ** Insert code into "v" that will push the record on the top of the 312c926afbcSdrh ** stack into the sorter. 313428702d7Sdrh ** 314428702d7Sdrh ** FIX ME: Change this so that it uses the OP_MakeKey opcode 315428702d7Sdrh ** instead of OP_SortMakeKey. Delete the OP_SortMakeKey opcode. 316428702d7Sdrh ** All columns should have affinity NONE. Handle ASC versus 317428702d7Sdrh ** DESC sort order by defining a list of comparison functions to 318428702d7Sdrh ** be used by the OP_Sort opcode. 319c926afbcSdrh */ 320c926afbcSdrh static void pushOntoSorter(Parse *pParse, Vdbe *v, ExprList *pOrderBy){ 321c926afbcSdrh int i; 322*ffbc3088Sdrh #if 0 323*ffbc3088Sdrh char *zSortOrder; 324c926afbcSdrh zSortOrder = sqliteMalloc( pOrderBy->nExpr + 1 ); 325c926afbcSdrh if( zSortOrder==0 ) return; 326*ffbc3088Sdrh #endif 327c926afbcSdrh for(i=0; i<pOrderBy->nExpr; i++){ 328*ffbc3088Sdrh #if 0 32938640e15Sdrh int order = pOrderBy->a[i].sortOrder; 33038640e15Sdrh int c; 331d3d39e93Sdrh if( order==SQLITE_SO_ASC ){ 332d3d39e93Sdrh c = 'A'; 33338640e15Sdrh }else{ 334d3d39e93Sdrh c = 'D'; 33538640e15Sdrh } 33638640e15Sdrh zSortOrder[i] = c; 337*ffbc3088Sdrh #endif 3384adee20fSdanielk1977 sqlite3ExprCode(pParse, pOrderBy->a[i].pExpr); 339c926afbcSdrh } 340*ffbc3088Sdrh #if 0 341c926afbcSdrh zSortOrder[pOrderBy->nExpr] = 0; 3424adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_SortMakeKey, pOrderBy->nExpr, 0, zSortOrder, P3_DYNAMIC); 343*ffbc3088Sdrh #endif 344*ffbc3088Sdrh sqlite3VdbeAddOp(v, OP_MakeKey, pOrderBy->nExpr, 0); 3454adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_SortPut, 0, 0); 346c926afbcSdrh } 347c926afbcSdrh 348c926afbcSdrh /* 3492282792aSdrh ** This routine generates the code for the inside of the inner loop 3502282792aSdrh ** of a SELECT. 35182c3d636Sdrh ** 35238640e15Sdrh ** If srcTab and nColumn are both zero, then the pEList expressions 35338640e15Sdrh ** are evaluated in order to get the data for this row. If nColumn>0 35438640e15Sdrh ** then data is pulled from srcTab and pEList is used only to get the 35538640e15Sdrh ** datatypes for each column. 3562282792aSdrh */ 3572282792aSdrh static int selectInnerLoop( 3582282792aSdrh Parse *pParse, /* The parser context */ 359df199a25Sdrh Select *p, /* The complete select statement being coded */ 3602282792aSdrh ExprList *pEList, /* List of values being extracted */ 36182c3d636Sdrh int srcTab, /* Pull data from this table */ 362967e8b73Sdrh int nColumn, /* Number of columns in the source table */ 3632282792aSdrh ExprList *pOrderBy, /* If not NULL, sort results using this key */ 3642282792aSdrh int distinct, /* If >=0, make sure results are distinct */ 3652282792aSdrh int eDest, /* How to dispose of the results */ 3662282792aSdrh int iParm, /* An argument to the disposal method */ 3672282792aSdrh int iContinue, /* Jump here to continue with next row */ 36884ac9d02Sdanielk1977 int iBreak, /* Jump here to break out of the inner loop */ 36984ac9d02Sdanielk1977 char *aff /* affinity string if eDest is SRT_Union */ 3702282792aSdrh ){ 3712282792aSdrh Vdbe *v = pParse->pVdbe; 3722282792aSdrh int i; 37338640e15Sdrh 374daffd0e5Sdrh if( v==0 ) return 0; 37538640e15Sdrh assert( pEList!=0 ); 3762282792aSdrh 377df199a25Sdrh /* If there was a LIMIT clause on the SELECT statement, then do the check 378df199a25Sdrh ** to see if this row should be output. 379df199a25Sdrh */ 380df199a25Sdrh if( pOrderBy==0 ){ 3817b58daeaSdrh if( p->iOffset>=0 ){ 3824adee20fSdanielk1977 int addr = sqlite3VdbeCurrentAddr(v); 3834adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemIncr, p->iOffset, addr+2); 3844adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, iContinue); 385df199a25Sdrh } 3867b58daeaSdrh if( p->iLimit>=0 ){ 3874adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemIncr, p->iLimit, iBreak); 388df199a25Sdrh } 389df199a25Sdrh } 390df199a25Sdrh 391967e8b73Sdrh /* Pull the requested columns. 3922282792aSdrh */ 39338640e15Sdrh if( nColumn>0 ){ 394967e8b73Sdrh for(i=0; i<nColumn; i++){ 3954adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Column, srcTab, i); 39682c3d636Sdrh } 39738640e15Sdrh }else{ 39838640e15Sdrh nColumn = pEList->nExpr; 39938640e15Sdrh for(i=0; i<pEList->nExpr; i++){ 4004adee20fSdanielk1977 sqlite3ExprCode(pParse, pEList->a[i].pExpr); 40138640e15Sdrh } 40282c3d636Sdrh } 4032282792aSdrh 404daffd0e5Sdrh /* If the DISTINCT keyword was present on the SELECT statement 405daffd0e5Sdrh ** and this row has been seen before, then do not make this row 406daffd0e5Sdrh ** part of the result. 4072282792aSdrh */ 408f5905aa7Sdrh if( distinct>=0 && pEList && pEList->nExpr>0 ){ 4090bd1f4eaSdrh #if NULL_ALWAYS_DISTINCT 4104adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_IsNull, -pEList->nExpr, sqlite3VdbeCurrentAddr(v)+7); 4110bd1f4eaSdrh #endif 412d3d39e93Sdrh /* Deliberately leave the affinity string off of the following OP_MakeKey */ 4134adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MakeKey, pEList->nExpr, 1); 4144adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Distinct, distinct, sqlite3VdbeCurrentAddr(v)+3); 4154adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pop, pEList->nExpr+1, 0); 4164adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, iContinue); 4174adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_String, 0, 0); 4184adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_PutStrKey, distinct, 0); 4192282792aSdrh } 42082c3d636Sdrh 421c926afbcSdrh switch( eDest ){ 42282c3d636Sdrh /* In this mode, write each query result to the key of the temporary 42382c3d636Sdrh ** table iParm. 4242282792aSdrh */ 425c926afbcSdrh case SRT_Union: { 4264adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MakeRecord, nColumn, NULL_ALWAYS_DISTINCT); 42784ac9d02Sdanielk1977 sqlite3VdbeChangeP3(v, -1, aff, P3_STATIC); 4284adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_String, 0, 0); 4294adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_PutStrKey, iParm, 0); 430c926afbcSdrh break; 431c926afbcSdrh } 43282c3d636Sdrh 4335974a30fSdrh /* Store the result as data using a unique key. 4345974a30fSdrh */ 435c926afbcSdrh case SRT_Table: 436c926afbcSdrh case SRT_TempTable: { 4374adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MakeRecord, nColumn, 0); 438c926afbcSdrh if( pOrderBy ){ 439c926afbcSdrh pushOntoSorter(pParse, v, pOrderBy); 440c926afbcSdrh }else{ 4414adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_NewRecno, iParm, 0); 4424adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pull, 1, 0); 4434adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_PutIntKey, iParm, 0); 444c926afbcSdrh } 445c926afbcSdrh break; 446c926afbcSdrh } 4475974a30fSdrh 44882c3d636Sdrh /* Construct a record from the query result, but instead of 44982c3d636Sdrh ** saving that record, use it as a key to delete elements from 45082c3d636Sdrh ** the temporary table iParm. 45182c3d636Sdrh */ 452c926afbcSdrh case SRT_Except: { 4530bd1f4eaSdrh int addr; 4544adee20fSdanielk1977 addr = sqlite3VdbeAddOp(v, OP_MakeRecord, nColumn, NULL_ALWAYS_DISTINCT); 45584ac9d02Sdanielk1977 sqlite3VdbeChangeP3(v, -1, aff, P3_STATIC); 4564adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_NotFound, iParm, addr+3); 4574adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Delete, iParm, 0); 458c926afbcSdrh break; 459c926afbcSdrh } 4602282792aSdrh 4612282792aSdrh /* If we are creating a set for an "expr IN (SELECT ...)" construct, 4622282792aSdrh ** then there should be a single item on the stack. Write this 4632282792aSdrh ** item into the set table with bogus data. 4642282792aSdrh */ 465c926afbcSdrh case SRT_Set: { 4664adee20fSdanielk1977 int addr1 = sqlite3VdbeCurrentAddr(v); 46752b36cabSdrh int addr2; 468e014a838Sdanielk1977 469967e8b73Sdrh assert( nColumn==1 ); 4704adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_NotNull, -1, addr1+3); 4714adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pop, 1, 0); 4724adee20fSdanielk1977 addr2 = sqlite3VdbeAddOp(v, OP_Goto, 0, 0); 473c926afbcSdrh if( pOrderBy ){ 474c926afbcSdrh pushOntoSorter(pParse, v, pOrderBy); 475c926afbcSdrh }else{ 476e014a838Sdanielk1977 char const *affStr; 477e014a838Sdanielk1977 char aff = (iParm>>16)&0xFF; 478e014a838Sdanielk1977 aff = sqlite3CompareAffinity(pEList->a[0].pExpr, aff); 479e014a838Sdanielk1977 affStr = sqlite3AffinityString(aff); 48084ac9d02Sdanielk1977 sqlite3VdbeOp3(v, OP_MakeKey, 1, 0, affStr, P3_STATIC); 4814adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_String, 0, 0); 482e014a838Sdanielk1977 sqlite3VdbeAddOp(v, OP_PutStrKey, (iParm&0x0000FFFF), 0); 483c926afbcSdrh } 4844adee20fSdanielk1977 sqlite3VdbeChangeP2(v, addr2, sqlite3VdbeCurrentAddr(v)); 485c926afbcSdrh break; 486c926afbcSdrh } 48782c3d636Sdrh 4882282792aSdrh /* If this is a scalar select that is part of an expression, then 4892282792aSdrh ** store the results in the appropriate memory cell and break out 4902282792aSdrh ** of the scan loop. 4912282792aSdrh */ 492c926afbcSdrh case SRT_Mem: { 493967e8b73Sdrh assert( nColumn==1 ); 494c926afbcSdrh if( pOrderBy ){ 495c926afbcSdrh pushOntoSorter(pParse, v, pOrderBy); 496c926afbcSdrh }else{ 4974adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemStore, iParm, 1); 4984adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, iBreak); 499c926afbcSdrh } 500c926afbcSdrh break; 501c926afbcSdrh } 5022282792aSdrh 503f46f905aSdrh /* Send the data to the callback function. 504f46f905aSdrh */ 505f46f905aSdrh case SRT_Callback: 506f46f905aSdrh case SRT_Sorter: { 507f46f905aSdrh if( pOrderBy ){ 5084adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_SortMakeRec, nColumn, 0); 509f46f905aSdrh pushOntoSorter(pParse, v, pOrderBy); 510f46f905aSdrh }else{ 511f46f905aSdrh assert( eDest==SRT_Callback ); 5124adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Callback, nColumn, 0); 513f46f905aSdrh } 514f46f905aSdrh break; 515f46f905aSdrh } 516f46f905aSdrh 517142e30dfSdrh /* Invoke a subroutine to handle the results. The subroutine itself 518142e30dfSdrh ** is responsible for popping the results off of the stack. 519142e30dfSdrh */ 520142e30dfSdrh case SRT_Subroutine: { 521ac82fcf5Sdrh if( pOrderBy ){ 5224adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MakeRecord, nColumn, 0); 523ac82fcf5Sdrh pushOntoSorter(pParse, v, pOrderBy); 524ac82fcf5Sdrh }else{ 5254adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Gosub, 0, iParm); 526ac82fcf5Sdrh } 527142e30dfSdrh break; 528142e30dfSdrh } 529142e30dfSdrh 530d7489c39Sdrh /* Discard the results. This is used for SELECT statements inside 531d7489c39Sdrh ** the body of a TRIGGER. The purpose of such selects is to call 532d7489c39Sdrh ** user-defined functions that have side effects. We do not care 533d7489c39Sdrh ** about the actual results of the select. 534d7489c39Sdrh */ 535c926afbcSdrh default: { 536f46f905aSdrh assert( eDest==SRT_Discard ); 5374adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pop, nColumn, 0); 538c926afbcSdrh break; 539c926afbcSdrh } 540c926afbcSdrh } 54182c3d636Sdrh return 0; 54282c3d636Sdrh } 54382c3d636Sdrh 54482c3d636Sdrh /* 545d8bc7086Sdrh ** If the inner loop was generated using a non-null pOrderBy argument, 546d8bc7086Sdrh ** then the results were placed in a sorter. After the loop is terminated 547d8bc7086Sdrh ** we need to run the sorter and output the results. The following 548d8bc7086Sdrh ** routine generates the code needed to do that. 549d8bc7086Sdrh */ 550c926afbcSdrh static void generateSortTail( 551*ffbc3088Sdrh Parse *pParse, /* The parsing context */ 552c926afbcSdrh Select *p, /* The SELECT statement */ 553c926afbcSdrh Vdbe *v, /* Generate code into this VDBE */ 554c926afbcSdrh int nColumn, /* Number of columns of data */ 555c926afbcSdrh int eDest, /* Write the sorted results here */ 556c926afbcSdrh int iParm /* Optional parameter associated with eDest */ 557c926afbcSdrh ){ 5584adee20fSdanielk1977 int end1 = sqlite3VdbeMakeLabel(v); 5594adee20fSdanielk1977 int end2 = sqlite3VdbeMakeLabel(v); 560d8bc7086Sdrh int addr; 561*ffbc3088Sdrh KeyInfo *pInfo; 562*ffbc3088Sdrh ExprList *pOrderBy; 563*ffbc3088Sdrh int nCol, i; 564*ffbc3088Sdrh sqlite *db = pParse->db; 565*ffbc3088Sdrh 566f46f905aSdrh if( eDest==SRT_Sorter ) return; 567*ffbc3088Sdrh pOrderBy = p->pOrderBy; 568*ffbc3088Sdrh nCol = pOrderBy->nExpr; 569*ffbc3088Sdrh pInfo = sqliteMalloc( sizeof(*pInfo) + nCol*(sizeof(CollSeq*)+1) ); 570*ffbc3088Sdrh if( pInfo==0 ) return; 571*ffbc3088Sdrh pInfo->aSortOrder = (char*)&pInfo->aColl[nCol]; 572*ffbc3088Sdrh pInfo->nField = nCol; 573*ffbc3088Sdrh for(i=0; i<nCol; i++){ 574*ffbc3088Sdrh pInfo->aColl[i] = db->pDfltColl; 575*ffbc3088Sdrh pInfo->aSortOrder[i] = pOrderBy->a[i].sortOrder; 576*ffbc3088Sdrh } 577*ffbc3088Sdrh sqlite3VdbeOp3(v, OP_Sort, 0, 0, (char*)pInfo, P3_KEYINFO_HANDOFF); 5784adee20fSdanielk1977 addr = sqlite3VdbeAddOp(v, OP_SortNext, 0, end1); 5797b58daeaSdrh if( p->iOffset>=0 ){ 5804adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemIncr, p->iOffset, addr+4); 5814adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pop, 1, 0); 