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1 /* Control flow graph building code for GNU compiler.
2 Copyright (C) 1987-2014 Free Software Foundation, Inc.
3
4 This file is part of GCC.
5
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
9 version.
10
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
19
20 \f
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "tm.h"
25 #include "tree.h"
26 #include "rtl.h"
27 #include "hard-reg-set.h"
28 #include "basic-block.h"
29 #include "regs.h"
30 #include "flags.h"
31 #include "function.h"
32 #include "except.h"
33 #include "expr.h"
34 #include "diagnostic-core.h"
35 #include "timevar.h"
36 #include "sbitmap.h"
37
38 static void make_edges (basic_block, basic_block, int);
39 static void make_label_edge (sbitmap, basic_block, rtx, int);
40 static void find_bb_boundaries (basic_block);
41 static void compute_outgoing_frequencies (basic_block);
42 \f
43 /* Return true if insn is something that should be contained inside basic
44 block. */
45
46 bool
47 inside_basic_block_p (const_rtx insn)
48 {
49 switch (GET_CODE (insn))
50 {
51 case CODE_LABEL:
52 /* Avoid creating of basic block for jumptables. */
53 return (NEXT_INSN (insn) == 0
54 || ! JUMP_TABLE_DATA_P (NEXT_INSN (insn)));
55
56 case JUMP_INSN:
57 case CALL_INSN:
58 case INSN:
59 case DEBUG_INSN:
60 return true;
61
62 case JUMP_TABLE_DATA:
63 case BARRIER:
64 case NOTE:
65 return false;
66
67 default:
68 gcc_unreachable ();
69 }
70 }
71
72 /* Return true if INSN may cause control flow transfer, so it should be last in
73 the basic block. */
74
75 bool
76 control_flow_insn_p (const_rtx insn)
77 {
78 switch (GET_CODE (insn))
79 {
80 case NOTE:
81 case CODE_LABEL:
82 case DEBUG_INSN:
83 return false;
84
85 case JUMP_INSN:
86 return true;
87
88 case CALL_INSN:
89 /* Noreturn and sibling call instructions terminate the basic blocks
90 (but only if they happen unconditionally). */
91 if ((SIBLING_CALL_P (insn)
92 || find_reg_note (insn, REG_NORETURN, 0))
93 && GET_CODE (PATTERN (insn)) != COND_EXEC)
94 return true;
95
96 /* Call insn may return to the nonlocal goto handler. */
97 if (can_nonlocal_goto (insn))
98 return true;
99 break;
100
101 case INSN:
102 /* Treat trap instructions like noreturn calls (same provision). */
103 if (GET_CODE (PATTERN (insn)) == TRAP_IF
104 && XEXP (PATTERN (insn), 0) == const1_rtx)
105 return true;
106 if (!cfun->can_throw_non_call_exceptions)
107 return false;
108 break;
109
110 case JUMP_TABLE_DATA:
111 case BARRIER:
112 /* It is nonsense to reach this when looking for the
113 end of basic block, but before dead code is eliminated
114 this may happen. */
115 return false;
116
117 default:
118 gcc_unreachable ();
119 }
120
121 return can_throw_internal (insn);
122 }
123
124 \f
125 /* Create an edge between two basic blocks. FLAGS are auxiliary information
126 about the edge that is accumulated between calls. */
127
128 /* Create an edge from a basic block to a label. */
129
130 static void
131 make_label_edge (sbitmap edge_cache, basic_block src, rtx label, int flags)
132 {
133 gcc_assert (LABEL_P (label));
134
135 /* If the label was never emitted, this insn is junk, but avoid a
136 crash trying to refer to BLOCK_FOR_INSN (label). This can happen
137 as a result of a syntax error and a diagnostic has already been
138 printed. */
139
140 if (INSN_UID (label) == 0)
141 return;
142
143 cached_make_edge (edge_cache, src, BLOCK_FOR_INSN (label), flags);
144 }
145
146 /* Create the edges generated by INSN in REGION. */
147
148 void
149 rtl_make_eh_edge (sbitmap edge_cache, basic_block src, rtx insn)
150 {
151 eh_landing_pad lp = get_eh_landing_pad_from_rtx (insn);
152
153 if (lp)
154 {
155 rtx label = lp->landing_pad;
156
157 /* During initial rtl generation, use the post_landing_pad. */
158 if (label == NULL)
159 {
160 gcc_assert (lp->post_landing_pad);
161 label = label_rtx (lp->post_landing_pad);
162 }
163
164 make_label_edge (edge_cache, src, label,
165 EDGE_ABNORMAL | EDGE_EH
166 | (CALL_P (insn) ? EDGE_ABNORMAL_CALL : 0));
167 }
168 }
169
170 /* States of basic block as seen by find_many_sub_basic_blocks. */
171 enum state {
172 /* Basic blocks created via split_block belong to this state.
