support address taken from function parameters
[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_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_string_literal(const string_literal_t *string_literal)
45 {
46         fputc('"', out);
47         for(const char *c = string_literal->value; *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_call_expression(const call_expression_t *call)
72 {
73         print_expression(call->function);
74         fprintf(out, "(");
75         call_argument_t *argument = call->arguments;
76         int              first    = 1;
77         while(argument != NULL) {
78                 if(!first) {
79                         fprintf(out, ", ");
80                 } else {
81                         first = 0;
82                 }
83                 print_expression(argument->expression);
84
85                 argument = argument->next;
86         }
87         fprintf(out, ")");
88 }
89
90 static void print_binary_expression(const binary_expression_t *binexpr)
91 {
92         fprintf(out, "(");
93         print_expression(binexpr->left);
94         fprintf(out, " ");
95         switch(binexpr->type) {
96         case BINEXPR_INVALID:            fputs("INVOP", out); break;
97         case BINEXPR_COMMA:              fputs(",", out);     break;
98         case BINEXPR_ASSIGN:             fputs("=", out);     break;
99         case BINEXPR_ADD:                fputs("+", out);     break;
100         case BINEXPR_SUB:                fputs("-", out);     break;
101         case BINEXPR_MUL:                fputs("*", out);     break;
102         case BINEXPR_MOD:                fputs("%", out);     break;
103         case BINEXPR_DIV:                fputs("/", out);     break;
104         case BINEXPR_BITWISE_OR:         fputs("|", out);     break;
105         case BINEXPR_BITWISE_AND:        fputs("&", out);     break;
106         case BINEXPR_BITWISE_XOR:        fputs("^", out);     break;
107         case BINEXPR_LOGICAL_OR:         fputs("||", out);    break;
108         case BINEXPR_LOGICAL_AND:        fputs("&&", out);    break;
109         case BINEXPR_NOTEQUAL:           fputs("!=", out);    break;
110         case BINEXPR_EQUAL:              fputs("==", out);    break;
111         case BINEXPR_LESS:               fputs("<", out);     break;
112         case BINEXPR_LESSEQUAL:          fputs("<=", out);    break;
113         case BINEXPR_GREATER:            fputs(">", out);     break;
114         case BINEXPR_GREATEREQUAL:       fputs(">=", out);    break;
115         case BINEXPR_SHIFTLEFT:          fputs("<<", out);    break;
116         case BINEXPR_SHIFTRIGHT:         fputs(">>", out);    break;
117
118         case BINEXPR_ADD_ASSIGN:         fputs("+=", out);    break;
119         case BINEXPR_SUB_ASSIGN:         fputs("-=", out);    break;
120         case BINEXPR_MUL_ASSIGN:         fputs("*=", out);    break;
121         case BINEXPR_MOD_ASSIGN:         fputs("%=", out);    break;
122         case BINEXPR_DIV_ASSIGN:         fputs("/=", out);    break;
123         case BINEXPR_BITWISE_OR_ASSIGN:  fputs("|=", out);    break;
124         case BINEXPR_BITWISE_AND_ASSIGN: fputs("&=", out);    break;
125         case BINEXPR_BITWISE_XOR_ASSIGN: fputs("^=", out);    break;
126         case BINEXPR_SHIFTLEFT_ASSIGN:   fputs("<<=", out);   break;
127         case BINEXPR_SHIFTRIGHT_ASSIGN:  fputs(">>=", out);   break;
128         }
129         fprintf(out, " ");
130         print_expression(binexpr->right);
131         fprintf(out, ")");
132 }
133
134 static void print_unary_expression(const unary_expression_t *unexpr)
135 {
136         switch(unexpr->type) {
137         case UNEXPR_NEGATE:           fputs("-", out);  break;
138         case UNEXPR_PLUS:             fputs("+", out);  break;
139         case UNEXPR_NOT:              fputs("!", out);  break;
140         case UNEXPR_BITWISE_NEGATE:   fputs("~", out);  break;
141         case UNEXPR_PREFIX_INCREMENT: fputs("++", out); break;
142         case UNEXPR_PREFIX_DECREMENT: fputs("--", out); break;
143         case UNEXPR_DEREFERENCE:      fputs("*", out);  break;
144         case UNEXPR_TAKE_ADDRESS:     fputs("&", out);  break;
145
146         case UNEXPR_POSTFIX_INCREMENT:
147                 fputs("(", out);
148                 print_expression(unexpr->value);
149                 fputs(")", out);
