annotate src/urweb.grm @ 706:1fb318c17546

Enhance table sig item support and get demo compiling again
author Adam Chlipala <adamc@hcoop.net>
date Tue, 07 Apr 2009 15:04:07 -0400
parents e6706a1df013
children d8217b4cb617
rev   line source
adamc@695 1 (* Copyright (c) 2008-2009, Adam Chlipala
adamc@1 2 * All rights reserved.
adamc@1 3 *
adamc@1 4 * Redistribution and use in source and binary forms, with or without
adamc@1 5 * modification, are permitted provided that the following conditions are met:
adamc@1 6 *
adamc@1 7 * - Redistributions of source code must retain the above copyright notice,
adamc@1 8 * this list of conditions and the following disclaimer.
adamc@1 9 * - Redistributions in binary form must reproduce the above copyright notice,
adamc@1 10 * this list of conditions and the following disclaimer in the documentation
adamc@1 11 * and/or other materials provided with the distribution.
adamc@1 12 * - The names of contributors may not be used to endorse or promote products
adamc@1 13 * derived from this software without specific prior written permission.
adamc@1 14 *
adamc@339 15 * THIS SOFTARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
adamc@1 16 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
adamc@1 17 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
adamc@1 18 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
adamc@1 19 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
adamc@1 20 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
adamc@1 21 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
adamc@1 22 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
adamc@1 23 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
adamc@1 24 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
adamc@1 25 * POSSIBILITY OF SUCH DAMAGE.
adamc@1 26 *)
adamc@1 27
adamc@244 28 (* Grammar for Ur/Web programs *)
adamc@1 29
adamc@4 30 open Source
adamc@1 31
adamc@1 32 val s = ErrorMsg.spanOf
adamc@230 33 val dummy = ErrorMsg.dummySpan
adamc@1 34
adamc@204 35 fun capitalize "" = ""
adamc@204 36 | capitalize s = str (Char.toUpper (String.sub (s, 0))) ^ String.extract (s, 1, NONE)
adamc@104 37
adamc@203 38 fun entable t =
adamc@203 39 case #1 t of
adamc@203 40 TRecord c => c
adamc@203 41 | _ => t
adamc@203 42
adamc@207 43 datatype select_item =
adamc@207 44 Field of con * con
adamc@233 45 | Exp of con * exp
adamc@341 46 | Fields of con * con
adamc@207 47
adamc@207 48 datatype select =
adamc@207 49 Star
adamc@207 50 | Items of select_item list
adamc@207 51
adamc@226 52 datatype group_item =
adamc@226 53 GField of con * con
adamc@226 54
adamc@207 55 fun eqTnames ((c1, _), (c2, _)) =
adamc@207 56 case (c1, c2) of
adamc@207 57 (CVar (ms1, x1), CVar (ms2, x2)) => ms1 = ms2 andalso x1 = x2
adamc@207 58 | (CName x1, CName x2) => x1 = x2
adamc@207 59 | _ => false
adamc@207 60
adamc@233 61 fun amend_select loc (si, (tabs, exps)) =
adamc@233 62 case si of
adamc@233 63 Field (tx, fx) =>
adamc@233 64 let
adamc@233 65 val c = (CRecord ([(fx, (CWild (KType, loc), loc))]), loc)
adamc@207 66
adamc@233 67 val (tabs, found) = ListUtil.foldlMap (fn ((tx', c'), found) =>
adamc@233 68 if eqTnames (tx, tx') then
adamc@233 69 ((tx', (CConcat (c, c'), loc)), true)
adamc@233 70 else
adamc@233 71 ((tx', c'), found))
adamc@233 72 false tabs
adamc@233 73 in
adamc@233 74 if found then
adamc@233 75 ()
adamc@233 76 else
adamc@233 77 ErrorMsg.errorAt loc "Select of field from unbound table";
adamc@233 78
adamc@233 79 (tabs, exps)
adamc@233 80 end
adamc@341 81 | Fields (tx, fs) =>
adamc@341 82 let
adamc@341 83 val (tabs, found) = ListUtil.foldlMap (fn ((tx', c'), found) =>
adamc@341 84 if eqTnames (tx, tx') then
adamc@341 85 ((tx', (CConcat (fs, c'), loc)), true)
adamc@341 86 else
adamc@341 87 ((tx', c'), found))
adamc@341 88 false tabs
adamc@341 89 in
adamc@341 90 if found then
adamc@341 91 ()
adamc@341 92 else
adamc@341 93 ErrorMsg.errorAt loc "Select of field from unbound table";
adamc@341 94
adamc@341 95 (tabs, exps)
adamc@341 96 end
adamc@233 97 | Exp (c, e) => (tabs, (c, e) :: exps)
adamc@207 98
adamc@226 99 fun amend_group loc (gi, tabs) =
adamc@226 100 let
adamc@226 101 val (tx, c) = case gi of
adamc@226 102 GField (tx, fx) => (tx, (CRecord ([(fx, (CWild (KType, loc), loc))]), loc))
adamc@226 103
adamc@226 104 val (tabs, found) = ListUtil.foldlMap (fn ((tx', c'), found) =>
adamc@226 105 if eqTnames (tx, tx') then
adamc@226 106 ((tx', (CConcat (c, c'), loc)), true)
adamc@226 107 else
adamc@226 108 ((tx', c'), found))
adamc@226 109 false tabs
adamc@226 110 in
adamc@226 111 if found then
adamc@226 112 ()
adamc@226 113 else
adamc@226 114 ErrorMsg.errorAt loc "Select of field from unbound table";
adamc@226 115
adamc@226 116 tabs
adamc@226 117 end
adamc@226 118
adamc@403 119 fun sql_inject (v, loc) =
adamc@403 120 (EApp ((EVar (["Basis"], "sql_inject", Infer), loc), (v, loc)), loc)
adamc@209 121
adamc@220 122 fun sql_binary (oper, sqlexp1, sqlexp2, loc) =
adamc@220 123 let
adamc@403 124 val e = (EVar (["Basis"], "sql_binary", Infer), loc)
adamc@403 125 val e = (EApp (e, (EVar (["Basis"], "sql_" ^ oper, Infer), loc)), loc)
adamc@220 126 val e = (EApp (e, sqlexp1), loc)
adamc@220 127 in
adamc@220 128 (EApp (e, sqlexp2), loc)
adamc@220 129 end
adamc@220 130
adamc@220 131 fun sql_unary (oper, sqlexp, loc) =
adamc@220 132 let
adamc@403 133 val e = (EVar (["Basis"], "sql_unary", Infer), loc)
adamc@403 134 val e = (EApp (e, (EVar (["Basis"], "sql_" ^ oper, Infer), loc)), loc)
adamc@220 135 in
adamc@220 136 (EApp (e, sqlexp), loc)
adamc@219 137 end
adamc@219 138
adamc@229 139 fun sql_relop (oper, sqlexp1, sqlexp2, loc) =
adamc@229 140 let
adamc@403 141 val e = (EVar (["Basis"], "sql_relop", Infer), loc)
adamc@403 142 val e = (EApp (e, (EVar (["Basis"], "sql_" ^ oper, Infer), loc)), loc)
adamc@229 143 val e = (EApp (e, sqlexp1), loc)
adamc@229 144 in
adamc@229 145 (EApp (e, sqlexp2), loc)
adamc@229 146 end
adamc@229 147
adamc@441 148 fun sql_nfunc (oper, loc) =
adamc@441 149 let
adamc@441 150 val e = (EVar (["Basis"], "sql_nfunc", Infer), loc)
adamc@441 151 in
adamc@441 152 (EApp (e, (EVar (["Basis"], "sql_" ^ oper, Infer), loc)), loc)
adamc@441 153 end
adamc@441 154
adamc@389 155 fun native_unop (oper, e1, loc) =
adamc@389 156 let
adamc@403 157 val e = (EVar (["Basis"], oper, Infer), loc)
adamc@389 158 in
adamc@389 159 (EApp (e, e1), loc)
adamc@389 160 end
adamc@389 161
adamc@256 162 fun native_op (oper, e1, e2, loc) =
adamc@256 163 let
adamc@403 164 val e = (EVar (["Basis"], oper, Infer), loc)
adamc@256 165 val e = (EApp (e, e1), loc)
adamc@256 166 in
adamc@256 167 (EApp (e, e2), loc)
adamc@256 168 end
adamc@256 169
adamc@310 170 val inDml = ref false
adamc@310 171
adamc@325 172 fun tagIn bt =
adamc@325 173 case bt of
adamc@325 174 "table" => "tabl"
adamc@325 175 | _ => bt
adamc@325 176
adamc@1 177 %%
adamc@244 178 %header (functor UrwebLrValsFn(structure Token : TOKEN))
adamc@1 179
adamc@1 180 %term
adamc@1 181 EOF
adamc@14 182 | STRING of string | INT of Int64.int | FLOAT of Real64.real
adamc@1 183 | SYMBOL of string | CSYMBOL of string
adamc@1 184 | LPAREN | RPAREN | LBRACK | RBRACK | LBRACE | RBRACE
adamc@156 185 | EQ | COMMA | COLON | DCOLON | TCOLON | DOT | HASH | UNDER | UNDERUNDER | BAR
adamc@403 186 | PLUS | MINUS | DIVIDE | DOTDOTDOT | MOD | AT
adamc@623 187 | CON | LTYPE | VAL | REC | AND | FUN | MAP | UNIT | KUNIT | CLASS
adamc@156 188 | DATATYPE | OF
adamc@7 189 | TYPE | NAME
adamc@629 190 | ARROW | LARROW | DARROW | STAR | SEMI | KARROW | DKARROW | BANG
adamc@674 191 | FN | PLUSPLUS | MINUSMINUS | MINUSMINUSMINUS | DOLLAR | TWIDDLE | CARET
adamc@446 192 | LET | IN
adamc@445 193 | STRUCTURE | SIGNATURE | STRUCT | SIG | END | FUNCTOR | WHERE | EXTERN | SQL