173 make_edges will examine these basic blocks to see if we need to
174 create edges going out of them. */
175 BLOCK_NEW = 0,
176
177 /* Basic blocks that do not need examining belong to this state.
178 These blocks will be left intact. In particular, make_edges will
179 not create edges going out of these basic blocks. */
180 BLOCK_ORIGINAL,
181
182 /* Basic blocks that may need splitting (due to a label appearing in
183 the middle, etc) belong to this state. After splitting them,
184 make_edges will create edges going out of them as needed. */
185 BLOCK_TO_SPLIT
186 };
187
188 #define STATE(BB) (enum state) ((size_t) (BB)->aux)
189 #define SET_STATE(BB, STATE) ((BB)->aux = (void *) (size_t) (STATE))
190
191 /* Used internally by purge_dead_tablejump_edges, ORed into state. */
192 #define BLOCK_USED_BY_TABLEJUMP 32
193 #define FULL_STATE(BB) ((size_t) (BB)->aux)
194
195 /* Identify the edges going out of basic blocks between MIN and MAX,
196 inclusive, that have their states set to BLOCK_NEW or
197 BLOCK_TO_SPLIT.
198
199 UPDATE_P should be nonzero if we are updating CFG and zero if we
200 are building CFG from scratch. */
201
202 static void
203 make_edges (basic_block min, basic_block max, int update_p)
204 {
205 basic_block bb;
206 sbitmap edge_cache = NULL;
207
208 /* Heavy use of computed goto in machine-generated code can lead to
209 nearly fully-connected CFGs. In that case we spend a significant
210 amount of time searching the edge lists for duplicates. */
211 if (forced_labels || cfun->cfg->max_jumptable_ents > 100)
212 edge_cache = sbitmap_alloc (last_basic_block_for_fn (cfun));
213
214 /* By nature of the way these get numbered, ENTRY_BLOCK_PTR->next_bb block
215 is always the entry. */
216 if (min == ENTRY_BLOCK_PTR_FOR_FN (cfun)->next_bb)
217 make_edge (ENTRY_BLOCK_PTR_FOR_FN (cfun), min, EDGE_FALLTHRU);
218
219 FOR_BB_BETWEEN (bb, min, max->next_bb, next_bb)
220 {
221 rtx_insn *insn;
222 rtx x;
223 enum rtx_code code;
224 edge e;
225 edge_iterator ei;
226
227 if (STATE (bb) == BLOCK_ORIGINAL)
228 continue;
229
230 /* If we have an edge cache, cache edges going out of BB. */
231 if (edge_cache)
232 {
233 bitmap_clear (edge_cache);
234 if (update_p)
235 {
236 FOR_EACH_EDGE (e, ei, bb->succs)
237 if (e->dest != EXIT_BLOCK_PTR_FOR_FN (cfun))
238 bitmap_set_bit (edge_cache, e->dest->index);
239 }
240 }
241
242 if (LABEL_P (BB_HEAD (bb))
243 && LABEL_ALT_ENTRY_P (BB_HEAD (bb)))
244 cached_make_edge (NULL, ENTRY_BLOCK_PTR_FOR_FN (cfun), bb, 0);
245
246 /* Examine the last instruction of the block, and discover the
