1348784efSdrh /* 2348784efSdrh ** Copyright (c) 1999, 2000 D. Richard Hipp 3348784efSdrh ** 4348784efSdrh ** This program is free software; you can redistribute it and/or 5348784efSdrh ** modify it under the terms of the GNU General Public 6348784efSdrh ** License as published by the Free Software Foundation; either 7348784efSdrh ** version 2 of the License, or (at your option) any later version. 8348784efSdrh ** 9348784efSdrh ** This program is distributed in the hope that it will be useful, 10348784efSdrh ** but WITHOUT ANY WARRANTY; without even the implied warranty of 11348784efSdrh ** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 12348784efSdrh ** General Public License for more details. 13348784efSdrh ** 14348784efSdrh ** You should have received a copy of the GNU General Public 15348784efSdrh ** License along with this library; if not, write to the 16348784efSdrh ** Free Software Foundation, Inc., 59 Temple Place - Suite 330, 17348784efSdrh ** Boston, MA 02111-1307, USA. 18348784efSdrh ** 19348784efSdrh ** Author contact information: 20348784efSdrh ** [email protected] 21348784efSdrh ** http://www.hwaci.com/drh/ 22348784efSdrh ** 23348784efSdrh ************************************************************************* 24348784efSdrh ** This file contains SQLite's grammar for SQL. Process this file 25348784efSdrh ** using the lemon parser generator to generate C code that runs 26348784efSdrh ** the parser. Lemon will also generate a header file containing 27348784efSdrh ** numeric codes for all of the tokens. 28348784efSdrh ** 29*8be51133Sdrh ** @(#) $Id: parse.y,v 1.8 2000/06/03 19:19:41 drh Exp $ 30348784efSdrh */ 31348784efSdrh %token_prefix TK_ 32348784efSdrh %token_type {Token} 33348784efSdrh %extra_argument {Parse *pParse} 34348784efSdrh %syntax_error { 35348784efSdrh sqliteSetNString(&pParse->zErrMsg,"syntax error near \"",0,TOKEN.z,TOKEN.n, 36348784efSdrh "\"", 1, 0); 37348784efSdrh pParse->sErrToken = TOKEN; 38348784efSdrh } 39348784efSdrh %name sqliteParser 40348784efSdrh %include { 41348784efSdrh #include "sqliteInt.h" 42348784efSdrh #include "parse.h" 43348784efSdrh } 44348784efSdrh 45348784efSdrh 46348784efSdrh // Input is zero or more commands. 47348784efSdrh input ::= cmdlist. 48348784efSdrh 49348784efSdrh // These are extra tokens used by the lexer but never seen by the 50348784efSdrh // parser. We put them in a rule so that the parser generator will 51348784efSdrh // add them to the sqliteTokens.h output file. 52348784efSdrh // 53348784efSdrh input ::= END_OF_FILE ILLEGAL SPACE UNCLOSED_STRING COMMENT FUNCTION 54348784efSdrh UMINUS FIELD. 55348784efSdrh 56348784efSdrh // A list of commands is zero or more commands 57348784efSdrh // 58348784efSdrh cmdlist ::= ecmd. 59348784efSdrh cmdlist ::= cmdlist SEMI ecmd. 60348784efSdrh ecmd ::= explain cmd. {sqliteExec(pParse);} 61348784efSdrh ecmd ::= cmd. {sqliteExec(pParse);} 62348784efSdrh ecmd ::= . 