adamc@338 194 | INCLUDE | OPEN | CONSTRAINT | CONSTRAINTS | EXPORT | TABLE | SEQUENCE
adamc@459 195 | COOKIE
adamc@190 196 | CASE | IF | THEN | ELSE
adamc@1 197
adamc@360 198 | XML_BEGIN of string | XML_END | XML_BEGIN_END of string
adamc@91 199 | NOTAGS of string
adamc@91 200 | BEGIN_TAG of string | END_TAG of string
adamc@91 201
adamc@230 202 | SELECT | FROM | AS | CWHERE | GROUP | ORDER | BY | HAVING
adamc@229 203 | UNION | INTERSECT | EXCEPT
adamc@232 204 | LIMIT | OFFSET | ALL
adamc@220 205 | TRUE | FALSE | CAND | OR | NOT
adamc@236 206 | COUNT | AVG | SUM | MIN | MAX
adamc@268 207 | ASC | DESC
adamc@470 208 | INSERT | INTO | VALUES | UPDATE | SET | DELETE | NULL | IS
adamc@441 209 | CURRENT_TIMESTAMP
adamc@219 210 | NE | LT | LE | GT | GE
adamc@704 211 | CCONSTRAINT | UNIQUE
adamc@204 212
adamc@30 213 %nonterm
adamc@1 214 file of decl list
adamc@1 215 | decls of decl list
adamc@325 216 | decl of decl list
adamc@123 217 | vali of string * con option * exp
adamc@123 218 | valis of (string * con option * exp) list
adamc@242 219 | copt of con option
adamc@1 220
adamc@191 221 | dargs of string list
adamc@156 222 | barOpt of unit
adamc@156 223 | dcons of (string * con option) list
adamc@156 224 | dcon of string * con option
adamc@156 225
adamc@704 226 | cst of exp
adamc@704 227 | csts of exp
adamc@704 228 | cstopt of exp
adamc@704 229
adamc@30 230 | sgn of sgn
adamc@42 231 | sgntm of sgn
adamc@30 232 | sgi of sgn_item
adamc@30 233 | sgis of sgn_item list
adamc@30 234
adamc@30 235 | str of str
adamc@30 236
adamc@1 237 | kind of kind
adamc@207 238 | ktuple of kind list
adamc@1 239 | kcolon of explicitness
adamc@240 240 | kopt of kind option
adamc@1 241
adamc@34 242 | path of string list * string
adamc@156 243 | cpath of string list * string
adamc@34 244 | spath of str
adamc@59 245 | mpath of string list
adamc@34 246
adamc@1 247 | cexp of con
adamc@1 248 | capps of con
adamc@1 249 | cterm of con
adamc@195 250 | ctuple of con list
adamc@207 251 | ctuplev of con list
adamc@1 252 | ident of con
adamc@200 253 | idents of con list
adamc@1 254 | rcon of (con * con) list
adamc@83 255 | rconn of (con * con) list
adamc@1 256 | rcone of (con * con) list
adamc@239 257 | cargs of con * kind -> con * kind
adamc@239 258 | cargl of con * kind -> con * kind
adamc@240 259 | cargl2 of con * kind -> con * kind
adamc@239 260 | carg of con * kind -> con * kind
adamc@239 261 | cargp of con * kind -> con * kind
adamc@1 262
adamc@8 263 | eexp of exp
adamc@8 264 | eapps of exp
adamc@8 265 | eterm of exp
adamc@195 266 | etuple of exp list
adamc@12 267 | rexp of (con * exp) list
adamc@91 268 | xml of exp
adamc@91 269 | xmlOne of exp
adamc@141 270 | tag of string * exp
adamc@141 271 | tagHead of string * exp
adamc@434 272 | bind of string * con option * exp
adamc@446 273 | edecl of edecl
adamc@446 274 | edecls of edecl list
adamc@8 275
adamc@241 276 | earg of exp * con -> exp * con
adamc@241 277 | eargp of exp * con -> exp * con
adamc@241 278 | eargs of exp * con -> exp * con
adamc@241 279 | eargl of exp * con -> exp * con
adamc@242 280 | eargl2 of exp * con -> exp * con
adamc@241 281
adamc@170 282 | branch of pat * exp
adamc@170 283 | branchs of (pat * exp) list
adamc@170 284 | pat of pat
adamc@170 285 | pterm of pat
adamc@174 286 | rpat of (string * pat) list * bool
adamc@195 287 | ptuple of pat list
adamc@170 288
adamc@104 289 | attrs of (con * exp) list
adamc@104 290 | attr of con * exp
adamc@104 291 | attrv of exp
adamc@104 292
adamc@204 293 | query of exp
adamc@226 294 | query1 of exp
adamc@204 295 | tables of (con * exp) list
adamc@204 296 | tname of con
adamc@705 297 | tnameW of con * con
adamc@705 298 | tnames of (con * con) * (con * con) list
adamc@705 299 | tnames' of (con * con) * (con * con) list
adamc@204 300 | table of con * exp
adamc@207 301 | tident of con
adamc@207 302 | fident of con
adamc@207 303 | seli of select_item
adamc@207 304 | selis of select_item list
adamc@207 305 | select of select
adamc@209 306 | sqlexp of exp
adamc@209 307 | wopt of exp
adamc@226 308 | groupi of group_item
adamc@226 309 | groupis of group_item list
adamc@226 310 | gopt of group_item list option
adamc@227 311 | hopt of exp
adamc@230 312 | obopt of exp
adamc@268 313 | obitem of exp * exp
adamc@230 314 | obexps of exp
adamc@268 315 | diropt of exp
adamc@231 316 | lopt of exp
adamc@232 317 | ofopt of exp
adamc@231 318 | sqlint of exp
adamc@236 319 | sqlagg of string
adamc@207 320
adamc@302 321 | texp of exp
adamc@302 322 | fields of con list
adamc@302 323 | sqlexps of exp list
adamc@303 324 | fsets of (con * exp) list
adamc@310 325 | enterDml of unit
adamc@310 326 | leaveDml of unit
adamc@302 327
adamc@204 328
adamc@1 329 %verbose (* print summary of errors *)
adamc@1 330 %pos int (* positions *)
adamc@1 331 %start file
adamc@1 332 %pure
adamc@1 333 %eop EOF
adamc@1 334 %noshift EOF
adamc@1 335
adamc@244 336 %name Urweb
adamc@1 337
adamc@623 338 %right KARROW
adamc@623 339 %nonassoc DKARROW
adamc@243 340 %right SEMI
adamc@243 341 %nonassoc LARROW
adamc@195 342 %nonassoc IF THEN ELSE
adamc@1 343 %nonassoc DARROW
adamc@1 344 %nonassoc COLON
adamc@6 345 %nonassoc DCOLON TCOLON
adamc@229 346 %left UNION INTERSECT EXCEPT
adamc@1 347 %right COMMA
adamc@220 348 %right OR
adamc@220 349 %right CAND
adamc@470 350 %nonassoc EQ NE LT LE GT GE IS
adamc@243 351 %right ARROW
adamc@674 352 %right CARET PLUSPLUS MINUSMINUS MINUSMINUSMINUS
adamc@389 353 %left PLUS MINUS
adamc@389 354 %left STAR DIVIDE MOD
adamc@220 355 %left NOT
adamc@84 356 %nonassoc TWIDDLE
adamc@1 357 %nonassoc DOLLAR
adamc@1 358 %left DOT
adamc@221 359 %nonassoc LBRACE RBRACE
adamc@1 360
adamc@1 361 %%
adamc@1 362
adamc@1 363 file : decls (decls)
adamc@54 364 | SIG sgis ([(DSgn ("?", (SgnConst sgis, s (SIGleft, sgisright))),
adamc@54 365 s (SIGleft, sgisright))])
adamc@1 366
adamc@1 367 decls : ([])
adamc@325 368 | decl decls (decl @ decls)
adamc@1 369
adamc@240 370 decl : CON SYMBOL cargl2 kopt EQ cexp (let
adamc@240 371 val loc = s (CONleft, cexpright)
adamc@240 372
adamc@240 373 val k = Option.getOpt (kopt, (KWild, loc))
adamc@240 374 val (c, k) = cargl2 (cexp, k)
adamc@240 375 in
adamc@325 376 [(DCon (SYMBOL, SOME k, c), loc)]
adamc@240 377 end)
adamc@325 378 | LTYPE SYMBOL EQ cexp ([(DCon (SYMBOL, SOME (KType, s (LTYPEleft, cexpright)), cexp),
adamc@325 379 s (LTYPEleft, cexpright))])
adamc@325 380 | DATATYPE SYMBOL dargs EQ barOpt dcons([(DDatatype (SYMBOL, dargs, dcons), s (DATATYPEleft, dconsright))])
adamc@191 381 | DATATYPE SYMBOL dargs EQ DATATYPE CSYMBOL DOT path
adamc@191 382 (case dargs of
adamc@325 383 [] => [(DDatatypeImp (SYMBOL, CSYMBOL :: #1 path, #2 path), s (DATATYPEleft, pathright))]
adamc@191 384 | _ => raise Fail "Arguments specified for imported datatype")
adamc@325 385 | VAL vali ([(DVal vali, s (VALleft, valiright))])
adamc@325 386 | VAL REC valis ([(DValRec valis, s (VALleft, valisright))])
adamc@325 387 | FUN valis ([(DValRec valis, s (FUNleft, valisright))])
adamc@1 388
adamc@325 389 | SIGNATURE CSYMBOL EQ sgn ([(DSgn (CSYMBOL, sgn), s (SIGNATUREleft, sgnright))])
adamc@325 390 | STRUCTURE CSYMBOL EQ str ([(DStr (CSYMBOL, NONE, str), s (STRUCTUREleft, strright))])
adamc@325 391 | STRUCTURE CSYMBOL COLON sgn EQ str ([(DStr (CSYMBOL, SOME sgn, str), s (STRUCTUREleft, strright))])
adamc@42 392 | FUNCTOR CSYMBOL LPAREN CSYMBOL COLON sgn RPAREN EQ str
adamc@325 393 ([(DStr (CSYMBOL1, NONE,
adamc@325 394 (StrFun (CSYMBOL2, sgn1, NONE, str), s (FUNCTORleft, strright))),
adamc@325 395 s (FUNCTORleft, strright))])
adamc@42 396 | FUNCTOR CSYMBOL LPAREN CSYMBOL COLON sgn RPAREN COLON sgn EQ str
adamc@325 397 ([(DStr (CSYMBOL1, NONE,
adamc@325 398 (StrFun (CSYMBOL2, sgn1, SOME sgn2, str), s (FUNCTORleft, strright))),
