1 /* Induction variable canonicalization and loop peeling.
2 Copyright (C) 2004-2015 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it
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 pass detects the loops that iterate a constant number of times,
21 adds a canonical induction variable (step -1, tested against 0)
22 and replaces the exit test. This enables the less powerful rtl
23 level analysis to use this information.
25 This might spoil the code in some cases (by increasing register pressure).
26 Note that in the case the new variable is not needed, ivopts will get rid
27 of it, so it might only be a problem when there are no other linear induction
28 variables. In that case the created optimization possibilities are likely
32 - complete unrolling (or peeling) when the loops is rolling few enough
34 - simple peeling (i.e. copying few initial iterations prior the loop)
35 when number of iteration estimate is known (typically by the profile
40 #include "coretypes.h"
50 #include "hard-reg-set.h"
53 #include "dominance.h"
55 #include "basic-block.h"
56 #include "gimple-pretty-print.h"
57 #include "tree-ssa-alias.h"
58 #include "internal-fn.h"
59 #include "gimple-fold.h"
61 #include "gimple-expr.h"
64 #include "gimple-iterator.h"
65 #include "gimple-ssa.h"
67 #include "plugin-api.h"
71 #include "tree-phinodes.h"
72 #include "ssa-iterators.h"
73 #include "stringpool.h"
74 #include "tree-ssanames.h"
75 #include "tree-ssa-loop-manip.h"
76 #include "tree-ssa-loop-niter.h"
77 #include "tree-ssa-loop.h"
78 #include "tree-into-ssa.h"
80 #include "tree-pass.h"
81 #include "tree-chrec.h"
82 #include "tree-scalar-evolution.h"
85 #include "tree-inline.h"
87 #include "tree-cfgcleanup.h"
90 /* Specifies types of loops that may be unrolled. */
94 UL_SINGLE_ITER
, /* Only loops that exit immediately in the first
96 UL_NO_GROWTH
, /* Only loops whose unrolling will not cause increase
98 UL_ALL
/* All suitable loops. */
101 /* Adds a canonical induction variable to LOOP iterating NITER times. EXIT
102 is the exit edge whose condition is replaced. */
105 create_canonical_iv (struct loop
*loop
, edge exit
, tree niter
)
110 gimple_stmt_iterator incr_at
;
113 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
115 fprintf (dump_file
, "Added canonical iv to loop %d, ", loop
->num
);
116 print_generic_expr (dump_file
, niter
, TDF_SLIM
);
117 fprintf (dump_file
, " iterations.\n");
120 cond
= as_a
<gcond
*> (last_stmt (exit
->src
));
121 in
= EDGE_SUCC (exit
->src
, 0);
123 in
= EDGE_SUCC (exit
->src
, 1);
125 /* Note that we do not need to worry about overflows, since
126 type of niter is always unsigned and all comparisons are
127 just for equality/nonequality -- i.e. everything works
128 with a modulo arithmetics. */
130 type
= TREE_TYPE (niter
);
131 niter
= fold_build2 (PLUS_EXPR
, type
,
133 build_int_cst (type
, 1));
134 incr_at
= gsi_last_bb (in
->src
);
136 build_int_cst (type
, -1),
138 &incr_at
, false, NULL
, &var
);
140 cmp
= (exit
->flags
& EDGE_TRUE_VALUE
) ? EQ_EXPR
: NE_EXPR
;
141 gimple_cond_set_code (cond
, cmp
);
142 gimple_cond_set_lhs (cond
, var
);
143 gimple_cond_set_rhs (cond
, build_int_cst (type
, 0));
147 /* Describe size of loop as detected by tree_estimate_loop_size. */
150 /* Number of instructions in the loop. */
153 /* Number of instructions that will be likely optimized out in
154 peeled iterations of loop (i.e. computation based on induction
155 variable where induction variable starts at known constant.) */
156 int eliminated_by_peeling
;
158 /* Same statistics for last iteration of loop: it is smaller because
159 instructions after exit are not executed. */
161 int last_iteration_eliminated_by_peeling
;
163 /* If some IV computation will become constant. */
166 /* Number of call stmts that are not a builtin and are pure or const
167 present on the hot path. */
168 int num_pure_calls_on_hot_path
;
169 /* Number of call stmts that are not a builtin and are not pure nor const
170 present on the hot path. */
171 int num_non_pure_calls_on_hot_path
;
172 /* Number of statements other than calls in the loop. */
173 int non_call_stmts_on_hot_path
;
174 /* Number of branches seen on the hot path. */
175 int num_branches_on_hot_path
;
178 /* Return true if OP in STMT will be constant after peeling LOOP. */
181 constant_after_peeling (tree op
, gimple stmt
, struct loop
*loop
)
185 if (is_gimple_min_invariant (op
))
188 /* We can still fold accesses to constant arrays when index is known. */
189 if (TREE_CODE (op
) != SSA_NAME
)
193 /* First make fast look if we see constant array inside. */
194 while (handled_component_p (base
))
195 base
= TREE_OPERAND (base
, 0);
197 && ctor_for_folding (base
) != error_mark_node
)
198 || CONSTANT_CLASS_P (base
))
200 /* If so, see if we understand all the indices. */
202 while (handled_component_p (base
))
204 if (TREE_CODE (base
) == ARRAY_REF
205 && !constant_after_peeling (TREE_OPERAND (base
, 1), stmt
, loop
))
207 base
= TREE_OPERAND (base
, 0);
214 /* Induction variables are constants. */
215 if (!simple_iv (loop
, loop_containing_stmt (stmt
), op
, &iv
, false))
217 if (!is_gimple_min_invariant (iv
.base
))
219 if (!is_gimple_min_invariant (iv
.step
))
224 /* Computes an estimated number of insns in LOOP.
225 EXIT (if non-NULL) is an exite edge that will be eliminated in all but last
226 iteration of the loop.
