1 /* Forward propagation of expressions for single use variables.
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
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 3, or (at your option)
11 GCC is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
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/>. */
22 #include "coretypes.h"
25 #include "stor-layout.h"
32 #include "hard-reg-set.h"
35 #include "dominance.h"
37 #include "basic-block.h"
38 #include "gimple-pretty-print.h"
39 #include "tree-ssa-alias.h"
40 #include "internal-fn.h"
41 #include "gimple-fold.h"
43 #include "gimple-expr.h"
47 #include "gimple-iterator.h"
48 #include "gimplify-me.h"
49 #include "gimple-ssa.h"
51 #include "tree-phinodes.h"
52 #include "ssa-iterators.h"
53 #include "stringpool.h"
54 #include "tree-ssanames.h"
57 #include "tree-pass.h"
58 #include "langhooks.h"
60 #include "diagnostic.h"
63 #include "insn-codes.h"
65 #include "tree-ssa-propagate.h"
66 #include "tree-ssa-dom.h"
68 #include "tree-cfgcleanup.h"
69 #include "tree-into-ssa.h"
72 /* This pass propagates the RHS of assignment statements into use
73 sites of the LHS of the assignment. It's basically a specialized
74 form of tree combination. It is hoped all of this can disappear
75 when we have a generalized tree combiner.
77 One class of common cases we handle is forward propagating a single use
78 variable into a COND_EXPR.
82 if (x) goto ... else goto ...
84 Will be transformed into:
87 if (a COND b) goto ... else goto ...
89 Similarly for the tests (x == 0), (x != 0), (x == 1) and (x != 1).
91 Or (assuming c1 and c2 are constants):
95 if (x EQ/NEQ c2) goto ... else goto ...
97 Will be transformed into:
100 if (a EQ/NEQ (c2 - c1)) goto ... else goto ...
102 Similarly for x = a - c1.
108 if (x) goto ... else goto ...
110 Will be transformed into:
113 if (a == 0) goto ... else goto ...
115 Similarly for the tests (x == 0), (x != 0), (x == 1) and (x != 1).
116 For these cases, we propagate A into all, possibly more than one,
117 COND_EXPRs that use X.
123 if (x) goto ... else goto ...
125 Will be transformed into:
128 if (a != 0) goto ... else goto ...
130 (Assuming a is an integral type and x is a boolean or x is an
131 integral and a is a boolean.)
133 Similarly for the tests (x == 0), (x != 0), (x == 1) and (x != 1).
134 For these cases, we propagate A into all, possibly more than one,
135 COND_EXPRs that use X.
137 In addition to eliminating the variable and the statement which assigns
138 a value to the variable, we may be able to later thread the jump without
139 adding insane complexity in the dominator optimizer.
141 Also note these transformations can cascade. We handle this by having
142 a worklist of COND_EXPR statements to examine. As we make a change to
143 a statement, we put it back on the worklist to examine on the next
144 iteration of the main loop.
146 A second class of propagation opportunities arises for ADDR_EXPR
157 ptr = (type1*)&type2var;
160 Will get turned into (if type1 and type2 are the same size
161 and neither have volatile on them):
162 res = VIEW_CONVERT_EXPR<type1>(type2var)
167 ptr2 = ptr + <constant>;
171 ptr2 = &x[constant/elementsize];
176 offset = index * element_size;
177 offset_p = (pointer) offset;
178 ptr2 = ptr + offset_p
180 Will get turned into:
188 Provided that decl has known alignment >= 2, will get turned into
192 We also propagate casts into SWITCH_EXPR and COND_EXPR conditions to
193 allow us to remove the cast and {NOT_EXPR,NEG_EXPR} into a subsequent
196 This will (of course) be extended as other needs arise. */
198 static bool forward_propagate_addr_expr (tree
, tree
, bool);
200 /* Set to true if we delete dead edges during the optimization. */
201 static bool cfg_changed
;
203 static tree
rhs_to_tree (tree type
, gimple stmt
);
205 static bitmap to_purge
;
207 /* Const-and-copy lattice. */
208 static vec
<tree
> lattice
;
210 /* Set the lattice entry for NAME to VAL. */
212 fwprop_set_lattice_val (tree name
, tree val
)
214 if (TREE_CODE (name
) == SSA_NAME
)
216 if (SSA_NAME_VERSION (name
) >= lattice
.length ())
218 lattice
.reserve (num_ssa_names
- lattice
.length ());
219 lattice
.quick_grow_cleared (num_ssa_names
);
221 lattice
[SSA_NAME_VERSION (name
)] = val
;
225 /* Invalidate the lattice entry for NAME, done when releasing SSA names. */
227 fwprop_invalidate_lattice (tree name
)
230 && TREE_CODE (name
) == SSA_NAME
231 && SSA_NAME_VERSION (name
) < lattice
.length ())
232 lattice
[SSA_NAME_VERSION (name
)] = NULL_TREE
;
236 /* Get the statement we can propagate from into NAME skipping
237 trivial copies. Returns the statement which defines the
238 propagation source or NULL_TREE if there is no such one.
239 If SINGLE_USE_ONLY is set considers only sources which have
240 a single use chain up to NAME. If SINGLE_USE_P is non-null,
241 it is set to whether the chain to NAME is a single use chain
242 or not. SINGLE_USE_P is not written to if SINGLE_USE_ONLY is set. */
245 get_prop_source_stmt (tree name
, bool single_use_only
, bool *single_use_p
)
247 bool single_use
= true;
250 gimple def_stmt
= SSA_NAME_DEF_STMT (name
);
252 if (!has_single_use (name
))
259 /* If name is defined by a PHI node or is the default def, bail out. */
260 if (!is_gimple_assign (def_stmt
))
263 /* If def_stmt is a simple copy, continue looking. */
264 if (gimple_assign_rhs_code (def_stmt
) == SSA_NAME
)
265 name
= gimple_assign_rhs1 (def_stmt
);
268 if (!single_use_only
&& single_use_p
)
269 *single_use_p
= single_use
;
276 /* Checks if the destination ssa name in DEF_STMT can be used as
277 propagation source. Returns true if so, otherwise false. */
280 can_propagate_from (gimple def_stmt
)
282 gcc_assert (is_gimple_assign (def_stmt
));
284 /* If the rhs has side-effects we cannot propagate from it. */
285 if (gimple_has_volatile_ops (def_stmt
))
288 /* If the rhs is a load we cannot propagate from it. */
289 if (TREE_CODE_CLASS (gimple_assign_rhs_code (def_stmt
)) == tcc_reference
290 || TREE_CODE_CLASS (gimple_assign_rhs_code (def_stmt
)) == tcc_declaration
)
293 /* Constants can be always propagated. */
294 if (gimple_assign_single_p (def_stmt
)
295 && is_gimple_min_invariant (gimple_assign_rhs1 (def_stmt
)))
298 /* We cannot propagate ssa names that occur in abnormal phi nodes. */
299 if (stmt_references_abnormal_ssa_name (def_stmt
))
302 /* If the definition is a conversion of a pointer to a function type,
303 then we can not apply optimizations as some targets require
304 function pointers to be canonicalized and in this case this
305 optimization could eliminate a necessary canonicalization. */
306 if (CONVERT_EXPR_CODE_P (gimple_assign_rhs_code (def_stmt
)))
308 tree rhs
= gimple_assign_rhs1 (def_stmt
);
309 if (POINTER_TYPE_P (TREE_TYPE (rhs
))
310 && TREE_CODE (TREE_TYPE (TREE_TYPE (rhs
))) == FUNCTION_TYPE
)
317 /* Remove a chain of dead statements starting at the definition of
318 NAME. The chain is linked via the first operand of the defining statements.
319 If NAME was replaced in its only use then this function can be used
320 to clean up dead stmts. The function handles already released SSA
322 Returns true if cleanup-cfg has to run. */
325 remove_prop_source_from_use (tree name
)
327 gimple_stmt_iterator gsi
;
329 bool cfg_changed
= false;
334 if (SSA_NAME_IN_FREE_LIST (name
)
335 || SSA_NAME_IS_DEFAULT_DEF (name
)
336 || !has_zero_uses (name
))
339 stmt
= SSA_NAME_DEF_STMT (name
);
340 if (gimple_code (stmt
) == GIMPLE_PHI
341 || gimple_has_side_effects (stmt
))
344 bb
= gimple_bb (stmt
);
345 gsi
= gsi_for_stmt (stmt
);
346 unlink_stmt_vdef (stmt
);
347 if (gsi_remove (&gsi
, true))
348 bitmap_set_bit (to_purge
, bb
->index
);
349 fwprop_invalidate_lattice (gimple_get_lhs (stmt
));
352 name
= is_gimple_assign (stmt
) ? gimple_assign_rhs1 (stmt
) : NULL_TREE
;
353 } while (name
&& TREE_CODE (name
) == SSA_NAME
);
358 /* Return the rhs of a gimple_assign STMT in a form of a single tree,
359 converted to type TYPE.
