1 /* IRA conflict builder.
2 Copyright (C) 2006, 2007, 2008, 2009, 2010
3 Free Software Foundation, Inc.
4 Contributed by Vladimir Makarov <vmakarov@redhat.com>.
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 3, or (at your option) any later
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
24 #include "coretypes.h"
31 #include "hard-reg-set.h"
32 #include "basic-block.h"
33 #include "insn-config.h"
35 #include "diagnostic-core.h"
38 #include "sparseset.h"
40 #include "addresses.h"
42 /* This file contains code responsible for allocno conflict creation,
43 allocno copy creation and allocno info accumulation on upper level
46 /* ira_allocnos_num array of arrays of bits, recording whether two
47 allocno's conflict (can't go in the same hardware register).
49 Some arrays will be used as conflict bit vector of the
50 corresponding allocnos see function build_object_conflicts. */
51 static IRA_INT_TYPE
**conflicts
;
53 /* Macro to test a conflict of C1 and C2 in `conflicts'. */
54 #define OBJECTS_CONFLICT_P(C1, C2) \
55 (OBJECT_MIN (C1) <= OBJECT_CONFLICT_ID (C2) \
56 && OBJECT_CONFLICT_ID (C2) <= OBJECT_MAX (C1) \
57 && TEST_MINMAX_SET_BIT (conflicts[OBJECT_CONFLICT_ID (C1)], \
58 OBJECT_CONFLICT_ID (C2), \
59 OBJECT_MIN (C1), OBJECT_MAX (C1)))
62 /* Record a conflict between objects OBJ1 and OBJ2. If necessary,
63 canonicalize the conflict by recording it for lower-order subobjects
64 of the corresponding allocnos. */
66 record_object_conflict (ira_object_t obj1
, ira_object_t obj2
)
68 ira_allocno_t a1
= OBJECT_ALLOCNO (obj1
);
69 ira_allocno_t a2
= OBJECT_ALLOCNO (obj2
);
70 int w1
= OBJECT_SUBWORD (obj1
);
71 int w2
= OBJECT_SUBWORD (obj2
);
74 /* Canonicalize the conflict. If two identically-numbered words
75 conflict, always record this as a conflict between words 0. That
76 is the only information we need, and it is easier to test for if
77 it is collected in each allocno's lowest-order object. */
78 if (w1
== w2
&& w1
> 0)
80 obj1
= ALLOCNO_OBJECT (a1
, 0);
81 obj2
= ALLOCNO_OBJECT (a2
, 0);
83 id1
= OBJECT_CONFLICT_ID (obj1
);
84 id2
= OBJECT_CONFLICT_ID (obj2
);
86 SET_MINMAX_SET_BIT (conflicts
[id1
], id2
, OBJECT_MIN (obj1
),
88 SET_MINMAX_SET_BIT (conflicts
[id2
], id1
, OBJECT_MIN (obj2
),
92 /* Build allocno conflict table by processing allocno live ranges.
93 Return true if the table was built. The table is not built if it
96 build_conflict_bit_table (void)
100 enum reg_class aclass
;
101 int object_set_words
, allocated_words_num
, conflict_bit_vec_words_num
;
103 ira_allocno_t allocno
;
104 ira_allocno_iterator ai
;
105 sparseset objects_live
;
107 ira_allocno_object_iterator aoi
;
109 allocated_words_num
= 0;
110 FOR_EACH_ALLOCNO (allocno
, ai
)
111 FOR_EACH_ALLOCNO_OBJECT (allocno
, obj
, aoi
)
113 if (OBJECT_MAX (obj
) < OBJECT_MIN (obj
))
115 conflict_bit_vec_words_num
116 = ((OBJECT_MAX (obj
) - OBJECT_MIN (obj
) + IRA_INT_BITS
)
118 allocated_words_num
+= conflict_bit_vec_words_num
;
119 if ((unsigned long long) allocated_words_num
* sizeof (IRA_INT_TYPE
)
120 > (unsigned long long) IRA_MAX_CONFLICT_TABLE_SIZE
