Merge trunk head (r43756)
[reactos.git] / reactos / tools / widl / header.c
1 /*
2 * IDL Compiler
3 *
4 * Copyright 2002 Ove Kaaven
5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
10 *
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
19 */
20
21 #include "config.h"
22
23 #include <stdarg.h>
24 #include <stdio.h>
25 #include <stdlib.h>
26 #ifdef HAVE_UNISTD_H
27 # include <unistd.h>
28 #endif
29 #include <string.h>
30 #include <ctype.h>
31
32 #include "widl.h"
33 #include "utils.h"
34 #include "parser.h"
35 #include "header.h"
36 #include "expr.h"
37 #include "typetree.h"
38
39 typedef struct _user_type_t generic_handle_t;
40
41 static int indentation = 0;
42 user_type_list_t user_type_list = LIST_INIT(user_type_list);
43 static context_handle_list_t context_handle_list = LIST_INIT(context_handle_list);
44 static struct list generic_handle_list = LIST_INIT(generic_handle_list);
45
46 static void indent(FILE *h, int delta)
47 {
48 int c;
49 if (delta < 0) indentation += delta;
50 for (c=0; c<indentation; c++) fprintf(h, " ");
51 if (delta > 0) indentation += delta;
52 }
53
54 int is_ptrchain_attr(const var_t *var, enum attr_type t)
55 {
56 if (is_attr(var->attrs, t))
57 return 1;
58 else
59 {
60 type_t *type = var->type;
61 for (;;)
62 {
63 if (is_attr(type->attrs, t))
64 return 1;
65 else if (type_is_alias(type))
66 type = type_alias_get_aliasee(type);
67 else if (is_ptr(type))
68 type = type_pointer_get_ref(type);
69 else return 0;
70 }
71 }
72 }
73
74 int is_aliaschain_attr(const type_t *type, enum attr_type attr)
75 {
76 const type_t *t = type;
77 for (;;)
78 {
79 if (is_attr(t->attrs, attr))
80 return 1;
81 else if (type_is_alias(t))
82 t = type_alias_get_aliasee(t);
83 else return 0;
84 }
85 }
86
87 int is_attr(const attr_list_t *list, enum attr_type t)
88 {
89 const attr_t *attr;
90 if (list) LIST_FOR_EACH_ENTRY( attr, list, const attr_t, entry )
91 if (attr->type == t) return 1;
92 return 0;
93 }
94
95 void *get_attrp(const attr_list_t *list, enum attr_type t)
96 {
97 const attr_t *attr;
98 if (list) LIST_FOR_EACH_ENTRY( attr, list, const attr_t, entry )
99 if (attr->type == t) return attr->u.pval;
100 return NULL;
101 }
102
103 unsigned long get_attrv(const attr_list_t *list, enum attr_type t)
104 {
105 const attr_t *attr;
106 if (list) LIST_FOR_EACH_ENTRY( attr, list, const attr_t, entry )
107 if (attr->type == t) return attr->u.ival;
108 return 0;
109 }
110
111 int is_void(const type_t *t)
112 {
113 return type_get_type(t) == TYPE_VOID;
114 }
115
116 int is_conformant_array(const type_t *t)
117 {
118 return is_array(t) && type_array_has_conformance(t);
119 }
120
121 void write_guid(FILE *f, const char *guid_prefix, const char *name, const UUID *uuid)
122 {
123 if (!uuid) return;
124 fprintf(f, "DEFINE_GUID(%s_%s, 0x%08x, 0x%04x, 0x%04x, 0x%02x,0x%02x, 0x%02x,"
125 "0x%02x,0x%02x,0x%02x,0x%02x,0x%02x);\n",
126 guid_prefix, name, uuid->Data1, uuid->Data2, uuid->Data3, uuid->Data4[0],
127 uuid->Data4[1], uuid->Data4[2], uuid->Data4[3], uuid->Data4[4], uuid->Data4[5],
128 uuid->Data4[6], uuid->Data4[7]);
129 }
130
131 const char *get_name(const var_t *v)
132 {
133 static char buffer[256];
134
135 if (is_attr( v->attrs, ATTR_PROPGET ))
136 strcpy( buffer, "get_" );
137 else if (is_attr( v->attrs, ATTR_PROPPUT ))
138 strcpy( buffer, "put_" );
139 else if (is_attr( v->attrs, ATTR_PROPPUTREF ))
140 strcpy( buffer, "putref_" );
141 else
142 buffer[0] = 0;
143 strcat( buffer, v->name );
144 return buffer;
145 }
146
147 static void write_field(FILE *h, var_t *v)
148 {
149 if (!v) return;
150 if (v->type) {
151 indent(h, 0);
152 write_type_def_or_decl(h, v->type, TRUE, v->name);
153 fprintf(h, ";\n");
154 }
155 }
156
157 static void write_fields(FILE *h, var_list_t *fields)
158 {
159 var_t *v;
160 if (!fields) return;
161 LIST_FOR_EACH_ENTRY( v, fields, var_t, entry ) write_field(h, v);
162 }
163
164 static void write_enums(FILE *h, var_list_t *enums)
165 {
166 var_t *v;
167 if (!enums) return;
168 LIST_FOR_EACH_ENTRY( v, enums, var_t, entry )
169 {
170 if (v->name) {
171 indent(h, 0);
172 fprintf(h, "%s", get_name(v));
173 if (v->eval) {
174 fprintf(h, " = ");
175 write_expr(h, v->eval, 0, 1, NULL, NULL, "");
176 }
177 }
178 if (list_next( enums, &v->entry )) fprintf(h, ",\n");
179 }
180 fprintf(h, "\n");
181 }
182
183 int needs_space_after(type_t *t)
184 {
185 return (type_is_alias(t) ||
186 (!is_ptr(t) && (!is_array(t) || !type_array_is_decl_as_ptr(t) || t->name)));
187 }
188
189 void write_type_left(FILE *h, type_t *t, int declonly)
190 {
191 if (!h) return;
192
193 if (is_attr(t->attrs, ATTR_CONST) &&
194 (type_is_alias(t) || !is_ptr(t)))
195 fprintf(h, "const ");
196
197 if (type_is_alias(t)) fprintf(h, "%s", t->name);
198 else {
199 switch (type_get_type_detect_alias(t)) {
200 case TYPE_ENUM:
201 if (!declonly && t->defined && !t->written) {
202 if (t->name) fprintf(h, "enum %s {\n", t->name);
