PR c++/85952
[official-gcc.git] / gcc / gimple-fold.c
blobcd1ab8058b4972a1a5d30de9d15b820b9730558e
1 /* Statement simplification on GIMPLE.
2 Copyright (C) 2010-2018 Free Software Foundation, Inc.
3 Split out from tree-ssa-ccp.c.
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it
8 under the terms of the GNU General Public License as published by the
9 Free Software Foundation; either version 3, or (at your option) any
10 later version.
12 GCC is distributed in the hope that it will be useful, but WITHOUT
13 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
21 #include "config.h"
22 #include "system.h"
23 #include "coretypes.h"
24 #include "backend.h"
25 #include "target.h"
26 #include "rtl.h"
27 #include "tree.h"
28 #include "gimple.h"
29 #include "predict.h"
30 #include "ssa.h"
31 #include "cgraph.h"
32 #include "gimple-pretty-print.h"
33 #include "gimple-ssa-warn-restrict.h"
34 #include "fold-const.h"
35 #include "stmt.h"
36 #include "expr.h"
37 #include "stor-layout.h"
38 #include "dumpfile.h"
39 #include "gimple-fold.h"
40 #include "gimplify.h"
41 #include "gimple-iterator.h"
42 #include "tree-into-ssa.h"
43 #include "tree-dfa.h"
44 #include "tree-object-size.h"
45 #include "tree-ssa.h"
46 #include "tree-ssa-propagate.h"
47 #include "ipa-utils.h"
48 #include "tree-ssa-address.h"
49 #include "langhooks.h"
50 #include "gimplify-me.h"
51 #include "dbgcnt.h"
52 #include "builtins.h"
53 #include "tree-eh.h"
54 #include "gimple-match.h"
55 #include "gomp-constants.h"
56 #include "optabs-query.h"
57 #include "omp-general.h"
58 #include "ipa-chkp.h"
59 #include "tree-cfg.h"
60 #include "fold-const-call.h"
61 #include "stringpool.h"
62 #include "attribs.h"
63 #include "asan.h"
64 #include "diagnostic-core.h"
65 #include "intl.h"
66 #include "calls.h"
67 #include "tree-vector-builder.h"
68 #include "tree-ssa-strlen.h"
70 /* Return true when DECL can be referenced from current unit.
71 FROM_DECL (if non-null) specify constructor of variable DECL was taken from.
72 We can get declarations that are not possible to reference for various
73 reasons:
75 1) When analyzing C++ virtual tables.
76 C++ virtual tables do have known constructors even
77 when they are keyed to other compilation unit.
78 Those tables can contain pointers to methods and vars
79 in other units. Those methods have both STATIC and EXTERNAL
80 set.
81 2) In WHOPR mode devirtualization might lead to reference
82 to method that was partitioned elsehwere.
83 In this case we have static VAR_DECL or FUNCTION_DECL
84 that has no corresponding callgraph/varpool node
85 declaring the body.
86 3) COMDAT functions referred by external vtables that
87 we devirtualize only during final compilation stage.
88 At this time we already decided that we will not output
89 the function body and thus we can't reference the symbol
90 directly. */
92 static bool
93 can_refer_decl_in_current_unit_p (tree decl, tree from_decl)
95 varpool_node *vnode;
96 struct cgraph_node *node;
97 symtab_node *snode;
99 if (DECL_ABSTRACT_P (decl))
100 return false;
102 /* We are concerned only about static/external vars and functions. */
103 if ((!TREE_STATIC (decl) && !DECL_EXTERNAL (decl))
104 || !VAR_OR_FUNCTION_DECL_P (decl))
105 return true;
107 /* Static objects can be referred only if they was not optimized out yet. */
108 if (!TREE_PUBLIC (decl) && !DECL_EXTERNAL (decl))
110 /* Before we start optimizing unreachable code we can be sure all
111 static objects are defined. */
112 if (symtab->function_flags_ready)
113 return true;
114 snode = symtab_node::get (decl);
115 if (!snode || !snode->definition)
116 return false;
117 node = dyn_cast <cgraph_node *> (snode);
118 return !node || !node->global.inlined_to;
121 /* We will later output the initializer, so we can refer to it.
122 So we are concerned only when DECL comes from initializer of
123 external var or var that has been optimized out. */
124 if (!from_decl
125 || !VAR_P (from_decl)
126 || (!DECL_EXTERNAL (from_decl)
127 && (vnode = varpool_node::get (from_decl)) != NULL
128 && vnode->definition)
129 || (flag_ltrans
130 && (vnode = varpool_node::get (from_decl)) != NULL
131 && vnode->in_other_partition))
132 return true;
133 /* We are folding reference from external vtable. The vtable may reffer
134 to a symbol keyed to other compilation unit. The other compilation
135 unit may be in separate DSO and the symbol may be hidden. */
136 if (DECL_VISIBILITY_SPECIFIED (decl)
137 && DECL_EXTERNAL (decl)
138 && DECL_VISIBILITY (decl) != VISIBILITY_DEFAULT
139 && (!(snode = symtab_node::get (decl)) || !snode->in_other_partition))
140 return false;
141 /* When function is public, we always can introduce new reference.
142 Exception are the COMDAT functions where introducing a direct
143 reference imply need to include function body in the curren tunit. */
144 if (TREE_PUBLIC (decl) && !DECL_COMDAT (decl))
145 return true;
146 /* We have COMDAT. We are going to check if we still have definition
147 or if the definition is going to be output in other partition.
148 Bypass this when gimplifying; all needed functions will be produced.
150 As observed in PR20991 for already optimized out comdat virtual functions
151 it may be tempting to not necessarily give up because the copy will be
152 output elsewhere when corresponding vtable is output.
153 This is however not possible - ABI specify that COMDATs are output in
154 units where they are used and when the other unit was compiled with LTO
155 it is possible that vtable was kept public while the function itself
156 was privatized. */
157 if (!symtab->function_flags_ready)
158 return true;
160 snode = symtab_node::get (decl);
161 if (!snode
162 || ((!snode->definition || DECL_EXTERNAL (decl))
163 && (!snode->in_other_partition
164 || (!snode->forced_by_abi && !snode->force_output))))
165 return false;
166 node = dyn_cast <cgraph_node *> (snode);
167 return !node || !node->global.inlined_to;
170 /* Create a temporary for TYPE for a statement STMT. If the current function
171 is in SSA form, a SSA name is created. Otherwise a temporary register
172 is made. */
174 tree
175 create_tmp_reg_or_ssa_name (tree type, gimple *stmt)
177 if (gimple_in_ssa_p (cfun))
178 return make_ssa_name (type, stmt);
179 else
180 return create_tmp_reg (type);
183 /* CVAL is value taken from DECL_INITIAL of variable. Try to transform it into
184 acceptable form for is_gimple_min_invariant.
185 FROM_DECL (if non-NULL) specify variable whose constructor contains CVAL. */
187 tree
188 canonicalize_constructor_val (tree cval, tree from_decl)
190 tree orig_cval = cval;
191 STRIP_NOPS (cval);
192 if (TREE_CODE (cval) == POINTER_PLUS_EXPR
193 && TREE_CODE (TREE_OPERAND (cval, 1)) == INTEGER_CST)
195 tree ptr = TREE_OPERAND (cval, 0);
196 if (is_gimple_min_invariant (ptr))
197 cval = build1_loc (EXPR_LOCATION (cval),
198 ADDR_EXPR, TREE_TYPE (ptr),
199 fold_build2 (MEM_REF, TREE_TYPE (TREE_TYPE (ptr)),
200 ptr,
201 fold_convert (ptr_type_node,
202 TREE_OPERAND (cval, 1))));
204 if (TREE_CODE (cval) == ADDR_EXPR)
206 tree base = NULL_TREE;
207 if (TREE_CODE (TREE_OPERAND (cval, 0)) == COMPOUND_LITERAL_EXPR)
209 base = COMPOUND_LITERAL_EXPR_DECL (TREE_OPERAND (cval, 0));
210 if (base)
211 TREE_OPERAND (cval, 0) = base;
213 else
214 base = get_base_address (TREE_OPERAND (cval, 0));
215 if (!base)
216 return NULL_TREE;
218 if (VAR_OR_FUNCTION_DECL_P (base)
219 && !can_refer_decl_in_current_unit_p (base, from_decl))
220 return NULL_TREE;
221 if (TREE_TYPE (base) == error_mark_node)
222 return NULL_TREE;
223 if (VAR_P (base))
224 TREE_ADDRESSABLE (base) = 1;
225 else if (TREE_CODE (base) == FUNCTION_DECL)
227 /* Make sure we create a cgraph node for functions we'll reference.
228 They can be non-existent if the reference comes from an entry
229 of an external vtable for example. */
230 cgraph_node::get_create (base);
232 /* Fixup types in global initializers. */
233 if (TREE_TYPE (TREE_TYPE (cval)) != TREE_TYPE (TREE_OPERAND (cval, 0)))
234 cval = build_fold_addr_expr (TREE_OPERAND (cval, 0));
236 if (!useless_type_conversion_p (TREE_TYPE (orig_cval), TREE_TYPE (cval)))
237 cval = fold_convert (TREE_TYPE (orig_cval), cval);
238 return cval;
240 if (TREE_OVERFLOW_P (cval))
241 return drop_tree_overflow (cval);
242 return orig_cval;
245 /* If SYM is a constant variable with known value, return the value.
246 NULL_TREE is returned otherwise. */
248 tree
249 get_symbol_constant_value (tree sym)
251 tree val = ctor_for_folding (sym);
252 if (val != error_mark_node)
254 if (val)
256 val = canonicalize_constructor_val (unshare_expr (val), sym);
257 if (val && is_gimple_min_invariant (val))
258 return val;
259 else
260 return NULL_TREE;
262 /* Variables declared 'const' without an initializer
263 have zero as the initializer if they may not be
264 overridden at link or run time. */
265 if (!val
266 && is_gimple_reg_type (TREE_TYPE (sym)))
267 return build_zero_cst (TREE_TYPE (sym));
270 return NULL_TREE;
275 /* Subroutine of fold_stmt. We perform several simplifications of the
276 memory reference tree EXPR and make sure to re-gimplify them properly
277 after propagation of constant addresses. IS_LHS is true if the
278 reference is supposed to be an lvalue. */
280 static tree
281 maybe_fold_reference (tree expr, bool is_lhs)
283 tree result;
285 if ((TREE_CODE (expr) == VIEW_CONVERT_EXPR
286 || TREE_CODE (expr) == REALPART_EXPR
287 || TREE_CODE (expr) == IMAGPART_EXPR)
288 && CONSTANT_CLASS_P (TREE_OPERAND (expr, 0)))
289 return fold_unary_loc (EXPR_LOCATION (expr),
290 TREE_CODE (expr),
291 TREE_TYPE (expr),
292 TREE_OPERAND (expr, 0));
293 else if (TREE_CODE (expr) == BIT_FIELD_REF
294 && CONSTANT_CLASS_P (TREE_OPERAND (expr, 0)))
295 return fold_ternary_loc (EXPR_LOCATION (expr),
296 TREE_CODE (expr),
297 TREE_TYPE (expr),
298 TREE_OPERAND (expr, 0),
299 TREE_OPERAND (expr, 1),
300 TREE_OPERAND (expr, 2));
302 if (!is_lhs
303 && (result = fold_const_aggregate_ref (expr))
304 && is_gimple_min_invariant (result))
305 return result;
307 return NULL_TREE;
311 /* Attempt to fold an assignment statement pointed-to by SI. Returns a
312 replacement rhs for the statement or NULL_TREE if no simplification
313 could be made. It is assumed that the operands have been previously
314 folded. */
316 static tree
317 fold_gimple_assign (gimple_stmt_iterator *si)
319 gimple *stmt = gsi_stmt (*si);
320 enum tree_code subcode = gimple_assign_rhs_code (stmt);
321 location_t loc = gimple_location (stmt);
323 tree result = NULL_TREE;
325 switch (get_gimple_rhs_class (subcode))
327 case GIMPLE_SINGLE_RHS:
329 tree rhs = gimple_assign_rhs1 (stmt);
331 if (TREE_CLOBBER_P (rhs))
332 return NULL_TREE;
334 if (REFERENCE_CLASS_P (rhs))
335 return maybe_fold_reference (rhs, false);
337 else if (TREE_CODE (rhs) == OBJ_TYPE_REF)
339 tree val = OBJ_TYPE_REF_EXPR (rhs);
340 if (is_gimple_min_invariant (val))
341 return val;
342 else if (flag_devirtualize && virtual_method_call_p (rhs))
344 bool final;
345 vec <cgraph_node *>targets
346 = possible_polymorphic_call_targets (rhs, stmt, &final);
347 if (final && targets.length () <= 1 && dbg_cnt (devirt))
349 if (dump_enabled_p ())
351 location_t loc = gimple_location_safe (stmt);
352 dump_printf_loc (MSG_OPTIMIZED_LOCATIONS, loc,
353 "resolving virtual function address "
354 "reference to function %s\n",
355 targets.length () == 1
356 ? targets[0]->name ()
357 : "NULL");
359 if (targets.length () == 1)
361 val = fold_convert (TREE_TYPE (val),
362 build_fold_addr_expr_loc
363 (loc, targets[0]->decl));
364 STRIP_USELESS_TYPE_CONVERSION (val);
366 else
367 /* We can not use __builtin_unreachable here because it
368 can not have address taken. */
369 val = build_int_cst (TREE_TYPE (val), 0);
370 return val;
375 else if (TREE_CODE (rhs) == ADDR_EXPR)
377 tree ref = TREE_OPERAND (rhs, 0);
378 tree tem = maybe_fold_reference (ref, true);
379 if (tem
380 && TREE_CODE (tem) == MEM_REF
381 && integer_zerop (TREE_OPERAND (tem, 1)))
382 result = fold_convert (TREE_TYPE (rhs), TREE_OPERAND (tem, 0));
383 else if (tem)
384 result = fold_convert (TREE_TYPE (rhs),
385 build_fold_addr_expr_loc (loc, tem));
386 else if (TREE_CODE (ref) == MEM_REF
387 && integer_zerop (TREE_OPERAND (ref, 1)))
388 result = fold_convert (TREE_TYPE (rhs), TREE_OPERAND (ref, 0));
390 if (result)
392 /* Strip away useless type conversions. Both the
393 NON_LVALUE_EXPR that may have been added by fold, and
394 "useless" type conversions that might now be apparent
395 due to propagation. */
396 STRIP_USELESS_TYPE_CONVERSION (result);
398 if (result != rhs && valid_gimple_rhs_p (result))
399 return result;
403 else if (TREE_CODE (rhs) == CONSTRUCTOR
404 && TREE_CODE (TREE_TYPE (rhs)) == VECTOR_TYPE)
406 /* Fold a constant vector CONSTRUCTOR to VECTOR_CST. */
407 unsigned i;
408 tree val;
410 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (rhs), i, val)
411 if (! CONSTANT_CLASS_P (val))
412 return NULL_TREE;
414 return build_vector_from_ctor (TREE_TYPE (rhs),
415 CONSTRUCTOR_ELTS (rhs));
418 else if (DECL_P (rhs))
419 return get_symbol_constant_value (rhs);
421 break;
423 case GIMPLE_UNARY_RHS:
424 break;
426 case GIMPLE_BINARY_RHS:
427 break;
429 case GIMPLE_TERNARY_RHS:
430 result = fold_ternary_loc (loc, subcode,
431 TREE_TYPE (gimple_assign_lhs (stmt)),
432 gimple_assign_rhs1 (stmt),
433 gimple_assign_rhs2 (stmt),
434 gimple_assign_rhs3 (stmt));
436 if (result)
438 STRIP_USELESS_TYPE_CONVERSION (result);
439 if (valid_gimple_rhs_p (result))
440 return result;
442 break;
444 case GIMPLE_INVALID_RHS:
445 gcc_unreachable ();
448 return NULL_TREE;
452 /* Replace a statement at *SI_P with a sequence of statements in STMTS,
453 adjusting the replacement stmts location and virtual operands.
454 If the statement has a lhs the last stmt in the sequence is expected
455 to assign to that lhs. */
457 static void
458 gsi_replace_with_seq_vops (gimple_stmt_iterator *si_p, gimple_seq stmts)
460 gimple *stmt = gsi_stmt (*si_p);
462 if (gimple_has_location (stmt))
463 annotate_all_with_location (stmts, gimple_location (stmt));
465 /* First iterate over the replacement statements backward, assigning
466 virtual operands to their defining statements. */
467 gimple *laststore = NULL;
468 for (gimple_stmt_iterator i = gsi_last (stmts);
469 !gsi_end_p (i); gsi_prev (&i))
471 gimple *new_stmt = gsi_stmt (i);
472 if ((gimple_assign_single_p (new_stmt)
473 && !is_gimple_reg (gimple_assign_lhs (new_stmt)))
474 || (is_gimple_call (new_stmt)
475 && (gimple_call_flags (new_stmt)
476 & (ECF_NOVOPS | ECF_PURE | ECF_CONST | ECF_NORETURN)) == 0))
478 tree vdef;
479 if (!laststore)
480 vdef = gimple_vdef (stmt);
481 else
482 vdef = make_ssa_name (gimple_vop (cfun), new_stmt);
483 gimple_set_vdef (new_stmt, vdef);
484 if (vdef && TREE_CODE (vdef) == SSA_NAME)
485 SSA_NAME_DEF_STMT (vdef) = new_stmt;
486 laststore = new_stmt;
490 /* Second iterate over the statements forward, assigning virtual
491 operands to their uses. */
492 tree reaching_vuse = gimple_vuse (stmt);
493 for (gimple_stmt_iterator i = gsi_start (stmts);
494 !gsi_end_p (i); gsi_next (&i))
496 gimple *new_stmt = gsi_stmt (i);
497 /* If the new statement possibly has a VUSE, update it with exact SSA
498 name we know will reach this one. */
499 if (gimple_has_mem_ops (new_stmt))
500 gimple_set_vuse (new_stmt, reaching_vuse);
501 gimple_set_modified (new_stmt, true);
502 if (gimple_vdef (new_stmt))
503 reaching_vuse = gimple_vdef (new_stmt);
506 /* If the new sequence does not do a store release the virtual
507 definition of the original statement. */
508 if (reaching_vuse
509 && reaching_vuse == gimple_vuse (stmt))
511 tree vdef = gimple_vdef (stmt);
512 if (vdef
513 && TREE_CODE (vdef) == SSA_NAME)
515 unlink_stmt_vdef (stmt);
516 release_ssa_name (vdef);
520 /* Finally replace the original statement with the sequence. */
521 gsi_replace_with_seq (si_p, stmts, false);
524 /* Convert EXPR into a GIMPLE value suitable for substitution on the
525 RHS of an assignment. Insert the necessary statements before
526 iterator *SI_P. The statement at *SI_P, which must be a GIMPLE_CALL
527 is replaced. If the call is expected to produces a result, then it
528 is replaced by an assignment of the new RHS to the result variable.
529 If the result is to be ignored, then the call is replaced by a
530 GIMPLE_NOP. A proper VDEF chain is retained by making the first
531 VUSE and the last VDEF of the whole sequence be the same as the replaced
532 statement and using new SSA names for stores in between. */
534 void
535 gimplify_and_update_call_from_tree (gimple_stmt_iterator *si_p, tree expr)
537 tree lhs;
538 gimple *stmt, *new_stmt;
539 gimple_stmt_iterator i;
540 gimple_seq stmts = NULL;
542 stmt = gsi_stmt (*si_p);
544 gcc_assert (is_gimple_call (stmt));
546 push_gimplify_context (gimple_in_ssa_p (cfun));
548 lhs = gimple_call_lhs (stmt);
549 if (lhs == NULL_TREE)
551 gimplify_and_add (expr, &stmts);
552 /* We can end up with folding a memcpy of an empty class assignment
553 which gets optimized away by C++ gimplification. */
554 if (gimple_seq_empty_p (stmts))
556 pop_gimplify_context (NULL);
557 if (gimple_in_ssa_p (cfun))
559 unlink_stmt_vdef (stmt);
560 release_defs (stmt);
562 gsi_replace (si_p, gimple_build_nop (), false);
563 return;
566 else
568 tree tmp = force_gimple_operand (expr, &stmts, false, NULL_TREE);
569 new_stmt = gimple_build_assign (lhs, tmp);
570 i = gsi_last (stmts);
571 gsi_insert_after_without_update (&i, new_stmt,
572 GSI_CONTINUE_LINKING);
575 pop_gimplify_context (NULL);
577 gsi_replace_with_seq_vops (si_p, stmts);
581 /* Replace the call at *GSI with the gimple value VAL. */
583 void
584 replace_call_with_value (gimple_stmt_iterator *gsi, tree val)
586 gimple *stmt = gsi_stmt (*gsi);
587 tree lhs = gimple_call_lhs (stmt);
588 gimple *repl;
589 if (lhs)
591 if (!useless_type_conversion_p (TREE_TYPE (lhs), TREE_TYPE (val)))
592 val = fold_convert (TREE_TYPE (lhs), val);
593 repl = gimple_build_assign (lhs, val);
595 else
596 repl = gimple_build_nop ();
597 tree vdef = gimple_vdef (stmt);
598 if (vdef && TREE_CODE (vdef) == SSA_NAME)
600 unlink_stmt_vdef (stmt);
601 release_ssa_name (vdef);
603 gsi_replace (gsi, repl, false);
606 /* Replace the call at *GSI with the new call REPL and fold that
607 again. */
609 static void
610 replace_call_with_call_and_fold (gimple_stmt_iterator *gsi, gimple *repl)
612 gimple *stmt = gsi_stmt (*gsi);
613 gimple_call_set_lhs (repl, gimple_call_lhs (stmt));
614 gimple_set_location (repl, gimple_location (stmt));
615 if (gimple_vdef (stmt)
616 && TREE_CODE (gimple_vdef (stmt)) == SSA_NAME)
618 gimple_set_vdef (repl, gimple_vdef (stmt));
619 SSA_NAME_DEF_STMT (gimple_vdef (repl)) = repl;
621 if (gimple_vuse (stmt))
622 gimple_set_vuse (repl, gimple_vuse (stmt));
623 gsi_replace (gsi, repl, false);
624 fold_stmt (gsi);
627 /* Return true if VAR is a VAR_DECL or a component thereof. */
629 static bool
630 var_decl_component_p (tree var)
632 tree inner = var;
633 while (handled_component_p (inner))
634 inner = TREE_OPERAND (inner, 0);
635 return SSA_VAR_P (inner);
638 /* If the SIZE argument representing the size of an object is in a range
639 of values of which exactly one is valid (and that is zero), return
640 true, otherwise false. */
642 static bool
643 size_must_be_zero_p (tree size)
645 if (integer_zerop (size))
646 return true;
648 if (TREE_CODE (size) != SSA_NAME)
649 return false;
651 wide_int min, max;
652 enum value_range_type rtype = get_range_info (size, &min, &max);
653 if (rtype != VR_ANTI_RANGE)
654 return false;
656 tree type = TREE_TYPE (size);
657 int prec = TYPE_PRECISION (type);
659 wide_int wone = wi::one (prec);
661 /* Compute the value of SSIZE_MAX, the largest positive value that
662 can be stored in ssize_t, the signed counterpart of size_t. */
663 wide_int ssize_max = wi::lshift (wi::one (prec), prec - 1) - 1;
665 return wi::eq_p (min, wone) && wi::geu_p (max, ssize_max);
668 /* Fold function call to builtin mem{{,p}cpy,move}. Try to detect and
669 diagnose (otherwise undefined) overlapping copies without preventing
670 folding. When folded, GCC guarantees that overlapping memcpy has
671 the same semantics as memmove. Call to the library memcpy need not
672 provide the same guarantee. Return false if no simplification can
673 be made. */
675 static bool
676 gimple_fold_builtin_memory_op (gimple_stmt_iterator *gsi,
677 tree dest, tree src, int endp)
679 gimple *stmt = gsi_stmt (*gsi);
680 tree lhs = gimple_call_lhs (stmt);
681 tree len = gimple_call_arg (stmt, 2);
682 tree destvar, srcvar;
683 location_t loc = gimple_location (stmt);
685 bool nowarn = gimple_no_warning_p (stmt);
687 /* If the LEN parameter is a constant zero or in range where
688 the only valid value is zero, return DEST. */
689 if (size_must_be_zero_p (len))
691 gimple *repl;
692 if (gimple_call_lhs (stmt))
693 repl = gimple_build_assign (gimple_call_lhs (stmt), dest);
694 else
695 repl = gimple_build_nop ();
696 tree vdef = gimple_vdef (stmt);
697 if (vdef && TREE_CODE (vdef) == SSA_NAME)
699 unlink_stmt_vdef (stmt);
700 release_ssa_name (vdef);
702 gsi_replace (gsi, repl, false);
703 return true;
706 /* If SRC and DEST are the same (and not volatile), return
707 DEST{,+LEN,+LEN-1}. */
708 if (operand_equal_p (src, dest, 0))
710 /* Avoid diagnosing exact overlap in calls to __builtin_memcpy.
711 It's safe and may even be emitted by GCC itself (see bug
712 32667). */
713 unlink_stmt_vdef (stmt);
714 if (gimple_vdef (stmt) && TREE_CODE (gimple_vdef (stmt)) == SSA_NAME)
715 release_ssa_name (gimple_vdef (stmt));
716 if (!lhs)
718 gsi_replace (gsi, gimple_build_nop (), false);
719 return true;
721 goto done;
723 else
725 tree srctype, desttype;
726 unsigned int src_align, dest_align;
727 tree off0;
729 /* Inlining of memcpy/memmove may cause bounds lost (if we copy
730 pointers as wide integer) and also may result in huge function
731 size because of inlined bounds copy. Thus don't inline for
732 functions we want to instrument. */
733 if (flag_check_pointer_bounds
734 && chkp_instrumentable_p (cfun->decl)
735 /* Even if data may contain pointers we can inline if copy
736 less than a pointer size. */
737 && (!tree_fits_uhwi_p (len)
738 || compare_tree_int (len, POINTER_SIZE_UNITS) >= 0))
739 return false;
741 /* Build accesses at offset zero with a ref-all character type. */
742 off0 = build_int_cst (build_pointer_type_for_mode (char_type_node,
743 ptr_mode, true), 0);
745 /* If we can perform the copy efficiently with first doing all loads
746 and then all stores inline it that way. Currently efficiently
747 means that we can load all the memory into a single integer
748 register which is what MOVE_MAX gives us. */
749 src_align = get_pointer_alignment (src);
750 dest_align = get_pointer_alignment (dest);
751 if (tree_fits_uhwi_p (len)
752 && compare_tree_int (len, MOVE_MAX) <= 0
753 /* ??? Don't transform copies from strings with known length this
754 confuses the tree-ssa-strlen.c. This doesn't handle
755 the case in gcc.dg/strlenopt-8.c which is XFAILed for that
756 reason. */
757 && !c_strlen (src, 2))
759 unsigned ilen = tree_to_uhwi (len);
760 if (pow2p_hwi (ilen))
762 /* Detect invalid bounds and overlapping copies and issue
763 either -Warray-bounds or -Wrestrict. */
764 if (!nowarn
765 && check_bounds_or_overlap (as_a <gcall *>(stmt),
766 dest, src, len, len))
767 gimple_set_no_warning (stmt, true);
769 scalar_int_mode mode;
770 tree type = lang_hooks.types.type_for_size (ilen * 8, 1);
771 if (type
772 && is_a <scalar_int_mode> (TYPE_MODE (type), &mode)
773 && GET_MODE_SIZE (mode) * BITS_PER_UNIT == ilen * 8
774 /* If the destination pointer is not aligned we must be able
775 to emit an unaligned store. */
776 && (dest_align >= GET_MODE_ALIGNMENT (mode)
777 || !targetm.slow_unaligned_access (mode, dest_align)
778 || (optab_handler (movmisalign_optab, mode)
779 != CODE_FOR_nothing)))
781 tree srctype = type;
782 tree desttype = type;
783 if (src_align < GET_MODE_ALIGNMENT (mode))
784 srctype = build_aligned_type (type, src_align);
785 tree srcmem = fold_build2 (MEM_REF, srctype, src, off0);
786 tree tem = fold_const_aggregate_ref (srcmem);
787 if (tem)
788 srcmem = tem;
789 else if (src_align < GET_MODE_ALIGNMENT (mode)
790 && targetm.slow_unaligned_access (mode, src_align)
791 && (optab_handler (movmisalign_optab, mode)
792 == CODE_FOR_nothing))
793 srcmem = NULL_TREE;
794 if (srcmem)
796 gimple *new_stmt;
797 if (is_gimple_reg_type (TREE_TYPE (srcmem)))
799 new_stmt = gimple_build_assign (NULL_TREE, srcmem);
800 srcmem
801 = create_tmp_reg_or_ssa_name (TREE_TYPE (srcmem),
802 new_stmt);
803 gimple_assign_set_lhs (new_stmt, srcmem);
804 gimple_set_vuse (new_stmt, gimple_vuse (stmt));
805 gsi_insert_before (gsi, new_stmt, GSI_SAME_STMT);
807 if (dest_align < GET_MODE_ALIGNMENT (mode))
808 desttype = build_aligned_type (type, dest_align);
809 new_stmt
810 = gimple_build_assign (fold_build2 (MEM_REF, desttype,
811 dest, off0),
812 srcmem);
813 gimple_set_vuse (new_stmt, gimple_vuse (stmt));
814 gimple_set_vdef (new_stmt, gimple_vdef (stmt));
815 if (gimple_vdef (new_stmt)
816 && TREE_CODE (gimple_vdef (new_stmt)) == SSA_NAME)
817 SSA_NAME_DEF_STMT (gimple_vdef (new_stmt)) = new_stmt;
818 if (!lhs)
820 gsi_replace (gsi, new_stmt, false);
821 return true;
823 gsi_insert_before (gsi, new_stmt, GSI_SAME_STMT);
824 goto done;
830 if (endp == 3)
832 /* Both DEST and SRC must be pointer types.
833 ??? This is what old code did. Is the testing for pointer types
834 really mandatory?