adamc@325 399 s (FUNCTORleft, strright))])
adamc@325 400 | EXTERN STRUCTURE CSYMBOL COLON sgn ([(DFfiStr (CSYMBOL, sgn), s (EXTERNleft, sgnright))])
adamc@61 401 | OPEN mpath (case mpath of
adamc@61 402 [] => raise Fail "Impossible mpath parse [1]"
adamc@325 403 | m :: ms => [(DOpen (m, ms), s (OPENleft, mpathright))])
adamc@325 404 | OPEN mpath LPAREN str RPAREN (let
adamc@325 405 val loc = s (OPENleft, RPARENright)
adamc@325 406
adamc@325 407 val m = case mpath of
adamc@325 408 [] => raise Fail "Impossible mpath parse [4]"
adamc@325 409 | m :: ms =>
adamc@325 410 foldl (fn (m, str) => (StrProj (str, m), loc))
adamc@325 411 (StrVar m, loc) ms
adamc@325 412 in
adamc@325 413 [(DStr ("anon", NONE, (StrApp (m, str), loc)), loc),
adamc@325 414 (DOpen ("anon", []), loc)]
adamc@325 415 end)
adamc@88 416 | OPEN CONSTRAINTS mpath (case mpath of
adamc@88 417 [] => raise Fail "Impossible mpath parse [3]"
adamc@325 418 | m :: ms => [(DOpenConstraints (m, ms), s (OPENleft, mpathright))])
adamc@325 419 | CONSTRAINT cterm TWIDDLE cterm ([(DConstraint (cterm1, cterm2), s (CONSTRAINTleft, ctermright))])
adamc@325 420 | EXPORT spath ([(DExport spath, s (EXPORTleft, spathright))])
adamc@704 421 | TABLE SYMBOL COLON cterm cstopt([(DTable (SYMBOL, entable cterm, cstopt), s (TABLEleft, cstoptright))])
adamc@338 422 | SEQUENCE SYMBOL ([(DSequence SYMBOL, s (SEQUENCEleft, SYMBOLright))])
adamc@563 423 | CLASS SYMBOL EQ cexp (let
adamc@563 424 val loc = s (CLASSleft, cexpright)
adamc@563 425 in
adamc@563 426 [(DClass (SYMBOL, (KWild, loc), cexp), loc)]
adamc@563 427 end)
adamc@563 428 | CLASS SYMBOL DCOLON kind EQ cexp ([(DClass (SYMBOL, kind, cexp), s (CLASSleft, cexpright))])
adamc@211 429 | CLASS SYMBOL SYMBOL EQ cexp (let
adamc@211 430 val loc = s (CLASSleft, cexpright)
adamc@563 431 val k = (KWild, loc)
adamc@211 432 val c = (CAbs (SYMBOL2, SOME k, cexp), loc)
adamc@211 433 in
adamc@563 434 [(DClass (SYMBOL1, k, c), s (CLASSleft, cexpright))]
adamc@563 435 end)
adamc@563 436 | CLASS SYMBOL LPAREN SYMBOL DCOLON kind RPAREN EQ cexp (let
adamc@563 437 val loc = s (CLASSleft, cexpright)
adamc@563 438 val c = (CAbs (SYMBOL2, SOME kind, cexp), loc)
adamc@563 439 in
adamc@563 440 [(DClass (SYMBOL1, kind, c), s (CLASSleft, cexpright))]
adamc@211 441 end)
adamc@459 442 | COOKIE SYMBOL COLON cexp ([(DCookie (SYMBOL, cexp), s (COOKIEleft, cexpright))])
adamc@30 443
adamc@240 444 kopt : (NONE)
adamc@240 445 | DCOLON kind (SOME kind)
adamc@240 446
adamc@191 447 dargs : ([])
adamc@191 448 | SYMBOL dargs (SYMBOL :: dargs)
adamc@191 449
adamc@156 450 barOpt : ()
adamc@156 451 | BAR ()
adamc@156 452
adamc@156 453 dcons : dcon ([dcon])
adamc@156 454 | dcon BAR dcons (dcon :: dcons)
adamc@156 455
adamc@156 456 dcon : CSYMBOL (CSYMBOL, NONE)
adamc@156 457 | CSYMBOL OF cexp (CSYMBOL, SOME cexp)
adamc@156 458
adamc@242 459 vali : SYMBOL eargl2 copt EQ eexp (let
adamc@242 460 val loc = s (SYMBOLleft, eexpright)
adamc@242 461 val t = Option.getOpt (copt, (CWild (KType, loc), loc))
adamc@242 462
adamc@242 463 val (e, t) = eargl2 (eexp, t)
adamc@242 464 in
adamc@242 465 (SYMBOL, SOME t, e)
adamc@242 466 end)
adamc@242 467
adamc@242 468 copt : (NONE)
adamc@242 469 | COLON cexp (SOME cexp)
adamc@123 470
adamc@704 471 cstopt : (EVar (["Basis"], "no_constraint", Infer), dummy)
adamc@704 472 | csts (csts)
adamc@704 473
adamc@704 474 csts : CCONSTRAINT tname cst (let
adamc@704 475 val loc = s (CCONSTRAINTleft, cstright)
adamc@704 476
adamc@704 477 val e = (EVar (["Basis"], "one_constraint", Infer), loc)
adamc@704 478 val e = (ECApp (e, tname), loc)
adamc@704 479 in
adamc@704 480 (EApp (e, cst), loc)
adamc@704 481 end)
adamc@704 482 | csts COMMA csts (let
adamc@704 483 val loc = s (csts1left, csts2right)
adamc@704 484
adamc@704 485 val e = (EVar (["Basis"], "join_constraints", Infer), loc)
adamc@704 486 val e = (EApp (e, csts1), loc)
adamc@704 487 in
adamc@704 488 (EApp (e, csts2), loc)
adamc@704 489 end)
adamc@704 490 | LBRACE LBRACE eexp RBRACE RBRACE (eexp)
adamc@704 491
adamc@704 492 cst : UNIQUE tnames (let
adamc@704 493 val loc = s (UNIQUEleft, tnamesright)
adamc@704 494
adamc@704 495 val e = (EVar (["Basis"], "unique", Infer), loc)
adamc@705 496 val e = (ECApp (e, #1 (#1 tnames)), loc)
adamc@705 497 val e = (ECApp (e, (CRecord (#2 tnames), loc)), loc)
adamc@705 498 val e = (EDisjointApp e, loc)
adamc@704 499 in
adamc@704 500 (EDisjointApp e, loc)
adamc@704 501 end)
adamc@704 502 | LBRACE eexp RBRACE (eexp)
adamc@704 503
adamc@704 504 tnameW : tname (let
adamc@704 505 val loc = s (tnameleft, tnameright)
adamc@704 506 in
adamc@704 507 (tname, (CWild (KType, loc), loc))
adamc@704 508 end)
adamc@704 509
adamc@705 510 tnames : tnameW (tnameW, [])
adamc@705 511 | LPAREN tnames' RPAREN (tnames')
adamc@704 512
adamc@705 513 tnames': tnameW (tnameW, [])
adamc@705 514 | tnameW COMMA tnames' (#1 tnames', tnameW :: #2 tnames')
adamc@704 515
adamc@123 516 valis : vali ([vali])
adamc@123 517 | vali AND valis (vali :: valis)
adamc@123 518
adamc@42 519 sgn : sgntm (sgntm)
adamc@40 520 | FUNCTOR LPAREN CSYMBOL COLON sgn RPAREN COLON sgn
adamc@40 521 (SgnFun (CSYMBOL, sgn1, sgn2), s (FUNCTORleft, sgn2right))
adamc@30 522
adamc@42 523 sgntm : SIG sgis END (SgnConst sgis, s (SIGleft, ENDright))
adamc@59 524 | mpath (case mpath of
adamc@61 525 [] => raise Fail "Impossible mpath parse [2]"
adamc@59 526 | [x] => SgnVar x
adamc@59 527 | m :: ms => SgnProj (m,
adamc@59 528 List.take (ms, length ms - 1),
adamc@59 529 List.nth (ms, length ms - 1)),
adamc@59 530 s (mpathleft, mpathright))
adamc@42 531 | sgntm WHERE CON SYMBOL EQ cexp (SgnWhere (sgntm, SYMBOL, cexp), s (sgntmleft, cexpright))
adamc@42 532 | sgntm WHERE LTYPE SYMBOL EQ cexp(SgnWhere (sgntm, SYMBOL, cexp), s (sgntmleft, cexpright))
adamc@42 533 | LPAREN sgn RPAREN (sgn)
adamc@42 534
adamc@706 535 sgi : CON SYMBOL DCOLON kind ((SgiConAbs (SYMBOL, kind), s (CONleft, kindright)))
adamc@706 536 | LTYPE SYMBOL ((SgiConAbs (SYMBOL, (KType, s (LTYPEleft, SYMBOLright))),
adamc@706 537 s (LTYPEleft, SYMBOLright)))
adamc@706 538 | CON SYMBOL EQ cexp ((SgiCon (SYMBOL, NONE, cexp), s (CONleft, cexpright)))
adamc@706 539 | CON SYMBOL DCOLON kind EQ cexp ((SgiCon (SYMBOL, SOME kind, cexp), s (CONleft, cexpright)))
adamc@706 540 | LTYPE SYMBOL EQ cexp ((SgiCon (SYMBOL, SOME (KType, s (LTYPEleft, cexpright)), cexp),
adamc@706 541 s (LTYPEleft, cexpright)))
adamc@706 542 | DATATYPE SYMBOL dargs EQ barOpt dcons((SgiDatatype (SYMBOL, dargs, dcons), s (DATATYPEleft, dconsright)))
adamc@191 543 | DATATYPE SYMBOL dargs EQ DATATYPE CSYMBOL DOT path
adamc@191 544 (case dargs of
adamc@191 545 [] => (SgiDatatypeImp (SYMBOL, CSYMBOL :: #1 path, #2 path), s (DATATYPEleft, pathright))
adamc@191 546 | _ => raise Fail "Arguments specified for imported datatype")
adamc@706 547 | VAL SYMBOL COLON cexp ((SgiVal (SYMBOL, cexp), s (VALleft, cexpright)))
adamc@30 548
adamc@706 549 | STRUCTURE CSYMBOL COLON sgn ((SgiStr (CSYMBOL, sgn), s (STRUCTUREleft, sgnright)))
adamc@706 550 | SIGNATURE CSYMBOL EQ sgn ((SgiSgn (CSYMBOL, sgn), s (SIGNATUREleft, sgnright)))
adamc@42 551 | FUNCTOR CSYMBOL LPAREN CSYMBOL COLON sgn RPAREN COLON sgn
adamc@706 552 ((SgiStr (CSYMBOL1,
adamc@706 553 (SgnFun (CSYMBOL2, sgn1, sgn2), s (FUNCTORleft, sgn2right))),
adamc@706 554 s (FUNCTORleft, sgn2right)))
adamc@706 555 | INCLUDE sgn ((SgiInclude sgn, s (INCLUDEleft, sgnright)))
adamc@706 556 | CONSTRAINT cterm TWIDDLE cterm ((SgiConstraint (cterm1, cterm2), s (CONSTRAINTleft, ctermright)))
adamc@706 557 | TABLE SYMBOL COLON cterm cstopt(let
adamc@706 558 val loc = s (TABLEleft, ctermright)
adamc@460 559 in
adamc@706 560 (SgiTable (SYMBOL, entable cterm, cstopt), loc)
adamc@460 561 end)
adamc@460 562 | SEQUENCE SYMBOL (let