* 1024 * 1024)
122 if (internal_flag_ira_verbose
> 0 && ira_dump_file
!= NULL
)
125 "+++Conflict table will be too big(>%dMB) -- don't use it\n",
126 IRA_MAX_CONFLICT_TABLE_SIZE
);
131 conflicts
= (IRA_INT_TYPE
**) ira_allocate (sizeof (IRA_INT_TYPE
*)
133 allocated_words_num
= 0;
134 FOR_EACH_ALLOCNO (allocno
, ai
)
135 FOR_EACH_ALLOCNO_OBJECT (allocno
, obj
, aoi
)
137 int id
= OBJECT_CONFLICT_ID (obj
);
138 if (OBJECT_MAX (obj
) < OBJECT_MIN (obj
))
140 conflicts
[id
] = NULL
;
143 conflict_bit_vec_words_num
144 = ((OBJECT_MAX (obj
) - OBJECT_MIN (obj
) + IRA_INT_BITS
)
146 allocated_words_num
+= conflict_bit_vec_words_num
;
148 = (IRA_INT_TYPE
*) ira_allocate (sizeof (IRA_INT_TYPE
)
149 * conflict_bit_vec_words_num
);
150 memset (conflicts
[id
], 0,
151 sizeof (IRA_INT_TYPE
) * conflict_bit_vec_words_num
);
154 object_set_words
= (ira_objects_num
+ IRA_INT_BITS
- 1) / IRA_INT_BITS
;
155 if (internal_flag_ira_verbose
> 0 && ira_dump_file
!= NULL
)
158 "+++Allocating %ld bytes for conflict table (uncompressed size %ld)\n",
159 (long) allocated_words_num
* sizeof (IRA_INT_TYPE
),
160 (long) object_set_words
* ira_objects_num
* sizeof (IRA_INT_TYPE
));
162 objects_live
= sparseset_alloc (ira_objects_num
);
163 for (i
= 0; i
< ira_max_point
; i
++)
165 for (r
= ira_start_point_ranges
[i
]; r
!= NULL
; r
= r
->start_next
)
167 ira_object_t obj
= r
->object
;
168 ira_allocno_t allocno
= OBJECT_ALLOCNO (obj
);
169 int id
= OBJECT_CONFLICT_ID (obj
);
171 gcc_assert (id
< ira_objects_num
);
173 aclass
= ALLOCNO_CLASS (allocno
);
174 sparseset_set_bit (objects_live
, id
);
175 EXECUTE_IF_SET_IN_SPARSESET (objects_live
, j
)
177 ira_object_t live_obj
= ira_object_id_map
[j
];
178 ira_allocno_t live_a
= OBJECT_ALLOCNO (live_obj
);
179 enum reg_class live_aclass
= ALLOCNO_CLASS (live_a
);
181 if (ira_reg_classes_intersect_p
[aclass
][live_aclass
]
182 /* Don't set up conflict for the allocno with itself. */
183 && live_a
!= allocno
)
185 record_object_conflict (obj
, live_obj
);
190 for (r
= ira_finish_point_ranges
[i
]; r
!= NULL
; r
= r
->finish_next
)
191 sparseset_clear_bit (objects_live
, OBJECT_CONFLICT_ID (r
->object
));
193 sparseset_free (objects_live
);
197 /* Return true iff allocnos A1 and A2 cannot be allocated to the same
198 register due to conflicts. */
201 allocnos_conflict_for_copy_p (ira_allocno_t a1
, ira_allocno_t a2
)
203 /* Due to the fact that we canonicalize conflicts (see
204 record_object_conflict), we only need to test for conflicts of
205 the lowest order words. */
206 ira_object_t obj1
= ALLOCNO_OBJECT (a1
, 0);
207 ira_object_t obj2
= ALLOCNO_OBJECT (a2
, 0);
209 return OBJECTS_CONFLICT_P (obj1
, obj2
);
212 /* Return TRUE if the operand constraint STR is commutative. */
214 commutative_constraint_p (const char *str
)
219 for (ignore_p
= false;;)
224 str
+= CONSTRAINT_LEN (c
, str
);
231 /* Usually `%' is the first constraint character but the
232 documentation does not require this. */
240 /* Return the number of the operand which should be the same in any