361 This should disappear, but is needed so we can combine expressions and use
362 the fold() interfaces. Long term, we need to develop folding and combine
363 routines that deal with gimple exclusively . */
366 rhs_to_tree (tree type
, gimple stmt
)
368 location_t loc
= gimple_location (stmt
);
369 enum tree_code code
= gimple_assign_rhs_code (stmt
);
370 if (get_gimple_rhs_class (code
) == GIMPLE_TERNARY_RHS
)
371 return fold_build3_loc (loc
, code
, type
, gimple_assign_rhs1 (stmt
),
372 gimple_assign_rhs2 (stmt
),
373 gimple_assign_rhs3 (stmt
));
374 else if (get_gimple_rhs_class (code
) == GIMPLE_BINARY_RHS
)
375 return fold_build2_loc (loc
, code
, type
, gimple_assign_rhs1 (stmt
),
376 gimple_assign_rhs2 (stmt
));
377 else if (get_gimple_rhs_class (code
) == GIMPLE_UNARY_RHS
)
378 return build1 (code
, type
, gimple_assign_rhs1 (stmt
));
379 else if (get_gimple_rhs_class (code
) == GIMPLE_SINGLE_RHS
)
380 return gimple_assign_rhs1 (stmt
);
385 /* Combine OP0 CODE OP1 in the context of a COND_EXPR. Returns
386 the folded result in a form suitable for COND_EXPR_COND or
387 NULL_TREE, if there is no suitable simplified form. If
388 INVARIANT_ONLY is true only gimple_min_invariant results are
389 considered simplified. */
392 combine_cond_expr_cond (gimple stmt
, enum tree_code code
, tree type
,
393 tree op0
, tree op1
, bool invariant_only
)
397 gcc_assert (TREE_CODE_CLASS (code
) == tcc_comparison
);
399 fold_defer_overflow_warnings ();
400 t
= fold_binary_loc (gimple_location (stmt
), code
, type
, op0
, op1
);
403 fold_undefer_overflow_warnings (false, NULL
, 0);
407 /* Require that we got a boolean type out if we put one in. */
408 gcc_assert (TREE_CODE (TREE_TYPE (t
)) == TREE_CODE (type
));
410 /* Canonicalize the combined condition for use in a COND_EXPR. */
411 t
= canonicalize_cond_expr_cond (t
);
413 /* Bail out if we required an invariant but didn't get one. */
414 if (!t
|| (invariant_only
&& !is_gimple_min_invariant (t
)))
416 fold_undefer_overflow_warnings (false, NULL
, 0);
420 fold_undefer_overflow_warnings (!gimple_no_warning_p (stmt
), stmt
, 0);
425 /* Combine the comparison OP0 CODE OP1 at LOC with the defining statements
426 of its operand. Return a new comparison tree or NULL_TREE if there
427 were no simplifying combines. */
430 forward_propagate_into_comparison_1 (gimple stmt
,
431 enum tree_code code
, tree type
,
434 tree tmp
= NULL_TREE
;
435 tree rhs0
= NULL_TREE
, rhs1
= NULL_TREE
;
436 bool single_use0_p
= false, single_use1_p
= false;
438 /* For comparisons use the first operand, that is likely to
439 simplify comparisons against constants. */
440 if (TREE_CODE (op0
) == SSA_NAME
)
442 gimple def_stmt
= get_prop_source_stmt (op0
, false, &single_use0_p
);
443 if (def_stmt
&& can_propagate_from (def_stmt
))
445 rhs0
= rhs_to_tree (TREE_TYPE (op1
), def_stmt
);
446 tmp
= combine_cond_expr_cond (stmt
, code
, type
,
447 rhs0
, op1
, !single_use0_p
);
453 /* If that wasn't successful, try the second operand. */
454 if (TREE_CODE (op1
) == SSA_NAME
)
456 gimple def_stmt
= get_prop_source_stmt (op1
, false, &single_use1_p
);
457 if (def_stmt
&& can_propagate_from (def_stmt
))
459 rhs1
= rhs_to_tree (TREE_TYPE (op0
), def_stmt
);
460 tmp
= combine_cond_expr_cond (stmt
, code
, type
,
461 op0
, rhs1
, !single_use1_p
);
467 /* If that wasn't successful either, try both operands. */
468 if (rhs0
!= NULL_TREE
469 && rhs1
!= NULL_TREE
)
470 tmp
= combine_cond_expr_cond (stmt
, code
, type
,
472 !(single_use0_p
&& single_use1_p
));
477 /* Propagate from the ssa name definition statements of the assignment
478 from a comparison at *GSI into the conditional if that simplifies it.
479 Returns 1 if the stmt was modified and 2 if the CFG needs cleanup,
480 otherwise returns 0. */
483 forward_propagate_into_comparison (gimple_stmt_iterator
*gsi
)
485 gimple stmt
= gsi_stmt (*gsi
);
487 bool cfg_changed
= false;
488 tree type
= TREE_TYPE (gimple_assign_lhs (stmt
));
489 tree rhs1
= gimple_assign_rhs1 (stmt
);
490 tree rhs2
= gimple_assign_rhs2 (stmt
);
492 /* Combine the comparison with defining statements. */
493 tmp
= forward_propagate_into_comparison_1 (stmt
,
494 gimple_assign_rhs_code (stmt
),
496 if (tmp
&& useless_type_conversion_p (type
, TREE_TYPE (tmp
)))
498 gimple_assign_set_rhs_from_tree (gsi
, tmp
);
500 update_stmt (gsi_stmt (*gsi
));
502 if (TREE_CODE (rhs1
) == SSA_NAME
)
503 cfg_changed
|= remove_prop_source_from_use (rhs1
);
504 if (TREE_CODE (rhs2
) == SSA_NAME
)
505 cfg_changed
|= remove_prop_source_from_use (rhs2
);
506 return cfg_changed
? 2 : 1;
512 /* Propagate from the ssa name definition statements of COND_EXPR
513 in GIMPLE_COND statement STMT into the conditional if that simplifies it.
514 Returns zero if no statement was changed, one if there were
515 changes and two if cfg_cleanup needs to run.
517 This must be kept in sync with forward_propagate_into_cond. */
520 forward_propagate_into_gimple_cond (gimple stmt
)
523 enum tree_code code
= gimple_cond_code (stmt
);
524 bool cfg_changed
= false;
525 tree rhs1
= gimple_cond_lhs (stmt
);
526 tree rhs2
= gimple_cond_rhs (stmt
);
528 /* We can do tree combining on SSA_NAME and comparison expressions. */
529 if (TREE_CODE_CLASS (gimple_cond_code (stmt
)) != tcc_comparison
)
532 tmp
= forward_propagate_into_comparison_1 (stmt
, code
,
537 if (dump_file
&& tmp
)
539 fprintf (dump_file
, " Replaced '");
540 print_gimple_expr (dump_file
, stmt
, 0, 0);
541 fprintf (dump_file
, "' with '");
542 print_generic_expr (dump_file
, tmp
, 0);
543 fprintf (dump_file
, "'\n");
546 gimple_cond_set_condition_from_tree (stmt
, unshare_expr (tmp
));
549 if (TREE_CODE (rhs1
) == SSA_NAME
)
550 cfg_changed
|= remove_prop_source_from_use (rhs1
);
551 if (TREE_CODE (rhs2
) == SSA_NAME
)
552 cfg_changed
|= remove_prop_source_from_use (rhs2
);
553 return (cfg_changed
|| is_gimple_min_invariant (tmp
)) ? 2 : 1;
556 /* Canonicalize _Bool == 0 and _Bool != 1 to _Bool != 0 by swapping edges. */
557 if ((TREE_CODE (TREE_TYPE (rhs1
)) == BOOLEAN_TYPE
558 || (INTEGRAL_TYPE_P (TREE_TYPE (rhs1
))
559 && TYPE_PRECISION (TREE_TYPE (rhs1
)) == 1))
561 && integer_zerop (rhs2
))
563 && integer_onep (rhs2
))))
565 basic_block bb
= gimple_bb (stmt
);
566 gimple_cond_set_code (stmt
, NE_EXPR
);
567 gimple_cond_set_rhs (stmt
, build_zero_cst (TREE_TYPE (rhs1
)));
568 EDGE_SUCC (bb
, 0)->flags
^= (EDGE_TRUE_VALUE
|EDGE_FALSE_VALUE
);
569 EDGE_SUCC (bb
, 1)->flags
^= (EDGE_TRUE_VALUE
|EDGE_FALSE_VALUE
);
577 /* Propagate from the ssa name definition statements of COND_EXPR
578 in the rhs of statement STMT into the conditional if that simplifies it.
579 Returns true zero if the stmt was changed. */
582 forward_propagate_into_cond (gimple_stmt_iterator
*gsi_p
)
584 gimple stmt
= gsi_stmt (*gsi_p
);
585 tree tmp
= NULL_TREE
;
586 tree cond
= gimple_assign_rhs1 (stmt
);
587 enum tree_code code
= gimple_assign_rhs_code (stmt
);
589 /* We can do tree combining on SSA_NAME and comparison expressions. */
590 if (COMPARISON_CLASS_P (cond
))
591 tmp
= forward_propagate_into_comparison_1 (stmt
, TREE_CODE (cond
),
593 TREE_OPERAND (cond
, 0),
594 TREE_OPERAND (cond
, 1));
595 else if (TREE_CODE (cond
) == SSA_NAME
)
597 enum tree_code def_code
;
599 gimple def_stmt
= get_prop_source_stmt (name
, true, NULL
);
600 if (!def_stmt
|| !can_propagate_from (def_stmt
))
603 def_code
= gimple_assign_rhs_code (def_stmt
);
604 if (TREE_CODE_CLASS (def_code
) == tcc_comparison
)
605 tmp
= fold_build2_loc (gimple_location (def_stmt
),
608 gimple_assign_rhs1 (def_stmt
),
609 gimple_assign_rhs2 (def_stmt
));
613 && is_gimple_condexpr (tmp
))
615 if (dump_file
&& tmp
)
617 fprintf (dump_file
, " Replaced '");
618 print_generic_expr (dump_file
, cond
, 0);
619 fprintf (dump_file
, "' with '");
620 print_generic_expr (dump_file
, tmp
, 0);
621 fprintf (dump_file
, "'\n");
624 if ((code
== VEC_COND_EXPR
) ? integer_all_onesp (tmp
)
625 : integer_onep (tmp
))
626 gimple_assign_set_rhs_from_tree (gsi_p
, gimple_assign_rhs2 (stmt
));
627 else if (integer_zerop (tmp
))
628 gimple_assign_set_rhs_from_tree (gsi_p
, gimple_assign_rhs3 (stmt
));
630 gimple_assign_set_rhs1 (stmt
, unshare_expr (tmp
));
631 stmt
= gsi_stmt (*gsi_p
);
640 /* We've just substituted an ADDR_EXPR into stmt. Update all the
641 relevant data structures to match. */
644 tidy_after_forward_propagate_addr (gimple stmt
)
646 /* We may have turned a trapping insn into a non-trapping insn. */
647 if (maybe_clean_or_replace_eh_stmt (stmt
, stmt
))
648 bitmap_set_bit (to_purge
, gimple_bb (stmt
)->index
);
650 if (TREE_CODE (gimple_assign_rhs1 (stmt
)) == ADDR_EXPR
)
651 recompute_tree_invariant_for_addr_expr (gimple_assign_rhs1 (stmt
));
654 /* NAME is a SSA_NAME representing DEF_RHS which is of the form
655 ADDR_EXPR <whatever>.
657 Try to forward propagate the ADDR_EXPR into the use USE_STMT.
658 Often this will allow for removal of an ADDR_EXPR and INDIRECT_REF
659 node or for recovery of array indexing from pointer arithmetic.
661 Return true if the propagation was successful (the propagation can
662 be not totally successful, yet things may have been changed). */
665 forward_propagate_addr_expr_1 (tree name
, tree def_rhs
,
666 gimple_stmt_iterator
*use_stmt_gsi
,
669 tree lhs
, rhs
, rhs2
, array_ref
;
670 gimple use_stmt
= gsi_stmt (*use_stmt_gsi
);
671 enum tree_code rhs_code
;
674 gcc_assert (TREE_CODE (def_rhs
) == ADDR_EXPR
);
676 lhs
= gimple_assign_lhs (use_stmt
);
677 rhs_code
= gimple_assign_rhs_code (use_stmt
);
678 rhs
= gimple_assign_rhs1 (use_stmt
);
680 /* Do not perform copy-propagation but recurse through copy chains. */
681 if (TREE_CODE (lhs
) == SSA_NAME
682 && rhs_code
== SSA_NAME
)
683 return forward_propagate_addr_expr (lhs
, def_rhs
, single_use_p
);
685 /* The use statement could be a conversion. Recurse to the uses of the
686 lhs as copyprop does not copy through pointer to integer to pointer
687 conversions and FRE does not catch all cases either.