203 else fprintf(h, "enum {\n");
204 t->written = TRUE;
205 indentation++;
206 write_enums(h, type_enum_get_values(t));
207 indent(h, -1);
208 fprintf(h, "}");
209 }
210 else fprintf(h, "enum %s", t->name ? t->name : "");
211 break;
212 case TYPE_STRUCT:
213 case TYPE_ENCAPSULATED_UNION:
214 if (!declonly && t->defined && !t->written) {
215 if (t->name) fprintf(h, "struct %s {\n", t->name);
216 else fprintf(h, "struct {\n");
217 t->written = TRUE;
218 indentation++;
219 if (type_get_type(t) != TYPE_STRUCT)
220 write_fields(h, type_encapsulated_union_get_fields(t));
221 else
222 write_fields(h, type_struct_get_fields(t));
223 indent(h, -1);
224 fprintf(h, "}");
225 }
226 else fprintf(h, "struct %s", t->name ? t->name : "");
227 break;
228 case TYPE_UNION:
229 if (!declonly && t->defined && !t->written) {
230 if (t->name) fprintf(h, "union %s {\n", t->name);
231 else fprintf(h, "union {\n");
232 t->written = TRUE;
233 indentation++;
234 write_fields(h, type_union_get_cases(t));
235 indent(h, -1);
236 fprintf(h, "}");
237 }
238 else fprintf(h, "union %s", t->name ? t->name : "");
239 break;
240 case TYPE_POINTER:
241 write_type_left(h, type_pointer_get_ref(t), declonly);
242 fprintf(h, "%s*", needs_space_after(type_pointer_get_ref(t)) ? " " : "");
243 if (is_attr(t->attrs, ATTR_CONST)) fprintf(h, "const ");
244 break;
245 case TYPE_ARRAY:
246 if (t->name && type_array_is_decl_as_ptr(t))
247 fprintf(h, "%s", t->name);
248 else
249 {
250 write_type_left(h, type_array_get_element(t), declonly);
251 if (type_array_is_decl_as_ptr(t))
252 fprintf(h, "%s*", needs_space_after(type_array_get_element(t)) ? " " : "");
253 }
254 break;
255 case TYPE_BASIC:
256 if (type_basic_get_type(t) != TYPE_BASIC_INT32 &&
257 type_basic_get_type(t) != TYPE_BASIC_HYPER)
258 {
259 if (type_basic_get_sign(t) < 0) fprintf(h, "signed ");
260 else if (type_basic_get_sign(t) > 0) fprintf(h, "unsigned ");
261 }
262 switch (type_basic_get_type(t))
263 {
264 case TYPE_BASIC_INT8: fprintf(h, "small"); break;
265 case TYPE_BASIC_INT16: fprintf(h, "short"); break;
266 case TYPE_BASIC_INT: fprintf(h, "int"); break;
267 case TYPE_BASIC_INT64: fprintf(h, "__int64"); break;
268 case TYPE_BASIC_BYTE: fprintf(h, "byte"); break;
269 case TYPE_BASIC_CHAR: fprintf(h, "char"); break;
270 case TYPE_BASIC_WCHAR: fprintf(h, "wchar_t"); break;
271 case TYPE_BASIC_FLOAT: fprintf(h, "float"); break;
272 case TYPE_BASIC_DOUBLE: fprintf(h, "double"); break;
273 case TYPE_BASIC_ERROR_STATUS_T: fprintf(h, "error_status_t"); break;
274 case TYPE_BASIC_HANDLE: fprintf(h, "handle_t"); break;
275 case TYPE_BASIC_INT32:
276 if (type_basic_get_sign(t) > 0)
277 fprintf(h, "ULONG");
278 else
279 fprintf(h, "LONG");
280 break;
281 case TYPE_BASIC_HYPER:
282 if (type_basic_get_sign(t) > 0)
283 fprintf(h, "MIDL_uhyper");
284 else
285 fprintf(h, "hyper");
286 break;
287 }
288 break;
289 case TYPE_INTERFACE:
290 case TYPE_MODULE:
291 case TYPE_COCLASS:
292 fprintf(h, "%s", t->name);
293 break;
294 case TYPE_VOID:
295 fprintf(h, "void");
296 break;
297 case TYPE_ALIAS:
298 case TYPE_FUNCTION:
299 /* handled elsewhere */
300 assert(0);
301 break;
302 }
303 }
304 }
305
306 void write_type_right(FILE *h, type_t *t, int is_field)
307 {
308 if (!h) return;
309
310 if (type_get_type(t) == TYPE_ARRAY && !type_array_is_decl_as_ptr(t)) {
311 if (is_conformant_array(t)) {
312 fprintf(h, "[%s]", is_field ? "1" : "");
313 t = type_array_get_element(t);
314 }
315 for ( ;
316 type_get_type(t) == TYPE_ARRAY && !type_array_is_decl_as_ptr(t);
317 t = type_array_get_element(t))
318 fprintf(h, "[%u]", type_array_get_dim(t));
319 }
320 }
321
322 static void write_type_v(FILE *h, type_t *t, int is_field, int declonly, const char *name)
323 {
324 type_t *pt;
325 int ptr_level = 0;
326
327 if (!h) return;
328
329 for (pt = t; is_ptr(pt); pt = type_pointer_get_ref(pt), ptr_level++)
330 ;
331
332 if (type_get_type_detect_alias(pt) == TYPE_FUNCTION) {
333 int i;
334 const char *callconv = get_attrp(pt->attrs, ATTR_CALLCONV);
335 if (!callconv) callconv = "";
336 if (is_attr(pt->attrs, ATTR_INLINE)) fprintf(h, "inline ");
337 write_type_left(h, type_function_get_rettype(pt), declonly);
338 fputc(' ', h);
339 if (ptr_level) fputc('(', h);
340 fprintf(h, "%s ", callconv);
341 for (i = 0; i < ptr_level; i++)
342 fputc('*', h);
343 } else
344 write_type_left(h, t, declonly);
345
346 if (name) fprintf(h, "%s%s", needs_space_after(t) ? " " : "", name );
347
348 if (type_get_type_detect_alias(pt) == TYPE_FUNCTION) {
349 const var_list_t *args = type_function_get_args(pt);
350
351 if (ptr_level) fputc(')', h);
352 fputc('(', h);
353 if (args)
354 write_args(h, args, NULL, 0, FALSE);
355 else
356 fprintf(h, "void");
357 fputc(')', h);
358 } else
359 write_type_right(h, t, is_field);
360 }
361
362 void write_type_def_or_decl(FILE *f, type_t *t, int field, const char *name)
363 {