227 EDGE_TO_CANCEL (if non-NULL) is an non-exit edge eliminated in the last iteration
229 Return results in SIZE, estimate benefits for complete unrolling exiting by EXIT.
230 Stop estimating after UPPER_BOUND is met. Return true in this case. */
233 tree_estimate_loop_size (struct loop
*loop
, edge exit
, edge edge_to_cancel
, struct loop_size
*size
,
236 basic_block
*body
= get_loop_body (loop
);
237 gimple_stmt_iterator gsi
;
240 vec
<basic_block
> path
= get_loop_hot_path (loop
);
243 size
->eliminated_by_peeling
= 0;
244 size
->last_iteration
= 0;
245 size
->last_iteration_eliminated_by_peeling
= 0;
246 size
->num_pure_calls_on_hot_path
= 0;
247 size
->num_non_pure_calls_on_hot_path
= 0;
248 size
->non_call_stmts_on_hot_path
= 0;
249 size
->num_branches_on_hot_path
= 0;
250 size
->constant_iv
= 0;
252 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
253 fprintf (dump_file
, "Estimating sizes for loop %i\n", loop
->num
);
254 for (i
= 0; i
< loop
->num_nodes
; i
++)
256 if (edge_to_cancel
&& body
[i
] != edge_to_cancel
->src
257 && dominated_by_p (CDI_DOMINATORS
, body
[i
], edge_to_cancel
->src
))
261 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
262 fprintf (dump_file
, " BB: %i, after_exit: %i\n", body
[i
]->index
, after_exit
);
264 for (gsi
= gsi_start_bb (body
[i
]); !gsi_end_p (gsi
); gsi_next (&gsi
))
266 gimple stmt
= gsi_stmt (gsi
);
267 int num
= estimate_num_insns (stmt
, &eni_size_weights
);
268 bool likely_eliminated
= false;
269 bool likely_eliminated_last
= false;
270 bool likely_eliminated_peeled
= false;
272 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
274 fprintf (dump_file
, " size: %3i ", num
);
275 print_gimple_stmt (dump_file
, gsi_stmt (gsi
), 0, 0);
278 /* Look for reasons why we might optimize this stmt away. */
280 if (gimple_has_side_effects (stmt
))
282 /* Exit conditional. */
283 else if (exit
&& body
[i
] == exit
->src
284 && stmt
== last_stmt (exit
->src
))
286 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
287 fprintf (dump_file
, " Exit condition will be eliminated "
288 "in peeled copies.\n");
289 likely_eliminated_peeled
= true;
291 else if (edge_to_cancel
&& body
[i
] == edge_to_cancel
->src
292 && stmt
== last_stmt (edge_to_cancel
->src
))
294 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
295 fprintf (dump_file
, " Exit condition will be eliminated "
297 likely_eliminated_last
= true;
299 /* Sets of IV variables */
300 else if (gimple_code (stmt
) == GIMPLE_ASSIGN
301 && constant_after_peeling (gimple_assign_lhs (stmt
), stmt
, loop
))
303 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
304 fprintf (dump_file
, " Induction variable computation will"
305 " be folded away.\n");
306 likely_eliminated
= true;
308 /* Assignments of IV variables. */
309 else if (gimple_code (stmt
) == GIMPLE_ASSIGN
310 && TREE_CODE (gimple_assign_lhs (stmt
)) == SSA_NAME
311 && constant_after_peeling (gimple_assign_rhs1 (stmt
), stmt
, loop
)
312 && (gimple_assign_rhs_class (stmt
) != GIMPLE_BINARY_RHS
313 || constant_after_peeling (gimple_assign_rhs2 (stmt
),
316 size
->constant_iv
= true;
317 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
318 fprintf (dump_file
, " Constant expression will be folded away.\n");
319 likely_eliminated
= true;
322 else if ((gimple_code (stmt
) == GIMPLE_COND
323 && constant_after_peeling (gimple_cond_lhs (stmt
), stmt
, loop
)
324 && constant_after_peeling (gimple_cond_rhs (stmt
), stmt
, loop
))
325 || (gimple_code (stmt
) == GIMPLE_SWITCH
326 && constant_after_peeling (gimple_switch_index (
327 as_a
<gswitch
*> (stmt
)),
330 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
331 fprintf (dump_file
, " Constant conditional.\n");
332 likely_eliminated
= true;
335 size
->overall
+= num
;
336 if (likely_eliminated
|| likely_eliminated_peeled
)
337 size
->eliminated_by_peeling
+= num
;
340 size
->last_iteration
+= num
;
341 if (likely_eliminated
|| likely_eliminated_last
)
342 size
->last_iteration_eliminated_by_peeling
+= num
;
344 if ((size
->overall
* 3 / 2 - size
->eliminated_by_peeling
345 - size
->last_iteration_eliminated_by_peeling
) > upper_bound
)
353 while (path
.length ())
355 basic_block bb
= path
.pop ();
356 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
358 gimple stmt
= gsi_stmt (gsi
);
359 if (gimple_code (stmt
) == GIMPLE_CALL
)
361 int flags
= gimple_call_flags (stmt
);
362 tree decl
= gimple_call_fndecl (stmt
);
364 if (decl
&& DECL_IS_BUILTIN (decl
)
365 && is_inexpensive_builtin (decl
))
367 else if (flags
& (ECF_PURE
| ECF_CONST
))
368 size
->num_pure_calls_on_hot_path
++;
370 size
->num_non_pure_calls_on_hot_path
++;
371 size
->num_branches_on_hot_path
++;
373 else if (gimple_code (stmt
) != GIMPLE_CALL
374 && gimple_code (stmt
) != GIMPLE_DEBUG
)
375 size
->non_call_stmts_on_hot_path
++;
376 if (((gimple_code (stmt
) == GIMPLE_COND
377 && (!constant_after_peeling (gimple_cond_lhs (stmt
), stmt
, loop
)
378 || constant_after_peeling (gimple_cond_rhs (stmt
), stmt
, loop
)))
379 || (gimple_code (stmt
) == GIMPLE_SWITCH
380 && !constant_after_peeling (gimple_switch_index (
381 as_a
<gswitch
*> (stmt
)),
383 && (!exit
|| bb
!= exit
->src
))
384 size
->num_branches_on_hot_path
++;
388 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
389 fprintf (dump_file
, "size: %i-%i, last_iteration: %i-%i\n", size
->overall
,
390 size
->eliminated_by_peeling
, size
->last_iteration
,
391 size
->last_iteration_eliminated_by_peeling
);
397 /* Estimate number of insns of completely unrolled loop.