63348784efSdrh explain ::= EXPLAIN. {pParse->explain = 1;} 64348784efSdrh 65348784efSdrh // The first form of a command is a CREATE TABLE statement. 66348784efSdrh // 67348784efSdrh cmd ::= create_table create_table_args. 68982cef7eSdrh create_table ::= CREATE(X) TABLE id(Y). {sqliteStartTable(pParse,&X,&Y);} 69348784efSdrh create_table_args ::= LP columnlist conslist_opt RP(X). 70348784efSdrh {sqliteEndTable(pParse,&X);} 71348784efSdrh columnlist ::= columnlist COMMA column. 72348784efSdrh columnlist ::= column. 73348784efSdrh 74348784efSdrh // About the only information used for a column is the name of the 75348784efSdrh // column. The type is always just "text". But the code will accept 76348784efSdrh // an elaborate typename. Perhaps someday we'll do something with it. 77348784efSdrh // 78348784efSdrh column ::= columnid type carglist. 79982cef7eSdrh columnid ::= id(X). {sqliteAddColumn(pParse,&X);} 80982cef7eSdrh %type id {Token} 81982cef7eSdrh id(A) ::= ID(X). {A = X;} 82982cef7eSdrh id(A) ::= STRING(X). {A = X;} 83348784efSdrh type ::= typename. 84348784efSdrh type ::= typename LP signed RP. 85348784efSdrh type ::= typename LP signed COMMA signed RP. 86348784efSdrh typename ::= ID. 87348784efSdrh typename ::= typename ID. 88348784efSdrh signed ::= INTEGER. 89348784efSdrh signed ::= PLUS INTEGER. 90348784efSdrh signed ::= MINUS INTEGER. 91348784efSdrh carglist ::= carglist carg. 92348784efSdrh carglist ::= . 93348784efSdrh carg ::= CONSTRAINT ID ccons. 94348784efSdrh carg ::= ccons. 957020f651Sdrh carg ::= DEFAULT STRING(X). {sqliteAddDefaultValue(pParse,&X,0);} 967020f651Sdrh carg ::= DEFAULT ID(X). {sqliteAddDefaultValue(pParse,&X,0);} 977020f651Sdrh carg ::= DEFAULT INTEGER(X). {sqliteAddDefaultValue(pParse,&X,0);} 987020f651Sdrh carg ::= DEFAULT PLUS INTEGER(X). {sqliteAddDefaultValue(pParse,&X,0);} 997020f651Sdrh carg ::= DEFAULT MINUS INTEGER(X). {sqliteAddDefaultValue(pParse,&X,1);} 1007020f651Sdrh carg ::= DEFAULT FLOAT(X). {sqliteAddDefaultValue(pParse,&X,0);} 1017020f651Sdrh carg ::= DEFAULT PLUS FLOAT(X). {sqliteAddDefaultValue(pParse,&X,0);} 1027020f651Sdrh carg ::= DEFAULT MINUS FLOAT(X). {sqliteAddDefaultValue(pParse,&X,1);} 1037020f651Sdrh carg ::= DEFAULT NULL. 104348784efSdrh 105348784efSdrh // In addition to the type name, we also care about the primary key. 106348784efSdrh // 107348784efSdrh ccons ::= NOT NULL. 108348784efSdrh ccons ::= PRIMARY KEY sortorder. 109348784efSdrh {sqliteCreateIndex(pParse,0,0,0,0,0);} 110348784efSdrh ccons ::= UNIQUE. 111348784efSdrh ccons ::= CHECK expr. 112348784efSdrh 113348784efSdrh // For the time being, the only constraint we care about is the primary 114348784efSdrh // key. 115348784efSdrh // 116348784efSdrh conslist_opt ::= . 