Fix a bug that broke -freorder-functions
[official-gcc.git] / gcc / sched-ebb.c
blob726c7c62511271cc948aa5f6c04be83fc0216217
1 /* Instruction scheduling pass.
2 Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
3 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011
4 Free Software Foundation, Inc.
5 Contributed by Michael Tiemann (tiemann@cygnus.com) Enhanced by,
6 and currently maintained by, Jim Wilson (wilson@cygnus.com)
8 This file is part of GCC.
10 GCC is free software; you can redistribute it and/or modify it under
11 the terms of the GNU General Public License as published by the Free
12 Software Foundation; either version 3, or (at your option) any later
13 version.
15 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
16 WARRANTY; without even the implied warranty of MERCHANTABILITY or
17 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
18 for more details.
20 You should have received a copy of the GNU General Public License
21 along with GCC; see the file COPYING3. If not see
22 <http://www.gnu.org/licenses/>. */
24 #include "config.h"
25 #include "system.h"
26 #include "coretypes.h"
27 #include "tm.h"
28 #include "diagnostic-core.h"
29 #include "rtl.h"
30 #include "tm_p.h"
31 #include "hard-reg-set.h"
32 #include "regs.h"
33 #include "function.h"
34 #include "flags.h"
35 #include "insn-config.h"
36 #include "insn-attr.h"
37 #include "except.h"
38 #include "recog.h"
39 #include "cfglayout.h"
40 #include "params.h"
41 #include "sched-int.h"
42 #include "target.h"
43 #include "output.h"
46 #ifdef INSN_SCHEDULING
48 /* The number of insns to be scheduled in total. */
49 static int rgn_n_insns;
51 /* The number of insns scheduled so far. */
52 static int sched_rgn_n_insns;
54 /* Set of blocks, that already have their dependencies calculated. */
55 static bitmap_head dont_calc_deps;
57 /* Last basic block in current ebb. */
58 static basic_block last_bb;
60 /* Implementations of the sched_info functions for region scheduling. */
61 static void init_ready_list (void);
62 static void begin_schedule_ready (rtx);
63 static int schedule_more_p (void);
64 static const char *ebb_print_insn (const_rtx, int);
65 static int rank (rtx, rtx);
66 static int ebb_contributes_to_priority (rtx, rtx);
67 static basic_block earliest_block_with_similiar_load (basic_block, rtx);
68 static void add_deps_for_risky_insns (rtx, rtx);
69 static basic_block schedule_ebb (rtx, rtx);
70 static void debug_ebb_dependencies (rtx, rtx);
72 static void ebb_add_remove_insn (rtx, int);
73 static void ebb_add_block (basic_block, basic_block);
74 static basic_block advance_target_bb (basic_block, rtx);
75 static void ebb_fix_recovery_cfg (int, int, int);
77 /* Allocate memory and store the state of the frontend. Return the allocated
78 memory. */
79 static void *
80 save_ebb_state (void)
82 int *p = XNEW (int);
83 *p = sched_rgn_n_insns;
84 return p;
87 /* Restore the state of the frontend from P_, then free it. */
88 static void
89 restore_ebb_state (void *p_)
91 int *p = (int *)p_;
92 sched_rgn_n_insns = *p;
93 free (p_);
96 /* Return nonzero if there are more insns that should be scheduled. */
98 static int
99 schedule_more_p (void)
101 return sched_rgn_n_insns < rgn_n_insns;
104 /* Print dependency information about ebb between HEAD and TAIL. */
105 static void
106 debug_ebb_dependencies (rtx head, rtx tail)
108 fprintf (sched_dump,
109 ";; --------------- forward dependences: ------------ \n");
111 fprintf (sched_dump, "\n;; --- EBB Dependences --- from bb%d to bb%d \n",
112 BLOCK_NUM (head), BLOCK_NUM (tail));
114 debug_dependencies (head, tail);
117 /* Add all insns that are initially ready to the ready list READY. Called
118 once before scheduling a set of insns. */
120 static void
121 init_ready_list (void)
123 int n = 0;
124 rtx prev_head = current_sched_info->prev_head;
125 rtx next_tail = current_sched_info->next_tail;
126 rtx insn;
128 sched_rgn_n_insns = 0;
130 /* Print debugging information. */
131 if (sched_verbose >= 5)
132 debug_ebb_dependencies (NEXT_INSN (prev_head), PREV_INSN (next_tail));
134 /* Initialize ready list with all 'ready' insns in target block.
