__builtin_constant_p() implemented
[cparser] / ast.c
1 #include <config.h>
2
3 #include "ast_t.h"
4 #include "type_t.h"
5
6 #include <assert.h>
7 #include <stdio.h>
8 #include <stdlib.h>
9 #include <ctype.h>
10
11 #include "adt/error.h"
12
13 struct obstack ast_obstack;
14
15 static FILE *out;
16 static int   indent;
17
18 static void print_statement(const statement_t *statement);
19
20 void change_indent(int delta)
21 {
22         indent += delta;
23         assert(indent >= 0);
24 }
25
26 void print_indent(void)
27 {
28         for(int i = 0; i < indent; ++i)
29                 fprintf(out, "\t");
30 }
31
32 static void print_const(const const_expression_t *cnst)
33 {
34         if(cnst->expression.datatype == NULL)
35                 return;
36
37         if(is_type_integer(cnst->expression.datatype)) {
38                 fprintf(out, "%lld", cnst->v.int_value);
39         } else if(is_type_floating(cnst->expression.datatype)) {
40                 fprintf(out, "%Lf", cnst->v.float_value);
41         }
42 }
43
44 static void print_quoted_string(const char *string)
45 {
46         fputc('"', out);
47         for(const char *c = string; *c != '\0'; ++c) {
48                 switch(*c) {
49                 case '\"':  fputs("\\\"", out); break;
50                 case '\\':  fputs("\\\\", out); break;
51                 case '\a':  fputs("\\a", out); break;
52                 case '\b':  fputs("\\b", out); break;
53                 case '\f':  fputs("\\f", out); break;
54                 case '\n':  fputs("\\n", out); break;
55                 case '\r':  fputs("\\r", out); break;
56                 case '\t':  fputs("\\t", out); break;
57                 case '\v':  fputs("\\v", out); break;
58                 case '\?':  fputs("\\?", out); break;
59                 default:
60                         if(!isprint(*c)) {
61                                 fprintf(out, "\\x%x", *c);
62                                 break;
63                         }
64                         fputc(*c, out);
65                         break;
66                 }
67         }
68         fputc('"', out);
69 }
70
71 static void print_string_literal(
72                 const string_literal_expression_t *string_literal)
73 {
74         print_quoted_string(string_literal->value);
75 }
76
77 static void print_wide_string_literal(
78         const wide_string_literal_expression_t *const wstr)
79 {
80         fputs("L\"", out);
81         for (const wchar_rep_t *c   = wstr->value.begin,
82                                *end = c + wstr->value.size;
83              c != end; ++c) {
84                 switch (*c) {
85                         case L'\"':  fputs("\\\"", out); break;
86                         case L'\\':  fputs("\\\\", out); break;
87                         case L'\a':  fputs("\\a",  out); break;
88                         case L'\b':  fputs("\\b",  out); break;
89                         case L'\f':  fputs("\\f",  out); break;
90                         case L'\n':  fputs("\\n",  out); break;
91                         case L'\r':  fputs("\\r",  out); break;
92                         case L'\t':  fputs("\\t",  out); break;
93                         case L'\v':  fputs("\\v",  out); break;
94                         case L'\?':  fputs("\\?",  out); break;
95                         default: {
96                                 const unsigned tc = *c;
97                                 if (tc < 0x80U) {
98                                         if (!isprint(*c))  {
99                                                 fprintf(out, "\\%03o", (char)*c);
100                                         } else {
101                                                 fputc(*c, out);
102                                         }
103                                 } else if (tc < 0x800) {
104                                         fputc(0xC0 | (tc >> 6),   out);
105                                         fputc(0x80 | (tc & 0x3F), out);
106                                 } else if (tc < 0x10000) {
107                                         fputc(0xE0 | ( tc >> 12),         out);
108                                         fputc(0x80 | ((tc >>  6) & 0x3F), out);
109                                         fputc(0x80 | ( tc        & 0x3F), out);
110                                 } else {
111                                         fputc(0xF0 | ( tc >> 18),         out);
112                                         fputc(0x80 | ((tc >> 12) & 0x3F), out);
113                                         fputc(0x80 | ((tc >>  6) & 0x3F), out);
