merge kaps
[libfirm] / ir / ir / irio.c
1 /*
2  * Copyright (C) 1995-2011 University of Karlsruhe.  All right reserved.
3  *
4  * This file is part of libFirm.
5  *
6  * This file may be distributed and/or modified under the terms of the
7  * GNU General Public License version 2 as published by the Free Software
8  * Foundation and appearing in the file LICENSE.GPL included in the
9  * packaging of this file.
10  *
11  * Licensees holding valid libFirm Professional Edition licenses may use
12  * this file in accordance with the libFirm Commercial License.
13  * Agreement provided with the Software.
14  *
15  * This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
16  * WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR
17  * PURPOSE.
18  */
19
20 /**
21  * @file
22  * @brief   Write textual representation of firm to file.
23  * @author  Moritz Kroll
24  * @version $Id$
25  */
26 #include "config.h"
27
28 #include <string.h>
29 #include <ctype.h>
30 #include <stdbool.h>
31 #include <stdarg.h>
32
33 #include "irio.h"
34
35 #include "irnode_t.h"
36 #include "irprog.h"
37 #include "irgraph_t.h"
38 #include "irprintf.h"
39 #include "ircons.h"
40 #include "irgmod.h"
41 #include "irflag_t.h"
42 #include "irgwalk.h"
43 #include "tv.h"
44 #include "array.h"
45 #include "error.h"
46 #include "typerep.h"
47 #include "adt/set.h"
48 #include "adt/obst.h"
49
50 #define SYMERROR ((unsigned) ~0)
51
52 typedef struct io_env_t
53 {
54         int c;                /**< currently read char */
55         FILE *file;
56         set *idset;           /**< id_entry set, which maps from file ids to new Firm elements */
57         int ignoreblocks;
58         const char *inputname;
59         int line;
60         ir_type **fixedtypes;
61         struct obstack obst;
62         ir_graph *irg;
63 } io_env_t;
64
65 typedef enum typetag_t
66 {
67         tt_align,
68         tt_allocation,
69         tt_builtin,
70         tt_cond_jmp_predicate,
71         tt_initializer,
72         tt_iro,
73         tt_keyword,
74         tt_mode_sort,
75         tt_mode_arithmetic,
76         tt_pin_state,
77         tt_tpo,
78         tt_type_state,
79         tt_volatility,
80         tt_linkage,
81         tt_segment,
82         tt_visibility
83 } typetag_t;
84
85 typedef enum keyword_t
86 {
87         kw_constirg,
88         kw_entity,
89         kw_irg,
90         kw_mode,
91         kw_modes,
92         kw_type,
93         kw_typegraph,
94         kw_program,
95         kw_segment_type
96 } keyword_t;
97
98 typedef struct symbol_t
99 {
100         const char *str;      /**< The name of this symbol. */
101         typetag_t   typetag;  /**< The type tag of this symbol. */
102         unsigned    code;     /**< The value of this symbol. */
103 } symbol_t;
104
105 typedef struct id_entry
106 {
107         long id;
108         void *elem;
109 } id_entry;
110
111 /** The symbol table, a set of symbol_t elements. */
112 static set *symtbl;
113
114 /**
115  * Compare two symbol table entries.
116  */
117 static int symbol_cmp(const void *elt, const void *key, size_t size)
118 {
119         int res;
120         const symbol_t *entry = (const symbol_t *) elt;
121         const symbol_t *keyentry = (const symbol_t *) key;
122         (void) size;
123         res = entry->typetag - keyentry->typetag;
124         if (res) return res;
125         return strcmp(entry->str, keyentry->str);
126 }
127
128 static int id_cmp(const void *elt, const void *key, size_t size)
129 {
130         const id_entry *entry = (const id_entry *) elt;
131         const id_entry *keyentry = (const id_entry *) key;
132         (void) size;
133         return entry->id - keyentry->id;
134 }
135
136 static void __attribute__((format(printf, 2, 3)))
137 parse_error(io_env_t *env, const char *fmt, ...)
138 {
139         va_list ap;
140         int     line = env->line;
141
142         /* workaround read_c "feature" that a '\n' triggers the line++
143          * instead of the character after the '\n' */
144         if (env->c == '\n') {
145                 line--;
146         }
147
148         fprintf(stderr, "%s:%d: error ", env->inputname, line);
149
150         va_start(ap, fmt);
151         vfprintf(stderr, fmt, ap);
152         va_end(ap);
153 }
154
155 /** Initializes the symbol table. May be called more than once without problems. */
156 static void symtbl_init(void)
157 {
158         symbol_t key;
159
160         /* Only initialize once */
161         if (symtbl != NULL)
162                 return;
163
164         symtbl = new_set(symbol_cmp, 256);
165
166 #define INSERT(tt, s, cod)                                       \
167         key.str = (s);                                               \
168         key.typetag = (tt);                                          \
169         key.code = (cod);                                            \
170         set_insert(symtbl, &key, sizeof(key), firm_fnv_hash_str(s) + tt * 17)
171
172 #define INSERTENUM(tt, e) INSERT(tt, #e, e)
173 #define INSERTKEYWORD(k) INSERT(tt_keyword, #k, kw_##k)
174
175         INSERT(tt_tpo, "array", tpo_array);
176         INSERT(tt_tpo, "class", tpo_class);
177         INSERT(tt_tpo, "method", tpo_method);
178         INSERT(tt_tpo, "pointer", tpo_pointer);
179         INSERT(tt_tpo, "primitive", tpo_primitive);
180         INSERT(tt_tpo, "struct", tpo_struct);
181         INSERT(tt_tpo, "union", tpo_union);
182         INSERT(tt_tpo, "Unknown", tpo_unknown);
183
184         INSERT(tt_mode_sort, "auxiliary", irms_auxiliary);
185         INSERT(tt_mode_sort, "control_flow", irms_control_flow);
186         INSERT(tt_mode_sort, "memory", irms_memory);
187         INSERT(tt_mode_sort, "internal_boolean", irms_internal_boolean);
188         INSERT(tt_mode_sort, "reference", irms_reference);
189         INSERT(tt_mode_sort, "int_number", irms_int_number);
190         INSERT(tt_mode_sort, "float_number", irms_float_number);
191
192         INSERT(tt_segment, "global", IR_SEGMENT_GLOBAL);
193         INSERT(tt_segment, "thread_local", IR_SEGMENT_THREAD_LOCAL);
194         INSERT(tt_segment, "constructors", IR_SEGMENT_CONSTRUCTORS);
195         INSERT(tt_segment, "destructors", IR_SEGMENT_DESTRUCTORS);
196
197         INSERT(tt_linkage, "constant", IR_LINKAGE_CONSTANT);
198         INSERT(tt_linkage, "weak", IR_LINKAGE_WEAK);
199         INSERT(tt_linkage, "garbage_collect", IR_LINKAGE_GARBAGE_COLLECT);
200         INSERT(tt_linkage, "merge", IR_LINKAGE_MERGE);
201         INSERT(tt_linkage, "hidden_user", IR_LINKAGE_HIDDEN_USER);
202
203         INSERT(tt_visibility, "local", ir_visibility_local);
204         INSERT(tt_visibility, "external", ir_visibility_external);
205         INSERT(tt_visibility, "default", ir_visibility_default);
206         INSERT(tt_visibility, "private", ir_visibility_private);
207
208         INSERTKEYWORD(constirg);
209         INSERTKEYWORD(entity);
210         INSERTKEYWORD(irg);
211         INSERTKEYWORD(mode);
212         INSERTKEYWORD(modes);
213         INSERTKEYWORD(type);
214         INSERTKEYWORD(typegraph);
215         INSERTKEYWORD(program);
216         INSERTKEYWORD(segment_type);
217
218 #include "gen_irio_lex.inl"
219
220         INSERTENUM(tt_align, align_non_aligned);
221         INSERTENUM(tt_align, align_is_aligned);
222
223         INSERTENUM(tt_builtin, ir_bk_trap);
224         INSERTENUM(tt_builtin, ir_bk_debugbreak);
225         INSERTENUM(tt_builtin, ir_bk_return_address);
226         INSERTENUM(tt_builtin, ir_bk_frame_address);
227         INSERTENUM(tt_builtin, ir_bk_prefetch);
228         INSERTENUM(tt_builtin, ir_bk_ffs);
229         INSERTENUM(tt_builtin, ir_bk_clz);
230         INSERTENUM(tt_builtin, ir_bk_ctz);
231         INSERTENUM(tt_builtin, ir_bk_popcount);
232         INSERTENUM(tt_builtin, ir_bk_parity);
233         INSERTENUM(tt_builtin, ir_bk_bswap);
234         INSERTENUM(tt_builtin, ir_bk_inport);
235         INSERTENUM(tt_builtin, ir_bk_outport);
236         INSERTENUM(tt_builtin, ir_bk_inner_trampoline);
237
238         INSERTENUM(tt_cond_jmp_predicate, COND_JMP_PRED_NONE);
239         INSERTENUM(tt_cond_jmp_predicate, COND_JMP_PRED_TRUE);
240         INSERTENUM(tt_cond_jmp_predicate, COND_JMP_PRED_FALSE);
241
242         INSERTENUM(tt_initializer, IR_INITIALIZER_CONST);
243         INSERTENUM(tt_initializer, IR_INITIALIZER_TARVAL);
244         INSERTENUM(tt_initializer, IR_INITIALIZER_NULL);
245         INSERTENUM(tt_initializer, IR_INITIALIZER_COMPOUND);
246
247         INSERTENUM(tt_mode_arithmetic, irma_uninitialized);
248         INSERTENUM(tt_mode_arithmetic, irma_none);
