1 /* Post-reload compare elimination.
2 Copyright (C) 2010-2015 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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 /* There is a set of targets whose general-purpose move or addition
21 instructions clobber the flags. These targets cannot split their
22 CBRANCH/CSTORE etc patterns before reload is complete, lest reload
23 itself insert these instructions in between the flags setter and user.
24 Because these targets cannot split the compare from the use, they
25 cannot make use of the comparison elimination offered by the combine pass.
27 This is a small pass intended to provide comparison elimination similar to
28 what is available via NOTICE_UPDATE_CC for cc0 targets. This should help
29 encourage cc0 targets to convert to an explicit post-reload representation
34 (0) CBRANCH/CSTORE etc have been split in pass_split_after_reload.
36 (1) All comparison patterns are represented as
38 [(set (reg:CC) (compare:CC (reg) (reg_or_immediate)))]
40 (2) All insn patterns that modify the flags are represented as
42 [(set (reg) (operation)
45 (3) If an insn of form (2) can usefully set the flags, there is
46 another pattern of the form
48 [(set (reg) (operation)
49 (set (reg:CCM) (compare:CCM (operation) (immediate)))]
51 The mode CCM will be chosen as if by SELECT_CC_MODE.
53 Note that unlike NOTICE_UPDATE_CC, we do not handle memory operands.
54 This could be handled as a future enhancement.
59 #include "coretypes.h"
63 #include "insn-config.h"
67 #include "hard-reg-set.h"
69 #include "dominance.h"
72 #include "basic-block.h"
73 #include "tree-pass.h"
79 /* These structures describe a comparison and how it is used. */
81 /* The choice of maximum 3 uses comes from wanting to eliminate the two
82 duplicate compares from a three-way branch on the sign of a value.
83 This is also sufficient to eliminate the duplicate compare against the
84 high-part of a double-word comparison. */
89 /* The instruction in which the result of the compare is used. */
91 /* The location of the flags register within the use. */
93 /* The comparison code applied against the flags register. */
99 /* The comparison instruction. */
102 /* The insn prior to the comparison insn that clobbers the flags. */
103 rtx_insn
*prev_clobber
;
105 /* The two values being compared. These will be either REGs or
109 /* The REG_EH_REGION of the comparison. */
112 /* Information about how this comparison is used. */
113 struct comparison_use uses
[MAX_CMP_USE
];
115 /* The original CC_MODE for this comparison. */
116 machine_mode orig_mode
;
118 /* The number of uses identified for this comparison. */
119 unsigned short n_uses
;
121 /* True if not all uses of this comparison have been identified.
122 This can happen either for overflowing the array above, or if
123 the flags register is used in some unusual context. */
126 /* True if its inputs are still valid at the end of the block. */
130 typedef struct comparison
*comparison_struct_p
;
132 static vec
<comparison_struct_p
> all_compares
;
134 /* Look for a "conforming" comparison, as defined above. If valid, return
135 the rtx for the COMPARE itself. */
138 conforming_compare (rtx_insn
*insn
)
142 set
= single_set (insn
);
147 if (GET_CODE (src
) != COMPARE
)
150 dest
= SET_DEST (set
);
151 if (!REG_P (dest
) || REGNO (dest
) != targetm
.flags_regnum
)
154 if (REG_P (XEXP (src
, 0))
155 && (REG_P (XEXP (src
, 1)) || CONSTANT_P (XEXP (src
, 1))))
161 /* Look for a pattern of the "correct" form for an insn with a flags clobber
162 for which we may be able to eliminate a compare later. We're not looking
163 to validate any inputs at this time, merely see that the basic shape is
164 correct. The term "arithmetic" may be somewhat misleading... */