836 If either SRC is readonly or length is 1, we can use memcpy. */
837 if (!dest_align || !src_align)
838 return false;
839 if (readonly_data_expr (src)
840 || (tree_fits_uhwi_p (len)
841 && (MIN (src_align, dest_align) / BITS_PER_UNIT
842 >= tree_to_uhwi (len))))
844 tree fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
845 if (!fn)
846 return false;
847 gimple_call_set_fndecl (stmt, fn);
848 gimple_call_set_arg (stmt, 0, dest);
849 gimple_call_set_arg (stmt, 1, src);
850 fold_stmt (gsi);
851 return true;
854 /* If *src and *dest can't overlap, optimize into memcpy as well. */
855 if (TREE_CODE (src) == ADDR_EXPR
856 && TREE_CODE (dest) == ADDR_EXPR)
858 tree src_base, dest_base, fn;
859 poly_int64 src_offset = 0, dest_offset = 0;
860 poly_uint64 maxsize;
862 srcvar = TREE_OPERAND (src, 0);
863 src_base = get_addr_base_and_unit_offset (srcvar, &src_offset);
864 if (src_base == NULL)
865 src_base = srcvar;
866 destvar = TREE_OPERAND (dest, 0);
867 dest_base = get_addr_base_and_unit_offset (destvar,
868 &dest_offset);
869 if (dest_base == NULL)
870 dest_base = destvar;
871 if (!poly_int_tree_p (len, &maxsize))
872 maxsize = -1;
873 if (SSA_VAR_P (src_base)
874 && SSA_VAR_P (dest_base))
876 if (operand_equal_p (src_base, dest_base, 0)
877 && ranges_maybe_overlap_p (src_offset, maxsize,
878 dest_offset, maxsize))
879 return false;
881 else if (TREE_CODE (src_base) == MEM_REF
882 && TREE_CODE (dest_base) == MEM_REF)
884 if (! operand_equal_p (TREE_OPERAND (src_base, 0),
885 TREE_OPERAND (dest_base, 0), 0))
886 return false;
887 poly_offset_int full_src_offset
888 = mem_ref_offset (src_base) + src_offset;
889 poly_offset_int full_dest_offset
890 = mem_ref_offset (dest_base) + dest_offset;
891 if (ranges_maybe_overlap_p (full_src_offset, maxsize,
892 full_dest_offset, maxsize))
893 return false;
895 else
896 return false;
898 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
899 if (!fn)
900 return false;
901 gimple_call_set_fndecl (stmt, fn);
902 gimple_call_set_arg (stmt, 0, dest);
903 gimple_call_set_arg (stmt, 1, src);
904 fold_stmt (gsi);
905 return true;
908 /* If the destination and source do not alias optimize into
909 memcpy as well. */
910 if ((is_gimple_min_invariant (dest)
911 || TREE_CODE (dest) == SSA_NAME)
912 && (is_gimple_min_invariant (src)
913 || TREE_CODE (src) == SSA_NAME))
915 ao_ref destr, srcr;
916 ao_ref_init_from_ptr_and_size (&destr, dest, len);
917 ao_ref_init_from_ptr_and_size (&srcr, src, len);
918 if (!refs_may_alias_p_1 (&destr, &srcr, false))
920 tree fn;
921 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
922 if (!fn)
923 return false;
924 gimple_call_set_fndecl (stmt, fn);
925 gimple_call_set_arg (stmt, 0, dest);
926 gimple_call_set_arg (stmt, 1, src);
927 fold_stmt (gsi);
928 return true;
932 return false;
935 if (!tree_fits_shwi_p (len))
936 return false;
937 if (!POINTER_TYPE_P (TREE_TYPE (src))
938 || !POINTER_TYPE_P (TREE_TYPE (dest)))
939 return false;
940 /* In the following try to find a type that is most natural to be
941 used for the memcpy source and destination and that allows
942 the most optimization when memcpy is turned into a plain assignment
943 using that type. In theory we could always use a char[len] type
944 but that only gains us that the destination and source possibly
945 no longer will have their address taken. */
946 srctype = TREE_TYPE (TREE_TYPE (src));
947 if (TREE_CODE (srctype) == ARRAY_TYPE
948 && !tree_int_cst_equal (TYPE_SIZE_UNIT (srctype), len))
949 srctype = TREE_TYPE (srctype);
950 desttype = TREE_TYPE (TREE_TYPE (dest));
951 if (TREE_CODE (desttype) == ARRAY_TYPE
952 && !tree_int_cst_equal (TYPE_SIZE_UNIT (desttype), len))
953 desttype = TREE_TYPE (desttype);
954 if (TREE_ADDRESSABLE (srctype)
955 || TREE_ADDRESSABLE (desttype))
956 return false;
958 /* Make sure we are not copying using a floating-point mode or
959 a type whose size possibly does not match its precision. */
960 if (FLOAT_MODE_P (TYPE_MODE (desttype))
961 || TREE_CODE (desttype) == BOOLEAN_TYPE
962 || TREE_CODE (desttype) == ENUMERAL_TYPE)
963 desttype = bitwise_type_for_mode (TYPE_MODE (desttype));
964 if (FLOAT_MODE_P (TYPE_MODE (srctype))
965 || TREE_CODE (srctype) == BOOLEAN_TYPE
966 || TREE_CODE (srctype) == ENUMERAL_TYPE)
967 srctype = bitwise_type_for_mode (TYPE_MODE (srctype));
968 if (!srctype)
969 srctype = desttype;
970 if (!desttype)
971 desttype = srctype;
972 if (!srctype)
973 return false;
975 src_align = get_pointer_alignment (src);
976 dest_align = get_pointer_alignment (dest);
977 if (dest_align < TYPE_ALIGN (desttype)
978 || src_align < TYPE_ALIGN (srctype))
979 return false;
981 destvar = NULL_TREE;
982 if (TREE_CODE (dest) == ADDR_EXPR
983 && var_decl_component_p (TREE_OPERAND (dest, 0))
984 && tree_int_cst_equal (TYPE_SIZE_UNIT (desttype), len))
985 destvar = fold_build2 (MEM_REF, desttype, dest, off0);
987 srcvar = NULL_TREE;
988 if (TREE_CODE (src) == ADDR_EXPR
989 && var_decl_component_p (TREE_OPERAND (src, 0))
990 && tree_int_cst_equal (TYPE_SIZE_UNIT (srctype), len))
992 if (!destvar
993 || src_align >= TYPE_ALIGN (desttype))
994 srcvar = fold_build2 (MEM_REF, destvar ? desttype : srctype,
995 src, off0);
996 else if (!STRICT_ALIGNMENT)
998 srctype = build_aligned_type (TYPE_MAIN_VARIANT (desttype),
999 src_align);
1000 srcvar = fold_build2 (MEM_REF, srctype, src, off0);
1004 if (srcvar == NULL_TREE && destvar == NULL_TREE)
1005 return false;
1007 if (srcvar == NULL_TREE)
1009 if (src_align >= TYPE_ALIGN (desttype))
1010 srcvar = fold_build2 (MEM_REF, desttype, src, off0);
1011 else
1013 if (STRICT_ALIGNMENT)
1014 return false;
1015 srctype = build_aligned_type (TYPE_MAIN_VARIANT (desttype),
1016 src_align);
1017 srcvar = fold_build2 (MEM_REF, srctype, src, off0);
1020 else if (destvar == NULL_TREE)
1022 if (dest_align >= TYPE_ALIGN (srctype))
1023 destvar = fold_build2 (MEM_REF, srctype, dest, off0);
1024 else
1026 if (STRICT_ALIGNMENT)
1027 return false;
1028 desttype = build_aligned_type (TYPE_MAIN_VARIANT (srctype),
1029 dest_align);
1030 destvar = fold_build2 (MEM_REF, desttype, dest, off0);
1034 /* Detect invalid bounds and overlapping copies and issue either
1035 -Warray-bounds or -Wrestrict. */
1036 if (!nowarn)
1037 check_bounds_or_overlap (as_a <gcall *>(stmt), dest, src, len, len);
1039 gimple *new_stmt;
1040 if (is_gimple_reg_type (TREE_TYPE (srcvar)))
1042 tree tem = fold_const_aggregate_ref (srcvar);
1043 if (tem)
1044 srcvar = tem;
1045 if (! is_gimple_min_invariant (srcvar))
1047 new_stmt = gimple_build_assign (NULL_TREE, srcvar);
1048 srcvar = create_tmp_reg_or_ssa_name (TREE_TYPE (srcvar),
1049 new_stmt);
1050 gimple_assign_set_lhs (new_stmt, srcvar);
1051 gimple_set_vuse (new_stmt, gimple_vuse (stmt));
1052 gsi_insert_before (gsi, new_stmt, GSI_SAME_STMT);
1054 new_stmt = gimple_build_assign (destvar, srcvar);
1055 goto set_vop_and_replace;
1058 /* We get an aggregate copy. Use an unsigned char[] type to
1059 perform the copying to preserve padding and to avoid any issues
1060 with TREE_ADDRESSABLE types or float modes behavior on copying. */
1061 desttype = build_array_type_nelts (unsigned_char_type_node,
1062 tree_to_uhwi (len));
1063 srctype = desttype;
1064 if (src_align > TYPE_ALIGN (srctype))
1065 srctype = build_aligned_type (srctype, src_align);
1066 if (dest_align > TYPE_ALIGN (desttype))
1067 desttype = build_aligned_type (desttype, dest_align);
1068 new_stmt
1069 = gimple_build_assign (fold_build2 (MEM_REF, desttype, dest, off0),
1070 fold_build2 (MEM_REF, srctype, src, off0));
1071 set_vop_and_replace:
1072 gimple_set_vuse (new_stmt, gimple_vuse (stmt));
1073 gimple_set_vdef (new_stmt, gimple_vdef (stmt));
1074 if (gimple_vdef (new_stmt)
1075 && TREE_CODE (gimple_vdef (new_stmt)) == SSA_NAME)
1076 SSA_NAME_DEF_STMT (gimple_vdef (new_stmt)) = new_stmt;
1077 if (!lhs)
1079 gsi_replace (gsi, new_stmt, false);
1080 return true;
1082 gsi_insert_before (gsi, new_stmt, GSI_SAME_STMT);
1085 done:
1086 gimple_seq stmts = NULL;
1087 if (endp == 0 || endp == 3)
1088 len = NULL_TREE;
1089 else if (endp == 2)
1090 len = gimple_build (&stmts, loc, MINUS_EXPR, TREE_TYPE (len), len,
1091 ssize_int (1));
1092 if (endp == 2 || endp == 1)
1094 len = gimple_convert_to_ptrofftype (&stmts, loc, len);
1095 dest = gimple_build (&stmts, loc, POINTER_PLUS_EXPR,
1096 TREE_TYPE (dest), dest, len);
1099 gsi_insert_seq_before (gsi, stmts, GSI_SAME_STMT);
1100 gimple *repl = gimple_build_assign (lhs, dest);
1101 gsi_replace (gsi, repl, false);
1102 return true;
1105 /* Transform a call to built-in bcmp(a, b, len) at *GSI into one
1106 to built-in memcmp (a, b, len). */
1108 static bool
1109 gimple_fold_builtin_bcmp (gimple_stmt_iterator *gsi)
1111 tree fn = builtin_decl_implicit (BUILT_IN_MEMCMP);
1113 if (!fn)
1114 return false;
1116 /* Transform bcmp (a, b, len) into memcmp (a, b, len). */
1118 gimple *stmt = gsi_stmt (*gsi);
1119 tree a = gimple_call_arg (stmt, 0);
1120 tree b = gimple_call_arg (stmt, 1);
1121 tree len = gimple_call_arg (stmt, 2);
1123 gimple *repl = gimple_build_call (fn, 3, a, b, len);
1124 replace_call_with_call_and_fold (gsi, repl);
1126 return true;
1129 /* Transform a call to built-in bcopy (src, dest, len) at *GSI into one
1130 to built-in memmove (dest, src, len). */
1132 static bool
1133 gimple_fold_builtin_bcopy (gimple_stmt_iterator *gsi)
1135 tree fn = builtin_decl_implicit (BUILT_IN_MEMMOVE);
1137 if (!fn)
1138 return false;
1140 /* bcopy has been removed from POSIX in Issue 7 but Issue 6 specifies
1141 it's quivalent to memmove (not memcpy). Transform bcopy (src, dest,
1142 len) into memmove (dest, src, len). */
1144 gimple *stmt = gsi_stmt (*gsi);
1145 tree src = gimple_call_arg (stmt, 0);
1146 tree dest = gimple_call_arg (stmt, 1);
1147 tree len = gimple_call_arg (stmt, 2);
1149 gimple *repl = gimple_build_call (fn, 3, dest, src, len);
1150 gimple_call_set_fntype (as_a <gcall *> (stmt), TREE_TYPE (fn));
1151 replace_call_with_call_and_fold (gsi, repl);
1153 return true;
1156 /* Transform a call to built-in bzero (dest, len) at *GSI into one
1157 to built-in memset (dest, 0, len). */
1159 static bool
1160 gimple_fold_builtin_bzero (gimple_stmt_iterator *gsi)
1162 tree fn = builtin_decl_implicit (BUILT_IN_MEMSET);
1164 if (!fn)
1165 return false;
1167 /* Transform bzero (dest, len) into memset (dest, 0, len). */
1169 gimple *stmt = gsi_stmt (*gsi);
1170 tree dest = gimple_call_arg (stmt, 0);
1171 tree len = gimple_call_arg (stmt, 1);
1173 gimple_seq seq = NULL;
1174 gimple *repl = gimple_build_call (fn, 3, dest, integer_zero_node, len);
1175 gimple_seq_add_stmt_without_update (&seq, repl);
1176 gsi_replace_with_seq_vops (gsi, seq);
1177 fold_stmt (gsi);
1179 return true;
1182 /* Fold function call to builtin memset or bzero at *GSI setting the
1183 memory of size LEN to VAL. Return whether a simplification was made. */
1185 static bool
1186 gimple_fold_builtin_memset (gimple_stmt_iterator *gsi, tree c, tree len)
1188 gimple *stmt = gsi_stmt (*gsi);
1189 tree etype;
1190 unsigned HOST_WIDE_INT length, cval;
1192 /* If the LEN parameter is zero, return DEST. */
1193 if (integer_zerop (len))
1195 replace_call_with_value (gsi, gimple_call_arg (stmt, 0));
1196 return true;
1199 if (! tree_fits_uhwi_p (len))
1200 return false;
1202 if (TREE_CODE (c) != INTEGER_CST)
1203 return false;
1205 tree dest = gimple_call_arg (stmt, 0);
1206 tree var = dest;
1207 if (TREE_CODE (var) != ADDR_EXPR)
1208 return false;
1210 var = TREE_OPERAND (var, 0);
1211 if (TREE_THIS_VOLATILE (var))
1212 return false;
1214 etype = TREE_TYPE (var);
1215 if (TREE_CODE (etype) == ARRAY_TYPE)
1216 etype = TREE_TYPE (etype);
1218 if (!INTEGRAL_TYPE_P (etype)
1219 && !POINTER_TYPE_P (etype))
1220 return NULL_TREE;
1222 if (! var_decl_component_p (var))
1223 return NULL_TREE;
1225 length = tree_to_uhwi (len);
1226 if (GET_MODE_SIZE (SCALAR_INT_TYPE_MODE (etype)) != length
1227 || get_pointer_alignment (dest) / BITS_PER_UNIT < length)
1228 return NULL_TREE;
1230 if (length > HOST_BITS_PER_WIDE_INT / BITS_PER_UNIT)
1231 return NULL_TREE;
1233 if (integer_zerop (c))
1234 cval = 0;
1235 else
1237 if (CHAR_BIT != 8 || BITS_PER_UNIT != 8 || HOST_BITS_PER_WIDE_INT > 64)
1238 return NULL_TREE;
1240 cval = TREE_INT_CST_LOW (c);
1241 cval &= 0xff;
1242 cval |= cval << 8;
1243 cval |= cval << 16;
1244 cval |= (cval << 31) << 1;
1247 var = fold_build2 (MEM_REF, etype, dest, build_int_cst (ptr_type_node, 0));
1248 gimple *store = gimple_build_assign (var, build_int_cst_type (etype, cval));
1249 gimple_set_vuse (store, gimple_vuse (stmt));
1250 tree vdef = gimple_vdef (stmt);
1251 if (vdef && TREE_CODE (vdef) == SSA_NAME)
1253 gimple_set_vdef (store, gimple_vdef (stmt));
1254 SSA_NAME_DEF_STMT (gimple_vdef (stmt)) = store;
1256 gsi_insert_before (gsi, store, GSI_SAME_STMT);
1257 if (gimple_call_lhs (stmt))
1259 gimple *asgn = gimple_build_assign (gimple_call_lhs (stmt), dest);
1260 gsi_replace (gsi, asgn, false);
1262 else
1264 gimple_stmt_iterator gsi2 = *gsi;
1265 gsi_prev (gsi);
1266 gsi_remove (&gsi2, true);
1269 return true;
1273 /* Obtain the minimum and maximum string length or minimum and maximum
1274 value of ARG in LENGTH[0] and LENGTH[1], respectively.
1275 If ARG is an SSA name variable, follow its use-def chains. When
1276 TYPE == 0, if LENGTH[1] is not equal to the length we determine or
1277 if we are unable to determine the length or value, return false.
1278 VISITED is a bitmap of visited variables.
1279 TYPE is 0 if string length should be obtained, 1 for maximum string
1280 length and 2 for maximum value ARG can have.
1281 When FUZZY is non-zero and the length of a string cannot be determined,
1282 the function instead considers as the maximum possible length the
1283 size of a character array it may refer to. If FUZZY is 2, it will handle
1284 PHIs and COND_EXPRs optimistically, if we can determine string length
1285 minimum and maximum, it will use the minimum from the ones where it
1286 can be determined.
1287 Set *FLEXP to true if the range of the string lengths has been
1288 obtained from the upper bound of an array at the end of a struct.
1289 Such an array may hold a string that's longer than its upper bound
1290 due to it being used as a poor-man's flexible array member. */
1292 static bool
1293 get_range_strlen (tree arg, tree length[2], bitmap *visited, int type,
1294 int fuzzy, bool *flexp)
1296 tree var, val = NULL_TREE;
1297 gimple *def_stmt;
1299 /* The minimum and maximum length. */
1300 tree *const minlen = length;
1301 tree *const maxlen = length + 1;
1303 if (TREE_CODE (arg) != SSA_NAME)
1305 /* We can end up with &(*iftmp_1)[0] here as well, so handle it. */
1306 if (TREE_CODE (arg) == ADDR_EXPR
1307 && TREE_CODE (TREE_OPERAND (arg, 0)) == ARRAY_REF)
1309 tree op = TREE_OPERAND (arg, 0);
1310 if (integer_zerop (TREE_OPERAND (op, 1)))
1312 tree aop0 = TREE_OPERAND (op, 0);
1313 if (TREE_CODE (aop0) == INDIRECT_REF
1314 && TREE_CODE (TREE_OPERAND (aop0, 0)) == SSA_NAME)
1315 return get_range_strlen (TREE_OPERAND (aop0, 0),
1316 length, visited, type, fuzzy, flexp);
1318 else if (TREE_CODE (TREE_OPERAND (op, 0)) == COMPONENT_REF && fuzzy)
1320 /* Fail if an array is the last member of a struct object
1321 since it could be treated as a (fake) flexible array
1322 member. */
1323 tree idx = TREE_OPERAND (op, 1);
1325 arg = TREE_OPERAND (op, 0);
1326 tree optype = TREE_TYPE (arg);
1327 if (tree dom = TYPE_DOMAIN (optype))
1328 if (tree bound = TYPE_MAX_VALUE (dom))
1329 if (TREE_CODE (bound) == INTEGER_CST
1330 && TREE_CODE (idx) == INTEGER_CST
1331 && tree_int_cst_lt (bound, idx))
1332 return false;
1336 if (type == 2)
1338 val = arg;
1339 if (TREE_CODE (val) != INTEGER_CST
1340 || tree_int_cst_sgn (val) < 0)
1341 return false;
1343 else
1344 val = c_strlen (arg, 1);
1346 if (!val && fuzzy)
1348 if (TREE_CODE (arg) == ADDR_EXPR)
1349 return get_range_strlen (TREE_OPERAND (arg, 0), length,
1350 visited, type, fuzzy, flexp);
1352 if (TREE_CODE (arg) == ARRAY_REF)
1354 tree type = TREE_TYPE (TREE_OPERAND (arg, 0));
1356 /* Determine the "innermost" array type. */
1357 while (TREE_CODE (type) == ARRAY_TYPE
1358 && TREE_CODE (TREE_TYPE (type)) == ARRAY_TYPE)
1359 type = TREE_TYPE (type);
1361 /* Avoid arrays of pointers. */
1362 tree eltype = TREE_TYPE (type);
1363 if (TREE_CODE (type) != ARRAY_TYPE
1364 || !INTEGRAL_TYPE_P (eltype))
1365 return false;
1367 val = TYPE_SIZE_UNIT (type);
1368 if (!val || integer_zerop (val))
1369 return false;
1371 val = fold_build2 (MINUS_EXPR, TREE_TYPE (val), val,
1372 integer_one_node);
1373 /* Set the minimum size to zero since the string in
1374 the array could have zero length. */
1375 *minlen = ssize_int (0);
1377 if (TREE_CODE (TREE_OPERAND (arg, 0)) == COMPONENT_REF
1378 && type == TREE_TYPE (TREE_OPERAND (arg, 0))
1379 && array_at_struct_end_p (TREE_OPERAND (arg, 0)))
1380 *flexp = true;
1382 else if (TREE_CODE (arg) == COMPONENT_REF
1383 && (TREE_CODE (TREE_TYPE (TREE_OPERAND (arg, 1)))
1384 == ARRAY_TYPE))
1386 /* Use the type of the member array to determine the upper
1387 bound on the length of the array. This may be overly
1388 optimistic if the array itself isn't NUL-terminated and
1389 the caller relies on the subsequent member to contain
1390 the NUL but that would only be considered valid if
1391 the array were the last member of a struct.
1392 Set *FLEXP to true if the array whose bound is being
1393 used is at the end of a struct. */
1394 if (array_at_struct_end_p (arg))
1395 *flexp = true;
1397 arg = TREE_OPERAND (arg, 1);
1399 tree type = TREE_TYPE (arg);
1401 while (TREE_CODE (type) == ARRAY_TYPE
1402 && TREE_CODE (TREE_TYPE (type)) == ARRAY_TYPE)
1403 type = TREE_TYPE (type);
1405 /* Fail when the array bound is unknown or zero. */
1406 val = TYPE_SIZE_UNIT (type);
1407 if (!val || integer_zerop (val))
1408 return false;
1409 val = fold_build2 (MINUS_EXPR, TREE_TYPE (val), val,
1410 integer_one_node);
1411 /* Set the minimum size to zero since the string in
1412 the array could have zero length. */
1413 *minlen = ssize_int (0);
1416 if (VAR_P (arg))
1418 tree type = TREE_TYPE (arg);
1419 if (POINTER_TYPE_P (type))
1420 type = TREE_TYPE (type);
1422 if (TREE_CODE (type) == ARRAY_TYPE)
1424 val = TYPE_SIZE_UNIT (type);
1425 if (!val
1426 || TREE_CODE (val) != INTEGER_CST
1427 || integer_zerop (val))
1428 return false;
1429 val = wide_int_to_tree (TREE_TYPE (val),
1430 wi::sub (wi::to_wide (val), 1));
1431 /* Set the minimum size to zero since the string in
1432 the array could have zero length. */
1433 *minlen = ssize_int (0);
1438 if (!val)
1439 return false;
1441 if (!*minlen
1442 || (type > 0
1443 && TREE_CODE (*minlen) == INTEGER_CST
1444 && TREE_CODE (val) == INTEGER_CST
1445 && tree_int_cst_lt (val, *minlen)))
1446 *minlen = val;
1448 if (*maxlen)
1450 if (type > 0)
1452 if (TREE_CODE (*maxlen) != INTEGER_CST
1453 || TREE_CODE (val) != INTEGER_CST)
1454 return false;
1456 if (tree_int_cst_lt (*maxlen, val))
1457 *maxlen = val;
1458 return true;
1460 else if (simple_cst_equal (val, *maxlen) != 1)
1461 return false;
1464 *maxlen = val;
1465 return true;
1468 /* If ARG is registered for SSA update we cannot look at its defining
1469 statement. */
1470 if (name_registered_for_update_p (arg))
1471 return false;
1473 /* If we were already here, break the infinite cycle. */
1474 if (!*visited)
1475 *visited = BITMAP_ALLOC (NULL);
1476 if (!bitmap_set_bit (*visited, SSA_NAME_VERSION (arg)))
1477 return true;
1479 var = arg;
1480 def_stmt = SSA_NAME_DEF_STMT (var);
1482 switch (gimple_code (def_stmt))
1484 case GIMPLE_ASSIGN:
1485 /* The RHS of the statement defining VAR must either have a
1486 constant length or come from another SSA_NAME with a constant
1487 length. */
1488 if (gimple_assign_single_p (def_stmt)
1489 || gimple_assign_unary_nop_p (def_stmt))
1491 tree rhs = gimple_assign_rhs1 (def_stmt);
1492 return get_range_strlen (rhs, length, visited, type, fuzzy, flexp);
1494 else if (gimple_assign_rhs_code (def_stmt) == COND_EXPR)
1496 tree ops[2] = { gimple_assign_rhs2 (def_stmt),
1497 gimple_assign_rhs3 (def_stmt) };
1499 for (unsigned int i = 0; i < 2; i++)
1500 if (!get_range_strlen (ops[i], length, visited, type, fuzzy,
1501 flexp))
1503 if (fuzzy == 2)
1504 *maxlen = build_all_ones_cst (size_type_node);
1505 else
1506 return false;
1508 return true;
1510 return false;
1512 case GIMPLE_PHI:
1513 /* All the arguments of the PHI node must have the same constant
1514 length. */
1515 for (unsigned i = 0; i < gimple_phi_num_args (def_stmt); i++)
1517 tree arg = gimple_phi_arg (def_stmt, i)->def;
1519 /* If this PHI has itself as an argument, we cannot
1520 determine the string length of this argument. However,
1521 if we can find a constant string length for the other
1522 PHI args then we can still be sure that this is a
1523 constant string length. So be optimistic and just
1524 continue with the next argument. */
1525 if (arg == gimple_phi_result (def_stmt))
1526 continue;
1528 if (!get_range_strlen (arg, length, visited, type, fuzzy, flexp))
1530 if (fuzzy == 2)
1531 *maxlen = build_all_ones_cst (size_type_node);
1532 else
1533 return false;
1536 return true;
1538 default:
1539 return false;
1543 /* Determine the minimum and maximum value or string length that ARG
1544 refers to and store each in the first two elements of MINMAXLEN.
1545 For expressions that point to strings of unknown lengths that are
1546 character arrays, use the upper bound of the array as the maximum
1547 length. For example, given an expression like 'x ? array : "xyz"'
1548 and array declared as 'char array[8]', MINMAXLEN[0] will be set
1549 to 0 and MINMAXLEN[1] to 7, the longest string that could be
1550 stored in array.
1551 Return true if the range of the string lengths has been obtained
1552 from the upper bound of an array at the end of a struct. Such
1553 an array may hold a string that's longer than its upper bound
1554 due to it being used as a poor-man's flexible array member.
1556 STRICT is true if it will handle PHIs and COND_EXPRs conservatively
1557 and false if PHIs and COND_EXPRs are to be handled optimistically,
1558 if we can determine string length minimum and maximum; it will use
1559 the minimum from the ones where it can be determined.
1560 STRICT false should be only used for warning code. */
1562 bool
1563 get_range_strlen (tree arg, tree minmaxlen[2], bool strict)
1565 bitmap visited = NULL;
1567 minmaxlen[0] = NULL_TREE;
1568 minmaxlen[1] = NULL_TREE;
1570 bool flexarray = false;
1571 if (!get_range_strlen (arg, minmaxlen, &visited, 1, strict ? 1 : 2,
1572 &flexarray))
1574 minmaxlen[0] = NULL_TREE;
1575 minmaxlen[1] = NULL_TREE;
1578 if (visited)
1579 BITMAP_FREE (visited);
1581 return flexarray;
1584 tree
1585 get_maxval_strlen (tree arg, int type)
1587 bitmap visited = NULL;
1588 tree len[2] = { NULL_TREE, NULL_TREE };
1590 bool dummy;
1591 if (!get_range_strlen (arg, len, &visited, type, 0, &dummy))
1592 len[1] = NULL_TREE;
1593 if (visited)
1594 BITMAP_FREE (visited);
1596 return len[1];
1600 /* Fold function call to builtin strcpy with arguments DEST and SRC.
1601 If LEN is not NULL, it represents the length of the string to be
1602 copied. Return NULL_TREE if no simplification can be made. */
1604 static bool
1605 gimple_fold_builtin_strcpy (gimple_stmt_iterator *gsi,
1606 tree dest, tree src)
1608 gimple *stmt = gsi_stmt (*gsi);
1609 location_t loc = gimple_location (stmt);
1610 tree fn;
1612 /* If SRC and DEST are the same (and not volatile), return DEST. */
1613 if (operand_equal_p (src, dest, 0))
1615 /* Issue -Wrestrict unless the pointers are null (those do
1616 not point to objects and so do not indicate an overlap;
1617 such calls could be the result of sanitization and jump
1618 threading). */
1619 if (!integer_zerop (dest) && !gimple_no_warning_p (stmt))
1621 tree func = gimple_call_fndecl (stmt);
1623 warning_at (loc, OPT_Wrestrict,
1624 "%qD source argument is the same as destination",
1625 func);
1628 replace_call_with_value (gsi, dest);
1629 return true;
1632 if (optimize_function_for_size_p (cfun))
1633 return false;
1635 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
1636 if (!fn)
1637 return false;
1639 tree len = get_maxval_strlen (src, 0);
1640 if (!len)
1641 return false;
1643 len = fold_convert_loc (loc, size_type_node, len);
1644 len = size_binop_loc (loc, PLUS_EXPR, len, build_int_cst (size_type_node, 1));
1645 len = force_gimple_operand_gsi (gsi, len, true,
1646 NULL_TREE, true, GSI_SAME_STMT);
1647 gimple *repl = gimple_build_call (fn, 3, dest, src, len);
1648 replace_call_with_call_and_fold (gsi, repl);
1649 return true;
1652 /* Fold function call to builtin strncpy with arguments DEST, SRC, and LEN.
1653 If SLEN is not NULL, it represents the length of the source string.
1654 Return NULL_TREE if no simplification can be made. */
1656 static bool
1657 gimple_fold_builtin_strncpy (gimple_stmt_iterator *gsi,
1658 tree dest, tree src, tree len)
1660 gimple *stmt = gsi_stmt (*gsi);
1661 location_t loc = gimple_location (stmt);
1662 bool nonstring = get_attr_nonstring_decl (dest) != NULL_TREE;
1664 /* If the LEN parameter is zero, return DEST. */
1665 if (integer_zerop (len))
1667 /* Avoid warning if the destination refers to a an array/pointer
1668 decorate with attribute nonstring. */
1669 if (!nonstring)
1671 tree fndecl = gimple_call_fndecl (stmt);
1672 gcall *call = as_a <gcall *> (stmt);
1674 /* Warn about the lack of nul termination: the result is not
1675 a (nul-terminated) string. */
1676 tree slen = get_maxval_strlen (src, 0);
1677 if (slen && !integer_zerop (slen))
1678 warning_at (loc, OPT_Wstringop_truncation,
1679 "%G%qD destination unchanged after copying no bytes "
1680 "from a string of length %E",
1681 call, fndecl, slen);
1682 else
1683 warning_at (loc, OPT_Wstringop_truncation,
1684 "%G%qD destination unchanged after copying no bytes",
1685 call, fndecl);
1688 replace_call_with_value (gsi, dest);
1689 return true;
1692 /* We can't compare slen with len as constants below if len is not a
1693 constant. */
1694 if (TREE_CODE (len) != INTEGER_CST)
1695 return false;
1697 /* Now, we must be passed a constant src ptr parameter. */
1698 tree slen = get_maxval_strlen (src, 0);
1699 if (!slen || TREE_CODE (slen) != INTEGER_CST)
1700 return false;
1702 /* The size of the source string including the terminating nul. */
1703 tree ssize = size_binop_loc (loc, PLUS_EXPR, slen, ssize_int (1));
1705 /* We do not support simplification of this case, though we do
1706 support it when expanding trees into RTL. */
1707 /* FIXME: generate a call to __builtin_memset. */
1708 if (tree_int_cst_lt (ssize, len))
1709 return false;
1711 /* Diagnose truncation that leaves the copy unterminated. */
1712 maybe_diag_stxncpy_trunc (*gsi, src, len);
1714 /* OK transform into builtin memcpy. */
1715 tree fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
1716 if (!fn)
1717 return false;
1719 len = fold_convert_loc (loc, size_type_node, len);
1720 len = force_gimple_operand_gsi (gsi, len, true,
1721 NULL_TREE, true, GSI_SAME_STMT);
1722 gimple *repl = gimple_build_call (fn, 3, dest, src, len);
1723 replace_call_with_call_and_fold (gsi, repl);
1725 return true;
1728 /* Fold function call to builtin strchr or strrchr.
1729 If both arguments are constant, evaluate and fold the result,
1730 otherwise simplify str(r)chr (str, 0) into str + strlen (str).
1731 In general strlen is significantly faster than strchr
1732 due to being a simpler operation. */
1733 static bool
1734 gimple_fold_builtin_strchr (gimple_stmt_iterator *gsi, bool is_strrchr)
1736 gimple *stmt = gsi_stmt (*gsi);
1737 tree str = gimple_call_arg (stmt, 0);
1738 tree c = gimple_call_arg (stmt, 1);
1739 location_t loc = gimple_location (stmt);
1740 const char *p;
1741 char ch;
1743 if (!gimple_call_lhs (stmt))
1744 return false;
1746 if ((p = c_getstr (str)) && target_char_cst_p (c, &ch))
1748 const char *p1 = is_strrchr ? strrchr (p, ch) : strchr (p, ch);
1750 if (p1 == NULL)
1752 replace_call_with_value (gsi, integer_zero_node);
1753 return true;
1756 tree len = build_int_cst (size_type_node, p1 - p);
1757 gimple_seq stmts = NULL;
1758 gimple *new_stmt = gimple_build_assign (gimple_call_lhs (stmt),
1759 POINTER_PLUS_EXPR, str, len);
1760 gimple_seq_add_stmt_without_update (&stmts, new_stmt);
1761 gsi_replace_with_seq_vops (gsi, stmts);
1762 return true;
1765 if (!integer_zerop (c))
1766 return false;
1768 /* Transform strrchr (s, 0) to strchr (s, 0) when optimizing for size. */
1769 if (is_strrchr && optimize_function_for_size_p (cfun))
1771 tree strchr_fn = builtin_decl_implicit (BUILT_IN_STRCHR);
1773 if (strchr_fn)
1775 gimple *repl = gimple_build_call (strchr_fn, 2, str, c);
1776 replace_call_with_call_and_fold (gsi, repl);
1777 return true;
1780 return false;
1783 tree len;
1784 tree strlen_fn = builtin_decl_implicit (BUILT_IN_STRLEN);
1786 if (!strlen_fn)
1787 return false;
1789 /* Create newstr = strlen (str). */
1790 gimple_seq stmts = NULL;
1791 gimple *new_stmt = gimple_build_call (strlen_fn, 1, str);
1792 gimple_set_location (new_stmt, loc);
1793 len = create_tmp_reg_or_ssa_name (size_type_node);
1794 gimple_call_set_lhs (new_stmt, len);
1795 gimple_seq_add_stmt_without_update (&stmts, new_stmt);
1797 /* Create (str p+ strlen (str)). */
1798 new_stmt = gimple_build_assign (gimple_call_lhs (stmt),
1799 POINTER_PLUS_EXPR, str, len);
1800 gimple_seq_add_stmt_without_update (&stmts, new_stmt);
1801 gsi_replace_with_seq_vops (gsi, stmts);
1802 /* gsi now points at the assignment to the lhs, get a
1803 stmt iterator to the strlen.
1804 ??? We can't use gsi_for_stmt as that doesn't work when the
1805 CFG isn't built yet. */
1806 gimple_stmt_iterator gsi2 = *gsi;
1807 gsi_prev (&gsi2);
1808 fold_stmt (&gsi2);
1809 return true;
1812 /* Fold function call to builtin strstr.
1813 If both arguments are constant, evaluate and fold the result,
1814 additionally fold strstr (x, "") into x and strstr (x, "c")
1815 into strchr (x, 'c'). */
1816 static bool
1817 gimple_fold_builtin_strstr (gimple_stmt_iterator *gsi)
1819 gimple *stmt = gsi_stmt (*gsi);
1820 tree haystack = gimple_call_arg (stmt, 0);
1821 tree needle = gimple_call_arg (stmt, 1);
1822 const char *p, *q;
1824 if (!gimple_call_lhs (stmt))
1825 return false;
1827 q = c_getstr (needle);
1828 if (q == NULL)
1829 return false;
1831 if ((p = c_getstr (haystack)))
1833 const char *r = strstr (p, q);
1835 if (r == NULL)
1837 replace_call_with_value (gsi, integer_zero_node);
1838 return true;
1841 tree len = build_int_cst (size_type_node, r - p);
1842 gimple_seq stmts = NULL;
1843 gimple *new_stmt
1844 = gimple_build_assign (gimple_call_lhs (stmt), POINTER_PLUS_EXPR,
1845 haystack, len);
1846 gimple_seq_add_stmt_without_update (&stmts, new_stmt);
1847 gsi_replace_with_seq_vops (gsi, stmts);
1848 return true;
1851 /* For strstr (x, "") return x. */
1852 if (q[0] == '\0')
1854 replace_call_with_value (gsi, haystack);
1855 return true;
1858 /* Transform strstr (x, "c") into strchr (x, 'c'). */
1859 if (q[1] == '\0')
1861 tree strchr_fn = builtin_decl_implicit (BUILT_IN_STRCHR);
1862 if (strchr_fn)
1864 tree c = build_int_cst (integer_type_node, q[0]);
1865 gimple *repl = gimple_build_call (strchr_fn, 2, haystack, c);
1866 replace_call_with_call_and_fold (gsi, repl);
1867 return true;
1871 return false;
1874 /* Simplify a call to the strcat builtin. DST and SRC are the arguments
1875 to the call.
1877 Return NULL_TREE if no simplification was possible, otherwise return the
1878 simplified form of the call as a tree.
1880 The simplified form may be a constant or other expression which
1881 computes the same value, but in a more efficient manner (including
1882 calls to other builtin functions).
1884 The call may contain arguments which need to be evaluated, but
1885 which are not useful to determine the result of the call. In
1886 this case we return a chain of COMPOUND_EXPRs. The LHS of each
1887 COMPOUND_EXPR will be an argument which must be evaluated.
1888 COMPOUND_EXPRs are chained through their RHS. The RHS of the last
1889 COMPOUND_EXPR in the chain will contain the tree for the simplified
1890 form of the builtin function call. */
1892 static bool
1893 gimple_fold_builtin_strcat (gimple_stmt_iterator *gsi, tree dst, tree src)
1895 gimple *stmt = gsi_stmt (*gsi);
1896 location_t loc = gimple_location (stmt);
1898 const char *p = c_getstr (src);
1900 /* If the string length is zero, return the dst parameter. */
1901 if (p && *p == '\0')
1903 replace_call_with_value (gsi, dst);
1904 return true;
1907 if (!optimize_bb_for_speed_p (gimple_bb (stmt)))
1908 return false;
1910 /* See if we can store by pieces into (dst + strlen(dst)). */
1911 tree newdst;
1912 tree strlen_fn = builtin_decl_implicit (BUILT_IN_STRLEN);
1913 tree memcpy_fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
1915 if (!strlen_fn || !memcpy_fn)
1916 return false;
1918 /* If the length of the source string isn't computable don't
1919 split strcat into strlen and memcpy. */
1920 tree len = get_maxval_strlen (src, 0);
1921 if (! len)
1922 return false;
1924 /* Create strlen (dst). */
1925 gimple_seq stmts = NULL, stmts2;
1926 gimple *repl = gimple_build_call (strlen_fn, 1, dst);
1927 gimple_set_location (repl, loc);
1928 newdst = create_tmp_reg_or_ssa_name (size_type_node);
1929 gimple_call_set_lhs (repl, newdst);
1930 gimple_seq_add_stmt_without_update (&stmts, repl);
1932 /* Create (dst p+ strlen (dst)). */
1933 newdst = fold_build_pointer_plus_loc (loc, dst, newdst);
1934 newdst = force_gimple_operand (newdst, &stmts2, true, NULL_TREE);
1935 gimple_seq_add_seq_without_update (&stmts, stmts2);
1937 len = fold_convert_loc (loc, size_type_node, len);
1938 len = size_binop_loc (loc, PLUS_EXPR, len,
1939 build_int_cst (size_type_node, 1));
1940 len = force_gimple_operand (len, &stmts2, true, NULL_TREE);
1941 gimple_seq_add_seq_without_update (&stmts, stmts2);
1943 repl = gimple_build_call (memcpy_fn, 3, newdst, src, len);
1944 gimple_seq_add_stmt_without_update (&stmts, repl);
1945 if (gimple_call_lhs (stmt))
1947 repl = gimple_build_assign (gimple_call_lhs (stmt), dst);
1948 gimple_seq_add_stmt_without_update (&stmts, repl);
1949 gsi_replace_with_seq_vops (gsi, stmts);
1950 /* gsi now points at the assignment to the lhs, get a
1951 stmt iterator to the memcpy call.