398 It is (NUNROLL + 1) * size of loop body with taking into account
399 the fact that in last copy everything after exit conditional
400 is dead and that some instructions will be eliminated after
403 Loop body is likely going to simplify further, this is difficult
404 to guess, we just decrease the result by 1/3. */
406 static unsigned HOST_WIDE_INT
407 estimated_unrolled_size (struct loop_size
*size
,
408 unsigned HOST_WIDE_INT nunroll
)
410 HOST_WIDE_INT unr_insns
= ((nunroll
)
411 * (HOST_WIDE_INT
) (size
->overall
412 - size
->eliminated_by_peeling
));
415 unr_insns
+= size
->last_iteration
- size
->last_iteration_eliminated_by_peeling
;
417 unr_insns
= unr_insns
* 2 / 3;
424 /* Loop LOOP is known to not loop. See if there is an edge in the loop
425 body that can be remove to make the loop to always exit and at
426 the same time it does not make any code potentially executed
427 during the last iteration dead.
429 After complete unrolling we still may get rid of the conditional
430 on the exit in the last copy even if we have no idea what it does.
431 This is quite common case for loops of form
437 Here we prove the loop to iterate 5 times but we do not know
438 it from induction variable.
440 For now we handle only simple case where there is exit condition
441 just before the latch block and the latch block contains no statements
442 with side effect that may otherwise terminate the execution of loop
443 (such as by EH or by terminating the program or longjmp).
445 In the general case we may want to cancel the paths leading to statements
446 loop-niter identified as having undefined effect in the last iteration.
447 The other cases are hopefully rare and will be cleaned up later. */
450 loop_edge_to_cancel (struct loop
*loop
)
455 gimple_stmt_iterator gsi
;
457 /* We want only one predecestor of the loop. */
458 if (EDGE_COUNT (loop
->latch
->preds
) > 1)
461 exits
= get_loop_exit_edges (loop
);
463 FOR_EACH_VEC_ELT (exits
, i
, edge_to_cancel
)
465 /* Find the other edge than the loop exit
466 leaving the conditoinal. */
467 if (EDGE_COUNT (edge_to_cancel
->src
->succs
) != 2)
469 if (EDGE_SUCC (edge_to_cancel
->src
, 0) == edge_to_cancel
)
470 edge_to_cancel
= EDGE_SUCC (edge_to_cancel
->src
, 1);
472 edge_to_cancel
= EDGE_SUCC (edge_to_cancel
->src
, 0);
474 /* We only can handle conditionals. */
475 if (!(edge_to_cancel
->flags
& (EDGE_TRUE_VALUE
| EDGE_FALSE_VALUE
)))
478 /* We should never have conditionals in the loop latch. */
479 gcc_assert (edge_to_cancel
->dest
!= loop
->header
);
481 /* Check that it leads to loop latch. */
482 if (edge_to_cancel
->dest
!= loop
->latch
)
487 /* Verify that the code in loop latch does nothing that may end program
488 execution without really reaching the exit. This may include
489 non-pure/const function calls, EH statements, volatile ASMs etc. */
490 for (gsi
= gsi_start_bb (loop
->latch
); !gsi_end_p (gsi
); gsi_next (&gsi
))
491 if (gimple_has_side_effects (gsi_stmt (gsi
)))
493 return edge_to_cancel
;
499 /* Remove all tests for exits that are known to be taken after LOOP was
500 peeled NPEELED times. Put gcc_unreachable before every statement
501 known to not be executed. */
504 remove_exits_and_undefined_stmts (struct loop
*loop
, unsigned int npeeled
)
506 struct nb_iter_bound
*elt
;
507 bool changed
= false;
509 for (elt
= loop
->bounds
; elt
; elt
= elt
->next
)
511 /* If statement is known to be undefined after peeling, turn it
512 into unreachable (or trap when debugging experience is supposed
515 && wi::ltu_p (elt
->bound
, npeeled
))
517 gimple_stmt_iterator gsi
= gsi_for_stmt (elt
->stmt
);
518 gcall
*stmt
= gimple_build_call
519 (builtin_decl_implicit (BUILT_IN_UNREACHABLE
), 0);
521 gimple_set_location (stmt
, gimple_location (elt
->stmt
));
522 gsi_insert_before (&gsi
, stmt
, GSI_NEW_STMT
);
524 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
526 fprintf (dump_file
, "Forced statement unreachable: ");
527 print_gimple_stmt (dump_file
, elt
->stmt
, 0, 0);
530 /* If we know the exit will be taken after peeling, update. */
531 else if (elt
->is_exit
532 && wi::leu_p (elt
->bound
, npeeled
))
534 basic_block bb
= gimple_bb (elt
->stmt
);
535 edge exit_edge
= EDGE_SUCC (bb
, 0);
537 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
539 fprintf (dump_file
, "Forced exit to be taken: ");
540 print_gimple_stmt (dump_file
, elt
->stmt
, 0, 0);
542 if (!loop_exit_edge_p (loop
, exit_edge
))
543 exit_edge
= EDGE_SUCC (bb
, 1);
544 gcc_checking_assert (loop_exit_edge_p (loop
, exit_edge
));
545 gcond
*cond_stmt
= as_a
<gcond
*> (elt
->stmt
);
546 if (exit_edge
->flags
& EDGE_TRUE_VALUE
)
547 gimple_cond_make_true (cond_stmt
);
549 gimple_cond_make_false (cond_stmt
);
550 update_stmt (cond_stmt
);
557 /* Remove all exits that are known to be never taken because of the loop bound
561 remove_redundant_iv_tests (struct loop
*loop
)
563 struct nb_iter_bound
*elt
;
564 bool changed
= false;
566 if (!loop
->any_upper_bound
)
568 for (elt
= loop
->bounds
; elt
; elt
= elt
->next
)
570 /* Exit is pointless if it won't be taken before loop reaches
572 if (elt
->is_exit
&& loop
->any_upper_bound
573 && wi::ltu_p (loop
->nb_iterations_upper_bound
, elt
->bound
))
575 basic_block bb
= gimple_bb (elt
->stmt
);
576 edge exit_edge
= EDGE_SUCC (bb
, 0);
577 struct tree_niter_desc niter
;
579 if (!loop_exit_edge_p (loop
, exit_edge
))
580 exit_edge
= EDGE_SUCC (bb
, 1);
582 /* Only when we know the actual number of iterations, not
583 just a bound, we can remove the exit. */
584 if (!number_of_iterations_exit (loop
, exit_edge
,
585 &niter
, false, false)
586 || !integer_onep (niter
.assumptions
)
587 || !integer_zerop (niter
.may_be_zero
)
589 || TREE_CODE (niter
.niter
) != INTEGER_CST
590 || !wi::ltu_p (loop
->nb_iterations_upper_bound
,
591 wi::to_widest (niter
.niter
)))
594 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
596 fprintf (dump_file
, "Removed pointless exit: ");
597 print_gimple_stmt (dump_file
, elt
->stmt
, 0, 0);
599 gcond
*cond_stmt
= as_a
<gcond
*> (elt
->stmt
);
600 if (exit_edge
->flags
& EDGE_TRUE_VALUE
)
601 gimple_cond_make_false (cond_stmt
);
603 gimple_cond_make_true (cond_stmt
);
604 update_stmt (cond_stmt
);
611 /* Stores loops that will be unlooped after we process whole loop tree. */
612 static vec
<loop_p
> loops_to_unloop
;
613 static vec
<int> loops_to_unloop_nunroll
;
615 /* Cancel all fully unrolled loops by putting __builtin_unreachable
617 We do it after all unrolling since unlooping moves basic blocks
618 across loop boundaries trashing loop closed SSA form as well
619 as SCEV info needed to be intact during unrolling.