688 Treat the case of a single-use name and
689 a conversion to def_rhs type separate, though. */
690 if (TREE_CODE (lhs
) == SSA_NAME
691 && CONVERT_EXPR_CODE_P (rhs_code
))
693 /* If there is a point in a conversion chain where the types match
694 so we can remove a conversion re-materialize the address here
697 && useless_type_conversion_p (TREE_TYPE (lhs
), TREE_TYPE (def_rhs
)))
699 gimple_assign_set_rhs1 (use_stmt
, unshare_expr (def_rhs
));
700 gimple_assign_set_rhs_code (use_stmt
, TREE_CODE (def_rhs
));
704 /* Else recurse if the conversion preserves the address value. */
705 if ((INTEGRAL_TYPE_P (TREE_TYPE (lhs
))
706 || POINTER_TYPE_P (TREE_TYPE (lhs
)))
707 && (TYPE_PRECISION (TREE_TYPE (lhs
))
708 >= TYPE_PRECISION (TREE_TYPE (def_rhs
))))
709 return forward_propagate_addr_expr (lhs
, def_rhs
, single_use_p
);
714 /* If this isn't a conversion chain from this on we only can propagate
715 into compatible pointer contexts. */
716 if (!types_compatible_p (TREE_TYPE (name
), TREE_TYPE (def_rhs
)))
719 /* Propagate through constant pointer adjustments. */
720 if (TREE_CODE (lhs
) == SSA_NAME
721 && rhs_code
== POINTER_PLUS_EXPR
723 && TREE_CODE (gimple_assign_rhs2 (use_stmt
)) == INTEGER_CST
)
726 /* As we come here with non-invariant addresses in def_rhs we need
727 to make sure we can build a valid constant offsetted address
728 for further propagation. Simply rely on fold building that
729 and check after the fact. */
730 new_def_rhs
= fold_build2 (MEM_REF
, TREE_TYPE (TREE_TYPE (rhs
)),
732 fold_convert (ptr_type_node
,
733 gimple_assign_rhs2 (use_stmt
)));
734 if (TREE_CODE (new_def_rhs
) == MEM_REF
735 && !is_gimple_mem_ref_addr (TREE_OPERAND (new_def_rhs
, 0)))
737 new_def_rhs
= build_fold_addr_expr_with_type (new_def_rhs
,
740 /* Recurse. If we could propagate into all uses of lhs do not
741 bother to replace into the current use but just pretend we did. */
742 if (TREE_CODE (new_def_rhs
) == ADDR_EXPR
743 && forward_propagate_addr_expr (lhs
, new_def_rhs
, single_use_p
))
746 if (useless_type_conversion_p (TREE_TYPE (lhs
), TREE_TYPE (new_def_rhs
)))
747 gimple_assign_set_rhs_with_ops (use_stmt_gsi
, TREE_CODE (new_def_rhs
),
748 new_def_rhs
, NULL_TREE
);
749 else if (is_gimple_min_invariant (new_def_rhs
))
750 gimple_assign_set_rhs_with_ops (use_stmt_gsi
, NOP_EXPR
,
751 new_def_rhs
, NULL_TREE
);
754 gcc_assert (gsi_stmt (*use_stmt_gsi
) == use_stmt
);
755 update_stmt (use_stmt
);
759 /* Now strip away any outer COMPONENT_REF/ARRAY_REF nodes from the LHS.
760 ADDR_EXPR will not appear on the LHS. */
761 tree
*lhsp
= gimple_assign_lhs_ptr (use_stmt
);
762 while (handled_component_p (*lhsp
))
763 lhsp
= &TREE_OPERAND (*lhsp
, 0);
766 /* Now see if the LHS node is a MEM_REF using NAME. If so,
767 propagate the ADDR_EXPR into the use of NAME and fold the result. */
768 if (TREE_CODE (lhs
) == MEM_REF
769 && TREE_OPERAND (lhs
, 0) == name
)
772 HOST_WIDE_INT def_rhs_offset
;
773 /* If the address is invariant we can always fold it. */
774 if ((def_rhs_base
= get_addr_base_and_unit_offset (TREE_OPERAND (def_rhs
, 0),
777 offset_int off
= mem_ref_offset (lhs
);
779 off
+= def_rhs_offset
;
780 if (TREE_CODE (def_rhs_base
) == MEM_REF
)
782 off
+= mem_ref_offset (def_rhs_base
);
783 new_ptr
= TREE_OPERAND (def_rhs_base
, 0);
786 new_ptr
= build_fold_addr_expr (def_rhs_base
);
787 TREE_OPERAND (lhs
, 0) = new_ptr
;
788 TREE_OPERAND (lhs
, 1)
789 = wide_int_to_tree (TREE_TYPE (TREE_OPERAND (lhs
, 1)), off
);
790 tidy_after_forward_propagate_addr (use_stmt
);
791 /* Continue propagating into the RHS if this was not the only use. */
795 /* If the LHS is a plain dereference and the value type is the same as
796 that of the pointed-to type of the address we can put the
797 dereferenced address on the LHS preserving the original alias-type. */
798 else if (integer_zerop (TREE_OPERAND (lhs
, 1))
799 && ((gimple_assign_lhs (use_stmt
) == lhs
800 && useless_type_conversion_p
801 (TREE_TYPE (TREE_OPERAND (def_rhs
, 0)),
802 TREE_TYPE (gimple_assign_rhs1 (use_stmt
))))
803 || types_compatible_p (TREE_TYPE (lhs
),
804 TREE_TYPE (TREE_OPERAND (def_rhs
, 0))))
805 /* Don't forward anything into clobber stmts if it would result
806 in the lhs no longer being a MEM_REF. */
807 && (!gimple_clobber_p (use_stmt
)
808 || TREE_CODE (TREE_OPERAND (def_rhs
, 0)) == MEM_REF
))
810 tree
*def_rhs_basep
= &TREE_OPERAND (def_rhs
, 0);
811 tree new_offset
, new_base
, saved
, new_lhs
;
812 while (handled_component_p (*def_rhs_basep
))
813 def_rhs_basep
= &TREE_OPERAND (*def_rhs_basep
, 0);
814 saved
= *def_rhs_basep
;
815 if (TREE_CODE (*def_rhs_basep
) == MEM_REF
)
817 new_base
= TREE_OPERAND (*def_rhs_basep
, 0);
818 new_offset
= fold_convert (TREE_TYPE (TREE_OPERAND (lhs
, 1)),
819 TREE_OPERAND (*def_rhs_basep
, 1));
823 new_base
= build_fold_addr_expr (*def_rhs_basep
);
824 new_offset
= TREE_OPERAND (lhs
, 1);
826 *def_rhs_basep
= build2 (MEM_REF
, TREE_TYPE (*def_rhs_basep
),
827 new_base
, new_offset
);
828 TREE_THIS_VOLATILE (*def_rhs_basep
) = TREE_THIS_VOLATILE (lhs
);
829 TREE_SIDE_EFFECTS (*def_rhs_basep
) = TREE_SIDE_EFFECTS (lhs
);
830 TREE_THIS_NOTRAP (*def_rhs_basep
) = TREE_THIS_NOTRAP (lhs
);
831 new_lhs
= unshare_expr (TREE_OPERAND (def_rhs
, 0));
833 TREE_THIS_VOLATILE (new_lhs
) = TREE_THIS_VOLATILE (lhs
);
834 TREE_SIDE_EFFECTS (new_lhs
) = TREE_SIDE_EFFECTS (lhs
);
835 *def_rhs_basep
= saved
;
836 tidy_after_forward_propagate_addr (use_stmt
);
837 /* Continue propagating into the RHS if this was not the
843 /* We can have a struct assignment dereferencing our name twice.
844 Note that we didn't propagate into the lhs to not falsely
845 claim we did when propagating into the rhs. */
849 /* Strip away any outer COMPONENT_REF, ARRAY_REF or ADDR_EXPR
850 nodes from the RHS. */
851 tree
*rhsp
= gimple_assign_rhs1_ptr (use_stmt
);
852 if (TREE_CODE (*rhsp
) == ADDR_EXPR
)
853 rhsp
= &TREE_OPERAND (*rhsp
, 0);
854 while (handled_component_p (*rhsp
))
855 rhsp
= &TREE_OPERAND (*rhsp
, 0);
858 /* Now see if the RHS node is a MEM_REF using NAME. If so,
859 propagate the ADDR_EXPR into the use of NAME and fold the result. */
860 if (TREE_CODE (rhs
) == MEM_REF
861 && TREE_OPERAND (rhs
, 0) == name
)
864 HOST_WIDE_INT def_rhs_offset
;
865 if ((def_rhs_base
= get_addr_base_and_unit_offset (TREE_OPERAND (def_rhs
, 0),
868 offset_int off
= mem_ref_offset (rhs
);
870 off
+= def_rhs_offset
;
871 if (TREE_CODE (def_rhs_base
) == MEM_REF
)
873 off
+= mem_ref_offset (def_rhs_base
);
874 new_ptr
= TREE_OPERAND (def_rhs_base
, 0);
877 new_ptr
= build_fold_addr_expr (def_rhs_base
);
878 TREE_OPERAND (rhs
, 0) = new_ptr
;
879 TREE_OPERAND (rhs
, 1)
880 = wide_int_to_tree (TREE_TYPE (TREE_OPERAND (rhs
, 1)), off
);
881 fold_stmt_inplace (use_stmt_gsi
);
882 tidy_after_forward_propagate_addr (use_stmt
);
885 /* If the RHS is a plain dereference and the value type is the same as
886 that of the pointed-to type of the address we can put the
887 dereferenced address on the RHS preserving the original alias-type. */
888 else if (integer_zerop (TREE_OPERAND (rhs
, 1))
889 && ((gimple_assign_rhs1 (use_stmt
) == rhs
890 && useless_type_conversion_p
891 (TREE_TYPE (gimple_assign_lhs (use_stmt
)),
892 TREE_TYPE (TREE_OPERAND (def_rhs
, 0))))
893 || types_compatible_p (TREE_TYPE (rhs
),
894 TREE_TYPE (TREE_OPERAND (def_rhs
, 0)))))
896 tree
*def_rhs_basep
= &TREE_OPERAND (def_rhs
, 0);
897 tree new_offset
, new_base
, saved
, new_rhs
;
898 while (handled_component_p (*def_rhs_basep
))
899 def_rhs_basep
= &TREE_OPERAND (*def_rhs_basep
, 0);
900 saved
= *def_rhs_basep
;
901 if (TREE_CODE (*def_rhs_basep
) == MEM_REF
)
903 new_base
= TREE_OPERAND (*def_rhs_basep
, 0);
904 new_offset
= fold_convert (TREE_TYPE (TREE_OPERAND (rhs
, 1)),
905 TREE_OPERAND (*def_rhs_basep
, 1));
909 new_base
= build_fold_addr_expr (*def_rhs_basep
);
910 new_offset
= TREE_OPERAND (rhs
, 1);
912 *def_rhs_basep
= build2 (MEM_REF
, TREE_TYPE (*def_rhs_basep
),
913 new_base
, new_offset
);
914 TREE_THIS_VOLATILE (*def_rhs_basep
) = TREE_THIS_VOLATILE (rhs
);
915 TREE_SIDE_EFFECTS (*def_rhs_basep
) = TREE_SIDE_EFFECTS (rhs
);
916 TREE_THIS_NOTRAP (*def_rhs_basep
) = TREE_THIS_NOTRAP (rhs
);
917 new_rhs
= unshare_expr (TREE_OPERAND (def_rhs
, 0));
919 TREE_THIS_VOLATILE (new_rhs
) = TREE_THIS_VOLATILE (rhs
);
920 TREE_SIDE_EFFECTS (new_rhs
) = TREE_SIDE_EFFECTS (rhs
);
921 *def_rhs_basep
= saved
;
922 fold_stmt_inplace (use_stmt_gsi
);
923 tidy_after_forward_propagate_addr (use_stmt
);
928 /* If the use of the ADDR_EXPR is not a POINTER_PLUS_EXPR, there
930 if (gimple_assign_rhs_code (use_stmt
) != POINTER_PLUS_EXPR
931 || gimple_assign_rhs1 (use_stmt
) != name
)
934 /* The remaining cases are all for turning pointer arithmetic into
935 array indexing. They only apply when we have the address of
936 element zero in an array. If that is not the case then there
938 array_ref
= TREE_OPERAND (def_rhs
, 0);
939 if ((TREE_CODE (array_ref
) != ARRAY_REF
940 || TREE_CODE (TREE_TYPE (TREE_OPERAND (array_ref
, 0))) != ARRAY_TYPE
941 || TREE_CODE (TREE_OPERAND (array_ref
, 1)) != INTEGER_CST
)
942 && TREE_CODE (TREE_TYPE (array_ref
)) != ARRAY_TYPE
)
945 rhs2
= gimple_assign_rhs2 (use_stmt
);
946 /* Optimize &x[C1] p+ C2 to &x p+ C3 with C3 = C1 * element_size + C2. */
947 if (TREE_CODE (rhs2
) == INTEGER_CST
)
949 tree new_rhs
= build1_loc (gimple_location (use_stmt
),
950 ADDR_EXPR
, TREE_TYPE (def_rhs
),
951 fold_build2 (MEM_REF
,
952 TREE_TYPE (TREE_TYPE (def_rhs
)),
953 unshare_expr (def_rhs
),
954 fold_convert (ptr_type_node
,
956 gimple_assign_set_rhs_from_tree (use_stmt_gsi
, new_rhs
);
957 use_stmt
= gsi_stmt (*use_stmt_gsi
);
958 update_stmt (use_stmt
);
959 tidy_after_forward_propagate_addr (use_stmt
);
966 /* STMT is a statement of the form SSA_NAME = ADDR_EXPR <whatever>.