1952 ??? We can't use gsi_for_stmt as that doesn't work when the
1953 CFG isn't built yet. */
1954 gimple_stmt_iterator gsi2 = *gsi;
1955 gsi_prev (&gsi2);
1956 fold_stmt (&gsi2);
1958 else
1960 gsi_replace_with_seq_vops (gsi, stmts);
1961 fold_stmt (gsi);
1963 return true;
1966 /* Fold a call to the __strcat_chk builtin FNDECL. DEST, SRC, and SIZE
1967 are the arguments to the call. */
1969 static bool
1970 gimple_fold_builtin_strcat_chk (gimple_stmt_iterator *gsi)
1972 gimple *stmt = gsi_stmt (*gsi);
1973 tree dest = gimple_call_arg (stmt, 0);
1974 tree src = gimple_call_arg (stmt, 1);
1975 tree size = gimple_call_arg (stmt, 2);
1976 tree fn;
1977 const char *p;
1980 p = c_getstr (src);
1981 /* If the SRC parameter is "", return DEST. */
1982 if (p && *p == '\0')
1984 replace_call_with_value (gsi, dest);
1985 return true;
1988 if (! tree_fits_uhwi_p (size) || ! integer_all_onesp (size))
1989 return false;
1991 /* If __builtin_strcat_chk is used, assume strcat is available. */
1992 fn = builtin_decl_explicit (BUILT_IN_STRCAT);
1993 if (!fn)
1994 return false;
1996 gimple *repl = gimple_build_call (fn, 2, dest, src);
1997 replace_call_with_call_and_fold (gsi, repl);
1998 return true;
2001 /* Simplify a call to the strncat builtin. */
2003 static bool
2004 gimple_fold_builtin_strncat (gimple_stmt_iterator *gsi)
2006 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
2007 tree dst = gimple_call_arg (stmt, 0);
2008 tree src = gimple_call_arg (stmt, 1);
2009 tree len = gimple_call_arg (stmt, 2);
2011 const char *p = c_getstr (src);
2013 /* If the requested length is zero, or the src parameter string
2014 length is zero, return the dst parameter. */
2015 if (integer_zerop (len) || (p && *p == '\0'))
2017 replace_call_with_value (gsi, dst);
2018 return true;
2021 if (TREE_CODE (len) != INTEGER_CST || !p)
2022 return false;
2024 unsigned srclen = strlen (p);
2026 int cmpsrc = compare_tree_int (len, srclen);
2028 /* Return early if the requested len is less than the string length.
2029 Warnings will be issued elsewhere later. */
2030 if (cmpsrc < 0)
2031 return false;
2033 unsigned HOST_WIDE_INT dstsize;
2035 bool nowarn = gimple_no_warning_p (stmt);
2037 if (!nowarn && compute_builtin_object_size (dst, 1, &dstsize))
2039 int cmpdst = compare_tree_int (len, dstsize);
2041 if (cmpdst >= 0)
2043 tree fndecl = gimple_call_fndecl (stmt);
2045 /* Strncat copies (at most) LEN bytes and always appends
2046 the terminating NUL so the specified bound should never
2047 be equal to (or greater than) the size of the destination.
2048 If it is, the copy could overflow. */
2049 location_t loc = gimple_location (stmt);
2050 nowarn = warning_at (loc, OPT_Wstringop_overflow_,
2051 cmpdst == 0
2052 ? G_("%G%qD specified bound %E equals "
2053 "destination size")
2054 : G_("%G%qD specified bound %E exceeds "
2055 "destination size %wu"),
2056 stmt, fndecl, len, dstsize);
2057 if (nowarn)
2058 gimple_set_no_warning (stmt, true);
2062 if (!nowarn && cmpsrc == 0)
2064 tree fndecl = gimple_call_fndecl (stmt);
2066 /* To avoid certain truncation the specified bound should also
2067 not be equal to (or less than) the length of the source. */
2068 location_t loc = gimple_location (stmt);
2069 if (warning_at (loc, OPT_Wstringop_overflow_,
2070 "%G%qD specified bound %E equals source length",
2071 stmt, fndecl, len))
2072 gimple_set_no_warning (stmt, true);
2075 tree fn = builtin_decl_implicit (BUILT_IN_STRCAT);
2077 /* If the replacement _DECL isn't initialized, don't do the
2078 transformation. */
2079 if (!fn)
2080 return false;
2082 /* Otherwise, emit a call to strcat. */
2083 gcall *repl = gimple_build_call (fn, 2, dst, src);
2084 replace_call_with_call_and_fold (gsi, repl);
2085 return true;
2088 /* Fold a call to the __strncat_chk builtin with arguments DEST, SRC,
2089 LEN, and SIZE. */
2091 static bool
2092 gimple_fold_builtin_strncat_chk (gimple_stmt_iterator *gsi)
2094 gimple *stmt = gsi_stmt (*gsi);
2095 tree dest = gimple_call_arg (stmt, 0);
2096 tree src = gimple_call_arg (stmt, 1);
2097 tree len = gimple_call_arg (stmt, 2);
2098 tree size = gimple_call_arg (stmt, 3);
2099 tree fn;
2100 const char *p;
2102 p = c_getstr (src);
2103 /* If the SRC parameter is "" or if LEN is 0, return DEST. */
2104 if ((p && *p == '\0')
2105 || integer_zerop (len))
2107 replace_call_with_value (gsi, dest);
2108 return true;
2111 if (! tree_fits_uhwi_p (size))
2112 return false;
2114 if (! integer_all_onesp (size))
2116 tree src_len = c_strlen (src, 1);
2117 if (src_len
2118 && tree_fits_uhwi_p (src_len)
2119 && tree_fits_uhwi_p (len)
2120 && ! tree_int_cst_lt (len, src_len))
2122 /* If LEN >= strlen (SRC), optimize into __strcat_chk. */
2123 fn = builtin_decl_explicit (BUILT_IN_STRCAT_CHK);
2124 if (!fn)
2125 return false;
2127 gimple *repl = gimple_build_call (fn, 3, dest, src, size);
2128 replace_call_with_call_and_fold (gsi, repl);
2129 return true;
2131 return false;
2134 /* If __builtin_strncat_chk is used, assume strncat is available. */
2135 fn = builtin_decl_explicit (BUILT_IN_STRNCAT);
2136 if (!fn)
2137 return false;
2139 gimple *repl = gimple_build_call (fn, 3, dest, src, len);
2140 replace_call_with_call_and_fold (gsi, repl);
2141 return true;
2144 /* Build and append gimple statements to STMTS that would load a first
2145 character of a memory location identified by STR. LOC is location
2146 of the statement. */
2148 static tree
2149 gimple_load_first_char (location_t loc, tree str, gimple_seq *stmts)
2151 tree var;
2153 tree cst_uchar_node = build_type_variant (unsigned_char_type_node, 1, 0);
2154 tree cst_uchar_ptr_node
2155 = build_pointer_type_for_mode (cst_uchar_node, ptr_mode, true);
2156 tree off0 = build_int_cst (cst_uchar_ptr_node, 0);
2158 tree temp = fold_build2_loc (loc, MEM_REF, cst_uchar_node, str, off0);
2159 gassign *stmt = gimple_build_assign (NULL_TREE, temp);
2160 var = create_tmp_reg_or_ssa_name (cst_uchar_node, stmt);
2162 gimple_assign_set_lhs (stmt, var);
2163 gimple_seq_add_stmt_without_update (stmts, stmt);
2165 return var;
2168 /* Fold a call to the str{n}{case}cmp builtin pointed by GSI iterator.
2169 FCODE is the name of the builtin. */
2171 static bool
2172 gimple_fold_builtin_string_compare (gimple_stmt_iterator *gsi)
2174 gimple *stmt = gsi_stmt (*gsi);
2175 tree callee = gimple_call_fndecl (stmt);
2176 enum built_in_function fcode = DECL_FUNCTION_CODE (callee);
2178 tree type = integer_type_node;
2179 tree str1 = gimple_call_arg (stmt, 0);
2180 tree str2 = gimple_call_arg (stmt, 1);
2181 tree lhs = gimple_call_lhs (stmt);
2182 HOST_WIDE_INT length = -1;
2184 /* Handle strncmp and strncasecmp functions. */
2185 if (gimple_call_num_args (stmt) == 3)
2187 tree len = gimple_call_arg (stmt, 2);
2188 if (tree_fits_uhwi_p (len))
2189 length = tree_to_uhwi (len);
2192 /* If the LEN parameter is zero, return zero. */
2193 if (length == 0)
2195 replace_call_with_value (gsi, integer_zero_node);
2196 return true;
2199 /* If ARG1 and ARG2 are the same (and not volatile), return zero. */
2200 if (operand_equal_p (str1, str2, 0))
2202 replace_call_with_value (gsi, integer_zero_node);
2203 return true;
2206 const char *p1 = c_getstr (str1);
2207 const char *p2 = c_getstr (str2);
2209 /* For known strings, return an immediate value. */
2210 if (p1 && p2)
2212 int r = 0;
2213 bool known_result = false;
2215 switch (fcode)
2217 case BUILT_IN_STRCMP:
2219 r = strcmp (p1, p2);
2220 known_result = true;
2221 break;
2223 case BUILT_IN_STRNCMP:
2225 if (length == -1)
2226 break;
2227 r = strncmp (p1, p2, length);
2228 known_result = true;
2229 break;
2231 /* Only handleable situation is where the string are equal (result 0),
2232 which is already handled by operand_equal_p case. */
2233 case BUILT_IN_STRCASECMP:
2234 break;
2235 case BUILT_IN_STRNCASECMP:
2237 if (length == -1)
2238 break;
2239 r = strncmp (p1, p2, length);
2240 if (r == 0)
2241 known_result = true;
2242 break;
2244 default:
2245 gcc_unreachable ();
2248 if (known_result)
2250 replace_call_with_value (gsi, build_cmp_result (type, r));
2251 return true;
2255 bool nonzero_length = length >= 1
2256 || fcode == BUILT_IN_STRCMP
2257 || fcode == BUILT_IN_STRCASECMP;
2259 location_t loc = gimple_location (stmt);
2261 /* If the second arg is "", return *(const unsigned char*)arg1. */
2262 if (p2 && *p2 == '\0' && nonzero_length)
2264 gimple_seq stmts = NULL;
2265 tree var = gimple_load_first_char (loc, str1, &stmts);
2266 if (lhs)
2268 stmt = gimple_build_assign (lhs, NOP_EXPR, var);
2269 gimple_seq_add_stmt_without_update (&stmts, stmt);
2272 gsi_replace_with_seq_vops (gsi, stmts);
2273 return true;
2276 /* If the first arg is "", return -*(const unsigned char*)arg2. */
2277 if (p1 && *p1 == '\0' && nonzero_length)
2279 gimple_seq stmts = NULL;
2280 tree var = gimple_load_first_char (loc, str2, &stmts);
2282 if (lhs)
2284 tree c = create_tmp_reg_or_ssa_name (integer_type_node);
2285 stmt = gimple_build_assign (c, NOP_EXPR, var);
2286 gimple_seq_add_stmt_without_update (&stmts, stmt);
2288 stmt = gimple_build_assign (lhs, NEGATE_EXPR, c);
2289 gimple_seq_add_stmt_without_update (&stmts, stmt);
2292 gsi_replace_with_seq_vops (gsi, stmts);
2293 return true;
2296 /* If len parameter is one, return an expression corresponding to
2297 (*(const unsigned char*)arg2 - *(const unsigned char*)arg1). */
2298 if (fcode == BUILT_IN_STRNCMP && length == 1)
2300 gimple_seq stmts = NULL;
2301 tree temp1 = gimple_load_first_char (loc, str1, &stmts);
2302 tree temp2 = gimple_load_first_char (loc, str2, &stmts);
2304 if (lhs)
2306 tree c1 = create_tmp_reg_or_ssa_name (integer_type_node);
2307 gassign *convert1 = gimple_build_assign (c1, NOP_EXPR, temp1);
2308 gimple_seq_add_stmt_without_update (&stmts, convert1);
2310 tree c2 = create_tmp_reg_or_ssa_name (integer_type_node);
2311 gassign *convert2 = gimple_build_assign (c2, NOP_EXPR, temp2);
2312 gimple_seq_add_stmt_without_update (&stmts, convert2);
2314 stmt = gimple_build_assign (lhs, MINUS_EXPR, c1, c2);
2315 gimple_seq_add_stmt_without_update (&stmts, stmt);
2318 gsi_replace_with_seq_vops (gsi, stmts);
2319 return true;
2322 /* If length is larger than the length of one constant string,
2323 replace strncmp with corresponding strcmp */
2324 if (fcode == BUILT_IN_STRNCMP
2325 && length > 0
2326 && ((p2 && (size_t) length > strlen (p2))
2327 || (p1 && (size_t) length > strlen (p1))))
2329 tree fn = builtin_decl_implicit (BUILT_IN_STRCMP);
2330 if (!fn)
2331 return false;
2332 gimple *repl = gimple_build_call (fn, 2, str1, str2);
2333 replace_call_with_call_and_fold (gsi, repl);
2334 return true;
2337 return false;
2340 /* Fold a call to the memchr pointed by GSI iterator. */
2342 static bool
2343 gimple_fold_builtin_memchr (gimple_stmt_iterator *gsi)
2345 gimple *stmt = gsi_stmt (*gsi);
2346 tree lhs = gimple_call_lhs (stmt);
2347 tree arg1 = gimple_call_arg (stmt, 0);
2348 tree arg2 = gimple_call_arg (stmt, 1);
2349 tree len = gimple_call_arg (stmt, 2);
2351 /* If the LEN parameter is zero, return zero. */
2352 if (integer_zerop (len))
2354 replace_call_with_value (gsi, build_int_cst (ptr_type_node, 0));
2355 return true;
2358 char c;
2359 if (TREE_CODE (arg2) != INTEGER_CST
2360 || !tree_fits_uhwi_p (len)
2361 || !target_char_cst_p (arg2, &c))
2362 return false;
2364 unsigned HOST_WIDE_INT length = tree_to_uhwi (len);
2365 unsigned HOST_WIDE_INT string_length;
2366 const char *p1 = c_getstr (arg1, &string_length);
2368 if (p1)
2370 const char *r = (const char *)memchr (p1, c, MIN (length, string_length));
2371 if (r == NULL)
2373 if (length <= string_length)
2375 replace_call_with_value (gsi, build_int_cst (ptr_type_node, 0));
2376 return true;
2379 else
2381 unsigned HOST_WIDE_INT offset = r - p1;
2382 gimple_seq stmts = NULL;
2383 if (lhs != NULL_TREE)
2385 tree offset_cst = build_int_cst (TREE_TYPE (len), offset);
2386 gassign *stmt = gimple_build_assign (lhs, POINTER_PLUS_EXPR,
2387 arg1, offset_cst);
2388 gimple_seq_add_stmt_without_update (&stmts, stmt);
2390 else
2391 gimple_seq_add_stmt_without_update (&stmts,
2392 gimple_build_nop ());
2394 gsi_replace_with_seq_vops (gsi, stmts);
2395 return true;
2399 return false;
2402 /* Fold a call to the fputs builtin. ARG0 and ARG1 are the arguments
2403 to the call. IGNORE is true if the value returned
2404 by the builtin will be ignored. UNLOCKED is true is true if this
2405 actually a call to fputs_unlocked. If LEN in non-NULL, it represents
2406 the known length of the string. Return NULL_TREE if no simplification
2407 was possible. */
2409 static bool
2410 gimple_fold_builtin_fputs (gimple_stmt_iterator *gsi,
2411 tree arg0, tree arg1,
2412 bool unlocked)
2414 gimple *stmt = gsi_stmt (*gsi);
2416 /* If we're using an unlocked function, assume the other unlocked
2417 functions exist explicitly. */
2418 tree const fn_fputc = (unlocked
2419 ? builtin_decl_explicit (BUILT_IN_FPUTC_UNLOCKED)
2420 : builtin_decl_implicit (BUILT_IN_FPUTC));
2421 tree const fn_fwrite = (unlocked
2422 ? builtin_decl_explicit (BUILT_IN_FWRITE_UNLOCKED)
2423 : builtin_decl_implicit (BUILT_IN_FWRITE));
2425 /* If the return value is used, don't do the transformation. */
2426 if (gimple_call_lhs (stmt))
2427 return false;
2429 /* Get the length of the string passed to fputs. If the length
2430 can't be determined, punt. */
2431 tree len = get_maxval_strlen (arg0, 0);
2432 if (!len
2433 || TREE_CODE (len) != INTEGER_CST)
2434 return false;
2436 switch (compare_tree_int (len, 1))
2438 case -1: /* length is 0, delete the call entirely . */
2439 replace_call_with_value (gsi, integer_zero_node);
2440 return true;
2442 case 0: /* length is 1, call fputc. */
2444 const char *p = c_getstr (arg0);
2445 if (p != NULL)
2447 if (!fn_fputc)
2448 return false;
2450 gimple *repl = gimple_build_call (fn_fputc, 2,
2451 build_int_cst
2452 (integer_type_node, p[0]), arg1);
2453 replace_call_with_call_and_fold (gsi, repl);
2454 return true;
2457 /* FALLTHROUGH */
2458 case 1: /* length is greater than 1, call fwrite. */
2460 /* If optimizing for size keep fputs. */
2461 if (optimize_function_for_size_p (cfun))
2462 return false;
2463 /* New argument list transforming fputs(string, stream) to
2464 fwrite(string, 1, len, stream). */
2465 if (!fn_fwrite)
2466 return false;
2468 gimple *repl = gimple_build_call (fn_fwrite, 4, arg0,
2469 size_one_node, len, arg1);
2470 replace_call_with_call_and_fold (gsi, repl);
2471 return true;
2473 default:
2474 gcc_unreachable ();
2476 return false;
2479 /* Fold a call to the __mem{cpy,pcpy,move,set}_chk builtin.
2480 DEST, SRC, LEN, and SIZE are the arguments to the call.
2481 IGNORE is true, if return value can be ignored. FCODE is the BUILT_IN_*
2482 code of the builtin. If MAXLEN is not NULL, it is maximum length
2483 passed as third argument. */
2485 static bool
2486 gimple_fold_builtin_memory_chk (gimple_stmt_iterator *gsi,
2487 tree dest, tree src, tree len, tree size,
2488 enum built_in_function fcode)
2490 gimple *stmt = gsi_stmt (*gsi);
2491 location_t loc = gimple_location (stmt);
2492 bool ignore = gimple_call_lhs (stmt) == NULL_TREE;
2493 tree fn;
2495 /* If SRC and DEST are the same (and not volatile), return DEST
2496 (resp. DEST+LEN for __mempcpy_chk). */
2497 if (fcode != BUILT_IN_MEMSET_CHK && operand_equal_p (src, dest, 0))
2499 if (fcode != BUILT_IN_MEMPCPY_CHK)
2501 replace_call_with_value (gsi, dest);
2502 return true;
2504 else
2506 gimple_seq stmts = NULL;
2507 len = gimple_convert_to_ptrofftype (&stmts, loc, len);
2508 tree temp = gimple_build (&stmts, loc, POINTER_PLUS_EXPR,
2509 TREE_TYPE (dest), dest, len);
2510 gsi_insert_seq_before (gsi, stmts, GSI_SAME_STMT);
2511 replace_call_with_value (gsi, temp);
2512 return true;
2516 if (! tree_fits_uhwi_p (size))
2517 return false;
2519 tree maxlen = get_maxval_strlen (len, 2);
2520 if (! integer_all_onesp (size))
2522 if (! tree_fits_uhwi_p (len))
2524 /* If LEN is not constant, try MAXLEN too.
2525 For MAXLEN only allow optimizing into non-_ocs function
2526 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
2527 if (maxlen == NULL_TREE || ! tree_fits_uhwi_p (maxlen))
2529 if (fcode == BUILT_IN_MEMPCPY_CHK && ignore)
2531 /* (void) __mempcpy_chk () can be optimized into
2532 (void) __memcpy_chk (). */
2533 fn = builtin_decl_explicit (BUILT_IN_MEMCPY_CHK);
2534 if (!fn)
2535 return false;
2537 gimple *repl = gimple_build_call (fn, 4, dest, src, len, size);
2538 replace_call_with_call_and_fold (gsi, repl);
2539 return true;
2541 return false;
2544 else
2545 maxlen = len;
2547 if (tree_int_cst_lt (size, maxlen))
2548 return false;
2551 fn = NULL_TREE;
2552 /* If __builtin_mem{cpy,pcpy,move,set}_chk is used, assume
2553 mem{cpy,pcpy,move,set} is available. */
2554 switch (fcode)
2556 case BUILT_IN_MEMCPY_CHK:
2557 fn = builtin_decl_explicit (BUILT_IN_MEMCPY);
2558 break;
2559 case BUILT_IN_MEMPCPY_CHK:
2560 fn = builtin_decl_explicit (BUILT_IN_MEMPCPY);
2561 break;
2562 case BUILT_IN_MEMMOVE_CHK:
2563 fn = builtin_decl_explicit (BUILT_IN_MEMMOVE);
2564 break;
2565 case BUILT_IN_MEMSET_CHK:
2566 fn = builtin_decl_explicit (BUILT_IN_MEMSET);
2567 break;
2568 default:
2569 break;
2572 if (!fn)
2573 return false;
2575 gimple *repl = gimple_build_call (fn, 3, dest, src, len);
2576 replace_call_with_call_and_fold (gsi, repl);
2577 return true;
2580 /* Fold a call to the __st[rp]cpy_chk builtin.
2581 DEST, SRC, and SIZE are the arguments to the call.
2582 IGNORE is true if return value can be ignored. FCODE is the BUILT_IN_*
2583 code of the builtin. If MAXLEN is not NULL, it is maximum length of
2584 strings passed as second argument. */
2586 static bool
2587 gimple_fold_builtin_stxcpy_chk (gimple_stmt_iterator *gsi,
2588 tree dest,
2589 tree src, tree size,
2590 enum built_in_function fcode)
2592 gimple *stmt = gsi_stmt (*gsi);
2593 location_t loc = gimple_location (stmt);
2594 bool ignore = gimple_call_lhs (stmt) == NULL_TREE;
2595 tree len, fn;
2597 /* If SRC and DEST are the same (and not volatile), return DEST. */
2598 if (fcode == BUILT_IN_STRCPY_CHK && operand_equal_p (src, dest, 0))
2600 /* Issue -Wrestrict unless the pointers are null (those do
2601 not point to objects and so do not indicate an overlap;
2602 such calls could be the result of sanitization and jump
2603 threading). */
2604 if (!integer_zerop (dest) && !gimple_no_warning_p (stmt))
2606 tree func = gimple_call_fndecl (stmt);
2608 warning_at (loc, OPT_Wrestrict,
2609 "%qD source argument is the same as destination",
2610 func);
2613 replace_call_with_value (gsi, dest);
2614 return true;
2617 if (! tree_fits_uhwi_p (size))
2618 return false;
2620 tree maxlen = get_maxval_strlen (src, 1);
2621 if (! integer_all_onesp (size))
2623 len = c_strlen (src, 1);
2624 if (! len || ! tree_fits_uhwi_p (len))
2626 /* If LEN is not constant, try MAXLEN too.
2627 For MAXLEN only allow optimizing into non-_ocs function
2628 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
2629 if (maxlen == NULL_TREE || ! tree_fits_uhwi_p (maxlen))
2631 if (fcode == BUILT_IN_STPCPY_CHK)
2633 if (! ignore)
2634 return false;
2636 /* If return value of __stpcpy_chk is ignored,
2637 optimize into __strcpy_chk. */
2638 fn = builtin_decl_explicit (BUILT_IN_STRCPY_CHK);
2639 if (!fn)
2640 return false;
2642 gimple *repl = gimple_build_call (fn, 3, dest, src, size);
2643 replace_call_with_call_and_fold (gsi, repl);
2644 return true;
2647 if (! len || TREE_SIDE_EFFECTS (len))
2648 return false;
2650 /* If c_strlen returned something, but not a constant,
2651 transform __strcpy_chk into __memcpy_chk. */
2652 fn = builtin_decl_explicit (BUILT_IN_MEMCPY_CHK);
2653 if (!fn)
2654 return false;
2656 gimple_seq stmts = NULL;
2657 len = gimple_convert (&stmts, loc, size_type_node, len);
2658 len = gimple_build (&stmts, loc, PLUS_EXPR, size_type_node, len,
2659 build_int_cst (size_type_node, 1));
2660 gsi_insert_seq_before (gsi, stmts, GSI_SAME_STMT);
2661 gimple *repl = gimple_build_call (fn, 4, dest, src, len, size);
2662 replace_call_with_call_and_fold (gsi, repl);
2663 return true;
2666 else
2667 maxlen = len;
2669 if (! tree_int_cst_lt (maxlen, size))
2670 return false;
2673 /* If __builtin_st{r,p}cpy_chk is used, assume st{r,p}cpy is available. */
2674 fn = builtin_decl_explicit (fcode == BUILT_IN_STPCPY_CHK
2675 ? BUILT_IN_STPCPY : BUILT_IN_STRCPY);
2676 if (!fn)
2677 return false;
2679 gimple *repl = gimple_build_call (fn, 2, dest, src);
2680 replace_call_with_call_and_fold (gsi, repl);
2681 return true;
2684 /* Fold a call to the __st{r,p}ncpy_chk builtin. DEST, SRC, LEN, and SIZE
2685 are the arguments to the call. If MAXLEN is not NULL, it is maximum
2686 length passed as third argument. IGNORE is true if return value can be
2687 ignored. FCODE is the BUILT_IN_* code of the builtin. */
2689 static bool
2690 gimple_fold_builtin_stxncpy_chk (gimple_stmt_iterator *gsi,
2691 tree dest, tree src,
2692 tree len, tree size,
2693 enum built_in_function fcode)
2695 gimple *stmt = gsi_stmt (*gsi);
2696 bool ignore = gimple_call_lhs (stmt) == NULL_TREE;
2697 tree fn;
2699 if (fcode == BUILT_IN_STPNCPY_CHK && ignore)
2701 /* If return value of __stpncpy_chk is ignored,
2702 optimize into __strncpy_chk. */
2703 fn = builtin_decl_explicit (BUILT_IN_STRNCPY_CHK);
2704 if (fn)
2706 gimple *repl = gimple_build_call (fn, 4, dest, src, len, size);
2707 replace_call_with_call_and_fold (gsi, repl);
2708 return true;
2712 if (! tree_fits_uhwi_p (size))
2713 return false;
2715 tree maxlen = get_maxval_strlen (len, 2);
2716 if (! integer_all_onesp (size))
2718 if (! tree_fits_uhwi_p (len))
2720 /* If LEN is not constant, try MAXLEN too.
2721 For MAXLEN only allow optimizing into non-_ocs function
2722 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
2723 if (maxlen == NULL_TREE || ! tree_fits_uhwi_p (maxlen))
2724 return false;
2726 else
2727 maxlen = len;
2729 if (tree_int_cst_lt (size, maxlen))
2730 return false;
2733 /* If __builtin_st{r,p}ncpy_chk is used, assume st{r,p}ncpy is available. */
2734 fn = builtin_decl_explicit (fcode == BUILT_IN_STPNCPY_CHK
2735 ? BUILT_IN_STPNCPY : BUILT_IN_STRNCPY);
2736 if (!fn)
2737 return false;
2739 gimple *repl = gimple_build_call (fn, 3, dest, src, len);
2740 replace_call_with_call_and_fold (gsi, repl);
2741 return true;
2744 /* Fold function call to builtin stpcpy with arguments DEST and SRC.
2745 Return NULL_TREE if no simplification can be made. */
2747 static bool
2748 gimple_fold_builtin_stpcpy (gimple_stmt_iterator *gsi)
2750 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
2751 location_t loc = gimple_location (stmt);
2752 tree dest = gimple_call_arg (stmt, 0);
2753 tree src = gimple_call_arg (stmt, 1);
2754 tree fn, len, lenp1;
2756 /* If the result is unused, replace stpcpy with strcpy. */
2757 if (gimple_call_lhs (stmt) == NULL_TREE)
2759 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
2760 if (!fn)
2761 return false;
2762 gimple_call_set_fndecl (stmt, fn);
2763 fold_stmt (gsi);
2764 return true;
2767 len = c_strlen (src, 1);
2768 if (!len
2769 || TREE_CODE (len) != INTEGER_CST)
2770 return false;
2772 if (optimize_function_for_size_p (cfun)
2773 /* If length is zero it's small enough. */
2774 && !integer_zerop (len))
2775 return false;
2777 /* If the source has a known length replace stpcpy with memcpy. */
2778 fn = builtin_decl_implicit (BUILT_IN_MEMCPY);
2779 if (!fn)
2780 return false;
2782 gimple_seq stmts = NULL;
2783 tree tem = gimple_convert (&stmts, loc, size_type_node, len);
2784 lenp1 = gimple_build (&stmts, loc, PLUS_EXPR, size_type_node,
2785 tem, build_int_cst (size_type_node, 1));
2786 gsi_insert_seq_before (gsi, stmts, GSI_SAME_STMT);
2787 gcall *repl = gimple_build_call (fn, 3, dest, src, lenp1);
2788 gimple_set_vuse (repl, gimple_vuse (stmt));
2789 gimple_set_vdef (repl, gimple_vdef (stmt));
2790 if (gimple_vdef (repl)
2791 && TREE_CODE (gimple_vdef (repl)) == SSA_NAME)
2792 SSA_NAME_DEF_STMT (gimple_vdef (repl)) = repl;
2793 gsi_insert_before (gsi, repl, GSI_SAME_STMT);
2794 /* Replace the result with dest + len. */
2795 stmts = NULL;
2796 tem = gimple_convert (&stmts, loc, sizetype, len);
2797 gsi_insert_seq_before (gsi, stmts, GSI_SAME_STMT);
2798 gassign *ret = gimple_build_assign (gimple_call_lhs (stmt),
2799 POINTER_PLUS_EXPR, dest, tem);
2800 gsi_replace (gsi, ret, false);
2801 /* Finally fold the memcpy call. */
2802 gimple_stmt_iterator gsi2 = *gsi;
2803 gsi_prev (&gsi2);
2804 fold_stmt (&gsi2);
2805 return true;
2808 /* Fold a call EXP to {,v}snprintf having NARGS passed as ARGS. Return
2809 NULL_TREE if a normal call should be emitted rather than expanding
2810 the function inline. FCODE is either BUILT_IN_SNPRINTF_CHK or
2811 BUILT_IN_VSNPRINTF_CHK. If MAXLEN is not NULL, it is maximum length
2812 passed as second argument. */
2814 static bool
2815 gimple_fold_builtin_snprintf_chk (gimple_stmt_iterator *gsi,
2816 enum built_in_function fcode)
2818 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
2819 tree dest, size, len, fn, fmt, flag;
2820 const char *fmt_str;
2822 /* Verify the required arguments in the original call. */
2823 if (gimple_call_num_args (stmt) < 5)
2824 return false;
2826 dest = gimple_call_arg (stmt, 0);
2827 len = gimple_call_arg (stmt, 1);
2828 flag = gimple_call_arg (stmt, 2);
2829 size = gimple_call_arg (stmt, 3);
2830 fmt = gimple_call_arg (stmt, 4);
2832 if (! tree_fits_uhwi_p (size))
2833 return false;
2835 if (! integer_all_onesp (size))
2837 tree maxlen = get_maxval_strlen (len, 2);
2838 if (! tree_fits_uhwi_p (len))
2840 /* If LEN is not constant, try MAXLEN too.
2841 For MAXLEN only allow optimizing into non-_ocs function
2842 if SIZE is >= MAXLEN, never convert to __ocs_fail (). */
2843 if (maxlen == NULL_TREE || ! tree_fits_uhwi_p (maxlen))
2844 return false;
2846 else
2847 maxlen = len;
2849 if (tree_int_cst_lt (size, maxlen))
2850 return false;
2853 if (!init_target_chars ())
2854 return false;
2856 /* Only convert __{,v}snprintf_chk to {,v}snprintf if flag is 0
2857 or if format doesn't contain % chars or is "%s". */
2858 if (! integer_zerop (flag))
2860 fmt_str = c_getstr (fmt);
2861 if (fmt_str == NULL)
2862 return false;
2863 if (strchr (fmt_str, target_percent) != NULL
2864 && strcmp (fmt_str, target_percent_s))
2865 return false;
2868 /* If __builtin_{,v}snprintf_chk is used, assume {,v}snprintf is
2869 available. */
2870 fn = builtin_decl_explicit (fcode == BUILT_IN_VSNPRINTF_CHK
2871 ? BUILT_IN_VSNPRINTF : BUILT_IN_SNPRINTF);
2872 if (!fn)
2873 return false;
2875 /* Replace the called function and the first 5 argument by 3 retaining
2876 trailing varargs. */
2877 gimple_call_set_fndecl (stmt, fn);
2878 gimple_call_set_fntype (stmt, TREE_TYPE (fn));
2879 gimple_call_set_arg (stmt, 0, dest);
2880 gimple_call_set_arg (stmt, 1, len);
2881 gimple_call_set_arg (stmt, 2, fmt);
2882 for (unsigned i = 3; i < gimple_call_num_args (stmt) - 2; ++i)
2883 gimple_call_set_arg (stmt, i, gimple_call_arg (stmt, i + 2));
2884 gimple_set_num_ops (stmt, gimple_num_ops (stmt) - 2);
2885 fold_stmt (gsi);
2886 return true;
2889 /* Fold a call EXP to __{,v}sprintf_chk having NARGS passed as ARGS.
2890 Return NULL_TREE if a normal call should be emitted rather than
2891 expanding the function inline. FCODE is either BUILT_IN_SPRINTF_CHK
2892 or BUILT_IN_VSPRINTF_CHK. */
2894 static bool
2895 gimple_fold_builtin_sprintf_chk (gimple_stmt_iterator *gsi,
2896 enum built_in_function fcode)
2898 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
2899 tree dest, size, len, fn, fmt, flag;
2900 const char *fmt_str;
2901 unsigned nargs = gimple_call_num_args (stmt);
2903 /* Verify the required arguments in the original call. */
2904 if (nargs < 4)
2905 return false;
2906 dest = gimple_call_arg (stmt, 0);
2907 flag = gimple_call_arg (stmt, 1);
2908 size = gimple_call_arg (stmt, 2);
2909 fmt = gimple_call_arg (stmt, 3);
2911 if (! tree_fits_uhwi_p (size))
2912 return false;
2914 len = NULL_TREE;
2916 if (!init_target_chars ())
2917 return false;
2919 /* Check whether the format is a literal string constant. */
2920 fmt_str = c_getstr (fmt);
2921 if (fmt_str != NULL)
2923 /* If the format doesn't contain % args or %%, we know the size. */
2924 if (strchr (fmt_str, target_percent) == 0)
2926 if (fcode != BUILT_IN_SPRINTF_CHK || nargs == 4)
2927 len = build_int_cstu (size_type_node, strlen (fmt_str));
2929 /* If the format is "%s" and first ... argument is a string literal,
2930 we know the size too. */
2931 else if (fcode == BUILT_IN_SPRINTF_CHK
2932 && strcmp (fmt_str, target_percent_s) == 0)
2934 tree arg;
2936 if (nargs == 5)
2938 arg = gimple_call_arg (stmt, 4);
2939 if (POINTER_TYPE_P (TREE_TYPE (arg)))
2941 len = c_strlen (arg, 1);
2942 if (! len || ! tree_fits_uhwi_p (len))
2943 len = NULL_TREE;
2949 if (! integer_all_onesp (size))
2951 if (! len || ! tree_int_cst_lt (len, size))
2952 return false;
2955 /* Only convert __{,v}sprintf_chk to {,v}sprintf if flag is 0
2956 or if format doesn't contain % chars or is "%s". */
2957 if (! integer_zerop (flag))
2959 if (fmt_str == NULL)
2960 return false;
2961 if (strchr (fmt_str, target_percent) != NULL
2962 && strcmp (fmt_str, target_percent_s))
2963 return false;
2966 /* If __builtin_{,v}sprintf_chk is used, assume {,v}sprintf is available. */
2967 fn = builtin_decl_explicit (fcode == BUILT_IN_VSPRINTF_CHK
2968 ? BUILT_IN_VSPRINTF : BUILT_IN_SPRINTF);
2969 if (!fn)
2970 return false;
2972 /* Replace the called function and the first 4 argument by 2 retaining
2973 trailing varargs. */
2974 gimple_call_set_fndecl (stmt, fn);
2975 gimple_call_set_fntype (stmt, TREE_TYPE (fn));
2976 gimple_call_set_arg (stmt, 0, dest);
2977 gimple_call_set_arg (stmt, 1, fmt);
2978 for (unsigned i = 2; i < gimple_call_num_args (stmt) - 2; ++i)
2979 gimple_call_set_arg (stmt, i, gimple_call_arg (stmt, i + 2));
2980 gimple_set_num_ops (stmt, gimple_num_ops (stmt) - 2);
2981 fold_stmt (gsi);
2982 return true;
2985 /* Simplify a call to the sprintf builtin with arguments DEST, FMT, and ORIG.
