5 * Copyright 2002 Ove Kaaven
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
44 /* Berkeley yacc (byacc) doesn't seem to know about these */
45 /* Some *BSD supplied versions do define these though */
47 # define YYEMPTY (-1) /* Empty lookahead value of yychar */
50 # define YYLEX yylex()
53 #elif defined(YYBISON)
54 /* Bison was used for original development */
55 /* #define YYEMPTY -2 */
56 /* #define YYLEX yylex() */
59 /* No yacc we know yet */
60 # if !defined(YYEMPTY) || !defined(YYLEX)
61 # error Yacc version/type unknown. This version needs to be verified for settings of YYEMPTY and YYLEX.
62 # elif defined(__GNUC__) /* gcc defines the #warning directive */
63 # warning Yacc version/type unknown. It defines YYEMPTY and YYLEX, but is not tested
64 /* #else we just take a chance that it works... */
68 typedef
struct list typelist_t
;
74 typelist_t incomplete_types
= LIST_INIT
(incomplete_types
);
76 static void add_incomplete
(type_t
*t
);
77 static void fix_incomplete
(void);
79 static str_list_t
*append_str
(str_list_t
*list
, char *str
);
80 static attr_list_t
*append_attr
(attr_list_t
*list
, attr_t
*attr
);
81 static attr_t
*make_attr
(enum attr_type type
);
82 static attr_t
*make_attrv
(enum attr_type type
, unsigned long val
);
83 static attr_t
*make_attrp
(enum attr_type type
, void *val
);
84 static expr_t
*make_expr
(enum expr_type type
);
85 static expr_t
*make_exprl
(enum expr_type type
, long val
);
86 static expr_t
*make_exprs
(enum expr_type type
, char *val
);
87 static expr_t
*make_exprt
(enum expr_type type
, type_t
*tref
, expr_t
*expr
);
88 static expr_t
*make_expr1
(enum expr_type type
, expr_t
*expr
);
89 static expr_t
*make_expr2
(enum expr_type type
, expr_t
*exp1
, expr_t
*exp2
);
90 static expr_t
*make_expr3
(enum expr_type type
, expr_t
*expr1
, expr_t
*expr2
, expr_t
*expr3
);
91 static type_t
*make_type
(unsigned char type
, type_t
*ref
);
92 static expr_list_t
*append_expr
(expr_list_t
*list
, expr_t
*expr
);
93 static array_dims_t
*append_array
(array_dims_t
*list
, expr_t
*expr
);
94 static void set_type
(var_t
*v
, type_t
*type
, int ptr_level
, array_dims_t
*arr
);
95 static ifref_list_t
*append_ifref
(ifref_list_t
*list
, ifref_t
*iface
);
96 static ifref_t
*make_ifref
(type_t
*iface
);
97 static var_list_t
*append_var
(var_list_t
*list
, var_t
*var
);
98 static var_t
*make_var
(char *name
);
99 static pident_list_t
*append_pident
(pident_list_t
*list
, pident_t
*p
);
100 static pident_t
*make_pident
(var_t
*var
);
101 static func_list_t
*append_func
(func_list_t
*list
, func_t
*func
);
102 static func_t
*make_func
(var_t
*def
, var_list_t
*args
);
103 static type_t
*make_class
(char *name
);
104 static type_t
*make_safearray
(type_t
*type
);
105 static type_t
*make_builtin
(char *name
);
106 static type_t
*make_int
(int sign
);
108 static type_t
*reg_type
(type_t
*type
, const char *name
, int t
);
109 static type_t
*reg_typedefs
(type_t
*type
, var_list_t
*names
, attr_list_t
*attrs
);
110 static type_t
*find_type
(const char *name
, int t
);
111 static type_t
*find_type2
(char *name
, int t
);
112 static type_t
*get_type
(unsigned char type
, char *name
, int t
);
113 static type_t
*get_typev
(unsigned char type
, var_t
*name
, int t
);
114 static int get_struct_type
(var_list_t
*fields
);
116 static var_t
*reg_const
(var_t
*var
);
117 static var_t
*find_const
(char *name
, int f
);
119 static void write_libid
(const char *name
, const attr_list_t
*attr
);
120 static void write_clsid
(type_t
*cls
);
121 static void write_diid
(type_t
*iface
);
122 static void write_iid
(type_t
*iface
);
124 static int compute_method_indexes
(type_t
*iface
);
125 static char *gen_name
(void);
126 static void process_typedefs
(var_list_t
*names
);
127 static void check_arg
(var_t
*arg
);
128 static void check_all_user_types
(ifref_list_t
*ifaces
);
137 attr_list_t
*attr_list
;
138 str_list_t
*str_list
;
140 expr_list_t
*expr_list
;
141 array_dims_t
*array_dims
;
144 var_list_t
*var_list
;
146 pident_list_t
*pident_list
;
148 func_list_t
*func_list
;
150 ifref_list_t
*ifref_list
;
156 %token
<str
> aIDENTIFIER
157 %token
<str
> aKNOWNTYPE
158 %token
<num
> aNUM aHEXNUM
163 %token tAGGREGATABLE tALLOCATE tAPPOBJECT tASYNC tASYNCUUID
164 %token tAUTOHANDLE tBINDABLE tBOOLEAN tBROADCAST tBYTE tBYTECOUNT
165 %token tCALLAS tCALLBACK tCASE tCDECL tCHAR tCOCLASS tCODE tCOMMSTATUS
166 %token tCONST tCONTEXTHANDLE tCONTEXTHANDLENOSERIALIZE
167 %token tCONTEXTHANDLESERIALIZE tCONTROL tCPPQUOTE
169 %token tDEFAULTCOLLELEM
171 %token tDEFAULTVTABLE
173 %token tDISPINTERFACE
174 %token tDLLNAME tDOUBLE tDUAL
176 %token tENTRY tENUM tERRORSTATUST
177 %token tEXPLICITHANDLE tEXTERN
182 %token tHELPCONTEXT tHELPFILE
183 %token tHELPSTRING tHELPSTRINGCONTEXT tHELPSTRINGDLL
185 %token tHYPER tID tIDEMPOTENT
187 %token tIMMEDIATEBIND
188 %token tIMPLICITHANDLE
189 %token tIMPORT tIMPORTLIB
195 %token tLENGTHIS tLIBRARY
202 %token tNONEXTENSIBLE
203 %token tOBJECT tODL tOLEAUTOMATION
206 %token tPOINTERDEFAULT
208 %token tPROPGET tPROPPUT tPROPPUTREF
212 %token tREADONLY tREF
220 %token tSIZEIS tSIZEOF
224 %token tSTRING tSTRUCT
225 %token tSWITCH tSWITCHIS tSWITCHTYPE
237 %token tWCHAR tWIREMARSHAL
239 %type
<attr
> attribute
240 %type
<attr_list
> m_attributes attributes attrib_list
241 %type
<str_list
> str_list
242 %type
<expr
> m_expr expr expr_const
243 %type
<expr_list
> m_exprs
/* exprs expr_list */ expr_list_const
244 %type
<array_dims
> array array_list
245 %type
<type
> inherit interface interfacehdr interfacedef interfacedec
246 %type
<type
> dispinterface dispinterfacehdr dispinterfacedef
247 %type
<type
> module modulehdr moduledef
