* tree.c (build_clobber): New.
[official-gcc.git] / gcc / gimplify.c
blobb5b80ab7d98b65bcd955e835f4e908dd6d31e397
1 /* Tree lowering pass. This pass converts the GENERIC functions-as-trees
2 tree representation into the GIMPLE form.
3 Copyright (C) 2002-2018 Free Software Foundation, Inc.
4 Major work done by Sebastian Pop <s.pop@laposte.net>,
5 Diego Novillo <dnovillo@redhat.com> and Jason Merrill <jason@redhat.com>.
7 This file is part of GCC.
9 GCC is free software; you can redistribute it and/or modify it under
10 the terms of the GNU General Public License as published by the Free
11 Software Foundation; either version 3, or (at your option) any later
12 version.
14 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
15 WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 for more details.
19 You should have received a copy of the GNU General Public License
20 along with GCC; see the file COPYING3. If not see
21 <http://www.gnu.org/licenses/>. */
23 #include "config.h"
24 #include "system.h"
25 #include "coretypes.h"
26 #include "backend.h"
27 #include "target.h"
28 #include "rtl.h"
29 #include "tree.h"
30 #include "memmodel.h"
31 #include "tm_p.h"
32 #include "gimple.h"
33 #include "gimple-predict.h"
34 #include "tree-pass.h" /* FIXME: only for PROP_gimple_any */
35 #include "ssa.h"
36 #include "cgraph.h"
37 #include "tree-pretty-print.h"
38 #include "diagnostic-core.h"
39 #include "alias.h"
40 #include "fold-const.h"
41 #include "calls.h"
42 #include "varasm.h"
43 #include "stmt.h"
44 #include "expr.h"
45 #include "gimple-fold.h"
46 #include "tree-eh.h"
47 #include "gimplify.h"
48 #include "gimple-iterator.h"
49 #include "stor-layout.h"
50 #include "print-tree.h"
51 #include "tree-iterator.h"
52 #include "tree-inline.h"
53 #include "langhooks.h"
54 #include "tree-cfg.h"
55 #include "tree-ssa.h"
56 #include "omp-general.h"
57 #include "omp-low.h"
58 #include "gimple-low.h"
59 #include "gomp-constants.h"
60 #include "splay-tree.h"
61 #include "gimple-walk.h"
62 #include "langhooks-def.h" /* FIXME: for lhd_set_decl_assembler_name */
63 #include "builtins.h"
64 #include "stringpool.h"
65 #include "attribs.h"
66 #include "asan.h"
67 #include "dbgcnt.h"
69 /* Hash set of poisoned variables in a bind expr. */
70 static hash_set<tree> *asan_poisoned_variables = NULL;
72 enum gimplify_omp_var_data
74 GOVD_SEEN = 1,
75 GOVD_EXPLICIT = 2,
76 GOVD_SHARED = 4,
77 GOVD_PRIVATE = 8,
78 GOVD_FIRSTPRIVATE = 16,
79 GOVD_LASTPRIVATE = 32,
80 GOVD_REDUCTION = 64,
81 GOVD_LOCAL = 128,
82 GOVD_MAP = 256,
83 GOVD_DEBUG_PRIVATE = 512,
84 GOVD_PRIVATE_OUTER_REF = 1024,
85 GOVD_LINEAR = 2048,
86 GOVD_ALIGNED = 4096,
88 /* Flag for GOVD_MAP: don't copy back. */
89 GOVD_MAP_TO_ONLY = 8192,
91 /* Flag for GOVD_LINEAR or GOVD_LASTPRIVATE: no outer reference. */
92 GOVD_LINEAR_LASTPRIVATE_NO_OUTER = 16384,
94 GOVD_MAP_0LEN_ARRAY = 32768,
96 /* Flag for GOVD_MAP, if it is always, to or always, tofrom mapping. */
97 GOVD_MAP_ALWAYS_TO = 65536,
99 /* Flag for shared vars that are or might be stored to in the region. */
100 GOVD_WRITTEN = 131072,
102 /* Flag for GOVD_MAP, if it is a forced mapping. */
103 GOVD_MAP_FORCE = 262144,
105 /* Flag for GOVD_MAP: must be present already. */
106 GOVD_MAP_FORCE_PRESENT = 524288,
108 GOVD_DATA_SHARE_CLASS = (GOVD_SHARED | GOVD_PRIVATE | GOVD_FIRSTPRIVATE
109 | GOVD_LASTPRIVATE | GOVD_REDUCTION | GOVD_LINEAR
110 | GOVD_LOCAL)
114 enum omp_region_type
116 ORT_WORKSHARE = 0x00,
117 ORT_SIMD = 0x01,
119 ORT_PARALLEL = 0x02,
120 ORT_COMBINED_PARALLEL = 0x03,
122 ORT_TASK = 0x04,
123 ORT_UNTIED_TASK = 0x05,
125 ORT_TEAMS = 0x08,
126 ORT_COMBINED_TEAMS = 0x09,
128 /* Data region. */
129 ORT_TARGET_DATA = 0x10,
131 /* Data region with offloading. */
132 ORT_TARGET = 0x20,
133 ORT_COMBINED_TARGET = 0x21,
135 /* OpenACC variants. */
136 ORT_ACC = 0x40, /* A generic OpenACC region. */
137 ORT_ACC_DATA = ORT_ACC | ORT_TARGET_DATA, /* Data construct. */
138 ORT_ACC_PARALLEL = ORT_ACC | ORT_TARGET, /* Parallel construct */
139 ORT_ACC_KERNELS = ORT_ACC | ORT_TARGET | 0x80, /* Kernels construct. */
140 ORT_ACC_HOST_DATA = ORT_ACC | ORT_TARGET_DATA | 0x80, /* Host data. */
142 /* Dummy OpenMP region, used to disable expansion of
143 DECL_VALUE_EXPRs in taskloop pre body. */
144 ORT_NONE = 0x100
147 /* Gimplify hashtable helper. */
149 struct gimplify_hasher : free_ptr_hash <elt_t>
151 static inline hashval_t hash (const elt_t *);
152 static inline bool equal (const elt_t *, const elt_t *);
155 struct gimplify_ctx
157 struct gimplify_ctx *prev_context;
159 vec<gbind *> bind_expr_stack;
160 tree temps;
161 gimple_seq conditional_cleanups;
162 tree exit_label;
163 tree return_temp;
165 vec<tree> case_labels;
166 hash_set<tree> *live_switch_vars;
167 /* The formal temporary table. Should this be persistent? */
168 hash_table<gimplify_hasher> *temp_htab;
170 int conditions;
171 unsigned into_ssa : 1;
172 unsigned allow_rhs_cond_expr : 1;
173 unsigned in_cleanup_point_expr : 1;
174 unsigned keep_stack : 1;
175 unsigned save_stack : 1;
176 unsigned in_switch_expr : 1;
179 struct gimplify_omp_ctx
181 struct gimplify_omp_ctx *outer_context;
182 splay_tree variables;
183 hash_set<tree> *privatized_types;
184 /* Iteration variables in an OMP_FOR. */
185 vec<tree> loop_iter_var;
186 location_t location;
187 enum omp_clause_default_kind default_kind;
188 enum omp_region_type region_type;
189 bool combined_loop;
190 bool distribute;
191 bool target_map_scalars_firstprivate;
192 bool target_map_pointers_as_0len_arrays;
193 bool target_firstprivatize_array_bases;
196 static struct gimplify_ctx *gimplify_ctxp;
197 static struct gimplify_omp_ctx *gimplify_omp_ctxp;
199 /* Forward declaration. */
200 static enum gimplify_status gimplify_compound_expr (tree *, gimple_seq *, bool);
201 static hash_map<tree, tree> *oacc_declare_returns;
202 static enum gimplify_status gimplify_expr (tree *, gimple_seq *, gimple_seq *,
203 bool (*) (tree), fallback_t, bool);
205 /* Shorter alias name for the above function for use in gimplify.c
206 only. */
208 static inline void
209 gimplify_seq_add_stmt (gimple_seq *seq_p, gimple *gs)
211 gimple_seq_add_stmt_without_update (seq_p, gs);
214 /* Append sequence SRC to the end of sequence *DST_P. If *DST_P is
215 NULL, a new sequence is allocated. This function is
216 similar to gimple_seq_add_seq, but does not scan the operands.
217 During gimplification, we need to manipulate statement sequences
218 before the def/use vectors have been constructed. */
220 static void
221 gimplify_seq_add_seq (gimple_seq *dst_p, gimple_seq src)
223 gimple_stmt_iterator si;
225 if (src == NULL)
226 return;
228 si = gsi_last (*dst_p);
229 gsi_insert_seq_after_without_update (&si, src, GSI_NEW_STMT);
233 /* Pointer to a list of allocated gimplify_ctx structs to be used for pushing
234 and popping gimplify contexts. */
236 static struct gimplify_ctx *ctx_pool = NULL;
238 /* Return a gimplify context struct from the pool. */
240 static inline struct gimplify_ctx *
241 ctx_alloc (void)
243 struct gimplify_ctx * c = ctx_pool;
245 if (c)
246 ctx_pool = c->prev_context;
247 else
248 c = XNEW (struct gimplify_ctx);
250 memset (c, '\0', sizeof (*c));
251 return c;
254 /* Put gimplify context C back into the pool. */
256 static inline void
257 ctx_free (struct gimplify_ctx *c)
259 c->prev_context = ctx_pool;
260 ctx_pool = c;
263 /* Free allocated ctx stack memory. */
265 void
266 free_gimplify_stack (void)
268 struct gimplify_ctx *c;
270 while ((c = ctx_pool))
272 ctx_pool = c->prev_context;
273 free (c);
278 /* Set up a context for the gimplifier. */
280 void
281 push_gimplify_context (bool in_ssa, bool rhs_cond_ok)
283 struct gimplify_ctx *c = ctx_alloc ();
285 c->prev_context = gimplify_ctxp;
286 gimplify_ctxp = c;
287 gimplify_ctxp->into_ssa = in_ssa;
288 gimplify_ctxp->allow_rhs_cond_expr = rhs_cond_ok;
291 /* Tear down a context for the gimplifier. If BODY is non-null, then
292 put the temporaries into the outer BIND_EXPR. Otherwise, put them
293 in the local_decls.
295 BODY is not a sequence, but the first tuple in a sequence. */
297 void
298 pop_gimplify_context (gimple *body)
300 struct gimplify_ctx *c = gimplify_ctxp;
302 gcc_assert (c
303 && (!c->bind_expr_stack.exists ()
304 || c->bind_expr_stack.is_empty ()));
305 c->bind_expr_stack.release ();
306 gimplify_ctxp = c->prev_context;
308 if (body)
309 declare_vars (c->temps, body, false);
310 else
311 record_vars (c->temps);
313 delete c->temp_htab;
314 c->temp_htab = NULL;
315 ctx_free (c);
318 /* Push a GIMPLE_BIND tuple onto the stack of bindings. */
320 static void
321 gimple_push_bind_expr (gbind *bind_stmt)
323 gimplify_ctxp->bind_expr_stack.reserve (8);
324 gimplify_ctxp->bind_expr_stack.safe_push (bind_stmt);
327 /* Pop the first element off the stack of bindings. */
329 static void
330 gimple_pop_bind_expr (void)
332 gimplify_ctxp->bind_expr_stack.pop ();
335 /* Return the first element of the stack of bindings. */
337 gbind *
338 gimple_current_bind_expr (void)
340 return gimplify_ctxp->bind_expr_stack.last ();
343 /* Return the stack of bindings created during gimplification. */
345 vec<gbind *>
346 gimple_bind_expr_stack (void)
348 return gimplify_ctxp->bind_expr_stack;
351 /* Return true iff there is a COND_EXPR between us and the innermost
352 CLEANUP_POINT_EXPR. This info is used by gimple_push_cleanup. */
354 static bool
355 gimple_conditional_context (void)
357 return gimplify_ctxp->conditions > 0;
360 /* Note that we've entered a COND_EXPR. */
362 static void
363 gimple_push_condition (void)
365 #ifdef ENABLE_GIMPLE_CHECKING
366 if (gimplify_ctxp->conditions == 0)
367 gcc_assert (gimple_seq_empty_p (gimplify_ctxp->conditional_cleanups));
368 #endif
369 ++(gimplify_ctxp->conditions);
372 /* Note that we've left a COND_EXPR. If we're back at unconditional scope
373 now, add any conditional cleanups we've seen to the prequeue. */
375 static void
376 gimple_pop_condition (gimple_seq *pre_p)
378 int conds = --(gimplify_ctxp->conditions);
380 gcc_assert (conds >= 0);
381 if (conds == 0)
383 gimplify_seq_add_seq (pre_p, gimplify_ctxp->conditional_cleanups);
384 gimplify_ctxp->conditional_cleanups = NULL;
388 /* A stable comparison routine for use with splay trees and DECLs. */
390 static int
391 splay_tree_compare_decl_uid (splay_tree_key xa, splay_tree_key xb)
393 tree a = (tree) xa;
394 tree b = (tree) xb;
396 return DECL_UID (a) - DECL_UID (b);
399 /* Create a new omp construct that deals with variable remapping. */
401 static struct gimplify_omp_ctx *
402 new_omp_context (enum omp_region_type region_type)
404 struct gimplify_omp_ctx *c;
406 c = XCNEW (struct gimplify_omp_ctx);
407 c->outer_context = gimplify_omp_ctxp;
408 c->variables = splay_tree_new (splay_tree_compare_decl_uid, 0, 0);
409 c->privatized_types = new hash_set<tree>;
410 c->location = input_location;
411 c->region_type = region_type;
412 if ((region_type & ORT_TASK) == 0)
413 c->default_kind = OMP_CLAUSE_DEFAULT_SHARED;
414 else
415 c->default_kind = OMP_CLAUSE_DEFAULT_UNSPECIFIED;
417 return c;
420 /* Destroy an omp construct that deals with variable remapping. */
422 static void
423 delete_omp_context (struct gimplify_omp_ctx *c)
425 splay_tree_delete (c->variables);
426 delete c->privatized_types;
427 c->loop_iter_var.release ();
428 XDELETE (c);
431 static void omp_add_variable (struct gimplify_omp_ctx *, tree, unsigned int);
432 static bool omp_notice_variable (struct gimplify_omp_ctx *, tree, bool);
434 /* Both gimplify the statement T and append it to *SEQ_P. This function
435 behaves exactly as gimplify_stmt, but you don't have to pass T as a
436 reference. */
438 void
439 gimplify_and_add (tree t, gimple_seq *seq_p)
441 gimplify_stmt (&t, seq_p);
444 /* Gimplify statement T into sequence *SEQ_P, and return the first
445 tuple in the sequence of generated tuples for this statement.
446 Return NULL if gimplifying T produced no tuples. */
448 static gimple *
449 gimplify_and_return_first (tree t, gimple_seq *seq_p)
451 gimple_stmt_iterator last = gsi_last (*seq_p);
453 gimplify_and_add (t, seq_p);
455 if (!gsi_end_p (last))
457 gsi_next (&last);
458 return gsi_stmt (last);
460 else
461 return gimple_seq_first_stmt (*seq_p);
464 /* Returns true iff T is a valid RHS for an assignment to an un-renamed
465 LHS, or for a call argument. */
467 static bool
468 is_gimple_mem_rhs (tree t)
470 /* If we're dealing with a renamable type, either source or dest must be
471 a renamed variable. */
472 if (is_gimple_reg_type (TREE_TYPE (t)))
473 return is_gimple_val (t);
474 else
475 return is_gimple_val (t) || is_gimple_lvalue (t);
478 /* Return true if T is a CALL_EXPR or an expression that can be
479 assigned to a temporary. Note that this predicate should only be
480 used during gimplification. See the rationale for this in
481 gimplify_modify_expr. */
483 static bool
484 is_gimple_reg_rhs_or_call (tree t)
486 return (get_gimple_rhs_class (TREE_CODE (t)) != GIMPLE_INVALID_RHS
487 || TREE_CODE (t) == CALL_EXPR);
490 /* Return true if T is a valid memory RHS or a CALL_EXPR. Note that
491 this predicate should only be used during gimplification. See the
492 rationale for this in gimplify_modify_expr. */
494 static bool
495 is_gimple_mem_rhs_or_call (tree t)
497 /* If we're dealing with a renamable type, either source or dest must be
498 a renamed variable. */
499 if (is_gimple_reg_type (TREE_TYPE (t)))
500 return is_gimple_val (t);
501 else
502 return (is_gimple_val (t)
503 || is_gimple_lvalue (t)
504 || TREE_CLOBBER_P (t)
505 || TREE_CODE (t) == CALL_EXPR);
508 /* Create a temporary with a name derived from VAL. Subroutine of
509 lookup_tmp_var; nobody else should call this function. */
511 static inline tree
512 create_tmp_from_val (tree val)
514 /* Drop all qualifiers and address-space information from the value type. */
515 tree type = TYPE_MAIN_VARIANT (TREE_TYPE (val));
516 tree var = create_tmp_var (type, get_name (val));
517 if (TREE_CODE (TREE_TYPE (var)) == COMPLEX_TYPE
518 || TREE_CODE (TREE_TYPE (var)) == VECTOR_TYPE)
519 DECL_GIMPLE_REG_P (var) = 1;
520 return var;
523 /* Create a temporary to hold the value of VAL. If IS_FORMAL, try to reuse
524 an existing expression temporary. */
526 static tree
527 lookup_tmp_var (tree val, bool is_formal)
529 tree ret;
531 /* If not optimizing, never really reuse a temporary. local-alloc
532 won't allocate any variable that is used in more than one basic
533 block, which means it will go into memory, causing much extra
534 work in reload and final and poorer code generation, outweighing
535 the extra memory allocation here. */
536 if (!optimize || !is_formal || TREE_SIDE_EFFECTS (val))
537 ret = create_tmp_from_val (val);
538 else
540 elt_t elt, *elt_p;
541 elt_t **slot;
543 elt.val = val;
544 if (!gimplify_ctxp->temp_htab)
545 gimplify_ctxp->temp_htab = new hash_table<gimplify_hasher> (1000);
546 slot = gimplify_ctxp->temp_htab->find_slot (&elt, INSERT);
547 if (*slot == NULL)
549 elt_p = XNEW (elt_t);
550 elt_p->val = val;
551 elt_p->temp = ret = create_tmp_from_val (val);
552 *slot = elt_p;
554 else
556 elt_p = *slot;
557 ret = elt_p->temp;
561 return ret;
564 /* Helper for get_formal_tmp_var and get_initialized_tmp_var. */
566 static tree
567 internal_get_tmp_var (tree val, gimple_seq *pre_p, gimple_seq *post_p,
568 bool is_formal, bool allow_ssa)
570 tree t, mod;
572 /* Notice that we explicitly allow VAL to be a CALL_EXPR so that we
573 can create an INIT_EXPR and convert it into a GIMPLE_CALL below. */
574 gimplify_expr (&val, pre_p, post_p, is_gimple_reg_rhs_or_call,
575 fb_rvalue);
577 if (allow_ssa
578 && gimplify_ctxp->into_ssa
579 && is_gimple_reg_type (TREE_TYPE (val)))
581 t = make_ssa_name (TYPE_MAIN_VARIANT (TREE_TYPE (val)));
582 if (! gimple_in_ssa_p (cfun))
584 const char *name = get_name (val);
585 if (name)
586 SET_SSA_NAME_VAR_OR_IDENTIFIER (t, create_tmp_var_name (name));
589 else
590 t = lookup_tmp_var (val, is_formal);
592 mod = build2 (INIT_EXPR, TREE_TYPE (t), t, unshare_expr (val));
594 SET_EXPR_LOCATION (mod, EXPR_LOC_OR_LOC (val, input_location));
596 /* gimplify_modify_expr might want to reduce this further. */
597 gimplify_and_add (mod, pre_p);
598 ggc_free (mod);
600 return t;
603 /* Return a formal temporary variable initialized with VAL. PRE_P is as
604 in gimplify_expr. Only use this function if:
606 1) The value of the unfactored expression represented by VAL will not
607 change between the initialization and use of the temporary, and
608 2) The temporary will not be otherwise modified.
610 For instance, #1 means that this is inappropriate for SAVE_EXPR temps,
611 and #2 means it is inappropriate for && temps.
613 For other cases, use get_initialized_tmp_var instead. */
615 tree
616 get_formal_tmp_var (tree val, gimple_seq *pre_p)
618 return internal_get_tmp_var (val, pre_p, NULL, true, true);
621 /* Return a temporary variable initialized with VAL. PRE_P and POST_P
622 are as in gimplify_expr. */
624 tree
625 get_initialized_tmp_var (tree val, gimple_seq *pre_p, gimple_seq *post_p,
626 bool allow_ssa)
628 return internal_get_tmp_var (val, pre_p, post_p, false, allow_ssa);
631 /* Declare all the variables in VARS in SCOPE. If DEBUG_INFO is true,
632 generate debug info for them; otherwise don't. */
634 void
635 declare_vars (tree vars, gimple *gs, bool debug_info)
637 tree last = vars;
638 if (last)
640 tree temps, block;
642 gbind *scope = as_a <gbind *> (gs);
644 temps = nreverse (last);
646 block = gimple_bind_block (scope);
647 gcc_assert (!block || TREE_CODE (block) == BLOCK);
648 if (!block || !debug_info)
650 DECL_CHAIN (last) = gimple_bind_vars (scope);
651 gimple_bind_set_vars (scope, temps);
653 else
655 /* We need to attach the nodes both to the BIND_EXPR and to its
656 associated BLOCK for debugging purposes. The key point here
657 is that the BLOCK_VARS of the BIND_EXPR_BLOCK of a BIND_EXPR
658 is a subchain of the BIND_EXPR_VARS of the BIND_EXPR. */
659 if (BLOCK_VARS (block))
660 BLOCK_VARS (block) = chainon (BLOCK_VARS (block), temps);
661 else
663 gimple_bind_set_vars (scope,
664 chainon (gimple_bind_vars (scope), temps));
665 BLOCK_VARS (block) = temps;
671 /* For VAR a VAR_DECL of variable size, try to find a constant upper bound
672 for the size and adjust DECL_SIZE/DECL_SIZE_UNIT accordingly. Abort if
673 no such upper bound can be obtained. */
675 static void
676 force_constant_size (tree var)
678 /* The only attempt we make is by querying the maximum size of objects
679 of the variable's type. */
681 HOST_WIDE_INT max_size;
683 gcc_assert (VAR_P (var));
685 max_size = max_int_size_in_bytes (TREE_TYPE (var));
687 gcc_assert (max_size >= 0);
689 DECL_SIZE_UNIT (var)
690 = build_int_cst (TREE_TYPE (DECL_SIZE_UNIT (var)), max_size);
691 DECL_SIZE (var)
692 = build_int_cst (TREE_TYPE (DECL_SIZE (var)), max_size * BITS_PER_UNIT);
695 /* Push the temporary variable TMP into the current binding. */
697 void
698 gimple_add_tmp_var_fn (struct function *fn, tree tmp)
700 gcc_assert (!DECL_CHAIN (tmp) && !DECL_SEEN_IN_BIND_EXPR_P (tmp));
702 /* Later processing assumes that the object size is constant, which might
703 not be true at this point. Force the use of a constant upper bound in
704 this case. */
705 if (!tree_fits_poly_uint64_p (DECL_SIZE_UNIT (tmp)))
706 force_constant_size (tmp);
708 DECL_CONTEXT (tmp) = fn->decl;
709 DECL_SEEN_IN_BIND_EXPR_P (tmp) = 1;
711 record_vars_into (tmp, fn->decl);
714 /* Push the temporary variable TMP into the current binding. */
716 void
717 gimple_add_tmp_var (tree tmp)
719 gcc_assert (!DECL_CHAIN (tmp) && !DECL_SEEN_IN_BIND_EXPR_P (tmp));
721 /* Later processing assumes that the object size is constant, which might
722 not be true at this point. Force the use of a constant upper bound in
723 this case. */
724 if (!tree_fits_poly_uint64_p (DECL_SIZE_UNIT (tmp)))
725 force_constant_size (tmp);
727 DECL_CONTEXT (tmp) = current_function_decl;
728 DECL_SEEN_IN_BIND_EXPR_P (tmp) = 1;
730 if (gimplify_ctxp)
732 DECL_CHAIN (tmp) = gimplify_ctxp->temps;
733 gimplify_ctxp->temps = tmp;
735 /* Mark temporaries local within the nearest enclosing parallel. */
736 if (gimplify_omp_ctxp)
738 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
739 while (ctx
740 && (ctx->region_type == ORT_WORKSHARE
741 || ctx->region_type == ORT_SIMD
742 || ctx->region_type == ORT_ACC))
743 ctx = ctx->outer_context;
744 if (ctx)
745 omp_add_variable (ctx, tmp, GOVD_LOCAL | GOVD_SEEN);
748 else if (cfun)
749 record_vars (tmp);
750 else
752 gimple_seq body_seq;
754 /* This case is for nested functions. We need to expose the locals
755 they create. */
756 body_seq = gimple_body (current_function_decl);
757 declare_vars (tmp, gimple_seq_first_stmt (body_seq), false);
763 /* This page contains routines to unshare tree nodes, i.e. to duplicate tree
764 nodes that are referenced more than once in GENERIC functions. This is
765 necessary because gimplification (translation into GIMPLE) is performed
766 by modifying tree nodes in-place, so gimplication of a shared node in a
767 first context could generate an invalid GIMPLE form in a second context.
769 This is achieved with a simple mark/copy/unmark algorithm that walks the
770 GENERIC representation top-down, marks nodes with TREE_VISITED the first
771 time it encounters them, duplicates them if they already have TREE_VISITED
772 set, and finally removes the TREE_VISITED marks it has set.
774 The algorithm works only at the function level, i.e. it generates a GENERIC
775 representation of a function with no nodes shared within the function when
776 passed a GENERIC function (except for nodes that are allowed to be shared).
778 At the global level, it is also necessary to unshare tree nodes that are
779 referenced in more than one function, for the same aforementioned reason.
780 This requires some cooperation from the front-end. There are 2 strategies:
782 1. Manual unsharing. The front-end needs to call unshare_expr on every
783 expression that might end up being shared across functions.
785 2. Deep unsharing. This is an extension of regular unsharing. Instead
786 of calling unshare_expr on expressions that might be shared across
787 functions, the front-end pre-marks them with TREE_VISITED. This will
788 ensure that they are unshared on the first reference within functions
789 when the regular unsharing algorithm runs. The counterpart is that
790 this algorithm must look deeper than for manual unsharing, which is
791 specified by LANG_HOOKS_DEEP_UNSHARING.
793 If there are only few specific cases of node sharing across functions, it is
794 probably easier for a front-end to unshare the expressions manually. On the
795 contrary, if the expressions generated at the global level are as widespread
796 as expressions generated within functions, deep unsharing is very likely the
797 way to go. */
799 /* Similar to copy_tree_r but do not copy SAVE_EXPR or TARGET_EXPR nodes.
800 These nodes model computations that must be done once. If we were to
801 unshare something like SAVE_EXPR(i++), the gimplification process would
802 create wrong code. However, if DATA is non-null, it must hold a pointer
803 set that is used to unshare the subtrees of these nodes. */
805 static tree
806 mostly_copy_tree_r (tree *tp, int *walk_subtrees, void *data)
808 tree t = *tp;
809 enum tree_code code = TREE_CODE (t);
811 /* Do not copy SAVE_EXPR, TARGET_EXPR or BIND_EXPR nodes themselves, but
812 copy their subtrees if we can make sure to do it only once. */
813 if (code == SAVE_EXPR || code == TARGET_EXPR || code == BIND_EXPR)
815 if (data && !((hash_set<tree> *)data)->add (t))
817 else
818 *walk_subtrees = 0;
821 /* Stop at types, decls, constants like copy_tree_r. */
822 else if (TREE_CODE_CLASS (code) == tcc_type
823 || TREE_CODE_CLASS (code) == tcc_declaration
824 || TREE_CODE_CLASS (code) == tcc_constant)
825 *walk_subtrees = 0;
827 /* Cope with the statement expression extension. */
828 else if (code == STATEMENT_LIST)
831 /* Leave the bulk of the work to copy_tree_r itself. */
832 else
833 copy_tree_r (tp, walk_subtrees, NULL);
835 return NULL_TREE;
838 /* Callback for walk_tree to unshare most of the shared trees rooted at *TP.
839 If *TP has been visited already, then *TP is deeply copied by calling
840 mostly_copy_tree_r. DATA is passed to mostly_copy_tree_r unmodified. */
842 static tree
843 copy_if_shared_r (tree *tp, int *walk_subtrees, void *data)
845 tree t = *tp;
846 enum tree_code code = TREE_CODE (t);
848 /* Skip types, decls, and constants. But we do want to look at their
849 types and the bounds of types. Mark them as visited so we properly
850 unmark their subtrees on the unmark pass. If we've already seen them,
851 don't look down further. */
852 if (TREE_CODE_CLASS (code) == tcc_type
853 || TREE_CODE_CLASS (code) == tcc_declaration
854 || TREE_CODE_CLASS (code) == tcc_constant)
856 if (TREE_VISITED (t))
857 *walk_subtrees = 0;
858 else
859 TREE_VISITED (t) = 1;
862 /* If this node has been visited already, unshare it and don't look
863 any deeper. */
864 else if (TREE_VISITED (t))
866 walk_tree (tp, mostly_copy_tree_r, data, NULL);
867 *walk_subtrees = 0;
870 /* Otherwise, mark the node as visited and keep looking. */
871 else
872 TREE_VISITED (t) = 1;
874 return NULL_TREE;
877 /* Unshare most of the shared trees rooted at *TP. DATA is passed to the
878 copy_if_shared_r callback unmodified. */
880 static inline void
881 copy_if_shared (tree *tp, void *data)
883 walk_tree (tp, copy_if_shared_r, data, NULL);
886 /* Unshare all the trees in the body of FNDECL, as well as in the bodies of
887 any nested functions. */
889 static void
890 unshare_body (tree fndecl)
892 struct cgraph_node *cgn = cgraph_node::get (fndecl);
893 /* If the language requires deep unsharing, we need a pointer set to make
894 sure we don't repeatedly unshare subtrees of unshareable nodes. */
895 hash_set<tree> *visited
896 = lang_hooks.deep_unsharing ? new hash_set<tree> : NULL;
898 copy_if_shared (&DECL_SAVED_TREE (fndecl), visited);
899 copy_if_shared (&DECL_SIZE (DECL_RESULT (fndecl)), visited);
900 copy_if_shared (&DECL_SIZE_UNIT (DECL_RESULT (fndecl)), visited);
902 delete visited;
904 if (cgn)
905 for (cgn = cgn->nested; cgn; cgn = cgn->next_nested)
906 unshare_body (cgn->decl);
909 /* Callback for walk_tree to unmark the visited trees rooted at *TP.
910 Subtrees are walked until the first unvisited node is encountered. */
912 static tree
913 unmark_visited_r (tree *tp, int *walk_subtrees, void *data ATTRIBUTE_UNUSED)
915 tree t = *tp;
917 /* If this node has been visited, unmark it and keep looking. */
918 if (TREE_VISITED (t))
919 TREE_VISITED (t) = 0;
921 /* Otherwise, don't look any deeper. */
922 else
923 *walk_subtrees = 0;
925 return NULL_TREE;
928 /* Unmark the visited trees rooted at *TP. */
930 static inline void
931 unmark_visited (tree *tp)
933 walk_tree (tp, unmark_visited_r, NULL, NULL);
936 /* Likewise, but mark all trees as not visited. */
938 static void
939 unvisit_body (tree fndecl)
941 struct cgraph_node *cgn = cgraph_node::get (fndecl);
943 unmark_visited (&DECL_SAVED_TREE (fndecl));
944 unmark_visited (&DECL_SIZE (DECL_RESULT (fndecl)));
945 unmark_visited (&DECL_SIZE_UNIT (DECL_RESULT (fndecl)));
947 if (cgn)
948 for (cgn = cgn->nested; cgn; cgn = cgn->next_nested)
949 unvisit_body (cgn->decl);
952 /* Unconditionally make an unshared copy of EXPR. This is used when using
953 stored expressions which span multiple functions, such as BINFO_VTABLE,
954 as the normal unsharing process can't tell that they're shared. */
956 tree
957 unshare_expr (tree expr)
959 walk_tree (&expr, mostly_copy_tree_r, NULL, NULL);
960 return expr;
963 /* Worker for unshare_expr_without_location. */
965 static tree
966 prune_expr_location (tree *tp, int *walk_subtrees, void *)
968 if (EXPR_P (*tp))
969 SET_EXPR_LOCATION (*tp, UNKNOWN_LOCATION);
970 else
971 *walk_subtrees = 0;
972 return NULL_TREE;
975 /* Similar to unshare_expr but also prune all expression locations
976 from EXPR. */
978 tree
979 unshare_expr_without_location (tree expr)
981 walk_tree (&expr, mostly_copy_tree_r, NULL, NULL);
982 if (EXPR_P (expr))
983 walk_tree (&expr, prune_expr_location, NULL, NULL);
984 return expr;
987 /* Return the EXPR_LOCATION of EXPR, if it (maybe recursively) has
988 one, OR_ELSE otherwise. The location of a STATEMENT_LISTs
989 comprising at least one DEBUG_BEGIN_STMT followed by exactly one
990 EXPR is the location of the EXPR. */
992 static location_t
993 rexpr_location (tree expr, location_t or_else = UNKNOWN_LOCATION)
995 if (!expr)
996 return or_else;
998 if (EXPR_HAS_LOCATION (expr))
999 return EXPR_LOCATION (expr);
1001 if (TREE_CODE (expr) != STATEMENT_LIST)
1002 return or_else;
1004 tree_stmt_iterator i = tsi_start (expr);
1006 bool found = false;
1007 while (!tsi_end_p (i) && TREE_CODE (tsi_stmt (i)) == DEBUG_BEGIN_STMT)
1009 found = true;
1010 tsi_next (&i);
1013 if (!found || !tsi_one_before_end_p (i))
1014 return or_else;
1016 return rexpr_location (tsi_stmt (i), or_else);
1019 /* Return TRUE iff EXPR (maybe recursively) has a location; see
1020 rexpr_location for the potential recursion. */
1022 static inline bool
1023 rexpr_has_location (tree expr)
1025 return rexpr_location (expr) != UNKNOWN_LOCATION;
1029 /* WRAPPER is a code such as BIND_EXPR or CLEANUP_POINT_EXPR which can both
1030 contain statements and have a value. Assign its value to a temporary
1031 and give it void_type_node. Return the temporary, or NULL_TREE if
1032 WRAPPER was already void. */
1034 tree
1035 voidify_wrapper_expr (tree wrapper, tree temp)
1037 tree type = TREE_TYPE (wrapper);
1038 if (type && !VOID_TYPE_P (type))
1040 tree *p;
1042 /* Set p to point to the body of the wrapper. Loop until we find
1043 something that isn't a wrapper. */
1044 for (p = &wrapper; p && *p; )
1046 switch (TREE_CODE (*p))
1048 case BIND_EXPR:
1049 TREE_SIDE_EFFECTS (*p) = 1;
1050 TREE_TYPE (*p) = void_type_node;
1051 /* For a BIND_EXPR, the body is operand 1. */
1052 p = &BIND_EXPR_BODY (*p);
1053 break;
1055 case CLEANUP_POINT_EXPR:
1056 case TRY_FINALLY_EXPR:
1057 case TRY_CATCH_EXPR:
1058 TREE_SIDE_EFFECTS (*p) = 1;
1059 TREE_TYPE (*p) = void_type_node;
1060 p = &TREE_OPERAND (*p, 0);
1061 break;
1063 case STATEMENT_LIST:
1065 tree_stmt_iterator i = tsi_last (*p);
1066 TREE_SIDE_EFFECTS (*p) = 1;
1067 TREE_TYPE (*p) = void_type_node;
1068 p = tsi_end_p (i) ? NULL : tsi_stmt_ptr (i);
1070 break;
1072 case COMPOUND_EXPR:
1073 /* Advance to the last statement. Set all container types to
1074 void. */
1075 for (; TREE_CODE (*p) == COMPOUND_EXPR; p = &TREE_OPERAND (*p, 1))
1077 TREE_SIDE_EFFECTS (*p) = 1;
1078 TREE_TYPE (*p) = void_type_node;
1080 break;
1082 case TRANSACTION_EXPR:
1083 TREE_SIDE_EFFECTS (*p) = 1;
1084 TREE_TYPE (*p) = void_type_node;
1085 p = &TRANSACTION_EXPR_BODY (*p);
1086 break;
1088 default:
1089 /* Assume that any tree upon which voidify_wrapper_expr is
1090 directly called is a wrapper, and that its body is op0. */
1091 if (p == &wrapper)
1093 TREE_SIDE_EFFECTS (*p) = 1;
1094 TREE_TYPE (*p) = void_type_node;
1095 p = &TREE_OPERAND (*p, 0);
1096 break;
1098 goto out;
1102 out:
1103 if (p == NULL || IS_EMPTY_STMT (*p))
1104 temp = NULL_TREE;
1105 else if (temp)
1107 /* The wrapper is on the RHS of an assignment that we're pushing
1108 down. */
1109 gcc_assert (TREE_CODE (temp) == INIT_EXPR
1110 || TREE_CODE (temp) == MODIFY_EXPR);
1111 TREE_OPERAND (temp, 1) = *p;
1112 *p = temp;
1114 else
1116 temp = create_tmp_var (type, "retval");
1117 *p = build2 (INIT_EXPR, type, temp, *p);
1120 return temp;
1123 return NULL_TREE;
1126 /* Prepare calls to builtins to SAVE and RESTORE the stack as well as
1127 a temporary through which they communicate. */
1129 static void
1130 build_stack_save_restore (gcall **save, gcall **restore)
1132 tree tmp_var;
1134 *save = gimple_build_call (builtin_decl_implicit (BUILT_IN_STACK_SAVE), 0);
1135 tmp_var = create_tmp_var (ptr_type_node, "saved_stack");
1136 gimple_call_set_lhs (*save, tmp_var);
1138 *restore
1139 = gimple_build_call (builtin_decl_implicit (BUILT_IN_STACK_RESTORE),
1140 1, tmp_var);
1143 /* Generate IFN_ASAN_MARK call that poisons shadow of a for DECL variable. */
1145 static tree
1146 build_asan_poison_call_expr (tree decl)
1148 /* Do not poison variables that have size equal to zero. */
1149 tree unit_size = DECL_SIZE_UNIT (decl);
1150 if (zerop (unit_size))
1151 return NULL_TREE;
1153 tree base = build_fold_addr_expr (decl);
1155 return build_call_expr_internal_loc (UNKNOWN_LOCATION, IFN_ASAN_MARK,
1156 void_type_node, 3,
1157 build_int_cst (integer_type_node,
1158 ASAN_MARK_POISON),
1159 base, unit_size);
1162 /* Generate IFN_ASAN_MARK call that would poison or unpoison, depending
1163 on POISON flag, shadow memory of a DECL variable. The call will be
1164 put on location identified by IT iterator, where BEFORE flag drives
1165 position where the stmt will be put. */
1167 static void
1168 asan_poison_variable (tree decl, bool poison, gimple_stmt_iterator *it,
1169 bool before)
1171 tree unit_size = DECL_SIZE_UNIT (decl);
1172 tree base = build_fold_addr_expr (decl);
1174 /* Do not poison variables that have size equal to zero. */
1175 if (zerop (unit_size))
1176 return;
1178 /* It's necessary to have all stack variables aligned to ASAN granularity
1179 bytes. */
1180 if (DECL_ALIGN_UNIT (decl) <= ASAN_SHADOW_GRANULARITY)
1181 SET_DECL_ALIGN (decl, BITS_PER_UNIT * ASAN_SHADOW_GRANULARITY);
1183 HOST_WIDE_INT flags = poison ? ASAN_MARK_POISON : ASAN_MARK_UNPOISON;
1185 gimple *g
1186 = gimple_build_call_internal (IFN_ASAN_MARK, 3,
1187 build_int_cst (integer_type_node, flags),
1188 base, unit_size);
1190 if (before)
1191 gsi_insert_before (it, g, GSI_NEW_STMT);
1192 else
1193 gsi_insert_after (it, g, GSI_NEW_STMT);
1196 /* Generate IFN_ASAN_MARK internal call that depending on POISON flag
1197 either poisons or unpoisons a DECL. Created statement is appended
1198 to SEQ_P gimple sequence. */
1200 static void
1201 asan_poison_variable (tree decl, bool poison, gimple_seq *seq_p)
1203 gimple_stmt_iterator it = gsi_last (*seq_p);
1204 bool before = false;
1206 if (gsi_end_p (it))
1207 before = true;
1209 asan_poison_variable (decl, poison, &it, before);
1212 /* Sort pair of VAR_DECLs A and B by DECL_UID. */
1214 static int
1215 sort_by_decl_uid (const void *a, const void *b)
1217 const tree *t1 = (const tree *)a;
1218 const tree *t2 = (const tree *)b;
1220 int uid1 = DECL_UID (*t1);
1221 int uid2 = DECL_UID (*t2);
1223 if (uid1 < uid2)
1224 return -1;
1225 else if (uid1 > uid2)
1226 return 1;
1227 else
1228 return 0;
1231 /* Generate IFN_ASAN_MARK internal call for all VARIABLES
1232 depending on POISON flag. Created statement is appended
1233 to SEQ_P gimple sequence. */
1235 static void
1236 asan_poison_variables (hash_set<tree> *variables, bool poison, gimple_seq *seq_p)
1238 unsigned c = variables->elements ();
1239 if (c == 0)
1240 return;
1242 auto_vec<tree> sorted_variables (c);
1244 for (hash_set<tree>::iterator it = variables->begin ();
1245 it != variables->end (); ++it)
1246 sorted_variables.safe_push (*it);
1248 sorted_variables.qsort (sort_by_decl_uid);
1250 unsigned i;
1251 tree var;
1252 FOR_EACH_VEC_ELT (sorted_variables, i, var)
1254 asan_poison_variable (var, poison, seq_p);
1256 /* Add use_after_scope_memory attribute for the variable in order
1257 to prevent re-written into SSA. */
1258 if (!lookup_attribute (ASAN_USE_AFTER_SCOPE_ATTRIBUTE,
1259 DECL_ATTRIBUTES (var)))
1260 DECL_ATTRIBUTES (var)
1261 = tree_cons (get_identifier (ASAN_USE_AFTER_SCOPE_ATTRIBUTE),
1262 integer_one_node,
1263 DECL_ATTRIBUTES (var));
1267 /* Gimplify a BIND_EXPR. Just voidify and recurse. */
1269 static enum gimplify_status
1270 gimplify_bind_expr (tree *expr_p, gimple_seq *pre_p)
1272 tree bind_expr = *expr_p;
1273 bool old_keep_stack = gimplify_ctxp->keep_stack;
1274 bool old_save_stack = gimplify_ctxp->save_stack;
1275 tree t;
1276 gbind *bind_stmt;
1277 gimple_seq body, cleanup;
1278 gcall *stack_save;
1279 location_t start_locus = 0, end_locus = 0;
1280 tree ret_clauses = NULL;
1282 tree temp = voidify_wrapper_expr (bind_expr, NULL);
1284 /* Mark variables seen in this bind expr. */
1285 for (t = BIND_EXPR_VARS (bind_expr); t ; t = DECL_CHAIN (t))
1287 if (VAR_P (t))
1289 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
1291 /* Mark variable as local. */
1292 if (ctx && ctx->region_type != ORT_NONE && !DECL_EXTERNAL (t)
1293 && (! DECL_SEEN_IN_BIND_EXPR_P (t)
1294 || splay_tree_lookup (ctx->variables,
1295 (splay_tree_key) t) == NULL))
1297 if (ctx->region_type == ORT_SIMD
1298 && TREE_ADDRESSABLE (t)
1299 && !TREE_STATIC (t))
1300 omp_add_variable (ctx, t, GOVD_PRIVATE | GOVD_SEEN);
1301 else
1302 omp_add_variable (ctx, t, GOVD_LOCAL | GOVD_SEEN);
1305 DECL_SEEN_IN_BIND_EXPR_P (t) = 1;
1307 if (DECL_HARD_REGISTER (t) && !is_global_var (t) && cfun)
1308 cfun->has_local_explicit_reg_vars = true;
1311 /* Preliminarily mark non-addressed complex variables as eligible
1312 for promotion to gimple registers. We'll transform their uses
1313 as we find them. */
1314 if ((TREE_CODE (TREE_TYPE (t)) == COMPLEX_TYPE
1315 || TREE_CODE (TREE_TYPE (t)) == VECTOR_TYPE)
1316 && !TREE_THIS_VOLATILE (t)
1317 && (VAR_P (t) && !DECL_HARD_REGISTER (t))
1318 && !needs_to_live_in_memory (t))
1319 DECL_GIMPLE_REG_P (t) = 1;
1322 bind_stmt = gimple_build_bind (BIND_EXPR_VARS (bind_expr), NULL,
1323 BIND_EXPR_BLOCK (bind_expr));
1324 gimple_push_bind_expr (bind_stmt);
1326 gimplify_ctxp->keep_stack = false;
1327 gimplify_ctxp->save_stack = false;
1329 /* Gimplify the body into the GIMPLE_BIND tuple's body. */
1330 body = NULL;
1331 gimplify_stmt (&BIND_EXPR_BODY (bind_expr), &body);
1332 gimple_bind_set_body (bind_stmt, body);
1334 /* Source location wise, the cleanup code (stack_restore and clobbers)
1335 belongs to the end of the block, so propagate what we have. The
1336 stack_save operation belongs to the beginning of block, which we can
1337 infer from the bind_expr directly if the block has no explicit
1338 assignment. */
1339 if (BIND_EXPR_BLOCK (bind_expr))
1341 end_locus = BLOCK_SOURCE_END_LOCATION (BIND_EXPR_BLOCK (bind_expr));
1342 start_locus = BLOCK_SOURCE_LOCATION (BIND_EXPR_BLOCK (bind_expr));
1344 if (start_locus == 0)
1345 start_locus = EXPR_LOCATION (bind_expr);
1347 cleanup = NULL;
1348 stack_save = NULL;
1350 /* If the code both contains VLAs and calls alloca, then we cannot reclaim
1351 the stack space allocated to the VLAs. */
1352 if (gimplify_ctxp->save_stack && !gimplify_ctxp->keep_stack)
1354 gcall *stack_restore;
1356 /* Save stack on entry and restore it on exit. Add a try_finally
1357 block to achieve this. */
1358 build_stack_save_restore (&stack_save, &stack_restore);
1360 gimple_set_location (stack_save, start_locus);
1361 gimple_set_location (stack_restore, end_locus);
1363 gimplify_seq_add_stmt (&cleanup, stack_restore);
1366 /* Add clobbers for all variables that go out of scope. */
1367 for (t = BIND_EXPR_VARS (bind_expr); t ; t = DECL_CHAIN (t))
1369 if (VAR_P (t)
1370 && !is_global_var (t)
1371 && DECL_CONTEXT (t) == current_function_decl)
1373 if (!DECL_HARD_REGISTER (t)
1374 && !TREE_THIS_VOLATILE (t)
1375 && !DECL_HAS_VALUE_EXPR_P (t)
1376 /* Only care for variables that have to be in memory. Others
1377 will be rewritten into SSA names, hence moved to the
1378 top-level. */
1379 && !is_gimple_reg (t)
1380 && flag_stack_reuse != SR_NONE)
1382 tree clobber = build_clobber (TREE_TYPE (t));
1383 gimple *clobber_stmt;
1384 clobber_stmt = gimple_build_assign (t, clobber);
1385 gimple_set_location (clobber_stmt, end_locus);
1386 gimplify_seq_add_stmt (&cleanup, clobber_stmt);
1389 if (flag_openacc && oacc_declare_returns != NULL)
1391 tree *c = oacc_declare_returns->get (t);
1392 if (c != NULL)
1394 if (ret_clauses)
1395 OMP_CLAUSE_CHAIN (*c) = ret_clauses;
1397 ret_clauses = *c;
1399 oacc_declare_returns->remove (t);
1401 if (oacc_declare_returns->elements () == 0)
1403 delete oacc_declare_returns;
1404 oacc_declare_returns = NULL;
1410 if (asan_poisoned_variables != NULL
1411 && asan_poisoned_variables->contains (t))
1413 asan_poisoned_variables->remove (t);
1414 asan_poison_variable (t, true, &cleanup);
1417 if (gimplify_ctxp->live_switch_vars != NULL
1418 && gimplify_ctxp->live_switch_vars->contains (t))
1419 gimplify_ctxp->live_switch_vars->remove (t);
1422 if (ret_clauses)
1424 gomp_target *stmt;
1425 gimple_stmt_iterator si = gsi_start (cleanup);
1427 stmt = gimple_build_omp_target (NULL, GF_OMP_TARGET_KIND_OACC_DECLARE,
1428 ret_clauses);
1429 gsi_insert_seq_before_without_update (&si, stmt, GSI_NEW_STMT);
1432 if (cleanup)
1434 gtry *gs;
1435 gimple_seq new_body;
1437 new_body = NULL;
1438 gs = gimple_build_try (gimple_bind_body (bind_stmt), cleanup,
1439 GIMPLE_TRY_FINALLY);
1441 if (stack_save)
1442 gimplify_seq_add_stmt (&new_body, stack_save);
1443 gimplify_seq_add_stmt (&new_body, gs);
1444 gimple_bind_set_body (bind_stmt, new_body);
1447 /* keep_stack propagates all the way up to the outermost BIND_EXPR. */
1448 if (!gimplify_ctxp->keep_stack)
1449 gimplify_ctxp->keep_stack = old_keep_stack;
1450 gimplify_ctxp->save_stack = old_save_stack;
1452 gimple_pop_bind_expr ();
1454 gimplify_seq_add_stmt (pre_p, bind_stmt);
1456 if (temp)
1458 *expr_p = temp;
1459 return GS_OK;
1462 *expr_p = NULL_TREE;
1463 return GS_ALL_DONE;
1466 /* Maybe add early return predict statement to PRE_P sequence. */
1468 static void
1469 maybe_add_early_return_predict_stmt (gimple_seq *pre_p)
1471 /* If we are not in a conditional context, add PREDICT statement. */
1472 if (gimple_conditional_context ())
1474 gimple *predict = gimple_build_predict (PRED_TREE_EARLY_RETURN,
1475 NOT_TAKEN);
1476 gimplify_seq_add_stmt (pre_p, predict);
1480 /* Gimplify a RETURN_EXPR. If the expression to be returned is not a
1481 GIMPLE value, it is assigned to a new temporary and the statement is
1482 re-written to return the temporary.
1484 PRE_P points to the sequence where side effects that must happen before
1485 STMT should be stored. */
1487 static enum gimplify_status
1488 gimplify_return_expr (tree stmt, gimple_seq *pre_p)
1490 greturn *ret;
1491 tree ret_expr = TREE_OPERAND (stmt, 0);
1492 tree result_decl, result;
1494 if (ret_expr == error_mark_node)
1495 return GS_ERROR;
1497 if (!ret_expr
1498 || TREE_CODE (ret_expr) == RESULT_DECL)
1500 maybe_add_early_return_predict_stmt (pre_p);
1501 greturn *ret = gimple_build_return (ret_expr);
1502 gimple_set_no_warning (ret, TREE_NO_WARNING (stmt));
1503 gimplify_seq_add_stmt (pre_p, ret);
1504 return GS_ALL_DONE;
1507 if (VOID_TYPE_P (TREE_TYPE (TREE_TYPE (current_function_decl))))
1508 result_decl = NULL_TREE;
1509 else
1511 result_decl = TREE_OPERAND (ret_expr, 0);
1513 /* See through a return by reference. */
1514 if (TREE_CODE (result_decl) == INDIRECT_REF)
1515 result_decl = TREE_OPERAND (result_decl, 0);
1517 gcc_assert ((TREE_CODE (ret_expr) == MODIFY_EXPR
1518 || TREE_CODE (ret_expr) == INIT_EXPR)
1519 && TREE_CODE (result_decl) == RESULT_DECL);
1522 /* If aggregate_value_p is true, then we can return the bare RESULT_DECL.
1523 Recall that aggregate_value_p is FALSE for any aggregate type that is
1524 returned in registers. If we're returning values in registers, then
1525 we don't want to extend the lifetime of the RESULT_DECL, particularly
1526 across another call. In addition, for those aggregates for which
1527 hard_function_value generates a PARALLEL, we'll die during normal
1528 expansion of structure assignments; there's special code in expand_return
1529 to handle this case that does not exist in expand_expr. */
1530 if (!result_decl)
1531 result = NULL_TREE;
1532 else if (aggregate_value_p (result_decl, TREE_TYPE (current_function_decl)))
1534 if (TREE_CODE (DECL_SIZE (result_decl)) != INTEGER_CST)
1536 if (!TYPE_SIZES_GIMPLIFIED (TREE_TYPE (result_decl)))
1537 gimplify_type_sizes (TREE_TYPE (result_decl), pre_p);
1538 /* Note that we don't use gimplify_vla_decl because the RESULT_DECL
1539 should be effectively allocated by the caller, i.e. all calls to
1540 this function must be subject to the Return Slot Optimization. */
1541 gimplify_one_sizepos (&DECL_SIZE (result_decl), pre_p);
1542 gimplify_one_sizepos (&DECL_SIZE_UNIT (result_decl), pre_p);
1544 result = result_decl;
1546 else if (gimplify_ctxp->return_temp)
1547 result = gimplify_ctxp->return_temp;
1548 else
1550 result = create_tmp_reg (TREE_TYPE (result_decl));
1552 /* ??? With complex control flow (usually involving abnormal edges),
1553 we can wind up warning about an uninitialized value for this. Due
1554 to how this variable is constructed and initialized, this is never
1555 true. Give up and never warn. */
1556 TREE_NO_WARNING (result) = 1;
1558 gimplify_ctxp->return_temp = result;
1561 /* Smash the lhs of the MODIFY_EXPR to the temporary we plan to use.