117348784efSdrh conslist_opt ::= COMMA conslist. 118348784efSdrh conslist ::= conslist COMMA tcons. 119348784efSdrh conslist ::= tcons. 120348784efSdrh tcons ::= CONSTRAINT ID tcons2. 121348784efSdrh tcons ::= tcons2. 122348784efSdrh tcons2 ::= PRIMARY KEY LP idxlist(X) RP. 123348784efSdrh {sqliteCreateIndex(pParse,0,0,X,0,0);} 124348784efSdrh tcons2 ::= UNIQUE LP idlist RP. 125348784efSdrh tcons2 ::= CHECK expr. 126982cef7eSdrh idlist ::= idlist COMMA id. 127982cef7eSdrh idlist ::= id. 128348784efSdrh 129348784efSdrh // The next command format is dropping tables. 130348784efSdrh // 131982cef7eSdrh cmd ::= DROP TABLE id(X). {sqliteDropTable(pParse,&X);} 132348784efSdrh 133348784efSdrh // The select statement 134348784efSdrh // 135348784efSdrh cmd ::= select. 136efb7251dSdrh select ::= SELECT distinct(D) selcollist(W) from(X) where_opt(Y) orderby_opt(Z). 137efb7251dSdrh {sqliteSelect(pParse, W, X, Y, Z, D);} 138efb7251dSdrh select ::= SELECT distinct(D) STAR from(X) where_opt(Y) orderby_opt(Z). 139efb7251dSdrh {sqliteSelect(pParse, 0, X, Y, Z, D);} 140efb7251dSdrh 141efb7251dSdrh %type distinct {int} 142efb7251dSdrh 143efb7251dSdrh distinct(A) ::= DISTINCT. {A = 1;} 144efb7251dSdrh distinct(A) ::= . {A = 0;} 145348784efSdrh 146348784efSdrh %type selcollist {ExprList*} 147348784efSdrh %destructor selcollist {sqliteExprListDelete($$);} 148348784efSdrh %type sclp {ExprList*} 149348784efSdrh %destructor sclp {sqliteExprListDelete($$);} 150348784efSdrh 151348784efSdrh sclp(A) ::= selcollist(X) COMMA. {A = X;} 152348784efSdrh sclp(A) ::= . {A = 0;} 153348784efSdrh selcollist(A) ::= sclp(P) expr(X). {A = sqliteExprListAppend(P,X,0);} 154348784efSdrh selcollist(A) ::= sclp(P) expr(X) AS ID(Y). {A = sqliteExprListAppend(P,X,&Y);} 155348784efSdrh selcollist(A) ::= sclp(P) expr(X) AS STRING(Y). 156348784efSdrh {A = sqliteExprListAppend(P,X,&Y);} 157348784efSdrh 158348784efSdrh %type seltablist {IdList*} 159348784efSdrh %destructor seltablist {sqliteIdListDelete($$);} 160348784efSdrh %type stl_prefix {IdList*} 161348784efSdrh %destructor stl_prefix {sqliteIdListDelete($$);} 162348784efSdrh %type from {IdList*} 163348784efSdrh %destructor from {sqliteIdListDelete($$);} 164348784efSdrh 165348784efSdrh from(A) ::= FROM seltablist(X). {A = X;} 166348784efSdrh stl_prefix(A) ::= seltablist(X) COMMA. {A = X;} 167348784efSdrh stl_prefix(A) ::= . {A = 0;} 168982cef7eSdrh seltablist(A) ::= stl_prefix(X) id(Y). {A = sqliteIdListAppend(X,&Y);} 169982cef7eSdrh seltablist(A) ::= stl_prefix(X) id(Y) AS id(Z). 