621 IRRED_INVALIDATED is used to bookkeep if information about
622 irreducible regions may become invalid as a result
623 of the transformation.
624 LOOP_CLOSED_SSA_INVALIDATED is used to bookkepp the case
625 when we need to go into loop closed SSA form. */
628 unloop_loops (bitmap loop_closed_ssa_invalidated
,
629 bool *irred_invalidated
)
631 while (loops_to_unloop
.length ())
633 struct loop
*loop
= loops_to_unloop
.pop ();
634 int n_unroll
= loops_to_unloop_nunroll
.pop ();
635 basic_block latch
= loop
->latch
;
636 edge latch_edge
= loop_latch_edge (loop
);
637 int flags
= latch_edge
->flags
;
638 location_t locus
= latch_edge
->goto_locus
;
640 gimple_stmt_iterator gsi
;
642 remove_exits_and_undefined_stmts (loop
, n_unroll
);
644 /* Unloop destroys the latch edge. */
645 unloop (loop
, irred_invalidated
, loop_closed_ssa_invalidated
);
647 /* Create new basic block for the latch edge destination and wire
649 stmt
= gimple_build_call (builtin_decl_implicit (BUILT_IN_UNREACHABLE
), 0);
650 latch_edge
= make_edge (latch
, create_basic_block (NULL
, NULL
, latch
), flags
);
651 latch_edge
->probability
= 0;
652 latch_edge
->count
= 0;
653 latch_edge
->flags
|= flags
;
654 latch_edge
->goto_locus
= locus
;
656 latch_edge
->dest
->loop_father
= current_loops
->tree_root
;
657 latch_edge
->dest
->count
= 0;
658 latch_edge
->dest
->frequency
= 0;
659 set_immediate_dominator (CDI_DOMINATORS
, latch_edge
->dest
, latch_edge
->src
);
661 gsi
= gsi_start_bb (latch_edge
->dest
);
662 gsi_insert_after (&gsi
, stmt
, GSI_NEW_STMT
);
664 loops_to_unloop
.release ();
665 loops_to_unloop_nunroll
.release ();
668 /* Tries to unroll LOOP completely, i.e. NITER times.
669 UL determines which loops we are allowed to unroll.
670 EXIT is the exit of the loop that should be eliminated.
671 MAXITER specfy bound on number of iterations, -1 if it is
672 not known or too large for HOST_WIDE_INT. The location
673 LOCUS corresponding to the loop is used when emitting
674 a summary of the unroll to the dump file. */
677 try_unroll_loop_completely (struct loop
*loop
,
678 edge exit
, tree niter
,
679 enum unroll_level ul
,
680 HOST_WIDE_INT maxiter
,
683 unsigned HOST_WIDE_INT n_unroll
= 0, ninsns
, unr_insns
;
684 struct loop_size size
;
685 bool n_unroll_found
= false;
686 edge edge_to_cancel
= NULL
;
687 int report_flags
= MSG_OPTIMIZED_LOCATIONS
| TDF_RTL
| TDF_DETAILS
;
689 /* See if we proved number of iterations to be low constant.
691 EXIT is an edge that will be removed in all but last iteration of
694 EDGE_TO_CACNEL is an edge that will be removed from the last iteration
695 of the unrolled sequence and is expected to make the final loop not
698 If the number of execution of loop is determined by standard induction
699 variable test, then EXIT and EDGE_TO_CANCEL are the two edges leaving
701 if (tree_fits_uhwi_p (niter
))
703 n_unroll
= tree_to_uhwi (niter
);
704 n_unroll_found
= true;
705 edge_to_cancel
= EDGE_SUCC (exit
->src
, 0);
706 if (edge_to_cancel
== exit
)
707 edge_to_cancel
= EDGE_SUCC (exit
->src
, 1);
709 /* We do not know the number of iterations and thus we can not eliminate
714 /* See if we can improve our estimate by using recorded loop bounds. */
716 && (!n_unroll_found
|| (unsigned HOST_WIDE_INT
)maxiter
< n_unroll
))
719 n_unroll_found
= true;
720 /* Loop terminates before the IV variable test, so we can not
721 remove it in the last iteration. */
722 edge_to_cancel
= NULL
;
728 if (n_unroll
> (unsigned) PARAM_VALUE (PARAM_MAX_COMPLETELY_PEEL_TIMES
))
730 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
731 fprintf (dump_file
, "Not unrolling loop %d "
732 "(--param max-completely-peeled-times limit reached).\n",
738 edge_to_cancel
= loop_edge_to_cancel (loop
);
746 vec
<edge
> to_remove
= vNULL
;
747 if (ul
== UL_SINGLE_ITER
)
750 large
= tree_estimate_loop_size
751 (loop
, exit
, edge_to_cancel
, &size
,
752 PARAM_VALUE (PARAM_MAX_COMPLETELY_PEELED_INSNS
));
753 ninsns
= size
.overall
;
756 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
757 fprintf (dump_file
, "Not unrolling loop %d: it is too large.\n",
762 unr_insns
= estimated_unrolled_size (&size
, n_unroll
);
763 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
765 fprintf (dump_file
, " Loop size: %d\n", (int) ninsns
);
766 fprintf (dump_file
, " Estimated size after unrolling: %d\n",
770 /* If the code is going to shrink, we don't need to be extra cautious
771 on guessing if the unrolling is going to be profitable. */
773 /* If there is IV variable that will become constant, we save
774 one instruction in the loop prologue we do not account
776 <= ninsns
+ (size
.constant_iv
!= false))
778 /* We unroll only inner loops, because we do not consider it profitable
779 otheriwse. We still can cancel loopback edge of not rolling loop;