2986 ORIG may be null if this is a 2-argument call. We don't attempt to
2987 simplify calls with more than 3 arguments.
2989 Return true if simplification was possible, otherwise false. */
2991 bool
2992 gimple_fold_builtin_sprintf (gimple_stmt_iterator *gsi)
2994 gimple *stmt = gsi_stmt (*gsi);
2995 tree dest = gimple_call_arg (stmt, 0);
2996 tree fmt = gimple_call_arg (stmt, 1);
2997 tree orig = NULL_TREE;
2998 const char *fmt_str = NULL;
3000 /* Verify the required arguments in the original call. We deal with two
3001 types of sprintf() calls: 'sprintf (str, fmt)' and
3002 'sprintf (dest, "%s", orig)'. */
3003 if (gimple_call_num_args (stmt) > 3)
3004 return false;
3006 if (gimple_call_num_args (stmt) == 3)
3007 orig = gimple_call_arg (stmt, 2);
3009 /* Check whether the format is a literal string constant. */
3010 fmt_str = c_getstr (fmt);
3011 if (fmt_str == NULL)
3012 return false;
3014 if (!init_target_chars ())
3015 return false;
3017 /* If the format doesn't contain % args or %%, use strcpy. */
3018 if (strchr (fmt_str, target_percent) == NULL)
3020 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
3022 if (!fn)
3023 return false;
3025 /* Don't optimize sprintf (buf, "abc", ptr++). */
3026 if (orig)
3027 return false;
3029 /* Convert sprintf (str, fmt) into strcpy (str, fmt) when
3030 'format' is known to contain no % formats. */
3031 gimple_seq stmts = NULL;
3032 gimple *repl = gimple_build_call (fn, 2, dest, fmt);
3033 gimple_seq_add_stmt_without_update (&stmts, repl);
3034 if (gimple_call_lhs (stmt))
3036 repl = gimple_build_assign (gimple_call_lhs (stmt),
3037 build_int_cst (integer_type_node,
3038 strlen (fmt_str)));
3039 gimple_seq_add_stmt_without_update (&stmts, repl);
3040 gsi_replace_with_seq_vops (gsi, stmts);
3041 /* gsi now points at the assignment to the lhs, get a
3042 stmt iterator to the memcpy call.
3043 ??? We can't use gsi_for_stmt as that doesn't work when the
3044 CFG isn't built yet. */
3045 gimple_stmt_iterator gsi2 = *gsi;
3046 gsi_prev (&gsi2);
3047 fold_stmt (&gsi2);
3049 else
3051 gsi_replace_with_seq_vops (gsi, stmts);
3052 fold_stmt (gsi);
3054 return true;
3057 /* If the format is "%s", use strcpy if the result isn't used. */
3058 else if (fmt_str && strcmp (fmt_str, target_percent_s) == 0)
3060 tree fn;
3061 fn = builtin_decl_implicit (BUILT_IN_STRCPY);
3063 if (!fn)
3064 return false;
3066 /* Don't crash on sprintf (str1, "%s"). */
3067 if (!orig)
3068 return false;
3070 tree orig_len = NULL_TREE;
3071 if (gimple_call_lhs (stmt))
3073 orig_len = get_maxval_strlen (orig, 0);
3074 if (!orig_len)
3075 return false;
3078 /* Convert sprintf (str1, "%s", str2) into strcpy (str1, str2). */
3079 gimple_seq stmts = NULL;
3080 gimple *repl = gimple_build_call (fn, 2, dest, orig);
3081 gimple_seq_add_stmt_without_update (&stmts, repl);
3082 if (gimple_call_lhs (stmt))
3084 if (!useless_type_conversion_p (integer_type_node,
3085 TREE_TYPE (orig_len)))
3086 orig_len = fold_convert (integer_type_node, orig_len);
3087 repl = gimple_build_assign (gimple_call_lhs (stmt), orig_len);
3088 gimple_seq_add_stmt_without_update (&stmts, repl);
3089 gsi_replace_with_seq_vops (gsi, stmts);
3090 /* gsi now points at the assignment to the lhs, get a
3091 stmt iterator to the memcpy call.
3092 ??? We can't use gsi_for_stmt as that doesn't work when the
3093 CFG isn't built yet. */
3094 gimple_stmt_iterator gsi2 = *gsi;
3095 gsi_prev (&gsi2);
3096 fold_stmt (&gsi2);
3098 else
3100 gsi_replace_with_seq_vops (gsi, stmts);
3101 fold_stmt (gsi);
3103 return true;
3105 return false;
3108 /* Simplify a call to the snprintf builtin with arguments DEST, DESTSIZE,
3109 FMT, and ORIG. ORIG may be null if this is a 3-argument call. We don't
3110 attempt to simplify calls with more than 4 arguments.
3112 Return true if simplification was possible, otherwise false. */
3114 bool
3115 gimple_fold_builtin_snprintf (gimple_stmt_iterator *gsi)
3117 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
3118 tree dest = gimple_call_arg (stmt, 0);
3119 tree destsize = gimple_call_arg (stmt, 1);
3120 tree fmt = gimple_call_arg (stmt, 2);
3121 tree orig = NULL_TREE;
3122 const char *fmt_str = NULL;
3124 if (gimple_call_num_args (stmt) > 4)
3125 return false;
3127 if (gimple_call_num_args (stmt) == 4)
3128 orig = gimple_call_arg (stmt, 3);
3130 if (!tree_fits_uhwi_p (destsize))
3131 return false;
3132 unsigned HOST_WIDE_INT destlen = tree_to_uhwi (destsize);
3134 /* Check whether the format is a literal string constant. */
3135 fmt_str = c_getstr (fmt);
3136 if (fmt_str == NULL)
3137 return false;
3139 if (!init_target_chars ())
3140 return false;
3142 /* If the format doesn't contain % args or %%, use strcpy. */
3143 if (strchr (fmt_str, target_percent) == NULL)
3145 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
3146 if (!fn)
3147 return false;
3149 /* Don't optimize snprintf (buf, 4, "abc", ptr++). */
3150 if (orig)
3151 return false;
3153 /* We could expand this as
3154 memcpy (str, fmt, cst - 1); str[cst - 1] = '\0';
3155 or to
3156 memcpy (str, fmt_with_nul_at_cstm1, cst);
3157 but in the former case that might increase code size
3158 and in the latter case grow .rodata section too much.
3159 So punt for now. */
3160 size_t len = strlen (fmt_str);
3161 if (len >= destlen)
3162 return false;
3164 gimple_seq stmts = NULL;
3165 gimple *repl = gimple_build_call (fn, 2, dest, fmt);
3166 gimple_seq_add_stmt_without_update (&stmts, repl);
3167 if (gimple_call_lhs (stmt))
3169 repl = gimple_build_assign (gimple_call_lhs (stmt),
3170 build_int_cst (integer_type_node, len));
3171 gimple_seq_add_stmt_without_update (&stmts, repl);
3172 gsi_replace_with_seq_vops (gsi, stmts);
3173 /* gsi now points at the assignment to the lhs, get a
3174 stmt iterator to the memcpy call.
3175 ??? We can't use gsi_for_stmt as that doesn't work when the
3176 CFG isn't built yet. */
3177 gimple_stmt_iterator gsi2 = *gsi;
3178 gsi_prev (&gsi2);
3179 fold_stmt (&gsi2);
3181 else
3183 gsi_replace_with_seq_vops (gsi, stmts);
3184 fold_stmt (gsi);
3186 return true;
3189 /* If the format is "%s", use strcpy if the result isn't used. */
3190 else if (fmt_str && strcmp (fmt_str, target_percent_s) == 0)
3192 tree fn = builtin_decl_implicit (BUILT_IN_STRCPY);
3193 if (!fn)
3194 return false;
3196 /* Don't crash on snprintf (str1, cst, "%s"). */
3197 if (!orig)
3198 return false;
3200 tree orig_len = get_maxval_strlen (orig, 0);
3201 if (!orig_len || TREE_CODE (orig_len) != INTEGER_CST)
3202 return false;
3204 /* We could expand this as
3205 memcpy (str1, str2, cst - 1); str1[cst - 1] = '\0';
3206 or to
3207 memcpy (str1, str2_with_nul_at_cstm1, cst);
3208 but in the former case that might increase code size
3209 and in the latter case grow .rodata section too much.
3210 So punt for now. */
3211 if (compare_tree_int (orig_len, destlen) >= 0)
3212 return false;
3214 /* Convert snprintf (str1, cst, "%s", str2) into
3215 strcpy (str1, str2) if strlen (str2) < cst. */
3216 gimple_seq stmts = NULL;
3217 gimple *repl = gimple_build_call (fn, 2, dest, orig);
3218 gimple_seq_add_stmt_without_update (&stmts, repl);
3219 if (gimple_call_lhs (stmt))
3221 if (!useless_type_conversion_p (integer_type_node,
3222 TREE_TYPE (orig_len)))
3223 orig_len = fold_convert (integer_type_node, orig_len);
3224 repl = gimple_build_assign (gimple_call_lhs (stmt), orig_len);
3225 gimple_seq_add_stmt_without_update (&stmts, repl);
3226 gsi_replace_with_seq_vops (gsi, stmts);
3227 /* gsi now points at the assignment to the lhs, get a
3228 stmt iterator to the memcpy call.
3229 ??? We can't use gsi_for_stmt as that doesn't work when the
3230 CFG isn't built yet. */
3231 gimple_stmt_iterator gsi2 = *gsi;
3232 gsi_prev (&gsi2);
3233 fold_stmt (&gsi2);
3235 else
3237 gsi_replace_with_seq_vops (gsi, stmts);
3238 fold_stmt (gsi);
3240 return true;
3242 return false;
3245 /* Fold a call to the {,v}fprintf{,_unlocked} and __{,v}printf_chk builtins.
3246 FP, FMT, and ARG are the arguments to the call. We don't fold calls with
3247 more than 3 arguments, and ARG may be null in the 2-argument case.
3249 Return NULL_TREE if no simplification was possible, otherwise return the
3250 simplified form of the call as a tree. FCODE is the BUILT_IN_*
3251 code of the function to be simplified. */
3253 static bool
3254 gimple_fold_builtin_fprintf (gimple_stmt_iterator *gsi,
3255 tree fp, tree fmt, tree arg,
3256 enum built_in_function fcode)
3258 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
3259 tree fn_fputc, fn_fputs;
3260 const char *fmt_str = NULL;
3262 /* If the return value is used, don't do the transformation. */
3263 if (gimple_call_lhs (stmt) != NULL_TREE)
3264 return false;
3266 /* Check whether the format is a literal string constant. */
3267 fmt_str = c_getstr (fmt);
3268 if (fmt_str == NULL)
3269 return false;
3271 if (fcode == BUILT_IN_FPRINTF_UNLOCKED)
3273 /* If we're using an unlocked function, assume the other
3274 unlocked functions exist explicitly. */
3275 fn_fputc = builtin_decl_explicit (BUILT_IN_FPUTC_UNLOCKED);
3276 fn_fputs = builtin_decl_explicit (BUILT_IN_FPUTS_UNLOCKED);
3278 else
3280 fn_fputc = builtin_decl_implicit (BUILT_IN_FPUTC);
3281 fn_fputs = builtin_decl_implicit (BUILT_IN_FPUTS);
3284 if (!init_target_chars ())
3285 return false;
3287 /* If the format doesn't contain % args or %%, use strcpy. */
3288 if (strchr (fmt_str, target_percent) == NULL)
3290 if (fcode != BUILT_IN_VFPRINTF && fcode != BUILT_IN_VFPRINTF_CHK
3291 && arg)
3292 return false;
3294 /* If the format specifier was "", fprintf does nothing. */
3295 if (fmt_str[0] == '\0')
3297 replace_call_with_value (gsi, NULL_TREE);
3298 return true;
3301 /* When "string" doesn't contain %, replace all cases of
3302 fprintf (fp, string) with fputs (string, fp). The fputs
3303 builtin will take care of special cases like length == 1. */
3304 if (fn_fputs)
3306 gcall *repl = gimple_build_call (fn_fputs, 2, fmt, fp);
3307 replace_call_with_call_and_fold (gsi, repl);
3308 return true;
3312 /* The other optimizations can be done only on the non-va_list variants. */
3313 else if (fcode == BUILT_IN_VFPRINTF || fcode == BUILT_IN_VFPRINTF_CHK)
3314 return false;
3316 /* If the format specifier was "%s", call __builtin_fputs (arg, fp). */
3317 else if (strcmp (fmt_str, target_percent_s) == 0)
3319 if (!arg || ! POINTER_TYPE_P (TREE_TYPE (arg)))
3320 return false;
3321 if (fn_fputs)
3323 gcall *repl = gimple_build_call (fn_fputs, 2, arg, fp);
3324 replace_call_with_call_and_fold (gsi, repl);
3325 return true;
3329 /* If the format specifier was "%c", call __builtin_fputc (arg, fp). */
3330 else if (strcmp (fmt_str, target_percent_c) == 0)
3332 if (!arg
3333 || ! useless_type_conversion_p (integer_type_node, TREE_TYPE (arg)))
3334 return false;
3335 if (fn_fputc)
3337 gcall *repl = gimple_build_call (fn_fputc, 2, arg, fp);
3338 replace_call_with_call_and_fold (gsi, repl);
3339 return true;
3343 return false;
3346 /* Fold a call to the {,v}printf{,_unlocked} and __{,v}printf_chk builtins.
3347 FMT and ARG are the arguments to the call; we don't fold cases with
3348 more than 2 arguments, and ARG may be null if this is a 1-argument case.
3350 Return NULL_TREE if no simplification was possible, otherwise return the
3351 simplified form of the call as a tree. FCODE is the BUILT_IN_*
3352 code of the function to be simplified. */
3354 static bool
3355 gimple_fold_builtin_printf (gimple_stmt_iterator *gsi, tree fmt,
3356 tree arg, enum built_in_function fcode)
3358 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
3359 tree fn_putchar, fn_puts, newarg;
3360 const char *fmt_str = NULL;
3362 /* If the return value is used, don't do the transformation. */
3363 if (gimple_call_lhs (stmt) != NULL_TREE)
3364 return false;
3366 /* Check whether the format is a literal string constant. */
3367 fmt_str = c_getstr (fmt);
3368 if (fmt_str == NULL)
3369 return false;
3371 if (fcode == BUILT_IN_PRINTF_UNLOCKED)
3373 /* If we're using an unlocked function, assume the other
3374 unlocked functions exist explicitly. */
3375 fn_putchar = builtin_decl_explicit (BUILT_IN_PUTCHAR_UNLOCKED);
3376 fn_puts = builtin_decl_explicit (BUILT_IN_PUTS_UNLOCKED);
3378 else
3380 fn_putchar = builtin_decl_implicit (BUILT_IN_PUTCHAR);
3381 fn_puts = builtin_decl_implicit (BUILT_IN_PUTS);
3384 if (!init_target_chars ())
3385 return false;
3387 if (strcmp (fmt_str, target_percent_s) == 0
3388 || strchr (fmt_str, target_percent) == NULL)
3390 const char *str;
3392 if (strcmp (fmt_str, target_percent_s) == 0)
3394 if (fcode == BUILT_IN_VPRINTF || fcode == BUILT_IN_VPRINTF_CHK)
3395 return false;
3397 if (!arg || ! POINTER_TYPE_P (TREE_TYPE (arg)))
3398 return false;
3400 str = c_getstr (arg);
3401 if (str == NULL)
3402 return false;
3404 else
3406 /* The format specifier doesn't contain any '%' characters. */
3407 if (fcode != BUILT_IN_VPRINTF && fcode != BUILT_IN_VPRINTF_CHK
3408 && arg)
3409 return false;
3410 str = fmt_str;
3413 /* If the string was "", printf does nothing. */
3414 if (str[0] == '\0')
3416 replace_call_with_value (gsi, NULL_TREE);
3417 return true;
3420 /* If the string has length of 1, call putchar. */
3421 if (str[1] == '\0')
3423 /* Given printf("c"), (where c is any one character,)
3424 convert "c"[0] to an int and pass that to the replacement
3425 function. */
3426 newarg = build_int_cst (integer_type_node, str[0]);
3427 if (fn_putchar)
3429 gcall *repl = gimple_build_call (fn_putchar, 1, newarg);
3430 replace_call_with_call_and_fold (gsi, repl);
3431 return true;
3434 else
3436 /* If the string was "string\n", call puts("string"). */
3437 size_t len = strlen (str);
3438 if ((unsigned char)str[len - 1] == target_newline
3439 && (size_t) (int) len == len
3440 && (int) len > 0)
3442 char *newstr;
3443 tree offset_node, string_cst;
3445 /* Create a NUL-terminated string that's one char shorter
3446 than the original, stripping off the trailing '\n'. */
3447 newarg = build_string_literal (len, str);
3448 string_cst = string_constant (newarg, &offset_node);
3449 gcc_checking_assert (string_cst
3450 && (TREE_STRING_LENGTH (string_cst)
3451 == (int) len)
3452 && integer_zerop (offset_node)
3453 && (unsigned char)
3454 TREE_STRING_POINTER (string_cst)[len - 1]
3455 == target_newline);
3456 /* build_string_literal creates a new STRING_CST,
3457 modify it in place to avoid double copying. */
3458 newstr = CONST_CAST (char *, TREE_STRING_POINTER (string_cst));
3459 newstr[len - 1] = '\0';
3460 if (fn_puts)
3462 gcall *repl = gimple_build_call (fn_puts, 1, newarg);
3463 replace_call_with_call_and_fold (gsi, repl);
3464 return true;
3467 else
3468 /* We'd like to arrange to call fputs(string,stdout) here,
3469 but we need stdout and don't have a way to get it yet. */
3470 return false;
3474 /* The other optimizations can be done only on the non-va_list variants. */
3475 else if (fcode == BUILT_IN_VPRINTF || fcode == BUILT_IN_VPRINTF_CHK)
3476 return false;
3478 /* If the format specifier was "%s\n", call __builtin_puts(arg). */
3479 else if (strcmp (fmt_str, target_percent_s_newline) == 0)
3481 if (!arg || ! POINTER_TYPE_P (TREE_TYPE (arg)))
3482 return false;
3483 if (fn_puts)
3485 gcall *repl = gimple_build_call (fn_puts, 1, arg);
3486 replace_call_with_call_and_fold (gsi, repl);
3487 return true;
3491 /* If the format specifier was "%c", call __builtin_putchar(arg). */
3492 else if (strcmp (fmt_str, target_percent_c) == 0)
3494 if (!arg || ! useless_type_conversion_p (integer_type_node,
3495 TREE_TYPE (arg)))
3496 return false;
3497 if (fn_putchar)
3499 gcall *repl = gimple_build_call (fn_putchar, 1, arg);
3500 replace_call_with_call_and_fold (gsi, repl);
3501 return true;
3505 return false;
3510 /* Fold a call to __builtin_strlen with known length LEN. */
3512 static bool
3513 gimple_fold_builtin_strlen (gimple_stmt_iterator *gsi)
3515 gimple *stmt = gsi_stmt (*gsi);
3517 wide_int minlen;
3518 wide_int maxlen;
3520 tree lenrange[2];
3521 if (!get_range_strlen (gimple_call_arg (stmt, 0), lenrange, true)
3522 && lenrange[0] && TREE_CODE (lenrange[0]) == INTEGER_CST
3523 && lenrange[1] && TREE_CODE (lenrange[1]) == INTEGER_CST)
3525 /* The range of lengths refers to either a single constant
3526 string or to the longest and shortest constant string
3527 referenced by the argument of the strlen() call, or to
3528 the strings that can possibly be stored in the arrays
3529 the argument refers to. */
3530 minlen = wi::to_wide (lenrange[0]);
3531 maxlen = wi::to_wide (lenrange[1]);
3533 else
3535 unsigned prec = TYPE_PRECISION (sizetype);
3537 minlen = wi::shwi (0, prec);
3538 maxlen = wi::to_wide (max_object_size (), prec) - 2;
3541 if (minlen == maxlen)
3543 lenrange[0] = force_gimple_operand_gsi (gsi, lenrange[0], true, NULL,
3544 true, GSI_SAME_STMT);
3545 replace_call_with_value (gsi, lenrange[0]);
3546 return true;
3549 tree lhs = gimple_call_lhs (stmt);
3550 if (lhs && TREE_CODE (lhs) == SSA_NAME)
3551 set_range_info (lhs, VR_RANGE, minlen, maxlen);
3553 return false;
3556 /* Fold a call to __builtin_acc_on_device. */
3558 static bool
3559 gimple_fold_builtin_acc_on_device (gimple_stmt_iterator *gsi, tree arg0)
3561 /* Defer folding until we know which compiler we're in. */
3562 if (symtab->state != EXPANSION)
3563 return false;
3565 unsigned val_host = GOMP_DEVICE_HOST;
3566 unsigned val_dev = GOMP_DEVICE_NONE;
3568 #ifdef ACCEL_COMPILER
3569 val_host = GOMP_DEVICE_NOT_HOST;
3570 val_dev = ACCEL_COMPILER_acc_device;
3571 #endif
3573 location_t loc = gimple_location (gsi_stmt (*gsi));
3575 tree host_eq = make_ssa_name (boolean_type_node);
3576 gimple *host_ass = gimple_build_assign
3577 (host_eq, EQ_EXPR, arg0, build_int_cst (TREE_TYPE (arg0), val_host));
3578 gimple_set_location (host_ass, loc);
3579 gsi_insert_before (gsi, host_ass, GSI_SAME_STMT);
3581 tree dev_eq = make_ssa_name (boolean_type_node);
3582 gimple *dev_ass = gimple_build_assign
3583 (dev_eq, EQ_EXPR, arg0, build_int_cst (TREE_TYPE (arg0), val_dev));
3584 gimple_set_location (dev_ass, loc);
3585 gsi_insert_before (gsi, dev_ass, GSI_SAME_STMT);
3587 tree result = make_ssa_name (boolean_type_node);
3588 gimple *result_ass = gimple_build_assign
3589 (result, BIT_IOR_EXPR, host_eq, dev_eq);
3590 gimple_set_location (result_ass, loc);
3591 gsi_insert_before (gsi, result_ass, GSI_SAME_STMT);
3593 replace_call_with_value (gsi, result);
3595 return true;
3598 /* Fold realloc (0, n) -> malloc (n). */
3600 static bool
3601 gimple_fold_builtin_realloc (gimple_stmt_iterator *gsi)
3603 gimple *stmt = gsi_stmt (*gsi);
3604 tree arg = gimple_call_arg (stmt, 0);
3605 tree size = gimple_call_arg (stmt, 1);
3607 if (operand_equal_p (arg, null_pointer_node, 0))
3609 tree fn_malloc = builtin_decl_implicit (BUILT_IN_MALLOC);
3610 if (fn_malloc)
3612 gcall *repl = gimple_build_call (fn_malloc, 1, size);
3613 replace_call_with_call_and_fold (gsi, repl);
3614 return true;
3617 return false;
3620 /* Fold the non-target builtin at *GSI and return whether any simplification
3621 was made. */
3623 static bool
3624 gimple_fold_builtin (gimple_stmt_iterator *gsi)
3626 gcall *stmt = as_a <gcall *>(gsi_stmt (*gsi));
3627 tree callee = gimple_call_fndecl (stmt);
3629 /* Give up for always_inline inline builtins until they are
3630 inlined. */
3631 if (avoid_folding_inline_builtin (callee))
3632 return false;
3634 unsigned n = gimple_call_num_args (stmt);
3635 enum built_in_function fcode = DECL_FUNCTION_CODE (callee);
3636 switch (fcode)
3638 case BUILT_IN_BCMP:
3639 return gimple_fold_builtin_bcmp (gsi);
3640 case BUILT_IN_BCOPY:
3641 return gimple_fold_builtin_bcopy (gsi);
3642 case BUILT_IN_BZERO:
3643 return gimple_fold_builtin_bzero (gsi);
3645 case BUILT_IN_MEMSET:
3646 return gimple_fold_builtin_memset (gsi,
3647 gimple_call_arg (stmt, 1),
3648 gimple_call_arg (stmt, 2));
3649 case BUILT_IN_MEMCPY:
3650 return gimple_fold_builtin_memory_op (gsi, gimple_call_arg (stmt, 0),
3651 gimple_call_arg (stmt, 1), 0);
3652 case BUILT_IN_MEMPCPY:
3653 return gimple_fold_builtin_memory_op (gsi, gimple_call_arg (stmt, 0),
3654 gimple_call_arg (stmt, 1), 1);
3655 case BUILT_IN_MEMMOVE:
3656 return gimple_fold_builtin_memory_op (gsi, gimple_call_arg (stmt, 0),
3657 gimple_call_arg (stmt, 1), 3);
3658 case BUILT_IN_SPRINTF_CHK:
3659 case BUILT_IN_VSPRINTF_CHK:
3660 return gimple_fold_builtin_sprintf_chk (gsi, fcode);
3661 case BUILT_IN_STRCAT_CHK:
3662 return gimple_fold_builtin_strcat_chk (gsi);
3663 case BUILT_IN_STRNCAT_CHK:
3664 return gimple_fold_builtin_strncat_chk (gsi);
3665 case BUILT_IN_STRLEN:
3666 return gimple_fold_builtin_strlen (gsi);
3667 case BUILT_IN_STRCPY:
3668 return gimple_fold_builtin_strcpy (gsi,
3669 gimple_call_arg (stmt, 0),
3670 gimple_call_arg (stmt, 1));
3671 case BUILT_IN_STRNCPY:
3672 return gimple_fold_builtin_strncpy (gsi,
3673 gimple_call_arg (stmt, 0),
3674 gimple_call_arg (stmt, 1),
3675 gimple_call_arg (stmt, 2));
3676 case BUILT_IN_STRCAT:
3677 return gimple_fold_builtin_strcat (gsi, gimple_call_arg (stmt, 0),
3678 gimple_call_arg (stmt, 1));
3679 case BUILT_IN_STRNCAT:
3680 return gimple_fold_builtin_strncat (gsi);
3681 case BUILT_IN_INDEX:
3682 case BUILT_IN_STRCHR:
3683 return gimple_fold_builtin_strchr (gsi, false);
3684 case BUILT_IN_RINDEX:
3685 case BUILT_IN_STRRCHR:
3686 return gimple_fold_builtin_strchr (gsi, true);
3687 case BUILT_IN_STRSTR:
3688 return gimple_fold_builtin_strstr (gsi);
3689 case BUILT_IN_STRCMP:
3690 case BUILT_IN_STRCASECMP:
3691 case BUILT_IN_STRNCMP:
3692 case BUILT_IN_STRNCASECMP:
3693 return gimple_fold_builtin_string_compare (gsi);
3694 case BUILT_IN_MEMCHR:
3695 return gimple_fold_builtin_memchr (gsi);
3696 case BUILT_IN_FPUTS:
3697 return gimple_fold_builtin_fputs (gsi, gimple_call_arg (stmt, 0),
3698 gimple_call_arg (stmt, 1), false);
3699 case BUILT_IN_FPUTS_UNLOCKED:
3700 return gimple_fold_builtin_fputs (gsi, gimple_call_arg (stmt, 0),
3701 gimple_call_arg (stmt, 1), true);
3702 case BUILT_IN_MEMCPY_CHK:
3703 case BUILT_IN_MEMPCPY_CHK:
3704 case BUILT_IN_MEMMOVE_CHK:
3705 case BUILT_IN_MEMSET_CHK:
3706 return gimple_fold_builtin_memory_chk (gsi,
3707 gimple_call_arg (stmt, 0),
3708 gimple_call_arg (stmt, 1),
3709 gimple_call_arg (stmt, 2),
3710 gimple_call_arg (stmt, 3),
3711 fcode);
3712 case BUILT_IN_STPCPY:
3713 return gimple_fold_builtin_stpcpy (gsi);
3714 case BUILT_IN_STRCPY_CHK:
3715 case BUILT_IN_STPCPY_CHK:
3716 return gimple_fold_builtin_stxcpy_chk (gsi,
3717 gimple_call_arg (stmt, 0),
3718 gimple_call_arg (stmt, 1),
3719 gimple_call_arg (stmt, 2),
3720 fcode);
3721 case BUILT_IN_STRNCPY_CHK:
3722 case BUILT_IN_STPNCPY_CHK:
3723 return gimple_fold_builtin_stxncpy_chk (gsi,
3724 gimple_call_arg (stmt, 0),
3725 gimple_call_arg (stmt, 1),
3726 gimple_call_arg (stmt, 2),
3727 gimple_call_arg (stmt, 3),
3728 fcode);
3729 case BUILT_IN_SNPRINTF_CHK:
3730 case BUILT_IN_VSNPRINTF_CHK:
3731 return gimple_fold_builtin_snprintf_chk (gsi, fcode);
3733 case BUILT_IN_FPRINTF:
3734 case BUILT_IN_FPRINTF_UNLOCKED:
3735 case BUILT_IN_VFPRINTF:
3736 if (n == 2 || n == 3)
3737 return gimple_fold_builtin_fprintf (gsi,
3738 gimple_call_arg (stmt, 0),
3739 gimple_call_arg (stmt, 1),
3740 n == 3
3741 ? gimple_call_arg (stmt, 2)
3742 : NULL_TREE,
3743 fcode);
3744 break;
3745 case BUILT_IN_FPRINTF_CHK:
3746 case BUILT_IN_VFPRINTF_CHK:
3747 if (n == 3 || n == 4)
3748 return gimple_fold_builtin_fprintf (gsi,
3749 gimple_call_arg (stmt, 0),
3750 gimple_call_arg (stmt, 2),
3751 n == 4
3752 ? gimple_call_arg (stmt, 3)
3753 : NULL_TREE,
3754 fcode);
3755 break;
3756 case BUILT_IN_PRINTF:
3757 case BUILT_IN_PRINTF_UNLOCKED:
3758 case BUILT_IN_VPRINTF:
3759 if (n == 1 || n == 2)
3760 return gimple_fold_builtin_printf (gsi, gimple_call_arg (stmt, 0),
3761 n == 2
3762 ? gimple_call_arg (stmt, 1)
3763 : NULL_TREE, fcode);
3764 break;
3765 case BUILT_IN_PRINTF_CHK:
3766 case BUILT_IN_VPRINTF_CHK:
3767 if (n == 2 || n == 3)
3768 return gimple_fold_builtin_printf (gsi, gimple_call_arg (stmt, 1),
3769 n == 3
3770 ? gimple_call_arg (stmt, 2)
3771 : NULL_TREE, fcode);
3772 break;
3773 case BUILT_IN_ACC_ON_DEVICE:
3774 return gimple_fold_builtin_acc_on_device (gsi,
3775 gimple_call_arg (stmt, 0));
3776 case BUILT_IN_REALLOC:
3777 return gimple_fold_builtin_realloc (gsi);
3779 default:;
3782 /* Try the generic builtin folder. */
3783 bool ignore = (gimple_call_lhs (stmt) == NULL);
3784 tree result = fold_call_stmt (stmt, ignore);
3785 if (result)
3787 if (ignore)
3788 STRIP_NOPS (result);
3789 else
3790 result = fold_convert (gimple_call_return_type (stmt), result);
3791 if (!update_call_from_tree (gsi, result))
3792 gimplify_and_update_call_from_tree (gsi, result);
3793 return true;
3796 return false;
3799 /* Transform IFN_GOACC_DIM_SIZE and IFN_GOACC_DIM_POS internal
3800 function calls to constants, where possible. */
3802 static tree
3803 fold_internal_goacc_dim (const gimple *call)
3805 int axis = oacc_get_ifn_dim_arg (call);
3806 int size = oacc_get_fn_dim_size (current_function_decl, axis);
3807 tree result = NULL_TREE;
3808 tree type = TREE_TYPE (gimple_call_lhs (call));
3810 switch (gimple_call_internal_fn (call))
3812 case IFN_GOACC_DIM_POS:
3813 /* If the size is 1, we know the answer. */
3814 if (size == 1)
3815 result = build_int_cst (type, 0);
3816 break;
3817 case IFN_GOACC_DIM_SIZE:
3818 /* If the size is not dynamic, we know the answer. */
3819 if (size)
3820 result = build_int_cst (type, size);
3821 break;
3822 default:
3823 break;
3826 return result;
3829 /* Return true if stmt is __atomic_compare_exchange_N call which is suitable
3830 for conversion into ATOMIC_COMPARE_EXCHANGE if the second argument is
3831 &var where var is only addressable because of such calls. */
3833 bool
3834 optimize_atomic_compare_exchange_p (gimple *stmt)
3836 if (gimple_call_num_args (stmt) != 6
3837 || !flag_inline_atomics
3838 || !optimize
3839 || sanitize_flags_p (SANITIZE_THREAD | SANITIZE_ADDRESS)
3840 || !gimple_call_builtin_p (stmt, BUILT_IN_NORMAL)
3841 || !gimple_vdef (stmt)
3842 || !gimple_vuse (stmt))
3843 return false;
3845 tree fndecl = gimple_call_fndecl (stmt);
3846 switch (DECL_FUNCTION_CODE (fndecl))
3848 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_1:
3849 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_2:
3850 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_4:
3851 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_8:
3852 case BUILT_IN_ATOMIC_COMPARE_EXCHANGE_16:
3853 break;
3854 default:
3855 return false;
3858 tree expected = gimple_call_arg (stmt, 1);
3859 if (TREE_CODE (expected) != ADDR_EXPR
3860 || !SSA_VAR_P (TREE_OPERAND (expected, 0)))
3861 return false;
3863 tree etype = TREE_TYPE (TREE_OPERAND (expected, 0));
3864 if (!is_gimple_reg_type (etype)
3865 || !auto_var_in_fn_p (TREE_OPERAND (expected, 0), current_function_decl)
3866 || TREE_THIS_VOLATILE (etype)
3867 || VECTOR_TYPE_P (etype)
3868 || TREE_CODE (etype) == COMPLEX_TYPE
3869 /* Don't optimize floating point expected vars, VIEW_CONVERT_EXPRs
3870 might not preserve all the bits. See PR71716. */
3871 || SCALAR_FLOAT_TYPE_P (etype)
3872 || maybe_ne (TYPE_PRECISION (etype),
3873 GET_MODE_BITSIZE (TYPE_MODE (etype))))
3874 return false;
3876 tree weak = gimple_call_arg (stmt, 3);
3877 if (!integer_zerop (weak) && !integer_onep (weak))
3878 return false;
3880 tree parmt = TYPE_ARG_TYPES (TREE_TYPE (fndecl));
3881 tree itype = TREE_VALUE (TREE_CHAIN (TREE_CHAIN (parmt)));
3882 machine_mode mode = TYPE_MODE (itype);
3884 if (direct_optab_handler (atomic_compare_and_swap_optab, mode)
3885 == CODE_FOR_nothing
3886 && optab_handler (sync_compare_and_swap_optab, mode) == CODE_FOR_nothing)
3887 return false;
3889 if (maybe_ne (int_size_in_bytes (etype), GET_MODE_SIZE (mode)))
3890 return false;
3892 return true;
3895 /* Fold
3896 r = __atomic_compare_exchange_N (p, &e, d, w, s, f);
3897 into
3898 _Complex uintN_t t = ATOMIC_COMPARE_EXCHANGE (p, e, d, w * 256 + N, s, f);
3899 i = IMAGPART_EXPR <t>;
3900 r = (_Bool) i;
3901 e = REALPART_EXPR <t>; */
3903 void
3904 fold_builtin_atomic_compare_exchange (gimple_stmt_iterator *gsi)
3906 gimple *stmt = gsi_stmt (*gsi);
3907 tree fndecl = gimple_call_fndecl (stmt);
3908 tree parmt = TYPE_ARG_TYPES (TREE_TYPE (fndecl));
3909 tree itype = TREE_VALUE (TREE_CHAIN (TREE_CHAIN (parmt)));
3910 tree ctype = build_complex_type (itype);
3911 tree expected = TREE_OPERAND (gimple_call_arg (stmt, 1), 0);
3912 bool throws = false;
3913 edge e = NULL;
3914 gimple *g = gimple_build_assign (make_ssa_name (TREE_TYPE (expected)),
3915 expected);
3916 gsi_insert_before (gsi, g, GSI_SAME_STMT);
3917 gimple_stmt_iterator gsiret = gsi_for_stmt (g);
3918 if (!useless_type_conversion_p (itype, TREE_TYPE (expected)))
3920 g = gimple_build_assign (make_ssa_name (itype), VIEW_CONVERT_EXPR,
3921 build1 (VIEW_CONVERT_EXPR, itype,
3922 gimple_assign_lhs (g)));
3923 gsi_insert_before (gsi, g, GSI_SAME_STMT);
3925 int flag = (integer_onep (gimple_call_arg (stmt, 3)) ? 256 : 0)
3926 + int_size_in_bytes (itype);
3927 g = gimple_build_call_internal (IFN_ATOMIC_COMPARE_EXCHANGE, 6,
3928 gimple_call_arg (stmt, 0),
3929 gimple_assign_lhs (g),
3930 gimple_call_arg (stmt, 2),
3931 build_int_cst (integer_type_node, flag),
3932 gimple_call_arg (stmt, 4),
3933 gimple_call_arg (stmt, 5));
3934 tree lhs = make_ssa_name (ctype);
3935 gimple_call_set_lhs (g, lhs);
3936 gimple_set_vdef (g, gimple_vdef (stmt));
3937 gimple_set_vuse (g, gimple_vuse (stmt));
3938 SSA_NAME_DEF_STMT (gimple_vdef (g)) = g;
3939 tree oldlhs = gimple_call_lhs (stmt);
3940 if (stmt_can_throw_internal (stmt))
3942 throws = true;
3943 e = find_fallthru_edge (gsi_bb (*gsi)->succs);
3945 gimple_call_set_nothrow (as_a <gcall *> (g),
3946 gimple_call_nothrow_p (as_a <gcall *> (stmt)));
3947 gimple_call_set_lhs (stmt, NULL_TREE);
3948 gsi_replace (gsi, g, true);
3949 if (oldlhs)
3951 g = gimple_build_assign (make_ssa_name (itype), IMAGPART_EXPR,
3952 build1 (IMAGPART_EXPR, itype, lhs));
3953 if (throws)
3955 gsi_insert_on_edge_immediate (e, g);
3956 *gsi = gsi_for_stmt (g);
3958 else
3959 gsi_insert_after (gsi, g, GSI_NEW_STMT);
3960 g = gimple_build_assign (oldlhs, NOP_EXPR, gimple_assign_lhs (g));
3961 gsi_insert_after (gsi, g, GSI_NEW_STMT);
3963 g = gimple_build_assign (make_ssa_name (itype), REALPART_EXPR,
3964 build1 (REALPART_EXPR, itype, lhs));
3965 if (throws && oldlhs == NULL_TREE)
3967 gsi_insert_on_edge_immediate (e, g);
3968 *gsi = gsi_for_stmt (g);
3970 else
3971 gsi_insert_after (gsi, g, GSI_NEW_STMT);
3972 if (!useless_type_conversion_p (TREE_TYPE (expected), itype))
3974 g = gimple_build_assign (make_ssa_name (TREE_TYPE (expected)),
3975 VIEW_CONVERT_EXPR,
3976 build1 (VIEW_CONVERT_EXPR, TREE_TYPE (expected),
3977 gimple_assign_lhs (g)));
3978 gsi_insert_after (gsi, g, GSI_NEW_STMT);
3980 g = gimple_build_assign (expected, SSA_NAME, gimple_assign_lhs (g));
3981 gsi_insert_after (gsi, g, GSI_NEW_STMT);
3982 *gsi = gsiret;
3985 /* Return true if ARG0 CODE ARG1 in infinite signed precision operation
3986 doesn't fit into TYPE. The test for overflow should be regardless of
3987 -fwrapv, and even for unsigned types. */
3989 bool
3990 arith_overflowed_p (enum tree_code code, const_tree type,
3991 const_tree arg0, const_tree arg1)
3993 typedef FIXED_WIDE_INT (WIDE_INT_MAX_PRECISION * 2) widest2_int;
3994 typedef generic_wide_int <wi::extended_tree <WIDE_INT_MAX_PRECISION * 2> >
3995 widest2_int_cst;
3996 widest2_int warg0 = widest2_int_cst (arg0);
3997 widest2_int warg1 = widest2_int_cst (arg1);
3998 widest2_int wres;
3999 switch (code)
4001 case PLUS_EXPR: wres = wi::add (warg0, warg1); break;
4002 case MINUS_EXPR: wres = wi::sub (warg0, warg1); break;
4003 case MULT_EXPR: wres = wi::mul (warg0, warg1); break;
4004 default: gcc_unreachable ();
4006 signop sign = TYPE_SIGN (type);
4007 if (sign == UNSIGNED && wi::neg_p (wres))
4008 return true;
4009 return wi::min_precision (wres, sign) > TYPE_PRECISION (type);
4012 /* Attempt to fold a call statement referenced by the statement iterator GSI.
