10d1896795e9aff2568e526056a291cf27f25197
[libfirm] / ir / ana / vrp.c
1 /*
2  * Copyright (C) 1995-2010 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   analyze graph to provide value range information
23  * @author  Jonas Fietz
24  * @version $Id$
25  */
26 #include "config.h"
27
28 #include "irtypes.h"
29 #include "vrp.h"
30 #include "iroptimize.h"
31 #include "irouts.h"
32 #include "irgraph_t.h"
33 #include "irgopt.h"
34 #include "irpass.h"
35 #include "irgwalk.h"
36 #include "iredges.h"
37 #include "tv.h"
38 #include "irop.h"
39 #include "pdeq.h"
40 #include "irphase_t.h"
41 #include "bitset.h"
42 #include "debug.h"
43
44 DEBUG_ONLY(static firm_dbg_module_t *dbg);
45
46 typedef struct vrp_env_t {
47         waitq    *workqueue;
48         bitset_t *visited;
49 } vrp_env_t;
50
51 static vrp_attr *get_vrp_attr(const ir_node *node)
52 {
53         return (vrp_attr*) get_or_set_irn_phase_info(node, PHASE_VRP);
54 }
55
56 static int vrp_update_node(ir_node *node)
57 {
58         ir_tarval *new_bits_set = get_tarval_bad();
59         ir_tarval *new_bits_not_set = get_tarval_bad();
60         ir_tarval *new_range_bottom = get_tarval_bad();
61         ir_tarval *new_range_top = get_tarval_bad();
62         enum range_types new_range_type = VRP_UNDEFINED;
63         int something_changed = 0;
64         vrp_attr *vrp;
65
66         if (!mode_is_int(get_irn_mode(node))) {
67                 return 0; /* we don't optimize for non-int-nodes*/
68         }
69
70         vrp = get_vrp_attr(node);
71
72         /* TODO: Check if all predecessors have valid VRP information*/
73
74         switch (get_irn_opcode(node)) {
75         case iro_Const: {
76                 ir_tarval *tv = get_Const_tarval(node);
77                 new_bits_set = tv;
78                 new_bits_not_set = tv;
79                 new_range_bottom = tv;
80                 new_range_top = tv;
81                 new_range_type = VRP_RANGE;
82                 break;
83         }
84         case iro_And: {
85                 const vrp_attr *vrp_left, *vrp_right;
86                 const ir_node *left, *right;
87
88                 left = get_And_left(node);
89                 right = get_And_right(node);
90                 vrp_left = get_vrp_attr(left);
91                 vrp_right = get_vrp_attr(right);
92                 new_bits_set = tarval_and(vrp_left->bits_set, vrp_right->bits_set);
93                 new_bits_not_set = tarval_and(vrp_left->bits_not_set, vrp_right->bits_not_set);
94
95                 break;
96         }
97
98         case iro_Add: {
99                 int overflow_top, overflow_bottom;
100                 ir_tarval *new_top, *new_bottom;
101                 const vrp_attr *vrp_left, *vrp_right;
102                 vrp_left = get_vrp_attr(get_Add_left(node));
103                 vrp_right = get_vrp_attr(get_Add_right(node));
104
105                 if (vrp_left->range_type == VRP_UNDEFINED || vrp_right->range_type ==
106                                 VRP_UNDEFINED || vrp_left->range_type == VRP_VARYING ||
107                                 vrp_right->range_type == VRP_VARYING) {
108                         return 0;
109                 }
110
111                 new_top = tarval_add(vrp_left->range_top, vrp_right->range_top);
112                 overflow_top = tarval_carry();
113                 new_bottom = tarval_add(vrp_left->range_bottom, vrp_right->range_bottom);
114                 overflow_bottom = tarval_carry();
115
116                 if (!overflow_top && !overflow_bottom && vrp_left->range_type == VRP_RANGE
117                                 &&vrp_right->range_type == VRP_RANGE) {
118                         new_range_bottom = new_bottom;
119                         new_range_top = new_top;
120                         new_range_type = VRP_RANGE;
121                 }
122
123                 if (overflow_top || overflow_bottom) {
124                         /* TODO Implement overflow handling*/
125                         new_range_type = VRP_UNDEFINED;
126                 }
127                 break;
128         }
129
130         case iro_Sub: {
131                 int overflow_top, overflow_bottom;
132                 ir_tarval *new_top, *new_bottom;
133                 const vrp_attr *vrp_left, *vrp_right;
134                 vrp_left = get_vrp_attr(get_Sub_left(node));
135                 vrp_right = get_vrp_attr(get_Sub_right(node));
136