968 Try to forward propagate the ADDR_EXPR into all uses of the SSA_NAME.
969 Often this will allow for removal of an ADDR_EXPR and INDIRECT_REF
970 node or for recovery of array indexing from pointer arithmetic.
972 PARENT_SINGLE_USE_P tells if, when in a recursive invocation, NAME was
973 the single use in the previous invocation. Pass true when calling
976 Returns true, if all uses have been propagated into. */
979 forward_propagate_addr_expr (tree name
, tree rhs
, bool parent_single_use_p
)
981 imm_use_iterator iter
;
984 bool single_use_p
= parent_single_use_p
&& has_single_use (name
);
986 FOR_EACH_IMM_USE_STMT (use_stmt
, iter
, name
)
991 /* If the use is not in a simple assignment statement, then
992 there is nothing we can do. */
993 if (!is_gimple_assign (use_stmt
))
995 if (!is_gimple_debug (use_stmt
))
1000 gimple_stmt_iterator gsi
= gsi_for_stmt (use_stmt
);
1001 result
= forward_propagate_addr_expr_1 (name
, rhs
, &gsi
,
1003 /* If the use has moved to a different statement adjust
1004 the update machinery for the old statement too. */
1005 if (use_stmt
!= gsi_stmt (gsi
))
1007 update_stmt (use_stmt
);
1008 use_stmt
= gsi_stmt (gsi
);
1010 update_stmt (use_stmt
);
1013 /* Remove intermediate now unused copy and conversion chains. */
1014 use_rhs
= gimple_assign_rhs1 (use_stmt
);
1016 && TREE_CODE (gimple_assign_lhs (use_stmt
)) == SSA_NAME
1017 && TREE_CODE (use_rhs
) == SSA_NAME
1018 && has_zero_uses (gimple_assign_lhs (use_stmt
)))
1020 gimple_stmt_iterator gsi
= gsi_for_stmt (use_stmt
);
1021 fwprop_invalidate_lattice (gimple_get_lhs (use_stmt
));
1022 release_defs (use_stmt
);
1023 gsi_remove (&gsi
, true);
1027 return all
&& has_zero_uses (name
);
1031 /* Helper function for simplify_gimple_switch. Remove case labels that
1032 have values outside the range of the new type. */
1035 simplify_gimple_switch_label_vec (gimple stmt
, tree index_type
)
1037 unsigned int branch_num
= gimple_switch_num_labels (stmt
);
1038 auto_vec
<tree
> labels (branch_num
);
1039 unsigned int i
, len
;
1041 /* Collect the existing case labels in a VEC, and preprocess it as if
1042 we are gimplifying a GENERIC SWITCH_EXPR. */
1043 for (i
= 1; i
< branch_num
; i
++)
1044 labels
.quick_push (gimple_switch_label (stmt
, i
));
1045 preprocess_case_label_vec_for_gimple (labels
, index_type
, NULL
);
1047 /* If any labels were removed, replace the existing case labels
1048 in the GIMPLE_SWITCH statement with the correct ones.
1049 Note that the type updates were done in-place on the case labels,
1050 so we only have to replace the case labels in the GIMPLE_SWITCH
1051 if the number of labels changed. */
1052 len
= labels
.length ();
1053 if (len
< branch_num
- 1)
1055 bitmap target_blocks
;
1059 /* Corner case: *all* case labels have been removed as being
1060 out-of-range for INDEX_TYPE. Push one label and let the
1061 CFG cleanups deal with this further. */
1066 label
= CASE_LABEL (gimple_switch_default_label (stmt
));
1067 elt
= build_case_label (build_int_cst (index_type
, 0), NULL
, label
);
1068 labels
.quick_push (elt
);
1072 for (i
= 0; i
< labels
.length (); i
++)
1073 gimple_switch_set_label (stmt
, i
+ 1, labels
[i
]);
1074 for (i
++ ; i
< branch_num
; i
++)
1075 gimple_switch_set_label (stmt
, i
, NULL_TREE
);
1076 gimple_switch_set_num_labels (stmt
, len
+ 1);
1078 /* Cleanup any edges that are now dead. */
1079 target_blocks
= BITMAP_ALLOC (NULL
);
1080 for (i
= 0; i
< gimple_switch_num_labels (stmt
); i
++)
1082 tree elt
= gimple_switch_label (stmt
, i
);
1083 basic_block target
= label_to_block (CASE_LABEL (elt
));
1084 bitmap_set_bit (target_blocks
, target
->index
);
1086 for (ei
= ei_start (gimple_bb (stmt
)->succs
); (e
= ei_safe_edge (ei
)); )
1088 if (! bitmap_bit_p (target_blocks
, e
->dest
->index
))
1092 free_dominance_info (CDI_DOMINATORS
);
1097 BITMAP_FREE (target_blocks
);
1101 /* STMT is a SWITCH_EXPR for which we attempt to find equivalent forms of
1102 the condition which we may be able to optimize better. */
1105 simplify_gimple_switch (gimple stmt
)
1107 /* The optimization that we really care about is removing unnecessary
1108 casts. That will let us do much better in propagating the inferred
1109 constant at the switch target. */
1110 tree cond
= gimple_switch_index (stmt
);
1111 if (TREE_CODE (cond
) == SSA_NAME
)
1113 gimple def_stmt
= SSA_NAME_DEF_STMT (cond
);
1114 if (gimple_assign_cast_p (def_stmt
))
1116 tree def
= gimple_assign_rhs1 (def_stmt
);
1117 if (TREE_CODE (def
) != SSA_NAME
)
1120 /* If we have an extension or sign-change that preserves the
1121 values we check against then we can copy the source value into
1123 tree ti
= TREE_TYPE (def
);
1124 if (INTEGRAL_TYPE_P (ti
)
1125 && TYPE_PRECISION (ti
) <= TYPE_PRECISION (TREE_TYPE (cond
)))
1127 size_t n
= gimple_switch_num_labels (stmt
);
1128 tree min
= NULL_TREE
, max
= NULL_TREE
;
1131 min
= CASE_LOW (gimple_switch_label (stmt
, 1));
1132 if (CASE_HIGH (gimple_switch_label (stmt
, n
- 1)))
1133 max
= CASE_HIGH (gimple_switch_label (stmt
, n
- 1));
1135 max
= CASE_LOW (gimple_switch_label (stmt
, n
- 1));
1137 if ((!min
|| int_fits_type_p (min
, ti
))
1138 && (!max
|| int_fits_type_p (max
, ti
)))
1140 gimple_switch_set_index (stmt
, def
);
1141 simplify_gimple_switch_label_vec (stmt
, ti
);
1152 /* For pointers p2 and p1 return p2 - p1 if the
1153 difference is known and constant, otherwise return NULL. */
1156 constant_pointer_difference (tree p1
, tree p2
)
1159 #define CPD_ITERATIONS 5
1160 tree exps
[2][CPD_ITERATIONS
];
1161 tree offs
[2][CPD_ITERATIONS
];
1164 for (i
= 0; i
< 2; i
++)
1166 tree p
= i
? p1
: p2
;
1167 tree off
= size_zero_node
;
1169 enum tree_code code
;
1171 /* For each of p1 and p2 we need to iterate at least
1172 twice, to handle ADDR_EXPR directly in p1/p2,
1173 SSA_NAME with ADDR_EXPR or POINTER_PLUS_EXPR etc.
1174 on definition's stmt RHS. Iterate a few extra times. */
1178 if (!POINTER_TYPE_P (TREE_TYPE (p
)))
1180 if (TREE_CODE (p
) == ADDR_EXPR
)
1182 tree q
= TREE_OPERAND (p
, 0);
1183 HOST_WIDE_INT offset
;
1184 tree base
= get_addr_base_and_unit_offset (q
, &offset
);
1189 off
= size_binop (PLUS_EXPR
, off
, size_int (offset
));
1191 if (TREE_CODE (q
) == MEM_REF
1192 && TREE_CODE (TREE_OPERAND (q
, 0)) == SSA_NAME
)
1194 p
= TREE_OPERAND (q
, 0);
1195 off
= size_binop (PLUS_EXPR
, off
,
1196 wide_int_to_tree (sizetype
,
1197 mem_ref_offset (q
)));
1206 if (TREE_CODE (p
) != SSA_NAME
)
1210 if (j
== CPD_ITERATIONS
)
1212 stmt
= SSA_NAME_DEF_STMT (p
);
1213 if (!is_gimple_assign (stmt
) || gimple_assign_lhs (stmt
) != p
)
1215 code
= gimple_assign_rhs_code (stmt
);
1216 if (code
== POINTER_PLUS_EXPR
)
1218 if (TREE_CODE (gimple_assign_rhs2 (stmt
)) != INTEGER_CST
)
1220 off
= size_binop (PLUS_EXPR
, off
, gimple_assign_rhs2 (stmt
));
1221 p
= gimple_assign_rhs1 (stmt
);
1223 else if (code
== ADDR_EXPR
|| CONVERT_EXPR_CODE_P (code
))
1224 p
= gimple_assign_rhs1 (stmt
);
1232 for (i
= 0; i
< cnt
[0]; i
++)
1233 for (j
= 0; j
< cnt
[1]; j
++)
1234 if (exps
[0][i
] == exps
[1][j
])
1235 return size_binop (MINUS_EXPR
, offs
[0][i
], offs
[1][j
]);
1240 /* *GSI_P is a GIMPLE_CALL to a builtin function.