248 %type
<type
> base_type int_std
249 %type
<type
> enumdef structdef uniondef
251 %type
<ifref
> coclass_int
252 %type
<ifref_list
> gbl_statements coclass_ints
253 %type
<var
> arg field s_field case
enum constdef externdef
254 %type
<var_list
> m_args no_args args fields cases enums enum_list dispint_props
255 %type
<var
> m_ident t_ident ident
256 %type
<pident
> p_ident pident
257 %type
<pident_list
> pident_list
259 %type
<func_list
> int_statements dispint_meths
260 %type
<type
> coclass coclasshdr coclassdef
261 %type
<num
> pointer_type version
262 %type
<str
> libraryhdr
278 input: gbl_statements
{ fix_incomplete
();
279 check_all_user_types
($1);
286 gbl_statements: { $$
= NULL
; }
287 | gbl_statements interfacedec
{ $$
= $1; }
288 | gbl_statements interfacedef
{ $$
= append_ifref
( $1, make_ifref
($2) ); }
289 | gbl_statements coclass
';' { $$
= $1;
290 reg_type
($2, $2->name
, 0);
291 if
(!parse_only
&& do_header
) write_coclass_forward
($2);
293 | gbl_statements coclassdef
{ $$
= $1;
294 add_typelib_entry
($2);
295 reg_type
($2, $2->name
, 0);
296 if
(!parse_only
&& do_header
) write_coclass_forward
($2);
298 | gbl_statements moduledef
{ $$
= $1; add_typelib_entry
($2); }
299 | gbl_statements librarydef
{ $$
= $1; }
300 | gbl_statements statement
{ $$
= $1; }
304 | imp_statements interfacedec
{ if
(!parse_only
) add_typelib_entry
($2); }
305 | imp_statements interfacedef
{ if
(!parse_only
) add_typelib_entry
($2); }
306 | imp_statements coclass
';' { reg_type
($2, $2->name
, 0); if
(!parse_only
&& do_header
) write_coclass_forward
($2); }
307 | imp_statements coclassdef
{ if
(!parse_only
) add_typelib_entry
($2);
308 reg_type
($2, $2->name
, 0);
309 if
(!parse_only
&& do_header
) write_coclass_forward
($2);
311 | imp_statements moduledef
{ if
(!parse_only
) add_typelib_entry
($2); }
312 | imp_statements statement
{}
313 | imp_statements importlib
{}
316 int_statements: { $$
= NULL
; }
317 | int_statements funcdef
';' { $$
= append_func
( $1, $2 ); }
318 | int_statements statement
{ $$
= $1; }
322 | constdef
';' { if
(!parse_only
&& do_header
) { write_constdef
($1); } }
324 | enumdef
';' { if
(!parse_only
&& do_header
) {
325 write_type
(header
, $1, FALSE
, NULL
);
326 fprintf
(header
, ";\n\n");
329 | externdef
';' { if
(!parse_only
&& do_header
) { write_externdef
($1); } }
331 | structdef
';' { if
(!parse_only
&& do_header
) {
332 write_type
(header
, $1, FALSE
, NULL
);
333 fprintf
(header
, ";\n\n");
337 | uniondef
';' { if
(!parse_only
&& do_header
) {
338 write_type
(header
, $1, FALSE
, NULL
);
339 fprintf
(header
, ";\n\n");
344 cppquote: tCPPQUOTE
'(' aSTRING
')' { if
(!parse_only
&& do_header
) fprintf
(header
, "%s\n", $3); }
346 import_start: tIMPORT aSTRING
';' { assert
(yychar == YYEMPTY
);
347 if
(!do_import
($2)) yychar = aEOF
; }
349 import: import_start imp_statements aEOF
{}
352 importlib: tIMPORTLIB
'(' aSTRING
')' { if
(!parse_only
) add_importlib
($3); }
355 libraryhdr: tLIBRARY aIDENTIFIER
{ $$
= $2; }
357 library_start: attributes libraryhdr
'{' { start_typelib
($2, $1);
358 if
(!parse_only
&& do_header
) write_library
($2, $1);
359 if
(!parse_only
&& do_idfile
) write_libid
($2, $1);
362 librarydef: library_start imp_statements
'}' { end_typelib
(); }
365 m_args: { $$
= NULL
; }
369 no_args: tVOID
{ $$
= NULL
; }
372 args: arg
{ check_arg
($1); $$
= append_var
( NULL
, $1 ); }
373 | args
',' arg
{ check_arg
($3); $$
= append_var
( $1, $3); }
377 /* split into two rules to get bison to resolve a tVOID conflict */
378 arg: attributes type pident array
{ $$
= $3->var
;
380 set_type
($$
, $2, $3->ptr_level
, $4);
383 | type pident array
{ $$
= $2->var
;
384 set_type
($$
, $1, $2->ptr_level
, $3);
387 | attributes type pident
'(' m_args
')' { $$
= $3->var
;
389 set_type
($$
, $2, $3->ptr_level
- 1, NULL
);
393 | type pident
'(' m_args
')' { $$
= $2->var
;
394 set_type
($$
, $1, $2->ptr_level
- 1, NULL
);
400 array: { $$
= NULL
; }
401 |
'[' array_list
']' { $$
= $2; }
402 |
'[' '*' ']' { $$
= append_array
( NULL
, make_expr
(EXPR_VOID
) ); }
405 array_list: m_expr
/* size of first dimension is optional */ { $$
= append_array
( NULL
, $1 ); }
406 | array_list
',' expr
{ $$
= append_array
( $1, $3 ); }
407 | array_list
']' '[' expr
{ $$
= append_array
( $1, $4 ); }
410 m_attributes: { $$
= NULL
; }
415 '[' attrib_list
']' { $$
= $2;
417 yyerror("empty attribute lists unsupported");
421 attrib_list: attribute
{ $$
= append_attr
( NULL
, $1 ); }
422 | attrib_list
',' attribute
{ $$
= append_attr
( $1, $3 ); }
423 | attrib_list
']' '[' attribute
{ $$
= append_attr
( $1, $4 ); }
426 str_list: aSTRING
{ $$
= append_str
( NULL
, $1 ); }
427 | str_list
',' aSTRING
{ $$
= append_str
( $1, $3 ); }
430 attribute: { $$
= NULL
; }
431 | tAGGREGATABLE
{ $$
= make_attr
(ATTR_AGGREGATABLE
); }
432 | tAPPOBJECT
{ $$
= make_attr
(ATTR_APPOBJECT
); }
433 | tASYNC
{ $$
= make_attr
(ATTR_ASYNC
); }
434 | tAUTOHANDLE
{ $$
= make_attr
(ATTR_AUTO_HANDLE
); }
435 | tBINDABLE
{ $$
= make_attr
(ATTR_BINDABLE
); }
436 | tCALLAS
'(' ident
')' { $$
= make_attrp
(ATTR_CALLAS
, $3); }
437 | tCASE
'(' expr_list_const
')' { $$
= make_attrp
(ATTR_CASE
, $3); }
438 | tCONTEXTHANDLE
{ $$
= make_attrv
(ATTR_CONTEXTHANDLE
, 0); }
439 | tCONTEXTHANDLENOSERIALIZE
{ $$
= make_attrv
(ATTR_CONTEXTHANDLE
, 0); /* RPC_CONTEXT_HANDLE_DONT_SERIALIZE */ }
440 | tCONTEXTHANDLESERIALIZE
{ $$
= make_attrv
(ATTR_CONTEXTHANDLE
, 0); /* RPC_CONTEXT_HANDLE_SERIALIZE */ }
441 | tCONTROL
{ $$
= make_attr
(ATTR_CONTROL
); }
442 | tDEFAULT
{ $$
= make_attr
(ATTR_DEFAULT
); }
443 | tDEFAULTCOLLELEM
{ $$
= make_attr
(ATTR_DEFAULTCOLLELEM
); }
444 | tDEFAULTVALUE