135 Count number of insns in the target block being scheduled. */
136 for (insn = NEXT_INSN (prev_head); insn != next_tail; insn = NEXT_INSN (insn))
138 try_ready (insn);
139 n++;
142 gcc_assert (n == rgn_n_insns);
145 /* INSN is being scheduled after LAST. Update counters. */
146 static void
147 begin_schedule_ready (rtx insn ATTRIBUTE_UNUSED)
149 sched_rgn_n_insns++;
152 /* INSN is being moved to its place in the schedule, after LAST. */
153 static void
154 begin_move_insn (rtx insn, rtx last)
156 if (BLOCK_FOR_INSN (insn) == last_bb
157 /* INSN is a jump in the last block, ... */
158 && control_flow_insn_p (insn)
159 /* that is going to be moved over some instructions. */
160 && last != PREV_INSN (insn))
162 edge e;
163 basic_block bb;
165 /* An obscure special case, where we do have partially dead
166 instruction scheduled after last control flow instruction.
167 In this case we can create new basic block. It is
168 always exactly one basic block last in the sequence. */
170 e = find_fallthru_edge (last_bb->succs);
172 gcc_checking_assert (!e || !(e->flags & EDGE_COMPLEX));
174 gcc_checking_assert (BLOCK_FOR_INSN (insn) == last_bb
175 && !IS_SPECULATION_CHECK_P (insn)
176 && BB_HEAD (last_bb) != insn
177 && BB_END (last_bb) == insn);
180 rtx x;
182 x = NEXT_INSN (insn);
183 if (e)
184 gcc_checking_assert (NOTE_P (x) || LABEL_P (x));
185 else
186 gcc_checking_assert (BARRIER_P (x));
189 if (e)
191 bb = split_edge (e);
192 gcc_assert (NOTE_INSN_BASIC_BLOCK_P (BB_END (bb)));
194 else
195 /* Create an empty unreachable block after the INSN. */
196 bb = create_basic_block (NEXT_INSN (insn), NULL_RTX, last_bb);
198 /* split_edge () creates BB before E->DEST. Keep in mind, that
199 this operation extends scheduling region till the end of BB.