249         INSERTENUM(tt_mode_arithmetic, irma_twos_complement);
250         INSERTENUM(tt_mode_arithmetic, irma_ones_complement);
251         INSERTENUM(tt_mode_arithmetic, irma_int_BCD);
252         INSERTENUM(tt_mode_arithmetic, irma_ieee754);
253         INSERTENUM(tt_mode_arithmetic, irma_float_BCD);
254
255         INSERTENUM(tt_pin_state, op_pin_state_floats);
256         INSERTENUM(tt_pin_state, op_pin_state_pinned);
257         INSERTENUM(tt_pin_state, op_pin_state_exc_pinned);
258         INSERTENUM(tt_pin_state, op_pin_state_mem_pinned);
259
260         INSERTENUM(tt_type_state, layout_undefined);
261         INSERTENUM(tt_type_state, layout_fixed);
262
263         INSERTENUM(tt_volatility, volatility_non_volatile);
264         INSERTENUM(tt_volatility, volatility_is_volatile);
265
266 #undef INSERTKEYWORD
267 #undef INSERTENUM
268 #undef INSERT
269 }
270
271 static const char *get_segment_name(ir_segment_t segment)
272 {
273         switch (segment) {
274         case IR_SEGMENT_GLOBAL:       return "global";
275         case IR_SEGMENT_THREAD_LOCAL: return "thread_local";
276         case IR_SEGMENT_CONSTRUCTORS: return "constructors";
277         case IR_SEGMENT_DESTRUCTORS:  return "destructors";
278         }
279         return "INVALID_SEGMENT";
280 }
281
282 static const char *get_visibility_name(ir_visibility visibility)
283 {
284         switch (visibility) {
285         case ir_visibility_local:    return "local";
286         case ir_visibility_external: return "external";
287         case ir_visibility_default:  return "default";
288         case ir_visibility_private:  return "private";
289         }
290         return "INVALID_VISIBILITY";
291 }
292
293 /** Returns the according symbol value for the given string and tag, or SYMERROR if none was found. */
294 static unsigned symbol(const char *str, typetag_t typetag)
295 {
296         symbol_t key, *entry;
297
298         key.str = str;
299         key.typetag = typetag;
300
301         entry = (symbol_t*)set_find(symtbl, &key, sizeof(key), firm_fnv_hash_str(str) + typetag * 17);
302         return entry ? entry->code : SYMERROR;
303 }
304
305 static void *get_id(io_env_t *env, long id)
306 {
307         id_entry key, *entry;
308         key.id = id;
309
310         entry = (id_entry*)set_find(env->idset, &key, sizeof(key), (unsigned) id);
311         return entry ? entry->elem : NULL;
312 }
313
314 static void set_id(io_env_t *env, long id, void *elem)
315 {
316         id_entry key;
317         key.id = id;
318         key.elem = elem;
319         set_insert(env->idset, &key, sizeof(key), (unsigned) id);
320 }
321
322 static void write_long(io_env_t *env, long value)
323 {
324         fprintf(env->file, "%ld ", value);
325 }
326
327 static void write_int(io_env_t *env, int value)
328 {
329         fprintf(env->file, "%d ", value);
330 }
331
332 static void write_unsigned(io_env_t *env, unsigned value)
333 {
334         fprintf(env->file, "%u ", value);
335 }
336
337 static void write_entity_ref(io_env_t *env, ir_entity *entity)
338 {
339         write_long(env, get_entity_nr(entity));
340 }
341
342 static void write_type_ref(io_env_t *env, ir_type *type)
343 {
344         write_long(env, get_type_nr(type));
345 }
346
347 static void write_string(io_env_t *env, const char *string)
348 {
349         const char *c;
350         fputc('"', env->file);
351         for (c = string; *c != '\0'; ++c) {
352                 switch (*c) {
353                 case '\n':
354                         fputc('\\', env->file);
355                         fputc('n', env->file);
356                         break;
357                 case '"':
358                 case '\\':
359                         fputc('\\', env->file);
360                         /* FALLTHROUGH */
361                 default:
362                         fputc(*c, env->file);
363                         break;
364                 }
365         }
366         fputc('"', env->file);
367 }
368
369 static void write_ident(io_env_t *env, ident *id)
370 {
371         write_string(env, get_id_str(id));
372         fputc(' ', env->file);
373 }
374
375 static void write_ident_null(io_env_t *env, ident *id)
376 {
377         if (id == NULL) {
378                 fputs("NULL ", env->file);
379         } else {
380                 write_ident(env, id);
381         }
382 }
383
384 static void write_mode(io_env_t *env, ir_mode *mode)
385 {
386         fputs(get_mode_name(mode), env->file);
387         fputc(' ', env->file);
388 }
389
390 static void write_tarval(io_env_t *env, ir_tarval *tv)
391 {
392         char buf[1024];
393         write_mode(env, get_tarval_mode(tv));
394         tarval_snprintf(buf, sizeof(buf), tv);
395         fputs(buf, env->file);
396         fputc(' ', env->file);
397 }
398
399 static void write_align(io_env_t *env, ir_align align)
400 {
401         fputs(get_align_name(align), env->file);
402         fputc(' ', env->file);
403 }
404
405 static void write_builtin_kind(io_env_t *env, ir_node *irn)
406 {
407         fputs(get_builtin_kind_name(get_Builtin_kind(irn)), env->file);
408         fputc(' ', env->file);
409 }
410
411 static void write_cond_jmp_predicate(io_env_t *env, ir_node *irn)
412 {
413         fputs(get_cond_jmp_predicate_name(get_Cond_jmp_pred(irn)), env->file);
414         fputc(' ', env->file);
415 }
416
417 static void write_list_begin(io_env_t *env)
418 {
419         fputs("[", env->file);
420 }
421
422 static void write_list_end(io_env_t *env)
423 {
424         fputs("] ", env->file);
425 }
426
427 static void write_initializer(io_env_t *env, ir_initializer_t *ini)
428 {
429         FILE *f = env->file;
430         ir_initializer_kind_t ini_kind = get_initializer_kind(ini);
431
432         fputs(get_initializer_kind_name(ini_kind), f);
433         fputc(' ', f);
434
435         switch (ini_kind) {
436         case IR_INITIALIZER_CONST:
437                 write_long(env, get_irn_node_nr(get_initializer_const_value(ini)));
438                 break;
439
440         case IR_INITIALIZER_TARVAL:
441                 write_tarval(env, get_initializer_tarval_value(ini));
442                 break;
443
444         case IR_INITIALIZER_NULL:
445                 break;
446
447         case IR_INITIALIZER_COMPOUND: {
448                 size_t i, n = get_initializer_compound_n_entries(ini);
449                 ir_fprintf(f, "%zu ", n);
450                 for (i = 0; i < n; ++i)
451                         write_initializer(env, get_initializer_compound_value(ini, i));
452                 break;
453         }
454
455         default:
456                 panic("Unknown initializer kind");
457         }
458 }
459
460 static void write_pin_state(io_env_t *env, ir_node *irn)
461 {
462         fputs(get_op_pin_state_name(get_irn_pinned(irn)), env->file);
463         fputc(' ', env->file);
464 }
465
466 static void write_volatility(io_env_t *env, ir_volatility vol)
467 {
468         fputs(get_volatility_name(vol), env->file);
469         fputc(' ', env->file);
470 }
471
472 static void export_type_common(io_env_t *env, ir_type *tp)
473 {
474         fprintf(env->file, "\ttype %ld %s %u %u %s %u ",
475                 get_type_nr(tp),
476                 get_type_tpop_name(tp),
477                 get_type_size_bytes(tp),
478                 get_type_alignment_bytes(tp),
479                 get_type_state_name(get_type_state(tp)),
480                 tp->flags);
481 }
482
483 static void export_type_pre(io_env_t *env, ir_type *tp)
484 {
485         FILE *f = env->file;
486
487         /* skip types to be handled by post walker */
488         switch (get_type_tpop_code(tp)) {
489         case tpo_array:
490         case tpo_method:
491         case tpo_pointer:
492                 return;
493         default:
494                 break;
495         }
496
497         export_type_common(env, tp);
498
499         switch (get_type_tpop_code(tp)) {
500         case tpo_uninitialized:
501                 panic("invalid type found");
502
503         case tpo_class:
504                 write_ident_null(env, get_compound_ident(tp));
505                 break;
506
507         case tpo_primitive:
508                 write_mode(env, get_type_mode(tp));
509                 break;
510
511         case tpo_union:
512         case tpo_struct:
513         case tpo_enumeration:
514                 write_ident_null(env, get_compound_ident(tp));
515                 break;
516
517         case tpo_array:
518         case tpo_method:
519         case tpo_pointer:
520         case tpo_code:
521         case tpo_none:
522         case tpo_unknown:
523                 break;
524         }
525         fputc('\n', f);
526 }
527
528 static void export_type_post(io_env_t *env, ir_type *tp)
529 {
530         FILE *f = env->file;
531         size_t i;
532
533         /* skip types already handled by pre walker */
534         switch (get_type_tpop_code(tp)) {
535         case tpo_class:
536         case tpo_primitive:
537         case tpo_struct:
538         case tpo_union:
539         case tpo_unknown:
540         case tpo_uninitialized:
541         case tpo_code:
542         case tpo_none:
543                 return;
544         case tpo_array:
545         case tpo_method:
546         case tpo_pointer:
547         case tpo_enumeration:
548                 break;
549         }
550
551         export_type_common(env, tp);
552
553         switch (get_type_tpop_code(tp)) {
554         case tpo_array: {
555                 size_t n = get_array_n_dimensions(tp);
556                 ir_fprintf(f, "%zu %ld ", n, get_type_nr(get_array_element_type(tp)));
557                 for (i = 0; i < n; i++) {
558                         ir_node *lower = get_array_lower_bound(tp, i);
559                         ir_node *upper = get_array_upper_bound(tp, i);
560
561                         if (is_Const(lower))
562                                 write_long(env, get_tarval_long(get_Const_tarval(lower)));
563                         else
564                                 panic("Lower array bound is not constant");
565
566                         if (is_Const(upper))
567                                 write_long(env, get_tarval_long(get_Const_tarval(upper)));
568                         else if (is_Unknown(upper))
569                                 fputs("unknown ", f);
570                         else
571                                 panic("Upper array bound is not constant");
572                 }
573                 break;
574         }
575
576         case tpo_method: {
577                 size_t nparams  = get_method_n_params(tp);
578                 size_t nresults = get_method_n_ress(tp);
579                 ir_fprintf(f, "%u %u %zu %zu ", get_method_calling_convention(tp),
580                         get_method_additional_properties(tp), nparams, nresults);
581                 for (i = 0; i < nparams; i++)
582                         write_long(env, get_type_nr(get_method_param_type(tp, i)));
583                 for (i = 0; i < nresults; i++)
584                         write_long(env, get_type_nr(get_method_res_type(tp, i)));
585                 ir_fprintf(f, "%u ", get_method_variadicity(tp));
586                 break;
587         }
588
589         case tpo_pointer:
590                 write_mode(env, get_type_mode(tp));
591                 write_long(env, get_type_nr(get_pointer_points_to_type(tp)));
592                 break;
593
594         case tpo_enumeration:
595                 fprintf(stderr, "Enumeration type not handled yet by exporter\n");
596                 break;
597
598         default:
599                 printf("export_type: Unknown type code \"%s\".\n",
600                        get_type_tpop_name(tp));
601                 break;
602         }
603         fputc('\n', f);
604 }
605
606 static void export_entity(io_env_t *env, ir_entity *ent)
607 {
608         FILE          *file       = env->file;
609         ir_type       *owner      = get_entity_owner(ent);
610         ir_visibility  visibility = get_entity_visibility(ent);
611         ir_linkage     linkage    = get_entity_linkage(ent);
612
613         /* we don't dump array_element_ent entities. They're a strange concept
614          * and lead to cycles in type_graph.
615          */
616         if (is_Array_type(owner))
617                 return;
618
619         fprintf(env->file, "\tentity ");
620         write_long(env, get_entity_nr(ent));
621         write_ident_null(env, get_entity_ident(ent));
622         if (!entity_has_ld_ident(ent)) {
623                 write_ident_null(env, NULL);
624         } else {
625                 write_ident_null(env, get_entity_ld_ident(ent));
626         }
627
628         /* visibility + linkage */
629         if (visibility != ir_visibility_default) {
630                 fprintf(file, "%s ", get_visibility_name(visibility));
631         }
632         if (linkage & IR_LINKAGE_CONSTANT)
633                 fputs("constant ", file);
634         if (linkage & IR_LINKAGE_WEAK)
635                 fputs("weak ", file);
636         if (linkage & IR_LINKAGE_GARBAGE_COLLECT)
637                 fputs("garbage_collect ", file);
638         if (linkage & IR_LINKAGE_MERGE)
639                 fputs("merge ", file);
640         if (linkage & IR_LINKAGE_HIDDEN_USER)
641                 fputs("hidden_user ", file);
642
643         fprintf(file, "%ld %ld %d %u %d %s ",
644                         get_type_nr(get_entity_type(ent)),
645                         get_type_nr(owner),
646                         get_entity_offset(ent),
647                         (unsigned) get_entity_offset_bits_remainder(ent),
648                         is_entity_compiler_generated(ent),
649                         get_volatility_name(get_entity_volatility(ent)));
650
651         if (ent->initializer != NULL) {
652                 fputs("initializer ", env->file);
653                 write_initializer(env, get_entity_initializer(ent));
654         } else if (entity_has_compound_ent_values(ent)) {
655                 size_t i, n = get_compound_ent_n_values(ent);
656                 fputs("compoundgraph ", env->file);
657                 ir_fprintf(env->file, "%zu ", n);
658                 for (i = 0; i < n; i++) {
659                         ir_entity *member = get_compound_ent_value_member(ent, i);
660                         ir_node   *irn    = get_compound_ent_value(ent, i);
661                         fprintf(env->file, "%ld %ld ", get_entity_nr(member), get_irn_node_nr(irn));
662                 }
663         } else {
664                 fputs("none", env->file);
665         }
666
667         fputc('\n', env->file);
668 }
669
670 static void export_type_or_ent_pre(type_or_ent tore, void *ctx)
671 {
672         io_env_t *env = (io_env_t *) ctx;
673         if (get_kind(tore.typ) == k_type)
674                 export_type_pre(env, tore.typ);
675 }
676
677 static void export_type_or_ent_post(type_or_ent tore, void *ctx)
678 {
679         io_env_t *env = (io_env_t *) ctx;
680
681         switch (get_kind(tore.ent)) {
682         case k_entity:
683                 export_entity(env, tore.ent);
684                 break;
685
686         case k_type:
687                 export_type_post(env, tore.typ);
688                 break;
689
690         default:
691                 panic("export_type_or_ent_post: Unknown type or entity.");
692                 break;
693         }
694 }
695
696 static void export_ASM(io_env_t *env, ir_node *node)
697 {
698         ir_asm_constraint *input_constraints    = get_ASM_input_constraints(node);
699         ir_asm_constraint *output_constraints   = get_ASM_output_constraints(node);
700         ident            **clobbers             = get_ASM_clobbers(node);
701         int                n_input_constraints  = get_ASM_n_input_constraints(node);
702         int                n_output_constraints = get_ASM_n_output_constraints(node);
703         int                n_clobbers           = get_ASM_n_clobbers(node);
704         int i;
705
706         write_ident(env, get_ASM_text(node));
707         write_list_begin(env);
708         for (i = 0; i < n_input_constraints; ++i) {
709                 const ir_asm_constraint *constraint = &input_constraints[i];
710                 write_unsigned(env, constraint->pos);
711                 write_ident(env, constraint->constraint);
712                 write_mode(env, constraint->mode);
713         }
714         write_list_end(env);
715
716         write_list_begin(env);
717         for (i = 0; i < n_output_constraints; ++i) {
718                 const ir_asm_constraint *constraint = &output_constraints[i];
719                 write_unsigned(env, constraint->pos);
720                 write_ident(env, constraint->constraint);
721                 write_mode(env, constraint->mode);
722         }
723         write_list_end(env);
724
725         write_list_begin(env);
726         for (i = 0; i < n_clobbers; ++i) {
727                 ident *clobber = clobbers[i];
728                 write_ident(env, clobber);
729         }
730         write_list_end(env);
731 }
732
733 /**
734  * Walker: exports every node.