137                 if (vrp_left->range_type == VRP_UNDEFINED || vrp_right->range_type ==
138                                 VRP_UNDEFINED || vrp_left->range_type == VRP_VARYING ||
139                                 vrp_right->range_type == VRP_VARYING) {
140                         return 0;
141                 }
142
143                 new_top = tarval_sub(vrp_left->range_top, vrp_right->range_top, NULL);
144                 overflow_top = tarval_carry();
145                 new_bottom = tarval_sub(vrp_left->range_bottom, vrp_right->range_bottom, NULL);
146                 overflow_bottom = tarval_carry();
147
148                 if (!overflow_top && !overflow_bottom && vrp_left->range_type == VRP_RANGE
149                                 &&vrp_right->range_type == VRP_RANGE) {
150                         new_range_bottom = new_bottom;
151                         new_range_top = new_top;
152                         new_range_type = VRP_RANGE;
153                 }
154
155                 if (overflow_top || overflow_bottom) {
156                         /* TODO Implement overflow handling*/
157                 }
158                 break;
159         }
160
161         case iro_Or: {
162                 const vrp_attr *vrp_left, *vrp_right;
163
164                 vrp_left = get_vrp_attr(get_Or_left(node));
165                 vrp_right = get_vrp_attr(get_Or_right(node));
166
167                 new_bits_set = tarval_or(vrp_left->bits_set, vrp_right->bits_set);
168                 new_bits_not_set = tarval_or(vrp_left->bits_not_set, vrp_right->bits_not_set);
169
170                 break;
171         }
172
173         case iro_Rotl: {
174                 const vrp_attr *vrp_left, *vrp_right;
175                 const ir_node *right = get_Rotl_right(node);
176
177                 vrp_left = get_vrp_attr(get_Rotl_left(node));
178                 vrp_right = get_vrp_attr(get_Rotl_right(node));
179
180                 /* We can only compute this if the right value is a constant*/
181                 if (is_Const(right)) {
182                         ir_tarval *bits_set, *bits_not_set;
183                         bits_set = tarval_rotl(vrp_left->bits_set, get_Const_tarval(right));
184                         bits_not_set = tarval_rotl(vrp_left->bits_not_set, get_Const_tarval(right));
185                 }
186                 break;
187         }
188
189         case iro_Shl: {
190                 const vrp_attr *vrp_left, *vrp_right;
191                 const ir_node *right = get_Shl_right(node);
192                 vrp_left = get_vrp_attr(get_Shl_left(node));
193                 vrp_right = get_vrp_attr(get_Shl_right(node));
194
195                 /* We can only compute this if the right value is a constant*/
196                 if (is_Const(right)) {
197                         new_bits_set = tarval_shl(vrp_left->bits_set, get_Const_tarval(right));
198                         new_bits_not_set = tarval_shl(vrp_left->bits_not_set, get_Const_tarval(right));
199                 }
200                 break;
201         }
202
203         case iro_Shr: {
204                 const vrp_attr *vrp_left, *vrp_right;
205                 const ir_node *right = get_Shr_right(node);
206
207                 vrp_left = get_vrp_attr(get_Shr_left(node));
208                 vrp_right = get_vrp_attr(get_Shr_right(node));
209
210                 /* We can only compute this if the right value is a constant*/
211                 if (is_Const(right)) {
212                         new_bits_set = tarval_shr(vrp_left->bits_set, get_Const_tarval(right));
213                         new_bits_not_set = tarval_shr(vrp_left->bits_not_set, get_Const_tarval(right));
214                 }
215                 break;
216         }
217
218         case iro_Shrs: {
219                 const vrp_attr *vrp_left, *vrp_right;
220                 const ir_node *right = get_Shrs_right(node);
221
222                 vrp_left = get_vrp_attr(get_Shrs_left(node));
223                 vrp_right = get_vrp_attr(get_Shrs_right(node));
224
225                 /* We can only compute this if the right value is a constant*/
226                 if (is_Const(right)) {
227                         new_bits_set = tarval_shrs(vrp_left->bits_set, get_Const_tarval(right));
228                         new_bits_not_set = tarval_shrs(vrp_left->bits_not_set, get_Const_tarval(right));
229                 }
230                 break;
231         }
232
233         case iro_Eor: {