1242 memcpy (p, "abcd", 4);
1243 memset (p + 4, ' ', 3);
1245 memcpy (p, "abcd ", 7);
1246 call if the latter can be stored by pieces during expansion. */
1249 simplify_builtin_call (gimple_stmt_iterator
*gsi_p
, tree callee2
)
1251 gimple stmt1
, stmt2
= gsi_stmt (*gsi_p
);
1252 tree vuse
= gimple_vuse (stmt2
);
1255 stmt1
= SSA_NAME_DEF_STMT (vuse
);
1257 switch (DECL_FUNCTION_CODE (callee2
))
1259 case BUILT_IN_MEMSET
:
1260 if (gimple_call_num_args (stmt2
) != 3
1261 || gimple_call_lhs (stmt2
)
1263 || BITS_PER_UNIT
!= 8)
1268 tree ptr1
, src1
, str1
, off1
, len1
, lhs1
;
1269 tree ptr2
= gimple_call_arg (stmt2
, 0);
1270 tree val2
= gimple_call_arg (stmt2
, 1);
1271 tree len2
= gimple_call_arg (stmt2
, 2);
1272 tree diff
, vdef
, new_str_cst
;
1274 unsigned int ptr1_align
;
1275 unsigned HOST_WIDE_INT src_len
;
1277 use_operand_p use_p
;
1279 if (!tree_fits_shwi_p (val2
)
1280 || !tree_fits_uhwi_p (len2
))
1282 if (is_gimple_call (stmt1
))
1284 /* If first stmt is a call, it needs to be memcpy
1285 or mempcpy, with string literal as second argument and
1287 callee1
= gimple_call_fndecl (stmt1
);
1288 if (callee1
== NULL_TREE
1289 || DECL_BUILT_IN_CLASS (callee1
) != BUILT_IN_NORMAL
1290 || gimple_call_num_args (stmt1
) != 3)
1292 if (DECL_FUNCTION_CODE (callee1
) != BUILT_IN_MEMCPY
1293 && DECL_FUNCTION_CODE (callee1
) != BUILT_IN_MEMPCPY
)
1295 ptr1
= gimple_call_arg (stmt1
, 0);
1296 src1
= gimple_call_arg (stmt1
, 1);
1297 len1
= gimple_call_arg (stmt1
, 2);
1298 lhs1
= gimple_call_lhs (stmt1
);
1299 if (!tree_fits_uhwi_p (len1
))
1301 str1
= string_constant (src1
, &off1
);
1302 if (str1
== NULL_TREE
)
1304 if (!tree_fits_uhwi_p (off1
)
1305 || compare_tree_int (off1
, TREE_STRING_LENGTH (str1
) - 1) > 0
1306 || compare_tree_int (len1
, TREE_STRING_LENGTH (str1
)
1307 - tree_to_uhwi (off1
)) > 0
1308 || TREE_CODE (TREE_TYPE (str1
)) != ARRAY_TYPE
1309 || TYPE_MODE (TREE_TYPE (TREE_TYPE (str1
)))
1310 != TYPE_MODE (char_type_node
))
1313 else if (gimple_assign_single_p (stmt1
))
1315 /* Otherwise look for length 1 memcpy optimized into
1317 ptr1
= gimple_assign_lhs (stmt1
);
1318 src1
= gimple_assign_rhs1 (stmt1
);
1319 if (TREE_CODE (ptr1
) != MEM_REF
1320 || TYPE_MODE (TREE_TYPE (ptr1
)) != TYPE_MODE (char_type_node
)
1321 || !tree_fits_shwi_p (src1
))
1323 ptr1
= build_fold_addr_expr (ptr1
);
1324 callee1
= NULL_TREE
;
1325 len1
= size_one_node
;
1327 off1
= size_zero_node
;
1333 diff
= constant_pointer_difference (ptr1
, ptr2
);
1334 if (diff
== NULL
&& lhs1
!= NULL
)
1336 diff
= constant_pointer_difference (lhs1
, ptr2
);
1337 if (DECL_FUNCTION_CODE (callee1
) == BUILT_IN_MEMPCPY
1339 diff
= size_binop (PLUS_EXPR
, diff
,
1340 fold_convert (sizetype
, len1
));
1342 /* If the difference between the second and first destination pointer
1343 is not constant, or is bigger than memcpy length, bail out. */
1345 || !tree_fits_uhwi_p (diff
)
1346 || tree_int_cst_lt (len1
, diff
))
1349 /* Use maximum of difference plus memset length and memcpy length
1350 as the new memcpy length, if it is too big, bail out. */
1351 src_len
= tree_to_uhwi (diff
);
1352 src_len
+= tree_to_uhwi (len2
);
1353 if (src_len
< tree_to_uhwi (len1
))
1354 src_len
= tree_to_uhwi (len1
);
1358 /* If mempcpy value is used elsewhere, bail out, as mempcpy
1359 with bigger length will return different result. */
1360 if (lhs1
!= NULL_TREE
1361 && DECL_FUNCTION_CODE (callee1
) == BUILT_IN_MEMPCPY
1362 && (TREE_CODE (lhs1
) != SSA_NAME
1363 || !single_imm_use (lhs1
, &use_p
, &use_stmt
)
1364 || use_stmt
!= stmt2
))
1367 /* If anything reads memory in between memcpy and memset
1368 call, the modified memcpy call might change it. */
1369 vdef
= gimple_vdef (stmt1
);
1371 && (!single_imm_use (vdef
, &use_p
, &use_stmt
)
1372 || use_stmt
!= stmt2
))
1375 ptr1_align
= get_pointer_alignment (ptr1
);
1376 /* Construct the new source string literal. */
1377 src_buf
= XALLOCAVEC (char, src_len
+ 1);
1380 TREE_STRING_POINTER (str1
) + tree_to_uhwi (off1
),
1381 tree_to_uhwi (len1
));
1383 src_buf
[0] = tree_to_shwi (src1
);
1384 memset (src_buf
+ tree_to_uhwi (diff
),
1385 tree_to_shwi (val2
), tree_to_uhwi (len2
));
1386 src_buf
[src_len
] = '\0';
1387 /* Neither builtin_strncpy_read_str nor builtin_memcpy_read_str
1388 handle embedded '\0's. */
1389 if (strlen (src_buf
) != src_len
)
1391 rtl_profile_for_bb (gimple_bb (stmt2
));
1392 /* If the new memcpy wouldn't be emitted by storing the literal
1393 by pieces, this optimization might enlarge .rodata too much,
1394 as commonly used string literals couldn't be shared any
1396 if (!can_store_by_pieces (src_len
,
1397 builtin_strncpy_read_str
,
1398 src_buf
, ptr1_align
, false))
1401 new_str_cst
= build_string_literal (src_len
, src_buf
);
1404 /* If STMT1 is a mem{,p}cpy call, adjust it and remove
1406 if (lhs1
&& DECL_FUNCTION_CODE (callee1
) == BUILT_IN_MEMPCPY
)
1407 gimple_call_set_lhs (stmt1
, NULL_TREE
);
1408 gimple_call_set_arg (stmt1
, 1, new_str_cst
);
1409 gimple_call_set_arg (stmt1
, 2,
1410 build_int_cst (TREE_TYPE (len1
), src_len
));
1411 update_stmt (stmt1
);
1412 unlink_stmt_vdef (stmt2
);
1413 gsi_remove (gsi_p
, true);
1414 fwprop_invalidate_lattice (gimple_get_lhs (stmt2
));
1415 release_defs (stmt2
);
1416 if (lhs1
&& DECL_FUNCTION_CODE (callee1
) == BUILT_IN_MEMPCPY
)
1418 fwprop_invalidate_lattice (lhs1
);
1419 release_ssa_name (lhs1
);
1425 /* Otherwise, if STMT1 is length 1 memcpy optimized into
1426 assignment, remove STMT1 and change memset call into
1428 gimple_stmt_iterator gsi
= gsi_for_stmt (stmt1
);
1430 if (!is_gimple_val (ptr1
))
1431 ptr1
= force_gimple_operand_gsi (gsi_p
, ptr1
, true, NULL_TREE
,
1432 true, GSI_SAME_STMT
);
1433 gimple_call_set_fndecl (stmt2
,
1434 builtin_decl_explicit (BUILT_IN_MEMCPY
));
1435 gimple_call_set_arg (stmt2
, 0, ptr1
);
1436 gimple_call_set_arg (stmt2
, 1, new_str_cst
);
1437 gimple_call_set_arg (stmt2
, 2,
1438 build_int_cst (TREE_TYPE (len2
), src_len
));
1439 unlink_stmt_vdef (stmt1
);
1440 gsi_remove (&gsi
, true);
1441 fwprop_invalidate_lattice (gimple_get_lhs (stmt1
));
1442 release_defs (stmt1
);
1443 update_stmt (stmt2
);
1454 /* Given a ssa_name in NAME see if it was defined by an assignment and
1455 set CODE to be the code and ARG1 to the first operand on the rhs and ARG2
1456 to the second operand on the rhs. */
1459 defcodefor_name (tree name
, enum tree_code
*code
, tree
*arg1
, tree
*arg2
)
1462 enum tree_code code1
;
1466 enum gimple_rhs_class grhs_class
;
1468 code1
= TREE_CODE (name
);
1471 grhs_class
= get_gimple_rhs_class (code1
);
1473 if (code1
== SSA_NAME
)
1475 def
= SSA_NAME_DEF_STMT (name
);
1477 if (def
&& is_gimple_assign (def
)
1478 && can_propagate_from (def
))
1480 code1
= gimple_assign_rhs_code (def
);
1481 arg11
= gimple_assign_rhs1 (def
);
1482 arg21
= gimple_assign_rhs2 (def
);
1483 arg31
= gimple_assign_rhs2 (def
);
1486 else if (grhs_class
== GIMPLE_TERNARY_RHS
1487 || GIMPLE_BINARY_RHS
1489 || GIMPLE_SINGLE_RHS
)
1490 extract_ops_from_tree_1 (name
, &code1
, &arg11
, &arg21
, &arg31
);
1496 /* Ignore arg3 currently. */
1500 /* Recognize rotation patterns. Return true if a transformation
1501 applied, otherwise return false.