114                                         fputc(0x80 | ( tc        & 0x3F), out);
115                                 }
116                         }
117                 }
118         }
119         fputc('"', out);
120 }
121
122 static void print_call_expression(const call_expression_t *call)
123 {
124         print_expression(call->function);
125         fprintf(out, "(");
126         call_argument_t *argument = call->arguments;
127         int              first    = 1;
128         while(argument != NULL) {
129                 if(!first) {
130                         fprintf(out, ", ");
131                 } else {
132                         first = 0;
133                 }
134                 print_expression(argument->expression);
135
136                 argument = argument->next;
137         }
138         fprintf(out, ")");
139 }
140
141 static void print_binary_expression(const binary_expression_t *binexpr)
142 {
143         if(binexpr->expression.kind == EXPR_BINARY_BUILTIN_EXPECT) {
144                 fputs("__builtin_expect(", out);
145                 print_expression(binexpr->left);
146                 fputs(", ", out);
147                 print_expression(binexpr->right);
148                 fputs(")", out);
149                 return;
150         }
151
152         fprintf(out, "(");
153         print_expression(binexpr->left);
154         fprintf(out, " ");
155         switch(binexpr->expression.kind) {
156         case EXPR_BINARY_COMMA:              fputs(",", out);     break;
157         case EXPR_BINARY_ASSIGN:             fputs("=", out);     break;
158         case EXPR_BINARY_ADD:                fputs("+", out);     break;
159         case EXPR_BINARY_SUB:                fputs("-", out);     break;
160         case EXPR_BINARY_MUL:                fputs("*", out);     break;
161         case EXPR_BINARY_MOD:                fputs("%", out);     break;
162         case EXPR_BINARY_DIV:                fputs("/", out);     break;
163         case EXPR_BINARY_BITWISE_OR:         fputs("|", out);     break;
164         case EXPR_BINARY_BITWISE_AND:        fputs("&", out);     break;
165         case EXPR_BINARY_BITWISE_XOR:        fputs("^", out);     break;
166         case EXPR_BINARY_LOGICAL_OR:         fputs("||", out);    break;
167         case EXPR_BINARY_LOGICAL_AND:        fputs("&&", out);    break;
168         case EXPR_BINARY_NOTEQUAL:           fputs("!=", out);    break;
169         case EXPR_BINARY_EQUAL:              fputs("==", out);    break;
170         case EXPR_BINARY_LESS:               fputs("<", out);     break;
171         case EXPR_BINARY_LESSEQUAL:          fputs("<=", out);    break;
172         case EXPR_BINARY_GREATER:            fputs(">", out);     break;
173         case EXPR_BINARY_GREATEREQUAL:       fputs(">=", out);    break;
174         case EXPR_BINARY_SHIFTLEFT:          fputs("<<", out);    break;
175         case EXPR_BINARY_SHIFTRIGHT:         fputs(">>", out);    break;
176
177         case EXPR_BINARY_ADD_ASSIGN:         fputs("+=", out);    break;
178         case EXPR_BINARY_SUB_ASSIGN:         fputs("-=", out);    break;
179         case EXPR_BINARY_MUL_ASSIGN:         fputs("*=", out);    break;
180         case EXPR_BINARY_MOD_ASSIGN:         fputs("%=", out);    break;
181         case EXPR_BINARY_DIV_ASSIGN:         fputs("/=", out);    break;
182         case EXPR_BINARY_BITWISE_OR_ASSIGN:  fputs("|=", out);    break;
183         case EXPR_BINARY_BITWISE_AND_ASSIGN: fputs("&=", out);    break;
184         case EXPR_BINARY_BITWISE_XOR_ASSIGN: fputs("^=", out);    break;
185         case EXPR_BINARY_SHIFTLEFT_ASSIGN:   fputs("<<=", out);   break;
186         case EXPR_BINARY_SHIFTRIGHT_ASSIGN:  fputs(">>=", out);   break;
187         default: panic("invalid binexpression found");
188         }
189         fprintf(out, " ");
190         print_expression(binexpr->right);
191         fprintf(out, ")");
192 }
193
194 static void print_unary_expression(const unary_expression_t *unexpr)
195 {
196         switch(unexpr->expression.kind) {
197         case EXPR_UNARY_NEGATE:           fputs("-", out);  break;
198         case EXPR_UNARY_PLUS:             fputs("+", out);  break;
199         case EXPR_UNARY_NOT:              fputs("!", out);  break;
200         case EXPR_UNARY_BITWISE_NEGATE:   fputs("~", out);  break;
201         case EXPR_UNARY_PREFIX_INCREMENT: fputs("++", out); break;
202         case EXPR_UNARY_PREFIX_DECREMENT: fputs("--", out); break;
203         case EXPR_UNARY_DEREFERENCE:      fputs("*", out);  break;