234                 const vrp_attr *vrp_left, *vrp_right;
235
236                 vrp_left = get_vrp_attr(get_Eor_left(node));
237                 vrp_right = get_vrp_attr(get_Eor_right(node));
238
239                 new_bits_set = tarval_or(
240                                                 tarval_and(vrp_left->bits_set, tarval_not(vrp_right->bits_not_set)),
241                                                 tarval_and(tarval_not(vrp_left->bits_not_set), vrp_right->bits_set));
242
243                 new_bits_not_set = tarval_not(tarval_or(
244                                 tarval_and(vrp_left->bits_set,vrp_right->bits_set),
245                                                         tarval_and(tarval_not(vrp_left->bits_not_set),
246                                                                 tarval_not(vrp_right->bits_not_set))));
247
248                 break;
249         }
250
251         case iro_Id: {
252                 const vrp_attr *vrp_pred = get_vrp_attr(get_Id_pred(node));
253                 new_bits_set = vrp_pred->bits_set;
254                 new_bits_not_set = vrp_pred->bits_not_set;
255                 new_range_top = vrp_pred->range_top;
256                 new_range_bottom = vrp_pred->range_bottom;
257                 new_range_type = vrp_pred->range_type;
258                 break;
259         }
260
261         case iro_Not: {
262                 const vrp_attr *vrp_pred = get_vrp_attr(get_Not_op(node));
263                 new_bits_set = tarval_not(vrp_pred->bits_not_set);
264                 new_bits_not_set = tarval_not(vrp_pred->bits_set);
265                 break;
266         }
267
268         case iro_Conv: {
269                 const ir_node *pred = get_Conv_op(node);
270                 ir_mode *old_mode = get_irn_mode(pred);
271                 const vrp_attr *vrp_pred = get_vrp_attr(pred);
272
273                 ir_mode *new_mode;
274
275                 if (!mode_is_int(old_mode))
276                         return 0;
277
278                 new_mode = get_irn_mode(node);
279
280                 /* The second and is needed if target type is smaller*/
281                 new_bits_not_set = tarval_convert_to(get_mode_all_one(old_mode), new_mode);
282                 new_bits_not_set = tarval_and(new_bits_not_set, tarval_convert_to(vrp_pred->bits_not_set, new_mode));
283                 new_bits_set = tarval_and(
284                                 new_bits_not_set, tarval_convert_to(vrp_pred->bits_set, new_mode));
285
286                 if (tarval_cmp(vrp_pred->range_top, get_mode_max(new_mode)) == pn_Cmp_Le) {
287                         vrp->range_top = vrp_pred->range_top;
288                 }
289
290                 if (tarval_cmp(vrp_pred->range_bottom, get_mode_min(new_mode)) == pn_Cmp_Ge) {
291                         vrp->range_bottom = vrp_pred->range_bottom;
292                 }
293                 break;
294         }
295
296         case iro_Confirm: {
297                 const pn_Cmp cmp = get_Confirm_cmp(node);
298                 const ir_node *bound = get_Confirm_bound(node);
299
300
301                 if (cmp == pn_Cmp_Lg) {
302                         /** @todo: Handle non-Const bounds */
303                         if (is_Const(bound)) {
304                                 new_range_type = VRP_ANTIRANGE;
305                                 new_range_top = get_Const_tarval(bound);
306                                 new_range_bottom = get_Const_tarval(bound);
307                         }
308                 } else if (cmp == pn_Cmp_Le) {
309                         if (is_Const(bound)) {
310                                 new_range_type = VRP_RANGE;
311                                 new_range_top = get_Const_tarval(bound);
312                                 new_range_bottom = get_tarval_min(get_irn_mode(node));
313                         }
314                 }
315                 break;
316         }
317
318         case iro_Phi: {
319                 /* combine all ranges*/
320
321                 int num = get_Phi_n_preds(node);
322                 pn_Cmp cmp;
323                 int i;
324
325                 const ir_node *pred = get_Phi_pred(node,0);
326                 const vrp_attr *vrp_pred = get_vrp_attr(pred);
327                 new_range_top = vrp_pred->range_top;
328                 new_range_bottom = vrp_pred->range_bottom;
329                 new_range_type = vrp_pred->range_type;
