1 /* RTL-level loop invariant motion.
2 Copyright (C) 2004-2014 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it
7 under the terms of the GNU General Public License as published by the
8 Free Software Foundation; either version 3, or (at your option) any
11 GCC is distributed in the hope that it will be useful, but WITHOUT
12 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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/>. */
20 /* This implements the loop invariant motion pass. It is very simple
21 (no calls, no loads/stores, etc.). This should be sufficient to cleanup
22 things like address arithmetics -- other more complicated invariants should
23 be eliminated on GIMPLE either in tree-ssa-loop-im.c or in tree-ssa-pre.c.
25 We proceed loop by loop -- it is simpler than trying to handle things
26 globally and should not lose much. First we inspect all sets inside loop
27 and create a dependency graph on insns (saying "to move this insn, you must
28 also move the following insns").
30 We then need to determine what to move. We estimate the number of registers
31 used and move as many invariants as possible while we still have enough free
32 registers. We prefer the expensive invariants.
34 Then we move the selected invariants out of the loop, creating a new
35 temporaries for them if necessary. */
39 #include "coretypes.h"
41 #include "hard-reg-set.h"
45 #include "basic-block.h"
58 #include "hash-table.h"
65 /* The data stored for the loop. */
69 struct loop
*outermost_exit
; /* The outermost exit of the loop. */
70 bool has_call
; /* True if the loop contains a call. */
71 /* Maximal register pressure inside loop for given register class
72 (defined only for the pressure classes). */
73 int max_reg_pressure
[N_REG_CLASSES
];
74 /* Loop regs referenced and live pseudo-registers. */
76 bitmap_head regs_live
;
79 #define LOOP_DATA(LOOP) ((struct loop_data *) (LOOP)->aux)
81 /* The description of an use. */
85 rtx
*pos
; /* Position of the use. */
86 rtx_insn
*insn
; /* The insn in that the use occurs. */
87 unsigned addr_use_p
; /* Whether the use occurs in an address. */
88 struct use
*next
; /* Next use in the list. */
91 /* The description of a def. */
95 struct use
*uses
; /* The list of uses that are uniquely reached
97 unsigned n_uses
; /* Number of such uses. */
98 unsigned n_addr_uses
; /* Number of uses in addresses. */
99 unsigned invno
; /* The corresponding invariant. */
102 /* The data stored for each invariant. */
106 /* The number of the invariant. */
109 /* The number of the invariant with the same value. */
112 /* The number of invariants which eqto this. */
115 /* If we moved the invariant out of the loop, the register that contains its
119 /* If we moved the invariant out of the loop, the original regno
120 that contained its value. */
123 /* The definition of the invariant. */
126 /* The insn in that it is defined. */
129 /* Whether it is always executed. */
130 bool always_executed
;
132 /* Whether to move the invariant. */
135 /* Whether the invariant is cheap when used as an address. */
138 /* Cost of the invariant. */
141 /* The invariants it depends on. */
144 /* Used for detecting already visited invariants during determining
145 costs of movements. */
149 /* Currently processed loop. */
150 static struct loop
*curr_loop
;
152 /* Table of invariants indexed by the df_ref uid field. */
154 static unsigned int invariant_table_size
= 0;
155 static struct invariant
** invariant_table
;
157 /* Entry for hash table of invariant expressions. */
159 struct invariant_expr_entry
162 struct invariant
*inv
;
168 enum machine_mode mode
;
174 /* The actual stamp for marking already visited invariants during determining
175 costs of movements. */
177 static unsigned actual_stamp
;
179 typedef struct invariant
*invariant_p
;
182 /* The invariants. */
184 static vec
<invariant_p
> invariants
;
186 /* Check the size of the invariant table and realloc if necessary. */
189 check_invariant_table_size (void)
191 if (invariant_table_size
< DF_DEFS_TABLE_SIZE ())
193 unsigned int new_size
= DF_DEFS_TABLE_SIZE () + (DF_DEFS_TABLE_SIZE () / 4);
194 invariant_table
= XRESIZEVEC (struct invariant
*, invariant_table
, new_size
);
195 memset (&invariant_table
[invariant_table_size
], 0,
196 (new_size
- invariant_table_size
) * sizeof (struct invariant
*));
197 invariant_table_size
= new_size
;
201 /* Test for possibility of invariantness of X. */
204 check_maybe_invariant (rtx x
)
206 enum rtx_code code
= GET_CODE (x
);
220 case UNSPEC_VOLATILE
:
228 /* Load/store motion is done elsewhere. ??? Perhaps also add it here?
229 It should not be hard, and might be faster than "elsewhere". */
231 /* Just handle the most trivial case where we load from an unchanging
232 location (most importantly, pic tables). */
233 if (MEM_READONLY_P (x
) && !MEM_VOLATILE_P (x
))
239 /* Don't mess with insns declared volatile. */
240 if (MEM_VOLATILE_P (x
))
248 fmt
= GET_RTX_FORMAT (code
);
249 for (i
= GET_RTX_LENGTH (code
) - 1; i
>= 0; i
--)
253 if (!check_maybe_invariant (XEXP (x
, i
)))
256 else if (fmt
[i
] == 'E')
258 for (j
= 0; j
< XVECLEN (x
, i
); j
++)
259 if (!check_maybe_invariant (XVECEXP (x
, i
, j
)))
267 /* Returns the invariant definition for USE, or NULL if USE is not
270 static struct invariant
*
271 invariant_for_use (df_ref use
)
273 struct df_link
*defs
;
275 basic_block bb
= DF_REF_BB (use
), def_bb
;
277 if (DF_REF_FLAGS (use
) & DF_REF_READ_WRITE
)
280 defs
= DF_REF_CHAIN (use
);
281 if (!defs
|| defs
->next
)
284 check_invariant_table_size ();
285 if (!invariant_table
[DF_REF_ID (def
)])
288 def_bb
= DF_REF_BB (def
);
289 if (!dominated_by_p (CDI_DOMINATORS
, bb
, def_bb
))
291 return invariant_table
[DF_REF_ID (def
)];
294 /* Computes hash value for invariant expression X in INSN. */
297 hash_invariant_expr_1 (rtx_insn
*insn
, rtx x
)
299 enum rtx_code code
= GET_CODE (x
);
302 hashval_t val
= code
;
305 struct invariant
*inv
;
313 return hash_rtx (x
, GET_MODE (x