204         case EXPR_UNARY_TAKE_ADDRESS:     fputs("&", out);  break;
205
206         case EXPR_UNARY_POSTFIX_INCREMENT:
207                 fputs("(", out);
208                 print_expression(unexpr->value);
209                 fputs(")", out);
210                 fputs("++", out);
211                 return;
212         case EXPR_UNARY_POSTFIX_DECREMENT:
213                 fputs("(", out);
214                 print_expression(unexpr->value);
215                 fputs(")", out);
216                 fputs("--", out);
217                 return;
218         case EXPR_UNARY_CAST:
219                 fputs("(", out);
220                 print_type(unexpr->expression.datatype);
221                 fputs(")", out);
222                 break;
223         case EXPR_UNARY_CAST_IMPLICIT:
224                 print_expression(unexpr->value);
225                 return;
226         case EXPR_UNARY_ASSUME:
227                 fputs("__assume", out);
228                 break;
229         default:
230                 panic("invalid unary expression found");
231         }
232         fputs("(", out);
233         print_expression(unexpr->value);
234         fputs(")", out);
235 }
236
237 static void print_reference_expression(const reference_expression_t *ref)
238 {
239         fprintf(out, "%s", ref->declaration->symbol->string);
240 }
241
242 static void print_array_expression(const array_access_expression_t *expression)
243 {
244         if(!expression->flipped) {
245                 fputs("(", out);
246                 print_expression(expression->array_ref);
247                 fputs(")[", out);
248                 print_expression(expression->index);
249                 fputs("]", out);
250         } else {
251                 fputs("(", out);
252                 print_expression(expression->index);
253                 fputs(")[", out);
254                 print_expression(expression->array_ref);
255                 fputs("]", out);
256         }
257 }
258
259 static void print_sizeof_expression(const sizeof_expression_t *expression)
260 {
261         fputs("sizeof", out);
262         if(expression->size_expression != NULL) {
263                 fputc('(', out);
264                 print_expression(expression->size_expression);
265                 fputc(')', out);
266         } else {
267                 fputc('(', out);
268                 print_type(expression->type);
269                 fputc(')', out);
270         }
271 }
272
273 static void print_alignof_expression(const alignof_expression_t *expression)
274 {
275         fputs("__alignof__(", out);
276         print_type(expression->type);
277         fputc(')', out);
278 }
279
280 static void print_builtin_symbol(const builtin_symbol_expression_t *expression)
281 {
282         fputs(expression->symbol->string, out);
283 }
284
285 static void print_builtin_constant(const builtin_constant_expression_t *expression)
286 {
287         fputs("__builtin_constant_p(", out);
288         print_expression(expression->value);
289         fputs(")", out);
290 }
291
292 static void print_conditional(const conditional_expression_t *expression)
293 {
294         fputs("(", out);
295         print_expression(expression->condition);
296         fputs(" ? ", out);
297         print_expression(expression->true_expression);
298         fputs(" : ", out);
299         print_expression(expression->false_expression);
300         fputs(")", out);
301 }
302
303 static void print_va_start(const va_start_expression_t *const expression)
304 {
305         fputs("__builtin_va_start(", out);
306         print_expression(expression->ap);
307         fputs(", ", out);
308         fputs(expression->parameter->symbol->string, out);
309         fputs(")", out);
310 }
311
312 static void print_va_arg(const va_arg_expression_t *expression)
313 {
314         fputs("__builtin_va_arg(", out);
315         print_expression(expression->ap);
316         fputs(", ", out);
317         print_type(expression->expression.datatype);
318         fputs(")", out);
319 }
320
321 static void print_select(const select_expression_t *expression)
322 {
323         print_expression(expression->compound);
324         if(expression->compound->base.datatype == NULL ||
325                         expression->compound->base.datatype->kind == TYPE_POINTER) {
326                 fputs("->", out);
327         } else {
328                 fputc('.', out);
329         }
330         fputs(expression->symbol->string, out);
331 }
332
333 static void print_classify_type_expression(