150                 fputs("++", out);
151                 return;
152         case UNEXPR_POSTFIX_DECREMENT:
153                 fputs("(", out);
154                 print_expression(unexpr->value);
155                 fputs(")", out);
156                 fputs("--", out);
157                 return;
158         case UNEXPR_CAST:
159                 fputs("(", out);
160                 print_type(unexpr->expression.datatype);
161                 fputs(")", out);
162                 break;
163         case UNEXPR_INVALID:
164                 fprintf(out, "unop%d", (int) unexpr->type);
165                 break;
166         }
167         fputs("(", out);
168         print_expression(unexpr->value);
169         fputs(")", out);
170 }
171
172 static void print_reference_expression(const reference_expression_t *ref)
173 {
174         fprintf(out, "%s", ref->declaration->symbol->string);
175 }
176
177 static void print_array_expression(const array_access_expression_t *expression)
178 {
179         fputs("(", out);
180         print_expression(expression->array_ref);
181         fputs(")[", out);
182         print_expression(expression->index);
183         fputs("]", out);
184 }
185
186 static void print_sizeof_expression(const sizeof_expression_t *expression)
187 {
188         fputs("sizeof", out);
189         if(expression->size_expression != NULL) {
190                 fputc('(', out);
191                 print_expression(expression->size_expression);
192                 fputc(')', out);
193         } else {
194                 fputc('(', out);
195                 print_type(expression->type);
196                 fputc(')', out);
197         }
198 }
199
200 static void print_builtin_symbol(const builtin_symbol_expression_t *expression)
201 {
202         fputs(expression->symbol->string, out);
203 }
204
205 static void print_conditional(const conditional_expression_t *expression)
206 {
207         fputs("(", out);
208         print_expression(expression->condition);
209         fputs(" ? ", out);
210         print_expression(expression->true_expression);
211         fputs(" : ", out);
212         print_expression(expression->false_expression);
213         fputs(")", out);
214 }
215
216 static void print_va_arg(const va_arg_expression_t *expression)
217 {
218         fputs("__builtin_va_arg(", out);
219         print_expression(expression->arg);
220         fputs(", ", out);
221         print_type(expression->expression.datatype);
222         fputs(")", out);
223 }
224
225 static void print_select(const select_expression_t *expression)
226 {
227         print_expression(expression->compound);
228         if(expression->compound->datatype == NULL ||
229                         expression->compound->datatype->type == TYPE_POINTER) {
230                 fputs("->", out);
231         } else {
232                 fputc('.', out);
233         }
234         fputs(expression->symbol->string, out);
235 }
236
237 static void print_classify_type_expression(
238         const classify_type_expression_t *const expr)
239 {
240         fputs("__builtin_classify_type(", out);
241         print_expression(expr->type_expression);
242         fputc(')', out);
243 }
244
245 void print_expression(const expression_t *expression)
246 {
247         switch(expression->type) {
248         case EXPR_UNKNOWN:
249         case EXPR_INVALID:
250                 fprintf(out, "*invalid expression*");
251                 break;
252         case EXPR_CONST:
253                 print_const((const const_t*) expression);
254                 break;
255         case EXPR_FUNCTION:
256         case EXPR_PRETTY_FUNCTION:
257         case EXPR_STRING_LITERAL:
258                 print_string_literal((const string_literal_t*) expression);
259                 break;
260         case EXPR_CALL:
261                 print_call_expression((const call_expression_t*) expression);
262                 break;
263         case EXPR_BINARY:
264                 print_binary_expression((const binary_expression_t*) expression);
265                 break;
266         case EXPR_REFERENCE:
267                 print_reference_expression((const reference_expression_t*) expression);
268                 break;
269         case EXPR_ARRAY_ACCESS:
270                 print_array_expression((const array_access_expression_t*) expression);