241 case as operand with number OP_NUM (or negative value if there is
242 no such operand). If USE_COMMUT_OP_P is TRUE, the function makes
243 temporarily commutative operand exchange before this. The function
244 takes only really possible alternatives into consideration. */
246 get_dup_num (int op_num
, bool use_commut_op_p
)
248 int curr_alt
, c
, original
, dup
;
249 bool ignore_p
, commut_op_used_p
;
253 if (op_num
< 0 || recog_data
.n_alternatives
== 0)
255 op
= recog_data
.operand
[op_num
];
256 commut_op_used_p
= true;
259 if (commutative_constraint_p (recog_data
.constraints
[op_num
]))
261 else if (op_num
> 0 && commutative_constraint_p (recog_data
.constraints
265 commut_op_used_p
= false;
267 str
= recog_data
.constraints
[op_num
];
268 for (ignore_p
= false, original
= -1, curr_alt
= 0;;)
288 /* Accept a register which might be placed in memory. */
298 if (address_operand (op
, VOIDmode
))
306 case 'a': case 'b': case 'c': case 'd': case 'e': case 'f':
307 case 'h': case 'j': case 'k': case 'l':
308 case 'q': case 't': case 'u':
309 case 'v': case 'w': case 'x': case 'y': case 'z':
310 case 'A': case 'B': case 'C': case 'D':
311 case 'Q': case 'R': case 'S': case 'T': case 'U':
312 case 'W': case 'Y': case 'Z':
317 ? GENERAL_REGS
: REG_CLASS_FROM_CONSTRAINT (c
, str
));
320 #ifdef EXTRA_CONSTRAINT_STR
321 else if (EXTRA_CONSTRAINT_STR (op
, c
, str
))
327 case '0': case '1': case '2': case '3': case '4':
328 case '5': case '6': case '7': case '8': case '9':
329 if (original
!= -1 && original
!= c
)
334 str
+= CONSTRAINT_LEN (c
, str
);
338 dup
= original
- '0';
341 if (commutative_constraint_p (recog_data
.constraints
[dup
]))
344 && commutative_constraint_p (recog_data
.constraints
[dup
-1]))
346 else if (! commut_op_used_p
)
352 /* Check that X is REG or SUBREG of REG. */
353 #define REG_SUBREG_P(x) \
354 (REG_P (x) || (GET_CODE (x) == SUBREG && REG_P (SUBREG_REG (x))))
356 /* Return X if X is a REG, otherwise it should be SUBREG of REG and
357 the function returns the reg in this case. *OFFSET will be set to
358 0 in the first case or the regno offset in the first case. */
360 go_through_subreg (rtx x
, int *offset
)
367 ira_assert (GET_CODE (x
) == SUBREG
);
368 reg
= SUBREG_REG (x
);
369 ira_assert (REG_P (reg
));
370 if (REGNO (reg
) < FIRST_PSEUDO_REGISTER
)
371 *offset
= subreg_regno_offset (REGNO (reg
), GET_MODE (reg
),
372 SUBREG_BYTE (x
), GET_MODE (x
));
374 *offset
= (SUBREG_BYTE (x
) / REGMODE_NATURAL_SIZE (GET_MODE (x
)));
378 /* Process registers REG1 and REG2 in move INSN with execution
379 frequency FREQ. The function also processes the registers in a
380 potential move insn (INSN == NULL in this case) with frequency
381 FREQ. The function can modify hard register costs of the
382 corresponding allocnos or create a copy involving the corresponding
383 allocnos. The function does nothing if the both registers are hard
384 registers. When nothing is changed, the function returns
387 process_regs_for_copy (rtx reg1
, rtx reg2
, bool constraint_p
,
390 int allocno_preferenced_hard_regno
, cost
, index