5824adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, addr); 583df199a25Sdrh } 5847b58daeaSdrh if( p->iLimit>=0 ){ 5854adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemIncr, p->iLimit, end2); 586df199a25Sdrh } 587c926afbcSdrh switch( eDest ){ 588c926afbcSdrh case SRT_Callback: { 5894adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_SortCallback, nColumn, 0); 590c926afbcSdrh break; 591c926afbcSdrh } 592c926afbcSdrh case SRT_Table: 593c926afbcSdrh case SRT_TempTable: { 5944adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_NewRecno, iParm, 0); 5954adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pull, 1, 0); 5964adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_PutIntKey, iParm, 0); 597c926afbcSdrh break; 598c926afbcSdrh } 599c926afbcSdrh case SRT_Set: { 600c926afbcSdrh assert( nColumn==1 ); 6014adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_NotNull, -1, sqlite3VdbeCurrentAddr(v)+3); 6024adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pop, 1, 0); 6034adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, sqlite3VdbeCurrentAddr(v)+3); 604d6861792Sdrh sqlite3VdbeOp3(v, OP_MakeKey, 1, 0, "n", P3_STATIC); 6054adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_String, 0, 0); 606e014a838Sdanielk1977 sqlite3VdbeAddOp(v, OP_PutStrKey, (iParm&0x0000FFFF), 0); 607c926afbcSdrh break; 608c926afbcSdrh } 609c926afbcSdrh case SRT_Mem: { 610c926afbcSdrh assert( nColumn==1 ); 6114adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemStore, iParm, 1); 6124adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, end1); 613c926afbcSdrh break; 614c926afbcSdrh } 615ac82fcf5Sdrh case SRT_Subroutine: { 616ac82fcf5Sdrh int i; 61784ac9d02Sdanielk1977 sqlite3VdbeAddOp(v, OP_Integer, p->pEList->nExpr, 0); 61884ac9d02Sdanielk1977 sqlite3VdbeAddOp(v, OP_Pull, 1, 0); 619ac82fcf5Sdrh for(i=0; i<nColumn; i++){ 6204adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Column, -1-i, i); 621ac82fcf5Sdrh } 6224adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Gosub, 0, iParm); 62384ac9d02Sdanielk1977 sqlite3VdbeAddOp(v, OP_Pop, 2, 0); 624ac82fcf5Sdrh break; 625ac82fcf5Sdrh } 626c926afbcSdrh default: { 627f46f905aSdrh /* Do nothing */ 628c926afbcSdrh break; 629c926afbcSdrh } 630c926afbcSdrh } 6314adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, addr); 6324adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, end2); 6334adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Pop, 1, 0); 6344adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, end1); 6354adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_SortReset, 0, 0); 636d8bc7086Sdrh } 637d8bc7086Sdrh 638d8bc7086Sdrh /* 639fcb78a49Sdrh ** Generate code that will tell the VDBE the datatypes of 640fcb78a49Sdrh ** columns in the result set. 641e78e8284Sdrh ** 642e78e8284Sdrh ** This routine only generates code if the "PRAGMA show_datatypes=on" 643e78e8284Sdrh ** has been executed. The datatypes are reported out in the azCol 644e78e8284Sdrh ** parameter to the callback function. The first N azCol[] entries 645e78e8284Sdrh ** are the names of the columns, and the second N entries are the 646e78e8284Sdrh ** datatypes for the columns. 647e78e8284Sdrh ** 648e78e8284Sdrh ** The "datatype" for a result that is a column of a type is the 649e78e8284Sdrh ** datatype definition extracted from the CREATE TABLE statement. 650e78e8284Sdrh ** The datatype for an expression is either TEXT or NUMERIC. The 651e78e8284Sdrh ** datatype for a ROWID field is INTEGER. 652fcb78a49Sdrh */ 653fcb78a49Sdrh static void generateColumnTypes( 654fcb78a49Sdrh Parse *pParse, /* Parser context */ 655fcb78a49Sdrh SrcList *pTabList, /* List of tables */ 656fcb78a49Sdrh ExprList *pEList /* Expressions defining the result set */ 657fcb78a49Sdrh ){ 658fcb78a49Sdrh Vdbe *v = pParse->pVdbe; 6596a3ea0e6Sdrh int i, j; 660fcb78a49Sdrh for(i=0; i<pEList->nExpr; i++){ 661fcb78a49Sdrh Expr *p = pEList->a[i].pExpr; 662fcb78a49Sdrh char *zType = 0; 663fcb78a49Sdrh if( p==0 ) continue; 664fcb78a49Sdrh if( p->op==TK_COLUMN && pTabList ){ 6656a3ea0e6Sdrh Table *pTab; 666fcb78a49Sdrh int iCol = p->iColumn; 6676a3ea0e6Sdrh for(j=0; j<pTabList->nSrc && pTabList->a[j].iCursor!=p->iTable; j++){} 6686a3ea0e6Sdrh assert( j<pTabList->nSrc ); 6696a3ea0e6Sdrh pTab = pTabList->a[j].pTab; 670fcb78a49Sdrh if( iCol<0 ) iCol = pTab->iPKey; 671fcb78a49Sdrh assert( iCol==-1 || (iCol>=0 && iCol<pTab->nCol) ); 672fcb78a49Sdrh if( iCol<0 ){ 673fcb78a49Sdrh zType = "INTEGER"; 674fcb78a49Sdrh }else{ 675fcb78a49Sdrh zType = pTab->aCol[iCol].zType; 676fcb78a49Sdrh } 677fcb78a49Sdrh }else{ 678d3d39e93Sdrh zType = "ANY"; 679d3d39e93Sdrh /** TODO: Perhaps something related to the affinity of the 680d3d39e93Sdrh ** exprsssion? */ 681fcb78a49Sdrh } 6824adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_ColumnName, i + pEList->nExpr, 0, zType, 0); 683fcb78a49Sdrh } 684fcb78a49Sdrh } 685fcb78a49Sdrh 686fcb78a49Sdrh /* 687fcb78a49Sdrh ** Generate code that will tell the VDBE the names of columns 688fcb78a49Sdrh ** in the result set. This information is used to provide the 689fcabd464Sdrh ** azCol[] values in the callback. 69082c3d636Sdrh */ 691832508b7Sdrh static void generateColumnNames( 692832508b7Sdrh Parse *pParse, /* Parser context */ 693ad3cab52Sdrh SrcList *pTabList, /* List of tables */ 694832508b7Sdrh ExprList *pEList /* Expressions defining the result set */ 695832508b7Sdrh ){ 696d8bc7086Sdrh Vdbe *v = pParse->pVdbe; 6976a3ea0e6Sdrh int i, j; 698fcabd464Sdrh sqlite *db = pParse->db; 699fcabd464Sdrh int fullNames, shortNames; 700fcabd464Sdrh 701d6502758Sdrh assert( v!=0 ); 7026f8a503dSdanielk1977 if( pParse->colNamesSet || v==0 || sqlite3_malloc_failed ) return; 703d8bc7086Sdrh pParse->colNamesSet = 1; 704fcabd464Sdrh fullNames = (db->flags & SQLITE_FullColNames)!=0; 705fcabd464Sdrh shortNames = (db->flags & SQLITE_ShortColNames)!=0; 70682c3d636Sdrh for(i=0; i<pEList->nExpr; i++){ 70782c3d636Sdrh Expr *p; 708d6502758Sdrh int p2 = i==pEList->nExpr-1; 7095a38705eSdrh p = pEList->a[i].pExpr; 7105a38705eSdrh if( p==0 ) continue; 71182c3d636Sdrh if( pEList->a[i].zName ){ 71282c3d636Sdrh char *zName = pEList->a[i].zName; 7134adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_ColumnName, i, p2, zName, 0); 71482c3d636Sdrh continue; 71582c3d636Sdrh } 716fa173a76Sdrh if( p->op==TK_COLUMN && pTabList ){ 7176a3ea0e6Sdrh Table *pTab; 71897665873Sdrh char *zCol; 7198aff1015Sdrh int iCol = p->iColumn; 7206a3ea0e6Sdrh for(j=0; j<pTabList->nSrc && pTabList->a[j].iCursor!=p->iTable; j++){} 7216a3ea0e6Sdrh assert( j<pTabList->nSrc ); 7226a3ea0e6Sdrh pTab = pTabList->a[j].pTab; 7238aff1015Sdrh if( iCol<0 ) iCol = pTab->iPKey; 72497665873Sdrh assert( iCol==-1 || (iCol>=0 && iCol<pTab->nCol) ); 725b1363206Sdrh if( iCol<0 ){ 726b1363206Sdrh zCol = "_ROWID_"; 727b1363206Sdrh }else{ 728b1363206Sdrh zCol = pTab->aCol[iCol].zName; 729b1363206Sdrh } 730fcabd464Sdrh if( !shortNames && !fullNames && p->span.z && p->span.z[0] ){ 7314adee20fSdanielk1977 int addr = sqlite3VdbeOp3(v,OP_ColumnName, i, p2, p->span.z, p->span.n); 7324adee20fSdanielk1977 sqlite3VdbeCompressSpace(v, addr); 733fcabd464Sdrh }else if( fullNames || (!shortNames && pTabList->nSrc>1) ){ 73482c3d636Sdrh char *zName = 0; 73582c3d636Sdrh char *zTab; 73682c3d636Sdrh 7376a3ea0e6Sdrh zTab = pTabList->a[j].zAlias; 738fcabd464Sdrh if( fullNames || zTab==0 ) zTab = pTab->zName; 7394adee20fSdanielk1977 sqlite3SetString(&zName, zTab, ".", zCol, 0); 7404adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_ColumnName, i, p2, zName, P3_DYNAMIC); 74182c3d636Sdrh }else{ 7424adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_ColumnName, i, p2, zCol, 0); 74382c3d636Sdrh } 7446977fea8Sdrh }else if( p->span.z && p->span.z[0] ){ 7454adee20fSdanielk1977 int addr = sqlite3VdbeOp3(v,OP_ColumnName, i, p2, p->span.z, p->span.n); 7464adee20fSdanielk1977 sqlite3VdbeCompressSpace(v, addr); 7471bee3d7bSdrh }else{ 7481bee3d7bSdrh char zName[30]; 7491bee3d7bSdrh assert( p->op!=TK_COLUMN || pTabList==0 ); 7501bee3d7bSdrh sprintf(zName, "column%d", i+1); 7514adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_ColumnName, i, p2, zName, 0); 75282c3d636Sdrh } 75382c3d636Sdrh } 7545080aaa7Sdrh } 75582c3d636Sdrh 75682c3d636Sdrh /* 757d8bc7086Sdrh ** Name of the connection operator, used for error messages. 758d8bc7086Sdrh */ 759d8bc7086Sdrh static const char *selectOpName(int id){ 760d8bc7086Sdrh char *z; 761d8bc7086Sdrh switch( id ){ 762d8bc7086Sdrh case TK_ALL: z = "UNION ALL"; break; 763d8bc7086Sdrh case TK_INTERSECT: z = "INTERSECT"; break; 764d8bc7086Sdrh case TK_EXCEPT: z = "EXCEPT"; break; 765d8bc7086Sdrh default: z = "UNION"; break; 766d8bc7086Sdrh } 767d8bc7086Sdrh return z; 768d8bc7086Sdrh } 769d8bc7086Sdrh 770d8bc7086Sdrh /* 771315555caSdrh ** Forward declaration 772315555caSdrh */ 773315555caSdrh static int fillInColumnList(Parse*, Select*); 774315555caSdrh 775315555caSdrh /* 77622f70c32Sdrh ** Given a SELECT statement, generate a Table structure that describes 77722f70c32Sdrh ** the result set of that SELECT. 77822f70c32Sdrh */ 7794adee20fSdanielk1977 Table *sqlite3ResultSetOfSelect(Parse *pParse, char *zTabName, Select *pSelect){ 78022f70c32Sdrh Table *pTab; 781b733d037Sdrh int i, j; 78222f70c32Sdrh ExprList *pEList; 783b733d037Sdrh Column *aCol; 78422f70c32Sdrh 78522f70c32Sdrh if( fillInColumnList(pParse, pSelect) ){ 78622f70c32Sdrh return 0; 78722f70c32Sdrh } 78822f70c32Sdrh pTab = sqliteMalloc( sizeof(Table) ); 78922f70c32Sdrh if( pTab==0 ){ 79022f70c32Sdrh return 0; 79122f70c32Sdrh } 79222f70c32Sdrh pTab->zName = zTabName ? sqliteStrDup(zTabName) : 0; 79322f70c32Sdrh pEList = pSelect->pEList; 79422f70c32Sdrh pTab->nCol = pEList->nExpr; 795417be79cSdrh assert( pTab->nCol>0 ); 796b733d037Sdrh pTab->aCol = aCol = sqliteMalloc( sizeof(pTab->aCol[0])*pTab->nCol ); 79722f70c32Sdrh for(i=0; i<pTab->nCol; i++){ 798b733d037Sdrh Expr *p, *pR; 79922f70c32Sdrh if( pEList->a[i].zName ){ 800b733d037Sdrh aCol[i].zName = sqliteStrDup(pEList->a[i].zName); 801b733d037Sdrh }else if( (p=pEList->a[i].pExpr)->op==TK_DOT 802b733d037Sdrh && (pR=p->pRight)!=0 && pR->token.z && pR->token.z[0] ){ 803b733d037Sdrh int cnt; 8044adee20fSdanielk1977 sqlite3SetNString(&aCol[i].zName, pR->token.z, pR->token.n, 0); 805b733d037Sdrh for(j=cnt=0; j<i; j++){ 8064adee20fSdanielk1977 if( sqlite3StrICmp(aCol[j].zName, aCol[i].zName)==0 ){ 807b733d037Sdrh int n; 808b733d037Sdrh char zBuf[30]; 809b733d037Sdrh sprintf(zBuf,"_%d",++cnt); 810b733d037Sdrh n = strlen(zBuf); 8114adee20fSdanielk1977 sqlite3SetNString(&aCol[i].zName, pR->token.z, pR->token.n, zBuf,n,0); 812b733d037Sdrh j = -1; 813b733d037Sdrh } 814b733d037Sdrh } 815b733d037Sdrh }else if( p->span.z && p->span.z[0] ){ 8164adee20fSdanielk1977 sqlite3SetNString(&pTab->aCol[i].zName, p->span.z, p->span.n, 0); 81722f70c32Sdrh }else{ 81822f70c32Sdrh char zBuf[30]; 81922f70c32Sdrh sprintf(zBuf, "column%d", i+1); 82022f70c32Sdrh pTab->aCol[i].zName = sqliteStrDup(zBuf); 82122f70c32Sdrh } 822e014a838Sdanielk1977 823e014a838Sdanielk1977 /* Affinity is always NONE, as there is no type name. */ 824e014a838Sdanielk1977 pTab->aCol[i].affinity = SQLITE_AFF_NONE; 82522f70c32Sdrh } 82622f70c32Sdrh pTab->iPKey = -1; 82722f70c32Sdrh return pTab; 82822f70c32Sdrh } 82922f70c32Sdrh 83022f70c32Sdrh /* 831ad2d8307Sdrh ** For the given SELECT statement, do three things. 832d8bc7086Sdrh ** 833ad3cab52Sdrh ** (1) Fill in the pTabList->a[].pTab fields in the SrcList that 83463eb5f29Sdrh ** defines the set of tables that should be scanned. For views, 83563eb5f29Sdrh ** fill pTabList->a[].pSelect with a copy of the SELECT statement 83663eb5f29Sdrh ** that implements the view. A copy is made of the view's SELECT 83763eb5f29Sdrh ** statement so that we can freely modify or delete that statement 83863eb5f29Sdrh ** without worrying about messing up the presistent representation 83963eb5f29Sdrh ** of the view. 840d8bc7086Sdrh ** 841ad2d8307Sdrh ** (2) Add terms to the WHERE clause to accomodate the NATURAL keyword 842ad2d8307Sdrh ** on joins and the ON and USING clause of joins. 843ad2d8307Sdrh ** 844ad2d8307Sdrh ** (3) Scan the list of columns in the result set (pEList) looking 84554473229Sdrh ** for instances of the "*" operator or the TABLE.* operator. 84654473229Sdrh ** If found, expand each "*" to be every column in every table 84754473229Sdrh ** and TABLE.* to be every column in TABLE. 848d8bc7086Sdrh ** 849d8bc7086Sdrh ** Return 0 on success. If there are problems, leave an error message 850d8bc7086Sdrh ** in pParse and return non-zero. 851d8bc7086Sdrh */ 852d8bc7086Sdrh static int fillInColumnList(Parse *pParse, Select *p){ 85354473229Sdrh int i, j, k, rc; 854ad3cab52Sdrh SrcList *pTabList; 855daffd0e5Sdrh ExprList *pEList; 856a76b5dfcSdrh Table *pTab; 857daffd0e5Sdrh 858daffd0e5Sdrh if( p==0 || p->pSrc==0 ) return 1; 859daffd0e5Sdrh pTabList = p->pSrc; 860daffd0e5Sdrh pEList = p->pEList; 861d8bc7086Sdrh 862d8bc7086Sdrh /* Look up every table in the table list. 863d8bc7086Sdrh */ 864ad3cab52Sdrh for(i=0; i<pTabList->nSrc; i++){ 865d8bc7086Sdrh if( pTabList->a[i].pTab ){ 866d8bc7086Sdrh /* This routine has run before! No need to continue */ 867d8bc7086Sdrh return 0; 868d8bc7086Sdrh } 869daffd0e5Sdrh if( pTabList->a[i].zName==0 ){ 87022f70c32Sdrh /* A sub-query in the FROM clause of a SELECT */ 87122f70c32Sdrh assert( pTabList->a[i].pSelect!