247 ways we can leave the block. */
248
249 insn = BB_END (bb);
250 code = GET_CODE (insn);
251
252 /* A branch. */
253 if (code == JUMP_INSN)
254 {
255 rtx tmp;
256 rtx_jump_table_data *table;
257
258 /* Recognize a non-local goto as a branch outside the
259 current function. */
260 if (find_reg_note (insn, REG_NON_LOCAL_GOTO, NULL_RTX))
261 ;
262
263 /* Recognize a tablejump and do the right thing. */
264 else if (tablejump_p (insn, NULL, &table))
265 {
266 rtvec vec = table->get_labels ();
267 int j;
268
269 for (j = GET_NUM_ELEM (vec) - 1; j >= 0; --j)
270 make_label_edge (edge_cache, bb,
271 XEXP (RTVEC_ELT (vec, j), 0), 0);
272
273 /* Some targets (eg, ARM) emit a conditional jump that also
274 contains the out-of-range target. Scan for these and
275 add an edge if necessary. */
276 if ((tmp = single_set (insn)) != NULL
277 && SET_DEST (tmp) == pc_rtx
278 && GET_CODE (SET_SRC (tmp)) == IF_THEN_ELSE
279 && GET_CODE (XEXP (SET_SRC (tmp), 2)) == LABEL_REF)
280 make_label_edge (edge_cache, bb,
281 XEXP (XEXP (SET_SRC (tmp), 2), 0), 0);
282 }
283
284 /* If this is a computed jump, then mark it as reaching
285 everything on the forced_labels list. */
286 else if (computed_jump_p (insn))
287 {
288 for (x = forced_labels; x; x = XEXP (x, 1))
289 make_label_edge (edge_cache, bb, XEXP (x, 0), EDGE_ABNORMAL);
290 }
291
292 /* Returns create an exit out. */
293 else if (returnjump_p (insn))
294 cached_make_edge (edge_cache, bb, EXIT_BLOCK_PTR_FOR_FN (cfun), 0);
295
296 /* Recognize asm goto and do the right thing. */
297 else if ((tmp = extract_asm_operands (PATTERN (insn))) != NULL)
298 {
299 int i, n = ASM_OPERANDS_LABEL_LENGTH (tmp);
300 for (i = 0; i < n; ++i)
301 make_label_edge (edge_cache, bb,
302 XEXP (ASM_OPERANDS_LABEL (tmp, i), 0), 0);
303 }
304
305 /* Otherwise, we have a plain conditional or unconditional jump. */
306 else
307 {
308 gcc_assert (JUMP_LABEL (insn));
309 make_label_edge (edge_cache, bb, JUMP_LABEL (insn), 0);
310 }
311 }
312
313 /* If this is a sibling call insn, then this is in effect a combined call
314 and return, and so we need an edge to the exit block. No need to
315 worry about EH edges, since we wouldn't have created the sibling call
316 in the first place. */
317 if (code == CALL_INSN && SIBLING_CALL_P (insn))
318 cached_make_edge (edge_cache, bb, EXIT_BLOCK_PTR_FOR_FN (cfun),
319 EDGE_SIBCALL | EDGE_ABNORMAL);
320
321 /* If this is a CALL_INSN, then mark it as reaching the active EH
322 handler for this CALL_INSN. If we're handling non-call
323 exceptions then any insn can reach any of the active handlers.