, offset1
, offset2
;
393 enum reg_class rclass
, aclass
;
394 enum machine_mode mode
;
397 gcc_assert (REG_SUBREG_P (reg1
) && REG_SUBREG_P (reg2
));
398 only_regs_p
= REG_P (reg1
) && REG_P (reg2
);
399 reg1
= go_through_subreg (reg1
, &offset1
);
400 reg2
= go_through_subreg (reg2
, &offset2
);
401 /* Set up hard regno preferenced by allocno. If allocno gets the
402 hard regno the copy (or potential move) insn will be removed. */
403 if (HARD_REGISTER_P (reg1
))
405 if (HARD_REGISTER_P (reg2
))
407 allocno_preferenced_hard_regno
= REGNO (reg1
) + offset1
- offset2
;
408 a
= ira_curr_regno_allocno_map
[REGNO (reg2
)];
410 else if (HARD_REGISTER_P (reg2
))
412 allocno_preferenced_hard_regno
= REGNO (reg2
) + offset2
- offset1
;
413 a
= ira_curr_regno_allocno_map
[REGNO (reg1
)];
417 ira_allocno_t a1
= ira_curr_regno_allocno_map
[REGNO (reg1
)];
418 ira_allocno_t a2
= ira_curr_regno_allocno_map
[REGNO (reg2
)];
419 if (!allocnos_conflict_for_copy_p (a1
, a2
) && offset1
== offset2
)
421 cp
= ira_add_allocno_copy (a1
, a2
, freq
, constraint_p
, insn
,
422 ira_curr_loop_tree_node
);
423 bitmap_set_bit (ira_curr_loop_tree_node
->local_copies
, cp
->num
);
430 if (! IN_RANGE (allocno_preferenced_hard_regno
,
431 0, FIRST_PSEUDO_REGISTER
- 1))
432 /* Can not be tied. */
434 rclass
= REGNO_REG_CLASS (allocno_preferenced_hard_regno
);
435 mode
= ALLOCNO_MODE (a
);
436 aclass
= ALLOCNO_CLASS (a
);
437 if (only_regs_p
&& insn
!= NULL_RTX
438 && reg_class_size
[rclass
] <= (unsigned) CLASS_MAX_NREGS (rclass
, mode
))
439 /* It is already taken into account in ira-costs.c. */
441 index
= ira_class_hard_reg_index
[aclass
][allocno_preferenced_hard_regno
];
443 /* Can not be tied. It is not in the allocno class. */
445 ira_init_register_move_cost_if_necessary (mode
);
446 if (HARD_REGISTER_P (reg1
))
447 cost
= ira_register_move_cost
[mode
][aclass
][rclass
] * freq
;
449 cost
= ira_register_move_cost
[mode
][rclass
][aclass
] * freq
;
452 ira_allocate_and_set_costs
453 (&ALLOCNO_HARD_REG_COSTS (a
), aclass
,
454 ALLOCNO_CLASS_COST (a
));
455 ira_allocate_and_set_costs
456 (&ALLOCNO_CONFLICT_HARD_REG_COSTS (a
), aclass
, 0);
457 ALLOCNO_HARD_REG_COSTS (a
)[index
] -= cost
;
458 ALLOCNO_CONFLICT_HARD_REG_COSTS (a
)[index
] -= cost
;
459 if (ALLOCNO_HARD_REG_COSTS (a
)[index
] < ALLOCNO_CLASS_COST (a
))
460 ALLOCNO_CLASS_COST (a
) = ALLOCNO_HARD_REG_COSTS (a
)[index
];
461 a
= ira_parent_or_cap_allocno (a
);
467 /* Process all of the output registers of the current insn which are
468 not bound (BOUND_P) and the input register REG (its operand number
469 OP_NUM) which dies in the insn as if there were a move insn between
470 them with frequency FREQ. */
472 process_reg_shuffles (rtx reg
, int op_num
, int freq
, bool *bound_p
)
477 gcc_assert (REG_SUBREG_P (reg
));
478 for (i
= 0; i
< recog_data
.n_operands
; i
++)
480 another_reg
= recog_data
.operand
[i
];
482 if (!REG_SUBREG_P (another_reg
) || op_num
== i
483 || recog_data
.operand_type
[i
] != OP_OUT
487 process_regs_for_copy (reg
, another_reg
, false, NULL_RTX
, freq
);