=0 ); 872ad2d8307Sdrh if( pTabList->a[i].zAlias==0 ){ 873ad2d8307Sdrh char zFakeName[60]; 874ad2d8307Sdrh sprintf(zFakeName, "sqlite_subquery_%p_", 875ad2d8307Sdrh (void*)pTabList->a[i].pSelect); 8764adee20fSdanielk1977 sqlite3SetString(&pTabList->a[i].zAlias, zFakeName, 0); 877ad2d8307Sdrh } 87822f70c32Sdrh pTabList->a[i].pTab = pTab = 8794adee20fSdanielk1977 sqlite3ResultSetOfSelect(pParse, pTabList->a[i].zAlias, 88022f70c32Sdrh pTabList->a[i].pSelect); 88122f70c32Sdrh if( pTab==0 ){ 882daffd0e5Sdrh return 1; 883daffd0e5Sdrh } 8845cf590c1Sdrh /* The isTransient flag indicates that the Table structure has been 8855cf590c1Sdrh ** dynamically allocated and may be freed at any time. In other words, 8865cf590c1Sdrh ** pTab is not pointing to a persistent table structure that defines 8875cf590c1Sdrh ** part of the schema. */ 88822f70c32Sdrh pTab->isTransient = 1; 88922f70c32Sdrh }else{ 890a76b5dfcSdrh /* An ordinary table or view name in the FROM clause */ 891a76b5dfcSdrh pTabList->a[i].pTab = pTab = 8924adee20fSdanielk1977 sqlite3LocateTable(pParse,pTabList->a[i].zName,pTabList->a[i].zDatabase); 893a76b5dfcSdrh if( pTab==0 ){ 894d8bc7086Sdrh return 1; 895d8bc7086Sdrh } 896a76b5dfcSdrh if( pTab->pSelect ){ 89763eb5f29Sdrh /* We reach here if the named table is a really a view */ 8984adee20fSdanielk1977 if( sqlite3ViewGetColumnNames(pParse, pTab) ){ 899417be79cSdrh return 1; 900417be79cSdrh } 90163eb5f29Sdrh /* If pTabList->a[i].pSelect!=0 it means we are dealing with a 90263eb5f29Sdrh ** view within a view. The SELECT structure has already been 90363eb5f29Sdrh ** copied by the outer view so we can skip the copy step here 90463eb5f29Sdrh ** in the inner view. 90563eb5f29Sdrh */ 90663eb5f29Sdrh if( pTabList->a[i].pSelect==0 ){ 9074adee20fSdanielk1977 pTabList->a[i].pSelect = sqlite3SelectDup(pTab->pSelect); 908a76b5dfcSdrh } 909d8bc7086Sdrh } 91022f70c32Sdrh } 91163eb5f29Sdrh } 912d8bc7086Sdrh 913ad2d8307Sdrh /* Process NATURAL keywords, and ON and USING clauses of joins. 914ad2d8307Sdrh */ 915ad2d8307Sdrh if( sqliteProcessJoin(pParse, p) ) return 1; 916ad2d8307Sdrh 9177c917d19Sdrh /* For every "*" that occurs in the column list, insert the names of 91854473229Sdrh ** all columns in all tables. And for every TABLE.* insert the names 91954473229Sdrh ** of all columns in TABLE. The parser inserted a special expression 9207c917d19Sdrh ** with the TK_ALL operator for each "*" that it found in the column list. 9217c917d19Sdrh ** The following code just has to locate the TK_ALL expressions and expand 9227c917d19Sdrh ** each one to the list of all columns in all tables. 92354473229Sdrh ** 92454473229Sdrh ** The first loop just checks to see if there are any "*" operators 92554473229Sdrh ** that need expanding. 926d8bc7086Sdrh */ 9277c917d19Sdrh for(k=0; k<pEList->nExpr; k++){ 92854473229Sdrh Expr *pE = pEList->a[k].pExpr; 92954473229Sdrh if( pE->op==TK_ALL ) break; 93054473229Sdrh if( pE->op==TK_DOT && pE->pRight && pE->pRight->op==TK_ALL 93154473229Sdrh && pE->pLeft && pE->pLeft->op==TK_ID ) break; 9327c917d19Sdrh } 93354473229Sdrh rc = 0; 9347c917d19Sdrh if( k<pEList->nExpr ){ 93554473229Sdrh /* 93654473229Sdrh ** If we get here it means the result set contains one or more "*" 93754473229Sdrh ** operators that need to be expanded. Loop through each expression 93854473229Sdrh ** in the result set and expand them one by one. 93954473229Sdrh */ 9407c917d19Sdrh struct ExprList_item *a = pEList->a; 9417c917d19Sdrh ExprList *pNew = 0; 9427c917d19Sdrh for(k=0; k<pEList->nExpr; k++){ 94354473229Sdrh Expr *pE = a[k].pExpr; 94454473229Sdrh if( pE->op!=TK_ALL && 94554473229Sdrh (pE->op!=TK_DOT || pE->pRight==0 || pE->pRight->op!=TK_ALL) ){ 94654473229Sdrh /* This particular expression does not need to be expanded. 94754473229Sdrh */ 9484adee20fSdanielk1977 pNew = sqlite3ExprListAppend(pNew, a[k].pExpr, 0); 9497c917d19Sdrh pNew->a[pNew->nExpr-1].zName = a[k].zName; 9507c917d19Sdrh a[k].pExpr = 0; 9517c917d19Sdrh a[k].zName = 0; 9527c917d19Sdrh }else{ 95354473229Sdrh /* This expression is a "*" or a "TABLE.*" and needs to be 95454473229Sdrh ** expanded. */ 95554473229Sdrh int tableSeen = 0; /* Set to 1 when TABLE matches */ 95654473229Sdrh Token *pName; /* text of name of TABLE */ 95754473229Sdrh if( pE->op==TK_DOT && pE->pLeft ){ 95854473229Sdrh pName = &pE->pLeft->token; 95954473229Sdrh }else{ 96054473229Sdrh pName = 0; 96154473229Sdrh } 962ad3cab52Sdrh for(i=0; i<pTabList->nSrc; i++){ 963d8bc7086Sdrh Table *pTab = pTabList->a[i].pTab; 96454473229Sdrh char *zTabName = pTabList->a[i].zAlias; 96554473229Sdrh if( zTabName==0 || zTabName[0]==0 ){ 96654473229Sdrh zTabName = pTab->zName; 96754473229Sdrh } 96854473229Sdrh if( pName && (zTabName==0 || zTabName[0]==0 || 9694adee20fSdanielk1977 sqlite3StrNICmp(pName->z, zTabName, pName->n)!=0 || 970c754fa54Sdrh zTabName[pName->n]!=0) ){ 97154473229Sdrh continue; 97254473229Sdrh } 97354473229Sdrh tableSeen = 1; 974d8bc7086Sdrh for(j=0; j<pTab->nCol; j++){ 97522f70c32Sdrh Expr *pExpr, *pLeft, *pRight; 976ad2d8307Sdrh char *zName = pTab->aCol[j].zName; 977ad2d8307Sdrh 978ad2d8307Sdrh if( i>0 && (pTabList->a[i-1].jointype & JT_NATURAL)!=0 && 979ad2d8307Sdrh columnIndex(pTabList->a[i-1].pTab, zName)>=0 ){ 980ad2d8307Sdrh /* In a NATURAL join, omit the join columns from the 981ad2d8307Sdrh ** table on the right */ 982ad2d8307Sdrh continue; 983ad2d8307Sdrh } 9844adee20fSdanielk1977 if( i>0 && sqlite3IdListIndex(pTabList->a[i-1].pUsing, zName)>=0 ){ 985ad2d8307Sdrh /* In a join with a USING clause, omit columns in the 986ad2d8307Sdrh ** using clause from the table on the right. */ 987ad2d8307Sdrh continue; 988ad2d8307Sdrh } 9894adee20fSdanielk1977 pRight = sqlite3Expr(TK_ID, 0, 0, 0); 99022f70c32Sdrh if( pRight==0 ) break; 991ad2d8307Sdrh pRight->token.z = zName; 992ad2d8307Sdrh pRight->token.n = strlen(zName); 9934b59ab5eSdrh pRight->token.dyn = 0; 9944b59ab5eSdrh if( zTabName && pTabList->nSrc>1 ){ 9954adee20fSdanielk1977 pLeft = sqlite3Expr(TK_ID, 0, 0, 0); 9964adee20fSdanielk1977 pExpr = sqlite3Expr(TK_DOT, pLeft, pRight, 0); 99722f70c32Sdrh if( pExpr==0 ) break; 9984b59ab5eSdrh pLeft->token.z = zTabName; 9994b59ab5eSdrh pLeft->token.n = strlen(zTabName); 10004b59ab5eSdrh pLeft->token.dyn = 0; 10014adee20fSdanielk1977 sqlite3SetString((char**)&pExpr->span.z, zTabName, ".", zName, 0); 10026977fea8Sdrh pExpr->span.n = strlen(pExpr->span.z); 10036977fea8Sdrh pExpr->span.dyn = 1; 10046977fea8Sdrh pExpr->token.z = 0; 10056977fea8Sdrh pExpr->token.n = 0; 10066977fea8Sdrh pExpr->token.dyn = 0; 100722f70c32Sdrh }else{ 100822f70c32Sdrh pExpr = pRight; 10096977fea8Sdrh pExpr->span = pExpr->token; 101022f70c32Sdrh } 10114adee20fSdanielk1977 pNew = sqlite3ExprListAppend(pNew, pExpr, 0); 1012d8bc7086Sdrh } 1013d8bc7086Sdrh } 101454473229Sdrh if( !tableSeen ){ 1015f5db2d3eSdrh if( pName ){ 10164adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "no such table: %T", pName); 1017f5db2d3eSdrh }else{ 10184adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "no tables specified"); 1019f5db2d3eSdrh } 102054473229Sdrh rc = 1; 102154473229Sdrh } 10227c917d19Sdrh } 10237c917d19Sdrh } 10244adee20fSdanielk1977 sqlite3ExprListDelete(pEList); 10257c917d19Sdrh p->pEList = pNew; 1026d8bc7086Sdrh } 102754473229Sdrh return rc; 1028d8bc7086Sdrh } 1029d8bc7086Sdrh 1030d8bc7086Sdrh /* 1031ff78bd2fSdrh ** This routine recursively unlinks the Select.pSrc.a[].pTab pointers 1032ff78bd2fSdrh ** in a select structure. It just sets the pointers to NULL. This 1033ff78bd2fSdrh ** routine is recursive in the sense that if the Select.pSrc.a[].pSelect 1034ff78bd2fSdrh ** pointer is not NULL, this routine is called recursively on that pointer. 1035ff78bd2fSdrh ** 1036ff78bd2fSdrh ** This routine is called on the Select structure that defines a 1037ff78bd2fSdrh ** VIEW in order to undo any bindings to tables. This is necessary 1038ff78bd2fSdrh ** because those tables might be DROPed by a subsequent SQL command. 10395cf590c1Sdrh ** If the bindings are not removed, then the Select.pSrc->a[].pTab field 10405cf590c1Sdrh ** will be left pointing to a deallocated Table structure after the 10415cf590c1Sdrh ** DROP and a coredump will occur the next time the VIEW is used. 1042ff78bd2fSdrh */ 10434adee20fSdanielk1977 void sqlite3SelectUnbind(Select *p){ 1044ff78bd2fSdrh int i; 1045ad3cab52Sdrh SrcList *pSrc = p->pSrc; 1046ff78bd2fSdrh Table *pTab; 1047ff78bd2fSdrh if( p==0 ) return; 1048ad3cab52Sdrh for(i=0; i<pSrc->nSrc; i++){ 1049ff78bd2fSdrh if( (pTab = pSrc->a[i].pTab)!=0 ){ 1050ff78bd2fSdrh if( pTab->isTransient ){ 10514adee20fSdanielk1977 sqlite3DeleteTable(0, pTab); 1052ff78bd2fSdrh } 1053ff78bd2fSdrh pSrc->a[i].pTab = 0; 1054ff78bd2fSdrh if( pSrc->a[i].pSelect ){ 10554adee20fSdanielk1977 sqlite3SelectUnbind(pSrc->a[i].pSelect); 1056ff78bd2fSdrh } 1057ff78bd2fSdrh } 1058ff78bd2fSdrh } 1059ff78bd2fSdrh } 1060ff78bd2fSdrh 1061ff78bd2fSdrh /* 1062d8bc7086Sdrh ** This routine associates entries in an ORDER BY expression list with 1063d8bc7086Sdrh ** columns in a result. For each ORDER BY expression, the opcode of 1064967e8b73Sdrh ** the top-level node is changed to TK_COLUMN and the iColumn value of 1065d8bc7086Sdrh ** the top-level node is filled in with column number and the iTable 1066d8bc7086Sdrh ** value of the top-level node is filled with iTable parameter. 1067d8bc7086Sdrh ** 1068d8bc7086Sdrh ** If there are prior SELECT clauses, they are processed first. A match 1069d8bc7086Sdrh ** in an earlier SELECT takes precedence over a later SELECT. 1070d8bc7086Sdrh ** 1071d8bc7086Sdrh ** Any entry that does not match is flagged as an error. The number 1072d8bc7086Sdrh ** of errors is returned. 1073d8bc7086Sdrh */ 1074d8bc7086Sdrh static int matchOrderbyToColumn( 1075d8bc7086Sdrh Parse *pParse, /* A place to leave error messages */ 1076d8bc7086Sdrh Select *pSelect, /* Match to result columns of this SELECT */ 1077d8bc7086Sdrh ExprList *pOrderBy, /* The ORDER BY values to match against columns */ 1078e4de1febSdrh int iTable, /* Insert this value in iTable */ 1079d8bc7086Sdrh int mustComplete /* If TRUE all ORDER BYs must match */ 1080d8bc7086Sdrh ){ 1081d8bc7086Sdrh int nErr = 0; 1082d8bc7086Sdrh int i, j; 1083d8bc7086Sdrh ExprList *pEList; 1084d8bc7086Sdrh 1085daffd0e5Sdrh if( pSelect==0 || pOrderBy==0 ) return 1; 1086d8bc7086Sdrh if( mustComplete ){ 1087d8bc7086Sdrh for(i=0; i<pOrderBy->nExpr; i++){ pOrderBy->a[i].done = 0; } 1088d8bc7086Sdrh } 1089d8bc7086Sdrh if( fillInColumnList(pParse, pSelect) ){ 1090d8bc7086Sdrh return 1; 1091d8bc7086Sdrh } 1092d8bc7086Sdrh if( pSelect->pPrior ){ 109392cd52f5Sdrh if( matchOrderbyToColumn(pParse, pSelect->pPrior, pOrderBy, iTable, 0) ){ 109492cd52f5Sdrh return 1; 109592cd52f5Sdrh } 1096d8bc7086Sdrh } 1097d8bc7086Sdrh pEList = pSelect->pEList; 1098d8bc7086Sdrh for(i=0; i<pOrderBy->nExpr; i++){ 1099d8bc7086Sdrh Expr *pE = pOrderBy->a[i].pExpr; 1100e4de1febSdrh int iCol = -1; 1101d8bc7086Sdrh if( pOrderBy->a[i].done ) continue; 11024adee20fSdanielk1977 if( sqlite3ExprIsInteger(pE, &iCol) ){ 1103e4de1febSdrh if( iCol<=0 || iCol>pEList->nExpr ){ 11044adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 1105da93d238Sdrh "ORDER BY position %d should be between 1 and %d", 1106e4de1febSdrh iCol, pEList->nExpr); 1107e4de1febSdrh nErr++; 1108e4de1febSdrh break; 1109e4de1febSdrh } 1110fcb78a49Sdrh if( !mustComplete ) continue; 1111e4de1febSdrh iCol--; 1112e4de1febSdrh } 1113e4de1febSdrh for(j=0; iCol<0 && j<pEList->nExpr; j++){ 11144cfa7934Sdrh if( pEList->a[j].zName && (pE->op==TK_ID || pE->op==TK_STRING) ){ 1115a76b5dfcSdrh char *zName, *zLabel; 1116a76b5dfcSdrh zName = pEList->a[j].zName; 1117a76b5dfcSdrh assert( pE->token.z ); 1118a76b5dfcSdrh zLabel = sqliteStrNDup(pE->token.z, pE->token.n); 11194adee20fSdanielk1977 sqlite3Dequote(zLabel); 11204adee20fSdanielk1977 if( sqlite3StrICmp(zName, zLabel)==0 ){ 1121e4de1febSdrh iCol = j; 1122d8bc7086Sdrh } 11236e142f54Sdrh sqliteFree(zLabel); 1124d8bc7086Sdrh } 11254adee20fSdanielk1977 if( iCol<0 && sqlite3ExprCompare(pE, pEList->a[j].pExpr) ){ 1126e4de1febSdrh iCol = j; 1127d8bc7086Sdrh } 1128e4de1febSdrh } 1129e4de1febSdrh if( iCol>=0 ){ 1130967e8b73Sdrh pE->op = TK_COLUMN; 1131e4de1febSdrh pE->iColumn = iCol; 1132d8bc7086Sdrh pE->iTable = iTable; 1133d8bc7086Sdrh pOrderBy->a[i].done = 1; 1134d8bc7086Sdrh } 1135e4de1febSdrh if( iCol<0 && mustComplete ){ 11364adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 1137da93d238Sdrh "ORDER BY term number %d does not match any result column", i+1); 1138d8bc7086Sdrh nErr++; 1139d8bc7086Sdrh break; 1140d8bc7086Sdrh } 1141d8bc7086Sdrh } 1142d8bc7086Sdrh return nErr; 1143d8bc7086Sdrh } 1144d8bc7086Sdrh 1145d8bc7086Sdrh /* 1146d8bc7086Sdrh ** Get a VDBE for the given parser context. Create a new one if necessary. 