1562 Then gimplify the whole thing. */
1563 if (result != result_decl)
1564 TREE_OPERAND (ret_expr, 0) = result;
1566 gimplify_and_add (TREE_OPERAND (stmt, 0), pre_p);
1568 maybe_add_early_return_predict_stmt (pre_p);
1569 ret = gimple_build_return (result);
1570 gimple_set_no_warning (ret, TREE_NO_WARNING (stmt));
1571 gimplify_seq_add_stmt (pre_p, ret);
1573 return GS_ALL_DONE;
1576 /* Gimplify a variable-length array DECL. */
1578 static void
1579 gimplify_vla_decl (tree decl, gimple_seq *seq_p)
1581 /* This is a variable-sized decl. Simplify its size and mark it
1582 for deferred expansion. */
1583 tree t, addr, ptr_type;
1585 gimplify_one_sizepos (&DECL_SIZE (decl), seq_p);
1586 gimplify_one_sizepos (&DECL_SIZE_UNIT (decl), seq_p);
1588 /* Don't mess with a DECL_VALUE_EXPR set by the front-end. */
1589 if (DECL_HAS_VALUE_EXPR_P (decl))
1590 return;
1592 /* All occurrences of this decl in final gimplified code will be
1593 replaced by indirection. Setting DECL_VALUE_EXPR does two
1594 things: First, it lets the rest of the gimplifier know what
1595 replacement to use. Second, it lets the debug info know
1596 where to find the value. */
1597 ptr_type = build_pointer_type (TREE_TYPE (decl));
1598 addr = create_tmp_var (ptr_type, get_name (decl));
1599 DECL_IGNORED_P (addr) = 0;
1600 t = build_fold_indirect_ref (addr);
1601 TREE_THIS_NOTRAP (t) = 1;
1602 SET_DECL_VALUE_EXPR (decl, t);
1603 DECL_HAS_VALUE_EXPR_P (decl) = 1;
1605 t = build_alloca_call_expr (DECL_SIZE_UNIT (decl), DECL_ALIGN (decl),
1606 max_int_size_in_bytes (TREE_TYPE (decl)));
1607 /* The call has been built for a variable-sized object. */
1608 CALL_ALLOCA_FOR_VAR_P (t) = 1;
1609 t = fold_convert (ptr_type, t);
1610 t = build2 (MODIFY_EXPR, TREE_TYPE (addr), addr, t);
1612 gimplify_and_add (t, seq_p);
1615 /* A helper function to be called via walk_tree. Mark all labels under *TP
1616 as being forced. To be called for DECL_INITIAL of static variables. */
1618 static tree
1619 force_labels_r (tree *tp, int *walk_subtrees, void *data ATTRIBUTE_UNUSED)
1621 if (TYPE_P (*tp))
1622 *walk_subtrees = 0;
1623 if (TREE_CODE (*tp) == LABEL_DECL)
1625 FORCED_LABEL (*tp) = 1;
1626 cfun->has_forced_label_in_static = 1;
1629 return NULL_TREE;
1632 /* Gimplify a DECL_EXPR node *STMT_P by making any necessary allocation
1633 and initialization explicit. */
1635 static enum gimplify_status
1636 gimplify_decl_expr (tree *stmt_p, gimple_seq *seq_p)
1638 tree stmt = *stmt_p;
1639 tree decl = DECL_EXPR_DECL (stmt);
1641 *stmt_p = NULL_TREE;
1643 if (TREE_TYPE (decl) == error_mark_node)
1644 return GS_ERROR;
1646 if ((TREE_CODE (decl) == TYPE_DECL
1647 || VAR_P (decl))
1648 && !TYPE_SIZES_GIMPLIFIED (TREE_TYPE (decl)))
1650 gimplify_type_sizes (TREE_TYPE (decl), seq_p);
1651 if (TREE_CODE (TREE_TYPE (decl)) == REFERENCE_TYPE)
1652 gimplify_type_sizes (TREE_TYPE (TREE_TYPE (decl)), seq_p);
1655 /* ??? DECL_ORIGINAL_TYPE is streamed for LTO so it needs to be gimplified
1656 in case its size expressions contain problematic nodes like CALL_EXPR. */
1657 if (TREE_CODE (decl) == TYPE_DECL
1658 && DECL_ORIGINAL_TYPE (decl)
1659 && !TYPE_SIZES_GIMPLIFIED (DECL_ORIGINAL_TYPE (decl)))
1661 gimplify_type_sizes (DECL_ORIGINAL_TYPE (decl), seq_p);
1662 if (TREE_CODE (DECL_ORIGINAL_TYPE (decl)) == REFERENCE_TYPE)
1663 gimplify_type_sizes (TREE_TYPE (DECL_ORIGINAL_TYPE (decl)), seq_p);
1666 if (VAR_P (decl) && !DECL_EXTERNAL (decl))
1668 tree init = DECL_INITIAL (decl);
1669 bool is_vla = false;
1671 if (TREE_CODE (DECL_SIZE_UNIT (decl)) != INTEGER_CST
1672 || (!TREE_STATIC (decl)
1673 && flag_stack_check == GENERIC_STACK_CHECK
1674 && compare_tree_int (DECL_SIZE_UNIT (decl),
1675 STACK_CHECK_MAX_VAR_SIZE) > 0))
1677 gimplify_vla_decl (decl, seq_p);
1678 is_vla = true;
1681 if (asan_poisoned_variables
1682 && !is_vla
1683 && TREE_ADDRESSABLE (decl)
1684 && !TREE_STATIC (decl)
1685 && !DECL_HAS_VALUE_EXPR_P (decl)
1686 && DECL_ALIGN (decl) <= MAX_SUPPORTED_STACK_ALIGNMENT
1687 && dbg_cnt (asan_use_after_scope)
1688 && !gimplify_omp_ctxp)
1690 asan_poisoned_variables->add (decl);
1691 asan_poison_variable (decl, false, seq_p);
1692 if (!DECL_ARTIFICIAL (decl) && gimplify_ctxp->live_switch_vars)
1693 gimplify_ctxp->live_switch_vars->add (decl);
1696 /* Some front ends do not explicitly declare all anonymous
1697 artificial variables. We compensate here by declaring the
1698 variables, though it would be better if the front ends would
1699 explicitly declare them. */
1700 if (!DECL_SEEN_IN_BIND_EXPR_P (decl)
1701 && DECL_ARTIFICIAL (decl) && DECL_NAME (decl) == NULL_TREE)
1702 gimple_add_tmp_var (decl);
1704 if (init && init != error_mark_node)
1706 if (!TREE_STATIC (decl))
1708 DECL_INITIAL (decl) = NULL_TREE;
1709 init = build2 (INIT_EXPR, void_type_node, decl, init);
1710 gimplify_and_add (init, seq_p);
1711 ggc_free (init);
1713 else
1714 /* We must still examine initializers for static variables
1715 as they may contain a label address. */
1716 walk_tree (&init, force_labels_r, NULL, NULL);
1720 return GS_ALL_DONE;
1723 /* Gimplify a LOOP_EXPR. Normally this just involves gimplifying the body
1724 and replacing the LOOP_EXPR with goto, but if the loop contains an
1725 EXIT_EXPR, we need to append a label for it to jump to. */
1727 static enum gimplify_status
1728 gimplify_loop_expr (tree *expr_p, gimple_seq *pre_p)
1730 tree saved_label = gimplify_ctxp->exit_label;
1731 tree start_label = create_artificial_label (UNKNOWN_LOCATION);
1733 gimplify_seq_add_stmt (pre_p, gimple_build_label (start_label));
1735 gimplify_ctxp->exit_label = NULL_TREE;
1737 gimplify_and_add (LOOP_EXPR_BODY (*expr_p), pre_p);
1739 gimplify_seq_add_stmt (pre_p, gimple_build_goto (start_label));
1741 if (gimplify_ctxp->exit_label)
1742 gimplify_seq_add_stmt (pre_p,
1743 gimple_build_label (gimplify_ctxp->exit_label));
1745 gimplify_ctxp->exit_label = saved_label;
1747 *expr_p = NULL;
1748 return GS_ALL_DONE;
1751 /* Gimplify a statement list onto a sequence. These may be created either
1752 by an enlightened front-end, or by shortcut_cond_expr. */
1754 static enum gimplify_status
1755 gimplify_statement_list (tree *expr_p, gimple_seq *pre_p)
1757 tree temp = voidify_wrapper_expr (*expr_p, NULL);
1759 tree_stmt_iterator i = tsi_start (*expr_p);
1761 while (!tsi_end_p (i))
1763 gimplify_stmt (tsi_stmt_ptr (i), pre_p);
1764 tsi_delink (&i);
1767 if (temp)
1769 *expr_p = temp;
1770 return GS_OK;
1773 return GS_ALL_DONE;
1776 /* Callback for walk_gimple_seq. */
1778 static tree
1779 warn_switch_unreachable_r (gimple_stmt_iterator *gsi_p, bool *handled_ops_p,
1780 struct walk_stmt_info *wi)
1782 gimple *stmt = gsi_stmt (*gsi_p);
1784 *handled_ops_p = true;
1785 switch (gimple_code (stmt))
1787 case GIMPLE_TRY:
1788 /* A compiler-generated cleanup or a user-written try block.
1789 If it's empty, don't dive into it--that would result in
1790 worse location info. */
1791 if (gimple_try_eval (stmt) == NULL)
1793 wi->info = stmt;
1794 return integer_zero_node;
1796 /* Fall through. */
1797 case GIMPLE_BIND:
1798 case GIMPLE_CATCH:
1799 case GIMPLE_EH_FILTER:
1800 case GIMPLE_TRANSACTION:
1801 /* Walk the sub-statements. */
1802 *handled_ops_p = false;
1803 break;
1805 case GIMPLE_DEBUG:
1806 /* Ignore these. We may generate them before declarations that
1807 are never executed. If there's something to warn about,
1808 there will be non-debug stmts too, and we'll catch those. */
1809 break;
1811 case GIMPLE_CALL:
1812 if (gimple_call_internal_p (stmt, IFN_ASAN_MARK))
1814 *handled_ops_p = false;
1815 break;
1817 /* Fall through. */
1818 default:
1819 /* Save the first "real" statement (not a decl/lexical scope/...). */
1820 wi->info = stmt;
1821 return integer_zero_node;
1823 return NULL_TREE;
1826 /* Possibly warn about unreachable statements between switch's controlling
1827 expression and the first case. SEQ is the body of a switch expression. */
1829 static void
1830 maybe_warn_switch_unreachable (gimple_seq seq)
1832 if (!warn_switch_unreachable
1833 /* This warning doesn't play well with Fortran when optimizations
1834 are on. */
1835 || lang_GNU_Fortran ()
1836 || seq == NULL)
1837 return;
1839 struct walk_stmt_info wi;
1840 memset (&wi, 0, sizeof (wi));
1841 walk_gimple_seq (seq, warn_switch_unreachable_r, NULL, &wi);
1842 gimple *stmt = (gimple *) wi.info;
1844 if (stmt && gimple_code (stmt) != GIMPLE_LABEL)
1846 if (gimple_code (stmt) == GIMPLE_GOTO
1847 && TREE_CODE (gimple_goto_dest (stmt)) == LABEL_DECL
1848 && DECL_ARTIFICIAL (gimple_goto_dest (stmt)))
1849 /* Don't warn for compiler-generated gotos. These occur
1850 in Duff's devices, for example. */;
1851 else
1852 warning_at (gimple_location (stmt), OPT_Wswitch_unreachable,
1853 "statement will never be executed");
1858 /* A label entry that pairs label and a location. */
1859 struct label_entry
1861 tree label;
1862 location_t loc;
1865 /* Find LABEL in vector of label entries VEC. */
1867 static struct label_entry *
1868 find_label_entry (const auto_vec<struct label_entry> *vec, tree label)
1870 unsigned int i;
1871 struct label_entry *l;
1873 FOR_EACH_VEC_ELT (*vec, i, l)
1874 if (l->label == label)
1875 return l;
1876 return NULL;
1879 /* Return true if LABEL, a LABEL_DECL, represents a case label
1880 in a vector of labels CASES. */
1882 static bool
1883 case_label_p (const vec<tree> *cases, tree label)
1885 unsigned int i;
1886 tree l;
1888 FOR_EACH_VEC_ELT (*cases, i, l)
1889 if (CASE_LABEL (l) == label)
1890 return true;
1891 return false;
1894 /* Find the last nondebug statement in a scope STMT. */
1896 static gimple *
1897 last_stmt_in_scope (gimple *stmt)
1899 if (!stmt)
1900 return NULL;
1902 switch (gimple_code (stmt))
1904 case GIMPLE_BIND:
1906 gbind *bind = as_a <gbind *> (stmt);
1907 stmt = gimple_seq_last_nondebug_stmt (gimple_bind_body (bind));
1908 return last_stmt_in_scope (stmt);
1911 case GIMPLE_TRY:
1913 gtry *try_stmt = as_a <gtry *> (stmt);
1914 stmt = gimple_seq_last_nondebug_stmt (gimple_try_eval (try_stmt));
1915 gimple *last_eval = last_stmt_in_scope (stmt);
1916 if (gimple_stmt_may_fallthru (last_eval)
1917 && (last_eval == NULL
1918 || !gimple_call_internal_p (last_eval, IFN_FALLTHROUGH))
1919 && gimple_try_kind (try_stmt) == GIMPLE_TRY_FINALLY)
1921 stmt = gimple_seq_last_nondebug_stmt (gimple_try_cleanup (try_stmt));
1922 return last_stmt_in_scope (stmt);
1924 else
1925 return last_eval;
1928 case GIMPLE_DEBUG:
1929 gcc_unreachable ();
1931 default:
1932 return stmt;
1936 /* Collect interesting labels in LABELS and return the statement preceding
1937 another case label, or a user-defined label. */
1939 static gimple *
1940 collect_fallthrough_labels (gimple_stmt_iterator *gsi_p,
1941 auto_vec <struct label_entry> *labels)
1943 gimple *prev = NULL;
1947 if (gimple_code (gsi_stmt (*gsi_p)) == GIMPLE_BIND)
1949 /* Recognize the special GIMPLE_BIND added by gimplify_switch_expr,
1950 which starts on a GIMPLE_SWITCH and ends with a break label.
1951 Handle that as a single statement that can fall through. */
1952 gbind *bind = as_a <gbind *> (gsi_stmt (*gsi_p));
1953 gimple *first = gimple_seq_first_stmt (gimple_bind_body (bind));
1954 gimple *last = gimple_seq_last_stmt (gimple_bind_body (bind));
1955 if (last
1956 && gimple_code (first) == GIMPLE_SWITCH
1957 && gimple_code (last) == GIMPLE_LABEL)
1959 tree label = gimple_label_label (as_a <glabel *> (last));
1960 if (SWITCH_BREAK_LABEL_P (label))
1962 prev = bind;
1963 gsi_next (gsi_p);
1964 continue;
1968 if (gimple_code (gsi_stmt (*gsi_p)) == GIMPLE_BIND
1969 || gimple_code (gsi_stmt (*gsi_p)) == GIMPLE_TRY)
1971 /* Nested scope. Only look at the last statement of
1972 the innermost scope. */
1973 location_t bind_loc = gimple_location (gsi_stmt (*gsi_p));
1974 gimple *last = last_stmt_in_scope (gsi_stmt (*gsi_p));
1975 if (last)
1977 prev = last;
1978 /* It might be a label without a location. Use the
1979 location of the scope then. */
1980 if (!gimple_has_location (prev))
1981 gimple_set_location (prev, bind_loc);
1983 gsi_next (gsi_p);
1984 continue;
1987 /* Ifs are tricky. */
1988 if (gimple_code (gsi_stmt (*gsi_p)) == GIMPLE_COND)
1990 gcond *cond_stmt = as_a <gcond *> (gsi_stmt (*gsi_p));
1991 tree false_lab = gimple_cond_false_label (cond_stmt);
1992 location_t if_loc = gimple_location (cond_stmt);
1994 /* If we have e.g.
1995 if (i > 1) goto <D.2259>; else goto D;
1996 we can't do much with the else-branch. */
1997 if (!DECL_ARTIFICIAL (false_lab))
1998 break;
2000 /* Go on until the false label, then one step back. */
2001 for (; !gsi_end_p (*gsi_p); gsi_next (gsi_p))
2003 gimple *stmt = gsi_stmt (*gsi_p);
2004 if (gimple_code (stmt) == GIMPLE_LABEL
2005 && gimple_label_label (as_a <glabel *> (stmt)) == false_lab)
2006 break;
2009 /* Not found? Oops. */
2010 if (gsi_end_p (*gsi_p))
2011 break;
2013 struct label_entry l = { false_lab, if_loc };
2014 labels->safe_push (l);
2016 /* Go to the last statement of the then branch. */
2017 gsi_prev (gsi_p);
2019 /* if (i != 0) goto <D.1759>; else goto <D.1760>;
2020 <D.1759>:
2021 <stmt>;
2022 goto <D.1761>;
2023 <D.1760>:
2025 if (gimple_code (gsi_stmt (*gsi_p)) == GIMPLE_GOTO
2026 && !gimple_has_location (gsi_stmt (*gsi_p)))
2028 /* Look at the statement before, it might be
2029 attribute fallthrough, in which case don't warn. */
2030 gsi_prev (gsi_p);
2031 bool fallthru_before_dest
2032 = gimple_call_internal_p (gsi_stmt (*gsi_p), IFN_FALLTHROUGH);
2033 gsi_next (gsi_p);
2034 tree goto_dest = gimple_goto_dest (gsi_stmt (*gsi_p));
2035 if (!fallthru_before_dest)
2037 struct label_entry l = { goto_dest, if_loc };
2038 labels->safe_push (l);
2041 /* And move back. */
2042 gsi_next (gsi_p);
2045 /* Remember the last statement. Skip labels that are of no interest
2046 to us. */
2047 if (gimple_code (gsi_stmt (*gsi_p)) == GIMPLE_LABEL)
2049 tree label = gimple_label_label (as_a <glabel *> (gsi_stmt (*gsi_p)));
2050 if (find_label_entry (labels, label))
2051 prev = gsi_stmt (*gsi_p);
2053 else if (gimple_call_internal_p (gsi_stmt (*gsi_p), IFN_ASAN_MARK))
2055 else if (!is_gimple_debug (gsi_stmt (*gsi_p)))
2056 prev = gsi_stmt (*gsi_p);
2057 gsi_next (gsi_p);
2059 while (!gsi_end_p (*gsi_p)
2060 /* Stop if we find a case or a user-defined label. */
2061 && (gimple_code (gsi_stmt (*gsi_p)) != GIMPLE_LABEL
2062 || !gimple_has_location (gsi_stmt (*gsi_p))));
2064 return prev;
2067 /* Return true if the switch fallthough warning should occur. LABEL is
2068 the label statement that we're falling through to. */
2070 static bool
2071 should_warn_for_implicit_fallthrough (gimple_stmt_iterator *gsi_p, tree label)
2073 gimple_stmt_iterator gsi = *gsi_p;
2075 /* Don't warn if the label is marked with a "falls through" comment. */
2076 if (FALLTHROUGH_LABEL_P (label))
2077 return false;
2079 /* Don't warn for non-case labels followed by a statement:
2080 case 0:
2081 foo ();
2082 label:
2083 bar ();
2084 as these are likely intentional. */
2085 if (!case_label_p (&gimplify_ctxp->case_labels, label))
2087 tree l;
2088 while (!gsi_end_p (gsi)
2089 && gimple_code (gsi_stmt (gsi)) == GIMPLE_LABEL
2090 && (l = gimple_label_label (as_a <glabel *> (gsi_stmt (gsi))))
2091 && !case_label_p (&gimplify_ctxp->case_labels, l))
2092 gsi_next_nondebug (&gsi);
2093 if (gsi_end_p (gsi) || gimple_code (gsi_stmt (gsi)) != GIMPLE_LABEL)
2094 return false;
2097 /* Don't warn for terminated branches, i.e. when the subsequent case labels
2098 immediately breaks. */
2099 gsi = *gsi_p;
2101 /* Skip all immediately following labels. */
2102 while (!gsi_end_p (gsi)
2103 && (gimple_code (gsi_stmt (gsi)) == GIMPLE_LABEL
2104 || gimple_code (gsi_stmt (gsi)) == GIMPLE_PREDICT))
2105 gsi_next_nondebug (&gsi);
2107 /* { ... something; default:; } */
2108 if (gsi_end_p (gsi)
2109 /* { ... something; default: break; } or
2110 { ... something; default: goto L; } */
2111 || gimple_code (gsi_stmt (gsi)) == GIMPLE_GOTO
2112 /* { ... something; default: return; } */
2113 || gimple_code (gsi_stmt (gsi)) == GIMPLE_RETURN)
2114 return false;
2116 return true;
2119 /* Callback for walk_gimple_seq. */
2121 static tree
2122 warn_implicit_fallthrough_r (gimple_stmt_iterator *gsi_p, bool *handled_ops_p,
2123 struct walk_stmt_info *)
2125 gimple *stmt = gsi_stmt (*gsi_p);
2127 *handled_ops_p = true;
2128 switch (gimple_code (stmt))
2130 case GIMPLE_TRY:
2131 case GIMPLE_BIND:
2132 case GIMPLE_CATCH:
2133 case GIMPLE_EH_FILTER:
2134 case GIMPLE_TRANSACTION:
2135 /* Walk the sub-statements. */
2136 *handled_ops_p = false;
2137 break;
2139 /* Find a sequence of form:
2141 GIMPLE_LABEL
2142 [...]
2143 <may fallthru stmt>
2144 GIMPLE_LABEL
2146 and possibly warn. */
2147 case GIMPLE_LABEL:
2149 /* Found a label. Skip all immediately following labels. */
2150 while (!gsi_end_p (*gsi_p)
2151 && gimple_code (gsi_stmt (*gsi_p)) == GIMPLE_LABEL)
2152 gsi_next_nondebug (gsi_p);
2154 /* There might be no more statements. */
2155 if (gsi_end_p (*gsi_p))
2156 return integer_zero_node;
2158 /* Vector of labels that fall through. */
2159 auto_vec <struct label_entry> labels;
2160 gimple *prev = collect_fallthrough_labels (gsi_p, &labels);
2162 /* There might be no more statements. */
2163 if (gsi_end_p (*gsi_p))
2164 return integer_zero_node;
2166 gimple *next = gsi_stmt (*gsi_p);
2167 tree label;
2168 /* If what follows is a label, then we may have a fallthrough. */
2169 if (gimple_code (next) == GIMPLE_LABEL
2170 && gimple_has_location (next)
2171 && (label = gimple_label_label (as_a <glabel *> (next)))
2172 && prev != NULL)
2174 struct label_entry *l;
2175 bool warned_p = false;
2176 if (!should_warn_for_implicit_fallthrough (gsi_p, label))
2177 /* Quiet. */;
2178 else if (gimple_code (prev) == GIMPLE_LABEL
2179 && (label = gimple_label_label (as_a <glabel *> (prev)))
2180 && (l = find_label_entry (&labels, label)))
2181 warned_p = warning_at (l->loc, OPT_Wimplicit_fallthrough_,
2182 "this statement may fall through");
2183 else if (!gimple_call_internal_p (prev, IFN_FALLTHROUGH)
2184 /* Try to be clever and don't warn when the statement
2185 can't actually fall through. */
2186 && gimple_stmt_may_fallthru (prev)
2187 && gimple_has_location (prev))
2188 warned_p = warning_at (gimple_location (prev),
2189 OPT_Wimplicit_fallthrough_,
2190 "this statement may fall through");
2191 if (warned_p)
2192 inform (gimple_location (next), "here");
2194 /* Mark this label as processed so as to prevent multiple
2195 warnings in nested switches. */
2196 FALLTHROUGH_LABEL_P (label) = true;
2198 /* So that next warn_implicit_fallthrough_r will start looking for
2199 a new sequence starting with this label. */
2200 gsi_prev (gsi_p);
2203 break;
2204 default:
2205 break;
2207 return NULL_TREE;
2210 /* Warn when a switch case falls through. */
2212 static void
2213 maybe_warn_implicit_fallthrough (gimple_seq seq)
2215 if (!warn_implicit_fallthrough)
2216 return;
2218 /* This warning is meant for C/C++/ObjC/ObjC++ only. */
2219 if (!(lang_GNU_C ()
2220 || lang_GNU_CXX ()
2221 || lang_GNU_OBJC ()))
2222 return;
2224 struct walk_stmt_info wi;
2225 memset (&wi, 0, sizeof (wi));
2226 walk_gimple_seq (seq, warn_implicit_fallthrough_r, NULL, &wi);
2229 /* Callback for walk_gimple_seq. */
2231 static tree
2232 expand_FALLTHROUGH_r (gimple_stmt_iterator *gsi_p, bool *handled_ops_p,
2233 struct walk_stmt_info *)
2235 gimple *stmt = gsi_stmt (*gsi_p);
2237 *handled_ops_p = true;
2238 switch (gimple_code (stmt))
2240 case GIMPLE_TRY:
2241 case GIMPLE_BIND:
2242 case GIMPLE_CATCH:
2243 case GIMPLE_EH_FILTER:
2244 case GIMPLE_TRANSACTION:
2245 /* Walk the sub-statements. */
2246 *handled_ops_p = false;
2247 break;
2248 case GIMPLE_CALL:
2249 if (gimple_call_internal_p (stmt, IFN_FALLTHROUGH))
2251 gsi_remove (gsi_p, true);
2252 if (gsi_end_p (*gsi_p))
2253 return integer_zero_node;
2255 bool found = false;
2256 location_t loc = gimple_location (stmt);
2258 gimple_stmt_iterator gsi2 = *gsi_p;
2259 stmt = gsi_stmt (gsi2);
2260 if (gimple_code (stmt) == GIMPLE_GOTO && !gimple_has_location (stmt))
2262 /* Go on until the artificial label. */
2263 tree goto_dest = gimple_goto_dest (stmt);
2264 for (; !gsi_end_p (gsi2); gsi_next (&gsi2))
2266 if (gimple_code (gsi_stmt (gsi2)) == GIMPLE_LABEL
2267 && gimple_label_label (as_a <glabel *> (gsi_stmt (gsi2)))
2268 == goto_dest)
2269 break;
2272 /* Not found? Stop. */
2273 if (gsi_end_p (gsi2))
2274 break;
2276 /* Look one past it. */
2277 gsi_next (&gsi2);
2280 /* We're looking for a case label or default label here. */
2281 while (!gsi_end_p (gsi2))
2283 stmt = gsi_stmt (gsi2);
2284 if (gimple_code (stmt) == GIMPLE_LABEL)
2286 tree label = gimple_label_label (as_a <glabel *> (stmt));
2287 if (gimple_has_location (stmt) && DECL_ARTIFICIAL (label))
2289 found = true;
2290 break;
2293 else if (gimple_call_internal_p (stmt, IFN_ASAN_MARK))
2295 else if (!is_gimple_debug (stmt))
2296 /* Anything else is not expected. */
2297 break;
2298 gsi_next (&gsi2);
2300 if (!found)
2301 warning_at (loc, 0, "attribute %<fallthrough%> not preceding "
2302 "a case label or default label");
2304 break;
2305 default:
2306 break;
2308 return NULL_TREE;
2311 /* Expand all FALLTHROUGH () calls in SEQ. */
2313 static void
2314 expand_FALLTHROUGH (gimple_seq *seq_p)
2316 struct walk_stmt_info wi;
2317 memset (&wi, 0, sizeof (wi));
2318 walk_gimple_seq_mod (seq_p, expand_FALLTHROUGH_r, NULL, &wi);
2322 /* Gimplify a SWITCH_EXPR, and collect the vector of labels it can
2323 branch to. */
2325 static enum gimplify_status
2326 gimplify_switch_expr (tree *expr_p, gimple_seq *pre_p)
2328 tree switch_expr = *expr_p;
2329 gimple_seq switch_body_seq = NULL;
2330 enum gimplify_status ret;
2331 tree index_type = TREE_TYPE (switch_expr);
2332 if (index_type == NULL_TREE)
2333 index_type = TREE_TYPE (SWITCH_COND (switch_expr));
2335 ret = gimplify_expr (&SWITCH_COND (switch_expr), pre_p, NULL, is_gimple_val,
2336 fb_rvalue);
2337 if (ret == GS_ERROR || ret == GS_UNHANDLED)
2338 return ret;
2340 if (SWITCH_BODY (switch_expr))
2342 vec<tree> labels;
2343 vec<tree> saved_labels;
2344 hash_set<tree> *saved_live_switch_vars = NULL;
2345 tree default_case = NULL_TREE;
2346 gswitch *switch_stmt;
2348 /* Save old labels, get new ones from body, then restore the old
2349 labels. Save all the things from the switch body to append after. */
2350 saved_labels = gimplify_ctxp->case_labels;
2351 gimplify_ctxp->case_labels.create (8);
2353 /* Do not create live_switch_vars if SWITCH_BODY is not a BIND_EXPR. */
2354 saved_live_switch_vars = gimplify_ctxp->live_switch_vars;
2355 tree_code body_type = TREE_CODE (SWITCH_BODY (switch_expr));
2356 if (body_type == BIND_EXPR || body_type == STATEMENT_LIST)
2357 gimplify_ctxp->live_switch_vars = new hash_set<tree> (4);
2358 else
2359 gimplify_ctxp->live_switch_vars = NULL;
2361 bool old_in_switch_expr = gimplify_ctxp->in_switch_expr;
2362 gimplify_ctxp->in_switch_expr = true;
2364 gimplify_stmt (&SWITCH_BODY (switch_expr), &switch_body_seq);
2366 gimplify_ctxp->in_switch_expr = old_in_switch_expr;
2367 maybe_warn_switch_unreachable (switch_body_seq);
2368 maybe_warn_implicit_fallthrough (switch_body_seq);
2369 /* Only do this for the outermost GIMPLE_SWITCH. */
2370 if (!gimplify_ctxp->in_switch_expr)
2371 expand_FALLTHROUGH (&switch_body_seq);
2373 labels = gimplify_ctxp->case_labels;
2374 gimplify_ctxp->case_labels = saved_labels;
2376 if (gimplify_ctxp->live_switch_vars)
2378 gcc_assert (gimplify_ctxp->live_switch_vars->elements () == 0);
2379 delete gimplify_ctxp->live_switch_vars;
2381 gimplify_ctxp->live_switch_vars = saved_live_switch_vars;
2383 preprocess_case_label_vec_for_gimple (labels, index_type,
2384 &default_case);
2386 bool add_bind = false;
2387 if (!default_case)
2389 glabel *new_default;
2391 default_case
2392 = build_case_label (NULL_TREE, NULL_TREE,
2393 create_artificial_label (UNKNOWN_LOCATION));
2394 if (old_in_switch_expr)
2396 SWITCH_BREAK_LABEL_P (CASE_LABEL (default_case)) = 1;
2397 add_bind = true;
2399 new_default = gimple_build_label (CASE_LABEL (default_case));
2400 gimplify_seq_add_stmt (&switch_body_seq, new_default);
2402 else if (old_in_switch_expr)
2404 gimple *last = gimple_seq_last_stmt (switch_body_seq);
2405 if (last && gimple_code (last) == GIMPLE_LABEL)
2407 tree label = gimple_label_label (as_a <glabel *> (last));
2408 if (SWITCH_BREAK_LABEL_P (label))
2409 add_bind = true;
2413 switch_stmt = gimple_build_switch (SWITCH_COND (switch_expr),
2414 default_case, labels);
2415 /* For the benefit of -Wimplicit-fallthrough, if switch_body_seq
2416 ends with a GIMPLE_LABEL holding SWITCH_BREAK_LABEL_P LABEL_DECL,
2417 wrap the GIMPLE_SWITCH up to that GIMPLE_LABEL into a GIMPLE_BIND,
2418 so that we can easily find the start and end of the switch
2419 statement. */
2420 if (add_bind)
2422 gimple_seq bind_body = NULL;
2423 gimplify_seq_add_stmt (&bind_body, switch_stmt);
2424 gimple_seq_add_seq (&bind_body, switch_body_seq);
2425 gbind *bind = gimple_build_bind (NULL_TREE, bind_body, NULL_TREE);
2426 gimple_set_location (bind, EXPR_LOCATION (switch_expr));
2427 gimplify_seq_add_stmt (pre_p, bind);
2429 else
2431 gimplify_seq_add_stmt (pre_p, switch_stmt);
2432 gimplify_seq_add_seq (pre_p, switch_body_seq);
2434 labels.release ();
2436 else
2437 gcc_unreachable ();
2439 return GS_ALL_DONE;
2442 /* Gimplify the LABEL_EXPR pointed to by EXPR_P. */
2444 static enum gimplify_status
2445 gimplify_label_expr (tree *expr_p, gimple_seq *pre_p)
2447 gcc_assert (decl_function_context (LABEL_EXPR_LABEL (*expr_p))
2448 == current_function_decl);
2450 tree label = LABEL_EXPR_LABEL (*expr_p);
2451 glabel *label_stmt = gimple_build_label (label);
2452 gimple_set_location (label_stmt, EXPR_LOCATION (*expr_p));
2453 gimplify_seq_add_stmt (pre_p, label_stmt);
2455 if (lookup_attribute ("cold", DECL_ATTRIBUTES (label)))
2456 gimple_seq_add_stmt (pre_p, gimple_build_predict (PRED_COLD_LABEL,
2457 NOT_TAKEN));
2458 else if (lookup_attribute ("hot", DECL_ATTRIBUTES (label)))
2459 gimple_seq_add_stmt (pre_p, gimple_build_predict (PRED_HOT_LABEL,
2460 TAKEN));
2462 return GS_ALL_DONE;
2465 /* Gimplify the CASE_LABEL_EXPR pointed to by EXPR_P. */
2467 static enum gimplify_status
2468 gimplify_case_label_expr (tree *expr_p, gimple_seq *pre_p)
2470 struct gimplify_ctx *ctxp;
2471 glabel *label_stmt;
2473 /* Invalid programs can play Duff's Device type games with, for example,
2474 #pragma omp parallel. At least in the C front end, we don't
2475 detect such invalid branches until after gimplification, in the
2476 diagnose_omp_blocks pass. */
2477 for (ctxp = gimplify_ctxp; ; ctxp = ctxp->prev_context)
2478 if (ctxp->case_labels.exists ())
2479 break;
2481 label_stmt = gimple_build_label (CASE_LABEL (*expr_p));
2482 gimple_set_location (label_stmt, EXPR_LOCATION (*expr_p));
2483 ctxp->case_labels.safe_push (*expr_p);
2484 gimplify_seq_add_stmt (pre_p, label_stmt);
2486 return GS_ALL_DONE;
2489 /* Build a GOTO to the LABEL_DECL pointed to by LABEL_P, building it first
2490 if necessary. */
2492 tree
2493 build_and_jump (tree *label_p)
2495 if (label_p == NULL)
2496 /* If there's nowhere to jump, just fall through. */
2497 return NULL_TREE;
2499 if (*label_p == NULL_TREE)
2501 tree label = create_artificial_label (UNKNOWN_LOCATION);
2502 *label_p = label;
2505 return build1 (GOTO_EXPR, void_type_node, *label_p);
2508 /* Gimplify an EXIT_EXPR by converting to a GOTO_EXPR inside a COND_EXPR.
2509 This also involves building a label to jump to and communicating it to
2510 gimplify_loop_expr through gimplify_ctxp->exit_label. */
2512 static enum gimplify_status
2513 gimplify_exit_expr (tree *expr_p)
2515 tree cond = TREE_OPERAND (*expr_p, 0);
2516 tree expr;
2518 expr = build_and_jump (&gimplify_ctxp->exit_label);
2519 expr = build3 (COND_EXPR, void_type_node, cond, expr, NULL_TREE);
2520 *expr_p = expr;
2522 return GS_OK;
2525 /* *EXPR_P is a COMPONENT_REF being used as an rvalue. If its type is
2526 different from its canonical type, wrap the whole thing inside a
2527 NOP_EXPR and force the type of the COMPONENT_REF to be the canonical
2528 type.
2530 The canonical type of a COMPONENT_REF is the type of the field being
2531 referenced--unless the field is a bit-field which can be read directly
2532 in a smaller mode, in which case the canonical type is the
2533 sign-appropriate type corresponding to that mode. */
2535 static void
2536 canonicalize_component_ref (tree *expr_p)
2538 tree expr = *expr_p;
2539 tree type;
2541 gcc_assert (TREE_CODE (expr) == COMPONENT_REF);
2543 if (INTEGRAL_TYPE_P (TREE_TYPE (expr)))
2544 type = TREE_TYPE (get_unwidened (expr, NULL_TREE));
2545 else
2546 type = TREE_TYPE (TREE_OPERAND (expr, 1));
2548 /* One could argue that all the stuff below is not necessary for
2549 the non-bitfield case and declare it a FE error if type
2550 adjustment would be needed. */
2551 if (TREE_TYPE (expr) != type)
2553 #ifdef ENABLE_TYPES_CHECKING
2554 tree old_type = TREE_TYPE (expr);
2555 #endif
2556 int type_quals;
2558 /* We need to preserve qualifiers and propagate them from
2559 operand 0. */
2560 type_quals = TYPE_QUALS (type)
2561 | TYPE_QUALS (TREE_TYPE (TREE_OPERAND (expr, 0)));
2562 if (TYPE_QUALS (type) != type_quals)
2563 type = build_qualified_type (TYPE_MAIN_VARIANT (type), type_quals);
2565 /* Set the type of the COMPONENT_REF to the underlying type. */
2566 TREE_TYPE (expr) = type;
2568 #ifdef ENABLE_TYPES_CHECKING
2569 /* It is now a FE error, if the conversion from the canonical
2570 type to the original expression type is not useless. */
2571 gcc_assert (useless_type_conversion_p (old_type, type));
2572 #endif
2576 /* If a NOP conversion is changing a pointer to array of foo to a pointer
2577 to foo, embed that change in the ADDR_EXPR by converting
2578 T array[U];
2579 (T *)&array
2581 &array[L]
2582 where L is the lower bound. For simplicity, only do this for constant
2583 lower bound.
2584 The constraint is that the type of &array[L] is trivially convertible
2585 to T *. */
2587 static void
2588 canonicalize_addr_expr (tree *expr_p)
2590 tree expr = *expr_p;
2591 tree addr_expr = TREE_OPERAND (expr, 0);
2592 tree datype, ddatype, pddatype;
2594 /* We simplify only conversions from an ADDR_EXPR to a pointer type. */
2595 if (!POINTER_TYPE_P (TREE_TYPE (expr))
2596 || TREE_CODE (addr_expr) != ADDR_EXPR)
2597 return;
2599 /* The addr_expr type should be a pointer to an array. */
2600 datype = TREE_TYPE (TREE_TYPE (addr_expr));
2601 if (TREE_CODE (datype) != ARRAY_TYPE)
2602 return;
2604 /* The pointer to element type shall be trivially convertible to
2605 the expression pointer type. */
2606 ddatype = TREE_TYPE (datype);
2607 pddatype = build_pointer_type (ddatype);
2608 if (!useless_type_conversion_p (TYPE_MAIN_VARIANT (TREE_TYPE (expr)),
2609 pddatype))
2610 return;
2612 /* The lower bound and element sizes must be constant. */
2613 if (!TYPE_SIZE_UNIT (ddatype)
2614 || TREE_CODE (TYPE_SIZE_UNIT (ddatype)) != INTEGER_CST
2615 || !TYPE_DOMAIN (datype) || !TYPE_MIN_VALUE (TYPE_DOMAIN (datype))
2616 || TREE_CODE (TYPE_MIN_VALUE (TYPE_DOMAIN (datype))) != INTEGER_CST)
2617 return;
2619 /* All checks succeeded. Build a new node to merge the cast. */
2620 *expr_p = build4 (ARRAY_REF, ddatype, TREE_OPERAND (addr_expr, 0),
2621 TYPE_MIN_VALUE (TYPE_DOMAIN (datype)),
2622 NULL_TREE, NULL_TREE);
2623 *expr_p = build1 (ADDR_EXPR, pddatype, *expr_p);
2625 /* We can have stripped a required restrict qualifier above. */
2626 if (!useless_type_conversion_p (TREE_TYPE (expr), TREE_TYPE (*expr_p)))
2627 *expr_p = fold_convert (TREE_TYPE (expr), *expr_p);
2630 /* *EXPR_P is a NOP_EXPR or CONVERT_EXPR. Remove it and/or other conversions
2631 underneath as appropriate. */
2633 static enum gimplify_status
2634 gimplify_conversion (tree *expr_p)
2636 location_t loc = EXPR_LOCATION (*expr_p);
2637 gcc_assert (CONVERT_EXPR_P (*expr_p));
2639 /* Then strip away all but the outermost conversion. */
2640 STRIP_SIGN_NOPS (TREE_OPERAND (*expr_p, 0));
2642 /* And remove the outermost conversion if it's useless. */
2643 if (tree_ssa_useless_type_conversion (*expr_p))
2644 *expr_p = TREE_OPERAND (*expr_p, 0);
2646 /* If we still have a conversion at the toplevel,
2647 then canonicalize some constructs. */
2648 if (CONVERT_EXPR_P (*expr_p))
2650 tree sub = TREE_OPERAND (*expr_p, 0);
2652 /* If a NOP conversion is changing the type of a COMPONENT_REF
2653 expression, then canonicalize its type now in order to expose more
2654 redundant conversions. */
2655 if (TREE_CODE (sub) == COMPONENT_REF)
2656 canonicalize_component_ref (&TREE_OPERAND (*expr_p, 0));
2658 /* If a NOP conversion is changing a pointer to array of foo
2659 to a pointer to foo, embed that change in the ADDR_EXPR. */
2660 else if (TREE_CODE (sub) == ADDR_EXPR)
2661 canonicalize_addr_expr (expr_p);
2664 /* If we have a conversion to a non-register type force the
2665 use of a VIEW_CONVERT_EXPR instead. */
2666 if (CONVERT_EXPR_P (*expr_p) && !is_gimple_reg_type (TREE_TYPE (*expr_p)))
2667 *expr_p = fold_build1_loc (loc, VIEW_CONVERT_EXPR, TREE_TYPE (*expr_p),
2668 TREE_OPERAND (*expr_p, 0));
2670 /* Canonicalize CONVERT_EXPR to NOP_EXPR. */
2671 if (TREE_CODE (*expr_p) == CONVERT_EXPR)
2672 TREE_SET_CODE (*expr_p, NOP_EXPR);
2674 return GS_OK;
2677 /* Nonlocal VLAs seen in the current function. */
2678 static hash_set<tree> *nonlocal_vlas;
2680 /* The VAR_DECLs created for nonlocal VLAs for debug info purposes. */
2681 static tree nonlocal_vla_vars;
2683 /* Gimplify a VAR_DECL or PARM_DECL. Return GS_OK if we expanded a
2684 DECL_VALUE_EXPR, and it's worth re-examining things. */
2686 static enum gimplify_status
2687 gimplify_var_or_parm_decl (tree *expr_p)
2689 tree decl = *expr_p;
2691 /* ??? If this is a local variable, and it has not been seen in any
2692 outer BIND_EXPR, then it's probably the result of a duplicate
2693 declaration, for which we've already issued an error. It would
2694 be really nice if the front end wouldn't leak these at all.
2695 Currently the only known culprit is C++ destructors, as seen
2696 in g++.old-deja/g++.jason/binding.C. */
2697 if (VAR_P (decl)
2698 && !DECL_SEEN_IN_BIND_EXPR_P (decl)
2699 && !TREE_STATIC (decl) && !DECL_EXTERNAL (decl)
2700 && decl_function_context (decl) == current_function_decl)
2702 gcc_assert (seen_error ());
2703 return GS_ERROR;
2706 /* When within an OMP context, notice uses of variables. */
2707 if (gimplify_omp_ctxp && omp_notice_variable (gimplify_omp_ctxp, decl, true))
2708 return GS_ALL_DONE;
2710 /* If the decl is an alias for another expression, substitute it now. */
2711 if (DECL_HAS_VALUE_EXPR_P (decl))
2713 tree value_expr = DECL_VALUE_EXPR (decl);
2715 /* For referenced nonlocal VLAs add a decl for debugging purposes
2716 to the current function. */
2717 if (VAR_P (decl)
2718 && TREE_CODE (DECL_SIZE_UNIT (decl)) != INTEGER_CST
2719 && nonlocal_vlas != NULL
2720 && TREE_CODE (value_expr) == INDIRECT_REF
2721 && TREE_CODE (TREE_OPERAND (value_expr, 0)) == VAR_DECL
2722 && decl_function_context (decl) != current_function_decl)
2724 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
2725 while (ctx
2726 && (ctx->region_type == ORT_WORKSHARE
2727 || ctx->region_type == ORT_SIMD
2728 || ctx->region_type == ORT_ACC))
2729 ctx = ctx->outer_context;
2730 if (!ctx && !nonlocal_vlas->add (decl))
2732 tree copy = copy_node (decl);
2734 lang_hooks.dup_lang_specific_decl (copy);
2735 SET_DECL_RTL (copy, 0);
2736 TREE_USED (copy) = 1;
2737 DECL_CHAIN (copy) = nonlocal_vla_vars;
2738 nonlocal_vla_vars = copy;
2739 SET_DECL_VALUE_EXPR (copy, unshare_expr (value_expr));
2740 DECL_HAS_VALUE_EXPR_P (copy) = 1;
2744 *expr_p = unshare_expr (value_expr);
2745 return GS_OK;
2748 return GS_ALL_DONE;
2751 /* Recalculate the value of the TREE_SIDE_EFFECTS flag for T. */
2753 static void
2754 recalculate_side_effects (tree t)
2756 enum tree_code code = TREE_CODE (t);
2757 int len = TREE_OPERAND_LENGTH (t);
2758 int i;
2760 switch (TREE_CODE_CLASS (code))
2762 case tcc_expression:
2763 switch (code)
2765 case INIT_EXPR:
2766 case MODIFY_EXPR:
2767 case VA_ARG_EXPR:
2768 case PREDECREMENT_EXPR:
2769 case PREINCREMENT_EXPR:
2770 case POSTDECREMENT_EXPR:
2771 case POSTINCREMENT_EXPR:
2772 /* All of these have side-effects, no matter what their
2773 operands are. */
2774 return;
2776 default:
2777 break;
2779 /* Fall through. */
2781 case tcc_comparison: /* a comparison expression */
2782 case tcc_unary: /* a unary arithmetic expression */
2783 case tcc_binary: /* a binary arithmetic expression */
2784 case tcc_reference: /* a reference */
2785 case tcc_vl_exp: /* a function call */
2786 TREE_SIDE_EFFECTS (t) = TREE_THIS_VOLATILE (t);
2787 for (i = 0; i < len; ++i)
2789 tree op = TREE_OPERAND (t, i);
2790 if (op && TREE_SIDE_EFFECTS (op))
2791 TREE_SIDE_EFFECTS (t) = 1;
2793 break;
2795 case tcc_constant:
2796 /* No side-effects. */
2797 return;
2799 default:
2800 gcc_unreachable ();
2804 /* Gimplify the COMPONENT_REF, ARRAY_REF, REALPART_EXPR or IMAGPART_EXPR
2805 node *EXPR_P.
2807 compound_lval
2808 : min_lval '[' val ']'
2809 | min_lval '.' ID
2810 | compound_lval '[' val ']'
2811 | compound_lval '.' ID
2813 This is not part of the original SIMPLE definition, which separates
2814 array and member references, but it seems reasonable to handle them
2815 together. Also, this way we don't run into problems with union
2816 aliasing; gcc requires that for accesses through a union to alias, the
2817 union reference must be explicit, which was not always the case when we
2818 were splitting up array and member refs.
2820 PRE_P points to the sequence where side effects that must happen before
2821 *EXPR_P should be stored.
2823 POST_P points to the sequence where side effects that must happen after
2824 *EXPR_P should be stored. */
2826 static enum gimplify_status
2827 gimplify_compound_lval (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p,
2828 fallback_t fallback)
2830 tree *p;
2831 enum gimplify_status ret = GS_ALL_DONE, tret;
2832 int i;
2833 location_t loc = EXPR_LOCATION (*expr_p);
2834 tree expr = *expr_p;
2836 /* Create a stack of the subexpressions so later we can walk them in
2837 order from inner to outer. */
2838 auto_vec<tree, 10> expr_stack;
2840 /* We can handle anything that get_inner_reference can deal with. */
2841 for (p = expr_p; ; p = &TREE_OPERAND (*p, 0))
2843 restart:
2844 /* Fold INDIRECT_REFs now to turn them into ARRAY_REFs. */
2845 if (TREE_CODE (*p) == INDIRECT_REF)
2846 *p = fold_indirect_ref_loc (loc, *p);
2848 if (handled_component_p (*p))
2850 /* Expand DECL_VALUE_EXPR now. In some cases that may expose
2851 additional COMPONENT_REFs. */
2852 else if ((VAR_P (*p) || TREE_CODE (*p) == PARM_DECL)
2853 && gimplify_var_or_parm_decl (p) == GS_OK)
2854 goto restart;
2855 else
2856 break;
2858 expr_stack.safe_push (*p);
2861 gcc_assert (expr_stack.length ());
2863 /* Now EXPR_STACK is a stack of pointers to all the refs we've
2864 walked through and P points to the innermost expression.
2866 Java requires that we elaborated nodes in source order. That
2867 means we must gimplify the inner expression followed by each of
2868 the indices, in order. But we can't gimplify the inner
2869 expression until we deal with any variable bounds, sizes, or
2870 positions in order to deal with PLACEHOLDER_EXPRs.
2872 So we do this in three steps. First we deal with the annotations
2873 for any variables in the components, then we gimplify the base,
2874 then we gimplify any indices, from left to right. */
2875 for (i = expr_stack.length () - 1; i >= 0; i--)
2877 tree t = expr_stack[i];
2879 if (TREE_CODE (t) == ARRAY_REF || TREE_CODE (t) == ARRAY_RANGE_REF)
2881 /* Gimplify the low bound and element type size and put them into
2882 the ARRAY_REF. If these values are set, they have already been
2883 gimplified. */
2884 if (TREE_OPERAND (t, 2) == NULL_TREE)
2886 tree low = unshare_expr (array_ref_low_bound (t));
2887 if (!is_gimple_min_invariant (low))
2889 TREE_OPERAND (t, 2) = low;
2890 tret = gimplify_expr (&TREE_OPERAND (t, 2), pre_p,
2891 post_p, is_gimple_reg,
2892 fb_rvalue);
2893 ret = MIN (ret, tret);
2896 else
2898 tret = gimplify_expr (&TREE_OPERAND (t, 2), pre_p, post_p,
2899 is_gimple_reg, fb_rvalue);
2900 ret = MIN (ret, tret);
2903 if (TREE_OPERAND (t, 3) == NULL_TREE)
2905 tree elmt_type = TREE_TYPE (TREE_TYPE (TREE_OPERAND (t, 0)));
2906 tree elmt_size = unshare_expr (array_ref_element_size (t));
2907 tree factor = size_int (TYPE_ALIGN_UNIT (elmt_type));
2909 /* Divide the element size by the alignment of the element
2910 type (above). */
2911 elmt_size
2912 = size_binop_loc (loc, EXACT_DIV_EXPR, elmt_size, factor);
2914 if (!is_gimple_min_invariant (elmt_size))
2916 TREE_OPERAND (t, 3) = elmt_size;
2917 tret = gimplify_expr (&TREE_OPERAND (t, 3), pre_p,
2918 post_p, is_gimple_reg,
2919 fb_rvalue);
2920 ret = MIN (ret, tret);
2923 else
2925 tret = gimplify_expr (&TREE_OPERAND (t, 3), pre_p, post_p,
2926 is_gimple_reg, fb_rvalue);
2927 ret = MIN (ret, tret);
2930 else if (TREE_CODE (t) == COMPONENT_REF)
2932 /* Set the field offset into T and gimplify it. */
2933 if (TREE_OPERAND (t, 2) == NULL_TREE)
2935 tree offset = unshare_expr (component_ref_field_offset (t));
2936 tree field = TREE_OPERAND (t, 1);
2937 tree factor
2938 = size_int (DECL_OFFSET_ALIGN (field) / BITS_PER_UNIT);
2940 /* Divide the offset by its alignment. */
2941 offset = size_binop_loc (loc, EXACT_DIV_EXPR, offset, factor);
2943 if (!is_gimple_min_invariant (offset))
2945 TREE_OPERAND (t, 2) = offset;
2946 tret = gimplify_expr (&TREE_OPERAND (t, 2), pre_p,
2947 post_p, is_gimple_reg,
2948 fb_rvalue);
2949 ret = MIN (ret, tret);
2952 else
2954 tret = gimplify_expr (&TREE_OPERAND (t, 2), pre_p, post_p,
2955 is_gimple_reg, fb_rvalue);
2956 ret = MIN (ret, tret);
2961 /* Step 2 is to gimplify the base expression. Make sure lvalue is set
2962 so as to match the min_lval predicate. Failure to do so may result
2963 in the creation of large aggregate temporaries. */
2964 tret = gimplify_expr (p, pre_p, post_p, is_gimple_min_lval,
2965 fallback | fb_lvalue);
2966 ret = MIN (ret, tret);
2968 /* And finally, the indices and operands of ARRAY_REF. During this
2969 loop we also remove any useless conversions. */
2970 for (; expr_stack.length () > 0; )
2972 tree t = expr_stack.pop ();
2974 if (TREE_CODE (t) == ARRAY_REF || TREE_CODE (t) == ARRAY_RANGE_REF)
2976 /* Gimplify the dimension. */
2977 if (!is_gimple_min_invariant (TREE_OPERAND (t, 1)))
2979 tret = gimplify_expr (&TREE_OPERAND (t, 1), pre_p, post_p,
2980 is_gimple_val, fb_rvalue);
2981 ret = MIN (ret, tret);
2985 STRIP_USELESS_TYPE_CONVERSION (TREE_OPERAND (t, 0));
2987 /* The innermost expression P may have originally had
2988 TREE_SIDE_EFFECTS set which would have caused all the outer
2989 expressions in *EXPR_P leading to P to also have had
2990 TREE_SIDE_EFFECTS set. */
2991 recalculate_side_effects (t);
2994 /* If the outermost expression is a COMPONENT_REF, canonicalize its type. */
2995 if ((fallback & fb_rvalue) && TREE_CODE (*expr_p) == COMPONENT_REF)
2997 canonicalize_component_ref (expr_p);
3000 expr_stack.release ();
3002 gcc_assert (*expr_p == expr || ret != GS_ALL_DONE);
3004 return ret;
3007 /* Gimplify the self modifying expression pointed to by EXPR_P
3008 (++, --, +=, -=).
3010 PRE_P points to the list where side effects that must happen before
3011 *EXPR_P should be stored.
3013 POST_P points to the list where side effects that must happen after
3014 *EXPR_P should be stored.
3016 WANT_VALUE is nonzero iff we want to use the value of this expression
3017 in another expression.
3019 ARITH_TYPE is the type the computation should be performed in. */
3021 enum gimplify_status
3022 gimplify_self_mod_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p,
3023 bool want_value, tree arith_type)
3025 enum tree_code code;
3026 tree lhs, lvalue, rhs, t1;
3027 gimple_seq post = NULL, *orig_post_p = post_p;
3028 bool postfix;
3029 enum tree_code arith_code;
3030 enum gimplify_status ret;
3031 location_t loc = EXPR_LOCATION (*expr_p);
3033 code = TREE_CODE (*expr_p);
3035 gcc_assert (code == POSTINCREMENT_EXPR || code == POSTDECREMENT_EXPR
3036 || code == PREINCREMENT_EXPR || code == PREDECREMENT_EXPR);
3038 /* Prefix or postfix? */
3039 if (code == POSTINCREMENT_EXPR || code == POSTDECREMENT_EXPR)
3040 /* Faster to treat as prefix if result is not used. */
3041 postfix = want_value;
3042 else
3043 postfix = false;
3045 /* For postfix, make sure the inner expression's post side effects
3046 are executed after side effects from this expression. */
3047 if (postfix)
3048 post_p = &post;
3050 /* Add or subtract? */
3051 if (code == PREINCREMENT_EXPR || code == POSTINCREMENT_EXPR)
3052 arith_code = PLUS_EXPR;
3053 else
3054 arith_code = MINUS_EXPR;
3056 /* Gimplify the LHS into a GIMPLE lvalue. */
3057 lvalue = TREE_OPERAND (*expr_p, 0);
3058 ret = gimplify_expr (&lvalue, pre_p, post_p, is_gimple_lvalue, fb_lvalue);
3059 if (ret == GS_ERROR)
3060 return ret;
3062 /* Extract the operands to the arithmetic operation. */
3063 lhs = lvalue;
3064 rhs = TREE_OPERAND (*expr_p, 1);
3066 /* For postfix operator, we evaluate the LHS to an rvalue and then use
3067 that as the result value and in the postqueue operation. */
3068 if (postfix)
3070 ret = gimplify_expr (&lhs, pre_p, post_p, is_gimple_val, fb_rvalue);
3071 if (ret == GS_ERROR)
3072 return ret;
3074 lhs = get_initialized_tmp_var (lhs, pre_p, NULL);
3077 /* For POINTERs increment, use POINTER_PLUS_EXPR. */
3078 if (POINTER_TYPE_P (TREE_TYPE (lhs)))
3080 rhs = convert_to_ptrofftype_loc (loc, rhs);
3081 if (arith_code == MINUS_EXPR)
3082 rhs = fold_build1_loc (loc, NEGATE_EXPR, TREE_TYPE (rhs), rhs);
3083 t1 = fold_build2 (POINTER_PLUS_EXPR, TREE_TYPE (*expr_p), lhs, rhs);
3085 else
3086 t1 = fold_convert (TREE_TYPE (*expr_p),
3087 fold_build2 (arith_code, arith_type,
3088 fold_convert (arith_type, lhs),
3089 fold_convert (arith_type, rhs)));
3091 if (postfix)
3093 gimplify_assign (lvalue, t1, pre_p);
3094 gimplify_seq_add_seq (orig_post_p, post);
3095 *expr_p = lhs;
3096 return GS_ALL_DONE;
3098 else
3100 *expr_p = build2 (MODIFY_EXPR, TREE_TYPE (lvalue), lvalue, t1);
3101 return GS_OK;
3105 /* If *EXPR_P has a variable sized type, wrap it in a WITH_SIZE_EXPR. */
3107 static void
3108 maybe_with_size_expr (tree *expr_p)
3110 tree expr = *expr_p;
3111 tree type = TREE_TYPE (expr);
3112 tree size;
3114 /* If we've already wrapped this or the type is error_mark_node, we can't do
3115 anything. */
3116 if (TREE_CODE (expr) == WITH_SIZE_EXPR
3117 || type == error_mark_node)
3118 return;
3120 /* If the size isn't known or is a constant, we have nothing to do. */
3121 size = TYPE_SIZE_UNIT (type);
3122 if (!size || poly_int_tree_p (size))
3123 return;
3125 /* Otherwise, make a WITH_SIZE_EXPR. */
3126 size = unshare_expr (size);
3127 size = SUBSTITUTE_PLACEHOLDER_IN_EXPR (size, expr);
3128 *expr_p = build2 (WITH_SIZE_EXPR, type, expr, size);
3131 /* Helper for gimplify_call_expr. Gimplify a single argument *ARG_P
3132 Store any side-effects in PRE_P. CALL_LOCATION is the location of
3133 the CALL_EXPR. If ALLOW_SSA is set the actual parameter may be
3134 gimplified to an SSA name. */
3136 enum gimplify_status
3137 gimplify_arg (tree *arg_p, gimple_seq *pre_p, location_t call_location,
3138 bool allow_ssa)
3140 bool (*test) (tree);
3141 fallback_t fb;
3143 /* In general, we allow lvalues for function arguments to avoid
3144 extra overhead of copying large aggregates out of even larger
3145 aggregates into temporaries only to copy the temporaries to
3146 the argument list. Make optimizers happy by pulling out to
3147 temporaries those types that fit in registers. */
3148 if (is_gimple_reg_type (TREE_TYPE (*arg_p)))
3149 test = is_gimple_val, fb = fb_rvalue;
3150 else
3152 test = is_gimple_lvalue, fb = fb_either;
3153 /* Also strip a TARGET_EXPR that would force an extra copy. */
3154 if (TREE_CODE (*arg_p) == TARGET_EXPR)
3156 tree init = TARGET_EXPR_INITIAL (*arg_p);
3157 if (init
3158 && !VOID_TYPE_P (TREE_TYPE (init)))
3159 *arg_p = init;
3163 /* If this is a variable sized type, we must remember the size. */
3164 maybe_with_size_expr (arg_p);
3166 /* FIXME diagnostics: This will mess up gcc.dg/Warray-bounds.c. */
3167 /* Make sure arguments have the same location as the function call
3168 itself. */
3169 protected_set_expr_location (*arg_p, call_location);
3171 /* There is a sequence point before a function call. Side effects in
3172 the argument list must occur before the actual call. So, when
3173 gimplifying arguments, force gimplify_expr to use an internal
3174 post queue which is then appended to the end of PRE_P. */
3175 return gimplify_expr (arg_p, pre_p, NULL, test, fb, allow_ssa);
3178 /* Don't fold inside offloading or taskreg regions: it can break code by
3179 adding decl references that weren't in the source. We'll do it during
3180 omplower pass instead. */
3182 static bool
3183 maybe_fold_stmt (gimple_stmt_iterator *gsi)
3185 struct gimplify_omp_ctx *ctx;
3186 for (ctx = gimplify_omp_ctxp; ctx; ctx = ctx->outer_context)
3187 if ((ctx->region_type & (ORT_TARGET | ORT_PARALLEL | ORT_TASK)) != 0)
3188 return false;
3189 return fold_stmt (gsi);
3192 /* Gimplify the CALL_EXPR node *EXPR_P into the GIMPLE sequence PRE_P.