324 Also mark the CALL_INSN as reaching any nonlocal goto handler. */
325 else if (code == CALL_INSN || cfun->can_throw_non_call_exceptions)
326 {
327 /* Add any appropriate EH edges. */
328 rtl_make_eh_edge (edge_cache, bb, insn);
329
330 if (code == CALL_INSN)
331 {
332 if (can_nonlocal_goto (insn))
333 {
334 /* ??? This could be made smarter: in some cases it's
335 possible to tell that certain calls will not do a
336 nonlocal goto. For example, if the nested functions
337 that do the nonlocal gotos do not have their addresses
338 taken, then only calls to those functions or to other
339 nested functions that use them could possibly do
340 nonlocal gotos. */
341 for (x = nonlocal_goto_handler_labels; x; x = XEXP (x, 1))
342 make_label_edge (edge_cache, bb, XEXP (x, 0),
343 EDGE_ABNORMAL | EDGE_ABNORMAL_CALL);
344 }
345
346 if (flag_tm)
347 {
348 rtx note;
349 for (note = REG_NOTES (insn); note; note = XEXP (note, 1))
350 if (REG_NOTE_KIND (note) == REG_TM)
351 make_label_edge (edge_cache, bb, XEXP (note, 0),
352 EDGE_ABNORMAL | EDGE_ABNORMAL_CALL);
353 }
354 }
355 }
356
357 /* Find out if we can drop through to the next block. */
358 insn = NEXT_INSN (insn);
359 e = find_edge (bb, EXIT_BLOCK_PTR_FOR_FN (cfun));
360 if (e && e->flags & EDGE_FALLTHRU)
361 insn = NULL;
362
363 while (insn
364 && NOTE_P (insn)
365 && NOTE_KIND (insn) != NOTE_INSN_BASIC_BLOCK)
366 insn = NEXT_INSN (insn);
367
368 if (!insn)
369 cached_make_edge (edge_cache, bb, EXIT_BLOCK_PTR_FOR_FN (cfun),
370 EDGE_FALLTHRU);
371 else if (bb->next_bb != EXIT_BLOCK_PTR_FOR_FN (cfun))
372 {
373 if (insn == BB_HEAD (bb->next_bb))
374 cached_make_edge (edge_cache, bb, bb->next_bb, EDGE_FALLTHRU);
375 }
376 }
377
378 if (edge_cache)
379 sbitmap_free (edge_cache);
380 }
381 \f
382 static void
383 mark_tablejump_edge (rtx label)
384 {
385 basic_block bb;
386
387 gcc_assert (LABEL_P (label));
388 /* See comment in make_label_edge. */
389 if (INSN_UID (label) == 0)
390 return;
391 bb = BLOCK_FOR_INSN (label);
392 SET_STATE (bb, FULL_STATE (bb) | BLOCK_USED_BY_TABLEJUMP);
393 }
394
395 static void
396 purge_dead_tablejump_edges (basic_block bb, rtx_jump_table_data *table)
397 {
398 rtx_insn *insn = BB_END (bb);
399 rtx tmp;
400 rtvec vec;
401 int j;
402 edge_iterator ei;
403 edge e;
404
405 vec = table->get_labels ();
406
407 for (j = GET_NUM_ELEM (vec) - 1; j >= 0; --j)
408 mark_tablejump_edge (XEXP (RTVEC_ELT (vec, j), 0));
409
410 /* Some targets (eg, ARM) emit a conditional jump that also
411 contains the out-of-range target. Scan for these and
412 add an edge if necessary. */
413 if ((tmp = single_set (insn)) != NULL
414 && SET_DEST (tmp) == pc_rtx
415 && GET_CODE (SET_SRC (tmp)) == IF_THEN_ELSE
416 && GET_CODE (XEXP (SET_SRC (tmp), 2)) == LABEL_REF)
417 mark_tablejump_edge (XEXP (XEXP (SET_SRC (tmp), 2), 0));
418
419 for (ei = ei_start (bb->succs); (e = ei_safe_edge (ei)); )
420 {
421 if (FULL_STATE (e->dest) & BLOCK_USED_BY_TABLEJUMP)
422 SET_STATE (e->dest, FULL_STATE (e->dest)