1147d8bc7086Sdrh ** If an error occurs, return NULL and leave a message in pParse. 1148d8bc7086Sdrh */ 11494adee20fSdanielk1977 Vdbe *sqlite3GetVdbe(Parse *pParse){ 1150d8bc7086Sdrh Vdbe *v = pParse->pVdbe; 1151d8bc7086Sdrh if( v==0 ){ 11524adee20fSdanielk1977 v = pParse->pVdbe = sqlite3VdbeCreate(pParse->db); 1153d8bc7086Sdrh } 1154d8bc7086Sdrh return v; 1155d8bc7086Sdrh } 1156d8bc7086Sdrh 1157d3d39e93Sdrh #if 0 /***** This routine needs deleting *****/ 115884ac9d02Sdanielk1977 static void multiSelectAffinity(Select *p, char *zAff){ 115984ac9d02Sdanielk1977 int i; 116084ac9d02Sdanielk1977 116184ac9d02Sdanielk1977 if( !p ) return; 116284ac9d02Sdanielk1977 multiSelectAffinity(p->pPrior, zAff); 116384ac9d02Sdanielk1977 116484ac9d02Sdanielk1977 for(i=0; i<p->pEList->nExpr; i++){ 116584ac9d02Sdanielk1977 if( zAff[i]=='\0' ){ 116684ac9d02Sdanielk1977 zAff[i] = sqlite3ExprAffinity(p->pEList->a[i].pExpr); 116784ac9d02Sdanielk1977 } 116884ac9d02Sdanielk1977 } 116984ac9d02Sdanielk1977 } 1170d3d39e93Sdrh #endif 117184ac9d02Sdanielk1977 1172d8bc7086Sdrh /* 11737b58daeaSdrh ** Compute the iLimit and iOffset fields of the SELECT based on the 11747b58daeaSdrh ** nLimit and nOffset fields. nLimit and nOffset hold the integers 11757b58daeaSdrh ** that appear in the original SQL statement after the LIMIT and OFFSET 11767b58daeaSdrh ** keywords. Or that hold -1 and 0 if those keywords are omitted. 11777b58daeaSdrh ** iLimit and iOffset are the integer memory register numbers for 11787b58daeaSdrh ** counters used to compute the limit and offset. If there is no 11797b58daeaSdrh ** limit and/or offset, then iLimit and iOffset are negative. 11807b58daeaSdrh ** 11817b58daeaSdrh ** This routine changes the values if iLimit and iOffset only if 11827b58daeaSdrh ** a limit or offset is defined by nLimit and nOffset. iLimit and 11837b58daeaSdrh ** iOffset should have been preset to appropriate default values 11847b58daeaSdrh ** (usually but not always -1) prior to calling this routine. 11857b58daeaSdrh ** Only if nLimit>=0 or nOffset>0 do the limit registers get 11867b58daeaSdrh ** redefined. The UNION ALL operator uses this property to force 11877b58daeaSdrh ** the reuse of the same limit and offset registers across multiple 11887b58daeaSdrh ** SELECT statements. 11897b58daeaSdrh */ 11907b58daeaSdrh static void computeLimitRegisters(Parse *pParse, Select *p){ 11917b58daeaSdrh /* 11927b58daeaSdrh ** If the comparison is p->nLimit>0 then "LIMIT 0" shows 11937b58daeaSdrh ** all rows. It is the same as no limit. If the comparision is 11947b58daeaSdrh ** p->nLimit>=0 then "LIMIT 0" show no rows at all. 11957b58daeaSdrh ** "LIMIT -1" always shows all rows. There is some 11967b58daeaSdrh ** contraversy about what the correct behavior should be. 11977b58daeaSdrh ** The current implementation interprets "LIMIT 0" to mean 11987b58daeaSdrh ** no rows. 11997b58daeaSdrh */ 12007b58daeaSdrh if( p->nLimit>=0 ){ 12017b58daeaSdrh int iMem = pParse->nMem++; 12024adee20fSdanielk1977 Vdbe *v = sqlite3GetVdbe(pParse); 12037b58daeaSdrh if( v==0 ) return; 12044adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Integer, -p->nLimit, 0); 12054adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemStore, iMem, 1); 12067b58daeaSdrh p->iLimit = iMem; 12077b58daeaSdrh } 12087b58daeaSdrh if( p->nOffset>0 ){ 12097b58daeaSdrh int iMem = pParse->nMem++; 12104adee20fSdanielk1977 Vdbe *v = sqlite3GetVdbe(pParse); 12117b58daeaSdrh if( v==0 ) return; 12124adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Integer, -p->nOffset, 0); 12134adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemStore, iMem, 1); 12147b58daeaSdrh p->iOffset = iMem; 12157b58daeaSdrh } 12167b58daeaSdrh } 12177b58daeaSdrh 12187b58daeaSdrh /* 1219d3d39e93Sdrh ** Generate VDBE instructions that will open a transient table that 1220d3d39e93Sdrh ** will be used for an index or to store keyed results for a compound 1221d3d39e93Sdrh ** select. In other words, open a transient table that needs a 1222d3d39e93Sdrh ** KeyInfo structure. The number of columns in the KeyInfo is determined 1223d3d39e93Sdrh ** by the result set of the SELECT statement in the second argument. 1224d3d39e93Sdrh ** 1225d3d39e93Sdrh ** Make the new table a KeyAsData table if keyAsData is true. 1226d3d39e93Sdrh */ 1227d3d39e93Sdrh static void openTempIndex(Parse *pParse, Select *p, int iTab, int keyAsData){ 1228d3d39e93Sdrh KeyInfo *pKeyInfo; 1229d3d39e93Sdrh int nColumn = p->pEList->nExpr; 1230d3d39e93Sdrh sqlite *db = pParse->db; 1231d3d39e93Sdrh int i; 1232d3d39e93Sdrh Vdbe *v = pParse->pVdbe; 1233d3d39e93Sdrh 1234d3d39e93Sdrh pKeyInfo = sqliteMalloc( sizeof(*pKeyInfo)+nColumn*sizeof(CollSeq*) ); 1235d3d39e93Sdrh if( pKeyInfo==0 ) return; 1236d3d39e93Sdrh pKeyInfo->nField = nColumn; 1237d3d39e93Sdrh for(i=0; i<nColumn; i++){ 1238d3d39e93Sdrh pKeyInfo->aColl[i] = db->pDfltColl; 1239d3d39e93Sdrh } 1240*ffbc3088Sdrh sqlite3VdbeOp3(v, OP_OpenTemp, iTab, 0, (char*)pKeyInfo, P3_KEYINFO_HANDOFF); 1241d3d39e93Sdrh if( keyAsData ){ 1242d3d39e93Sdrh sqlite3VdbeAddOp(v, OP_KeyAsData, iTab, 1); 1243d3d39e93Sdrh } 1244d3d39e93Sdrh } 1245d3d39e93Sdrh 1246d3d39e93Sdrh /* 124782c3d636Sdrh ** This routine is called to process a query that is really the union 124882c3d636Sdrh ** or intersection of two or more separate queries. 1249c926afbcSdrh ** 1250e78e8284Sdrh ** "p" points to the right-most of the two queries. the query on the 1251e78e8284Sdrh ** left is p->pPrior. The left query could also be a compound query 1252e78e8284Sdrh ** in which case this routine will be called recursively. 1253e78e8284Sdrh ** 1254e78e8284Sdrh ** The results of the total query are to be written into a destination 1255e78e8284Sdrh ** of type eDest with parameter iParm. 1256e78e8284Sdrh ** 1257e78e8284Sdrh ** Example 1: Consider a three-way compound SQL statement. 1258e78e8284Sdrh ** 1259e78e8284Sdrh ** SELECT a FROM t1 UNION SELECT b FROM t2 UNION SELECT c FROM t3 1260e78e8284Sdrh ** 1261e78e8284Sdrh ** This statement is parsed up as follows: 1262e78e8284Sdrh ** 1263e78e8284Sdrh ** SELECT c FROM t3 1264e78e8284Sdrh ** | 1265e78e8284Sdrh ** `-----> SELECT b FROM t2 1266e78e8284Sdrh ** | 12674b11c6d3Sjplyon ** `------> SELECT a FROM t1 1268e78e8284Sdrh ** 1269e78e8284Sdrh ** The arrows in the diagram above represent the Select.pPrior pointer. 1270e78e8284Sdrh ** So if this routine is called with p equal to the t3 query, then 1271e78e8284Sdrh ** pPrior will be the t2 query. p->op will be TK_UNION in this case. 1272e78e8284Sdrh ** 1273e78e8284Sdrh ** Notice that because of the way SQLite parses compound SELECTs, the 1274e78e8284Sdrh ** individual selects always group from left to right. 127582c3d636Sdrh */ 127684ac9d02Sdanielk1977 static int multiSelect( 127784ac9d02Sdanielk1977 Parse *pParse, 127884ac9d02Sdanielk1977 Select *p, 127984ac9d02Sdanielk1977 int eDest, 128084ac9d02Sdanielk1977 int iParm, 128184ac9d02Sdanielk1977 char *aff /* If eDest is SRT_Union, the affinity string */ 128284ac9d02Sdanielk1977 ){ 128384ac9d02Sdanielk1977 int rc = SQLITE_OK; /* Success code from a subroutine */ 128410e5e3cfSdrh Select *pPrior; /* Another SELECT immediately to our left */ 128510e5e3cfSdrh Vdbe *v; /* Generate code to this VDBE */ 128684ac9d02Sdanielk1977 char *affStr = 0; 128784ac9d02Sdanielk1977 1288d3d39e93Sdrh #if 0 /* NOT USED */ 128984ac9d02Sdanielk1977 if( !aff ){ 129084ac9d02Sdanielk1977 int len; 129184ac9d02Sdanielk1977 rc = fillInColumnList(pParse, p); 129284ac9d02Sdanielk1977 if( rc!=SQLITE_OK ){ 129384ac9d02Sdanielk1977 goto multi_select_end; 129484ac9d02Sdanielk1977 } 129584ac9d02Sdanielk1977 len = p->pEList->nExpr+1; 129684ac9d02Sdanielk1977 affStr = (char *)sqliteMalloc(p->pEList->nExpr+1); 129784ac9d02Sdanielk1977 if( !affStr ){ 129884ac9d02Sdanielk1977 rc = SQLITE_NOMEM; 129984ac9d02Sdanielk1977 goto multi_select_end; 130084ac9d02Sdanielk1977 } 130184ac9d02Sdanielk1977 memset(affStr, (int)SQLITE_AFF_NUMERIC, len-1); 130284ac9d02Sdanielk1977 aff = affStr; 130384ac9d02Sdanielk1977 } 1304d3d39e93Sdrh #endif 130582c3d636Sdrh 13067b58daeaSdrh /* Make sure there is no ORDER BY or LIMIT clause on prior SELECTs. Only 13077b58daeaSdrh ** the last SELECT in the series may have an ORDER BY or LIMIT. 130882c3d636Sdrh */ 130984ac9d02Sdanielk1977 if( p==0 || p->pPrior==0 ){ 131084ac9d02Sdanielk1977 rc = 1; 131184ac9d02Sdanielk1977 goto multi_select_end; 131284ac9d02Sdanielk1977 } 1313d8bc7086Sdrh pPrior = p->pPrior; 1314d8bc7086Sdrh if( pPrior->pOrderBy ){ 13154adee20fSdanielk1977 sqlite3ErrorMsg(pParse,"ORDER BY clause should come after %s not before", 1316da93d238Sdrh selectOpName(p->op)); 131784ac9d02Sdanielk1977 rc = 1; 131884ac9d02Sdanielk1977 goto multi_select_end; 131982c3d636Sdrh } 13207b58daeaSdrh if( pPrior->nLimit>=0 || pPrior->nOffset>0 ){ 13214adee20fSdanielk1977 sqlite3ErrorMsg(pParse,"LIMIT clause should come after %s not before", 13227b58daeaSdrh selectOpName(p->op)); 132384ac9d02Sdanielk1977 rc = 1; 132484ac9d02Sdanielk1977 goto multi_select_end; 13257b58daeaSdrh } 132682c3d636Sdrh 1327d8bc7086Sdrh /* Make sure we have a valid query engine. If not, create a new one. 1328d8bc7086Sdrh */ 13294adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 133084ac9d02Sdanielk1977 if( v==0 ){ 133184ac9d02Sdanielk1977 rc = 1; 133284ac9d02Sdanielk1977 goto multi_select_end; 133384ac9d02Sdanielk1977 } 1334d8bc7086Sdrh 13351cc3d75fSdrh /* Create the destination temporary table if necessary 13361cc3d75fSdrh */ 13371cc3d75fSdrh if( eDest==SRT_TempTable ){ 1338b4964b72Sdanielk1977 assert( p->pEList ); 13394adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_OpenTemp, iParm, 0); 1340b4964b72Sdanielk1977 sqlite3VdbeAddOp(v, OP_SetNumColumns, iParm, p->pEList->nExpr); 13411cc3d75fSdrh eDest = SRT_Table; 13421cc3d75fSdrh } 13431cc3d75fSdrh 1344f46f905aSdrh /* Generate code for the left and right SELECT statements. 1345d8bc7086Sdrh */ 134682c3d636Sdrh switch( p->op ){ 1347f46f905aSdrh case TK_ALL: { 1348f46f905aSdrh if( p->pOrderBy==0 ){ 13497b58daeaSdrh pPrior->nLimit = p->nLimit; 13507b58daeaSdrh pPrior->nOffset = p->nOffset; 135184ac9d02Sdanielk1977 rc = sqlite3Select(pParse, pPrior, eDest, iParm, 0, 0, 0, aff); 135284ac9d02Sdanielk1977 if( rc ){ 135384ac9d02Sdanielk1977 goto multi_select_end; 135484ac9d02Sdanielk1977 } 1355f46f905aSdrh p->pPrior = 0; 13567b58daeaSdrh p->iLimit = pPrior->iLimit; 13577b58daeaSdrh p->iOffset = pPrior->iOffset; 13587b58daeaSdrh p->nLimit = -1; 13597b58daeaSdrh p->nOffset = 0; 136084ac9d02Sdanielk1977 rc = sqlite3Select(pParse, p, eDest, iParm, 0, 0, 0, aff); 1361f46f905aSdrh p->pPrior = pPrior; 136284ac9d02Sdanielk1977 if( rc ){ 136384ac9d02Sdanielk1977 goto multi_select_end; 136484ac9d02Sdanielk1977 } 1365f46f905aSdrh break; 1366f46f905aSdrh } 1367f46f905aSdrh /* For UNION ALL ... ORDER BY fall through to the next case */ 1368f46f905aSdrh } 136982c3d636Sdrh case TK_EXCEPT: 137082c3d636Sdrh case TK_UNION: { 1371d8bc7086Sdrh int unionTab; /* Cursor number of the temporary table holding result */ 1372d8bc7086Sdrh int op; /* One of the SRT_ operations to apply to self */ 1373d8bc7086Sdrh int priorOp; /* The SRT_ operation to apply to prior selects */ 13747b58daeaSdrh int nLimit, nOffset; /* Saved values of p->nLimit and p->nOffset */ 1375c926afbcSdrh ExprList *pOrderBy; /* The ORDER BY clause for the right SELECT */ 137682c3d636Sdrh 1377d8bc7086Sdrh priorOp = p->op==TK_ALL ? SRT_Table : SRT_Union; 13787b58daeaSdrh if( eDest==priorOp && p->pOrderBy==0 && p->nLimit<0 && p->nOffset==0 ){ 1379d8bc7086Sdrh /* We can reuse a temporary table generated by a SELECT to our 1380c926afbcSdrh ** right. 1381d8bc7086Sdrh */ 138282c3d636Sdrh unionTab = iParm; 138382c3d636Sdrh }else{ 1384d8bc7086Sdrh /* We will need to create our own temporary table to hold the 1385d8bc7086Sdrh ** intermediate results. 1386d8bc7086Sdrh */ 138782c3d636Sdrh unionTab = pParse->nTab++; 1388d8bc7086Sdrh if( p->pOrderBy 1389d8bc7086Sdrh && matchOrderbyToColumn(pParse, p, p->pOrderBy, unionTab, 1) ){ 139084ac9d02Sdanielk1977 rc = 1; 139184ac9d02Sdanielk1977 goto multi_select_end; 1392d8bc7086Sdrh } 1393d8bc7086Sdrh if( p->op!=TK_ALL ){ 1394d3d39e93Sdrh openTempIndex(pParse, p, unionTab, 1); 1395345fda3eSdrh }else{ 13964adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_OpenTemp, unionTab, 0); 139782c3d636Sdrh } 139884ac9d02Sdanielk1977 assert( p->pEList ); 1399d8bc7086Sdrh } 1400d8bc7086Sdrh 1401d8bc7086Sdrh /* Code the SELECT statements to our left 1402d8bc7086Sdrh */ 140384ac9d02Sdanielk1977 rc = sqlite3Select(pParse, pPrior, priorOp, unionTab, 0, 0, 0, aff); 140484ac9d02Sdanielk1977 if( rc ){ 140584ac9d02Sdanielk1977 goto multi_select_end; 140684ac9d02Sdanielk1977 } 140784ac9d02Sdanielk1977 if( p->op==TK_ALL ){ 140884ac9d02Sdanielk1977 sqlite3VdbeAddOp(v, OP_SetNumColumns, unionTab, pPrior->pEList->nExpr); 140984ac9d02Sdanielk1977 } 1410d8bc7086Sdrh 1411d8bc7086Sdrh /* Code the current SELECT statement 1412d8bc7086Sdrh */ 1413d8bc7086Sdrh switch( p->op ){ 1414d8bc7086Sdrh case TK_EXCEPT: op = SRT_Except; break; 1415d8bc7086Sdrh case TK_UNION: op = SRT_Union; break; 1416d8bc7086Sdrh case TK_ALL: op = SRT_Table; break; 1417d8bc7086Sdrh } 141882c3d636Sdrh p->pPrior = 0; 1419c926afbcSdrh pOrderBy = p->pOrderBy; 1420c926afbcSdrh p->pOrderBy = 0; 14217b58daeaSdrh nLimit = p->nLimit; 14227b58daeaSdrh p->nLimit = -1; 14237b58daeaSdrh nOffset = p->nOffset; 14247b58daeaSdrh p->nOffset = 0; 142584ac9d02Sdanielk1977 rc = sqlite3Select(pParse, p, op, unionTab, 0, 0, 0, aff); 142682c3d636Sdrh p->pPrior = pPrior; 1427c926afbcSdrh p->pOrderBy = pOrderBy; 14287b58daeaSdrh p->nLimit = nLimit; 14297b58daeaSdrh p->nOffset = nOffset; 143084ac9d02Sdanielk1977 if( rc ){ 143184ac9d02Sdanielk1977 goto multi_select_end; 143284ac9d02Sdanielk1977 } 143384ac9d02Sdanielk1977 1434d8bc7086Sdrh 1435d8bc7086Sdrh /* Convert the data in the temporary table into whatever form 1436d8bc7086Sdrh ** it is that we currently need. 1437d8bc7086Sdrh */ 1438c926afbcSdrh if( eDest!