334         const classify_type_expression_t *const expr)
335 {
336         fputs("__builtin_classify_type(", out);
337         print_expression(expr->type_expression);
338         fputc(')', out);
339 }
340
341 static void print_designator(const designator_t *designator)
342 {
343         fputs(designator->symbol->string, out);
344         for (designator = designator->next; designator != NULL; designator = designator->next) {
345                 if (designator->array_access) {
346                         fputc('[', out);
347                         print_expression(designator->array_access);
348                         fputc(']', out);
349                 } else {
350                         fputc('.', out);
351                         fputs(designator->symbol->string, out);
352                 }
353         }
354 }
355
356 static void print_offsetof_expression(const offsetof_expression_t *expression)
357 {
358         fputs("__builtin_offsetof", out);
359         fputc('(', out);
360         print_type(expression->type);
361         fputc(',', out);
362         print_designator(expression->designator);
363         fputc(')', out);
364 }
365
366 static void print_statement_expression(const statement_expression_t *expression)
367 {
368         fputc('(', out);
369         print_statement(expression->statement);
370         fputc(')', out);
371 }
372
373 void print_expression(const expression_t *expression)
374 {
375         switch(expression->kind) {
376         case EXPR_UNKNOWN:
377         case EXPR_INVALID:
378                 fprintf(out, "*invalid expression*");
379                 break;
380         case EXPR_CONST:
381                 print_const(&expression->conste);
382                 break;
383         case EXPR_FUNCTION:
384         case EXPR_PRETTY_FUNCTION:
385         case EXPR_STRING_LITERAL:
386                 print_string_literal(&expression->string);
387                 break;
388         case EXPR_WIDE_STRING_LITERAL:
389                 print_wide_string_literal(&expression->wide_string);
390                 break;
391         case EXPR_CALL:
392                 print_call_expression(&expression->call);
393                 break;
394         EXPR_BINARY_CASES
395                 print_binary_expression(&expression->binary);
396                 break;
397         case EXPR_REFERENCE:
398                 print_reference_expression(&expression->reference);
399                 break;
400         case EXPR_ARRAY_ACCESS:
401                 print_array_expression(&expression->array_access);
402                 break;
403         EXPR_UNARY_CASES
404                 print_unary_expression(&expression->unary);
405                 break;
406         case EXPR_SIZEOF:
407                 print_sizeof_expression(&expression->sizeofe);
408                 break;
409         case EXPR_ALIGNOF:
410                 print_alignof_expression(&expression->alignofe);
411                 break;
412         case EXPR_BUILTIN_SYMBOL:
413                 print_builtin_symbol(&expression->builtin_symbol);
414                 break;
415         case EXPR_BUILTIN_CONSTANT_P:
416                 print_builtin_constant(&expression->builtin_constant);
417                 break;
418         case EXPR_CONDITIONAL:
419                 print_conditional(&expression->conditional);
420                 break;
421         case EXPR_VA_START:
422                 print_va_start(&expression->va_starte);
423                 break;
424         case EXPR_VA_ARG:
425                 print_va_arg(&expression->va_arge);
426                 break;
427         case EXPR_SELECT:
428                 print_select(&expression->select);
429                 break;
430         case EXPR_CLASSIFY_TYPE:
431                 print_classify_type_expression(&expression->classify_type);
432                 break;
433         case EXPR_OFFSETOF:
434                 print_offsetof_expression(&expression->offsetofe);
435                 break;
436         case EXPR_STATEMENT:
437                 print_statement_expression(&expression->statement);
438                 break;
439
440         default:
441                 /* TODO */
442                 fprintf(out, "some expression of type %d", (int) expression->kind);
443                 break;
444         }
445 }
446
447 static void print_compound_statement(const compound_statement_t *block)
448 {
449         fputs("{\n", out);
450         indent++;
451
452         statement_t *statement = block->statements;
453         while(statement != NULL) {
454                 print_indent();