3193 WANT_VALUE is true if the result of the call is desired. */
3195 static enum gimplify_status
3196 gimplify_call_expr (tree *expr_p, gimple_seq *pre_p, bool want_value)
3198 tree fndecl, parms, p, fnptrtype;
3199 enum gimplify_status ret;
3200 int i, nargs;
3201 gcall *call;
3202 bool builtin_va_start_p = false;
3203 location_t loc = EXPR_LOCATION (*expr_p);
3205 gcc_assert (TREE_CODE (*expr_p) == CALL_EXPR);
3207 /* For reliable diagnostics during inlining, it is necessary that
3208 every call_expr be annotated with file and line. */
3209 if (! EXPR_HAS_LOCATION (*expr_p))
3210 SET_EXPR_LOCATION (*expr_p, input_location);
3212 /* Gimplify internal functions created in the FEs. */
3213 if (CALL_EXPR_FN (*expr_p) == NULL_TREE)
3215 if (want_value)
3216 return GS_ALL_DONE;
3218 nargs = call_expr_nargs (*expr_p);
3219 enum internal_fn ifn = CALL_EXPR_IFN (*expr_p);
3220 auto_vec<tree> vargs (nargs);
3222 for (i = 0; i < nargs; i++)
3224 gimplify_arg (&CALL_EXPR_ARG (*expr_p, i), pre_p,
3225 EXPR_LOCATION (*expr_p));
3226 vargs.quick_push (CALL_EXPR_ARG (*expr_p, i));
3229 gcall *call = gimple_build_call_internal_vec (ifn, vargs);
3230 gimple_call_set_nothrow (call, TREE_NOTHROW (*expr_p));
3231 gimplify_seq_add_stmt (pre_p, call);
3232 return GS_ALL_DONE;
3235 /* This may be a call to a builtin function.
3237 Builtin function calls may be transformed into different
3238 (and more efficient) builtin function calls under certain
3239 circumstances. Unfortunately, gimplification can muck things
3240 up enough that the builtin expanders are not aware that certain
3241 transformations are still valid.
3243 So we attempt transformation/gimplification of the call before
3244 we gimplify the CALL_EXPR. At this time we do not manage to
3245 transform all calls in the same manner as the expanders do, but
3246 we do transform most of them. */
3247 fndecl = get_callee_fndecl (*expr_p);
3248 if (fndecl
3249 && DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_NORMAL)
3250 switch (DECL_FUNCTION_CODE (fndecl))
3252 CASE_BUILT_IN_ALLOCA:
3253 /* If the call has been built for a variable-sized object, then we
3254 want to restore the stack level when the enclosing BIND_EXPR is
3255 exited to reclaim the allocated space; otherwise, we precisely
3256 need to do the opposite and preserve the latest stack level. */
3257 if (CALL_ALLOCA_FOR_VAR_P (*expr_p))
3258 gimplify_ctxp->save_stack = true;
3259 else
3260 gimplify_ctxp->keep_stack = true;
3261 break;
3263 case BUILT_IN_VA_START:
3265 builtin_va_start_p = TRUE;
3266 if (call_expr_nargs (*expr_p) < 2)
3268 error ("too few arguments to function %<va_start%>");
3269 *expr_p = build_empty_stmt (EXPR_LOCATION (*expr_p));
3270 return GS_OK;
3273 if (fold_builtin_next_arg (*expr_p, true))
3275 *expr_p = build_empty_stmt (EXPR_LOCATION (*expr_p));
3276 return GS_OK;
3278 break;
3281 default:
3284 if (fndecl && DECL_BUILT_IN (fndecl))
3286 tree new_tree = fold_call_expr (input_location, *expr_p, !want_value);
3287 if (new_tree && new_tree != *expr_p)
3289 /* There was a transformation of this call which computes the
3290 same value, but in a more efficient way. Return and try
3291 again. */
3292 *expr_p = new_tree;
3293 return GS_OK;
3297 /* Remember the original function pointer type. */
3298 fnptrtype = TREE_TYPE (CALL_EXPR_FN (*expr_p));
3300 /* There is a sequence point before the call, so any side effects in
3301 the calling expression must occur before the actual call. Force
3302 gimplify_expr to use an internal post queue. */
3303 ret = gimplify_expr (&CALL_EXPR_FN (*expr_p), pre_p, NULL,
3304 is_gimple_call_addr, fb_rvalue);
3306 nargs = call_expr_nargs (*expr_p);
3308 /* Get argument types for verification. */
3309 fndecl = get_callee_fndecl (*expr_p);
3310 parms = NULL_TREE;
3311 if (fndecl)
3312 parms = TYPE_ARG_TYPES (TREE_TYPE (fndecl));
3313 else
3314 parms = TYPE_ARG_TYPES (TREE_TYPE (fnptrtype));
3316 if (fndecl && DECL_ARGUMENTS (fndecl))
3317 p = DECL_ARGUMENTS (fndecl);
3318 else if (parms)
3319 p = parms;
3320 else
3321 p = NULL_TREE;
3322 for (i = 0; i < nargs && p; i++, p = TREE_CHAIN (p))
3325 /* If the last argument is __builtin_va_arg_pack () and it is not
3326 passed as a named argument, decrease the number of CALL_EXPR
3327 arguments and set instead the CALL_EXPR_VA_ARG_PACK flag. */
3328 if (!p
3329 && i < nargs
3330 && TREE_CODE (CALL_EXPR_ARG (*expr_p, nargs - 1)) == CALL_EXPR)
3332 tree last_arg = CALL_EXPR_ARG (*expr_p, nargs - 1);
3333 tree last_arg_fndecl = get_callee_fndecl (last_arg);
3335 if (last_arg_fndecl
3336 && TREE_CODE (last_arg_fndecl) == FUNCTION_DECL
3337 && DECL_BUILT_IN_CLASS (last_arg_fndecl) == BUILT_IN_NORMAL
3338 && DECL_FUNCTION_CODE (last_arg_fndecl) == BUILT_IN_VA_ARG_PACK)
3340 tree call = *expr_p;
3342 --nargs;
3343 *expr_p = build_call_array_loc (loc, TREE_TYPE (call),
3344 CALL_EXPR_FN (call),
3345 nargs, CALL_EXPR_ARGP (call));
3347 /* Copy all CALL_EXPR flags, location and block, except
3348 CALL_EXPR_VA_ARG_PACK flag. */
3349 CALL_EXPR_STATIC_CHAIN (*expr_p) = CALL_EXPR_STATIC_CHAIN (call);
3350 CALL_EXPR_TAILCALL (*expr_p) = CALL_EXPR_TAILCALL (call);
3351 CALL_EXPR_RETURN_SLOT_OPT (*expr_p)
3352 = CALL_EXPR_RETURN_SLOT_OPT (call);
3353 CALL_FROM_THUNK_P (*expr_p) = CALL_FROM_THUNK_P (call);
3354 SET_EXPR_LOCATION (*expr_p, EXPR_LOCATION (call));
3356 /* Set CALL_EXPR_VA_ARG_PACK. */
3357 CALL_EXPR_VA_ARG_PACK (*expr_p) = 1;
3361 /* If the call returns twice then after building the CFG the call
3362 argument computations will no longer dominate the call because
3363 we add an abnormal incoming edge to the call. So do not use SSA
3364 vars there. */
3365 bool returns_twice = call_expr_flags (*expr_p) & ECF_RETURNS_TWICE;
3367 /* Gimplify the function arguments. */
3368 if (nargs > 0)
3370 for (i = (PUSH_ARGS_REVERSED ? nargs - 1 : 0);
3371 PUSH_ARGS_REVERSED ? i >= 0 : i < nargs;
3372 PUSH_ARGS_REVERSED ? i-- : i++)
3374 enum gimplify_status t;
3376 /* Avoid gimplifying the second argument to va_start, which needs to
3377 be the plain PARM_DECL. */
3378 if ((i != 1) || !builtin_va_start_p)
3380 t = gimplify_arg (&CALL_EXPR_ARG (*expr_p, i), pre_p,
3381 EXPR_LOCATION (*expr_p), ! returns_twice);
3383 if (t == GS_ERROR)
3384 ret = GS_ERROR;
3389 /* Gimplify the static chain. */
3390 if (CALL_EXPR_STATIC_CHAIN (*expr_p))
3392 if (fndecl && !DECL_STATIC_CHAIN (fndecl))
3393 CALL_EXPR_STATIC_CHAIN (*expr_p) = NULL;
3394 else
3396 enum gimplify_status t;
3397 t = gimplify_arg (&CALL_EXPR_STATIC_CHAIN (*expr_p), pre_p,
3398 EXPR_LOCATION (*expr_p), ! returns_twice);
3399 if (t == GS_ERROR)
3400 ret = GS_ERROR;
3404 /* Verify the function result. */
3405 if (want_value && fndecl
3406 && VOID_TYPE_P (TREE_TYPE (TREE_TYPE (fnptrtype))))
3408 error_at (loc, "using result of function returning %<void%>");
3409 ret = GS_ERROR;
3412 /* Try this again in case gimplification exposed something. */
3413 if (ret != GS_ERROR)
3415 tree new_tree = fold_call_expr (input_location, *expr_p, !want_value);
3417 if (new_tree && new_tree != *expr_p)
3419 /* There was a transformation of this call which computes the
3420 same value, but in a more efficient way. Return and try
3421 again. */
3422 *expr_p = new_tree;
3423 return GS_OK;
3426 else
3428 *expr_p = error_mark_node;
3429 return GS_ERROR;
3432 /* If the function is "const" or "pure", then clear TREE_SIDE_EFFECTS on its
3433 decl. This allows us to eliminate redundant or useless
3434 calls to "const" functions. */
3435 if (TREE_CODE (*expr_p) == CALL_EXPR)
3437 int flags = call_expr_flags (*expr_p);
3438 if (flags & (ECF_CONST | ECF_PURE)
3439 /* An infinite loop is considered a side effect. */
3440 && !(flags & (ECF_LOOPING_CONST_OR_PURE)))
3441 TREE_SIDE_EFFECTS (*expr_p) = 0;
3444 /* If the value is not needed by the caller, emit a new GIMPLE_CALL
3445 and clear *EXPR_P. Otherwise, leave *EXPR_P in its gimplified
3446 form and delegate the creation of a GIMPLE_CALL to
3447 gimplify_modify_expr. This is always possible because when
3448 WANT_VALUE is true, the caller wants the result of this call into
3449 a temporary, which means that we will emit an INIT_EXPR in
3450 internal_get_tmp_var which will then be handled by
3451 gimplify_modify_expr. */
3452 if (!want_value)
3454 /* The CALL_EXPR in *EXPR_P is already in GIMPLE form, so all we
3455 have to do is replicate it as a GIMPLE_CALL tuple. */
3456 gimple_stmt_iterator gsi;
3457 call = gimple_build_call_from_tree (*expr_p, fnptrtype);
3458 notice_special_calls (call);
3459 gimplify_seq_add_stmt (pre_p, call);
3460 gsi = gsi_last (*pre_p);
3461 maybe_fold_stmt (&gsi);
3462 *expr_p = NULL_TREE;
3464 else
3465 /* Remember the original function type. */
3466 CALL_EXPR_FN (*expr_p) = build1 (NOP_EXPR, fnptrtype,
3467 CALL_EXPR_FN (*expr_p));
3469 return ret;
3472 /* Handle shortcut semantics in the predicate operand of a COND_EXPR by
3473 rewriting it into multiple COND_EXPRs, and possibly GOTO_EXPRs.
3475 TRUE_LABEL_P and FALSE_LABEL_P point to the labels to jump to if the
3476 condition is true or false, respectively. If null, we should generate
3477 our own to skip over the evaluation of this specific expression.
3479 LOCUS is the source location of the COND_EXPR.
3481 This function is the tree equivalent of do_jump.
3483 shortcut_cond_r should only be called by shortcut_cond_expr. */
3485 static tree
3486 shortcut_cond_r (tree pred, tree *true_label_p, tree *false_label_p,
3487 location_t locus)
3489 tree local_label = NULL_TREE;
3490 tree t, expr = NULL;
3492 /* OK, it's not a simple case; we need to pull apart the COND_EXPR to
3493 retain the shortcut semantics. Just insert the gotos here;
3494 shortcut_cond_expr will append the real blocks later. */
3495 if (TREE_CODE (pred) == TRUTH_ANDIF_EXPR)
3497 location_t new_locus;
3499 /* Turn if (a && b) into
3501 if (a); else goto no;
3502 if (b) goto yes; else goto no;
3503 (no:) */
3505 if (false_label_p == NULL)
3506 false_label_p = &local_label;
3508 /* Keep the original source location on the first 'if'. */
3509 t = shortcut_cond_r (TREE_OPERAND (pred, 0), NULL, false_label_p, locus);
3510 append_to_statement_list (t, &expr);
3512 /* Set the source location of the && on the second 'if'. */
3513 new_locus = rexpr_location (pred, locus);
3514 t = shortcut_cond_r (TREE_OPERAND (pred, 1), true_label_p, false_label_p,
3515 new_locus);
3516 append_to_statement_list (t, &expr);
3518 else if (TREE_CODE (pred) == TRUTH_ORIF_EXPR)
3520 location_t new_locus;
3522 /* Turn if (a || b) into
3524 if (a) goto yes;
3525 if (b) goto yes; else goto no;
3526 (yes:) */
3528 if (true_label_p == NULL)
3529 true_label_p = &local_label;
3531 /* Keep the original source location on the first 'if'. */
3532 t = shortcut_cond_r (TREE_OPERAND (pred, 0), true_label_p, NULL, locus);
3533 append_to_statement_list (t, &expr);
3535 /* Set the source location of the || on the second 'if'. */
3536 new_locus = rexpr_location (pred, locus);
3537 t = shortcut_cond_r (TREE_OPERAND (pred, 1), true_label_p, false_label_p,
3538 new_locus);
3539 append_to_statement_list (t, &expr);
3541 else if (TREE_CODE (pred) == COND_EXPR
3542 && !VOID_TYPE_P (TREE_TYPE (TREE_OPERAND (pred, 1)))
3543 && !VOID_TYPE_P (TREE_TYPE (TREE_OPERAND (pred, 2))))
3545 location_t new_locus;
3547 /* As long as we're messing with gotos, turn if (a ? b : c) into
3548 if (a)
3549 if (b) goto yes; else goto no;
3550 else
3551 if (c) goto yes; else goto no;
3553 Don't do this if one of the arms has void type, which can happen
3554 in C++ when the arm is throw. */
3556 /* Keep the original source location on the first 'if'. Set the source
3557 location of the ? on the second 'if'. */
3558 new_locus = rexpr_location (pred, locus);
3559 expr = build3 (COND_EXPR, void_type_node, TREE_OPERAND (pred, 0),
3560 shortcut_cond_r (TREE_OPERAND (pred, 1), true_label_p,
3561 false_label_p, locus),
3562 shortcut_cond_r (TREE_OPERAND (pred, 2), true_label_p,
3563 false_label_p, new_locus));
3565 else
3567 expr = build3 (COND_EXPR, void_type_node, pred,
3568 build_and_jump (true_label_p),
3569 build_and_jump (false_label_p));
3570 SET_EXPR_LOCATION (expr, locus);
3573 if (local_label)
3575 t = build1 (LABEL_EXPR, void_type_node, local_label);
3576 append_to_statement_list (t, &expr);
3579 return expr;
3582 /* If EXPR is a GOTO_EXPR, return it. If it is a STATEMENT_LIST, skip
3583 any of its leading DEBUG_BEGIN_STMTS and recurse on the subsequent
3584 statement, if it is the last one. Otherwise, return NULL. */
3586 static tree
3587 find_goto (tree expr)
3589 if (!expr)
3590 return NULL_TREE;
3592 if (TREE_CODE (expr) == GOTO_EXPR)
3593 return expr;
3595 if (TREE_CODE (expr) != STATEMENT_LIST)
3596 return NULL_TREE;
3598 tree_stmt_iterator i = tsi_start (expr);
3600 while (!tsi_end_p (i) && TREE_CODE (tsi_stmt (i)) == DEBUG_BEGIN_STMT)
3601 tsi_next (&i);
3603 if (!tsi_one_before_end_p (i))
3604 return NULL_TREE;
3606 return find_goto (tsi_stmt (i));
3609 /* Same as find_goto, except that it returns NULL if the destination
3610 is not a LABEL_DECL. */
3612 static inline tree
3613 find_goto_label (tree expr)
3615 tree dest = find_goto (expr);
3616 if (dest && TREE_CODE (GOTO_DESTINATION (dest)) == LABEL_DECL)
3617 return dest;
3618 return NULL_TREE;
3621 /* Given a conditional expression EXPR with short-circuit boolean
3622 predicates using TRUTH_ANDIF_EXPR or TRUTH_ORIF_EXPR, break the
3623 predicate apart into the equivalent sequence of conditionals. */
3625 static tree
3626 shortcut_cond_expr (tree expr)
3628 tree pred = TREE_OPERAND (expr, 0);
3629 tree then_ = TREE_OPERAND (expr, 1);
3630 tree else_ = TREE_OPERAND (expr, 2);
3631 tree true_label, false_label, end_label, t;
3632 tree *true_label_p;
3633 tree *false_label_p;
3634 bool emit_end, emit_false, jump_over_else;
3635 bool then_se = then_ && TREE_SIDE_EFFECTS (then_);
3636 bool else_se = else_ && TREE_SIDE_EFFECTS (else_);
3638 /* First do simple transformations. */
3639 if (!else_se)
3641 /* If there is no 'else', turn
3642 if (a && b) then c
3643 into
3644 if (a) if (b) then c. */
3645 while (TREE_CODE (pred) == TRUTH_ANDIF_EXPR)
3647 /* Keep the original source location on the first 'if'. */
3648 location_t locus = EXPR_LOC_OR_LOC (expr, input_location);
3649 TREE_OPERAND (expr, 0) = TREE_OPERAND (pred, 1);
3650 /* Set the source location of the && on the second 'if'. */
3651 if (rexpr_has_location (pred))
3652 SET_EXPR_LOCATION (expr, rexpr_location (pred));
3653 then_ = shortcut_cond_expr (expr);
3654 then_se = then_ && TREE_SIDE_EFFECTS (then_);
3655 pred = TREE_OPERAND (pred, 0);
3656 expr = build3 (COND_EXPR, void_type_node, pred, then_, NULL_TREE);
3657 SET_EXPR_LOCATION (expr, locus);
3661 if (!then_se)
3663 /* If there is no 'then', turn
3664 if (a || b); else d
3665 into
3666 if (a); else if (b); else d. */
3667 while (TREE_CODE (pred) == TRUTH_ORIF_EXPR)
3669 /* Keep the original source location on the first 'if'. */
3670 location_t locus = EXPR_LOC_OR_LOC (expr, input_location);
3671 TREE_OPERAND (expr, 0) = TREE_OPERAND (pred, 1);
3672 /* Set the source location of the || on the second 'if'. */
3673 if (rexpr_has_location (pred))
3674 SET_EXPR_LOCATION (expr, rexpr_location (pred));
3675 else_ = shortcut_cond_expr (expr);
3676 else_se = else_ && TREE_SIDE_EFFECTS (else_);
3677 pred = TREE_OPERAND (pred, 0);
3678 expr = build3 (COND_EXPR, void_type_node, pred, NULL_TREE, else_);
3679 SET_EXPR_LOCATION (expr, locus);
3683 /* If we're done, great. */
3684 if (TREE_CODE (pred) != TRUTH_ANDIF_EXPR
3685 && TREE_CODE (pred) != TRUTH_ORIF_EXPR)
3686 return expr;
3688 /* Otherwise we need to mess with gotos. Change
3689 if (a) c; else d;
3691 if (a); else goto no;
3692 c; goto end;
3693 no: d; end:
3694 and recursively gimplify the condition. */
3696 true_label = false_label = end_label = NULL_TREE;
3698 /* If our arms just jump somewhere, hijack those labels so we don't
3699 generate jumps to jumps. */
3701 if (tree then_goto = find_goto_label (then_))
3703 true_label = GOTO_DESTINATION (then_goto);
3704 then_ = NULL;
3705 then_se = false;
3708 if (tree else_goto = find_goto_label (else_))
3710 false_label = GOTO_DESTINATION (else_goto);
3711 else_ = NULL;
3712 else_se = false;
3715 /* If we aren't hijacking a label for the 'then' branch, it falls through. */
3716 if (true_label)
3717 true_label_p = &true_label;
3718 else
3719 true_label_p = NULL;
3721 /* The 'else' branch also needs a label if it contains interesting code. */
3722 if (false_label || else_se)
3723 false_label_p = &false_label;
3724 else
3725 false_label_p = NULL;
3727 /* If there was nothing else in our arms, just forward the label(s). */
3728 if (!then_se && !else_se)
3729 return shortcut_cond_r (pred, true_label_p, false_label_p,
3730 EXPR_LOC_OR_LOC (expr, input_location));
3732 /* If our last subexpression already has a terminal label, reuse it. */
3733 if (else_se)
3734 t = expr_last (else_);
3735 else if (then_se)
3736 t = expr_last (then_);
3737 else
3738 t = NULL;
3739 if (t && TREE_CODE (t) == LABEL_EXPR)
3740 end_label = LABEL_EXPR_LABEL (t);
3742 /* If we don't care about jumping to the 'else' branch, jump to the end
3743 if the condition is false. */
3744 if (!false_label_p)
3745 false_label_p = &end_label;
3747 /* We only want to emit these labels if we aren't hijacking them. */
3748 emit_end = (end_label == NULL_TREE);
3749 emit_false = (false_label == NULL_TREE);
3751 /* We only emit the jump over the else clause if we have to--if the
3752 then clause may fall through. Otherwise we can wind up with a
3753 useless jump and a useless label at the end of gimplified code,
3754 which will cause us to think that this conditional as a whole
3755 falls through even if it doesn't. If we then inline a function
3756 which ends with such a condition, that can cause us to issue an
3757 inappropriate warning about control reaching the end of a
3758 non-void function. */
3759 jump_over_else = block_may_fallthru (then_);
3761 pred = shortcut_cond_r (pred, true_label_p, false_label_p,
3762 EXPR_LOC_OR_LOC (expr, input_location));
3764 expr = NULL;
3765 append_to_statement_list (pred, &expr);
3767 append_to_statement_list (then_, &expr);
3768 if (else_se)
3770 if (jump_over_else)
3772 tree last = expr_last (expr);
3773 t = build_and_jump (&end_label);
3774 if (rexpr_has_location (last))
3775 SET_EXPR_LOCATION (t, rexpr_location (last));
3776 append_to_statement_list (t, &expr);
3778 if (emit_false)
3780 t = build1 (LABEL_EXPR, void_type_node, false_label);
3781 append_to_statement_list (t, &expr);
3783 append_to_statement_list (else_, &expr);
3785 if (emit_end && end_label)
3787 t = build1 (LABEL_EXPR, void_type_node, end_label);
3788 append_to_statement_list (t, &expr);
3791 return expr;
3794 /* EXPR is used in a boolean context; make sure it has BOOLEAN_TYPE. */
3796 tree
3797 gimple_boolify (tree expr)
3799 tree type = TREE_TYPE (expr);
3800 location_t loc = EXPR_LOCATION (expr);
3802 if (TREE_CODE (expr) == NE_EXPR
3803 && TREE_CODE (TREE_OPERAND (expr, 0)) == CALL_EXPR
3804 && integer_zerop (TREE_OPERAND (expr, 1)))
3806 tree call = TREE_OPERAND (expr, 0);
3807 tree fn = get_callee_fndecl (call);
3809 /* For __builtin_expect ((long) (x), y) recurse into x as well
3810 if x is truth_value_p. */
3811 if (fn
3812 && DECL_BUILT_IN_CLASS (fn) == BUILT_IN_NORMAL
3813 && DECL_FUNCTION_CODE (fn) == BUILT_IN_EXPECT
3814 && call_expr_nargs (call) == 2)
3816 tree arg = CALL_EXPR_ARG (call, 0);
3817 if (arg)
3819 if (TREE_CODE (arg) == NOP_EXPR
3820 && TREE_TYPE (arg) == TREE_TYPE (call))
3821 arg = TREE_OPERAND (arg, 0);
3822 if (truth_value_p (TREE_CODE (arg)))
3824 arg = gimple_boolify (arg);
3825 CALL_EXPR_ARG (call, 0)
3826 = fold_convert_loc (loc, TREE_TYPE (call), arg);
3832 switch (TREE_CODE (expr))
3834 case TRUTH_AND_EXPR:
3835 case TRUTH_OR_EXPR:
3836 case TRUTH_XOR_EXPR:
3837 case TRUTH_ANDIF_EXPR:
3838 case TRUTH_ORIF_EXPR:
3839 /* Also boolify the arguments of truth exprs. */
3840 TREE_OPERAND (expr, 1) = gimple_boolify (TREE_OPERAND (expr, 1));
3841 /* FALLTHRU */
3843 case TRUTH_NOT_EXPR:
3844 TREE_OPERAND (expr, 0) = gimple_boolify (TREE_OPERAND (expr, 0));
3846 /* These expressions always produce boolean results. */
3847 if (TREE_CODE (type) != BOOLEAN_TYPE)
3848 TREE_TYPE (expr) = boolean_type_node;
3849 return expr;
3851 case ANNOTATE_EXPR:
3852 switch ((enum annot_expr_kind) TREE_INT_CST_LOW (TREE_OPERAND (expr, 1)))
3854 case annot_expr_ivdep_kind:
3855 case annot_expr_unroll_kind:
3856 case annot_expr_no_vector_kind:
3857 case annot_expr_vector_kind:
3858 case annot_expr_parallel_kind:
3859 TREE_OPERAND (expr, 0) = gimple_boolify (TREE_OPERAND (expr, 0));
3860 if (TREE_CODE (type) != BOOLEAN_TYPE)
3861 TREE_TYPE (expr) = boolean_type_node;
3862 return expr;
3863 default:
3864 gcc_unreachable ();
3867 default:
3868 if (COMPARISON_CLASS_P (expr))
3870 /* There expressions always prduce boolean results. */
3871 if (TREE_CODE (type) != BOOLEAN_TYPE)
3872 TREE_TYPE (expr) = boolean_type_node;
3873 return expr;
3875 /* Other expressions that get here must have boolean values, but
3876 might need to be converted to the appropriate mode. */
3877 if (TREE_CODE (type) == BOOLEAN_TYPE)
3878 return expr;
3879 return fold_convert_loc (loc, boolean_type_node, expr);
3883 /* Given a conditional expression *EXPR_P without side effects, gimplify
3884 its operands. New statements are inserted to PRE_P. */
3886 static enum gimplify_status
3887 gimplify_pure_cond_expr (tree *expr_p, gimple_seq *pre_p)
3889 tree expr = *expr_p, cond;
3890 enum gimplify_status ret, tret;
3891 enum tree_code code;
3893 cond = gimple_boolify (COND_EXPR_COND (expr));
3895 /* We need to handle && and || specially, as their gimplification
3896 creates pure cond_expr, thus leading to an infinite cycle otherwise. */
3897 code = TREE_CODE (cond);
3898 if (code == TRUTH_ANDIF_EXPR)
3899 TREE_SET_CODE (cond, TRUTH_AND_EXPR);
3900 else if (code == TRUTH_ORIF_EXPR)
3901 TREE_SET_CODE (cond, TRUTH_OR_EXPR);
3902 ret = gimplify_expr (&cond, pre_p, NULL, is_gimple_condexpr, fb_rvalue);
3903 COND_EXPR_COND (*expr_p) = cond;
3905 tret = gimplify_expr (&COND_EXPR_THEN (expr), pre_p, NULL,
3906 is_gimple_val, fb_rvalue);
3907 ret = MIN (ret, tret);
3908 tret = gimplify_expr (&COND_EXPR_ELSE (expr), pre_p, NULL,
3909 is_gimple_val, fb_rvalue);
3911 return MIN (ret, tret);
3914 /* Return true if evaluating EXPR could trap.
3915 EXPR is GENERIC, while tree_could_trap_p can be called
3916 only on GIMPLE. */
3918 static bool
3919 generic_expr_could_trap_p (tree expr)
3921 unsigned i, n;
3923 if (!expr || is_gimple_val (expr))
3924 return false;
3926 if (!EXPR_P (expr) || tree_could_trap_p (expr))
3927 return true;
3929 n = TREE_OPERAND_LENGTH (expr);
3930 for (i = 0; i < n; i++)
3931 if (generic_expr_could_trap_p (TREE_OPERAND (expr, i)))
3932 return true;
3934 return false;
3937 /* Convert the conditional expression pointed to by EXPR_P '(p) ? a : b;'
3938 into
3940 if (p) if (p)
3941 t1 = a; a;
3942 else or else
3943 t1 = b; b;
3946 The second form is used when *EXPR_P is of type void.
3948 PRE_P points to the list where side effects that must happen before
3949 *EXPR_P should be stored. */
3951 static enum gimplify_status
3952 gimplify_cond_expr (tree *expr_p, gimple_seq *pre_p, fallback_t fallback)
3954 tree expr = *expr_p;
3955 tree type = TREE_TYPE (expr);
3956 location_t loc = EXPR_LOCATION (expr);
3957 tree tmp, arm1, arm2;
3958 enum gimplify_status ret;
3959 tree label_true, label_false, label_cont;
3960 bool have_then_clause_p, have_else_clause_p;
3961 gcond *cond_stmt;
3962 enum tree_code pred_code;
3963 gimple_seq seq = NULL;
3965 /* If this COND_EXPR has a value, copy the values into a temporary within
3966 the arms. */
3967 if (!VOID_TYPE_P (type))
3969 tree then_ = TREE_OPERAND (expr, 1), else_ = TREE_OPERAND (expr, 2);
3970 tree result;
3972 /* If either an rvalue is ok or we do not require an lvalue, create the
3973 temporary. But we cannot do that if the type is addressable. */
3974 if (((fallback & fb_rvalue) || !(fallback & fb_lvalue))
3975 && !TREE_ADDRESSABLE (type))
3977 if (gimplify_ctxp->allow_rhs_cond_expr
3978 /* If either branch has side effects or could trap, it can't be
3979 evaluated unconditionally. */
3980 && !TREE_SIDE_EFFECTS (then_)
3981 && !generic_expr_could_trap_p (then_)
3982 && !TREE_SIDE_EFFECTS (else_)
3983 && !generic_expr_could_trap_p (else_))
3984 return gimplify_pure_cond_expr (expr_p, pre_p);
3986 tmp = create_tmp_var (type, "iftmp");
3987 result = tmp;
3990 /* Otherwise, only create and copy references to the values. */
3991 else
3993 type = build_pointer_type (type);
3995 if (!VOID_TYPE_P (TREE_TYPE (then_)))
3996 then_ = build_fold_addr_expr_loc (loc, then_);
3998 if (!VOID_TYPE_P (TREE_TYPE (else_)))
3999 else_ = build_fold_addr_expr_loc (loc, else_);
4001 expr
4002 = build3 (COND_EXPR, type, TREE_OPERAND (expr, 0), then_, else_);
4004 tmp = create_tmp_var (type, "iftmp");
4005 result = build_simple_mem_ref_loc (loc, tmp);
4008 /* Build the new then clause, `tmp = then_;'. But don't build the
4009 assignment if the value is void; in C++ it can be if it's a throw. */
4010 if (!VOID_TYPE_P (TREE_TYPE (then_)))
4011 TREE_OPERAND (expr, 1) = build2 (MODIFY_EXPR, type, tmp, then_);
4013 /* Similarly, build the new else clause, `tmp = else_;'. */
4014 if (!VOID_TYPE_P (TREE_TYPE (else_)))
4015 TREE_OPERAND (expr, 2) = build2 (MODIFY_EXPR, type, tmp, else_);
4017 TREE_TYPE (expr) = void_type_node;
4018 recalculate_side_effects (expr);
4020 /* Move the COND_EXPR to the prequeue. */
4021 gimplify_stmt (&expr, pre_p);
4023 *expr_p = result;
4024 return GS_ALL_DONE;
4027 /* Remove any COMPOUND_EXPR so the following cases will be caught. */
4028 STRIP_TYPE_NOPS (TREE_OPERAND (expr, 0));
4029 if (TREE_CODE (TREE_OPERAND (expr, 0)) == COMPOUND_EXPR)
4030 gimplify_compound_expr (&TREE_OPERAND (expr, 0), pre_p, true);
4032 /* Make sure the condition has BOOLEAN_TYPE. */
4033 TREE_OPERAND (expr, 0) = gimple_boolify (TREE_OPERAND (expr, 0));
4035 /* Break apart && and || conditions. */
4036 if (TREE_CODE (TREE_OPERAND (expr, 0)) == TRUTH_ANDIF_EXPR
4037 || TREE_CODE (TREE_OPERAND (expr, 0)) == TRUTH_ORIF_EXPR)
4039 expr = shortcut_cond_expr (expr);
4041 if (expr != *expr_p)
4043 *expr_p = expr;
4045 /* We can't rely on gimplify_expr to re-gimplify the expanded
4046 form properly, as cleanups might cause the target labels to be
4047 wrapped in a TRY_FINALLY_EXPR. To prevent that, we need to
4048 set up a conditional context. */
4049 gimple_push_condition ();
4050 gimplify_stmt (expr_p, &seq);
4051 gimple_pop_condition (pre_p);
4052 gimple_seq_add_seq (pre_p, seq);
4054 return GS_ALL_DONE;
4058 /* Now do the normal gimplification. */
4060 /* Gimplify condition. */
4061 ret = gimplify_expr (&TREE_OPERAND (expr, 0), pre_p, NULL, is_gimple_condexpr,
4062 fb_rvalue);
4063 if (ret == GS_ERROR)
4064 return GS_ERROR;
4065 gcc_assert (TREE_OPERAND (expr, 0) != NULL_TREE);
4067 gimple_push_condition ();
4069 have_then_clause_p = have_else_clause_p = false;
4070 label_true = find_goto_label (TREE_OPERAND (expr, 1));
4071 if (label_true
4072 && DECL_CONTEXT (GOTO_DESTINATION (label_true)) == current_function_decl
4073 /* For -O0 avoid this optimization if the COND_EXPR and GOTO_EXPR
4074 have different locations, otherwise we end up with incorrect
4075 location information on the branches. */
4076 && (optimize
4077 || !EXPR_HAS_LOCATION (expr)
4078 || !rexpr_has_location (label_true)
4079 || EXPR_LOCATION (expr) == rexpr_location (label_true)))
4081 have_then_clause_p = true;
4082 label_true = GOTO_DESTINATION (label_true);
4084 else
4085 label_true = create_artificial_label (UNKNOWN_LOCATION);
4086 label_false = find_goto_label (TREE_OPERAND (expr, 2));
4087 if (label_false
4088 && DECL_CONTEXT (GOTO_DESTINATION (label_false)) == current_function_decl
4089 /* For -O0 avoid this optimization if the COND_EXPR and GOTO_EXPR
4090 have different locations, otherwise we end up with incorrect
4091 location information on the branches. */
4092 && (optimize
4093 || !EXPR_HAS_LOCATION (expr)
4094 || !rexpr_has_location (label_false)
4095 || EXPR_LOCATION (expr) == rexpr_location (label_false)))
4097 have_else_clause_p = true;
4098 label_false = GOTO_DESTINATION (label_false);
4100 else
4101 label_false = create_artificial_label (UNKNOWN_LOCATION);
4103 gimple_cond_get_ops_from_tree (COND_EXPR_COND (expr), &pred_code, &arm1,
4104 &arm2);
4105 cond_stmt = gimple_build_cond (pred_code, arm1, arm2, label_true,
4106 label_false);
4107 gimple_set_no_warning (cond_stmt, TREE_NO_WARNING (COND_EXPR_COND (expr)));
4108 gimplify_seq_add_stmt (&seq, cond_stmt);
4109 gimple_stmt_iterator gsi = gsi_last (seq);
4110 maybe_fold_stmt (&gsi);
4112 label_cont = NULL_TREE;
4113 if (!have_then_clause_p)
4115 /* For if (...) {} else { code; } put label_true after
4116 the else block. */
4117 if (TREE_OPERAND (expr, 1) == NULL_TREE
4118 && !have_else_clause_p
4119 && TREE_OPERAND (expr, 2) != NULL_TREE)
4120 label_cont = label_true;
4121 else
4123 gimplify_seq_add_stmt (&seq, gimple_build_label (label_true));
4124 have_then_clause_p = gimplify_stmt (&TREE_OPERAND (expr, 1), &seq);
4125 /* For if (...) { code; } else {} or
4126 if (...) { code; } else goto label; or
4127 if (...) { code; return; } else { ... }
4128 label_cont isn't needed. */
4129 if (!have_else_clause_p
4130 && TREE_OPERAND (expr, 2) != NULL_TREE
4131 && gimple_seq_may_fallthru (seq))
4133 gimple *g;
4134 label_cont = create_artificial_label (UNKNOWN_LOCATION);
4136 g = gimple_build_goto (label_cont);
4138 /* GIMPLE_COND's are very low level; they have embedded
4139 gotos. This particular embedded goto should not be marked
4140 with the location of the original COND_EXPR, as it would
4141 correspond to the COND_EXPR's condition, not the ELSE or the
4142 THEN arms. To avoid marking it with the wrong location, flag
4143 it as "no location". */
4144 gimple_set_do_not_emit_location (g);
4146 gimplify_seq_add_stmt (&seq, g);
4150 if (!have_else_clause_p)
4152 gimplify_seq_add_stmt (&seq, gimple_build_label (label_false));
4153 have_else_clause_p = gimplify_stmt (&TREE_OPERAND (expr, 2), &seq);
4155 if (label_cont)
4156 gimplify_seq_add_stmt (&seq, gimple_build_label (label_cont));
4158 gimple_pop_condition (pre_p);
4159 gimple_seq_add_seq (pre_p, seq);
4161 if (ret == GS_ERROR)
4162 ; /* Do nothing. */
4163 else if (have_then_clause_p || have_else_clause_p)
4164 ret = GS_ALL_DONE;
4165 else
4167 /* Both arms are empty; replace the COND_EXPR with its predicate. */
4168 expr = TREE_OPERAND (expr, 0);
4169 gimplify_stmt (&expr, pre_p);
4172 *expr_p = NULL;
4173 return ret;
4176 /* Prepare the node pointed to by EXPR_P, an is_gimple_addressable expression,
4177 to be marked addressable.
4179 We cannot rely on such an expression being directly markable if a temporary
4180 has been created by the gimplification. In this case, we create another
4181 temporary and initialize it with a copy, which will become a store after we
4182 mark it addressable. This can happen if the front-end passed us something
4183 that it could not mark addressable yet, like a Fortran pass-by-reference
4184 parameter (int) floatvar. */
4186 static void
4187 prepare_gimple_addressable (tree *expr_p, gimple_seq *seq_p)
4189 while (handled_component_p (*expr_p))
4190 expr_p = &TREE_OPERAND (*expr_p, 0);
4191 if (is_gimple_reg (*expr_p))
4193 /* Do not allow an SSA name as the temporary. */
4194 tree var = get_initialized_tmp_var (*expr_p, seq_p, NULL, false);
4195 DECL_GIMPLE_REG_P (var) = 0;
4196 *expr_p = var;
4200 /* A subroutine of gimplify_modify_expr. Replace a MODIFY_EXPR with
4201 a call to __builtin_memcpy. */
4203 static enum gimplify_status
4204 gimplify_modify_expr_to_memcpy (tree *expr_p, tree size, bool want_value,
4205 gimple_seq *seq_p)
4207 tree t, to, to_ptr, from, from_ptr;
4208 gcall *gs;
4209 location_t loc = EXPR_LOCATION (*expr_p);
4211 to = TREE_OPERAND (*expr_p, 0);
4212 from = TREE_OPERAND (*expr_p, 1);
4214 /* Mark the RHS addressable. Beware that it may not be possible to do so
4215 directly if a temporary has been created by the gimplification. */
4216 prepare_gimple_addressable (&from, seq_p);
4218 mark_addressable (from);
4219 from_ptr = build_fold_addr_expr_loc (loc, from);
4220 gimplify_arg (&from_ptr, seq_p, loc);
4222 mark_addressable (to);
4223 to_ptr = build_fold_addr_expr_loc (loc, to);
4224 gimplify_arg (&to_ptr, seq_p, loc);
4226 t = builtin_decl_implicit (BUILT_IN_MEMCPY);
4228 gs = gimple_build_call (t, 3, to_ptr, from_ptr, size);
4230 if (want_value)
4232 /* tmp = memcpy() */
4233 t = create_tmp_var (TREE_TYPE (to_ptr));
4234 gimple_call_set_lhs (gs, t);
4235 gimplify_seq_add_stmt (seq_p, gs);
4237 *expr_p = build_simple_mem_ref (t);
4238 return GS_ALL_DONE;
4241 gimplify_seq_add_stmt (seq_p, gs);
4242 *expr_p = NULL;
4243 return GS_ALL_DONE;
4246 /* A subroutine of gimplify_modify_expr. Replace a MODIFY_EXPR with
4247 a call to __builtin_memset. In this case we know that the RHS is
4248 a CONSTRUCTOR with an empty element list. */
4250 static enum gimplify_status
4251 gimplify_modify_expr_to_memset (tree *expr_p, tree size, bool want_value,
4252 gimple_seq *seq_p)
4254 tree t, from, to, to_ptr;
4255 gcall *gs;
4256 location_t loc = EXPR_LOCATION (*expr_p);
4258 /* Assert our assumptions, to abort instead of producing wrong code
4259 silently if they are not met. Beware that the RHS CONSTRUCTOR might
4260 not be immediately exposed. */
4261 from = TREE_OPERAND (*expr_p, 1);
4262 if (TREE_CODE (from) == WITH_SIZE_EXPR)
4263 from = TREE_OPERAND (from, 0);
4265 gcc_assert (TREE_CODE (from) == CONSTRUCTOR
4266 && vec_safe_is_empty (CONSTRUCTOR_ELTS (from)));
4268 /* Now proceed. */
4269 to = TREE_OPERAND (*expr_p, 0);
4271 to_ptr = build_fold_addr_expr_loc (loc, to);
4272 gimplify_arg (&to_ptr, seq_p, loc);
4273 t = builtin_decl_implicit (BUILT_IN_MEMSET);
4275 gs = gimple_build_call (t, 3, to_ptr, integer_zero_node, size);
4277 if (want_value)
4279 /* tmp = memset() */
4280 t = create_tmp_var (TREE_TYPE (to_ptr));
4281 gimple_call_set_lhs (gs, t);
4282 gimplify_seq_add_stmt (seq_p, gs);
4284 *expr_p = build1 (INDIRECT_REF, TREE_TYPE (to), t);
4285 return GS_ALL_DONE;
4288 gimplify_seq_add_stmt (seq_p, gs);
4289 *expr_p = NULL;
4290 return GS_ALL_DONE;
4293 /* A subroutine of gimplify_init_ctor_preeval. Called via walk_tree,
4294 determine, cautiously, if a CONSTRUCTOR overlaps the lhs of an
4295 assignment. Return non-null if we detect a potential overlap. */
4297 struct gimplify_init_ctor_preeval_data
4299 /* The base decl of the lhs object. May be NULL, in which case we
4300 have to assume the lhs is indirect. */
4301 tree lhs_base_decl;
4303 /* The alias set of the lhs object. */
4304 alias_set_type lhs_alias_set;
4307 static tree
4308 gimplify_init_ctor_preeval_1 (tree *tp, int *walk_subtrees, void *xdata)
4310 struct gimplify_init_ctor_preeval_data *data
4311 = (struct gimplify_init_ctor_preeval_data *) xdata;
4312 tree t = *tp;
4314 /* If we find the base object, obviously we have overlap. */
4315 if (data->lhs_base_decl == t)
4316 return t;
4318 /* If the constructor component is indirect, determine if we have a
4319 potential overlap with the lhs. The only bits of information we
4320 have to go on at this point are addressability and alias sets. */
4321 if ((INDIRECT_REF_P (t)
4322 || TREE_CODE (t) == MEM_REF)
4323 && (!data->lhs_base_decl || TREE_ADDRESSABLE (data->lhs_base_decl))
4324 && alias_sets_conflict_p (data->lhs_alias_set, get_alias_set (t)))
4325 return t;
4327 /* If the constructor component is a call, determine if it can hide a
4328 potential overlap with the lhs through an INDIRECT_REF like above.
4329 ??? Ugh - this is completely broken. In fact this whole analysis
4330 doesn't look conservative. */
4331 if (TREE_CODE (t) == CALL_EXPR)
4333 tree type, fntype = TREE_TYPE (TREE_TYPE (CALL_EXPR_FN (t)));
4335 for (type = TYPE_ARG_TYPES (fntype); type; type = TREE_CHAIN (type))
4336 if (POINTER_TYPE_P (TREE_VALUE (type))
4337 && (!data->lhs_base_decl || TREE_ADDRESSABLE (data->lhs_base_decl))
4338 && alias_sets_conflict_p (data->lhs_alias_set,
4339 get_alias_set
4340 (TREE_TYPE (TREE_VALUE (type)))))
4341 return t;
4344 if (IS_TYPE_OR_DECL_P (t))
4345 *walk_subtrees = 0;
4346 return NULL;
4349 /* A subroutine of gimplify_init_constructor. Pre-evaluate EXPR,
4350 force values that overlap with the lhs (as described by *DATA)
4351 into temporaries. */
4353 static void
4354 gimplify_init_ctor_preeval (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p,
4355 struct gimplify_init_ctor_preeval_data *data)
4357 enum gimplify_status one;
4359 /* If the value is constant, then there's nothing to pre-evaluate. */
4360 if (TREE_CONSTANT (*expr_p))
4362 /* Ensure it does not have side effects, it might contain a reference to
4363 the object we're initializing. */
4364 gcc_assert (!TREE_SIDE_EFFECTS (*expr_p));
4365 return;
4368 /* If the type has non-trivial constructors, we can't pre-evaluate. */
4369 if (TREE_ADDRESSABLE (TREE_TYPE (*expr_p)))
4370 return;
4372 /* Recurse for nested constructors. */
4373 if (TREE_CODE (*expr_p) == CONSTRUCTOR)
4375 unsigned HOST_WIDE_INT ix;
4376 constructor_elt *ce;
4377 vec<constructor_elt, va_gc> *v = CONSTRUCTOR_ELTS (*expr_p);
4379 FOR_EACH_VEC_SAFE_ELT (v, ix, ce)
4380 gimplify_init_ctor_preeval (&ce->value, pre_p, post_p, data);
4382 return;
4385 /* If this is a variable sized type, we must remember the size. */
4386 maybe_with_size_expr (expr_p);
4388 /* Gimplify the constructor element to something appropriate for the rhs
4389 of a MODIFY_EXPR. Given that we know the LHS is an aggregate, we know
4390 the gimplifier will consider this a store to memory. Doing this
4391 gimplification now means that we won't have to deal with complicated
4392 language-specific trees, nor trees like SAVE_EXPR that can induce
4393 exponential search behavior. */
4394 one = gimplify_expr (expr_p, pre_p, post_p, is_gimple_mem_rhs, fb_rvalue);
4395 if (one == GS_ERROR)
4397 *expr_p = NULL;
4398 return;
4401 /* If we gimplified to a bare decl, we can be sure that it doesn't overlap
4402 with the lhs, since "a = { .x=a }" doesn't make sense. This will
4403 always be true for all scalars, since is_gimple_mem_rhs insists on a
4404 temporary variable for them. */
4405 if (DECL_P (*expr_p))
4406 return;
4408 /* If this is of variable size, we have no choice but to assume it doesn't
4409 overlap since we can't make a temporary for it. */
4410 if (TREE_CODE (TYPE_SIZE (TREE_TYPE (*expr_p))) != INTEGER_CST)
4411 return;
4413 /* Otherwise, we must search for overlap ... */
4414 if (!walk_tree (expr_p, gimplify_init_ctor_preeval_1, data, NULL))
4415 return;
4417 /* ... and if found, force the value into a temporary. */
4418 *expr_p = get_formal_tmp_var (*expr_p, pre_p);
4421 /* A subroutine of gimplify_init_ctor_eval. Create a loop for
4422 a RANGE_EXPR in a CONSTRUCTOR for an array.
4424 var = lower;
4425 loop_entry:
4426 object[var] = value;
4427 if (var == upper)
4428 goto loop_exit;
4429 var = var + 1;
4430 goto loop_entry;
4431 loop_exit:
4433 We increment var _after_ the loop exit check because we might otherwise
4434 fail if upper == TYPE_MAX_VALUE (type for upper).
4436 Note that we never have to deal with SAVE_EXPRs here, because this has
4437 already been taken care of for us, in gimplify_init_ctor_preeval(). */
4439 static void gimplify_init_ctor_eval (tree, vec<constructor_elt, va_gc> *,
4440 gimple_seq *, bool);
4442 static void
4443 gimplify_init_ctor_eval_range (tree object, tree lower, tree upper,
4444 tree value, tree array_elt_type,
4445 gimple_seq *pre_p, bool cleared)
4447 tree loop_entry_label, loop_exit_label, fall_thru_label;
4448 tree var, var_type, cref, tmp;
4450 loop_entry_label = create_artificial_label (UNKNOWN_LOCATION);
4451 loop_exit_label = create_artificial_label (UNKNOWN_LOCATION);
4452 fall_thru_label = create_artificial_label (UNKNOWN_LOCATION);
4454 /* Create and initialize the index variable. */
4455 var_type = TREE_TYPE (upper);
4456 var = create_tmp_var (var_type);
4457 gimplify_seq_add_stmt (pre_p, gimple_build_assign (var, lower));
4459 /* Add the loop entry label. */
4460 gimplify_seq_add_stmt (pre_p, gimple_build_label (loop_entry_label));
4462 /* Build the reference. */
4463 cref = build4 (ARRAY_REF, array_elt_type, unshare_expr (object),
4464 var, NULL_TREE, NULL_TREE);
4466 /* If we are a constructor, just call gimplify_init_ctor_eval to do
4467 the store. Otherwise just assign value to the reference. */
4469 if (TREE_CODE (value) == CONSTRUCTOR)
4470 /* NB we might have to call ourself recursively through
4471 gimplify_init_ctor_eval if the value is a constructor. */
4472 gimplify_init_ctor_eval (cref, CONSTRUCTOR_ELTS (value),
4473 pre_p, cleared);
4474 else
4475 gimplify_seq_add_stmt (pre_p, gimple_build_assign (cref, value));
4477 /* We exit the loop when the index var is equal to the upper bound. */
4478 gimplify_seq_add_stmt (pre_p,
4479 gimple_build_cond (EQ_EXPR, var, upper,
4480 loop_exit_label, fall_thru_label));
4482 gimplify_seq_add_stmt (pre_p, gimple_build_label (fall_thru_label));
4484 /* Otherwise, increment the index var... */
4485 tmp = build2 (PLUS_EXPR, var_type, var,
4486 fold_convert (var_type, integer_one_node));
4487 gimplify_seq_add_stmt (pre_p, gimple_build_assign (var, tmp));
4489 /* ...and jump back to the loop entry. */
4490 gimplify_seq_add_stmt (pre_p, gimple_build_goto (loop_entry_label));
4492 /* Add the loop exit label. */
4493 gimplify_seq_add_stmt (pre_p, gimple_build_label (loop_exit_label));
4496 /* Return true if FDECL is accessing a field that is zero sized. */
4498 static bool
4499 zero_sized_field_decl (const_tree fdecl)
4501 if (TREE_CODE (fdecl) == FIELD_DECL && DECL_SIZE (fdecl)
4502 && integer_zerop (DECL_SIZE (fdecl)))
4503 return true;
4504 return false;
4507 /* Return true if TYPE is zero sized. */
4509 static bool
4510 zero_sized_type (const_tree type)
4512 if (AGGREGATE_TYPE_P (type) && TYPE_SIZE (type)
4513 && integer_zerop (TYPE_SIZE (type)))
4514 return true;
4515 return false;
4518 /* A subroutine of gimplify_init_constructor. Generate individual
4519 MODIFY_EXPRs for a CONSTRUCTOR. OBJECT is the LHS against which the
4520 assignments should happen. ELTS is the CONSTRUCTOR_ELTS of the
4521 CONSTRUCTOR. CLEARED is true if the entire LHS object has been
4522 zeroed first. */
4524 static void
4525 gimplify_init_ctor_eval (tree object, vec<constructor_elt, va_gc> *elts,
4526 gimple_seq *pre_p, bool cleared)
4528 tree array_elt_type = NULL;
4529 unsigned HOST_WIDE_INT ix;
4530 tree purpose, value;
4532 if (TREE_CODE (TREE_TYPE (object)) == ARRAY_TYPE)
4533 array_elt_type = TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (object)));
4535 FOR_EACH_CONSTRUCTOR_ELT (elts, ix, purpose, value)
4537 tree cref;
4539 /* NULL values are created above for gimplification errors. */
4540 if (value == NULL)
4541 continue;
4543 if (cleared && initializer_zerop (value))
4544 continue;
4546 /* ??? Here's to hoping the front end fills in all of the indices,
4547 so we don't have to figure out what's missing ourselves. */
4548 gcc_assert (purpose);
4550 /* Skip zero-sized fields, unless value has side-effects. This can
4551 happen with calls to functions returning a zero-sized type, which
4552 we shouldn't discard. As a number of downstream passes don't
4553 expect sets of zero-sized fields, we rely on the gimplification of
4554 the MODIFY_EXPR we make below to drop the assignment statement. */
4555 if (! TREE_SIDE_EFFECTS (value) && zero_sized_field_decl (purpose))
4556 continue;
4558 /* If we have a RANGE_EXPR, we have to build a loop to assign the
4559 whole range. */
4560 if (TREE_CODE (purpose) == RANGE_EXPR)
4562 tree lower = TREE_OPERAND (purpose, 0);
4563 tree upper = TREE_OPERAND (purpose, 1);
4565 /* If the lower bound is equal to upper, just treat it as if
4566 upper was the index. */
4567 if (simple_cst_equal (lower, upper))
4568 purpose = upper;
4569 else
4571 gimplify_init_ctor_eval_range (object, lower, upper, value,
4572 array_elt_type, pre_p, cleared);
4573 continue;
4577 if (array_elt_type)
4579 /* Do not use bitsizetype for ARRAY_REF indices. */
4580 if (TYPE_DOMAIN (TREE_TYPE (object)))
4581 purpose
4582 = fold_convert (TREE_TYPE (TYPE_DOMAIN (TREE_TYPE (object))),
4583 purpose);
4584 cref = build4 (ARRAY_REF, array_elt_type, unshare_expr (object),
4585 purpose, NULL_TREE, NULL_TREE);
4587 else
4589 gcc_assert (TREE_CODE (purpose) == FIELD_DECL);
4590 cref = build3 (COMPONENT_REF, TREE_TYPE (purpose),
4591 unshare_expr (object), purpose, NULL_TREE);
4594 if (TREE_CODE (value) == CONSTRUCTOR
4595 && TREE_CODE (TREE_TYPE (value)) != VECTOR_TYPE)
4596 gimplify_init_ctor_eval (cref, CONSTRUCTOR_ELTS (value),
4597 pre_p, cleared);
4598 else
4600 tree init = build2 (INIT_EXPR, TREE_TYPE (cref), cref, value);
4601 gimplify_and_add (init, pre_p);
4602 ggc_free (init);
4607 /* Return the appropriate RHS predicate for this LHS. */
4609 gimple_predicate
4610 rhs_predicate_for (tree lhs)
4612 if (is_gimple_reg (lhs))
4613 return is_gimple_reg_rhs_or_call;
4614 else
4615 return is_gimple_mem_rhs_or_call;
4618 /* Return the initial guess for an appropriate RHS predicate for this LHS,
4619 before the LHS has been gimplified. */
4621 static gimple_predicate
4622 initial_rhs_predicate_for (tree lhs)
4624 if (is_gimple_reg_type (TREE_TYPE (lhs)))
4625 return is_gimple_reg_rhs_or_call;
4626 else
4627 return is_gimple_mem_rhs_or_call;
4630 /* Gimplify a C99 compound literal expression. This just means adding
4631 the DECL_EXPR before the current statement and using its anonymous
4632 decl instead. */
4634 static enum gimplify_status
4635 gimplify_compound_literal_expr (tree *expr_p, gimple_seq *pre_p,
4636 bool (*gimple_test_f) (tree),
4637 fallback_t fallback)
4639 tree decl_s = COMPOUND_LITERAL_EXPR_DECL_EXPR (*expr_p);
4640 tree decl = DECL_EXPR_DECL (decl_s);
4641 tree init = DECL_INITIAL (decl);
4642 /* Mark the decl as addressable if the compound literal
4643 expression is addressable now, otherwise it is marked too late
4644 after we gimplify the initialization expression. */
4645 if (TREE_ADDRESSABLE (*expr_p))
4646 TREE_ADDRESSABLE (decl) = 1;
4647 /* Otherwise, if we don't need an lvalue and have a literal directly
4648 substitute it. Check if it matches the gimple predicate, as
4649 otherwise we'd generate a new temporary, and we can as well just
4650 use the decl we already have. */
4651 else if (!TREE_ADDRESSABLE (decl)
4652 && init
4653 && (fallback & fb_lvalue) == 0
4654 && gimple_test_f (init))
4656 *expr_p = init;
4657 return GS_OK;
4660 /* Preliminarily mark non-addressed complex variables as eligible
4661 for promotion to gimple registers. We'll transform their uses
4662 as we find them. */
4663 if ((TREE_CODE (TREE_TYPE (decl)) == COMPLEX_TYPE
4664 || TREE_CODE (TREE_TYPE (decl)) == VECTOR_TYPE)
4665 && !TREE_THIS_VOLATILE (decl)
4666 && !needs_to_live_in_memory (decl))
4667 DECL_GIMPLE_REG_P (decl) = 1;
4669 /* If the decl is not addressable, then it is being used in some
4670 expression or on the right hand side of a statement, and it can
4671 be put into a readonly data section. */
4672 if (!TREE_ADDRESSABLE (decl) && (fallback & fb_lvalue) == 0)
4673 TREE_READONLY (decl) = 1;
4675 /* This decl isn't mentioned in the enclosing block, so add it to the
4676 list of temps. FIXME it seems a bit of a kludge to say that
4677 anonymous artificial vars aren't pushed, but everything else is. */
4678 if (DECL_NAME (decl) == NULL_TREE && !DECL_SEEN_IN_BIND_EXPR_P (decl))
4679 gimple_add_tmp_var (decl);
4681 gimplify_and_add (decl_s, pre_p);
4682 *expr_p = decl;
4683 return GS_OK;
4686 /* Optimize embedded COMPOUND_LITERAL_EXPRs within a CONSTRUCTOR,
4687 return a new CONSTRUCTOR if something changed. */
4689 static tree
4690 optimize_compound_literals_in_ctor (tree orig_ctor)
4692 tree ctor = orig_ctor;
4693 vec<constructor_elt, va_gc> *elts = CONSTRUCTOR_ELTS (ctor);
4694 unsigned int idx, num = vec_safe_length (elts);
4696 for (idx = 0; idx < num; idx++)
4698 tree value = (*elts)[idx].value;
4699 tree newval = value;
4700 if (TREE_CODE (value) == CONSTRUCTOR)
4701 newval = optimize_compound_literals_in_ctor (value);
4702 else if (TREE_CODE (value) == COMPOUND_LITERAL_EXPR)
4704 tree decl_s = COMPOUND_LITERAL_EXPR_DECL_EXPR (value);
4705 tree decl = DECL_EXPR_DECL (decl_s);
4706 tree init = DECL_INITIAL (decl);
4708 if (!TREE_ADDRESSABLE (value)
4709 && !TREE_ADDRESSABLE (decl)
4710 && init
4711 && TREE_CODE (init) == CONSTRUCTOR)
4712 newval = optimize_compound_literals_in_ctor (init);
4714 if (newval == value)
4715 continue;
4717 if (ctor == orig_ctor)
4719 ctor = copy_node (orig_ctor);
4720 CONSTRUCTOR_ELTS (ctor) = vec_safe_copy (elts);
4721 elts = CONSTRUCTOR_ELTS (ctor);
4723 (*elts)[idx].value = newval;
4725 return ctor;
4728 /* A subroutine of gimplify_modify_expr. Break out elements of a
4729 CONSTRUCTOR used as an initializer into separate MODIFY_EXPRs.
4731 Note that we still need to clear any elements that don't have explicit
4732 initializers, so if not all elements are initialized we keep the
4733 original MODIFY_EXPR, we just remove all of the constructor elements.