271                 break;
272         case EXPR_UNARY:
273                 print_unary_expression((const unary_expression_t*) expression);
274                 break;
275         case EXPR_SIZEOF:
276                 print_sizeof_expression((const sizeof_expression_t*) expression);
277                 break;
278         case EXPR_BUILTIN_SYMBOL:
279                 print_builtin_symbol((const builtin_symbol_expression_t*) expression);
280                 break;
281         case EXPR_CONDITIONAL:
282                 print_conditional((const conditional_expression_t*) expression);
283                 break;
284         case EXPR_VA_ARG:
285                 print_va_arg((const va_arg_expression_t*) expression);
286                 break;
287         case EXPR_SELECT:
288                 print_select((const select_expression_t*) expression);
289                 break;
290         case EXPR_CLASSIFY_TYPE:
291                 print_classify_type_expression((const classify_type_expression_t*)expression);
292                 break;
293
294         case EXPR_OFFSETOF:
295         case EXPR_STATEMENT:
296                 /* TODO */
297                 fprintf(out, "some expression of type %d", (int) expression->type);
298                 break;
299         }
300 }
301
302 static void print_compound_statement(const compound_statement_t *block)
303 {
304         fputs("{\n", out);
305         indent++;
306
307         statement_t *statement = block->statements;
308         while(statement != NULL) {
309                 print_indent();
310                 print_statement(statement);
311
312                 statement = statement->next;
313         }
314         indent--;
315         print_indent();
316         fputs("}\n", out);
317 }
318
319 static void print_return_statement(const return_statement_t *statement)
320 {
321         fprintf(out, "return ");
322         if(statement->return_value != NULL)
323                 print_expression(statement->return_value);
324         fputs(";\n", out);
325 }
326
327 static void print_expression_statement(const expression_statement_t *statement)
328 {
329         print_expression(statement->expression);
330         fputs(";\n", out);
331 }
332
333 static void print_goto_statement(const goto_statement_t *statement)
334 {
335         fprintf(out, "goto ");
336         fputs(statement->label->symbol->string, out);
337         fprintf(stderr, "(%p)", (void*) statement->label);
338         fputs(";\n", out);
339 }
340
341 static void print_label_statement(const label_statement_t *statement)
342 {
343         fprintf(stderr, "(%p)", (void*) statement->label);
344         fprintf(out, "%s:\n", statement->label->symbol->string);
345         if(statement->label_statement != NULL) {
346                 print_statement(statement->label_statement);
347         }
348 }
349
350 static void print_if_statement(const if_statement_t *statement)
351 {
352         fputs("if(", out);
353         print_expression(statement->condition);
354         fputs(") ", out);
355         if(statement->true_statement != NULL) {
356                 print_statement(statement->true_statement);
357         }
358
359         if(statement->false_statement != NULL) {
360                 print_indent();
361                 fputs("else ", out);
362                 print_statement(statement->false_statement);
363         }
364 }
365
366 static void print_switch_statement(const switch_statement_t *statement)
367 {
368         fputs("switch(", out);
369         print_expression(statement->expression);
370         fputs(") ", out);
371         print_statement(statement->body);
372 }
373
374 static void print_case_label(const case_label_statement_t *statement)
375 {
376         if(statement->expression == NULL) {
377                 fputs("default:\n", out);
378         } else {
379                 fputs("case ", out);
380                 print_expression(statement->expression);
381                 fputs(":\n", out);
382         }
383         print_statement(statement->label_statement);
384 }
385
386 static void print_declaration_statement(
387                 const declaration_statement_t *statement)
388 {
389         int first = 1;
390         declaration_t *declaration = statement->declarations_begin;
391         for( ; declaration != statement->declarations_end->next;
392                declaration = declaration->next) {