735  */
736 static void export_node(ir_node *irn, void *ctx)
737 {
738         io_env_t *env = (io_env_t *) ctx;
739         int i, n;
740         unsigned opcode = get_irn_opcode(irn);
741
742         if (env->ignoreblocks && opcode == iro_Block)
743                 return;
744
745         fprintf(env->file, "\t%s ", get_irn_opname(irn));
746         write_long(env, get_irn_node_nr(irn));
747
748         write_list_begin(env);
749         n = get_irn_arity(irn);
750         if (!is_Block(irn)) {
751                 ir_node *block = get_nodes_block(irn);
752                 write_long(env, get_irn_node_nr(block));
753         }
754
755         for (i = 0; i < n; i++) {
756                 ir_node *pred = get_irn_n(irn, i);
757                 if (pred == NULL) {
758                         /* Anchor node may have NULL predecessors */
759                         assert(is_Anchor(irn));
760                         fputs("-1 ", env->file);
761                 } else {
762                         write_long(env, get_irn_node_nr(pred));
763                 }
764         }
765         write_list_end(env);
766
767         fputs("{ ", env->file);
768
769         switch (opcode) {
770         case iro_Start:
771         case iro_End:
772         case iro_Block:
773         case iro_Anchor:
774                 break;
775         case iro_SymConst:
776                 /* TODO: only symconst_addr_ent implemented yet */
777                 assert(get_SymConst_kind(irn) == symconst_addr_ent);
778                 fprintf(env->file, "%ld ", get_entity_nr(get_SymConst_entity(irn)));
779                 break;
780         case iro_Proj:
781                 write_mode(env, get_irn_mode(irn));
782                 fprintf(env->file, "%ld ", get_Proj_proj(irn));
783                 break;
784         case iro_ASM:
785                 export_ASM(env, irn);
786                 break;
787 #include "gen_irio_export.inl"
788         default:
789                 panic("no export code for node %+F\n", irn);
790         }
791         fputs("}\n", env->file);
792 }
793
794 static const char *get_mode_sort_name(ir_mode_sort sort)
795 {
796         switch (sort) {
797         case irms_auxiliary:        return "auxiliary";
798         case irms_control_flow:     return "control_flow";
799         case irms_memory:           return "memory";
800         case irms_internal_boolean: return "internal_boolean";
801         case irms_reference:        return "reference";
802         case irms_int_number:       return "int_number";
803         case irms_float_number:     return "float_number";
804         }
805         panic("invalid mode sort found");
806 }
807
808 static void export_modes(io_env_t *env)
809 {
810         size_t i, n_modes = get_irp_n_modes();
811
812         fputs("modes {\n", env->file);
813
814         for (i = 0; i < n_modes; i++) {
815                 ir_mode *mode = get_irp_mode(i);
816                 switch (get_mode_sort(mode)) {
817                 case irms_auxiliary:
818                 case irms_control_flow:
819                 case irms_memory:
820                 case irms_internal_boolean:
821                         /* skip "internal" modes, which may not be user defined */
822                         continue;
823                 default:
824                         break;
825                 }
826
827                 fprintf(env->file, "\tmode ");
828                 write_string(env, get_mode_name(mode));
829                 fprintf(env->file, "%s %u %d %s %u %u ",
830                         get_mode_sort_name(get_mode_sort(mode)),
831                         get_mode_size_bits(mode), get_mode_sign(mode),
832                         get_mode_arithmetic_name(get_mode_arithmetic(mode)),
833                         get_mode_modulo_shift(mode),
834                         get_mode_n_vector_elems(mode));
835                 if (mode_is_reference(mode)) {
836                         write_mode(env, get_reference_mode_signed_eq(mode));
837                         write_mode(env, get_reference_mode_unsigned_eq(mode));
838                 }
839                 fputc('\n', env->file);
840         }
841
842         fputs("}\n", env->file);
843 }
844
845 static void export_program(io_env_t *env)
846 {
847         FILE         *f = env->file;
848         ir_segment_t  s;
849
850         fputs("\nprogram {\n", f);
851         if (irp_prog_name_is_set()) {
852                 fprintf(f, "\tname ");
853                 write_string(env, get_irp_name());
854                 fputc('\n', f);
855         }
856
857         for (s = IR_SEGMENT_FIRST; s <= IR_SEGMENT_LAST; ++s) {
858                 ir_type *segment_type = get_segment_type(s);
859                 fprintf(f, "\tsegment_type %s ", get_segment_name(s));
860                 if (segment_type == NULL) {
861                         fputs(" NULL\n", f);
862                 } else {
863                         write_long(env, get_type_nr(segment_type));
864                         fputc('\n', f);
865                 }
866         }
867         fputs("}\n", f);
868 }
869
870 void ir_export(const char *filename)
871 {
872         FILE *file = fopen(filename, "wt");
873         if (file == NULL) {
874                 perror(filename);
875                 return;
876         }
877
878         ir_export_file(file, filename);
879         fclose(file);
880 }
881
882 /* Exports the whole irp to the given file in a textual form. */
883 void ir_export_file(FILE *file, const char *outputname)
884 {
885         io_env_t env;
886         size_t i, n_irgs = get_irp_n_irgs();
887
888         (void) outputname;
889         env.file = file;
890
891         export_modes(&env);
892
893         fputs("\ntypegraph {\n", env.file);
894         type_walk_prog(export_type_or_ent_pre, export_type_or_ent_post, &env);
895         fputs("}\n", env.file);
896
897         for (i = 0; i < n_irgs; i++) {
898                 ir_graph *irg       = get_irp_irg(i);
899                 ir_type  *valuetype = get_irg_value_param_type(irg);
900
901                 fprintf(env.file, "\nirg %ld %ld %ld {\n",
902                         get_entity_nr(get_irg_entity(irg)),
903                         get_type_nr(get_irg_frame_type(irg)),
904                         valuetype == NULL ? -1 : get_type_nr(valuetype));
905
906                 env.ignoreblocks = 0;
907                 irg_block_walk_graph(irg, NULL, export_node, &env);
908
909                 env.ignoreblocks = 1;
910                 irg_walk_anchors(irg, NULL, export_node, &env);
911
912                 fputs("}\n", env.file);
913         }
914
915         fprintf(env.file, "\nconstirg %ld {\n", get_irn_node_nr(get_const_code_irg()->current_block));
916
917         walk_const_code(NULL, export_node, &env);
918         fputs("}\n", env.file);
919
920         export_program(&env);
921 }
922
923 /* Exports the given irg to the given file. */
924 void ir_export_irg(ir_graph *irg, FILE *file, const char *outputname)
925 {
926         io_env_t env;
927
928         (void) outputname;
929         env.file = file;
930
931         export_modes(&env);
932
933         fputs("typegraph {\n", env.file);
934
935         type_walk_irg(irg, export_type_or_ent_pre, export_type_or_ent_post, &env);
936
937         fprintf(env.file, "}\n\nirg %ld {\n", get_entity_nr(get_irg_entity(irg)));
938
939         env.ignoreblocks = 0;
940         irg_block_walk_graph(irg, NULL, export_node, &env);
941
942         env.ignoreblocks = 1;
943         irg_walk_anchors(irg, NULL, export_node, &env);
944
945         /* TODO: Only output needed constants */
946         fprintf(env.file, "}\n\nconstirg %ld {\n", get_irn_node_nr(get_const_code_irg()->current_block));
947         walk_const_code(NULL, export_node, &env);
948         fputs("}\n", env.file);
949 }
950
951 static void read_c(io_env_t *env)
952 {
953         int c = fgetc(env->file);
954         env->c = c;
955         if (c == '\n')
956                 env->line++;
957 }
958
959 /** Returns the first non-whitespace character or EOF. **/
960 static void skip_ws(io_env_t *env)
961 {
962         while (true) {
963                 switch (env->c) {
964                 case ' ':
965                 case '\t':
966                 case '\n':
967                 case '\r':
968                         read_c(env);
969                         continue;
970
971                 default:
972                         return;
973                 }
974         }
975 }
976
977 static void skip_to(io_env_t *env, char to_ch)
978 {
979         while (env->c != to_ch && env->c != EOF) {
980                 read_c(env);
981         }
982 }
983
984 static int expect_char(io_env_t *env, char ch)
985 {
986         skip_ws(env);
987         if (env->c != ch) {
988                 parse_error(env, "Unexpected char '%c', expected '%c'\n",
989                             env->c, ch);
990                 return 0;
991         }
992         read_c(env);
993         return 1;
994 }
995