'(' expr_const
')' { $$
= make_attrp
(ATTR_DEFAULTVALUE_EXPR
, $3); }
445 | tDEFAULTVALUE
'(' aSTRING
')' { $$
= make_attrp
(ATTR_DEFAULTVALUE_STRING
, $3); }
446 | tDEFAULTVTABLE
{ $$
= make_attr
(ATTR_DEFAULTVTABLE
); }
447 | tDISPLAYBIND
{ $$
= make_attr
(ATTR_DISPLAYBIND
); }
448 | tDLLNAME
'(' aSTRING
')' { $$
= make_attrp
(ATTR_DLLNAME
, $3); }
449 | tDUAL
{ $$
= make_attr
(ATTR_DUAL
); }
450 | tENDPOINT
'(' str_list
')' { $$
= make_attrp
(ATTR_ENDPOINT
, $3); }
451 | tENTRY
'(' aSTRING
')' { $$
= make_attrp
(ATTR_ENTRY_STRING
, $3); }
452 | tENTRY
'(' expr_const
')' { $$
= make_attrp
(ATTR_ENTRY_ORDINAL
, $3); }
453 | tEXPLICITHANDLE
{ $$
= make_attr
(ATTR_EXPLICIT_HANDLE
); }
454 | tHANDLE
{ $$
= make_attr
(ATTR_HANDLE
); }
455 | tHELPCONTEXT
'(' expr_const
')' { $$
= make_attrp
(ATTR_HELPCONTEXT
, $3); }
456 | tHELPFILE
'(' aSTRING
')' { $$
= make_attrp
(ATTR_HELPFILE
, $3); }
457 | tHELPSTRING
'(' aSTRING
')' { $$
= make_attrp
(ATTR_HELPSTRING
, $3); }
458 | tHELPSTRINGCONTEXT
'(' expr_const
')' { $$
= make_attrp
(ATTR_HELPSTRINGCONTEXT
, $3); }
459 | tHELPSTRINGDLL
'(' aSTRING
')' { $$
= make_attrp
(ATTR_HELPSTRINGDLL
, $3); }
460 | tHIDDEN
{ $$
= make_attr
(ATTR_HIDDEN
); }
461 | tID
'(' expr_const
')' { $$
= make_attrp
(ATTR_ID
, $3); }
462 | tIDEMPOTENT
{ $$
= make_attr
(ATTR_IDEMPOTENT
); }
463 | tIIDIS
'(' ident
')' { $$
= make_attrp
(ATTR_IIDIS
, $3); }
464 | tIMMEDIATEBIND
{ $$
= make_attr
(ATTR_IMMEDIATEBIND
); }
465 | tIMPLICITHANDLE
'(' tHANDLET aIDENTIFIER
')' { $$
= make_attrp
(ATTR_IMPLICIT_HANDLE
, $4); }
466 | tIN
{ $$
= make_attr
(ATTR_IN
); }
467 | tINPUTSYNC
{ $$
= make_attr
(ATTR_INPUTSYNC
); }
468 | tLENGTHIS
'(' m_exprs
')' { $$
= make_attrp
(ATTR_LENGTHIS
, $3); }
469 | tLOCAL
{ $$
= make_attr
(ATTR_LOCAL
); }
470 | tNONBROWSABLE
{ $$
= make_attr
(ATTR_NONBROWSABLE
); }
471 | tNONCREATABLE
{ $$
= make_attr
(ATTR_NONCREATABLE
); }
472 | tNONEXTENSIBLE
{ $$
= make_attr
(ATTR_NONEXTENSIBLE
); }
473 | tOBJECT
{ $$
= make_attr
(ATTR_OBJECT
); }
474 | tODL
{ $$
= make_attr
(ATTR_ODL
); }
475 | tOLEAUTOMATION
{ $$
= make_attr
(ATTR_OLEAUTOMATION
); }
476 | tOPTIONAL
{ $$
= make_attr
(ATTR_OPTIONAL
); }
477 | tOUT
{ $$
= make_attr
(ATTR_OUT
); }
478 | tPOINTERDEFAULT
'(' pointer_type
')' { $$
= make_attrv
(ATTR_POINTERDEFAULT
, $3); }
479 | tPROPGET
{ $$
= make_attr
(ATTR_PROPGET
); }
480 | tPROPPUT
{ $$
= make_attr
(ATTR_PROPPUT
); }
481 | tPROPPUTREF
{ $$
= make_attr
(ATTR_PROPPUTREF
); }
482 | tPUBLIC
{ $$
= make_attr
(ATTR_PUBLIC
); }
483 | tRANGE
'(' expr_const
',' expr_const
')' { expr_list_t
*list
= append_expr
( NULL
, $3 );
484 list
= append_expr
( list
, $5 );
485 $$
= make_attrp
(ATTR_RANGE
, list
); }
486 | tREADONLY
{ $$
= make_attr
(ATTR_READONLY
); }
487 | tREQUESTEDIT
{ $$
= make_attr
(ATTR_REQUESTEDIT
); }
488 | tRESTRICTED
{ $$
= make_attr
(ATTR_RESTRICTED
); }
489 | tRETVAL
{ $$
= make_attr
(ATTR_RETVAL
); }
490 | tSIZEIS
'(' m_exprs
')' { $$
= make_attrp
(ATTR_SIZEIS
, $3); }
491 | tSOURCE
{ $$
= make_attr
(ATTR_SOURCE
); }
492 | tSTRING
{ $$
= make_attr
(ATTR_STRING
); }
493 | tSWITCHIS
'(' expr
')' { $$
= make_attrp
(ATTR_SWITCHIS
, $3); }
494 | tSWITCHTYPE
'(' type
')' { $$
= make_attrp
(ATTR_SWITCHTYPE
, $3); }
495 | tTRANSMITAS
'(' type
')' { $$
= make_attrp
(ATTR_TRANSMITAS
, $3); }
496 | tUUID
'(' aUUID
')' { $$
= make_attrp
(ATTR_UUID
, $3); }
497 | tV1ENUM
{ $$
= make_attr
(ATTR_V1ENUM
); }
498 | tVARARG
{ $$
= make_attr
(ATTR_VARARG
); }
499 | tVERSION
'(' version
')' { $$
= make_attrv
(ATTR_VERSION
, $3); }
500 | tWIREMARSHAL
'(' type
')' { $$
= make_attrp
(ATTR_WIREMARSHAL
, $3); }
501 | pointer_type
{ $$
= make_attrv
(ATTR_POINTERTYPE
, $1); }
508 cases: { $$
= NULL
; }
509 | cases case
{ $$
= append_var
( $1, $2 ); }
512 case: tCASE expr
':' field
{ attr_t
*a
= make_attrp
(ATTR_CASE
, append_expr
( NULL
, $2 ));
513 $$
= $4; if
(!$$
) $$
= make_var
(NULL
);
514 $$
->attrs
= append_attr
( $$
->attrs
, a
);
516 | tDEFAULT
':' field
{ attr_t
*a
= make_attr
(ATTR_DEFAULT
);
517 $$
= $3; if
(!$$
) $$
= make_var
(NULL
);
518 $$
->attrs
= append_attr
( $$
->attrs
, a
);
522 constdef: tCONST type ident
'=' expr_const
{ $$
= reg_const
($3);
523 set_type
($$
, $2, 0, NULL
);
528 enums: { $$
= NULL
; }
529 | enum_list
',' { $$
= $1; }
533 enum_list: enum { if
(!$1->eval
)
534 $1->eval
= make_exprl
(EXPR_NUM
, 0 /* default for first enum entry */);
535 $$
= append_var
( NULL
, $1 );
537 | enum_list
',' enum { if
(!$3->eval
)
539 var_t
*last
= LIST_ENTRY
( list_tail
($$
), var_t
, entry
);
540 $3->eval
= make_exprl
(EXPR_NUM
, last
->eval
->cval
+ 1);
542 $$
= append_var
( $1, $3 );
546 enum: ident
'=' expr_const
{ $$
= reg_const
($1);
548 $$
->type
= make_int
(0);
550 | ident
{ $$
= reg_const
($1);
551 $$
->type
= make_int
(0);
555 enumdef: tENUM t_ident
'{' enums
'}' { $$
= get_typev
(RPC_FC_ENUM16
, $2, tsENUM
);
556 $$
->kind
= TKIND_ENUM
;
560 add_typelib_entry
($$
);
564 m_exprs: m_expr
{ $$
= append_expr
( NULL
, $1 ); }
565 | m_exprs
',' m_expr
{ $$
= append_expr
( $1, $3 ); }
569 exprs: { $$ = make_expr(EXPR_VOID); }
574 | expr_list ',' expr { LINK($3, $1); $$ = $3; }
578 m_expr: { $$
= make_expr
(EXPR_VOID
); }
582 expr: aNUM
{ $$
= make_exprl
(EXPR_NUM
, $1); }
583 | aHEXNUM
{ $$
= make_exprl
(EXPR_HEXNUM
, $1); }
584 | tFALSE
{ $$
= make_exprl
(EXPR_TRUEFALSE
, 0); }
585 | tTRUE
{ $$
= make_exprl
(EXPR_TRUEFALSE
, 1); }
586 | aIDENTIFIER
{ $$
= make_exprs
(EXPR_IDENTIFIER
, $1); }
587 | expr
'?' expr
':' expr
{ $$
= make_expr3
(EXPR_COND
, $1, $3, $5); }
588 | expr
'|' expr
{ $$
= make_expr2
(EXPR_OR
, $1, $3); }
589 | expr
'&' expr
{ $$
= make_expr2
(EXPR_AND
, $1, $3); }
590 | expr