167 arithmetic_flags_clobber_p (rtx_insn
*insn
)
171 if (!NONJUMP_INSN_P (insn
))
173 pat
= PATTERN (insn
);
174 if (extract_asm_operands (pat
))
177 if (GET_CODE (pat
) == PARALLEL
&& XVECLEN (pat
, 0) == 2)
179 x
= XVECEXP (pat
, 0, 0);
180 if (GET_CODE (x
) != SET
)
186 x
= XVECEXP (pat
, 0, 1);
187 if (GET_CODE (x
) == CLOBBER
)
190 if (REG_P (x
) && REGNO (x
) == targetm
.flags_regnum
)
198 /* Look for uses of FLAGS in INSN. If we find one we can analyze, record
199 it in CMP; otherwise indicate that we've missed a use. */
202 find_flags_uses_in_insn (struct comparison
*cmp
, rtx_insn
*insn
)
206 /* If we've already lost track of uses, don't bother collecting more. */
207 if (cmp
->missing_uses
)
210 /* Find a USE of the flags register. */
211 FOR_EACH_INSN_USE (use
, insn
)
212 if (DF_REF_REGNO (use
) == targetm
.flags_regnum
)
216 /* If this is an unusual use, quit. */
217 if (DF_REF_TYPE (use
) != DF_REF_REG_USE
)
220 /* If we've run out of slots to record uses, quit. */
221 if (cmp
->n_uses
== MAX_CMP_USE
)
224 /* Unfortunately the location of the flags register, while present
225 in the reference structure, doesn't help. We need to find the
226 comparison code that is outer to the actual flags use. */
227 loc
= DF_REF_LOC (use
);
229 if (GET_CODE (x
) == PARALLEL
)
230 x
= XVECEXP (x
, 0, 0);
232 if (GET_CODE (x
) == IF_THEN_ELSE
)
235 && loc
== &XEXP (x
, 0)
236 && XEXP (x
, 1) == const0_rtx
)
238 /* We've found a use of the flags that we understand. */
239 struct comparison_use
*cuse
= &cmp
->uses
[cmp
->n_uses
++];
242 cuse
->code
= GET_CODE (x
);
250 /* We failed to recognize this use of the flags register. */
251 cmp
->missing_uses
= true;
254 class find_comparison_dom_walker
: public dom_walker
257 find_comparison_dom_walker (cdi_direction direction
)
258 : dom_walker (direction
) {}
260 virtual void before_dom_children (basic_block
);
263 /* Return true if conforming COMPARE with EH_NOTE is redundant with comparison
264 CMP and can thus be eliminated. */
267 can_eliminate_compare (rtx compare
, rtx eh_note
, struct comparison
*cmp
)
269 /* Take care that it's in the same EH region. */
270 if (cfun
->can_throw_non_call_exceptions
271 && !rtx_equal_p (eh_note
, cmp
->eh_note
))
274 /* Make sure the compare is redundant with the previous. */
275 if (!rtx_equal_p (XEXP (compare
, 0), cmp
->in_a
)
276 || !rtx_equal_p (XEXP (compare
, 1), cmp
->in_b
))
279 /* New mode must be compatible with the previous compare mode. */
280 enum machine_mode new_mode
281 = targetm
.cc_modes_compatible (GET_MODE (compare
), cmp
->orig_mode
);
283 if (new_mode
== VOIDmode
)
286 if (cmp
->orig_mode
!= new_mode
)
288 /* Generate new comparison for substitution. */
289 rtx flags
= gen_rtx_REG (new_mode
, targetm
.flags_regnum
);
290 rtx x
= gen_rtx_COMPARE (new_mode
, cmp
->in_a
, cmp
->in_b
);
291 x
= gen_rtx_SET (flags
, x
);
293 if (!validate_change (cmp
->insn
, &PATTERN (cmp
->insn
), x
, false))
296 cmp
->orig_mode
= new_mode
;
302 /* Identify comparison instructions within BB. If the flags from the last
303 compare in the BB is live at the end of the block, install the compare
304 in BB->AUX. Called via dom_walker.walk (). */
307 find_comparison_dom_walker::before_dom_children (basic_block bb
)
309 struct comparison
*last_cmp
;
310 rtx_insn
*insn
, *next
, *last_clobber
;
312 bool need_purge
= false;
315 killed
= BITMAP_ALLOC (NULL
);
317 /* The last comparison that was made. Will be reset to NULL
318 once the flags are clobbered. */
321 /* True iff the last comparison has not been clobbered, nor
322 have its inputs. Used to eliminate duplicate compares. */
323 last_cmp_valid
= false;
325 /* The last insn that clobbered the flags, if that insn is of
326 a form that may be valid for eliminating a following compare.