=priorOp || unionTab!=iParm ){ 14396b56344dSdrh int iCont, iBreak, iStart; 144082c3d636Sdrh assert( p->pEList ); 144141202ccaSdrh if( eDest==SRT_Callback ){ 14426a3ea0e6Sdrh generateColumnNames(pParse, 0, p->pEList); 14436a3ea0e6Sdrh generateColumnTypes(pParse, p->pSrc, p->pEList); 144441202ccaSdrh } 14454adee20fSdanielk1977 iBreak = sqlite3VdbeMakeLabel(v); 14464adee20fSdanielk1977 iCont = sqlite3VdbeMakeLabel(v); 14474adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Rewind, unionTab, iBreak); 14487b58daeaSdrh computeLimitRegisters(pParse, p); 14494adee20fSdanielk1977 iStart = sqlite3VdbeCurrentAddr(v); 145038640e15Sdrh rc = selectInnerLoop(pParse, p, p->pEList, unionTab, p->pEList->nExpr, 1451d8bc7086Sdrh p->pOrderBy, -1, eDest, iParm, 145284ac9d02Sdanielk1977 iCont, iBreak, 0); 145384ac9d02Sdanielk1977 if( rc ){ 145484ac9d02Sdanielk1977 rc = 1; 145584ac9d02Sdanielk1977 goto multi_select_end; 145684ac9d02Sdanielk1977 } 14574adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, iCont); 14584adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Next, unionTab, iStart); 14594adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, iBreak); 14604adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Close, unionTab, 0); 1461d8bc7086Sdrh if( p->pOrderBy ){ 1462*ffbc3088Sdrh generateSortTail(pParse, p, v, p->pEList->nExpr, eDest, iParm); 1463d8bc7086Sdrh } 146482c3d636Sdrh } 146582c3d636Sdrh break; 146682c3d636Sdrh } 146782c3d636Sdrh case TK_INTERSECT: { 146882c3d636Sdrh int tab1, tab2; 14696b56344dSdrh int iCont, iBreak, iStart; 14707b58daeaSdrh int nLimit, nOffset; 147182c3d636Sdrh 1472d8bc7086Sdrh /* INTERSECT is different from the others since it requires 14736206d50aSdrh ** two temporary tables. Hence it has its own case. Begin 1474d8bc7086Sdrh ** by allocating the tables we will need. 1475d8bc7086Sdrh */ 147682c3d636Sdrh tab1 = pParse->nTab++; 147782c3d636Sdrh tab2 = pParse->nTab++; 1478d8bc7086Sdrh if( p->pOrderBy && matchOrderbyToColumn(pParse,p,p->pOrderBy,tab1,1) ){ 147984ac9d02Sdanielk1977 rc = 1; 148084ac9d02Sdanielk1977 goto multi_select_end; 1481d8bc7086Sdrh } 1482d3d39e93Sdrh openTempIndex(pParse, p, tab1, 1); 148384ac9d02Sdanielk1977 assert( p->pEList ); 1484d8bc7086Sdrh 1485d8bc7086Sdrh /* Code the SELECTs to our left into temporary table "tab1". 1486d8bc7086Sdrh */ 148784ac9d02Sdanielk1977 rc = sqlite3Select(pParse, pPrior, SRT_Union, tab1, 0, 0, 0, aff); 148884ac9d02Sdanielk1977 if( rc ){ 148984ac9d02Sdanielk1977 goto multi_select_end; 149084ac9d02Sdanielk1977 } 1491d8bc7086Sdrh 1492d8bc7086Sdrh /* Code the current SELECT into temporary table "tab2" 1493d8bc7086Sdrh */ 1494d3d39e93Sdrh openTempIndex(pParse, p, tab2, 1); 149582c3d636Sdrh p->pPrior = 0; 14967b58daeaSdrh nLimit = p->nLimit; 14977b58daeaSdrh p->nLimit = -1; 14987b58daeaSdrh nOffset = p->nOffset; 14997b58daeaSdrh p->nOffset = 0; 150084ac9d02Sdanielk1977 rc = sqlite3Select(pParse, p, SRT_Union, tab2, 0, 0, 0, aff); 150182c3d636Sdrh p->pPrior = pPrior; 15027b58daeaSdrh p->nLimit = nLimit; 15037b58daeaSdrh p->nOffset = nOffset; 150484ac9d02Sdanielk1977 if( rc ){ 150584ac9d02Sdanielk1977 goto multi_select_end; 150684ac9d02Sdanielk1977 } 1507d8bc7086Sdrh 1508d8bc7086Sdrh /* Generate code to take the intersection of the two temporary 1509d8bc7086Sdrh ** tables. 1510d8bc7086Sdrh */ 151182c3d636Sdrh assert( p->pEList ); 151241202ccaSdrh if( eDest==SRT_Callback ){ 15136a3ea0e6Sdrh generateColumnNames(pParse, 0, p->pEList); 15146a3ea0e6Sdrh generateColumnTypes(pParse, p->pSrc, p->pEList); 151541202ccaSdrh } 15164adee20fSdanielk1977 iBreak = sqlite3VdbeMakeLabel(v); 15174adee20fSdanielk1977 iCont = sqlite3VdbeMakeLabel(v); 15184adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Rewind, tab1, iBreak); 15197b58daeaSdrh computeLimitRegisters(pParse, p); 15204adee20fSdanielk1977 iStart = sqlite3VdbeAddOp(v, OP_FullKey, tab1, 0); 15214adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_NotFound, tab2, iCont); 152238640e15Sdrh rc = selectInnerLoop(pParse, p, p->pEList, tab1, p->pEList->nExpr, 1523d8bc7086Sdrh p->pOrderBy, -1, eDest, iParm, 152484ac9d02Sdanielk1977 iCont, iBreak, 0); 152584ac9d02Sdanielk1977 if( rc ){ 152684ac9d02Sdanielk1977 rc = 1; 152784ac9d02Sdanielk1977 goto multi_select_end; 152884ac9d02Sdanielk1977 } 15294adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, iCont); 15304adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Next, tab1, iStart); 15314adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, iBreak); 15324adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Close, tab2, 0); 15334adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Close, tab1, 0); 1534d8bc7086Sdrh if( p->pOrderBy ){ 1535*ffbc3088Sdrh generateSortTail(pParse, p, v, p->pEList->nExpr, eDest, iParm); 1536d8bc7086Sdrh } 153782c3d636Sdrh break; 153882c3d636Sdrh } 153982c3d636Sdrh } 154082c3d636Sdrh assert( p->pEList && pPrior->pEList ); 154182c3d636Sdrh if( p->pEList->nExpr!=pPrior->pEList->nExpr ){ 15424adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "SELECTs to the left and right of %s" 1543da93d238Sdrh " do not have the same number of result columns", selectOpName(p->op)); 154484ac9d02Sdanielk1977 rc = 1; 154584ac9d02Sdanielk1977 goto multi_select_end; 15462282792aSdrh } 154784ac9d02Sdanielk1977 154884ac9d02Sdanielk1977 multi_select_end: 1549d3d39e93Sdrh #if 0 /*** NOT USED ****/ 155084ac9d02Sdanielk1977 if( affStr ){ 155184ac9d02Sdanielk1977 if( rc!=SQLITE_OK ){ 155284ac9d02Sdanielk1977 sqliteFree(affStr); 155384ac9d02Sdanielk1977 }else{ 155484ac9d02Sdanielk1977 multiSelectAffinity(p, affStr); 155584ac9d02Sdanielk1977 sqlite3VdbeOp3(v, OP_Noop, 0, 0, affStr, P3_DYNAMIC); 155684ac9d02Sdanielk1977 } 155784ac9d02Sdanielk1977 } 1558d3d39e93Sdrh #endif 155984ac9d02Sdanielk1977 return rc; 15602282792aSdrh } 15612282792aSdrh 15622282792aSdrh /* 1563832508b7Sdrh ** Scan through the expression pExpr. Replace every reference to 15646a3ea0e6Sdrh ** a column in table number iTable with a copy of the iColumn-th 156584e59207Sdrh ** entry in pEList. (But leave references to the ROWID column 15666a3ea0e6Sdrh ** unchanged.) 1567832508b7Sdrh ** 1568832508b7Sdrh ** This routine is part of the flattening procedure. A subquery 1569832508b7Sdrh ** whose result set is defined by pEList appears as entry in the 1570832508b7Sdrh ** FROM clause of a SELECT such that the VDBE cursor assigned to that 1571832508b7Sdrh ** FORM clause entry is iTable. This routine make the necessary 1572832508b7Sdrh ** changes to pExpr so that it refers directly to the source table 1573832508b7Sdrh ** of the subquery rather the result set of the subquery. 1574832508b7Sdrh */ 15756a3ea0e6Sdrh static void substExprList(ExprList*,int,ExprList*); /* Forward Decl */ 15766a3ea0e6Sdrh static void substExpr(Expr *pExpr, int iTable, ExprList *pEList){ 1577832508b7Sdrh if( pExpr==0 ) return; 157850350a15Sdrh if( pExpr->op==TK_COLUMN && pExpr->iTable==iTable ){ 157950350a15Sdrh if( pExpr->iColumn<0 ){ 158050350a15Sdrh pExpr->op = TK_NULL; 158150350a15Sdrh }else{ 1582832508b7Sdrh Expr *pNew; 158384e59207Sdrh assert( pEList!=0 && pExpr->iColumn<pEList->nExpr ); 1584832508b7Sdrh assert( pExpr->pLeft==0 && pExpr->pRight==0 && pExpr->pList==0 ); 1585832508b7Sdrh pNew = pEList->a[pExpr->iColumn].pExpr; 1586832508b7Sdrh assert( pNew!=0 ); 1587832508b7Sdrh pExpr->op = pNew->op; 1588d94a6698Sdrh assert( pExpr->pLeft==0 ); 15894adee20fSdanielk1977 pExpr->pLeft = sqlite3ExprDup(pNew->pLeft); 1590d94a6698Sdrh assert( pExpr->pRight==0 ); 15914adee20fSdanielk1977 pExpr->pRight = sqlite3ExprDup(pNew->pRight); 1592d94a6698Sdrh assert( pExpr->pList==0 ); 15934adee20fSdanielk1977 pExpr->pList = sqlite3ExprListDup(pNew->pList); 1594832508b7Sdrh pExpr->iTable = pNew->iTable; 1595832508b7Sdrh pExpr->iColumn = pNew->iColumn; 1596832508b7Sdrh pExpr->iAgg = pNew->iAgg; 15974adee20fSdanielk1977 sqlite3TokenCopy(&pExpr->token, &pNew->token); 15984adee20fSdanielk1977 sqlite3TokenCopy(&pExpr->span, &pNew->span); 159950350a15Sdrh } 1600832508b7Sdrh }else{ 16016a3ea0e6Sdrh substExpr(pExpr->pLeft, iTable, pEList); 16026a3ea0e6Sdrh substExpr(pExpr->pRight, iTable, pEList); 16036a3ea0e6Sdrh substExprList(pExpr->pList, iTable, pEList); 1604832508b7Sdrh } 1605832508b7Sdrh } 1606832508b7Sdrh static void 16076a3ea0e6Sdrh substExprList(ExprList *pList, int iTable, ExprList *pEList){ 1608832508b7Sdrh int i; 1609832508b7Sdrh if( pList==0 ) return; 1610832508b7Sdrh for(i=0; i<pList->nExpr; i++){ 16116a3ea0e6Sdrh substExpr(pList->a[i].pExpr, iTable, pEList); 1612832508b7Sdrh } 1613832508b7Sdrh } 1614832508b7Sdrh 1615832508b7Sdrh /* 16161350b030Sdrh ** This routine attempts to flatten subqueries in order to speed 16171350b030Sdrh ** execution. It returns 1 if it makes changes and 0 if no flattening 16181350b030Sdrh ** occurs. 16191350b030Sdrh ** 16201350b030Sdrh ** To understand the concept of flattening, consider the following 16211350b030Sdrh ** query: 16221350b030Sdrh ** 16231350b030Sdrh ** SELECT a FROM (SELECT x+y AS a FROM t1 WHERE z<100) WHERE a>5 16241350b030Sdrh ** 16251350b030Sdrh ** The default way of implementing this query is to execute the 16261350b030Sdrh ** subquery first and store the results in a temporary table, then 16271350b030Sdrh ** run the outer query on that temporary table. This requires two 16281350b030Sdrh ** passes over the data. Furthermore, because the temporary table 16291350b030Sdrh ** has no indices, the WHERE clause on the outer query cannot be 1630832508b7Sdrh ** optimized. 16311350b030Sdrh ** 1632832508b7Sdrh ** This routine attempts to rewrite queries such as the above into 16331350b030Sdrh ** a single flat select, like this: 16341350b030Sdrh ** 16351350b030Sdrh ** SELECT x+y AS a FROM t1 WHERE z<100 AND a>5 16361350b030Sdrh ** 16371350b030Sdrh ** The code generated for this simpification gives the same result 1638832508b7Sdrh ** but only has to scan the data once. And because indices might 1639832508b7Sdrh ** exist on the table t1, a complete scan of the data might be 1640832508b7Sdrh ** avoided. 16411350b030Sdrh ** 1642832508b7Sdrh ** Flattening is only attempted if all of the following are true: 16431350b030Sdrh ** 1644832508b7Sdrh ** (1) The subquery and the outer query do not both use aggregates. 16451350b030Sdrh ** 1646832508b7Sdrh ** (2) The subquery is not an aggregate or the outer query is not a join. 1647832508b7Sdrh ** 16488af4d3acSdrh ** (3) The subquery is not the right operand of a left outer join, or 16498af4d3acSdrh ** the subquery is not itself a join. (Ticket #306) 1650832508b7Sdrh ** 1651832508b7Sdrh ** (4) The subquery is not DISTINCT or the outer query is not a join. 1652832508b7Sdrh ** 1653832508b7Sdrh ** (5) The subquery is not DISTINCT or the outer query does not use 1654832508b7Sdrh ** aggregates. 1655832508b7Sdrh ** 1656832508b7Sdrh ** (6) The subquery does not use aggregates or the outer query is not 1657832508b7Sdrh ** DISTINCT. 1658832508b7Sdrh ** 165908192d5fSdrh ** (7) The subquery has a FROM clause. 166008192d5fSdrh ** 1661df199a25Sdrh ** (8) The subquery does not use LIMIT or the outer query is not a join. 1662df199a25Sdrh ** 1663df199a25Sdrh ** (9) The subquery does not use LIMIT or the outer query does not use 1664df199a25Sdrh ** aggregates. 1665df199a25Sdrh ** 1666df199a25Sdrh ** (10) The subquery does not use aggregates or the outer query does not 1667df199a25Sdrh ** use LIMIT. 1668df199a25Sdrh ** 1669174b6195Sdrh ** (11) The subquery and the outer query do not both have ORDER BY clauses. 1670174b6195Sdrh ** 16713fc673e6Sdrh ** (12) The subquery is not the right term of a LEFT OUTER JOIN or the 16723fc673e6Sdrh ** subquery has no WHERE clause. (added by ticket #350) 16733fc673e6Sdrh ** 1674832508b7Sdrh ** In this routine, the "p" parameter is a pointer to the outer query. 1675832508b7Sdrh ** The subquery is p->pSrc->a[iFrom]. isAgg is true if the outer query 1676832508b7Sdrh ** uses aggregates and subqueryIsAgg is true if the subquery uses aggregates. 1677832508b7Sdrh ** 1678665de47aSdrh ** If flattening is not attempted, this routine is a no-op and returns 0. 1679832508b7Sdrh ** If flattening is attempted this routine returns 1. 