780 this is always a good idea. */
781 else if (ul
== UL_NO_GROWTH
)
783 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
784 fprintf (dump_file
, "Not unrolling loop %d: size would grow.\n",
788 /* Outer loops tend to be less interesting candidates for complete
789 unrolling unless we can do a lot of propagation into the inner loop
790 body. For now we disable outer loop unrolling when the code would
792 else if (loop
->inner
)
794 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
795 fprintf (dump_file
, "Not unrolling loop %d: "
796 "it is not innermost and code would grow.\n",
800 /* If there is call on a hot path through the loop, then
801 there is most probably not much to optimize. */
802 else if (size
.num_non_pure_calls_on_hot_path
)
804 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
805 fprintf (dump_file
, "Not unrolling loop %d: "
806 "contains call and code would grow.\n",
810 /* If there is pure/const call in the function, then we
811 can still optimize the unrolled loop body if it contains
812 some other interesting code than the calls and code
813 storing or cumulating the return value. */
814 else if (size
.num_pure_calls_on_hot_path
815 /* One IV increment, one test, one ivtmp store
816 and one useful stmt. That is about minimal loop
818 && (size
.non_call_stmts_on_hot_path
819 <= 3 + size
.num_pure_calls_on_hot_path
))
821 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
822 fprintf (dump_file
, "Not unrolling loop %d: "
823 "contains just pure calls and code would grow.\n",
827 /* Complette unrolling is major win when control flow is removed and
828 one big basic block is created. If the loop contains control flow
829 the optimization may still be a win because of eliminating the loop
830 overhead but it also may blow the branch predictor tables.
831 Limit number of branches on the hot path through the peeled
833 else if (size
.num_branches_on_hot_path
* (int)n_unroll
834 > PARAM_VALUE (PARAM_MAX_PEEL_BRANCHES
))
836 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
837 fprintf (dump_file
, "Not unrolling loop %d: "
838 " number of branches on hot path in the unrolled sequence"
839 " reach --param max-peel-branches limit.\n",
844 > (unsigned) PARAM_VALUE (PARAM_MAX_COMPLETELY_PEELED_INSNS
))
846 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
847 fprintf (dump_file
, "Not unrolling loop %d: "
848 "(--param max-completely-peeled-insns limit reached).\n",
852 dump_printf_loc (report_flags
, locus
,
853 "loop turned into non-loop; it never loops.\n");
855 initialize_original_copy_tables ();
856 wont_exit
= sbitmap_alloc (n_unroll
+ 1);
857 bitmap_ones (wont_exit
);
858 bitmap_clear_bit (wont_exit
, 0);
860 if (!gimple_duplicate_loop_to_header_edge (loop
, loop_preheader_edge (loop
),
863 DLTHE_FLAG_UPDATE_FREQ
864 | DLTHE_FLAG_COMPLETTE_PEEL
))
866 free_original_copy_tables ();
868 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
869 fprintf (dump_file
, "Failed to duplicate the loop\n");
873 FOR_EACH_VEC_ELT (to_remove
, i
, e
)
875 bool ok
= remove_path (e
);
879 to_remove
.release ();
881 free_original_copy_tables ();
885 /* Remove the conditional from the last copy of the loop. */
888 gcond
*cond
= as_a
<gcond
*> (last_stmt (edge_to_cancel
->src
));
889 if (edge_to_cancel
->flags
& EDGE_TRUE_VALUE
)
890 gimple_cond_make_false (cond
);
892 gimple_cond_make_true (cond
);
894 /* Do not remove the path. Doing so may remove outer loop
895 and confuse bookkeeping code in tree_unroll_loops_completelly. */
898 /* Store the loop for later unlooping and exit removal. */
899 loops_to_unloop
.safe_push (loop
);
900 loops_to_unloop_nunroll
.safe_push (n_unroll
);
902 if (dump_enabled_p ())
905 dump_printf_loc (MSG_OPTIMIZED_LOCATIONS
| TDF_DETAILS
, locus
,
906 "loop turned into non-loop; it never loops\n");
909 dump_printf_loc (MSG_OPTIMIZED_LOCATIONS
| TDF_DETAILS
, locus
,
910 "loop with %d iterations completely unrolled",
911 (int) (n_unroll
+ 1));
913 dump_printf (MSG_OPTIMIZED_LOCATIONS
| TDF_DETAILS
,
914 " (header execution count %d)",
915 (int)loop
->header
->count
);
916 dump_printf (MSG_OPTIMIZED_LOCATIONS
| TDF_DETAILS
, "\n");
920 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
923 fprintf (dump_file
, "Exit condition of peeled iterations was "
926 fprintf (dump_file
, "Last iteration exit edge was proved true.\n");
928 fprintf (dump_file
, "Latch of last iteration was marked by "
929 "__builtin_unreachable ().\n");
935 /* Return number of instructions after peeling. */
936 static unsigned HOST_WIDE_INT
937 estimated_peeled_sequence_size (struct loop_size
*size
,
938 unsigned HOST_WIDE_INT npeel
)
940 return MAX (npeel
* (HOST_WIDE_INT
) (size
->overall
941 - size
->eliminated_by_peeling
), 1);
944 /* If the loop is expected to iterate N times and is