'+' expr
{ $$
= make_expr2
(EXPR_ADD
, $1, $3); }
591 | expr
'-' expr
{ $$
= make_expr2
(EXPR_SUB
, $1, $3); }
592 | expr
'*' expr
{ $$
= make_expr2
(EXPR_MUL
, $1, $3); }
593 | expr
'/' expr
{ $$
= make_expr2
(EXPR_DIV
, $1, $3); }
594 | expr SHL expr
{ $$
= make_expr2
(EXPR_SHL
, $1, $3); }
595 | expr SHR expr
{ $$
= make_expr2
(EXPR_SHR
, $1, $3); }
596 |
'~' expr
{ $$
= make_expr1
(EXPR_NOT
, $2); }
597 |
'-' expr %prec NEG
{ $$
= make_expr1
(EXPR_NEG
, $2); }
598 |
'*' expr %prec PPTR
{ $$
= make_expr1
(EXPR_PPTR
, $2); }
599 |
'(' type
')' expr %prec CAST
{ $$
= make_exprt
(EXPR_CAST
, $2, $4); }
600 | tSIZEOF
'(' type
')' { $$
= make_exprt
(EXPR_SIZEOF
, $3, NULL
); }
601 |
'(' expr
')' { $$
= $2; }
604 expr_list_const: expr_const
{ $$
= append_expr
( NULL
, $1 ); }
605 | expr_list_const
',' expr_const
{ $$
= append_expr
( $1, $3 ); }
608 expr_const: expr
{ $$
= $1;
610 yyerror("expression is not constant");
614 externdef: tEXTERN tCONST type ident
{ $$
= $4;
615 set_type
($$
, $3, 0, NULL
);
619 fields: { $$
= NULL
; }
620 | fields field
{ $$
= append_var
( $1, $2 ); }
623 field: s_field
';' { $$
= $1; }
624 | m_attributes uniondef
';' { $$
= make_var
(NULL
); $$
->type
= $2; $$
->attrs
= $1; }
625 | attributes
';' { $$
= make_var
(NULL
); $$
->attrs
= $1; }
629 s_field: m_attributes type pident array
{ $$
= $3->var
;
631 set_type
($$
, $2, $3->ptr_level
, $4);
637 m_attributes type callconv pident
638 '(' m_args
')' { var_t
*v
= $4->var
;
640 set_type
(v
, $2, $4->ptr_level
, NULL
);
642 $$
= make_func
(v
, $6);
643 if
(is_attr
(v
->attrs
, ATTR_IN
)) {
644 yyerror("inapplicable attribute [in] for function '%s'",$$
->def
->name
);
649 m_ident: { $$
= NULL
; }
653 t_ident: { $$
= NULL
; }
654 | aIDENTIFIER
{ $$
= make_var
($1); }
655 | aKNOWNTYPE
{ $$
= make_var
($1); }
658 ident: aIDENTIFIER
{ $$
= make_var
($1); }
659 /* some "reserved words" used in attributes are also used as field names in some MS IDL files */
660 | aKNOWNTYPE
{ $$
= make_var
($
<str
>1); }
663 base_type: tBYTE
{ $$
= make_builtin
($
<str
>1); }
664 | tWCHAR
{ $$
= make_builtin
($
<str
>1); }
666 | tSIGNED int_std
{ $$
= $2; $$
->sign
= 1; }
667 | tUNSIGNED int_std
{ $$
= $2; $$
->sign
= -1;
669 case RPC_FC_CHAR
: break
;
670 case RPC_FC_SMALL
: $$
->type
= RPC_FC_USMALL
; break
;
671 case RPC_FC_SHORT
: $$
->type
= RPC_FC_USHORT
; break
;
672 case RPC_FC_LONG
: $$
->type
= RPC_FC_ULONG
; break
;
674 if
($$
->name
[0] == 'h') /* hyper, as opposed to __int64 */
676 $$
= alias
($$
, "MIDL_uhyper");
683 | tUNSIGNED
{ $$
= make_int
(-1); }
684 | tFLOAT
{ $$
= make_builtin
($
<str
>1); }
685 | tSINGLE
{ $$
= duptype
(find_type
("float", 0), 1); }
686 | tDOUBLE
{ $$
= make_builtin
($
<str
>1); }
687 | tBOOLEAN
{ $$
= make_builtin
($
<str
>1); }
688 | tERRORSTATUST
{ $$
= make_builtin
($
<str
>1); }
689 | tHANDLET
{ $$
= make_builtin
($
<str
>1); }
696 int_std: tINT
{ $$
= make_builtin
($
<str
>1); }
697 | tSHORT m_int
{ $$
= make_builtin
($
<str
>1); }
698 | tSMALL
{ $$
= make_builtin
($
<str
>1); }
699 | tLONG m_int
{ $$
= make_builtin
($
<str
>1); }
700 | tHYPER m_int
{ $$
= make_builtin
($
<str
>1); }
701 | tINT64
{ $$
= make_builtin
($
<str
>1); }
702 | tCHAR
{ $$
= make_builtin
($
<str
>1); }
705 coclass: tCOCLASS aIDENTIFIER
{ $$
= make_class
($2); }
706 | tCOCLASS aKNOWNTYPE
{ $$
= find_type
($2, 0);
707 if
($$
->defined
) yyerror("multiple definition error");
708 if
($$
->kind
!= TKIND_COCLASS
) yyerror("%s was not declared a coclass", $2);
712 coclasshdr: attributes coclass
{ $$
= $2;
714 if
(!parse_only
&& do_header
)
716 if
(!parse_only
&& do_idfile
)
721 coclassdef: coclasshdr
'{' coclass_ints
'}' { $$
= $1;
727 coclass_ints: { $$
= NULL
; }
728 | coclass_ints coclass_int
{ $$
= append_ifref
( $1, $2 ); }
732 m_attributes interfacedec
{ $$
= make_ifref
($2); $$
->attrs
= $1; }
735 dispinterface: tDISPINTERFACE aIDENTIFIER
{ $$
= get_type
(0, $2, 0); $$
->kind
= TKIND_DISPATCH
; }
736 | tDISPINTERFACE aKNOWNTYPE
{ $$
= get_type
(0, $2, 0); $$
->kind
= TKIND_DISPATCH
; }
739 dispinterfacehdr: attributes dispinterface
{ attr_t
*attrs
;
741 if
($$
->defined
) yyerror("multiple definition error");
742 attrs
= make_attr
(ATTR_DISPINTERFACE
);
743 $$
->attrs
= append_attr
( $1, attrs
);
744 $$
->ref
= find_type
("IDispatch", 0);
745 if
(!$$
->ref
) yyerror("IDispatch is undefined");
747 if
(!parse_only
&& do_header
) write_forward
($$
);
751 dispint_props: tPROPERTIES
':' { $$
= NULL
; }
752 | dispint_props s_field
';' { $$
= append_var
( $1, $2 ); }
755 dispint_meths: tMETHODS
':' { $$
= NULL
; }
756 | dispint_meths funcdef
';' { $$
= append_func
( $1, $2 ); }
759 dispinterfacedef: dispinterfacehdr
'{'
765 if
(!parse_only
&& do_header
) write_dispinterface
($$
);
766 if
(!parse_only
&& do_idfile
) write_diid
($$
);
769 '{' interface
';' '}' { $$
= $1;
770 $$
->fields
= $3->fields
;
771 $$
->funcs
= $3->funcs
;
772 if
(!parse_only
&& do_header
) write_dispinterface
($$
);
773 if
(!parse_only
&& do_idfile
) write_diid
($$
);
777 inherit: { $$
= NULL
; }
778 |
':' aKNOWNTYPE
{ $$
= find_type2
($2, 0); }
781 interface: tINTERFACE aIDENTIFIER
{ $$
= get_type
(RPC_FC_IP
, $2, 0); $$
->kind
= TKIND_INTERFACE
; }
782 | tINTERFACE aKNOWNTYPE
{ $$
= get_type
(RPC_FC_IP
, $2, 0); $$
->kind
= TKIND_INTERFACE
; }
785 interfacehdr: attributes interface
{ $$
= $2;
786 if
($$
->defined
) yyerror("multiple definition error");
789 if
(!parse_only
&& do_header
) write_forward
($$
);
793 interfacedef: interfacehdr inherit
794 '{' int_statements
'}' { $$
= $1;
797 compute_method_indexes
($$
);
798 if
(!parse_only
&& do_header
) write_interface
($$
);
799 if
(!parse_only
&& do_idfile