423 & ~(size_t) BLOCK_USED_BY_TABLEJUMP);
424 else if (!(e->flags & (EDGE_ABNORMAL | EDGE_EH)))
425 {
426 remove_edge (e);
427 continue;
428 }
429 ei_next (&ei);
430 }
431 }
432
433 /* Scan basic block BB for possible BB boundaries inside the block
434 and create new basic blocks in the progress. */
435
436 static void
437 find_bb_boundaries (basic_block bb)
438 {
439 basic_block orig_bb = bb;
440 rtx_insn *insn = BB_HEAD (bb);
441 rtx_insn *end = BB_END (bb), *x;
442 rtx_jump_table_data *table;
443 rtx_insn *flow_transfer_insn = NULL;
444 edge fallthru = NULL;
445
446 if (insn == BB_END (bb))
447 return;
448
449 if (LABEL_P (insn))
450 insn = NEXT_INSN (insn);
451
452 /* Scan insn chain and try to find new basic block boundaries. */
453 while (1)
454 {
455 enum rtx_code code = GET_CODE (insn);
456
457 /* In case we've previously seen an insn that effects a control
458 flow transfer, split the block. */
459 if ((flow_transfer_insn || code == CODE_LABEL)
460 && inside_basic_block_p (insn))
461 {
462 fallthru = split_block (bb, PREV_INSN (insn));
463 if (flow_transfer_insn)
464 {
465 BB_END (bb) = flow_transfer_insn;
466
467 /* Clean up the bb field for the insns between the blocks. */
468 for (x = NEXT_INSN (flow_transfer_insn);
469 x != BB_HEAD (fallthru->dest);
470 x = NEXT_INSN (x))
471 if (!BARRIER_P (x))
472 set_block_for_insn (x, NULL);
473 }
474
475 bb = fallthru->dest;
476 remove_edge (fallthru);
477 flow_transfer_insn = NULL;
478 if (code == CODE_LABEL && LABEL_ALT_ENTRY_P (insn))
479 make_edge (ENTRY_BLOCK_PTR_FOR_FN (cfun), bb, 0);
480 }
481 else if (code == BARRIER)
482 {
483 /* __builtin_unreachable () may cause a barrier to be emitted in
484 the middle of a BB. We need to split it in the same manner as
485 if the barrier were preceded by a control_flow_insn_p insn. */
486 if (!flow_transfer_insn)
487 flow_transfer_insn = prev_nonnote_insn_bb (insn);
488 }
489
490 if (control_flow_insn_p (insn))
491 flow_transfer_insn = insn;
492 if (insn == end)
493 break;
494 insn = NEXT_INSN (insn);
495 }
496
497 /* In case expander replaced normal insn by sequence terminating by
498 return and barrier, or possibly other sequence not behaving like
499 ordinary jump, we need to take care and move basic block boundary. */
500 if (flow_transfer_insn)
501 {
502 BB_END (bb) = flow_transfer_insn;
503
504 /* Clean up the bb field for the insns that do not belong to BB. */
505 x = flow_transfer_insn;
506 while (x != end)
507 {
508 x = NEXT_INSN (x);
509 if (!BARRIER_P (x))
510 set_block_for_insn (x, NULL);
511 }
512 }
513
514 /* We've possibly replaced the conditional jump by conditional jump
515 followed by cleanup at fallthru edge, so the outgoing edges may
516 be dead. */
517 purge_dead_edges (bb);
518
519 /* purge_dead_edges doesn't handle tablejump's, but if we have split the
520 basic block, we might need to kill some edges. */
521 if (bb != orig_bb && tablejump_p (BB_END (bb), NULL, &table))
522 purge_dead_tablejump_edges (bb, table);
523 }
524