1680832508b7Sdrh ** 1681832508b7Sdrh ** All of the expression analysis must occur on both the outer query and 1682832508b7Sdrh ** the subquery before this routine runs. 16831350b030Sdrh */ 16848c74a8caSdrh static int flattenSubquery( 16858c74a8caSdrh Parse *pParse, /* The parsing context */ 16868c74a8caSdrh Select *p, /* The parent or outer SELECT statement */ 16878c74a8caSdrh int iFrom, /* Index in p->pSrc->a[] of the inner subquery */ 16888c74a8caSdrh int isAgg, /* True if outer SELECT uses aggregate functions */ 16898c74a8caSdrh int subqueryIsAgg /* True if the subquery uses aggregate functions */ 16908c74a8caSdrh ){ 16910bb28106Sdrh Select *pSub; /* The inner query or "subquery" */ 1692ad3cab52Sdrh SrcList *pSrc; /* The FROM clause of the outer query */ 1693ad3cab52Sdrh SrcList *pSubSrc; /* The FROM clause of the subquery */ 16940bb28106Sdrh ExprList *pList; /* The result set of the outer query */ 16956a3ea0e6Sdrh int iParent; /* VDBE cursor number of the pSub result set temp table */ 1696832508b7Sdrh int i; 1697832508b7Sdrh Expr *pWhere; 16981350b030Sdrh 1699832508b7Sdrh /* Check to see if flattening is permitted. Return 0 if not. 1700832508b7Sdrh */ 1701832508b7Sdrh if( p==0 ) return 0; 1702832508b7Sdrh pSrc = p->pSrc; 1703ad3cab52Sdrh assert( pSrc && iFrom>=0 && iFrom<pSrc->nSrc ); 1704832508b7Sdrh pSub = pSrc->a[iFrom].pSelect; 1705832508b7Sdrh assert( pSub!=0 ); 1706832508b7Sdrh if( isAgg && subqueryIsAgg ) return 0; 1707ad3cab52Sdrh if( subqueryIsAgg && pSrc->nSrc>1 ) return 0; 1708832508b7Sdrh pSubSrc = pSub->pSrc; 1709832508b7Sdrh assert( pSubSrc ); 1710c31c2eb8Sdrh if( pSubSrc->nSrc==0 ) return 0; 1711df199a25Sdrh if( (pSub->isDistinct || pSub->nLimit>=0) && (pSrc->nSrc>1 || isAgg) ){ 1712df199a25Sdrh return 0; 1713df199a25Sdrh } 1714d11d382cSdrh if( (p->isDistinct || p->nLimit>=0) && subqueryIsAgg ) return 0; 1715174b6195Sdrh if( p->pOrderBy && pSub->pOrderBy ) return 0; 1716832508b7Sdrh 17178af4d3acSdrh /* Restriction 3: If the subquery is a join, make sure the subquery is 17188af4d3acSdrh ** not used as the right operand of an outer join. Examples of why this 17198af4d3acSdrh ** is not allowed: 17208af4d3acSdrh ** 17218af4d3acSdrh ** t1 LEFT OUTER JOIN (t2 JOIN t3) 17228af4d3acSdrh ** 17238af4d3acSdrh ** If we flatten the above, we would get 17248af4d3acSdrh ** 17258af4d3acSdrh ** (t1 LEFT OUTER JOIN t2) JOIN t3 17268af4d3acSdrh ** 17278af4d3acSdrh ** which is not at all the same thing. 17288af4d3acSdrh */ 17298af4d3acSdrh if( pSubSrc->nSrc>1 && iFrom>0 && (pSrc->a[iFrom-1].jointype & JT_OUTER)!=0 ){ 17308af4d3acSdrh return 0; 17318af4d3acSdrh } 17328af4d3acSdrh 17333fc673e6Sdrh /* Restriction 12: If the subquery is the right operand of a left outer 17343fc673e6Sdrh ** join, make sure the subquery has no WHERE clause. 17353fc673e6Sdrh ** An examples of why this is not allowed: 17363fc673e6Sdrh ** 17373fc673e6Sdrh ** t1 LEFT OUTER JOIN (SELECT * FROM t2 WHERE t2.x>0) 17383fc673e6Sdrh ** 17393fc673e6Sdrh ** If we flatten the above, we would get 17403fc673e6Sdrh ** 17413fc673e6Sdrh ** (t1 LEFT OUTER JOIN t2) WHERE t2.x>0 17423fc673e6Sdrh ** 17433fc673e6Sdrh ** But the t2.x>0 test will always fail on a NULL row of t2, which 17443fc673e6Sdrh ** effectively converts the OUTER JOIN into an INNER JOIN. 17453fc673e6Sdrh */ 17463fc673e6Sdrh if( iFrom>0 && (pSrc->a[iFrom-1].jointype & JT_OUTER)!=0 17473fc673e6Sdrh && pSub->pWhere!=0 ){ 17483fc673e6Sdrh return 0; 17493fc673e6Sdrh } 17503fc673e6Sdrh 17510bb28106Sdrh /* If we reach this point, it means flattening is permitted for the 175263eb5f29Sdrh ** iFrom-th entry of the FROM clause in the outer query. 1753832508b7Sdrh */ 1754c31c2eb8Sdrh 1755c31c2eb8Sdrh /* Move all of the FROM elements of the subquery into the 1756c31c2eb8Sdrh ** the FROM clause of the outer query. Before doing this, remember 1757c31c2eb8Sdrh ** the cursor number for the original outer query FROM element in 1758c31c2eb8Sdrh ** iParent. The iParent cursor will never be used. Subsequent code 1759c31c2eb8Sdrh ** will scan expressions looking for iParent references and replace 1760c31c2eb8Sdrh ** those references with expressions that resolve to the subquery FROM 1761c31c2eb8Sdrh ** elements we are now copying in. 1762c31c2eb8Sdrh */ 17636a3ea0e6Sdrh iParent = pSrc->a[iFrom].iCursor; 1764c31c2eb8Sdrh { 1765c31c2eb8Sdrh int nSubSrc = pSubSrc->nSrc; 17668af4d3acSdrh int jointype = pSrc->a[iFrom].jointype; 1767c31c2eb8Sdrh 1768c31c2eb8Sdrh if( pSrc->a[iFrom].pTab && pSrc->a[iFrom].pTab->isTransient ){ 17694adee20fSdanielk1977 sqlite3DeleteTable(0, pSrc->a[iFrom].pTab); 1770c31c2eb8Sdrh } 1771f26e09c8Sdrh sqliteFree(pSrc->a[iFrom].zDatabase); 1772c31c2eb8Sdrh sqliteFree(pSrc->a[iFrom].zName); 1773c31c2eb8Sdrh sqliteFree(pSrc->a[iFrom].zAlias); 1774c31c2eb8Sdrh if( nSubSrc>1 ){ 1775c31c2eb8Sdrh int extra = nSubSrc - 1; 1776c31c2eb8Sdrh for(i=1; i<nSubSrc; i++){ 17774adee20fSdanielk1977 pSrc = sqlite3SrcListAppend(pSrc, 0, 0); 1778c31c2eb8Sdrh } 1779c31c2eb8Sdrh p->pSrc = pSrc; 1780c31c2eb8Sdrh for(i=pSrc->nSrc-1; i-extra>=iFrom; i--){ 1781c31c2eb8Sdrh pSrc->a[i] = pSrc->a[i-extra]; 1782c31c2eb8Sdrh } 1783c31c2eb8Sdrh } 1784c31c2eb8Sdrh for(i=0; i<nSubSrc; i++){ 1785c31c2eb8Sdrh pSrc->a[i+iFrom] = pSubSrc->a[i]; 1786c31c2eb8Sdrh memset(&pSubSrc->a[i], 0, sizeof(pSubSrc->a[i])); 1787c31c2eb8Sdrh } 17888af4d3acSdrh pSrc->a[iFrom+nSubSrc-1].jointype = jointype; 1789c31c2eb8Sdrh } 1790c31c2eb8Sdrh 1791c31c2eb8Sdrh /* Now begin substituting subquery result set expressions for 1792c31c2eb8Sdrh ** references to the iParent in the outer query. 1793c31c2eb8Sdrh ** 1794c31c2eb8Sdrh ** Example: 1795c31c2eb8Sdrh ** 1796c31c2eb8Sdrh ** SELECT a+5, b*10 FROM (SELECT x*3 AS a, y+10 AS b FROM t1) WHERE a>b; 1797c31c2eb8Sdrh ** \ \_____________ subquery __________/ / 1798c31c2eb8Sdrh ** \_____________________ outer query ______________________________/ 1799c31c2eb8Sdrh ** 1800c31c2eb8Sdrh ** We look at every expression in the outer query and every place we see 1801c31c2eb8Sdrh ** "a" we substitute "x*3" and every place we see "b" we substitute "y+10". 1802c31c2eb8Sdrh */ 18036a3ea0e6Sdrh substExprList(p->pEList, iParent, pSub->pEList); 1804832508b7Sdrh pList = p->pEList; 1805832508b7Sdrh for(i=0; i<pList->nExpr; i++){ 18066977fea8Sdrh Expr *pExpr; 18076977fea8Sdrh if( pList->a[i].zName==0 && (pExpr = pList->a[i].pExpr)->span.z!=0 ){ 18086977fea8Sdrh pList->a[i].zName = sqliteStrNDup(pExpr->span.z, pExpr->span.n); 1809832508b7Sdrh } 1810832508b7Sdrh } 18111b2e0329Sdrh if( isAgg ){ 18126a3ea0e6Sdrh substExprList(p->pGroupBy, iParent, pSub->pEList); 18136a3ea0e6Sdrh substExpr(p->pHaving, iParent, pSub->pEList); 18141b2e0329Sdrh } 1815174b6195Sdrh if( pSub->pOrderBy ){ 1816174b6195Sdrh assert( p->pOrderBy==0 ); 1817174b6195Sdrh p->pOrderBy = pSub->pOrderBy; 1818174b6195Sdrh pSub->pOrderBy = 0; 1819174b6195Sdrh }else if( p->pOrderBy ){ 18206a3ea0e6Sdrh substExprList(p->pOrderBy, iParent, pSub->pEList); 1821174b6195Sdrh } 1822832508b7Sdrh if( pSub->pWhere ){ 18234adee20fSdanielk1977 pWhere = sqlite3ExprDup(pSub->pWhere); 1824832508b7Sdrh }else{ 1825832508b7Sdrh pWhere = 0; 1826832508b7Sdrh } 1827832508b7Sdrh if( subqueryIsAgg ){ 1828832508b7Sdrh assert( p->pHaving==0 ); 18291b2e0329Sdrh p->pHaving = p->pWhere; 18301b2e0329Sdrh p->pWhere = pWhere; 18316a3ea0e6Sdrh substExpr(p->pHaving, iParent, pSub->pEList); 18321b2e0329Sdrh if( pSub->pHaving ){ 18334adee20fSdanielk1977 Expr *pHaving = sqlite3ExprDup(pSub->pHaving); 18341b2e0329Sdrh if( p->pHaving ){ 18354adee20fSdanielk1977 p->pHaving = sqlite3Expr(TK_AND, p->pHaving, pHaving, 0); 18361b2e0329Sdrh }else{ 18371b2e0329Sdrh p->pHaving = pHaving; 18381b2e0329Sdrh } 18391b2e0329Sdrh } 18401b2e0329Sdrh assert( p->pGroupBy==0 ); 18414adee20fSdanielk1977 p->pGroupBy = sqlite3ExprListDup(pSub->pGroupBy); 1842832508b7Sdrh }else if( p->pWhere==0 ){ 1843832508b7Sdrh p->pWhere = pWhere; 1844832508b7Sdrh }else{ 18456a3ea0e6Sdrh substExpr(p->pWhere, iParent, pSub->pEList); 1846832508b7Sdrh if( pWhere ){ 18474adee20fSdanielk1977 p->pWhere = sqlite3Expr(TK_AND, p->pWhere, pWhere, 0); 1848832508b7Sdrh } 1849832508b7Sdrh } 1850c31c2eb8Sdrh 1851c31c2eb8Sdrh /* The flattened query is distinct if either the inner or the 1852c31c2eb8Sdrh ** outer query is distinct. 1853c31c2eb8Sdrh */ 1854832508b7Sdrh p->isDistinct = p->isDistinct || pSub->isDistinct; 18558c74a8caSdrh 1856c31c2eb8Sdrh /* Transfer the limit expression from the subquery to the outer 1857c31c2eb8Sdrh ** query. 1858c31c2eb8Sdrh */ 1859df199a25Sdrh if( pSub->nLimit>=0 ){ 1860df199a25Sdrh if( p->nLimit<0 ){ 1861df199a25Sdrh p->nLimit = pSub->nLimit; 1862df199a25Sdrh }else if( p->nLimit+p->nOffset > pSub->nLimit+pSub->nOffset ){ 1863df199a25Sdrh p->nLimit = pSub->nLimit + pSub->nOffset - p->nOffset; 1864df199a25Sdrh } 1865df199a25Sdrh } 1866df199a25Sdrh p->nOffset += pSub->nOffset; 18678c74a8caSdrh 1868c31c2eb8Sdrh /* Finially, delete what is left of the subquery and return 1869c31c2eb8Sdrh ** success. 1870c31c2eb8Sdrh */ 18714adee20fSdanielk1977 sqlite3SelectDelete(pSub); 1872832508b7Sdrh return 1; 18731350b030Sdrh } 18741350b030Sdrh 18751350b030Sdrh /* 18769562b551Sdrh ** Analyze the SELECT statement passed in as an argument to see if it 18779562b551Sdrh ** is a simple min() or max() query. If it is and this query can be 18789562b551Sdrh ** satisfied using a single seek to the beginning or end of an index, 1879e78e8284Sdrh ** then generate the code for this SELECT and return 1. If this is not a 18809562b551Sdrh ** simple min() or max() query, then return 0; 18819562b551Sdrh ** 18829562b551Sdrh ** A simply min() or max() query looks like this: 18839562b551Sdrh ** 18849562b551Sdrh ** SELECT min(a) FROM table; 18859562b551Sdrh ** SELECT max(a) FROM table; 18869562b551Sdrh ** 18879562b551Sdrh ** The query may have only a single table in its FROM argument. There 18889562b551Sdrh ** can be no GROUP BY or HAVING or WHERE clauses. The result set must 18899562b551Sdrh ** be the min() or max() of a single column of the table. The column 18909562b551Sdrh ** in the min() or max() function must be indexed. 18919562b551Sdrh ** 18924adee20fSdanielk1977 ** The parameters to this routine are the same as for sqlite3Select(). 18939562b551Sdrh ** See the header comment on that routine for additional information. 18949562b551Sdrh */ 18959562b551Sdrh static int simpleMinMaxQuery(Parse *pParse, Select *p, int eDest, int iParm){ 18969562b551Sdrh Expr *pExpr; 18979562b551Sdrh int iCol; 18989562b551Sdrh Table *pTab; 18999562b551Sdrh Index *pIdx; 19009562b551Sdrh int base; 19019562b551Sdrh Vdbe *v; 19029562b551Sdrh int seekOp; 19039562b551Sdrh int cont; 19046e17529eSdrh ExprList *pEList, *pList, eList; 19059562b551Sdrh struct ExprList_item eListItem; 19066e17529eSdrh SrcList *pSrc; 19076e17529eSdrh 19089562b551Sdrh 19099562b551Sdrh /* Check to see if this query is a simple min() or max() query. Return 19109562b551Sdrh ** zero if it is not. 19119562b551Sdrh */ 19129562b551Sdrh if( p->pGroupBy || p->pHaving || p->pWhere ) return 0; 19136e17529eSdrh pSrc = p->pSrc; 19146e17529eSdrh if( pSrc->nSrc!=1 ) return 0; 19156e17529eSdrh pEList = p->pEList; 19166e17529eSdrh if( pEList->nExpr!=1 ) return 0; 19176e17529eSdrh pExpr = pEList->a[0].pExpr; 19189562b551Sdrh if( pExpr->op!=TK_AGG_FUNCTION ) return 0; 19196e17529eSdrh pList = pExpr->pList; 19206e17529eSdrh if( pList==0 || pList->nExpr!=1 ) return 0; 19216977fea8Sdrh if( pExpr->token.n!=3 ) return 0; 19224adee20fSdanielk1977 if( sqlite3StrNICmp(pExpr->token.z,"min",3)==0 ){ 19230bce8354Sdrh seekOp = OP_Rewind; 19244adee20fSdanielk1977 }else if( sqlite3StrNICmp(pExpr->token.z,"max",3)==0 ){ 19250bce8354Sdrh seekOp = OP_Last; 19260bce8354Sdrh }else{ 19270bce8354Sdrh return 0; 19280bce8354Sdrh } 19296e17529eSdrh pExpr = pList->a[0].pExpr; 19309562b551Sdrh if( pExpr->op!=TK_COLUMN ) return 0; 19319562b551Sdrh iCol = pExpr->iColumn; 19326e17529eSdrh pTab = pSrc->a[0].pTab; 19339562b551Sdrh 19349562b551Sdrh /* If we get to here, it means the query is of the correct form. 193517f71934Sdrh ** Check to make sure we have an index and make pIdx point to the 193617f71934Sdrh ** appropriate index. If the min() or max() is on an INTEGER PRIMARY 193717f71934Sdrh ** key column, no index is necessary so set pIdx to NULL. If no 193817f71934Sdrh ** usable index is found, return 0. 19399562b551Sdrh */ 19409562b551Sdrh if( iCol<0 ){ 19419562b551Sdrh pIdx = 0; 19429562b551Sdrh }else{ 19439562b551Sdrh for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){ 19449562b551Sdrh assert( pIdx->nColumn>=1 ); 19459562b551Sdrh if( pIdx->aiColumn[0]==iCol ) break; 19469562b551Sdrh } 19479562b551Sdrh if( pIdx==0 ) return 0; 19489562b551Sdrh } 19499562b551Sdrh 1950e5f50722Sdrh /* Identify column types if we will be using the callback. This 19519562b551Sdrh ** step is skipped if the output is going to a table or a memory cell. 1952e5f50722Sdrh ** The column names have already been generated in the calling function. 