1 /* Instruction scheduling pass.
2 Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008
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
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
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/>. */
26 #include "coretypes.h"
28 #include "diagnostic-core.h"
32 #include "hard-reg-set.h"
36 #include "insn-config.h"
37 #include "insn-attr.h"
41 #include "cfglayout.h"
43 #include "sched-int.h"
48 #ifdef INSN_SCHEDULING
50 /* The number of insns to be scheduled in total. */
51 static int rgn_n_insns
;
53 /* The number of insns scheduled so far. */
54 static int sched_rgn_n_insns
;
56 /* Set of blocks, that already have their dependencies calculated. */
57 static bitmap_head dont_calc_deps
;
59 /* Last basic block in current ebb. */
60 static basic_block last_bb
;
62 /* Implementations of the sched_info functions for region scheduling. */
63 static void init_ready_list (void);
64 static void begin_schedule_ready (rtx
, rtx
);
65 static int schedule_more_p (void);
66 static const char *ebb_print_insn (const_rtx
, int);
67 static int rank (rtx
, rtx
);
68 static int ebb_contributes_to_priority (rtx
, rtx
);
69 static basic_block
earliest_block_with_similiar_load (basic_block
, rtx
);
70 static void add_deps_for_risky_insns (rtx
, rtx
);
71 static basic_block
schedule_ebb (rtx
, rtx
);
72 static void debug_ebb_dependencies (rtx
, rtx
);
74 static void ebb_add_remove_insn (rtx
, int);
75 static void ebb_add_block (basic_block
, basic_block
);
76 static basic_block
advance_target_bb (basic_block
, rtx
);
77 static void ebb_fix_recovery_cfg (int, int, int);
79 /* Return nonzero if there are more insns that should be scheduled. */
82 schedule_more_p (void)
84 return sched_rgn_n_insns
< rgn_n_insns
;
87 /* Print dependency information about ebb between HEAD and TAIL. */
89 debug_ebb_dependencies (rtx head
, rtx tail
)
92 ";; --------------- forward dependences: ------------ \n");
94 fprintf (sched_dump
, "\n;; --- EBB Dependences --- from bb%d to bb%d \n",
95 BLOCK_NUM (head
), BLOCK_NUM (tail
));
97 debug_dependencies (head
, tail
);
100 /* Add all insns that are initially ready to the ready list READY. Called
101 once before scheduling a set of insns. */
104 init_ready_list (void)
107 rtx prev_head
= current_sched_info
->prev_head
;
108 rtx next_tail
= current_sched_info
->next_tail
;
111 sched_rgn_n_insns
= 0;
113 /* Print debugging information. */
114 if (sched_verbose
>= 5)
115 debug_ebb_dependencies (NEXT_INSN (prev_head
), PREV_INSN (next_tail
));
117 /* Initialize ready list with all 'ready' insns in target block.
118 Count number of insns in the target block being scheduled. */
119 for (insn
= NEXT_INSN (prev_head
); insn
!= next_tail
; insn
= NEXT_INSN (insn
))
125 gcc_assert (n
== rgn_n_insns
);
128 /* INSN is being scheduled after LAST. Update counters. */
130 begin_schedule_ready (rtx insn
, rtx last
)
134 if (BLOCK_FOR_INSN (insn
) == last_bb
135 /* INSN is a jump in the last block, ... */
136 && control_flow_insn_p (insn
)
137 /* that is going to be moved over some instructions. */
138 && last
!= PREV_INSN (insn
))
143 /* An obscure special case, where we do have partially dead
144 instruction scheduled after last control flow instruction.