364 write_type_v(f, t, field, FALSE, name);
365 }
366
367 void write_type_decl(FILE *f, type_t *t, const char *name)
368 {
369 write_type_v(f, t, FALSE, TRUE, name);
370 }
371
372 void write_type_decl_left(FILE *f, type_t *t)
373 {
374 write_type_left(f, t, TRUE);
375 }
376
377 static int user_type_registered(const char *name)
378 {
379 user_type_t *ut;
380 LIST_FOR_EACH_ENTRY(ut, &user_type_list, user_type_t, entry)
381 if (!strcmp(name, ut->name))
382 return 1;
383 return 0;
384 }
385
386 static int context_handle_registered(const char *name)
387 {
388 context_handle_t *ch;
389 LIST_FOR_EACH_ENTRY(ch, &context_handle_list, context_handle_t, entry)
390 if (!strcmp(name, ch->name))
391 return 1;
392 return 0;
393 }
394
395 static int generic_handle_registered(const char *name)
396 {
397 generic_handle_t *gh;
398 LIST_FOR_EACH_ENTRY(gh, &generic_handle_list, generic_handle_t, entry)
399 if (!strcmp(name, gh->name))
400 return 1;
401 return 0;
402 }
403
404 /* check for types which require additional prototypes to be generated in the
405 * header */
406 void check_for_additional_prototype_types(const var_list_t *list)
407 {
408 const var_t *v;
409
410 if (!list) return;
411 LIST_FOR_EACH_ENTRY( v, list, const var_t, entry )
412 {
413 type_t *type = v->type;
414 if (!type) continue;
415 for (;;) {
416 const char *name = type->name;
417 if (type->user_types_registered) break;
418 type->user_types_registered = 1;
419 if (is_attr(type->attrs, ATTR_CONTEXTHANDLE)) {
420 if (!context_handle_registered(name))
421 {
422 context_handle_t *ch = xmalloc(sizeof(*ch));
423 ch->name = xstrdup(name);
424 list_add_tail(&context_handle_list, &ch->entry);
425 }
426 /* don't carry on parsing fields within this type */
427 break;
428 }
429 if ((type_get_type(type) != TYPE_BASIC ||
430 type_basic_get_type(type) != TYPE_BASIC_HANDLE) &&
431 is_attr(type->attrs, ATTR_HANDLE)) {
432 if (!generic_handle_registered(name))
433 {
434 generic_handle_t *gh = xmalloc(sizeof(*gh));
435 gh->name = xstrdup(name);
436 list_add_tail(&generic_handle_list, &gh->entry);
437 }
438 /* don't carry on parsing fields within this type */
439 break;
440 }
441 if (is_attr(type->attrs, ATTR_WIREMARSHAL)) {
442 if (!user_type_registered(name))
443 {
444 user_type_t *ut = xmalloc(sizeof *ut);
445 ut->name = xstrdup(name);
446 list_add_tail(&user_type_list, &ut->entry);
447 }
448 /* don't carry on parsing fields within this type as we are already
449 * using a wire marshaled type */
450 break;
451 }
452 else if (type_is_complete(type))
453 {
454 var_list_t *vars;
455 switch (type_get_type_detect_alias(type))
456 {
457 case TYPE_ENUM:
458 vars = type_enum_get_values(type);
459 break;
460 case TYPE_STRUCT:
461 vars = type_struct_get_fields(type);
462 break;
463 case TYPE_UNION:
464 vars = type_union_get_cases(type);
465 break;
466 default:
467 vars = NULL;
468 break;
469 }
470 check_for_additional_prototype_types(vars);
471 }
472
473 if (type_is_alias(type))
474 type = type_alias_get_aliasee(type);
475 else if (is_ptr(type))
476 type = type_pointer_get_ref(type);
477 else if (is_array(type))
478 type = type_array_get_element(type);
479 else
480 break;
481 }
482 }
483 }
484
485 static void write_user_types(FILE *header)
486 {
487 user_type_t *ut;
488 LIST_FOR_EACH_ENTRY(ut, &user_type_list, user_type_t, entry)
489 {
490 const char *name = ut->name;
491 fprintf(header, "ULONG __RPC_USER %s_UserSize (ULONG *, ULONG, %s *);\n", name, name);
492 fprintf(header, "unsigned char * __RPC_USER %s_UserMarshal (ULONG *, unsigned char *, %s *);\n", name, name);
493 fprintf(header, "unsigned char * __RPC_USER %s_UserUnmarshal(ULONG *, unsigned char *, %s *);\n", name, name);
494 fprintf(header, "void __RPC_USER %s_UserFree (ULONG *, %s *);\n", name, name);
495 }
496 }
497
498 static void write_context_handle_rundowns(FILE *header)
499 {
500 context_handle_t *ch;
501 LIST_FOR_EACH_ENTRY(ch, &context_handle_list, context_handle_t, entry)
502 {
503 const char *name = ch->name;
504 fprintf(header, "void __RPC_USER %s_rundown(%s);\n", name, name);
505 }
506 }
507
508 static void write_generic_handle_routines(FILE *header)
509 {
510 generic_handle_t *gh;
511 LIST_FOR_EACH_ENTRY(gh, &generic_handle_list, generic_handle_t, entry)
512 {
513 const char *name = gh->name;
514 fprintf(header, "handle_t __RPC_USER %s_bind(%s);\n", name, name);
515 fprintf(header, "void __RPC_USER %s_unbind(%s, handle_t);\n", name, name);
516 }
517 }
518
519 static void write_typedef(FILE *header, type_t *type)
520 {
521 fprintf(header, "typedef ");
522 write_type_def_or_decl(header, type_alias_get_aliasee(type), FALSE, type->name);
523 fprintf(header, ";\n");
524 }
525
526 int is_const_decl(const var_t *var)
527 {
528 const type_t *t;
529 /* strangely, MIDL accepts a const attribute on any pointer in the
530 * declaration to mean that data isn't being instantiated. this appears