19539562b551Sdrh */ 19544adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 19559562b551Sdrh if( v==0 ) return 0; 19569562b551Sdrh if( eDest==SRT_Callback ){ 19576a3ea0e6Sdrh generateColumnTypes(pParse, p->pSrc, p->pEList); 19589562b551Sdrh } 19599562b551Sdrh 19600c37e630Sdrh /* If the output is destined for a temporary table, open that table. 19610c37e630Sdrh */ 19620c37e630Sdrh if( eDest==SRT_TempTable ){ 19634adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_OpenTemp, iParm, 0); 1964b4964b72Sdanielk1977 sqlite3VdbeAddOp(v, OP_SetNumColumns, iParm, 1); 19650c37e630Sdrh } 19660c37e630Sdrh 196717f71934Sdrh /* Generating code to find the min or the max. Basically all we have 196817f71934Sdrh ** to do is find the first or the last entry in the chosen index. If 196917f71934Sdrh ** the min() or max() is on the INTEGER PRIMARY KEY, then find the first 197017f71934Sdrh ** or last entry in the main table. 19719562b551Sdrh */ 19724adee20fSdanielk1977 sqlite3CodeVerifySchema(pParse, pTab->iDb); 19736e17529eSdrh base = pSrc->a[0].iCursor; 19747b58daeaSdrh computeLimitRegisters(pParse, p); 19756e17529eSdrh if( pSrc->a[0].pSelect==0 ){ 19764adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Integer, pTab->iDb, 0); 1977d3d39e93Sdrh sqlite3VdbeAddOp(v, OP_OpenRead, base, pTab->tnum); 1978b4964b72Sdanielk1977 sqlite3VdbeAddOp(v, OP_SetNumColumns, base, pTab->nCol); 19796e17529eSdrh } 19804adee20fSdanielk1977 cont = sqlite3VdbeMakeLabel(v); 19819562b551Sdrh if( pIdx==0 ){ 19824adee20fSdanielk1977 sqlite3VdbeAddOp(v, seekOp, base, 0); 19839562b551Sdrh }else{ 19844adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Integer, pIdx->iDb, 0); 1985d3d39e93Sdrh sqlite3VdbeOp3(v, OP_OpenRead, base+1, pIdx->tnum, 1986d3d39e93Sdrh (char*)&pIdx->keyInfo, P3_KEYINFO); 19874adee20fSdanielk1977 sqlite3VdbeAddOp(v, seekOp, base+1, 0); 19884adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_IdxRecno, base+1, 0); 19894adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Close, base+1, 0); 19907cf6e4deSdrh sqlite3VdbeAddOp(v, OP_MoveGe, base, 0); 19919562b551Sdrh } 19925cf8e8c7Sdrh eList.nExpr = 1; 19935cf8e8c7Sdrh memset(&eListItem, 0, sizeof(eListItem)); 19945cf8e8c7Sdrh eList.a = &eListItem; 19955cf8e8c7Sdrh eList.a[0].pExpr = pExpr; 199684ac9d02Sdanielk1977 selectInnerLoop(pParse, p, &eList, 0, 0, 0, -1, eDest, iParm, cont, cont, 0); 19974adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, cont); 19984adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Close, base, 0); 19996e17529eSdrh 20009562b551Sdrh return 1; 20019562b551Sdrh } 20029562b551Sdrh 20039562b551Sdrh /* 20049bb61fe7Sdrh ** Generate code for the given SELECT statement. 20059bb61fe7Sdrh ** 2006fef5208cSdrh ** The results are distributed in various ways depending on the 2007fef5208cSdrh ** value of eDest and iParm. 2008fef5208cSdrh ** 2009fef5208cSdrh ** eDest Value Result 2010fef5208cSdrh ** ------------ ------------------------------------------- 2011fef5208cSdrh ** SRT_Callback Invoke the callback for each row of the result. 2012fef5208cSdrh ** 2013fef5208cSdrh ** SRT_Mem Store first result in memory cell iParm 2014fef5208cSdrh ** 2015e014a838Sdanielk1977 ** SRT_Set Store results as keys of table iParm. 2016fef5208cSdrh ** 201782c3d636Sdrh ** SRT_Union Store results as a key in a temporary table iParm 201882c3d636Sdrh ** 20194b11c6d3Sjplyon ** SRT_Except Remove results from the temporary table iParm. 2020c4a3c779Sdrh ** 2021c4a3c779Sdrh ** SRT_Table Store results in temporary table iParm 20229bb61fe7Sdrh ** 2023e78e8284Sdrh ** The table above is incomplete. Additional eDist value have be added 2024e78e8284Sdrh ** since this comment was written. See the selectInnerLoop() function for 2025e78e8284Sdrh ** a complete listing of the allowed values of eDest and their meanings. 2026e78e8284Sdrh ** 20279bb61fe7Sdrh ** This routine returns the number of errors. If any errors are 20289bb61fe7Sdrh ** encountered, then an appropriate error message is left in 20299bb61fe7Sdrh ** pParse->zErrMsg. 20309bb61fe7Sdrh ** 20319bb61fe7Sdrh ** This routine does NOT free the Select structure passed in. The 20329bb61fe7Sdrh ** calling function needs to do that. 20331b2e0329Sdrh ** 20341b2e0329Sdrh ** The pParent, parentTab, and *pParentAgg fields are filled in if this 20351b2e0329Sdrh ** SELECT is a subquery. This routine may try to combine this SELECT 20361b2e0329Sdrh ** with its parent to form a single flat query. In so doing, it might 20371b2e0329Sdrh ** change the parent query from a non-aggregate to an aggregate query. 20381b2e0329Sdrh ** For that reason, the pParentAgg flag is passed as a pointer, so it 20391b2e0329Sdrh ** can be changed. 2040e78e8284Sdrh ** 2041e78e8284Sdrh ** Example 1: The meaning of the pParent parameter. 2042e78e8284Sdrh ** 2043e78e8284Sdrh ** SELECT * FROM t1 JOIN (SELECT x, count(*) FROM t2) JOIN t3; 2044e78e8284Sdrh ** \ \_______ subquery _______/ / 2045e78e8284Sdrh ** \ / 2046e78e8284Sdrh ** \____________________ outer query ___________________/ 2047e78e8284Sdrh ** 2048e78e8284Sdrh ** This routine is called for the outer query first. For that call, 2049e78e8284Sdrh ** pParent will be NULL. During the processing of the outer query, this 2050e78e8284Sdrh ** routine is called recursively to handle the subquery. For the recursive 2051e78e8284Sdrh ** call, pParent will point to the outer query. Because the subquery is 2052e78e8284Sdrh ** the second element in a three-way join, the parentTab parameter will 2053e78e8284Sdrh ** be 1 (the 2nd value of a 0-indexed array.) 20549bb61fe7Sdrh */ 20554adee20fSdanielk1977 int sqlite3Select( 2056cce7d176Sdrh Parse *pParse, /* The parser context */ 20579bb61fe7Sdrh Select *p, /* The SELECT statement being coded. */ 2058e78e8284Sdrh int eDest, /* How to dispose of the results */ 2059e78e8284Sdrh int iParm, /* A parameter used by the eDest disposal method */ 2060832508b7Sdrh Select *pParent, /* Another SELECT for which this is a sub-query */ 2061832508b7Sdrh int parentTab, /* Index in pParent->pSrc of this query */ 206284ac9d02Sdanielk1977 int *pParentAgg, /* True if pParent uses aggregate functions */ 206384ac9d02Sdanielk1977 char *aff /* If eDest is SRT_Union, the affinity string */ 2064cce7d176Sdrh ){ 2065d8bc7086Sdrh int i; 2066cce7d176Sdrh WhereInfo *pWInfo; 2067cce7d176Sdrh Vdbe *v; 2068cce7d176Sdrh int isAgg = 0; /* True for select lists like "count(*)" */ 2069a2e00042Sdrh ExprList *pEList; /* List of columns to extract. */ 2070ad3cab52Sdrh SrcList *pTabList; /* List of tables to select from */ 20719bb61fe7Sdrh Expr *pWhere; /* The WHERE clause. May be NULL */ 20729bb61fe7Sdrh ExprList *pOrderBy; /* The ORDER BY clause. May be NULL */ 20732282792aSdrh ExprList *pGroupBy; /* The GROUP BY clause. May be NULL */ 20742282792aSdrh Expr *pHaving; /* The HAVING clause. May be NULL */ 207519a775c2Sdrh int isDistinct; /* True if the DISTINCT keyword is present */ 207619a775c2Sdrh int distinct; /* Table to use for the distinct set */ 20771d83f052Sdrh int rc = 1; /* Value to return from this function */ 20789bb61fe7Sdrh 20796f8a503dSdanielk1977 if( sqlite3_malloc_failed || pParse->nErr || p==0 ) return 1; 20804adee20fSdanielk1977 if( sqlite3AuthCheck(pParse, SQLITE_SELECT, 0, 0, 0) ) return 1; 2081daffd0e5Sdrh 208282c3d636Sdrh /* If there is are a sequence of queries, do the earlier ones first. 208382c3d636Sdrh */ 208482c3d636Sdrh if( p->pPrior ){ 208584ac9d02Sdanielk1977 return multiSelect(pParse, p, eDest, iParm, aff); 208682c3d636Sdrh } 208782c3d636Sdrh 208882c3d636Sdrh /* Make local copies of the parameters for this query. 208982c3d636Sdrh */ 20909bb61fe7Sdrh pTabList = p->pSrc; 20919bb61fe7Sdrh pWhere = p->pWhere; 20929bb61fe7Sdrh pOrderBy = p->pOrderBy; 20932282792aSdrh pGroupBy = p->pGroupBy; 20942282792aSdrh pHaving = p->pHaving; 209519a775c2Sdrh isDistinct = p->isDistinct; 20969bb61fe7Sdrh 20976a3ea0e6Sdrh /* Allocate VDBE cursors for each table in the FROM clause 209810e5e3cfSdrh */ 20994adee20fSdanielk1977 sqlite3SrcListAssignCursors(pParse, pTabList); 210010e5e3cfSdrh 21019bb61fe7Sdrh /* 21029bb61fe7Sdrh ** Do not even attempt to generate any code if we have already seen 21039bb61fe7Sdrh ** errors before this routine starts. 21049bb61fe7Sdrh */ 21051d83f052Sdrh if( pParse->nErr>0 ) goto select_end; 2106cce7d176Sdrh 2107e78e8284Sdrh /* Expand any "*" terms in the result set. (For example the "*" in 2108e78e8284Sdrh ** "SELECT * FROM t1") The fillInColumnlist() routine also does some 2109e78e8284Sdrh ** other housekeeping - see the header comment for details. 2110cce7d176Sdrh */ 2111d8bc7086Sdrh if( fillInColumnList(pParse, p) ){ 21121d83f052Sdrh goto select_end; 2113cce7d176Sdrh } 2114ad2d8307Sdrh pWhere = p->pWhere; 2115d8bc7086Sdrh pEList = p->pEList; 21161d83f052Sdrh if( pEList==0 ) goto select_end; 2117cce7d176Sdrh 21182282792aSdrh /* If writing to memory or generating a set 21192282792aSdrh ** only a single column may be output. 212019a775c2Sdrh */ 2121fef5208cSdrh if( (eDest==SRT_Mem || eDest==SRT_Set) && pEList->nExpr>1 ){ 21224adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "only a single result allowed for " 2123da93d238Sdrh "a SELECT that is part of an expression"); 21241d83f052Sdrh goto select_end; 212519a775c2Sdrh } 212619a775c2Sdrh 2127c926afbcSdrh /* ORDER BY is ignored for some destinations. 21282282792aSdrh */ 2129c926afbcSdrh switch( eDest ){ 2130c926afbcSdrh case SRT_Union: 2131c926afbcSdrh case SRT_Except: 2132c926afbcSdrh case SRT_Discard: 2133acd4c695Sdrh pOrderBy = 0; 2134c926afbcSdrh break; 2135c926afbcSdrh default: 2136c926afbcSdrh break; 21372282792aSdrh } 21382282792aSdrh 213910e5e3cfSdrh /* At this point, we should have allocated all the cursors that we 2140832508b7Sdrh ** need to handle subquerys and temporary tables. 214110e5e3cfSdrh ** 2142967e8b73Sdrh ** Resolve the column names and do a semantics check on all the expressions. 21432282792aSdrh */ 21444794b980Sdrh for(i=0; i<pEList->nExpr; i++){ 21454adee20fSdanielk1977 if( sqlite3ExprResolveIds(pParse, pTabList, 0, pEList->a[i].pExpr) ){ 21461d83f052Sdrh goto select_end; 2147cce7d176Sdrh } 21484adee20fSdanielk1977 if( sqlite3ExprCheck(pParse, pEList->a[i].pExpr, 1, &isAgg) ){ 21491d83f052Sdrh goto select_end; 2150cce7d176Sdrh } 2151cce7d176Sdrh } 2152cce7d176Sdrh if( pWhere ){ 21534adee20fSdanielk1977 if( sqlite3ExprResolveIds(pParse, pTabList, pEList, pWhere) ){ 21541d83f052Sdrh goto select_end; 2155cce7d176Sdrh } 21564adee20fSdanielk1977 if( sqlite3ExprCheck(pParse, pWhere, 0, 0) ){ 21571d83f052Sdrh goto select_end; 2158cce7d176Sdrh } 2159cce7d176Sdrh } 2160c66c5a26Sdrh if( pHaving ){ 2161c66c5a26Sdrh if( pGroupBy==0 ){ 21624adee20fSdanielk1977 sqlite3ErrorMsg(pParse, "a GROUP BY clause is required before HAVING"); 2163c66c5a26Sdrh goto select_end; 2164c66c5a26Sdrh } 21654adee20fSdanielk1977 if( sqlite3ExprResolveIds(pParse, pTabList, pEList, pHaving) ){ 2166c66c5a26Sdrh goto select_end; 2167c66c5a26Sdrh } 21684adee20fSdanielk1977 if( sqlite3ExprCheck(pParse, pHaving, 1, &isAgg) ){ 2169c66c5a26Sdrh goto select_end; 2170c66c5a26Sdrh } 2171c66c5a26Sdrh } 2172cce7d176Sdrh if( pOrderBy ){ 2173cce7d176Sdrh for(i=0; i<pOrderBy->nExpr; i++){ 2174e4de1febSdrh int iCol; 217588eee38aSdrh Expr *pE = pOrderBy->a[i].pExpr; 21764adee20fSdanielk1977 if( sqlite3ExprIsInteger(pE, &iCol) && iCol>0 && iCol<=pEList->nExpr ){ 21774adee20fSdanielk1977 sqlite3ExprDelete(pE); 21784adee20fSdanielk1977 pE = pOrderBy->a[i].pExpr = sqlite3ExprDup(pEList->a[iCol-1].pExpr); 217988eee38aSdrh } 21804adee20fSdanielk1977 if( sqlite3ExprResolveIds(pParse, pTabList, pEList, pE) ){ 218188eee38aSdrh goto select_end; 218288eee38aSdrh } 21834adee20fSdanielk1977 if( sqlite3ExprCheck(pParse, pE, isAgg, 0) ){ 218488eee38aSdrh goto select_end; 218588eee38aSdrh } 21864adee20fSdanielk1977 if( sqlite3ExprIsConstant(pE) ){ 21874adee20fSdanielk1977 if( sqlite3ExprIsInteger(pE, &iCol)==0 ){ 21884adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 2189da93d238Sdrh "ORDER BY terms must not be non-integer constants"); 21901d83f052Sdrh goto select_end; 2191e4de1febSdrh }else if( iCol<=0 || iCol>pEList->nExpr ){ 21924adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 2193da93d238Sdrh "ORDER BY column number %d out of range - should be " 2194e4de1febSdrh "between 1 and %d", iCol, pEList->nExpr); 2195e4de1febSdrh goto select_end; 2196e4de1febSdrh } 2197cce7d176Sdrh } 2198cce7d176Sdrh } 2199cce7d176Sdrh } 22002282792aSdrh if( pGroupBy ){ 22012282792aSdrh for(i=0; i<pGroupBy->nExpr; i++){ 220288eee38aSdrh int iCol; 22032282792aSdrh Expr *pE = pGroupBy->a[i].pExpr; 22044adee20fSdanielk1977 if( sqlite3ExprIsInteger(pE, &iCol) && iCol>0 && iCol<=pEList->nExpr ){ 22054adee20fSdanielk1977 sqlite3ExprDelete(pE); 22064adee20fSdanielk1977 pE = pGroupBy->a[i].pExpr = sqlite3ExprDup(pEList->a[iCol-1].pExpr); 22079208643dSdrh } 22084adee20fSdanielk1977 if( sqlite3ExprResolveIds(pParse, pTabList, pEList, pE) ){ 22091d83f052Sdrh goto select_end; 22102282792aSdrh } 22114adee20fSdanielk1977 if( sqlite3ExprCheck(pParse, pE, isAgg, 0) ){ 22121d83f052Sdrh goto select_end; 22132282792aSdrh } 22144adee20fSdanielk1977 if( sqlite3ExprIsConstant(pE) ){ 22154adee20fSdanielk1977 if( sqlite3ExprIsInteger(pE, &iCol)==0 ){ 22164adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 2217da93d238Sdrh "GROUP BY terms must not be non-integer constants"); 221888eee38aSdrh goto select_end; 221988eee38aSdrh }else if( iCol<=0 || iCol>pEList->nExpr ){ 22204adee20fSdanielk1977 sqlite3ErrorMsg(pParse, 2221da93d238Sdrh "GROUP BY column number %d out of range - should be " 222288eee38aSdrh "between 1 and %d", iCol, pEList->nExpr); 222388eee38aSdrh goto select_end; 222488eee38aSdrh } 222588eee38aSdrh } 22262282792aSdrh } 22272282792aSdrh } 2228cce7d176Sdrh 2229d820cb1bSdrh /* Begin generating code. 2230d820cb1bSdrh */ 22314adee20fSdanielk1977 v = sqlite3GetVdbe(pParse); 2232d820cb1bSdrh if( v==0 ) goto select_end; 2233d820cb1bSdrh 2234e78e8284Sdrh /* Identify column names if we will be using them in a callback. This 2235e78e8284Sdrh ** step is skipped if the output is going to some other destination. 