200 Hence, we need to shift NEXT_TAIL, so haifa-sched.c won't go out
201 of the scheduling region. */
202 current_sched_info->next_tail = NEXT_INSN (BB_END (bb));
203 gcc_assert (current_sched_info->next_tail);
205 /* Append new basic block to the end of the ebb. */
206 sched_init_only_bb (bb, last_bb);
207 gcc_assert (last_bb == bb);
211 /* Return a string that contains the insn uid and optionally anything else
212 necessary to identify this insn in an output. It's valid to use a
213 static buffer for this. The ALIGNED parameter should cause the string
214 to be formatted so that multiple output lines will line up nicely. */
216 static const char *
217 ebb_print_insn (const_rtx insn, int aligned ATTRIBUTE_UNUSED)
219 static char tmp[80];
221 /* '+' before insn means it is a new cycle start. */
222 if (GET_MODE (insn) == TImode)
223 sprintf (tmp, "+ %4d", INSN_UID (insn));
224 else
225 sprintf (tmp, " %4d", INSN_UID (insn));
227 return tmp;
230 /* Compare priority of two insns. Return a positive number if the second
231 insn is to be preferred for scheduling, and a negative one if the first
232 is to be preferred. Zero if they are equally good. */
234 static int
235 rank (rtx insn1, rtx insn2)
237 basic_block bb1 = BLOCK_FOR_INSN (insn1);
238 basic_block bb2 = BLOCK_FOR_INSN (insn2);
240 if (bb1->count > bb2->count
241 || bb1->frequency > bb2->frequency)
242 return -1;
243 if (bb1->count < bb2->count
244 || bb1->frequency < bb2->frequency)
245 return 1;
246 return 0;
249 /* NEXT is an instruction that depends on INSN (a backward dependence);
250 return nonzero if we should include this dependence in priority
251 calculations. */
253 static int
254 ebb_contributes_to_priority (rtx next ATTRIBUTE_UNUSED,
255 rtx insn ATTRIBUTE_UNUSED)
257 return 1;
260 /* INSN is a JUMP_INSN. Store the set of registers that
261 must be considered as used by this jump in USED. */
263 void
264 ebb_compute_jump_reg_dependencies (rtx insn, regset used)
266 basic_block b = BLOCK_FOR_INSN (insn);
267 edge e;
268 edge_iterator ei;
270 FOR_EACH_EDGE (e, ei, b->succs)
271 if ((e->flags & EDGE_FALLTHRU) == 0)
272 bitmap_ior_into (used, df_get_live_in (e->dest));
275 /* Used in schedule_insns to initialize current_sched_info for scheduling
276 regions (or single basic blocks). */
278 static struct common_sched_info_def ebb_common_sched_info;
280 static struct sched_deps_info_def ebb_sched_deps_info =
282 ebb_compute_jump_reg_dependencies,
283 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
284 NULL,
285 1, 0, 0
288 static struct haifa_sched_info ebb_sched_info =
290 init_ready_list,
291 NULL,
292 schedule_more_p,
293 NULL,
294 rank,
295 ebb_print_insn,
296 ebb_contributes_to_priority,
297 NULL, /* insn_finishes_block_p */
299 NULL, NULL,
300 NULL, NULL,
301 1, 0,
303 ebb_add_remove_insn,
304 begin_schedule_ready,
305 begin_move_insn,
306 advance_target_bb,
308 save_ebb_state,
309 restore_ebb_state,
311 SCHED_EBB
312 /* We can create new blocks in begin_schedule_ready (). */
313 | NEW_BBS
316 /* Returns the earliest block in EBB currently being processed where a
317 "similar load" 'insn2' is found, and hence LOAD_INSN can move
318 speculatively into the found block. All the following must hold:
320 (1) both loads have 1 base register (PFREE_CANDIDATEs).
321 (2) load_insn and load2 have a def-use dependence upon
322 the same insn 'insn1'.
324 From all these we can conclude that the two loads access memory
325 addresses that differ at most by a constant, and hence if moving
326 load_insn would cause an exception, it would have been caused by
327 load2 anyhow.