1503 We are looking for X with unsigned type T with bitsize B, OP being
1504 +, | or ^, some type T2 wider than T and
1505 (X << CNT1) OP (X >> CNT2) iff CNT1 + CNT2 == B
1506 ((T) ((T2) X << CNT1)) OP ((T) ((T2) X >> CNT2)) iff CNT1 + CNT2 == B
1507 (X << Y) OP (X >> (B - Y))
1508 (X << (int) Y) OP (X >> (int) (B - Y))
1509 ((T) ((T2) X << Y)) OP ((T) ((T2) X >> (B - Y)))
1510 ((T) ((T2) X << (int) Y)) OP ((T) ((T2) X >> (int) (B - Y)))
1511 (X << Y) | (X >> ((-Y) & (B - 1)))
1512 (X << (int) Y) | (X >> (int) ((-Y) & (B - 1)))
1513 ((T) ((T2) X << Y)) | ((T) ((T2) X >> ((-Y) & (B - 1))))
1514 ((T) ((T2) X << (int) Y)) | ((T) ((T2) X >> (int) ((-Y) & (B - 1))))
1516 and transform these into:
1520 Note, in the patterns with T2 type, the type of OP operands
1521 might be even a signed type, but should have precision B. */
1524 simplify_rotate (gimple_stmt_iterator
*gsi
)
1526 gimple stmt
= gsi_stmt (*gsi
);
1527 tree arg
[2], rtype
, rotcnt
= NULL_TREE
;
1528 tree def_arg1
[2], def_arg2
[2];
1529 enum tree_code def_code
[2];
1532 bool swapped_p
= false;
1535 arg
[0] = gimple_assign_rhs1 (stmt
);
1536 arg
[1] = gimple_assign_rhs2 (stmt
);
1537 rtype
= TREE_TYPE (arg
[0]);
1539 /* Only create rotates in complete modes. Other cases are not
1540 expanded properly. */
1541 if (!INTEGRAL_TYPE_P (rtype
)
1542 || TYPE_PRECISION (rtype
) != GET_MODE_PRECISION (TYPE_MODE (rtype
)))
1545 for (i
= 0; i
< 2; i
++)
1546 defcodefor_name (arg
[i
], &def_code
[i
], &def_arg1
[i
], &def_arg2
[i
]);
1548 /* Look through narrowing conversions. */
1549 if (CONVERT_EXPR_CODE_P (def_code
[0])
1550 && CONVERT_EXPR_CODE_P (def_code
[1])
1551 && INTEGRAL_TYPE_P (TREE_TYPE (def_arg1
[0]))
1552 && INTEGRAL_TYPE_P (TREE_TYPE (def_arg1
[1]))
1553 && TYPE_PRECISION (TREE_TYPE (def_arg1
[0]))
1554 == TYPE_PRECISION (TREE_TYPE (def_arg1
[1]))
1555 && TYPE_PRECISION (TREE_TYPE (def_arg1
[0])) > TYPE_PRECISION (rtype
)
1556 && has_single_use (arg
[0])
1557 && has_single_use (arg
[1]))
1559 for (i
= 0; i
< 2; i
++)
1561 arg
[i
] = def_arg1
[i
];
1562 defcodefor_name (arg
[i
], &def_code
[i
], &def_arg1
[i
], &def_arg2
[i
]);
1566 /* One operand has to be LSHIFT_EXPR and one RSHIFT_EXPR. */
1567 for (i
= 0; i
< 2; i
++)
1568 if (def_code
[i
] != LSHIFT_EXPR
&& def_code
[i
] != RSHIFT_EXPR
)
1570 else if (!has_single_use (arg
[i
]))
1572 if (def_code
[0] == def_code
[1])
1575 /* If we've looked through narrowing conversions before, look through
1576 widening conversions from unsigned type with the same precision
1578 if (TYPE_PRECISION (TREE_TYPE (def_arg1
[0])) != TYPE_PRECISION (rtype
))
1579 for (i
= 0; i
< 2; i
++)
1582 enum tree_code code
;
1583 defcodefor_name (def_arg1
[i
], &code
, &tem
, NULL
);
1584 if (!CONVERT_EXPR_CODE_P (code
)
1585 || !INTEGRAL_TYPE_P (TREE_TYPE (tem
))
1586 || TYPE_PRECISION (TREE_TYPE (tem
)) != TYPE_PRECISION (rtype
))
1590 /* Both shifts have to use the same first operand. */
1591 if (TREE_CODE (def_arg1
[0]) != SSA_NAME
|| def_arg1
[0] != def_arg1
[1])
1593 if (!TYPE_UNSIGNED (TREE_TYPE (def_arg1
[0])))
1596 /* CNT1 + CNT2 == B case above. */
1597 if (tree_fits_uhwi_p (def_arg2
[0])
1598 && tree_fits_uhwi_p (def_arg2
[1])
1599 && tree_to_uhwi (def_arg2
[0])
1600 + tree_to_uhwi (def_arg2
[1]) == TYPE_PRECISION (rtype
))
1601 rotcnt
= def_arg2
[0];
1602 else if (TREE_CODE (def_arg2
[0]) != SSA_NAME
1603 || TREE_CODE (def_arg2
[1]) != SSA_NAME
)
1607 tree cdef_arg1
[2], cdef_arg2
[2], def_arg2_alt
[2];
1608 enum tree_code cdef_code
[2];
1609 /* Look through conversion of the shift count argument.
1610 The C/C++ FE cast any shift count argument to integer_type_node.
1611 The only problem might be if the shift count type maximum value
1612 is equal or smaller than number of bits in rtype. */
1613 for (i
= 0; i
< 2; i
++)
1615 def_arg2_alt
[i
] = def_arg2
[i
];
1616 defcodefor_name (def_arg2
[i
], &cdef_code
[i
],
1617 &cdef_arg1
[i
], &cdef_arg2
[i
]);
1618 if (CONVERT_EXPR_CODE_P (cdef_code
[i
])
1619 && INTEGRAL_TYPE_P (TREE_TYPE (cdef_arg1
[i
]))
1620 && TYPE_PRECISION (TREE_TYPE (cdef_arg1
[i
]))
1621 > floor_log2 (TYPE_PRECISION (rtype
))
1622 && TYPE_PRECISION (TREE_TYPE (cdef_arg1
[i
]))
1623 == GET_MODE_PRECISION (TYPE_MODE (TREE_TYPE (cdef_arg1
[i
]))))
1625 def_arg2_alt
[i
] = cdef_arg1
[i
];
1626 defcodefor_name (def_arg2_alt
[i
], &cdef_code
[i
],
1627 &cdef_arg1
[i
], &cdef_arg2
[i
]);
1630 for (i
= 0; i
< 2; i
++)
1631 /* Check for one shift count being Y and the other B - Y,
1632 with optional casts. */
1633 if (cdef_code
[i
] == MINUS_EXPR
1634 && tree_fits_shwi_p (cdef_arg1
[i
])
1635 && tree_to_shwi (cdef_arg1
[i
]) == TYPE_PRECISION (rtype
)
1636 && TREE_CODE (cdef_arg2
[i
]) == SSA_NAME
)
1639 enum tree_code code
;
1641 if (cdef_arg2
[i
] == def_arg2
[1 - i
]
1642 || cdef_arg2
[i
] == def_arg2_alt
[1 - i
])
1644 rotcnt
= cdef_arg2
[i
];
1647 defcodefor_name (cdef_arg2
[i
], &code
, &tem
, NULL
);
1648 if (CONVERT_EXPR_CODE_P (code
)
1649 && INTEGRAL_TYPE_P (TREE_TYPE (tem
))
1650 && TYPE_PRECISION (TREE_TYPE (tem
))
1651 > floor_log2 (TYPE_PRECISION (rtype
))
1652 && TYPE_PRECISION (TREE_TYPE (tem
))
1653 == GET_MODE_PRECISION (TYPE_MODE (TREE_TYPE (tem
)))
1654 && (tem
== def_arg2
[1 - i
]
1655 || tem
== def_arg2_alt
[1 - i
]))
1661 /* The above sequence isn't safe for Y being 0,
1662 because then one of the shifts triggers undefined behavior.