), &do_not_record_p
, NULL
, false);
316 use
= df_find_use (insn
, x
);
318 return hash_rtx (x
, GET_MODE (x
), &do_not_record_p
, NULL
, false);
319 inv
= invariant_for_use (use
);
321 return hash_rtx (x
, GET_MODE (x
), &do_not_record_p
, NULL
, false);
323 gcc_assert (inv
->eqto
!= ~0u);
330 fmt
= GET_RTX_FORMAT (code
);
331 for (i
= GET_RTX_LENGTH (code
) - 1; i
>= 0; i
--)
334 val
^= hash_invariant_expr_1 (insn
, XEXP (x
, i
));
335 else if (fmt
[i
] == 'E')
337 for (j
= 0; j
< XVECLEN (x
, i
); j
++)
338 val
^= hash_invariant_expr_1 (insn
, XVECEXP (x
, i
, j
));
340 else if (fmt
[i
] == 'i' || fmt
[i
] == 'n')
347 /* Returns true if the invariant expressions E1 and E2 used in insns INSN1
348 and INSN2 have always the same value. */
351 invariant_expr_equal_p (rtx_insn
*insn1
, rtx e1
, rtx_insn
*insn2
, rtx e2
)
353 enum rtx_code code
= GET_CODE (e1
);
357 struct invariant
*inv1
= NULL
, *inv2
= NULL
;
360 /* If mode of only one of the operands is VOIDmode, it is not equivalent to
361 the other one. If both are VOIDmode, we rely on the caller of this
362 function to verify that their modes are the same. */
363 if (code
!= GET_CODE (e2
) || GET_MODE (e1
) != GET_MODE (e2
))
372 return rtx_equal_p (e1
, e2
);
375 use1
= df_find_use (insn1
, e1
);
376 use2
= df_find_use (insn2
, e2
);
378 inv1
= invariant_for_use (use1
);
380 inv2
= invariant_for_use (use2
);
383 return rtx_equal_p (e1
, e2
);
388 gcc_assert (inv1
->eqto
!= ~0u);
389 gcc_assert (inv2
->eqto
!= ~0u);
390 return inv1
->eqto
== inv2
->eqto
;
396 fmt
= GET_RTX_FORMAT (code
);
397 for (i
= GET_RTX_LENGTH (code
) - 1; i
>= 0; i
--)
404 if (!invariant_expr_equal_p (insn1
, sub1
, insn2
, sub2
))
408 else if (fmt
[i
] == 'E')
410 if (XVECLEN (e1
, i
) != XVECLEN (e2
, i
))
413 for (j
= 0; j
< XVECLEN (e1
, i
); j
++)
415 sub1
= XVECEXP (e1
, i
, j
);
416 sub2
= XVECEXP (e2
, i
, j
);
418 if (!invariant_expr_equal_p (insn1
, sub1
, insn2
, sub2
))
422 else if (fmt
[i
] == 'i' || fmt
[i
] == 'n')
424 if (XINT (e1
, i
) != XINT (e2
, i
))
427 /* Unhandled type of subexpression, we fail conservatively. */
435 struct invariant_expr_hasher
: typed_free_remove
<invariant_expr_entry
>
437 typedef invariant_expr_entry value_type
;
438 typedef invariant_expr_entry compare_type
;
439 static inline hashval_t
hash (const value_type
*);
440 static inline bool equal (const value_type
*, const compare_type
*);
443 /* Returns hash value for invariant expression entry ENTRY. */
446 invariant_expr_hasher::hash (const value_type
*entry
)
451 /* Compares invariant expression entries ENTRY1 and ENTRY2. */
454 invariant_expr_hasher::equal (const value_type
*entry1
,
455 const compare_type
*entry2
)
457 if (entry1
->mode
!= entry2
->mode
)
460 return invariant_expr_equal_p (entry1
->inv
->insn
, entry1
->expr
,
461 entry2
->inv
->insn
, entry2
->expr
);
464 typedef hash_table
<invariant_expr_hasher
> invariant_htab_type
;
466 /* Checks whether invariant with value EXPR in machine mode MODE is
467 recorded in EQ. If this is the case, return the invariant. Otherwise
468 insert INV to the table for this expression and return INV. */
470 static struct invariant
*
471 find_or_insert_inv (invariant_htab_type
*eq
, rtx expr
, enum machine_mode mode
,
472 struct invariant
*inv
)
474 hashval_t hash
= hash_invariant_expr_1 (inv
->insn
, expr
);
475 struct invariant_expr_entry
*entry
;
476 struct invariant_expr_entry pentry
;
477 invariant_expr_entry
**slot
;
482 slot
= eq
->find_slot_with_hash (&pentry
, hash
, INSERT
);
488 entry
= XNEW (struct invariant_expr_entry
);
498 /* Finds invariants identical to INV and records the equivalence. EQ is the
499 hash table of the invariants. */
502 find_identical_invariants (invariant_htab_type
*eq
, struct invariant
*inv
)
506 struct invariant
*dep
;
508 enum machine_mode mode
;
509 struct invariant
*tmp
;
511 if (inv
->eqto
!= ~0u)
514 EXECUTE_IF_SET_IN_BITMAP (inv
->depends_on
, 0, depno
, bi
)
516 dep
= invariants
[depno
];
517 find_identical_invariants (eq
, dep
);
520 set
= single_set (inv
->insn
);
521 expr
= SET_SRC (set
);
522 mode
= GET_MODE (expr
);
523 if (mode
== VOIDmode
)
524 mode
= GET_MODE (SET_DEST (set
));
526 tmp
= find_or_insert_inv (eq
, expr
, mode
, inv
);
527 inv
->eqto
= tmp
->invno
;
529 if (tmp
->invno
!= inv
->invno
&& inv
->always_executed
)
532 if (dump_file
&& inv
->eqto
!= inv
->invno
)
534 "Invariant %d is equivalent to invariant %d.\n",
535 inv
->invno
, inv
->eqto
);
538 /* Find invariants with the same value and record the equivalences. */
541 merge_identical_invariants (void)
544 struct invariant
*inv
;
545 invariant_htab_type
eq (invariants
.length ());
547 FOR_EACH_VEC_ELT (invariants
, i
, inv
)
548 find_identical_invariants (&eq
, inv
);
551 /* Determines the basic blocks inside LOOP that are always executed and
552 stores their bitmap to ALWAYS_REACHED. MAY_EXIT is a bitmap of
553 basic blocks that may either exit the loop, or contain the call that
554 does not have to return. BODY is body of the loop obtained by
555 get_loop_body_in_dom_order. */
558 compute_always_reached (struct loop
*loop
, basic_block
*body
,
559 bitmap may_exit
, bitmap always_reached
)
563 for (i
= 0; i
< loop
->num_nodes
; i
++)
565 if (dominated_by_p (CDI_DOMINATORS
, loop
->latch
, body
[i
]))
566 bitmap_set_bit (always_reached
, i
);
568 if (bitmap_bit_p (may_exit
, i
))
573 /* Finds exits out of the LOOP with body BODY. Marks blocks in that we may
574 exit the loop by cfg edge to HAS_EXIT and MAY_EXIT. In MAY_EXIT
575 additionally mark blocks that may exit due to a call. */
578 find_exits (struct loop
*loop
, basic_block
*body
,
579 bitmap may_exit
, bitmap has_exit
)
584 struct loop
*outermost_exit
= loop
, *aexit
;
585 bool has_call
= false;
588 for (i
= 0; i
< loop
->num_nodes
; i
++)
590 if (body
[i
]->loop_father
== loop
)
592 FOR_BB_INSNS (body
[i
], insn
)
595 && (RTL_LOOPING_CONST_OR_PURE_CALL_P (insn
)
596 || !RTL_CONST_OR_PURE_CALL_P (insn
)))
599 bitmap_set_bit (may_exit