330                 new_bits_set = vrp_pred->bits_set;
331                 new_bits_not_set = vrp_pred->bits_not_set;
332
333                 assert(num > 0);
334
335                 for (i = 1; i < num; i++) {
336                         pred = get_Phi_pred(node, i);
337                         vrp_pred = get_vrp_attr(pred);
338                         if (new_range_type == VRP_RANGE && vrp_pred->range_type ==
339                                         VRP_RANGE) {
340                                 cmp = tarval_cmp(new_range_top, vrp_pred->range_top);
341                                 if (cmp == pn_Cmp_Lt) {
342                                         new_range_top = vrp_pred->range_top;
343                                 }
344                                 cmp = tarval_cmp(new_range_bottom, vrp_pred->range_bottom);
345                                 if (cmp == pn_Cmp_Gt) {
346                                         new_range_bottom = vrp_pred->range_bottom;
347                                 }
348                         } else {
349                                 new_range_type = VRP_VARYING;
350                         }
351                         new_bits_set = tarval_and(new_bits_set, vrp_pred->bits_set);
352                         new_bits_not_set = tarval_or(new_bits_not_set,
353                                         vrp_pred->bits_not_set);
354                 }
355
356                 break;
357         }
358         default:
359                 /* unhandled, therefore never updated */
360                 break;
361         }
362
363
364
365         /* TODO: Check, if there can be information derived from any of these:
366         is_Abs(node) is_Alloc(node) is_Anchor(node) is_Borrow(node) is_Bound(node)
367         is_Break(node) is_Builtin(node) is_Call(node)
368         is_Carry(node) is_Cast(node) is_Cmp(node) is_Cond(node)
369         is_CopyB(node) is_Div(node) is_Dummy(node)
370         is_End(node) is_Free(node)
371         is_IJmp(node) is_InstOf(node) is_Jmp(node) is_Load(node) is_Minus(node)
372         is_Mod(node) is_Mul(node) is_Mulh(node) is_Mux(node) is_NoMem(node)
373         is_Pin(node) is_Proj(node) is_Quot(node)
374         is_Raise(node) is_Return(node) is_Sel(node) is_Start(node) is_Store(node)
375         is_SymConst(node) is_Sync(node) is_Tuple(node)
376         */
377
378         /* @todo: At this place, we check if the mode of the variable changed. A
379          * better place for this might be in the convopt.c file
380          */
381
382         if (new_bits_set != tarval_bad && get_tarval_mode(new_bits_set) != get_tarval_mode(vrp->bits_set)) {
383                 vrp->bits_set = tarval_convert_to(vrp->bits_set, get_irn_mode(node));
384         }
385         if (new_bits_not_set != tarval_bad && get_tarval_mode(new_bits_not_set) != get_tarval_mode(vrp->bits_not_set)) {
386                 vrp->bits_not_set = tarval_convert_to(vrp->bits_not_set, get_irn_mode(node));
387         }
388
389         if (vrp->range_type != VRP_UNDEFINED && new_range_type != VRP_UNDEFINED && get_tarval_mode(new_range_top) != get_tarval_mode(vrp->range_top)) {
390                 /* @todo: We might be able to preserve this range information if it
391                  * fits in */
392                 vrp->range_type = VRP_VARYING;
393         }
394
395         /* Merge the newly calculated values with those that might already exist*/
396         if (new_bits_set != tarval_bad) {
397                 new_bits_set = tarval_or(new_bits_set, vrp->bits_set);
398                 if (tarval_cmp(new_bits_set, vrp->bits_set) != pn_Cmp_Eq) {
399                         something_changed = 1;
400                         vrp->bits_set = new_bits_set;
401                 }
402         }
403         if (new_bits_not_set != tarval_bad) {
404                 new_bits_not_set = tarval_and(new_bits_not_set, vrp->bits_not_set);
405
406                 if (tarval_cmp(new_bits_not_set, vrp->bits_not_set) != pn_Cmp_Eq) {
407                         something_changed = 1;
408                         vrp->bits_not_set = new_bits_not_set;
409                 }
410         }
411
412         if (vrp->range_type == VRP_UNDEFINED &&
413                         new_range_type != VRP_UNDEFINED) {
414                 something_changed = 1;
415                 vrp->range_type = new_range_type;
416                 vrp->range_bottom = new_range_bottom;
417                 vrp->range_top = new_range_top;
418