329 The function uses list (given by LAST_BLOCK) of already processed
330 blocks in EBB. The list is formed in `add_deps_for_risky_insns'. */
332 static basic_block
333 earliest_block_with_similiar_load (basic_block last_block, rtx load_insn)
335 sd_iterator_def back_sd_it;
336 dep_t back_dep;
337 basic_block bb, earliest_block = NULL;
339 FOR_EACH_DEP (load_insn, SD_LIST_BACK, back_sd_it, back_dep)
341 rtx insn1 = DEP_PRO (back_dep);
343 if (DEP_TYPE (back_dep) == REG_DEP_TRUE)
344 /* Found a DEF-USE dependence (insn1, load_insn). */
346 sd_iterator_def fore_sd_it;
347 dep_t fore_dep;
349 FOR_EACH_DEP (insn1, SD_LIST_FORW, fore_sd_it, fore_dep)
351 rtx insn2 = DEP_CON (fore_dep);
352 basic_block insn2_block = BLOCK_FOR_INSN (insn2);
354 if (DEP_TYPE (fore_dep) == REG_DEP_TRUE)
356 if (earliest_block != NULL
357 && earliest_block->index < insn2_block->index)
358 continue;
360 /* Found a DEF-USE dependence (insn1, insn2). */
361 if (haifa_classify_insn (insn2) != PFREE_CANDIDATE)
362 /* insn2 not guaranteed to be a 1 base reg load. */
363 continue;
365 for (bb = last_block; bb; bb = (basic_block) bb->aux)
366 if (insn2_block == bb)
367 break;
369 if (!bb)
370 /* insn2 is the similar load. */
371 earliest_block = insn2_block;
377 return earliest_block;
380 /* The following function adds dependencies between jumps and risky
381 insns in given ebb. */
383 static void
384 add_deps_for_risky_insns (rtx head, rtx tail)
386 rtx insn, prev;
387 int classification;
388 rtx last_jump = NULL_RTX;
389 rtx next_tail = NEXT_INSN (tail);
390 basic_block last_block = NULL, bb;
392 for (insn = head; insn != next_tail; insn = NEXT_INSN (insn))
394 add_delay_dependencies (insn);
395 if (control_flow_insn_p (insn))
397 bb = BLOCK_FOR_INSN (insn);
398 bb->aux = last_block;
399 last_block = bb;
400 last_jump = insn;
402 else if (INSN_P (insn) && last_jump != NULL_RTX)
404 classification = haifa_classify_insn (insn);
405 prev = last_jump;
407 switch (classification)
409 case PFREE_CANDIDATE:
410 if (flag_schedule_speculative_load)
412 bb = earliest_block_with_similiar_load (last_block, insn);
413 if (bb)
415 bb = (basic_block) bb->aux;
416 if (!bb)
417 break;
418 prev = BB_END (bb);
421 /* Fall through. */
422 case TRAP_RISKY:
423 case IRISKY:
424 case PRISKY_CANDIDATE:
425 /* ??? We could implement better checking PRISKY_CANDIDATEs
426 analogous to sched-rgn.c. */
427 /* We can not change the mode of the backward
428 dependency because REG_DEP_ANTI has the lowest
429 rank. */
430 if (! sched_insns_conditions_mutex_p (insn, prev))
432 dep_def _dep, *dep = &_dep;
434 init_dep (dep, prev, insn, REG_DEP_ANTI);
436 if (!(current_sched_info->flags & USE_DEPS_LIST))
438 enum DEPS_ADJUST_RESULT res;
440 res = sd_add_or_update_dep (dep, false);
442 /* We can't change an existing dependency with
443 DEP_ANTI. */
444 gcc_assert (res != DEP_CHANGED);
446 else
448 if ((current_sched_info->flags & DO_SPECULATION)
449 && (spec_info->mask & BEGIN_CONTROL))
450 DEP_STATUS (dep) = set_dep_weak (DEP_ANTI, BEGIN_CONTROL,
451 MAX_DEP_WEAK);
453 sd_add_or_update_dep (dep, false);
455 /* Dep_status could have been changed.