393                 if(!first) {
394                         print_indent();
395                 } else {
396                         first = 0;
397                 }
398                 print_declaration(declaration);
399                 fputc('\n', out);
400         }
401 }
402
403 static void print_while_statement(const while_statement_t *statement)
404 {
405         fputs("while(", out);
406         print_expression(statement->condition);
407         fputs(") ", out);
408         print_statement(statement->body);
409 }
410
411 static void print_do_while_statement(const do_while_statement_t *statement)
412 {
413         fputs("do ", out);
414         print_statement(statement->body);
415         print_indent();
416         fputs("while(", out);
417         print_expression(statement->condition);
418         fputs(");\n", out);
419 }
420
421 static void print_for_statement(const for_statement_t *statement)
422 {
423         fputs("for(", out);
424         if(statement->context.declarations != NULL) {
425                 assert(statement->initialisation == NULL);
426                 print_declaration(statement->context.declarations);
427                 if(statement->context.declarations->next != NULL) {
428                         panic("multiple declarations in for statement not supported yet");
429                 }
430                 fputc(' ', out);
431         } else {
432                 if(statement->initialisation) {
433                         print_expression(statement->initialisation);
434                 }
435                 fputs("; ", out);
436         }
437         if(statement->condition != NULL) {
438                 print_expression(statement->condition);
439         }
440         fputs("; ", out);
441         if(statement->step != NULL) {
442                 print_expression(statement->step);
443         }
444         fputs(")", out);
445         print_statement(statement->body);
446 }
447
448 void print_statement(const statement_t *statement)
449 {
450         switch(statement->type) {
451         case STATEMENT_COMPOUND:
452                 print_compound_statement((const compound_statement_t*) statement);
453                 break;
454         case STATEMENT_RETURN:
455                 print_return_statement((const return_statement_t*) statement);
456                 break;
457         case STATEMENT_EXPRESSION:
458                 print_expression_statement((const expression_statement_t*) statement);
459                 break;
460         case STATEMENT_LABEL:
461                 print_label_statement((const label_statement_t*) statement);
462                 break;
463         case STATEMENT_GOTO:
464                 print_goto_statement((const goto_statement_t*) statement);
465                 break;
466         case STATEMENT_CONTINUE:
467                 fputs("continue;\n", out);
468                 break;
469         case STATEMENT_BREAK:
470                 fputs("break;\n", out);
471                 break;
472         case STATEMENT_IF:
473                 print_if_statement((const if_statement_t*) statement);
474                 break;
475         case STATEMENT_SWITCH:
476                 print_switch_statement((const switch_statement_t*) statement);
477                 break;
478         case STATEMENT_CASE_LABEL:
479                 print_case_label((const case_label_statement_t*) statement);
480                 break;
481         case STATEMENT_DECLARATION:
482                 print_declaration_statement((const declaration_statement_t*) statement);
483                 break;
484         case STATEMENT_WHILE:
485                 print_while_statement((const while_statement_t*) statement);
486                 break;
487         case STATEMENT_DO_WHILE:
488                 print_do_while_statement((const do_while_statement_t*) statement);
489                 break;
490         case STATEMENT_FOR:
491                 print_for_statement((const for_statement_t*) statement);
492                 break;
493         case STATEMENT_INVALID:
494                 fprintf(out, "*invalid statement*");
495                 break;
496         }
497 }
498
499 static void print_storage_class(storage_class_t storage_class)
500 {
501         switch(storage_class) {
502         case STORAGE_CLASS_ENUM_ENTRY:
503         case STORAGE_CLASS_NONE:
504                 break;
505         case STORAGE_CLASS_TYPEDEF:  fputs("typedef ", out); break;
506         case STORAGE_CLASS_EXTERN:   fputs("extern ", out); break;
507         case STORAGE_CLASS_STATIC:   fputs("static ", out); break;
508         case STORAGE_CLASS_AUTO:     fputs("auto ", out); break;
509         case STORAGE_CLASS_REGISTER: fputs("register ", out); break;
510         }
511 }
512
513 void print_initializer(const initializer_t *initializer)
514 {
515         if(initializer->type == INITIALIZER_VALUE) {
516                 //print_expression(initializer->v.value);
517                 return;
518         }
519
520 #if 0
521         assert(initializer->type == INITIALIZER_LIST);
522         fputs("{ ", out);
523         initializer_t *iter = initializer->v.list;
524         for( ; iter != NULL; iter = iter->next) {
525                 print_initializer(iter);
526                 if(iter->next != NULL) {
527                         fputs(", ", out);
528                 }
529         }
530         fputs("}", out);
531 #endif
532 }
533
534 static void print_normal_declaration(const declaration_t *declaration)
535 {
536         print_storage_class((storage_class_t)declaration->storage_class);
537         print_type_ext(declaration->type, declaration->symbol,
538                        &declaration->context);
539         if(declaration->is_inline) {
540                 fputs("inline ", out);
541         }
542
543         if(declaration->type->type == TYPE_FUNCTION) {
544                 if(declaration->init.statement != NULL) {
545                         fputs("\n", out);
546                         print_statement(declaration->init.statement);
547                         return;
548                 }
549         } else if(declaration->init.initializer != NULL) {
550                 fputs(" = ", out);
551                 print_initializer(declaration->init.initializer);
552         }
553         fputc(';', out);
554 }
555
556 void print_declaration(const declaration_t *declaration)
557 {
558         if(declaration->namespc != NAMESPACE_NORMAL &&
559                         declaration->symbol == NULL)
560                 return;
561
562         switch(declaration->namespc) {
563         case NAMESPACE_NORMAL:
564                 print_normal_declaration(declaration);
565                 break;
566         case NAMESPACE_STRUCT:
567                 fputs("struct ", out);
568                 fputs(declaration->symbol->string, out);
569                 fputc(' ', out);
570                 print_compound_definition(declaration);
571                 fputc(';', out);
572                 break;
573         case NAMESPACE_UNION:
574                 fputs("union ", out);
575                 fputs(declaration->symbol->string, out);
576                 fputc(' ', out);
577                 print_compound_definition(declaration);
578                 fputc(';', out);
579                 break;
580         case NAMESPACE_ENUM:
581                 fputs("enum ", out);
582                 fputs(declaration->symbol->string, out);
583                 fputc(' ', out);
584                 print_enum_definition(declaration);
585                 fputc(';', out);
586                 break;
587         }
588 }
589
590 void print_ast(const translation_unit_t *unit)
591 {
592         inc_type_visited();
593         set_print_compound_entries(true);
594
595         declaration_t *declaration = unit->context.declarations;
596         for( ; declaration != NULL; declaration = declaration->next) {
597                 if(declaration->storage_class == STORAGE_CLASS_ENUM_ENTRY)
598                         continue;
599                 if(declaration->namespc != NAMESPACE_NORMAL &&
600                                 declaration->symbol == NULL)
601                         continue;
602
603                 print_indent();
604                 print_declaration(declaration);
605                 fputc('\n', out);
606         }
607 }
608
609 void init_ast(void)
610 {
611         obstack_init(&ast_obstack);
612 }
613
614 void exit_ast(void)
615 {
616         obstack_free(&ast_obstack, NULL);
617 }
618
619 void ast_set_output(FILE *stream)
620 {
621         out = stream;
622         type_set_output(stream);
623 }
624
625 void* (allocate_ast) (size_t size)
626 {
627         return _allocate_ast(size);
628 }