327 To be reset to NULL once the flags are set otherwise. */
330 /* Propagate the last live comparison throughout the extended basic block. */
331 if (single_pred_p (bb
))
333 last_cmp
= (struct comparison
*) single_pred (bb
)->aux
;
335 last_cmp_valid
= last_cmp
->inputs_valid
;
338 for (insn
= BB_HEAD (bb
); insn
; insn
= next
)
342 next
= (insn
== BB_END (bb
) ? NULL
: NEXT_INSN (insn
));
343 if (!NONDEBUG_INSN_P (insn
))
346 /* Compute the set of registers modified by this instruction. */
347 bitmap_clear (killed
);
348 df_simulate_find_defs (insn
, killed
);
350 src
= conforming_compare (insn
);
355 if (cfun
->can_throw_non_call_exceptions
)
356 eh_note
= find_reg_note (insn
, REG_EH_REGION
, NULL
);
358 if (last_cmp_valid
&& can_eliminate_compare (src
, eh_note
, last_cmp
))
366 last_cmp
= XCNEW (struct comparison
);
367 last_cmp
->insn
= insn
;
368 last_cmp
->prev_clobber
= last_clobber
;
369 last_cmp
->in_a
= XEXP (src
, 0);
370 last_cmp
->in_b
= XEXP (src
, 1);
371 last_cmp
->eh_note
= eh_note
;
372 last_cmp
->orig_mode
= GET_MODE (src
);
373 all_compares
.safe_push (last_cmp
);
375 /* It's unusual, but be prepared for comparison patterns that
376 also clobber an input, or perhaps a scratch. */
378 last_cmp_valid
= true;
381 /* Notice if this instruction kills the flags register. */
382 else if (bitmap_bit_p (killed
, targetm
.flags_regnum
))
384 /* See if this insn could be the "clobber" that eliminates
385 a future comparison. */
386 last_clobber
= (arithmetic_flags_clobber_p (insn
) ? insn
: NULL
);
388 /* In either case, the previous compare is no longer valid. */
390 last_cmp_valid
= false;
393 /* Notice if this instruction uses the flags register. */
395 find_flags_uses_in_insn (last_cmp
, insn
);
397 /* Notice if any of the inputs to the comparison have changed. */
399 && (bitmap_bit_p (killed
, REGNO (last_cmp
->in_a
))
400 || (REG_P (last_cmp
->in_b
)
401 && bitmap_bit_p (killed
, REGNO (last_cmp
->in_b
)))))
402 last_cmp_valid
= false;
405 BITMAP_FREE (killed
);
407 /* Remember the live comparison for subsequent members of
408 the extended basic block. */
412 last_cmp
->inputs_valid
= last_cmp_valid
;
414 /* Look to see if the flags register is live outgoing here, and
415 incoming to any successor not part of the extended basic block. */
416 if (bitmap_bit_p (df_get_live_out (bb
), targetm
.flags_regnum
))
421 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
423 basic_block dest
= e
->dest
;
424 if (bitmap_bit_p (df_get_live_in (bb
), targetm
.flags_regnum
)
425 && !single_pred_p (dest
))
427 last_cmp
->missing_uses
= true;
434 /* If we deleted a compare with a REG_EH_REGION note, we may need to
437 purge_dead_edges (bb
);
440 /* Find all comparisons in the function. */
443 find_comparisons (void)
445 calculate_dominance_info (CDI_DOMINATORS
);
447 find_comparison_dom_walker (CDI_DOMINATORS
)
448 .walk (cfun
->cfg
->x_entry_block_ptr
);
450 clear_aux_for_blocks ();
451 free_dominance_info (CDI_DOMINATORS
);
454 /* Select an alternate CC_MODE for a comparison insn comparing A and B.
455 Note that inputs are almost certainly different than the IN_A and IN_B
456 stored in CMP -- we're called while attempting to eliminate the compare
457 after all. Return the new FLAGS rtx if successful, else return NULL.