adamc@460 563 val loc = s (SEQUENCEleft, SYMBOLright)
adamc@460 564 val t = (CVar (["Basis"], "sql_sequence"), loc)
adamc@460 565 in
adamc@460 566 (SgiVal (SYMBOL, t), loc)
adamc@460 567 end)
adamc@563 568 | CLASS SYMBOL (let
adamc@563 569 val loc = s (CLASSleft, SYMBOLright)
adamc@563 570 in
adamc@563 571 (SgiClassAbs (SYMBOL, (KWild, loc)), loc)
adamc@563 572 end)
adamc@563 573 | CLASS SYMBOL DCOLON kind (let
adamc@563 574 val loc = s (CLASSleft, kindright)
adamc@563 575 in
adamc@563 576 (SgiClassAbs (SYMBOL, kind), loc)
adamc@563 577 end)
adamc@563 578 | CLASS SYMBOL EQ cexp (let
adamc@563 579 val loc = s (CLASSleft, cexpright)
adamc@563 580 in
adamc@563 581 (SgiClass (SYMBOL, (KWild, loc), cexp), loc)
adamc@563 582 end)
adamc@563 583 | CLASS SYMBOL DCOLON kind EQ cexp (let
adamc@563 584 val loc = s (CLASSleft, cexpright)
adamc@563 585 in
adamc@563 586 (SgiClass (SYMBOL, kind, cexp), loc)
adamc@563 587 end)
adamc@211 588 | CLASS SYMBOL SYMBOL EQ cexp (let
adamc@211 589 val loc = s (CLASSleft, cexpright)
adamc@563 590 val k = (KWild, loc)
adamc@211 591 val c = (CAbs (SYMBOL2, SOME k, cexp), loc)
adamc@211 592 in
adamc@563 593 (SgiClass (SYMBOL1, k, c), s (CLASSleft, cexpright))
adamc@563 594 end)
adamc@563 595 | CLASS SYMBOL LPAREN SYMBOL DCOLON kind RPAREN EQ cexp (let
adamc@563 596 val loc = s (CLASSleft, cexpright)
adamc@563 597 val c = (CAbs (SYMBOL2, SOME kind, cexp), loc)
adamc@563 598 in
adamc@563 599 (SgiClass (SYMBOL1, kind, c), s (CLASSleft, cexpright))
adamc@211 600 end)
adamc@460 601 | COOKIE SYMBOL COLON cexp (let
adamc@460 602 val loc = s (COOKIEleft, cexpright)
adamc@460 603 val t = (CApp ((CVar (["Basis"], "http_cookie"), loc),
adamc@460 604 entable cexp), loc)
adamc@460 605 in
adamc@460 606 (SgiVal (SYMBOL, t), loc)
adamc@460 607 end)
adamc@30 608
adamc@30 609 sgis : ([])
adamc@30 610 | sgi sgis (sgi :: sgis)
adamc@30 611
adamc@30 612 str : STRUCT decls END (StrConst decls, s (STRUCTleft, ENDright))
adamc@34 613 | spath (spath)
adamc@40 614 | FUNCTOR LPAREN CSYMBOL COLON sgn RPAREN DARROW str
adamc@40 615 (StrFun (CSYMBOL, sgn, NONE, str), s (FUNCTORleft, strright))
adamc@40 616 | FUNCTOR LPAREN CSYMBOL COLON sgn RPAREN COLON sgn DARROW str
adamc@40 617 (StrFun (CSYMBOL, sgn1, SOME sgn2, str), s (FUNCTORleft, strright))
adamc@44 618 | spath LPAREN str RPAREN (StrApp (spath, str), s (spathleft, RPARENright))
adamc@34 619
adamc@34 620 spath : CSYMBOL (StrVar CSYMBOL, s (CSYMBOLleft, CSYMBOLright))
adamc@34 621 | spath DOT CSYMBOL (StrProj (spath, CSYMBOL), s (spathleft, CSYMBOLright))
adamc@30 622
adamc@1 623 kind : TYPE (KType, s (TYPEleft, TYPEright))
adamc@1 624 | NAME (KName, s (NAMEleft, NAMEright))
adamc@1 625 | LBRACE kind RBRACE (KRecord kind, s (LBRACEleft, RBRACEright))
adamc@1 626 | kind ARROW kind (KArrow (kind1, kind2), s (kind1left, kind2right))
adamc@1 627 | LPAREN kind RPAREN (#1 kind, s (LPARENleft, RPARENright))
adamc@82 628 | KUNIT (KUnit, s (KUNITleft, KUNITright))
adamc@18 629 | UNDERUNDER (KWild, s (UNDERUNDERleft, UNDERUNDERright))
adamc@207 630 | LPAREN ktuple RPAREN (KTuple ktuple, s (LPARENleft, RPARENright))
adamc@623 631 | CSYMBOL (KVar CSYMBOL, s (CSYMBOLleft, CSYMBOLright))
adamc@623 632 | CSYMBOL KARROW kind (KFun (CSYMBOL, kind), s (CSYMBOLleft, kindright))
adamc@207 633
adamc@207 634 ktuple : kind STAR kind ([kind1, kind2])
adamc@207 635 | kind STAR ktuple (kind :: ktuple)
adamc@1 636
adamc@1 637 capps : cterm (cterm)
adamc@1 638 | capps cterm (CApp (capps, cterm), s (cappsleft, ctermright))
adamc@1 639
adamc@1 640 cexp : capps (capps)
adamc@1 641 | cexp ARROW cexp (TFun (cexp1, cexp2), s (cexp1left, cexp2right))
adamc@15 642 | SYMBOL kcolon kind ARROW cexp (TCFun (kcolon, SYMBOL, kind, cexp), s (SYMBOLleft, cexpright))
adamc@623 643 | CSYMBOL KARROW cexp (TKFun (CSYMBOL, cexp), s (CSYMBOLleft, cexpright))
adamc@1 644
adamc@1 645 | cexp PLUSPLUS cexp (CConcat (cexp1, cexp2), s (cexp1left, cexp1right))
adamc@1 646
adamc@239 647 | FN cargs DARROW cexp (#1 (cargs (cexp, (KWild, s (FNleft, cexpright)))))
adamc@628 648 | LBRACK cexp TWIDDLE cexp RBRACK DARROW cexp (TDisjoint (cexp1, cexp2, cexp3), s (LBRACKleft, cexp3right))
adamc@623 649 | CSYMBOL DKARROW cexp (CKAbs (CSYMBOL, cexp), s (CSYMBOLleft, cexpright))
adamc@1 650
adamc@8 651 | LPAREN cexp RPAREN DCOLON kind (CAnnot (cexp, kind), s (LPARENleft, kindright))
adamc@6 652
adamc@18 653 | UNDER DCOLON kind (CWild kind, s (UNDERleft, UNDERright))
adamc@195 654 | ctuple (let
adamc@195 655 val loc = s (ctupleleft, ctupleright)
adamc@195 656 in
adamc@195 657 (TRecord (CRecord (ListUtil.mapi (fn (i, c) =>
adamc@195 658 ((CName (Int.toString (i + 1)), loc),
adamc@195 659 c)) ctuple),
adamc@195 660 loc), loc)
adamc@195 661 end)
adamc@18 662
adamc@1 663 kcolon : DCOLON (Explicit)
adamc@1 664 | TCOLON (Implicit)
adamc@1 665
adamc@239 666 cargs : carg (carg)
adamc@239 667 | cargl (cargl)
adamc@239 668
adamc@239 669 cargl : cargp cargp (cargp1 o cargp2)
adamc@239 670 | cargp cargl (cargp o cargl)
adamc@239 671
adamc@240 672 cargl2 : (fn x => x)
adamc@240 673 | cargp cargl2 (cargp o cargl2)
adamc@240 674
adamc@241 675 carg : SYMBOL DCOLON kind (fn (c, k) =>
adamc@239 676 let
adamc@239 677 val loc = s (SYMBOLleft, kindright)
adamc@239 678 in
adamc@239 679 ((CAbs (SYMBOL, SOME kind, c), loc),
adamc@239 680 (KArrow (kind, k), loc))
adamc@239 681 end)
adamc@329 682 | UNDER DCOLON kind (fn (c, k) =>
adamc@329 683 let
adamc@329 684 val loc = s (UNDERleft, kindright)
adamc@329 685 in
adamc@329 686 ((CAbs ("_", SOME kind, c), loc),
adamc@329 687 (KArrow (kind, k), loc))
adamc@329 688 end)
adamc@241 689 | cargp (cargp)
adamc@239 690
adamc@239 691 cargp : SYMBOL (fn (c, k) =>
adamc@239 692 let
adamc@239 693 val loc = s (SYMBOLleft, SYMBOLright)
adamc@239 694 in
adamc@239 695 ((CAbs (SYMBOL, NONE, c), loc),
adamc@239 696 (KArrow ((KWild, loc), k), loc))
adamc@239 697 end)
adamc@329 698 | UNDER (fn (c, k) =>
adamc@329 699 let
adamc@329 700 val loc = s (UNDERleft, UNDERright)
adamc@329 701 in
adamc@329 702 ((CAbs ("_", NONE, c), loc),
adamc@329 703 (KArrow ((KWild, loc), k), loc))
adamc@329 704 end)
adamc@239 705 | LPAREN SYMBOL DCOLON kind RPAREN (fn (c, k) =>
adamc@239 706 let
adamc@239 707 val loc = s (LPARENleft, RPARENright)
adamc@239 708 in
adamc@239 709 ((CAbs (SYMBOL, SOME kind, c), loc),
adamc@239 710 (KArrow (kind, k), loc))
adamc@239 711 end)
adamc@628 712
adamc@239 713
adamc@34 714 path : SYMBOL ([], SYMBOL)
adamc@34 715 | CSYMBOL DOT path (let val (ms, x) = path in (CSYMBOL :: ms, x) end)
adamc@34 716
adamc@156 717 cpath : CSYMBOL ([], CSYMBOL)
adamc@156 718 | CSYMBOL DOT cpath (let val (ms, x) = cpath in (CSYMBOL :: ms, x) end)
adamc@156 719
adamc@59 720 mpath : CSYMBOL ([CSYMBOL])
adamc@59 721 | CSYMBOL DOT mpath (CSYMBOL :: mpath)
adamc@59 722
adamc@1 723 cterm : LPAREN cexp RPAREN (#1 cexp, s (LPARENleft, RPARENright))
adamc@1 724 | LBRACK rcon RBRACK (CRecord rcon, s (LBRACKleft, RBRACKright))
adamc@83 725 | LBRACK rconn RBRACK (CRecord rconn, s (LBRACKleft, RBRACKright))
adamc@1 726 | LBRACE rcone RBRACE (TRecord (CRecord rcone, s (LBRACEleft, RBRACEright)),
adamc@1 727 s (LBRACEleft, RBRACEright))
adamc@1 728 | DOLLAR cterm (TRecord cterm, s (DOLLARleft, ctermright))
adamc@1 729 | HASH CSYMBOL (CName CSYMBOL, s (HASHleft, CSYMBOLright))
adamc@195 730 | HASH INT (CName (Int64.toString INT), s (HASHleft, INTright))
adamc@1 731
adamc@34 732 | path (CVar path, s (pathleft, pathright))
adamc@207 733 | path DOT INT (CProj ((CVar path, s (pathleft, pathright)), Int64.toInt INT),
adamc@207 734 s (pathleft, INTright))
adamc@18 735 | UNDER (CWild (KWild, s (UNDERleft, UNDERright)), s (UNDERleft, UNDERright))
adamc@621 736 | MAP (CMap, s (MAPleft, MAPright))