419         } else if (vrp->range_type == VRP_RANGE) {
420                 if (new_range_type == VRP_RANGE) {
421                         if (tarval_cmp(vrp->range_bottom, new_range_bottom) == pn_Cmp_Lt) {
422                                 something_changed = 1;
423                                 vrp->range_bottom = new_range_bottom;
424                         }
425                         if (tarval_cmp(vrp->range_top, new_range_top) == pn_Cmp_Gt) {
426                                 something_changed = 1;
427                                 vrp->range_top = new_range_top;
428                         }
429                 }
430
431                 if (new_range_type == VRP_ANTIRANGE) {
432                         /* if they are overlapping, cut the range.*/
433                         /* TODO: Maybe we can preserve more information here*/
434                         if (tarval_cmp(vrp->range_bottom, new_range_top) == pn_Cmp_Gt &&
435                                         tarval_cmp(vrp->range_bottom, new_range_bottom) == pn_Cmp_Gt) {
436                                 something_changed = 1;
437                                 vrp->range_bottom = new_range_top;
438
439                         } else if (tarval_cmp(vrp->range_top, new_range_bottom) == pn_Cmp_Gt &&
440                                         tarval_cmp(vrp->range_top, new_range_top) == pn_Cmp_Lt) {
441                                 something_changed = 1;
442                                 vrp->range_top = new_range_bottom;
443                         }
444
445                         /* We can not handle the case where the anti range is in the*/
446                         /* range*/
447
448                 }
449         } else if (vrp->range_type == VRP_ANTIRANGE) {
450                 if (new_range_type == VRP_ANTIRANGE) {
451                         if (tarval_cmp(vrp->range_bottom, new_range_bottom) == pn_Cmp_Gt) {
452                                 something_changed = 1;
453                                 vrp->range_bottom = new_range_bottom;
454                         }
455                         if (tarval_cmp(vrp->range_top, new_range_top) == pn_Cmp_Lt) {
456                                 something_changed = 1;
457                                 vrp->range_top = new_range_top;
458                         }
459                 }
460
461                 if (new_range_type == VRP_RANGE) {
462                         if (tarval_cmp(vrp->range_bottom, new_range_top) == pn_Cmp_Gt) {
463                                 something_changed = 1;
464                                 vrp->range_bottom = new_range_top;
465                         }
466                         if (tarval_cmp(vrp->range_top, new_range_bottom) == pn_Cmp_Lt) {
467                                 something_changed = 1;
468                                 vrp->range_top = new_range_bottom;
469                         }
470                 }
471         }
472
473         assert(tarval_is_null(
474                                 tarval_and(vrp->bits_set, tarval_not(vrp->bits_not_set))));
475         return something_changed;
476 }
477
478 static void vrp_first_pass(ir_node *n, void *e)
479 {
480         int i;
481         vrp_env_t *env = (vrp_env_t*) e;
482
483         if (is_Block(n))
484                 return;
485
486         bitset_set(env->visited, get_irn_idx(n));
487
488         vrp_update_node(n);
489
490         assure_irg_outs(get_current_ir_graph());
491         for (i = get_irn_n_outs(n) - 1; i >=0; --i) {
492                 ir_node *succ = get_irn_out(n, i);
493                 if (bitset_is_set(env->visited, get_irn_idx(succ))) {
494                         /* we found a loop*/
495                         waitq_put(env->workqueue, succ);
496                 }
497         }
498 }
499
500 static void *vrp_init_node(ir_phase *phase, const ir_node *n)
501 {
502         ir_mode *mode;
503         vrp_attr *vrp;
504
505         DBG((dbg, LEVEL_2, "initialized node nr: %d\n", get_irn_node_nr(n)));
506         vrp = (vrp_attr*) phase_alloc(phase, sizeof(vrp_attr));
507
508         memset(vrp, 0, sizeof(vrp_attr));
509         /* Initialize the vrp information to default */
510
511         mode = get_irn_mode(n);
512
513         vrp->range_type = VRP_UNDEFINED;
514
515         /* TODO: We might be able to optimize space usage if we do not allocate
516          * vrp space for non-int nodes. (currently caught by vrp_update_node)