455                 print_statement(statement);
456
457                 statement = statement->base.next;
458         }
459         indent--;
460         print_indent();
461         fputs("}\n", out);
462 }
463
464 static void print_return_statement(const return_statement_t *statement)
465 {
466         fprintf(out, "return ");
467         if(statement->return_value != NULL)
468                 print_expression(statement->return_value);
469         fputs(";\n", out);
470 }
471
472 static void print_expression_statement(const expression_statement_t *statement)
473 {
474         print_expression(statement->expression);
475         fputs(";\n", out);
476 }
477
478 static void print_goto_statement(const goto_statement_t *statement)
479 {
480         fprintf(out, "goto ");
481         fputs(statement->label->symbol->string, out);
482         fprintf(stderr, "(%p)", (void*) statement->label);
483         fputs(";\n", out);
484 }
485
486 static void print_label_statement(const label_statement_t *statement)
487 {
488         fprintf(stderr, "(%p)", (void*) statement->label);
489         fprintf(out, "%s:\n", statement->label->symbol->string);
490         if(statement->label_statement != NULL) {
491                 print_statement(statement->label_statement);
492         }
493 }
494
495 static void print_if_statement(const if_statement_t *statement)
496 {
497         fputs("if(", out);
498         print_expression(statement->condition);
499         fputs(") ", out);
500         if(statement->true_statement != NULL) {
501                 print_statement(statement->true_statement);
502         }
503
504         if(statement->false_statement != NULL) {
505                 print_indent();
506                 fputs("else ", out);
507                 print_statement(statement->false_statement);
508         }
509 }
510
511 static void print_switch_statement(const switch_statement_t *statement)
512 {
513         fputs("switch(", out);
514         print_expression(statement->expression);
515         fputs(") ", out);
516         print_statement(statement->body);
517 }
518
519 static void print_case_label(const case_label_statement_t *statement)
520 {
521         if(statement->expression == NULL) {
522                 fputs("default:\n", out);
523         } else {
524                 fputs("case ", out);
525                 print_expression(statement->expression);
526                 fputs(":\n", out);
527         }
528         print_statement(statement->label_statement);
529 }
530
531 static void print_declaration_statement(
532                 const declaration_statement_t *statement)
533 {
534         int first = 1;
535         declaration_t *declaration = statement->declarations_begin;
536         for( ; declaration != statement->declarations_end->next;
537                declaration = declaration->next) {
538                 if(!first) {
539                         print_indent();
540                 } else {
541                         first = 0;
542                 }
543                 print_declaration(declaration);
544                 fputc('\n', out);
545         }
546 }
547
548 static void print_while_statement(const while_statement_t *statement)
549 {
550         fputs("while(", out);
551         print_expression(statement->condition);
552         fputs(") ", out);
553         print_statement(statement->body);
554 }
555
556 static void print_do_while_statement(const do_while_statement_t *statement)
557 {
558         fputs("do ", out);
559         print_statement(statement->body);
560         print_indent();
561         fputs("while(", out);
562         print_expression(statement->condition);
563         fputs(");\n", out);
564 }
565
566 static void print_for_statement(const for_statement_t *statement)
567 {
568         fputs("for(", out);
569         if(statement->context.declarations != NULL) {
570                 assert(statement->initialisation == NULL);
571                 print_declaration(statement->context.declarations);
572                 if(statement->context.declarations->next != NULL) {
573                         panic("multiple declarations in for statement not supported yet");
574                 }
575                 fputc(' ', out);
576         } else {
577                 if(statement->initialisation) {
578                         print_expression(statement->initialisation);
579                 }
580                 fputs("; ", out);
581         }
582         if(statement->condition != NULL) {
583                 print_expression(statement->condition);