) write_iid
($$
);
801 /* MIDL is able to import the definition of a base class from inside the
802 * definition of a derived class, I'll try to support it with this rule */
803 | interfacehdr
':' aIDENTIFIER
804 '{' import int_statements
'}' { $$
= $1;
805 $$
->ref
= find_type2
($3, 0);
806 if
(!$$
->ref
) yyerror("base class '%s' not found in import", $3);
808 compute_method_indexes
($$
);
809 if
(!parse_only
&& do_header
) write_interface
($$
);
810 if
(!parse_only
&& do_idfile
) write_iid
($$
);
812 | dispinterfacedef
{ $$
= $1; }
816 interface
';' { $$
= $1; if
(!parse_only
&& do_header
) write_forward
($$
); }
817 | dispinterface
';' { $$
= $1; if
(!parse_only
&& do_header
) write_forward
($$
); }
820 module: tMODULE aIDENTIFIER
{ $$
= make_type
(0, NULL
); $$
->name
= $2; $$
->kind
= TKIND_MODULE
; }
821 | tMODULE aKNOWNTYPE
{ $$
= make_type
(0, NULL
); $$
->name
= $2; $$
->kind
= TKIND_MODULE
; }
824 modulehdr: attributes module
{ $$
= $2;
829 moduledef: modulehdr
'{' int_statements
'}' { $$
= $1;
831 /* FIXME: if (!parse_only && do_header) write_module($$); */
835 p_ident: '*' pident %prec PPTR
{ $$
= $2; $$
->ptr_level
++; }
836 | tCONST p_ident
{ $$
= $2; /* FIXME */ }
839 pident: ident
{ $$
= make_pident
($1); }
841 |
'(' pident
')' { $$
= $2; }
845 pident
{ $$
= append_pident
( NULL
, $1 ); }
846 | pident_list
',' pident
{ $$
= append_pident
( $1, $3 ); }
850 tREF
{ $$
= RPC_FC_RP
; }
851 | tUNIQUE
{ $$
= RPC_FC_UP
; }
852 | tPTR
{ $$
= RPC_FC_FP
; }
855 structdef: tSTRUCT t_ident
'{' fields
'}' { $$
= get_typev
(RPC_FC_STRUCT
, $2, tsSTRUCT
);
856 /* overwrite RPC_FC_STRUCT with a more exact type */
857 $$
->type
= get_struct_type
( $4 );
858 $$
->kind
= TKIND_RECORD
;
862 add_typelib_entry
($$
);
866 type: tVOID
{ $$
= duptype
(find_type
("void", 0), 1); }
867 | aKNOWNTYPE
{ $$
= find_type
($1, 0); }
868 | base_type
{ $$
= $1; }
869 | tCONST type
{ $$
= duptype
($2, 1); $$
->is_const
= TRUE
; }
870 | enumdef
{ $$
= $1; }
871 | tENUM aIDENTIFIER
{ $$
= find_type2
($2, tsENUM
); }
872 | structdef
{ $$
= $1; }
873 | tSTRUCT aIDENTIFIER
{ $$
= get_type
(RPC_FC_STRUCT
, $2, tsSTRUCT
); }
874 | uniondef
{ $$
= $1; }
875 | tUNION aIDENTIFIER
{ $$
= find_type2
($2, tsUNION
); }
876 | tSAFEARRAY
'(' type
')' { $$
= make_safearray
($3); }
879 typedef: tTYPEDEF m_attributes type pident_list
{ reg_typedefs
($3, $4, $2);
880 process_typedefs
($4);
884 uniondef: tUNION t_ident
'{' fields
'}' { $$
= get_typev
(RPC_FC_NON_ENCAPSULATED_UNION
, $2, tsUNION
);
885 $$
->kind
= TKIND_UNION
;
890 tSWITCH
'(' s_field
')'
891 m_ident
'{' cases
'}' { var_t
*u
= $7;
892 $$
= get_typev
(RPC_FC_ENCAPSULATED_UNION
, $2, tsUNION
);
893 $$
->kind
= TKIND_UNION
;
894 if
(!u
) u
= make_var
( xstrdup
("tagged_union") );
895 u
->type
= make_type
(RPC_FC_NON_ENCAPSULATED_UNION
, NULL
);
896 u
->type
->kind
= TKIND_UNION
;
897 u
->type
->fields
= $9;
898 u
->type
->defined
= TRUE
;
899 $$
->fields
= append_var
( $$
->fields
, $5 );
900 $$
->fields
= append_var
( $$
->fields
, u
);
906 aNUM
{ $$
= MAKELONG
($1, 0); }
907 | aNUM
'.' aNUM
{ $$
= MAKELONG
($1, $3); }
912 static void decl_builtin
(const char *name
, unsigned char type
)
914 type_t
*t
= make_type
(type
, NULL
);
915 t
->name
= xstrdup
(name
);
916 reg_type
(t
, name
, 0);
919 static type_t
*make_builtin
(char *name
)
921 /* NAME is strdup'd in the lexer */
922 type_t
*t
= duptype
(find_type
(name
, 0), 0);
927 static type_t
*make_int
(int sign
)
929 type_t
*t
= duptype
(find_type
("int", 0), 1);
933 t
->type
= t
->type
== RPC_FC_LONG ? RPC_FC_ULONG
: RPC_FC_USHORT
;
938 void init_types
(void)
940 decl_builtin
("void", 0);
941 decl_builtin
("byte", RPC_FC_BYTE
);
942 decl_builtin
("wchar_t", RPC_FC_WCHAR
);
943 decl_builtin
("int", RPC_FC_LONG
); /* win32 */
944 decl_builtin
("short", RPC_FC_SHORT
);
945 decl_builtin
("small", RPC_FC_SMALL
);
946 decl_builtin
("long", RPC_FC_LONG
);
947 decl_builtin
("hyper", RPC_FC_HYPER
);
948 decl_builtin
("__int64", RPC_FC_HYPER
);
949 decl_builtin
("char", RPC_FC_CHAR
);
950 decl_builtin
("float", RPC_FC_FLOAT
);
951 decl_builtin
("double", RPC_FC_DOUBLE
);
952 decl_builtin
("boolean", RPC_FC_BYTE
);
953 decl_builtin
("error_status_t", RPC_FC_ERROR_STATUS_T
);
954 decl_builtin
("handle_t", RPC_FC_BIND_PRIMITIVE
);
957 static str_list_t
*append_str
(str_list_t
*list
, char *str
)
959 struct str_list_entry_t
*entry
;
961 if
(!str
) return list
;
964 list
= xmalloc
( sizeof
(*list
) );
967 entry
= xmalloc
( sizeof
(*entry
) );
969 list_add_tail
( list
, &entry
->entry
);
973 static attr_list_t
*append_attr
(attr_list_t
*list
, attr_t
*attr
)
975 if
(!attr
) return list
;
978 list
= xmalloc
( sizeof
(*list
) );
981 list_add_tail
( list
, &attr
->entry
);
985 static attr_t
*make_attr
(enum attr_type type
)
987 attr_t
*a
= xmalloc
(sizeof
(attr_t
));
993 static attr_t
*make_attrv
(enum attr_type type
, unsigned long val
)
995 attr_t
*a
= xmalloc
(sizeof
(attr_t
));
1001 static attr_t
*make_attrp
(enum attr_type type
, void *val
)
1003 attr_t
*a
= xmalloc
(sizeof
(attr_t
));
1009 static expr_t
*make_expr
(enum expr_type type
)
1011 expr_t
*e
= xmalloc
(sizeof
(expr_t
));
1015 e
->is_const
= FALSE
;
1019 static expr_t
*make_exprl
(enum expr_type type
, long val
)
1021 expr_t
*e
= xmalloc
(sizeof
(expr_t
));
1025 e
->is_const
= FALSE
;
1026 /* check for numeric constant */
1027 if
(type
== EXPR_NUM || type
== EXPR_HEXNUM || type
== EXPR_TRUEFALSE
) {
1028 /* make sure true/false value is valid */
1029 assert
(type
!= EXPR_TRUEFALSE || val
== 0 || val
== 1);
1036 static expr_t
*make_exprs
(enum expr_type type
, char *val
)
1039 e
= xmalloc
(sizeof
(expr_t
));
1043 e
->is_const