22360bb28106Sdrh */ 22370bb28106Sdrh if( eDest==SRT_Callback ){ 22386a3ea0e6Sdrh generateColumnNames(pParse, pTabList, pEList); 22390bb28106Sdrh } 22400bb28106Sdrh 2241d3d39e93Sdrh #if 1 /* I do not think we need the following code any more.... */ 224284ac9d02Sdanielk1977 /* If the destination is SRT_Union, then set the number of columns in 224384ac9d02Sdanielk1977 ** the records that will be inserted into the temporary table. The caller 224484ac9d02Sdanielk1977 ** couldn't do this, in case the select statement is of the form 224584ac9d02Sdanielk1977 ** "SELECT * FROM ....". 224684ac9d02Sdanielk1977 ** 224784ac9d02Sdanielk1977 ** We need to do this before we start inserting records into the 224884ac9d02Sdanielk1977 ** temporary table (which has had OP_KeyAsData executed on it), because 224984ac9d02Sdanielk1977 ** it is required by the key comparison function. So do it now, even 225084ac9d02Sdanielk1977 ** though this means that OP_SetNumColumns may be executed on the same 225184ac9d02Sdanielk1977 ** cursor more than once. 225284ac9d02Sdanielk1977 */ 225384ac9d02Sdanielk1977 if( eDest==SRT_Union ){ 225484ac9d02Sdanielk1977 sqlite3VdbeAddOp(v, OP_SetNumColumns, iParm, pEList->nExpr); 225584ac9d02Sdanielk1977 } 2256d3d39e93Sdrh #endif 225784ac9d02Sdanielk1977 2258d820cb1bSdrh /* Generate code for all sub-queries in the FROM clause 2259d820cb1bSdrh */ 2260ad3cab52Sdrh for(i=0; i<pTabList->nSrc; i++){ 22615cf590c1Sdrh const char *zSavedAuthContext; 2262c31c2eb8Sdrh int needRestoreContext; 2263c31c2eb8Sdrh 2264a76b5dfcSdrh if( pTabList->a[i].pSelect==0 ) continue; 22655cf590c1Sdrh if( pTabList->a[i].zName!=0 ){ 22665cf590c1Sdrh zSavedAuthContext = pParse->zAuthContext; 22675cf590c1Sdrh pParse->zAuthContext = pTabList->a[i].zName; 2268c31c2eb8Sdrh needRestoreContext = 1; 2269c31c2eb8Sdrh }else{ 2270c31c2eb8Sdrh needRestoreContext = 0; 22715cf590c1Sdrh } 22724adee20fSdanielk1977 sqlite3Select(pParse, pTabList->a[i].pSelect, SRT_TempTable, 227384ac9d02Sdanielk1977 pTabList->a[i].iCursor, p, i, &isAgg, 0); 2274c31c2eb8Sdrh if( needRestoreContext ){ 22755cf590c1Sdrh pParse->zAuthContext = zSavedAuthContext; 22765cf590c1Sdrh } 2277832508b7Sdrh pTabList = p->pSrc; 2278832508b7Sdrh pWhere = p->pWhere; 2279c31c2eb8Sdrh if( eDest!=SRT_Union && eDest!=SRT_Except && eDest!=SRT_Discard ){ 2280832508b7Sdrh pOrderBy = p->pOrderBy; 2281acd4c695Sdrh } 2282832508b7Sdrh pGroupBy = p->pGroupBy; 2283832508b7Sdrh pHaving = p->pHaving; 2284832508b7Sdrh isDistinct = p->isDistinct; 22851b2e0329Sdrh } 22861b2e0329Sdrh 22876e17529eSdrh /* Check for the special case of a min() or max() function by itself 22886e17529eSdrh ** in the result set. 22896e17529eSdrh */ 22906e17529eSdrh if( simpleMinMaxQuery(pParse, p, eDest, iParm) ){ 22916e17529eSdrh rc = 0; 22926e17529eSdrh goto select_end; 22936e17529eSdrh } 22946e17529eSdrh 22951b2e0329Sdrh /* Check to see if this is a subquery that can be "flattened" into its parent. 22961b2e0329Sdrh ** If flattening is a possiblity, do so and return immediately. 22971b2e0329Sdrh */ 22981b2e0329Sdrh if( pParent && pParentAgg && 22998c74a8caSdrh flattenSubquery(pParse, pParent, parentTab, *pParentAgg, isAgg) ){ 23001b2e0329Sdrh if( isAgg ) *pParentAgg = 1; 23011b2e0329Sdrh return rc; 23021b2e0329Sdrh } 2303832508b7Sdrh 23047b58daeaSdrh /* Set the limiter. 23057b58daeaSdrh */ 23067b58daeaSdrh computeLimitRegisters(pParse, p); 23077b58daeaSdrh 2308e78e8284Sdrh /* Identify column types if we will be using a callback. This 2309e78e8284Sdrh ** step is skipped if the output is going to a destination other 2310e78e8284Sdrh ** than a callback. 2311e5f50722Sdrh ** 2312e5f50722Sdrh ** We have to do this separately from the creation of column names 2313e5f50722Sdrh ** above because if the pTabList contains views then they will not 2314e5f50722Sdrh ** have been resolved and we will not know the column types until 2315e5f50722Sdrh ** now. 2316fcb78a49Sdrh */ 2317fcb78a49Sdrh if( eDest==SRT_Callback ){ 23186a3ea0e6Sdrh generateColumnTypes(pParse, pTabList, pEList); 2319fcb78a49Sdrh } 2320fcb78a49Sdrh 23212d0794e3Sdrh /* If the output is destined for a temporary table, open that table. 23222d0794e3Sdrh */ 23232d0794e3Sdrh if( eDest==SRT_TempTable ){ 23244adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_OpenTemp, iParm, 0); 2325b4964b72Sdanielk1977 sqlite3VdbeAddOp(v, OP_SetNumColumns, iParm, pEList->nExpr); 23262d0794e3Sdrh } 23272d0794e3Sdrh 23282282792aSdrh /* Do an analysis of aggregate expressions. 2329efb7251dSdrh */ 2330d820cb1bSdrh sqliteAggregateInfoReset(pParse); 2331bb999ef6Sdrh if( isAgg || pGroupBy ){ 23320bce8354Sdrh assert( pParse->nAgg==0 ); 2333bb999ef6Sdrh isAgg = 1; 23342282792aSdrh for(i=0; i<pEList->nExpr; i++){ 23354adee20fSdanielk1977 if( sqlite3ExprAnalyzeAggregates(pParse, pEList->a[i].pExpr) ){ 23361d83f052Sdrh goto select_end; 23372282792aSdrh } 23382282792aSdrh } 23392282792aSdrh if( pGroupBy ){ 23402282792aSdrh for(i=0; i<pGroupBy->nExpr; i++){ 23414adee20fSdanielk1977 if( sqlite3ExprAnalyzeAggregates(pParse, pGroupBy->a[i].pExpr) ){ 23421d83f052Sdrh goto select_end; 23432282792aSdrh } 23442282792aSdrh } 23452282792aSdrh } 23464adee20fSdanielk1977 if( pHaving && sqlite3ExprAnalyzeAggregates(pParse, pHaving) ){ 23471d83f052Sdrh goto select_end; 23482282792aSdrh } 2349191b690eSdrh if( pOrderBy ){ 2350191b690eSdrh for(i=0; i<pOrderBy->nExpr; i++){ 23514adee20fSdanielk1977 if( sqlite3ExprAnalyzeAggregates(pParse, pOrderBy->a[i].pExpr) ){ 23521d83f052Sdrh goto select_end; 2353191b690eSdrh } 2354191b690eSdrh } 2355191b690eSdrh } 2356efb7251dSdrh } 2357efb7251dSdrh 23582282792aSdrh /* Reset the aggregator 2359cce7d176Sdrh */ 2360cce7d176Sdrh if( isAgg ){ 23614adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_AggReset, 0, pParse->nAgg); 2362e5095355Sdrh for(i=0; i<pParse->nAgg; i++){ 23630bce8354Sdrh FuncDef *pFunc; 23640bce8354Sdrh if( (pFunc = pParse->aAgg[i].pFunc)!=0 && pFunc->xFinalize!=0 ){ 23654adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_AggInit, 0, i, (char*)pFunc, P3_POINTER); 2366e5095355Sdrh } 2367e5095355Sdrh } 23681bee3d7bSdrh if( pGroupBy==0 ){ 23694adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_String, 0, 0); 23704adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_AggFocus, 0, 0); 23711bee3d7bSdrh } 2372cce7d176Sdrh } 2373cce7d176Sdrh 237419a775c2Sdrh /* Initialize the memory cell to NULL 237519a775c2Sdrh */ 2376fef5208cSdrh if( eDest==SRT_Mem ){ 23774adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_String, 0, 0); 23784adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MemStore, iParm, 1); 237919a775c2Sdrh } 238019a775c2Sdrh 2381832508b7Sdrh /* Open a temporary table to use for the distinct set. 2382cce7d176Sdrh */ 238319a775c2Sdrh if( isDistinct ){ 2384832508b7Sdrh distinct = pParse->nTab++; 2385d3d39e93Sdrh openTempIndex(pParse, p, distinct, 0); 2386832508b7Sdrh }else{ 2387832508b7Sdrh distinct = -1; 2388efb7251dSdrh } 2389832508b7Sdrh 2390832508b7Sdrh /* Begin the database scan 2391832508b7Sdrh */ 23924adee20fSdanielk1977 pWInfo = sqlite3WhereBegin(pParse, pTabList, pWhere, 0, 239368d2e591Sdrh pGroupBy ? 0 : &pOrderBy); 23941d83f052Sdrh if( pWInfo==0 ) goto select_end; 2395cce7d176Sdrh 23962282792aSdrh /* Use the standard inner loop if we are not dealing with 23972282792aSdrh ** aggregates 2398cce7d176Sdrh */ 2399da9d6c45Sdrh if( !isAgg ){ 2400df199a25Sdrh if( selectInnerLoop(pParse, p, pEList, 0, 0, pOrderBy, distinct, eDest, 240184ac9d02Sdanielk1977 iParm, pWInfo->iContinue, pWInfo->iBreak, aff) ){ 24021d83f052Sdrh goto select_end; 2403cce7d176Sdrh } 2404da9d6c45Sdrh } 2405cce7d176Sdrh 2406e3184744Sdrh /* If we are dealing with aggregates, then do the special aggregate 24072282792aSdrh ** processing. 2408efb7251dSdrh */ 24092282792aSdrh else{ 2410268380caSdrh AggExpr *pAgg; 24112282792aSdrh if( pGroupBy ){ 24121bee3d7bSdrh int lbl1; 24132282792aSdrh for(i=0; i<pGroupBy->nExpr; i++){ 24144adee20fSdanielk1977 sqlite3ExprCode(pParse, pGroupBy->a[i].pExpr); 2415efb7251dSdrh } 2416d3d39e93Sdrh /* No affinity string is attached to the following OP_MakeKey 2417d3d39e93Sdrh ** because we do not need to do any coercion of datatypes. */ 24184adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_MakeKey, pGroupBy->nExpr, 0); 24194adee20fSdanielk1977 lbl1 = sqlite3VdbeMakeLabel(v); 24204adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_AggFocus, 0, lbl1); 2421268380caSdrh for(i=0, pAgg=pParse->aAgg; i<pParse->nAgg; i++, pAgg++){ 2422268380caSdrh if( pAgg->isAgg ) continue; 24234adee20fSdanielk1977 sqlite3ExprCode(pParse, pAgg->pExpr); 24244adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_AggSet, 0, i); 24252282792aSdrh } 24264adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, lbl1); 24272282792aSdrh } 2428268380caSdrh for(i=0, pAgg=pParse->aAgg; i<pParse->nAgg; i++, pAgg++){ 24292282792aSdrh Expr *pE; 2430268380caSdrh int nExpr; 2431268380caSdrh FuncDef *pDef; 2432268380caSdrh if( !pAgg->isAgg ) continue; 2433268380caSdrh assert( pAgg->pFunc!=0 ); 2434268380caSdrh assert( pAgg->pFunc->xStep!=0 ); 2435268380caSdrh pDef = pAgg->pFunc; 2436268380caSdrh pE = pAgg->pExpr; 2437268380caSdrh assert( pE!=0 ); 24382282792aSdrh assert( pE->op==TK_AGG_FUNCTION ); 24394adee20fSdanielk1977 nExpr = sqlite3ExprCodeExprList(pParse, pE->pList, pDef->includeTypes); 24404adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Integer, i, 0); 24414adee20fSdanielk1977 sqlite3VdbeOp3(v, OP_AggFunc, 0, nExpr, (char*)pDef, P3_POINTER); 24422282792aSdrh } 24432282792aSdrh } 24442282792aSdrh 2445cce7d176Sdrh /* End the database scan loop. 2446cce7d176Sdrh */ 24474adee20fSdanielk1977 sqlite3WhereEnd(pWInfo); 2448cce7d176Sdrh 24492282792aSdrh /* If we are processing aggregates, we need to set up a second loop 24502282792aSdrh ** over all of the aggregate values and process them. 24512282792aSdrh */ 24522282792aSdrh if( isAgg ){ 24534adee20fSdanielk1977 int endagg = sqlite3VdbeMakeLabel(v); 24542282792aSdrh int startagg; 24554adee20fSdanielk1977 startagg = sqlite3VdbeAddOp(v, OP_AggNext, 0, endagg); 24562282792aSdrh pParse->useAgg = 1; 24572282792aSdrh if( pHaving ){ 24584adee20fSdanielk1977 sqlite3ExprIfFalse(pParse, pHaving, startagg, 1); 24592282792aSdrh } 2460df199a25Sdrh if( selectInnerLoop(pParse, p, pEList, 0, 0, pOrderBy, distinct, eDest, 246184ac9d02Sdanielk1977 iParm, startagg, endagg, aff) ){ 24621d83f052Sdrh goto select_end; 24632282792aSdrh } 24644adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Goto, 0, startagg); 24654adee20fSdanielk1977 sqlite3VdbeResolveLabel(v, endagg); 24664adee20fSdanielk1977 sqlite3VdbeAddOp(v, OP_Noop, 0, 0); 24672282792aSdrh pParse->useAgg = 0; 24682282792aSdrh } 24692282792aSdrh 2470cce7d176Sdrh /* If there is an ORDER BY clause, then we need to sort the results 2471cce7d176Sdrh ** and send them to the callback one by one. 2472cce7d176Sdrh */ 2473cce7d176Sdrh if( pOrderBy ){ 2474*ffbc3088Sdrh generateSortTail(pParse, p, v, pEList->nExpr, eDest, iParm); 2475cce7d176Sdrh } 24766a535340Sdrh 2477f620b4e2Sdrh /* If this was a subquery, we have now converted the subquery into a 2478f620b4e2Sdrh ** temporary table. So delete the subquery structure from the parent 2479f620b4e2Sdrh ** to prevent this subquery from being evaluated again and to force the 2480f620b4e2Sdrh ** the use of the temporary table. 2481f620b4e2Sdrh */ 2482f620b4e2Sdrh if( pParent ){ 2483f620b4e2Sdrh assert( pParent->pSrc->nSrc>parentTab ); 2484f620b4e2Sdrh assert( pParent->pSrc->a[parentTab].pSelect==p ); 24854adee20fSdanielk1977 sqlite3SelectDelete(p); 2486f620b4e2Sdrh pParent->pSrc->a[parentTab].pSelect = 0; 2487f620b4e2Sdrh } 2488f620b4e2Sdrh 24891d83f052Sdrh /* The SELECT was successfully coded. Set the return code to 0 24901d83f052Sdrh ** to indicate no errors. 24911d83f052Sdrh */ 24921d83f052Sdrh rc = 0; 24931d83f052Sdrh 24941d83f052Sdrh /* Control jumps to here if an error is encountered above, or upon 24951d83f052Sdrh ** successful coding of the SELECT. 24961d83f052Sdrh */ 24971d83f052Sdrh select_end: 24981d83f052Sdrh sqliteAggregateInfoReset(pParse); 24991d83f052Sdrh return rc; 2500cce7d176Sdrh } 2501