531 * to be a bug, but there is no benefit to being incompatible with MIDL,
532 * so we'll do the same thing */
533 for (t = var->type; ; )
534 {
535 if (is_attr(t->attrs, ATTR_CONST))
536 return TRUE;
537 else if (is_ptr(t))
538 t = type_pointer_get_ref(t);
539 else break;
540 }
541 return FALSE;
542 }
543
544 static void write_declaration(FILE *header, const var_t *v)
545 {
546 if (is_const_decl(v) && v->eval)
547 {
548 fprintf(header, "#define %s (", v->name);
549 write_expr(header, v->eval, 0, 1, NULL, NULL, "");
550 fprintf(header, ")\n\n");
551 }
552 else
553 {
554 switch (v->stgclass)
555 {
556 case STG_NONE:
557 case STG_REGISTER: /* ignored */
558 break;
559 case STG_STATIC:
560 fprintf(header, "static ");
561 break;
562 case STG_EXTERN:
563 fprintf(header, "extern ");
564 break;
565 }
566 write_type_def_or_decl(header, v->type, FALSE, v->name);
567 fprintf(header, ";\n\n");
568 }
569 }
570
571 static void write_library(FILE *header, const typelib_t *typelib)
572 {
573 const UUID *uuid = get_attrp(typelib->attrs, ATTR_UUID);
574 fprintf(header, "\n");
575 write_guid(header, "LIBID", typelib->name, uuid);
576 fprintf(header, "\n");
577 }
578
579
580 const var_t* get_explicit_handle_var(const var_t *func)
581 {
582 const var_t* var;
583
584 if (!type_get_function_args(func->type))
585 return NULL;
586
587 LIST_FOR_EACH_ENTRY( var, type_get_function_args(func->type), const var_t, entry )
588 {
589 const type_t *type = var->type;
590 if (type_get_type(type) == TYPE_BASIC && type_basic_get_type(type) == TYPE_BASIC_HANDLE)
591 return var;
592 }
593
594 return NULL;
595 }
596
597 const type_t* get_explicit_generic_handle_type(const var_t* var)
598 {
599 const type_t *t;
600 for (t = var->type;
601 is_ptr(t) || type_is_alias(t);
602 t = type_is_alias(t) ? type_alias_get_aliasee(t) : type_pointer_get_ref(t))
603 if ((type_get_type_detect_alias(t) != TYPE_BASIC || type_basic_get_type(t) != TYPE_BASIC_HANDLE) &&
604 is_attr(t->attrs, ATTR_HANDLE))
605 return t;
606 return NULL;
607 }
608
609 const var_t* get_explicit_generic_handle_var(const var_t *func)
610 {
611 const var_t* var;
612
613 if (!type_get_function_args(func->type))
614 return NULL;
615
616 LIST_FOR_EACH_ENTRY( var, type_get_function_args(func->type), const var_t, entry )
617 if (get_explicit_generic_handle_type(var))
618 return var;
619
620 return NULL;
621 }
622
623 const var_t* get_context_handle_var(const var_t *func)
624 {
625 const var_t* var;
626
627 if (!type_get_function_args(func->type))
628 return NULL;
629
630 LIST_FOR_EACH_ENTRY( var, type_get_function_args(func->type), const var_t, entry )
631 if (is_attr(var->attrs, ATTR_IN) && is_context_handle(var->type))
632 return var;
633
634 return NULL;
635 }
636
637 int has_out_arg_or_return(const var_t *func)
638 {
639 const var_t *var;
640
641 if (!is_void(type_function_get_rettype(func->type)))
642 return 1;
643
644 if (!type_get_function_args(func->type))
645 return 0;
646
647 LIST_FOR_EACH_ENTRY( var, type_get_function_args(func->type), const var_t, entry )
648 if (is_attr(var->attrs, ATTR_OUT))
649 return 1;
650
651 return 0;
652 }
653
654
655 /********** INTERFACES **********/
656
657 int is_object(const attr_list_t *list)
658 {
659 const attr_t *attr;
660 if (list) LIST_FOR_EACH_ENTRY( attr, list, const attr_t, entry )
661 if (attr->type == ATTR_OBJECT || attr->type == ATTR_ODL) return 1;
662 return 0;
663 }
664
665 int is_local(const attr_list_t *a)
666 {
667 return is_attr(a, ATTR_LOCAL);
668 }
669
670 const var_t *is_callas(const attr_list_t *a)
671 {
672 return get_attrp(a, ATTR_CALLAS);
673 }
674
675 static void write_method_macro(FILE *header, const type_t *iface, const char *name)
676 {
677 const statement_t *stmt;
678 int first_iface = 1;
679
680 if (type_iface_get_inherit(iface))
681 write_method_macro(header, type_iface_get_inherit(iface), name);
682
683 STATEMENTS_FOR_EACH_FUNC(stmt, type_iface_get_stmts(iface))
684 {
685 const var_t *func = stmt->u.var;
686
687 if (first_iface)
688 {
689 fprintf(header, "/*** %s methods ***/\n", iface->name);
690 first_iface = 0;
691 }
692
693 if (!is_callas(func->attrs)) {
694 const var_t *arg;
695
696 fprintf(header, "#define %s_%s(This", name, get_name(func));
697 if (type_get_function_args(func->type))
698 LIST_FOR_EACH_ENTRY( arg, type_get_function_args(func->type), const var_t, entry )
699 fprintf(header, ",%s", arg->name);
700 fprintf(header, ") ");
701
702 fprintf(header, "(This)->lpVtbl->%s(This", get_name(func));
703 if (type_get_function_args(func->type))
704 LIST_FOR_EACH_ENTRY( arg, type_get_function_args(func->type), const var_t, entry )
705 fprintf(header, ",%s", arg->name);
706 fprintf(header, ")\n");
707 }
708 }
709 }
710
711 void write_args(FILE *h, const var_list_t *args, const char *name, int method, int do_indent)
712 {
713 const var_t *arg;
714 int count = 0;
715
716 if (do_indent)
717 {
718 indentation++;
719 indent(h, 0);