491 /* Process INSN and create allocno copies if necessary. For example,
492 it might be because INSN is a pseudo-register move or INSN is two
495 add_insn_allocno_copies (rtx insn
)
497 rtx set
, operand
, dup
;
499 bool commut_p
, bound_p
[MAX_RECOG_OPERANDS
];
502 freq
= REG_FREQ_FROM_BB (BLOCK_FOR_INSN (insn
));
505 if ((set
= single_set (insn
)) != NULL_RTX
506 && REG_SUBREG_P (SET_DEST (set
)) && REG_SUBREG_P (SET_SRC (set
))
507 && ! side_effects_p (set
)
508 && find_reg_note (insn
, REG_DEAD
,
509 REG_P (SET_SRC (set
))
511 : SUBREG_REG (SET_SRC (set
))) != NULL_RTX
)
513 process_regs_for_copy (SET_DEST (set
), SET_SRC (set
),
517 /* Fast check of possibility of constraint or shuffle copies. If
518 there are no dead registers, there will be no such copies. */
519 if (! find_reg_note (insn
, REG_DEAD
, NULL_RTX
))
522 for (i
= 0; i
< recog_data
.n_operands
; i
++)
524 for (i
= 0; i
< recog_data
.n_operands
; i
++)
526 operand
= recog_data
.operand
[i
];
527 if (! REG_SUBREG_P (operand
))
529 str
= recog_data
.constraints
[i
];
530 while (*str
== ' ' || *str
== '\t')
532 for (j
= 0, commut_p
= false; j
< 2; j
++, commut_p
= true)
533 if ((n
= get_dup_num (i
, commut_p
)) >= 0)
536 dup
= recog_data
.operand
[n
];
537 if (REG_SUBREG_P (dup
)
538 && find_reg_note (insn
, REG_DEAD
,
541 : SUBREG_REG (operand
)) != NULL_RTX
)
542 process_regs_for_copy (operand
, dup
, true, NULL_RTX
, freq
);
545 for (i
= 0; i
< recog_data
.n_operands
; i
++)
547 operand
= recog_data
.operand
[i
];
548 if (REG_SUBREG_P (operand
)
549 && find_reg_note (insn
, REG_DEAD
,
551 ? operand
: SUBREG_REG (operand
)) != NULL_RTX
)
552 /* If an operand dies, prefer its hard register for the output
553 operands by decreasing the hard register cost or creating
554 the corresponding allocno copies. The cost will not
555 correspond to a real move insn cost, so make the frequency
557 process_reg_shuffles (operand
, i
, freq
< 8 ? 1 : freq
/ 8, bound_p
);
561 /* Add copies originated from BB given by LOOP_TREE_NODE. */
563 add_copies (ira_loop_tree_node_t loop_tree_node
)
568 bb
= loop_tree_node
->bb
;
571 FOR_BB_INSNS (bb
, insn
)
572 if (NONDEBUG_INSN_P (insn
))
573 add_insn_allocno_copies (insn
);
576 /* Propagate copies the corresponding allocnos on upper loop tree
579 propagate_copies (void)
582 ira_copy_iterator ci
;
583 ira_allocno_t a1
, a2
, parent_a1
, parent_a2
;
585 FOR_EACH_COPY (cp
, ci
)
589 if (ALLOCNO_LOOP_TREE_NODE (a1
) == ira_loop_tree_root
)
591 ira_assert ((ALLOCNO_LOOP_TREE_NODE (a2
) != ira_loop_tree_root
));
592 parent_a1
= ira_parent_or_cap_allocno (a1
);
593 parent_a2
= ira_parent_or_cap_allocno (a2
);
594 ira_assert (parent_a1
!= NULL
&& parent_a2
!= NULL
);
595 if (! allocnos_conflict_for_copy_p (parent_a1
, parent_a2
))
596 ira_add_allocno_copy (parent_a1
, parent_a2
, cp
->freq
,
597 cp
->constraint_p
, cp
->insn
, cp
->loop_tree_node
);
601 /* Array used to collect all conflict allocnos for given allocno. */
602 static ira_object_t
*collected_conflict_objects
;
604 /* Build conflict vectors or bit conflict vectors (whatever is more