145 In this case we can create new basic block. It is
146 always exactly one basic block last in the sequence. */
148 e
= find_fallthru_edge (last_bb
->succs
);
150 gcc_checking_assert (!e
|| !(e
->flags
& EDGE_COMPLEX
));
152 gcc_checking_assert (BLOCK_FOR_INSN (insn
) == last_bb
153 && !IS_SPECULATION_CHECK_P (insn
)
154 && BB_HEAD (last_bb
) != insn
155 && BB_END (last_bb
) == insn
);
160 x
= NEXT_INSN (insn
);
162 gcc_checking_assert (NOTE_P (x
) || LABEL_P (x
));
164 gcc_checking_assert (BARRIER_P (x
));
170 gcc_assert (NOTE_INSN_BASIC_BLOCK_P (BB_END (bb
)));
173 /* Create an empty unreachable block after the INSN. */
174 bb
= create_basic_block (NEXT_INSN (insn
), NULL_RTX
, last_bb
);
176 /* split_edge () creates BB before E->DEST. Keep in mind, that
177 this operation extends scheduling region till the end of BB.
178 Hence, we need to shift NEXT_TAIL, so haifa-sched.c won't go out
179 of the scheduling region. */
180 current_sched_info
->next_tail
= NEXT_INSN (BB_END (bb
));
181 gcc_assert (current_sched_info
->next_tail
);
183 /* Append new basic block to the end of the ebb. */
184 sched_init_only_bb (bb
, last_bb
);
185 gcc_assert (last_bb
== bb
);
189 /* Return a string that contains the insn uid and optionally anything else
190 necessary to identify this insn in an output. It's valid to use a
191 static buffer for this. The ALIGNED parameter should cause the string
192 to be formatted so that multiple output lines will line up nicely. */
195 ebb_print_insn (const_rtx insn
, int aligned ATTRIBUTE_UNUSED
)
199 /* '+' before insn means it is a new cycle start. */
200 if (GET_MODE (insn
) == TImode
)
201 sprintf (tmp
, "+ %4d", INSN_UID (insn
));
203 sprintf (tmp
, " %4d", INSN_UID (insn
));
208 /* Compare priority of two insns. Return a positive number if the second
209 insn is to be preferred for scheduling, and a negative one if the first
210 is to be preferred. Zero if they are equally good. */
213 rank (rtx insn1
, rtx insn2
)
215 basic_block bb1
= BLOCK_FOR_INSN (insn1
);
216 basic_block bb2
= BLOCK_FOR_INSN (insn2
);
218 if (bb1
->count
> bb2
->count
219 || bb1
->frequency
> bb2
->frequency
)
221 if (bb1
->count
< bb2
->count
222 || bb1
->frequency
< bb2
->frequency
)
227 /* NEXT is an instruction that depends on INSN (a backward dependence);
228 return nonzero if we should include this dependence in priority
232 ebb_contributes_to_priority (rtx next ATTRIBUTE_UNUSED
,
233 rtx insn ATTRIBUTE_UNUSED
)
238 /* INSN is a JUMP_INSN, COND_SET is the set of registers that are
239 conditionally set before INSN. Store the set of registers that
240 must be considered as used by this jump in USED and that of
241 registers that must be considered as set in SET. */
244 ebb_compute_jump_reg_dependencies (rtx insn
, regset cond_set
, regset used
,
247 basic_block b
= BLOCK_FOR_INSN (insn
);
251 FOR_EACH_EDGE (e
, ei
, b
->succs
)
252 if (e
->flags
& EDGE_FALLTHRU
)
253 /* The jump may be a by-product of a branch that has been merged
254 in the main codepath after being conditionalized. Therefore
255 it may guard the fallthrough block from using a value that has
256 conditionally overwritten that of the main codepath. So we
257 consider that it restores the value of the main codepath. */
258 bitmap_and (set
, df_get_live_in (e
->dest
), cond_set
);
260 bitmap_ior_into (used
, df_get_live_in (e
->dest
));
263 /* Used in schedule_insns to initialize current_sched_info for scheduling
264 regions (or single basic blocks). */
266 static struct common_sched_info_def ebb_common_sched_info
;
268 static struct sched_deps_info_def ebb_sched_deps_info
=
270 ebb_compute_jump_reg_dependencies
,
271 NULL
, NULL
, NULL
, NULL
, NULL
, NULL
, NULL
, NULL
, NULL
, NULL
,
276 static struct haifa_sched_info ebb_sched_info
=
284 ebb_contributes_to_priority
,
285 NULL
, /* insn_finishes_block_p */
292 begin_schedule_ready
,
295 /* We can create new blocks in begin_schedule_ready (). */
299 /* Returns the earliest block in EBB currently being processed where a
300 "similar load" 'insn2' is found, and hence LOAD_INSN can move
301 speculatively into the found block. All the following must hold:
303 (1) both loads have 1 base register (PFREE_CANDIDATEs).