4013 The statement may be replaced by another statement, e.g., if the call
4014 simplifies to a constant value. Return true if any changes were made.
4015 It is assumed that the operands have been previously folded. */
4017 static bool
4018 gimple_fold_call (gimple_stmt_iterator *gsi, bool inplace)
4020 gcall *stmt = as_a <gcall *> (gsi_stmt (*gsi));
4021 tree callee;
4022 bool changed = false;
4023 unsigned i;
4025 /* Fold *& in call arguments. */
4026 for (i = 0; i < gimple_call_num_args (stmt); ++i)
4027 if (REFERENCE_CLASS_P (gimple_call_arg (stmt, i)))
4029 tree tmp = maybe_fold_reference (gimple_call_arg (stmt, i), false);
4030 if (tmp)
4032 gimple_call_set_arg (stmt, i, tmp);
4033 changed = true;
4037 /* Check for virtual calls that became direct calls. */
4038 callee = gimple_call_fn (stmt);
4039 if (callee && TREE_CODE (callee) == OBJ_TYPE_REF)
4041 if (gimple_call_addr_fndecl (OBJ_TYPE_REF_EXPR (callee)) != NULL_TREE)
4043 if (dump_file && virtual_method_call_p (callee)
4044 && !possible_polymorphic_call_target_p
4045 (callee, stmt, cgraph_node::get (gimple_call_addr_fndecl
4046 (OBJ_TYPE_REF_EXPR (callee)))))
4048 fprintf (dump_file,
4049 "Type inheritance inconsistent devirtualization of ");
4050 print_gimple_stmt (dump_file, stmt, 0, TDF_SLIM);
4051 fprintf (dump_file, " to ");
4052 print_generic_expr (dump_file, callee, TDF_SLIM);
4053 fprintf (dump_file, "\n");
4056 gimple_call_set_fn (stmt, OBJ_TYPE_REF_EXPR (callee));
4057 changed = true;
4059 else if (flag_devirtualize && !inplace && virtual_method_call_p (callee))
4061 bool final;
4062 vec <cgraph_node *>targets
4063 = possible_polymorphic_call_targets (callee, stmt, &final);
4064 if (final && targets.length () <= 1 && dbg_cnt (devirt))
4066 tree lhs = gimple_call_lhs (stmt);
4067 if (dump_enabled_p ())
4069 location_t loc = gimple_location_safe (stmt);
4070 dump_printf_loc (MSG_OPTIMIZED_LOCATIONS, loc,
4071 "folding virtual function call to %s\n",
4072 targets.length () == 1
4073 ? targets[0]->name ()
4074 : "__builtin_unreachable");
4076 if (targets.length () == 1)
4078 tree fndecl = targets[0]->decl;
4079 gimple_call_set_fndecl (stmt, fndecl);
4080 changed = true;
4081 /* If changing the call to __cxa_pure_virtual
4082 or similar noreturn function, adjust gimple_call_fntype
4083 too. */
4084 if (gimple_call_noreturn_p (stmt)
4085 && VOID_TYPE_P (TREE_TYPE (TREE_TYPE (fndecl)))
4086 && TYPE_ARG_TYPES (TREE_TYPE (fndecl))
4087 && (TREE_VALUE (TYPE_ARG_TYPES (TREE_TYPE (fndecl)))
4088 == void_type_node))
4089 gimple_call_set_fntype (stmt, TREE_TYPE (fndecl));
4090 /* If the call becomes noreturn, remove the lhs. */
4091 if (lhs
4092 && gimple_call_noreturn_p (stmt)
4093 && (VOID_TYPE_P (TREE_TYPE (gimple_call_fntype (stmt)))
4094 || should_remove_lhs_p (lhs)))
4096 if (TREE_CODE (lhs) == SSA_NAME)
4098 tree var = create_tmp_var (TREE_TYPE (lhs));
4099 tree def = get_or_create_ssa_default_def (cfun, var);
4100 gimple *new_stmt = gimple_build_assign (lhs, def);
4101 gsi_insert_before (gsi, new_stmt, GSI_SAME_STMT);
4103 gimple_call_set_lhs (stmt, NULL_TREE);
4105 maybe_remove_unused_call_args (cfun, stmt);
4107 else
4109 tree fndecl = builtin_decl_implicit (BUILT_IN_UNREACHABLE);
4110 gimple *new_stmt = gimple_build_call (fndecl, 0);
4111 gimple_set_location (new_stmt, gimple_location (stmt));
4112 /* If the call had a SSA name as lhs morph that into
4113 an uninitialized value. */
4114 if (lhs && TREE_CODE (lhs) == SSA_NAME)
4116 tree var = create_tmp_var (TREE_TYPE (lhs));
4117 SET_SSA_NAME_VAR_OR_IDENTIFIER (lhs, var);
4118 SSA_NAME_DEF_STMT (lhs) = gimple_build_nop ();
4119 set_ssa_default_def (cfun, var, lhs);
4121 gimple_set_vuse (new_stmt, gimple_vuse (stmt));
4122 gimple_set_vdef (new_stmt, gimple_vdef (stmt));
4123 gsi_replace (gsi, new_stmt, false);
4124 return true;
4130 /* Check for indirect calls that became direct calls, and then
4131 no longer require a static chain. */
4132 if (gimple_call_chain (stmt))
4134 tree fn = gimple_call_fndecl (stmt);
4135 if (fn && !DECL_STATIC_CHAIN (fn))
4137 gimple_call_set_chain (stmt, NULL);
4138 changed = true;
4140 else
4142 tree tmp = maybe_fold_reference (gimple_call_chain (stmt), false);
4143 if (tmp)
4145 gimple_call_set_chain (stmt, tmp);
4146 changed = true;
4151 if (inplace)
4152 return changed;
4154 /* Check for builtins that CCP can handle using information not
4155 available in the generic fold routines. */
4156 if (gimple_call_builtin_p (stmt, BUILT_IN_NORMAL))
4158 if (gimple_fold_builtin (gsi))
4159 changed = true;
4161 else if (gimple_call_builtin_p (stmt, BUILT_IN_MD))
4163 changed |= targetm.gimple_fold_builtin (gsi);
4165 else if (gimple_call_internal_p (stmt))
4167 enum tree_code subcode = ERROR_MARK;
4168 tree result = NULL_TREE;
4169 bool cplx_result = false;
4170 tree overflow = NULL_TREE;
4171 switch (gimple_call_internal_fn (stmt))
4173 case IFN_BUILTIN_EXPECT:
4174 result = fold_builtin_expect (gimple_location (stmt),
4175 gimple_call_arg (stmt, 0),
4176 gimple_call_arg (stmt, 1),
4177 gimple_call_arg (stmt, 2));
4178 break;
4179 case IFN_UBSAN_OBJECT_SIZE:
4181 tree offset = gimple_call_arg (stmt, 1);
4182 tree objsize = gimple_call_arg (stmt, 2);
4183 if (integer_all_onesp (objsize)
4184 || (TREE_CODE (offset) == INTEGER_CST
4185 && TREE_CODE (objsize) == INTEGER_CST
4186 && tree_int_cst_le (offset, objsize)))
4188 replace_call_with_value (gsi, NULL_TREE);
4189 return true;
4192 break;
4193 case IFN_UBSAN_PTR:
4194 if (integer_zerop (gimple_call_arg (stmt, 1)))
4196 replace_call_with_value (gsi, NULL_TREE);
4197 return true;
4199 break;
4200 case IFN_UBSAN_BOUNDS:
4202 tree index = gimple_call_arg (stmt, 1);
4203 tree bound = gimple_call_arg (stmt, 2);
4204 if (TREE_CODE (index) == INTEGER_CST
4205 && TREE_CODE (bound) == INTEGER_CST)
4207 index = fold_convert (TREE_TYPE (bound), index);
4208 if (TREE_CODE (index) == INTEGER_CST
4209 && tree_int_cst_le (index, bound))
4211 replace_call_with_value (gsi, NULL_TREE);
4212 return true;
4216 break;
4217 case IFN_GOACC_DIM_SIZE:
4218 case IFN_GOACC_DIM_POS:
4219 result = fold_internal_goacc_dim (stmt);
4220 break;
4221 case IFN_UBSAN_CHECK_ADD:
4222 subcode = PLUS_EXPR;
4223 break;
4224 case IFN_UBSAN_CHECK_SUB:
4225 subcode = MINUS_EXPR;
4226 break;
4227 case IFN_UBSAN_CHECK_MUL:
4228 subcode = MULT_EXPR;
4229 break;
4230 case IFN_ADD_OVERFLOW:
4231 subcode = PLUS_EXPR;
4232 cplx_result = true;
4233 break;
4234 case IFN_SUB_OVERFLOW:
4235 subcode = MINUS_EXPR;
4236 cplx_result = true;
4237 break;
4238 case IFN_MUL_OVERFLOW:
4239 subcode = MULT_EXPR;
4240 cplx_result = true;
4241 break;
4242 default:
4243 break;
4245 if (subcode != ERROR_MARK)
4247 tree arg0 = gimple_call_arg (stmt, 0);
4248 tree arg1 = gimple_call_arg (stmt, 1);
4249 tree type = TREE_TYPE (arg0);
4250 if (cplx_result)
4252 tree lhs = gimple_call_lhs (stmt);
4253 if (lhs == NULL_TREE)
4254 type = NULL_TREE;
4255 else
4256 type = TREE_TYPE (TREE_TYPE (lhs));
4258 if (type == NULL_TREE)
4260 /* x = y + 0; x = y - 0; x = y * 0; */
4261 else if (integer_zerop (arg1))
4262 result = subcode == MULT_EXPR ? integer_zero_node : arg0;
4263 /* x = 0 + y; x = 0 * y; */
4264 else if (subcode != MINUS_EXPR && integer_zerop (arg0))
4265 result = subcode == MULT_EXPR ? integer_zero_node : arg1;
4266 /* x = y - y; */
4267 else if (subcode == MINUS_EXPR && operand_equal_p (arg0, arg1, 0))
4268 result = integer_zero_node;
4269 /* x = y * 1; x = 1 * y; */
4270 else if (subcode == MULT_EXPR && integer_onep (arg1))
4271 result = arg0;
4272 else if (subcode == MULT_EXPR && integer_onep (arg0))
4273 result = arg1;
4274 else if (TREE_CODE (arg0) == INTEGER_CST
4275 && TREE_CODE (arg1) == INTEGER_CST)
4277 if (cplx_result)
4278 result = int_const_binop (subcode, fold_convert (type, arg0),
4279 fold_convert (type, arg1));
4280 else
4281 result = int_const_binop (subcode, arg0, arg1);
4282 if (result && arith_overflowed_p (subcode, type, arg0, arg1))
4284 if (cplx_result)
4285 overflow = build_one_cst (type);
4286 else
4287 result = NULL_TREE;
4290 if (result)
4292 if (result == integer_zero_node)
4293 result = build_zero_cst (type);
4294 else if (cplx_result && TREE_TYPE (result) != type)
4296 if (TREE_CODE (result) == INTEGER_CST)
4298 if (arith_overflowed_p (PLUS_EXPR, type, result,
4299 integer_zero_node))
4300 overflow = build_one_cst (type);
4302 else if ((!TYPE_UNSIGNED (TREE_TYPE (result))
4303 && TYPE_UNSIGNED (type))
4304 || (TYPE_PRECISION (type)
4305 < (TYPE_PRECISION (TREE_TYPE (result))
4306 + (TYPE_UNSIGNED (TREE_TYPE (result))
4307 && !TYPE_UNSIGNED (type)))))
4308 result = NULL_TREE;
4309 if (result)
4310 result = fold_convert (type, result);
4315 if (result)
4317 if (TREE_CODE (result) == INTEGER_CST && TREE_OVERFLOW (result))
4318 result = drop_tree_overflow (result);
4319 if (cplx_result)
4321 if (overflow == NULL_TREE)
4322 overflow = build_zero_cst (TREE_TYPE (result));
4323 tree ctype = build_complex_type (TREE_TYPE (result));
4324 if (TREE_CODE (result) == INTEGER_CST
4325 && TREE_CODE (overflow) == INTEGER_CST)
4326 result = build_complex (ctype, result, overflow);
4327 else
4328 result = build2_loc (gimple_location (stmt), COMPLEX_EXPR,
4329 ctype, result, overflow);
4331 if (!update_call_from_tree (gsi, result))
4332 gimplify_and_update_call_from_tree (gsi, result);
4333 changed = true;
4337 return changed;
4341 /* Return true whether NAME has a use on STMT. */
4343 static bool
4344 has_use_on_stmt (tree name, gimple *stmt)
4346 imm_use_iterator iter;
4347 use_operand_p use_p;
4348 FOR_EACH_IMM_USE_FAST (use_p, iter, name)
4349 if (USE_STMT (use_p) == stmt)
4350 return true;
4351 return false;
4354 /* Worker for fold_stmt_1 dispatch to pattern based folding with
4355 gimple_simplify.
4357 Replaces *GSI with the simplification result in RCODE and OPS
4358 and the associated statements in *SEQ. Does the replacement
4359 according to INPLACE and returns true if the operation succeeded. */
4361 static bool
4362 replace_stmt_with_simplification (gimple_stmt_iterator *gsi,
4363 gimple_match_op *res_op,
4364 gimple_seq *seq, bool inplace)
4366 gimple *stmt = gsi_stmt (*gsi);
4367 tree *ops = res_op->ops;
4368 unsigned int num_ops = res_op->num_ops;
4370 /* Play safe and do not allow abnormals to be mentioned in
4371 newly created statements. See also maybe_push_res_to_seq.
4372 As an exception allow such uses if there was a use of the
4373 same SSA name on the old stmt. */
4374 for (unsigned int i = 0; i < num_ops; ++i)
4375 if (TREE_CODE (ops[i]) == SSA_NAME
4376 && SSA_NAME_OCCURS_IN_ABNORMAL_PHI (ops[i])
4377 && !has_use_on_stmt (ops[i], stmt))
4378 return false;
4380 if (num_ops > 0 && COMPARISON_CLASS_P (ops[0]))
4381 for (unsigned int i = 0; i < 2; ++i)
4382 if (TREE_CODE (TREE_OPERAND (ops[0], i)) == SSA_NAME
4383 && SSA_NAME_OCCURS_IN_ABNORMAL_PHI (TREE_OPERAND (ops[0], i))
4384 && !has_use_on_stmt (TREE_OPERAND (ops[0], i), stmt))
4385 return false;
4387 /* Don't insert new statements when INPLACE is true, even if we could
4388 reuse STMT for the final statement. */
4389 if (inplace && !gimple_seq_empty_p (*seq))
4390 return false;
4392 if (gcond *cond_stmt = dyn_cast <gcond *> (stmt))
4394 gcc_assert (res_op->code.is_tree_code ());
4395 if (TREE_CODE_CLASS ((enum tree_code) res_op->code) == tcc_comparison
4396 /* GIMPLE_CONDs condition may not throw. */
4397 && (!flag_exceptions
4398 || !cfun->can_throw_non_call_exceptions
4399 || !operation_could_trap_p (res_op->code,
4400 FLOAT_TYPE_P (TREE_TYPE (ops[0])),
4401 false, NULL_TREE)))
4402 gimple_cond_set_condition (cond_stmt, res_op->code, ops[0], ops[1]);
4403 else if (res_op->code == SSA_NAME)
4404 gimple_cond_set_condition (cond_stmt, NE_EXPR, ops[0],
4405 build_zero_cst (TREE_TYPE (ops[0])));
4406 else if (res_op->code == INTEGER_CST)
4408 if (integer_zerop (ops[0]))
4409 gimple_cond_make_false (cond_stmt);
4410 else
4411 gimple_cond_make_true (cond_stmt);
4413 else if (!inplace)
4415 tree res = maybe_push_res_to_seq (res_op, seq);
4416 if (!res)
4417 return false;
4418 gimple_cond_set_condition (cond_stmt, NE_EXPR, res,
4419 build_zero_cst (TREE_TYPE (res)));
4421 else
4422 return false;
4423 if (dump_file && (dump_flags & TDF_DETAILS))
4425 fprintf (dump_file, "gimple_simplified to ");
4426 if (!gimple_seq_empty_p (*seq))
4427 print_gimple_seq (dump_file, *seq, 0, TDF_SLIM);
4428 print_gimple_stmt (dump_file, gsi_stmt (*gsi),
4429 0, TDF_SLIM);
4431 gsi_insert_seq_before (gsi, *seq, GSI_SAME_STMT);
4432 return true;
4434 else if (is_gimple_assign (stmt)
4435 && res_op->code.is_tree_code ())
4437 if (!inplace
4438 || gimple_num_ops (stmt) > get_gimple_rhs_num_ops (res_op->code))
4440 maybe_build_generic_op (res_op);
4441 gimple_assign_set_rhs_with_ops (gsi, res_op->code,
4442 res_op->op_or_null (0),
4443 res_op->op_or_null (1),
4444 res_op->op_or_null (2));
4445 if (dump_file && (dump_flags & TDF_DETAILS))
4447 fprintf (dump_file, "gimple_simplified to ");
4448 if (!gimple_seq_empty_p (*seq))
4449 print_gimple_seq (dump_file, *seq, 0, TDF_SLIM);
4450 print_gimple_stmt (dump_file, gsi_stmt (*gsi),
4451 0, TDF_SLIM);
4453 gsi_insert_seq_before (gsi, *seq, GSI_SAME_STMT);
4454 return true;
4457 else if (res_op->code.is_fn_code ()
4458 && gimple_call_combined_fn (stmt) == res_op->code)
4460 gcc_assert (num_ops == gimple_call_num_args (stmt));
4461 for (unsigned int i = 0; i < num_ops; ++i)
4462 gimple_call_set_arg (stmt, i, ops[i]);
4463 if (dump_file && (dump_flags & TDF_DETAILS))
4465 fprintf (dump_file, "gimple_simplified to ");
4466 if (!gimple_seq_empty_p (*seq))
4467 print_gimple_seq (dump_file, *seq, 0, TDF_SLIM);
4468 print_gimple_stmt (dump_file, gsi_stmt (*gsi), 0, TDF_SLIM);
4470 gsi_insert_seq_before (gsi, *seq, GSI_SAME_STMT);
4471 return true;
4473 else if (!inplace)
4475 if (gimple_has_lhs (stmt))
4477 tree lhs = gimple_get_lhs (stmt);
4478 if (!maybe_push_res_to_seq (res_op, seq, lhs))
4479 return false;
4480 if (dump_file && (dump_flags & TDF_DETAILS))
4482 fprintf (dump_file, "gimple_simplified to ");
4483 print_gimple_seq (dump_file, *seq, 0, TDF_SLIM);
4485 gsi_replace_with_seq_vops (gsi, *seq);
4486 return true;
4488 else
4489 gcc_unreachable ();
4492 return false;
4495 /* Canonicalize MEM_REFs invariant address operand after propagation. */
4497 static bool
4498 maybe_canonicalize_mem_ref_addr (tree *t)
4500 bool res = false;
4502 if (TREE_CODE (*t) == ADDR_EXPR)
4503 t = &TREE_OPERAND (*t, 0);
4505 /* The C and C++ frontends use an ARRAY_REF for indexing with their
4506 generic vector extension. The actual vector referenced is
4507 view-converted to an array type for this purpose. If the index
4508 is constant the canonical representation in the middle-end is a
4509 BIT_FIELD_REF so re-write the former to the latter here. */
4510 if (TREE_CODE (*t) == ARRAY_REF
4511 && TREE_CODE (TREE_OPERAND (*t, 0)) == VIEW_CONVERT_EXPR
4512 && TREE_CODE (TREE_OPERAND (*t, 1)) == INTEGER_CST
4513 && VECTOR_TYPE_P (TREE_TYPE (TREE_OPERAND (TREE_OPERAND (*t, 0), 0))))
4515 tree vtype = TREE_TYPE (TREE_OPERAND (TREE_OPERAND (*t, 0), 0));
4516 if (VECTOR_TYPE_P (vtype))
4518 tree low = array_ref_low_bound (*t);
4519 if (TREE_CODE (low) == INTEGER_CST)
4521 if (tree_int_cst_le (low, TREE_OPERAND (*t, 1)))
4523 widest_int idx = wi::sub (wi::to_widest (TREE_OPERAND (*t, 1)),
4524 wi::to_widest (low));
4525 idx = wi::mul (idx, wi::to_widest
4526 (TYPE_SIZE (TREE_TYPE (*t))));
4527 widest_int ext
4528 = wi::add (idx, wi::to_widest (TYPE_SIZE (TREE_TYPE (*t))));
4529 if (wi::les_p (ext, wi::to_widest (TYPE_SIZE (vtype))))
4531 *t = build3_loc (EXPR_LOCATION (*t), BIT_FIELD_REF,
4532 TREE_TYPE (*t),
4533 TREE_OPERAND (TREE_OPERAND (*t, 0), 0),
4534 TYPE_SIZE (TREE_TYPE (*t)),
4535 wide_int_to_tree (bitsizetype, idx));
4536 res = true;
4543 while (handled_component_p (*t))
4544 t = &TREE_OPERAND (*t, 0);
4546 /* Canonicalize MEM [&foo.bar, 0] which appears after propagating
4547 of invariant addresses into a SSA name MEM_REF address. */
4548 if (TREE_CODE (*t) == MEM_REF
4549 || TREE_CODE (*t) == TARGET_MEM_REF)
4551 tree addr = TREE_OPERAND (*t, 0);
4552 if (TREE_CODE (addr) == ADDR_EXPR
4553 && (TREE_CODE (TREE_OPERAND (addr, 0)) == MEM_REF
4554 || handled_component_p (TREE_OPERAND (addr, 0))))
4556 tree base;
4557 poly_int64 coffset;
4558 base = get_addr_base_and_unit_offset (TREE_OPERAND (addr, 0),
4559 &coffset);
4560 if (!base)
4561 gcc_unreachable ();
4563 TREE_OPERAND (*t, 0) = build_fold_addr_expr (base);
4564 TREE_OPERAND (*t, 1) = int_const_binop (PLUS_EXPR,
4565 TREE_OPERAND (*t, 1),
4566 size_int (coffset));
4567 res = true;
4569 gcc_checking_assert (TREE_CODE (TREE_OPERAND (*t, 0)) == DEBUG_EXPR_DECL
4570 || is_gimple_mem_ref_addr (TREE_OPERAND (*t, 0)));
4573 /* Canonicalize back MEM_REFs to plain reference trees if the object
4574 accessed is a decl that has the same access semantics as the MEM_REF. */
4575 if (TREE_CODE (*t) == MEM_REF
4576 && TREE_CODE (TREE_OPERAND (*t, 0)) == ADDR_EXPR
4577 && integer_zerop (TREE_OPERAND (*t, 1))
4578 && MR_DEPENDENCE_CLIQUE (*t) == 0)
4580 tree decl = TREE_OPERAND (TREE_OPERAND (*t, 0), 0);
4581 tree alias_type = TREE_TYPE (TREE_OPERAND (*t, 1));
4582 if (/* Same volatile qualification. */
4583 TREE_THIS_VOLATILE (*t) == TREE_THIS_VOLATILE (decl)
4584 /* Same TBAA behavior with -fstrict-aliasing. */
4585 && !TYPE_REF_CAN_ALIAS_ALL (alias_type)
4586 && (TYPE_MAIN_VARIANT (TREE_TYPE (decl))
4587 == TYPE_MAIN_VARIANT (TREE_TYPE (alias_type)))
4588 /* Same alignment. */
4589 && TYPE_ALIGN (TREE_TYPE (decl)) == TYPE_ALIGN (TREE_TYPE (*t))
4590 /* We have to look out here to not drop a required conversion
4591 from the rhs to the lhs if *t appears on the lhs or vice-versa
4592 if it appears on the rhs. Thus require strict type
4593 compatibility. */
4594 && types_compatible_p (TREE_TYPE (*t), TREE_TYPE (decl)))
4596 *t = TREE_OPERAND (TREE_OPERAND (*t, 0), 0);
4597 res = true;
4601 /* Canonicalize TARGET_MEM_REF in particular with respect to
4602 the indexes becoming constant. */
4603 else if (TREE_CODE (*t) == TARGET_MEM_REF)
4605 tree tem = maybe_fold_tmr (*t);
4606 if (tem)
4608 *t = tem;
4609 res = true;
4613 return res;
4616 /* Worker for both fold_stmt and fold_stmt_inplace. The INPLACE argument
4617 distinguishes both cases. */
4619 static bool
4620 fold_stmt_1 (gimple_stmt_iterator *gsi, bool inplace, tree (*valueize) (tree))
4622 bool changed = false;
4623 gimple *stmt = gsi_stmt (*gsi);
4624 bool nowarning = gimple_no_warning_p (stmt);
4625 unsigned i;
4626 fold_defer_overflow_warnings ();
4628 /* First do required canonicalization of [TARGET_]MEM_REF addresses
4629 after propagation.
4630 ??? This shouldn't be done in generic folding but in the
4631 propagation helpers which also know whether an address was
4632 propagated.
4633 Also canonicalize operand order. */
4634 switch (gimple_code (stmt))
4636 case GIMPLE_ASSIGN:
4637 if (gimple_assign_rhs_class (stmt) == GIMPLE_SINGLE_RHS)
4639 tree *rhs = gimple_assign_rhs1_ptr (stmt);
4640 if ((REFERENCE_CLASS_P (*rhs)
4641 || TREE_CODE (*rhs) == ADDR_EXPR)
4642 && maybe_canonicalize_mem_ref_addr (rhs))
4643 changed = true;
4644 tree *lhs = gimple_assign_lhs_ptr (stmt);
4645 if (REFERENCE_CLASS_P (*lhs)
4646 && maybe_canonicalize_mem_ref_addr (lhs))
4647 changed = true;
4649 else
4651 /* Canonicalize operand order. */
4652 enum tree_code code = gimple_assign_rhs_code (stmt);
4653 if (TREE_CODE_CLASS (code) == tcc_comparison
4654 || commutative_tree_code (code)
4655 || commutative_ternary_tree_code (code))
4657 tree rhs1 = gimple_assign_rhs1 (stmt);
4658 tree rhs2 = gimple_assign_rhs2 (stmt);
4659 if (tree_swap_operands_p (rhs1, rhs2))
4661 gimple_assign_set_rhs1 (stmt, rhs2);
4662 gimple_assign_set_rhs2 (stmt, rhs1);
4663 if (TREE_CODE_CLASS (code) == tcc_comparison)
4664 gimple_assign_set_rhs_code (stmt,
4665 swap_tree_comparison (code));
4666 changed = true;
4670 break;
4671 case GIMPLE_CALL:
4673 for (i = 0; i < gimple_call_num_args (stmt); ++i)
4675 tree *arg = gimple_call_arg_ptr (stmt, i);
4676 if (REFERENCE_CLASS_P (*arg)
4677 && maybe_canonicalize_mem_ref_addr (arg))
4678 changed = true;
4680 tree *lhs = gimple_call_lhs_ptr (stmt);
4681 if (*lhs
4682 && REFERENCE_CLASS_P (*lhs)
4683 && maybe_canonicalize_mem_ref_addr (lhs))
4684 changed = true;
4685 break;
4687 case GIMPLE_ASM:
4689 gasm *asm_stmt = as_a <gasm *> (stmt);
4690 for (i = 0; i < gimple_asm_noutputs (asm_stmt); ++i)
4692 tree link = gimple_asm_output_op (asm_stmt, i);
4693 tree op = TREE_VALUE (link);
4694 if (REFERENCE_CLASS_P (op)
4695 && maybe_canonicalize_mem_ref_addr (&TREE_VALUE (link)))
4696 changed = true;
4698 for (i = 0; i < gimple_asm_ninputs (asm_stmt); ++i)
4700 tree link = gimple_asm_input_op (asm_stmt, i);
4701 tree op = TREE_VALUE (link);
4702 if ((REFERENCE_CLASS_P (op)
4703 || TREE_CODE (op) == ADDR_EXPR)
4704 && maybe_canonicalize_mem_ref_addr (&TREE_VALUE (link)))
4705 changed = true;
4708 break;
4709 case GIMPLE_DEBUG:
4710 if (gimple_debug_bind_p (stmt))
4712 tree *val = gimple_debug_bind_get_value_ptr (stmt);
4713 if (*val
4714 && (REFERENCE_CLASS_P (*val)
4715 || TREE_CODE (*val) == ADDR_EXPR)
4716 && maybe_canonicalize_mem_ref_addr (val))
4717 changed = true;
4719 break;
4720 case GIMPLE_COND:
4722 /* Canonicalize operand order. */
4723 tree lhs = gimple_cond_lhs (stmt);
4724 tree rhs = gimple_cond_rhs (stmt);
4725 if (tree_swap_operands_p (lhs, rhs))
4727 gcond *gc = as_a <gcond *> (stmt);
4728 gimple_cond_set_lhs (gc, rhs);
4729 gimple_cond_set_rhs (gc, lhs);
4730 gimple_cond_set_code (gc,
4731 swap_tree_comparison (gimple_cond_code (gc)));
4732 changed = true;
4735 default:;
4738 /* Dispatch to pattern-based folding. */
4739 if (!inplace
4740 || is_gimple_assign (stmt)
4741 || gimple_code (stmt) == GIMPLE_COND)
4743 gimple_seq seq = NULL;
4744 gimple_match_op res_op;
4745 if (gimple_simplify (stmt, &res_op, inplace ? NULL : &seq,
4746 valueize, valueize))
4748 if (replace_stmt_with_simplification (gsi, &res_op, &seq, inplace))
4749 changed = true;
4750 else
4751 gimple_seq_discard (seq);
4755 stmt = gsi_stmt (*gsi);
4757 /* Fold the main computation performed by the statement. */
4758 switch (gimple_code (stmt))
4760 case GIMPLE_ASSIGN:
4762 /* Try to canonicalize for boolean-typed X the comparisons
4763 X == 0, X == 1, X != 0, and X != 1. */
4764 if (gimple_assign_rhs_code (stmt) == EQ_EXPR
4765 || gimple_assign_rhs_code (stmt) == NE_EXPR)
4767 tree lhs = gimple_assign_lhs (stmt);
4768 tree op1 = gimple_assign_rhs1 (stmt);
4769 tree op2 = gimple_assign_rhs2 (stmt);
4770 tree type = TREE_TYPE (op1);
4772 /* Check whether the comparison operands are of the same boolean
4773 type as the result type is.