458 Note that this function may start a change group. */
461 maybe_select_cc_mode (struct comparison
*cmp
, rtx a ATTRIBUTE_UNUSED
,
462 rtx b ATTRIBUTE_UNUSED
)
464 machine_mode sel_mode
;
465 const int n
= cmp
->n_uses
;
468 #ifndef SELECT_CC_MODE
469 /* Minimize code differences when this target macro is undefined. */
471 #define SELECT_CC_MODE(A,B,C) (gcc_unreachable (), VOIDmode)
474 /* If we don't have access to all of the uses, we can't validate. */
475 if (cmp
->missing_uses
|| n
== 0)
478 /* Find a new mode that works for all of the uses. Special case the
479 common case of exactly one use. */
482 sel_mode
= SELECT_CC_MODE (cmp
->uses
[0].code
, a
, b
);
483 if (sel_mode
!= cmp
->orig_mode
)
485 flags
= gen_rtx_REG (sel_mode
, targetm
.flags_regnum
);
486 validate_change (cmp
->uses
[0].insn
, cmp
->uses
[0].loc
, flags
, true);
493 sel_mode
= SELECT_CC_MODE (cmp
->uses
[0].code
, a
, b
);
494 for (i
= 1; i
< n
; ++i
)
496 machine_mode new_mode
= SELECT_CC_MODE (cmp
->uses
[i
].code
, a
, b
);
497 if (new_mode
!= sel_mode
)
499 sel_mode
= targetm
.cc_modes_compatible (sel_mode
, new_mode
);
500 if (sel_mode
== VOIDmode
)
505 if (sel_mode
!= cmp
->orig_mode
)
507 flags
= gen_rtx_REG (sel_mode
, targetm
.flags_regnum
);
508 for (i
= 0; i
< n
; ++i
)
509 validate_change (cmp
->uses
[i
].insn
, cmp
->uses
[i
].loc
, flags
, true);
516 /* Attempt to replace a comparison with a prior arithmetic insn that can
517 compute the same flags value as the comparison itself. Return true if
518 successful, having made all rtl modifications necessary. */
521 try_eliminate_compare (struct comparison
*cmp
)
523 rtx_insn
*insn
, *bb_head
;
524 rtx x
, flags
, in_a
, cmp_src
;
526 /* We must have found an interesting "clobber" preceding the compare. */
527 if (cmp
->prev_clobber
== NULL
)
530 /* ??? For the moment we don't handle comparisons for which IN_B
531 is a register. We accepted these during initial comparison
532 recognition in order to eliminate duplicate compares.
533 An improvement here would be to handle x = a - b; if (a cmp b). */
534 if (!CONSTANT_P (cmp
->in_b
))
537 /* Verify that IN_A is not clobbered in between CMP and PREV_CLOBBER.
538 Given that this target requires this pass, we can assume that most
539 insns do clobber the flags, and so the distance between the compare
540 and the clobber is likely to be small. */
541 /* ??? This is one point at which one could argue that DF_REF_CHAIN would
542 be useful, but it is thought to be too heavy-weight a solution here. */
546 bb_head
= BB_HEAD (BLOCK_FOR_INSN (insn
));
547 for (insn
= PREV_INSN (insn
);
548 insn
!= cmp
->prev_clobber
;
549 insn
= PREV_INSN (insn
))
551 const int abnormal_flags
552 = (DF_REF_CONDITIONAL
| DF_REF_PARTIAL
| DF_REF_MAY_CLOBBER
553 | DF_REF_MUST_CLOBBER
| DF_REF_SIGN_EXTRACT
554 | DF_REF_ZERO_EXTRACT
| DF_REF_STRICT_LOW_PART
555 | DF_REF_PRE_POST_MODIFY
);
558 /* Note that the BB_HEAD is always either a note or a label, but in
559 any case it means that IN_A is defined outside the block. */
562 if (NOTE_P (insn
) || DEBUG_INSN_P (insn
))
565 /* Find a possible def of IN_A in INSN. */
566 FOR_EACH_INSN_DEF (def
, insn
)
567 if (DF_REF_REGNO (def
) == REGNO (in_a
))
570 /* No definitions of IN_A; continue searching. */
574 /* Bail if this is not a totally normal set of IN_A. */
575 if (DF_REF_IS_ARTIFICIAL (def
))
577 if (DF_REF_FLAGS (def
) & abnormal_flags
)
580 /* We've found an insn between the compare and the clobber that sets
581 IN_A. Given that pass_cprop_hardreg has not yet run, we still find
582 situations in which we can usefully look through a copy insn. */
583 x
= single_set (insn
);
591 /* We've reached PREV_CLOBBER without finding a modification of IN_A.