4735 If NOTIFY_TEMP_CREATION is true, do not gimplify, just return
4736 GS_ERROR if we would have to create a temporary when gimplifying
4737 this constructor. Otherwise, return GS_OK.
4739 If NOTIFY_TEMP_CREATION is false, just do the gimplification. */
4741 static enum gimplify_status
4742 gimplify_init_constructor (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p,
4743 bool want_value, bool notify_temp_creation)
4745 tree object, ctor, type;
4746 enum gimplify_status ret;
4747 vec<constructor_elt, va_gc> *elts;
4749 gcc_assert (TREE_CODE (TREE_OPERAND (*expr_p, 1)) == CONSTRUCTOR);
4751 if (!notify_temp_creation)
4753 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p, post_p,
4754 is_gimple_lvalue, fb_lvalue);
4755 if (ret == GS_ERROR)
4756 return ret;
4759 object = TREE_OPERAND (*expr_p, 0);
4760 ctor = TREE_OPERAND (*expr_p, 1)
4761 = optimize_compound_literals_in_ctor (TREE_OPERAND (*expr_p, 1));
4762 type = TREE_TYPE (ctor);
4763 elts = CONSTRUCTOR_ELTS (ctor);
4764 ret = GS_ALL_DONE;
4766 switch (TREE_CODE (type))
4768 case RECORD_TYPE:
4769 case UNION_TYPE:
4770 case QUAL_UNION_TYPE:
4771 case ARRAY_TYPE:
4773 struct gimplify_init_ctor_preeval_data preeval_data;
4774 HOST_WIDE_INT num_ctor_elements, num_nonzero_elements;
4775 bool cleared, complete_p, valid_const_initializer;
4777 /* Aggregate types must lower constructors to initialization of
4778 individual elements. The exception is that a CONSTRUCTOR node
4779 with no elements indicates zero-initialization of the whole. */
4780 if (vec_safe_is_empty (elts))
4782 if (notify_temp_creation)
4783 return GS_OK;
4784 break;
4787 /* Fetch information about the constructor to direct later processing.
4788 We might want to make static versions of it in various cases, and
4789 can only do so if it known to be a valid constant initializer. */
4790 valid_const_initializer
4791 = categorize_ctor_elements (ctor, &num_nonzero_elements,
4792 &num_ctor_elements, &complete_p);
4794 /* If a const aggregate variable is being initialized, then it
4795 should never be a lose to promote the variable to be static. */
4796 if (valid_const_initializer
4797 && num_nonzero_elements > 1
4798 && TREE_READONLY (object)
4799 && VAR_P (object)
4800 && (flag_merge_constants >= 2 || !TREE_ADDRESSABLE (object)))
4802 if (notify_temp_creation)
4803 return GS_ERROR;
4804 DECL_INITIAL (object) = ctor;
4805 TREE_STATIC (object) = 1;
4806 if (!DECL_NAME (object))
4807 DECL_NAME (object) = create_tmp_var_name ("C");
4808 walk_tree (&DECL_INITIAL (object), force_labels_r, NULL, NULL);
4810 /* ??? C++ doesn't automatically append a .<number> to the
4811 assembler name, and even when it does, it looks at FE private
4812 data structures to figure out what that number should be,
4813 which are not set for this variable. I suppose this is
4814 important for local statics for inline functions, which aren't
4815 "local" in the object file sense. So in order to get a unique
4816 TU-local symbol, we must invoke the lhd version now. */
4817 lhd_set_decl_assembler_name (object);
4819 *expr_p = NULL_TREE;
4820 break;
4823 /* If there are "lots" of initialized elements, even discounting
4824 those that are not address constants (and thus *must* be
4825 computed at runtime), then partition the constructor into
4826 constant and non-constant parts. Block copy the constant
4827 parts in, then generate code for the non-constant parts. */
4828 /* TODO. There's code in cp/typeck.c to do this. */
4830 if (int_size_in_bytes (TREE_TYPE (ctor)) < 0)
4831 /* store_constructor will ignore the clearing of variable-sized
4832 objects. Initializers for such objects must explicitly set
4833 every field that needs to be set. */
4834 cleared = false;
4835 else if (!complete_p && !CONSTRUCTOR_NO_CLEARING (ctor))
4836 /* If the constructor isn't complete, clear the whole object
4837 beforehand, unless CONSTRUCTOR_NO_CLEARING is set on it.
4839 ??? This ought not to be needed. For any element not present
4840 in the initializer, we should simply set them to zero. Except
4841 we'd need to *find* the elements that are not present, and that
4842 requires trickery to avoid quadratic compile-time behavior in
4843 large cases or excessive memory use in small cases. */
4844 cleared = true;
4845 else if (num_ctor_elements - num_nonzero_elements
4846 > CLEAR_RATIO (optimize_function_for_speed_p (cfun))
4847 && num_nonzero_elements < num_ctor_elements / 4)
4848 /* If there are "lots" of zeros, it's more efficient to clear
4849 the memory and then set the nonzero elements. */
4850 cleared = true;
4851 else
4852 cleared = false;
4854 /* If there are "lots" of initialized elements, and all of them
4855 are valid address constants, then the entire initializer can
4856 be dropped to memory, and then memcpy'd out. Don't do this
4857 for sparse arrays, though, as it's more efficient to follow
4858 the standard CONSTRUCTOR behavior of memset followed by
4859 individual element initialization. Also don't do this for small
4860 all-zero initializers (which aren't big enough to merit
4861 clearing), and don't try to make bitwise copies of
4862 TREE_ADDRESSABLE types.
4864 We cannot apply such transformation when compiling chkp static
4865 initializer because creation of initializer image in the memory
4866 will require static initialization of bounds for it. It should
4867 result in another gimplification of similar initializer and we
4868 may fall into infinite loop. */
4869 if (valid_const_initializer
4870 && !(cleared || num_nonzero_elements == 0)
4871 && !TREE_ADDRESSABLE (type)
4872 && (!current_function_decl
4873 || !lookup_attribute ("chkp ctor",
4874 DECL_ATTRIBUTES (current_function_decl))))
4876 HOST_WIDE_INT size = int_size_in_bytes (type);
4877 unsigned int align;
4879 /* ??? We can still get unbounded array types, at least
4880 from the C++ front end. This seems wrong, but attempt
4881 to work around it for now. */
4882 if (size < 0)
4884 size = int_size_in_bytes (TREE_TYPE (object));
4885 if (size >= 0)
4886 TREE_TYPE (ctor) = type = TREE_TYPE (object);
4889 /* Find the maximum alignment we can assume for the object. */
4890 /* ??? Make use of DECL_OFFSET_ALIGN. */
4891 if (DECL_P (object))
4892 align = DECL_ALIGN (object);
4893 else
4894 align = TYPE_ALIGN (type);
4896 /* Do a block move either if the size is so small as to make
4897 each individual move a sub-unit move on average, or if it
4898 is so large as to make individual moves inefficient. */
4899 if (size > 0
4900 && num_nonzero_elements > 1
4901 && (size < num_nonzero_elements
4902 || !can_move_by_pieces (size, align)))
4904 if (notify_temp_creation)
4905 return GS_ERROR;
4907 walk_tree (&ctor, force_labels_r, NULL, NULL);
4908 ctor = tree_output_constant_def (ctor);
4909 if (!useless_type_conversion_p (type, TREE_TYPE (ctor)))
4910 ctor = build1 (VIEW_CONVERT_EXPR, type, ctor);
4911 TREE_OPERAND (*expr_p, 1) = ctor;
4913 /* This is no longer an assignment of a CONSTRUCTOR, but
4914 we still may have processing to do on the LHS. So
4915 pretend we didn't do anything here to let that happen. */
4916 return GS_UNHANDLED;
4920 /* If the target is volatile, we have non-zero elements and more than
4921 one field to assign, initialize the target from a temporary. */
4922 if (TREE_THIS_VOLATILE (object)
4923 && !TREE_ADDRESSABLE (type)
4924 && num_nonzero_elements > 0
4925 && vec_safe_length (elts) > 1)
4927 tree temp = create_tmp_var (TYPE_MAIN_VARIANT (type));
4928 TREE_OPERAND (*expr_p, 0) = temp;
4929 *expr_p = build2 (COMPOUND_EXPR, TREE_TYPE (*expr_p),
4930 *expr_p,
4931 build2 (MODIFY_EXPR, void_type_node,
4932 object, temp));
4933 return GS_OK;
4936 if (notify_temp_creation)
4937 return GS_OK;
4939 /* If there are nonzero elements and if needed, pre-evaluate to capture
4940 elements overlapping with the lhs into temporaries. We must do this
4941 before clearing to fetch the values before they are zeroed-out. */
4942 if (num_nonzero_elements > 0 && TREE_CODE (*expr_p) != INIT_EXPR)
4944 preeval_data.lhs_base_decl = get_base_address (object);
4945 if (!DECL_P (preeval_data.lhs_base_decl))
4946 preeval_data.lhs_base_decl = NULL;
4947 preeval_data.lhs_alias_set = get_alias_set (object);
4949 gimplify_init_ctor_preeval (&TREE_OPERAND (*expr_p, 1),
4950 pre_p, post_p, &preeval_data);
4953 bool ctor_has_side_effects_p
4954 = TREE_SIDE_EFFECTS (TREE_OPERAND (*expr_p, 1));
4956 if (cleared)
4958 /* Zap the CONSTRUCTOR element list, which simplifies this case.
4959 Note that we still have to gimplify, in order to handle the
4960 case of variable sized types. Avoid shared tree structures. */
4961 CONSTRUCTOR_ELTS (ctor) = NULL;
4962 TREE_SIDE_EFFECTS (ctor) = 0;
4963 object = unshare_expr (object);
4964 gimplify_stmt (expr_p, pre_p);
4967 /* If we have not block cleared the object, or if there are nonzero
4968 elements in the constructor, or if the constructor has side effects,
4969 add assignments to the individual scalar fields of the object. */
4970 if (!cleared
4971 || num_nonzero_elements > 0
4972 || ctor_has_side_effects_p)
4973 gimplify_init_ctor_eval (object, elts, pre_p, cleared);
4975 *expr_p = NULL_TREE;
4977 break;
4979 case COMPLEX_TYPE:
4981 tree r, i;
4983 if (notify_temp_creation)
4984 return GS_OK;
4986 /* Extract the real and imaginary parts out of the ctor. */
4987 gcc_assert (elts->length () == 2);
4988 r = (*elts)[0].value;
4989 i = (*elts)[1].value;
4990 if (r == NULL || i == NULL)
4992 tree zero = build_zero_cst (TREE_TYPE (type));
4993 if (r == NULL)
4994 r = zero;
4995 if (i == NULL)
4996 i = zero;
4999 /* Complex types have either COMPLEX_CST or COMPLEX_EXPR to
5000 represent creation of a complex value. */
5001 if (TREE_CONSTANT (r) && TREE_CONSTANT (i))
5003 ctor = build_complex (type, r, i);
5004 TREE_OPERAND (*expr_p, 1) = ctor;
5006 else
5008 ctor = build2 (COMPLEX_EXPR, type, r, i);
5009 TREE_OPERAND (*expr_p, 1) = ctor;
5010 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 1),
5011 pre_p,
5012 post_p,
5013 rhs_predicate_for (TREE_OPERAND (*expr_p, 0)),
5014 fb_rvalue);
5017 break;
5019 case VECTOR_TYPE:
5021 unsigned HOST_WIDE_INT ix;
5022 constructor_elt *ce;
5024 if (notify_temp_creation)
5025 return GS_OK;
5027 /* Go ahead and simplify constant constructors to VECTOR_CST. */
5028 if (TREE_CONSTANT (ctor))
5030 bool constant_p = true;
5031 tree value;
5033 /* Even when ctor is constant, it might contain non-*_CST
5034 elements, such as addresses or trapping values like
5035 1.0/0.0 - 1.0/0.0. Such expressions don't belong
5036 in VECTOR_CST nodes. */
5037 FOR_EACH_CONSTRUCTOR_VALUE (elts, ix, value)
5038 if (!CONSTANT_CLASS_P (value))
5040 constant_p = false;
5041 break;
5044 if (constant_p)
5046 TREE_OPERAND (*expr_p, 1) = build_vector_from_ctor (type, elts);
5047 break;
5050 TREE_CONSTANT (ctor) = 0;
5053 /* Vector types use CONSTRUCTOR all the way through gimple
5054 compilation as a general initializer. */
5055 FOR_EACH_VEC_SAFE_ELT (elts, ix, ce)
5057 enum gimplify_status tret;
5058 tret = gimplify_expr (&ce->value, pre_p, post_p, is_gimple_val,
5059 fb_rvalue);
5060 if (tret == GS_ERROR)
5061 ret = GS_ERROR;
5062 else if (TREE_STATIC (ctor)
5063 && !initializer_constant_valid_p (ce->value,
5064 TREE_TYPE (ce->value)))
5065 TREE_STATIC (ctor) = 0;
5067 if (!is_gimple_reg (TREE_OPERAND (*expr_p, 0)))
5068 TREE_OPERAND (*expr_p, 1) = get_formal_tmp_var (ctor, pre_p);
5070 break;
5072 default:
5073 /* So how did we get a CONSTRUCTOR for a scalar type? */
5074 gcc_unreachable ();
5077 if (ret == GS_ERROR)
5078 return GS_ERROR;
5079 /* If we have gimplified both sides of the initializer but have
5080 not emitted an assignment, do so now. */
5081 if (*expr_p)
5083 tree lhs = TREE_OPERAND (*expr_p, 0);
5084 tree rhs = TREE_OPERAND (*expr_p, 1);
5085 if (want_value && object == lhs)
5086 lhs = unshare_expr (lhs);
5087 gassign *init = gimple_build_assign (lhs, rhs);
5088 gimplify_seq_add_stmt (pre_p, init);
5090 if (want_value)
5092 *expr_p = object;
5093 return GS_OK;
5095 else
5097 *expr_p = NULL;
5098 return GS_ALL_DONE;
5102 /* Given a pointer value OP0, return a simplified version of an
5103 indirection through OP0, or NULL_TREE if no simplification is
5104 possible. This may only be applied to a rhs of an expression.
5105 Note that the resulting type may be different from the type pointed
5106 to in the sense that it is still compatible from the langhooks
5107 point of view. */
5109 static tree
5110 gimple_fold_indirect_ref_rhs (tree t)
5112 return gimple_fold_indirect_ref (t);
5115 /* Subroutine of gimplify_modify_expr to do simplifications of
5116 MODIFY_EXPRs based on the code of the RHS. We loop for as long as
5117 something changes. */
5119 static enum gimplify_status
5120 gimplify_modify_expr_rhs (tree *expr_p, tree *from_p, tree *to_p,
5121 gimple_seq *pre_p, gimple_seq *post_p,
5122 bool want_value)
5124 enum gimplify_status ret = GS_UNHANDLED;
5125 bool changed;
5129 changed = false;
5130 switch (TREE_CODE (*from_p))
5132 case VAR_DECL:
5133 /* If we're assigning from a read-only variable initialized with
5134 a constructor, do the direct assignment from the constructor,
5135 but only if neither source nor target are volatile since this
5136 latter assignment might end up being done on a per-field basis. */
5137 if (DECL_INITIAL (*from_p)
5138 && TREE_READONLY (*from_p)
5139 && !TREE_THIS_VOLATILE (*from_p)
5140 && !TREE_THIS_VOLATILE (*to_p)
5141 && TREE_CODE (DECL_INITIAL (*from_p)) == CONSTRUCTOR)
5143 tree old_from = *from_p;
5144 enum gimplify_status subret;
5146 /* Move the constructor into the RHS. */
5147 *from_p = unshare_expr (DECL_INITIAL (*from_p));
5149 /* Let's see if gimplify_init_constructor will need to put
5150 it in memory. */
5151 subret = gimplify_init_constructor (expr_p, NULL, NULL,
5152 false, true);
5153 if (subret == GS_ERROR)
5155 /* If so, revert the change. */
5156 *from_p = old_from;
5158 else
5160 ret = GS_OK;
5161 changed = true;
5164 break;
5165 case INDIRECT_REF:
5167 /* If we have code like
5169 *(const A*)(A*)&x
5171 where the type of "x" is a (possibly cv-qualified variant
5172 of "A"), treat the entire expression as identical to "x".
5173 This kind of code arises in C++ when an object is bound
5174 to a const reference, and if "x" is a TARGET_EXPR we want
5175 to take advantage of the optimization below. */
5176 bool volatile_p = TREE_THIS_VOLATILE (*from_p);
5177 tree t = gimple_fold_indirect_ref_rhs (TREE_OPERAND (*from_p, 0));
5178 if (t)
5180 if (TREE_THIS_VOLATILE (t) != volatile_p)
5182 if (DECL_P (t))
5183 t = build_simple_mem_ref_loc (EXPR_LOCATION (*from_p),
5184 build_fold_addr_expr (t));
5185 if (REFERENCE_CLASS_P (t))
5186 TREE_THIS_VOLATILE (t) = volatile_p;
5188 *from_p = t;
5189 ret = GS_OK;
5190 changed = true;
5192 break;
5195 case TARGET_EXPR:
5197 /* If we are initializing something from a TARGET_EXPR, strip the
5198 TARGET_EXPR and initialize it directly, if possible. This can't
5199 be done if the initializer is void, since that implies that the
5200 temporary is set in some non-trivial way.
5202 ??? What about code that pulls out the temp and uses it
5203 elsewhere? I think that such code never uses the TARGET_EXPR as
5204 an initializer. If I'm wrong, we'll die because the temp won't
5205 have any RTL. In that case, I guess we'll need to replace
5206 references somehow. */
5207 tree init = TARGET_EXPR_INITIAL (*from_p);
5209 if (init
5210 && (TREE_CODE (*expr_p) != MODIFY_EXPR
5211 || !TARGET_EXPR_NO_ELIDE (*from_p))
5212 && !VOID_TYPE_P (TREE_TYPE (init)))
5214 *from_p = init;
5215 ret = GS_OK;
5216 changed = true;
5219 break;
5221 case COMPOUND_EXPR:
5222 /* Remove any COMPOUND_EXPR in the RHS so the following cases will be
5223 caught. */
5224 gimplify_compound_expr (from_p, pre_p, true);
5225 ret = GS_OK;
5226 changed = true;
5227 break;
5229 case CONSTRUCTOR:
5230 /* If we already made some changes, let the front end have a
5231 crack at this before we break it down. */
5232 if (ret != GS_UNHANDLED)
5233 break;
5234 /* If we're initializing from a CONSTRUCTOR, break this into
5235 individual MODIFY_EXPRs. */
5236 return gimplify_init_constructor (expr_p, pre_p, post_p, want_value,
5237 false);
5239 case COND_EXPR:
5240 /* If we're assigning to a non-register type, push the assignment
5241 down into the branches. This is mandatory for ADDRESSABLE types,
5242 since we cannot generate temporaries for such, but it saves a
5243 copy in other cases as well. */
5244 if (!is_gimple_reg_type (TREE_TYPE (*from_p)))
5246 /* This code should mirror the code in gimplify_cond_expr. */
5247 enum tree_code code = TREE_CODE (*expr_p);
5248 tree cond = *from_p;
5249 tree result = *to_p;
5251 ret = gimplify_expr (&result, pre_p, post_p,
5252 is_gimple_lvalue, fb_lvalue);
5253 if (ret != GS_ERROR)
5254 ret = GS_OK;
5256 /* If we are going to write RESULT more than once, clear
5257 TREE_READONLY flag, otherwise we might incorrectly promote
5258 the variable to static const and initialize it at compile
5259 time in one of the branches. */
5260 if (VAR_P (result)
5261 && TREE_TYPE (TREE_OPERAND (cond, 1)) != void_type_node
5262 && TREE_TYPE (TREE_OPERAND (cond, 2)) != void_type_node)
5263 TREE_READONLY (result) = 0;
5264 if (TREE_TYPE (TREE_OPERAND (cond, 1)) != void_type_node)
5265 TREE_OPERAND (cond, 1)
5266 = build2 (code, void_type_node, result,
5267 TREE_OPERAND (cond, 1));
5268 if (TREE_TYPE (TREE_OPERAND (cond, 2)) != void_type_node)
5269 TREE_OPERAND (cond, 2)
5270 = build2 (code, void_type_node, unshare_expr (result),
5271 TREE_OPERAND (cond, 2));
5273 TREE_TYPE (cond) = void_type_node;
5274 recalculate_side_effects (cond);
5276 if (want_value)
5278 gimplify_and_add (cond, pre_p);
5279 *expr_p = unshare_expr (result);
5281 else
5282 *expr_p = cond;
5283 return ret;
5285 break;
5287 case CALL_EXPR:
5288 /* For calls that return in memory, give *to_p as the CALL_EXPR's
5289 return slot so that we don't generate a temporary. */
5290 if (!CALL_EXPR_RETURN_SLOT_OPT (*from_p)
5291 && aggregate_value_p (*from_p, *from_p))
5293 bool use_target;
5295 if (!(rhs_predicate_for (*to_p))(*from_p))
5296 /* If we need a temporary, *to_p isn't accurate. */
5297 use_target = false;
5298 /* It's OK to use the return slot directly unless it's an NRV. */
5299 else if (TREE_CODE (*to_p) == RESULT_DECL
5300 && DECL_NAME (*to_p) == NULL_TREE
5301 && needs_to_live_in_memory (*to_p))
5302 use_target = true;
5303 else if (is_gimple_reg_type (TREE_TYPE (*to_p))
5304 || (DECL_P (*to_p) && DECL_REGISTER (*to_p)))
5305 /* Don't force regs into memory. */
5306 use_target = false;
5307 else if (TREE_CODE (*expr_p) == INIT_EXPR)
5308 /* It's OK to use the target directly if it's being
5309 initialized. */
5310 use_target = true;
5311 else if (TREE_CODE (TYPE_SIZE_UNIT (TREE_TYPE (*to_p)))
5312 != INTEGER_CST)
5313 /* Always use the target and thus RSO for variable-sized types.
5314 GIMPLE cannot deal with a variable-sized assignment
5315 embedded in a call statement. */
5316 use_target = true;
5317 else if (TREE_CODE (*to_p) != SSA_NAME
5318 && (!is_gimple_variable (*to_p)
5319 || needs_to_live_in_memory (*to_p)))
5320 /* Don't use the original target if it's already addressable;
5321 if its address escapes, and the called function uses the
5322 NRV optimization, a conforming program could see *to_p
5323 change before the called function returns; see c++/19317.
5324 When optimizing, the return_slot pass marks more functions
5325 as safe after we have escape info. */
5326 use_target = false;
5327 else
5328 use_target = true;
5330 if (use_target)
5332 CALL_EXPR_RETURN_SLOT_OPT (*from_p) = 1;
5333 mark_addressable (*to_p);
5336 break;
5338 case WITH_SIZE_EXPR:
5339 /* Likewise for calls that return an aggregate of non-constant size,
5340 since we would not be able to generate a temporary at all. */
5341 if (TREE_CODE (TREE_OPERAND (*from_p, 0)) == CALL_EXPR)
5343 *from_p = TREE_OPERAND (*from_p, 0);
5344 /* We don't change ret in this case because the
5345 WITH_SIZE_EXPR might have been added in
5346 gimplify_modify_expr, so returning GS_OK would lead to an
5347 infinite loop. */
5348 changed = true;
5350 break;
5352 /* If we're initializing from a container, push the initialization
5353 inside it. */
5354 case CLEANUP_POINT_EXPR:
5355 case BIND_EXPR:
5356 case STATEMENT_LIST:
5358 tree wrap = *from_p;
5359 tree t;
5361 ret = gimplify_expr (to_p, pre_p, post_p, is_gimple_min_lval,
5362 fb_lvalue);
5363 if (ret != GS_ERROR)
5364 ret = GS_OK;
5366 t = voidify_wrapper_expr (wrap, *expr_p);
5367 gcc_assert (t == *expr_p);
5369 if (want_value)
5371 gimplify_and_add (wrap, pre_p);
5372 *expr_p = unshare_expr (*to_p);
5374 else
5375 *expr_p = wrap;
5376 return GS_OK;
5379 case COMPOUND_LITERAL_EXPR:
5381 tree complit = TREE_OPERAND (*expr_p, 1);
5382 tree decl_s = COMPOUND_LITERAL_EXPR_DECL_EXPR (complit);
5383 tree decl = DECL_EXPR_DECL (decl_s);
5384 tree init = DECL_INITIAL (decl);
5386 /* struct T x = (struct T) { 0, 1, 2 } can be optimized
5387 into struct T x = { 0, 1, 2 } if the address of the
5388 compound literal has never been taken. */
5389 if (!TREE_ADDRESSABLE (complit)
5390 && !TREE_ADDRESSABLE (decl)
5391 && init)
5393 *expr_p = copy_node (*expr_p);
5394 TREE_OPERAND (*expr_p, 1) = init;
5395 return GS_OK;
5399 default:
5400 break;
5403 while (changed);
5405 return ret;
5409 /* Return true if T looks like a valid GIMPLE statement. */
5411 static bool
5412 is_gimple_stmt (tree t)
5414 const enum tree_code code = TREE_CODE (t);
5416 switch (code)
5418 case NOP_EXPR:
5419 /* The only valid NOP_EXPR is the empty statement. */
5420 return IS_EMPTY_STMT (t);
5422 case BIND_EXPR:
5423 case COND_EXPR:
5424 /* These are only valid if they're void. */
5425 return TREE_TYPE (t) == NULL || VOID_TYPE_P (TREE_TYPE (t));
5427 case SWITCH_EXPR:
5428 case GOTO_EXPR:
5429 case RETURN_EXPR:
5430 case LABEL_EXPR:
5431 case CASE_LABEL_EXPR:
5432 case TRY_CATCH_EXPR:
5433 case TRY_FINALLY_EXPR:
5434 case EH_FILTER_EXPR:
5435 case CATCH_EXPR:
5436 case ASM_EXPR:
5437 case STATEMENT_LIST:
5438 case OACC_PARALLEL:
5439 case OACC_KERNELS:
5440 case OACC_DATA:
5441 case OACC_HOST_DATA:
5442 case OACC_DECLARE:
5443 case OACC_UPDATE:
5444 case OACC_ENTER_DATA:
5445 case OACC_EXIT_DATA:
5446 case OACC_CACHE:
5447 case OMP_PARALLEL:
5448 case OMP_FOR:
5449 case OMP_SIMD:
5450 case OMP_DISTRIBUTE:
5451 case OACC_LOOP:
5452 case OMP_SECTIONS:
5453 case OMP_SECTION:
5454 case OMP_SINGLE:
5455 case OMP_MASTER:
5456 case OMP_TASKGROUP:
5457 case OMP_ORDERED:
5458 case OMP_CRITICAL:
5459 case OMP_TASK:
5460 case OMP_TARGET:
5461 case OMP_TARGET_DATA:
5462 case OMP_TARGET_UPDATE:
5463 case OMP_TARGET_ENTER_DATA:
5464 case OMP_TARGET_EXIT_DATA:
5465 case OMP_TASKLOOP:
5466 case OMP_TEAMS:
5467 /* These are always void. */
5468 return true;
5470 case CALL_EXPR:
5471 case MODIFY_EXPR:
5472 case PREDICT_EXPR:
5473 /* These are valid regardless of their type. */
5474 return true;
5476 default:
5477 return false;
5482 /* Promote partial stores to COMPLEX variables to total stores. *EXPR_P is
5483 a MODIFY_EXPR with a lhs of a REAL/IMAGPART_EXPR of a variable with
5484 DECL_GIMPLE_REG_P set.
5486 IMPORTANT NOTE: This promotion is performed by introducing a load of the
5487 other, unmodified part of the complex object just before the total store.
5488 As a consequence, if the object is still uninitialized, an undefined value
5489 will be loaded into a register, which may result in a spurious exception
5490 if the register is floating-point and the value happens to be a signaling
5491 NaN for example. Then the fully-fledged complex operations lowering pass
5492 followed by a DCE pass are necessary in order to fix things up. */
5494 static enum gimplify_status
5495 gimplify_modify_expr_complex_part (tree *expr_p, gimple_seq *pre_p,
5496 bool want_value)
5498 enum tree_code code, ocode;
5499 tree lhs, rhs, new_rhs, other, realpart, imagpart;
5501 lhs = TREE_OPERAND (*expr_p, 0);
5502 rhs = TREE_OPERAND (*expr_p, 1);
5503 code = TREE_CODE (lhs);
5504 lhs = TREE_OPERAND (lhs, 0);
5506 ocode = code == REALPART_EXPR ? IMAGPART_EXPR : REALPART_EXPR;
5507 other = build1 (ocode, TREE_TYPE (rhs), lhs);
5508 TREE_NO_WARNING (other) = 1;
5509 other = get_formal_tmp_var (other, pre_p);
5511 realpart = code == REALPART_EXPR ? rhs : other;
5512 imagpart = code == REALPART_EXPR ? other : rhs;
5514 if (TREE_CONSTANT (realpart) && TREE_CONSTANT (imagpart))
5515 new_rhs = build_complex (TREE_TYPE (lhs), realpart, imagpart);
5516 else
5517 new_rhs = build2 (COMPLEX_EXPR, TREE_TYPE (lhs), realpart, imagpart);
5519 gimplify_seq_add_stmt (pre_p, gimple_build_assign (lhs, new_rhs));
5520 *expr_p = (want_value) ? rhs : NULL_TREE;
5522 return GS_ALL_DONE;
5525 /* Gimplify the MODIFY_EXPR node pointed to by EXPR_P.
5527 modify_expr
5528 : varname '=' rhs
5529 | '*' ID '=' rhs
5531 PRE_P points to the list where side effects that must happen before
5532 *EXPR_P should be stored.
5534 POST_P points to the list where side effects that must happen after
5535 *EXPR_P should be stored.
5537 WANT_VALUE is nonzero iff we want to use the value of this expression
5538 in another expression. */
5540 static enum gimplify_status
5541 gimplify_modify_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p,
5542 bool want_value)
5544 tree *from_p = &TREE_OPERAND (*expr_p, 1);
5545 tree *to_p = &TREE_OPERAND (*expr_p, 0);
5546 enum gimplify_status ret = GS_UNHANDLED;
5547 gimple *assign;
5548 location_t loc = EXPR_LOCATION (*expr_p);
5549 gimple_stmt_iterator gsi;
5551 gcc_assert (TREE_CODE (*expr_p) == MODIFY_EXPR
5552 || TREE_CODE (*expr_p) == INIT_EXPR);
5554 /* Trying to simplify a clobber using normal logic doesn't work,
5555 so handle it here. */
5556 if (TREE_CLOBBER_P (*from_p))
5558 ret = gimplify_expr (to_p, pre_p, post_p, is_gimple_lvalue, fb_lvalue);
5559 if (ret == GS_ERROR)
5560 return ret;
5561 gcc_assert (!want_value
5562 && (VAR_P (*to_p) || TREE_CODE (*to_p) == MEM_REF));
5563 gimplify_seq_add_stmt (pre_p, gimple_build_assign (*to_p, *from_p));
5564 *expr_p = NULL;
5565 return GS_ALL_DONE;
5568 /* Insert pointer conversions required by the middle-end that are not
5569 required by the frontend. This fixes middle-end type checking for
5570 for example gcc.dg/redecl-6.c. */
5571 if (POINTER_TYPE_P (TREE_TYPE (*to_p)))
5573 STRIP_USELESS_TYPE_CONVERSION (*from_p);
5574 if (!useless_type_conversion_p (TREE_TYPE (*to_p), TREE_TYPE (*from_p)))
5575 *from_p = fold_convert_loc (loc, TREE_TYPE (*to_p), *from_p);
5578 /* See if any simplifications can be done based on what the RHS is. */
5579 ret = gimplify_modify_expr_rhs (expr_p, from_p, to_p, pre_p, post_p,
5580 want_value);
5581 if (ret != GS_UNHANDLED)
5582 return ret;
5584 /* For zero sized types only gimplify the left hand side and right hand
5585 side as statements and throw away the assignment. Do this after
5586 gimplify_modify_expr_rhs so we handle TARGET_EXPRs of addressable
5587 types properly. */
5588 if (zero_sized_type (TREE_TYPE (*from_p))
5589 && !want_value
5590 /* Don't do this for calls that return addressable types, expand_call
5591 relies on those having a lhs. */
5592 && !(TREE_ADDRESSABLE (TREE_TYPE (*from_p))
5593 && TREE_CODE (*from_p) == CALL_EXPR))
5595 gimplify_stmt (from_p, pre_p);
5596 gimplify_stmt (to_p, pre_p);
5597 *expr_p = NULL_TREE;
5598 return GS_ALL_DONE;
5601 /* If the value being copied is of variable width, compute the length
5602 of the copy into a WITH_SIZE_EXPR. Note that we need to do this
5603 before gimplifying any of the operands so that we can resolve any
5604 PLACEHOLDER_EXPRs in the size. Also note that the RTL expander uses
5605 the size of the expression to be copied, not of the destination, so
5606 that is what we must do here. */
5607 maybe_with_size_expr (from_p);
5609 /* As a special case, we have to temporarily allow for assignments
5610 with a CALL_EXPR on the RHS. Since in GIMPLE a function call is
5611 a toplevel statement, when gimplifying the GENERIC expression
5612 MODIFY_EXPR <a, CALL_EXPR <foo>>, we cannot create the tuple
5613 GIMPLE_ASSIGN <a, GIMPLE_CALL <foo>>.
5615 Instead, we need to create the tuple GIMPLE_CALL <a, foo>. To
5616 prevent gimplify_expr from trying to create a new temporary for
5617 foo's LHS, we tell it that it should only gimplify until it
5618 reaches the CALL_EXPR. On return from gimplify_expr, the newly
5619 created GIMPLE_CALL <foo> will be the last statement in *PRE_P
5620 and all we need to do here is set 'a' to be its LHS. */
5622 /* Gimplify the RHS first for C++17 and bug 71104. */
5623 gimple_predicate initial_pred = initial_rhs_predicate_for (*to_p);
5624 ret = gimplify_expr (from_p, pre_p, post_p, initial_pred, fb_rvalue);
5625 if (ret == GS_ERROR)
5626 return ret;
5628 /* Then gimplify the LHS. */
5629 /* If we gimplified the RHS to a CALL_EXPR and that call may return
5630 twice we have to make sure to gimplify into non-SSA as otherwise
5631 the abnormal edge added later will make those defs not dominate
5632 their uses.
5633 ??? Technically this applies only to the registers used in the
5634 resulting non-register *TO_P. */
5635 bool saved_into_ssa = gimplify_ctxp->into_ssa;
5636 if (saved_into_ssa
5637 && TREE_CODE (*from_p) == CALL_EXPR
5638 && call_expr_flags (*from_p) & ECF_RETURNS_TWICE)
5639 gimplify_ctxp->into_ssa = false;
5640 ret = gimplify_expr (to_p, pre_p, post_p, is_gimple_lvalue, fb_lvalue);
5641 gimplify_ctxp->into_ssa = saved_into_ssa;
5642 if (ret == GS_ERROR)
5643 return ret;
5645 /* Now that the LHS is gimplified, re-gimplify the RHS if our initial
5646 guess for the predicate was wrong. */
5647 gimple_predicate final_pred = rhs_predicate_for (*to_p);
5648 if (final_pred != initial_pred)
5650 ret = gimplify_expr (from_p, pre_p, post_p, final_pred, fb_rvalue);
5651 if (ret == GS_ERROR)
5652 return ret;
5655 /* In case of va_arg internal fn wrappped in a WITH_SIZE_EXPR, add the type
5656 size as argument to the call. */
5657 if (TREE_CODE (*from_p) == WITH_SIZE_EXPR)
5659 tree call = TREE_OPERAND (*from_p, 0);
5660 tree vlasize = TREE_OPERAND (*from_p, 1);
5662 if (TREE_CODE (call) == CALL_EXPR
5663 && CALL_EXPR_IFN (call) == IFN_VA_ARG)
5665 int nargs = call_expr_nargs (call);
5666 tree type = TREE_TYPE (call);
5667 tree ap = CALL_EXPR_ARG (call, 0);
5668 tree tag = CALL_EXPR_ARG (call, 1);
5669 tree aptag = CALL_EXPR_ARG (call, 2);
5670 tree newcall = build_call_expr_internal_loc (EXPR_LOCATION (call),
5671 IFN_VA_ARG, type,
5672 nargs + 1, ap, tag,
5673 aptag, vlasize);
5674 TREE_OPERAND (*from_p, 0) = newcall;
5678 /* Now see if the above changed *from_p to something we handle specially. */
5679 ret = gimplify_modify_expr_rhs (expr_p, from_p, to_p, pre_p, post_p,
5680 want_value);
5681 if (ret != GS_UNHANDLED)
5682 return ret;
5684 /* If we've got a variable sized assignment between two lvalues (i.e. does
5685 not involve a call), then we can make things a bit more straightforward
5686 by converting the assignment to memcpy or memset. */
5687 if (TREE_CODE (*from_p) == WITH_SIZE_EXPR)
5689 tree from = TREE_OPERAND (*from_p, 0);
5690 tree size = TREE_OPERAND (*from_p, 1);
5692 if (TREE_CODE (from) == CONSTRUCTOR)
5693 return gimplify_modify_expr_to_memset (expr_p, size, want_value, pre_p);
5695 if (is_gimple_addressable (from))
5697 *from_p = from;
5698 return gimplify_modify_expr_to_memcpy (expr_p, size, want_value,
5699 pre_p);
5703 /* Transform partial stores to non-addressable complex variables into
5704 total stores. This allows us to use real instead of virtual operands
5705 for these variables, which improves optimization. */
5706 if ((TREE_CODE (*to_p) == REALPART_EXPR
5707 || TREE_CODE (*to_p) == IMAGPART_EXPR)
5708 && is_gimple_reg (TREE_OPERAND (*to_p, 0)))
5709 return gimplify_modify_expr_complex_part (expr_p, pre_p, want_value);
5711 /* Try to alleviate the effects of the gimplification creating artificial
5712 temporaries (see for example is_gimple_reg_rhs) on the debug info, but
5713 make sure not to create DECL_DEBUG_EXPR links across functions. */
5714 if (!gimplify_ctxp->into_ssa
5715 && VAR_P (*from_p)
5716 && DECL_IGNORED_P (*from_p)
5717 && DECL_P (*to_p)
5718 && !DECL_IGNORED_P (*to_p)
5719 && decl_function_context (*to_p) == current_function_decl
5720 && decl_function_context (*from_p) == current_function_decl)
5722 if (!DECL_NAME (*from_p) && DECL_NAME (*to_p))
5723 DECL_NAME (*from_p)
5724 = create_tmp_var_name (IDENTIFIER_POINTER (DECL_NAME (*to_p)));
5725 DECL_HAS_DEBUG_EXPR_P (*from_p) = 1;
5726 SET_DECL_DEBUG_EXPR (*from_p, *to_p);
5729 if (want_value && TREE_THIS_VOLATILE (*to_p))
5730 *from_p = get_initialized_tmp_var (*from_p, pre_p, post_p);
5732 if (TREE_CODE (*from_p) == CALL_EXPR)
5734 /* Since the RHS is a CALL_EXPR, we need to create a GIMPLE_CALL
5735 instead of a GIMPLE_ASSIGN. */
5736 gcall *call_stmt;
5737 if (CALL_EXPR_FN (*from_p) == NULL_TREE)
5739 /* Gimplify internal functions created in the FEs. */
5740 int nargs = call_expr_nargs (*from_p), i;
5741 enum internal_fn ifn = CALL_EXPR_IFN (*from_p);
5742 auto_vec<tree> vargs (nargs);
5744 for (i = 0; i < nargs; i++)
5746 gimplify_arg (&CALL_EXPR_ARG (*from_p, i), pre_p,
5747 EXPR_LOCATION (*from_p));
5748 vargs.quick_push (CALL_EXPR_ARG (*from_p, i));
5750 call_stmt = gimple_build_call_internal_vec (ifn, vargs);
5751 gimple_call_set_nothrow (call_stmt, TREE_NOTHROW (*from_p));
5752 gimple_set_location (call_stmt, EXPR_LOCATION (*expr_p));
5754 else
5756 tree fnptrtype = TREE_TYPE (CALL_EXPR_FN (*from_p));
5757 CALL_EXPR_FN (*from_p) = TREE_OPERAND (CALL_EXPR_FN (*from_p), 0);
5758 STRIP_USELESS_TYPE_CONVERSION (CALL_EXPR_FN (*from_p));
5759 tree fndecl = get_callee_fndecl (*from_p);
5760 if (fndecl
5761 && DECL_BUILT_IN_CLASS (fndecl) == BUILT_IN_NORMAL
5762 && DECL_FUNCTION_CODE (fndecl) == BUILT_IN_EXPECT
5763 && call_expr_nargs (*from_p) == 3)
5764 call_stmt = gimple_build_call_internal (IFN_BUILTIN_EXPECT, 3,
5765 CALL_EXPR_ARG (*from_p, 0),
5766 CALL_EXPR_ARG (*from_p, 1),
5767 CALL_EXPR_ARG (*from_p, 2));
5768 else
5770 call_stmt = gimple_build_call_from_tree (*from_p, fnptrtype);
5773 notice_special_calls (call_stmt);
5774 if (!gimple_call_noreturn_p (call_stmt) || !should_remove_lhs_p (*to_p))
5775 gimple_call_set_lhs (call_stmt, *to_p);
5776 else if (TREE_CODE (*to_p) == SSA_NAME)
5777 /* The above is somewhat premature, avoid ICEing later for a
5778 SSA name w/o a definition. We may have uses in the GIMPLE IL.
5779 ??? This doesn't make it a default-def. */
5780 SSA_NAME_DEF_STMT (*to_p) = gimple_build_nop ();
5782 assign = call_stmt;
5784 else
5786 assign = gimple_build_assign (*to_p, *from_p);
5787 gimple_set_location (assign, EXPR_LOCATION (*expr_p));
5788 if (COMPARISON_CLASS_P (*from_p))
5789 gimple_set_no_warning (assign, TREE_NO_WARNING (*from_p));
5792 if (gimplify_ctxp->into_ssa && is_gimple_reg (*to_p))
5794 /* We should have got an SSA name from the start. */
5795 gcc_assert (TREE_CODE (*to_p) == SSA_NAME
5796 || ! gimple_in_ssa_p (cfun));
5799 gimplify_seq_add_stmt (pre_p, assign);
5800 gsi = gsi_last (*pre_p);
5801 maybe_fold_stmt (&gsi);
5803 if (want_value)
5805 *expr_p = TREE_THIS_VOLATILE (*to_p) ? *from_p : unshare_expr (*to_p);
5806 return GS_OK;
5808 else
5809 *expr_p = NULL;
5811 return GS_ALL_DONE;
5814 /* Gimplify a comparison between two variable-sized objects. Do this
5815 with a call to BUILT_IN_MEMCMP. */
5817 static enum gimplify_status
5818 gimplify_variable_sized_compare (tree *expr_p)
5820 location_t loc = EXPR_LOCATION (*expr_p);
5821 tree op0 = TREE_OPERAND (*expr_p, 0);
5822 tree op1 = TREE_OPERAND (*expr_p, 1);
5823 tree t, arg, dest, src, expr;
5825 arg = TYPE_SIZE_UNIT (TREE_TYPE (op0));
5826 arg = unshare_expr (arg);
5827 arg = SUBSTITUTE_PLACEHOLDER_IN_EXPR (arg, op0);
5828 src = build_fold_addr_expr_loc (loc, op1);
5829 dest = build_fold_addr_expr_loc (loc, op0);
5830 t = builtin_decl_implicit (BUILT_IN_MEMCMP);
5831 t = build_call_expr_loc (loc, t, 3, dest, src, arg);
5833 expr
5834 = build2 (TREE_CODE (*expr_p), TREE_TYPE (*expr_p), t, integer_zero_node);
5835 SET_EXPR_LOCATION (expr, loc);
5836 *expr_p = expr;
5838 return GS_OK;
5841 /* Gimplify a comparison between two aggregate objects of integral scalar
5842 mode as a comparison between the bitwise equivalent scalar values. */
5844 static enum gimplify_status
5845 gimplify_scalar_mode_aggregate_compare (tree *expr_p)
5847 location_t loc = EXPR_LOCATION (*expr_p);
5848 tree op0 = TREE_OPERAND (*expr_p, 0);
5849 tree op1 = TREE_OPERAND (*expr_p, 1);
5851 tree type = TREE_TYPE (op0);
5852 tree scalar_type = lang_hooks.types.type_for_mode (TYPE_MODE (type), 1);
5854 op0 = fold_build1_loc (loc, VIEW_CONVERT_EXPR, scalar_type, op0);
5855 op1 = fold_build1_loc (loc, VIEW_CONVERT_EXPR, scalar_type, op1);
5857 *expr_p
5858 = fold_build2_loc (loc, TREE_CODE (*expr_p), TREE_TYPE (*expr_p), op0, op1);
5860 return GS_OK;
5863 /* Gimplify an expression sequence. This function gimplifies each
5864 expression and rewrites the original expression with the last
5865 expression of the sequence in GIMPLE form.
5867 PRE_P points to the list where the side effects for all the
5868 expressions in the sequence will be emitted.
5870 WANT_VALUE is true when the result of the last COMPOUND_EXPR is used. */
5872 static enum gimplify_status
5873 gimplify_compound_expr (tree *expr_p, gimple_seq *pre_p, bool want_value)
5875 tree t = *expr_p;
5879 tree *sub_p = &TREE_OPERAND (t, 0);
5881 if (TREE_CODE (*sub_p) == COMPOUND_EXPR)
5882 gimplify_compound_expr (sub_p, pre_p, false);
5883 else
5884 gimplify_stmt (sub_p, pre_p);
5886 t = TREE_OPERAND (t, 1);
5888 while (TREE_CODE (t) == COMPOUND_EXPR);
5890 *expr_p = t;
5891 if (want_value)
5892 return GS_OK;
5893 else
5895 gimplify_stmt (expr_p, pre_p);
5896 return GS_ALL_DONE;
5900 /* Gimplify a SAVE_EXPR node. EXPR_P points to the expression to
5901 gimplify. After gimplification, EXPR_P will point to a new temporary
5902 that holds the original value of the SAVE_EXPR node.
5904 PRE_P points to the list where side effects that must happen before
5905 *EXPR_P should be stored. */
5907 static enum gimplify_status
5908 gimplify_save_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p)
5910 enum gimplify_status ret = GS_ALL_DONE;
5911 tree val;
5913 gcc_assert (TREE_CODE (*expr_p) == SAVE_EXPR);
5914 val = TREE_OPERAND (*expr_p, 0);
5916 /* If the SAVE_EXPR has not been resolved, then evaluate it once. */
5917 if (!SAVE_EXPR_RESOLVED_P (*expr_p))
5919 /* The operand may be a void-valued expression. It is
5920 being executed only for its side-effects. */
5921 if (TREE_TYPE (val) == void_type_node)
5923 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p, post_p,
5924 is_gimple_stmt, fb_none);
5925 val = NULL;
5927 else
5928 /* The temporary may not be an SSA name as later abnormal and EH
5929 control flow may invalidate use/def domination. */
5930 val = get_initialized_tmp_var (val, pre_p, post_p, false);
5932 TREE_OPERAND (*expr_p, 0) = val;
5933 SAVE_EXPR_RESOLVED_P (*expr_p) = 1;
5936 *expr_p = val;
5938 return ret;
5941 /* Rewrite the ADDR_EXPR node pointed to by EXPR_P
5943 unary_expr
5944 : ...
5945 | '&' varname
5948 PRE_P points to the list where side effects that must happen before
5949 *EXPR_P should be stored.
5951 POST_P points to the list where side effects that must happen after
5952 *EXPR_P should be stored. */
5954 static enum gimplify_status
5955 gimplify_addr_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p)
5957 tree expr = *expr_p;
5958 tree op0 = TREE_OPERAND (expr, 0);
5959 enum gimplify_status ret;
5960 location_t loc = EXPR_LOCATION (*expr_p);
5962 switch (TREE_CODE (op0))
5964 case INDIRECT_REF:
5965 do_indirect_ref:
5966 /* Check if we are dealing with an expression of the form '&*ptr'.
5967 While the front end folds away '&*ptr' into 'ptr', these
5968 expressions may be generated internally by the compiler (e.g.,
5969 builtins like __builtin_va_end). */
5970 /* Caution: the silent array decomposition semantics we allow for
5971 ADDR_EXPR means we can't always discard the pair. */
5972 /* Gimplification of the ADDR_EXPR operand may drop
5973 cv-qualification conversions, so make sure we add them if
5974 needed. */
5976 tree op00 = TREE_OPERAND (op0, 0);
5977 tree t_expr = TREE_TYPE (expr);
5978 tree t_op00 = TREE_TYPE (op00);
5980 if (!useless_type_conversion_p (t_expr, t_op00))
5981 op00 = fold_convert_loc (loc, TREE_TYPE (expr), op00);
5982 *expr_p = op00;
5983 ret = GS_OK;
5985 break;
5987 case VIEW_CONVERT_EXPR:
5988 /* Take the address of our operand and then convert it to the type of
5989 this ADDR_EXPR.
5991 ??? The interactions of VIEW_CONVERT_EXPR and aliasing is not at
5992 all clear. The impact of this transformation is even less clear. */
5994 /* If the operand is a useless conversion, look through it. Doing so
5995 guarantees that the ADDR_EXPR and its operand will remain of the
5996 same type. */
5997 if (tree_ssa_useless_type_conversion (TREE_OPERAND (op0, 0)))
5998 op0 = TREE_OPERAND (op0, 0);
6000 *expr_p = fold_convert_loc (loc, TREE_TYPE (expr),
6001 build_fold_addr_expr_loc (loc,
6002 TREE_OPERAND (op0, 0)));
6003 ret = GS_OK;
6004 break;
6006 case MEM_REF:
6007 if (integer_zerop (TREE_OPERAND (op0, 1)))
6008 goto do_indirect_ref;
6010 /* fall through */
6012 default:
6013 /* If we see a call to a declared builtin or see its address
6014 being taken (we can unify those cases here) then we can mark
6015 the builtin for implicit generation by GCC. */
6016 if (TREE_CODE (op0) == FUNCTION_DECL
6017 && DECL_BUILT_IN_CLASS (op0) == BUILT_IN_NORMAL
6018 && builtin_decl_declared_p (DECL_FUNCTION_CODE (op0)))
6019 set_builtin_decl_implicit_p (DECL_FUNCTION_CODE (op0), true);
6021 /* We use fb_either here because the C frontend sometimes takes
6022 the address of a call that returns a struct; see
6023 gcc.dg/c99-array-lval-1.c. The gimplifier will correctly make
6024 the implied temporary explicit. */
6026 /* Make the operand addressable. */
6027 ret = gimplify_expr (&TREE_OPERAND (expr, 0), pre_p, post_p,
6028 is_gimple_addressable, fb_either);
6029 if (ret == GS_ERROR)
6030 break;
6032 /* Then mark it. Beware that it may not be possible to do so directly
6033 if a temporary has been created by the gimplification. */
6034 prepare_gimple_addressable (&TREE_OPERAND (expr, 0), pre_p);
6036 op0 = TREE_OPERAND (expr, 0);
6038 /* For various reasons, the gimplification of the expression
6039 may have made a new INDIRECT_REF. */
6040 if (TREE_CODE (op0) == INDIRECT_REF)
6041 goto do_indirect_ref;
6043 mark_addressable (TREE_OPERAND (expr, 0));
6045 /* The FEs may end up building ADDR_EXPRs early on a decl with
6046 an incomplete type. Re-build ADDR_EXPRs in canonical form
6047 here. */
6048 if (!types_compatible_p (TREE_TYPE (op0), TREE_TYPE (TREE_TYPE (expr))))
6049 *expr_p = build_fold_addr_expr (op0);
6051 /* Make sure TREE_CONSTANT and TREE_SIDE_EFFECTS are set properly. */
6052 recompute_tree_invariant_for_addr_expr (*expr_p);
6054 /* If we re-built the ADDR_EXPR add a conversion to the original type
6055 if required. */
6056 if (!useless_type_conversion_p (TREE_TYPE (expr), TREE_TYPE (*expr_p)))
6057 *expr_p = fold_convert (TREE_TYPE (expr), *expr_p);
6059 break;
6062 return ret;
6065 /* Gimplify the operands of an ASM_EXPR. Input operands should be a gimple
6066 value; output operands should be a gimple lvalue. */
6068 static enum gimplify_status
6069 gimplify_asm_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p)
6071 tree expr;
6072 int noutputs;
6073 const char **oconstraints;
6074 int i;
6075 tree link;
6076 const char *constraint;
6077 bool allows_mem, allows_reg, is_inout;
6078 enum gimplify_status ret, tret;
6079 gasm *stmt;
6080 vec<tree, va_gc> *inputs;
6081 vec<tree, va_gc> *outputs;
6082 vec<tree, va_gc> *clobbers;
6083 vec<tree, va_gc> *labels;
6084 tree link_next;
6086 expr = *expr_p;
6087 noutputs = list_length (ASM_OUTPUTS (expr));
6088 oconstraints = (const char **) alloca ((noutputs) * sizeof (const char *));
6090 inputs = NULL;
6091 outputs = NULL;
6092 clobbers = NULL;
6093 labels = NULL;
6095 ret = GS_ALL_DONE;
6096 link_next = NULL_TREE;
6097 for (i = 0, link = ASM_OUTPUTS (expr); link; ++i, link = link_next)
6099 bool ok;
6100 size_t constraint_len;
6102 link_next = TREE_CHAIN (link);
6104 oconstraints[i]
6105 = constraint
6106 = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link)));
6107 constraint_len = strlen (constraint);
6108 if (constraint_len == 0)
6109 continue;
6111 ok = parse_output_constraint (&constraint, i, 0, 0,
6112 &allows_mem, &allows_reg, &is_inout);
6113 if (!ok)
6115 ret = GS_ERROR;
6116 is_inout = false;
6119 if (!allows_reg && allows_mem)
6120 mark_addressable (TREE_VALUE (link));
6122 tret = gimplify_expr (&TREE_VALUE (link), pre_p, post_p,
6123 is_inout ? is_gimple_min_lval : is_gimple_lvalue,
6124 fb_lvalue | fb_mayfail);
6125 if (tret == GS_ERROR)
6127 error ("invalid lvalue in asm output %d", i);
6128 ret = tret;
6131 /* If the constraint does not allow memory make sure we gimplify
6132 it to a register if it is not already but its base is. This
6133 happens for complex and vector components. */
6134 if (!allows_mem)
6136 tree op = TREE_VALUE (link);
6137 if (! is_gimple_val (op)
6138 && is_gimple_reg_type (TREE_TYPE (op))
6139 && is_gimple_reg (get_base_address (op)))
6141 tree tem = create_tmp_reg (TREE_TYPE (op));
6142 tree ass;
6143 if (is_inout)
6145 ass = build2 (MODIFY_EXPR, TREE_TYPE (tem),
6146 tem, unshare_expr (op));
6147 gimplify_and_add (ass, pre_p);
6149 ass = build2 (MODIFY_EXPR, TREE_TYPE (tem), op, tem);
6150 gimplify_and_add (ass, post_p);
6152 TREE_VALUE (link) = tem;
6153 tret = GS_OK;
6157 vec_safe_push (outputs, link);
6158 TREE_CHAIN (link) = NULL_TREE;
6160 if (is_inout)
6162 /* An input/output operand. To give the optimizers more
6163 flexibility, split it into separate input and output
6164 operands. */
6165 tree input;
6166 /* Buffer big enough to format a 32-bit UINT_MAX into. */
6167 char buf[11];
6169 /* Turn the in/out constraint into an output constraint. */
6170 char *p = xstrdup (constraint);
6171 p[0] = '=';
6172 TREE_VALUE (TREE_PURPOSE (link)) = build_string (constraint_len, p);
6174 /* And add a matching input constraint. */
6175 if (allows_reg)
6177 sprintf (buf, "%u", i);
6179 /* If there are multiple alternatives in the constraint,
6180 handle each of them individually. Those that allow register
6181 will be replaced with operand number, the others will stay
6182 unchanged. */
6183 if (strchr (p, ',') != NULL)
6185 size_t len = 0, buflen = strlen (buf);
6186 char *beg, *end, *str, *dst;
6188 for (beg = p + 1;;)
6190 end = strchr (beg, ',');
6191 if (end == NULL)
6192 end = strchr (beg, '\0');
6193 if ((size_t) (end - beg) < buflen)
6194 len += buflen + 1;
6195 else
6196 len += end - beg + 1;
6197 if (*end)
6198 beg = end + 1;
6199 else
6200 break;
6203 str = (char *) alloca (len);
6204 for (beg = p + 1, dst = str;;)
6206 const char *tem;
6207 bool mem_p, reg_p, inout_p;
6209 end = strchr (beg, ',');
6210 if (end)
6211 *end = '\0';
6212 beg[-1] = '=';
6213 tem = beg - 1;
6214 parse_output_constraint (&tem, i, 0, 0,
6215 &mem_p, &reg_p, &inout_p);
6216 if (dst != str)
6217 *dst++ = ',';
6218 if (reg_p)
6220 memcpy (dst, buf, buflen);
6221 dst += buflen;
6223 else
6225 if (end)
6226 len = end - beg;
6227 else
6228 len = strlen (beg);
6229 memcpy (dst, beg, len);
6230 dst += len;
6232 if (end)
6233 beg = end + 1;
6234 else
6235 break;
6237 *dst = '\0';
6238 input = build_string (dst - str, str);
6240 else
6241 input = build_string (strlen (buf), buf);
6243 else
6244 input = build_string (constraint_len - 1, constraint + 1);
6246 free (p);
6248 input = build_tree_list (build_tree_list (NULL_TREE, input),
6249 unshare_expr (TREE_VALUE (link)));
6250 ASM_INPUTS (expr) = chainon (ASM_INPUTS (expr), input);
6254 link_next = NULL_TREE;
6255 for (link = ASM_INPUTS (expr); link; ++i, link = link_next)
6257 link_next = TREE_CHAIN (link);
6258 constraint = TREE_STRING_POINTER (TREE_VALUE (TREE_PURPOSE (link)));
6259 parse_input_constraint (&constraint, 0, 0, noutputs, 0,
6260 oconstraints, &allows_mem, &allows_reg);
6262 /* If we can't make copies, we can only accept memory. */
6263 if (TREE_ADDRESSABLE (TREE_TYPE (TREE_VALUE (link))))
6265 if (allows_mem)
6266 allows_reg = 0;
6267 else
6269 error ("impossible constraint in %<asm%>");
6270 error ("non-memory input %d must stay in memory", i);
6271 return GS_ERROR;
6275 /* If the operand is a memory input, it should be an lvalue. */
6276 if (!allows_reg && allows_mem)
6278 tree inputv = TREE_VALUE (link);
6279 STRIP_NOPS (inputv);
6280 if (TREE_CODE (inputv) == PREDECREMENT_EXPR
6281 || TREE_CODE (inputv) == PREINCREMENT_EXPR
6282 || TREE_CODE (inputv) == POSTDECREMENT_EXPR
6283 || TREE_CODE (inputv) == POSTINCREMENT_EXPR
6284 || TREE_CODE (inputv) == MODIFY_EXPR)
6285 TREE_VALUE (link) = error_mark_node;
6286 tret = gimplify_expr (&TREE_VALUE (link), pre_p, post_p,
6287 is_gimple_lvalue, fb_lvalue | fb_mayfail);
6288 if (tret != GS_ERROR)
6290 /* Unlike output operands, memory inputs are not guaranteed
6291 to be lvalues by the FE, and while the expressions are
6292 marked addressable there, if it is e.g. a statement
6293 expression, temporaries in it might not end up being
6294 addressable. They might be already used in the IL and thus
6295 it is too late to make them addressable now though. */
6296 tree x = TREE_VALUE (link);
6297 while (handled_component_p (x))
6298 x = TREE_OPERAND (x, 0);
6299 if (TREE_CODE (x) == MEM_REF
6300 && TREE_CODE (TREE_OPERAND (x, 0)) == ADDR_EXPR)
6301 x = TREE_OPERAND (TREE_OPERAND (x, 0), 0);
6302 if ((VAR_P (x)
6303 || TREE_CODE (x) == PARM_DECL
6304 || TREE_CODE (x) == RESULT_DECL)
6305 && !TREE_ADDRESSABLE (x)
6306 && is_gimple_reg (x))
6308 warning_at (EXPR_LOC_OR_LOC (TREE_VALUE (link),
6309 input_location), 0,
6310 "memory input %d is not directly addressable",
6312 prepare_gimple_addressable (&TREE_VALUE (link), pre_p);
6315 mark_addressable (TREE_VALUE (link));
6316 if (tret == GS_ERROR)
6318 error_at (EXPR_LOC_OR_LOC (TREE_VALUE (link), input_location),
6319 "memory input %d is not directly addressable", i);
6320 ret = tret;
6323 else
6325 tret = gimplify_expr (&TREE_VALUE (link), pre_p, post_p,
6326 is_gimple_asm_val, fb_rvalue);
6327 if (tret == GS_ERROR)
6328 ret = tret;
6331 TREE_CHAIN (link) = NULL_TREE;
6332 vec_safe_push (inputs, link);
6335 link_next = NULL_TREE;
6336 for (link = ASM_CLOBBERS (expr); link; ++i, link = link_next)
6338 link_next = TREE_CHAIN (link);
6339 TREE_CHAIN (link) = NULL_TREE;
6340 vec_safe_push (clobbers, link);
6343 link_next = NULL_TREE;
6344 for (link = ASM_LABELS (expr); link; ++i, link = link_next)
6346 link_next = TREE_CHAIN (link);
6347 TREE_CHAIN (link) = NULL_TREE;
6348 vec_safe_push (labels, link);
6351 /* Do not add ASMs with errors to the gimple IL stream. */
6352 if (ret != GS_ERROR)
6354 stmt = gimple_build_asm_vec (TREE_STRING_POINTER (ASM_STRING (expr)),
6355 inputs, outputs, clobbers, labels);
6357 gimple_asm_set_volatile (stmt, ASM_VOLATILE_P (expr) || noutputs == 0);
6358 gimple_asm_set_input (stmt, ASM_INPUT_P (expr));
6360 gimplify_seq_add_stmt (pre_p, stmt);
6363 return ret;
6366 /* Gimplify a CLEANUP_POINT_EXPR. Currently this works by adding
6367 GIMPLE_WITH_CLEANUP_EXPRs to the prequeue as we encounter cleanups while
6368 gimplifying the body, and converting them to TRY_FINALLY_EXPRs when we
6369 return to this function.