= FALSE
;
1044 /* check for predefined constants */
1045 if
(type
== EXPR_IDENTIFIER
) {
1046 var_t
*c
= find_const
(val
, 0);
1048 e
->u.sval
= c
->name
;
1051 e
->cval
= c
->eval
->cval
;
1057 static expr_t
*make_exprt
(enum expr_type type
, type_t
*tref
, expr_t
*expr
)
1060 e
= xmalloc
(sizeof
(expr_t
));
1064 e
->is_const
= FALSE
;
1065 /* check for cast of constant expression */
1066 if
(type
== EXPR_SIZEOF
) {
1067 switch
(tref
->type
) {
1084 case RPC_FC_ERROR_STATUS_T
:
1095 if
(type
== EXPR_CAST
&& expr
->is_const
) {
1097 e
->cval
= expr
->cval
;
1102 static expr_t
*make_expr1
(enum expr_type type
, expr_t
*expr
)
1105 e
= xmalloc
(sizeof
(expr_t
));
1109 e
->is_const
= FALSE
;
1110 /* check for compile-time optimization */
1111 if
(expr
->is_const
) {
1115 e
->cval
= -expr
->cval
;
1118 e
->cval
= ~expr
->cval
;
1121 e
->is_const
= FALSE
;
1128 static expr_t
*make_expr2
(enum expr_type type
, expr_t
*expr1
, expr_t
*expr2
)
1131 e
= xmalloc
(sizeof
(expr_t
));
1135 e
->is_const
= FALSE
;
1136 /* check for compile-time optimization */
1137 if
(expr1
->is_const
&& expr2
->is_const
) {
1141 e
->cval
= expr1
->cval
+ expr2
->cval
;
1144 e
->cval
= expr1
->cval
- expr2
->cval
;
1147 e
->cval
= expr1
->cval
* expr2
->cval
;
1150 e
->cval
= expr1
->cval
/ expr2
->cval
;
1153 e
->cval
= expr1
->cval | expr2
->cval
;
1156 e
->cval
= expr1
->cval
& expr2
->cval
;
1159 e
->cval
= expr1
->cval
<< expr2
->cval
;
1162 e
->cval
= expr1
->cval
>> expr2
->cval
;
1165 e
->is_const
= FALSE
;
1172 static expr_t
*make_expr3
(enum expr_type type
, expr_t
*expr1
, expr_t
*expr2
, expr_t
*expr3
)
1175 e
= xmalloc
(sizeof
(expr_t
));
1180 e
->is_const
= FALSE
;
1181 /* check for compile-time optimization */
1182 if
(expr1
->is_const
&& expr2
->is_const
&& expr3
->is_const
) {
1186 e
->cval
= expr1
->cval ? expr2
->cval
: expr3
->cval
;
1189 e
->is_const
= FALSE
;
1196 static expr_list_t
*append_expr
(expr_list_t
*list
, expr_t
*expr
)
1198 if
(!expr
) return list
;
1201 list
= xmalloc
( sizeof
(*list
) );
1204 list_add_tail
( list
, &expr
->entry
);
1208 static array_dims_t
*append_array
(array_dims_t
*list
, expr_t
*expr
)
1210 if
(!expr
) return list
;
1213 list
= xmalloc
( sizeof
(*list
) );
1216 list_add_tail
( list
, &expr
->entry
);
1220 static type_t
*make_type
(unsigned char type
, type_t
*ref
)
1222 type_t
*t
= xmalloc
(sizeof
(type_t
));
1224 t
->kind
= TKIND_PRIMITIVE
;
1234 t
->length_is
= NULL
;
1235 t
->typestring_offset
= 0;
1236 t
->declarray
= FALSE
;
1237 t
->ignore
= (parse_only
!= 0);
1238 t
->is_const
= FALSE
;
1242 t
->user_types_registered
= FALSE
;
1243 t
->tfswrite
= FALSE
;
1244 t
->typelib_idx
= -1;
1248 static void set_type
(var_t
*v
, type_t
*type
, int ptr_level
, array_dims_t
*arr
)
1250 expr_list_t
*sizes
= get_attrp
(v
->attrs
, ATTR_SIZEIS
);
1251 expr_list_t
*lengs
= get_attrp
(v
->attrs
, ATTR_LENGTHIS
);
1252 int sizeless
, has_varconf
;
1254 type_t
*atype
, **ptype
;
1258 for
( ; 0 < ptr_level
; --ptr_level
)
1259 v
->type
= make_type
(RPC_FC_RP
, v
->type
);
1262 if
(arr
) LIST_FOR_EACH_ENTRY_REV
(dim
, arr
, expr_t
, entry
)
1265 error("%s: only the first array dimension can be unspecified\n", v
->name
);
1269 unsigned int align
= 0;
1270 size_t size
= type_memsize
(v
->type
, &align
);
1273 error("%s: array dimension must be positive\n", v
->name
);
1275 if
(0xffffffffuL
/ size
< (unsigned long) dim
->cval
)
1276 error("%s: total array size is too large", v
->name
);
1277 else if
(0xffffuL
< size
* dim
->cval
)
1278 v
->type
= make_type
(RPC_FC_LGFARRAY
, v
->type
);
1280 v
->type
= make_type
(RPC_FC_SMFARRAY
, v
->type
);
1285 v
->type
= make_type
(RPC_FC_CARRAY
, v
->type
);
1288 v
->type
->declarray
= TRUE
;
1289 v
->type
->dim
= dim
->cval
;
1293 has_varconf
= FALSE
;
1294 if
(sizes
) LIST_FOR_EACH_ENTRY
(dim
, sizes
, expr_t
, entry
)
1296 if
(dim
->type
!= EXPR_VOID
)
1299 atype
= *ptype
= duptype
(*ptype
, 0);
1301 if
(atype
->type
== RPC_FC_SMFARRAY || atype
->type
== RPC_FC_LGFARRAY
)
1302 error("%s: cannot specify size_is for a fixed sized array\n", v
->name
);
1304 if
(atype
->type
!= RPC_FC_CARRAY
&& !is_ptr
(atype
))
1305 error("%s: size_is attribute applied to illegal type\n", v
->name
);
1307 atype
->type
= RPC_FC_CARRAY
;
1308 atype
->size_is
= dim
;
1311 ptype
= &(*ptype
)->ref
;
1313 error("%s: too many expressions in size_is attribute\n", v
->name
);
1317 if
(lengs
) LIST_FOR_EACH_ENTRY
(dim
, lengs
, expr_t
, entry
)
1319 if
(dim
->type
!= EXPR_VOID
)
1322 atype
= *ptype
= duptype
(*ptype
, 0);
1324 if
(atype
->type
== RPC_FC_SMFARRAY
)
1325 atype
->type
= RPC_FC_SMVARRAY
;
1326 else if
(atype
->type
== RPC_FC_LGFARRAY
)
1327 atype
->type
= RPC_FC_LGVARRAY
;
1328 else if
(atype
->type
== RPC_FC_CARRAY
)
1329 atype
->type
= RPC_FC_CVARRAY
;
1331 error("%s: length_is attribute applied to illegal type\n", v
->name
);
1333 atype
->length_is
= dim
;
1336 ptype
= &(*ptype
)->ref
;
1338 error("%s: too many expressions in length_is attribute\n", v
->name
);
1341 if
(has_varconf
&& !last_array
(v
->type
))
1344 for
(ptype
= &v
->type
; is_array
(*ptype
); ptype
= &(*ptype
)->ref
)
1346 *ptype
= duptype
(*ptype
, 0);
1347 (*ptype
)->type
= RPC_FC_BOGUS_ARRAY
;
1352 static ifref_list_t
*append_ifref
(ifref_list_t
*list
, ifref_t
*iface
)
1354 if
(!iface
) return list
;
1357 list
= xmalloc
( sizeof
(*list
) );
1360 list_add_tail
( list
, &iface
->entry
);
1364 static ifref_t
*make_ifref
(type_t
*iface
)
1366 ifref_t
*l
= xmalloc
(sizeof
(ifref_t
));
1372 static var_list_t
*append_var
(var_list_t
*list
, var_t
*var
)
1374 if
(!var
) return list
;
1377 list
= xmalloc
( sizeof
(*list
) );
1380 list_add_tail