996 #define EXPECT(c) if (expect_char(env, (c))) {} else return 0
997
998 static char *read_word(io_env_t *env)
999 {
1000         skip_ws(env);
1001
1002         assert(obstack_object_size(&env->obst) == 0);
1003         while (true) {
1004                 int c = env->c;
1005                 switch (c) {
1006                 case EOF:
1007                 case ' ':
1008                 case '\t':
1009                 case '\n':
1010                 case '\r':
1011                         goto endofword;
1012
1013                 default:
1014                         obstack_1grow(&env->obst, c);
1015                         break;
1016                 }
1017                 read_c(env);
1018         }
1019
1020 endofword:
1021         obstack_1grow(&env->obst, '\0');
1022         return (char*)obstack_finish(&env->obst);
1023 }
1024
1025 static char *read_string(io_env_t *env)
1026 {
1027         skip_ws(env);
1028         if (env->c != '"') {
1029                 parse_error(env, "Expected string, got '%c'\n", env->c);
1030                 exit(1);
1031         }
1032         read_c(env);
1033
1034         assert(obstack_object_size(&env->obst) == 0);
1035         while (env->c != '"') {
1036                 if (env->c == EOF) {
1037                         parse_error(env, "Unexpected EOF while parsing string\n");
1038                         exit(1);
1039                 }
1040
1041                 if (env->c == '\\') {
1042                         read_c(env);
1043                         switch (env->c) {
1044                         case 'n':
1045                                 obstack_1grow(&env->obst, '\n');
1046                                 break;
1047                         case '"':
1048                         case '\\':
1049                                 obstack_1grow(&env->obst, env->c);
1050                                 break;
1051                         default:
1052                                 parse_error(env, "Unknown escape sequence '\\%c'\n", env->c);
1053                                 exit(1);
1054                                 break;
1055                         }
1056                 } else {
1057                         obstack_1grow(&env->obst, env->c);
1058                 }
1059                 read_c(env);
1060         }
1061         read_c(env);
1062         obstack_1grow(&env->obst, 0);
1063
1064         return (char*)obstack_finish(&env->obst);
1065 }
1066
1067 static ident *read_ident(io_env_t *env)
1068 {
1069         char  *str = read_string(env);
1070         ident *res = new_id_from_str(str);
1071         obstack_free(&env->obst, str);
1072         return res;
1073 }
1074
1075 /*
1076  * reads a "quoted string" or alternatively the token NULL
1077  */
1078 static char *read_string_null(io_env_t *env)
1079 {
1080         skip_ws(env);
1081         if (env->c == 'N') {
1082                 char *str = read_word(env);
1083                 if (strcmp(str, "NULL") == 0) {
1084                         obstack_free(&env->obst, str);
1085                         return NULL;
1086                 }
1087         } else if (env->c == '"') {
1088                 return read_string(env);
1089         }
1090
1091         parse_error(env, "Expected \"string\" or NULL\n");
1092         exit(1);
1093 }
1094
1095 static ident *read_ident_null(io_env_t *env)
1096 {
1097         ident *res;
1098         char  *str = read_string_null(env);
1099         if (str == NULL)
1100                 return NULL;
1101
1102         res = new_id_from_str(str);
1103         obstack_free(&env->obst, str);
1104         return res;
1105 }
1106
1107 static long read_long(io_env_t *env)
1108 {
1109         long  result;
1110         char *str;
1111
1112         skip_ws(env);
1113         if (!isdigit(env->c) && env->c != '-') {
1114                 parse_error(env, "Expected number, got '%c'\n", env->c);
1115                 exit(1);
1116         }
1117
1118         assert(obstack_object_size(&env->obst) == 0);
1119         do {
1120                 obstack_1grow(&env->obst, env->c);
1121                 read_c(env);
1122         } while (isdigit(env->c));
1123         obstack_1grow(&env->obst, 0);
1124
1125         str = (char*)obstack_finish(&env->obst);
1126         result = atol(str);
1127         obstack_free(&env->obst, str);
1128
1129         return result;
1130 }
1131
1132 static int read_int(io_env_t *env)
1133 {
1134         return (int) read_long(env);
1135 }
1136
1137 static unsigned read_unsigned(io_env_t *env)
1138 {
1139         return (unsigned) read_long(env);
1140 }
1141
1142 static size_t read_size_t(io_env_t *env)
1143 {
1144         /* FIXME */
1145         return (size_t) read_unsigned(env);
1146 }
1147
1148 static void expect_list_begin(io_env_t *env)
1149 {
1150         skip_ws(env);
1151         if (env->c != '[') {
1152                 parse_error(env, "Expected list, got '%c'\n", env->c);
1153                 exit(1);
1154         }
1155         read_c(env);
1156 }
1157
1158 static bool list_has_next(io_env_t *env)
1159 {
1160         if (feof(env->file)) {
1161                 parse_error(env, "Unexpected EOF while reading list");
1162                 exit(1);
1163         }
1164         skip_ws(env);
1165         if (env->c == ']') {
1166                 read_c(env);
1167                 return false;
1168         }
1169
1170         return true;
1171 }
1172
1173 static ir_node *get_node_or_null(io_env_t *env, long nodenr)
1174 {
1175         ir_node *node = (ir_node *) get_id(env, nodenr);
1176         if (node && node->kind != k_ir_node) {
1177                 panic("Irn ID %ld collides with something else in line %d\n",
1178                       nodenr, env->line);
1179         }
1180         return node;
1181 }
1182
1183 static ir_node *get_node_or_dummy(io_env_t *env, long nodenr)
1184 {
1185         ir_node *node = get_node_or_null(env, nodenr);
1186         if (node == NULL) {
1187                 node = new_r_Dummy(env->irg, mode_X);
1188                 set_id(env, nodenr, node);
1189         }
1190         return node;
1191 }
1192
1193 static ir_type *get_type(io_env_t *env, long typenr)
1194 {
1195         ir_type *type = (ir_type *) get_id(env, typenr);
1196         if (type == NULL)
1197                 panic("unknown type: %ld in line %d\n", typenr, env->line);
1198         else if (type->kind != k_type)
1199                 panic("type ID %ld collides with something else in line %d\n",
1200                       typenr, env->line);
1201         return type;
1202 }
1203
1204 static ir_type *read_type(io_env_t *env)
1205 {
1206         return get_type(env, read_long(env));
1207 }
1208
1209 static ir_entity *get_entity(io_env_t *env, long entnr)
1210 {
1211         ir_entity *entity = (ir_entity *) get_id(env, entnr);
1212         if (entity == NULL) {
1213                 parse_error(env, "unknown entity: %ld\n", entnr);
1214                 exit(1);
1215         } else if (entity->kind != k_entity) {
1216                 panic("Entity ID %ld collides with something else in line %d\n",
1217                       entnr, env->line);
1218         }
1219
1220         return entity;
1221 }
1222
1223 static ir_entity *read_entity(io_env_t *env)
1224 {
1225         return get_entity(env, read_long(env));
1226 }
1227
1228 static ir_mode *read_mode(io_env_t *env)
1229 {
1230         char *str = read_word(env);
1231         size_t i, n;
1232
1233         n = get_irp_n_modes();
1234         for (i = 0; i < n; i++) {
1235                 ir_mode *mode = get_irp_mode(i);
1236                 if (strcmp(str, get_mode_name(mode)) == 0) {
1237                         obstack_free(&env->obst, str);
1238                         return mode;
1239                 }
1240         }
1241
1242         parse_error(env, "unknown mode \"%s\"\n", str);
1243         exit(1);
1244 }
1245
1246 static const char *get_typetag_name(typetag_t typetag)
1247 {
1248         switch (typetag) {
1249         case tt_align:              return "align";
1250         case tt_allocation:         return "allocation";
1251         case tt_builtin:            return "builtin kind";
1252         case tt_cond_jmp_predicate: return "cond_jmp_predicate";
1253         case tt_initializer:        return "initializer kind";
1254         case tt_iro:                return "opcode";
1255         case tt_keyword:            return "keyword";
1256         case tt_linkage:            return "linkage";
1257         case tt_mode_arithmetic:    return "mode_arithmetic";
1258         case tt_mode_sort:          return "mode_sort";
1259         case tt_pin_state:          return "pin state";
1260         case tt_segment:            return "segment";
1261         case tt_tpo:                return "type";
1262         case tt_type_state:         return "type state";
1263         case tt_volatility:         return "volatility";
1264         case tt_visibility:         return "visibility";
1265         }
1266         return "<UNKNOWN>";
1267 }
1268
1269 /**
1270  * Read and decode an enum constant.