, i
);
604 FOR_EACH_EDGE (e
, ei
, body
[i
]->succs
)
606 if (flow_bb_inside_loop_p (loop
, e
->dest
))
609 bitmap_set_bit (may_exit
, i
);
610 bitmap_set_bit (has_exit
, i
);
611 outermost_exit
= find_common_loop (outermost_exit
,
612 e
->dest
->loop_father
);
617 /* Use the data stored for the subloop to decide whether we may exit
618 through it. It is sufficient to do this for header of the loop,
619 as other basic blocks inside it must be dominated by it. */
620 if (body
[i
]->loop_father
->header
!= body
[i
])
623 if (LOOP_DATA (body
[i
]->loop_father
)->has_call
)
626 bitmap_set_bit (may_exit
, i
);
628 aexit
= LOOP_DATA (body
[i
]->loop_father
)->outermost_exit
;
631 bitmap_set_bit (may_exit
, i
);
632 bitmap_set_bit (has_exit
, i
);
634 if (flow_loop_nested_p (aexit
, outermost_exit
))
635 outermost_exit
= aexit
;
639 if (loop
->aux
== NULL
)
641 loop
->aux
= xcalloc (1, sizeof (struct loop_data
));
642 bitmap_initialize (&LOOP_DATA (loop
)->regs_ref
, ®_obstack
);
643 bitmap_initialize (&LOOP_DATA (loop
)->regs_live
, ®_obstack
);
645 LOOP_DATA (loop
)->outermost_exit
= outermost_exit
;
646 LOOP_DATA (loop
)->has_call
= has_call
;
649 /* Check whether we may assign a value to X from a register. */
652 may_assign_reg_p (rtx x
)
654 return (GET_MODE (x
) != VOIDmode
655 && GET_MODE (x
) != BLKmode
656 && can_copy_p (GET_MODE (x
))
658 || !HARD_REGISTER_P (x
)
659 || REGNO_REG_CLASS (REGNO (x
)) != NO_REGS
));
662 /* Finds definitions that may correspond to invariants in LOOP with body
666 find_defs (struct loop
*loop
)
671 "*****starting processing of loop %d ******\n",
675 df_remove_problem (df_chain
);
676 df_process_deferred_rescans ();
677 df_chain_add_problem (DF_UD_CHAIN
);
678 df_set_flags (DF_RD_PRUNE_DEAD_DEFS
);
679 df_analyze_loop (loop
);
680 check_invariant_table_size ();
684 df_dump_region (dump_file
);
686 "*****ending processing of loop %d ******\n",
691 /* Creates a new invariant for definition DEF in INSN, depending on invariants
692 in DEPENDS_ON. ALWAYS_EXECUTED is true if the insn is always executed,
693 unless the program ends due to a function call. The newly created invariant
696 static struct invariant
*
697 create_new_invariant (struct def
*def
, rtx_insn
*insn
, bitmap depends_on
,
698 bool always_executed
)
700 struct invariant
*inv
= XNEW (struct invariant
);
701 rtx set
= single_set (insn
);
702 bool speed
= optimize_bb_for_speed_p (BLOCK_FOR_INSN (insn
));
705 inv
->always_executed
= always_executed
;
706 inv
->depends_on
= depends_on
;
708 /* If the set is simple, usually by moving it we move the whole store out of
709 the loop. Otherwise we save only cost of the computation. */
712 inv
->cost
= set_rtx_cost (set
, speed
);
713 /* ??? Try to determine cheapness of address computation. Unfortunately
714 the address cost is only a relative measure, we can't really compare
715 it with any absolute number, but only with other address costs.
716 But here we don't have any other addresses, so compare with a magic
717 number anyway. It has to be large enough to not regress PR33928
718 (by avoiding to move reg+8,reg+16,reg+24 invariants), but small
719 enough to not regress 410.bwaves either (by still moving reg+reg
721 See http://gcc.gnu.org/ml/gcc-patches/2009-10/msg01210.html . */
722 inv
->cheap_address
= address_cost (SET_SRC (set
), word_mode
,
723 ADDR_SPACE_GENERIC
, speed
) < 3;
727 inv
->cost
= set_src_cost (SET_SRC (set
), speed
);
728 inv
->cheap_address
= false;
733 inv
->orig_regno
= -1;
737 inv
->invno
= invariants
.length ();
744 def
->invno
= inv
->invno
;
745 invariants
.safe_push (inv
);
750 "Set in insn %d is invariant (%d), cost %d, depends on ",
751 INSN_UID (insn
), inv
->invno
, inv
->cost
);
752 dump_bitmap (dump_file
, inv
->depends_on
);
758 /* Record USE at DEF. */
761 record_use (struct def
*def
, df_ref use
)
763 struct use
*u
= XNEW (struct use
);
765 u
->pos
= DF_REF_REAL_LOC (use
);
766 u
->insn
= DF_REF_INSN (use
);
767 u
->addr_use_p
= (DF_REF_TYPE (use
) == DF_REF_REG_MEM_LOAD
768 || DF_REF_TYPE (use
) == DF_REF_REG_MEM_STORE
);
776 /* Finds the invariants USE depends on and store them to the DEPENDS_ON
777 bitmap. Returns true if all dependencies of USE are known to be
778 loop invariants, false otherwise. */
781 check_dependency (basic_block bb
, df_ref use
, bitmap depends_on
)
785 struct df_link
*defs
;
786 struct def
*def_data
;
787 struct invariant
*inv
;
789 if (DF_REF_FLAGS (use
) & DF_REF_READ_WRITE
)
792 defs
= DF_REF_CHAIN (use
);
795 unsigned int regno
= DF_REF_REGNO (use
);
797 /* If this is the use of an uninitialized argument register that is
798 likely to be spilled, do not move it lest this might extend its
799 lifetime and cause reload to die. This can occur for a call to
800 a function taking complex number arguments and moving the insns
801 preparing the arguments without moving the call itself wouldn't
802 gain much in practice. */
803 if ((DF_REF_FLAGS (use
) & DF_HARD_REG_LIVE
)
804 && FUNCTION_ARG_REGNO_P (regno
)
805 && targetm
.class_likely_spilled_p (REGNO_REG_CLASS (regno
)))
815 check_invariant_table_size ();
816 inv
= invariant_table
[DF_REF_ID (def
)];
821 gcc_assert (def_data
!= NULL
);
823 def_bb
= DF_REF_BB (def
);
824 /* Note that in case bb == def_bb, we know that the definition
825 dominates insn, because def has invariant_table[DF_REF_ID(def)]
826 defined and we process the insns in the basic block bb
828 if (!dominated_by_p (CDI_DOMINATORS
, bb
, def_bb
))
831 bitmap_set_bit (depends_on
, def_data
->invno
);
836 /* Finds the invariants INSN depends on and store them to the DEPENDS_ON
837 bitmap. Returns true if all dependencies of INSN are known to be
838 loop invariants, false otherwise. */
841 check_dependencies (rtx_insn
*insn
, bitmap depends_on
)
843 struct df_insn_info
*insn_info
= DF_INSN_INFO_GET (insn
);
845 basic_block bb
= BLOCK_FOR_INSN (insn
);
847 FOR_EACH_INSN_INFO_USE (use
, insn_info
)
848 if (!check_dependency (bb
, use
, depends_on
))
850 FOR_EACH_INSN_INFO_EQ_USE (use