4774 Check that second operand is an integer-constant with value
4775 one or zero. */
4776 if (TREE_CODE (op2) == INTEGER_CST
4777 && (integer_zerop (op2) || integer_onep (op2))
4778 && useless_type_conversion_p (TREE_TYPE (lhs), type))
4780 enum tree_code cmp_code = gimple_assign_rhs_code (stmt);
4781 bool is_logical_not = false;
4783 /* X == 0 and X != 1 is a logical-not.of X
4784 X == 1 and X != 0 is X */
4785 if ((cmp_code == EQ_EXPR && integer_zerop (op2))
4786 || (cmp_code == NE_EXPR && integer_onep (op2)))
4787 is_logical_not = true;
4789 if (is_logical_not == false)
4790 gimple_assign_set_rhs_with_ops (gsi, TREE_CODE (op1), op1);
4791 /* Only for one-bit precision typed X the transformation
4792 !X -> ~X is valied. */
4793 else if (TYPE_PRECISION (type) == 1)
4794 gimple_assign_set_rhs_with_ops (gsi, BIT_NOT_EXPR, op1);
4795 /* Otherwise we use !X -> X ^ 1. */
4796 else
4797 gimple_assign_set_rhs_with_ops (gsi, BIT_XOR_EXPR, op1,
4798 build_int_cst (type, 1));
4799 changed = true;
4800 break;
4804 unsigned old_num_ops = gimple_num_ops (stmt);
4805 tree lhs = gimple_assign_lhs (stmt);
4806 tree new_rhs = fold_gimple_assign (gsi);
4807 if (new_rhs
4808 && !useless_type_conversion_p (TREE_TYPE (lhs),
4809 TREE_TYPE (new_rhs)))
4810 new_rhs = fold_convert (TREE_TYPE (lhs), new_rhs);
4811 if (new_rhs
4812 && (!inplace
4813 || get_gimple_rhs_num_ops (TREE_CODE (new_rhs)) < old_num_ops))
4815 gimple_assign_set_rhs_from_tree (gsi, new_rhs);
4816 changed = true;
4818 break;
4821 case GIMPLE_CALL:
4822 changed |= gimple_fold_call (gsi, inplace);
4823 break;
4825 case GIMPLE_ASM:
4826 /* Fold *& in asm operands. */
4828 gasm *asm_stmt = as_a <gasm *> (stmt);
4829 size_t noutputs;
4830 const char **oconstraints;
4831 const char *constraint;
4832 bool allows_mem, allows_reg;
4834 noutputs = gimple_asm_noutputs (asm_stmt);
4835 oconstraints = XALLOCAVEC (const char *, noutputs);
4837 for (i = 0; i < gimple_asm_noutputs (asm_stmt); ++i)
4839 tree link = gimple_asm_output_op (asm_stmt, i);
4840 tree op = TREE_VALUE (link);
4841 oconstraints[i]
4842 = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link)));
4843 if (REFERENCE_CLASS_P (op)
4844 && (op = maybe_fold_reference (op, true)) != NULL_TREE)
4846 TREE_VALUE (link) = op;
4847 changed = true;
4850 for (i = 0; i < gimple_asm_ninputs (asm_stmt); ++i)
4852 tree link = gimple_asm_input_op (asm_stmt, i);
4853 tree op = TREE_VALUE (link);
4854 constraint
4855 = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link)));
4856 parse_input_constraint (&constraint, 0, 0, noutputs, 0,
4857 oconstraints, &allows_mem, &allows_reg);
4858 if (REFERENCE_CLASS_P (op)
4859 && (op = maybe_fold_reference (op, !allows_reg && allows_mem))
4860 != NULL_TREE)
4862 TREE_VALUE (link) = op;
4863 changed = true;
4867 break;
4869 case GIMPLE_DEBUG:
4870 if (gimple_debug_bind_p (stmt))
4872 tree val = gimple_debug_bind_get_value (stmt);
4873 if (val
4874 && REFERENCE_CLASS_P (val))
4876 tree tem = maybe_fold_reference (val, false);
4877 if (tem)
4879 gimple_debug_bind_set_value (stmt, tem);
4880 changed = true;
4883 else if (val
4884 && TREE_CODE (val) == ADDR_EXPR)
4886 tree ref = TREE_OPERAND (val, 0);
4887 tree tem = maybe_fold_reference (ref, false);
4888 if (tem)
4890 tem = build_fold_addr_expr_with_type (tem, TREE_TYPE (val));
4891 gimple_debug_bind_set_value (stmt, tem);
4892 changed = true;
4896 break;
4898 case GIMPLE_RETURN:
4900 greturn *ret_stmt = as_a<greturn *> (stmt);
4901 tree ret = gimple_return_retval(ret_stmt);
4903 if (ret && TREE_CODE (ret) == SSA_NAME && valueize)
4905 tree val = valueize (ret);
4906 if (val && val != ret
4907 && may_propagate_copy (ret, val))
4909 gimple_return_set_retval (ret_stmt, val);
4910 changed = true;
4914 break;
4916 default:;
4919 stmt = gsi_stmt (*gsi);
4921 /* Fold *& on the lhs. */
4922 if (gimple_has_lhs (stmt))
4924 tree lhs = gimple_get_lhs (stmt);
4925 if (lhs && REFERENCE_CLASS_P (lhs))
4927 tree new_lhs = maybe_fold_reference (lhs, true);
4928 if (new_lhs)
4930 gimple_set_lhs (stmt, new_lhs);
4931 changed = true;
4936 fold_undefer_overflow_warnings (changed && !nowarning, stmt, 0);
4937 return changed;
4940 /* Valueziation callback that ends up not following SSA edges. */
4942 tree
4943 no_follow_ssa_edges (tree)
4945 return NULL_TREE;
4948 /* Valueization callback that ends up following single-use SSA edges only. */
4950 tree
4951 follow_single_use_edges (tree val)
4953 if (TREE_CODE (val) == SSA_NAME
4954 && !has_single_use (val))
4955 return NULL_TREE;
4956 return val;
4959 /* Valueization callback that follows all SSA edges. */
4961 tree
4962 follow_all_ssa_edges (tree val)
4964 return val;
4967 /* Fold the statement pointed to by GSI. In some cases, this function may
4968 replace the whole statement with a new one. Returns true iff folding
4969 makes any changes.
4970 The statement pointed to by GSI should be in valid gimple form but may
4971 be in unfolded state as resulting from for example constant propagation
4972 which can produce *&x = 0. */
4974 bool
4975 fold_stmt (gimple_stmt_iterator *gsi)
4977 return fold_stmt_1 (gsi, false, no_follow_ssa_edges);
4980 bool
4981 fold_stmt (gimple_stmt_iterator *gsi, tree (*valueize) (tree))
4983 return fold_stmt_1 (gsi, false, valueize);
4986 /* Perform the minimal folding on statement *GSI. Only operations like
4987 *&x created by constant propagation are handled. The statement cannot
4988 be replaced with a new one. Return true if the statement was
4989 changed, false otherwise.
4990 The statement *GSI should be in valid gimple form but may
4991 be in unfolded state as resulting from for example constant propagation
4992 which can produce *&x = 0. */
4994 bool
4995 fold_stmt_inplace (gimple_stmt_iterator *gsi)
4997 gimple *stmt = gsi_stmt (*gsi);
4998 bool changed = fold_stmt_1 (gsi, true, no_follow_ssa_edges);
4999 gcc_assert (gsi_stmt (*gsi) == stmt);
5000 return changed;
5003 /* Canonicalize and possibly invert the boolean EXPR; return NULL_TREE
5004 if EXPR is null or we don't know how.
5005 If non-null, the result always has boolean type. */
5007 static tree
5008 canonicalize_bool (tree expr, bool invert)
5010 if (!expr)
5011 return NULL_TREE;
5012 else if (invert)
5014 if (integer_nonzerop (expr))
5015 return boolean_false_node;
5016 else if (integer_zerop (expr))
5017 return boolean_true_node;
5018 else if (TREE_CODE (expr) == SSA_NAME)
5019 return fold_build2 (EQ_EXPR, boolean_type_node, expr,
5020 build_int_cst (TREE_TYPE (expr), 0));
5021 else if (COMPARISON_CLASS_P (expr))
5022 return fold_build2 (invert_tree_comparison (TREE_CODE (expr), false),
5023 boolean_type_node,
5024 TREE_OPERAND (expr, 0),
5025 TREE_OPERAND (expr, 1));
5026 else
5027 return NULL_TREE;
5029 else
5031 if (TREE_CODE (TREE_TYPE (expr)) == BOOLEAN_TYPE)
5032 return expr;
5033 if (integer_nonzerop (expr))
5034 return boolean_true_node;
5035 else if (integer_zerop (expr))
5036 return boolean_false_node;
5037 else if (TREE_CODE (expr) == SSA_NAME)
5038 return fold_build2 (NE_EXPR, boolean_type_node, expr,
5039 build_int_cst (TREE_TYPE (expr), 0));
5040 else if (COMPARISON_CLASS_P (expr))
5041 return fold_build2 (TREE_CODE (expr),
5042 boolean_type_node,
5043 TREE_OPERAND (expr, 0),
5044 TREE_OPERAND (expr, 1));
5045 else
5046 return NULL_TREE;
5050 /* Check to see if a boolean expression EXPR is logically equivalent to the
5051 comparison (OP1 CODE OP2). Check for various identities involving
5052 SSA_NAMEs. */
5054 static bool
5055 same_bool_comparison_p (const_tree expr, enum tree_code code,
5056 const_tree op1, const_tree op2)
5058 gimple *s;
5060 /* The obvious case. */
5061 if (TREE_CODE (expr) == code
5062 && operand_equal_p (TREE_OPERAND (expr, 0), op1, 0)
5063 && operand_equal_p (TREE_OPERAND (expr, 1), op2, 0))
5064 return true;
5066 /* Check for comparing (name, name != 0) and the case where expr
5067 is an SSA_NAME with a definition matching the comparison. */
5068 if (TREE_CODE (expr) == SSA_NAME
5069 && TREE_CODE (TREE_TYPE (expr)) == BOOLEAN_TYPE)
5071 if (operand_equal_p (expr, op1, 0))
5072 return ((code == NE_EXPR && integer_zerop (op2))
5073 || (code == EQ_EXPR && integer_nonzerop (op2)));
5074 s = SSA_NAME_DEF_STMT (expr);
5075 if (is_gimple_assign (s)
5076 && gimple_assign_rhs_code (s) == code
5077 && operand_equal_p (gimple_assign_rhs1 (s), op1, 0)
5078 && operand_equal_p (gimple_assign_rhs2 (s), op2, 0))
5079 return true;
5082 /* If op1 is of the form (name != 0) or (name == 0), and the definition
5083 of name is a comparison, recurse. */
5084 if (TREE_CODE (op1) == SSA_NAME
5085 && TREE_CODE (TREE_TYPE (op1)) == BOOLEAN_TYPE)
5087 s = SSA_NAME_DEF_STMT (op1);
5088 if (is_gimple_assign (s)
5089 && TREE_CODE_CLASS (gimple_assign_rhs_code (s)) == tcc_comparison)
5091 enum tree_code c = gimple_assign_rhs_code (s);
5092 if ((c == NE_EXPR && integer_zerop (op2))
5093 || (c == EQ_EXPR && integer_nonzerop (op2)))
5094 return same_bool_comparison_p (expr, c,
5095 gimple_assign_rhs1 (s),
5096 gimple_assign_rhs2 (s));
5097 if ((c == EQ_EXPR && integer_zerop (op2))
5098 || (c == NE_EXPR && integer_nonzerop (op2)))
5099 return same_bool_comparison_p (expr,
5100 invert_tree_comparison (c, false),
5101 gimple_assign_rhs1 (s),
5102 gimple_assign_rhs2 (s));
5105 return false;
5108 /* Check to see if two boolean expressions OP1 and OP2 are logically
5109 equivalent. */
5111 static bool
5112 same_bool_result_p (const_tree op1, const_tree op2)
5114 /* Simple cases first. */
5115 if (operand_equal_p (op1, op2, 0))
5116 return true;
5118 /* Check the cases where at least one of the operands is a comparison.
5119 These are a bit smarter than operand_equal_p in that they apply some
5120 identifies on SSA_NAMEs. */
5121 if (COMPARISON_CLASS_P (op2)
5122 && same_bool_comparison_p (op1, TREE_CODE (op2),
5123 TREE_OPERAND (op2, 0),
5124 TREE_OPERAND (op2, 1)))
5125 return true;
5126 if (COMPARISON_CLASS_P (op1)
5127 && same_bool_comparison_p (op2, TREE_CODE (op1),
5128 TREE_OPERAND (op1, 0),
5129 TREE_OPERAND (op1, 1)))
5130 return true;
5132 /* Default case. */
5133 return false;
5136 /* Forward declarations for some mutually recursive functions. */
5138 static tree
5139 and_comparisons_1 (enum tree_code code1, tree op1a, tree op1b,
5140 enum tree_code code2, tree op2a, tree op2b);
5141 static tree
5142 and_var_with_comparison (tree var, bool invert,
5143 enum tree_code code2, tree op2a, tree op2b);
5144 static tree
5145 and_var_with_comparison_1 (gimple *stmt,
5146 enum tree_code code2, tree op2a, tree op2b);
5147 static tree
5148 or_comparisons_1 (enum tree_code code1, tree op1a, tree op1b,
5149 enum tree_code code2, tree op2a, tree op2b);
5150 static tree
5151 or_var_with_comparison (tree var, bool invert,
5152 enum tree_code code2, tree op2a, tree op2b);
5153 static tree
5154 or_var_with_comparison_1 (gimple *stmt,
5155 enum tree_code code2, tree op2a, tree op2b);
5157 /* Helper function for and_comparisons_1: try to simplify the AND of the
5158 ssa variable VAR with the comparison specified by (OP2A CODE2 OP2B).
5159 If INVERT is true, invert the value of the VAR before doing the AND.
5160 Return NULL_EXPR if we can't simplify this to a single expression. */
5162 static tree
5163 and_var_with_comparison (tree var, bool invert,
5164 enum tree_code code2, tree op2a, tree op2b)
5166 tree t;
5167 gimple *stmt = SSA_NAME_DEF_STMT (var);
5169 /* We can only deal with variables whose definitions are assignments. */
5170 if (!is_gimple_assign (stmt))
5171 return NULL_TREE;
5173 /* If we have an inverted comparison, apply DeMorgan's law and rewrite
5174 !var AND (op2a code2 op2b) => !(var OR !(op2a code2 op2b))
5175 Then we only have to consider the simpler non-inverted cases. */
5176 if (invert)
5177 t = or_var_with_comparison_1 (stmt,
5178 invert_tree_comparison (code2, false),
5179 op2a, op2b);
5180 else
5181 t = and_var_with_comparison_1 (stmt, code2, op2a, op2b);
5182 return canonicalize_bool (t, invert);
5185 /* Try to simplify the AND of the ssa variable defined by the assignment
5186 STMT with the comparison specified by (OP2A CODE2 OP2B).
5187 Return NULL_EXPR if we can't simplify this to a single expression. */
5189 static tree
5190 and_var_with_comparison_1 (gimple *stmt,
5191 enum tree_code code2, tree op2a, tree op2b)
5193 tree var = gimple_assign_lhs (stmt);
5194 tree true_test_var = NULL_TREE;
5195 tree false_test_var = NULL_TREE;
5196 enum tree_code innercode = gimple_assign_rhs_code (stmt);
5198 /* Check for identities like (var AND (var == 0)) => false. */
5199 if (TREE_CODE (op2a) == SSA_NAME
5200 && TREE_CODE (TREE_TYPE (var)) == BOOLEAN_TYPE)
5202 if ((code2 == NE_EXPR && integer_zerop (op2b))
5203 || (code2 == EQ_EXPR && integer_nonzerop (op2b)))
5205 true_test_var = op2a;
5206 if (var == true_test_var)
5207 return var;
5209 else if ((code2 == EQ_EXPR && integer_zerop (op2b))
5210 || (code2 == NE_EXPR && integer_nonzerop (op2b)))
5212 false_test_var = op2a;
5213 if (var == false_test_var)
5214 return boolean_false_node;
5218 /* If the definition is a comparison, recurse on it. */
5219 if (TREE_CODE_CLASS (innercode) == tcc_comparison)
5221 tree t = and_comparisons_1 (innercode,
5222 gimple_assign_rhs1 (stmt),
5223 gimple_assign_rhs2 (stmt),
5224 code2,
5225 op2a,
5226 op2b);
5227 if (t)
5228 return t;
5231 /* If the definition is an AND or OR expression, we may be able to
5232 simplify by reassociating. */
5233 if (TREE_CODE (TREE_TYPE (var)) == BOOLEAN_TYPE
5234 && (innercode == BIT_AND_EXPR || innercode == BIT_IOR_EXPR))
5236 tree inner1 = gimple_assign_rhs1 (stmt);
5237 tree inner2 = gimple_assign_rhs2 (stmt);
5238 gimple *s;
5239 tree t;
5240 tree partial = NULL_TREE;
5241 bool is_and = (innercode == BIT_AND_EXPR);
5243 /* Check for boolean identities that don't require recursive examination
5244 of inner1/inner2:
5245 inner1 AND (inner1 AND inner2) => inner1 AND inner2 => var
5246 inner1 AND (inner1 OR inner2) => inner1
5247 !inner1 AND (inner1 AND inner2) => false
5248 !inner1 AND (inner1 OR inner2) => !inner1 AND inner2
5249 Likewise for similar cases involving inner2. */
5250 if (inner1 == true_test_var)
5251 return (is_and ? var : inner1);
5252 else if (inner2 == true_test_var)
5253 return (is_and ? var : inner2);
5254 else if (inner1 == false_test_var)
5255 return (is_and
5256 ? boolean_false_node
5257 : and_var_with_comparison (inner2, false, code2, op2a, op2b));
5258 else if (inner2 == false_test_var)
5259 return (is_and
5260 ? boolean_false_node
5261 : and_var_with_comparison (inner1, false, code2, op2a, op2b));
5263 /* Next, redistribute/reassociate the AND across the inner tests.
5264 Compute the first partial result, (inner1 AND (op2a code op2b)) */
5265 if (TREE_CODE (inner1) == SSA_NAME
5266 && is_gimple_assign (s = SSA_NAME_DEF_STMT (inner1))
5267 && TREE_CODE_CLASS (gimple_assign_rhs_code (s)) == tcc_comparison
5268 && (t = maybe_fold_and_comparisons (gimple_assign_rhs_code (s),
5269 gimple_assign_rhs1 (s),
5270 gimple_assign_rhs2 (s),
5271 code2, op2a, op2b)))
5273 /* Handle the AND case, where we are reassociating:
5274 (inner1 AND inner2) AND (op2a code2 op2b)
5275 => (t AND inner2)
5276 If the partial result t is a constant, we win. Otherwise
5277 continue on to try reassociating with the other inner test. */
5278 if (is_and)
5280 if (integer_onep (t))
5281 return inner2;
5282 else if (integer_zerop (t))
5283 return boolean_false_node;
5286 /* Handle the OR case, where we are redistributing:
5287 (inner1 OR inner2) AND (op2a code2 op2b)
5288 => (t OR (inner2 AND (op2a code2 op2b))) */
5289 else if (integer_onep (t))
5290 return boolean_true_node;
5292 /* Save partial result for later. */
5293 partial = t;
5296 /* Compute the second partial result, (inner2 AND (op2a code op2b)) */
5297 if (TREE_CODE (inner2) == SSA_NAME
5298 && is_gimple_assign (s = SSA_NAME_DEF_STMT (inner2))
5299 && TREE_CODE_CLASS (gimple_assign_rhs_code (s)) == tcc_comparison
5300 && (t = maybe_fold_and_comparisons (gimple_assign_rhs_code (s),
5301 gimple_assign_rhs1 (s),
5302 gimple_assign_rhs2 (s),
5303 code2, op2a, op2b)))
5305 /* Handle the AND case, where we are reassociating:
5306 (inner1 AND inner2) AND (op2a code2 op2b)
5307 => (inner1 AND t) */
5308 if (is_and)
5310 if (integer_onep (t))
5311 return inner1;
5312 else if (integer_zerop (t))
5313 return boolean_false_node;
5314 /* If both are the same, we can apply the identity
5315 (x AND x) == x. */
5316 else if (partial && same_bool_result_p (t, partial))
5317 return t;
5320 /* Handle the OR case. where we are redistributing:
5321 (inner1 OR inner2) AND (op2a code2 op2b)
5322 => (t OR (inner1 AND (op2a code2 op2b)))
5323 => (t OR partial) */
5324 else
5326 if (integer_onep (t))
5327 return boolean_true_node;
5328 else if (partial)
5330 /* We already got a simplification for the other
5331 operand to the redistributed OR expression. The
5332 interesting case is when at least one is false.
5333 Or, if both are the same, we can apply the identity
5334 (x OR x) == x. */
5335 if (integer_zerop (partial))
5336 return t;
5337 else if (integer_zerop (t))
5338 return partial;
5339 else if (same_bool_result_p (t, partial))
5340 return t;
5345 return NULL_TREE;
5348 /* Try to simplify the AND of two comparisons defined by
5349 (OP1A CODE1 OP1B) and (OP2A CODE2 OP2B), respectively.
5350 If this can be done without constructing an intermediate value,
5351 return the resulting tree; otherwise NULL_TREE is returned.
5352 This function is deliberately asymmetric as it recurses on SSA_DEFs
5353 in the first comparison but not the second. */
5355 static tree
5356 and_comparisons_1 (enum tree_code code1, tree op1a, tree op1b,
5357 enum tree_code code2, tree op2a, tree op2b)
5359 tree truth_type = truth_type_for (TREE_TYPE (op1a));
5361 /* First check for ((x CODE1 y) AND (x CODE2 y)). */
5362 if (operand_equal_p (op1a, op2a, 0)
5363 && operand_equal_p (op1b, op2b, 0))
5365 /* Result will be either NULL_TREE, or a combined comparison. */
5366 tree t = combine_comparisons (UNKNOWN_LOCATION,
5367 TRUTH_ANDIF_EXPR, code1, code2,
5368 truth_type, op1a, op1b);
5369 if (t)
5370 return t;
5373 /* Likewise the swapped case of the above. */
5374 if (operand_equal_p (op1a, op2b, 0)
5375 && operand_equal_p (op1b, op2a, 0))
5377 /* Result will be either NULL_TREE, or a combined comparison. */
5378 tree t = combine_comparisons (UNKNOWN_LOCATION,
5379 TRUTH_ANDIF_EXPR, code1,
5380 swap_tree_comparison (code2),
5381 truth_type, op1a, op1b);
5382 if (t)
5383 return t;
5386 /* If both comparisons are of the same value against constants, we might
5387 be able to merge them. */
5388 if (operand_equal_p (op1a, op2a, 0)
5389 && TREE_CODE (op1b) == INTEGER_CST
5390 && TREE_CODE (op2b) == INTEGER_CST)
5392 int cmp = tree_int_cst_compare (op1b, op2b);
5394 /* If we have (op1a == op1b), we should either be able to
5395 return that or FALSE, depending on whether the constant op1b
5396 also satisfies the other comparison against op2b. */
5397 if (code1 == EQ_EXPR)
5399 bool done = true;
5400 bool val;
5401 switch (code2)
5403 case EQ_EXPR: val = (cmp == 0); break;
5404 case NE_EXPR: val = (cmp != 0); break;
5405 case LT_EXPR: val = (cmp < 0); break;
5406 case GT_EXPR: val = (cmp > 0); break;
5407 case LE_EXPR: val = (cmp <= 0); break;
5408 case GE_EXPR: val = (cmp >= 0); break;
5409 default: done = false;
5411 if (done)
5413 if (val)
5414 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5415 else
5416 return boolean_false_node;
5419 /* Likewise if the second comparison is an == comparison. */
5420 else if (code2 == EQ_EXPR)
5422 bool done = true;
5423 bool val;
5424 switch (code1)
5426 case EQ_EXPR: val = (cmp == 0); break;
5427 case NE_EXPR: val = (cmp != 0); break;
5428 case LT_EXPR: val = (cmp > 0); break;
5429 case GT_EXPR: val = (cmp < 0); break;
5430 case LE_EXPR: val = (cmp >= 0); break;
5431 case GE_EXPR: val = (cmp <= 0); break;
5432 default: done = false;
5434 if (done)
5436 if (val)
5437 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5438 else
5439 return boolean_false_node;
5443 /* Same business with inequality tests. */
5444 else if (code1 == NE_EXPR)
5446 bool val;
5447 switch (code2)
5449 case EQ_EXPR: val = (cmp != 0); break;
5450 case NE_EXPR: val = (cmp == 0); break;
5451 case LT_EXPR: val = (cmp >= 0); break;
5452 case GT_EXPR: val = (cmp <= 0); break;
5453 case LE_EXPR: val = (cmp > 0); break;
5454 case GE_EXPR: val = (cmp < 0); break;
5455 default:
5456 val = false;
5458 if (val)
5459 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5461 else if (code2 == NE_EXPR)
5463 bool val;
5464 switch (code1)
5466 case EQ_EXPR: val = (cmp == 0); break;
5467 case NE_EXPR: val = (cmp != 0); break;
5468 case LT_EXPR: val = (cmp <= 0); break;
5469 case GT_EXPR: val = (cmp >= 0); break;
5470 case LE_EXPR: val = (cmp < 0); break;
5471 case GE_EXPR: val = (cmp > 0); break;
5472 default:
5473 val = false;
5475 if (val)
5476 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5479 /* Chose the more restrictive of two < or <= comparisons. */
5480 else if ((code1 == LT_EXPR || code1 == LE_EXPR)
5481 && (code2 == LT_EXPR || code2 == LE_EXPR))
5483 if ((cmp < 0) || (cmp == 0 && code1 == LT_EXPR))
5484 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5485 else
5486 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5489 /* Likewise chose the more restrictive of two > or >= comparisons. */
5490 else if ((code1 == GT_EXPR || code1 == GE_EXPR)
5491 && (code2 == GT_EXPR || code2 == GE_EXPR))
5493 if ((cmp > 0) || (cmp == 0 && code1 == GT_EXPR))
5494 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5495 else
5496 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5499 /* Check for singleton ranges. */
5500 else if (cmp == 0
5501 && ((code1 == LE_EXPR && code2 == GE_EXPR)
5502 || (code1 == GE_EXPR && code2 == LE_EXPR)))
5503 return fold_build2 (EQ_EXPR, boolean_type_node, op1a, op2b);
5505 /* Check for disjoint ranges. */
5506 else if (cmp <= 0
5507 && (code1 == LT_EXPR || code1 == LE_EXPR)
5508 && (code2 == GT_EXPR || code2 == GE_EXPR))
5509 return boolean_false_node;
5510 else if (cmp >= 0
5511 && (code1 == GT_EXPR || code1 == GE_EXPR)
5512 && (code2 == LT_EXPR || code2 == LE_EXPR))
5513 return boolean_false_node;
5516 /* Perhaps the first comparison is (NAME != 0) or (NAME == 1) where
5517 NAME's definition is a truth value. See if there are any simplifications
5518 that can be done against the NAME's definition. */
5519 if (TREE_CODE (op1a) == SSA_NAME
5520 && (code1 == NE_EXPR || code1 == EQ_EXPR)
5521 && (integer_zerop (op1b) || integer_onep (op1b)))
5523 bool invert = ((code1 == EQ_EXPR && integer_zerop (op1b))
5524 || (code1 == NE_EXPR && integer_onep (op1b)));
5525 gimple *stmt = SSA_NAME_DEF_STMT (op1a);
5526 switch (gimple_code (stmt))
5528 case GIMPLE_ASSIGN:
5529 /* Try to simplify by copy-propagating the definition. */
5530 return and_var_with_comparison (op1a, invert, code2, op2a, op2b);
5532 case GIMPLE_PHI:
5533 /* If every argument to the PHI produces the same result when
5534 ANDed with the second comparison, we win.
5535 Do not do this unless the type is bool since we need a bool
5536 result here anyway. */
5537 if (TREE_CODE (TREE_TYPE (op1a)) == BOOLEAN_TYPE)
5539 tree result = NULL_TREE;
5540 unsigned i;
5541 for (i = 0; i < gimple_phi_num_args (stmt); i++)
5543 tree arg = gimple_phi_arg_def (stmt, i);
5545 /* If this PHI has itself as an argument, ignore it.
5546 If all the other args produce the same result,
5547 we're still OK. */
5548 if (arg == gimple_phi_result (stmt))
5549 continue;
5550 else if (TREE_CODE (arg) == INTEGER_CST)
5552 if (invert ? integer_nonzerop (arg) : integer_zerop (arg))
5554 if (!result)
5555 result = boolean_false_node;
5556 else if (!integer_zerop (result))
5557 return NULL_TREE;
5559 else if (!result)
5560 result = fold_build2 (code2, boolean_type_node,
5561 op2a, op2b);
5562 else if (!same_bool_comparison_p (result,
5563 code2, op2a, op2b))
5564 return NULL_TREE;
5566 else if (TREE_CODE (arg) == SSA_NAME
5567 && !SSA_NAME_IS_DEFAULT_DEF (arg))
5569 tree temp;
5570 gimple *def_stmt = SSA_NAME_DEF_STMT (arg);
5571 /* In simple cases we can look through PHI nodes,
5572 but we have to be careful with loops.
5573 See PR49073. */
5574 if (! dom_info_available_p (CDI_DOMINATORS)
5575 || gimple_bb (def_stmt) == gimple_bb (stmt)
5576 || dominated_by_p (CDI_DOMINATORS,
5577 gimple_bb (def_stmt),
5578 gimple_bb (stmt)))
5579 return NULL_TREE;
5580 temp = and_var_with_comparison (arg, invert, code2,
5581 op2a, op2b);
5582 if (!temp)
5583 return NULL_TREE;
5584 else if (!result)
5585 result = temp;
5586 else if (!same_bool_result_p (result, temp))
5587 return NULL_TREE;
5589 else
5590 return NULL_TREE;
5592 return result;
5595 default:
5596 break;
5599 return NULL_TREE;
5602 /* Try to simplify the AND of two comparisons, specified by
5603 (OP1A CODE1 OP1B) and (OP2B CODE2 OP2B), respectively.
5604 If this can be simplified to a single expression (without requiring
5605 introducing more SSA variables to hold intermediate values),
5606 return the resulting tree. Otherwise return NULL_TREE.
5607 If the result expression is non-null, it has boolean type. */
5609 tree
5610 maybe_fold_and_comparisons (enum tree_code code1, tree op1a, tree op1b,
5611 enum tree_code code2, tree op2a, tree op2b)
5613 tree t = and_comparisons_1 (code1, op1a, op1b, code2, op2a, op2b);
5614 if (t)
5615 return t;
5616 else
5617 return and_comparisons_1 (code2, op2a, op2b, code1, op1a, op1b);
5620 /* Helper function for or_comparisons_1: try to simplify the OR of the
5621 ssa variable VAR with the comparison specified by (OP2A CODE2 OP2B).
5622 If INVERT is true, invert the value of VAR before doing the OR.
5623 Return NULL_EXPR if we can't simplify this to a single expression. */
5625 static tree
5626 or_var_with_comparison (tree var, bool invert,
5627 enum tree_code code2, tree op2a, tree op2b)
5629 tree t;
5630 gimple *stmt = SSA_NAME_DEF_STMT (var);
5632 /* We can only deal with variables whose definitions are assignments. */
5633 if (!is_gimple_assign (stmt))
5634 return NULL_TREE;
5636 /* If we have an inverted comparison, apply DeMorgan's law and rewrite
5637 !var OR (op2a code2 op2b) => !(var AND !(op2a code2 op2b))
5638 Then we only have to consider the simpler non-inverted cases. */
5639 if (invert)
5640 t = and_var_with_comparison_1 (stmt,
5641 invert_tree_comparison (code2, false),
5642 op2a, op2b);
5643 else
5644 t = or_var_with_comparison_1 (stmt, code2, op2a, op2b);
5645 return canonicalize_bool (t, invert);
5648 /* Try to simplify the OR of the ssa variable defined by the assignment
5649 STMT with the comparison specified by (OP2A CODE2 OP2B).
5650 Return NULL_EXPR if we can't simplify this to a single expression. */
5652 static tree
5653 or_var_with_comparison_1 (gimple *stmt,
5654 enum tree_code code2, tree op2a, tree op2b)
5656 tree var = gimple_assign_lhs (stmt);
5657 tree true_test_var = NULL_TREE;
5658 tree false_test_var = NULL_TREE;
5659 enum tree_code innercode = gimple_assign_rhs_code (stmt);
5661 /* Check for identities like (var OR (var != 0)) => true . */
5662 if (TREE_CODE (op2a) == SSA_NAME
5663 && TREE_CODE (TREE_TYPE (var)) == BOOLEAN_TYPE)
5665 if ((code2 == NE_EXPR && integer_zerop (op2b))
5666 || (code2 == EQ_EXPR && integer_nonzerop (op2b)))
5668 true_test_var = op2a;
5669 if (var == true_test_var)
5670 return var;
5672 else if ((code2 == EQ_EXPR && integer_zerop (op2b))
5673 || (code2 == NE_EXPR && integer_nonzerop (op2b)))
5675 false_test_var = op2a;
5676 if (var == false_test_var)
5677 return boolean_true_node;
5681 /* If the definition is a comparison, recurse on it. */
5682 if (TREE_CODE_CLASS (innercode) == tcc_comparison)
5684 tree t = or_comparisons_1 (innercode,
5685 gimple_assign_rhs1 (stmt),
5686 gimple_assign_rhs2 (stmt),
5687 code2,
5688 op2a,
5689 op2b);
5690 if (t)
5691 return t;
5694 /* If the definition is an AND or OR expression, we may be able to
5695 simplify by reassociating. */
5696 if (TREE_CODE (TREE_TYPE (var)) == BOOLEAN_TYPE
5697 && (innercode == BIT_AND_EXPR || innercode == BIT_IOR_EXPR))
5699 tree inner1 = gimple_assign_rhs1 (stmt);
5700 tree inner2 = gimple_assign_rhs2 (stmt);
5701 gimple *s;
5702 tree t;
5703 tree partial = NULL_TREE;
5704 bool is_or = (innercode == BIT_IOR_EXPR);
5706 /* Check for boolean identities that don't require recursive examination
5707 of inner1/inner2:
5708 inner1 OR (inner1 OR inner2) => inner1 OR inner2 => var
5709 inner1 OR (inner1 AND inner2) => inner1
5710 !inner1 OR (inner1 OR inner2) => true
5711 !inner1 OR (inner1 AND inner2) => !inner1 OR inner2
5713 if (inner1 == true_test_var)
5714 return (is_or ? var : inner1);
5715 else if (inner2 == true_test_var)
5716 return (is_or ? var : inner2);
5717 else if (inner1 == false_test_var)
5718 return (is_or
5719 ? boolean_true_node
5720 : or_var_with_comparison (inner2, false, code2, op2a, op2b));
5721 else if (inner2 == false_test_var)
5722 return (is_or
5723 ? boolean_true_node
5724 : or_var_with_comparison (inner1, false, code2, op2a, op2b));
5726 /* Next, redistribute/reassociate the OR across the inner tests.