945 small enough, duplicate the loop body N+1 times before
946 the loop itself. This way the hot path will never
948 Parameters are the same as for try_unroll_loops_completely */
951 try_peel_loop (struct loop
*loop
,
952 edge exit
, tree niter
,
953 HOST_WIDE_INT maxiter
)
956 struct loop_size size
;
960 vec
<edge
> to_remove
= vNULL
;
963 /* If the iteration bound is known and large, then we can safely eliminate
964 the check in peeled copies. */
965 if (TREE_CODE (niter
) != INTEGER_CST
)
968 if (!flag_peel_loops
|| PARAM_VALUE (PARAM_MAX_PEEL_TIMES
) <= 0)
971 /* Peel only innermost loops. */
975 fprintf (dump_file
, "Not peeling: outer loop\n");
979 if (!optimize_loop_for_speed_p (loop
))
982 fprintf (dump_file
, "Not peeling: cold loop\n");
986 /* Check if there is an estimate on the number of iterations. */
987 npeel
= estimated_loop_iterations_int (loop
);
991 fprintf (dump_file
, "Not peeling: number of iterations is not "
995 if (maxiter
>= 0 && maxiter
<= npeel
)
998 fprintf (dump_file
, "Not peeling: upper bound is known so can "
999 "unroll completely\n");
1003 /* We want to peel estimated number of iterations + 1 (so we never
1004 enter the loop on quick path). Check against PARAM_MAX_PEEL_TIMES
1005 and be sure to avoid overflows. */
1006 if (npeel
> PARAM_VALUE (PARAM_MAX_PEEL_TIMES
) - 1)
1009 fprintf (dump_file
, "Not peeling: rolls too much "
1010 "(%i + 1 > --param max-peel-times)\n", npeel
);
1015 /* Check peeled loops size. */
1016 tree_estimate_loop_size (loop
, exit
, NULL
, &size
,
1017 PARAM_VALUE (PARAM_MAX_PEELED_INSNS
));
1018 if ((peeled_size
= estimated_peeled_sequence_size (&size
, npeel
))
1019 > PARAM_VALUE (PARAM_MAX_PEELED_INSNS
))
1022 fprintf (dump_file
, "Not peeling: peeled sequence size is too large "
1023 "(%i insns > --param max-peel-insns)", peeled_size
);
1027 /* Duplicate possibly eliminating the exits. */
1028 initialize_original_copy_tables ();
1029 wont_exit
= sbitmap_alloc (npeel
+ 1);
1030 bitmap_ones (wont_exit
);
1031 bitmap_clear_bit (wont_exit
, 0);
1032 if (!gimple_duplicate_loop_to_header_edge (loop
, loop_preheader_edge (loop
),
1035 DLTHE_FLAG_UPDATE_FREQ
1036 | DLTHE_FLAG_COMPLETTE_PEEL
))
1038 free_original_copy_tables ();
1042 FOR_EACH_VEC_ELT (to_remove
, i
, e
)
1044 bool ok
= remove_path (e
);
1048 free_original_copy_tables ();
1049 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
1051 fprintf (dump_file
, "Peeled loop %d, %i times.\n",
1054 if (loop
->any_upper_bound
)
1055 loop
->nb_iterations_upper_bound
-= npeel
;
1056 loop
->nb_iterations_estimate
= 0;
1057 /* Make sure to mark loop cold so we do not try to peel it more. */
1058 scale_loop_profile (loop
, 1, 0);
1059 loop
->header
->count
= 0;
1062 /* Adds a canonical induction variable to LOOP if suitable.
1063 CREATE_IV is true if we may create a new iv. UL determines
1064 which loops we are allowed to completely unroll. If TRY_EVAL is true, we try
1065 to determine the number of iterations of a loop by direct evaluation.
1066 Returns true if cfg is changed. */
1069 canonicalize_loop_induction_variables (struct loop
*loop
,
1070 bool create_iv
, enum unroll_level ul
,
1075 HOST_WIDE_INT maxiter
;
1076 bool modified
= false;
1077 location_t locus
= UNKNOWN_LOCATION
;
1079 niter
= number_of_latch_executions (loop
);
1080 exit
= single_exit (loop
);
1081 if (TREE_CODE (niter
) == INTEGER_CST
)
1082 locus
= gimple_location (last_stmt (exit
->src
));
1085 /* If the loop has more than one exit, try checking all of them
1086 for # of iterations determinable through scev. */
1088 niter
= find_loop_niter (loop
, &exit
);
1090 /* Finally if everything else fails, try brute force evaluation. */
1092 && (chrec_contains_undetermined (niter
)
1093 || TREE_CODE (niter
) != INTEGER_CST
))
1094 niter
= find_loop_niter_by_eval (loop
, &exit
);
1097 locus
= gimple_location (last_stmt (exit
->src
));
1099 if (TREE_CODE (niter
) != INTEGER_CST
)
1103 /* We work exceptionally hard here to estimate the bound
1104 by find_loop_niter_by_eval. Be sure to keep it for future. */
1105 if (niter
&& TREE_CODE (niter
) == INTEGER_CST
)
1107 record_niter_bound (loop
, wi::to_widest (niter
),
1108 exit
== single_likely_exit (loop
), true);
1111 /* Force re-computation of loop bounds so we can remove redundant exits. */
1112 maxiter
= max_loop_iterations_int (loop
);
1114 if (dump_file
&& (dump_flags
& TDF_DETAILS
)
1115 && TREE_CODE (niter
) == INTEGER_CST
)
1117 fprintf (dump_file
, "Loop %d iterates ", loop
->num
);
1118 print_generic_expr (dump_file
, niter
, TDF_SLIM
);
1119 fprintf (dump_file
, " times.\n");
1121 if (dump_file
&& (dump_flags
& TDF_DETAILS
)
1124 fprintf (dump_file
, "Loop %d iterates at most %i times.\n", loop
->num
,
1128 /* Remove exits that are known to be never taken based on loop bound.