, insn_info
)
851 if (!check_dependency (bb
, use
, depends_on
))
857 /* Pre-check candidate DEST to skip the one which can not make a valid insn
858 during move_invariant_reg. SIMPLE is to skip HARD_REGISTER. */
860 pre_check_invariant_p (bool simple
, rtx dest
)
862 if (simple
&& REG_P (dest
) && DF_REG_DEF_COUNT (REGNO (dest
)) > 1)
866 unsigned int i
= REGNO (dest
);
867 struct df_insn_info
*insn_info
;
870 for (use
= DF_REG_USE_CHAIN (i
); use
; use
= DF_REF_NEXT_REG (use
))
872 ref
= DF_REF_INSN (use
);
873 insn_info
= DF_INSN_INFO_GET (ref
);
875 FOR_EACH_INSN_INFO_DEF (def_rec
, insn_info
)
876 if (DF_REF_REGNO (def_rec
) == i
)
878 /* Multi definitions at this stage, most likely are due to
879 instruction constraints, which requires both read and write
880 on the same register. Since move_invariant_reg is not
881 powerful enough to handle such cases, just ignore the INV
882 and leave the chance to others. */
890 /* Finds invariant in INSN. ALWAYS_REACHED is true if the insn is always
891 executed. ALWAYS_EXECUTED is true if the insn is always executed,
892 unless the program ends due to a function call. */
895 find_invariant_insn (rtx_insn
*insn
, bool always_reached
, bool always_executed
)
902 struct invariant
*inv
;
905 /* We can't move a CC0 setter without the user. */
906 if (sets_cc0_p (insn
))
910 set
= single_set (insn
);
913 dest
= SET_DEST (set
);
916 || HARD_REGISTER_P (dest
))
919 if (!may_assign_reg_p (dest
)
920 || !pre_check_invariant_p (simple
, dest
)
921 || !check_maybe_invariant (SET_SRC (set
)))
924 /* If the insn can throw exception, we cannot move it at all without changing
926 if (can_throw_internal (insn
))
929 /* We cannot make trapping insn executed, unless it was executed before. */
930 if (may_trap_or_fault_p (PATTERN (insn
)) && !always_reached
)
933 depends_on
= BITMAP_ALLOC (NULL
);
934 if (!check_dependencies (insn
, depends_on
))
936 BITMAP_FREE (depends_on
);
941 def
= XCNEW (struct def
);
945 inv
= create_new_invariant (def
, insn
, depends_on
, always_executed
);
949 ref
= df_find_def (insn
, dest
);
950 check_invariant_table_size ();
951 invariant_table
[DF_REF_ID (ref
)] = inv
;
955 /* Record registers used in INSN that have a unique invariant definition. */
958 record_uses (rtx_insn
*insn
)
960 struct df_insn_info
*insn_info
= DF_INSN_INFO_GET (insn
);
962 struct invariant
*inv
;
964 FOR_EACH_INSN_INFO_USE (use
, insn_info
)
966 inv
= invariant_for_use (use
);
968 record_use (inv
->def
, use
);
970 FOR_EACH_INSN_INFO_EQ_USE (use
, insn_info
)
972 inv
= invariant_for_use (use
);
974 record_use (inv
->def
, use
);
978 /* Finds invariants in INSN. ALWAYS_REACHED is true if the insn is always
979 executed. ALWAYS_EXECUTED is true if the insn is always executed,
980 unless the program ends due to a function call. */
983 find_invariants_insn (rtx_insn
*insn
, bool always_reached
, bool always_executed
)
985 find_invariant_insn (insn
, always_reached
, always_executed
);
989 /* Finds invariants in basic block BB. ALWAYS_REACHED is true if the
990 basic block is always executed. ALWAYS_EXECUTED is true if the basic
991 block is always executed, unless the program ends due to a function
995 find_invariants_bb (basic_block bb
, bool always_reached
, bool always_executed
)
999 FOR_BB_INSNS (bb
, insn
)
1001 if (!NONDEBUG_INSN_P (insn
))
1004 find_invariants_insn (insn
, always_reached
, always_executed
);
1008 && (RTL_LOOPING_CONST_OR_PURE_CALL_P (insn
)
1009 || ! RTL_CONST_OR_PURE_CALL_P (insn
)))
1010 always_reached
= false;
1014 /* Finds invariants in LOOP with body BODY. ALWAYS_REACHED is the bitmap of
1015 basic blocks in BODY that are always executed. ALWAYS_EXECUTED is the
1016 bitmap of basic blocks in BODY that are always executed unless the program
1017 ends due to a function call. */
1020 find_invariants_body (struct loop
*loop
, basic_block
*body
,
1021 bitmap always_reached
, bitmap always_executed
)
1025 for (i
= 0; i
< loop
->num_nodes
; i
++)
1026 find_invariants_bb (body
[i
],
1027 bitmap_bit_p (always_reached
, i
),
1028 bitmap_bit_p (always_executed
, i
));
1031 /* Finds invariants in LOOP. */
1034 find_invariants (struct loop
*loop
)
1036 bitmap may_exit
= BITMAP_ALLOC (NULL
);
1037 bitmap always_reached
= BITMAP_ALLOC (NULL
);
1038 bitmap has_exit
= BITMAP_ALLOC (NULL
);
1039 bitmap always_executed
= BITMAP_ALLOC (NULL
);
1040 basic_block
*body
= get_loop_body_in_dom_order (loop
);
1042 find_exits (loop
, body
, may_exit
, has_exit
);
1043 compute_always_reached (loop
, body
, may_exit
, always_reached
);
1044 compute_always_reached (loop
, body
, has_exit
, always_executed
);
1047 find_invariants_body (loop
, body
, always_reached
, always_executed
);
1048 merge_identical_invariants ();
1050 BITMAP_FREE (always_reached
);
1051 BITMAP_FREE (always_executed
);
1052 BITMAP_FREE (may_exit
);
1053 BITMAP_FREE (has_exit
);
1057 /* Frees a list of uses USE. */
1060 free_use_list (struct use
*use
)
1064 for (; use
; use
= next
)
1071 /* Return pressure class and number of hard registers (through *NREGS)
1072 for destination of INSN. */
1073 static enum reg_class
1074 get_pressure_class_and_nregs (rtx_insn
*insn
, int *nregs
)
1077 enum reg_class pressure_class
;
1078 rtx set
= single_set (insn
);
1080 /* Considered invariant insns have only one set. */
1081 gcc_assert (set
!= NULL_RTX
);
1082 reg
= SET_DEST (set
);
1083 if (GET_CODE (reg
) == SUBREG
)
1084 reg
= SUBREG_REG (reg
);
1088 pressure_class
= NO_REGS
;
1094 if (reg
== NULL_RTX
)
1095 pressure_class
= GENERAL_REGS
;
1098 pressure_class
= reg_allocno_class (REGNO (reg
));
1099 pressure_class
= ira_pressure_class_translate
[pressure_class
];
1102 = ira_reg_class_max_nregs
[pressure_class
][GET_MODE (SET_SRC (set
))];
1104 return pressure_class
;
1107 /* Calculates cost and number of registers needed for moving invariant INV
1108 out of the loop and stores them to *COST and *REGS_NEEDED. *CL will be
1109 the REG_CLASS of INV. Return
1110 -1: if INV is invalid.