6371 FIXME should we complexify the prequeue handling instead? Or use flags
6372 for all the cleanups and let the optimizer tighten them up? The current
6373 code seems pretty fragile; it will break on a cleanup within any
6374 non-conditional nesting. But any such nesting would be broken, anyway;
6375 we can't write a TRY_FINALLY_EXPR that starts inside a nesting construct
6376 and continues out of it. We can do that at the RTL level, though, so
6377 having an optimizer to tighten up try/finally regions would be a Good
6378 Thing. */
6380 static enum gimplify_status
6381 gimplify_cleanup_point_expr (tree *expr_p, gimple_seq *pre_p)
6383 gimple_stmt_iterator iter;
6384 gimple_seq body_sequence = NULL;
6386 tree temp = voidify_wrapper_expr (*expr_p, NULL);
6388 /* We only care about the number of conditions between the innermost
6389 CLEANUP_POINT_EXPR and the cleanup. So save and reset the count and
6390 any cleanups collected outside the CLEANUP_POINT_EXPR. */
6391 int old_conds = gimplify_ctxp->conditions;
6392 gimple_seq old_cleanups = gimplify_ctxp->conditional_cleanups;
6393 bool old_in_cleanup_point_expr = gimplify_ctxp->in_cleanup_point_expr;
6394 gimplify_ctxp->conditions = 0;
6395 gimplify_ctxp->conditional_cleanups = NULL;
6396 gimplify_ctxp->in_cleanup_point_expr = true;
6398 gimplify_stmt (&TREE_OPERAND (*expr_p, 0), &body_sequence);
6400 gimplify_ctxp->conditions = old_conds;
6401 gimplify_ctxp->conditional_cleanups = old_cleanups;
6402 gimplify_ctxp->in_cleanup_point_expr = old_in_cleanup_point_expr;
6404 for (iter = gsi_start (body_sequence); !gsi_end_p (iter); )
6406 gimple *wce = gsi_stmt (iter);
6408 if (gimple_code (wce) == GIMPLE_WITH_CLEANUP_EXPR)
6410 if (gsi_one_before_end_p (iter))
6412 /* Note that gsi_insert_seq_before and gsi_remove do not
6413 scan operands, unlike some other sequence mutators. */
6414 if (!gimple_wce_cleanup_eh_only (wce))
6415 gsi_insert_seq_before_without_update (&iter,
6416 gimple_wce_cleanup (wce),
6417 GSI_SAME_STMT);
6418 gsi_remove (&iter, true);
6419 break;
6421 else
6423 gtry *gtry;
6424 gimple_seq seq;
6425 enum gimple_try_flags kind;
6427 if (gimple_wce_cleanup_eh_only (wce))
6428 kind = GIMPLE_TRY_CATCH;
6429 else
6430 kind = GIMPLE_TRY_FINALLY;
6431 seq = gsi_split_seq_after (iter);
6433 gtry = gimple_build_try (seq, gimple_wce_cleanup (wce), kind);
6434 /* Do not use gsi_replace here, as it may scan operands.
6435 We want to do a simple structural modification only. */
6436 gsi_set_stmt (&iter, gtry);
6437 iter = gsi_start (gtry->eval);
6440 else
6441 gsi_next (&iter);
6444 gimplify_seq_add_seq (pre_p, body_sequence);
6445 if (temp)
6447 *expr_p = temp;
6448 return GS_OK;
6450 else
6452 *expr_p = NULL;
6453 return GS_ALL_DONE;
6457 /* Insert a cleanup marker for gimplify_cleanup_point_expr. CLEANUP
6458 is the cleanup action required. EH_ONLY is true if the cleanup should
6459 only be executed if an exception is thrown, not on normal exit.
6460 If FORCE_UNCOND is true perform the cleanup unconditionally; this is
6461 only valid for clobbers. */
6463 static void
6464 gimple_push_cleanup (tree var, tree cleanup, bool eh_only, gimple_seq *pre_p,
6465 bool force_uncond = false)
6467 gimple *wce;
6468 gimple_seq cleanup_stmts = NULL;
6470 /* Errors can result in improperly nested cleanups. Which results in
6471 confusion when trying to resolve the GIMPLE_WITH_CLEANUP_EXPR. */
6472 if (seen_error ())
6473 return;
6475 if (gimple_conditional_context ())
6477 /* If we're in a conditional context, this is more complex. We only
6478 want to run the cleanup if we actually ran the initialization that
6479 necessitates it, but we want to run it after the end of the
6480 conditional context. So we wrap the try/finally around the
6481 condition and use a flag to determine whether or not to actually
6482 run the destructor. Thus
6484 test ? f(A()) : 0
6486 becomes (approximately)
6488 flag = 0;
6489 try {
6490 if (test) { A::A(temp); flag = 1; val = f(temp); }
6491 else { val = 0; }
6492 } finally {
6493 if (flag) A::~A(temp);
6497 if (force_uncond)
6499 gimplify_stmt (&cleanup, &cleanup_stmts);
6500 wce = gimple_build_wce (cleanup_stmts);
6501 gimplify_seq_add_stmt (&gimplify_ctxp->conditional_cleanups, wce);
6503 else
6505 tree flag = create_tmp_var (boolean_type_node, "cleanup");
6506 gassign *ffalse = gimple_build_assign (flag, boolean_false_node);
6507 gassign *ftrue = gimple_build_assign (flag, boolean_true_node);
6509 cleanup = build3 (COND_EXPR, void_type_node, flag, cleanup, NULL);
6510 gimplify_stmt (&cleanup, &cleanup_stmts);
6511 wce = gimple_build_wce (cleanup_stmts);
6513 gimplify_seq_add_stmt (&gimplify_ctxp->conditional_cleanups, ffalse);
6514 gimplify_seq_add_stmt (&gimplify_ctxp->conditional_cleanups, wce);
6515 gimplify_seq_add_stmt (pre_p, ftrue);
6517 /* Because of this manipulation, and the EH edges that jump
6518 threading cannot redirect, the temporary (VAR) will appear
6519 to be used uninitialized. Don't warn. */
6520 TREE_NO_WARNING (var) = 1;
6523 else
6525 gimplify_stmt (&cleanup, &cleanup_stmts);
6526 wce = gimple_build_wce (cleanup_stmts);
6527 gimple_wce_set_cleanup_eh_only (wce, eh_only);
6528 gimplify_seq_add_stmt (pre_p, wce);
6532 /* Gimplify a TARGET_EXPR which doesn't appear on the rhs of an INIT_EXPR. */
6534 static enum gimplify_status
6535 gimplify_target_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p)
6537 tree targ = *expr_p;
6538 tree temp = TARGET_EXPR_SLOT (targ);
6539 tree init = TARGET_EXPR_INITIAL (targ);
6540 enum gimplify_status ret;
6542 bool unpoison_empty_seq = false;
6543 gimple_stmt_iterator unpoison_it;
6545 if (init)
6547 tree cleanup = NULL_TREE;
6549 /* TARGET_EXPR temps aren't part of the enclosing block, so add it
6550 to the temps list. Handle also variable length TARGET_EXPRs. */
6551 if (TREE_CODE (DECL_SIZE (temp)) != INTEGER_CST)
6553 if (!TYPE_SIZES_GIMPLIFIED (TREE_TYPE (temp)))
6554 gimplify_type_sizes (TREE_TYPE (temp), pre_p);
6555 gimplify_vla_decl (temp, pre_p);
6557 else
6559 /* Save location where we need to place unpoisoning. It's possible
6560 that a variable will be converted to needs_to_live_in_memory. */
6561 unpoison_it = gsi_last (*pre_p);
6562 unpoison_empty_seq = gsi_end_p (unpoison_it);
6564 gimple_add_tmp_var (temp);
6567 /* If TARGET_EXPR_INITIAL is void, then the mere evaluation of the
6568 expression is supposed to initialize the slot. */
6569 if (VOID_TYPE_P (TREE_TYPE (init)))
6570 ret = gimplify_expr (&init, pre_p, post_p, is_gimple_stmt, fb_none);
6571 else
6573 tree init_expr = build2 (INIT_EXPR, void_type_node, temp, init);
6574 init = init_expr;
6575 ret = gimplify_expr (&init, pre_p, post_p, is_gimple_stmt, fb_none);
6576 init = NULL;
6577 ggc_free (init_expr);
6579 if (ret == GS_ERROR)
6581 /* PR c++/28266 Make sure this is expanded only once. */
6582 TARGET_EXPR_INITIAL (targ) = NULL_TREE;
6583 return GS_ERROR;
6585 if (init)
6586 gimplify_and_add (init, pre_p);
6588 /* If needed, push the cleanup for the temp. */
6589 if (TARGET_EXPR_CLEANUP (targ))
6591 if (CLEANUP_EH_ONLY (targ))
6592 gimple_push_cleanup (temp, TARGET_EXPR_CLEANUP (targ),
6593 CLEANUP_EH_ONLY (targ), pre_p);
6594 else
6595 cleanup = TARGET_EXPR_CLEANUP (targ);
6598 /* Add a clobber for the temporary going out of scope, like
6599 gimplify_bind_expr. */
6600 if (gimplify_ctxp->in_cleanup_point_expr
6601 && needs_to_live_in_memory (temp))
6603 if (flag_stack_reuse == SR_ALL)
6605 tree clobber = build_clobber (TREE_TYPE (temp));
6606 clobber = build2 (MODIFY_EXPR, TREE_TYPE (temp), temp, clobber);
6607 gimple_push_cleanup (temp, clobber, false, pre_p, true);
6609 if (asan_poisoned_variables
6610 && DECL_ALIGN (temp) <= MAX_SUPPORTED_STACK_ALIGNMENT
6611 && dbg_cnt (asan_use_after_scope)
6612 && !gimplify_omp_ctxp)
6614 tree asan_cleanup = build_asan_poison_call_expr (temp);
6615 if (asan_cleanup)
6617 if (unpoison_empty_seq)
6618 unpoison_it = gsi_start (*pre_p);
6620 asan_poison_variable (temp, false, &unpoison_it,
6621 unpoison_empty_seq);
6622 gimple_push_cleanup (temp, asan_cleanup, false, pre_p);
6626 if (cleanup)
6627 gimple_push_cleanup (temp, cleanup, false, pre_p);
6629 /* Only expand this once. */
6630 TREE_OPERAND (targ, 3) = init;
6631 TARGET_EXPR_INITIAL (targ) = NULL_TREE;
6633 else
6634 /* We should have expanded this before. */
6635 gcc_assert (DECL_SEEN_IN_BIND_EXPR_P (temp));
6637 *expr_p = temp;
6638 return GS_OK;
6641 /* Gimplification of expression trees. */
6643 /* Gimplify an expression which appears at statement context. The
6644 corresponding GIMPLE statements are added to *SEQ_P. If *SEQ_P is
6645 NULL, a new sequence is allocated.
6647 Return true if we actually added a statement to the queue. */
6649 bool
6650 gimplify_stmt (tree *stmt_p, gimple_seq *seq_p)
6652 gimple_seq_node last;
6654 last = gimple_seq_last (*seq_p);
6655 gimplify_expr (stmt_p, seq_p, NULL, is_gimple_stmt, fb_none);
6656 return last != gimple_seq_last (*seq_p);
6659 /* Add FIRSTPRIVATE entries for DECL in the OpenMP the surrounding parallels
6660 to CTX. If entries already exist, force them to be some flavor of private.
6661 If there is no enclosing parallel, do nothing. */
6663 void
6664 omp_firstprivatize_variable (struct gimplify_omp_ctx *ctx, tree decl)
6666 splay_tree_node n;
6668 if (decl == NULL || !DECL_P (decl) || ctx->region_type == ORT_NONE)
6669 return;
6673 n = splay_tree_lookup (ctx->variables, (splay_tree_key)decl);
6674 if (n != NULL)
6676 if (n->value & GOVD_SHARED)
6677 n->value = GOVD_FIRSTPRIVATE | (n->value & GOVD_SEEN);
6678 else if (n->value & GOVD_MAP)
6679 n->value |= GOVD_MAP_TO_ONLY;
6680 else
6681 return;
6683 else if ((ctx->region_type & ORT_TARGET) != 0)
6685 if (ctx->target_map_scalars_firstprivate)
6686 omp_add_variable (ctx, decl, GOVD_FIRSTPRIVATE);
6687 else
6688 omp_add_variable (ctx, decl, GOVD_MAP | GOVD_MAP_TO_ONLY);
6690 else if (ctx->region_type != ORT_WORKSHARE
6691 && ctx->region_type != ORT_SIMD
6692 && ctx->region_type != ORT_ACC
6693 && !(ctx->region_type & ORT_TARGET_DATA))
6694 omp_add_variable (ctx, decl, GOVD_FIRSTPRIVATE);
6696 ctx = ctx->outer_context;
6698 while (ctx);
6701 /* Similarly for each of the type sizes of TYPE. */
6703 static void
6704 omp_firstprivatize_type_sizes (struct gimplify_omp_ctx *ctx, tree type)
6706 if (type == NULL || type == error_mark_node)
6707 return;
6708 type = TYPE_MAIN_VARIANT (type);
6710 if (ctx->privatized_types->add (type))
6711 return;
6713 switch (TREE_CODE (type))
6715 case INTEGER_TYPE:
6716 case ENUMERAL_TYPE:
6717 case BOOLEAN_TYPE:
6718 case REAL_TYPE:
6719 case FIXED_POINT_TYPE:
6720 omp_firstprivatize_variable (ctx, TYPE_MIN_VALUE (type));
6721 omp_firstprivatize_variable (ctx, TYPE_MAX_VALUE (type));
6722 break;
6724 case ARRAY_TYPE:
6725 omp_firstprivatize_type_sizes (ctx, TREE_TYPE (type));
6726 omp_firstprivatize_type_sizes (ctx, TYPE_DOMAIN (type));
6727 break;
6729 case RECORD_TYPE:
6730 case UNION_TYPE:
6731 case QUAL_UNION_TYPE:
6733 tree field;
6734 for (field = TYPE_FIELDS (type); field; field = DECL_CHAIN (field))
6735 if (TREE_CODE (field) == FIELD_DECL)
6737 omp_firstprivatize_variable (ctx, DECL_FIELD_OFFSET (field));
6738 omp_firstprivatize_type_sizes (ctx, TREE_TYPE (field));
6741 break;
6743 case POINTER_TYPE:
6744 case REFERENCE_TYPE:
6745 omp_firstprivatize_type_sizes (ctx, TREE_TYPE (type));
6746 break;
6748 default:
6749 break;
6752 omp_firstprivatize_variable (ctx, TYPE_SIZE (type));
6753 omp_firstprivatize_variable (ctx, TYPE_SIZE_UNIT (type));
6754 lang_hooks.types.omp_firstprivatize_type_sizes (ctx, type);
6757 /* Add an entry for DECL in the OMP context CTX with FLAGS. */
6759 static void
6760 omp_add_variable (struct gimplify_omp_ctx *ctx, tree decl, unsigned int flags)
6762 splay_tree_node n;
6763 unsigned int nflags;
6764 tree t;
6766 if (error_operand_p (decl) || ctx->region_type == ORT_NONE)
6767 return;
6769 /* Never elide decls whose type has TREE_ADDRESSABLE set. This means
6770 there are constructors involved somewhere. Exception is a shared clause,
6771 there is nothing privatized in that case. */
6772 if ((flags & GOVD_SHARED) == 0
6773 && (TREE_ADDRESSABLE (TREE_TYPE (decl))
6774 || TYPE_NEEDS_CONSTRUCTING (TREE_TYPE (decl))))
6775 flags |= GOVD_SEEN;
6777 n = splay_tree_lookup (ctx->variables, (splay_tree_key)decl);
6778 if (n != NULL && (n->value & GOVD_DATA_SHARE_CLASS) != 0)
6780 /* We shouldn't be re-adding the decl with the same data
6781 sharing class. */
6782 gcc_assert ((n->value & GOVD_DATA_SHARE_CLASS & flags) == 0);
6783 nflags = n->value | flags;
6784 /* The only combination of data sharing classes we should see is
6785 FIRSTPRIVATE and LASTPRIVATE. However, OpenACC permits
6786 reduction variables to be used in data sharing clauses. */
6787 gcc_assert ((ctx->region_type & ORT_ACC) != 0
6788 || ((nflags & GOVD_DATA_SHARE_CLASS)
6789 == (GOVD_FIRSTPRIVATE | GOVD_LASTPRIVATE))
6790 || (flags & GOVD_DATA_SHARE_CLASS) == 0);
6791 n->value = nflags;
6792 return;
6795 /* When adding a variable-sized variable, we have to handle all sorts
6796 of additional bits of data: the pointer replacement variable, and
6797 the parameters of the type. */
6798 if (DECL_SIZE (decl) && TREE_CODE (DECL_SIZE (decl)) != INTEGER_CST)
6800 /* Add the pointer replacement variable as PRIVATE if the variable
6801 replacement is private, else FIRSTPRIVATE since we'll need the
6802 address of the original variable either for SHARED, or for the
6803 copy into or out of the context. */
6804 if (!(flags & GOVD_LOCAL))
6806 if (flags & GOVD_MAP)
6807 nflags = GOVD_MAP | GOVD_MAP_TO_ONLY | GOVD_EXPLICIT;
6808 else if (flags & GOVD_PRIVATE)
6809 nflags = GOVD_PRIVATE;
6810 else if ((ctx->region_type & (ORT_TARGET | ORT_TARGET_DATA)) != 0
6811 && (flags & GOVD_FIRSTPRIVATE))
6812 nflags = GOVD_PRIVATE | GOVD_EXPLICIT;
6813 else
6814 nflags = GOVD_FIRSTPRIVATE;
6815 nflags |= flags & GOVD_SEEN;
6816 t = DECL_VALUE_EXPR (decl);
6817 gcc_assert (TREE_CODE (t) == INDIRECT_REF);
6818 t = TREE_OPERAND (t, 0);
6819 gcc_assert (DECL_P (t));
6820 omp_add_variable (ctx, t, nflags);
6823 /* Add all of the variable and type parameters (which should have
6824 been gimplified to a formal temporary) as FIRSTPRIVATE. */
6825 omp_firstprivatize_variable (ctx, DECL_SIZE_UNIT (decl));
6826 omp_firstprivatize_variable (ctx, DECL_SIZE (decl));
6827 omp_firstprivatize_type_sizes (ctx, TREE_TYPE (decl));
6829 /* The variable-sized variable itself is never SHARED, only some form
6830 of PRIVATE. The sharing would take place via the pointer variable
6831 which we remapped above. */
6832 if (flags & GOVD_SHARED)
6833 flags = GOVD_SHARED | GOVD_DEBUG_PRIVATE
6834 | (flags & (GOVD_SEEN | GOVD_EXPLICIT));
6836 /* We're going to make use of the TYPE_SIZE_UNIT at least in the
6837 alloca statement we generate for the variable, so make sure it
6838 is available. This isn't automatically needed for the SHARED
6839 case, since we won't be allocating local storage then.
6840 For local variables TYPE_SIZE_UNIT might not be gimplified yet,
6841 in this case omp_notice_variable will be called later
6842 on when it is gimplified. */
6843 else if (! (flags & (GOVD_LOCAL | GOVD_MAP))
6844 && DECL_P (TYPE_SIZE_UNIT (TREE_TYPE (decl))))
6845 omp_notice_variable (ctx, TYPE_SIZE_UNIT (TREE_TYPE (decl)), true);
6847 else if ((flags & (GOVD_MAP | GOVD_LOCAL)) == 0
6848 && lang_hooks.decls.omp_privatize_by_reference (decl))
6850 omp_firstprivatize_type_sizes (ctx, TREE_TYPE (decl));
6852 /* Similar to the direct variable sized case above, we'll need the
6853 size of references being privatized. */
6854 if ((flags & GOVD_SHARED) == 0)
6856 t = TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (decl)));
6857 if (DECL_P (t))
6858 omp_notice_variable (ctx, t, true);
6862 if (n != NULL)
6863 n->value |= flags;
6864 else
6865 splay_tree_insert (ctx->variables, (splay_tree_key)decl, flags);
6867 /* For reductions clauses in OpenACC loop directives, by default create a
6868 copy clause on the enclosing parallel construct for carrying back the
6869 results. */
6870 if (ctx->region_type == ORT_ACC && (flags & GOVD_REDUCTION))
6872 struct gimplify_omp_ctx *outer_ctx = ctx->outer_context;
6873 while (outer_ctx)
6875 n = splay_tree_lookup (outer_ctx->variables, (splay_tree_key)decl);
6876 if (n != NULL)
6878 /* Ignore local variables and explicitly declared clauses. */
6879 if (n->value & (GOVD_LOCAL | GOVD_EXPLICIT))
6880 break;
6881 else if (outer_ctx->region_type == ORT_ACC_KERNELS)
6883 /* According to the OpenACC spec, such a reduction variable
6884 should already have a copy map on a kernels construct,
6885 verify that here. */
6886 gcc_assert (!(n->value & GOVD_FIRSTPRIVATE)
6887 && (n->value & GOVD_MAP));
6889 else if (outer_ctx->region_type == ORT_ACC_PARALLEL)
6891 /* Remove firstprivate and make it a copy map. */
6892 n->value &= ~GOVD_FIRSTPRIVATE;
6893 n->value |= GOVD_MAP;
6896 else if (outer_ctx->region_type == ORT_ACC_PARALLEL)
6898 splay_tree_insert (outer_ctx->variables, (splay_tree_key)decl,
6899 GOVD_MAP | GOVD_SEEN);
6900 break;
6902 outer_ctx = outer_ctx->outer_context;
6907 /* Notice a threadprivate variable DECL used in OMP context CTX.
6908 This just prints out diagnostics about threadprivate variable uses
6909 in untied tasks. If DECL2 is non-NULL, prevent this warning
6910 on that variable. */
6912 static bool
6913 omp_notice_threadprivate_variable (struct gimplify_omp_ctx *ctx, tree decl,
6914 tree decl2)
6916 splay_tree_node n;
6917 struct gimplify_omp_ctx *octx;
6919 for (octx = ctx; octx; octx = octx->outer_context)
6920 if ((octx->region_type & ORT_TARGET) != 0)
6922 n = splay_tree_lookup (octx->variables, (splay_tree_key)decl);
6923 if (n == NULL)
6925 error ("threadprivate variable %qE used in target region",
6926 DECL_NAME (decl));
6927 error_at (octx->location, "enclosing target region");
6928 splay_tree_insert (octx->variables, (splay_tree_key)decl, 0);
6930 if (decl2)
6931 splay_tree_insert (octx->variables, (splay_tree_key)decl2, 0);
6934 if (ctx->region_type != ORT_UNTIED_TASK)
6935 return false;
6936 n = splay_tree_lookup (ctx->variables, (splay_tree_key)decl);
6937 if (n == NULL)
6939 error ("threadprivate variable %qE used in untied task",
6940 DECL_NAME (decl));
6941 error_at (ctx->location, "enclosing task");
6942 splay_tree_insert (ctx->variables, (splay_tree_key)decl, 0);
6944 if (decl2)
6945 splay_tree_insert (ctx->variables, (splay_tree_key)decl2, 0);
6946 return false;
6949 /* Return true if global var DECL is device resident. */
6951 static bool
6952 device_resident_p (tree decl)
6954 tree attr = lookup_attribute ("oacc declare target", DECL_ATTRIBUTES (decl));
6956 if (!attr)
6957 return false;
6959 for (tree t = TREE_VALUE (attr); t; t = TREE_PURPOSE (t))
6961 tree c = TREE_VALUE (t);
6962 if (OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_DEVICE_RESIDENT)
6963 return true;
6966 return false;
6969 /* Return true if DECL has an ACC DECLARE attribute. */
6971 static bool
6972 is_oacc_declared (tree decl)
6974 tree t = TREE_CODE (decl) == MEM_REF ? TREE_OPERAND (decl, 0) : decl;
6975 tree declared = lookup_attribute ("oacc declare target", DECL_ATTRIBUTES (t));
6976 return declared != NULL_TREE;
6979 /* Determine outer default flags for DECL mentioned in an OMP region
6980 but not declared in an enclosing clause.
6982 ??? Some compiler-generated variables (like SAVE_EXPRs) could be
6983 remapped firstprivate instead of shared. To some extent this is
6984 addressed in omp_firstprivatize_type_sizes, but not
6985 effectively. */
6987 static unsigned
6988 omp_default_clause (struct gimplify_omp_ctx *ctx, tree decl,
6989 bool in_code, unsigned flags)
6991 enum omp_clause_default_kind default_kind = ctx->default_kind;
6992 enum omp_clause_default_kind kind;
6994 kind = lang_hooks.decls.omp_predetermined_sharing (decl);
6995 if (kind != OMP_CLAUSE_DEFAULT_UNSPECIFIED)
6996 default_kind = kind;
6998 switch (default_kind)
7000 case OMP_CLAUSE_DEFAULT_NONE:
7002 const char *rtype;
7004 if (ctx->region_type & ORT_PARALLEL)
7005 rtype = "parallel";
7006 else if (ctx->region_type & ORT_TASK)
7007 rtype = "task";
7008 else if (ctx->region_type & ORT_TEAMS)
7009 rtype = "teams";
7010 else
7011 gcc_unreachable ();
7013 error ("%qE not specified in enclosing %qs",
7014 DECL_NAME (lang_hooks.decls.omp_report_decl (decl)), rtype);
7015 error_at (ctx->location, "enclosing %qs", rtype);
7017 /* FALLTHRU */
7018 case OMP_CLAUSE_DEFAULT_SHARED:
7019 flags |= GOVD_SHARED;
7020 break;
7021 case OMP_CLAUSE_DEFAULT_PRIVATE:
7022 flags |= GOVD_PRIVATE;
7023 break;
7024 case OMP_CLAUSE_DEFAULT_FIRSTPRIVATE:
7025 flags |= GOVD_FIRSTPRIVATE;
7026 break;
7027 case OMP_CLAUSE_DEFAULT_UNSPECIFIED:
7028 /* decl will be either GOVD_FIRSTPRIVATE or GOVD_SHARED. */
7029 gcc_assert ((ctx->region_type & ORT_TASK) != 0);
7030 if (struct gimplify_omp_ctx *octx = ctx->outer_context)
7032 omp_notice_variable (octx, decl, in_code);
7033 for (; octx; octx = octx->outer_context)
7035 splay_tree_node n2;
7037 n2 = splay_tree_lookup (octx->variables, (splay_tree_key) decl);
7038 if ((octx->region_type & (ORT_TARGET_DATA | ORT_TARGET)) != 0
7039 && (n2 == NULL || (n2->value & GOVD_DATA_SHARE_CLASS) == 0))
7040 continue;
7041 if (n2 && (n2->value & GOVD_DATA_SHARE_CLASS) != GOVD_SHARED)
7043 flags |= GOVD_FIRSTPRIVATE;
7044 goto found_outer;
7046 if ((octx->region_type & (ORT_PARALLEL | ORT_TEAMS)) != 0)
7048 flags |= GOVD_SHARED;
7049 goto found_outer;
7054 if (TREE_CODE (decl) == PARM_DECL
7055 || (!is_global_var (decl)
7056 && DECL_CONTEXT (decl) == current_function_decl))
7057 flags |= GOVD_FIRSTPRIVATE;
7058 else
7059 flags |= GOVD_SHARED;
7060 found_outer:
7061 break;
7063 default:
7064 gcc_unreachable ();
7067 return flags;
7071 /* Determine outer default flags for DECL mentioned in an OACC region
7072 but not declared in an enclosing clause. */
7074 static unsigned
7075 oacc_default_clause (struct gimplify_omp_ctx *ctx, tree decl, unsigned flags)
7077 const char *rkind;
7078 bool on_device = false;
7079 bool declared = is_oacc_declared (decl);
7080 tree type = TREE_TYPE (decl);
7082 if (lang_hooks.decls.omp_privatize_by_reference (decl))
7083 type = TREE_TYPE (type);
7085 if ((ctx->region_type & (ORT_ACC_PARALLEL | ORT_ACC_KERNELS)) != 0
7086 && is_global_var (decl)
7087 && device_resident_p (decl))
7089 on_device = true;
7090 flags |= GOVD_MAP_TO_ONLY;
7093 switch (ctx->region_type)
7095 case ORT_ACC_KERNELS:
7096 rkind = "kernels";
7098 if (AGGREGATE_TYPE_P (type))
7100 /* Aggregates default to 'present_or_copy', or 'present'. */
7101 if (ctx->default_kind != OMP_CLAUSE_DEFAULT_PRESENT)
7102 flags |= GOVD_MAP;
7103 else
7104 flags |= GOVD_MAP | GOVD_MAP_FORCE_PRESENT;
7106 else
7107 /* Scalars default to 'copy'. */
7108 flags |= GOVD_MAP | GOVD_MAP_FORCE;
7110 break;
7112 case ORT_ACC_PARALLEL:
7113 rkind = "parallel";
7115 if (on_device || declared)
7116 flags |= GOVD_MAP;
7117 else if (AGGREGATE_TYPE_P (type))
7119 /* Aggregates default to 'present_or_copy', or 'present'. */
7120 if (ctx->default_kind != OMP_CLAUSE_DEFAULT_PRESENT)
7121 flags |= GOVD_MAP;
7122 else
7123 flags |= GOVD_MAP | GOVD_MAP_FORCE_PRESENT;
7125 else
7126 /* Scalars default to 'firstprivate'. */
7127 flags |= GOVD_FIRSTPRIVATE;
7129 break;
7131 default:
7132 gcc_unreachable ();
7135 if (DECL_ARTIFICIAL (decl))
7136 ; /* We can get compiler-generated decls, and should not complain
7137 about them. */
7138 else if (ctx->default_kind == OMP_CLAUSE_DEFAULT_NONE)
7140 error ("%qE not specified in enclosing OpenACC %qs construct",
7141 DECL_NAME (lang_hooks.decls.omp_report_decl (decl)), rkind);
7142 inform (ctx->location, "enclosing OpenACC %qs construct", rkind);
7144 else if (ctx->default_kind == OMP_CLAUSE_DEFAULT_PRESENT)
7145 ; /* Handled above. */
7146 else
7147 gcc_checking_assert (ctx->default_kind == OMP_CLAUSE_DEFAULT_SHARED);
7149 return flags;
7152 /* Record the fact that DECL was used within the OMP context CTX.
7153 IN_CODE is true when real code uses DECL, and false when we should
7154 merely emit default(none) errors. Return true if DECL is going to
7155 be remapped and thus DECL shouldn't be gimplified into its
7156 DECL_VALUE_EXPR (if any). */
7158 static bool
7159 omp_notice_variable (struct gimplify_omp_ctx *ctx, tree decl, bool in_code)
7161 splay_tree_node n;
7162 unsigned flags = in_code ? GOVD_SEEN : 0;
7163 bool ret = false, shared;
7165 if (error_operand_p (decl))
7166 return false;
7168 if (ctx->region_type == ORT_NONE)
7169 return lang_hooks.decls.omp_disregard_value_expr (decl, false);
7171 if (is_global_var (decl))
7173 /* Threadprivate variables are predetermined. */
7174 if (DECL_THREAD_LOCAL_P (decl))
7175 return omp_notice_threadprivate_variable (ctx, decl, NULL_TREE);
7177 if (DECL_HAS_VALUE_EXPR_P (decl))
7179 tree value = get_base_address (DECL_VALUE_EXPR (decl));
7181 if (value && DECL_P (value) && DECL_THREAD_LOCAL_P (value))
7182 return omp_notice_threadprivate_variable (ctx, decl, value);
7185 if (gimplify_omp_ctxp->outer_context == NULL
7186 && VAR_P (decl)
7187 && oacc_get_fn_attrib (current_function_decl))
7189 location_t loc = DECL_SOURCE_LOCATION (decl);
7191 if (lookup_attribute ("omp declare target link",
7192 DECL_ATTRIBUTES (decl)))
7194 error_at (loc,
7195 "%qE with %<link%> clause used in %<routine%> function",
7196 DECL_NAME (decl));
7197 return false;
7199 else if (!lookup_attribute ("omp declare target",
7200 DECL_ATTRIBUTES (decl)))
7202 error_at (loc,
7203 "%qE requires a %<declare%> directive for use "
7204 "in a %<routine%> function", DECL_NAME (decl));
7205 return false;
7210 n = splay_tree_lookup (ctx->variables, (splay_tree_key)decl);
7211 if ((ctx->region_type & ORT_TARGET) != 0)
7213 ret = lang_hooks.decls.omp_disregard_value_expr (decl, true);
7214 if (n == NULL)
7216 unsigned nflags = flags;
7217 if (ctx->target_map_pointers_as_0len_arrays
7218 || ctx->target_map_scalars_firstprivate)
7220 bool is_declare_target = false;
7221 bool is_scalar = false;
7222 if (is_global_var (decl)
7223 && varpool_node::get_create (decl)->offloadable)
7225 struct gimplify_omp_ctx *octx;
7226 for (octx = ctx->outer_context;
7227 octx; octx = octx->outer_context)
7229 n = splay_tree_lookup (octx->variables,
7230 (splay_tree_key)decl);
7231 if (n
7232 && (n->value & GOVD_DATA_SHARE_CLASS) != GOVD_SHARED
7233 && (n->value & GOVD_DATA_SHARE_CLASS) != 0)
7234 break;
7236 is_declare_target = octx == NULL;
7238 if (!is_declare_target && ctx->target_map_scalars_firstprivate)
7239 is_scalar = lang_hooks.decls.omp_scalar_p (decl);
7240 if (is_declare_target)
7242 else if (ctx->target_map_pointers_as_0len_arrays
7243 && (TREE_CODE (TREE_TYPE (decl)) == POINTER_TYPE
7244 || (TREE_CODE (TREE_TYPE (decl)) == REFERENCE_TYPE
7245 && TREE_CODE (TREE_TYPE (TREE_TYPE (decl)))
7246 == POINTER_TYPE)))
7247 nflags |= GOVD_MAP | GOVD_MAP_0LEN_ARRAY;
7248 else if (is_scalar)
7249 nflags |= GOVD_FIRSTPRIVATE;
7252 struct gimplify_omp_ctx *octx = ctx->outer_context;
7253 if ((ctx->region_type & ORT_ACC) && octx)
7255 /* Look in outer OpenACC contexts, to see if there's a
7256 data attribute for this variable. */
7257 omp_notice_variable (octx, decl, in_code);
7259 for (; octx; octx = octx->outer_context)
7261 if (!(octx->region_type & (ORT_TARGET_DATA | ORT_TARGET)))
7262 break;
7263 splay_tree_node n2
7264 = splay_tree_lookup (octx->variables,
7265 (splay_tree_key) decl);
7266 if (n2)
7268 if (octx->region_type == ORT_ACC_HOST_DATA)
7269 error ("variable %qE declared in enclosing "
7270 "%<host_data%> region", DECL_NAME (decl));
7271 nflags |= GOVD_MAP;
7272 if (octx->region_type == ORT_ACC_DATA
7273 && (n2->value & GOVD_MAP_0LEN_ARRAY))
7274 nflags |= GOVD_MAP_0LEN_ARRAY;
7275 goto found_outer;
7281 tree type = TREE_TYPE (decl);
7283 if (nflags == flags
7284 && gimplify_omp_ctxp->target_firstprivatize_array_bases
7285 && lang_hooks.decls.omp_privatize_by_reference (decl))
7286 type = TREE_TYPE (type);
7287 if (nflags == flags
7288 && !lang_hooks.types.omp_mappable_type (type))
7290 error ("%qD referenced in target region does not have "
7291 "a mappable type", decl);
7292 nflags |= GOVD_MAP | GOVD_EXPLICIT;
7294 else if (nflags == flags)
7296 if ((ctx->region_type & ORT_ACC) != 0)
7297 nflags = oacc_default_clause (ctx, decl, flags);
7298 else
7299 nflags |= GOVD_MAP;
7302 found_outer:
7303 omp_add_variable (ctx, decl, nflags);
7305 else
7307 /* If nothing changed, there's nothing left to do. */
7308 if ((n->value & flags) == flags)
7309 return ret;
7310 flags |= n->value;
7311 n->value = flags;
7313 goto do_outer;
7316 if (n == NULL)
7318 if (ctx->region_type == ORT_WORKSHARE
7319 || ctx->region_type == ORT_SIMD
7320 || ctx->region_type == ORT_ACC
7321 || (ctx->region_type & ORT_TARGET_DATA) != 0)
7322 goto do_outer;
7324 flags = omp_default_clause (ctx, decl, in_code, flags);
7326 if ((flags & GOVD_PRIVATE)
7327 && lang_hooks.decls.omp_private_outer_ref (decl))
7328 flags |= GOVD_PRIVATE_OUTER_REF;
7330 omp_add_variable (ctx, decl, flags);
7332 shared = (flags & GOVD_SHARED) != 0;
7333 ret = lang_hooks.decls.omp_disregard_value_expr (decl, shared);
7334 goto do_outer;
7337 if ((n->value & (GOVD_SEEN | GOVD_LOCAL)) == 0
7338 && (flags & (GOVD_SEEN | GOVD_LOCAL)) == GOVD_SEEN
7339 && DECL_SIZE (decl))
7341 if (TREE_CODE (DECL_SIZE (decl)) != INTEGER_CST)
7343 splay_tree_node n2;
7344 tree t = DECL_VALUE_EXPR (decl);
7345 gcc_assert (TREE_CODE (t) == INDIRECT_REF);
7346 t = TREE_OPERAND (t, 0);
7347 gcc_assert (DECL_P (t));
7348 n2 = splay_tree_lookup (ctx->variables, (splay_tree_key) t);
7349 n2->value |= GOVD_SEEN;
7351 else if (lang_hooks.decls.omp_privatize_by_reference (decl)
7352 && TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (decl)))
7353 && (TREE_CODE (TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (decl))))
7354 != INTEGER_CST))
7356 splay_tree_node n2;
7357 tree t = TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (decl)));
7358 gcc_assert (DECL_P (t));
7359 n2 = splay_tree_lookup (ctx->variables, (splay_tree_key) t);
7360 if (n2)
7361 omp_notice_variable (ctx, t, true);
7365 shared = ((flags | n->value) & GOVD_SHARED) != 0;
7366 ret = lang_hooks.decls.omp_disregard_value_expr (decl, shared);
7368 /* If nothing changed, there's nothing left to do. */
7369 if ((n->value & flags) == flags)
7370 return ret;
7371 flags |= n->value;
7372 n->value = flags;
7374 do_outer:
7375 /* If the variable is private in the current context, then we don't
7376 need to propagate anything to an outer context. */
7377 if ((flags & GOVD_PRIVATE) && !(flags & GOVD_PRIVATE_OUTER_REF))
7378 return ret;
7379 if ((flags & (GOVD_LINEAR | GOVD_LINEAR_LASTPRIVATE_NO_OUTER))
7380 == (GOVD_LINEAR | GOVD_LINEAR_LASTPRIVATE_NO_OUTER))
7381 return ret;
7382 if ((flags & (GOVD_FIRSTPRIVATE | GOVD_LASTPRIVATE
7383 | GOVD_LINEAR_LASTPRIVATE_NO_OUTER))
7384 == (GOVD_LASTPRIVATE | GOVD_LINEAR_LASTPRIVATE_NO_OUTER))
7385 return ret;
7386 if (ctx->outer_context
7387 && omp_notice_variable (ctx->outer_context, decl, in_code))
7388 return true;
7389 return ret;
7392 /* Verify that DECL is private within CTX. If there's specific information
7393 to the contrary in the innermost scope, generate an error. */
7395 static bool
7396 omp_is_private (struct gimplify_omp_ctx *ctx, tree decl, int simd)
7398 splay_tree_node n;
7400 n = splay_tree_lookup (ctx->variables, (splay_tree_key)decl);
7401 if (n != NULL)
7403 if (n->value & GOVD_SHARED)
7405 if (ctx == gimplify_omp_ctxp)
7407 if (simd)
7408 error ("iteration variable %qE is predetermined linear",
7409 DECL_NAME (decl));
7410 else
7411 error ("iteration variable %qE should be private",
7412 DECL_NAME (decl));
7413 n->value = GOVD_PRIVATE;
7414 return true;
7416 else
7417 return false;
7419 else if ((n->value & GOVD_EXPLICIT) != 0
7420 && (ctx == gimplify_omp_ctxp
7421 || (ctx->region_type == ORT_COMBINED_PARALLEL
7422 && gimplify_omp_ctxp->outer_context == ctx)))
7424 if ((n->value & GOVD_FIRSTPRIVATE) != 0)
7425 error ("iteration variable %qE should not be firstprivate",
7426 DECL_NAME (decl));
7427 else if ((n->value & GOVD_REDUCTION) != 0)
7428 error ("iteration variable %qE should not be reduction",
7429 DECL_NAME (decl));
7430 else if (simd == 0 && (n->value & GOVD_LINEAR) != 0)
7431 error ("iteration variable %qE should not be linear",
7432 DECL_NAME (decl));
7433 else if (simd == 1 && (n->value & GOVD_LASTPRIVATE) != 0)
7434 error ("iteration variable %qE should not be lastprivate",
7435 DECL_NAME (decl));
7436 else if (simd && (n->value & GOVD_PRIVATE) != 0)
7437 error ("iteration variable %qE should not be private",
7438 DECL_NAME (decl));
7439 else if (simd == 2 && (n->value & GOVD_LINEAR) != 0)
7440 error ("iteration variable %qE is predetermined linear",
7441 DECL_NAME (decl));
7443 return (ctx == gimplify_omp_ctxp
7444 || (ctx->region_type == ORT_COMBINED_PARALLEL
7445 && gimplify_omp_ctxp->outer_context == ctx));
7448 if (ctx->region_type != ORT_WORKSHARE
7449 && ctx->region_type != ORT_SIMD
7450 && ctx->region_type != ORT_ACC)
7451 return false;
7452 else if (ctx->outer_context)
7453 return omp_is_private (ctx->outer_context, decl, simd);
7454 return false;
7457 /* Return true if DECL is private within a parallel region
7458 that binds to the current construct's context or in parallel
7459 region's REDUCTION clause. */
7461 static bool
7462 omp_check_private (struct gimplify_omp_ctx *ctx, tree decl, bool copyprivate)
7464 splay_tree_node n;
7468 ctx = ctx->outer_context;
7469 if (ctx == NULL)
7471 if (is_global_var (decl))
7472 return false;
7474 /* References might be private, but might be shared too,
7475 when checking for copyprivate, assume they might be
7476 private, otherwise assume they might be shared. */
7477 if (copyprivate)
7478 return true;
7480 if (lang_hooks.decls.omp_privatize_by_reference (decl))
7481 return false;
7483 /* Treat C++ privatized non-static data members outside
7484 of the privatization the same. */
7485 if (omp_member_access_dummy_var (decl))
7486 return false;
7488 return true;
7491 n = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
7493 if ((ctx->region_type & (ORT_TARGET | ORT_TARGET_DATA)) != 0
7494 && (n == NULL || (n->value & GOVD_DATA_SHARE_CLASS) == 0))
7495 continue;
7497 if (n != NULL)
7499 if ((n->value & GOVD_LOCAL) != 0
7500 && omp_member_access_dummy_var (decl))
7501 return false;
7502 return (n->value & GOVD_SHARED) == 0;
7505 while (ctx->region_type == ORT_WORKSHARE
7506 || ctx->region_type == ORT_SIMD
7507 || ctx->region_type == ORT_ACC);
7508 return false;
7511 /* Callback for walk_tree to find a DECL_EXPR for the given DECL. */
7513 static tree
7514 find_decl_expr (tree *tp, int *walk_subtrees, void *data)
7516 tree t = *tp;
7518 /* If this node has been visited, unmark it and keep looking. */
7519 if (TREE_CODE (t) == DECL_EXPR && DECL_EXPR_DECL (t) == (tree) data)
7520 return t;
7522 if (IS_TYPE_OR_DECL_P (t))
7523 *walk_subtrees = 0;
7524 return NULL_TREE;
7527 /* Scan the OMP clauses in *LIST_P, installing mappings into a new
7528 and previous omp contexts. */
7530 static void
7531 gimplify_scan_omp_clauses (tree *list_p, gimple_seq *pre_p,
7532 enum omp_region_type region_type,
7533 enum tree_code code)
7535 struct gimplify_omp_ctx *ctx, *outer_ctx;
7536 tree c;
7537 hash_map<tree, tree> *struct_map_to_clause = NULL;
7538 tree *prev_list_p = NULL;
7540 ctx = new_omp_context (region_type);
7541 outer_ctx = ctx->outer_context;
7542 if (code == OMP_TARGET)
7544 if (!lang_GNU_Fortran ())
7545 ctx->target_map_pointers_as_0len_arrays = true;
7546 ctx->target_map_scalars_firstprivate = true;
7548 if (!lang_GNU_Fortran ())
7549 switch (code)
7551 case OMP_TARGET:
7552 case OMP_TARGET_DATA:
7553 case OMP_TARGET_ENTER_DATA:
7554 case OMP_TARGET_EXIT_DATA:
7555 case OACC_DECLARE:
7556 case OACC_HOST_DATA:
7557 ctx->target_firstprivatize_array_bases = true;
7558 default:
7559 break;
7562 while ((c = *list_p) != NULL)
7564 bool remove = false;
7565 bool notice_outer = true;
7566 const char *check_non_private = NULL;
7567 unsigned int flags;
7568 tree decl;
7570 switch (OMP_CLAUSE_CODE (c))
7572 case OMP_CLAUSE_PRIVATE:
7573 flags = GOVD_PRIVATE | GOVD_EXPLICIT;
7574 if (lang_hooks.decls.omp_private_outer_ref (OMP_CLAUSE_DECL (c)))
7576 flags |= GOVD_PRIVATE_OUTER_REF;
7577 OMP_CLAUSE_PRIVATE_OUTER_REF (c) = 1;
7579 else
7580 notice_outer = false;
7581 goto do_add;
7582 case OMP_CLAUSE_SHARED:
7583 flags = GOVD_SHARED | GOVD_EXPLICIT;
7584 goto do_add;
7585 case OMP_CLAUSE_FIRSTPRIVATE:
7586 flags = GOVD_FIRSTPRIVATE | GOVD_EXPLICIT;
7587 check_non_private = "firstprivate";
7588 goto do_add;
7589 case OMP_CLAUSE_LASTPRIVATE:
7590 flags = GOVD_LASTPRIVATE | GOVD_SEEN | GOVD_EXPLICIT;
7591 check_non_private = "lastprivate";
7592 decl = OMP_CLAUSE_DECL (c);
7593 if (error_operand_p (decl))
7594 goto do_add;
7595 else if (outer_ctx
7596 && (outer_ctx->region_type == ORT_COMBINED_PARALLEL
7597 || outer_ctx->region_type == ORT_COMBINED_TEAMS)
7598 && splay_tree_lookup (outer_ctx->variables,
7599 (splay_tree_key) decl) == NULL)
7601 omp_add_variable (outer_ctx, decl, GOVD_SHARED | GOVD_SEEN);
7602 if (outer_ctx->outer_context)
7603 omp_notice_variable (outer_ctx->outer_context, decl, true);
7605 else if (outer_ctx
7606 && (outer_ctx->region_type & ORT_TASK) != 0
7607 && outer_ctx->combined_loop
7608 && splay_tree_lookup (outer_ctx->variables,
7609 (splay_tree_key) decl) == NULL)
7611 omp_add_variable (outer_ctx, decl, GOVD_LASTPRIVATE | GOVD_SEEN);
7612 if (outer_ctx->outer_context)
7613 omp_notice_variable (outer_ctx->outer_context, decl, true);
7615 else if (outer_ctx
7616 && (outer_ctx->region_type == ORT_WORKSHARE
7617 || outer_ctx->region_type == ORT_ACC)
7618 && outer_ctx->combined_loop
7619 && splay_tree_lookup (outer_ctx->variables,
7620 (splay_tree_key) decl) == NULL
7621 && !omp_check_private (outer_ctx, decl, false))
7623 omp_add_variable (outer_ctx, decl, GOVD_LASTPRIVATE | GOVD_SEEN);
7624 if (outer_ctx->outer_context
7625 && (outer_ctx->outer_context->region_type
7626 == ORT_COMBINED_PARALLEL)
7627 && splay_tree_lookup (outer_ctx->outer_context->variables,
7628 (splay_tree_key) decl) == NULL)
7630 struct gimplify_omp_ctx *octx = outer_ctx->outer_context;
7631 omp_add_variable (octx, decl, GOVD_SHARED | GOVD_SEEN);
7632 if (octx->outer_context)
7634 octx = octx->outer_context;
7635 if (octx->region_type == ORT_WORKSHARE
7636 && octx->combined_loop
7637 && splay_tree_lookup (octx->variables,
7638 (splay_tree_key) decl) == NULL
7639 && !omp_check_private (octx, decl, false))
7641 omp_add_variable (octx, decl,
7642 GOVD_LASTPRIVATE | GOVD_SEEN);
7643 octx = octx->outer_context;
7644 if (octx
7645 && octx->region_type == ORT_COMBINED_TEAMS
7646 && (splay_tree_lookup (octx->variables,
7647 (splay_tree_key) decl)
7648 == NULL))
7650 omp_add_variable (octx, decl,
7651 GOVD_SHARED | GOVD_SEEN);
7652 octx = octx->outer_context;
7655 if (octx)
7656 omp_notice_variable (octx, decl, true);
7659 else if (outer_ctx->outer_context)
7660 omp_notice_variable (outer_ctx->outer_context, decl, true);
7662 goto do_add;
7663 case OMP_CLAUSE_REDUCTION:
7664 flags = GOVD_REDUCTION | GOVD_SEEN | GOVD_EXPLICIT;
7665 /* OpenACC permits reductions on private variables. */
7666 if (!(region_type & ORT_ACC))
7667 check_non_private = "reduction";
7668 decl = OMP_CLAUSE_DECL (c);
7669 if (TREE_CODE (decl) == MEM_REF)
7671 tree type = TREE_TYPE (decl);
7672 if (gimplify_expr (&TYPE_MAX_VALUE (TYPE_DOMAIN (type)), pre_p,
7673 NULL, is_gimple_val, fb_rvalue, false)
7674 == GS_ERROR)
7676 remove = true;
7677 break;
7679 tree v = TYPE_MAX_VALUE (TYPE_DOMAIN (type));
7680 if (DECL_P (v))
7682 omp_firstprivatize_variable (ctx, v);
7683 omp_notice_variable (ctx, v, true);
7685 decl = TREE_OPERAND (decl, 0);
7686 if (TREE_CODE (decl) == POINTER_PLUS_EXPR)
7688 if (gimplify_expr (&TREE_OPERAND (decl, 1), pre_p,
7689 NULL, is_gimple_val, fb_rvalue, false)
7690 == GS_ERROR)
7692 remove = true;
7693 break;
7695 v = TREE_OPERAND (decl, 1);
7696 if (DECL_P (v))
7698 omp_firstprivatize_variable (ctx, v);
7699 omp_notice_variable (ctx, v, true);
7701 decl = TREE_OPERAND (decl, 0);
7703 if (TREE_CODE (decl) == ADDR_EXPR
7704 || TREE_CODE (decl) == INDIRECT_REF)
7705 decl = TREE_OPERAND (decl, 0);
7707 goto do_add_decl;
7708 case OMP_CLAUSE_LINEAR:
7709 if (gimplify_expr (&OMP_CLAUSE_LINEAR_STEP (c), pre_p, NULL,
7710 is_gimple_val, fb_rvalue) == GS_ERROR)
7712 remove = true;
7713 break;
7715 else
7717 if (code == OMP_SIMD
7718 && !OMP_CLAUSE_LINEAR_NO_COPYIN (c))
7720 struct gimplify_omp_ctx *octx = outer_ctx;
7721 if (octx
7722 && octx->region_type == ORT_WORKSHARE
7723 && octx->combined_loop
7724 && !octx->distribute)
7726 if (octx->outer_context
7727 && (octx->outer_context->region_type
7728 == ORT_COMBINED_PARALLEL))
7729 octx = octx->outer_context->outer_context;
7730 else
7731 octx = octx->outer_context;
7733 if (octx
7734 && octx->region_type == ORT_WORKSHARE
7735 && octx->combined_loop
7736 && octx->distribute)
7738 error_at (OMP_CLAUSE_LOCATION (c),
7739 "%<linear%> clause for variable other than "
7740 "loop iterator specified on construct "
7741 "combined with %<distribute%>");
7742 remove = true;
7743 break;
7746 /* For combined #pragma omp parallel for simd, need to put
7747 lastprivate and perhaps firstprivate too on the
7748 parallel. Similarly for #pragma omp for simd. */
7749 struct gimplify_omp_ctx *octx = outer_ctx;
7750 decl = NULL_TREE;
7753 if (OMP_CLAUSE_LINEAR_NO_COPYIN (c)
7754 && OMP_CLAUSE_LINEAR_NO_COPYOUT (c))
7755 break;
7756 decl = OMP_CLAUSE_DECL (c);
7757 if (error_operand_p (decl))
7759 decl = NULL_TREE;
7760 break;
7762 flags = GOVD_SEEN;
7763 if (!OMP_CLAUSE_LINEAR_NO_COPYIN (c))
7764 flags |= GOVD_FIRSTPRIVATE;
7765 if (!OMP_CLAUSE_LINEAR_NO_COPYOUT (c))
7766 flags |= GOVD_LASTPRIVATE;
7767 if (octx
7768 && octx->region_type == ORT_WORKSHARE
7769 && octx->combined_loop)
7771 if (octx->outer_context
7772 && (octx->outer_context->region_type
7773 == ORT_COMBINED_PARALLEL))
7774 octx = octx->outer_context;
7775 else if (omp_check_private (octx, decl, false))
7776 break;
7778 else if (octx
7779 && (octx->region_type & ORT_TASK) != 0
7780 && octx->combined_loop)
7782 else if (octx
7783 && octx->region_type == ORT_COMBINED_PARALLEL
7784 && ctx->region_type == ORT_WORKSHARE
7785 && octx == outer_ctx)
7786 flags = GOVD_SEEN | GOVD_SHARED;
7787 else if (octx
7788 && octx->region_type == ORT_COMBINED_TEAMS)
7789 flags = GOVD_SEEN | GOVD_SHARED;
7790 else if (octx
7791 && octx->region_type == ORT_COMBINED_TARGET)
7793 flags &= ~GOVD_LASTPRIVATE;
7794 if (flags == GOVD_SEEN)
7795 break;
7797 else
7798 break;
7799 splay_tree_node on
7800 = splay_tree_lookup (octx->variables,
7801 (splay_tree_key) decl);
7802 if (on && (on->value & GOVD_DATA_SHARE_CLASS) != 0)
7804 octx = NULL;
7805 break;
7807 omp_add_variable (octx, decl, flags);
7808 if (octx->outer_context == NULL)
7809 break;
7810 octx = octx->outer_context;
7812 while (1);
7813 if (octx
7814 && decl
7815 && (!OMP_CLAUSE_LINEAR_NO_COPYIN (c)
7816 || !OMP_CLAUSE_LINEAR_NO_COPYOUT (c)))
7817 omp_notice_variable (octx, decl, true);
7819 flags = GOVD_LINEAR | GOVD_EXPLICIT;
7820 if (OMP_CLAUSE_LINEAR_NO_COPYIN (c)
7821 && OMP_CLAUSE_LINEAR_NO_COPYOUT (c))
7823 notice_outer = false;
7824 flags |= GOVD_LINEAR_LASTPRIVATE_NO_OUTER;
7826 goto do_add;
7828 case OMP_CLAUSE_MAP:
7829 decl = OMP_CLAUSE_DECL (c);
7830 if (error_operand_p (decl))
7831 remove = true;