1129 Needs to be called after compilation of max_loop_iterations_int that
1130 populates the loop bounds. */
1131 modified
|= remove_redundant_iv_tests (loop
);
1133 if (try_unroll_loop_completely (loop
, exit
, niter
, ul
, maxiter
, locus
))
1137 && niter
&& !chrec_contains_undetermined (niter
)
1138 && exit
&& just_once_each_iteration_p (loop
, exit
->src
))
1139 create_canonical_iv (loop
, exit
, niter
);
1142 modified
|= try_peel_loop (loop
, exit
, niter
, maxiter
);
1147 /* The main entry point of the pass. Adds canonical induction variables
1148 to the suitable loops. */
1151 canonicalize_induction_variables (void)
1154 bool changed
= false;
1155 bool irred_invalidated
= false;
1156 bitmap loop_closed_ssa_invalidated
= BITMAP_ALLOC (NULL
);
1158 free_numbers_of_iterations_estimates ();
1159 estimate_numbers_of_iterations ();
1161 FOR_EACH_LOOP (loop
, LI_FROM_INNERMOST
)
1163 changed
|= canonicalize_loop_induction_variables (loop
,
1164 true, UL_SINGLE_ITER
,
1167 gcc_assert (!need_ssa_update_p (cfun
));
1169 unloop_loops (loop_closed_ssa_invalidated
, &irred_invalidated
);
1170 if (irred_invalidated
1171 && loops_state_satisfies_p (LOOPS_HAVE_MARKED_IRREDUCIBLE_REGIONS
))
1172 mark_irreducible_loops ();
1174 /* Clean up the information about numbers of iterations, since brute force
1175 evaluation could reveal new information. */
1178 if (!bitmap_empty_p (loop_closed_ssa_invalidated
))
1180 gcc_checking_assert (loops_state_satisfies_p (LOOP_CLOSED_SSA
));
1181 rewrite_into_loop_closed_ssa (NULL
, TODO_update_ssa
);
1183 BITMAP_FREE (loop_closed_ssa_invalidated
);
1186 return TODO_cleanup_cfg
;
1190 /* Propagate VAL into all uses of SSA_NAME. */
1193 propagate_into_all_uses (tree ssa_name
, tree val
)
1195 imm_use_iterator iter
;
1198 FOR_EACH_IMM_USE_STMT (use_stmt
, iter
, ssa_name
)
1200 gimple_stmt_iterator use_stmt_gsi
= gsi_for_stmt (use_stmt
);
1203 FOR_EACH_IMM_USE_ON_STMT (use
, iter
)
1206 if (is_gimple_assign (use_stmt
)
1207 && get_gimple_rhs_class (gimple_assign_rhs_code (use_stmt
))
1208 == GIMPLE_SINGLE_RHS
)
1210 tree rhs
= gimple_assign_rhs1 (use_stmt
);
1212 if (TREE_CODE (rhs
) == ADDR_EXPR
)
1213 recompute_tree_invariant_for_addr_expr (rhs
);
1216 fold_stmt_inplace (&use_stmt_gsi
);
1217 update_stmt (use_stmt
);
1218 maybe_clean_or_replace_eh_stmt (use_stmt
, use_stmt
);
1222 /* Propagate constant SSA_NAMEs defined in basic block BB. */
1225 propagate_constants_for_unrolling (basic_block bb
)
1227 /* Look for degenerate PHI nodes with constant argument. */
1228 for (gphi_iterator gsi
= gsi_start_phis (bb
); !gsi_end_p (gsi
); )
1230 gphi
*phi
= gsi
.phi ();
1231 tree result
= gimple_phi_result (phi
);
1232 tree arg
= gimple_phi_arg_def (phi
, 0);
1234 if (gimple_phi_num_args (phi
) == 1 && TREE_CODE (arg
) == INTEGER_CST
)
1236 propagate_into_all_uses (result
, arg
);
1237 gsi_remove (&gsi
, true);
1238 release_ssa_name (result
);
1244 /* Look for assignments to SSA names with constant RHS. */
1245 for (gimple_stmt_iterator gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); )
1247 gimple stmt
= gsi_stmt (gsi
);
1250 if (is_gimple_assign (stmt
)
1251 && gimple_assign_rhs_code (stmt
) == INTEGER_CST
1252 && (lhs
= gimple_assign_lhs (stmt
), TREE_CODE (lhs
) == SSA_NAME
)
1253 && !SSA_NAME_OCCURS_IN_ABNORMAL_PHI (lhs
))
1255 propagate_into_all_uses (lhs
, gimple_assign_rhs1 (stmt
));
1256 gsi_remove (&gsi
, true);
1257 release_ssa_name (lhs
);
1264 /* Process loops from innermost to outer, stopping at the innermost
1265 loop we unrolled. */
1268 tree_unroll_loops_completely_1 (bool may_increase_size
, bool unroll_outer
,
1269 vec
<loop_p
, va_heap
>& father_stack
,
1272 struct loop
*loop_father
;
1273 bool changed
= false;
1275 enum unroll_level ul
;
1277 /* Process inner loops first. */
1278 for (inner
= loop
->inner
; inner
!= NULL
; inner
= inner
->next
)
1279 changed
|= tree_unroll_loops_completely_1 (may_increase_size
,
1280 unroll_outer
, father_stack
,
1283 /* If we changed an inner loop we cannot process outer loops in this
1284 iteration because SSA form is not up-to-date. Continue with
1285 siblings of outer loops instead. */
1289 /* Don't unroll #pragma omp simd loops until the vectorizer
1290 attempts to vectorize those. */
1291 if (loop
->force_vectorize
)
1294 /* Try to unroll this loop. */
1295 loop_father
= loop_outer (loop
);
1299 if (may_increase_size
&& optimize_loop_nest_for_speed_p (loop
)
1300 /* Unroll outermost loops only if asked to do so or they do
1301 not cause code growth. */
1302 && (unroll_outer
|| loop_outer (loop_father
)))
1307 if (canonicalize_loop_induction_variables
1308 (loop
, false, ul
, !flag_tree_loop_ivcanon
))
1310 /* If we'll continue unrolling, we need to propagate constants
1311 within the new basic blocks to fold away induction variable
1312 computations; otherwise, the size might blow up before the
1313 iteration is complete and the IR eventually cleaned up. */
1314 if (loop_outer (loop_father
) && !loop_father
->aux
)
1316 father_stack
.safe_push (loop_father
);
1317 loop_father
->aux
= loop_father
;
1326 /* Unroll LOOPS completely if they iterate just few times. Unless
1327 MAY_INCREASE_SIZE is true, perform the unrolling only if the
1328 size of the code does not increase. */