adamc@82 737 | UNIT (CUnit, s (UNITleft, UNITright))
adamc@207 738 | LPAREN ctuplev RPAREN (CTuple ctuplev, s (LPARENleft, RPARENright))
adamc@207 739
adamc@207 740 ctuplev: cexp COMMA cexp ([cexp1, cexp2])
adamc@207 741 | cexp COMMA ctuplev (cexp :: ctuplev)
adamc@1 742
adamc@196 743 ctuple : capps STAR capps ([capps1, capps2])
adamc@196 744 | capps STAR ctuple (capps :: ctuple)
adamc@195 745
adamc@1 746 rcon : ([])
adamc@1 747 | ident EQ cexp ([(ident, cexp)])
adamc@1 748 | ident EQ cexp COMMA rcon ((ident, cexp) :: rcon)
adamc@1 749
adamc@83 750 rconn : ident ([(ident, (CUnit, s (identleft, identright)))])
adamc@83 751 | ident COMMA rconn ((ident, (CUnit, s (identleft, identright))) :: rconn)
adamc@83 752
adamc@1 753 rcone : ([])
adamc@1 754 | ident COLON cexp ([(ident, cexp)])
adamc@1 755 | ident COLON cexp COMMA rcone ((ident, cexp) :: rcone)
adamc@1 756
adamc@1 757 ident : CSYMBOL (CName CSYMBOL, s (CSYMBOLleft, CSYMBOLright))
adamc@195 758 | INT (CName (Int64.toString INT), s (INTleft, INTright))
adamc@200 759 | SYMBOL (CVar ([], SYMBOL), s (SYMBOLleft, SYMBOLright))
adamc@8 760
adamc@8 761 eapps : eterm (eterm)
adamc@8 762 | eapps eterm (EApp (eapps, eterm), s (eappsleft, etermright))
adamc@8 763 | eapps LBRACK cexp RBRACK (ECApp (eapps, cexp), s (eappsleft, RBRACKright))
adamc@629 764 | eapps BANG (EDisjointApp eapps, s (eappsleft, BANGright))
adamc@8 765
adamc@8 766 eexp : eapps (eapps)
adamc@241 767 | FN eargs DARROW eexp (let
adamc@93 768 val loc = s (FNleft, eexpright)
adamc@93 769 in
adamc@241 770 #1 (eargs (eexp, (CWild (KType, loc), loc)))
adamc@93 771 end)
adamc@623 772 | CSYMBOL DKARROW eexp (EKAbs (CSYMBOL, eexp), s (CSYMBOLleft, eexpright))
adamc@196 773 | eexp COLON cexp (EAnnot (eexp, cexp), s (eexpleft, cexpright))
adamc@149 774 | eexp MINUSMINUS cexp (ECut (eexp, cexp), s (eexpleft, cexpright))
adamc@493 775 | eexp MINUSMINUSMINUS cexp (ECutMulti (eexp, cexp), s (eexpleft, cexpright))
adamc@170 776 | CASE eexp OF barOpt branch branchs (ECase (eexp, branch :: branchs), s (CASEleft, branchsright))
adamc@190 777 | IF eexp THEN eexp ELSE eexp (let
adamc@190 778 val loc = s (IFleft, eexp3right)
adamc@190 779 in
adamc@190 780 (ECase (eexp1, [((PCon (["Basis"], "True", NONE), loc), eexp2),
adamc@190 781 ((PCon (["Basis"], "False", NONE), loc), eexp3)]), loc)
adamc@190 782 end)
adamc@434 783 | bind SEMI eexp (let
adamc@434 784 val loc = s (bindleft, eexpright)
adamc@434 785 val (v, to, e1) = bind
adamc@403 786 val e = (EVar (["Basis"], "bind", Infer), loc)
adamc@434 787 val e = (EApp (e, e1), loc)
adamc@243 788 in
adamc@434 789 (EApp (e, (EAbs (v, to, eexp), loc)), loc)
adamc@299 790 end)
adamc@256 791 | eexp EQ eexp (native_op ("eq", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@257 792 | eexp NE eexp (native_op ("ne", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@389 793 | MINUS eterm (native_unop ("neg", eterm, s (MINUSleft, etermright)))
adamc@389 794 | eexp PLUS eexp (native_op ("plus", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@389 795 | eexp MINUS eexp (native_op ("minus", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@389 796 | eterm STAR eexp (native_op ("times", eterm, eexp, s (etermleft, eexpright)))
adamc@389 797 | eexp DIVIDE eexp (native_op ("div", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@389 798 | eexp MOD eexp (native_op ("mod", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@391 799
adamc@391 800 | eexp LT eexp (native_op ("lt", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@391 801 | eexp LE eexp (native_op ("le", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@391 802 | eexp GT eexp (native_op ("gt", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@391 803 | eexp GE eexp (native_op ("ge", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@391 804
adamc@445 805 | eexp PLUSPLUS eexp (EConcat (eexp1, eexp2), s (eexp1left, eexp2right))
adamc@8 806
adamc@674 807 | eexp CARET eexp (native_op ("strcat", eexp1, eexp2, s (eexp1left, eexp2right)))
adamc@674 808
adamc@434 809 bind : SYMBOL LARROW eapps (SYMBOL, NONE, eapps)
adamc@434 810 | UNIT LARROW eapps (let
adamc@434 811 val loc = s (UNITleft, eappsright)
adamc@434 812 in
adamc@434 813 ("_", SOME (TRecord (CRecord [], loc), loc), eapps)
adamc@434 814 end)
adamc@434 815 | eapps (let
adamc@434 816 val loc = s (eappsleft, eappsright)
adamc@434 817 in
adamc@434 818 ("_", SOME (TRecord (CRecord [], loc), loc), eapps)
adamc@434 819 end)
adamc@434 820
adamc@241 821 eargs : earg (earg)
adamc@241 822 | eargl (eargl)
adamc@241 823
adamc@241 824 eargl : eargp eargp (eargp1 o eargp2)
adamc@241 825 | eargp eargl (eargp o eargl)
adamc@241 826
adamc@242 827 eargl2 : (fn x => x)
adamc@242 828 | eargp eargl2 (eargp o eargl2)
adamc@242 829
adamc@241 830 earg : SYMBOL kcolon kind (fn (e, t) =>
adamc@241 831 let
adamc@241 832 val loc = s (SYMBOLleft, kindright)
adamc@241 833 in
adamc@241 834 ((ECAbs (kcolon, SYMBOL, kind, e), loc),
adamc@241 835 (TCFun (kcolon, SYMBOL, kind, t), loc))
adamc@241 836 end)
adamc@241 837 | SYMBOL COLON cexp (fn (e, t) =>
adamc@241 838 let
adamc@241 839 val loc = s (SYMBOLleft, cexpright)
adamc@241 840 in
adamc@241 841 ((EAbs (SYMBOL, SOME cexp, e), loc),
adamc@241 842 (TFun (cexp, t), loc))
adamc@241 843 end)
adamc@241 844 | UNDER COLON cexp (fn (e, t) =>
adamc@241 845 let
adamc@241 846 val loc = s (UNDERleft, cexpright)
adamc@241 847 in
adamc@241 848 ((EAbs ("_", SOME cexp, e), loc),
adamc@241 849 (TFun (cexp, t), loc))
adamc@241 850 end)
adamc@241 851 | eargp (eargp)
adamc@241 852
adamc@241 853 eargp : SYMBOL (fn (e, t) =>
adamc@241 854 let
adamc@241 855 val loc = s (SYMBOLleft, SYMBOLright)
adamc@241 856 in
adamc@241 857 ((EAbs (SYMBOL, NONE, e), loc),
adamc@241 858 (TFun ((CWild (KType, loc), loc), t), loc))
adamc@241 859 end)
adamc@241 860 | UNIT (fn (e, t) =>
adamc@241 861 let
adamc@241 862 val loc = s (UNITleft, UNITright)
adamc@241 863 val t' = (TRecord (CRecord [], loc), loc)
adamc@241 864 in
adamc@241 865 ((EAbs ("_", SOME t', e), loc),
adamc@241 866 (TFun (t', t), loc))
adamc@241 867 end)
adamc@241 868 | UNDER (fn (e, t) =>
adamc@241 869 let
adamc@241 870 val loc = s (UNDERleft, UNDERright)
adamc@241 871 in
adamc@241 872 ((EAbs ("_", NONE, e), loc),
adamc@241 873 (TFun ((CWild (KType, loc), loc), t), loc))
adamc@241 874 end)
adamc@241 875 | LPAREN SYMBOL kcolon kind RPAREN(fn (e, t) =>
adamc@241 876 let
adamc@241 877 val loc = s (LPARENleft, RPARENright)
adamc@241 878 in
adamc@241 879 ((ECAbs (kcolon, SYMBOL, kind, e), loc),
adamc@241 880 (TCFun (kcolon, SYMBOL, kind, t), loc))
adamc@241 881 end)
adamc@241 882 | LPAREN SYMBOL COLON cexp RPAREN (fn (e, t) =>
adamc@241 883 let
adamc@241 884 val loc = s (LPARENleft, RPARENright)
adamc@241 885 in
adamc@241 886 ((EAbs (SYMBOL, SOME cexp, e), loc),
adamc@241 887 (TFun (cexp, t), loc))
adamc@241 888 end)
adamc@241 889 | LPAREN UNDER COLON cexp RPAREN (fn (e, t) =>
adamc@241 890 let
adamc@241 891 val loc = s (LPARENleft, RPARENright)
adamc@241 892 in
adamc@241 893 ((EAbs ("_", SOME cexp, e), loc),
adamc@241 894 (TFun (cexp, t), loc))
adamc@241 895 end)
adamc@478 896 | LPAREN cexp TWIDDLE cexp RPAREN (fn (e, t) =>
adamc@354 897 let
adamc@354 898 val loc = s (LPARENleft, RPARENright)
adamc@354 899 in
adamc@478 900 ((EDisjoint (cexp1, cexp2, e), loc),
adamc@628 901 (TDisjoint (cexp1, cexp2, t), loc))
adamc@354 902 end)
adamc@478 903 | LBRACK cexp TWIDDLE cexp RBRACK(fn (e, t) =>
adamc@356 904 let
adamc@356 905 val loc = s (LBRACKleft, RBRACKright)
adamc@356 906 in
adamc@478 907 ((EDisjoint (cexp1, cexp2, e), loc),
adamc@628 908 (TDisjoint (cexp1, cexp2, t), loc))
adamc@356 909 end)
adamc@623 910 | CSYMBOL (fn (e, t) =>
adamc@623 911 let