592 Validate that PREV_CLOBBER itself does in fact refer to IN_A. Do
593 recall that we've already validated the shape of PREV_CLOBBER. */
594 x
= XVECEXP (PATTERN (insn
), 0, 0);
595 if (rtx_equal_p (SET_DEST (x
), in_a
))
596 cmp_src
= SET_SRC (x
);
598 /* Also check operations with implicit extensions, e.g.:
600 (zero_extend:DI (plus:SI (reg:SI)(reg:SI))))
603 (plus:SI (reg:SI)(reg:SI))
605 else if (REG_P (SET_DEST (x
))
607 && REGNO (SET_DEST (x
)) == REGNO (in_a
)
608 && (GET_CODE (SET_SRC (x
)) == ZERO_EXTEND
609 || GET_CODE (SET_SRC (x
)) == SIGN_EXTEND
)
610 && GET_MODE (XEXP (SET_SRC (x
), 0)) == GET_MODE (in_a
))
611 cmp_src
= XEXP (SET_SRC (x
), 0);
615 /* Determine if we ought to use a different CC_MODE here. */
616 flags
= maybe_select_cc_mode (cmp
, cmp_src
, cmp
->in_b
);
618 flags
= gen_rtx_REG (cmp
->orig_mode
, targetm
.flags_regnum
);
620 /* Generate a new comparison for installation in the setter. */
621 x
= copy_rtx (cmp_src
);
622 x
= gen_rtx_COMPARE (GET_MODE (flags
), x
, cmp
->in_b
);
623 x
= gen_rtx_SET (flags
, x
);
625 /* Succeed if the new instruction is valid. Note that we may have started
626 a change group within maybe_select_cc_mode, therefore we must continue. */
627 validate_change (insn
, &XVECEXP (PATTERN (insn
), 0, 1), x
, true);
628 if (!apply_change_group ())
631 /* Success. Delete the compare insn... */
632 delete_insn (cmp
->insn
);
634 /* ... and any notes that are now invalid due to multiple sets. */
635 x
= find_regno_note (insn
, REG_UNUSED
, targetm
.flags_regnum
);
637 remove_note (insn
, x
);
638 x
= find_reg_note (insn
, REG_EQUAL
, NULL
);
640 remove_note (insn
, x
);
641 x
= find_reg_note (insn
, REG_EQUIV
, NULL
);
643 remove_note (insn
, x
);
648 /* Main entry point to the pass. */
651 execute_compare_elim_after_reload (void)
655 gcc_checking_assert (!all_compares
.exists ());
657 /* Locate all comparisons and their uses, and eliminate duplicates. */
659 if (all_compares
.exists ())
661 struct comparison
*cmp
;
664 /* Eliminate comparisons that are redundant with flags computation. */
665 FOR_EACH_VEC_ELT (all_compares
, i
, cmp
)
667 try_eliminate_compare (cmp
);
671 all_compares
.release ();
679 const pass_data pass_data_compare_elim_after_reload
=
682 "cmpelim", /* name */
683 OPTGROUP_NONE
, /* optinfo_flags */
685 0, /* properties_required */
686 0, /* properties_provided */
687 0, /* properties_destroyed */
688 0, /* todo_flags_start */
689 ( TODO_df_finish
| TODO_df_verify
), /* todo_flags_finish */
692 class pass_compare_elim_after_reload
: public rtl_opt_pass
695 pass_compare_elim_after_reload (gcc::context
*ctxt
)
696 : rtl_opt_pass (pass_data_compare_elim_after_reload
, ctxt
)
699 /* opt_pass methods: */
700 virtual bool gate (function
*)
702 /* Setting this target hook value is how a backend indicates the need. */
703 if (targetm
.flags_regnum
== INVALID_REGNUM
)
705 return flag_compare_elim_after_reload
;
708 virtual unsigned int execute (function
*)
710 return execute_compare_elim_after_reload ();
713 }; // class pass_compare_elim_after_reload
718 make_pass_compare_elim_after_reload (gcc::context
*ctxt
)
720 return new pass_compare_elim_after_reload (ctxt
);