170348784efSdrh {A = sqliteIdListAppend(X,&Y); 171348784efSdrh sqliteIdListAddAlias(A,&Z);} 172348784efSdrh 173348784efSdrh %type orderby_opt {ExprList*} 174348784efSdrh %destructor orderby_opt {sqliteExprListDelete($$);} 175348784efSdrh %type sortlist {ExprList*} 176348784efSdrh %destructor sortlist {sqliteExprListDelete($$);} 177348784efSdrh %type sortitem {Expr*} 178348784efSdrh %destructor sortitem {sqliteExprDelete($$);} 179348784efSdrh 180348784efSdrh orderby_opt(A) ::= . {A = 0;} 181348784efSdrh orderby_opt(A) ::= ORDER BY sortlist(X). {A = X;} 182348784efSdrh sortlist(A) ::= sortlist(X) COMMA sortitem(Y) sortorder(Z). 183348784efSdrh { 184348784efSdrh A = sqliteExprListAppend(X,Y,0); 185348784efSdrh A->a[A->nExpr-1].idx = Z; 186348784efSdrh } 187348784efSdrh sortlist(A) ::= sortitem(Y) sortorder(Z). 188348784efSdrh { 189348784efSdrh A = sqliteExprListAppend(0,Y,0); 190348784efSdrh A->a[0].idx = Z; 191348784efSdrh } 192da9d6c45Sdrh sortitem(A) ::= expr(X). {A = X;} 193348784efSdrh 194348784efSdrh %type sortorder {int} 195348784efSdrh 196348784efSdrh sortorder(A) ::= ASC. {A = 0;} 197348784efSdrh sortorder(A) ::= DESC. {A = 1;} 198348784efSdrh sortorder(A) ::= . {A = 0;} 199348784efSdrh 200348784efSdrh cmd ::= DELETE FROM ID(X) where_opt(Y). 201348784efSdrh {sqliteDeleteFrom(pParse, &X, Y);} 202348784efSdrh 203348784efSdrh %type where_opt {Expr*} 204348784efSdrh %destructor where_opt {sqliteExprDelete($$);} 205348784efSdrh 206348784efSdrh where_opt(A) ::= . {A = 0;} 207348784efSdrh where_opt(A) ::= WHERE expr(X). {A = X;} 208348784efSdrh 209348784efSdrh %type setlist {ExprList*} 210348784efSdrh %destructor setlist {sqliteExprListDelete($$);} 211348784efSdrh 212348784efSdrh cmd ::= UPDATE ID(X) SET setlist(Y) where_opt(Z). 213348784efSdrh {sqliteUpdate(pParse,&X,Y,Z);} 214348784efSdrh 215348784efSdrh setlist(A) ::= ID(X) EQ expr(Y) COMMA setlist(Z). 216348784efSdrh {A = sqliteExprListAppend(Z,Y,&X);} 217348784efSdrh setlist(A) ::= ID(X) EQ expr(Y). {A = sqliteExprListAppend(0,Y,&X);} 218348784efSdrh 219348784efSdrh cmd ::= INSERT INTO ID(X) fieldlist_opt(F) VALUES LP itemlist(Y) RP. 220348784efSdrh {sqliteInsert(pParse, &X, Y, F);} 221348784efSdrh 222348784efSdrh 223348784efSdrh %type itemlist {ExprList*} 224348784efSdrh %destructor itemlist {sqliteExprListDelete($$);} 225348784efSdrh %type item {Expr*} 226348784efSdrh %destructor item {sqliteExprDelete($$);} 227348784efSdrh 228348784efSdrh itemlist(A) ::= itemlist(X) COMMA item(Y). {A = sqliteExprListAppend(X,Y,0);} 229348784efSdrh itemlist(A) ::= item(X). {A = sqliteExprListAppend(0,X,0);} 230348784efSdrh item(A) ::= INTEGER(X). {A = sqliteExpr(TK_INTEGER, 0, 0, &X);} 2317020f651Sdrh item(A) ::= PLUS INTEGER(X). {A = sqliteExpr(TK_INTEGER, 0, 0, &X);} 2327020f651Sdrh item(A) ::= MINUS INTEGER(X). { 2337020f651Sdrh A = sqliteExpr(TK_INTEGER, 0, 0, 0); 2347020f651Sdrh A->token.z = 0; 2357020f651Sdrh sqliteSetNString(&A->token.z, "-", 1, X.z, X.n, 0); 2367020f651Sdrh } 