720 }
721 if (method == 1) {
722 fprintf(h, "%s* This", name);
723 count++;
724 }
725 if (args) LIST_FOR_EACH_ENTRY( arg, args, const var_t, entry ) {
726 if (count) {
727 if (do_indent)
728 {
729 fprintf(h, ",\n");
730 indent(h, 0);
731 }
732 else fprintf(h, ",");
733 }
734 write_type_decl(h, arg->type, arg->name);
735 count++;
736 }
737 if (do_indent) indentation--;
738 }
739
740 static void write_cpp_method_def(FILE *header, const type_t *iface)
741 {
742 const statement_t *stmt;
743
744 STATEMENTS_FOR_EACH_FUNC(stmt, type_iface_get_stmts(iface))
745 {
746 const var_t *func = stmt->u.var;
747 if (!is_callas(func->attrs)) {
748 const char *callconv = get_attrp(func->type->attrs, ATTR_CALLCONV);
749 if (!callconv) callconv = "";
750 indent(header, 0);
751 fprintf(header, "virtual ");
752 write_type_decl_left(header, type_function_get_rettype(func->type));
753 fprintf(header, " %s %s(\n", callconv, get_name(func));
754 write_args(header, type_get_function_args(func->type), iface->name, 2, TRUE);
755 fprintf(header, ") = 0;\n");
756 fprintf(header, "\n");
757 }
758 }
759 }
760
761 static void do_write_c_method_def(FILE *header, const type_t *iface, const char *name)
762 {
763 const statement_t *stmt;
764 int first_iface = 1;
765
766 if (type_iface_get_inherit(iface))
767 do_write_c_method_def(header, type_iface_get_inherit(iface), name);
768
769 STATEMENTS_FOR_EACH_FUNC(stmt, type_iface_get_stmts(iface))
770 {
771 const var_t *func = stmt->u.var;
772 if (first_iface) {
773 indent(header, 0);
774 fprintf(header, "/*** %s methods ***/\n", iface->name);
775 first_iface = 0;
776 }
777 if (!is_callas(func->attrs)) {
778 const char *callconv = get_attrp(func->type->attrs, ATTR_CALLCONV);
779 if (!callconv) callconv = "";
780 indent(header, 0);
781 write_type_decl_left(header, type_function_get_rettype(func->type));
782 fprintf(header, " (%s *%s)(\n", callconv, get_name(func));
783 write_args(header, type_get_function_args(func->type), name, 1, TRUE);
784 fprintf(header, ");\n");
785 fprintf(header, "\n");
786 }
787 }
788 }
789
790 static void write_c_method_def(FILE *header, const type_t *iface)
791 {
792 do_write_c_method_def(header, iface, iface->name);
793 }
794
795 static void write_c_disp_method_def(FILE *header, const type_t *iface)
796 {
797 do_write_c_method_def(header, type_iface_get_inherit(iface), iface->name);
798 }
799
800 static void write_method_proto(FILE *header, const type_t *iface)
801 {
802 const statement_t *stmt;
803
804 STATEMENTS_FOR_EACH_FUNC(stmt, type_iface_get_stmts(iface))
805 {
806 const var_t *func = stmt->u.var;
807
808 if (!is_local(func->attrs)) {
809 const char *callconv = get_attrp(func->type->attrs, ATTR_CALLCONV);
810 if (!callconv) callconv = "";
811 /* proxy prototype */
812 write_type_decl_left(header, type_function_get_rettype(func->type));
813 fprintf(header, " %s %s_%s_Proxy(\n", callconv, iface->name, get_name(func));
814 write_args(header, type_get_function_args(func->type), iface->name, 1, TRUE);
815 fprintf(header, ");\n");
816 /* stub prototype */
817 fprintf(header, "void __RPC_STUB %s_%s_Stub(\n", iface->name, get_name(func));
818 fprintf(header, " IRpcStubBuffer* This,\n");
819 fprintf(header, " IRpcChannelBuffer* pRpcChannelBuffer,\n");
820 fprintf(header, " PRPC_MESSAGE pRpcMessage,\n");
821 fprintf(header, " DWORD* pdwStubPhase);\n");
822 }
823 }
824 }
825
826 static void write_locals(FILE *fp, const type_t *iface, int body)
827 {
828 static const char comment[]
829 = "/* WIDL-generated stub. You must provide an implementation for this. */";
830 const statement_t *stmt;
831
832 if (!is_object(iface->attrs))
833 return;
834
835 STATEMENTS_FOR_EACH_FUNC(stmt, type_iface_get_stmts(iface)) {
836 const var_t *func = stmt->u.var;
837 const var_t *cas = is_callas(func->attrs);
838
839 if (cas) {
840 const statement_t *stmt2 = NULL;
841 STATEMENTS_FOR_EACH_FUNC(stmt2, type_iface_get_stmts(iface))
842 if (!strcmp(stmt2->u.var->name, cas->name))
843 break;
844 if (&stmt2->entry != type_iface_get_stmts(iface)) {
845 const var_t *m = stmt2->u.var;
846 /* proxy prototype - use local prototype */
847 write_type_decl_left(fp, type_function_get_rettype(m->type));
848 fprintf(fp, " CALLBACK %s_%s_Proxy(\n", iface->name, get_name(m));
849 write_args(fp, type_get_function_args(m->type), iface->name, 1, TRUE);
850 fprintf(fp, ")");
851 if (body) {
852 type_t *rt = type_function_get_rettype(m->type);
853 fprintf(fp, "\n{\n");
854 fprintf(fp, " %s\n", comment);
855 if (rt->name && strcmp(rt->name, "HRESULT") == 0)
856 fprintf(fp, " return E_NOTIMPL;\n");
857 else if (type_get_type(rt) != TYPE_VOID) {
858 fprintf(fp, " ");
859 write_type_decl(fp, rt, "rv");
860 fprintf(fp, ";\n");
861 fprintf(fp, " memset(&rv, 0, sizeof rv);\n");
862 fprintf(fp, " return rv;\n");
863 }
864 fprintf(fp, "}\n\n");
865 }
866 else
867 fprintf(fp, ";\n");
868 /* stub prototype - use remotable prototype */