1111 0: if INV and its depends_on have same reg_class
1112 1: if INV and its depends_on have different reg_classes. */
1115 get_inv_cost (struct invariant
*inv
, int *comp_cost
, unsigned *regs_needed
,
1119 unsigned aregs_needed
[N_REG_CLASSES
];
1121 struct invariant
*dep
;
1125 /* Find the representative of the class of the equivalent invariants. */
1126 inv
= invariants
[inv
->eqto
];
1129 if (! flag_ira_loop_pressure
)
1133 for (i
= 0; i
< ira_pressure_classes_num
; i
++)
1134 regs_needed
[ira_pressure_classes
[i
]] = 0;
1138 || inv
->stamp
== actual_stamp
)
1140 inv
->stamp
= actual_stamp
;
1142 if (! flag_ira_loop_pressure
)
1147 enum reg_class pressure_class
;
1149 pressure_class
= get_pressure_class_and_nregs (inv
->insn
, &nregs
);
1150 regs_needed
[pressure_class
] += nregs
;
1151 *cl
= pressure_class
;
1155 if (!inv
->cheap_address
1156 || inv
->def
->n_addr_uses
< inv
->def
->n_uses
)
1157 (*comp_cost
) += inv
->cost
* inv
->eqno
;
1161 /* Hoisting constant pool constants into stack regs may cost more than
1162 just single register. On x87, the balance is affected both by the
1163 small number of FP registers, and by its register stack organization,
1164 that forces us to add compensation code in and around the loop to
1165 shuffle the operands to the top of stack before use, and pop them
1166 from the stack after the loop finishes.
1168 To model this effect, we increase the number of registers needed for
1169 stack registers by two: one register push, and one register pop.
1170 This usually has the effect that FP constant loads from the constant
1171 pool are not moved out of the loop.
1173 Note that this also means that dependent invariants can not be moved.
1174 However, the primary purpose of this pass is to move loop invariant
1175 address arithmetic out of loops, and address arithmetic that depends
1176 on floating point constants is unlikely to ever occur. */
1177 rtx set
= single_set (inv
->insn
);
1179 && IS_STACK_MODE (GET_MODE (SET_SRC (set
)))
1180 && constant_pool_constant_p (SET_SRC (set
)))
1182 if (flag_ira_loop_pressure
)
1183 regs_needed
[ira_stack_reg_pressure_class
] += 2;
1185 regs_needed
[0] += 2;
1190 EXECUTE_IF_SET_IN_BITMAP (inv
->depends_on
, 0, depno
, bi
)
1193 enum reg_class dep_cl
= ALL_REGS
;
1196 dep
= invariants
[depno
];
1198 /* If DEP is moved out of the loop, it is not a depends_on any more. */
1202 dep_ret
= get_inv_cost (dep
, &acomp_cost
, aregs_needed
, &dep_cl
);
1204 if (! flag_ira_loop_pressure
)
1205 check_p
= aregs_needed
[0] != 0;
1208 for (i
= 0; i
< ira_pressure_classes_num
; i
++)
1209 if (aregs_needed
[ira_pressure_classes
[i
]] != 0)
1211 check_p
= i
< ira_pressure_classes_num
;
1213 if ((dep_ret
== 1) || ((dep_ret
== 0) && (*cl
!= dep_cl
)))
1220 /* We need to check always_executed, since if the original value of
1221 the invariant may be preserved, we may need to keep it in a
1222 separate register. TODO check whether the register has an
1223 use outside of the loop. */
1224 && dep
->always_executed
1225 && !dep
->def
->uses
->next
)
1227 /* If this is a single use, after moving the dependency we will not
1228 need a new register. */
1229 if (! flag_ira_loop_pressure
)
1234 enum reg_class pressure_class
;
1236 pressure_class
= get_pressure_class_and_nregs (inv
->insn
, &nregs
);
1237 aregs_needed
[pressure_class
] -= nregs
;
1241 if (! flag_ira_loop_pressure
)
1242 regs_needed
[0] += aregs_needed
[0];
1245 for (i
= 0; i
< ira_pressure_classes_num
; i
++)
1246 regs_needed
[ira_pressure_classes
[i
]]
1247 += aregs_needed
[ira_pressure_classes
[i
]];
1249 (*comp_cost
) += acomp_cost
;
1254 /* Calculates gain for eliminating invariant INV. REGS_USED is the number
1255 of registers used in the loop, NEW_REGS is the number of new variables
1256 already added due to the invariant motion. The number of registers needed
1257 for it is stored in *REGS_NEEDED. SPEED and CALL_P are flags passed
1258 through to estimate_reg_pressure_cost. */
1261 gain_for_invariant (struct invariant
*inv
, unsigned *regs_needed
,
1262 unsigned *new_regs
, unsigned regs_used
,
1263 bool speed
, bool call_p
)
1265 int comp_cost
, size_cost
;
1271 ret
= get_inv_cost (inv
, &comp_cost
, regs_needed
, &cl
);
1273 if (! flag_ira_loop_pressure
)
1275 size_cost
= (estimate_reg_pressure_cost (new_regs
[0] + regs_needed
[0],
1276 regs_used
, speed
, call_p
)
1277 - estimate_reg_pressure_cost (new_regs
[0],
1278 regs_used
, speed
, call_p
));
1282 else if ((ret
== 0) && (cl
== NO_REGS
))
1283 /* Hoist it anyway since it does not impact register pressure. */
1288 enum reg_class pressure_class
;
1290 for (i
= 0; i
< ira_pressure_classes_num
; i
++)
1292 pressure_class
= ira_pressure_classes
[i
];
1294 if (!reg_classes_intersect_p (pressure_class
, cl
))
1297 if ((int) new_regs
[pressure_class
]
1298 + (int) regs_needed
[pressure_class
]
1299 + LOOP_DATA (curr_loop
)->max_reg_pressure
[pressure_class
]
1300 + IRA_LOOP_RESERVED_REGS
1301 > ira_class_hard_regs_num
[pressure_class
])
1304 if (i
< ira_pressure_classes_num
)
1305 /* There will be register pressure excess and we want not to
1306 make this loop invariant motion. All loop invariants with
1307 non-positive gains will be rejected in function
1308 find_invariants_to_move. Therefore we return the negative
1311 One could think that this rejects also expensive loop
1312 invariant motions and this will hurt code performance.
1313 However numerous experiments with different heuristics
1314 taking invariant cost into account did not confirm this
1315 assumption. There are possible explanations for this
1317 o probably all expensive invariants were already moved out
1318 of the loop by PRE and gimple invariant motion pass.
1319 o expensive invariant execution will be hidden by insn
1320 scheduling or OOO processor hardware because usually such
1321 invariants have a lot of freedom to be executed
1323 Another reason for ignoring invariant cost vs spilling cost
1324 heuristics is also in difficulties to evaluate accurately
1325 spill cost at this stage. */
1331 return comp_cost
- size_cost
;
1334 /* Finds invariant with best gain for moving. Returns the gain, stores
1335 the invariant in *BEST and number of registers needed for it to
1336 *REGS_NEEDED. REGS_USED is the number of registers used in the loop.