1663 This alternative is safe even for rotation count of 0.
1664 One shift count is Y and the other (-Y) & (B - 1). */
1665 else if (cdef_code
[i
] == BIT_AND_EXPR
1666 && tree_fits_shwi_p (cdef_arg2
[i
])
1667 && tree_to_shwi (cdef_arg2
[i
])
1668 == TYPE_PRECISION (rtype
) - 1
1669 && TREE_CODE (cdef_arg1
[i
]) == SSA_NAME
1670 && gimple_assign_rhs_code (stmt
) == BIT_IOR_EXPR
)
1673 enum tree_code code
;
1675 defcodefor_name (cdef_arg1
[i
], &code
, &tem
, NULL
);
1676 if (CONVERT_EXPR_CODE_P (code
)
1677 && INTEGRAL_TYPE_P (TREE_TYPE (tem
))
1678 && TYPE_PRECISION (TREE_TYPE (tem
))
1679 > floor_log2 (TYPE_PRECISION (rtype
))
1680 && TYPE_PRECISION (TREE_TYPE (tem
))
1681 == GET_MODE_PRECISION (TYPE_MODE (TREE_TYPE (tem
))))
1682 defcodefor_name (tem
, &code
, &tem
, NULL
);
1684 if (code
== NEGATE_EXPR
)
1686 if (tem
== def_arg2
[1 - i
] || tem
== def_arg2_alt
[1 - i
])
1691 defcodefor_name (tem
, &code
, &tem
, NULL
);
1692 if (CONVERT_EXPR_CODE_P (code
)
1693 && INTEGRAL_TYPE_P (TREE_TYPE (tem
))
1694 && TYPE_PRECISION (TREE_TYPE (tem
))
1695 > floor_log2 (TYPE_PRECISION (rtype
))
1696 && TYPE_PRECISION (TREE_TYPE (tem
))
1697 == GET_MODE_PRECISION (TYPE_MODE (TREE_TYPE (tem
)))
1698 && (tem
== def_arg2
[1 - i
]
1699 || tem
== def_arg2_alt
[1 - i
]))
1706 if (rotcnt
== NULL_TREE
)
1711 if (!useless_type_conversion_p (TREE_TYPE (def_arg2
[0]),
1712 TREE_TYPE (rotcnt
)))
1714 g
= gimple_build_assign_with_ops (NOP_EXPR
,
1715 make_ssa_name (TREE_TYPE (def_arg2
[0]),
1718 gsi_insert_before (gsi
, g
, GSI_SAME_STMT
);
1719 rotcnt
= gimple_assign_lhs (g
);
1721 lhs
= gimple_assign_lhs (stmt
);
1722 if (!useless_type_conversion_p (rtype
, TREE_TYPE (def_arg1
[0])))
1723 lhs
= make_ssa_name (TREE_TYPE (def_arg1
[0]), NULL
);
1724 g
= gimple_build_assign_with_ops (((def_code
[0] == LSHIFT_EXPR
) ^ swapped_p
)
1725 ? LROTATE_EXPR
: RROTATE_EXPR
,
1726 lhs
, def_arg1
[0], rotcnt
);
1727 if (!useless_type_conversion_p (rtype
, TREE_TYPE (def_arg1
[0])))
1729 gsi_insert_before (gsi
, g
, GSI_SAME_STMT
);
1730 g
= gimple_build_assign_with_ops (NOP_EXPR
, gimple_assign_lhs (stmt
),
1733 gsi_replace (gsi
, g
, false);
1737 /* Combine an element access with a shuffle. Returns true if there were
1738 any changes made, else it returns false. */
1741 simplify_bitfield_ref (gimple_stmt_iterator
*gsi
)
1743 gimple stmt
= gsi_stmt (*gsi
);
1745 tree op
, op0
, op1
, op2
;
1747 unsigned idx
, n
, size
;
1748 enum tree_code code
;
1750 op
= gimple_assign_rhs1 (stmt
);
1751 gcc_checking_assert (TREE_CODE (op
) == BIT_FIELD_REF
);
1753 op0
= TREE_OPERAND (op
, 0);
1754 if (TREE_CODE (op0
) != SSA_NAME
1755 || TREE_CODE (TREE_TYPE (op0
)) != VECTOR_TYPE
)
1758 def_stmt
= get_prop_source_stmt (op0
, false, NULL
);
1759 if (!def_stmt
|| !can_propagate_from (def_stmt
))
1762 op1
= TREE_OPERAND (op
, 1);
1763 op2
= TREE_OPERAND (op
, 2);
1764 code
= gimple_assign_rhs_code (def_stmt
);
1766 if (code
== CONSTRUCTOR
)
1768 tree tem
= fold_ternary (BIT_FIELD_REF
, TREE_TYPE (op
),
1769 gimple_assign_rhs1 (def_stmt
), op1
, op2
);
1770 if (!tem
|| !valid_gimple_rhs_p (tem
))
1772 gimple_assign_set_rhs_from_tree (gsi
, tem
);
1773 update_stmt (gsi_stmt (*gsi
));
1777 elem_type
= TREE_TYPE (TREE_TYPE (op0
));
1778 if (TREE_TYPE (op
) != elem_type
)
1781 size
= TREE_INT_CST_LOW (TYPE_SIZE (elem_type
));
1782 n
= TREE_INT_CST_LOW (op1
) / size
;
1785 idx
= TREE_INT_CST_LOW (op2
) / size
;
1787 if (code
== VEC_PERM_EXPR
)
1789 tree p
, m
, index
, tem
;
1791 m
= gimple_assign_rhs3 (def_stmt
);
1792 if (TREE_CODE (m
) != VECTOR_CST
)
1794 nelts
= VECTOR_CST_NELTS (m
);
1795 idx
= TREE_INT_CST_LOW (VECTOR_CST_ELT (m
, idx
));
1799 p
= gimple_assign_rhs1 (def_stmt
);
1803 p
= gimple_assign_rhs2 (def_stmt
);
1806 index
= build_int_cst (TREE_TYPE (TREE_TYPE (m
)), idx
* size
);
1807 tem
= build3 (BIT_FIELD_REF
, TREE_TYPE (op
),
1808 unshare_expr (p
), op1
, index
);
1809 gimple_assign_set_rhs1 (stmt
, tem
);
1811 update_stmt (gsi_stmt (*gsi
));
1818 /* Determine whether applying the 2 permutations (mask1 then mask2)
1819 gives back one of the input. */
1822 is_combined_permutation_identity (tree mask1
, tree mask2
)
1825 unsigned int nelts
, i
, j
;
1826 bool maybe_identity1
= true;
1827 bool maybe_identity2
= true;
1829 gcc_checking_assert (TREE_CODE (mask1
) == VECTOR_CST
1830 && TREE_CODE (mask2
) == VECTOR_CST
);
1831 mask
= fold_ternary (VEC_PERM_EXPR
, TREE_TYPE (mask1
), mask1
, mask1
, mask2
);
1832 gcc_assert (TREE_CODE (mask
) == VECTOR_CST
);
1834 nelts
= VECTOR_CST_NELTS (mask
);
1835 for (i
= 0; i
< nelts
; i
++)
1837 tree val
= VECTOR_CST_ELT (mask
, i
);
1838 gcc_assert (TREE_CODE (val
) == INTEGER_CST
);
1839 j
= TREE_INT_CST_LOW (val
) & (2 * nelts
- 1);
1841 maybe_identity2
= false;
1842 else if (j
== i
+ nelts
)
1843 maybe_identity1
= false;
1847 return maybe_identity1
? 1 : maybe_identity2
? 2 : 0;
1850 /* Combine a shuffle with its arguments. Returns 1 if there were any
1851 changes made, 2 if cfg-cleanup needs to run. Else it returns 0. */
1854 simplify_permutation (gimple_stmt_iterator
*gsi
)
1856 gimple stmt
= gsi_stmt (*gsi
);
1858 tree op0
, op1
, op2
, op3
, arg0
, arg1
;
1859 enum tree_code code
;
1860 bool single_use_op0
= false;
1862 gcc_checking_assert (gimple_assign_rhs_code (stmt
) == VEC_PERM_EXPR
);
1864 op0
= gimple_assign_rhs1 (stmt
);
1865 op1
= gimple_assign_rhs2 (stmt
);
1866 op2
= gimple_assign_rhs3 (stmt
);
1868 if (TREE_CODE (op2
) != VECTOR_CST
)
1871 if (TREE_CODE (op0
) == VECTOR_CST
)
1876 else if (TREE_CODE (op0
) == SSA_NAME
)
1878 def_stmt
= get_prop_source_stmt (op0
, false, &single_use_op0
);
1879 if (!def_stmt
|| !can_propagate_from (def_stmt
))
1882 code
= gimple_assign_rhs_code (def_stmt
);
1883 arg0
= gimple_assign_rhs1 (def_stmt
);
1888 /* Two consecutive shuffles. */
1889 if (code
== VEC_PERM_EXPR
)
1896 op3
= gimple_assign_rhs3 (def_stmt
);
1897 if (TREE_CODE (op3
) != VECTOR_CST
)
1899 ident
= is_combined_permutation_identity (op3
, op2
);
1902 orig
= (ident
== 1) ? gimple_assign_rhs1 (def_stmt
)
1903 : gimple_assign_rhs2 (def_stmt
);
1904 gimple_assign_set_rhs1 (stmt
, unshare_expr (orig
));
1905 gimple_assign_set_rhs_code (stmt
, TREE_CODE (orig
));
1906 gimple_set_num_ops (stmt
, 2);
1908 return remove_prop_source_from_use (op0
) ? 2 : 1;
1911 /* Shuffle of a constructor. */
1912 else if (code
== CONSTRUCTOR
|| code
== VECTOR_CST
)
1918 if (TREE_CODE (op0
) == SSA_NAME
&& !single_use_op0
)
1921 if (TREE_CODE (op1
) == VECTOR_CST
)
1923 else if (TREE_CODE (op1
) == SSA_NAME
)
1925 enum tree_code code2
;
1927 gimple def_stmt2
= get_prop_source_stmt (op1
, true, NULL
);
1928 if (!def_stmt2
|| !can_propagate_from (def_stmt2
))
1931 code2
= gimple_assign_rhs_code (def_stmt2
);
1932 if (code2
!= CONSTRUCTOR
&& code2
!= VECTOR_CST
)
1934 arg1
= gimple_assign_rhs1 (def_stmt2
);
1941 /* Already used twice in this statement. */
1942 if (TREE_CODE (op0
) == SSA_NAME
&& num_imm_uses (op0
) > 2)
1946 opt
= fold_ternary (VEC_PERM_EXPR
, TREE_TYPE (op0
), arg0
, arg1
, op2
);
1948 || (TREE_CODE (opt
) != CONSTRUCTOR
&& TREE_CODE (opt
) != VECTOR_CST
))
1950 gimple_assign_set_rhs_from_tree (gsi
, opt
);
1951 update_stmt (gsi_stmt (*gsi
));
1952 if (TREE_CODE (op0
) == SSA_NAME
)
1953 ret
= remove_prop_source_from_use (op0
);
1954 if (op0
!= op1
&& TREE_CODE (op1
) == SSA_NAME
)
1955 ret
|= remove_prop_source_from_use (op1
);
1962 /* Recognize a VEC_PERM_EXPR. Returns true if there were any changes. */
1965 simplify_vector_constructor (gimple_stmt_iterator
*gsi
)
1967 gimple stmt
= gsi_stmt (*gsi
);
1969 tree op
, op2
, orig
, type
, elem_type
;
1970 unsigned elem_size
, nelts
, i
;
1971 enum tree_code code
;
1972 constructor_elt
*elt
;
1976 gcc_checking_assert (gimple_assign_rhs_code (stmt
) == CONSTRUCTOR
);
1978 op
= gimple_assign_rhs1 (stmt
);
1979 type
= TREE_TYPE (op
);
1980 gcc_checking_assert (TREE_CODE (type
) == VECTOR_TYPE
);
1982 nelts
= TYPE_VECTOR_SUBPARTS (type
);
1983 elem_type
= TREE_TYPE (type
);
1984 elem_size
= TREE_INT_CST_LOW (TYPE_SIZE (elem_type
));
1986 sel
= XALLOCAVEC (unsigned char, nelts
);
1989 FOR_EACH_VEC_SAFE_ELT (CONSTRUCTOR_ELTS (op
), i
, elt
)
1996 if (TREE_CODE (elt
->value
) != SSA_NAME