605 profitable) for object OBJ from the conflict table. */
607 build_object_conflicts (ira_object_t obj
)
609 int i
, px
, parent_num
;
610 ira_allocno_t parent_a
, another_parent_a
;
611 ira_object_t parent_obj
;
612 ira_allocno_t a
= OBJECT_ALLOCNO (obj
);
613 IRA_INT_TYPE
*object_conflicts
;
614 minmax_set_iterator asi
;
615 int parent_min
, parent_max ATTRIBUTE_UNUSED
;
617 object_conflicts
= conflicts
[OBJECT_CONFLICT_ID (obj
)];
619 FOR_EACH_BIT_IN_MINMAX_SET (object_conflicts
,
620 OBJECT_MIN (obj
), OBJECT_MAX (obj
), i
, asi
)
622 ira_object_t another_obj
= ira_object_id_map
[i
];
623 ira_allocno_t another_a
= OBJECT_ALLOCNO (obj
);
625 ira_assert (ira_reg_classes_intersect_p
626 [ALLOCNO_CLASS (a
)][ALLOCNO_CLASS (another_a
)]);
627 collected_conflict_objects
[px
++] = another_obj
;
629 if (ira_conflict_vector_profitable_p (obj
, px
))
632 ira_allocate_conflict_vec (obj
, px
);
633 vec
= OBJECT_CONFLICT_VEC (obj
);
634 memcpy (vec
, collected_conflict_objects
, sizeof (ira_object_t
) * px
);
636 OBJECT_NUM_CONFLICTS (obj
) = px
;
640 int conflict_bit_vec_words_num
;
642 OBJECT_CONFLICT_ARRAY (obj
) = object_conflicts
;
643 if (OBJECT_MAX (obj
) < OBJECT_MIN (obj
))
644 conflict_bit_vec_words_num
= 0;
646 conflict_bit_vec_words_num
647 = ((OBJECT_MAX (obj
) - OBJECT_MIN (obj
) + IRA_INT_BITS
)
649 OBJECT_CONFLICT_ARRAY_SIZE (obj
)
650 = conflict_bit_vec_words_num
* sizeof (IRA_INT_TYPE
);
653 parent_a
= ira_parent_or_cap_allocno (a
);
654 if (parent_a
== NULL
)
656 ira_assert (ALLOCNO_CLASS (a
) == ALLOCNO_CLASS (parent_a
));
657 ira_assert (ALLOCNO_NUM_OBJECTS (a
) == ALLOCNO_NUM_OBJECTS (parent_a
));
658 parent_obj
= ALLOCNO_OBJECT (parent_a
, OBJECT_SUBWORD (obj
));
659 parent_num
= OBJECT_CONFLICT_ID (parent_obj
);
660 parent_min
= OBJECT_MIN (parent_obj
);
661 parent_max
= OBJECT_MAX (parent_obj
);
662 FOR_EACH_BIT_IN_MINMAX_SET (object_conflicts
,
663 OBJECT_MIN (obj
), OBJECT_MAX (obj
), i
, asi
)
665 ira_object_t another_obj
= ira_object_id_map
[i
];
666 ira_allocno_t another_a
= OBJECT_ALLOCNO (another_obj
);
667 int another_word
= OBJECT_SUBWORD (another_obj
);
669 ira_assert (ira_reg_classes_intersect_p
670 [ALLOCNO_CLASS (a
)][ALLOCNO_CLASS (another_a
)]);
672 another_parent_a
= ira_parent_or_cap_allocno (another_a
);
673 if (another_parent_a
== NULL
)
675 ira_assert (ALLOCNO_NUM (another_parent_a
) >= 0);
676 ira_assert (ALLOCNO_CLASS (another_a
)
677 == ALLOCNO_CLASS (another_parent_a
));
678 ira_assert (ALLOCNO_NUM_OBJECTS (another_a
)
679 == ALLOCNO_NUM_OBJECTS (another_parent_a
));
680 SET_MINMAX_SET_BIT (conflicts
[parent_num
],
681 OBJECT_CONFLICT_ID (ALLOCNO_OBJECT (another_parent_a
,
683 parent_min
, parent_max
);
687 /* Build conflict vectors or bit conflict vectors (whatever is more
688 profitable) of all allocnos from the conflict table. */
690 build_conflicts (void)
693 ira_allocno_t a
, cap
;
695 collected_conflict_objects
696 = (ira_object_t
*) ira_allocate (sizeof (ira_object_t
)
698 for (i
= max_reg_num () - 1; i
>= FIRST_PSEUDO_REGISTER
; i
--)
699 for (a