7832 switch (code)
7834 case OMP_TARGET:
7835 break;
7836 case OACC_DATA:
7837 if (TREE_CODE (TREE_TYPE (decl)) != ARRAY_TYPE)
7838 break;
7839 /* FALLTHRU */
7840 case OMP_TARGET_DATA:
7841 case OMP_TARGET_ENTER_DATA:
7842 case OMP_TARGET_EXIT_DATA:
7843 case OACC_ENTER_DATA:
7844 case OACC_EXIT_DATA:
7845 case OACC_HOST_DATA:
7846 if (OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_FIRSTPRIVATE_POINTER
7847 || (OMP_CLAUSE_MAP_KIND (c)
7848 == GOMP_MAP_FIRSTPRIVATE_REFERENCE))
7849 /* For target {,enter ,exit }data only the array slice is
7850 mapped, but not the pointer to it. */
7851 remove = true;
7852 break;
7853 default:
7854 break;
7856 if (remove)
7857 break;
7858 if (DECL_P (decl) && outer_ctx && (region_type & ORT_ACC))
7860 struct gimplify_omp_ctx *octx;
7861 for (octx = outer_ctx; octx; octx = octx->outer_context)
7863 if (octx->region_type != ORT_ACC_HOST_DATA)
7864 break;
7865 splay_tree_node n2
7866 = splay_tree_lookup (octx->variables,
7867 (splay_tree_key) decl);
7868 if (n2)
7869 error_at (OMP_CLAUSE_LOCATION (c), "variable %qE "
7870 "declared in enclosing %<host_data%> region",
7871 DECL_NAME (decl));
7874 if (OMP_CLAUSE_SIZE (c) == NULL_TREE)
7875 OMP_CLAUSE_SIZE (c) = DECL_P (decl) ? DECL_SIZE_UNIT (decl)
7876 : TYPE_SIZE_UNIT (TREE_TYPE (decl));
7877 if (gimplify_expr (&OMP_CLAUSE_SIZE (c), pre_p,
7878 NULL, is_gimple_val, fb_rvalue) == GS_ERROR)
7880 remove = true;
7881 break;
7883 else if ((OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_FIRSTPRIVATE_POINTER
7884 || (OMP_CLAUSE_MAP_KIND (c)
7885 == GOMP_MAP_FIRSTPRIVATE_REFERENCE))
7886 && TREE_CODE (OMP_CLAUSE_SIZE (c)) != INTEGER_CST)
7888 OMP_CLAUSE_SIZE (c)
7889 = get_initialized_tmp_var (OMP_CLAUSE_SIZE (c), pre_p, NULL,
7890 false);
7891 omp_add_variable (ctx, OMP_CLAUSE_SIZE (c),
7892 GOVD_FIRSTPRIVATE | GOVD_SEEN);
7894 if (!DECL_P (decl))
7896 tree d = decl, *pd;
7897 if (TREE_CODE (d) == ARRAY_REF)
7899 while (TREE_CODE (d) == ARRAY_REF)
7900 d = TREE_OPERAND (d, 0);
7901 if (TREE_CODE (d) == COMPONENT_REF
7902 && TREE_CODE (TREE_TYPE (d)) == ARRAY_TYPE)
7903 decl = d;
7905 pd = &OMP_CLAUSE_DECL (c);
7906 if (d == decl
7907 && TREE_CODE (decl) == INDIRECT_REF
7908 && TREE_CODE (TREE_OPERAND (decl, 0)) == COMPONENT_REF
7909 && (TREE_CODE (TREE_TYPE (TREE_OPERAND (decl, 0)))
7910 == REFERENCE_TYPE))
7912 pd = &TREE_OPERAND (decl, 0);
7913 decl = TREE_OPERAND (decl, 0);
7915 if (TREE_CODE (decl) == COMPONENT_REF)
7917 while (TREE_CODE (decl) == COMPONENT_REF)
7918 decl = TREE_OPERAND (decl, 0);
7919 if (TREE_CODE (decl) == INDIRECT_REF
7920 && DECL_P (TREE_OPERAND (decl, 0))
7921 && (TREE_CODE (TREE_TYPE (TREE_OPERAND (decl, 0)))
7922 == REFERENCE_TYPE))
7923 decl = TREE_OPERAND (decl, 0);
7925 if (gimplify_expr (pd, pre_p, NULL, is_gimple_lvalue, fb_lvalue)
7926 == GS_ERROR)
7928 remove = true;
7929 break;
7931 if (DECL_P (decl))
7933 if (error_operand_p (decl))
7935 remove = true;
7936 break;
7939 tree stype = TREE_TYPE (decl);
7940 if (TREE_CODE (stype) == REFERENCE_TYPE)
7941 stype = TREE_TYPE (stype);
7942 if (TYPE_SIZE_UNIT (stype) == NULL
7943 || TREE_CODE (TYPE_SIZE_UNIT (stype)) != INTEGER_CST)
7945 error_at (OMP_CLAUSE_LOCATION (c),
7946 "mapping field %qE of variable length "
7947 "structure", OMP_CLAUSE_DECL (c));
7948 remove = true;
7949 break;
7952 if (OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_ALWAYS_POINTER)
7954 /* Error recovery. */
7955 if (prev_list_p == NULL)
7957 remove = true;
7958 break;
7960 if (OMP_CLAUSE_CHAIN (*prev_list_p) != c)
7962 tree ch = OMP_CLAUSE_CHAIN (*prev_list_p);
7963 if (ch == NULL_TREE || OMP_CLAUSE_CHAIN (ch) != c)
7965 remove = true;
7966 break;
7971 tree offset;
7972 poly_int64 bitsize, bitpos;
7973 machine_mode mode;
7974 int unsignedp, reversep, volatilep = 0;
7975 tree base = OMP_CLAUSE_DECL (c);
7976 while (TREE_CODE (base) == ARRAY_REF)
7977 base = TREE_OPERAND (base, 0);
7978 if (TREE_CODE (base) == INDIRECT_REF)
7979 base = TREE_OPERAND (base, 0);
7980 base = get_inner_reference (base, &bitsize, &bitpos, &offset,
7981 &mode, &unsignedp, &reversep,
7982 &volatilep);
7983 tree orig_base = base;
7984 if ((TREE_CODE (base) == INDIRECT_REF
7985 || (TREE_CODE (base) == MEM_REF
7986 && integer_zerop (TREE_OPERAND (base, 1))))
7987 && DECL_P (TREE_OPERAND (base, 0))
7988 && (TREE_CODE (TREE_TYPE (TREE_OPERAND (base, 0)))
7989 == REFERENCE_TYPE))
7990 base = TREE_OPERAND (base, 0);
7991 gcc_assert (base == decl
7992 && (offset == NULL_TREE
7993 || poly_int_tree_p (offset)));
7995 splay_tree_node n
7996 = splay_tree_lookup (ctx->variables, (splay_tree_key)decl);
7997 bool ptr = (OMP_CLAUSE_MAP_KIND (c)
7998 == GOMP_MAP_ALWAYS_POINTER);
7999 if (n == NULL || (n->value & GOVD_MAP) == 0)
8001 tree l = build_omp_clause (OMP_CLAUSE_LOCATION (c),
8002 OMP_CLAUSE_MAP);
8003 OMP_CLAUSE_SET_MAP_KIND (l, GOMP_MAP_STRUCT);
8004 if (orig_base != base)
8005 OMP_CLAUSE_DECL (l) = unshare_expr (orig_base);
8006 else
8007 OMP_CLAUSE_DECL (l) = decl;
8008 OMP_CLAUSE_SIZE (l) = size_int (1);
8009 if (struct_map_to_clause == NULL)
8010 struct_map_to_clause = new hash_map<tree, tree>;
8011 struct_map_to_clause->put (decl, l);
8012 if (ptr)
8014 enum gomp_map_kind mkind
8015 = code == OMP_TARGET_EXIT_DATA
8016 ? GOMP_MAP_RELEASE : GOMP_MAP_ALLOC;
8017 tree c2 = build_omp_clause (OMP_CLAUSE_LOCATION (c),
8018 OMP_CLAUSE_MAP);
8019 OMP_CLAUSE_SET_MAP_KIND (c2, mkind);
8020 OMP_CLAUSE_DECL (c2)
8021 = unshare_expr (OMP_CLAUSE_DECL (c));
8022 OMP_CLAUSE_CHAIN (c2) = *prev_list_p;
8023 OMP_CLAUSE_SIZE (c2)
8024 = TYPE_SIZE_UNIT (ptr_type_node);
8025 OMP_CLAUSE_CHAIN (l) = c2;
8026 if (OMP_CLAUSE_CHAIN (*prev_list_p) != c)
8028 tree c4 = OMP_CLAUSE_CHAIN (*prev_list_p);
8029 tree c3
8030 = build_omp_clause (OMP_CLAUSE_LOCATION (c),
8031 OMP_CLAUSE_MAP);
8032 OMP_CLAUSE_SET_MAP_KIND (c3, mkind);
8033 OMP_CLAUSE_DECL (c3)
8034 = unshare_expr (OMP_CLAUSE_DECL (c4));
8035 OMP_CLAUSE_SIZE (c3)
8036 = TYPE_SIZE_UNIT (ptr_type_node);
8037 OMP_CLAUSE_CHAIN (c3) = *prev_list_p;
8038 OMP_CLAUSE_CHAIN (c2) = c3;
8040 *prev_list_p = l;
8041 prev_list_p = NULL;
8043 else
8045 OMP_CLAUSE_CHAIN (l) = c;
8046 *list_p = l;
8047 list_p = &OMP_CLAUSE_CHAIN (l);
8049 if (orig_base != base && code == OMP_TARGET)
8051 tree c2 = build_omp_clause (OMP_CLAUSE_LOCATION (c),
8052 OMP_CLAUSE_MAP);
8053 enum gomp_map_kind mkind
8054 = GOMP_MAP_FIRSTPRIVATE_REFERENCE;
8055 OMP_CLAUSE_SET_MAP_KIND (c2, mkind);
8056 OMP_CLAUSE_DECL (c2) = decl;
8057 OMP_CLAUSE_SIZE (c2) = size_zero_node;
8058 OMP_CLAUSE_CHAIN (c2) = OMP_CLAUSE_CHAIN (l);
8059 OMP_CLAUSE_CHAIN (l) = c2;
8061 flags = GOVD_MAP | GOVD_EXPLICIT;
8062 if (GOMP_MAP_ALWAYS_P (OMP_CLAUSE_MAP_KIND (c)) || ptr)
8063 flags |= GOVD_SEEN;
8064 goto do_add_decl;
8066 else
8068 tree *osc = struct_map_to_clause->get (decl);
8069 tree *sc = NULL, *scp = NULL;
8070 if (GOMP_MAP_ALWAYS_P (OMP_CLAUSE_MAP_KIND (c)) || ptr)
8071 n->value |= GOVD_SEEN;
8072 poly_offset_int o1, o2;
8073 if (offset)
8074 o1 = wi::to_poly_offset (offset);
8075 else
8076 o1 = 0;
8077 if (maybe_ne (bitpos, 0))
8078 o1 += bits_to_bytes_round_down (bitpos);
8079 sc = &OMP_CLAUSE_CHAIN (*osc);
8080 if (*sc != c
8081 && (OMP_CLAUSE_MAP_KIND (*sc)
8082 == GOMP_MAP_FIRSTPRIVATE_REFERENCE))
8083 sc = &OMP_CLAUSE_CHAIN (*sc);
8084 for (; *sc != c; sc = &OMP_CLAUSE_CHAIN (*sc))
8085 if (ptr && sc == prev_list_p)
8086 break;
8087 else if (TREE_CODE (OMP_CLAUSE_DECL (*sc))
8088 != COMPONENT_REF
8089 && (TREE_CODE (OMP_CLAUSE_DECL (*sc))
8090 != INDIRECT_REF)
8091 && (TREE_CODE (OMP_CLAUSE_DECL (*sc))
8092 != ARRAY_REF))
8093 break;
8094 else
8096 tree offset2;
8097 poly_int64 bitsize2, bitpos2;
8098 base = OMP_CLAUSE_DECL (*sc);
8099 if (TREE_CODE (base) == ARRAY_REF)
8101 while (TREE_CODE (base) == ARRAY_REF)
8102 base = TREE_OPERAND (base, 0);
8103 if (TREE_CODE (base) != COMPONENT_REF
8104 || (TREE_CODE (TREE_TYPE (base))
8105 != ARRAY_TYPE))
8106 break;
8108 else if (TREE_CODE (base) == INDIRECT_REF
8109 && (TREE_CODE (TREE_OPERAND (base, 0))
8110 == COMPONENT_REF)
8111 && (TREE_CODE (TREE_TYPE
8112 (TREE_OPERAND (base, 0)))
8113 == REFERENCE_TYPE))
8114 base = TREE_OPERAND (base, 0);
8115 base = get_inner_reference (base, &bitsize2,
8116 &bitpos2, &offset2,
8117 &mode, &unsignedp,
8118 &reversep, &volatilep);
8119 if ((TREE_CODE (base) == INDIRECT_REF
8120 || (TREE_CODE (base) == MEM_REF
8121 && integer_zerop (TREE_OPERAND (base,
8122 1))))
8123 && DECL_P (TREE_OPERAND (base, 0))
8124 && (TREE_CODE (TREE_TYPE (TREE_OPERAND (base,
8125 0)))
8126 == REFERENCE_TYPE))
8127 base = TREE_OPERAND (base, 0);
8128 if (base != decl)
8129 break;
8130 if (scp)
8131 continue;
8132 gcc_assert (offset == NULL_TREE
8133 || poly_int_tree_p (offset));
8134 tree d1 = OMP_CLAUSE_DECL (*sc);
8135 tree d2 = OMP_CLAUSE_DECL (c);
8136 while (TREE_CODE (d1) == ARRAY_REF)
8137 d1 = TREE_OPERAND (d1, 0);
8138 while (TREE_CODE (d2) == ARRAY_REF)
8139 d2 = TREE_OPERAND (d2, 0);
8140 if (TREE_CODE (d1) == INDIRECT_REF)
8141 d1 = TREE_OPERAND (d1, 0);
8142 if (TREE_CODE (d2) == INDIRECT_REF)
8143 d2 = TREE_OPERAND (d2, 0);
8144 while (TREE_CODE (d1) == COMPONENT_REF)
8145 if (TREE_CODE (d2) == COMPONENT_REF
8146 && TREE_OPERAND (d1, 1)
8147 == TREE_OPERAND (d2, 1))
8149 d1 = TREE_OPERAND (d1, 0);
8150 d2 = TREE_OPERAND (d2, 0);
8152 else
8153 break;
8154 if (d1 == d2)
8156 error_at (OMP_CLAUSE_LOCATION (c),
8157 "%qE appears more than once in map "
8158 "clauses", OMP_CLAUSE_DECL (c));
8159 remove = true;
8160 break;
8162 if (offset2)
8163 o2 = wi::to_poly_offset (offset2);
8164 else
8165 o2 = 0;
8166 o2 += bits_to_bytes_round_down (bitpos2);
8167 if (maybe_lt (o1, o2)
8168 || (known_eq (o1, 2)
8169 && maybe_lt (bitpos, bitpos2)))
8171 if (ptr)
8172 scp = sc;
8173 else
8174 break;
8177 if (remove)
8178 break;
8179 OMP_CLAUSE_SIZE (*osc)
8180 = size_binop (PLUS_EXPR, OMP_CLAUSE_SIZE (*osc),
8181 size_one_node);
8182 if (ptr)
8184 tree c2 = build_omp_clause (OMP_CLAUSE_LOCATION (c),
8185 OMP_CLAUSE_MAP);
8186 tree cl = NULL_TREE;
8187 enum gomp_map_kind mkind
8188 = code == OMP_TARGET_EXIT_DATA
8189 ? GOMP_MAP_RELEASE : GOMP_MAP_ALLOC;
8190 OMP_CLAUSE_SET_MAP_KIND (c2, mkind);
8191 OMP_CLAUSE_DECL (c2)
8192 = unshare_expr (OMP_CLAUSE_DECL (c));
8193 OMP_CLAUSE_CHAIN (c2) = scp ? *scp : *prev_list_p;
8194 OMP_CLAUSE_SIZE (c2)
8195 = TYPE_SIZE_UNIT (ptr_type_node);
8196 cl = scp ? *prev_list_p : c2;
8197 if (OMP_CLAUSE_CHAIN (*prev_list_p) != c)
8199 tree c4 = OMP_CLAUSE_CHAIN (*prev_list_p);
8200 tree c3
8201 = build_omp_clause (OMP_CLAUSE_LOCATION (c),
8202 OMP_CLAUSE_MAP);
8203 OMP_CLAUSE_SET_MAP_KIND (c3, mkind);
8204 OMP_CLAUSE_DECL (c3)
8205 = unshare_expr (OMP_CLAUSE_DECL (c4));
8206 OMP_CLAUSE_SIZE (c3)
8207 = TYPE_SIZE_UNIT (ptr_type_node);
8208 OMP_CLAUSE_CHAIN (c3) = *prev_list_p;
8209 if (!scp)
8210 OMP_CLAUSE_CHAIN (c2) = c3;
8211 else
8212 cl = c3;
8214 if (scp)
8215 *scp = c2;
8216 if (sc == prev_list_p)
8218 *sc = cl;
8219 prev_list_p = NULL;
8221 else
8223 *prev_list_p = OMP_CLAUSE_CHAIN (c);
8224 list_p = prev_list_p;
8225 prev_list_p = NULL;
8226 OMP_CLAUSE_CHAIN (c) = *sc;
8227 *sc = cl;
8228 continue;
8231 else if (*sc != c)
8233 *list_p = OMP_CLAUSE_CHAIN (c);
8234 OMP_CLAUSE_CHAIN (c) = *sc;
8235 *sc = c;
8236 continue;
8240 if (!remove
8241 && OMP_CLAUSE_MAP_KIND (c) != GOMP_MAP_ALWAYS_POINTER
8242 && OMP_CLAUSE_CHAIN (c)
8243 && OMP_CLAUSE_CODE (OMP_CLAUSE_CHAIN (c)) == OMP_CLAUSE_MAP
8244 && (OMP_CLAUSE_MAP_KIND (OMP_CLAUSE_CHAIN (c))
8245 == GOMP_MAP_ALWAYS_POINTER))
8246 prev_list_p = list_p;
8247 break;
8249 flags = GOVD_MAP | GOVD_EXPLICIT;
8250 if (OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_ALWAYS_TO
8251 || OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_ALWAYS_TOFROM)
8252 flags |= GOVD_MAP_ALWAYS_TO;
8253 goto do_add;
8255 case OMP_CLAUSE_DEPEND:
8256 if (OMP_CLAUSE_DEPEND_KIND (c) == OMP_CLAUSE_DEPEND_SINK)
8258 tree deps = OMP_CLAUSE_DECL (c);
8259 while (deps && TREE_CODE (deps) == TREE_LIST)
8261 if (TREE_CODE (TREE_PURPOSE (deps)) == TRUNC_DIV_EXPR
8262 && DECL_P (TREE_OPERAND (TREE_PURPOSE (deps), 1)))
8263 gimplify_expr (&TREE_OPERAND (TREE_PURPOSE (deps), 1),
8264 pre_p, NULL, is_gimple_val, fb_rvalue);
8265 deps = TREE_CHAIN (deps);
8267 break;
8269 else if (OMP_CLAUSE_DEPEND_KIND (c) == OMP_CLAUSE_DEPEND_SOURCE)
8270 break;
8271 if (TREE_CODE (OMP_CLAUSE_DECL (c)) == COMPOUND_EXPR)
8273 gimplify_expr (&TREE_OPERAND (OMP_CLAUSE_DECL (c), 0), pre_p,
8274 NULL, is_gimple_val, fb_rvalue);
8275 OMP_CLAUSE_DECL (c) = TREE_OPERAND (OMP_CLAUSE_DECL (c), 1);
8277 if (error_operand_p (OMP_CLAUSE_DECL (c)))
8279 remove = true;
8280 break;
8282 OMP_CLAUSE_DECL (c) = build_fold_addr_expr (OMP_CLAUSE_DECL (c));
8283 if (gimplify_expr (&OMP_CLAUSE_DECL (c), pre_p, NULL,
8284 is_gimple_val, fb_rvalue) == GS_ERROR)
8286 remove = true;
8287 break;
8289 break;
8291 case OMP_CLAUSE_TO:
8292 case OMP_CLAUSE_FROM:
8293 case OMP_CLAUSE__CACHE_:
8294 decl = OMP_CLAUSE_DECL (c);
8295 if (error_operand_p (decl))
8297 remove = true;
8298 break;
8300 if (OMP_CLAUSE_SIZE (c) == NULL_TREE)
8301 OMP_CLAUSE_SIZE (c) = DECL_P (decl) ? DECL_SIZE_UNIT (decl)
8302 : TYPE_SIZE_UNIT (TREE_TYPE (decl));
8303 if (gimplify_expr (&OMP_CLAUSE_SIZE (c), pre_p,
8304 NULL, is_gimple_val, fb_rvalue) == GS_ERROR)
8306 remove = true;
8307 break;
8309 if (!DECL_P (decl))
8311 if (gimplify_expr (&OMP_CLAUSE_DECL (c), pre_p,
8312 NULL, is_gimple_lvalue, fb_lvalue)
8313 == GS_ERROR)
8315 remove = true;
8316 break;
8318 break;
8320 goto do_notice;
8322 case OMP_CLAUSE_USE_DEVICE_PTR:
8323 flags = GOVD_FIRSTPRIVATE | GOVD_EXPLICIT;
8324 goto do_add;
8325 case OMP_CLAUSE_IS_DEVICE_PTR:
8326 flags = GOVD_FIRSTPRIVATE | GOVD_EXPLICIT;
8327 goto do_add;
8329 do_add:
8330 decl = OMP_CLAUSE_DECL (c);
8331 do_add_decl:
8332 if (error_operand_p (decl))
8334 remove = true;
8335 break;
8337 if (DECL_NAME (decl) == NULL_TREE && (flags & GOVD_SHARED) == 0)
8339 tree t = omp_member_access_dummy_var (decl);
8340 if (t)
8342 tree v = DECL_VALUE_EXPR (decl);
8343 DECL_NAME (decl) = DECL_NAME (TREE_OPERAND (v, 1));
8344 if (outer_ctx)
8345 omp_notice_variable (outer_ctx, t, true);
8348 if (code == OACC_DATA
8349 && OMP_CLAUSE_CODE (c) == OMP_CLAUSE_MAP
8350 && OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_FIRSTPRIVATE_POINTER)
8351 flags |= GOVD_MAP_0LEN_ARRAY;
8352 omp_add_variable (ctx, decl, flags);
8353 if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_REDUCTION
8354 && OMP_CLAUSE_REDUCTION_PLACEHOLDER (c))
8356 omp_add_variable (ctx, OMP_CLAUSE_REDUCTION_PLACEHOLDER (c),
8357 GOVD_LOCAL | GOVD_SEEN);
8358 if (OMP_CLAUSE_REDUCTION_DECL_PLACEHOLDER (c)
8359 && walk_tree (&OMP_CLAUSE_REDUCTION_INIT (c),
8360 find_decl_expr,
8361 OMP_CLAUSE_REDUCTION_DECL_PLACEHOLDER (c),
8362 NULL) == NULL_TREE)
8363 omp_add_variable (ctx,
8364 OMP_CLAUSE_REDUCTION_DECL_PLACEHOLDER (c),
8365 GOVD_LOCAL | GOVD_SEEN);
8366 gimplify_omp_ctxp = ctx;
8367 push_gimplify_context ();
8369 OMP_CLAUSE_REDUCTION_GIMPLE_INIT (c) = NULL;
8370 OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (c) = NULL;
8372 gimplify_and_add (OMP_CLAUSE_REDUCTION_INIT (c),
8373 &OMP_CLAUSE_REDUCTION_GIMPLE_INIT (c));
8374 pop_gimplify_context
8375 (gimple_seq_first_stmt (OMP_CLAUSE_REDUCTION_GIMPLE_INIT (c)));
8376 push_gimplify_context ();
8377 gimplify_and_add (OMP_CLAUSE_REDUCTION_MERGE (c),
8378 &OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (c));
8379 pop_gimplify_context
8380 (gimple_seq_first_stmt (OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (c)));
8381 OMP_CLAUSE_REDUCTION_INIT (c) = NULL_TREE;
8382 OMP_CLAUSE_REDUCTION_MERGE (c) = NULL_TREE;
8384 gimplify_omp_ctxp = outer_ctx;
8386 else if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LASTPRIVATE
8387 && OMP_CLAUSE_LASTPRIVATE_STMT (c))
8389 gimplify_omp_ctxp = ctx;
8390 push_gimplify_context ();
8391 if (TREE_CODE (OMP_CLAUSE_LASTPRIVATE_STMT (c)) != BIND_EXPR)
8393 tree bind = build3 (BIND_EXPR, void_type_node, NULL,
8394 NULL, NULL);
8395 TREE_SIDE_EFFECTS (bind) = 1;
8396 BIND_EXPR_BODY (bind) = OMP_CLAUSE_LASTPRIVATE_STMT (c);
8397 OMP_CLAUSE_LASTPRIVATE_STMT (c) = bind;
8399 gimplify_and_add (OMP_CLAUSE_LASTPRIVATE_STMT (c),
8400 &OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c));
8401 pop_gimplify_context
8402 (gimple_seq_first_stmt (OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c)));
8403 OMP_CLAUSE_LASTPRIVATE_STMT (c) = NULL_TREE;
8405 gimplify_omp_ctxp = outer_ctx;
8407 else if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LINEAR
8408 && OMP_CLAUSE_LINEAR_STMT (c))
8410 gimplify_omp_ctxp = ctx;
8411 push_gimplify_context ();
8412 if (TREE_CODE (OMP_CLAUSE_LINEAR_STMT (c)) != BIND_EXPR)
8414 tree bind = build3 (BIND_EXPR, void_type_node, NULL,
8415 NULL, NULL);
8416 TREE_SIDE_EFFECTS (bind) = 1;
8417 BIND_EXPR_BODY (bind) = OMP_CLAUSE_LINEAR_STMT (c);
8418 OMP_CLAUSE_LINEAR_STMT (c) = bind;
8420 gimplify_and_add (OMP_CLAUSE_LINEAR_STMT (c),
8421 &OMP_CLAUSE_LINEAR_GIMPLE_SEQ (c));
8422 pop_gimplify_context
8423 (gimple_seq_first_stmt (OMP_CLAUSE_LINEAR_GIMPLE_SEQ (c)));
8424 OMP_CLAUSE_LINEAR_STMT (c) = NULL_TREE;
8426 gimplify_omp_ctxp = outer_ctx;
8428 if (notice_outer)
8429 goto do_notice;
8430 break;
8432 case OMP_CLAUSE_COPYIN:
8433 case OMP_CLAUSE_COPYPRIVATE:
8434 decl = OMP_CLAUSE_DECL (c);
8435 if (error_operand_p (decl))
8437 remove = true;
8438 break;
8440 if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_COPYPRIVATE
8441 && !remove
8442 && !omp_check_private (ctx, decl, true))
8444 remove = true;
8445 if (is_global_var (decl))
8447 if (DECL_THREAD_LOCAL_P (decl))
8448 remove = false;
8449 else if (DECL_HAS_VALUE_EXPR_P (decl))
8451 tree value = get_base_address (DECL_VALUE_EXPR (decl));
8453 if (value
8454 && DECL_P (value)
8455 && DECL_THREAD_LOCAL_P (value))
8456 remove = false;
8459 if (remove)
8460 error_at (OMP_CLAUSE_LOCATION (c),
8461 "copyprivate variable %qE is not threadprivate"
8462 " or private in outer context", DECL_NAME (decl));
8464 do_notice:
8465 if (outer_ctx)
8466 omp_notice_variable (outer_ctx, decl, true);
8467 if (check_non_private
8468 && region_type == ORT_WORKSHARE
8469 && (OMP_CLAUSE_CODE (c) != OMP_CLAUSE_REDUCTION
8470 || decl == OMP_CLAUSE_DECL (c)
8471 || (TREE_CODE (OMP_CLAUSE_DECL (c)) == MEM_REF
8472 && (TREE_CODE (TREE_OPERAND (OMP_CLAUSE_DECL (c), 0))
8473 == ADDR_EXPR
8474 || (TREE_CODE (TREE_OPERAND (OMP_CLAUSE_DECL (c), 0))
8475 == POINTER_PLUS_EXPR
8476 && (TREE_CODE (TREE_OPERAND (TREE_OPERAND
8477 (OMP_CLAUSE_DECL (c), 0), 0))
8478 == ADDR_EXPR)))))
8479 && omp_check_private (ctx, decl, false))
8481 error ("%s variable %qE is private in outer context",
8482 check_non_private, DECL_NAME (decl));
8483 remove = true;
8485 break;
8487 case OMP_CLAUSE_IF:
8488 if (OMP_CLAUSE_IF_MODIFIER (c) != ERROR_MARK
8489 && OMP_CLAUSE_IF_MODIFIER (c) != code)
8491 const char *p[2];
8492 for (int i = 0; i < 2; i++)
8493 switch (i ? OMP_CLAUSE_IF_MODIFIER (c) : code)
8495 case OMP_PARALLEL: p[i] = "parallel"; break;
8496 case OMP_TASK: p[i] = "task"; break;
8497 case OMP_TASKLOOP: p[i] = "taskloop"; break;
8498 case OMP_TARGET_DATA: p[i] = "target data"; break;
8499 case OMP_TARGET: p[i] = "target"; break;
8500 case OMP_TARGET_UPDATE: p[i] = "target update"; break;
8501 case OMP_TARGET_ENTER_DATA:
8502 p[i] = "target enter data"; break;
8503 case OMP_TARGET_EXIT_DATA: p[i] = "target exit data"; break;
8504 default: gcc_unreachable ();
8506 error_at (OMP_CLAUSE_LOCATION (c),
8507 "expected %qs %<if%> clause modifier rather than %qs",
8508 p[0], p[1]);
8509 remove = true;
8511 /* Fall through. */
8513 case OMP_CLAUSE_FINAL:
8514 OMP_CLAUSE_OPERAND (c, 0)
8515 = gimple_boolify (OMP_CLAUSE_OPERAND (c, 0));
8516 /* Fall through. */
8518 case OMP_CLAUSE_SCHEDULE:
8519 case OMP_CLAUSE_NUM_THREADS:
8520 case OMP_CLAUSE_NUM_TEAMS:
8521 case OMP_CLAUSE_THREAD_LIMIT:
8522 case OMP_CLAUSE_DIST_SCHEDULE:
8523 case OMP_CLAUSE_DEVICE:
8524 case OMP_CLAUSE_PRIORITY:
8525 case OMP_CLAUSE_GRAINSIZE:
8526 case OMP_CLAUSE_NUM_TASKS:
8527 case OMP_CLAUSE_HINT:
8528 case OMP_CLAUSE_ASYNC:
8529 case OMP_CLAUSE_WAIT:
8530 case OMP_CLAUSE_NUM_GANGS:
8531 case OMP_CLAUSE_NUM_WORKERS:
8532 case OMP_CLAUSE_VECTOR_LENGTH:
8533 case OMP_CLAUSE_WORKER:
8534 case OMP_CLAUSE_VECTOR:
8535 if (gimplify_expr (&OMP_CLAUSE_OPERAND (c, 0), pre_p, NULL,
8536 is_gimple_val, fb_rvalue) == GS_ERROR)
8537 remove = true;
8538 break;
8540 case OMP_CLAUSE_GANG:
8541 if (gimplify_expr (&OMP_CLAUSE_OPERAND (c, 0), pre_p, NULL,
8542 is_gimple_val, fb_rvalue) == GS_ERROR)
8543 remove = true;
8544 if (gimplify_expr (&OMP_CLAUSE_OPERAND (c, 1), pre_p, NULL,
8545 is_gimple_val, fb_rvalue) == GS_ERROR)
8546 remove = true;
8547 break;
8549 case OMP_CLAUSE_NOWAIT:
8550 case OMP_CLAUSE_ORDERED:
8551 case OMP_CLAUSE_UNTIED:
8552 case OMP_CLAUSE_COLLAPSE:
8553 case OMP_CLAUSE_TILE:
8554 case OMP_CLAUSE_AUTO:
8555 case OMP_CLAUSE_SEQ:
8556 case OMP_CLAUSE_INDEPENDENT:
8557 case OMP_CLAUSE_MERGEABLE:
8558 case OMP_CLAUSE_PROC_BIND:
8559 case OMP_CLAUSE_SAFELEN:
8560 case OMP_CLAUSE_SIMDLEN:
8561 case OMP_CLAUSE_NOGROUP:
8562 case OMP_CLAUSE_THREADS:
8563 case OMP_CLAUSE_SIMD:
8564 break;
8566 case OMP_CLAUSE_DEFAULTMAP:
8567 ctx->target_map_scalars_firstprivate = false;
8568 break;
8570 case OMP_CLAUSE_ALIGNED:
8571 decl = OMP_CLAUSE_DECL (c);
8572 if (error_operand_p (decl))
8574 remove = true;
8575 break;
8577 if (gimplify_expr (&OMP_CLAUSE_ALIGNED_ALIGNMENT (c), pre_p, NULL,
8578 is_gimple_val, fb_rvalue) == GS_ERROR)
8580 remove = true;
8581 break;
8583 if (!is_global_var (decl)
8584 && TREE_CODE (TREE_TYPE (decl)) == POINTER_TYPE)
8585 omp_add_variable (ctx, decl, GOVD_ALIGNED);
8586 break;
8588 case OMP_CLAUSE_DEFAULT:
8589 ctx->default_kind = OMP_CLAUSE_DEFAULT_KIND (c);
8590 break;
8592 default:
8593 gcc_unreachable ();
8596 if (code == OACC_DATA
8597 && OMP_CLAUSE_CODE (c) == OMP_CLAUSE_MAP
8598 && OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_FIRSTPRIVATE_POINTER)
8599 remove = true;
8600 if (remove)
8601 *list_p = OMP_CLAUSE_CHAIN (c);
8602 else
8603 list_p = &OMP_CLAUSE_CHAIN (c);
8606 gimplify_omp_ctxp = ctx;
8607 if (struct_map_to_clause)
8608 delete struct_map_to_clause;
8611 /* Return true if DECL is a candidate for shared to firstprivate
8612 optimization. We only consider non-addressable scalars, not
8613 too big, and not references. */
8615 static bool
8616 omp_shared_to_firstprivate_optimizable_decl_p (tree decl)
8618 if (TREE_ADDRESSABLE (decl))
8619 return false;
8620 tree type = TREE_TYPE (decl);
8621 if (!is_gimple_reg_type (type)
8622 || TREE_CODE (type) == REFERENCE_TYPE
8623 || TREE_ADDRESSABLE (type))
8624 return false;
8625 /* Don't optimize too large decls, as each thread/task will have
8626 its own. */
8627 HOST_WIDE_INT len = int_size_in_bytes (type);
8628 if (len == -1 || len > 4 * POINTER_SIZE / BITS_PER_UNIT)
8629 return false;
8630 if (lang_hooks.decls.omp_privatize_by_reference (decl))
8631 return false;
8632 return true;
8635 /* Helper function of omp_find_stores_op and gimplify_adjust_omp_clauses*.
8636 For omp_shared_to_firstprivate_optimizable_decl_p decl mark it as
8637 GOVD_WRITTEN in outer contexts. */
8639 static void
8640 omp_mark_stores (struct gimplify_omp_ctx *ctx, tree decl)
8642 for (; ctx; ctx = ctx->outer_context)
8644 splay_tree_node n = splay_tree_lookup (ctx->variables,
8645 (splay_tree_key) decl);
8646 if (n == NULL)
8647 continue;
8648 else if (n->value & GOVD_SHARED)
8650 n->value |= GOVD_WRITTEN;
8651 return;
8653 else if (n->value & GOVD_DATA_SHARE_CLASS)
8654 return;
8658 /* Helper callback for walk_gimple_seq to discover possible stores
8659 to omp_shared_to_firstprivate_optimizable_decl_p decls and set
8660 GOVD_WRITTEN if they are GOVD_SHARED in some outer context
8661 for those. */
8663 static tree
8664 omp_find_stores_op (tree *tp, int *walk_subtrees, void *data)
8666 struct walk_stmt_info *wi = (struct walk_stmt_info *) data;
8668 *walk_subtrees = 0;
8669 if (!wi->is_lhs)
8670 return NULL_TREE;
8672 tree op = *tp;
8675 if (handled_component_p (op))
8676 op = TREE_OPERAND (op, 0);
8677 else if ((TREE_CODE (op) == MEM_REF || TREE_CODE (op) == TARGET_MEM_REF)
8678 && TREE_CODE (TREE_OPERAND (op, 0)) == ADDR_EXPR)
8679 op = TREE_OPERAND (TREE_OPERAND (op, 0), 0);
8680 else
8681 break;
8683 while (1);
8684 if (!DECL_P (op) || !omp_shared_to_firstprivate_optimizable_decl_p (op))
8685 return NULL_TREE;
8687 omp_mark_stores (gimplify_omp_ctxp, op);
8688 return NULL_TREE;
8691 /* Helper callback for walk_gimple_seq to discover possible stores
8692 to omp_shared_to_firstprivate_optimizable_decl_p decls and set
8693 GOVD_WRITTEN if they are GOVD_SHARED in some outer context
8694 for those. */
8696 static tree
8697 omp_find_stores_stmt (gimple_stmt_iterator *gsi_p,
8698 bool *handled_ops_p,
8699 struct walk_stmt_info *wi)
8701 gimple *stmt = gsi_stmt (*gsi_p);
8702 switch (gimple_code (stmt))
8704 /* Don't recurse on OpenMP constructs for which
8705 gimplify_adjust_omp_clauses already handled the bodies,
8706 except handle gimple_omp_for_pre_body. */
8707 case GIMPLE_OMP_FOR:
8708 *handled_ops_p = true;
8709 if (gimple_omp_for_pre_body (stmt))
8710 walk_gimple_seq (gimple_omp_for_pre_body (stmt),
8711 omp_find_stores_stmt, omp_find_stores_op, wi);
8712 break;
8713 case GIMPLE_OMP_PARALLEL:
8714 case GIMPLE_OMP_TASK:
8715 case GIMPLE_OMP_SECTIONS:
8716 case GIMPLE_OMP_SINGLE:
8717 case GIMPLE_OMP_TARGET:
8718 case GIMPLE_OMP_TEAMS:
8719 case GIMPLE_OMP_CRITICAL:
8720 *handled_ops_p = true;
8721 break;
8722 default:
8723 break;
8725 return NULL_TREE;
8728 struct gimplify_adjust_omp_clauses_data
8730 tree *list_p;
8731 gimple_seq *pre_p;
8734 /* For all variables that were not actually used within the context,
8735 remove PRIVATE, SHARED, and FIRSTPRIVATE clauses. */
8737 static int
8738 gimplify_adjust_omp_clauses_1 (splay_tree_node n, void *data)
8740 tree *list_p = ((struct gimplify_adjust_omp_clauses_data *) data)->list_p;
8741 gimple_seq *pre_p
8742 = ((struct gimplify_adjust_omp_clauses_data *) data)->pre_p;
8743 tree decl = (tree) n->key;
8744 unsigned flags = n->value;
8745 enum omp_clause_code code;
8746 tree clause;
8747 bool private_debug;
8749 if (flags & (GOVD_EXPLICIT | GOVD_LOCAL))
8750 return 0;
8751 if ((flags & GOVD_SEEN) == 0)
8752 return 0;
8753 if (flags & GOVD_DEBUG_PRIVATE)
8755 gcc_assert ((flags & GOVD_DATA_SHARE_CLASS) == GOVD_SHARED);
8756 private_debug = true;
8758 else if (flags & GOVD_MAP)
8759 private_debug = false;
8760 else
8761 private_debug
8762 = lang_hooks.decls.omp_private_debug_clause (decl,
8763 !!(flags & GOVD_SHARED));
8764 if (private_debug)
8765 code = OMP_CLAUSE_PRIVATE;
8766 else if (flags & GOVD_MAP)
8768 code = OMP_CLAUSE_MAP;
8769 if ((gimplify_omp_ctxp->region_type & ORT_ACC) == 0
8770 && TYPE_ATOMIC (strip_array_types (TREE_TYPE (decl))))
8772 error ("%<_Atomic%> %qD in implicit %<map%> clause", decl);
8773 return 0;
8776 else if (flags & GOVD_SHARED)
8778 if (is_global_var (decl))
8780 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp->outer_context;
8781 while (ctx != NULL)
8783 splay_tree_node on
8784 = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
8785 if (on && (on->value & (GOVD_FIRSTPRIVATE | GOVD_LASTPRIVATE
8786 | GOVD_PRIVATE | GOVD_REDUCTION
8787 | GOVD_LINEAR | GOVD_MAP)) != 0)
8788 break;
8789 ctx = ctx->outer_context;
8791 if (ctx == NULL)
8792 return 0;
8794 code = OMP_CLAUSE_SHARED;
8796 else if (flags & GOVD_PRIVATE)
8797 code = OMP_CLAUSE_PRIVATE;
8798 else if (flags & GOVD_FIRSTPRIVATE)
8800 code = OMP_CLAUSE_FIRSTPRIVATE;
8801 if ((gimplify_omp_ctxp->region_type & ORT_TARGET)
8802 && (gimplify_omp_ctxp->region_type & ORT_ACC) == 0
8803 && TYPE_ATOMIC (strip_array_types (TREE_TYPE (decl))))
8805 error ("%<_Atomic%> %qD in implicit %<firstprivate%> clause on "
8806 "%<target%> construct", decl);
8807 return 0;
8810 else if (flags & GOVD_LASTPRIVATE)
8811 code = OMP_CLAUSE_LASTPRIVATE;
8812 else if (flags & GOVD_ALIGNED)
8813 return 0;
8814 else
8815 gcc_unreachable ();
8817 if (((flags & GOVD_LASTPRIVATE)
8818 || (code == OMP_CLAUSE_SHARED && (flags & GOVD_WRITTEN)))
8819 && omp_shared_to_firstprivate_optimizable_decl_p (decl))
8820 omp_mark_stores (gimplify_omp_ctxp->outer_context, decl);
8822 tree chain = *list_p;
8823 clause = build_omp_clause (input_location, code);
8824 OMP_CLAUSE_DECL (clause) = decl;
8825 OMP_CLAUSE_CHAIN (clause) = chain;
8826 if (private_debug)
8827 OMP_CLAUSE_PRIVATE_DEBUG (clause) = 1;
8828 else if (code == OMP_CLAUSE_PRIVATE && (flags & GOVD_PRIVATE_OUTER_REF))
8829 OMP_CLAUSE_PRIVATE_OUTER_REF (clause) = 1;
8830 else if (code == OMP_CLAUSE_SHARED
8831 && (flags & GOVD_WRITTEN) == 0
8832 && omp_shared_to_firstprivate_optimizable_decl_p (decl))
8833 OMP_CLAUSE_SHARED_READONLY (clause) = 1;
8834 else if (code == OMP_CLAUSE_FIRSTPRIVATE && (flags & GOVD_EXPLICIT) == 0)
8835 OMP_CLAUSE_FIRSTPRIVATE_IMPLICIT (clause) = 1;
8836 else if (code == OMP_CLAUSE_MAP && (flags & GOVD_MAP_0LEN_ARRAY) != 0)
8838 tree nc = build_omp_clause (input_location, OMP_CLAUSE_MAP);
8839 OMP_CLAUSE_DECL (nc) = decl;
8840 if (TREE_CODE (TREE_TYPE (decl)) == REFERENCE_TYPE
8841 && TREE_CODE (TREE_TYPE (TREE_TYPE (decl))) == POINTER_TYPE)
8842 OMP_CLAUSE_DECL (clause)
8843 = build_simple_mem_ref_loc (input_location, decl);
8844 OMP_CLAUSE_DECL (clause)
8845 = build2 (MEM_REF, char_type_node, OMP_CLAUSE_DECL (clause),
8846 build_int_cst (build_pointer_type (char_type_node), 0));
8847 OMP_CLAUSE_SIZE (clause) = size_zero_node;
8848 OMP_CLAUSE_SIZE (nc) = size_zero_node;
8849 OMP_CLAUSE_SET_MAP_KIND (clause, GOMP_MAP_ALLOC);
8850 OMP_CLAUSE_MAP_MAYBE_ZERO_LENGTH_ARRAY_SECTION (clause) = 1;
8851 OMP_CLAUSE_SET_MAP_KIND (nc, GOMP_MAP_FIRSTPRIVATE_POINTER);
8852 OMP_CLAUSE_CHAIN (nc) = chain;
8853 OMP_CLAUSE_CHAIN (clause) = nc;
8854 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
8855 gimplify_omp_ctxp = ctx->outer_context;
8856 gimplify_expr (&TREE_OPERAND (OMP_CLAUSE_DECL (clause), 0),
8857 pre_p, NULL, is_gimple_val, fb_rvalue);
8858 gimplify_omp_ctxp = ctx;
8860 else if (code == OMP_CLAUSE_MAP)
8862 int kind;
8863 /* Not all combinations of these GOVD_MAP flags are actually valid. */
8864 switch (flags & (GOVD_MAP_TO_ONLY
8865 | GOVD_MAP_FORCE
8866 | GOVD_MAP_FORCE_PRESENT))
8868 case 0:
8869 kind = GOMP_MAP_TOFROM;
8870 break;
8871 case GOVD_MAP_FORCE:
8872 kind = GOMP_MAP_TOFROM | GOMP_MAP_FLAG_FORCE;
8873 break;
8874 case GOVD_MAP_TO_ONLY:
8875 kind = GOMP_MAP_TO;
8876 break;
8877 case GOVD_MAP_TO_ONLY | GOVD_MAP_FORCE:
8878 kind = GOMP_MAP_TO | GOMP_MAP_FLAG_FORCE;
8879 break;
8880 case GOVD_MAP_FORCE_PRESENT:
8881 kind = GOMP_MAP_FORCE_PRESENT;
8882 break;
8883 default:
8884 gcc_unreachable ();
8886 OMP_CLAUSE_SET_MAP_KIND (clause, kind);
8887 if (DECL_SIZE (decl)
8888 && TREE_CODE (DECL_SIZE (decl)) != INTEGER_CST)
8890 tree decl2 = DECL_VALUE_EXPR (decl);
8891 gcc_assert (TREE_CODE (decl2) == INDIRECT_REF);
8892 decl2 = TREE_OPERAND (decl2, 0);
8893 gcc_assert (DECL_P (decl2));
8894 tree mem = build_simple_mem_ref (decl2);
8895 OMP_CLAUSE_DECL (clause) = mem;
8896 OMP_CLAUSE_SIZE (clause) = TYPE_SIZE_UNIT (TREE_TYPE (decl));
8897 if (gimplify_omp_ctxp->outer_context)
8899 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp->outer_context;
8900 omp_notice_variable (ctx, decl2, true);
8901 omp_notice_variable (ctx, OMP_CLAUSE_SIZE (clause), true);
8903 tree nc = build_omp_clause (OMP_CLAUSE_LOCATION (clause),
8904 OMP_CLAUSE_MAP);
8905 OMP_CLAUSE_DECL (nc) = decl;
8906 OMP_CLAUSE_SIZE (nc) = size_zero_node;
8907 if (gimplify_omp_ctxp->target_firstprivatize_array_bases)
8908 OMP_CLAUSE_SET_MAP_KIND (nc, GOMP_MAP_FIRSTPRIVATE_POINTER);
8909 else
8910 OMP_CLAUSE_SET_MAP_KIND (nc, GOMP_MAP_POINTER);
8911 OMP_CLAUSE_CHAIN (nc) = OMP_CLAUSE_CHAIN (clause);
8912 OMP_CLAUSE_CHAIN (clause) = nc;
8914 else if (gimplify_omp_ctxp->target_firstprivatize_array_bases
8915 && lang_hooks.decls.omp_privatize_by_reference (decl))
8917 OMP_CLAUSE_DECL (clause) = build_simple_mem_ref (decl);
8918 OMP_CLAUSE_SIZE (clause)
8919 = unshare_expr (TYPE_SIZE_UNIT (TREE_TYPE (TREE_TYPE (decl))));
8920 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
8921 gimplify_omp_ctxp = ctx->outer_context;
8922 gimplify_expr (&OMP_CLAUSE_SIZE (clause),
8923 pre_p, NULL, is_gimple_val, fb_rvalue);
8924 gimplify_omp_ctxp = ctx;
8925 tree nc = build_omp_clause (OMP_CLAUSE_LOCATION (clause),
8926 OMP_CLAUSE_MAP);
8927 OMP_CLAUSE_DECL (nc) = decl;
8928 OMP_CLAUSE_SIZE (nc) = size_zero_node;
8929 OMP_CLAUSE_SET_MAP_KIND (nc, GOMP_MAP_FIRSTPRIVATE_REFERENCE);
8930 OMP_CLAUSE_CHAIN (nc) = OMP_CLAUSE_CHAIN (clause);
8931 OMP_CLAUSE_CHAIN (clause) = nc;
8933 else
8934 OMP_CLAUSE_SIZE (clause) = DECL_SIZE_UNIT (decl);
8936 if (code == OMP_CLAUSE_FIRSTPRIVATE && (flags & GOVD_LASTPRIVATE) != 0)
8938 tree nc = build_omp_clause (input_location, OMP_CLAUSE_LASTPRIVATE);
8939 OMP_CLAUSE_DECL (nc) = decl;
8940 OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE (nc) = 1;
8941 OMP_CLAUSE_CHAIN (nc) = chain;
8942 OMP_CLAUSE_CHAIN (clause) = nc;
8943 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
8944 gimplify_omp_ctxp = ctx->outer_context;
8945 lang_hooks.decls.omp_finish_clause (nc, pre_p);
8946 gimplify_omp_ctxp = ctx;
8948 *list_p = clause;
8949 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
8950 gimplify_omp_ctxp = ctx->outer_context;
8951 lang_hooks.decls.omp_finish_clause (clause, pre_p);
8952 if (gimplify_omp_ctxp)
8953 for (; clause != chain; clause = OMP_CLAUSE_CHAIN (clause))
8954 if (OMP_CLAUSE_CODE (clause) == OMP_CLAUSE_MAP
8955 && DECL_P (OMP_CLAUSE_SIZE (clause)))
8956 omp_notice_variable (gimplify_omp_ctxp, OMP_CLAUSE_SIZE (clause),
8957 true);
8958 gimplify_omp_ctxp = ctx;
8959 return 0;
8962 static void
8963 gimplify_adjust_omp_clauses (gimple_seq *pre_p, gimple_seq body, tree *list_p,
8964 enum tree_code code)
8966 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
8967 tree c, decl;
8969 if (body)
8971 struct gimplify_omp_ctx *octx;
8972 for (octx = ctx; octx; octx = octx->outer_context)
8973 if ((octx->region_type & (ORT_PARALLEL | ORT_TASK | ORT_TEAMS)) != 0)
8974 break;
8975 if (octx)
8977 struct walk_stmt_info wi;
8978 memset (&wi, 0, sizeof (wi));
8979 walk_gimple_seq (body, omp_find_stores_stmt,
8980 omp_find_stores_op, &wi);
8983 while ((c = *list_p) != NULL)
8985 splay_tree_node n;
8986 bool remove = false;
8988 switch (OMP_CLAUSE_CODE (c))
8990 case OMP_CLAUSE_FIRSTPRIVATE:
8991 if ((ctx->region_type & ORT_TARGET)
8992 && (ctx->region_type & ORT_ACC) == 0
8993 && TYPE_ATOMIC (strip_array_types
8994 (TREE_TYPE (OMP_CLAUSE_DECL (c)))))
8996 error_at (OMP_CLAUSE_LOCATION (c),
8997 "%<_Atomic%> %qD in %<firstprivate%> clause on "
8998 "%<target%> construct", OMP_CLAUSE_DECL (c));
8999 remove = true;
9000 break;
9002 /* FALLTHRU */
9003 case OMP_CLAUSE_PRIVATE:
9004 case OMP_CLAUSE_SHARED:
9005 case OMP_CLAUSE_LINEAR:
9006 decl = OMP_CLAUSE_DECL (c);
9007 n = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
9008 remove = !(n->value & GOVD_SEEN);
9009 if (! remove)
9011 bool shared = OMP_CLAUSE_CODE (c) == OMP_CLAUSE_SHARED;
9012 if ((n->value & GOVD_DEBUG_PRIVATE)
9013 || lang_hooks.decls.omp_private_debug_clause (decl, shared))
9015 gcc_assert ((n->value & GOVD_DEBUG_PRIVATE) == 0
9016 || ((n->value & GOVD_DATA_SHARE_CLASS)
9017 == GOVD_SHARED));
9018 OMP_CLAUSE_SET_CODE (c, OMP_CLAUSE_PRIVATE);
9019 OMP_CLAUSE_PRIVATE_DEBUG (c) = 1;
9021 if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_SHARED
9022 && (n->value & GOVD_WRITTEN) == 0
9023 && DECL_P (decl)
9024 && omp_shared_to_firstprivate_optimizable_decl_p (decl))
9025 OMP_CLAUSE_SHARED_READONLY (c) = 1;
9026 else if (DECL_P (decl)
9027 && ((OMP_CLAUSE_CODE (c) == OMP_CLAUSE_SHARED
9028 && (n->value & GOVD_WRITTEN) != 0)
9029 || (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LINEAR
9030 && !OMP_CLAUSE_LINEAR_NO_COPYOUT (c)))
9031 && omp_shared_to_firstprivate_optimizable_decl_p (decl))
9032 omp_mark_stores (gimplify_omp_ctxp->outer_context, decl);
9034 break;
9036 case OMP_CLAUSE_LASTPRIVATE:
9037 /* Make sure OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE is set to
9038 accurately reflect the presence of a FIRSTPRIVATE clause. */
9039 decl = OMP_CLAUSE_DECL (c);
9040 n = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
9041 OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE (c)
9042 = (n->value & GOVD_FIRSTPRIVATE) != 0;
9043 if (code == OMP_DISTRIBUTE
9044 && OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE (c))
9046 remove = true;
9047 error_at (OMP_CLAUSE_LOCATION (c),
9048 "same variable used in %<firstprivate%> and "
9049 "%<lastprivate%> clauses on %<distribute%> "
9050 "construct");
9052 if (!remove
9053 && OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LASTPRIVATE
9054 && DECL_P (decl)
9055 && omp_shared_to_firstprivate_optimizable_decl_p (decl))
9056 omp_mark_stores (gimplify_omp_ctxp->outer_context, decl);
9057 break;
9059 case OMP_CLAUSE_ALIGNED:
9060 decl = OMP_CLAUSE_DECL (c);
9061 if (!is_global_var (decl))
9063 n = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
9064 remove = n == NULL || !(n->value & GOVD_SEEN);
9065 if (!remove && TREE_CODE (TREE_TYPE (decl)) == POINTER_TYPE)
9067 struct gimplify_omp_ctx *octx;
9068 if (n != NULL
9069 && (n->value & (GOVD_DATA_SHARE_CLASS
9070 & ~GOVD_FIRSTPRIVATE)))
9071 remove = true;
9072 else
9073 for (octx = ctx->outer_context; octx;
9074 octx = octx->outer_context)
9076 n = splay_tree_lookup (octx->variables,
9077 (splay_tree_key) decl);
9078 if (n == NULL)
9079 continue;
9080 if (n->value & GOVD_LOCAL)
9081 break;
9082 /* We have to avoid assigning a shared variable
9083 to itself when trying to add
9084 __builtin_assume_aligned. */
9085 if (n->value & GOVD_SHARED)
9087 remove = true;
9088 break;
9093 else if (TREE_CODE (TREE_TYPE (decl)) == ARRAY_TYPE)
9095 n = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
9096 if (n != NULL && (n->value & GOVD_DATA_SHARE_CLASS) != 0)
9097 remove = true;
9099 break;
9101 case OMP_CLAUSE_MAP:
9102 if (code == OMP_TARGET_EXIT_DATA
9103 && OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_ALWAYS_POINTER)
9105 remove = true;
9106 break;
9108 decl = OMP_CLAUSE_DECL (c);
9109 /* Data clauses associated with acc parallel reductions must be
9110 compatible with present_or_copy. Warn and adjust the clause
9111 if that is not the case. */
9112 if (ctx->region_type == ORT_ACC_PARALLEL)
9114 tree t = DECL_P (decl) ? decl : TREE_OPERAND (decl, 0);
9115 n = NULL;
9117 if (DECL_P (t))
9118 n = splay_tree_lookup (ctx->variables, (splay_tree_key) t);
9120 if (n && (n->value & GOVD_REDUCTION))
9122 enum gomp_map_kind kind = OMP_CLAUSE_MAP_KIND (c);
9124 OMP_CLAUSE_MAP_IN_REDUCTION (c) = 1;
9125 if ((kind & GOMP_MAP_TOFROM) != GOMP_MAP_TOFROM
9126 && kind != GOMP_MAP_FORCE_PRESENT
9127 && kind != GOMP_MAP_POINTER)
9129 warning_at (OMP_CLAUSE_LOCATION (c), 0,
9130 "incompatible data clause with reduction "
9131 "on %qE; promoting to present_or_copy",
9132 DECL_NAME (t));
9133 OMP_CLAUSE_SET_MAP_KIND (c, GOMP_MAP_TOFROM);
9137 if (!DECL_P (decl))
9139 if ((ctx->region_type & ORT_TARGET) != 0
9140 && OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_FIRSTPRIVATE_POINTER)
9142 if (TREE_CODE (decl) == INDIRECT_REF
9143 && TREE_CODE (TREE_OPERAND (decl, 0)) == COMPONENT_REF
9144 && (TREE_CODE (TREE_TYPE (TREE_OPERAND (decl, 0)))
9145 == REFERENCE_TYPE))
9146 decl = TREE_OPERAND (decl, 0);
9147 if (TREE_CODE (decl) == COMPONENT_REF)
9149 while (TREE_CODE (decl) == COMPONENT_REF)
9150 decl = TREE_OPERAND (decl, 0);
9151 if (DECL_P (decl))
9153 n = splay_tree_lookup (ctx->variables,
9154 (splay_tree_key) decl);
9155 if (!(n->value & GOVD_SEEN))
9156 remove = true;
9160 break;
9162 n = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
9163 if ((ctx->region_type & ORT_TARGET) != 0
9164 && !(n->value & GOVD_SEEN)
9165 && GOMP_MAP_ALWAYS_P (OMP_CLAUSE_MAP_KIND (c)) == 0
9166 && (!is_global_var (decl)
9167 || !lookup_attribute ("omp declare target link",
9168 DECL_ATTRIBUTES (decl))))
9170 remove = true;
9171 /* For struct element mapping, if struct is never referenced
9172 in target block and none of the mapping has always modifier,
9173 remove all the struct element mappings, which immediately
9174 follow the GOMP_MAP_STRUCT map clause. */
9175 if (OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_STRUCT)
9177 HOST_WIDE_INT cnt = tree_to_shwi (OMP_CLAUSE_SIZE (c));
9178 while (cnt--)
9179 OMP_CLAUSE_CHAIN (c)
9180 = OMP_CLAUSE_CHAIN (OMP_CLAUSE_CHAIN (c));
9183 else if (OMP_CLAUSE_MAP_KIND (c) == GOMP_MAP_STRUCT
9184 && code == OMP_TARGET_EXIT_DATA)
9185 remove = true;
9186 else if (DECL_SIZE (decl)
9187 && TREE_CODE (DECL_SIZE (decl)) != INTEGER_CST
9188 && OMP_CLAUSE_MAP_KIND (c) != GOMP_MAP_POINTER
9189 && OMP_CLAUSE_MAP_KIND (c) != GOMP_MAP_FIRSTPRIVATE_POINTER
9190 && (OMP_CLAUSE_MAP_KIND (c)
9191 != GOMP_MAP_FIRSTPRIVATE_REFERENCE))
9193 /* For GOMP_MAP_FORCE_DEVICEPTR, we'll never enter here, because
9194 for these, TREE_CODE (DECL_SIZE (decl)) will always be
9195 INTEGER_CST. */
9196 gcc_assert (OMP_CLAUSE_MAP_KIND (c) != GOMP_MAP_FORCE_DEVICEPTR);
9198 tree decl2 = DECL_VALUE_EXPR (decl);
9199 gcc_assert (TREE_CODE (decl2) == INDIRECT_REF);
9200 decl2 = TREE_OPERAND (decl2, 0);
9201 gcc_assert (DECL_P (decl2));
9202 tree mem = build_simple_mem_ref (decl2);
9203 OMP_CLAUSE_DECL (c) = mem;
9204 OMP_CLAUSE_SIZE (c) = TYPE_SIZE_UNIT (TREE_TYPE (decl));
9205 if (ctx->outer_context)
9207 omp_notice_variable (ctx->outer_context, decl2, true);
9208 omp_notice_variable (ctx->outer_context,
9209 OMP_CLAUSE_SIZE (c), true);
9211 if (((ctx->region_type & ORT_TARGET) != 0
9212 || !ctx->target_firstprivatize_array_bases)
9213 && ((n->value & GOVD_SEEN) == 0
9214 || (n->value & (GOVD_PRIVATE | GOVD_FIRSTPRIVATE)) == 0))
9216 tree nc = build_omp_clause (OMP_CLAUSE_LOCATION (c),
9217 OMP_CLAUSE_MAP);
9218 OMP_CLAUSE_DECL (nc) = decl;
9219 OMP_CLAUSE_SIZE (nc) = size_zero_node;
9220 if (ctx->target_firstprivatize_array_bases)
9221 OMP_CLAUSE_SET_MAP_KIND (nc,
9222 GOMP_MAP_FIRSTPRIVATE_POINTER);
9223 else
9224 OMP_CLAUSE_SET_MAP_KIND (nc, GOMP_MAP_POINTER);
9225 OMP_CLAUSE_CHAIN (nc) = OMP_CLAUSE_CHAIN (c);
9226 OMP_CLAUSE_CHAIN (c) = nc;
9227 c = nc;
9230 else
9232 if (OMP_CLAUSE_SIZE (c) == NULL_TREE)
9233 OMP_CLAUSE_SIZE (c) = DECL_SIZE_UNIT (decl);
9234 gcc_assert ((n->value & GOVD_SEEN) == 0
9235 || ((n->value & (GOVD_PRIVATE | GOVD_FIRSTPRIVATE))
9236 == 0));
9238 break;
9240 case OMP_CLAUSE_TO:
9241 case OMP_CLAUSE_FROM:
9242 case OMP_CLAUSE__CACHE_:
9243 decl = OMP_CLAUSE_DECL (c);
9244 if (!DECL_P (decl))
9245 break;
9246 if (DECL_SIZE (decl)
9247 && TREE_CODE (DECL_SIZE (decl)) != INTEGER_CST)
9249 tree decl2 = DECL_VALUE_EXPR (decl);
9250 gcc_assert (TREE_CODE (decl2) == INDIRECT_REF);
9251 decl2 = TREE_OPERAND (decl2, 0);
9252 gcc_assert (DECL_P (decl2));
9253 tree mem = build_simple_mem_ref (decl2);
9254 OMP_CLAUSE_DECL (c) = mem;
9255 OMP_CLAUSE_SIZE (c) = TYPE_SIZE_UNIT (TREE_TYPE (decl));
9256 if (ctx->outer_context)
9258 omp_notice_variable (ctx->outer_context, decl2, true);
9259 omp_notice_variable (ctx->outer_context,
9260 OMP_CLAUSE_SIZE (c), true);
9263 else if (OMP_CLAUSE_SIZE (c) == NULL_TREE)
9264 OMP_CLAUSE_SIZE (c) = DECL_SIZE_UNIT (decl);
9265 break;
9267 case OMP_CLAUSE_REDUCTION:
9268 decl = OMP_CLAUSE_DECL (c);
9269 /* OpenACC reductions need a present_or_copy data clause.