5727 Compute the first partial result, (inner1 OR (op2a code op2b)) */
5728 if (TREE_CODE (inner1) == SSA_NAME
5729 && is_gimple_assign (s = SSA_NAME_DEF_STMT (inner1))
5730 && TREE_CODE_CLASS (gimple_assign_rhs_code (s)) == tcc_comparison
5731 && (t = maybe_fold_or_comparisons (gimple_assign_rhs_code (s),
5732 gimple_assign_rhs1 (s),
5733 gimple_assign_rhs2 (s),
5734 code2, op2a, op2b)))
5736 /* Handle the OR case, where we are reassociating:
5737 (inner1 OR inner2) OR (op2a code2 op2b)
5738 => (t OR inner2)
5739 If the partial result t is a constant, we win. Otherwise
5740 continue on to try reassociating with the other inner test. */
5741 if (is_or)
5743 if (integer_onep (t))
5744 return boolean_true_node;
5745 else if (integer_zerop (t))
5746 return inner2;
5749 /* Handle the AND case, where we are redistributing:
5750 (inner1 AND inner2) OR (op2a code2 op2b)
5751 => (t AND (inner2 OR (op2a code op2b))) */
5752 else if (integer_zerop (t))
5753 return boolean_false_node;
5755 /* Save partial result for later. */
5756 partial = t;
5759 /* Compute the second partial result, (inner2 OR (op2a code op2b)) */
5760 if (TREE_CODE (inner2) == SSA_NAME
5761 && is_gimple_assign (s = SSA_NAME_DEF_STMT (inner2))
5762 && TREE_CODE_CLASS (gimple_assign_rhs_code (s)) == tcc_comparison
5763 && (t = maybe_fold_or_comparisons (gimple_assign_rhs_code (s),
5764 gimple_assign_rhs1 (s),
5765 gimple_assign_rhs2 (s),
5766 code2, op2a, op2b)))
5768 /* Handle the OR case, where we are reassociating:
5769 (inner1 OR inner2) OR (op2a code2 op2b)
5770 => (inner1 OR t)
5771 => (t OR partial) */
5772 if (is_or)
5774 if (integer_zerop (t))
5775 return inner1;
5776 else if (integer_onep (t))
5777 return boolean_true_node;
5778 /* If both are the same, we can apply the identity
5779 (x OR x) == x. */
5780 else if (partial && same_bool_result_p (t, partial))
5781 return t;
5784 /* Handle the AND case, where we are redistributing:
5785 (inner1 AND inner2) OR (op2a code2 op2b)
5786 => (t AND (inner1 OR (op2a code2 op2b)))
5787 => (t AND partial) */
5788 else
5790 if (integer_zerop (t))
5791 return boolean_false_node;
5792 else if (partial)
5794 /* We already got a simplification for the other
5795 operand to the redistributed AND expression. The
5796 interesting case is when at least one is true.
5797 Or, if both are the same, we can apply the identity
5798 (x AND x) == x. */
5799 if (integer_onep (partial))
5800 return t;
5801 else if (integer_onep (t))
5802 return partial;
5803 else if (same_bool_result_p (t, partial))
5804 return t;
5809 return NULL_TREE;
5812 /* Try to simplify the OR of two comparisons defined by
5813 (OP1A CODE1 OP1B) and (OP2A CODE2 OP2B), respectively.
5814 If this can be done without constructing an intermediate value,
5815 return the resulting tree; otherwise NULL_TREE is returned.
5816 This function is deliberately asymmetric as it recurses on SSA_DEFs
5817 in the first comparison but not the second. */
5819 static tree
5820 or_comparisons_1 (enum tree_code code1, tree op1a, tree op1b,
5821 enum tree_code code2, tree op2a, tree op2b)
5823 tree truth_type = truth_type_for (TREE_TYPE (op1a));
5825 /* First check for ((x CODE1 y) OR (x CODE2 y)). */
5826 if (operand_equal_p (op1a, op2a, 0)
5827 && operand_equal_p (op1b, op2b, 0))
5829 /* Result will be either NULL_TREE, or a combined comparison. */
5830 tree t = combine_comparisons (UNKNOWN_LOCATION,
5831 TRUTH_ORIF_EXPR, code1, code2,
5832 truth_type, op1a, op1b);
5833 if (t)
5834 return t;
5837 /* Likewise the swapped case of the above. */
5838 if (operand_equal_p (op1a, op2b, 0)
5839 && operand_equal_p (op1b, op2a, 0))
5841 /* Result will be either NULL_TREE, or a combined comparison. */
5842 tree t = combine_comparisons (UNKNOWN_LOCATION,
5843 TRUTH_ORIF_EXPR, code1,
5844 swap_tree_comparison (code2),
5845 truth_type, op1a, op1b);
5846 if (t)
5847 return t;
5850 /* If both comparisons are of the same value against constants, we might
5851 be able to merge them. */
5852 if (operand_equal_p (op1a, op2a, 0)
5853 && TREE_CODE (op1b) == INTEGER_CST
5854 && TREE_CODE (op2b) == INTEGER_CST)
5856 int cmp = tree_int_cst_compare (op1b, op2b);
5858 /* If we have (op1a != op1b), we should either be able to
5859 return that or TRUE, depending on whether the constant op1b
5860 also satisfies the other comparison against op2b. */
5861 if (code1 == NE_EXPR)
5863 bool done = true;
5864 bool val;
5865 switch (code2)
5867 case EQ_EXPR: val = (cmp == 0); break;
5868 case NE_EXPR: val = (cmp != 0); break;
5869 case LT_EXPR: val = (cmp < 0); break;
5870 case GT_EXPR: val = (cmp > 0); break;
5871 case LE_EXPR: val = (cmp <= 0); break;
5872 case GE_EXPR: val = (cmp >= 0); break;
5873 default: done = false;
5875 if (done)
5877 if (val)
5878 return boolean_true_node;
5879 else
5880 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5883 /* Likewise if the second comparison is a != comparison. */
5884 else if (code2 == NE_EXPR)
5886 bool done = true;
5887 bool val;
5888 switch (code1)
5890 case EQ_EXPR: val = (cmp == 0); break;
5891 case NE_EXPR: val = (cmp != 0); break;
5892 case LT_EXPR: val = (cmp > 0); break;
5893 case GT_EXPR: val = (cmp < 0); break;
5894 case LE_EXPR: val = (cmp >= 0); break;
5895 case GE_EXPR: val = (cmp <= 0); break;
5896 default: done = false;
5898 if (done)
5900 if (val)
5901 return boolean_true_node;
5902 else
5903 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5907 /* See if an equality test is redundant with the other comparison. */
5908 else if (code1 == EQ_EXPR)
5910 bool val;
5911 switch (code2)
5913 case EQ_EXPR: val = (cmp == 0); break;
5914 case NE_EXPR: val = (cmp != 0); break;
5915 case LT_EXPR: val = (cmp < 0); break;
5916 case GT_EXPR: val = (cmp > 0); break;
5917 case LE_EXPR: val = (cmp <= 0); break;
5918 case GE_EXPR: val = (cmp >= 0); break;
5919 default:
5920 val = false;
5922 if (val)
5923 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5925 else if (code2 == EQ_EXPR)
5927 bool val;
5928 switch (code1)
5930 case EQ_EXPR: val = (cmp == 0); break;
5931 case NE_EXPR: val = (cmp != 0); break;
5932 case LT_EXPR: val = (cmp > 0); break;
5933 case GT_EXPR: val = (cmp < 0); break;
5934 case LE_EXPR: val = (cmp >= 0); break;
5935 case GE_EXPR: val = (cmp <= 0); break;
5936 default:
5937 val = false;
5939 if (val)
5940 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5943 /* Chose the less restrictive of two < or <= comparisons. */
5944 else if ((code1 == LT_EXPR || code1 == LE_EXPR)
5945 && (code2 == LT_EXPR || code2 == LE_EXPR))
5947 if ((cmp < 0) || (cmp == 0 && code1 == LT_EXPR))
5948 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5949 else
5950 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5953 /* Likewise chose the less restrictive of two > or >= comparisons. */
5954 else if ((code1 == GT_EXPR || code1 == GE_EXPR)
5955 && (code2 == GT_EXPR || code2 == GE_EXPR))
5957 if ((cmp > 0) || (cmp == 0 && code1 == GT_EXPR))
5958 return fold_build2 (code2, boolean_type_node, op2a, op2b);
5959 else
5960 return fold_build2 (code1, boolean_type_node, op1a, op1b);
5963 /* Check for singleton ranges. */
5964 else if (cmp == 0
5965 && ((code1 == LT_EXPR && code2 == GT_EXPR)
5966 || (code1 == GT_EXPR && code2 == LT_EXPR)))
5967 return fold_build2 (NE_EXPR, boolean_type_node, op1a, op2b);
5969 /* Check for less/greater pairs that don't restrict the range at all. */
5970 else if (cmp >= 0
5971 && (code1 == LT_EXPR || code1 == LE_EXPR)
5972 && (code2 == GT_EXPR || code2 == GE_EXPR))
5973 return boolean_true_node;
5974 else if (cmp <= 0
5975 && (code1 == GT_EXPR || code1 == GE_EXPR)
5976 && (code2 == LT_EXPR || code2 == LE_EXPR))
5977 return boolean_true_node;
5980 /* Perhaps the first comparison is (NAME != 0) or (NAME == 1) where
5981 NAME's definition is a truth value. See if there are any simplifications
5982 that can be done against the NAME's definition. */
5983 if (TREE_CODE (op1a) == SSA_NAME
5984 && (code1 == NE_EXPR || code1 == EQ_EXPR)
5985 && (integer_zerop (op1b) || integer_onep (op1b)))
5987 bool invert = ((code1 == EQ_EXPR && integer_zerop (op1b))
5988 || (code1 == NE_EXPR && integer_onep (op1b)));
5989 gimple *stmt = SSA_NAME_DEF_STMT (op1a);
5990 switch (gimple_code (stmt))
5992 case GIMPLE_ASSIGN:
5993 /* Try to simplify by copy-propagating the definition. */
5994 return or_var_with_comparison (op1a, invert, code2, op2a, op2b);
5996 case GIMPLE_PHI:
5997 /* If every argument to the PHI produces the same result when
5998 ORed with the second comparison, we win.
5999 Do not do this unless the type is bool since we need a bool
6000 result here anyway. */
6001 if (TREE_CODE (TREE_TYPE (op1a)) == BOOLEAN_TYPE)
6003 tree result = NULL_TREE;
6004 unsigned i;
6005 for (i = 0; i < gimple_phi_num_args (stmt); i++)
6007 tree arg = gimple_phi_arg_def (stmt, i);
6009 /* If this PHI has itself as an argument, ignore it.
6010 If all the other args produce the same result,
6011 we're still OK. */
6012 if (arg == gimple_phi_result (stmt))
6013 continue;
6014 else if (TREE_CODE (arg) == INTEGER_CST)
6016 if (invert ? integer_zerop (arg) : integer_nonzerop (arg))
6018 if (!result)
6019 result = boolean_true_node;
6020 else if (!integer_onep (result))
6021 return NULL_TREE;
6023 else if (!result)
6024 result = fold_build2 (code2, boolean_type_node,
6025 op2a, op2b);
6026 else if (!same_bool_comparison_p (result,
6027 code2, op2a, op2b))
6028 return NULL_TREE;
6030 else if (TREE_CODE (arg) == SSA_NAME
6031 && !SSA_NAME_IS_DEFAULT_DEF (arg))
6033 tree temp;
6034 gimple *def_stmt = SSA_NAME_DEF_STMT (arg);
6035 /* In simple cases we can look through PHI nodes,
6036 but we have to be careful with loops.
6037 See PR49073. */
6038 if (! dom_info_available_p (CDI_DOMINATORS)
6039 || gimple_bb (def_stmt) == gimple_bb (stmt)
6040 || dominated_by_p (CDI_DOMINATORS,
6041 gimple_bb (def_stmt),
6042 gimple_bb (stmt)))
6043 return NULL_TREE;
6044 temp = or_var_with_comparison (arg, invert, code2,
6045 op2a, op2b);
6046 if (!temp)
6047 return NULL_TREE;
6048 else if (!result)
6049 result = temp;
6050 else if (!same_bool_result_p (result, temp))
6051 return NULL_TREE;
6053 else
6054 return NULL_TREE;
6056 return result;
6059 default:
6060 break;
6063 return NULL_TREE;
6066 /* Try to simplify the OR of two comparisons, specified by
6067 (OP1A CODE1 OP1B) and (OP2B CODE2 OP2B), respectively.
6068 If this can be simplified to a single expression (without requiring
6069 introducing more SSA variables to hold intermediate values),
6070 return the resulting tree. Otherwise return NULL_TREE.
6071 If the result expression is non-null, it has boolean type. */
6073 tree
6074 maybe_fold_or_comparisons (enum tree_code code1, tree op1a, tree op1b,
6075 enum tree_code code2, tree op2a, tree op2b)
6077 tree t = or_comparisons_1 (code1, op1a, op1b, code2, op2a, op2b);
6078 if (t)
6079 return t;
6080 else
6081 return or_comparisons_1 (code2, op2a, op2b, code1, op1a, op1b);
6085 /* Fold STMT to a constant using VALUEIZE to valueize SSA names.
6087 Either NULL_TREE, a simplified but non-constant or a constant
6088 is returned.
6090 ??? This should go into a gimple-fold-inline.h file to be eventually
6091 privatized with the single valueize function used in the various TUs
6092 to avoid the indirect function call overhead. */
6094 tree
6095 gimple_fold_stmt_to_constant_1 (gimple *stmt, tree (*valueize) (tree),
6096 tree (*gvalueize) (tree))
6098 gimple_match_op res_op;
6099 /* ??? The SSA propagators do not correctly deal with following SSA use-def
6100 edges if there are intermediate VARYING defs. For this reason
6101 do not follow SSA edges here even though SCCVN can technically
6102 just deal fine with that. */
6103 if (gimple_simplify (stmt, &res_op, NULL, gvalueize, valueize))
6105 tree res = NULL_TREE;
6106 if (gimple_simplified_result_is_gimple_val (&res_op))
6107 res = res_op.ops[0];
6108 else if (mprts_hook)
6109 res = mprts_hook (&res_op);
6110 if (res)
6112 if (dump_file && dump_flags & TDF_DETAILS)
6114 fprintf (dump_file, "Match-and-simplified ");
6115 print_gimple_expr (dump_file, stmt, 0, TDF_SLIM);
6116 fprintf (dump_file, " to ");
6117 print_generic_expr (dump_file, res);
6118 fprintf (dump_file, "\n");
6120 return res;
6124 location_t loc = gimple_location (stmt);
6125 switch (gimple_code (stmt))
6127 case GIMPLE_ASSIGN:
6129 enum tree_code subcode = gimple_assign_rhs_code (stmt);
6131 switch (get_gimple_rhs_class (subcode))
6133 case GIMPLE_SINGLE_RHS:
6135 tree rhs = gimple_assign_rhs1 (stmt);
6136 enum tree_code_class kind = TREE_CODE_CLASS (subcode);
6138 if (TREE_CODE (rhs) == SSA_NAME)
6140 /* If the RHS is an SSA_NAME, return its known constant value,
6141 if any. */
6142 return (*valueize) (rhs);
6144 /* Handle propagating invariant addresses into address
6145 operations. */
6146 else if (TREE_CODE (rhs) == ADDR_EXPR
6147 && !is_gimple_min_invariant (rhs))
6149 poly_int64 offset = 0;
6150 tree base;
6151 base = get_addr_base_and_unit_offset_1 (TREE_OPERAND (rhs, 0),
6152 &offset,
6153 valueize);
6154 if (base
6155 && (CONSTANT_CLASS_P (base)
6156 || decl_address_invariant_p (base)))
6157 return build_invariant_address (TREE_TYPE (rhs),
6158 base, offset);
6160 else if (TREE_CODE (rhs) == CONSTRUCTOR
6161 && TREE_CODE (TREE_TYPE (rhs)) == VECTOR_TYPE
6162 && known_eq (CONSTRUCTOR_NELTS (rhs),
6163 TYPE_VECTOR_SUBPARTS (TREE_TYPE (rhs))))
6165 unsigned i, nelts;
6166 tree val;
6168 nelts = CONSTRUCTOR_NELTS (rhs);
6169 tree_vector_builder vec (TREE_TYPE (rhs), nelts, 1);
6170 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (rhs), i, val)
6172 val = (*valueize) (val);
6173 if (TREE_CODE (val) == INTEGER_CST
6174 || TREE_CODE (val) == REAL_CST
6175 || TREE_CODE (val) == FIXED_CST)
6176 vec.quick_push (val);
6177 else
6178 return NULL_TREE;
6181 return vec.build ();
6183 if (subcode == OBJ_TYPE_REF)
6185 tree val = (*valueize) (OBJ_TYPE_REF_EXPR (rhs));
6186 /* If callee is constant, we can fold away the wrapper. */
6187 if (is_gimple_min_invariant (val))
6188 return val;
6191 if (kind == tcc_reference)
6193 if ((TREE_CODE (rhs) == VIEW_CONVERT_EXPR
6194 || TREE_CODE (rhs) == REALPART_EXPR
6195 || TREE_CODE (rhs) == IMAGPART_EXPR)
6196 && TREE_CODE (TREE_OPERAND (rhs, 0)) == SSA_NAME)
6198 tree val = (*valueize) (TREE_OPERAND (rhs, 0));
6199 return fold_unary_loc (EXPR_LOCATION (rhs),
6200 TREE_CODE (rhs),
6201 TREE_TYPE (rhs), val);
6203 else if (TREE_CODE (rhs) == BIT_FIELD_REF
6204 && TREE_CODE (TREE_OPERAND (rhs, 0)) == SSA_NAME)
6206 tree val = (*valueize) (TREE_OPERAND (rhs, 0));
6207 return fold_ternary_loc (EXPR_LOCATION (rhs),
6208 TREE_CODE (rhs),
6209 TREE_TYPE (rhs), val,
6210 TREE_OPERAND (rhs, 1),
6211 TREE_OPERAND (rhs, 2));
6213 else if (TREE_CODE (rhs) == MEM_REF
6214 && TREE_CODE (TREE_OPERAND (rhs, 0)) == SSA_NAME)
6216 tree val = (*valueize) (TREE_OPERAND (rhs, 0));
6217 if (TREE_CODE (val) == ADDR_EXPR
6218 && is_gimple_min_invariant (val))
6220 tree tem = fold_build2 (MEM_REF, TREE_TYPE (rhs),
6221 unshare_expr (val),
6222 TREE_OPERAND (rhs, 1));
6223 if (tem)
6224 rhs = tem;
6227 return fold_const_aggregate_ref_1 (rhs, valueize);
6229 else if (kind == tcc_declaration)
6230 return get_symbol_constant_value (rhs);
6231 return rhs;
6234 case GIMPLE_UNARY_RHS:
6235 return NULL_TREE;
6237 case GIMPLE_BINARY_RHS:
6238 /* Translate &x + CST into an invariant form suitable for
6239 further propagation. */
6240 if (subcode == POINTER_PLUS_EXPR)
6242 tree op0 = (*valueize) (gimple_assign_rhs1 (stmt));
6243 tree op1 = (*valueize) (gimple_assign_rhs2 (stmt));
6244 if (TREE_CODE (op0) == ADDR_EXPR
6245 && TREE_CODE (op1) == INTEGER_CST)
6247 tree off = fold_convert (ptr_type_node, op1);
6248 return build_fold_addr_expr_loc
6249 (loc,
6250 fold_build2 (MEM_REF,
6251 TREE_TYPE (TREE_TYPE (op0)),
6252 unshare_expr (op0), off));
6255 /* Canonicalize bool != 0 and bool == 0 appearing after
6256 valueization. While gimple_simplify handles this
6257 it can get confused by the ~X == 1 -> X == 0 transform
6258 which we cant reduce to a SSA name or a constant
6259 (and we have no way to tell gimple_simplify to not
6260 consider those transforms in the first place). */
6261 else if (subcode == EQ_EXPR
6262 || subcode == NE_EXPR)
6264 tree lhs = gimple_assign_lhs (stmt);
6265 tree op0 = gimple_assign_rhs1 (stmt);
6266 if (useless_type_conversion_p (TREE_TYPE (lhs),
6267 TREE_TYPE (op0)))
6269 tree op1 = (*valueize) (gimple_assign_rhs2 (stmt));
6270 op0 = (*valueize) (op0);
6271 if (TREE_CODE (op0) == INTEGER_CST)
6272 std::swap (op0, op1);
6273 if (TREE_CODE (op1) == INTEGER_CST
6274 && ((subcode == NE_EXPR && integer_zerop (op1))
6275 || (subcode == EQ_EXPR && integer_onep (op1))))
6276 return op0;
6279 return NULL_TREE;
6281 case GIMPLE_TERNARY_RHS:
6283 /* Handle ternary operators that can appear in GIMPLE form. */
6284 tree op0 = (*valueize) (gimple_assign_rhs1 (stmt));
6285 tree op1 = (*valueize) (gimple_assign_rhs2 (stmt));
6286 tree op2 = (*valueize) (gimple_assign_rhs3 (stmt));
6287 return fold_ternary_loc (loc, subcode,
6288 gimple_expr_type (stmt), op0, op1, op2);
6291 default:
6292 gcc_unreachable ();
6296 case GIMPLE_CALL:
6298 tree fn;
6299 gcall *call_stmt = as_a <gcall *> (stmt);
6301 if (gimple_call_internal_p (stmt))
6303 enum tree_code subcode = ERROR_MARK;
6304 switch (gimple_call_internal_fn (stmt))
6306 case IFN_UBSAN_CHECK_ADD:
6307 subcode = PLUS_EXPR;
6308 break;
6309 case IFN_UBSAN_CHECK_SUB:
6310 subcode = MINUS_EXPR;
6311 break;
6312 case IFN_UBSAN_CHECK_MUL:
6313 subcode = MULT_EXPR;
6314 break;
6315 case IFN_BUILTIN_EXPECT:
6317 tree arg0 = gimple_call_arg (stmt, 0);
6318 tree op0 = (*valueize) (arg0);
6319 if (TREE_CODE (op0) == INTEGER_CST)
6320 return op0;
6321 return NULL_TREE;
6323 default:
6324 return NULL_TREE;
6326 tree arg0 = gimple_call_arg (stmt, 0);
6327 tree arg1 = gimple_call_arg (stmt, 1);
6328 tree op0 = (*valueize) (arg0);
6329 tree op1 = (*valueize) (arg1);
6331 if (TREE_CODE (op0) != INTEGER_CST
6332 || TREE_CODE (op1) != INTEGER_CST)
6334 switch (subcode)
6336 case MULT_EXPR:
6337 /* x * 0 = 0 * x = 0 without overflow. */
6338 if (integer_zerop (op0) || integer_zerop (op1))
6339 return build_zero_cst (TREE_TYPE (arg0));
6340 break;
6341 case MINUS_EXPR:
6342 /* y - y = 0 without overflow. */
6343 if (operand_equal_p (op0, op1, 0))
6344 return build_zero_cst (TREE_TYPE (arg0));
6345 break;
6346 default:
6347 break;
6350 tree res
6351 = fold_binary_loc (loc, subcode, TREE_TYPE (arg0), op0, op1);
6352 if (res
6353 && TREE_CODE (res) == INTEGER_CST
6354 && !TREE_OVERFLOW (res))
6355 return res;
6356 return NULL_TREE;
6359 fn = (*valueize) (gimple_call_fn (stmt));
6360 if (TREE_CODE (fn) == ADDR_EXPR
6361 && TREE_CODE (TREE_OPERAND (fn, 0)) == FUNCTION_DECL
6362 && DECL_BUILT_IN (TREE_OPERAND (fn, 0))
6363 && gimple_builtin_call_types_compatible_p (stmt,
6364 TREE_OPERAND (fn, 0)))
6366 tree *args = XALLOCAVEC (tree, gimple_call_num_args (stmt));
6367 tree retval;
6368 unsigned i;
6369 for (i = 0; i < gimple_call_num_args (stmt); ++i)
6370 args[i] = (*valueize) (gimple_call_arg (stmt, i));
6371 retval = fold_builtin_call_array (loc,
6372 gimple_call_return_type (call_stmt),
6373 fn, gimple_call_num_args (stmt), args);
6374 if (retval)
6376 /* fold_call_expr wraps the result inside a NOP_EXPR. */
6377 STRIP_NOPS (retval);
6378 retval = fold_convert (gimple_call_return_type (call_stmt),
6379 retval);
6381 return retval;
6383 return NULL_TREE;
6386 default:
6387 return NULL_TREE;
6391 /* Fold STMT to a constant using VALUEIZE to valueize SSA names.
6392 Returns NULL_TREE if folding to a constant is not possible, otherwise
6393 returns a constant according to is_gimple_min_invariant. */
6395 tree
6396 gimple_fold_stmt_to_constant (gimple *stmt, tree (*valueize) (tree))
6398 tree res = gimple_fold_stmt_to_constant_1 (stmt, valueize);
6399 if (res && is_gimple_min_invariant (res))
6400 return res;
6401 return NULL_TREE;
6405 /* The following set of functions are supposed to fold references using
6406 their constant initializers. */
6408 /* See if we can find constructor defining value of BASE.
6409 When we know the consructor with constant offset (such as
6410 base is array[40] and we do know constructor of array), then
6411 BIT_OFFSET is adjusted accordingly.
6413 As a special case, return error_mark_node when constructor
6414 is not explicitly available, but it is known to be zero
6415 such as 'static const int a;'. */
6416 static tree
6417 get_base_constructor (tree base, poly_int64_pod *bit_offset,
6418 tree (*valueize)(tree))
6420 poly_int64 bit_offset2, size, max_size;
6421 bool reverse;
6423 if (TREE_CODE (base) == MEM_REF)
6425 poly_offset_int boff = *bit_offset + mem_ref_offset (base) * BITS_PER_UNIT;
6426 if (!boff.to_shwi (bit_offset))
6427 return NULL_TREE;
6429 if (valueize
6430 && TREE_CODE (TREE_OPERAND (base, 0)) == SSA_NAME)
6431 base = valueize (TREE_OPERAND (base, 0));
6432 if (!base || TREE_CODE (base) != ADDR_EXPR)
6433 return NULL_TREE;
6434 base = TREE_OPERAND (base, 0);
6436 else if (valueize
6437 && TREE_CODE (base) == SSA_NAME)
6438 base = valueize (base);
6440 /* Get a CONSTRUCTOR. If BASE is a VAR_DECL, get its
6441 DECL_INITIAL. If BASE is a nested reference into another
6442 ARRAY_REF or COMPONENT_REF, make a recursive call to resolve
6443 the inner reference. */
6444 switch (TREE_CODE (base))
6446 case VAR_DECL:
6447 case CONST_DECL:
6449 tree init = ctor_for_folding (base);
6451 /* Our semantic is exact opposite of ctor_for_folding;
6452 NULL means unknown, while error_mark_node is 0. */
6453 if (init == error_mark_node)
6454 return NULL_TREE;
6455 if (!init)
6456 return error_mark_node;
6457 return init;
6460 case VIEW_CONVERT_EXPR:
6461 return get_base_constructor (TREE_OPERAND (base, 0),
6462 bit_offset, valueize);
6464 case ARRAY_REF:
6465 case COMPONENT_REF:
6466 base = get_ref_base_and_extent (base, &bit_offset2, &size, &max_size,
6467 &reverse);
6468 if (!known_size_p (max_size) || maybe_ne (size, max_size))
6469 return NULL_TREE;
6470 *bit_offset += bit_offset2;
6471 return get_base_constructor (base, bit_offset, valueize);
6473 case CONSTRUCTOR:
6474 return base;
6476 default:
6477 if (CONSTANT_CLASS_P (base))
6478 return base;
6480 return NULL_TREE;
6484 /* CTOR is CONSTRUCTOR of an array type. Fold reference of type TYPE and size
6485 SIZE to the memory at bit OFFSET. */
6487 static tree
6488 fold_array_ctor_reference (tree type, tree ctor,
6489 unsigned HOST_WIDE_INT offset,
6490 unsigned HOST_WIDE_INT size,
6491 tree from_decl)
6493 offset_int low_bound;
6494 offset_int elt_size;
6495 offset_int access_index;
6496 tree domain_type = NULL_TREE;
6497 HOST_WIDE_INT inner_offset;
6499 /* Compute low bound and elt size. */
6500 if (TREE_CODE (TREE_TYPE (ctor)) == ARRAY_TYPE)
6501 domain_type = TYPE_DOMAIN (TREE_TYPE (ctor));
6502 if (domain_type && TYPE_MIN_VALUE (domain_type))
6504 /* Static constructors for variably sized objects makes no sense. */
6505 if (TREE_CODE (TYPE_MIN_VALUE (domain_type)) != INTEGER_CST)
6506 return NULL_TREE;
6507 low_bound = wi::to_offset (TYPE_MIN_VALUE (domain_type));
6509 else
6510 low_bound = 0;
6511 /* Static constructors for variably sized objects makes no sense. */
6512 if (TREE_CODE (TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (ctor)))) != INTEGER_CST)
6513 return NULL_TREE;
6514 elt_size = wi::to_offset (TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (ctor))));
6516 /* We can handle only constantly sized accesses that are known to not
6517 be larger than size of array element. */
6518 if (!TYPE_SIZE_UNIT (type)
6519 || TREE_CODE (TYPE_SIZE_UNIT (type)) != INTEGER_CST
6520 || elt_size < wi::to_offset (TYPE_SIZE_UNIT (type))
6521 || elt_size == 0)
6522 return NULL_TREE;
6524 /* Compute the array index we look for. */
6525 access_index = wi::udiv_trunc (offset_int (offset / BITS_PER_UNIT),
6526 elt_size);
6527 access_index += low_bound;
6529 /* And offset within the access. */
6530 inner_offset = offset % (elt_size.to_uhwi () * BITS_PER_UNIT);
6532 /* See if the array field is large enough to span whole access. We do not
6533 care to fold accesses spanning multiple array indexes. */
6534 if (inner_offset + size > elt_size.to_uhwi () * BITS_PER_UNIT)
6535 return NULL_TREE;
6536 if (tree val = get_array_ctor_element_at_index (ctor, access_index))
6537 return fold_ctor_reference (type, val, inner_offset, size, from_decl);
6539 /* When memory is not explicitely mentioned in constructor,
6540 it is 0 (or out of range). */
6541 return build_zero_cst (type);
6544 /* CTOR is CONSTRUCTOR of an aggregate or vector.
6545 Fold reference of type TYPE and size SIZE to the memory at bit OFFSET. */
6547 static tree
6548 fold_nonarray_ctor_reference (tree type, tree ctor,
6549 unsigned HOST_WIDE_INT offset,
6550 unsigned HOST_WIDE_INT size,
6551 tree from_decl)
6553 unsigned HOST_WIDE_INT cnt;
6554 tree cfield, cval;
6556 FOR_EACH_CONSTRUCTOR_ELT (CONSTRUCTOR_ELTS (ctor), cnt, cfield,
6557 cval)
6559 tree byte_offset = DECL_FIELD_OFFSET (cfield);
6560 tree field_offset = DECL_FIELD_BIT_OFFSET (cfield);
6561 tree field_size = DECL_SIZE (cfield);
6562 offset_int bitoffset;
6563 offset_int bitoffset_end, access_end;
6565 /* Variable sized objects in static constructors makes no sense,
6566 but field_size can be NULL for flexible array members. */
6567 gcc_assert (TREE_CODE (field_offset) == INTEGER_CST
6568 && TREE_CODE (byte_offset) == INTEGER_CST
6569 && (field_size != NULL_TREE
6570 ? TREE_CODE (field_size) == INTEGER_CST
6571 : TREE_CODE (TREE_TYPE (cfield)) == ARRAY_TYPE));
6573 /* Compute bit offset of the field. */
6574 bitoffset = (wi::to_offset (field_offset)
6575 + (wi::to_offset (byte_offset) << LOG2_BITS_PER_UNIT));
6576 /* Compute bit offset where the field ends. */
6577 if (field_size != NULL_TREE)
6578 bitoffset_end = bitoffset + wi::to_offset (field_size);
6579 else
6580 bitoffset_end = 0;
6582 access_end = offset_int (offset) + size;
6584 /* Is there any overlap between [OFFSET, OFFSET+SIZE) and
6585 [BITOFFSET, BITOFFSET_END)? */
6586 if (wi::cmps (access_end, bitoffset) > 0
6587 && (field_size == NULL_TREE
6588 || wi::lts_p (offset, bitoffset_end)))
6590 offset_int inner_offset = offset_int (offset) - bitoffset;
6591 /* We do have overlap. Now see if field is large enough to
6592 cover the access. Give up for accesses spanning multiple
6593 fields. */
6594 if (wi::cmps (access_end, bitoffset_end) > 0)
6595 return NULL_TREE;
6596 if (offset < bitoffset)
6597 return NULL_TREE;
6598 return fold_ctor_reference (type, cval,
6599 inner_offset.to_uhwi (), size,
6600 from_decl);
6603 /* When memory is not explicitely mentioned in constructor, it is 0. */
6604 return build_zero_cst (type);
6607 /* CTOR is value initializing memory, fold reference of type TYPE and
6608 size POLY_SIZE to the memory at bit POLY_OFFSET. */
6610 tree
6611 fold_ctor_reference (tree type, tree ctor, poly_uint64 poly_offset,
6612 poly_uint64 poly_size, tree from_decl)
6614 tree ret;
6616 /* We found the field with exact match. */
6617 if (useless_type_conversion_p (type, TREE_TYPE (ctor))
6618 && known_eq (poly_offset, 0U))
6619 return canonicalize_constructor_val (unshare_expr (ctor), from_decl);
6621 /* The remaining optimizations need a constant size and offset. */
6622 unsigned HOST_WIDE_INT size, offset;
6623 if (!poly_size.is_constant (&size) || !poly_offset.is_constant (&offset))
6624 return NULL_TREE;
6626 /* We are at the end of walk, see if we can view convert the
6627 result. */
6628 if (!AGGREGATE_TYPE_P (TREE_TYPE (ctor)) && !offset
6629 /* VIEW_CONVERT_EXPR is defined only for matching sizes. */
6630 && !compare_tree_int (TYPE_SIZE (type), size)
6631 && !compare_tree_int (TYPE_SIZE (TREE_TYPE (ctor)), size))
6633 ret = canonicalize_constructor_val (unshare_expr (ctor), from_decl);
6634 if (ret)
6636 ret = fold_unary (VIEW_CONVERT_EXPR, type, ret);
6637 if (ret)
6638 STRIP_USELESS_TYPE_CONVERSION (ret);
6640 return ret;
6642 /* For constants and byte-aligned/sized reads try to go through
6643 native_encode/interpret. */
6644 if (CONSTANT_CLASS_P (ctor)
6645 && BITS_PER_UNIT == 8
6646 && offset % BITS_PER_UNIT == 0
6647 && size % BITS_PER_UNIT == 0
6648 && size <= MAX_BITSIZE_MODE_ANY_MODE)
6650 unsigned char buf[MAX_BITSIZE_MODE_ANY_MODE / BITS_PER_UNIT];
6651 int len = native_encode_expr (ctor, buf, size / BITS_PER_UNIT,
6652 offset / BITS_PER_UNIT);
6653 if (len > 0)
6654 return native_interpret_expr (type, buf, len);
6656 if (TREE_CODE (ctor) == CONSTRUCTOR)
6659 if (TREE_CODE (TREE_TYPE (ctor)) == ARRAY_TYPE
6660 || TREE_CODE (TREE_TYPE (ctor)) == VECTOR_TYPE)
6661 return fold_array_ctor_reference (type, ctor, offset, size,
6662 from_decl);
6663 else
6664 return fold_nonarray_ctor_reference (type, ctor, offset, size,
6665 from_decl);
6668 return NULL_TREE;
6671 /* Return the tree representing the element referenced by T if T is an
6672 ARRAY_REF or COMPONENT_REF into constant aggregates valuezing SSA
6673 names using VALUEIZE. Return NULL_TREE otherwise. */
6675 tree
6676 fold_const_aggregate_ref_1 (tree t, tree (*valueize) (tree))
6678 tree ctor, idx, base;
6679 poly_int64 offset, size, max_size;
6680 tree tem;
6681 bool reverse;
6683 if (TREE_THIS_VOLATILE (t))
6684 return NULL_TREE;
6686 if (DECL_P (t))
6687 return get_symbol_constant_value (t);
6689 tem = fold_read_from_constant_string (t);
6690 if (tem)
6691 return tem;
6693 switch (TREE_CODE (t))
6695 case ARRAY_REF:
6696 case ARRAY_RANGE_REF:
6697 /* Constant indexes are handled well by get_base_constructor.