= ira_regno_allocno_map
[i
];
701 a
= ALLOCNO_NEXT_REGNO_ALLOCNO (a
))
703 int j
, nregs
= ALLOCNO_NUM_OBJECTS (a
);
704 for (j
= 0; j
< nregs
; j
++)
706 ira_object_t obj
= ALLOCNO_OBJECT (a
, j
);
707 build_object_conflicts (obj
);
708 for (cap
= ALLOCNO_CAP (a
); cap
!= NULL
; cap
= ALLOCNO_CAP (cap
))
710 ira_object_t cap_obj
= ALLOCNO_OBJECT (cap
, j
);
711 gcc_assert (ALLOCNO_NUM_OBJECTS (cap
) == ALLOCNO_NUM_OBJECTS (a
));
712 build_object_conflicts (cap_obj
);
716 ira_free (collected_conflict_objects
);
721 /* Print hard reg set SET with TITLE to FILE. */
723 print_hard_reg_set (FILE *file
, const char *title
, HARD_REG_SET set
)
728 for (start
= -1, i
= 0; i
< FIRST_PSEUDO_REGISTER
; i
++)
730 if (TEST_HARD_REG_BIT (set
, i
))
732 if (i
== 0 || ! TEST_HARD_REG_BIT (set
, i
- 1))
736 && (i
== FIRST_PSEUDO_REGISTER
- 1 || ! TEST_HARD_REG_BIT (set
, i
)))
739 fprintf (file
, " %d", start
);
740 else if (start
== i
- 2)
741 fprintf (file
, " %d %d", start
, start
+ 1);
743 fprintf (file
, " %d-%d", start
, i
- 1);
751 print_allocno_conflicts (FILE * file
, bool reg_p
, ira_allocno_t a
)
753 HARD_REG_SET conflicting_hard_regs
;
758 fprintf (file
, ";; r%d", ALLOCNO_REGNO (a
));
761 fprintf (file
, ";; a%d(r%d,", ALLOCNO_NUM (a
), ALLOCNO_REGNO (a
));
762 if ((bb
= ALLOCNO_LOOP_TREE_NODE (a
)->bb
) != NULL
)
763 fprintf (file
, "b%d", bb
->index
);
765 fprintf (file
, "l%d", ALLOCNO_LOOP_TREE_NODE (a
)->loop
->num
);
769 fputs (" conflicts:", file
);
770 n
= ALLOCNO_NUM_OBJECTS (a
);
771 for (i
= 0; i
< n
; i
++)
773 ira_object_t obj
= ALLOCNO_OBJECT (a
, i
);
774 ira_object_t conflict_obj
;
775 ira_object_conflict_iterator oci
;
777 if (OBJECT_CONFLICT_ARRAY (obj
) == NULL
)
780 fprintf (file
, "\n;; subobject %d:", i
);
781 FOR_EACH_OBJECT_CONFLICT (obj
, conflict_obj
, oci
)
783 ira_allocno_t conflict_a
= OBJECT_ALLOCNO (conflict_obj
);
785 fprintf (file
, " r%d,", ALLOCNO_REGNO (conflict_a
));
788 fprintf (file
, " a%d(r%d", ALLOCNO_NUM (conflict_a
),
789 ALLOCNO_REGNO (conflict_a
));
790 if (ALLOCNO_NUM_OBJECTS (conflict_a
) > 1)
791 fprintf (file
, ",w%d", OBJECT_SUBWORD (conflict_obj
));
792 if ((bb
= ALLOCNO_LOOP_TREE_NODE (conflict_a
)->bb
) != NULL
)
793 fprintf (file
, ",b%d", bb
->index
);
795 fprintf (file
, ",l%d",
796 ALLOCNO_LOOP_TREE_NODE (conflict_a
)->loop
->num
);
800 COPY_HARD_REG_SET (conflicting_hard_regs
, OBJECT_TOTAL_CONFLICT_HARD_REGS (obj
));
801 AND_COMPL_HARD_REG_SET (conflicting_hard_regs
, ira_no_alloc_regs
);
802 AND_HARD_REG_SET (conflicting_hard_regs
,
803 reg_class_contents
[ALLOCNO_CLASS (a
)]);
804 print_hard_reg_set (file
, "\n;; total conflict hard regs:",
805 conflicting_hard_regs
);
807 COPY_HARD_REG_SET (conflicting_hard_regs
, OBJECT_CONFLICT_HARD_REGS (obj
));
808 AND_COMPL_HARD_REG_SET (conflicting_hard_regs
, ira_no_alloc_regs
);
809 AND_HARD_REG_SET (conflicting_hard_regs
,
810 reg_class_contents
[ALLOCNO_CLASS (a
)]);
811 print_hard_reg_set (file
, ";; conflict hard regs:",
812 conflicting_hard_regs
);
818 /* Print information about allocno or only regno (if REG_P) conflicts