456 No assertion here. */
460 break;
462 default:
463 break;
467 /* Maintain the invariant that bb->aux is clear after use. */
468 while (last_block)
470 bb = (basic_block) last_block->aux;
471 last_block->aux = NULL;
472 last_block = bb;
476 /* Schedule a single extended basic block, defined by the boundaries HEAD
477 and TAIL. */
479 static basic_block
480 schedule_ebb (rtx head, rtx tail)
482 basic_block first_bb, target_bb;
483 struct deps_desc tmp_deps;
485 first_bb = BLOCK_FOR_INSN (head);
486 last_bb = BLOCK_FOR_INSN (tail);
488 if (no_real_insns_p (head, tail))
489 return BLOCK_FOR_INSN (tail);
491 gcc_assert (INSN_P (head) && INSN_P (tail));
493 if (!bitmap_bit_p (&dont_calc_deps, first_bb->index))
495 init_deps_global ();
497 /* Compute dependencies. */
498 init_deps (&tmp_deps, false);
499 sched_analyze (&tmp_deps, head, tail);
500 free_deps (&tmp_deps);
502 add_deps_for_risky_insns (head, tail);
504 if (targetm.sched.dependencies_evaluation_hook)
505 targetm.sched.dependencies_evaluation_hook (head, tail);
507 finish_deps_global ();
509 else
510 /* Only recovery blocks can have their dependencies already calculated,
511 and they always are single block ebbs. */
512 gcc_assert (first_bb == last_bb);
514 /* Set priorities. */
515 current_sched_info->sched_max_insns_priority = 0;
516 rgn_n_insns = set_priorities (head, tail);
517 current_sched_info->sched_max_insns_priority++;
519 current_sched_info->prev_head = PREV_INSN (head);
520 current_sched_info->next_tail = NEXT_INSN (tail);
522 remove_notes (head, tail);
524 unlink_bb_notes (first_bb, last_bb);
526 target_bb = first_bb;
528 /* Make ready list big enough to hold all the instructions from the ebb. */
529 sched_extend_ready_list (rgn_n_insns);
530 schedule_block (&target_bb);
531 /* Free ready list. */
532 sched_finish_ready_list ();
534 /* We might pack all instructions into fewer blocks,
535 so we may made some of them empty. Can't assert (b == last_bb). */
537 /* Sanity check: verify that all region insns were scheduled. */
538 gcc_assert (sched_rgn_n_insns == rgn_n_insns);
540 /* Free dependencies. */
541 sched_free_deps (current_sched_info->head, current_sched_info->tail, true);
543 gcc_assert (haifa_recovery_bb_ever_added_p
544 || deps_pools_are_empty_p ());
546 if (EDGE_COUNT (last_bb->preds) == 0)
547 /* LAST_BB is unreachable. */
549 gcc_assert (first_bb != last_bb
550 && EDGE_COUNT (last_bb->succs) == 0);
551 last_bb = last_bb->prev_bb;
552 delete_basic_block (last_bb->next_bb);
555 return last_bb;
558 /* The one entry point in this file. */
560 void
561 schedule_ebbs (void)
563 basic_block bb;
564 int probability_cutoff;
565 rtx tail;
567 if (profile_info && flag_branch_probabilities)
568 probability_cutoff = PARAM_VALUE (TRACER_MIN_BRANCH_PROBABILITY_FEEDBACK);
569 else
570 probability_cutoff = PARAM_VALUE (TRACER_MIN_BRANCH_PROBABILITY);
571 probability_cutoff = REG_BR_PROB_BASE / 100 * probability_cutoff;
573 /* Taking care of this degenerate case makes the rest of
574 this code simpler. */
575 if (n_basic_blocks == NUM_FIXED_BLOCKS)
576 return;
578 /* Setup infos. */
580 memcpy (&ebb_common_sched_info, &haifa_common_sched_info,
581 sizeof (ebb_common_sched_info));
583 ebb_common_sched_info.fix_recovery_cfg = ebb_fix_recovery_cfg;
584 ebb_common_sched_info.add_block = ebb_add_block;
585 ebb_common_sched_info.sched_pass_id = SCHED_EBB_PASS;