869 write_type_decl_left(fp, type_function_get_rettype(func->type));
870 fprintf(fp, " __RPC_STUB %s_%s_Stub(\n", iface->name, get_name(m));
871 write_args(fp, type_get_function_args(func->type), iface->name, 1, TRUE);
872 fprintf(fp, ")");
873 if (body)
874 /* Remotable methods must all return HRESULTs. */
875 fprintf(fp, "\n{\n %s\n return E_NOTIMPL;\n}\n\n", comment);
876 else
877 fprintf(fp, ";\n");
878 }
879 else
880 error_loc("invalid call_as attribute (%s -> %s)\n", func->name, cas->name);
881 }
882 }
883 }
884
885 static void write_local_stubs_stmts(FILE *local_stubs, const statement_list_t *stmts)
886 {
887 const statement_t *stmt;
888 if (stmts) LIST_FOR_EACH_ENTRY( stmt, stmts, const statement_t, entry )
889 {
890 if (stmt->type == STMT_TYPE && type_get_type(stmt->u.type) == TYPE_INTERFACE)
891 write_locals(local_stubs, stmt->u.type, TRUE);
892 else if (stmt->type == STMT_LIBRARY)
893 write_local_stubs_stmts(local_stubs, stmt->u.lib->stmts);
894 }
895 }
896
897 void write_local_stubs(const statement_list_t *stmts)
898 {
899 FILE *local_stubs;
900
901 if (!local_stubs_name) return;
902
903 local_stubs = fopen(local_stubs_name, "w");
904 if (!local_stubs) {
905 error("Could not open %s for output\n", local_stubs_name);
906 return;
907 }
908 fprintf(local_stubs, "/* call_as/local stubs for %s */\n\n", input_name);
909 fprintf(local_stubs, "#include <objbase.h>\n");
910 fprintf(local_stubs, "#include \"%s\"\n\n", header_name);
911
912 write_local_stubs_stmts(local_stubs, stmts);
913
914 fclose(local_stubs);
915 }
916
917 static void write_function_proto(FILE *header, const type_t *iface, const var_t *fun, const char *prefix)
918 {
919 const char *callconv = get_attrp(fun->type->attrs, ATTR_CALLCONV);
920
921 /* FIXME: do we need to handle call_as? */
922 write_type_decl_left(header, type_function_get_rettype(fun->type));
923 fprintf(header, " ");
924 if (callconv) fprintf(header, "%s ", callconv);
925 fprintf(header, "%s%s(\n", prefix, get_name(fun));
926 if (type_get_function_args(fun->type))
927 write_args(header, type_get_function_args(fun->type), iface->name, 0, TRUE);
928 else
929 fprintf(header, " void");
930 fprintf(header, ");\n\n");
931 }
932
933 static void write_forward(FILE *header, type_t *iface)
934 {
935 fprintf(header, "#ifndef __%s_FWD_DEFINED__\n", iface->name);
936 fprintf(header, "#define __%s_FWD_DEFINED__\n", iface->name);
937 fprintf(header, "typedef interface %s %s;\n", iface->name, iface->name);
938 fprintf(header, "#endif\n\n" );
939 }
940
941 static void write_iface_guid(FILE *header, const type_t *iface)
942 {
943 const UUID *uuid = get_attrp(iface->attrs, ATTR_UUID);
944 write_guid(header, "IID", iface->name, uuid);
945 }
946
947 static void write_dispiface_guid(FILE *header, const type_t *iface)
948 {
949 const UUID *uuid = get_attrp(iface->attrs, ATTR_UUID);
950 write_guid(header, "DIID", iface->name, uuid);
951 }
952
953 static void write_coclass_guid(FILE *header, const type_t *cocl)
954 {
955 const UUID *uuid = get_attrp(cocl->attrs, ATTR_UUID);
956 write_guid(header, "CLSID", cocl->name, uuid);
957 }
958
959 static void write_com_interface_start(FILE *header, const type_t *iface)
960 {
961 int dispinterface = is_attr(iface->attrs, ATTR_DISPINTERFACE);
962 fprintf(header, "/*****************************************************************************\n");
963 fprintf(header, " * %s %sinterface\n", iface->name, dispinterface ? "disp" : "");
964 fprintf(header, " */\n");
965 fprintf(header,"#ifndef __%s_%sINTERFACE_DEFINED__\n", iface->name, dispinterface ? "DISP" : "");
966 fprintf(header,"#define __%s_%sINTERFACE_DEFINED__\n\n", iface->name, dispinterface ? "DISP" : "");
967 }
968
969 static void write_com_interface_end(FILE *header, type_t *iface)
970 {
971 int dispinterface = is_attr(iface->attrs, ATTR_DISPINTERFACE);
972 if (dispinterface)
973 write_dispiface_guid(header, iface);
974 else
975 write_iface_guid(header, iface);
976 /* C++ interface */
977 fprintf(header, "#if defined(__cplusplus) && !defined(CINTERFACE)\n");
978 if (type_iface_get_inherit(iface))
979 {
980 fprintf(header, "interface %s : public %s\n", iface->name,
981 type_iface_get_inherit(iface)->name);
982 fprintf(header, "{\n");
983 }
984 else
985 {
986 fprintf(header, "interface %s\n", iface->name);
987 fprintf(header, "{\n");
988 fprintf(header, " BEGIN_INTERFACE\n");
989 fprintf(header, "\n");
990 }
991 /* dispinterfaces don't have real functions, so don't write C++ functions for
992 * them */
993 if (!dispinterface)
994 {
995 indentation++;
996 write_cpp_method_def(header, iface);
997 indentation--;
998 }
999 if (!type_iface_get_inherit(iface))
1000 fprintf(header, " END_INTERFACE\n");
1001 fprintf(header, "};\n");
1002 fprintf(header, "#else\n");
1003 /* C interface */
1004 fprintf(header, "typedef struct %sVtbl {\n", iface->name);
1005 indentation++;