adamc@623 912 val loc = s (CSYMBOLleft, CSYMBOLright)
adamc@623 913 in
adamc@623 914 ((EKAbs (CSYMBOL, e), loc),
adamc@623 915 (TKFun (CSYMBOL, t), loc))
adamc@623 916 end)
adamc@241 917
adamc@8 918 eterm : LPAREN eexp RPAREN (#1 eexp, s (LPARENleft, RPARENright))
adamc@195 919 | LPAREN etuple RPAREN (let
adamc@195 920 val loc = s (LPARENleft, RPARENright)
adamc@195 921 in
adamc@195 922 (ERecord (ListUtil.mapi (fn (i, e) =>
adamc@195 923 ((CName (Int.toString (i + 1)), loc),
adamc@195 924 e)) etuple), loc)
adamc@195 925 end)
adamc@8 926
adamc@403 927 | path (EVar (#1 path, #2 path, Infer), s (pathleft, pathright))
adamc@403 928 | cpath (EVar (#1 cpath, #2 cpath, Infer), s (cpathleft, cpathright))
adamc@403 929 | AT path (EVar (#1 path, #2 path, TypesOnly), s (ATleft, pathright))
adamc@403 930 | AT AT path (EVar (#1 path, #2 path, DontInfer), s (AT1left, pathright))
adamc@403 931 | AT cpath (EVar (#1 cpath, #2 cpath, TypesOnly), s (ATleft, cpathright))
adamc@403 932 | AT AT cpath (EVar (#1 cpath, #2 cpath, DontInfer), s (AT1left, cpathright))
adamc@12 933 | LBRACE rexp RBRACE (ERecord rexp, s (LBRACEleft, RBRACEright))
adamc@110 934 | UNIT (ERecord [], s (UNITleft, UNITright))
adamc@12 935
adamc@14 936 | INT (EPrim (Prim.Int INT), s (INTleft, INTright))
adamc@14 937 | FLOAT (EPrim (Prim.Float FLOAT), s (FLOATleft, FLOATright))
adamc@14 938 | STRING (EPrim (Prim.String STRING), s (STRINGleft, STRINGright))
adamc@14 939
adamc@200 940 | path DOT idents (let
adamc@200 941 val loc = s (pathleft, identsright)
adamc@200 942 in
adamc@200 943 foldl (fn (ident, e) =>
adamc@200 944 (EField (e, ident), loc))
adamc@403 945 (EVar (#1 path, #2 path, Infer), s (pathleft, pathright)) idents
adamc@403 946 end)
adamc@403 947 | AT path DOT idents (let
adamc@403 948 val loc = s (ATleft, identsright)
adamc@403 949 in
adamc@403 950 foldl (fn (ident, e) =>
adamc@403 951 (EField (e, ident), loc))
adamc@403 952 (EVar (#1 path, #2 path, TypesOnly), s (pathleft, pathright)) idents
adamc@403 953 end)
adamc@403 954 | AT AT path DOT idents (let
adamc@403 955 val loc = s (AT1left, identsright)
adamc@403 956 in
adamc@403 957 foldl (fn (ident, e) =>
adamc@403 958 (EField (e, ident), loc))
adamc@403 959 (EVar (#1 path, #2 path, DontInfer), s (pathleft, pathright)) idents
adamc@200 960 end)
adamc@71 961
adamc@360 962 | XML_BEGIN xml XML_END (let
adamc@360 963 val loc = s (XML_BEGINleft, XML_ENDright)
adamc@360 964 in
adamc@360 965 if XML_BEGIN = "xml" then
adamc@360 966 ()
adamc@360 967 else
adamc@360 968 ErrorMsg.errorAt loc "Initial XML tag pair aren't both tagged \"xml\".";
adamc@360 969 xml
adamc@360 970 end)
adamc@360 971 | XML_BEGIN XML_END (let
adamc@360 972 val loc = s (XML_BEGINleft, XML_ENDright)
adamc@360 973 in
adamc@360 974 if XML_BEGIN = "xml" then
adamc@360 975 ()
adamc@360 976 else
adamc@360 977 ErrorMsg.errorAt loc "Initial XML tag pair aren't both tagged \"xml\".";
adamc@403 978 (EApp ((EVar (["Basis"], "cdata", Infer), loc),
adamc@360 979 (EPrim (Prim.String ""), loc)),
adamc@360 980 loc)
adamc@360 981 end)
adamc@360 982 | XML_BEGIN_END (let
adamc@360 983 val loc = s (XML_BEGIN_ENDleft, XML_BEGIN_ENDright)
adamc@360 984 in
adamc@360 985 if XML_BEGIN_END = "xml" then
adamc@360 986 ()
adamc@360 987 else
adamc@360 988 ErrorMsg.errorAt loc "Initial XML tag pair aren't both tagged \"xml\".";
adamc@403 989 (EApp ((EVar (["Basis"], "cdata", Infer), loc),
adamc@360 990 (EPrim (Prim.String ""), loc)),
adamc@360 991 loc)
adamc@360 992 end)
adamc@302 993
adamc@204 994 | LPAREN query RPAREN (query)
adamc@300 995 | LPAREN CWHERE sqlexp RPAREN (sqlexp)
adamc@339 996 | LPAREN SQL sqlexp RPAREN (sqlexp)
adamc@302 997
adamc@302 998 | LPAREN INSERT INTO texp LPAREN fields RPAREN VALUES LPAREN sqlexps RPAREN RPAREN
adamc@302 999 (let
adamc@302 1000 val loc = s (LPAREN1left, RPAREN3right)
adamc@302 1001
adamc@403 1002 val e = (EVar (["Basis"], "insert", Infer), loc)
adamc@302 1003 val e = (EApp (e, texp), loc)
adamc@302 1004 in
adamc@302 1005 if length fields <> length sqlexps then
adamc@302 1006 ErrorMsg.errorAt loc "Length mismatch in INSERT field specification"
adamc@302 1007 else
adamc@302 1008 ();
adamc@302 1009 (EApp (e, (ERecord (ListPair.zip (fields, sqlexps)), loc)), loc)
adamc@302 1010 end)
adamc@310 1011 | LPAREN enterDml UPDATE texp SET fsets CWHERE sqlexp leaveDml RPAREN
adamc@303 1012 (let
adamc@303 1013 val loc = s (LPARENleft, RPARENright)
adamc@303 1014
adamc@403 1015 val e = (EVar (["Basis"], "update", Infer), loc)
adamc@342 1016 val e = (ECApp (e, (CWild (KRecord (KType, loc), loc), loc)), loc)
adamc@632 1017 val e = (EDisjointApp e, loc)
adamc@306 1018 val e = (EApp (e, (ERecord fsets, loc)), loc)
adamc@305 1019 val e = (EApp (e, texp), loc)
adamc@303 1020 in
adamc@303 1021 (EApp (e, sqlexp), loc)
adamc@303 1022 end)
adamc@310 1023 | LPAREN enterDml DELETE FROM texp CWHERE sqlexp leaveDml RPAREN
adamc@304 1024 (let
adamc@304 1025 val loc = s (LPARENleft, RPARENright)
adamc@304 1026
adamc@403 1027 val e = (EVar (["Basis"], "delete", Infer), loc)
adamc@304 1028 val e = (EApp (e, texp), loc)
adamc@304 1029 in
adamc@304 1030 (EApp (e, sqlexp), loc)
adamc@304 1031 end)
adamc@302 1032
adamc@211 1033 | UNDER (EWild, s (UNDERleft, UNDERright))
adamc@91 1034
adamc@446 1035 | LET edecls IN eexp END (ELet (edecls, eexp), s (LETleft, ENDright))
adamc@446 1036
adamc@446 1037 edecls : ([])
adamc@446 1038 | edecl edecls (edecl :: edecls)
adamc@446 1039
adamc@446 1040 edecl : VAL vali ((EDVal vali, s (VALleft, valiright)))
adamc@446 1041 | VAL REC valis ((EDValRec valis, s (VALleft, valisright)))
adamc@446 1042 | FUN valis ((EDValRec valis, s (FUNleft, valisright)))
adamc@446 1043
adamc@310 1044 enterDml : (inDml := true)
adamc@310 1045 leaveDml : (inDml := false)
adamc@310 1046
adamc@403 1047 texp : SYMBOL (EVar ([], SYMBOL, Infer), s (SYMBOLleft, SYMBOLright))
adamc@302 1048 | LBRACE LBRACE eexp RBRACE RBRACE (eexp)
adamc@302 1049
adamc@302 1050 fields : fident ([fident])
adamc@302 1051 | fident COMMA fields (fident :: fields)
adamc@302 1052
adamc@302 1053 sqlexps: sqlexp ([sqlexp])
adamc@302 1054 | sqlexp COMMA sqlexps (sqlexp :: sqlexps)
adamc@302 1055
adamc@303 1056 fsets : fident EQ sqlexp ([(fident, sqlexp)])
adamc@303 1057 | fident EQ sqlexp COMMA fsets ((fident, sqlexp) :: fsets)
adamc@303 1058
adamc@200 1059 idents : ident ([ident])
adamc@200 1060 | ident DOT idents (ident :: idents)
adamc@200 1061
adamc@195 1062 etuple : eexp COMMA eexp ([eexp1, eexp2])
adamc@195 1063 | eexp COMMA etuple (eexp :: etuple)
adamc@195 1064
adamc@170 1065 branch : pat DARROW eexp (pat, eexp)
adamc@170 1066
adamc@170 1067 branchs: ([])
adamc@170 1068 | BAR branch branchs (branch :: branchs)
adamc@170 1069
adamc@170 1070 pat : pterm (pterm)
adamc@170 1071 | cpath pterm (PCon (#1 cpath, #2 cpath, SOME pterm), s (cpathleft, ptermright))
adamc@170 1072
adamc@170 1073 pterm : SYMBOL (PVar SYMBOL, s (SYMBOLleft, SYMBOLright))
adamc@170 1074 | cpath (PCon (#1 cpath, #2 cpath, NONE), s (cpathleft, cpathright))
adamc@170 1075 | UNDER (PWild, s (UNDERleft, UNDERright))
adamc@173 1076 | INT (PPrim (Prim.Int INT), s (INTleft, INTright))
adamc@173 1077 | STRING (PPrim (Prim.String STRING), s (STRINGleft, STRINGright))
adamc@170 1078 | LPAREN pat RPAREN (pat)
adamc@174 1079 | LBRACE RBRACE (PRecord ([], false), s (LBRACEleft, RBRACEright))
adamc@174 1080 | UNIT (PRecord ([], false), s (UNITleft, UNITright))
adamc@174 1081 | LBRACE rpat RBRACE (PRecord rpat, s (LBRACEleft, RBRACEright))
adamc@195 1082 | LPAREN ptuple RPAREN (PRecord (ListUtil.mapi (fn (i, p) => (Int.toString (i + 1), p)) ptuple,
adamc@195 1083 false),
adamc@195 1084 s (LPARENleft, RPARENright))
adamc@174 1085
adamc@175 1086 rpat : CSYMBOL EQ pat ([(CSYMBOL, pat)], false)