6698 Only special case variable offsets.
6699 FIXME: This code can't handle nested references with variable indexes
6700 (they will be handled only by iteration of ccp). Perhaps we can bring
6701 get_ref_base_and_extent here and make it use a valueize callback. */
6702 if (TREE_CODE (TREE_OPERAND (t, 1)) == SSA_NAME
6703 && valueize
6704 && (idx = (*valueize) (TREE_OPERAND (t, 1)))
6705 && poly_int_tree_p (idx))
6707 tree low_bound, unit_size;
6709 /* If the resulting bit-offset is constant, track it. */
6710 if ((low_bound = array_ref_low_bound (t),
6711 poly_int_tree_p (low_bound))
6712 && (unit_size = array_ref_element_size (t),
6713 tree_fits_uhwi_p (unit_size)))
6715 poly_offset_int woffset
6716 = wi::sext (wi::to_poly_offset (idx)
6717 - wi::to_poly_offset (low_bound),
6718 TYPE_PRECISION (TREE_TYPE (idx)));
6720 if (woffset.to_shwi (&offset))
6722 /* TODO: This code seems wrong, multiply then check
6723 to see if it fits. */
6724 offset *= tree_to_uhwi (unit_size);
6725 offset *= BITS_PER_UNIT;
6727 base = TREE_OPERAND (t, 0);
6728 ctor = get_base_constructor (base, &offset, valueize);
6729 /* Empty constructor. Always fold to 0. */
6730 if (ctor == error_mark_node)
6731 return build_zero_cst (TREE_TYPE (t));
6732 /* Out of bound array access. Value is undefined,
6733 but don't fold. */
6734 if (maybe_lt (offset, 0))
6735 return NULL_TREE;
6736 /* We can not determine ctor. */
6737 if (!ctor)
6738 return NULL_TREE;
6739 return fold_ctor_reference (TREE_TYPE (t), ctor, offset,
6740 tree_to_uhwi (unit_size)
6741 * BITS_PER_UNIT,
6742 base);
6746 /* Fallthru. */
6748 case COMPONENT_REF:
6749 case BIT_FIELD_REF:
6750 case TARGET_MEM_REF:
6751 case MEM_REF:
6752 base = get_ref_base_and_extent (t, &offset, &size, &max_size, &reverse);
6753 ctor = get_base_constructor (base, &offset, valueize);
6755 /* Empty constructor. Always fold to 0. */
6756 if (ctor == error_mark_node)
6757 return build_zero_cst (TREE_TYPE (t));
6758 /* We do not know precise address. */
6759 if (!known_size_p (max_size) || maybe_ne (max_size, size))
6760 return NULL_TREE;
6761 /* We can not determine ctor. */
6762 if (!ctor)
6763 return NULL_TREE;
6765 /* Out of bound array access. Value is undefined, but don't fold. */
6766 if (maybe_lt (offset, 0))
6767 return NULL_TREE;
6769 return fold_ctor_reference (TREE_TYPE (t), ctor, offset, size,
6770 base);
6772 case REALPART_EXPR:
6773 case IMAGPART_EXPR:
6775 tree c = fold_const_aggregate_ref_1 (TREE_OPERAND (t, 0), valueize);
6776 if (c && TREE_CODE (c) == COMPLEX_CST)
6777 return fold_build1_loc (EXPR_LOCATION (t),
6778 TREE_CODE (t), TREE_TYPE (t), c);
6779 break;
6782 default:
6783 break;
6786 return NULL_TREE;
6789 tree
6790 fold_const_aggregate_ref (tree t)
6792 return fold_const_aggregate_ref_1 (t, NULL);
6795 /* Lookup virtual method with index TOKEN in a virtual table V
6796 at OFFSET.
6797 Set CAN_REFER if non-NULL to false if method
6798 is not referable or if the virtual table is ill-formed (such as rewriten
6799 by non-C++ produced symbol). Otherwise just return NULL in that calse. */
6801 tree
6802 gimple_get_virt_method_for_vtable (HOST_WIDE_INT token,
6803 tree v,
6804 unsigned HOST_WIDE_INT offset,
6805 bool *can_refer)
6807 tree vtable = v, init, fn;
6808 unsigned HOST_WIDE_INT size;
6809 unsigned HOST_WIDE_INT elt_size, access_index;
6810 tree domain_type;
6812 if (can_refer)
6813 *can_refer = true;
6815 /* First of all double check we have virtual table. */
6816 if (!VAR_P (v) || !DECL_VIRTUAL_P (v))
6818 /* Pass down that we lost track of the target. */
6819 if (can_refer)
6820 *can_refer = false;
6821 return NULL_TREE;
6824 init = ctor_for_folding (v);
6826 /* The virtual tables should always be born with constructors
6827 and we always should assume that they are avaialble for
6828 folding. At the moment we do not stream them in all cases,
6829 but it should never happen that ctor seem unreachable. */
6830 gcc_assert (init);
6831 if (init == error_mark_node)
6833 /* Pass down that we lost track of the target. */
6834 if (can_refer)
6835 *can_refer = false;
6836 return NULL_TREE;
6838 gcc_checking_assert (TREE_CODE (TREE_TYPE (v)) == ARRAY_TYPE);
6839 size = tree_to_uhwi (TYPE_SIZE (TREE_TYPE (TREE_TYPE (v))));
6840 offset *= BITS_PER_UNIT;
6841 offset += token * size;
6843 /* Lookup the value in the constructor that is assumed to be array.
6844 This is equivalent to
6845 fn = fold_ctor_reference (TREE_TYPE (TREE_TYPE (v)), init,
6846 offset, size, NULL);
6847 but in a constant time. We expect that frontend produced a simple
6848 array without indexed initializers. */
6850 gcc_checking_assert (TREE_CODE (TREE_TYPE (init)) == ARRAY_TYPE);
6851 domain_type = TYPE_DOMAIN (TREE_TYPE (init));
6852 gcc_checking_assert (integer_zerop (TYPE_MIN_VALUE (domain_type)));
6853 elt_size = tree_to_uhwi (TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (init))));
6855 access_index = offset / BITS_PER_UNIT / elt_size;
6856 gcc_checking_assert (offset % (elt_size * BITS_PER_UNIT) == 0);
6858 /* This code makes an assumption that there are no
6859 indexed fileds produced by C++ FE, so we can directly index the array. */
6860 if (access_index < CONSTRUCTOR_NELTS (init))
6862 fn = CONSTRUCTOR_ELT (init, access_index)->value;
6863 gcc_checking_assert (!CONSTRUCTOR_ELT (init, access_index)->index);
6864 STRIP_NOPS (fn);
6866 else
6867 fn = NULL;
6869 /* For type inconsistent program we may end up looking up virtual method
6870 in virtual table that does not contain TOKEN entries. We may overrun
6871 the virtual table and pick up a constant or RTTI info pointer.
6872 In any case the call is undefined. */
6873 if (!fn
6874 || (TREE_CODE (fn) != ADDR_EXPR && TREE_CODE (fn) != FDESC_EXPR)
6875 || TREE_CODE (TREE_OPERAND (fn, 0)) != FUNCTION_DECL)
6876 fn = builtin_decl_implicit (BUILT_IN_UNREACHABLE);
6877 else
6879 fn = TREE_OPERAND (fn, 0);
6881 /* When cgraph node is missing and function is not public, we cannot
6882 devirtualize. This can happen in WHOPR when the actual method
6883 ends up in other partition, because we found devirtualization
6884 possibility too late. */
6885 if (!can_refer_decl_in_current_unit_p (fn, vtable))
6887 if (can_refer)
6889 *can_refer = false;
6890 return fn;
6892 return NULL_TREE;
6896 /* Make sure we create a cgraph node for functions we'll reference.
6897 They can be non-existent if the reference comes from an entry
6898 of an external vtable for example. */
6899 cgraph_node::get_create (fn);
6901 return fn;
6904 /* Return a declaration of a function which an OBJ_TYPE_REF references. TOKEN
6905 is integer form of OBJ_TYPE_REF_TOKEN of the reference expression.
6906 KNOWN_BINFO carries the binfo describing the true type of
6907 OBJ_TYPE_REF_OBJECT(REF).
6908 Set CAN_REFER if non-NULL to false if method
6909 is not referable or if the virtual table is ill-formed (such as rewriten
6910 by non-C++ produced symbol). Otherwise just return NULL in that calse. */
6912 tree
6913 gimple_get_virt_method_for_binfo (HOST_WIDE_INT token, tree known_binfo,
6914 bool *can_refer)
6916 unsigned HOST_WIDE_INT offset;
6917 tree v;
6919 v = BINFO_VTABLE (known_binfo);
6920 /* If there is no virtual methods table, leave the OBJ_TYPE_REF alone. */
6921 if (!v)
6922 return NULL_TREE;
6924 if (!vtable_pointer_value_to_vtable (v, &v, &offset))
6926 if (can_refer)
6927 *can_refer = false;
6928 return NULL_TREE;
6930 return gimple_get_virt_method_for_vtable (token, v, offset, can_refer);
6933 /* Given a pointer value T, return a simplified version of an
6934 indirection through T, or NULL_TREE if no simplification is
6935 possible. Note that the resulting type may be different from
6936 the type pointed to in the sense that it is still compatible
6937 from the langhooks point of view. */
6939 tree
6940 gimple_fold_indirect_ref (tree t)
6942 tree ptype = TREE_TYPE (t), type = TREE_TYPE (ptype);
6943 tree sub = t;
6944 tree subtype;
6946 STRIP_NOPS (sub);
6947 subtype = TREE_TYPE (sub);
6948 if (!POINTER_TYPE_P (subtype)
6949 || TYPE_REF_CAN_ALIAS_ALL (ptype))
6950 return NULL_TREE;
6952 if (TREE_CODE (sub) == ADDR_EXPR)
6954 tree op = TREE_OPERAND (sub, 0);
6955 tree optype = TREE_TYPE (op);
6956 /* *&p => p */
6957 if (useless_type_conversion_p (type, optype))
6958 return op;
6960 /* *(foo *)&fooarray => fooarray[0] */
6961 if (TREE_CODE (optype) == ARRAY_TYPE
6962 && TREE_CODE (TYPE_SIZE (TREE_TYPE (optype))) == INTEGER_CST
6963 && useless_type_conversion_p (type, TREE_TYPE (optype)))
6965 tree type_domain = TYPE_DOMAIN (optype);
6966 tree min_val = size_zero_node;
6967 if (type_domain && TYPE_MIN_VALUE (type_domain))
6968 min_val = TYPE_MIN_VALUE (type_domain);
6969 if (TREE_CODE (min_val) == INTEGER_CST)
6970 return build4 (ARRAY_REF, type, op, min_val, NULL_TREE, NULL_TREE);
6972 /* *(foo *)&complexfoo => __real__ complexfoo */
6973 else if (TREE_CODE (optype) == COMPLEX_TYPE
6974 && useless_type_conversion_p (type, TREE_TYPE (optype)))
6975 return fold_build1 (REALPART_EXPR, type, op);
6976 /* *(foo *)&vectorfoo => BIT_FIELD_REF<vectorfoo,...> */
6977 else if (TREE_CODE (optype) == VECTOR_TYPE
6978 && useless_type_conversion_p (type, TREE_TYPE (optype)))
6980 tree part_width = TYPE_SIZE (type);
6981 tree index = bitsize_int (0);
6982 return fold_build3 (BIT_FIELD_REF, type, op, part_width, index);
6986 /* *(p + CST) -> ... */
6987 if (TREE_CODE (sub) == POINTER_PLUS_EXPR
6988 && TREE_CODE (TREE_OPERAND (sub, 1)) == INTEGER_CST)
6990 tree addr = TREE_OPERAND (sub, 0);
6991 tree off = TREE_OPERAND (sub, 1);
6992 tree addrtype;
6994 STRIP_NOPS (addr);
6995 addrtype = TREE_TYPE (addr);
6997 /* ((foo*)&vectorfoo)[1] -> BIT_FIELD_REF<vectorfoo,...> */
6998 if (TREE_CODE (addr) == ADDR_EXPR
6999 && TREE_CODE (TREE_TYPE (addrtype)) == VECTOR_TYPE
7000 && useless_type_conversion_p (type, TREE_TYPE (TREE_TYPE (addrtype)))
7001 && tree_fits_uhwi_p (off))
7003 unsigned HOST_WIDE_INT offset = tree_to_uhwi (off);
7004 tree part_width = TYPE_SIZE (type);
7005 unsigned HOST_WIDE_INT part_widthi
7006 = tree_to_shwi (part_width) / BITS_PER_UNIT;
7007 unsigned HOST_WIDE_INT indexi = offset * BITS_PER_UNIT;
7008 tree index = bitsize_int (indexi);
7009 if (known_lt (offset / part_widthi,
7010 TYPE_VECTOR_SUBPARTS (TREE_TYPE (addrtype))))
7011 return fold_build3 (BIT_FIELD_REF, type, TREE_OPERAND (addr, 0),
7012 part_width, index);
7015 /* ((foo*)&complexfoo)[1] -> __imag__ complexfoo */
7016 if (TREE_CODE (addr) == ADDR_EXPR
7017 && TREE_CODE (TREE_TYPE (addrtype)) == COMPLEX_TYPE
7018 && useless_type_conversion_p (type, TREE_TYPE (TREE_TYPE (addrtype))))
7020 tree size = TYPE_SIZE_UNIT (type);
7021 if (tree_int_cst_equal (size, off))
7022 return fold_build1 (IMAGPART_EXPR, type, TREE_OPERAND (addr, 0));
7025 /* *(p + CST) -> MEM_REF <p, CST>. */
7026 if (TREE_CODE (addr) != ADDR_EXPR
7027 || DECL_P (TREE_OPERAND (addr, 0)))
7028 return fold_build2 (MEM_REF, type,
7029 addr,
7030 wide_int_to_tree (ptype, wi::to_wide (off)));
7033 /* *(foo *)fooarrptr => (*fooarrptr)[0] */
7034 if (TREE_CODE (TREE_TYPE (subtype)) == ARRAY_TYPE
7035 && TREE_CODE (TYPE_SIZE (TREE_TYPE (TREE_TYPE (subtype)))) == INTEGER_CST
7036 && useless_type_conversion_p (type, TREE_TYPE (TREE_TYPE (subtype))))
7038 tree type_domain;
7039 tree min_val = size_zero_node;
7040 tree osub = sub;
7041 sub = gimple_fold_indirect_ref (sub);
7042 if (! sub)
7043 sub = build1 (INDIRECT_REF, TREE_TYPE (subtype), osub);
7044 type_domain = TYPE_DOMAIN (TREE_TYPE (sub));
7045 if (type_domain && TYPE_MIN_VALUE (type_domain))
7046 min_val = TYPE_MIN_VALUE (type_domain);
7047 if (TREE_CODE (min_val) == INTEGER_CST)
7048 return build4 (ARRAY_REF, type, sub, min_val, NULL_TREE, NULL_TREE);
7051 return NULL_TREE;
7054 /* Return true if CODE is an operation that when operating on signed
7055 integer types involves undefined behavior on overflow and the
7056 operation can be expressed with unsigned arithmetic. */
7058 bool
7059 arith_code_with_undefined_signed_overflow (tree_code code)
7061 switch (code)
7063 case PLUS_EXPR:
7064 case MINUS_EXPR:
7065 case MULT_EXPR:
7066 case NEGATE_EXPR:
7067 case POINTER_PLUS_EXPR:
7068 return true;
7069 default:
7070 return false;
7074 /* Rewrite STMT, an assignment with a signed integer or pointer arithmetic
7075 operation that can be transformed to unsigned arithmetic by converting
7076 its operand, carrying out the operation in the corresponding unsigned
7077 type and converting the result back to the original type.
7079 Returns a sequence of statements that replace STMT and also contain
7080 a modified form of STMT itself. */
7082 gimple_seq
7083 rewrite_to_defined_overflow (gimple *stmt)
7085 if (dump_file && (dump_flags & TDF_DETAILS))
7087 fprintf (dump_file, "rewriting stmt with undefined signed "
7088 "overflow ");
7089 print_gimple_stmt (dump_file, stmt, 0, TDF_SLIM);
7092 tree lhs = gimple_assign_lhs (stmt);
7093 tree type = unsigned_type_for (TREE_TYPE (lhs));
7094 gimple_seq stmts = NULL;
7095 for (unsigned i = 1; i < gimple_num_ops (stmt); ++i)
7097 tree op = gimple_op (stmt, i);
7098 op = gimple_convert (&stmts, type, op);
7099 gimple_set_op (stmt, i, op);
7101 gimple_assign_set_lhs (stmt, make_ssa_name (type, stmt));
7102 if (gimple_assign_rhs_code (stmt) == POINTER_PLUS_EXPR)
7103 gimple_assign_set_rhs_code (stmt, PLUS_EXPR);
7104 gimple_seq_add_stmt (&stmts, stmt);
7105 gimple *cvt = gimple_build_assign (lhs, NOP_EXPR, gimple_assign_lhs (stmt));
7106 gimple_seq_add_stmt (&stmts, cvt);
7108 return stmts;
7112 /* The valueization hook we use for the gimple_build API simplification.
7113 This makes us match fold_buildN behavior by only combining with
7114 statements in the sequence(s) we are currently building. */
7116 static tree
7117 gimple_build_valueize (tree op)
7119 if (gimple_bb (SSA_NAME_DEF_STMT (op)) == NULL)
7120 return op;
7121 return NULL_TREE;
7124 /* Build the expression CODE OP0 of type TYPE with location LOC,
7125 simplifying it first if possible. Returns the built
7126 expression value and appends statements possibly defining it
7127 to SEQ. */
7129 tree
7130 gimple_build (gimple_seq *seq, location_t loc,
7131 enum tree_code code, tree type, tree op0)
7133 tree res = gimple_simplify (code, type, op0, seq, gimple_build_valueize);
7134 if (!res)
7136 res = create_tmp_reg_or_ssa_name (type);
7137 gimple *stmt;
7138 if (code == REALPART_EXPR
7139 || code == IMAGPART_EXPR
7140 || code == VIEW_CONVERT_EXPR)
7141 stmt = gimple_build_assign (res, code, build1 (code, type, op0));
7142 else
7143 stmt = gimple_build_assign (res, code, op0);
7144 gimple_set_location (stmt, loc);
7145 gimple_seq_add_stmt_without_update (seq, stmt);
7147 return res;
7150 /* Build the expression OP0 CODE OP1 of type TYPE with location LOC,
7151 simplifying it first if possible. Returns the built
7152 expression value and appends statements possibly defining it
7153 to SEQ. */
7155 tree
7156 gimple_build (gimple_seq *seq, location_t loc,
7157 enum tree_code code, tree type, tree op0, tree op1)
7159 tree res = gimple_simplify (code, type, op0, op1, seq, gimple_build_valueize);
7160 if (!res)
7162 res = create_tmp_reg_or_ssa_name (type);
7163 gimple *stmt = gimple_build_assign (res, code, op0, op1);
7164 gimple_set_location (stmt, loc);
7165 gimple_seq_add_stmt_without_update (seq, stmt);
7167 return res;
7170 /* Build the expression (CODE OP0 OP1 OP2) of type TYPE with location LOC,
7171 simplifying it first if possible. Returns the built
7172 expression value and appends statements possibly defining it
7173 to SEQ. */
7175 tree
7176 gimple_build (gimple_seq *seq, location_t loc,
7177 enum tree_code code, tree type, tree op0, tree op1, tree op2)
7179 tree res = gimple_simplify (code, type, op0, op1, op2,
7180 seq, gimple_build_valueize);
7181 if (!res)
7183 res = create_tmp_reg_or_ssa_name (type);
7184 gimple *stmt;
7185 if (code == BIT_FIELD_REF)
7186 stmt = gimple_build_assign (res, code,
7187 build3 (code, type, op0, op1, op2));
7188 else
7189 stmt = gimple_build_assign (res, code, op0, op1, op2);
7190 gimple_set_location (stmt, loc);
7191 gimple_seq_add_stmt_without_update (seq, stmt);
7193 return res;
7196 /* Build the call FN (ARG0) with a result of type TYPE
7197 (or no result if TYPE is void) with location LOC,
7198 simplifying it first if possible. Returns the built
7199 expression value (or NULL_TREE if TYPE is void) and appends
7200 statements possibly defining it to SEQ. */
7202 tree
7203 gimple_build (gimple_seq *seq, location_t loc, combined_fn fn,
7204 tree type, tree arg0)
7206 tree res = gimple_simplify (fn, type, arg0, seq, gimple_build_valueize);
7207 if (!res)
7209 gcall *stmt;
7210 if (internal_fn_p (fn))
7211 stmt = gimple_build_call_internal (as_internal_fn (fn), 1, arg0);
7212 else
7214 tree decl = builtin_decl_implicit (as_builtin_fn (fn));
7215 stmt = gimple_build_call (decl, 1, arg0);
7217 if (!VOID_TYPE_P (type))
7219 res = create_tmp_reg_or_ssa_name (type);
7220 gimple_call_set_lhs (stmt, res);
7222 gimple_set_location (stmt, loc);
7223 gimple_seq_add_stmt_without_update (seq, stmt);
7225 return res;
7228 /* Build the call FN (ARG0, ARG1) with a result of type TYPE
7229 (or no result if TYPE is void) with location LOC,
7230 simplifying it first if possible. Returns the built
7231 expression value (or NULL_TREE if TYPE is void) and appends
7232 statements possibly defining it to SEQ. */
7234 tree
7235 gimple_build (gimple_seq *seq, location_t loc, combined_fn fn,
7236 tree type, tree arg0, tree arg1)
7238 tree res = gimple_simplify (fn, type, arg0, arg1, seq, gimple_build_valueize);
7239 if (!res)
7241 gcall *stmt;
7242 if (internal_fn_p (fn))
7243 stmt = gimple_build_call_internal (as_internal_fn (fn), 2, arg0, arg1);
7244 else
7246 tree decl = builtin_decl_implicit (as_builtin_fn (fn));
7247 stmt = gimple_build_call (decl, 2, arg0, arg1);
7249 if (!VOID_TYPE_P (type))
7251 res = create_tmp_reg_or_ssa_name (type);
7252 gimple_call_set_lhs (stmt, res);
7254 gimple_set_location (stmt, loc);
7255 gimple_seq_add_stmt_without_update (seq, stmt);
7257 return res;
7260 /* Build the call FN (ARG0, ARG1, ARG2) with a result of type TYPE
7261 (or no result if TYPE is void) with location LOC,
7262 simplifying it first if possible. Returns the built
7263 expression value (or NULL_TREE if TYPE is void) and appends
7264 statements possibly defining it to SEQ. */
7266 tree
7267 gimple_build (gimple_seq *seq, location_t loc, combined_fn fn,
7268 tree type, tree arg0, tree arg1, tree arg2)
7270 tree res = gimple_simplify (fn, type, arg0, arg1, arg2,
7271 seq, gimple_build_valueize);
7272 if (!res)
7274 gcall *stmt;
7275 if (internal_fn_p (fn))
7276 stmt = gimple_build_call_internal (as_internal_fn (fn),
7277 3, arg0, arg1, arg2);
7278 else
7280 tree decl = builtin_decl_implicit (as_builtin_fn (fn));
7281 stmt = gimple_build_call (decl, 3, arg0, arg1, arg2);
7283 if (!VOID_TYPE_P (type))
7285 res = create_tmp_reg_or_ssa_name (type);
7286 gimple_call_set_lhs (stmt, res);
7288 gimple_set_location (stmt, loc);
7289 gimple_seq_add_stmt_without_update (seq, stmt);
7291 return res;
7294 /* Build the conversion (TYPE) OP with a result of type TYPE
7295 with location LOC if such conversion is neccesary in GIMPLE,
7296 simplifying it first.
7297 Returns the built expression value and appends
7298 statements possibly defining it to SEQ. */
7300 tree
7301 gimple_convert (gimple_seq *seq, location_t loc, tree type, tree op)
7303 if (useless_type_conversion_p (type, TREE_TYPE (op)))
7304 return op;
7305 return gimple_build (seq, loc, NOP_EXPR, type, op);
7308 /* Build the conversion (ptrofftype) OP with a result of a type
7309 compatible with ptrofftype with location LOC if such conversion
7310 is neccesary in GIMPLE, simplifying it first.
7311 Returns the built expression value and appends
7312 statements possibly defining it to SEQ. */
7314 tree
7315 gimple_convert_to_ptrofftype (gimple_seq *seq, location_t loc, tree op)
7317 if (ptrofftype_p (TREE_TYPE (op)))
7318 return op;
7319 return gimple_convert (seq, loc, sizetype, op);
7322 /* Build a vector of type TYPE in which each element has the value OP.
7323 Return a gimple value for the result, appending any new statements
7324 to SEQ. */
7326 tree
7327 gimple_build_vector_from_val (gimple_seq *seq, location_t loc, tree type,
7328 tree op)
7330 if (!TYPE_VECTOR_SUBPARTS (type).is_constant ()
7331 && !CONSTANT_CLASS_P (op))
7332 return gimple_build (seq, loc, VEC_DUPLICATE_EXPR, type, op);
7334 tree res, vec = build_vector_from_val (type, op);
7335 if (is_gimple_val (vec))
7336 return vec;
7337 if (gimple_in_ssa_p (cfun))
7338 res = make_ssa_name (type);
7339 else
7340 res = create_tmp_reg (type);
7341 gimple *stmt = gimple_build_assign (res, vec);
7342 gimple_set_location (stmt, loc);
7343 gimple_seq_add_stmt_without_update (seq, stmt);
7344 return res;
7347 /* Build a vector from BUILDER, handling the case in which some elements
7348 are non-constant. Return a gimple value for the result, appending any
7349 new instructions to SEQ.
7351 BUILDER must not have a stepped encoding on entry. This is because
7352 the function is not geared up to handle the arithmetic that would
7353 be needed in the variable case, and any code building a vector that
7354 is known to be constant should use BUILDER->build () directly. */
7356 tree
7357 gimple_build_vector (gimple_seq *seq, location_t loc,
7358 tree_vector_builder *builder)
7360 gcc_assert (builder->nelts_per_pattern () <= 2);
7361 unsigned int encoded_nelts = builder->encoded_nelts ();
7362 for (unsigned int i = 0; i < encoded_nelts; ++i)
7363 if (!TREE_CONSTANT ((*builder)[i]))
7365 tree type = builder->type ();
7366 unsigned int nelts = TYPE_VECTOR_SUBPARTS (type).to_constant ();
7367 vec<constructor_elt, va_gc> *v;
7368 vec_alloc (v, nelts);
7369 for (i = 0; i < nelts; ++i)
7370 CONSTRUCTOR_APPEND_ELT (v, NULL_TREE, builder->elt (i));
7372 tree res;
7373 if (gimple_in_ssa_p (cfun))
7374 res = make_ssa_name (type);
7375 else
7376 res = create_tmp_reg (type);
7377 gimple *stmt = gimple_build_assign (res, build_constructor (type, v));
7378 gimple_set_location (stmt, loc);
7379 gimple_seq_add_stmt_without_update (seq, stmt);
7380 return res;
7382 return builder->build ();
7385 /* Return true if the result of assignment STMT is known to be non-negative.
7386 If the return value is based on the assumption that signed overflow is
7387 undefined, set *STRICT_OVERFLOW_P to true; otherwise, don't change
7388 *STRICT_OVERFLOW_P. DEPTH is the current nesting depth of the query. */
7390 static bool
7391 gimple_assign_nonnegative_warnv_p (gimple *stmt, bool *strict_overflow_p,
7392 int depth)
7394 enum tree_code code = gimple_assign_rhs_code (stmt);
7395 switch (get_gimple_rhs_class (code))
7397 case GIMPLE_UNARY_RHS:
7398 return tree_unary_nonnegative_warnv_p (gimple_assign_rhs_code (stmt),
7399 gimple_expr_type (stmt),
7400 gimple_assign_rhs1 (stmt),
7401 strict_overflow_p, depth);
7402 case GIMPLE_BINARY_RHS:
7403 return tree_binary_nonnegative_warnv_p (gimple_assign_rhs_code (stmt),
7404 gimple_expr_type (stmt),
7405 gimple_assign_rhs1 (stmt),
7406 gimple_assign_rhs2 (stmt),
7407 strict_overflow_p, depth);
7408 case GIMPLE_TERNARY_RHS:
7409 return false;
7410 case GIMPLE_SINGLE_RHS:
7411 return tree_single_nonnegative_warnv_p (gimple_assign_rhs1 (stmt),
7412 strict_overflow_p, depth);
7413 case GIMPLE_INVALID_RHS:
7414 break;
7416 gcc_unreachable ();
7419 /* Return true if return value of call STMT is known to be non-negative.
7420 If the return value is based on the assumption that signed overflow is
7421 undefined, set *STRICT_OVERFLOW_P to true; otherwise, don't change
7422 *STRICT_OVERFLOW_P. DEPTH is the current nesting depth of the query. */
7424 static bool
7425 gimple_call_nonnegative_warnv_p (gimple *stmt, bool *strict_overflow_p,
7426 int depth)
7428 tree arg0 = gimple_call_num_args (stmt) > 0 ?
7429 gimple_call_arg (stmt, 0) : NULL_TREE;
7430 tree arg1 = gimple_call_num_args (stmt) > 1 ?
7431 gimple_call_arg (stmt, 1) : NULL_TREE;
7433 return tree_call_nonnegative_warnv_p (gimple_expr_type (stmt),
7434 gimple_call_combined_fn (stmt),
7435 arg0,
7436 arg1,
7437 strict_overflow_p, depth);
7440 /* Return true if return value of call STMT is known to be non-negative.
7441 If the return value is based on the assumption that signed overflow is
7442 undefined, set *STRICT_OVERFLOW_P to true; otherwise, don't change
7443 *STRICT_OVERFLOW_P. DEPTH is the current nesting depth of the query. */
7445 static bool
7446 gimple_phi_nonnegative_warnv_p (gimple *stmt, bool *strict_overflow_p,
7447 int depth)
7449 for (unsigned i = 0; i < gimple_phi_num_args (stmt); ++i)
7451 tree arg = gimple_phi_arg_def (stmt, i);
7452 if (!tree_single_nonnegative_warnv_p (arg, strict_overflow_p, depth + 1))
7453 return false;
7455 return true;
7458 /* Return true if STMT is known to compute a non-negative value.
7459 If the return value is based on the assumption that signed overflow is
7460 undefined, set *STRICT_OVERFLOW_P to true; otherwise, don't change
7461 *STRICT_OVERFLOW_P. DEPTH is the current nesting depth of the query. */
7463 bool
7464 gimple_stmt_nonnegative_warnv_p (gimple *stmt, bool *strict_overflow_p,
7465 int depth)
7467 switch (gimple_code (stmt))
7469 case GIMPLE_ASSIGN:
7470 return gimple_assign_nonnegative_warnv_p (stmt, strict_overflow_p,
7471 depth);
7472 case GIMPLE_CALL:
7473 return gimple_call_nonnegative_warnv_p (stmt, strict_overflow_p,
7474 depth);
7475 case GIMPLE_PHI:
7476 return gimple_phi_nonnegative_warnv_p (stmt, strict_overflow_p,
7477 depth);
7478 default:
7479 return false;
7483 /* Return true if the floating-point value computed by assignment STMT
7484 is known to have an integer value. We also allow +Inf, -Inf and NaN
7485 to be considered integer values. Return false for signaling NaN.
7487 DEPTH is the current nesting depth of the query. */
7489 static bool
7490 gimple_assign_integer_valued_real_p (gimple *stmt, int depth)
7492 enum tree_code code = gimple_assign_rhs_code (stmt);
7493 switch (get_gimple_rhs_class (code))
7495 case GIMPLE_UNARY_RHS:
7496 return integer_valued_real_unary_p (gimple_assign_rhs_code (stmt),
7497 gimple_assign_rhs1 (stmt), depth);
7498 case GIMPLE_BINARY_RHS:
7499 return integer_valued_real_binary_p (gimple_assign_rhs_code (stmt),
7500 gimple_assign_rhs1 (stmt),
7501 gimple_assign_rhs2 (stmt), depth);
7502 case GIMPLE_TERNARY_RHS:
7503 return false;
7504 case GIMPLE_SINGLE_RHS:
7505 return integer_valued_real_single_p (gimple_assign_rhs1 (stmt), depth);
7506 case GIMPLE_INVALID_RHS:
7507 break;
7509 gcc_unreachable ();
7512 /* Return true if the floating-point value computed by call STMT is known
7513 to have an integer value. We also allow +Inf, -Inf and NaN to be
7514 considered integer values. Return false for signaling NaN.
7516 DEPTH is the current nesting depth of the query. */
7518 static bool
7519 gimple_call_integer_valued_real_p (gimple *stmt, int depth)
7521 tree arg0 = (gimple_call_num_args (stmt) > 0
7522 ? gimple_call_arg (stmt, 0)
7523 : NULL_TREE);
7524 tree arg1 = (gimple_call_num_args (stmt) > 1
7525 ? gimple_call_arg (stmt, 1)
7526 : NULL_TREE);
7527 return integer_valued_real_call_p (gimple_call_combined_fn (stmt),
7528 arg0, arg1, depth);
7531 /* Return true if the floating-point result of phi STMT is known to have
7532 an integer value. We also allow +Inf, -Inf and NaN to be considered
7533 integer values. Return false for signaling NaN.
7535 DEPTH is the current nesting depth of the query. */
7537 static bool
7538 gimple_phi_integer_valued_real_p (gimple *stmt, int depth)
7540 for (unsigned i = 0; i < gimple_phi_num_args (stmt); ++i)
7542 tree arg = gimple_phi_arg_def (stmt, i);
7543 if (!integer_valued_real_single_p (arg, depth + 1))
7544 return false;
7546 return true;
7549 /* Return true if the floating-point value computed by STMT is known
7550 to have an integer value. We also allow +Inf, -Inf and NaN to be
7551 considered integer values. Return false for signaling NaN.
7553 DEPTH is the current nesting depth of the query. */
7555 bool
7556 gimple_stmt_integer_valued_real_p (gimple *stmt, int depth)
7558 switch (gimple_code (stmt))
7560 case GIMPLE_ASSIGN:
7561 return gimple_assign_integer_valued_real_p (stmt, depth);
7562 case GIMPLE_CALL:
7563 return gimple_call_integer_valued_real_p (stmt, depth);
7564 case GIMPLE_PHI:
7565 return gimple_phi_integer_valued_real_p (stmt, depth);
7566 default:
7567 return false;