1006 fprintf(header, " BEGIN_INTERFACE\n");
1007 fprintf(header, "\n");
1008 if (dispinterface)
1009 write_c_disp_method_def(header, iface);
1010 else
1011 write_c_method_def(header, iface);
1012 indentation--;
1013 fprintf(header, " END_INTERFACE\n");
1014 fprintf(header, "} %sVtbl;\n", iface->name);
1015 fprintf(header, "interface %s {\n", iface->name);
1016 fprintf(header, " CONST_VTBL %sVtbl* lpVtbl;\n", iface->name);
1017 fprintf(header, "};\n");
1018 fprintf(header, "\n");
1019 fprintf(header, "#ifdef COBJMACROS\n");
1020 /* dispinterfaces don't have real functions, so don't write macros for them,
1021 * only for the interface this interface inherits from, i.e. IDispatch */
1022 write_method_macro(header, dispinterface ? type_iface_get_inherit(iface) : iface, iface->name);
1023 fprintf(header, "#endif\n");
1024 fprintf(header, "\n");
1025 fprintf(header, "#endif\n");
1026 fprintf(header, "\n");
1027 /* dispinterfaces don't have real functions, so don't write prototypes for
1028 * them */
1029 if (!dispinterface)
1030 {
1031 write_method_proto(header, iface);
1032 write_locals(header, iface, FALSE);
1033 fprintf(header, "\n");
1034 }
1035 fprintf(header,"#endif /* __%s_%sINTERFACE_DEFINED__ */\n\n", iface->name, dispinterface ? "DISP" : "");
1036 }
1037
1038 static void write_rpc_interface_start(FILE *header, const type_t *iface)
1039 {
1040 unsigned int ver = get_attrv(iface->attrs, ATTR_VERSION);
1041 const char *var = get_attrp(iface->attrs, ATTR_IMPLICIT_HANDLE);
1042 static int allocate_written = 0;
1043
1044 if (!allocate_written)
1045 {
1046 allocate_written = 1;
1047 fprintf(header, "void * __RPC_USER MIDL_user_allocate(SIZE_T);\n");
1048 fprintf(header, "void __RPC_USER MIDL_user_free(void *);\n\n");
1049 }
1050
1051 fprintf(header, "/*****************************************************************************\n");
1052 fprintf(header, " * %s interface (v%d.%d)\n", iface->name, MAJORVERSION(ver), MINORVERSION(ver));
1053 fprintf(header, " */\n");
1054 fprintf(header,"#ifndef __%s_INTERFACE_DEFINED__\n", iface->name);
1055 fprintf(header,"#define __%s_INTERFACE_DEFINED__\n\n", iface->name);
1056 if (var) fprintf(header, "extern handle_t %s;\n", var);
1057 if (old_names)
1058 {
1059 fprintf(header, "extern RPC_IF_HANDLE %s%s_ClientIfHandle;\n", prefix_client, iface->name);
1060 fprintf(header, "extern RPC_IF_HANDLE %s%s_ServerIfHandle;\n", prefix_server, iface->name);
1061 }
1062 else
1063 {
1064 fprintf(header, "extern RPC_IF_HANDLE %s%s_v%d_%d_c_ifspec;\n",
1065 prefix_client, iface->name, MAJORVERSION(ver), MINORVERSION(ver));
1066 fprintf(header, "extern RPC_IF_HANDLE %s%s_v%d_%d_s_ifspec;\n",
1067 prefix_server, iface->name, MAJORVERSION(ver), MINORVERSION(ver));
1068 }
1069 }
1070
1071 static void write_rpc_interface_end(FILE *header, const type_t *iface)
1072 {
1073 fprintf(header,"\n#endif /* __%s_INTERFACE_DEFINED__ */\n\n", iface->name);
1074 }
1075
1076 static void write_coclass(FILE *header, type_t *cocl)
1077 {
1078 fprintf(header, "/*****************************************************************************\n");
1079 fprintf(header, " * %s coclass\n", cocl->name);
1080 fprintf(header, " */\n\n");
1081 write_coclass_guid(header, cocl);
1082 fprintf(header, "\n");
1083 }
1084
1085 static void write_coclass_forward(FILE *header, type_t *cocl)
1086 {
1087 fprintf(header, "#ifndef __%s_FWD_DEFINED__\n", cocl->name);
1088 fprintf(header, "#define __%s_FWD_DEFINED__\n", cocl->name);
1089 fprintf(header, "typedef struct %s %s;\n", cocl->name, cocl->name);
1090 fprintf(header, "#endif /* defined __%s_FWD_DEFINED__ */\n\n", cocl->name );
1091 }
1092
1093 static void write_import(FILE *header, const char *fname)
1094 {
1095 char *hname, *p;
1096
1097 hname = dup_basename(fname, ".idl");
1098 p = hname + strlen(hname) - 2;
1099 if (p <= hname || strcmp( p, ".h" )) strcat(hname, ".h");
1100
1101 fprintf(header, "#include <%s>\n", hname);
1102 free(hname);
1103 }
1104
1105 static void write_imports(FILE *header, const statement_list_t *stmts)
1106 {
1107 const statement_t *stmt;
1108 if (stmts) LIST_FOR_EACH_ENTRY( stmt, stmts, const statement_t, entry )
1109 {
1110 switch (stmt->type)
1111 {
1112 case STMT_TYPE:
1113 if (type_get_type(stmt->u.type) == TYPE_INTERFACE)
1114 write_imports(header, type_iface_get_stmts(stmt->u.type));
1115 break;
1116 case STMT_TYPEREF:
1117 case STMT_IMPORTLIB:
1118 /* not included in header */
1119 break;
1120 case STMT_IMPORT:
1121 write_import(header, stmt->u.str);
1122 break;
1123 case STMT_TYPEDEF:
1124 case STMT_MODULE:
1125 case STMT_CPPQUOTE:
1126 case STMT_DECLARATION:
1127 /* not processed here */
1128 break;
1129 case STMT_LIBRARY:
1130 write_imports(header, stmt->u.lib->stmts);
1131 break;
1132 }
1133 }
1134 }
1135
1136 static void write_forward_decls(FILE *header, const statement_list_t *stmts)
1137 {
1138 const statement_t *stmt;