517          */
518         if (mode_is_int(mode)) {
519                 /* We are assuming that 0 is always represented as this modes null */
520                 vrp->valid = 1;
521                 vrp->bits_set = get_mode_null(mode);
522                 vrp->bits_not_set = get_mode_all_one(mode);
523                 vrp->range_bottom = get_tarval_top();
524                 vrp->range_top = get_tarval_top();
525         } else {
526                 vrp->valid = 0;
527                 vrp->bits_set = get_tarval_bad();
528                 vrp->bits_not_set = get_tarval_bad();
529                 vrp->range_bottom = get_tarval_bad();
530                 vrp->range_top = get_tarval_bad();
531         }
532
533         /* TODO: We might be able to set better vrp info at this time, if this is
534          * a node which is newly created in an already initialized irg
535          *
536          * maybe just call vrp_update_node and if it returns one, iterate over
537          * successors
538          */
539         return vrp;
540 }
541
542 void set_vrp_data(ir_graph *irg)
543 {
544         ir_node *succ, *node;
545         int i;
546         vrp_env_t *env;
547         ir_phase *phase;
548
549         FIRM_DBG_REGISTER(dbg, "ir.ana.vrp");
550
551         assure_irg_outs(irg); /* ensure that out edges are consistent*/
552         phase = irg_get_phase(irg, PHASE_VRP);
553         if (phase == NULL) {
554                 /* this is our first run */
555                 phase = new_phase(irg, vrp_init_node);
556                 irg_register_phase(irg, PHASE_VRP, phase);
557                 env = (vrp_env_t*) phase_alloc(phase, sizeof(*env));
558                 phase->priv = env;
559         } else {
560                 env = (vrp_env_t*) phase->priv;
561         }
562
563         env->workqueue = new_waitq();
564
565         env->visited = bitset_malloc(get_irg_last_idx(irg));
566         irg_walk_graph(irg, NULL, vrp_first_pass, env);
567         bitset_free(env->visited);
568
569         /* while there are entries in the worklist, continue*/
570         while (!waitq_empty(env->workqueue)) {
571                 node = (ir_node*) waitq_get(env->workqueue);
572
573                 if (vrp_update_node(node)) {
574                         /* if something changed, add successors to worklist*/
575                         for (i = get_irn_n_outs(node) - 1; i >=0; --i) {
576                                 succ =  get_irn_out(node, i);
577                                 waitq_put(env->workqueue, node);
578                         }
579                 }
580         }
581         del_waitq(env->workqueue);
582 }
583
584 ir_graph_pass_t *set_vrp_pass(const char *name)
585 {
586         return def_graph_pass(name ? name : "set_vrp", set_vrp_data);
587 }
588
589 pn_Cmp vrp_cmp(const ir_node *left, const ir_node *right)
590 {
591         vrp_attr *vrp_left, *vrp_right;
592
593         vrp_left = vrp_get_info(left);
594         vrp_right = vrp_get_info(right);
595
596         if (!vrp_left || !vrp_right) {
597                 return pn_Cmp_False;
598         }
599
600         if (vrp_left->range_type == VRP_RANGE && vrp_right->range_type == VRP_RANGE) {
601                 if (tarval_cmp(vrp_left->range_top, vrp_right->range_bottom) == pn_Cmp_Lt) {
602                         return pn_Cmp_Lt;
603                 }
604                 if (tarval_cmp(vrp_left->range_bottom, vrp_right->range_top) == pn_Cmp_Gt) {
605                         return pn_Cmp_Gt;
606                 }
607         }
608
609         if (!tarval_is_null(tarval_and(vrp_left->bits_set, tarval_not(vrp_right->bits_not_set))) ||
610                         !tarval_is_null(tarval_and(tarval_not(vrp_left->bits_not_set), vrp_right->bits_set))) {
611                 return pn_Cmp_Lg;
612         }
613         /* TODO: We can get way more information here*/
614
615         return pn_Cmp_False;
616 }
617
618 vrp_attr *vrp_get_info(const ir_node *node)
619 {
620         const ir_graph *irg   = get_irn_irg(node);
621         const ir_phase *phase = irg_get_phase(irg, PHASE_VRP);
622         vrp_attr       *vrp;
623
624         if (phase == NULL) {
625                 /* phase has not yet been initialized */
626                 return NULL;
627         }
628
629         vrp = (vrp_attr*) phase_get_irn_data(phase, node);
630         if (vrp && vrp->valid) {
631                 return vrp;
632         }
633
634         return NULL;
635 }