)
1998 def_stmt
= get_prop_source_stmt (elt
->value
, false, NULL
);
2001 code
= gimple_assign_rhs_code (def_stmt
);
2002 if (code
!= BIT_FIELD_REF
)
2004 op1
= gimple_assign_rhs1 (def_stmt
);
2005 ref
= TREE_OPERAND (op1
, 0);
2013 if (TREE_CODE (ref
) != SSA_NAME
)
2015 if (!useless_type_conversion_p (type
, TREE_TYPE (ref
)))
2019 if (TREE_INT_CST_LOW (TREE_OPERAND (op1
, 1)) != elem_size
)
2021 sel
[i
] = TREE_INT_CST_LOW (TREE_OPERAND (op1
, 2)) / elem_size
;
2022 if (sel
[i
] != i
) maybe_ident
= false;
2028 gimple_assign_set_rhs_from_tree (gsi
, orig
);
2031 tree mask_type
, *mask_elts
;
2033 if (!can_vec_perm_p (TYPE_MODE (type
), false, sel
))
2036 = build_vector_type (build_nonstandard_integer_type (elem_size
, 1),
2038 if (GET_MODE_CLASS (TYPE_MODE (mask_type
)) != MODE_VECTOR_INT
2039 || GET_MODE_SIZE (TYPE_MODE (mask_type
))
2040 != GET_MODE_SIZE (TYPE_MODE (type
)))
2042 mask_elts
= XALLOCAVEC (tree
, nelts
);
2043 for (i
= 0; i
< nelts
; i
++)
2044 mask_elts
[i
] = build_int_cst (TREE_TYPE (mask_type
), sel
[i
]);
2045 op2
= build_vector (mask_type
, mask_elts
);
2046 gimple_assign_set_rhs_with_ops_1 (gsi
, VEC_PERM_EXPR
, orig
, orig
, op2
);
2048 update_stmt (gsi_stmt (*gsi
));
2053 /* Primitive "lattice" function for gimple_simplify. */
2056 fwprop_ssa_val (tree name
)
2058 /* First valueize NAME. */
2059 if (TREE_CODE (name
) == SSA_NAME
2060 && SSA_NAME_VERSION (name
) < lattice
.length ())
2062 tree val
= lattice
[SSA_NAME_VERSION (name
)];
2066 /* We continue matching along SSA use-def edges for SSA names
2067 that are not single-use. Currently there are no patterns
2068 that would cause any issues with that. */
2072 /* Main entry point for the forward propagation and statement combine
2077 const pass_data pass_data_forwprop
=
2079 GIMPLE_PASS
, /* type */
2080 "forwprop", /* name */
2081 OPTGROUP_NONE
, /* optinfo_flags */
2082 TV_TREE_FORWPROP
, /* tv_id */
2083 ( PROP_cfg
| PROP_ssa
), /* properties_required */
2084 0, /* properties_provided */
2085 0, /* properties_destroyed */
2086 0, /* todo_flags_start */
2087 TODO_update_ssa
, /* todo_flags_finish */
2090 class pass_forwprop
: public gimple_opt_pass
2093 pass_forwprop (gcc::context
*ctxt
)
2094 : gimple_opt_pass (pass_data_forwprop
, ctxt
)
2097 /* opt_pass methods: */
2098 opt_pass
* clone () { return new pass_forwprop (m_ctxt
); }
2099 virtual bool gate (function
*) { return flag_tree_forwprop
; }
2100 virtual unsigned int execute (function
*);
2102 }; // class pass_forwprop
2105 pass_forwprop::execute (function
*fun
)
2107 unsigned int todoflags
= 0;
2109 cfg_changed
= false;
2111 /* Combine stmts with the stmts defining their operands. Do that
2112 in an order that guarantees visiting SSA defs before SSA uses. */
2113 lattice
.create (num_ssa_names
);
2114 lattice
.quick_grow_cleared (num_ssa_names
);
2115 int *postorder
= XNEWVEC (int, n_basic_blocks_for_fn (fun
));
2116 int postorder_num
= inverted_post_order_compute (postorder
);
2117 to_purge
= BITMAP_ALLOC (NULL
);
2118 for (int i
= 0; i
< postorder_num
; ++i
)
2120 gimple_stmt_iterator gsi
;
2121 basic_block bb
= BASIC_BLOCK_FOR_FN (fun
, postorder
[i
]);
2123 /* Apply forward propagation to all stmts in the basic-block.
2124 Note we update GSI within the loop as necessary. */
2125 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); )
2127 gimple stmt
= gsi_stmt (gsi
);
2129 enum tree_code code
;
2131 if (!is_gimple_assign (stmt
))
2137 lhs
= gimple_assign_lhs (stmt
);
2138 rhs
= gimple_assign_rhs1 (stmt
);
2139 code
= gimple_assign_rhs_code (stmt
);
2140 if (TREE_CODE (lhs
) != SSA_NAME
2141 || has_zero_uses (lhs
))
2147 /* If this statement sets an SSA_NAME to an address,
2148 try to propagate the address into the uses of the SSA_NAME. */
2149 if (code
== ADDR_EXPR
2150 /* Handle pointer conversions on invariant addresses
2151 as well, as this is valid gimple. */
2152 || (CONVERT_EXPR_CODE_P (code
)
2153 && TREE_CODE (rhs
) == ADDR_EXPR
2154 && POINTER_TYPE_P (TREE_TYPE (lhs
))))
2156 tree base
= get_base_address (TREE_OPERAND (rhs
, 0));
2159 || decl_address_invariant_p (base
))
2160 && !stmt_references_abnormal_ssa_name (stmt
)
2161 && forward_propagate_addr_expr (lhs
, rhs
, true))
2163 fwprop_invalidate_lattice (gimple_get_lhs (stmt
));
2164 release_defs (stmt
);
2165 gsi_remove (&gsi
, true);
2170 else if (code
== POINTER_PLUS_EXPR
)
2172 tree off
= gimple_assign_rhs2 (stmt
);
2173 if (TREE_CODE (off
) == INTEGER_CST
2174 && can_propagate_from (stmt
)
2175 && !simple_iv_increment_p (stmt
)
2176 /* ??? Better adjust the interface to that function
2177 instead of building new trees here. */
2178 && forward_propagate_addr_expr
2180 build1_loc (gimple_location (stmt
),
2181 ADDR_EXPR
, TREE_TYPE (rhs
),
2182 fold_build2 (MEM_REF
,
2183 TREE_TYPE (TREE_TYPE (rhs
)),
2185 fold_convert (ptr_type_node
,
2188 fwprop_invalidate_lattice (gimple_get_lhs (stmt
));
2189 release_defs (stmt
);
2190 gsi_remove (&gsi
, true);
2192 else if (is_gimple_min_invariant (rhs
))
2194 /* Make sure to fold &a[0] + off_1 here. */
2195 fold_stmt_inplace (&gsi
);
2197 if (gimple_assign_rhs_code (stmt
) == POINTER_PLUS_EXPR
)
2207 /* Combine stmts with the stmts defining their operands.
2208 Note we update GSI within the loop as necessary. */
2209 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
);)
2211 gimple stmt
= gsi_stmt (gsi
);
2212 gimple orig_stmt
= stmt
;
2213 bool changed
= false;
2215 /* Mark stmt as potentially needing revisiting. */
2216 gimple_set_plf (stmt
, GF_PLF_1
, false);
2218 if (fold_stmt (&gsi
, fwprop_ssa_val
))
2221 stmt
= gsi_stmt (gsi
);
2222 if (maybe_clean_or_replace_eh_stmt (orig_stmt
, stmt
))
2223 bitmap_set_bit (to_purge
, bb
->index
);
2224 /* Cleanup the CFG if we simplified a condition to
2226 if (gimple_code (stmt
) == GIMPLE_COND
2227 && (gimple_cond_true_p (stmt
)
2228 || gimple_cond_false_p (stmt
)))
2233 switch (gimple_code (stmt
))
2237 tree rhs1
= gimple_assign_rhs1 (stmt
);
2238 enum tree_code code
= gimple_assign_rhs_code (stmt
);
2240 if (code
== COND_EXPR
2241 || code
== VEC_COND_EXPR
)
2243 /* In this case the entire COND_EXPR is in rhs1. */
2244 if (forward_propagate_into_cond (&gsi
))
2247 stmt
= gsi_stmt (gsi
);
2250 else if (TREE_CODE_CLASS (code
) == tcc_comparison
)
2253 did_something
= forward_propagate_into_comparison (&gsi
);
2254 if (did_something
== 2)
2256 changed
= did_something
!= 0;
2258 else if ((code
== PLUS_EXPR
2259 || code
== BIT_IOR_EXPR
2260 || code
== BIT_XOR_EXPR
)
2261 && simplify_rotate (&gsi
))
2263 else if (code
== VEC_PERM_EXPR
)
2265 int did_something
= simplify_permutation (&gsi
);
2266 if (did_something
== 2)
2268 changed
= did_something
!= 0;
2270 else if (code
== BIT_FIELD_REF
)
2271 changed
= simplify_bitfield_ref (&gsi
);
2272 else if (code
== CONSTRUCTOR
2273 && TREE_CODE (TREE_TYPE (rhs1
)) == VECTOR_TYPE
)
2274 changed
= simplify_vector_constructor (&gsi
);
2279 changed
= simplify_gimple_switch (stmt
);
2285 did_something
= forward_propagate_into_gimple_cond (stmt
);
2286 if (did_something
== 2)
2288 changed
= did_something
!= 0;
2294 tree callee
= gimple_call_fndecl (stmt
);
2295 if (callee
!= NULL_TREE
2296 && DECL_BUILT_IN_CLASS (callee
) == BUILT_IN_NORMAL
)
2297 changed
= simplify_builtin_call (&gsi
, callee
);
2306 /* If the stmt changed then re-visit it and the statements
2307 inserted before it. */
2308 for (; !gsi_end_p (gsi
); gsi_prev (&gsi
))
2309 if (gimple_plf (gsi_stmt (gsi
), GF_PLF_1
))
2311 if (gsi_end_p (gsi
))
2312 gsi
= gsi_start_bb (bb
);
2318 /* Stmt no longer needs to be revisited. */
2319 gimple_set_plf (stmt
, GF_PLF_1
, true);
2321 /* Fill up the lattice. */
2322 if (gimple_assign_single_p (stmt
))
2324 tree lhs
= gimple_assign_lhs (stmt
);
2325 tree rhs
= gimple_assign_rhs1 (stmt
);
2326 if (TREE_CODE (lhs
) == SSA_NAME
)
2329 if (TREE_CODE (rhs
) == SSA_NAME
)
2330 val
= fwprop_ssa_val (rhs
);
2331 else if (is_gimple_min_invariant (rhs
))
2333 fwprop_set_lattice_val (lhs
, val
);
2344 cfg_changed
|= gimple_purge_all_dead_eh_edges (to_purge
);
2345 BITMAP_FREE (to_purge
);
2348 todoflags
|= TODO_cleanup_cfg
;
2356 make_pass_forwprop (gcc::context
*ctxt
)
2358 return new pass_forwprop (ctxt
);