304 (2) load_insn and load2 have a def-use dependence upon
305 the same insn 'insn1'.
307 From all these we can conclude that the two loads access memory
308 addresses that differ at most by a constant, and hence if moving
309 load_insn would cause an exception, it would have been caused by
312 The function uses list (given by LAST_BLOCK) of already processed
313 blocks in EBB. The list is formed in `add_deps_for_risky_insns'. */
316 earliest_block_with_similiar_load (basic_block last_block
, rtx load_insn
)
318 sd_iterator_def back_sd_it
;
320 basic_block bb
, earliest_block
= NULL
;
322 FOR_EACH_DEP (load_insn
, SD_LIST_BACK
, back_sd_it
, back_dep
)
324 rtx insn1
= DEP_PRO (back_dep
);
326 if (DEP_TYPE (back_dep
) == REG_DEP_TRUE
)
327 /* Found a DEF-USE dependence (insn1, load_insn). */
329 sd_iterator_def fore_sd_it
;
332 FOR_EACH_DEP (insn1
, SD_LIST_FORW
, fore_sd_it
, fore_dep
)
334 rtx insn2
= DEP_CON (fore_dep
);
335 basic_block insn2_block
= BLOCK_FOR_INSN (insn2
);
337 if (DEP_TYPE (fore_dep
) == REG_DEP_TRUE
)
339 if (earliest_block
!= NULL
340 && earliest_block
->index
< insn2_block
->index
)
343 /* Found a DEF-USE dependence (insn1, insn2). */
344 if (haifa_classify_insn (insn2
) != PFREE_CANDIDATE
)
345 /* insn2 not guaranteed to be a 1 base reg load. */
348 for (bb
= last_block
; bb
; bb
= (basic_block
) bb
->aux
)
349 if (insn2_block
== bb
)
353 /* insn2 is the similar load. */
354 earliest_block
= insn2_block
;
360 return earliest_block
;
363 /* The following function adds dependencies between jumps and risky
364 insns in given ebb. */
367 add_deps_for_risky_insns (rtx head
, rtx tail
)
371 rtx last_jump
= NULL_RTX
;
372 rtx next_tail
= NEXT_INSN (tail
);
373 basic_block last_block
= NULL
, bb
;
375 for (insn
= head
; insn
!= next_tail
; insn
= NEXT_INSN (insn
))
376 if (control_flow_insn_p (insn
))
378 bb
= BLOCK_FOR_INSN (insn
);
379 bb
->aux
= last_block
;
383 else if (INSN_P (insn
) && last_jump
!= NULL_RTX
)
385 classification
= haifa_classify_insn (insn
);
387 switch (classification
)
389 case PFREE_CANDIDATE
:
390 if (flag_schedule_speculative_load
)
392 bb
= earliest_block_with_similiar_load (last_block
, insn
);
395 bb
= (basic_block
) bb
->aux
;
404 case PRISKY_CANDIDATE
:
405 /* ??? We could implement better checking PRISKY_CANDIDATEs
406 analogous to sched-rgn.c. */
407 /* We can not change the mode of the backward
408 dependency because REG_DEP_ANTI has the lowest
410 if (! sched_insns_conditions_mutex_p (insn
, prev
))
412 dep_def _dep
, *dep
= &_dep
;
414 init_dep (dep
, prev
, insn
, REG_DEP_ANTI
);
416 if (!(current_sched_info
->flags
& USE_DEPS_LIST
))
418 enum DEPS_ADJUST_RESULT res
;
420 res
= sd_add_or_update_dep (dep
, false);
422 /* We can't change an existing dependency with
424 gcc_assert (res
!= DEP_CHANGED
);
428 if ((current_sched_info
->flags
& DO_SPECULATION
)
429 && (spec_info
->mask
& BEGIN_CONTROL
))
430 DEP_STATUS (dep
) = set_dep_weak (DEP_ANTI
, BEGIN_CONTROL
,
433 sd_add_or_update_dep (dep
, false);
435 /* Dep_status could have been changed.