1271  */
1272 static unsigned read_enum(io_env_t *env, typetag_t typetag)
1273 {
1274         char     *str  = read_word(env);
1275         unsigned  code = symbol(str, typetag);
1276
1277         if (code != SYMERROR) {
1278                 obstack_free(&env->obst, str);
1279                 return code;
1280         }
1281
1282         parse_error(env, "invalid %s: \"%s\"\n", get_typetag_name(typetag), str);
1283         return 0;
1284 }
1285
1286 #define read_align(env)              ((ir_align)              read_enum(env, tt_align))
1287 #define read_allocation(env)         ((ir_allocation)         read_enum(env, tt_allocation))
1288 #define read_builtin_kind(env)       ((ir_builtin_kind)       read_enum(env, tt_builtin))
1289 #define read_cond_jmp_predicate(env) ((cond_jmp_predicate)    read_enum(env, tt_cond_jmp_predicate))
1290 #define read_initializer_kind(env)   ((ir_initializer_kind_t) read_enum(env, tt_initializer))
1291 #define read_mode_arithmetic(env)    ((ir_mode_arithmetic)    read_enum(env, tt_mode_arithmetic))
1292 #define read_peculiarity(env)        ((ir_peculiarity)        read_enum(env, tt_peculiarity))
1293 #define read_pin_state(env)          ((op_pin_state)          read_enum(env, tt_pin_state))
1294 #define read_type_state(env)         ((ir_type_state)         read_enum(env, tt_type_state))
1295 #define read_variability(env)        ((ir_variability)        read_enum(env, tt_variability))
1296 #define read_volatility(env)         ((ir_volatility)         read_enum(env, tt_volatility))
1297
1298 static ir_cons_flags get_cons_flags(io_env_t *env)
1299 {
1300         ir_cons_flags flags = cons_none;
1301
1302         op_pin_state pinstate = read_pin_state(env);
1303         switch (pinstate) {
1304         case op_pin_state_floats: flags |= cons_floats; break;
1305         case op_pin_state_pinned: break;
1306         default:
1307                 panic("Error in %d: Invalid pinstate: %s", env->line,
1308                       get_op_pin_state_name(pinstate));
1309         }
1310
1311         if (read_volatility(env) == volatility_is_volatile)
1312                 flags |= cons_volatile;
1313         if (read_align(env) == align_non_aligned)
1314                 flags |= cons_unaligned;
1315
1316         return flags;
1317 }
1318
1319 static ir_tarval *read_tv(io_env_t *env)
1320 {
1321         ir_mode   *tvmode = read_mode(env);
1322         char      *str    = read_word(env);
1323         ir_tarval *tv     = new_tarval_from_str(str, strlen(str), tvmode);
1324         obstack_free(&env->obst, str);
1325
1326         return tv;
1327 }
1328
1329 static ir_initializer_t *read_initializer(io_env_t *env)
1330 {
1331         ir_initializer_kind_t ini_kind = read_initializer_kind(env);
1332
1333         switch (ini_kind) {
1334         case IR_INITIALIZER_CONST: {
1335                 ir_node *irn = get_node_or_dummy(env, read_long(env));
1336                 return create_initializer_const(irn);
1337         }
1338
1339         case IR_INITIALIZER_TARVAL:
1340                 return create_initializer_tarval(read_tv(env));
1341
1342         case IR_INITIALIZER_NULL:
1343                 return get_initializer_null();
1344
1345         case IR_INITIALIZER_COMPOUND: {
1346                 size_t i, n = read_size_t(env);
1347                 ir_initializer_t *ini = create_initializer_compound(n);
1348                 for (i = 0; i < n; i++) {
1349                         ir_initializer_t *curini = read_initializer(env);
1350                         set_initializer_compound_value(ini, i, curini);
1351                 }
1352                 return ini;
1353         }
1354
1355         default:
1356                 panic("Unknown initializer kind");
1357         }
1358 }
1359
1360
1361 /** Reads a type description and remembers it by its id. */
1362 static void import_type(io_env_t *env)
1363 {
1364         int            i;
1365         ir_type       *type;
1366         long           typenr = read_long(env);
1367         tp_opcode      tpop   = (tp_opcode) read_enum(env, tt_tpo);
1368         unsigned       size   = (unsigned) read_long(env);
1369         unsigned       align  = (unsigned) read_long(env);
1370         ir_type_state  state  = read_type_state(env);
1371         unsigned       flags  = (unsigned) read_long(env);
1372
1373         switch (tpop) {
1374         case tpo_array: {
1375                 int ndims = (int) read_long(env);
1376                 long elemtypenr = read_long(env);
1377                 ir_type *elemtype = get_type(env, elemtypenr);
1378
1379                 type = new_type_array(ndims, elemtype);
1380                 for (i = 0; i < ndims; i++) {
1381                         char *str = read_word(env);
1382                         if (strcmp(str, "unknown") != 0) {
1383                                 long lowerbound = atol(str);
1384                                 set_array_lower_bound_int(type, i, lowerbound);
1385                         }
1386                         obstack_free(&env->obst, str);
1387
1388                         str = read_word(env);
1389                         if (strcmp(str, "unknown") != 0) {
1390                                 long upperbound = atol(str);
1391                                 set_array_upper_bound_int(type, i, upperbound);
1392                         }
1393                         obstack_free(&env->obst, str);
1394                 }
1395                 set_type_size_bytes(type, size);
1396                 break;
1397         }
1398
1399         case tpo_class: {
1400                 ident *id = read_ident_null(env);
1401
1402                 if (typenr == (long) IR_SEGMENT_GLOBAL)
1403                         type = get_glob_type();
1404                 else
1405                         type = new_type_class(id);
1406                 set_type_size_bytes(type, size);
1407                 break;
1408         }
1409
1410         case tpo_method: {
1411                 unsigned                  callingconv = (unsigned) read_long(env);
1412                 mtp_additional_properties addprops    = (mtp_additional_properties) read_long(env);
1413                 int nparams          = (int)      read_long(env);
1414                 int nresults         = (int)      read_long(env);
1415                 int variadicity;
1416
1417                 type = new_type_method(nparams, nresults);
1418
1419                 for (i = 0; i < nparams; i++) {
1420                         long     typenr = read_long(env);
1421                         ir_type *paramtype = get_type(env, typenr);
1422
1423                         set_method_param_type(type, i, paramtype);
1424                 }
1425                 for (i = 0; i < nresults; i++) {
1426                         long typenr = read_long(env);
1427                         ir_type *restype = get_type(env, typenr);
1428
1429                         set_method_res_type(type, i, restype);
1430                 }
1431
1432                 variadicity = (int) read_long(env);
1433                 set_method_variadicity(type, variadicity);
1434
1435                 set_method_calling_convention(type, callingconv);
1436                 set_method_additional_properties(type, addprops);
1437                 break;
1438         }
1439
1440         case tpo_pointer: {
1441                 ir_mode *mode     = read_mode(env);
1442                 ir_type *pointsto = get_type(env, read_long(env));
1443                 type = new_type_pointer(pointsto);
1444                 set_type_mode(type, mode);
1445                 break;
1446         }
1447
1448         case tpo_primitive: {
1449                 ir_mode *mode = read_mode(env);
1450                 type = new_type_primitive(mode);
1451                 break;
1452         }
1453
1454         case tpo_struct: {
1455                 ident *id = read_ident_null(env);
1456                 type = new_type_struct(id);
1457                 set_type_size_bytes(type, size);
1458                 break;
1459         }
1460
1461         case tpo_union: {
1462                 ident *id = read_ident_null(env);
1463                 type = new_type_union(id);
1464                 set_type_size_bytes(type, size);
1465                 break;
1466         }
1467
1468         case tpo_unknown:
1469                 return;   /* ignore unknown type */
1470
1471         default:
1472                 parse_error(env, "unknown type kind: \"%d\"\n", tpop);
1473                 skip_to(env, '\n');
1474                 return;
1475         }
1476
1477         set_type_alignment_bytes(type, align);
1478         type->flags = flags;
1479
1480         if (state == layout_fixed)
1481                 ARR_APP1(ir_type *, env->fixedtypes, type);