237348784efSdrh item(A) ::= FLOAT(X). {A = sqliteExpr(TK_FLOAT, 0, 0, &X);} 2387020f651Sdrh item(A) ::= PLUS FLOAT(X). {A = sqliteExpr(TK_FLOAT, 0, 0, &X);} 2397020f651Sdrh item(A) ::= MINUS FLOAT(X). { 2407020f651Sdrh A = sqliteExpr(TK_FLOAT, 0, 0, 0); 2417020f651Sdrh A->token.z = 0; 2427020f651Sdrh sqliteSetNString(&A->token.z, "-", 1, X.z, X.n, 0); 2437020f651Sdrh } 244348784efSdrh item(A) ::= STRING(X). {A = sqliteExpr(TK_STRING, 0, 0, &X);} 245*8be51133Sdrh item(A) ::= NULL. {A = sqliteExpr(TK_NULL, 0, 0, 0);} 246348784efSdrh 247348784efSdrh %type fieldlist_opt {IdList*} 248348784efSdrh %destructor fieldlist_opt {sqliteIdListDelete($$);} 249348784efSdrh %type fieldlist {IdList*} 250348784efSdrh %destructor fieldlist {sqliteIdListDelete($$);} 251348784efSdrh 252348784efSdrh fieldlist_opt(A) ::= . {A = 0;} 253348784efSdrh fieldlist_opt(A) ::= LP fieldlist(X) RP. {A = X;} 254348784efSdrh fieldlist(A) ::= fieldlist(X) COMMA ID(Y). {A = sqliteIdListAppend(X,&Y);} 255348784efSdrh fieldlist(A) ::= ID(Y). {A = sqliteIdListAppend(0,&Y);} 256348784efSdrh 257348784efSdrh %left OR. 258348784efSdrh %left AND. 259*8be51133Sdrh %right NOT. 260dce2cbe6Sdrh %left EQ NE ISNULL NOTNULL IS LIKE GLOB. 261348784efSdrh %left GT GE LT LE. 262348784efSdrh %left PLUS MINUS. 263348784efSdrh %left STAR SLASH PERCENT. 264*8be51133Sdrh %right UMINUS. 265348784efSdrh 266348784efSdrh %type expr {Expr*} 267348784efSdrh %destructor expr {sqliteExprDelete($$);} 268348784efSdrh 269348784efSdrh expr(A) ::= LP expr(X) RP. {A = X;} 270348784efSdrh expr(A) ::= ID(X). {A = sqliteExpr(TK_ID, 0, 0, &X);} 271348784efSdrh expr(A) ::= NULL. {A = sqliteExpr(TK_NULL, 0, 0, 0);} 272348784efSdrh expr(A) ::= ID(X) DOT ID(Y). {Expr *temp1 = sqliteExpr(TK_ID, 0, 0, &X); 273348784efSdrh Expr *temp2 = sqliteExpr(TK_ID, 0, 0, &Y); 274348784efSdrh A = sqliteExpr(TK_DOT, temp1, temp2, 0);} 275348784efSdrh expr(A) ::= INTEGER(X). {A = sqliteExpr(TK_INTEGER, 0, 0, &X);} 276348784efSdrh expr(A) ::= FLOAT(X). {A = sqliteExpr(TK_FLOAT, 0, 0, &X);} 277348784efSdrh expr(A) ::= STRING(X). {A = sqliteExpr(TK_STRING, 0, 0, &X);} 278cce7d176Sdrh expr(A) ::= ID(X) LP exprlist(Y) RP. {A = sqliteExprFunction(Y, &X);} 279cce7d176Sdrh expr(A) ::= ID(X) LP STAR RP. {A = sqliteExprFunction(0, &X);} 280348784efSdrh expr(A) ::= expr(X) AND expr(Y). {A = sqliteExpr(TK_AND, X, Y, 0);} 281348784efSdrh expr(A) ::= expr(X) OR expr(Y). {A = sqliteExpr(TK_OR, X, Y, 0);} 282348784efSdrh expr(A) ::= expr(X) LT expr(Y). {A = sqliteExpr(TK_LT, X, Y, 0);} 283348784efSdrh expr(A) ::= expr(X) GT expr(Y). {A = sqliteExpr(TK_GT, X, Y, 0);} 284348784efSdrh expr(A) ::= expr(X) LE expr(Y). {A = sqliteExpr(TK_LE, X, Y, 0);} 285348784efSdrh expr(A) ::= expr(X) GE expr(Y). {A = sqliteExpr(TK_GE, X, Y, 0);} 286348784efSdrh expr(A) ::= expr(X) NE