584         }
585         fputs("; ", out);
586         if(statement->step != NULL) {
587                 print_expression(statement->step);
588         }
589         fputs(")", out);
590         print_statement(statement->body);
591 }
592
593 static void print_asm_constraints(asm_constraint_t *constraints)
594 {
595         asm_constraint_t *constraint = constraints;
596         for( ; constraint != NULL; constraint = constraint->next) {
597                 if(constraint != constraints)
598                         fputs(", ", out);
599
600                 if(constraint->symbol) {
601                         fprintf(out, "[%s] ", constraint->symbol->string);
602                 }
603                 print_quoted_string(constraint->constraints);
604                 fputs(" (", out);
605                 print_expression(constraint->expression);
606                 fputs(")", out);
607         }
608 }
609
610 static void print_asm_clobbers(asm_clobber_t *clobbers)
611 {
612         asm_clobber_t *clobber = clobbers;
613         for( ; clobber != NULL; clobber = clobber->next) {
614                 if(clobber != clobbers)
615                         fputs(", ", out);
616
617                 print_quoted_string(clobber->clobber);
618         }
619 }
620
621 static void print_asm_statement(const asm_statement_t *statement)
622 {
623         fputs("asm ", out);
624         if(statement->is_volatile) {
625                 fputs("volatile ", out);
626         }
627         fputs("(", out);
628         print_quoted_string(statement->asm_text);
629         if(statement->inputs == NULL && statement->outputs == NULL
630                         && statement->clobbers == NULL)
631                 goto end_of_print_asm_statement;
632
633         fputs(" : ", out);
634         print_asm_constraints(statement->inputs);
635         if(statement->outputs == NULL && statement->clobbers == NULL)
636                 goto end_of_print_asm_statement;
637
638         fputs(" : ", out);
639         print_asm_constraints(statement->outputs);
640         if(statement->clobbers == NULL)
641                 goto end_of_print_asm_statement;
642
643         fputs(" : ", out);
644         print_asm_clobbers(statement->clobbers);
645
646 end_of_print_asm_statement:
647         fputs(");\n", out);
648 }
649
650 void print_statement(const statement_t *statement)
651 {
652         switch(statement->kind) {
653         case STATEMENT_COMPOUND:
654                 print_compound_statement(&statement->compound);
655                 break;
656         case STATEMENT_RETURN:
657                 print_return_statement(&statement->returns);
658                 break;
659         case STATEMENT_EXPRESSION:
660                 print_expression_statement(&statement->expression);
661                 break;
662         case STATEMENT_LABEL:
663                 print_label_statement(&statement->label);
664                 break;
665         case STATEMENT_GOTO:
666                 print_goto_statement(&statement->gotos);
667                 break;
668         case STATEMENT_CONTINUE:
669                 fputs("continue;\n", out);
670                 break;
671         case STATEMENT_BREAK:
672                 fputs("break;\n", out);
673                 break;
674         case STATEMENT_IF:
675                 print_if_statement(&statement->ifs);
676                 break;
677         case STATEMENT_SWITCH:
678                 print_switch_statement(&statement->switchs);
679                 break;
680         case STATEMENT_CASE_LABEL:
681                 print_case_label(&statement->case_label);
682                 break;
683         case STATEMENT_DECLARATION:
684                 print_declaration_statement(&statement->declaration);
685                 break;
686         case STATEMENT_WHILE:
687                 print_while_statement(&statement->whiles);
688                 break;
689         case STATEMENT_DO_WHILE:
690                 print_do_while_statement(&statement->do_while);
691                 break;
692         case STATEMENT_FOR:
693                 print_for_statement(&statement->fors);
694                 break;
695         case STATEMENT_ASM:
696                 print_asm_statement(&statement->asms);
697                 break;
698         case STATEMENT_INVALID:
699                 fprintf(out, "*invalid statement*");
700                 break;
701         }
702 }
703
704 static void print_storage_class(unsigned storage_class)
705 {
706         switch((storage_class_tag_t) storage_class) {
707         case STORAGE_CLASS_ENUM_ENTRY:
708         case STORAGE_CLASS_NONE:
709                 break;
710         case STORAGE_CLASS_TYPEDEF:       fputs("typedef ",        out); break;
711         case STORAGE_CLASS_EXTERN:        fputs("extern ",         out); break;
712         case STORAGE_CLASS_STATIC:        fputs("static ",         out); break;
713         case STORAGE_CLASS_AUTO:          fputs("auto ",           out); break;
714         case STORAGE_CLASS_REGISTER:      fputs("register ",       out); break;
715         case STORAGE_CLASS_THREAD:        fputs("__thread",        out); break;
716         case STORAGE_CLASS_THREAD_EXTERN: fputs("extern __thread", out); break;
717         case STORAGE_CLASS_THREAD_STATIC: fputs("static __thread", out); break;
718         }
719 }
720
721 void print_initializer(const initializer_t *initializer)
722 {
723         if(initializer->kind == INITIALIZER_VALUE) {
724                 const initializer_value_t *value = &initializer->value;
725                 print_expression(value->value);
726                 return;
727         }
728
729         assert(initializer->kind == INITIALIZER_LIST);
730         fputs("{ ", out);
731         const initializer_list_t *list = &initializer->list;
732
733         for(size_t i = 0 ; i < list->len; ++i) {
734                 if(i > 0) {
735                         fputs(", ", out);
736                 }
737                 print_initializer(list->initializers[i]);
738         }
739         fputs("}", out);
740 }
741
742 static void print_normal_declaration(const declaration_t *declaration)
743 {
744         print_storage_class(declaration->storage_class);
745         if(declaration->is_inline) {
746                 if (declaration->decl_modifiers & DM_FORCEINLINE)
747                         fputs("__forceinline ", out);
748                 else
749                         fputs("inline ", out);
750         }
751         print_type_ext(declaration->type, declaration->symbol,
752                        &declaration->context);
753
754         if(declaration->type->kind == TYPE_FUNCTION) {
755                 if(declaration->init.statement != NULL) {
756                         fputs("\n", out);
757                         print_statement(declaration->init.statement);
758                         return;
759                 }
760         } else if(declaration->init.initializer != NULL) {
761                 fputs(" = ", out);
762                 print_initializer(declaration->init.initializer);
763         }
764         fputc(';', out);
765 }
766
767 void print_declaration(const declaration_t *declaration)
768 {
769         if(declaration->namespc != NAMESPACE_NORMAL &&
770                         declaration->symbol == NULL)
771                 return;
772
773         switch(declaration->namespc) {
774         case NAMESPACE_NORMAL:
775                 print_normal_declaration(declaration);
776                 break;
777         case NAMESPACE_STRUCT:
778                 fputs("struct ", out);
779                 fputs(declaration->symbol->string, out);
780                 fputc(' ', out);
781                 print_compound_definition(declaration);
782                 fputc(';', out);
783                 break;
784         case NAMESPACE_UNION:
785                 fputs("union ", out);
786                 fputs(declaration->symbol->string, out);
787                 fputc(' ', out);
788                 print_compound_definition(declaration);
789                 fputc(';', out);
790                 break;
791         case NAMESPACE_ENUM:
792                 fputs("enum ", out);
793                 fputs(declaration->symbol->string, out);
794                 fputc(' ', out);
795                 print_enum_definition(declaration);
796                 fputc(';', out);
797                 break;
798         }
799 }
800
801 void print_ast(const translation_unit_t *unit)
802 {
803         inc_type_visited();
804
805         declaration_t *declaration = unit->context.declarations;
806         for( ; declaration != NULL; declaration = declaration->next) {
807                 if(declaration->storage_class == STORAGE_CLASS_ENUM_ENTRY)
808                         continue;
809                 if(declaration->namespc != NAMESPACE_NORMAL &&
810                                 declaration->symbol == NULL)
811                         continue;
812
813                 print_indent();
814                 print_declaration(declaration);
815                 fputc('\n', out);
816         }
817 }
818
819 bool is_constant_expression(const expression_t *expression)