436 No assertion here. */
446 /* Maintain the invariant that bb->aux is clear after use. */
449 bb
= (basic_block
) last_block
->aux
;
450 last_block
->aux
= NULL
;
455 /* Schedule a single extended basic block, defined by the boundaries HEAD
459 schedule_ebb (rtx head
, rtx tail
)
461 basic_block first_bb
, target_bb
;
462 struct deps_desc tmp_deps
;
464 first_bb
= BLOCK_FOR_INSN (head
);
465 last_bb
= BLOCK_FOR_INSN (tail
);
467 if (no_real_insns_p (head
, tail
))
468 return BLOCK_FOR_INSN (tail
);
470 gcc_assert (INSN_P (head
) && INSN_P (tail
));
472 if (!bitmap_bit_p (&dont_calc_deps
, first_bb
->index
))
476 /* Compute dependencies. */
477 init_deps (&tmp_deps
, false);
478 sched_analyze (&tmp_deps
, head
, tail
);
479 free_deps (&tmp_deps
);
481 add_deps_for_risky_insns (head
, tail
);
483 if (targetm
.sched
.dependencies_evaluation_hook
)
484 targetm
.sched
.dependencies_evaluation_hook (head
, tail
);
486 finish_deps_global ();
489 /* Only recovery blocks can have their dependencies already calculated,
490 and they always are single block ebbs. */
491 gcc_assert (first_bb
== last_bb
);
493 /* Set priorities. */
494 current_sched_info
->sched_max_insns_priority
= 0;
495 rgn_n_insns
= set_priorities (head
, tail
);
496 current_sched_info
->sched_max_insns_priority
++;
498 current_sched_info
->prev_head
= PREV_INSN (head
);
499 current_sched_info
->next_tail
= NEXT_INSN (tail
);
501 remove_notes (head
, tail
);
503 unlink_bb_notes (first_bb
, last_bb
);
505 target_bb
= first_bb
;
507 /* Make ready list big enough to hold all the instructions from the ebb. */
508 sched_extend_ready_list (rgn_n_insns
);
509 schedule_block (&target_bb
);
510 /* Free ready list. */
511 sched_finish_ready_list ();
513 /* We might pack all instructions into fewer blocks,
514 so we may made some of them empty. Can't assert (b == last_bb). */
516 /* Sanity check: verify that all region insns were scheduled. */
517 gcc_assert (sched_rgn_n_insns
== rgn_n_insns
);
519 /* Free dependencies. */
520 sched_free_deps (current_sched_info
->head
, current_sched_info
->tail
, true);
522 gcc_assert (haifa_recovery_bb_ever_added_p
523 || deps_pools_are_empty_p ());
525 if (EDGE_COUNT (last_bb
->preds
) == 0)
526 /* LAST_BB is unreachable. */
528 gcc_assert (first_bb
!= last_bb
529 && EDGE_COUNT (last_bb
->succs
) == 0);
530 last_bb
= last_bb
->prev_bb
;
531 delete_basic_block (last_bb
->next_bb
);
537 /* The one entry point in this file. */
543 int probability_cutoff
;
546 if (profile_info
&& flag_branch_probabilities
)
547 probability_cutoff
= PARAM_VALUE (TRACER_MIN_BRANCH_PROBABILITY_FEEDBACK
);
549 probability_cutoff
= PARAM_VALUE (TRACER_MIN_BRANCH_PROBABILITY
);
550 probability_cutoff
= REG_BR_PROB_BASE
/ 100 * probability_cutoff
;
552 /* Taking care of this degenerate case makes the rest of
553 this code simpler. */
554 if (n_basic_blocks
== NUM_FIXED_BLOCKS
)
559 memcpy (&ebb_common_sched_info
, &haifa_common_sched_info
,
560 sizeof (ebb_common_sched_info
));
562 ebb_common_sched_info