9270 Add one if necessary. Error is the reduction is private. */
9271 if (ctx->region_type == ORT_ACC_PARALLEL)
9273 n = splay_tree_lookup (ctx->variables, (splay_tree_key) decl);
9274 if (n->value & (GOVD_PRIVATE | GOVD_FIRSTPRIVATE))
9275 error_at (OMP_CLAUSE_LOCATION (c), "invalid private "
9276 "reduction on %qE", DECL_NAME (decl));
9277 else if ((n->value & GOVD_MAP) == 0)
9279 tree next = OMP_CLAUSE_CHAIN (c);
9280 tree nc = build_omp_clause (UNKNOWN_LOCATION, OMP_CLAUSE_MAP);
9281 OMP_CLAUSE_SET_MAP_KIND (nc, GOMP_MAP_TOFROM);
9282 OMP_CLAUSE_DECL (nc) = decl;
9283 OMP_CLAUSE_CHAIN (c) = nc;
9284 lang_hooks.decls.omp_finish_clause (nc, pre_p);
9285 while (1)
9287 OMP_CLAUSE_MAP_IN_REDUCTION (nc) = 1;
9288 if (OMP_CLAUSE_CHAIN (nc) == NULL)
9289 break;
9290 nc = OMP_CLAUSE_CHAIN (nc);
9292 OMP_CLAUSE_CHAIN (nc) = next;
9293 n->value |= GOVD_MAP;
9296 if (DECL_P (decl)
9297 && omp_shared_to_firstprivate_optimizable_decl_p (decl))
9298 omp_mark_stores (gimplify_omp_ctxp->outer_context, decl);
9299 break;
9300 case OMP_CLAUSE_COPYIN:
9301 case OMP_CLAUSE_COPYPRIVATE:
9302 case OMP_CLAUSE_IF:
9303 case OMP_CLAUSE_NUM_THREADS:
9304 case OMP_CLAUSE_NUM_TEAMS:
9305 case OMP_CLAUSE_THREAD_LIMIT:
9306 case OMP_CLAUSE_DIST_SCHEDULE:
9307 case OMP_CLAUSE_DEVICE:
9308 case OMP_CLAUSE_SCHEDULE:
9309 case OMP_CLAUSE_NOWAIT:
9310 case OMP_CLAUSE_ORDERED:
9311 case OMP_CLAUSE_DEFAULT:
9312 case OMP_CLAUSE_UNTIED:
9313 case OMP_CLAUSE_COLLAPSE:
9314 case OMP_CLAUSE_FINAL:
9315 case OMP_CLAUSE_MERGEABLE:
9316 case OMP_CLAUSE_PROC_BIND:
9317 case OMP_CLAUSE_SAFELEN:
9318 case OMP_CLAUSE_SIMDLEN:
9319 case OMP_CLAUSE_DEPEND:
9320 case OMP_CLAUSE_PRIORITY:
9321 case OMP_CLAUSE_GRAINSIZE:
9322 case OMP_CLAUSE_NUM_TASKS:
9323 case OMP_CLAUSE_NOGROUP:
9324 case OMP_CLAUSE_THREADS:
9325 case OMP_CLAUSE_SIMD:
9326 case OMP_CLAUSE_HINT:
9327 case OMP_CLAUSE_DEFAULTMAP:
9328 case OMP_CLAUSE_USE_DEVICE_PTR:
9329 case OMP_CLAUSE_IS_DEVICE_PTR:
9330 case OMP_CLAUSE_ASYNC:
9331 case OMP_CLAUSE_WAIT:
9332 case OMP_CLAUSE_INDEPENDENT:
9333 case OMP_CLAUSE_NUM_GANGS:
9334 case OMP_CLAUSE_NUM_WORKERS:
9335 case OMP_CLAUSE_VECTOR_LENGTH:
9336 case OMP_CLAUSE_GANG:
9337 case OMP_CLAUSE_WORKER:
9338 case OMP_CLAUSE_VECTOR:
9339 case OMP_CLAUSE_AUTO:
9340 case OMP_CLAUSE_SEQ:
9341 case OMP_CLAUSE_TILE:
9342 break;
9344 default:
9345 gcc_unreachable ();
9348 if (remove)
9349 *list_p = OMP_CLAUSE_CHAIN (c);
9350 else
9351 list_p = &OMP_CLAUSE_CHAIN (c);
9354 /* Add in any implicit data sharing. */
9355 struct gimplify_adjust_omp_clauses_data data;
9356 data.list_p = list_p;
9357 data.pre_p = pre_p;
9358 splay_tree_foreach (ctx->variables, gimplify_adjust_omp_clauses_1, &data);
9360 gimplify_omp_ctxp = ctx->outer_context;
9361 delete_omp_context (ctx);
9364 /* Gimplify OACC_CACHE. */
9366 static void
9367 gimplify_oacc_cache (tree *expr_p, gimple_seq *pre_p)
9369 tree expr = *expr_p;
9371 gimplify_scan_omp_clauses (&OACC_CACHE_CLAUSES (expr), pre_p, ORT_ACC,
9372 OACC_CACHE);
9373 gimplify_adjust_omp_clauses (pre_p, NULL, &OACC_CACHE_CLAUSES (expr),
9374 OACC_CACHE);
9376 /* TODO: Do something sensible with this information. */
9378 *expr_p = NULL_TREE;
9381 /* Helper function of gimplify_oacc_declare. The helper's purpose is to,
9382 if required, translate 'kind' in CLAUSE into an 'entry' kind and 'exit'
9383 kind. The entry kind will replace the one in CLAUSE, while the exit
9384 kind will be used in a new omp_clause and returned to the caller. */
9386 static tree
9387 gimplify_oacc_declare_1 (tree clause)
9389 HOST_WIDE_INT kind, new_op;
9390 bool ret = false;
9391 tree c = NULL;
9393 kind = OMP_CLAUSE_MAP_KIND (clause);
9395 switch (kind)
9397 case GOMP_MAP_ALLOC:
9398 case GOMP_MAP_FORCE_ALLOC:
9399 case GOMP_MAP_FORCE_TO:
9400 new_op = GOMP_MAP_DELETE;
9401 ret = true;
9402 break;
9404 case GOMP_MAP_FORCE_FROM:
9405 OMP_CLAUSE_SET_MAP_KIND (clause, GOMP_MAP_FORCE_ALLOC);
9406 new_op = GOMP_MAP_FORCE_FROM;
9407 ret = true;
9408 break;
9410 case GOMP_MAP_FORCE_TOFROM:
9411 OMP_CLAUSE_SET_MAP_KIND (clause, GOMP_MAP_FORCE_TO);
9412 new_op = GOMP_MAP_FORCE_FROM;
9413 ret = true;
9414 break;
9416 case GOMP_MAP_FROM:
9417 OMP_CLAUSE_SET_MAP_KIND (clause, GOMP_MAP_FORCE_ALLOC);
9418 new_op = GOMP_MAP_FROM;
9419 ret = true;
9420 break;
9422 case GOMP_MAP_TOFROM:
9423 OMP_CLAUSE_SET_MAP_KIND (clause, GOMP_MAP_TO);
9424 new_op = GOMP_MAP_FROM;
9425 ret = true;
9426 break;
9428 case GOMP_MAP_DEVICE_RESIDENT:
9429 case GOMP_MAP_FORCE_DEVICEPTR:
9430 case GOMP_MAP_FORCE_PRESENT:
9431 case GOMP_MAP_LINK:
9432 case GOMP_MAP_POINTER:
9433 case GOMP_MAP_TO:
9434 break;
9436 default:
9437 gcc_unreachable ();
9438 break;
9441 if (ret)
9443 c = build_omp_clause (OMP_CLAUSE_LOCATION (clause), OMP_CLAUSE_MAP);
9444 OMP_CLAUSE_SET_MAP_KIND (c, new_op);
9445 OMP_CLAUSE_DECL (c) = OMP_CLAUSE_DECL (clause);
9448 return c;
9451 /* Gimplify OACC_DECLARE. */
9453 static void
9454 gimplify_oacc_declare (tree *expr_p, gimple_seq *pre_p)
9456 tree expr = *expr_p;
9457 gomp_target *stmt;
9458 tree clauses, t, decl;
9460 clauses = OACC_DECLARE_CLAUSES (expr);
9462 gimplify_scan_omp_clauses (&clauses, pre_p, ORT_TARGET_DATA, OACC_DECLARE);
9463 gimplify_adjust_omp_clauses (pre_p, NULL, &clauses, OACC_DECLARE);
9465 for (t = clauses; t; t = OMP_CLAUSE_CHAIN (t))
9467 decl = OMP_CLAUSE_DECL (t);
9469 if (TREE_CODE (decl) == MEM_REF)
9470 decl = TREE_OPERAND (decl, 0);
9472 if (VAR_P (decl) && !is_oacc_declared (decl))
9474 tree attr = get_identifier ("oacc declare target");
9475 DECL_ATTRIBUTES (decl) = tree_cons (attr, NULL_TREE,
9476 DECL_ATTRIBUTES (decl));
9479 if (VAR_P (decl)
9480 && !is_global_var (decl)
9481 && DECL_CONTEXT (decl) == current_function_decl)
9483 tree c = gimplify_oacc_declare_1 (t);
9484 if (c)
9486 if (oacc_declare_returns == NULL)
9487 oacc_declare_returns = new hash_map<tree, tree>;
9489 oacc_declare_returns->put (decl, c);
9493 if (gimplify_omp_ctxp)
9494 omp_add_variable (gimplify_omp_ctxp, decl, GOVD_SEEN);
9497 stmt = gimple_build_omp_target (NULL, GF_OMP_TARGET_KIND_OACC_DECLARE,
9498 clauses);
9500 gimplify_seq_add_stmt (pre_p, stmt);
9502 *expr_p = NULL_TREE;
9505 /* Gimplify the contents of an OMP_PARALLEL statement. This involves
9506 gimplification of the body, as well as scanning the body for used
9507 variables. We need to do this scan now, because variable-sized
9508 decls will be decomposed during gimplification. */
9510 static void
9511 gimplify_omp_parallel (tree *expr_p, gimple_seq *pre_p)
9513 tree expr = *expr_p;
9514 gimple *g;
9515 gimple_seq body = NULL;
9517 gimplify_scan_omp_clauses (&OMP_PARALLEL_CLAUSES (expr), pre_p,
9518 OMP_PARALLEL_COMBINED (expr)
9519 ? ORT_COMBINED_PARALLEL
9520 : ORT_PARALLEL, OMP_PARALLEL);
9522 push_gimplify_context ();
9524 g = gimplify_and_return_first (OMP_PARALLEL_BODY (expr), &body);
9525 if (gimple_code (g) == GIMPLE_BIND)
9526 pop_gimplify_context (g);
9527 else
9528 pop_gimplify_context (NULL);
9530 gimplify_adjust_omp_clauses (pre_p, body, &OMP_PARALLEL_CLAUSES (expr),
9531 OMP_PARALLEL);
9533 g = gimple_build_omp_parallel (body,
9534 OMP_PARALLEL_CLAUSES (expr),
9535 NULL_TREE, NULL_TREE);
9536 if (OMP_PARALLEL_COMBINED (expr))
9537 gimple_omp_set_subcode (g, GF_OMP_PARALLEL_COMBINED);
9538 gimplify_seq_add_stmt (pre_p, g);
9539 *expr_p = NULL_TREE;
9542 /* Gimplify the contents of an OMP_TASK statement. This involves
9543 gimplification of the body, as well as scanning the body for used
9544 variables. We need to do this scan now, because variable-sized
9545 decls will be decomposed during gimplification. */
9547 static void
9548 gimplify_omp_task (tree *expr_p, gimple_seq *pre_p)
9550 tree expr = *expr_p;
9551 gimple *g;
9552 gimple_seq body = NULL;
9554 gimplify_scan_omp_clauses (&OMP_TASK_CLAUSES (expr), pre_p,
9555 omp_find_clause (OMP_TASK_CLAUSES (expr),
9556 OMP_CLAUSE_UNTIED)
9557 ? ORT_UNTIED_TASK : ORT_TASK, OMP_TASK);
9559 push_gimplify_context ();
9561 g = gimplify_and_return_first (OMP_TASK_BODY (expr), &body);
9562 if (gimple_code (g) == GIMPLE_BIND)
9563 pop_gimplify_context (g);
9564 else
9565 pop_gimplify_context (NULL);
9567 gimplify_adjust_omp_clauses (pre_p, body, &OMP_TASK_CLAUSES (expr),
9568 OMP_TASK);
9570 g = gimple_build_omp_task (body,
9571 OMP_TASK_CLAUSES (expr),
9572 NULL_TREE, NULL_TREE,
9573 NULL_TREE, NULL_TREE, NULL_TREE);
9574 gimplify_seq_add_stmt (pre_p, g);
9575 *expr_p = NULL_TREE;
9578 /* Helper function of gimplify_omp_for, find OMP_FOR resp. OMP_SIMD
9579 with non-NULL OMP_FOR_INIT. */
9581 static tree
9582 find_combined_omp_for (tree *tp, int *walk_subtrees, void *)
9584 *walk_subtrees = 0;
9585 switch (TREE_CODE (*tp))
9587 case OMP_FOR:
9588 *walk_subtrees = 1;
9589 /* FALLTHRU */
9590 case OMP_SIMD:
9591 if (OMP_FOR_INIT (*tp) != NULL_TREE)
9592 return *tp;
9593 break;
9594 case BIND_EXPR:
9595 case STATEMENT_LIST:
9596 case OMP_PARALLEL:
9597 *walk_subtrees = 1;
9598 break;
9599 default:
9600 break;
9602 return NULL_TREE;
9605 /* Gimplify the gross structure of an OMP_FOR statement. */
9607 static enum gimplify_status
9608 gimplify_omp_for (tree *expr_p, gimple_seq *pre_p)
9610 tree for_stmt, orig_for_stmt, inner_for_stmt = NULL_TREE, decl, var, t;
9611 enum gimplify_status ret = GS_ALL_DONE;
9612 enum gimplify_status tret;
9613 gomp_for *gfor;
9614 gimple_seq for_body, for_pre_body;
9615 int i;
9616 bitmap has_decl_expr = NULL;
9617 enum omp_region_type ort = ORT_WORKSHARE;
9619 orig_for_stmt = for_stmt = *expr_p;
9621 switch (TREE_CODE (for_stmt))
9623 case OMP_FOR:
9624 case OMP_DISTRIBUTE:
9625 break;
9626 case OACC_LOOP:
9627 ort = ORT_ACC;
9628 break;
9629 case OMP_TASKLOOP:
9630 if (omp_find_clause (OMP_FOR_CLAUSES (for_stmt), OMP_CLAUSE_UNTIED))
9631 ort = ORT_UNTIED_TASK;
9632 else
9633 ort = ORT_TASK;
9634 break;
9635 case OMP_SIMD:
9636 ort = ORT_SIMD;
9637 break;
9638 default:
9639 gcc_unreachable ();
9642 /* Set OMP_CLAUSE_LINEAR_NO_COPYIN flag on explicit linear
9643 clause for the IV. */
9644 if (ort == ORT_SIMD && TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)) == 1)
9646 t = TREE_VEC_ELT (OMP_FOR_INIT (for_stmt), 0);
9647 gcc_assert (TREE_CODE (t) == MODIFY_EXPR);
9648 decl = TREE_OPERAND (t, 0);
9649 for (tree c = OMP_FOR_CLAUSES (for_stmt); c; c = OMP_CLAUSE_CHAIN (c))
9650 if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LINEAR
9651 && OMP_CLAUSE_DECL (c) == decl)
9653 OMP_CLAUSE_LINEAR_NO_COPYIN (c) = 1;
9654 break;
9658 if (OMP_FOR_INIT (for_stmt) == NULL_TREE)
9660 gcc_assert (TREE_CODE (for_stmt) != OACC_LOOP);
9661 inner_for_stmt = walk_tree (&OMP_FOR_BODY (for_stmt),
9662 find_combined_omp_for, NULL, NULL);
9663 if (inner_for_stmt == NULL_TREE)
9665 gcc_assert (seen_error ());
9666 *expr_p = NULL_TREE;
9667 return GS_ERROR;
9671 if (TREE_CODE (for_stmt) != OMP_TASKLOOP)
9672 gimplify_scan_omp_clauses (&OMP_FOR_CLAUSES (for_stmt), pre_p, ort,
9673 TREE_CODE (for_stmt));
9675 if (TREE_CODE (for_stmt) == OMP_DISTRIBUTE)
9676 gimplify_omp_ctxp->distribute = true;
9678 /* Handle OMP_FOR_INIT. */
9679 for_pre_body = NULL;
9680 if (ort == ORT_SIMD && OMP_FOR_PRE_BODY (for_stmt))
9682 has_decl_expr = BITMAP_ALLOC (NULL);
9683 if (TREE_CODE (OMP_FOR_PRE_BODY (for_stmt)) == DECL_EXPR
9684 && TREE_CODE (DECL_EXPR_DECL (OMP_FOR_PRE_BODY (for_stmt)))
9685 == VAR_DECL)
9687 t = OMP_FOR_PRE_BODY (for_stmt);
9688 bitmap_set_bit (has_decl_expr, DECL_UID (DECL_EXPR_DECL (t)));
9690 else if (TREE_CODE (OMP_FOR_PRE_BODY (for_stmt)) == STATEMENT_LIST)
9692 tree_stmt_iterator si;
9693 for (si = tsi_start (OMP_FOR_PRE_BODY (for_stmt)); !tsi_end_p (si);
9694 tsi_next (&si))
9696 t = tsi_stmt (si);
9697 if (TREE_CODE (t) == DECL_EXPR
9698 && TREE_CODE (DECL_EXPR_DECL (t)) == VAR_DECL)
9699 bitmap_set_bit (has_decl_expr, DECL_UID (DECL_EXPR_DECL (t)));
9703 if (OMP_FOR_PRE_BODY (for_stmt))
9705 if (TREE_CODE (for_stmt) != OMP_TASKLOOP || gimplify_omp_ctxp)
9706 gimplify_and_add (OMP_FOR_PRE_BODY (for_stmt), &for_pre_body);
9707 else
9709 struct gimplify_omp_ctx ctx;
9710 memset (&ctx, 0, sizeof (ctx));
9711 ctx.region_type = ORT_NONE;
9712 gimplify_omp_ctxp = &ctx;
9713 gimplify_and_add (OMP_FOR_PRE_BODY (for_stmt), &for_pre_body);
9714 gimplify_omp_ctxp = NULL;
9717 OMP_FOR_PRE_BODY (for_stmt) = NULL_TREE;
9719 if (OMP_FOR_INIT (for_stmt) == NULL_TREE)
9720 for_stmt = inner_for_stmt;
9722 /* For taskloop, need to gimplify the start, end and step before the
9723 taskloop, outside of the taskloop omp context. */
9724 if (TREE_CODE (orig_for_stmt) == OMP_TASKLOOP)
9726 for (i = 0; i < TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)); i++)
9728 t = TREE_VEC_ELT (OMP_FOR_INIT (for_stmt), i);
9729 if (!is_gimple_constant (TREE_OPERAND (t, 1)))
9731 TREE_OPERAND (t, 1)
9732 = get_initialized_tmp_var (TREE_OPERAND (t, 1),
9733 pre_p, NULL, false);
9734 tree c = build_omp_clause (input_location,
9735 OMP_CLAUSE_FIRSTPRIVATE);
9736 OMP_CLAUSE_DECL (c) = TREE_OPERAND (t, 1);
9737 OMP_CLAUSE_CHAIN (c) = OMP_FOR_CLAUSES (orig_for_stmt);
9738 OMP_FOR_CLAUSES (orig_for_stmt) = c;
9741 /* Handle OMP_FOR_COND. */
9742 t = TREE_VEC_ELT (OMP_FOR_COND (for_stmt), i);
9743 if (!is_gimple_constant (TREE_OPERAND (t, 1)))
9745 TREE_OPERAND (t, 1)
9746 = get_initialized_tmp_var (TREE_OPERAND (t, 1),
9747 gimple_seq_empty_p (for_pre_body)
9748 ? pre_p : &for_pre_body, NULL,
9749 false);
9750 tree c = build_omp_clause (input_location,
9751 OMP_CLAUSE_FIRSTPRIVATE);
9752 OMP_CLAUSE_DECL (c) = TREE_OPERAND (t, 1);
9753 OMP_CLAUSE_CHAIN (c) = OMP_FOR_CLAUSES (orig_for_stmt);
9754 OMP_FOR_CLAUSES (orig_for_stmt) = c;
9757 /* Handle OMP_FOR_INCR. */
9758 t = TREE_VEC_ELT (OMP_FOR_INCR (for_stmt), i);
9759 if (TREE_CODE (t) == MODIFY_EXPR)
9761 decl = TREE_OPERAND (t, 0);
9762 t = TREE_OPERAND (t, 1);
9763 tree *tp = &TREE_OPERAND (t, 1);
9764 if (TREE_CODE (t) == PLUS_EXPR && *tp == decl)
9765 tp = &TREE_OPERAND (t, 0);
9767 if (!is_gimple_constant (*tp))
9769 gimple_seq *seq = gimple_seq_empty_p (for_pre_body)
9770 ? pre_p : &for_pre_body;
9771 *tp = get_initialized_tmp_var (*tp, seq, NULL, false);
9772 tree c = build_omp_clause (input_location,
9773 OMP_CLAUSE_FIRSTPRIVATE);
9774 OMP_CLAUSE_DECL (c) = *tp;
9775 OMP_CLAUSE_CHAIN (c) = OMP_FOR_CLAUSES (orig_for_stmt);
9776 OMP_FOR_CLAUSES (orig_for_stmt) = c;
9781 gimplify_scan_omp_clauses (&OMP_FOR_CLAUSES (orig_for_stmt), pre_p, ort,
9782 OMP_TASKLOOP);
9785 if (orig_for_stmt != for_stmt)
9786 gimplify_omp_ctxp->combined_loop = true;
9788 for_body = NULL;
9789 gcc_assert (TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt))
9790 == TREE_VEC_LENGTH (OMP_FOR_COND (for_stmt)));
9791 gcc_assert (TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt))
9792 == TREE_VEC_LENGTH (OMP_FOR_INCR (for_stmt)));
9794 tree c = omp_find_clause (OMP_FOR_CLAUSES (for_stmt), OMP_CLAUSE_ORDERED);
9795 bool is_doacross = false;
9796 if (c && OMP_CLAUSE_ORDERED_EXPR (c))
9798 is_doacross = true;
9799 gimplify_omp_ctxp->loop_iter_var.create (TREE_VEC_LENGTH
9800 (OMP_FOR_INIT (for_stmt))
9801 * 2);
9803 int collapse = 1, tile = 0;
9804 c = omp_find_clause (OMP_FOR_CLAUSES (for_stmt), OMP_CLAUSE_COLLAPSE);
9805 if (c)
9806 collapse = tree_to_shwi (OMP_CLAUSE_COLLAPSE_EXPR (c));
9807 c = omp_find_clause (OMP_FOR_CLAUSES (for_stmt), OMP_CLAUSE_TILE);
9808 if (c)
9809 tile = list_length (OMP_CLAUSE_TILE_LIST (c));
9810 for (i = 0; i < TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)); i++)
9812 t = TREE_VEC_ELT (OMP_FOR_INIT (for_stmt), i);
9813 gcc_assert (TREE_CODE (t) == MODIFY_EXPR);
9814 decl = TREE_OPERAND (t, 0);
9815 gcc_assert (DECL_P (decl));
9816 gcc_assert (INTEGRAL_TYPE_P (TREE_TYPE (decl))
9817 || POINTER_TYPE_P (TREE_TYPE (decl)));
9818 if (is_doacross)
9820 if (TREE_CODE (for_stmt) == OMP_FOR && OMP_FOR_ORIG_DECLS (for_stmt))
9821 gimplify_omp_ctxp->loop_iter_var.quick_push
9822 (TREE_VEC_ELT (OMP_FOR_ORIG_DECLS (for_stmt), i));
9823 else
9824 gimplify_omp_ctxp->loop_iter_var.quick_push (decl);
9825 gimplify_omp_ctxp->loop_iter_var.quick_push (decl);
9828 /* Make sure the iteration variable is private. */
9829 tree c = NULL_TREE;
9830 tree c2 = NULL_TREE;
9831 if (orig_for_stmt != for_stmt)
9832 /* Do this only on innermost construct for combined ones. */;
9833 else if (ort == ORT_SIMD)
9835 splay_tree_node n = splay_tree_lookup (gimplify_omp_ctxp->variables,
9836 (splay_tree_key) decl);
9837 omp_is_private (gimplify_omp_ctxp, decl,
9838 1 + (TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt))
9839 != 1));
9840 if (n != NULL && (n->value & GOVD_DATA_SHARE_CLASS) != 0)
9841 omp_notice_variable (gimplify_omp_ctxp, decl, true);
9842 else if (TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)) == 1)
9844 c = build_omp_clause (input_location, OMP_CLAUSE_LINEAR);
9845 OMP_CLAUSE_LINEAR_NO_COPYIN (c) = 1;
9846 unsigned int flags = GOVD_LINEAR | GOVD_EXPLICIT | GOVD_SEEN;
9847 if (has_decl_expr
9848 && bitmap_bit_p (has_decl_expr, DECL_UID (decl)))
9850 OMP_CLAUSE_LINEAR_NO_COPYOUT (c) = 1;
9851 flags |= GOVD_LINEAR_LASTPRIVATE_NO_OUTER;
9853 struct gimplify_omp_ctx *outer
9854 = gimplify_omp_ctxp->outer_context;
9855 if (outer && !OMP_CLAUSE_LINEAR_NO_COPYOUT (c))
9857 if (outer->region_type == ORT_WORKSHARE
9858 && outer->combined_loop)
9860 n = splay_tree_lookup (outer->variables,
9861 (splay_tree_key)decl);
9862 if (n != NULL && (n->value & GOVD_LOCAL) != 0)
9864 OMP_CLAUSE_LINEAR_NO_COPYOUT (c) = 1;
9865 flags |= GOVD_LINEAR_LASTPRIVATE_NO_OUTER;
9867 else
9869 struct gimplify_omp_ctx *octx = outer->outer_context;
9870 if (octx
9871 && octx->region_type == ORT_COMBINED_PARALLEL
9872 && octx->outer_context
9873 && (octx->outer_context->region_type
9874 == ORT_WORKSHARE)
9875 && octx->outer_context->combined_loop)
9877 octx = octx->outer_context;
9878 n = splay_tree_lookup (octx->variables,
9879 (splay_tree_key)decl);
9880 if (n != NULL && (n->value & GOVD_LOCAL) != 0)
9882 OMP_CLAUSE_LINEAR_NO_COPYOUT (c) = 1;
9883 flags |= GOVD_LINEAR_LASTPRIVATE_NO_OUTER;
9890 OMP_CLAUSE_DECL (c) = decl;
9891 OMP_CLAUSE_CHAIN (c) = OMP_FOR_CLAUSES (for_stmt);
9892 OMP_FOR_CLAUSES (for_stmt) = c;
9893 omp_add_variable (gimplify_omp_ctxp, decl, flags);
9894 if (outer && !OMP_CLAUSE_LINEAR_NO_COPYOUT (c))
9896 if (outer->region_type == ORT_WORKSHARE
9897 && outer->combined_loop)
9899 if (outer->outer_context
9900 && (outer->outer_context->region_type
9901 == ORT_COMBINED_PARALLEL))
9902 outer = outer->outer_context;
9903 else if (omp_check_private (outer, decl, false))
9904 outer = NULL;
9906 else if (((outer->region_type & ORT_TASK) != 0)
9907 && outer->combined_loop
9908 && !omp_check_private (gimplify_omp_ctxp,
9909 decl, false))
9911 else if (outer->region_type != ORT_COMBINED_PARALLEL)
9913 omp_notice_variable (outer, decl, true);
9914 outer = NULL;
9916 if (outer)
9918 n = splay_tree_lookup (outer->variables,
9919 (splay_tree_key)decl);
9920 if (n == NULL || (n->value & GOVD_DATA_SHARE_CLASS) == 0)
9922 omp_add_variable (outer, decl,
9923 GOVD_LASTPRIVATE | GOVD_SEEN);
9924 if (outer->region_type == ORT_COMBINED_PARALLEL
9925 && outer->outer_context
9926 && (outer->outer_context->region_type
9927 == ORT_WORKSHARE)
9928 && outer->outer_context->combined_loop)
9930 outer = outer->outer_context;
9931 n = splay_tree_lookup (outer->variables,
9932 (splay_tree_key)decl);
9933 if (omp_check_private (outer, decl, false))
9934 outer = NULL;
9935 else if (n == NULL
9936 || ((n->value & GOVD_DATA_SHARE_CLASS)
9937 == 0))
9938 omp_add_variable (outer, decl,
9939 GOVD_LASTPRIVATE
9940 | GOVD_SEEN);
9941 else
9942 outer = NULL;
9944 if (outer && outer->outer_context
9945 && (outer->outer_context->region_type
9946 == ORT_COMBINED_TEAMS))
9948 outer = outer->outer_context;
9949 n = splay_tree_lookup (outer->variables,
9950 (splay_tree_key)decl);
9951 if (n == NULL
9952 || (n->value & GOVD_DATA_SHARE_CLASS) == 0)
9953 omp_add_variable (outer, decl,
9954 GOVD_SHARED | GOVD_SEEN);
9955 else
9956 outer = NULL;
9958 if (outer && outer->outer_context)
9959 omp_notice_variable (outer->outer_context, decl,
9960 true);
9965 else
9967 bool lastprivate
9968 = (!has_decl_expr
9969 || !bitmap_bit_p (has_decl_expr, DECL_UID (decl)));
9970 struct gimplify_omp_ctx *outer
9971 = gimplify_omp_ctxp->outer_context;
9972 if (outer && lastprivate)
9974 if (outer->region_type == ORT_WORKSHARE
9975 && outer->combined_loop)
9977 n = splay_tree_lookup (outer->variables,
9978 (splay_tree_key)decl);
9979 if (n != NULL && (n->value & GOVD_LOCAL) != 0)
9981 lastprivate = false;
9982 outer = NULL;
9984 else if (outer->outer_context
9985 && (outer->outer_context->region_type
9986 == ORT_COMBINED_PARALLEL))
9987 outer = outer->outer_context;
9988 else if (omp_check_private (outer, decl, false))
9989 outer = NULL;
9991 else if (((outer->region_type & ORT_TASK) != 0)
9992 && outer->combined_loop
9993 && !omp_check_private (gimplify_omp_ctxp,
9994 decl, false))
9996 else if (outer->region_type != ORT_COMBINED_PARALLEL)
9998 omp_notice_variable (outer, decl, true);
9999 outer = NULL;
10001 if (outer)
10003 n = splay_tree_lookup (outer->variables,
10004 (splay_tree_key)decl);
10005 if (n == NULL || (n->value & GOVD_DATA_SHARE_CLASS) == 0)
10007 omp_add_variable (outer, decl,
10008 GOVD_LASTPRIVATE | GOVD_SEEN);
10009 if (outer->region_type == ORT_COMBINED_PARALLEL
10010 && outer->outer_context
10011 && (outer->outer_context->region_type
10012 == ORT_WORKSHARE)
10013 && outer->outer_context->combined_loop)
10015 outer = outer->outer_context;
10016 n = splay_tree_lookup (outer->variables,
10017 (splay_tree_key)decl);
10018 if (omp_check_private (outer, decl, false))
10019 outer = NULL;
10020 else if (n == NULL
10021 || ((n->value & GOVD_DATA_SHARE_CLASS)
10022 == 0))
10023 omp_add_variable (outer, decl,
10024 GOVD_LASTPRIVATE
10025 | GOVD_SEEN);
10026 else
10027 outer = NULL;
10029 if (outer && outer->outer_context
10030 && (outer->outer_context->region_type
10031 == ORT_COMBINED_TEAMS))
10033 outer = outer->outer_context;
10034 n = splay_tree_lookup (outer->variables,
10035 (splay_tree_key)decl);
10036 if (n == NULL
10037 || (n->value & GOVD_DATA_SHARE_CLASS) == 0)
10038 omp_add_variable (outer, decl,
10039 GOVD_SHARED | GOVD_SEEN);
10040 else
10041 outer = NULL;
10043 if (outer && outer->outer_context)
10044 omp_notice_variable (outer->outer_context, decl,
10045 true);
10050 c = build_omp_clause (input_location,
10051 lastprivate ? OMP_CLAUSE_LASTPRIVATE
10052 : OMP_CLAUSE_PRIVATE);
10053 OMP_CLAUSE_DECL (c) = decl;
10054 OMP_CLAUSE_CHAIN (c) = OMP_FOR_CLAUSES (for_stmt);
10055 OMP_FOR_CLAUSES (for_stmt) = c;
10056 omp_add_variable (gimplify_omp_ctxp, decl,
10057 (lastprivate ? GOVD_LASTPRIVATE : GOVD_PRIVATE)
10058 | GOVD_EXPLICIT | GOVD_SEEN);
10059 c = NULL_TREE;
10062 else if (omp_is_private (gimplify_omp_ctxp, decl, 0))
10063 omp_notice_variable (gimplify_omp_ctxp, decl, true);
10064 else
10065 omp_add_variable (gimplify_omp_ctxp, decl, GOVD_PRIVATE | GOVD_SEEN);
10067 /* If DECL is not a gimple register, create a temporary variable to act
10068 as an iteration counter. This is valid, since DECL cannot be
10069 modified in the body of the loop. Similarly for any iteration vars
10070 in simd with collapse > 1 where the iterator vars must be
10071 lastprivate. */
10072 if (orig_for_stmt != for_stmt)
10073 var = decl;
10074 else if (!is_gimple_reg (decl)
10075 || (ort == ORT_SIMD
10076 && TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)) > 1))
10078 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
10079 /* Make sure omp_add_variable is not called on it prematurely.
10080 We call it ourselves a few lines later. */
10081 gimplify_omp_ctxp = NULL;
10082 var = create_tmp_var (TREE_TYPE (decl), get_name (decl));
10083 gimplify_omp_ctxp = ctx;
10084 TREE_OPERAND (t, 0) = var;
10086 gimplify_seq_add_stmt (&for_body, gimple_build_assign (decl, var));
10088 if (ort == ORT_SIMD
10089 && TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)) == 1)
10091 c2 = build_omp_clause (input_location, OMP_CLAUSE_LINEAR);
10092 OMP_CLAUSE_LINEAR_NO_COPYIN (c2) = 1;
10093 OMP_CLAUSE_LINEAR_NO_COPYOUT (c2) = 1;
10094 OMP_CLAUSE_DECL (c2) = var;
10095 OMP_CLAUSE_CHAIN (c2) = OMP_FOR_CLAUSES (for_stmt);
10096 OMP_FOR_CLAUSES (for_stmt) = c2;
10097 omp_add_variable (gimplify_omp_ctxp, var,
10098 GOVD_LINEAR | GOVD_EXPLICIT | GOVD_SEEN);
10099 if (c == NULL_TREE)
10101 c = c2;
10102 c2 = NULL_TREE;
10105 else
10106 omp_add_variable (gimplify_omp_ctxp, var,
10107 GOVD_PRIVATE | GOVD_SEEN);
10109 else
10110 var = decl;
10112 tret = gimplify_expr (&TREE_OPERAND (t, 1), &for_pre_body, NULL,
10113 is_gimple_val, fb_rvalue, false);
10114 ret = MIN (ret, tret);
10115 if (ret == GS_ERROR)
10116 return ret;
10118 /* Handle OMP_FOR_COND. */
10119 t = TREE_VEC_ELT (OMP_FOR_COND (for_stmt), i);
10120 gcc_assert (COMPARISON_CLASS_P (t));
10121 gcc_assert (TREE_OPERAND (t, 0) == decl);
10123 tret = gimplify_expr (&TREE_OPERAND (t, 1), &for_pre_body, NULL,
10124 is_gimple_val, fb_rvalue, false);
10125 ret = MIN (ret, tret);
10127 /* Handle OMP_FOR_INCR. */
10128 t = TREE_VEC_ELT (OMP_FOR_INCR (for_stmt), i);
10129 switch (TREE_CODE (t))
10131 case PREINCREMENT_EXPR:
10132 case POSTINCREMENT_EXPR:
10134 tree decl = TREE_OPERAND (t, 0);
10135 /* c_omp_for_incr_canonicalize_ptr() should have been
10136 called to massage things appropriately. */
10137 gcc_assert (!POINTER_TYPE_P (TREE_TYPE (decl)));
10139 if (orig_for_stmt != for_stmt)
10140 break;
10141 t = build_int_cst (TREE_TYPE (decl), 1);
10142 if (c)
10143 OMP_CLAUSE_LINEAR_STEP (c) = t;
10144 t = build2 (PLUS_EXPR, TREE_TYPE (decl), var, t);
10145 t = build2 (MODIFY_EXPR, TREE_TYPE (var), var, t);
10146 TREE_VEC_ELT (OMP_FOR_INCR (for_stmt), i) = t;
10147 break;
10150 case PREDECREMENT_EXPR:
10151 case POSTDECREMENT_EXPR:
10152 /* c_omp_for_incr_canonicalize_ptr() should have been
10153 called to massage things appropriately. */
10154 gcc_assert (!POINTER_TYPE_P (TREE_TYPE (decl)));
10155 if (orig_for_stmt != for_stmt)
10156 break;
10157 t = build_int_cst (TREE_TYPE (decl), -1);
10158 if (c)
10159 OMP_CLAUSE_LINEAR_STEP (c) = t;
10160 t = build2 (PLUS_EXPR, TREE_TYPE (decl), var, t);
10161 t = build2 (MODIFY_EXPR, TREE_TYPE (var), var, t);
10162 TREE_VEC_ELT (OMP_FOR_INCR (for_stmt), i) = t;
10163 break;
10165 case MODIFY_EXPR:
10166 gcc_assert (TREE_OPERAND (t, 0) == decl);
10167 TREE_OPERAND (t, 0) = var;
10169 t = TREE_OPERAND (t, 1);
10170 switch (TREE_CODE (t))
10172 case PLUS_EXPR:
10173 if (TREE_OPERAND (t, 1) == decl)
10175 TREE_OPERAND (t, 1) = TREE_OPERAND (t, 0);
10176 TREE_OPERAND (t, 0) = var;
10177 break;
10180 /* Fallthru. */
10181 case MINUS_EXPR:
10182 case POINTER_PLUS_EXPR:
10183 gcc_assert (TREE_OPERAND (t, 0) == decl);
10184 TREE_OPERAND (t, 0) = var;
10185 break;
10186 default:
10187 gcc_unreachable ();
10190 tret = gimplify_expr (&TREE_OPERAND (t, 1), &for_pre_body, NULL,
10191 is_gimple_val, fb_rvalue, false);
10192 ret = MIN (ret, tret);
10193 if (c)
10195 tree step = TREE_OPERAND (t, 1);
10196 tree stept = TREE_TYPE (decl);
10197 if (POINTER_TYPE_P (stept))
10198 stept = sizetype;
10199 step = fold_convert (stept, step);
10200 if (TREE_CODE (t) == MINUS_EXPR)
10201 step = fold_build1 (NEGATE_EXPR, stept, step);
10202 OMP_CLAUSE_LINEAR_STEP (c) = step;
10203 if (step != TREE_OPERAND (t, 1))
10205 tret = gimplify_expr (&OMP_CLAUSE_LINEAR_STEP (c),
10206 &for_pre_body, NULL,
10207 is_gimple_val, fb_rvalue, false);
10208 ret = MIN (ret, tret);
10211 break;
10213 default:
10214 gcc_unreachable ();
10217 if (c2)
10219 gcc_assert (c);
10220 OMP_CLAUSE_LINEAR_STEP (c2) = OMP_CLAUSE_LINEAR_STEP (c);
10223 if ((var != decl || collapse > 1 || tile) && orig_for_stmt == for_stmt)
10225 for (c = OMP_FOR_CLAUSES (for_stmt); c ; c = OMP_CLAUSE_CHAIN (c))
10226 if (((OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LASTPRIVATE
10227 && OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c) == NULL)
10228 || (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LINEAR
10229 && !OMP_CLAUSE_LINEAR_NO_COPYOUT (c)
10230 && OMP_CLAUSE_LINEAR_GIMPLE_SEQ (c) == NULL))
10231 && OMP_CLAUSE_DECL (c) == decl)
10233 if (is_doacross && (collapse == 1 || i >= collapse))
10234 t = var;
10235 else
10237 t = TREE_VEC_ELT (OMP_FOR_INCR (for_stmt), i);
10238 gcc_assert (TREE_CODE (t) == MODIFY_EXPR);
10239 gcc_assert (TREE_OPERAND (t, 0) == var);
10240 t = TREE_OPERAND (t, 1);
10241 gcc_assert (TREE_CODE (t) == PLUS_EXPR
10242 || TREE_CODE (t) == MINUS_EXPR
10243 || TREE_CODE (t) == POINTER_PLUS_EXPR);
10244 gcc_assert (TREE_OPERAND (t, 0) == var);
10245 t = build2 (TREE_CODE (t), TREE_TYPE (decl),
10246 is_doacross ? var : decl,
10247 TREE_OPERAND (t, 1));
10249 gimple_seq *seq;
10250 if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_LASTPRIVATE)
10251 seq = &OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (c);
10252 else
10253 seq = &OMP_CLAUSE_LINEAR_GIMPLE_SEQ (c);
10254 gimplify_assign (decl, t, seq);
10259 BITMAP_FREE (has_decl_expr);
10261 if (TREE_CODE (orig_for_stmt) == OMP_TASKLOOP)
10263 push_gimplify_context ();
10264 if (TREE_CODE (OMP_FOR_BODY (orig_for_stmt)) != BIND_EXPR)
10266 OMP_FOR_BODY (orig_for_stmt)
10267 = build3 (BIND_EXPR, void_type_node, NULL,
10268 OMP_FOR_BODY (orig_for_stmt), NULL);
10269 TREE_SIDE_EFFECTS (OMP_FOR_BODY (orig_for_stmt)) = 1;
10273 gimple *g = gimplify_and_return_first (OMP_FOR_BODY (orig_for_stmt),
10274 &for_body);
10276 if (TREE_CODE (orig_for_stmt) == OMP_TASKLOOP)
10278 if (gimple_code (g) == GIMPLE_BIND)
10279 pop_gimplify_context (g);
10280 else
10281 pop_gimplify_context (NULL);
10284 if (orig_for_stmt != for_stmt)
10285 for (i = 0; i < TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)); i++)
10287 t = TREE_VEC_ELT (OMP_FOR_INIT (for_stmt), i);
10288 decl = TREE_OPERAND (t, 0);
10289 struct gimplify_omp_ctx *ctx = gimplify_omp_ctxp;
10290 if (TREE_CODE (orig_for_stmt) == OMP_TASKLOOP)
10291 gimplify_omp_ctxp = ctx->outer_context;
10292 var = create_tmp_var (TREE_TYPE (decl), get_name (decl));
10293 gimplify_omp_ctxp = ctx;
10294 omp_add_variable (gimplify_omp_ctxp, var, GOVD_PRIVATE | GOVD_SEEN);
10295 TREE_OPERAND (t, 0) = var;
10296 t = TREE_VEC_ELT (OMP_FOR_INCR (for_stmt), i);
10297 TREE_OPERAND (t, 1) = copy_node (TREE_OPERAND (t, 1));
10298 TREE_OPERAND (TREE_OPERAND (t, 1), 0) = var;
10301 gimplify_adjust_omp_clauses (pre_p, for_body,
10302 &OMP_FOR_CLAUSES (orig_for_stmt),
10303 TREE_CODE (orig_for_stmt));
10305 int kind;
10306 switch (TREE_CODE (orig_for_stmt))
10308 case OMP_FOR: kind = GF_OMP_FOR_KIND_FOR; break;
10309 case OMP_SIMD: kind = GF_OMP_FOR_KIND_SIMD; break;
10310 case OMP_DISTRIBUTE: kind = GF_OMP_FOR_KIND_DISTRIBUTE; break;
10311 case OMP_TASKLOOP: kind = GF_OMP_FOR_KIND_TASKLOOP; break;
10312 case OACC_LOOP: kind = GF_OMP_FOR_KIND_OACC_LOOP; break;
10313 default:
10314 gcc_unreachable ();
10316 gfor = gimple_build_omp_for (for_body, kind, OMP_FOR_CLAUSES (orig_for_stmt),
10317 TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)),
10318 for_pre_body);
10319 if (orig_for_stmt != for_stmt)
10320 gimple_omp_for_set_combined_p (gfor, true);
10321 if (gimplify_omp_ctxp
10322 && (gimplify_omp_ctxp->combined_loop
10323 || (gimplify_omp_ctxp->region_type == ORT_COMBINED_PARALLEL
10324 && gimplify_omp_ctxp->outer_context
10325 && gimplify_omp_ctxp->outer_context->combined_loop)))
10327 gimple_omp_for_set_combined_into_p (gfor, true);
10328 if (gimplify_omp_ctxp->combined_loop)
10329 gcc_assert (TREE_CODE (orig_for_stmt) == OMP_SIMD);
10330 else
10331 gcc_assert (TREE_CODE (orig_for_stmt) == OMP_FOR);
10334 for (i = 0; i < TREE_VEC_LENGTH (OMP_FOR_INIT (for_stmt)); i++)
10336 t = TREE_VEC_ELT (OMP_FOR_INIT (for_stmt), i);
10337 gimple_omp_for_set_index (gfor, i, TREE_OPERAND (t, 0));
10338 gimple_omp_for_set_initial (gfor, i, TREE_OPERAND (t, 1));
10339 t = TREE_VEC_ELT (OMP_FOR_COND (for_stmt), i);
10340 gimple_omp_for_set_cond (gfor, i, TREE_CODE (t));
10341 gimple_omp_for_set_final (gfor, i, TREE_OPERAND (t, 1));
10342 t = TREE_VEC_ELT (OMP_FOR_INCR (for_stmt), i);
10343 gimple_omp_for_set_incr (gfor, i, TREE_OPERAND (t, 1));
10346 /* OMP_TASKLOOP is gimplified as two GIMPLE_OMP_FOR taskloop
10347 constructs with GIMPLE_OMP_TASK sandwiched in between them.
10348 The outer taskloop stands for computing the number of iterations,
10349 counts for collapsed loops and holding taskloop specific clauses.