820 {
821         switch(expression->kind) {
822
823         case EXPR_CONST:
824         case EXPR_STRING_LITERAL:
825         case EXPR_WIDE_STRING_LITERAL:
826         case EXPR_SIZEOF:
827         case EXPR_CLASSIFY_TYPE:
828         case EXPR_FUNCTION:
829         case EXPR_PRETTY_FUNCTION:
830         case EXPR_OFFSETOF:
831         case EXPR_ALIGNOF:
832         case EXPR_BUILTIN_CONSTANT_P:
833                 return true;
834
835         case EXPR_BUILTIN_SYMBOL:
836         case EXPR_CALL:
837         case EXPR_SELECT:
838         case EXPR_VA_START:
839         case EXPR_VA_ARG:
840         case EXPR_STATEMENT:
841         case EXPR_UNARY_POSTFIX_INCREMENT:
842         case EXPR_UNARY_POSTFIX_DECREMENT:
843         case EXPR_UNARY_PREFIX_INCREMENT:
844         case EXPR_UNARY_PREFIX_DECREMENT:
845         case EXPR_UNARY_ASSUME: /* has VOID type */
846         case EXPR_BINARY_ASSIGN:
847         case EXPR_BINARY_MUL_ASSIGN:
848         case EXPR_BINARY_DIV_ASSIGN:
849         case EXPR_BINARY_MOD_ASSIGN:
850         case EXPR_BINARY_ADD_ASSIGN:
851         case EXPR_BINARY_SUB_ASSIGN:
852         case EXPR_BINARY_SHIFTLEFT_ASSIGN:
853         case EXPR_BINARY_SHIFTRIGHT_ASSIGN:
854         case EXPR_BINARY_BITWISE_AND_ASSIGN:
855         case EXPR_BINARY_BITWISE_XOR_ASSIGN:
856         case EXPR_BINARY_BITWISE_OR_ASSIGN:
857         case EXPR_BINARY_COMMA:
858                 return false;
859
860         case EXPR_UNARY_NEGATE:
861         case EXPR_UNARY_PLUS:
862         case EXPR_UNARY_BITWISE_NEGATE:
863         case EXPR_UNARY_NOT:
864         case EXPR_UNARY_DEREFERENCE:
865         case EXPR_UNARY_TAKE_ADDRESS:
866         case EXPR_UNARY_CAST:
867         case EXPR_UNARY_CAST_IMPLICIT:
868                 return is_constant_expression(expression->unary.value);
869
870         case EXPR_BINARY_ADD:
871         case EXPR_BINARY_SUB:
872         case EXPR_BINARY_MUL:
873         case EXPR_BINARY_DIV:
874         case EXPR_BINARY_MOD:
875         case EXPR_BINARY_EQUAL:
876         case EXPR_BINARY_NOTEQUAL:
877         case EXPR_BINARY_LESS:
878         case EXPR_BINARY_LESSEQUAL:
879         case EXPR_BINARY_GREATER:
880         case EXPR_BINARY_GREATEREQUAL:
881         case EXPR_BINARY_BITWISE_AND:
882         case EXPR_BINARY_BITWISE_OR:
883         case EXPR_BINARY_BITWISE_XOR:
884         case EXPR_BINARY_LOGICAL_AND:
885         case EXPR_BINARY_LOGICAL_OR:
886         case EXPR_BINARY_SHIFTLEFT:
887         case EXPR_BINARY_SHIFTRIGHT:
888         case EXPR_BINARY_BUILTIN_EXPECT:
889         case EXPR_BINARY_ISGREATER:
890         case EXPR_BINARY_ISGREATEREQUAL:
891         case EXPR_BINARY_ISLESS:
892         case EXPR_BINARY_ISLESSEQUAL:
893         case EXPR_BINARY_ISLESSGREATER:
894         case EXPR_BINARY_ISUNORDERED:
895                 return is_constant_expression(expression->binary.left)
896                         && is_constant_expression(expression->binary.right);
897
898         case EXPR_CONDITIONAL:
899                 /* TODO: not correct, we only have to test expressions which are
900                  * evaluated, which means either the true or false part might be not
901                  * constant */
902                 return is_constant_expression(expression->conditional.condition)
903                         && is_constant_expression(expression->conditional.true_expression)
904                         && is_constant_expression(expression->conditional.false_expression);
905
906         case EXPR_ARRAY_ACCESS:
907                 return is_constant_expression(expression->array_access.array_ref)
908                         && is_constant_expression(expression->array_access.index);
909
910         case EXPR_REFERENCE: {
911                 declaration_t *declaration = expression->reference.declaration;
912                 if(declaration->storage_class == STORAGE_CLASS_ENUM_ENTRY)
913                         return true;
914
915                 return false;
916         }
917
918         case EXPR_UNKNOWN:
919         case EXPR_INVALID:
920                 break;
921         }
922         panic("invalid expression found (is constant expression)");
923 }
924
925
926 void init_ast(void)
927 {
928         obstack_init(&ast_obstack);
929 }
930
931 void exit_ast(void)
932 {
933         obstack_free(&ast_obstack, NULL);
934 }
935
936 void ast_set_output(FILE *stream)
937 {
938         out = stream;
939         type_set_output(stream);
940 }
941
942 void* (allocate_ast) (size_t size)
943 {
944         return _allocate_ast(size);
945 }