821 print_conflicts (FILE *file
, bool reg_p
)
824 ira_allocno_iterator ai
;
826 FOR_EACH_ALLOCNO (a
, ai
)
827 print_allocno_conflicts (file
, reg_p
, a
);
830 /* Print information about allocno or only regno (if REG_P) conflicts
833 ira_debug_conflicts (bool reg_p
)
835 print_conflicts (stderr
, reg_p
);
840 /* Entry function which builds allocno conflicts and allocno copies
841 and accumulate some allocno info on upper level regions. */
843 ira_build_conflicts (void)
846 ira_allocno_iterator ai
;
847 HARD_REG_SET temp_hard_reg_set
;
851 ira_conflicts_p
= build_conflict_bit_table ();
855 ira_object_iterator oi
;
858 ira_traverse_loop_tree (true, ira_loop_tree_root
, NULL
, add_copies
);
859 /* We need finished conflict table for the subsequent call. */
860 if (flag_ira_region
== IRA_REGION_ALL
861 || flag_ira_region
== IRA_REGION_MIXED
)
864 /* Now we can free memory for the conflict table (see function
865 build_object_conflicts for details). */
866 FOR_EACH_OBJECT (obj
, oi
)
868 if (OBJECT_CONFLICT_ARRAY (obj
) != conflicts
[OBJECT_CONFLICT_ID (obj
)])
869 ira_free (conflicts
[OBJECT_CONFLICT_ID (obj
)]);
871 ira_free (conflicts
);
874 if (! targetm
.class_likely_spilled_p (base_reg_class (VOIDmode
, ADDRESS
,
876 CLEAR_HARD_REG_SET (temp_hard_reg_set
);
879 COPY_HARD_REG_SET (temp_hard_reg_set
,
880 reg_class_contents
[base_reg_class (VOIDmode
, ADDRESS
, SCRATCH
)]);
881 AND_COMPL_HARD_REG_SET (temp_hard_reg_set
, ira_no_alloc_regs
);
882 AND_HARD_REG_SET (temp_hard_reg_set
, call_used_reg_set
);
884 FOR_EACH_ALLOCNO (a
, ai
)
886 int i
, n
= ALLOCNO_NUM_OBJECTS (a
);
888 for (i
= 0; i
< n
; i
++)
890 ira_object_t obj
= ALLOCNO_OBJECT (a
, i
);
891 reg_attrs
*attrs
= REG_ATTRS (regno_reg_rtx
[ALLOCNO_REGNO (a
)]);
894 if ((! flag_caller_saves
&& ALLOCNO_CALLS_CROSSED_NUM (a
) != 0)
895 /* For debugging purposes don't put user defined variables in
896 callee-clobbered registers. */
899 && (decl
= attrs
->decl
) != NULL
900 && VAR_OR_FUNCTION_DECL_P (decl
)
901 && ! DECL_ARTIFICIAL (decl
)))
903 IOR_HARD_REG_SET (OBJECT_TOTAL_CONFLICT_HARD_REGS (obj
),
905 IOR_HARD_REG_SET (OBJECT_CONFLICT_HARD_REGS (obj
),
908 else if (ALLOCNO_CALLS_CROSSED_NUM (a
) != 0)
910 IOR_HARD_REG_SET (OBJECT_TOTAL_CONFLICT_HARD_REGS (obj
),
911 no_caller_save_reg_set
);
912 IOR_HARD_REG_SET (OBJECT_TOTAL_CONFLICT_HARD_REGS (obj
),
914 IOR_HARD_REG_SET (OBJECT_CONFLICT_HARD_REGS (obj
),
915 no_caller_save_reg_set
);
916 IOR_HARD_REG_SET (OBJECT_CONFLICT_HARD_REGS (obj
),
920 if (ALLOCNO_CALLS_CROSSED_NUM (a
) != 0)
924 /* Allocnos bigger than the saved part of call saved
925 regs must conflict with them. */
926 for (regno
= 0; regno
< FIRST_PSEUDO_REGISTER
; regno
++)
927 if (!TEST_HARD_REG_BIT (call_used_reg_set
, regno
)
928 && HARD_REGNO_CALL_PART_CLOBBERED (regno
,
931 SET_HARD_REG_BIT (OBJECT_CONFLICT_HARD_REGS (obj
), regno
);
932 SET_HARD_REG_BIT (OBJECT_TOTAL_CONFLICT_HARD_REGS (obj
),
938 if (optimize
&& ira_conflicts_p
939 && internal_flag_ira_verbose
> 2 && ira_dump_file
!= NULL
)
940 print_conflicts (ira_dump_file
, false);