587 common_sched_info = &ebb_common_sched_info;
588 sched_deps_info = &ebb_sched_deps_info;
589 current_sched_info = &ebb_sched_info;
592 haifa_sched_init ();
594 compute_bb_for_insn ();
596 /* Initialize DONT_CALC_DEPS and ebb-{start, end} markers. */
597 bitmap_initialize (&dont_calc_deps, 0);
598 bitmap_clear (&dont_calc_deps);
600 /* Schedule every region in the subroutine. */
601 FOR_EACH_BB (bb)
603 rtx head = BB_HEAD (bb);
605 if (bb->flags & BB_DISABLE_SCHEDULE)
606 continue;
608 for (;;)
610 edge e;
611 tail = BB_END (bb);
612 if (bb->next_bb == EXIT_BLOCK_PTR
613 || LABEL_P (BB_HEAD (bb->next_bb)))
614 break;
615 e = find_fallthru_edge (bb->succs);
616 if (! e)
617 break;
618 if (e->probability <= probability_cutoff)
619 break;
620 if (e->dest->flags & BB_DISABLE_SCHEDULE)
621 break;
622 bb = bb->next_bb;
625 /* Blah. We should fix the rest of the code not to get confused by
626 a note or two. */
627 while (head != tail)
629 if (NOTE_P (head) || DEBUG_INSN_P (head))
630 head = NEXT_INSN (head);
631 else if (NOTE_P (tail) || DEBUG_INSN_P (tail))
632 tail = PREV_INSN (tail);
633 else if (LABEL_P (head))
634 head = NEXT_INSN (head);
635 else
636 break;
639 bb = schedule_ebb (head, tail);
641 bitmap_clear (&dont_calc_deps);
643 /* Reposition the prologue and epilogue notes in case we moved the
644 prologue/epilogue insns. */
645 if (reload_completed)
646 reposition_prologue_and_epilogue_notes ();
648 haifa_sched_finish ();
651 /* INSN has been added to/removed from current ebb. */
652 static void
653 ebb_add_remove_insn (rtx insn ATTRIBUTE_UNUSED, int remove_p)
655 if (!remove_p)
656 rgn_n_insns++;
657 else
658 rgn_n_insns--;
661 /* BB was added to ebb after AFTER. */
662 static void
663 ebb_add_block (basic_block bb, basic_block after)
665 /* Recovery blocks are always bounded by BARRIERS,
666 therefore, they always form single block EBB,
667 therefore, we can use rec->index to identify such EBBs. */
668 if (after == EXIT_BLOCK_PTR)
669 bitmap_set_bit (&dont_calc_deps, bb->index);
670 else if (after == last_bb)
671 last_bb = bb;
674 /* Return next block in ebb chain. For parameter meaning please refer to
675 sched-int.h: struct sched_info: advance_target_bb. */
676 static basic_block
677 advance_target_bb (basic_block bb, rtx insn)
679 if (insn)
681 if (BLOCK_FOR_INSN (insn) != bb
682 && control_flow_insn_p (insn)
683 /* We handle interblock movement of the speculation check
684 or over a speculation check in
685 haifa-sched.c: move_block_after_check (). */
686 && !IS_SPECULATION_BRANCHY_CHECK_P (insn)
687 && !IS_SPECULATION_BRANCHY_CHECK_P (BB_END (bb)))
689 /* Assert that we don't move jumps across blocks. */
690 gcc_assert (!control_flow_insn_p (BB_END (bb))
691 && NOTE_INSN_BASIC_BLOCK_P (BB_HEAD (bb->next_bb)));
692 return bb;
694 else
695 return 0;
697 else
698 /* Return next non empty block. */
702 gcc_assert (bb != last_bb);
704 bb = bb->next_bb;
706 while (bb_note (bb) == BB_END (bb));
708 return bb;
712 /* Fix internal data after interblock movement of jump instruction.
713 For parameter meaning please refer to
714 sched-int.h: struct sched_info: fix_recovery_cfg. */
715 static void
716 ebb_fix_recovery_cfg (int bbi ATTRIBUTE_UNUSED, int jump_bbi,
717 int jump_bb_nexti)
719 gcc_assert (last_bb->index != bbi);
721 if (jump_bb_nexti == last_bb->index)
722 last_bb = BASIC_BLOCK (jump_bbi);
725 #endif /* INSN_SCHEDULING */