1482
1483         set_id(env, typenr, type);
1484 }
1485
1486 /** Reads an entity description and remembers it by its id. */
1487 static void import_entity(io_env_t *env)
1488 {
1489         long           entnr      = read_long(env);
1490         ident         *name       = read_ident(env);
1491         ident         *ld_name    = read_ident_null(env);
1492         ir_visibility  visibility = ir_visibility_default;
1493         ir_linkage     linkage    = IR_LINKAGE_DEFAULT;
1494         long           typenr;
1495         long           ownertypenr;
1496         const char    *str;
1497         ir_type       *type;
1498         ir_type       *ownertype;
1499         ir_entity     *entity;
1500
1501         skip_ws(env);
1502         while (!isdigit(env->c)) {
1503                 char     *str = read_word(env);
1504                 unsigned  v;
1505
1506                 skip_ws(env);
1507
1508                 v = symbol(str, tt_visibility);
1509                 if (v != SYMERROR) {
1510                         visibility = (ir_visibility)v;
1511                         continue;
1512                 }
1513                 v = symbol(str, tt_linkage);
1514                 if (v != SYMERROR) {
1515                         linkage |= (ir_linkage)v;
1516                         continue;
1517                 }
1518                 printf("Parser error, expected visibility or linkage, got '%s'\n",
1519                        str);
1520                 break;
1521         }
1522
1523         typenr      = read_long(env);
1524         ownertypenr = read_long(env);
1525
1526         type      = get_type(env, typenr);
1527         ownertype = !ownertypenr ? get_glob_type() : get_type(env, ownertypenr);
1528         entity    = new_entity(ownertype, name, type);
1529
1530         if (ld_name != NULL)
1531                 set_entity_ld_ident(entity, ld_name);
1532         set_entity_offset(entity, (int) read_long(env));
1533         set_entity_offset_bits_remainder(entity, (unsigned char) read_long(env));
1534         set_entity_compiler_generated(entity, (int) read_long(env));
1535         set_entity_volatility(entity, read_volatility(env));
1536         set_entity_visibility(entity, visibility);
1537         set_entity_linkage(entity, linkage);
1538
1539         str = read_word(env);
1540         if (strcmp(str, "initializer") == 0) {
1541                 set_entity_initializer(entity, read_initializer(env));
1542         } else if (strcmp(str, "compoundgraph") == 0) {
1543                 int n = (int) read_long(env);
1544                 int i;
1545                 for (i = 0; i < n; i++) {
1546                         ir_entity *member = get_entity(env, read_long(env));
1547                         ir_node   *irn    = get_node_or_dummy(env, read_long(env));
1548                         add_compound_ent_value(entity, irn, member);
1549                 }
1550         } else if (strcmp(str, "none") == 0) {
1551                 /* do nothing */
1552         } else {
1553                 parse_error(env, "expected 'initializer', 'compoundgraph' or 'none' got '%s'\n", str);
1554                 exit(1);
1555         }
1556
1557         set_id(env, entnr, entity);
1558 }
1559
1560 /** Parses the whole type graph. */
1561 static int parse_typegraph(io_env_t *env)
1562 {
1563         ir_graph *old_irg = env->irg;
1564         keyword_t kwkind;
1565
1566         EXPECT('{');
1567
1568         env->irg = get_const_code_irg();
1569
1570         /* parse all types first */
1571         while (true) {
1572                 skip_ws(env);
1573                 if (env->c == '}') {
1574                         read_c(env);
1575                         break;
1576                 }
1577
1578                 kwkind = (keyword_t) read_enum(env, tt_keyword);
1579                 switch (kwkind) {
1580                 case kw_type:
1581                         import_type(env);
1582                         break;
1583
1584                 case kw_entity:
1585                         import_entity(env);
1586                         break;
1587
1588                 default:
1589                         parse_error(env, "type graph element not supported yet: %d\n", kwkind);
1590                         skip_to(env, '\n');
1591                         break;
1592                 }
1593         }
1594         env->irg = old_irg;
1595         return 1;
1596 }
1597
1598 static int read_node_header(io_env_t *env, long *nodenr, ir_node ***preds,
1599                             const char **nodename)
1600 {
1601         int numpreds;
1602
1603         *nodename = read_word(env);
1604         *nodenr   = read_long(env);
1605
1606         ARR_RESIZE(ir_node*, *preds, 0);
1607
1608         expect_list_begin(env);
1609         for (numpreds = 0; list_has_next(env); numpreds++) {
1610                 long     val  = read_long(env);
1611                 ir_node *pred = get_node_or_dummy(env, val);
1612                 ARR_APP1(ir_node*, *preds, pred);
1613         }
1614
1615         return numpreds;
1616 }
1617
1618 static ir_node *read_ASM(io_env_t *env, int numpreds, ir_node **preds)
1619 {
1620         ir_node *newnode;
1621         ir_asm_constraint *input_constraints  = NEW_ARR_F(ir_asm_constraint, 0);
1622         ir_asm_constraint *output_constraints = NEW_ARR_F(ir_asm_constraint, 0);
1623         ident            **clobbers           = NEW_ARR_F(ident*, 0);
1624
1625         ident *asm_text = read_ident(env);
1626
1627         expect_list_begin(env);
1628         while (list_has_next(env)) {
1629                 ir_asm_constraint constraint;
1630                 constraint.pos        = read_unsigned(env);
1631                 constraint.constraint = read_ident(env);
1632                 constraint.mode       = read_mode(env);
1633                 ARR_APP1(ir_asm_constraint, input_constraints, constraint);
1634         }
1635
1636         expect_list_begin(env);
1637         while (list_has_next(env)) {
1638                 ir_asm_constraint constraint;
1639                 constraint.pos        = read_unsigned(env);
1640                 constraint.constraint = read_ident(env);
1641                 constraint.mode       = read_mode(env);
1642                 ARR_APP1(ir_asm_constraint, output_constraints, constraint);
1643         }
1644
1645         expect_list_begin(env);
1646         while (list_has_next(env)) {
1647                 ident *clobber = read_ident(env);
1648                 ARR_APP1(ident*, clobbers, clobber);
1649         }
1650
1651         assert(ARR_LEN(input_constraints) == (size_t)numpreds-1);
1652
1653         newnode = new_r_ASM(preds[0], numpreds-1, preds+1,
1654                         input_constraints,
1655                         ARR_LEN(output_constraints),
1656                         output_constraints,
1657                         ARR_LEN(clobbers),
1658                         clobbers,
1659                         asm_text);
1660         DEL_ARR_F(clobbers);
1661         DEL_ARR_F(output_constraints);
1662         DEL_ARR_F(input_constraints);
1663         return newnode;
1664 }
1665
1666 /** Parses an IRG. */
1667 static int parse_graph(io_env_t *env, ir_graph *irg)
1668 {
1669         ir_node   **preds = NEW_ARR_F(ir_node*,0);
1670         int         i, numpreds, ret = 1;
1671         long        nodenr;
1672         const char *nodename;
1673         ir_node    *node, *newnode;
1674
1675         env->irg = irg;
1676
1677         EXPECT('{');
1678
1679         while (true) {
1680                 skip_ws(env);
1681                 if (env->c == '}') {
1682                         read_c(env);
1683                         break;
1684                 }
1685
1686                 numpreds = read_node_header(env, &nodenr, &preds, &nodename);
1687
1688                 node = get_node_or_null(env, nodenr);
1689                 newnode = NULL;
1690
1691                 EXPECT('{');
1692
1693                 switch (symbol(nodename, tt_iro)) {
1694                 case iro_End: {
1695                         ir_node *newendblock = preds[0];
1696                         newnode = get_irg_end(irg);
1697                         exchange(get_nodes_block(newnode), newendblock);
1698                         for (i = 1; i < numpreds; i++)
1699                                 add_irn_n(newnode, preds[i]);
1700                         break;
1701                 }
1702
1703                 case iro_Start: {
1704                         ir_node *newstartblock = preds[0];
1705                         newnode = get_irg_start(irg);
1706                         exchange(get_nodes_block(newnode), newstartblock);
1707                         break;