1331 tree_unroll_loops_completely (bool may_increase_size
, bool unroll_outer
)
1333 auto_vec
<loop_p
, 16> father_stack
;
1336 bool irred_invalidated
= false;
1341 bitmap loop_closed_ssa_invalidated
= NULL
;
1343 if (loops_state_satisfies_p (LOOP_CLOSED_SSA
))
1344 loop_closed_ssa_invalidated
= BITMAP_ALLOC (NULL
);
1346 free_numbers_of_iterations_estimates ();
1347 estimate_numbers_of_iterations ();
1349 changed
= tree_unroll_loops_completely_1 (may_increase_size
,
1350 unroll_outer
, father_stack
,
1351 current_loops
->tree_root
);
1357 /* Be sure to skip unlooped loops while procesing father_stack
1359 FOR_EACH_VEC_ELT (loops_to_unloop
, i
, iter
)
1360 (*iter
)->aux
= NULL
;
1361 FOR_EACH_VEC_ELT (father_stack
, i
, iter
)
1364 unloop_loops (loop_closed_ssa_invalidated
, &irred_invalidated
);
1366 /* We can not use TODO_update_ssa_no_phi because VOPS gets confused. */
1367 if (loop_closed_ssa_invalidated
1368 && !bitmap_empty_p (loop_closed_ssa_invalidated
))
1369 rewrite_into_loop_closed_ssa (loop_closed_ssa_invalidated
,
1372 update_ssa (TODO_update_ssa
);
1374 /* Propagate the constants within the new basic blocks. */
1375 FOR_EACH_VEC_ELT (father_stack
, i
, iter
)
1379 basic_block
*body
= get_loop_body_in_dom_order (*iter
);
1380 for (j
= 0; j
< (*iter
)->num_nodes
; j
++)
1381 propagate_constants_for_unrolling (body
[j
]);
1383 (*iter
)->aux
= NULL
;
1385 father_stack
.truncate (0);
1387 /* This will take care of removing completely unrolled loops
1388 from the loop structures so we can continue unrolling now
1390 if (cleanup_tree_cfg ())
1391 update_ssa (TODO_update_ssa_only_virtuals
);
1393 /* Clean up the information about numbers of iterations, since
1394 complete unrolling might have invalidated it. */
1396 #ifdef ENABLE_CHECKING
1397 if (loops_state_satisfies_p (LOOP_CLOSED_SSA
))
1398 verify_loop_closed_ssa (true);
1401 if (loop_closed_ssa_invalidated
)
1402 BITMAP_FREE (loop_closed_ssa_invalidated
);
1405 && ++iteration
<= PARAM_VALUE (PARAM_MAX_UNROLL_ITERATIONS
));
1407 father_stack
.release ();
1409 if (irred_invalidated
1410 && loops_state_satisfies_p (LOOPS_HAVE_MARKED_IRREDUCIBLE_REGIONS
))
1411 mark_irreducible_loops ();
1416 /* Canonical induction variable creation pass. */
1420 const pass_data pass_data_iv_canon
=
1422 GIMPLE_PASS
, /* type */
1423 "ivcanon", /* name */
1424 OPTGROUP_LOOP
, /* optinfo_flags */
1425 TV_TREE_LOOP_IVCANON
, /* tv_id */
1426 ( PROP_cfg
| PROP_ssa
), /* properties_required */
1427 0, /* properties_provided */
1428 0, /* properties_destroyed */
1429 0, /* todo_flags_start */
1430 0, /* todo_flags_finish */
1433 class pass_iv_canon
: public gimple_opt_pass
1436 pass_iv_canon (gcc::context
*ctxt
)
1437 : gimple_opt_pass (pass_data_iv_canon
, ctxt
)
1440 /* opt_pass methods: */
1441 virtual bool gate (function
*) { return flag_tree_loop_ivcanon
!= 0; }
1442 virtual unsigned int execute (function
*fun
);
1444 }; // class pass_iv_canon
1447 pass_iv_canon::execute (function
*fun
)
1449 if (number_of_loops (fun
) <= 1)
1452 return canonicalize_induction_variables ();
1458 make_pass_iv_canon (gcc::context
*ctxt
)
1460 return new pass_iv_canon (ctxt
);
1463 /* Complete unrolling of loops. */
1467 const pass_data pass_data_complete_unroll
=
1469 GIMPLE_PASS
, /* type */
1470 "cunroll", /* name */
1471 OPTGROUP_LOOP
, /* optinfo_flags */
1472 TV_COMPLETE_UNROLL
, /* tv_id */
1473 ( PROP_cfg
| PROP_ssa
), /* properties_required */
1474 0, /* properties_provided */
1475 0, /* properties_destroyed */
1476 0, /* todo_flags_start */
1477 0, /* todo_flags_finish */
1480 class pass_complete_unroll
: public gimple_opt_pass
1483 pass_complete_unroll (gcc::context
*ctxt
)
1484 : gimple_opt_pass (pass_data_complete_unroll
, ctxt
)
1487 /* opt_pass methods: */
1488 virtual unsigned int execute (function
*);
1490 }; // class pass_complete_unroll
1493 pass_complete_unroll::execute (function
*fun
)
1495 if (number_of_loops (fun
) <= 1)
1498 return tree_unroll_loops_completely (flag_unroll_loops
1500 || optimize
>= 3, true);
1506 make_pass_complete_unroll (gcc::context
*ctxt
)
1508 return new pass_complete_unroll (ctxt
);
1511 /* Complete unrolling of inner loops. */
1515 const pass_data pass_data_complete_unrolli
=
1517 GIMPLE_PASS
, /* type */
1518 "cunrolli", /* name */
1519 OPTGROUP_LOOP
, /* optinfo_flags */
1520 TV_COMPLETE_UNROLL
, /* tv_id */
1521 ( PROP_cfg
| PROP_ssa
), /* properties_required */
1522 0, /* properties_provided */
1523 0, /* properties_destroyed */
1524 0, /* todo_flags_start */
1525 0, /* todo_flags_finish */
1528 class pass_complete_unrolli
: public gimple_opt_pass
1531 pass_complete_unrolli (gcc::context
*ctxt
)
1532 : gimple_opt_pass (pass_data_complete_unrolli
, ctxt
)
1535 /* opt_pass methods: */
1536 virtual bool gate (function
*) { return optimize
>= 2; }
1537 virtual unsigned int execute (function
*);
1539 }; // class pass_complete_unrolli
1542 pass_complete_unrolli::execute (function
*fun
)
1546 loop_optimizer_init (LOOPS_NORMAL
1547 | LOOPS_HAVE_RECORDED_EXITS
);
1548 if (number_of_loops (fun
) > 1)
1551 ret
= tree_unroll_loops_completely (optimize
>= 3, false);
1552 free_numbers_of_iterations_estimates ();
1555 loop_optimizer_finalize ();
1563 make_pass_complete_unrolli (gcc::context
*ctxt
)
1565 return new pass_complete_unrolli (ctxt
);