1139 if (stmts) LIST_FOR_EACH_ENTRY( stmt, stmts, const statement_t, entry )
1140 {
1141 switch (stmt->type)
1142 {
1143 case STMT_TYPE:
1144 if (type_get_type(stmt->u.type) == TYPE_INTERFACE)
1145 {
1146 if (is_object(stmt->u.type->attrs) || is_attr(stmt->u.type->attrs, ATTR_DISPINTERFACE))
1147 write_forward(header, stmt->u.type);
1148 }
1149 else if (type_get_type(stmt->u.type) == TYPE_COCLASS)
1150 write_coclass_forward(header, stmt->u.type);
1151 break;
1152 case STMT_TYPEREF:
1153 case STMT_IMPORTLIB:
1154 /* not included in header */
1155 break;
1156 case STMT_IMPORT:
1157 case STMT_TYPEDEF:
1158 case STMT_MODULE:
1159 case STMT_CPPQUOTE:
1160 case STMT_DECLARATION:
1161 /* not processed here */
1162 break;
1163 case STMT_LIBRARY:
1164 write_forward_decls(header, stmt->u.lib->stmts);
1165 break;
1166 }
1167 }
1168 }
1169
1170 static void write_header_stmts(FILE *header, const statement_list_t *stmts, const type_t *iface, int ignore_funcs)
1171 {
1172 const statement_t *stmt;
1173 if (stmts) LIST_FOR_EACH_ENTRY( stmt, stmts, const statement_t, entry )
1174 {
1175 switch (stmt->type)
1176 {
1177 case STMT_TYPE:
1178 if (type_get_type(stmt->u.type) == TYPE_INTERFACE)
1179 {
1180 type_t *iface = stmt->u.type;
1181 if (is_attr(stmt->u.type->attrs, ATTR_DISPINTERFACE) || is_object(stmt->u.type->attrs))
1182 {
1183 write_com_interface_start(header, iface);
1184 write_header_stmts(header, type_iface_get_stmts(iface), stmt->u.type, TRUE);
1185 write_com_interface_end(header, iface);
1186 }
1187 else
1188 {
1189 write_rpc_interface_start(header, iface);
1190 write_header_stmts(header, type_iface_get_stmts(iface), iface, FALSE);
1191 write_rpc_interface_end(header, iface);
1192 }
1193 }
1194 else if (type_get_type(stmt->u.type) == TYPE_COCLASS)
1195 write_coclass(header, stmt->u.type);
1196 else
1197 {
1198 write_type_def_or_decl(header, stmt->u.type, FALSE, NULL);
1199 fprintf(header, ";\n\n");
1200 }
1201 break;
1202 case STMT_TYPEREF:
1203 /* FIXME: shouldn't write out forward declarations for undefined
1204 * interfaces but a number of our IDL files depend on this */
1205 if (type_get_type(stmt->u.type) == TYPE_INTERFACE && !stmt->u.type->written)
1206 write_forward(header, stmt->u.type);
1207 break;
1208 case STMT_IMPORTLIB:
1209 case STMT_MODULE:
1210 /* not included in header */
1211 break;
1212 case STMT_IMPORT:
1213 /* not processed here */
1214 break;
1215 case STMT_TYPEDEF:
1216 {
1217 const type_list_t *type_entry = stmt->u.type_list;
1218 for (; type_entry; type_entry = type_entry->next)
1219 write_typedef(header, type_entry->type);
1220 break;
1221 }
1222 case STMT_LIBRARY:
1223 write_library(header, stmt->u.lib);
1224 write_header_stmts(header, stmt->u.lib->stmts, NULL, FALSE);
1225 break;
1226 case STMT_CPPQUOTE:
1227 fprintf(header, "%s\n", stmt->u.str);
1228 break;
1229 case STMT_DECLARATION:
1230 if (iface && type_get_type(stmt->u.var->type) == TYPE_FUNCTION)
1231 {
1232 if (!ignore_funcs)
1233 {
1234 int prefixes_differ = strcmp(prefix_client, prefix_server);
1235
1236 if (prefixes_differ)
1237 {
1238 fprintf(header, "/* client prototype */\n");
1239 write_function_proto(header, iface, stmt->u.var, prefix_client);
1240 fprintf(header, "/* server prototype */\n");
1241 }
1242 write_function_proto(header, iface, stmt->u.var, prefix_server);
1243 }
1244 }
1245 else
1246 write_declaration(header, stmt->u.var);
1247 break;
1248 }
1249 }
1250 }
1251
1252 void write_header(const statement_list_t *stmts)
1253 {
1254 FILE *header;
1255
1256 if (!do_header) return;
1257
1258 if(!(header = fopen(header_name, "w"))) {
1259 error("Could not open %s for output\n", header_name);
1260 return;
1261 }
1262 fprintf(header, "/*** Autogenerated by WIDL %s from %s - Do not edit ***/\n\n", PACKAGE_VERSION, input_name);
1263 fprintf(header, "#include <rpc.h>\n" );
1264 fprintf(header, "#include <rpcndr.h>\n\n" );
1265
1266 fprintf(header, "#ifndef __WIDL_%s\n", header_token);
1267 fprintf(header, "#define __WIDL_%s\n\n", header_token);
1268 start_cplusplus_guard(header);
1269
1270 fprintf(header, "/* Headers for imported files */\n\n");
1271 write_imports(header, stmts);
1272 fprintf(header, "\n");
1273
1274 /* FIXME: should be before imported file includes */
1275 fprintf(header, "/* Forward declarations */\n\n");
1276 write_forward_decls(header, stmts);
1277 fprintf(header, "\n");
1278
1279 write_header_stmts(header, stmts, NULL, FALSE);
1280
1281 fprintf(header, "/* Begin additional prototypes for all interfaces */\n");
1282 fprintf(header, "\n");
1283 write_user_types(header);
1284 write_generic_handle_routines(header);
1285 write_context_handle_rundowns(header);
1286 fprintf(header, "\n");
1287 fprintf(header, "/* End additional prototypes */\n");
1288 fprintf(header, "\n");
1289
1290 end_cplusplus_guard(header);
1291 fprintf(header, "#endif /* __WIDL_%s */\n", header_token);
1292
1293 fclose(header);
1294 }