525 /* Assume that frequency of basic block B is known. Compute frequencies
526 and probabilities of outgoing edges. */
527
528 static void
529 compute_outgoing_frequencies (basic_block b)
530 {
531 edge e, f;
532 edge_iterator ei;
533
534 if (EDGE_COUNT (b->succs) == 2)
535 {
536 rtx note = find_reg_note (BB_END (b), REG_BR_PROB, NULL);
537 int probability;
538
539 if (note)
540 {
541 probability = XINT (note, 0);
542 e = BRANCH_EDGE (b);
543 e->probability = probability;
544 e->count = apply_probability (b->count, probability);
545 f = FALLTHRU_EDGE (b);
546 f->probability = REG_BR_PROB_BASE - probability;
547 f->count = b->count - e->count;
548 return;
549 }
550 else
551 {
552 guess_outgoing_edge_probabilities (b);
553 }
554 }
555 else if (single_succ_p (b))
556 {
557 e = single_succ_edge (b);
558 e->probability = REG_BR_PROB_BASE;
559 e->count = b->count;
560 return;
561 }
562 else
563 {
564 /* We rely on BBs with more than two successors to have sane probabilities
565 and do not guess them here. For BBs terminated by switch statements
566 expanded to jump-table jump, we have done the right thing during
567 expansion. For EH edges, we still guess the probabilities here. */
568 bool complex_edge = false;
569 FOR_EACH_EDGE (e, ei, b->succs)
570 if (e->flags & EDGE_COMPLEX)
571 {
572 complex_edge = true;
573 break;
574 }
575 if (complex_edge)
576 guess_outgoing_edge_probabilities (b);
577 }
578
579 if (b->count)
580 FOR_EACH_EDGE (e, ei, b->succs)
581 e->count = apply_probability (b->count, e->probability);
582 }
583
584 /* Assume that some pass has inserted labels or control flow
585 instructions within a basic block. Split basic blocks as needed
586 and create edges. */
587
588 void
589 find_many_sub_basic_blocks (sbitmap blocks)
590 {
591 basic_block bb, min, max;
592
593 FOR_EACH_BB_FN (bb, cfun)
594 SET_STATE (bb,
595 bitmap_bit_p (blocks, bb->index) ? BLOCK_TO_SPLIT : BLOCK_ORIGINAL);
596
597 FOR_EACH_BB_FN (bb, cfun)
598 if (STATE (bb) == BLOCK_TO_SPLIT)
599 find_bb_boundaries (bb);
600
601 FOR_EACH_BB_FN (bb, cfun)
602 if (STATE (bb) != BLOCK_ORIGINAL)
603 break;
604
605 min = max = bb;
606 for (; bb != EXIT_BLOCK_PTR_FOR_FN (cfun); bb = bb->next_bb)
607 if (STATE (bb) != BLOCK_ORIGINAL)
608 max = bb;
609
610 /* Now re-scan and wire in all edges. This expect simple (conditional)
611 jumps at the end of each new basic blocks. */
612 make_edges (min, max, 1);
613
614 /* Update branch probabilities. Expect only (un)conditional jumps
615 to be created with only the forward edges. */
616 if (profile_status_for_fn (cfun) != PROFILE_ABSENT)
617 FOR_BB_BETWEEN (bb, min, max->next_bb, next_bb)
618 {
619 edge e;
620 edge_iterator ei;
621
622 if (STATE (bb) == BLOCK_ORIGINAL)
623 continue;
624 if (STATE (bb) == BLOCK_NEW)
625 {
626 bb->count = 0;
627 bb->frequency = 0;
628 FOR_EACH_EDGE (e, ei, bb->preds)
629 {
630 bb->count += e->count;
631 bb->frequency += EDGE_FREQUENCY (e);
632 }
633 }
634
635 compute_outgoing_frequencies (bb);
636 }
637
638 FOR_EACH_BB_FN (bb, cfun)
639 SET_STATE (bb, 0);
640 }