expr(Y). {A = sqliteExpr(TK_NE, X, Y, 0);} 287348784efSdrh expr(A) ::= expr(X) EQ expr(Y). {A = sqliteExpr(TK_EQ, X, Y, 0);} 288dce2cbe6Sdrh expr(A) ::= expr(X) LIKE expr(Y). {A = sqliteExpr(TK_LIKE, X, Y, 0);} 289dce2cbe6Sdrh expr(A) ::= expr(X) GLOB expr(Y). {A = sqliteExpr(TK_GLOB,X,Y,0);} 290dce2cbe6Sdrh // expr(A) ::= expr(X) IS expr(Y). {A = sqliteExpr(TK_EQ, X, Y, 0);} 291348784efSdrh expr(A) ::= expr(X) PLUS expr(Y). {A = sqliteExpr(TK_PLUS, X, Y, 0);} 292348784efSdrh expr(A) ::= expr(X) MINUS expr(Y). {A = sqliteExpr(TK_MINUS, X, Y, 0);} 293348784efSdrh expr(A) ::= expr(X) STAR expr(Y). {A = sqliteExpr(TK_STAR, X, Y, 0);} 294348784efSdrh expr(A) ::= expr(X) SLASH expr(Y). {A = sqliteExpr(TK_SLASH, X, Y, 0);} 295348784efSdrh expr(A) ::= expr(X) ISNULL. {A = sqliteExpr(TK_ISNULL, X, 0, 0);} 296348784efSdrh expr(A) ::= expr(X) NOTNULL. {A = sqliteExpr(TK_NOTNULL, X, 0, 0);} 297348784efSdrh expr(A) ::= NOT expr(X). {A = sqliteExpr(TK_NOT, X, 0, 0);} 298*8be51133Sdrh expr(A) ::= MINUS expr(X). [UMINUS] {A = sqliteExpr(TK_UMINUS, X, 0, 0);} 299*8be51133Sdrh expr(A) ::= PLUS expr(X). [UMINUS] {A = X;} 300348784efSdrh 301348784efSdrh %type exprlist {ExprList*} 302348784efSdrh %destructor exprlist {sqliteExprListDelete($$);} 303348784efSdrh %type expritem {Expr*} 304348784efSdrh %destructor expritem {sqliteExprDelete($$);} 305348784efSdrh 306348784efSdrh exprlist(A) ::= exprlist(X) COMMA expritem(Y). 307348784efSdrh {A = sqliteExprListAppend(X,Y,0);} 308348784efSdrh exprlist(A) ::= expritem(X). {A = sqliteExprListAppend(0,X,0);} 309348784efSdrh expritem(A) ::= expr(X). {A = X;} 310348784efSdrh expritem(A) ::= . {A = 0;} 311cce7d176Sdrh 312348784efSdrh 313348784efSdrh cmd ::= CREATE(S) uniqueflag INDEX ID(X) ON ID(Y) LP idxlist(Z) RP(E). 314348784efSdrh {sqliteCreateIndex(pParse, &X, &Y, Z, &S, &E);} 315348784efSdrh uniqueflag ::= UNIQUE. 316348784efSdrh uniqueflag ::= . 317348784efSdrh 318348784efSdrh %type idxlist {IdList*} 319348784efSdrh %destructor idxlist {sqliteIdListDelete($$);} 320348784efSdrh %type idxitem {Token} 321348784efSdrh 322348784efSdrh idxlist(A) ::= idxlist(X) COMMA idxitem(Y). 323348784efSdrh {A = sqliteIdListAppend(X,&Y);} 324348784efSdrh idxlist(A) ::= idxitem(Y). 325348784efSdrh {A = sqliteIdListAppend(0,&Y);} 326348784efSdrh idxitem(A) ::= ID(X). {A = X;} 327348784efSdrh 328982cef7eSdrh cmd ::= DROP INDEX id(X). {sqliteDropIndex(pParse, &X);} 329982cef7eSdrh 330982cef7eSdrh cmd ::= COPY id(X) FROM id(Y) USING DELIMITERS STRING(Z). 331982cef7eSdrh {sqliteCopy(pParse,&X,&Y,&Z);} 332982cef7eSdrh cmd ::= COPY id(X) FROM id(Y). 333982cef7eSdrh {sqliteCopy(pParse,&X,&Y,0);} 334dce2cbe6Sdrh 335dce2cbe6Sdrh cmd ::= VACUUM. {sqliteVacuum(pParse,0);} 336dce2cbe6Sdrh cmd ::= VACUUM id(X). {sqliteVacuum(pParse,&X);} 337