adamc@243 1087 | INT EQ pat ([(Int64.toString INT, pat)], false)
adamc@174 1088 | DOTDOTDOT ([], true)
adamc@175 1089 | CSYMBOL EQ pat COMMA rpat ((CSYMBOL, pat) :: #1 rpat, #2 rpat)
adamc@243 1090 | INT EQ pat COMMA rpat ((Int64.toString INT, pat) :: #1 rpat, #2 rpat)
adamc@170 1091
adamc@195 1092 ptuple : pat COMMA pat ([pat1, pat2])
adamc@195 1093 | pat COMMA ptuple (pat :: ptuple)
adamc@195 1094
adamc@12 1095 rexp : ([])
adamc@12 1096 | ident EQ eexp ([(ident, eexp)])
adamc@12 1097 | ident EQ eexp COMMA rexp ((ident, eexp) :: rexp)
adamc@91 1098
adamc@141 1099 xml : xmlOne xml (let
adamc@141 1100 val pos = s (xmlOneleft, xmlright)
adamc@141 1101 in
adamc@141 1102 (EApp ((EApp (
adamc@403 1103 (EVar (["Basis"], "join", Infer), pos),
adamc@91 1104 xmlOne), pos),
adamc@141 1105 xml), pos)
adamc@141 1106 end)
adamc@141 1107 | xmlOne (xmlOne)
adamc@91 1108
adamc@403 1109 xmlOne : NOTAGS (EApp ((EVar (["Basis"], "cdata", Infer), s (NOTAGSleft, NOTAGSright)),
adamc@141 1110 (EPrim (Prim.String NOTAGS), s (NOTAGSleft, NOTAGSright))),
adamc@141 1111 s (NOTAGSleft, NOTAGSright))
adamc@141 1112 | tag DIVIDE GT (let
adamc@141 1113 val pos = s (tagleft, GTright)
adamc@141 1114 in
adamc@141 1115 (EApp (#2 tag,
adamc@403 1116 (EApp ((EVar (["Basis"], "cdata", Infer), pos),
adamc@141 1117 (EPrim (Prim.String ""), pos)),
adamc@141 1118 pos)), pos)
adamc@141 1119 end)
adamc@141 1120
adamc@141 1121 | tag GT xml END_TAG (let
adamc@141 1122 val pos = s (tagleft, GTright)
adamc@325 1123 val et = tagIn END_TAG
adamc@141 1124 in
adamc@325 1125 if #1 tag = et then
adamc@361 1126 if et = "form" then
adamc@403 1127 (EApp ((EVar (["Basis"], "form", Infer), pos),
adamc@141 1128 xml), pos)
adamc@141 1129 else
adamc@141 1130 (EApp (#2 tag, xml), pos)
adamc@141 1131 else
adamc@325 1132 (if ErrorMsg.anyErrors () then
adamc@325 1133 ()
adamc@325 1134 else
adamc@325 1135 ErrorMsg.errorAt pos "Begin and end tags don't match.";
adamc@623 1136 (EWild, pos))
adamc@141 1137 end)
adamc@141 1138 | LBRACE eexp RBRACE (eexp)
adamc@391 1139 | LBRACE LBRACK eexp RBRACK RBRACE (let
adamc@391 1140 val loc = s (LBRACEleft, RBRACEright)
adamc@403 1141 val e = (EVar (["Top"], "txt", Infer), loc)
adamc@391 1142 in
adamc@391 1143 (EApp (e, eexp), loc)
adamc@391 1144 end)
adamc@92 1145
adamc@141 1146 tag : tagHead attrs (let
adamc@141 1147 val pos = s (tagHeadleft, attrsright)
adamc@141 1148 in
adamc@141 1149 (#1 tagHead,
adamc@403 1150 (EApp ((EApp ((EVar (["Basis"], "tag", Infer), pos),
adamc@141 1151 (ERecord attrs, pos)), pos),
adamc@141 1152 (EApp (#2 tagHead,
adamc@141 1153 (ERecord [], pos)), pos)),
adamc@141 1154 pos))
adamc@141 1155 end)
adamc@141 1156
adamc@141 1157 tagHead: BEGIN_TAG (let
adamc@325 1158 val bt = tagIn BEGIN_TAG
adamc@141 1159 val pos = s (BEGIN_TAGleft, BEGIN_TAGright)
adamc@141 1160 in
adamc@325 1161 (bt,
adamc@473 1162 (EVar (["Basis"], bt, Infer), pos))
adamc@141 1163 end)
adamc@141 1164 | tagHead LBRACE cexp RBRACE (#1 tagHead, (ECApp (#2 tagHead, cexp), s (tagHeadleft, RBRACEright)))
adamc@92 1165
adamc@104 1166 attrs : ([])
adamc@104 1167 | attr attrs (attr :: attrs)
adamc@104 1168
adamc@204 1169 attr : SYMBOL EQ attrv ((CName (capitalize SYMBOL), s (SYMBOLleft, SYMBOLright)), attrv)
adamc@204 1170
adamc@104 1171 attrv : INT (EPrim (Prim.Int INT), s (INTleft, INTright))
adamc@104 1172 | FLOAT (EPrim (Prim.Float FLOAT), s (FLOATleft, FLOATright))
adamc@104 1173 | STRING (EPrim (Prim.String STRING), s (STRINGleft, STRINGright))
adamc@110 1174 | LBRACE eexp RBRACE (eexp)
adamc@226 1175
adamc@232 1176 query : query1 obopt lopt ofopt (let
adamc@229 1177 val loc = s (query1left, query1right)
adamc@230 1178
adamc@230 1179 val re = (ERecord [((CName "Rows", loc),
adamc@230 1180 query1),
adamc@230 1181 ((CName "OrderBy", loc),
adamc@231 1182 obopt),
adamc@231 1183 ((CName "Limit", loc),
adamc@232 1184 lopt),
adamc@232 1185 ((CName "Offset", loc),
adamc@232 1186 ofopt)], loc)
adamc@229 1187 in
adamc@403 1188 (EApp ((EVar (["Basis"], "sql_query", Infer), loc), re), loc)
adamc@229 1189 end)
adamc@204 1190
adamc@227 1191 query1 : SELECT select FROM tables wopt gopt hopt
adamc@209 1192 (let
adamc@204 1193 val loc = s (SELECTleft, tablesright)
adamc@207 1194
adamc@233 1195 val (sel, exps) =
adamc@207 1196 case select of
adamc@233 1197 Star => (map (fn (nm, _) =>
adamc@233 1198 (nm, (CTuple [(CWild (KRecord (KType, loc), loc),
adamc@233 1199 loc),
adamc@233 1200 (CRecord [], loc)],
adamc@233 1201 loc))) tables,
adamc@233 1202 [])
adamc@207 1203 | Items sis =>
adamc@207 1204 let
adamc@207 1205 val tabs = map (fn (nm, _) => (nm, (CRecord [], loc))) tables
adamc@233 1206 val (tabs, exps) = foldl (amend_select loc) (tabs, []) sis
adamc@207 1207 in
adamc@233 1208 (map (fn (nm, c) => (nm,
adamc@233 1209 (CTuple [c,
adamc@233 1210 (CWild (KRecord (KType, loc), loc),
adamc@233 1211 loc)], loc))) tabs,
adamc@233 1212 exps)
adamc@207 1213 end
adamc@207 1214
adamc@207 1215 val sel = (CRecord sel, loc)
adamc@207 1216
adamc@226 1217 val grp = case gopt of
adamc@403 1218 NONE => (ECApp ((EVar (["Basis"], "sql_subset_all",
adamc@403 1219 Infer), loc),
adamc@226 1220 (CWild (KRecord (KRecord (KType, loc), loc),
adamc@226 1221 loc), loc)), loc)
adamc@226 1222 | SOME gis =>
adamc@226 1223 let
adamc@226 1224 val tabs = map (fn (nm, _) =>
adamc@226 1225 (nm, (CRecord [], loc))) tables
adamc@226 1226 val tabs = foldl (amend_group loc) tabs gis
adamc@226 1227
adamc@226 1228 val tabs = map (fn (nm, c) =>
adamc@226 1229 (nm,
adamc@226 1230 (CTuple [c,
adamc@226 1231 (CWild (KRecord (KType, loc),
adamc@226 1232 loc),
adamc@226 1233 loc)], loc))) tabs
adamc@226 1234 in
adamc@403 1235 (ECApp ((EVar (["Basis"], "sql_subset", Infer), loc),
adamc@226 1236 (CRecord tabs, loc)), loc)
adamc@226 1237 end
adamc@226 1238
adamc@403 1239 val e = (EVar (["Basis"], "sql_query1", Infer), loc)
adamc@209 1240 val re = (ERecord [((CName "From", loc),
adamc@209 1241 (ERecord tables, loc)),
adamc@209 1242 ((CName "Where", loc),
adamc@223 1243 wopt),
adamc@224 1244 ((CName "GroupBy", loc),
adamc@226 1245 grp),
adamc@224 1246 ((CName "Having", loc),
adamc@224 1247 hopt),
adamc@223 1248 ((CName "SelectFields", loc),
adamc@403 1249 (ECApp ((EVar (["Basis"], "sql_subset", Infer), loc),
adamc@233 1250 sel), loc)),
adamc@233 1251 ((CName "SelectExps", loc),
adamc@233 1252 (ERecord exps, loc))], loc)
adamc@223 1253
adamc@209 1254 val e = (EApp (e, re), loc)
adamc@204 1255 in
adamc@207 1256 e
adamc@204 1257 end)
adamc@229 1258 | query1 UNION query1 (sql_relop ("union", query11, query12, s (query11left, query12right)))
adamc@229 1259 | query1 INTERSECT query1 (sql_relop ("intersect", query11, query12, s (query11left, query12right)))
adamc@229 1260 | query1 EXCEPT query1 (sql_relop ("except", query11, query12, s (query11left, query12right)))
adamc@204 1261
adamc@204 1262 tables : table ([table])
adamc@204 1263 | table COMMA tables (table :: tables)
adamc@204 1264
adamc@204 1265 tname : CSYMBOL (CName CSYMBOL, s (CSYMBOLleft, CSYMBOLright))
adamc@204 1266 | LBRACE cexp RBRACE (cexp)
adamc@204 1267
adamc@243 1268 table : SYMBOL ((CName (capitalize SYMBOL), s (SYMBOLleft, SYMBOLright)),
adamc@403 1269 (EVar ([], SYMBOL, Infer), s (SYMBOLleft, SYMBOLright)))
adamc@403 1270 | SYMBOL AS tname (tname, (EVar ([], SYMBOL, Infer), s (SYMBOLleft, SYMBOLright)))
adamc@221 1271 | LBRACE LBRACE eexp RBRACE RBRACE AS tname (tname, eexp)
adamc@207 1272
adamc@243 1273 tident : SYMBOL (CName (capitalize SYMBOL), s (SYMBOLleft, SYMBOLright))
adamc@207 1274 | CSYMBOL (CName CSYMBOL, s (CSYMBOLleft, CSYMBOLright))
adamc@221 1275 | LBRACE LBRACE cexp RBRACE RBRACE (cexp)
adamc@207 1276
adamc@207 1277 fident : CSYMBOL (CName CSYMBOL, s (CSYMBOLleft, CSYMBOLright))