1708                 }
1709
1710                 case iro_Block:
1711                         newnode = new_r_Block(irg, numpreds, preds);
1712                         break;
1713
1714                 case iro_Anchor:
1715                         newnode = irg->anchor;
1716                         for (i = 1; i < numpreds; i++)
1717                                 set_irn_n(newnode, i-1, preds[i]);
1718                         set_nodes_block(newnode, preds[0]);
1719                         break;
1720
1721                 case iro_SymConst: {
1722                         long entnr = read_long(env);
1723                         union symconst_symbol sym;
1724                         sym.entity_p = get_entity(env, entnr);
1725                         newnode = new_r_SymConst(irg, mode_P, sym, symconst_addr_ent);
1726                         break;
1727                 }
1728
1729                 case iro_Proj: {
1730                         ir_mode *mode = read_mode(env);
1731                         long     pn   = read_long(env);
1732                         newnode = new_r_Proj(preds[1], mode, pn);
1733                         /* explicitely set block, since preds[1] might be a dummy node
1734                          * which is always in the startblock */
1735                         set_nodes_block(newnode, preds[0]);
1736                         break;
1737                 }
1738
1739                 case iro_ASM:
1740                         newnode = read_ASM(env, numpreds, preds);
1741                         break;
1742
1743                 #include "gen_irio_import.inl"
1744
1745                 default:
1746                         goto notsupported;
1747                 }
1748
1749                 EXPECT('}');
1750
1751                 if (!newnode) {
1752 notsupported:
1753                         parse_error(env, "node type not supported yet: %s\n", nodename);
1754                         abort();
1755                 }
1756
1757                 if (node)
1758                         exchange(node, newnode);
1759                 /* Always update hash entry to avoid more uses of id nodes */
1760                 set_id(env, nodenr, newnode);
1761         }
1762
1763         DEL_ARR_F(preds);
1764
1765         return ret;
1766 }
1767
1768 static int parse_modes(io_env_t *env)
1769 {
1770         EXPECT('{');
1771
1772         while (true) {
1773                 keyword_t kwkind;
1774
1775                 skip_ws(env);
1776                 if (env->c == '}') {
1777                         read_c(env);
1778                         break;
1779                 }
1780
1781                 kwkind = (keyword_t) read_enum(env, tt_keyword);
1782                 switch (kwkind) {
1783                 case kw_mode: {
1784                         const char *name = read_string(env);
1785                         ir_mode_sort sort = (ir_mode_sort)read_enum(env, tt_mode_sort);
1786                         int size = read_long(env);
1787                         int sign = read_long(env);
1788                         ir_mode_arithmetic arith = read_mode_arithmetic(env);
1789                         unsigned modulo_shift = read_long(env);
1790                         int vector_elems = read_long(env);
1791                         ir_mode *mode;
1792
1793                         if (vector_elems != 1) {
1794                                 panic("no support for import of vector modes yes");
1795                         }
1796
1797                         mode = new_ir_mode(name, sort, size, sign, arith, modulo_shift);
1798                         if (mode_is_reference(mode)) {
1799                                 set_reference_mode_signed_eq(mode, read_mode(env));
1800                                 set_reference_mode_unsigned_eq(mode, read_mode(env));
1801                         }
1802                         break;
1803                 }
1804
1805                 default:
1806                         skip_to(env, '\n');
1807                         break;
1808                 }
1809         }
1810         return 1;
1811 }
1812
1813 static int parse_program(io_env_t *env)
1814 {
1815         EXPECT('{');
1816
1817         while (true) {
1818                 keyword_t kwkind;
1819
1820                 skip_ws(env);
1821                 if (env->c == '}') {
1822                         read_c(env);
1823                         break;
1824                 }
1825
1826                 kwkind = (keyword_t) read_enum(env, tt_keyword);
1827                 switch (kwkind) {
1828                 case kw_segment_type: {
1829                         ir_segment_t  segment = (ir_segment_t) read_enum(env, tt_segment);
1830                         ir_type      *type    = read_type(env);
1831                         set_segment_type(segment, type);
1832                         break;
1833                 }
1834                 default:
1835                         parse_error(env, "unexpected keyword %d\n", kwkind);
1836                         skip_to(env, '\n');
1837                 }
1838         }
1839         return 1;
1840 }
1841
1842 void ir_import(const char *filename)
1843 {
1844         FILE *file = fopen(filename, "rt");
1845         if (file == NULL) {
1846                 perror(filename);
1847                 exit(1);
1848         }
1849
1850         ir_import_file(file, filename);
1851
1852         fclose(file);
1853 }
1854
1855 void ir_import_file(FILE *input, const char *inputname)
1856 {
1857         int oldoptimize = get_optimize();
1858         firm_verification_t oldver = get_node_verification_mode();
1859         io_env_t ioenv;
1860         io_env_t *env = &ioenv;
1861         size_t i, n;
1862
1863         symtbl_init();
1864
1865         memset(env, 0, sizeof(*env));
1866         obstack_init(&env->obst);
1867         env->idset      = new_set(id_cmp, 128);
1868         env->fixedtypes = NEW_ARR_F(ir_type *, 0);
1869         env->inputname  = inputname;
1870         env->file       = input;
1871         env->line       = 1;
1872
1873         /* read first character */
1874         read_c(env);
1875
1876         set_optimize(0);
1877         do_node_verification(FIRM_VERIFICATION_OFF);
1878
1879         while (true) {
1880                 keyword_t kw;
1881
1882                 skip_ws(env);
1883                 if (env->c == EOF)
1884                         break;
1885
1886                 kw = (keyword_t)read_enum(env, tt_keyword);
1887                 switch (kw) {
1888                 case kw_modes:
1889                         if (!parse_modes(env)) goto end;
1890                         break;
1891
1892                 case kw_typegraph:
1893                         if (!parse_typegraph(env)) goto end;
1894                         break;
1895
1896                 case kw_irg:
1897                 {
1898                         ir_entity *irgent = get_entity(env, read_long(env));
1899                         long valuetypeid;
1900                         ir_graph *irg = new_ir_graph(irgent, 0);
1901                         set_irg_frame_type(irg, get_type(env, read_long(env)));
1902                         valuetypeid = read_long(env);
1903                         if (valuetypeid != -1)
1904                                 set_method_value_param_type(get_entity_type(irgent),
1905                                                 get_type(env, valuetypeid));
1906
1907                         if (!parse_graph(env, irg)) goto end;
1908                         break;
1909                 }
1910
1911                 case kw_constirg: {
1912                         ir_graph *constirg = get_const_code_irg();
1913                         long bodyblockid = read_long(env);
1914                         set_id(env, bodyblockid, constirg->current_block);
1915                         if (!parse_graph(env, constirg)) goto end;
1916                         break;
1917                 }
1918
1919                 case kw_program:
1920                         parse_program(env);
1921                         break;
1922
1923                 default: {
1924                         parse_error(env, "Unexpected keyword %d at toplevel\n", kw);
1925                         exit(1);
1926                 }
1927                 }
1928         }
1929
1930 end:
1931         n = ARR_LEN(env->fixedtypes);
1932         for (i = 0; i < n; i++)
1933                 set_type_state(env->fixedtypes[i], layout_fixed);
1934
1935         DEL_ARR_F(env->fixedtypes);
1936
1937         del_set(env->idset);
1938
1939         irp_finalize_cons();
1940
1941         do_node_verification(oldver);
1942         set_optimize(oldoptimize);
1943
1944         obstack_free(&env->obst, NULL);
1945 }