1337 NEW_REGS is the number of new variables already added due to invariant
1341 best_gain_for_invariant (struct invariant
**best
, unsigned *regs_needed
,
1342 unsigned *new_regs
, unsigned regs_used
,
1343 bool speed
, bool call_p
)
1345 struct invariant
*inv
;
1346 int i
, gain
= 0, again
;
1347 unsigned aregs_needed
[N_REG_CLASSES
], invno
;
1349 FOR_EACH_VEC_ELT (invariants
, invno
, inv
)
1354 /* Only consider the "representatives" of equivalent invariants. */
1355 if (inv
->eqto
!= inv
->invno
)
1358 again
= gain_for_invariant (inv
, aregs_needed
, new_regs
, regs_used
,
1364 if (! flag_ira_loop_pressure
)
1365 regs_needed
[0] = aregs_needed
[0];
1368 for (i
= 0; i
< ira_pressure_classes_num
; i
++)
1369 regs_needed
[ira_pressure_classes
[i
]]
1370 = aregs_needed
[ira_pressure_classes
[i
]];
1378 /* Marks invariant INVNO and all its dependencies for moving. */
1381 set_move_mark (unsigned invno
, int gain
)
1383 struct invariant
*inv
= invariants
[invno
];
1386 /* Find the representative of the class of the equivalent invariants. */
1387 inv
= invariants
[inv
->eqto
];
1396 fprintf (dump_file
, "Decided to move invariant %d -- gain %d\n",
1399 fprintf (dump_file
, "Decided to move dependent invariant %d\n",
1403 EXECUTE_IF_SET_IN_BITMAP (inv
->depends_on
, 0, invno
, bi
)
1405 set_move_mark (invno
, -1);
1409 /* Determines which invariants to move. */
1412 find_invariants_to_move (bool speed
, bool call_p
)
1415 unsigned i
, regs_used
, regs_needed
[N_REG_CLASSES
], new_regs
[N_REG_CLASSES
];
1416 struct invariant
*inv
= NULL
;
1418 if (!invariants
.length ())
1421 if (flag_ira_loop_pressure
)
1422 /* REGS_USED is actually never used when the flag is on. */
1425 /* We do not really do a good job in estimating number of
1426 registers used; we put some initial bound here to stand for
1427 induction variables etc. that we do not detect. */
1429 unsigned int n_regs
= DF_REG_SIZE (df
);
1433 for (i
= 0; i
< n_regs
; i
++)
1435 if (!DF_REGNO_FIRST_DEF (i
) && DF_REGNO_LAST_USE (i
))
1437 /* This is a value that is used but not changed inside loop. */
1443 if (! flag_ira_loop_pressure
)
1444 new_regs
[0] = regs_needed
[0] = 0;
1447 for (i
= 0; (int) i
< ira_pressure_classes_num
; i
++)
1448 new_regs
[ira_pressure_classes
[i
]] = 0;
1450 while ((gain
= best_gain_for_invariant (&inv
, regs_needed
,
1451 new_regs
, regs_used
,
1452 speed
, call_p
)) > 0)
1454 set_move_mark (inv
->invno
, gain
);
1455 if (! flag_ira_loop_pressure
)
1456 new_regs
[0] += regs_needed
[0];
1459 for (i
= 0; (int) i
< ira_pressure_classes_num
; i
++)
1460 new_regs
[ira_pressure_classes
[i
]]
1461 += regs_needed
[ira_pressure_classes
[i
]];
1466 /* Replace the uses, reached by the definition of invariant INV, by REG.
1468 IN_GROUP is nonzero if this is part of a group of changes that must be
1469 performed as a group. In that case, the changes will be stored. The
1470 function `apply_change_group' will validate and apply the changes. */
1473 replace_uses (struct invariant
*inv
, rtx reg
, bool in_group
)
1475 /* Replace the uses we know to be dominated. It saves work for copy
1476 propagation, and also it is necessary so that dependent invariants
1477 are computed right. */
1481 for (use
= inv
->def
->uses
; use
; use
= use
->next
)
1482 validate_change (use
->insn
, use
->pos
, reg
, true);
1484 /* If we aren't part of a larger group, apply the changes now. */
1486 return apply_change_group ();
1492 /* Move invariant INVNO out of the LOOP. Returns true if this succeeds, false
1496 move_invariant_reg (struct loop
*loop
, unsigned invno
)
1498 struct invariant
*inv
= invariants
[invno
];
1499 struct invariant
*repr
= invariants
[inv
->eqto
];
1501 basic_block preheader
= loop_preheader_edge (loop
)->src
;
1502 rtx reg
, set
, dest
, note
;
1511 /* If this is a representative of the class of equivalent invariants,
1512 really move the invariant. Otherwise just replace its use with
1513 the register used for the representative. */
1516 if (inv
->depends_on
)
1518 EXECUTE_IF_SET_IN_BITMAP (inv
->depends_on
, 0, i
, bi
)
1520 if (!move_invariant_reg (loop
, i
))
1525 /* Move the set out of the loop. If the set is always executed (we could
1526 omit this condition if we know that the register is unused outside of
1527 the loop, but it does not seem worth finding out) and it has no uses
1528 that would not be dominated by it, we may just move it (TODO).