( list
, &var
->entry
);
1384 static var_t
*make_var
(char *name
)
1386 var_t
*v
= xmalloc
(sizeof
(var_t
));
1395 static pident_list_t
*append_pident
(pident_list_t
*list
, pident_t
*p
)
1397 if
(!p
) return list
;
1399 list
= xmalloc
(sizeof
(*list
));
1402 list_add_tail
(list
, &p
->entry
);
1406 static pident_t
*make_pident
(var_t
*var
)
1408 pident_t
*p
= xmalloc
(sizeof
(*p
));
1414 static func_list_t
*append_func
(func_list_t
*list
, func_t
*func
)
1416 if
(!func
) return list
;
1419 list
= xmalloc
( sizeof
(*list
) );
1422 list_add_tail
( list
, &func
->entry
);
1426 static func_t
*make_func
(var_t
*def
, var_list_t
*args
)
1428 func_t
*f
= xmalloc
(sizeof
(func_t
));
1431 f
->ignore
= parse_only
;
1436 static type_t
*make_class
(char *name
)
1438 type_t
*c
= make_type
(0, NULL
);
1440 c
->kind
= TKIND_COCLASS
;
1444 static type_t
*make_safearray
(type_t
*type
)
1446 type_t
*sa
= duptype
(find_type
("SAFEARRAY", 0), 1);
1448 return make_type
(RPC_FC_FP
, sa
);
1453 static int hash_ident
(const char *name
)
1455 const char *p
= name
;
1457 /* a simple sum hash is probably good enough */
1462 return sum
& (HASHMAX
-1);
1465 /***** type repository *****/
1474 struct rtype
*type_hash
[HASHMAX
];
1476 static type_t
*reg_type
(type_t
*type
, const char *name
, int t
)
1481 yyerror("registering named type without name");
1484 hash
= hash_ident
(name
);
1485 nt
= xmalloc
(sizeof
(struct rtype
));
1489 nt
->next
= type_hash
[hash
];
1490 type_hash
[hash
] = nt
;
1494 static int is_incomplete
(const type_t
*t
)
1496 return
!t
->defined
&& (is_struct
(t
->type
) || is_union
(t
->type
));
1499 static void add_incomplete
(type_t
*t
)
1501 struct typenode
*tn
= xmalloc
(sizeof
*tn
);
1503 list_add_tail
(&incomplete_types
, &tn
->entry
);
1506 static void fix_type
(type_t
*t
)
1508 if
(t
->kind
== TKIND_ALIAS
&& is_incomplete
(t
)) {
1509 type_t
*ot
= t
->orig
;
1511 t
->fields
= ot
->fields
;
1512 t
->defined
= ot
->defined
;
1516 static void fix_incomplete
(void)
1518 struct typenode
*tn
, *next
;
1520 LIST_FOR_EACH_ENTRY_SAFE
(tn
, next
, &incomplete_types
, struct typenode
, entry
) {
1526 static type_t
*reg_typedefs
(type_t
*type
, pident_list_t
*pidents
, attr_list_t
*attrs
)
1529 const pident_t
*pident
;
1531 int is_str
= is_attr
(attrs
, ATTR_STRING
);
1532 unsigned char ptr_type
= get_attrv
(attrs
, ATTR_POINTERTYPE
);
1543 if
(c
!= RPC_FC_CHAR
&& c
!= RPC_FC_BYTE
&& c
!= RPC_FC_WCHAR
)
1545 pident
= LIST_ENTRY
( list_head
( pidents
), const pident_t
, entry
);
1546 yyerror("'%s': [string] attribute is only valid on 'char', 'byte', or 'wchar_t' pointers and arrays",
1551 /* We must generate names for tagless enum, struct or union.
1552 Typedef-ing a tagless enum, struct or union means we want the typedef
1553 to be included in a library whether it has other attributes or not,
1554 hence the public attribute. */
1555 if
((type
->kind
== TKIND_ENUM || type
->kind
== TKIND_RECORD
1556 || type
->kind
== TKIND_UNION
) && ! type
->name
&& ! parse_only
)
1558 if
(! is_attr
(attrs
, ATTR_PUBLIC
))
1559 attrs
= append_attr
( attrs
, make_attr
(ATTR_PUBLIC
) );
1560 type
->name
= gen_name
();
1563 LIST_FOR_EACH_ENTRY
( pident
, pidents
, const pident_t
, entry
)
1565 var_t
*name
= pident
->var
;
1569 int cptr
= pident
->ptr_level
;
1571 while
(cptr
> ptrc
) {
1572 cur
= ptr
= make_type
(RPC_FC_RP
, cur
);
1576 while
(cptr
< ptrc
) {
1581 cur
= alias
(cur
, name
->name
);
1586 cur
->type
= ptr_type
;
1588 yyerror("'%s': pointer attribute applied to non-pointer type",
1591 else if
(is_str
&& ! is_ptr
(cur
))
1592 yyerror("'%s': [string] attribute applied to non-pointer type",
1595 if
(is_incomplete
(cur
))
1596 add_incomplete
(cur
);
1597 reg_type
(cur
, cur
->name
, 0);
1603 static type_t
*find_type
(const char *name
, int t
)
1605 struct rtype
*cur
= type_hash
[hash_ident
(name
)];
1606 while
(cur
&& (cur
->t
!= t || strcmp
(cur
->name
, name
)))
1609 yyerror("type '%s' not found", name
);
1615 static type_t
*find_type2
(char *name
, int t
)
1617 type_t
*tp
= find_type
(name
, t
);
1622 int is_type
(const char *name
)
1624 struct rtype
*cur
= type_hash
[hash_ident
(name
)];
1625 while
(cur
&& (cur
->t || strcmp
(cur
->name
, name
)))
1627 if
(cur
) return TRUE
;
1631 static type_t
*get_type
(unsigned char type
, char *name
, int t
)
1633 struct rtype
*cur
= NULL
;
1636 cur
= type_hash
[hash_ident
(name
)];
1637 while
(cur
&& (cur
->t
!= t || strcmp
(cur
->name
, name
)))
1644 tp
= make_type
(type
, NULL
);
1646 if
(!name
) return tp
;
1647 return reg_type
(tp
, name
, t
);
1650 static type_t
*get_typev
(unsigned char type
, var_t
*name
, int t
)
1657 return get_type
(type
, sname
, t
);
1660 static int get_struct_type
(var_list_t
*fields
)
1662 int has_pointer
= 0;
1663 int has_conformance
= 0;
1664 int has_variance
= 0;
1667 if
(fields
) LIST_FOR_EACH_ENTRY
( field
, fields
, var_t
, entry
)
1669 type_t
*t
= field
->type
;
1680 case RPC_FC_ENCAPSULATED_UNION
:
1681 case RPC_FC_NON_ENCAPSULATED_UNION
:
1682 case RPC_FC_BOGUS_STRUCT
:
1683 return RPC_FC_BOGUS_STRUCT
;
1690 if
(field
->type
->declarray
)
1692 if
(is_string_type
(field
->attrs
, field
->type
))
1694 has_conformance
= 1;
1699 if
(is_array
(field
->type
->ref
))
1700 return RPC_FC_BOGUS_STRUCT
;
1702 if
(is_conformant_array
(field
->type
))
1704 has_conformance
= 1;
1705 if
(field
->type
->declarray
&& list_next
(fields
, &field
->entry
))
1706 yyerror("field '%s' deriving from a conformant array must be the last field in the structure",
1709 if
(field
->type
->length_is
)
1712 t
= field
->type
->ref
;
1718 * RPC_FC_BYTE, RPC_FC_STRUCT, etc
1719 * Simple types don't effect the type of struct.