.fix_recovery_cfg
= ebb_fix_recovery_cfg
;
563 ebb_common_sched_info
.add_block
= ebb_add_block
;
564 ebb_common_sched_info
.sched_pass_id
= SCHED_EBB_PASS
;
566 common_sched_info
= &ebb_common_sched_info
;
567 sched_deps_info
= &ebb_sched_deps_info
;
568 current_sched_info
= &ebb_sched_info
;
573 compute_bb_for_insn ();
575 /* Initialize DONT_CALC_DEPS and ebb-{start, end} markers. */
576 bitmap_initialize (&dont_calc_deps
, 0);
577 bitmap_clear (&dont_calc_deps
);
579 /* Schedule every region in the subroutine. */
582 rtx head
= BB_HEAD (bb
);
588 if (bb
->next_bb
== EXIT_BLOCK_PTR
589 || LABEL_P (BB_HEAD (bb
->next_bb
)))
591 e
= find_fallthru_edge (bb
->succs
);
594 if (e
->probability
<= probability_cutoff
)
599 /* Blah. We should fix the rest of the code not to get confused by
603 if (NOTE_P (head
) || BOUNDARY_DEBUG_INSN_P (head
))
604 head
= NEXT_INSN (head
);
605 else if (NOTE_P (tail
) || BOUNDARY_DEBUG_INSN_P (tail
))
606 tail
= PREV_INSN (tail
);
607 else if (LABEL_P (head
))
608 head
= NEXT_INSN (head
);
613 bb
= schedule_ebb (head
, tail
);
615 bitmap_clear (&dont_calc_deps
);
617 /* Reposition the prologue and epilogue notes in case we moved the
618 prologue/epilogue insns. */
619 if (reload_completed
)
620 reposition_prologue_and_epilogue_notes ();
622 haifa_sched_finish ();
625 /* INSN has been added to/removed from current ebb. */
627 ebb_add_remove_insn (rtx insn ATTRIBUTE_UNUSED
, int remove_p
)
635 /* BB was added to ebb after AFTER. */
637 ebb_add_block (basic_block bb
, basic_block after
)
639 /* Recovery blocks are always bounded by BARRIERS,
640 therefore, they always form single block EBB,
641 therefore, we can use rec->index to identify such EBBs. */
642 if (after
== EXIT_BLOCK_PTR
)
643 bitmap_set_bit (&dont_calc_deps
, bb
->index
);
644 else if (after
== last_bb
)
648 /* Return next block in ebb chain. For parameter meaning please refer to
649 sched-int.h: struct sched_info: advance_target_bb. */
651 advance_target_bb (basic_block bb
, rtx insn
)
655 if (BLOCK_FOR_INSN (insn
) != bb
656 && control_flow_insn_p (insn
)
657 /* We handle interblock movement of the speculation check
658 or over a speculation check in
659 haifa-sched.c: move_block_after_check (). */
660 && !IS_SPECULATION_BRANCHY_CHECK_P (insn
)
661 && !IS_SPECULATION_BRANCHY_CHECK_P (BB_END (bb
)))
663 /* Assert that we don't move jumps across blocks. */
664 gcc_assert (!control_flow_insn_p (BB_END (bb
))
665 && NOTE_INSN_BASIC_BLOCK_P (BB_HEAD (bb
->next_bb
)));
672 /* Return next non empty block. */
676 gcc_assert (bb
!= last_bb
);
680 while (bb_note (bb
) == BB_END (bb
));
686 /* Fix internal data after interblock movement of jump instruction.
687 For parameter meaning please refer to
688 sched-int.h: struct sched_info: fix_recovery_cfg. */
690 ebb_fix_recovery_cfg (int bbi ATTRIBUTE_UNUSED
, int jump_bbi
,
693 gcc_assert (last_bb
->index
!= bbi
);
695 if (jump_bb_nexti
== last_bb
->index
)
696 last_bb
= BASIC_BLOCK (jump_bbi
);
699 #endif /* INSN_SCHEDULING */