1529 Otherwise we need to create a temporary register. */
1530 set
= single_set (inv
->insn
);
1531 reg
= dest
= SET_DEST (set
);
1532 if (GET_CODE (reg
) == SUBREG
)
1533 reg
= SUBREG_REG (reg
);
1535 regno
= REGNO (reg
);
1537 reg
= gen_reg_rtx_and_attrs (dest
);
1539 /* Try replacing the destination by a new pseudoregister. */
1540 validate_change (inv
->insn
, &SET_DEST (set
), reg
, true);
1542 /* As well as all the dominated uses. */
1543 replace_uses (inv
, reg
, true);
1545 /* And validate all the changes. */
1546 if (!apply_change_group ())
1549 emit_insn_after (gen_move_insn (dest
, reg
), inv
->insn
);
1550 reorder_insns (inv
->insn
, inv
->insn
, BB_END (preheader
));
1552 /* If there is a REG_EQUAL note on the insn we just moved, and the
1553 insn is in a basic block that is not always executed or the note
1554 contains something for which we don't know the invariant status,
1555 the note may no longer be valid after we move the insn. Note that
1556 uses in REG_EQUAL notes are taken into account in the computation
1557 of invariants, so it is safe to retain the note even if it contains
1558 register references for which we know the invariant status. */
1559 if ((note
= find_reg_note (inv
->insn
, REG_EQUAL
, NULL_RTX
))
1560 && (!inv
->always_executed
1561 || !check_maybe_invariant (XEXP (note
, 0))))
1562 remove_note (inv
->insn
, note
);
1566 if (!move_invariant_reg (loop
, repr
->invno
))
1569 regno
= repr
->orig_regno
;
1570 if (!replace_uses (inv
, reg
, false))
1572 set
= single_set (inv
->insn
);
1573 emit_insn_after (gen_move_insn (SET_DEST (set
), reg
), inv
->insn
);
1574 delete_insn (inv
->insn
);
1578 inv
->orig_regno
= regno
;
1583 /* If we failed, clear move flag, so that we do not try to move inv
1586 fprintf (dump_file
, "Failed to move invariant %d\n", invno
);
1588 inv
->reg
= NULL_RTX
;
1589 inv
->orig_regno
= -1;
1594 /* Move selected invariant out of the LOOP. Newly created regs are marked
1595 in TEMPORARY_REGS. */
1598 move_invariants (struct loop
*loop
)
1600 struct invariant
*inv
;
1603 FOR_EACH_VEC_ELT (invariants
, i
, inv
)
1604 move_invariant_reg (loop
, i
);
1605 if (flag_ira_loop_pressure
&& resize_reg_info ())
1607 FOR_EACH_VEC_ELT (invariants
, i
, inv
)
1608 if (inv
->reg
!= NULL_RTX
)
1610 if (inv
->orig_regno
>= 0)
1611 setup_reg_classes (REGNO (inv
->reg
),
1612 reg_preferred_class (inv
->orig_regno
),
1613 reg_alternate_class (inv
->orig_regno
),
1614 reg_allocno_class (inv
->orig_regno
));
1616 setup_reg_classes (REGNO (inv
->reg
),
1617 GENERAL_REGS
, NO_REGS
, GENERAL_REGS
);
1622 /* Initializes invariant motion data. */
1625 init_inv_motion_data (void)
1629 invariants
.create (100);
1632 /* Frees the data allocated by invariant motion. */
1635 free_inv_motion_data (void)
1639 struct invariant
*inv
;
1641 check_invariant_table_size ();
1642 for (i
= 0; i
< DF_DEFS_TABLE_SIZE (); i
++)
1644 inv
= invariant_table
[i
];
1648 gcc_assert (def
!= NULL
);
1650 free_use_list (def
->uses
);
1652 invariant_table
[i
] = NULL
;
1656 FOR_EACH_VEC_ELT (invariants
, i
, inv
)
1658 BITMAP_FREE (inv
->depends_on
);
1661 invariants
.release ();
1664 /* Move the invariants out of the LOOP. */
1667 move_single_loop_invariants (struct loop
*loop
)
1669 init_inv_motion_data ();
1671 find_invariants (loop
);
1672 find_invariants_to_move (optimize_loop_for_speed_p (loop
),
1673 LOOP_DATA (loop
)->has_call
);
1674 move_invariants (loop
);
1676 free_inv_motion_data ();
1679 /* Releases the auxiliary data for LOOP. */
1682 free_loop_data (struct loop
*loop
)
1684 struct loop_data
*data
= LOOP_DATA (loop
);
1688 bitmap_clear (&LOOP_DATA (loop
)->regs_ref
);
1689 bitmap_clear (&LOOP_DATA (loop
)->regs_live
);
1696 /* Registers currently living. */
1697 static bitmap_head curr_regs_live
;
1699 /* Current reg pressure for each pressure class. */
1700 static int curr_reg_pressure
[N_REG_CLASSES
];
1702 /* Record all regs that are set in any one insn. Communication from
1703 mark_reg_{store,clobber} and global_conflicts. Asm can refer to
1704 all hard-registers. */
1705 static rtx regs_set
[(FIRST_PSEUDO_REGISTER
> MAX_RECOG_OPERANDS
1706 ? FIRST_PSEUDO_REGISTER
: MAX_RECOG_OPERANDS
) * 2];
1707 /* Number of regs stored in the previous array. */
1708 static int n_regs_set
;
1710 /* Return pressure class and number of needed hard registers (through
1711 *NREGS) of register REGNO. */
1712 static enum reg_class
1713 get_regno_pressure_class (int regno
, int *nregs
)
1715 if (regno
>= FIRST_PSEUDO_REGISTER
)
1717 enum reg_class pressure_class
;
1719 pressure_class
= reg_allocno_class (regno
);
1720 pressure_class
= ira_pressure_class_translate
[pressure_class
];
1722 = ira_reg_class_max_nregs
[pressure_class
][PSEUDO_REGNO_MODE (regno
)];
1723 return pressure_class
;
1725 else if (! TEST_HARD_REG_BIT (ira_no_alloc_regs
, regno
)
1726 && ! TEST_HARD_REG_BIT (eliminable_regset
, regno
))
1729 return ira_pressure_class_translate
[REGNO_REG_CLASS (regno
)];
1738 /* Increase (if INCR_P) or decrease current register pressure for
1741 change_pressure (int regno
, bool incr_p
)
1744 enum reg_class pressure_class
;
1746 pressure_class
= get_regno_pressure_class (regno
, &nregs
);
1748 curr_reg_pressure
[pressure_class
] -= nregs
;
1751 curr_reg_pressure
[pressure_class
] += nregs
;
1752 if (LOOP_DATA (curr_loop
)->max_reg_pressure
[pressure_class
]
1753 < curr_reg_pressure
[pressure_class
])
1754 LOOP_DATA (curr_loop
)->max_reg_pressure
[pressure_class
]
1755 = curr_reg_pressure
[pressure_class
];
1759 /* Mark REGNO birth. */
1761 mark_regno_live (int regno
)
1765 for (loop
= curr_loop
;
1766 loop
!= current_loops
->tree_root
;
1767 loop
= loop_outer (loop
))
1768 bitmap_set_bit (&LOOP_DATA (loop
)->regs_live
, regno
);
1769 if (!bitmap_set_bit (&curr_regs_live
, regno
))
1771 change_pressure (regno
, true);
1774 /* Mark REGNO death. */
1776 mark_regno_death (int regno
)
1778 if (! bitmap_clear_bit (&curr_regs_live
, regno
))
1780 change_pressure (regno