adamc@207 1278 | LBRACE cexp RBRACE (cexp)
adamc@207 1279
adamc@207 1280 seli : tident DOT fident (Field (tident, fident))
adamc@233 1281 | sqlexp AS fident (Exp (fident, sqlexp))
adamc@341 1282 | tident DOT LBRACE LBRACE cexp RBRACE RBRACE (Fields (tident, cexp))
adamc@207 1283
adamc@207 1284 selis : seli ([seli])
adamc@207 1285 | seli COMMA selis (seli :: selis)
adamc@207 1286
adamc@207 1287 select : STAR (Star)
adamc@207 1288 | selis (Items selis)
adamc@209 1289
adamc@403 1290 sqlexp : TRUE (sql_inject (EVar (["Basis"], "True", Infer),
adamc@209 1291 s (TRUEleft, TRUEright)))
adamc@403 1292 | FALSE (sql_inject (EVar (["Basis"], "False", Infer),
adamc@209 1293 s (FALSEleft, FALSEright)))
adamc@209 1294
adamc@222 1295 | INT (sql_inject (EPrim (Prim.Int INT),
adamc@222 1296 s (INTleft, INTright)))
adamc@222 1297 | FLOAT (sql_inject (EPrim (Prim.Float FLOAT),
adamc@222 1298 s (FLOATleft, FLOATright)))
adamc@229 1299 | STRING (sql_inject (EPrim (Prim.String STRING),
adamc@229 1300 s (STRINGleft, STRINGright)))
adamc@441 1301 | CURRENT_TIMESTAMP (sql_nfunc ("current_timestamp",
adamc@441 1302 s (CURRENT_TIMESTAMPleft, CURRENT_TIMESTAMPright)))
adamc@222 1303
adamc@221 1304 | tident DOT fident (let
adamc@221 1305 val loc = s (tidentleft, fidentright)
adamc@403 1306 val e = (EVar (["Basis"], "sql_field", Infer), loc)
adamc@221 1307 val e = (ECApp (e, tident), loc)
adamc@221 1308 in
adamc@221 1309 (ECApp (e, fident), loc)
adamc@221 1310 end)
adamc@234 1311 | CSYMBOL (let
adamc@234 1312 val loc = s (CSYMBOLleft, CSYMBOLright)
adamc@310 1313 in
adamc@310 1314 if !inDml then
adamc@310 1315 let
adamc@403 1316 val e = (EVar (["Basis"], "sql_field", Infer), loc)
adamc@310 1317 val e = (ECApp (e, (CName "T", loc)), loc)
adamc@310 1318 in
adamc@310 1319 (ECApp (e, (CName CSYMBOL, loc)), loc)
adamc@310 1320 end
adamc@310 1321 else
adamc@310 1322 let
adamc@403 1323 val e = (EVar (["Basis"], "sql_exp", Infer), loc)
adamc@310 1324 in
adamc@310 1325 (ECApp (e, (CName CSYMBOL, loc)), loc)
adamc@310 1326 end
adamc@310 1327 end)
adamc@221 1328
adamc@471 1329 | LBRACE eexp RBRACE (eexp)
adamc@470 1330
adamc@559 1331 | sqlexp EQ sqlexp (sql_binary ("eq", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1332 | sqlexp NE sqlexp (sql_binary ("ne", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1333 | sqlexp LT sqlexp (sql_binary ("lt", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1334 | sqlexp LE sqlexp (sql_binary ("le", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1335 | sqlexp GT sqlexp (sql_binary ("gt", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1336 | sqlexp GE sqlexp (sql_binary ("ge", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1337
adamc@559 1338 | sqlexp PLUS sqlexp (sql_binary ("plus", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1339 | sqlexp MINUS sqlexp (sql_binary ("minus", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1340 | sqlexp STAR sqlexp (sql_binary ("times", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1341 | sqlexp DIVIDE sqlexp (sql_binary ("div", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1342 | sqlexp MOD sqlexp (sql_binary ("mod", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@219 1343
adamc@220 1344 | sqlexp CAND sqlexp (sql_binary ("and", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@220 1345 | sqlexp OR sqlexp (sql_binary ("or", sqlexp1, sqlexp2, s (sqlexp1left, sqlexp2right)))
adamc@559 1346
adamc@220 1347 | NOT sqlexp (sql_unary ("not", sqlexp, s (NOTleft, sqlexpright)))
adamc@559 1348 | MINUS sqlexp (sql_unary ("neg", sqlexp, s (MINUSleft, sqlexpright)))
adamc@220 1349
adamc@470 1350 | sqlexp IS NULL (let
adamc@470 1351 val loc = s (sqlexpleft, NULLright)
adamc@470 1352 in
adamc@470 1353 (EApp ((EVar (["Basis"], "sql_is_null", Infer), loc),
adamc@470 1354 sqlexp), loc)
adamc@470 1355 end)
adamc@470 1356
adamc@471 1357 | LBRACE LBRACK eexp RBRACK RBRACE (sql_inject (#1 eexp,
adamc@471 1358 s (LBRACEleft, RBRACEright)))
adamc@220 1359 | LPAREN sqlexp RPAREN (sqlexp)
adamc@210 1360
adamc@467 1361 | NULL (sql_inject ((EVar (["Basis"], "None", Infer),
adamc@467 1362 s (NULLleft, NULLright))))
adamc@467 1363
adamc@235 1364 | COUNT LPAREN STAR RPAREN (let
adamc@235 1365 val loc = s (COUNTleft, RPARENright)
adamc@235 1366 in
adamc@544 1367 (EVar (["Basis"], "sql_count", Infer), loc)
adamc@235 1368 end)
adamc@236 1369 | sqlagg LPAREN sqlexp RPAREN (let
adamc@236 1370 val loc = s (sqlaggleft, RPARENright)
adamc@236 1371
adamc@403 1372 val e = (EVar (["Basis"], "sql_" ^ sqlagg, Infer), loc)
adamc@403 1373 val e = (EApp ((EVar (["Basis"], "sql_aggregate", Infer), loc),
adamc@236 1374 e), loc)
adamc@236 1375 in
adamc@236 1376 (EApp (e, sqlexp), loc)
adamc@236 1377 end)
adamc@235 1378
adamc@403 1379 wopt : (sql_inject (EVar (["Basis"], "True", Infer),
adamc@230 1380 dummy))
adamc@209 1381 | CWHERE sqlexp (sqlexp)
adamc@226 1382
adamc@226 1383 groupi : tident DOT fident (GField (tident, fident))
adamc@226 1384
adamc@226 1385 groupis: groupi ([groupi])
adamc@226 1386 | groupi COMMA groupis (groupi :: groupis)
adamc@226 1387
adamc@226 1388 gopt : (NONE)
adamc@226 1389 | GROUP BY groupis (SOME groupis)
adamc@227 1390
adamc@403 1391 hopt : (sql_inject (EVar (["Basis"], "True", Infer),
adamc@230 1392 dummy))
adamc@227 1393 | HAVING sqlexp (sqlexp)
adamc@230 1394
adamc@403 1395 obopt : (ECApp ((EVar (["Basis"], "sql_order_by_Nil", Infer), dummy),
adamc@234 1396 (CWild (KRecord (KType, dummy), dummy), dummy)),
adamc@230 1397 dummy)
adamc@230 1398 | ORDER BY obexps (obexps)
adamc@230 1399
adamc@268 1400 obitem : sqlexp diropt (sqlexp, diropt)
adamc@268 1401
adamc@268 1402 obexps : obitem (let
adamc@268 1403 val loc = s (obitemleft, obitemright)
adamc@230 1404
adamc@403 1405 val e' = (ECApp ((EVar (["Basis"], "sql_order_by_Nil", Infer), loc),
adamc@234 1406 (CWild (KRecord (KType, loc), loc), loc)),
adamc@230 1407 loc)
adamc@403 1408 val e = (EApp ((EVar (["Basis"], "sql_order_by_Cons", Infer), loc),
adamc@268 1409 #1 obitem), loc)
adamc@268 1410 val e = (EApp (e, #2 obitem), loc)
adamc@230 1411 in
adamc@230 1412 (EApp (e, e'), loc)
adamc@230 1413 end)
adamc@268 1414 | obitem COMMA obexps (let
adamc@268 1415 val loc = s (obitemleft, obexpsright)
adamc@230 1416
adamc@403 1417 val e = (EApp ((EVar (["Basis"], "sql_order_by_Cons", Infer), loc),
adamc@268 1418 #1 obitem), loc)
adamc@268 1419 val e = (EApp (e, #2 obitem), loc)
adamc@230 1420 in
adamc@230 1421 (EApp (e, obexps), loc)
adamc@230 1422 end)
adamc@231 1423
adamc@403 1424 diropt : (EVar (["Basis"], "sql_asc", Infer), dummy)
adamc@403 1425 | ASC (EVar (["Basis"], "sql_asc", Infer), s (ASCleft, ASCright))
adamc@403 1426 | DESC (EVar (["Basis"], "sql_desc", Infer), s (DESCleft, DESCright))
adamc@268 1427
adamc@403 1428 lopt : (EVar (["Basis"], "sql_no_limit", Infer), dummy)
adamc@403 1429 | LIMIT ALL (EVar (["Basis"], "sql_no_limit", Infer), dummy)
adamc@231 1430 | LIMIT sqlint (let
adamc@231 1431 val loc = s (LIMITleft, sqlintright)
adamc@231 1432 in
adamc@403 1433 (EApp ((EVar (["Basis"], "sql_limit", Infer), loc), sqlint), loc)
adamc@231 1434 end)
adamc@231 1435
adamc@403 1436 ofopt : (EVar (["Basis"], "sql_no_offset", Infer), dummy)
adamc@232 1437 | OFFSET sqlint (let
adamc@232 1438 val loc = s (OFFSETleft, sqlintright)
adamc@232 1439 in
adamc@403 1440 (EApp ((EVar (["Basis"], "sql_offset", Infer), loc), sqlint), loc)
adamc@232 1441 end)
adamc@232 1442
adamc@231 1443 sqlint : INT (EPrim (Prim.Int INT), s (INTleft, INTright))
adamc@231 1444 | LBRACE eexp RBRACE (eexp)
adamc@236 1445
adamc@236 1446 sqlagg : AVG ("avg")
adamc@236 1447 | SUM ("sum")
adamc@236 1448 | MIN ("min")
adamc@236 1449 | MAX ("max")