1720 * A struct containing a simple struct is still a simple struct.
1721 * So long as we can block copy the data, we return RPC_FC_STRUCT.
1723 case
0: /* void pointer */
1733 case RPC_FC_INT3264
:
1734 case RPC_FC_UINT3264
:
1748 case RPC_FC_CVARRAY
:
1753 * Propagate member attributes
1754 * a struct should be at least as complex as its member
1756 case RPC_FC_CVSTRUCT
:
1757 has_conformance
= 1;
1762 case RPC_FC_CPSTRUCT
:
1763 has_conformance
= 1;
1764 if
(list_next
( fields
, &field
->entry
))
1765 yyerror("field '%s' deriving from a conformant array must be the last field in the structure",
1770 case RPC_FC_CSTRUCT
:
1771 has_conformance
= 1;
1772 if
(list_next
( fields
, &field
->entry
))
1773 yyerror("field '%s' deriving from a conformant array must be the last field in the structure",
1777 case RPC_FC_PSTRUCT
:
1782 fprintf
(stderr
,"Unknown struct member %s with type (0x%02x)\n",
1783 field
->name
, t
->type
);
1784 /* fallthru - treat it as complex */
1786 /* as soon as we see one of these these members, it's bogus... */
1788 case RPC_FC_ENCAPSULATED_UNION
:
1789 case RPC_FC_NON_ENCAPSULATED_UNION
:
1790 case RPC_FC_TRANSMIT_AS
:
1791 case RPC_FC_REPRESENT_AS
:
1793 case RPC_FC_EMBEDDED_COMPLEX
:
1794 case RPC_FC_BOGUS_STRUCT
:
1795 return RPC_FC_BOGUS_STRUCT
;
1801 if
( has_conformance
)
1802 return RPC_FC_CVSTRUCT
;
1804 return RPC_FC_BOGUS_STRUCT
;
1806 if
( has_conformance
&& has_pointer
)
1807 return RPC_FC_CPSTRUCT
;
1808 if
( has_conformance
)
1809 return RPC_FC_CSTRUCT
;
1811 return RPC_FC_PSTRUCT
;
1812 return RPC_FC_STRUCT
;
1815 /***** constant repository *****/
1820 struct rconst
*next
;
1823 struct rconst
*const_hash
[HASHMAX
];
1825 static var_t
*reg_const
(var_t
*var
)
1830 yyerror("registering constant without name");
1833 hash
= hash_ident
(var
->name
);
1834 nc
= xmalloc
(sizeof
(struct rconst
));
1835 nc
->name
= var
->name
;
1837 nc
->next
= const_hash
[hash
];
1838 const_hash
[hash
] = nc
;
1842 static var_t
*find_const
(char *name
, int f
)
1844 struct rconst
*cur
= const_hash
[hash_ident
(name
)];
1845 while
(cur
&& strcmp
(cur
->name
, name
))
1848 if
(f
) yyerror("constant '%s' not found", name
);
1854 static void write_libid
(const char *name
, const attr_list_t
*attr
)
1856 const UUID
*uuid
= get_attrp
(attr
, ATTR_UUID
);
1857 write_guid
(idfile
, "LIBID", name
, uuid
);
1860 static void write_clsid
(type_t
*cls
)
1862 const UUID
*uuid
= get_attrp
(cls
->attrs
, ATTR_UUID
);
1863 write_guid
(idfile
, "CLSID", cls
->name
, uuid
);
1866 static void write_diid
(type_t
*iface
)
1868 const UUID
*uuid
= get_attrp
(iface
->attrs
, ATTR_UUID
);
1869 write_guid
(idfile
, "DIID", iface
->name
, uuid
);
1872 static void write_iid
(type_t
*iface
)
1874 const UUID
*uuid
= get_attrp
(iface
->attrs
, ATTR_UUID
);
1875 write_guid
(idfile
, "IID", iface
->name
, uuid
);
1878 static int compute_method_indexes
(type_t
*iface
)
1884 idx
= compute_method_indexes
(iface
->ref
);
1891 LIST_FOR_EACH_ENTRY
( f
, iface
->funcs
, func_t
, entry
)
1892 if
(! is_callas
(f
->def
->attrs
))
1898 static char *gen_name
(void)
1900 static const char format
[] = "__WIDL_%s_generated_name_%08lX";
1901 static unsigned long n
= 0;
1902 static const char *file_id
;
1908 char *dst
= dup_basename
(input_name
, ".idl");
1912 if
(! isalnum
((unsigned char) *dst
))
1915 size
= sizeof format
- 7 + strlen
(file_id
) + 8;
1918 name
= xmalloc
(size
);
1919 sprintf
(name
, format
, file_id
, n
++);
1923 static void process_typedefs
(pident_list_t
*pidents
)
1925 pident_t
*pident
, *next
;
1927 if
(!pidents
) return
;
1928 LIST_FOR_EACH_ENTRY_SAFE
( pident
, next
, pidents
, pident_t
, entry
)
1930 var_t
*var
= pident
->var
;
1931 type_t
*type
= find_type
(var
->name
, 0);
1933 if
(! parse_only
&& do_header
)
1934 write_typedef
(type
);
1935 if
(in_typelib
&& type
->attrs
)
1936 add_typelib_entry
(type
);
1943 static void check_arg
(var_t
*arg
)
1945 type_t
*t
= arg
->type
;
1947 if
(t
->type
== 0 && ! is_var_ptr
(arg
))
1948 yyerror("argument '%s' has void type", arg
->name
);
1951 static void check_all_user_types
(ifref_list_t
*ifrefs
)
1953 const ifref_t
*ifref
;
1956 if
(ifrefs
) LIST_FOR_EACH_ENTRY
(ifref
, ifrefs
, const ifref_t
, entry
)
1958 const func_list_t
*fs
= ifref
->iface
->funcs
;
1959 if
(fs
) LIST_FOR_EACH_ENTRY
(f
, fs
, const func_t
, entry
)
1960 check_for_user_types
(f
->args
);