, false);
1783 /* Mark setting register REG. */
1785 mark_reg_store (rtx reg
, const_rtx setter ATTRIBUTE_UNUSED
,
1786 void *data ATTRIBUTE_UNUSED
)
1790 if (GET_CODE (reg
) == SUBREG
)
1791 reg
= SUBREG_REG (reg
);
1796 regs_set
[n_regs_set
++] = reg
;
1798 regno
= REGNO (reg
);
1800 if (regno
>= FIRST_PSEUDO_REGISTER
)
1801 mark_regno_live (regno
);
1804 int last
= regno
+ hard_regno_nregs
[regno
][GET_MODE (reg
)];
1806 while (regno
< last
)
1808 mark_regno_live (regno
);
1814 /* Mark clobbering register REG. */
1816 mark_reg_clobber (rtx reg
, const_rtx setter
, void *data
)
1818 if (GET_CODE (setter
) == CLOBBER
)
1819 mark_reg_store (reg
, setter
, data
);
1822 /* Mark register REG death. */
1824 mark_reg_death (rtx reg
)
1826 int regno
= REGNO (reg
);
1828 if (regno
>= FIRST_PSEUDO_REGISTER
)
1829 mark_regno_death (regno
);
1832 int last
= regno
+ hard_regno_nregs
[regno
][GET_MODE (reg
)];
1834 while (regno
< last
)
1836 mark_regno_death (regno
);
1842 /* Mark occurrence of registers in X for the current loop. */
1844 mark_ref_regs (rtx x
)
1853 code
= GET_CODE (x
);
1858 for (loop
= curr_loop
;
1859 loop
!= current_loops
->tree_root
;
1860 loop
= loop_outer (loop
))
1861 bitmap_set_bit (&LOOP_DATA (loop
)->regs_ref
, REGNO (x
));
1865 fmt
= GET_RTX_FORMAT (code
);
1866 for (i
= GET_RTX_LENGTH (code
) - 1; i
>= 0; i
--)
1868 mark_ref_regs (XEXP (x
, i
));
1869 else if (fmt
[i
] == 'E')
1873 for (j
= 0; j
< XVECLEN (x
, i
); j
++)
1874 mark_ref_regs (XVECEXP (x
, i
, j
));
1878 /* Calculate register pressure in the loops. */
1880 calculate_loop_reg_pressure (void)
1888 struct loop
*loop
, *parent
;
1890 FOR_EACH_LOOP (loop
, 0)
1891 if (loop
->aux
== NULL
)
1893 loop
->aux
= xcalloc (1, sizeof (struct loop_data
));
1894 bitmap_initialize (&LOOP_DATA (loop
)->regs_ref
, ®_obstack
);
1895 bitmap_initialize (&LOOP_DATA (loop
)->regs_live
, ®_obstack
);
1897 ira_setup_eliminable_regset ();
1898 bitmap_initialize (&curr_regs_live
, ®_obstack
);
1899 FOR_EACH_BB_FN (bb
, cfun
)
1901 curr_loop
= bb
->loop_father
;
1902 if (curr_loop
== current_loops
->tree_root
)
1905 for (loop
= curr_loop
;
1906 loop
!= current_loops
->tree_root
;
1907 loop
= loop_outer (loop
))
1908 bitmap_ior_into (&LOOP_DATA (loop
)->regs_live
, DF_LR_IN (bb
));
1910 bitmap_copy (&curr_regs_live
, DF_LR_IN (bb
));
1911 for (i
= 0; i
< ira_pressure_classes_num
; i
++)
1912 curr_reg_pressure
[ira_pressure_classes
[i
]] = 0;
1913 EXECUTE_IF_SET_IN_BITMAP (&curr_regs_live
, 0, j
, bi
)
1914 change_pressure (j
, true);
1916 FOR_BB_INSNS (bb
, insn
)
1918 if (! NONDEBUG_INSN_P (insn
))
1921 mark_ref_regs (PATTERN (insn
));
1923 note_stores (PATTERN (insn
), mark_reg_clobber
, NULL
);
1925 /* Mark any registers dead after INSN as dead now. */
1927 for (link
= REG_NOTES (insn
); link
; link
= XEXP (link
, 1))
1928 if (REG_NOTE_KIND (link
) == REG_DEAD
)
1929 mark_reg_death (XEXP (link
, 0));
1931 /* Mark any registers set in INSN as live,
1932 and mark them as conflicting with all other live regs.
1933 Clobbers are processed again, so they conflict with
1934 the registers that are set. */
1936 note_stores (PATTERN (insn
), mark_reg_store
, NULL
);
1939 for (link
= REG_NOTES (insn
); link
; link
= XEXP (link
, 1))
1940 if (REG_NOTE_KIND (link
) == REG_INC
)
1941 mark_reg_store (XEXP (link
, 0), NULL_RTX
, NULL
);
1943 while (n_regs_set
-- > 0)
1945 rtx note
= find_regno_note (insn
, REG_UNUSED
,
1946 REGNO (regs_set
[n_regs_set
]));
1950 mark_reg_death (XEXP (note
, 0));
1954 bitmap_clear (&curr_regs_live
);
1955 if (flag_ira_region
== IRA_REGION_MIXED
1956 || flag_ira_region
== IRA_REGION_ALL
)
1957 FOR_EACH_LOOP (loop
, 0)
1959 EXECUTE_IF_SET_IN_BITMAP (&LOOP_DATA (loop
)->regs_live
, 0, j
, bi
)
1960 if (! bitmap_bit_p (&LOOP_DATA (loop
)->regs_ref
, j
))
1962 enum reg_class pressure_class
;
1965 pressure_class
= get_regno_pressure_class (j
, &nregs
);
1966 LOOP_DATA (loop
)->max_reg_pressure
[pressure_class
] -= nregs
;
1969 if (dump_file
== NULL
)
1971 FOR_EACH_LOOP (loop
, 0)
1973 parent
= loop_outer (loop
);
1974 fprintf (dump_file
, "\n Loop %d (parent %d, header bb%d, depth %d)\n",
1975 loop
->num
, (parent
== NULL
? -1 : parent
->num
),
1976 loop
->header
->index
, loop_depth (loop
));
1977 fprintf (dump_file
, "\n ref. regnos:");
1978 EXECUTE_IF_SET_IN_BITMAP (&LOOP_DATA (loop
)->regs_ref
, 0, j
, bi
)
1979 fprintf (dump_file
, " %d", j
);
1980 fprintf (dump_file
, "\n live regnos:");
1981 EXECUTE_IF_SET_IN_BITMAP (&LOOP_DATA (loop
)->regs_live
, 0, j
, bi
)
1982 fprintf (dump_file
, " %d", j
);
1983 fprintf (dump_file
, "\n Pressure:");
1984 for (i
= 0; (int) i
< ira_pressure_classes_num
; i
++)
1986 enum reg_class pressure_class
;
1988 pressure_class
= ira_pressure_classes
[i
];
1989 if (LOOP_DATA (loop
)->max_reg_pressure
[pressure_class
] == 0)
1991 fprintf (dump_file
, " %s=%d", reg_class_names
[pressure_class
],
1992 LOOP_DATA (loop
)->max_reg_pressure
[pressure_class
]);
1994 fprintf (dump_file
, "\n");
2000 /* Move the invariants out of the loops. */
2003 move_loop_invariants (void)
2007 if (flag_ira_loop_pressure
)
2010 regstat_init_n_sets_and_refs ();
2011 ira_set_pseudo_classes (true, dump_file
);
2012 calculate_loop_reg_pressure ();
2013 regstat_free_n_sets_and_refs ();
2015 df_set_flags (DF_EQ_NOTES
+ DF_DEFER_INSN_RESCAN
);
2016 /* Process the loops, innermost first. */
2017 FOR_EACH_LOOP (loop
, LI_FROM_INNERMOST
)
2020 /* move_single_loop_invariants for very large loops
2021 is time consuming and might need a lot of memory. */
2022 if (loop
->num_nodes
<= (unsigned) LOOP_INVARIANT_MAX_BBS_IN_LOOP
)
2023 move_single_loop_invariants (loop
);
2026 FOR_EACH_LOOP (loop
, 0)
2028 free_loop_data (loop
);
2031 if (flag_ira_loop_pressure
)
2032 /* There is no sense to keep this info because it was most
2033 probably outdated by subsequent passes. */
2035 free (invariant_table
);
2036 invariant_table
= NULL
;
2037 invariant_table_size
= 0;
2039 #ifdef ENABLE_CHECKING
2040 verify_flow_info ();