10350 The task construct stands for the effect of data sharing on the
10351 explicit task it creates and the inner taskloop stands for expansion
10352 of the static loop inside of the explicit task construct. */
10353 if (TREE_CODE (orig_for_stmt) == OMP_TASKLOOP)
10355 tree *gfor_clauses_ptr = gimple_omp_for_clauses_ptr (gfor);
10356 tree task_clauses = NULL_TREE;
10357 tree c = *gfor_clauses_ptr;
10358 tree *gtask_clauses_ptr = &task_clauses;
10359 tree outer_for_clauses = NULL_TREE;
10360 tree *gforo_clauses_ptr = &outer_for_clauses;
10361 for (; c; c = OMP_CLAUSE_CHAIN (c))
10362 switch (OMP_CLAUSE_CODE (c))
10364 /* These clauses are allowed on task, move them there. */
10365 case OMP_CLAUSE_SHARED:
10366 case OMP_CLAUSE_FIRSTPRIVATE:
10367 case OMP_CLAUSE_DEFAULT:
10368 case OMP_CLAUSE_IF:
10369 case OMP_CLAUSE_UNTIED:
10370 case OMP_CLAUSE_FINAL:
10371 case OMP_CLAUSE_MERGEABLE:
10372 case OMP_CLAUSE_PRIORITY:
10373 *gtask_clauses_ptr = c;
10374 gtask_clauses_ptr = &OMP_CLAUSE_CHAIN (c);
10375 break;
10376 case OMP_CLAUSE_PRIVATE:
10377 if (OMP_CLAUSE_PRIVATE_TASKLOOP_IV (c))
10379 /* We want private on outer for and firstprivate
10380 on task. */
10381 *gtask_clauses_ptr
10382 = build_omp_clause (OMP_CLAUSE_LOCATION (c),
10383 OMP_CLAUSE_FIRSTPRIVATE);
10384 OMP_CLAUSE_DECL (*gtask_clauses_ptr) = OMP_CLAUSE_DECL (c);
10385 lang_hooks.decls.omp_finish_clause (*gtask_clauses_ptr, NULL);
10386 gtask_clauses_ptr = &OMP_CLAUSE_CHAIN (*gtask_clauses_ptr);
10387 *gforo_clauses_ptr = c;
10388 gforo_clauses_ptr = &OMP_CLAUSE_CHAIN (c);
10390 else
10392 *gtask_clauses_ptr = c;
10393 gtask_clauses_ptr = &OMP_CLAUSE_CHAIN (c);
10395 break;
10396 /* These clauses go into outer taskloop clauses. */
10397 case OMP_CLAUSE_GRAINSIZE:
10398 case OMP_CLAUSE_NUM_TASKS:
10399 case OMP_CLAUSE_NOGROUP:
10400 *gforo_clauses_ptr = c;
10401 gforo_clauses_ptr = &OMP_CLAUSE_CHAIN (c);
10402 break;
10403 /* Taskloop clause we duplicate on both taskloops. */
10404 case OMP_CLAUSE_COLLAPSE:
10405 *gfor_clauses_ptr = c;
10406 gfor_clauses_ptr = &OMP_CLAUSE_CHAIN (c);
10407 *gforo_clauses_ptr = copy_node (c);
10408 gforo_clauses_ptr = &OMP_CLAUSE_CHAIN (*gforo_clauses_ptr);
10409 break;
10410 /* For lastprivate, keep the clause on inner taskloop, and add
10411 a shared clause on task. If the same decl is also firstprivate,
10412 add also firstprivate clause on the inner taskloop. */
10413 case OMP_CLAUSE_LASTPRIVATE:
10414 if (OMP_CLAUSE_LASTPRIVATE_TASKLOOP_IV (c))
10416 /* For taskloop C++ lastprivate IVs, we want:
10417 1) private on outer taskloop
10418 2) firstprivate and shared on task
10419 3) lastprivate on inner taskloop */
10420 *gtask_clauses_ptr
10421 = build_omp_clause (OMP_CLAUSE_LOCATION (c),
10422 OMP_CLAUSE_FIRSTPRIVATE);
10423 OMP_CLAUSE_DECL (*gtask_clauses_ptr) = OMP_CLAUSE_DECL (c);
10424 lang_hooks.decls.omp_finish_clause (*gtask_clauses_ptr, NULL);
10425 gtask_clauses_ptr = &OMP_CLAUSE_CHAIN (*gtask_clauses_ptr);
10426 OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE (c) = 1;
10427 *gforo_clauses_ptr = build_omp_clause (OMP_CLAUSE_LOCATION (c),
10428 OMP_CLAUSE_PRIVATE);
10429 OMP_CLAUSE_DECL (*gforo_clauses_ptr) = OMP_CLAUSE_DECL (c);
10430 OMP_CLAUSE_PRIVATE_TASKLOOP_IV (*gforo_clauses_ptr) = 1;
10431 TREE_TYPE (*gforo_clauses_ptr) = TREE_TYPE (c);
10432 gforo_clauses_ptr = &OMP_CLAUSE_CHAIN (*gforo_clauses_ptr);
10434 *gfor_clauses_ptr = c;
10435 gfor_clauses_ptr = &OMP_CLAUSE_CHAIN (c);
10436 *gtask_clauses_ptr
10437 = build_omp_clause (OMP_CLAUSE_LOCATION (c), OMP_CLAUSE_SHARED);
10438 OMP_CLAUSE_DECL (*gtask_clauses_ptr) = OMP_CLAUSE_DECL (c);
10439 if (OMP_CLAUSE_LASTPRIVATE_FIRSTPRIVATE (c))
10440 OMP_CLAUSE_SHARED_FIRSTPRIVATE (*gtask_clauses_ptr) = 1;
10441 gtask_clauses_ptr
10442 = &OMP_CLAUSE_CHAIN (*gtask_clauses_ptr);
10443 break;
10444 default:
10445 gcc_unreachable ();
10447 *gfor_clauses_ptr = NULL_TREE;
10448 *gtask_clauses_ptr = NULL_TREE;
10449 *gforo_clauses_ptr = NULL_TREE;
10450 g = gimple_build_bind (NULL_TREE, gfor, NULL_TREE);
10451 g = gimple_build_omp_task (g, task_clauses, NULL_TREE, NULL_TREE,
10452 NULL_TREE, NULL_TREE, NULL_TREE);
10453 gimple_omp_task_set_taskloop_p (g, true);
10454 g = gimple_build_bind (NULL_TREE, g, NULL_TREE);
10455 gomp_for *gforo
10456 = gimple_build_omp_for (g, GF_OMP_FOR_KIND_TASKLOOP, outer_for_clauses,
10457 gimple_omp_for_collapse (gfor),
10458 gimple_omp_for_pre_body (gfor));
10459 gimple_omp_for_set_pre_body (gfor, NULL);
10460 gimple_omp_for_set_combined_p (gforo, true);
10461 gimple_omp_for_set_combined_into_p (gfor, true);
10462 for (i = 0; i < (int) gimple_omp_for_collapse (gfor); i++)
10464 tree type = TREE_TYPE (gimple_omp_for_index (gfor, i));
10465 tree v = create_tmp_var (type);
10466 gimple_omp_for_set_index (gforo, i, v);
10467 t = unshare_expr (gimple_omp_for_initial (gfor, i));
10468 gimple_omp_for_set_initial (gforo, i, t);
10469 gimple_omp_for_set_cond (gforo, i,
10470 gimple_omp_for_cond (gfor, i));
10471 t = unshare_expr (gimple_omp_for_final (gfor, i));
10472 gimple_omp_for_set_final (gforo, i, t);
10473 t = unshare_expr (gimple_omp_for_incr (gfor, i));
10474 gcc_assert (TREE_OPERAND (t, 0) == gimple_omp_for_index (gfor, i));
10475 TREE_OPERAND (t, 0) = v;
10476 gimple_omp_for_set_incr (gforo, i, t);
10477 t = build_omp_clause (input_location, OMP_CLAUSE_PRIVATE);
10478 OMP_CLAUSE_DECL (t) = v;
10479 OMP_CLAUSE_CHAIN (t) = gimple_omp_for_clauses (gforo);
10480 gimple_omp_for_set_clauses (gforo, t);
10482 gimplify_seq_add_stmt (pre_p, gforo);
10484 else
10485 gimplify_seq_add_stmt (pre_p, gfor);
10486 if (ret != GS_ALL_DONE)
10487 return GS_ERROR;
10488 *expr_p = NULL_TREE;
10489 return GS_ALL_DONE;
10492 /* Helper function of optimize_target_teams, find OMP_TEAMS inside
10493 of OMP_TARGET's body. */
10495 static tree
10496 find_omp_teams (tree *tp, int *walk_subtrees, void *)
10498 *walk_subtrees = 0;
10499 switch (TREE_CODE (*tp))
10501 case OMP_TEAMS:
10502 return *tp;
10503 case BIND_EXPR:
10504 case STATEMENT_LIST:
10505 *walk_subtrees = 1;
10506 break;
10507 default:
10508 break;
10510 return NULL_TREE;
10513 /* Helper function of optimize_target_teams, determine if the expression
10514 can be computed safely before the target construct on the host. */
10516 static tree
10517 computable_teams_clause (tree *tp, int *walk_subtrees, void *)
10519 splay_tree_node n;
10521 if (TYPE_P (*tp))
10523 *walk_subtrees = 0;
10524 return NULL_TREE;
10526 switch (TREE_CODE (*tp))
10528 case VAR_DECL:
10529 case PARM_DECL:
10530 case RESULT_DECL:
10531 *walk_subtrees = 0;
10532 if (error_operand_p (*tp)
10533 || !INTEGRAL_TYPE_P (TREE_TYPE (*tp))
10534 || DECL_HAS_VALUE_EXPR_P (*tp)
10535 || DECL_THREAD_LOCAL_P (*tp)
10536 || TREE_SIDE_EFFECTS (*tp)
10537 || TREE_THIS_VOLATILE (*tp))
10538 return *tp;
10539 if (is_global_var (*tp)
10540 && (lookup_attribute ("omp declare target", DECL_ATTRIBUTES (*tp))
10541 || lookup_attribute ("omp declare target link",
10542 DECL_ATTRIBUTES (*tp))))
10543 return *tp;
10544 if (VAR_P (*tp)
10545 && !DECL_SEEN_IN_BIND_EXPR_P (*tp)
10546 && !is_global_var (*tp)
10547 && decl_function_context (*tp) == current_function_decl)
10548 return *tp;
10549 n = splay_tree_lookup (gimplify_omp_ctxp->variables,
10550 (splay_tree_key) *tp);
10551 if (n == NULL)
10553 if (gimplify_omp_ctxp->target_map_scalars_firstprivate)
10554 return NULL_TREE;
10555 return *tp;
10557 else if (n->value & GOVD_LOCAL)
10558 return *tp;
10559 else if (n->value & GOVD_FIRSTPRIVATE)
10560 return NULL_TREE;
10561 else if ((n->value & (GOVD_MAP | GOVD_MAP_ALWAYS_TO))
10562 == (GOVD_MAP | GOVD_MAP_ALWAYS_TO))
10563 return NULL_TREE;
10564 return *tp;
10565 case INTEGER_CST:
10566 if (!INTEGRAL_TYPE_P (TREE_TYPE (*tp)))
10567 return *tp;
10568 return NULL_TREE;
10569 case TARGET_EXPR:
10570 if (TARGET_EXPR_INITIAL (*tp)
10571 || TREE_CODE (TARGET_EXPR_SLOT (*tp)) != VAR_DECL)
10572 return *tp;
10573 return computable_teams_clause (&TARGET_EXPR_SLOT (*tp),
10574 walk_subtrees, NULL);
10575 /* Allow some reasonable subset of integral arithmetics. */
10576 case PLUS_EXPR:
10577 case MINUS_EXPR:
10578 case MULT_EXPR:
10579 case TRUNC_DIV_EXPR:
10580 case CEIL_DIV_EXPR:
10581 case FLOOR_DIV_EXPR:
10582 case ROUND_DIV_EXPR:
10583 case TRUNC_MOD_EXPR:
10584 case CEIL_MOD_EXPR:
10585 case FLOOR_MOD_EXPR:
10586 case ROUND_MOD_EXPR:
10587 case RDIV_EXPR:
10588 case EXACT_DIV_EXPR:
10589 case MIN_EXPR:
10590 case MAX_EXPR:
10591 case LSHIFT_EXPR:
10592 case RSHIFT_EXPR:
10593 case BIT_IOR_EXPR:
10594 case BIT_XOR_EXPR:
10595 case BIT_AND_EXPR:
10596 case NEGATE_EXPR:
10597 case ABS_EXPR:
10598 case BIT_NOT_EXPR:
10599 case NON_LVALUE_EXPR:
10600 CASE_CONVERT:
10601 if (!INTEGRAL_TYPE_P (TREE_TYPE (*tp)))
10602 return *tp;
10603 return NULL_TREE;
10604 /* And disallow anything else, except for comparisons. */
10605 default:
10606 if (COMPARISON_CLASS_P (*tp))
10607 return NULL_TREE;
10608 return *tp;
10612 /* Try to determine if the num_teams and/or thread_limit expressions
10613 can have their values determined already before entering the
10614 target construct.
10615 INTEGER_CSTs trivially are,
10616 integral decls that are firstprivate (explicitly or implicitly)
10617 or explicitly map(always, to:) or map(always, tofrom:) on the target
10618 region too, and expressions involving simple arithmetics on those
10619 too, function calls are not ok, dereferencing something neither etc.
10620 Add NUM_TEAMS and THREAD_LIMIT clauses to the OMP_CLAUSES of
10621 EXPR based on what we find:
10622 0 stands for clause not specified at all, use implementation default
10623 -1 stands for value that can't be determined easily before entering
10624 the target construct.
10625 If teams construct is not present at all, use 1 for num_teams
10626 and 0 for thread_limit (only one team is involved, and the thread
10627 limit is implementation defined. */
10629 static void
10630 optimize_target_teams (tree target, gimple_seq *pre_p)
10632 tree body = OMP_BODY (target);
10633 tree teams = walk_tree (&body, find_omp_teams, NULL, NULL);
10634 tree num_teams = integer_zero_node;
10635 tree thread_limit = integer_zero_node;
10636 location_t num_teams_loc = EXPR_LOCATION (target);
10637 location_t thread_limit_loc = EXPR_LOCATION (target);
10638 tree c, *p, expr;
10639 struct gimplify_omp_ctx *target_ctx = gimplify_omp_ctxp;
10641 if (teams == NULL_TREE)
10642 num_teams = integer_one_node;
10643 else
10644 for (c = OMP_TEAMS_CLAUSES (teams); c; c = OMP_CLAUSE_CHAIN (c))
10646 if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_NUM_TEAMS)
10648 p = &num_teams;
10649 num_teams_loc = OMP_CLAUSE_LOCATION (c);
10651 else if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_THREAD_LIMIT)
10653 p = &thread_limit;
10654 thread_limit_loc = OMP_CLAUSE_LOCATION (c);
10656 else
10657 continue;
10658 expr = OMP_CLAUSE_OPERAND (c, 0);
10659 if (TREE_CODE (expr) == INTEGER_CST)
10661 *p = expr;
10662 continue;
10664 if (walk_tree (&expr, computable_teams_clause, NULL, NULL))
10666 *p = integer_minus_one_node;
10667 continue;
10669 *p = expr;
10670 gimplify_omp_ctxp = gimplify_omp_ctxp->outer_context;
10671 if (gimplify_expr (p, pre_p, NULL, is_gimple_val, fb_rvalue, false)
10672 == GS_ERROR)
10674 gimplify_omp_ctxp = target_ctx;
10675 *p = integer_minus_one_node;
10676 continue;
10678 gimplify_omp_ctxp = target_ctx;
10679 if (!DECL_P (expr) && TREE_CODE (expr) != TARGET_EXPR)
10680 OMP_CLAUSE_OPERAND (c, 0) = *p;
10682 c = build_omp_clause (thread_limit_loc, OMP_CLAUSE_THREAD_LIMIT);
10683 OMP_CLAUSE_THREAD_LIMIT_EXPR (c) = thread_limit;
10684 OMP_CLAUSE_CHAIN (c) = OMP_TARGET_CLAUSES (target);
10685 OMP_TARGET_CLAUSES (target) = c;
10686 c = build_omp_clause (num_teams_loc, OMP_CLAUSE_NUM_TEAMS);
10687 OMP_CLAUSE_NUM_TEAMS_EXPR (c) = num_teams;
10688 OMP_CLAUSE_CHAIN (c) = OMP_TARGET_CLAUSES (target);
10689 OMP_TARGET_CLAUSES (target) = c;
10692 /* Gimplify the gross structure of several OMP constructs. */
10694 static void
10695 gimplify_omp_workshare (tree *expr_p, gimple_seq *pre_p)
10697 tree expr = *expr_p;
10698 gimple *stmt;
10699 gimple_seq body = NULL;
10700 enum omp_region_type ort;
10702 switch (TREE_CODE (expr))
10704 case OMP_SECTIONS:
10705 case OMP_SINGLE:
10706 ort = ORT_WORKSHARE;
10707 break;
10708 case OMP_TARGET:
10709 ort = OMP_TARGET_COMBINED (expr) ? ORT_COMBINED_TARGET : ORT_TARGET;
10710 break;
10711 case OACC_KERNELS:
10712 ort = ORT_ACC_KERNELS;
10713 break;
10714 case OACC_PARALLEL:
10715 ort = ORT_ACC_PARALLEL;
10716 break;
10717 case OACC_DATA:
10718 ort = ORT_ACC_DATA;
10719 break;
10720 case OMP_TARGET_DATA:
10721 ort = ORT_TARGET_DATA;
10722 break;
10723 case OMP_TEAMS:
10724 ort = OMP_TEAMS_COMBINED (expr) ? ORT_COMBINED_TEAMS : ORT_TEAMS;
10725 break;
10726 case OACC_HOST_DATA:
10727 ort = ORT_ACC_HOST_DATA;
10728 break;
10729 default:
10730 gcc_unreachable ();
10732 gimplify_scan_omp_clauses (&OMP_CLAUSES (expr), pre_p, ort,
10733 TREE_CODE (expr));
10734 if (TREE_CODE (expr) == OMP_TARGET)
10735 optimize_target_teams (expr, pre_p);
10736 if ((ort & (ORT_TARGET | ORT_TARGET_DATA)) != 0)
10738 push_gimplify_context ();
10739 gimple *g = gimplify_and_return_first (OMP_BODY (expr), &body);
10740 if (gimple_code (g) == GIMPLE_BIND)
10741 pop_gimplify_context (g);
10742 else
10743 pop_gimplify_context (NULL);
10744 if ((ort & ORT_TARGET_DATA) != 0)
10746 enum built_in_function end_ix;
10747 switch (TREE_CODE (expr))
10749 case OACC_DATA:
10750 case OACC_HOST_DATA:
10751 end_ix = BUILT_IN_GOACC_DATA_END;
10752 break;
10753 case OMP_TARGET_DATA:
10754 end_ix = BUILT_IN_GOMP_TARGET_END_DATA;
10755 break;
10756 default:
10757 gcc_unreachable ();
10759 tree fn = builtin_decl_explicit (end_ix);
10760 g = gimple_build_call (fn, 0);
10761 gimple_seq cleanup = NULL;
10762 gimple_seq_add_stmt (&cleanup, g);
10763 g = gimple_build_try (body, cleanup, GIMPLE_TRY_FINALLY);
10764 body = NULL;
10765 gimple_seq_add_stmt (&body, g);
10768 else
10769 gimplify_and_add (OMP_BODY (expr), &body);
10770 gimplify_adjust_omp_clauses (pre_p, body, &OMP_CLAUSES (expr),
10771 TREE_CODE (expr));
10773 switch (TREE_CODE (expr))
10775 case OACC_DATA:
10776 stmt = gimple_build_omp_target (body, GF_OMP_TARGET_KIND_OACC_DATA,
10777 OMP_CLAUSES (expr));
10778 break;
10779 case OACC_KERNELS:
10780 stmt = gimple_build_omp_target (body, GF_OMP_TARGET_KIND_OACC_KERNELS,
10781 OMP_CLAUSES (expr));
10782 break;
10783 case OACC_HOST_DATA:
10784 stmt = gimple_build_omp_target (body, GF_OMP_TARGET_KIND_OACC_HOST_DATA,
10785 OMP_CLAUSES (expr));
10786 break;
10787 case OACC_PARALLEL:
10788 stmt = gimple_build_omp_target (body, GF_OMP_TARGET_KIND_OACC_PARALLEL,
10789 OMP_CLAUSES (expr));
10790 break;
10791 case OMP_SECTIONS:
10792 stmt = gimple_build_omp_sections (body, OMP_CLAUSES (expr));
10793 break;
10794 case OMP_SINGLE:
10795 stmt = gimple_build_omp_single (body, OMP_CLAUSES (expr));
10796 break;
10797 case OMP_TARGET:
10798 stmt = gimple_build_omp_target (body, GF_OMP_TARGET_KIND_REGION,
10799 OMP_CLAUSES (expr));
10800 break;
10801 case OMP_TARGET_DATA:
10802 stmt = gimple_build_omp_target (body, GF_OMP_TARGET_KIND_DATA,
10803 OMP_CLAUSES (expr));
10804 break;
10805 case OMP_TEAMS:
10806 stmt = gimple_build_omp_teams (body, OMP_CLAUSES (expr));
10807 break;
10808 default:
10809 gcc_unreachable ();
10812 gimplify_seq_add_stmt (pre_p, stmt);
10813 *expr_p = NULL_TREE;
10816 /* Gimplify the gross structure of OpenACC enter/exit data, update, and OpenMP
10817 target update constructs. */
10819 static void
10820 gimplify_omp_target_update (tree *expr_p, gimple_seq *pre_p)
10822 tree expr = *expr_p;
10823 int kind;
10824 gomp_target *stmt;
10825 enum omp_region_type ort = ORT_WORKSHARE;
10827 switch (TREE_CODE (expr))
10829 case OACC_ENTER_DATA:
10830 case OACC_EXIT_DATA:
10831 kind = GF_OMP_TARGET_KIND_OACC_ENTER_EXIT_DATA;
10832 ort = ORT_ACC;
10833 break;
10834 case OACC_UPDATE:
10835 kind = GF_OMP_TARGET_KIND_OACC_UPDATE;
10836 ort = ORT_ACC;
10837 break;
10838 case OMP_TARGET_UPDATE:
10839 kind = GF_OMP_TARGET_KIND_UPDATE;
10840 break;
10841 case OMP_TARGET_ENTER_DATA:
10842 kind = GF_OMP_TARGET_KIND_ENTER_DATA;
10843 break;
10844 case OMP_TARGET_EXIT_DATA:
10845 kind = GF_OMP_TARGET_KIND_EXIT_DATA;
10846 break;
10847 default:
10848 gcc_unreachable ();
10850 gimplify_scan_omp_clauses (&OMP_STANDALONE_CLAUSES (expr), pre_p,
10851 ort, TREE_CODE (expr));
10852 gimplify_adjust_omp_clauses (pre_p, NULL, &OMP_STANDALONE_CLAUSES (expr),
10853 TREE_CODE (expr));
10854 stmt = gimple_build_omp_target (NULL, kind, OMP_STANDALONE_CLAUSES (expr));
10856 gimplify_seq_add_stmt (pre_p, stmt);
10857 *expr_p = NULL_TREE;
10860 /* A subroutine of gimplify_omp_atomic. The front end is supposed to have
10861 stabilized the lhs of the atomic operation as *ADDR. Return true if
10862 EXPR is this stabilized form. */
10864 static bool
10865 goa_lhs_expr_p (tree expr, tree addr)
10867 /* Also include casts to other type variants. The C front end is fond
10868 of adding these for e.g. volatile variables. This is like
10869 STRIP_TYPE_NOPS but includes the main variant lookup. */
10870 STRIP_USELESS_TYPE_CONVERSION (expr);
10872 if (TREE_CODE (expr) == INDIRECT_REF)
10874 expr = TREE_OPERAND (expr, 0);
10875 while (expr != addr
10876 && (CONVERT_EXPR_P (expr)
10877 || TREE_CODE (expr) == NON_LVALUE_EXPR)
10878 && TREE_CODE (expr) == TREE_CODE (addr)
10879 && types_compatible_p (TREE_TYPE (expr), TREE_TYPE (addr)))
10881 expr = TREE_OPERAND (expr, 0);
10882 addr = TREE_OPERAND (addr, 0);
10884 if (expr == addr)
10885 return true;
10886 return (TREE_CODE (addr) == ADDR_EXPR
10887 && TREE_CODE (expr) == ADDR_EXPR
10888 && TREE_OPERAND (addr, 0) == TREE_OPERAND (expr, 0));
10890 if (TREE_CODE (addr) == ADDR_EXPR && expr == TREE_OPERAND (addr, 0))
10891 return true;
10892 return false;
10895 /* Walk *EXPR_P and replace appearances of *LHS_ADDR with LHS_VAR. If an
10896 expression does not involve the lhs, evaluate it into a temporary.
10897 Return 1 if the lhs appeared as a subexpression, 0 if it did not,
10898 or -1 if an error was encountered. */
10900 static int
10901 goa_stabilize_expr (tree *expr_p, gimple_seq *pre_p, tree lhs_addr,
10902 tree lhs_var)
10904 tree expr = *expr_p;
10905 int saw_lhs;
10907 if (goa_lhs_expr_p (expr, lhs_addr))
10909 *expr_p = lhs_var;
10910 return 1;
10912 if (is_gimple_val (expr))
10913 return 0;
10915 saw_lhs = 0;
10916 switch (TREE_CODE_CLASS (TREE_CODE (expr)))
10918 case tcc_binary:
10919 case tcc_comparison:
10920 saw_lhs |= goa_stabilize_expr (&TREE_OPERAND (expr, 1), pre_p, lhs_addr,
10921 lhs_var);
10922 /* FALLTHRU */
10923 case tcc_unary:
10924 saw_lhs |= goa_stabilize_expr (&TREE_OPERAND (expr, 0), pre_p, lhs_addr,
10925 lhs_var);
10926 break;
10927 case tcc_expression:
10928 switch (TREE_CODE (expr))
10930 case TRUTH_ANDIF_EXPR:
10931 case TRUTH_ORIF_EXPR:
10932 case TRUTH_AND_EXPR:
10933 case TRUTH_OR_EXPR:
10934 case TRUTH_XOR_EXPR:
10935 case BIT_INSERT_EXPR:
10936 saw_lhs |= goa_stabilize_expr (&TREE_OPERAND (expr, 1), pre_p,
10937 lhs_addr, lhs_var);
10938 /* FALLTHRU */
10939 case TRUTH_NOT_EXPR:
10940 saw_lhs |= goa_stabilize_expr (&TREE_OPERAND (expr, 0), pre_p,
10941 lhs_addr, lhs_var);
10942 break;
10943 case COMPOUND_EXPR:
10944 /* Break out any preevaluations from cp_build_modify_expr. */
10945 for (; TREE_CODE (expr) == COMPOUND_EXPR;
10946 expr = TREE_OPERAND (expr, 1))
10947 gimplify_stmt (&TREE_OPERAND (expr, 0), pre_p);
10948 *expr_p = expr;
10949 return goa_stabilize_expr (expr_p, pre_p, lhs_addr, lhs_var);
10950 default:
10951 break;
10953 break;
10954 case tcc_reference:
10955 if (TREE_CODE (expr) == BIT_FIELD_REF)
10956 saw_lhs |= goa_stabilize_expr (&TREE_OPERAND (expr, 0), pre_p,
10957 lhs_addr, lhs_var);
10958 break;
10959 default:
10960 break;
10963 if (saw_lhs == 0)
10965 enum gimplify_status gs;
10966 gs = gimplify_expr (expr_p, pre_p, NULL, is_gimple_val, fb_rvalue);
10967 if (gs != GS_ALL_DONE)
10968 saw_lhs = -1;
10971 return saw_lhs;
10974 /* Gimplify an OMP_ATOMIC statement. */
10976 static enum gimplify_status
10977 gimplify_omp_atomic (tree *expr_p, gimple_seq *pre_p)
10979 tree addr = TREE_OPERAND (*expr_p, 0);
10980 tree rhs = TREE_CODE (*expr_p) == OMP_ATOMIC_READ
10981 ? NULL : TREE_OPERAND (*expr_p, 1);
10982 tree type = TYPE_MAIN_VARIANT (TREE_TYPE (TREE_TYPE (addr)));
10983 tree tmp_load;
10984 gomp_atomic_load *loadstmt;
10985 gomp_atomic_store *storestmt;
10987 tmp_load = create_tmp_reg (type);
10988 if (rhs && goa_stabilize_expr (&rhs, pre_p, addr, tmp_load) < 0)
10989 return GS_ERROR;
10991 if (gimplify_expr (&addr, pre_p, NULL, is_gimple_val, fb_rvalue)
10992 != GS_ALL_DONE)
10993 return GS_ERROR;
10995 loadstmt = gimple_build_omp_atomic_load (tmp_load, addr);
10996 gimplify_seq_add_stmt (pre_p, loadstmt);
10997 if (rhs && gimplify_expr (&rhs, pre_p, NULL, is_gimple_val, fb_rvalue)
10998 != GS_ALL_DONE)
10999 return GS_ERROR;
11001 if (TREE_CODE (*expr_p) == OMP_ATOMIC_READ)
11002 rhs = tmp_load;
11003 storestmt = gimple_build_omp_atomic_store (rhs);
11004 gimplify_seq_add_stmt (pre_p, storestmt);
11005 if (OMP_ATOMIC_SEQ_CST (*expr_p))
11007 gimple_omp_atomic_set_seq_cst (loadstmt);
11008 gimple_omp_atomic_set_seq_cst (storestmt);
11010 switch (TREE_CODE (*expr_p))
11012 case OMP_ATOMIC_READ:
11013 case OMP_ATOMIC_CAPTURE_OLD:
11014 *expr_p = tmp_load;
11015 gimple_omp_atomic_set_need_value (loadstmt);
11016 break;
11017 case OMP_ATOMIC_CAPTURE_NEW:
11018 *expr_p = rhs;
11019 gimple_omp_atomic_set_need_value (storestmt);
11020 break;
11021 default:
11022 *expr_p = NULL;
11023 break;
11026 return GS_ALL_DONE;
11029 /* Gimplify a TRANSACTION_EXPR. This involves gimplification of the
11030 body, and adding some EH bits. */
11032 static enum gimplify_status
11033 gimplify_transaction (tree *expr_p, gimple_seq *pre_p)
11035 tree expr = *expr_p, temp, tbody = TRANSACTION_EXPR_BODY (expr);
11036 gimple *body_stmt;
11037 gtransaction *trans_stmt;
11038 gimple_seq body = NULL;
11039 int subcode = 0;
11041 /* Wrap the transaction body in a BIND_EXPR so we have a context
11042 where to put decls for OMP. */
11043 if (TREE_CODE (tbody) != BIND_EXPR)
11045 tree bind = build3 (BIND_EXPR, void_type_node, NULL, tbody, NULL);
11046 TREE_SIDE_EFFECTS (bind) = 1;
11047 SET_EXPR_LOCATION (bind, EXPR_LOCATION (tbody));
11048 TRANSACTION_EXPR_BODY (expr) = bind;
11051 push_gimplify_context ();
11052 temp = voidify_wrapper_expr (*expr_p, NULL);
11054 body_stmt = gimplify_and_return_first (TRANSACTION_EXPR_BODY (expr), &body);
11055 pop_gimplify_context (body_stmt);
11057 trans_stmt = gimple_build_transaction (body);
11058 if (TRANSACTION_EXPR_OUTER (expr))
11059 subcode = GTMA_IS_OUTER;
11060 else if (TRANSACTION_EXPR_RELAXED (expr))
11061 subcode = GTMA_IS_RELAXED;
11062 gimple_transaction_set_subcode (trans_stmt, subcode);
11064 gimplify_seq_add_stmt (pre_p, trans_stmt);
11066 if (temp)
11068 *expr_p = temp;
11069 return GS_OK;
11072 *expr_p = NULL_TREE;
11073 return GS_ALL_DONE;
11076 /* Gimplify an OMP_ORDERED construct. EXPR is the tree version. BODY
11077 is the OMP_BODY of the original EXPR (which has already been
11078 gimplified so it's not present in the EXPR).
11080 Return the gimplified GIMPLE_OMP_ORDERED tuple. */
11082 static gimple *
11083 gimplify_omp_ordered (tree expr, gimple_seq body)
11085 tree c, decls;
11086 int failures = 0;
11087 unsigned int i;
11088 tree source_c = NULL_TREE;
11089 tree sink_c = NULL_TREE;
11091 if (gimplify_omp_ctxp)
11093 for (c = OMP_ORDERED_CLAUSES (expr); c; c = OMP_CLAUSE_CHAIN (c))
11094 if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_DEPEND
11095 && gimplify_omp_ctxp->loop_iter_var.is_empty ()
11096 && (OMP_CLAUSE_DEPEND_KIND (c) == OMP_CLAUSE_DEPEND_SINK
11097 || OMP_CLAUSE_DEPEND_KIND (c) == OMP_CLAUSE_DEPEND_SOURCE))
11099 error_at (OMP_CLAUSE_LOCATION (c),
11100 "%<ordered%> construct with %<depend%> clause must be "
11101 "closely nested inside a loop with %<ordered%> clause "
11102 "with a parameter");
11103 failures++;
11105 else if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_DEPEND
11106 && OMP_CLAUSE_DEPEND_KIND (c) == OMP_CLAUSE_DEPEND_SINK)
11108 bool fail = false;
11109 for (decls = OMP_CLAUSE_DECL (c), i = 0;
11110 decls && TREE_CODE (decls) == TREE_LIST;
11111 decls = TREE_CHAIN (decls), ++i)
11112 if (i >= gimplify_omp_ctxp->loop_iter_var.length () / 2)
11113 continue;
11114 else if (TREE_VALUE (decls)
11115 != gimplify_omp_ctxp->loop_iter_var[2 * i])
11117 error_at (OMP_CLAUSE_LOCATION (c),
11118 "variable %qE is not an iteration "
11119 "of outermost loop %d, expected %qE",
11120 TREE_VALUE (decls), i + 1,
11121 gimplify_omp_ctxp->loop_iter_var[2 * i]);
11122 fail = true;
11123 failures++;
11125 else
11126 TREE_VALUE (decls)
11127 = gimplify_omp_ctxp->loop_iter_var[2 * i + 1];
11128 if (!fail && i != gimplify_omp_ctxp->loop_iter_var.length () / 2)
11130 error_at (OMP_CLAUSE_LOCATION (c),
11131 "number of variables in %<depend(sink)%> "
11132 "clause does not match number of "
11133 "iteration variables");
11134 failures++;
11136 sink_c = c;
11138 else if (OMP_CLAUSE_CODE (c) == OMP_CLAUSE_DEPEND
11139 && OMP_CLAUSE_DEPEND_KIND (c) == OMP_CLAUSE_DEPEND_SOURCE)
11141 if (source_c)
11143 error_at (OMP_CLAUSE_LOCATION (c),
11144 "more than one %<depend(source)%> clause on an "
11145 "%<ordered%> construct");
11146 failures++;
11148 else
11149 source_c = c;
11152 if (source_c && sink_c)
11154 error_at (OMP_CLAUSE_LOCATION (source_c),
11155 "%<depend(source)%> clause specified together with "
11156 "%<depend(sink:)%> clauses on the same construct");
11157 failures++;
11160 if (failures)
11161 return gimple_build_nop ();
11162 return gimple_build_omp_ordered (body, OMP_ORDERED_CLAUSES (expr));
11165 /* Convert the GENERIC expression tree *EXPR_P to GIMPLE. If the
11166 expression produces a value to be used as an operand inside a GIMPLE
11167 statement, the value will be stored back in *EXPR_P. This value will
11168 be a tree of class tcc_declaration, tcc_constant, tcc_reference or
11169 an SSA_NAME. The corresponding sequence of GIMPLE statements is
11170 emitted in PRE_P and POST_P.
11172 Additionally, this process may overwrite parts of the input
11173 expression during gimplification. Ideally, it should be
11174 possible to do non-destructive gimplification.
11176 EXPR_P points to the GENERIC expression to convert to GIMPLE. If
11177 the expression needs to evaluate to a value to be used as
11178 an operand in a GIMPLE statement, this value will be stored in
11179 *EXPR_P on exit. This happens when the caller specifies one
11180 of fb_lvalue or fb_rvalue fallback flags.
11182 PRE_P will contain the sequence of GIMPLE statements corresponding
11183 to the evaluation of EXPR and all the side-effects that must
11184 be executed before the main expression. On exit, the last
11185 statement of PRE_P is the core statement being gimplified. For
11186 instance, when gimplifying 'if (++a)' the last statement in
11187 PRE_P will be 'if (t.1)' where t.1 is the result of
11188 pre-incrementing 'a'.
11190 POST_P will contain the sequence of GIMPLE statements corresponding
11191 to the evaluation of all the side-effects that must be executed
11192 after the main expression. If this is NULL, the post
11193 side-effects are stored at the end of PRE_P.
11195 The reason why the output is split in two is to handle post
11196 side-effects explicitly. In some cases, an expression may have
11197 inner and outer post side-effects which need to be emitted in
11198 an order different from the one given by the recursive
11199 traversal. For instance, for the expression (*p--)++ the post
11200 side-effects of '--' must actually occur *after* the post
11201 side-effects of '++'. However, gimplification will first visit
11202 the inner expression, so if a separate POST sequence was not
11203 used, the resulting sequence would be:
11205 1 t.1 = *p
11206 2 p = p - 1
11207 3 t.2 = t.1 + 1
11208 4 *p = t.2
11210 However, the post-decrement operation in line #2 must not be
11211 evaluated until after the store to *p at line #4, so the
11212 correct sequence should be:
11214 1 t.1 = *p
11215 2 t.2 = t.1 + 1
11216 3 *p = t.2
11217 4 p = p - 1
11219 So, by specifying a separate post queue, it is possible
11220 to emit the post side-effects in the correct order.
11221 If POST_P is NULL, an internal queue will be used. Before
11222 returning to the caller, the sequence POST_P is appended to
11223 the main output sequence PRE_P.
11225 GIMPLE_TEST_F points to a function that takes a tree T and
11226 returns nonzero if T is in the GIMPLE form requested by the
11227 caller. The GIMPLE predicates are in gimple.c.
11229 FALLBACK tells the function what sort of a temporary we want if
11230 gimplification cannot produce an expression that complies with
11231 GIMPLE_TEST_F.
11233 fb_none means that no temporary should be generated
11234 fb_rvalue means that an rvalue is OK to generate
11235 fb_lvalue means that an lvalue is OK to generate
11236 fb_either means that either is OK, but an lvalue is preferable.
11237 fb_mayfail means that gimplification may fail (in which case
11238 GS_ERROR will be returned)
11240 The return value is either GS_ERROR or GS_ALL_DONE, since this
11241 function iterates until EXPR is completely gimplified or an error
11242 occurs. */
11244 enum gimplify_status
11245 gimplify_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p,
11246 bool (*gimple_test_f) (tree), fallback_t fallback)
11248 tree tmp;
11249 gimple_seq internal_pre = NULL;
11250 gimple_seq internal_post = NULL;
11251 tree save_expr;
11252 bool is_statement;
11253 location_t saved_location;
11254 enum gimplify_status ret;
11255 gimple_stmt_iterator pre_last_gsi, post_last_gsi;
11256 tree label;
11258 save_expr = *expr_p;
11259 if (save_expr == NULL_TREE)
11260 return GS_ALL_DONE;
11262 /* If we are gimplifying a top-level statement, PRE_P must be valid. */
11263 is_statement = gimple_test_f == is_gimple_stmt;
11264 if (is_statement)
11265 gcc_assert (pre_p);
11267 /* Consistency checks. */
11268 if (gimple_test_f == is_gimple_reg)
11269 gcc_assert (fallback & (fb_rvalue | fb_lvalue));
11270 else if (gimple_test_f == is_gimple_val
11271 || gimple_test_f == is_gimple_call_addr
11272 || gimple_test_f == is_gimple_condexpr
11273 || gimple_test_f == is_gimple_mem_rhs
11274 || gimple_test_f == is_gimple_mem_rhs_or_call
11275 || gimple_test_f == is_gimple_reg_rhs
11276 || gimple_test_f == is_gimple_reg_rhs_or_call
11277 || gimple_test_f == is_gimple_asm_val
11278 || gimple_test_f == is_gimple_mem_ref_addr)
11279 gcc_assert (fallback & fb_rvalue);
11280 else if (gimple_test_f == is_gimple_min_lval
11281 || gimple_test_f == is_gimple_lvalue)
11282 gcc_assert (fallback & fb_lvalue);
11283 else if (gimple_test_f == is_gimple_addressable)
11284 gcc_assert (fallback & fb_either);
11285 else if (gimple_test_f == is_gimple_stmt)
11286 gcc_assert (fallback == fb_none);
11287 else
11289 /* We should have recognized the GIMPLE_TEST_F predicate to
11290 know what kind of fallback to use in case a temporary is
11291 needed to hold the value or address of *EXPR_P. */
11292 gcc_unreachable ();
11295 /* We used to check the predicate here and return immediately if it
11296 succeeds. This is wrong; the design is for gimplification to be
11297 idempotent, and for the predicates to only test for valid forms, not
11298 whether they are fully simplified. */
11299 if (pre_p == NULL)
11300 pre_p = &internal_pre;
11302 if (post_p == NULL)
11303 post_p = &internal_post;
11305 /* Remember the last statements added to PRE_P and POST_P. Every
11306 new statement added by the gimplification helpers needs to be
11307 annotated with location information. To centralize the
11308 responsibility, we remember the last statement that had been
11309 added to both queues before gimplifying *EXPR_P. If
11310 gimplification produces new statements in PRE_P and POST_P, those
11311 statements will be annotated with the same location information
11312 as *EXPR_P. */
11313 pre_last_gsi = gsi_last (*pre_p);
11314 post_last_gsi = gsi_last (*post_p);
11316 saved_location = input_location;
11317 if (save_expr != error_mark_node
11318 && EXPR_HAS_LOCATION (*expr_p))
11319 input_location = EXPR_LOCATION (*expr_p);
11321 /* Loop over the specific gimplifiers until the toplevel node
11322 remains the same. */
11325 /* Strip away as many useless type conversions as possible
11326 at the toplevel. */
11327 STRIP_USELESS_TYPE_CONVERSION (*expr_p);
11329 /* Remember the expr. */
11330 save_expr = *expr_p;
11332 /* Die, die, die, my darling. */
11333 if (error_operand_p (save_expr))
11335 ret = GS_ERROR;
11336 break;
11339 /* Do any language-specific gimplification. */
11340 ret = ((enum gimplify_status)
11341 lang_hooks.gimplify_expr (expr_p, pre_p, post_p));
11342 if (ret == GS_OK)
11344 if (*expr_p == NULL_TREE)
11345 break;
11346 if (*expr_p != save_expr)
11347 continue;
11349 else if (ret != GS_UNHANDLED)
11350 break;
11352 /* Make sure that all the cases set 'ret' appropriately. */
11353 ret = GS_UNHANDLED;
11354 switch (TREE_CODE (*expr_p))
11356 /* First deal with the special cases. */
11358 case POSTINCREMENT_EXPR:
11359 case POSTDECREMENT_EXPR:
11360 case PREINCREMENT_EXPR:
11361 case PREDECREMENT_EXPR:
11362 ret = gimplify_self_mod_expr (expr_p, pre_p, post_p,
11363 fallback != fb_none,
11364 TREE_TYPE (*expr_p));
11365 break;
11367 case VIEW_CONVERT_EXPR:
11368 if (is_gimple_reg_type (TREE_TYPE (*expr_p))
11369 && is_gimple_reg_type (TREE_TYPE (TREE_OPERAND (*expr_p, 0))))
11371 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
11372 post_p, is_gimple_val, fb_rvalue);
11373 recalculate_side_effects (*expr_p);
11374 break;
11376 /* Fallthru. */
11378 case ARRAY_REF:
11379 case ARRAY_RANGE_REF:
11380 case REALPART_EXPR:
11381 case IMAGPART_EXPR:
11382 case COMPONENT_REF:
11383 ret = gimplify_compound_lval (expr_p, pre_p, post_p,
11384 fallback ? fallback : fb_rvalue);
11385 break;
11387 case COND_EXPR:
11388 ret = gimplify_cond_expr (expr_p, pre_p, fallback);
11390 /* C99 code may assign to an array in a structure value of a
11391 conditional expression, and this has undefined behavior
11392 only on execution, so create a temporary if an lvalue is
11393 required. */
11394 if (fallback == fb_lvalue)
11396 *expr_p = get_initialized_tmp_var (*expr_p, pre_p, post_p, false);
11397 mark_addressable (*expr_p);
11398 ret = GS_OK;
11400 break;
11402 case CALL_EXPR:
11403 ret = gimplify_call_expr (expr_p, pre_p, fallback != fb_none);
11405 /* C99 code may assign to an array in a structure returned
11406 from a function, and this has undefined behavior only on
11407 execution, so create a temporary if an lvalue is
11408 required. */
11409 if (fallback == fb_lvalue)
11411 *expr_p = get_initialized_tmp_var (*expr_p, pre_p, post_p, false);
11412 mark_addressable (*expr_p);
11413 ret = GS_OK;
11415 break;
11417 case TREE_LIST:
11418 gcc_unreachable ();
11420 case COMPOUND_EXPR:
11421 ret = gimplify_compound_expr (expr_p, pre_p, fallback != fb_none);
11422 break;
11424 case COMPOUND_LITERAL_EXPR:
11425 ret = gimplify_compound_literal_expr (expr_p, pre_p,
11426 gimple_test_f, fallback);
11427 break;
11429 case MODIFY_EXPR:
11430 case INIT_EXPR:
11431 ret = gimplify_modify_expr (expr_p, pre_p, post_p,
11432 fallback != fb_none);
11433 break;
11435 case TRUTH_ANDIF_EXPR:
11436 case TRUTH_ORIF_EXPR:
11438 /* Preserve the original type of the expression and the
11439 source location of the outer expression. */
11440 tree org_type = TREE_TYPE (*expr_p);
11441 *expr_p = gimple_boolify (*expr_p);
11442 *expr_p = build3_loc (input_location, COND_EXPR,
11443 org_type, *expr_p,
11444 fold_convert_loc
11445 (input_location,
11446 org_type, boolean_true_node),
11447 fold_convert_loc
11448 (input_location,
11449 org_type, boolean_false_node));
11450 ret = GS_OK;
11451 break;
11454 case TRUTH_NOT_EXPR:
11456 tree type = TREE_TYPE (*expr_p);
11457 /* The parsers are careful to generate TRUTH_NOT_EXPR
11458 only with operands that are always zero or one.
11459 We do not fold here but handle the only interesting case
11460 manually, as fold may re-introduce the TRUTH_NOT_EXPR. */
11461 *expr_p = gimple_boolify (*expr_p);
11462 if (TYPE_PRECISION (TREE_TYPE (*expr_p)) == 1)
11463 *expr_p = build1_loc (input_location, BIT_NOT_EXPR,
11464 TREE_TYPE (*expr_p),
11465 TREE_OPERAND (*expr_p, 0));
11466 else
11467 *expr_p = build2_loc (input_location, BIT_XOR_EXPR,
11468 TREE_TYPE (*expr_p),
11469 TREE_OPERAND (*expr_p, 0),
11470 build_int_cst (TREE_TYPE (*expr_p), 1));
11471 if (!useless_type_conversion_p (type, TREE_TYPE (*expr_p)))
11472 *expr_p = fold_convert_loc (input_location, type, *expr_p);
11473 ret = GS_OK;
11474 break;
11477 case ADDR_EXPR:
11478 ret = gimplify_addr_expr (expr_p, pre_p, post_p);
11479 break;
11481 case ANNOTATE_EXPR:
11483 tree cond = TREE_OPERAND (*expr_p, 0);
11484 tree kind = TREE_OPERAND (*expr_p, 1);
11485 tree data = TREE_OPERAND (*expr_p, 2);
11486 tree type = TREE_TYPE (cond);
11487 if (!INTEGRAL_TYPE_P (type))
11489 *expr_p = cond;
11490 ret = GS_OK;
11491 break;
11493 tree tmp = create_tmp_var (type);
11494 gimplify_arg (&cond, pre_p, EXPR_LOCATION (*expr_p));
11495 gcall *call
11496 = gimple_build_call_internal (IFN_ANNOTATE, 3, cond, kind, data);
11497 gimple_call_set_lhs (call, tmp);
11498 gimplify_seq_add_stmt (pre_p, call);
11499 *expr_p = tmp;
11500 ret = GS_ALL_DONE;
11501 break;
11504 case VA_ARG_EXPR:
11505 ret = gimplify_va_arg_expr (expr_p, pre_p, post_p);
11506 break;
11508 CASE_CONVERT:
11509 if (IS_EMPTY_STMT (*expr_p))
11511 ret = GS_ALL_DONE;
11512 break;
11515 if (VOID_TYPE_P (TREE_TYPE (*expr_p))
11516 || fallback == fb_none)
11518 /* Just strip a conversion to void (or in void context) and
11519 try again. */
11520 *expr_p = TREE_OPERAND (*expr_p, 0);
11521 ret = GS_OK;
11522 break;
11525 ret = gimplify_conversion (expr_p);
11526 if (ret == GS_ERROR)
11527 break;
11528 if (*expr_p != save_expr)
11529 break;
11530 /* FALLTHRU */
11532 case FIX_TRUNC_EXPR:
11533 /* unary_expr: ... | '(' cast ')' val | ... */
11534 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p, post_p,
11535 is_gimple_val, fb_rvalue);
11536 recalculate_side_effects (*expr_p);
11537 break;
11539 case INDIRECT_REF:
11541 bool volatilep = TREE_THIS_VOLATILE (*expr_p);
11542 bool notrap = TREE_THIS_NOTRAP (*expr_p);
11543 tree saved_ptr_type = TREE_TYPE (TREE_OPERAND (*expr_p, 0));
11545 *expr_p = fold_indirect_ref_loc (input_location, *expr_p);
11546 if (*expr_p != save_expr)
11548 ret = GS_OK;
11549 break;
11552 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p, post_p,
11553 is_gimple_reg, fb_rvalue);
11554 if (ret == GS_ERROR)
11555 break;
11557 recalculate_side_effects (*expr_p);
11558 *expr_p = fold_build2_loc (input_location, MEM_REF,
11559 TREE_TYPE (*expr_p),
11560 TREE_OPERAND (*expr_p, 0),
11561 build_int_cst (saved_ptr_type, 0));
11562 TREE_THIS_VOLATILE (*expr_p) = volatilep;
11563 TREE_THIS_NOTRAP (*expr_p) = notrap;
11564 ret = GS_OK;
11565 break;
11568 /* We arrive here through the various re-gimplifcation paths. */
11569 case MEM_REF:
11570 /* First try re-folding the whole thing. */
11571 tmp = fold_binary (MEM_REF, TREE_TYPE (*expr_p),
11572 TREE_OPERAND (*expr_p, 0),
11573 TREE_OPERAND (*expr_p, 1));
11574 if (tmp)
11576 REF_REVERSE_STORAGE_ORDER (tmp)
11577 = REF_REVERSE_STORAGE_ORDER (*expr_p);
11578 *expr_p = tmp;
11579 recalculate_side_effects (*expr_p);
11580 ret = GS_OK;
11581 break;
11583 /* Avoid re-gimplifying the address operand if it is already
11584 in suitable form. Re-gimplifying would mark the address
11585 operand addressable. Always gimplify when not in SSA form
11586 as we still may have to gimplify decls with value-exprs. */
11587 if (!gimplify_ctxp || !gimple_in_ssa_p (cfun)
11588 || !is_gimple_mem_ref_addr (TREE_OPERAND (*expr_p, 0)))
11590 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p, post_p,
11591 is_gimple_mem_ref_addr, fb_rvalue);
11592 if (ret == GS_ERROR)
11593 break;
11595 recalculate_side_effects (*expr_p);
11596 ret = GS_ALL_DONE;
11597 break;
11599 /* Constants need not be gimplified. */
11600 case INTEGER_CST:
11601 case REAL_CST:
11602 case FIXED_CST:
11603 case STRING_CST:
11604 case COMPLEX_CST:
11605 case VECTOR_CST:
11606 /* Drop the overflow flag on constants, we do not want
11607 that in the GIMPLE IL. */
11608 if (TREE_OVERFLOW_P (*expr_p))
11609 *expr_p = drop_tree_overflow (*expr_p);
11610 ret = GS_ALL_DONE;
11611 break;
11613 case CONST_DECL:
11614 /* If we require an lvalue, such as for ADDR_EXPR, retain the
11615 CONST_DECL node. Otherwise the decl is replaceable by its
11616 value. */
11617 /* ??? Should be == fb_lvalue, but ADDR_EXPR passes fb_either. */
11618 if (fallback & fb_lvalue)
11619 ret = GS_ALL_DONE;
11620 else
11622 *expr_p = DECL_INITIAL (*expr_p);
11623 ret = GS_OK;
11625 break;
11627 case DECL_EXPR:
11628 ret = gimplify_decl_expr (expr_p, pre_p);
11629 break;
11631 case BIND_EXPR:
11632 ret = gimplify_bind_expr (expr_p, pre_p);
11633 break;
11635 case LOOP_EXPR:
11636 ret = gimplify_loop_expr (expr_p, pre_p);
11637 break;
11639 case SWITCH_EXPR:
11640 ret = gimplify_switch_expr (expr_p, pre_p);
11641 break;
11643 case EXIT_EXPR:
11644 ret = gimplify_exit_expr (expr_p);
11645 break;
11647 case GOTO_EXPR:
11648 /* If the target is not LABEL, then it is a computed jump
11649 and the target needs to be gimplified. */
11650 if (TREE_CODE (GOTO_DESTINATION (*expr_p)) != LABEL_DECL)
11652 ret = gimplify_expr (&GOTO_DESTINATION (*expr_p), pre_p,
11653 NULL, is_gimple_val, fb_rvalue);
11654 if (ret == GS_ERROR)
11655 break;
11657 gimplify_seq_add_stmt (pre_p,
11658 gimple_build_goto (GOTO_DESTINATION (*expr_p)));
11659 ret = GS_ALL_DONE;
11660 break;
11662 case PREDICT_EXPR:
11663 gimplify_seq_add_stmt (pre_p,
11664 gimple_build_predict (PREDICT_EXPR_PREDICTOR (*expr_p),
11665 PREDICT_EXPR_OUTCOME (*expr_p)));
11666 ret = GS_ALL_DONE;
11667 break;
11669 case LABEL_EXPR:
11670 ret = gimplify_label_expr (expr_p, pre_p);
11671 label = LABEL_EXPR_LABEL (*expr_p);
11672 gcc_assert (decl_function_context (label) == current_function_decl);
11674 /* If the label is used in a goto statement, or address of the label
11675 is taken, we need to unpoison all variables that were seen so far.
11676 Doing so would prevent us from reporting a false positives. */
11677 if (asan_poisoned_variables
11678 && asan_used_labels != NULL
11679 && asan_used_labels->contains (label))
11680 asan_poison_variables (asan_poisoned_variables, false, pre_p);
11681 break;
11683 case CASE_LABEL_EXPR:
11684 ret = gimplify_case_label_expr (expr_p, pre_p);
11686 if (gimplify_ctxp->live_switch_vars)
11687 asan_poison_variables (gimplify_ctxp->live_switch_vars, false,
11688 pre_p);
11689 break;
11691 case RETURN_EXPR:
11692 ret = gimplify_return_expr (*expr_p, pre_p);
11693 break;
11695 case CONSTRUCTOR:
11696 /* Don't reduce this in place; let gimplify_init_constructor work its
11697 magic. Buf if we're just elaborating this for side effects, just
11698 gimplify any element that has side-effects. */
11699 if (fallback == fb_none)
11701 unsigned HOST_WIDE_INT ix;
11702 tree val;
11703 tree temp = NULL_TREE;
11704 FOR_EACH_CONSTRUCTOR_VALUE (CONSTRUCTOR_ELTS (*expr_p), ix, val)
11705 if (TREE_SIDE_EFFECTS (val))
11706 append_to_statement_list (val, &temp);
11708 *expr_p = temp;
11709 ret = temp ? GS_OK : GS_ALL_DONE;
11711 /* C99 code may assign to an array in a constructed
11712 structure or union, and this has undefined behavior only
11713 on execution, so create a temporary if an lvalue is
11714 required. */
11715 else if (fallback == fb_lvalue)
11717 *expr_p = get_initialized_tmp_var (*expr_p, pre_p, post_p, false);
11718 mark_addressable (*expr_p);
11719 ret = GS_OK;
11721 else
11722 ret = GS_ALL_DONE;
11723 break;
11725 /* The following are special cases that are not handled by the
11726 original GIMPLE grammar. */
11728 /* SAVE_EXPR nodes are converted into a GIMPLE identifier and
11729 eliminated. */
11730 case SAVE_EXPR:
11731 ret = gimplify_save_expr (expr_p, pre_p, post_p);
11732 break;
11734 case BIT_FIELD_REF:
11735 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
11736 post_p, is_gimple_lvalue, fb_either);
11737 recalculate_side_effects (*expr_p);
11738 break;
11740 case TARGET_MEM_REF:
11742 enum gimplify_status r0 = GS_ALL_DONE, r1 = GS_ALL_DONE;
11744 if (TMR_BASE (*expr_p))
11745 r0 = gimplify_expr (&TMR_BASE (*expr_p), pre_p,
11746 post_p, is_gimple_mem_ref_addr, fb_either);
11747 if (TMR_INDEX (*expr_p))
11748 r1 = gimplify_expr (&TMR_INDEX (*expr_p), pre_p,
11749 post_p, is_gimple_val, fb_rvalue);
11750 if (TMR_INDEX2 (*expr_p))
11751 r1 = gimplify_expr (&TMR_INDEX2 (*expr_p), pre_p,
11752 post_p, is_gimple_val, fb_rvalue);
11753 /* TMR_STEP and TMR_OFFSET are always integer constants. */
11754 ret = MIN (r0, r1);
11756 break;
11758 case NON_LVALUE_EXPR:
11759 /* This should have been stripped above. */
11760 gcc_unreachable ();
11762 case ASM_EXPR:
11763 ret = gimplify_asm_expr (expr_p, pre_p, post_p);
11764 break;
11766 case TRY_FINALLY_EXPR:
11767 case TRY_CATCH_EXPR:
11769 gimple_seq eval, cleanup;
11770 gtry *try_;
11772 /* Calls to destructors are generated automatically in FINALLY/CATCH
11773 block. They should have location as UNKNOWN_LOCATION. However,
11774 gimplify_call_expr will reset these call stmts to input_location
11775 if it finds stmt's location is unknown. To prevent resetting for
11776 destructors, we set the input_location to unknown.
11777 Note that this only affects the destructor calls in FINALLY/CATCH
11778 block, and will automatically reset to its original value by the
11779 end of gimplify_expr. */
11780 input_location = UNKNOWN_LOCATION;
11781 eval = cleanup = NULL;
11782 gimplify_and_add (TREE_OPERAND (*expr_p, 0), &eval);
11783 gimplify_and_add (TREE_OPERAND (*expr_p, 1), &cleanup);
11784 /* Don't create bogus GIMPLE_TRY with empty cleanup. */
11785 if (gimple_seq_empty_p (cleanup))
11787 gimple_seq_add_seq (pre_p, eval);
11788 ret = GS_ALL_DONE;
11789 break;
11791 try_ = gimple_build_try (eval, cleanup,
11792 TREE_CODE (*expr_p) == TRY_FINALLY_EXPR
11793 ? GIMPLE_TRY_FINALLY
11794 : GIMPLE_TRY_CATCH);
11795 if (EXPR_HAS_LOCATION (save_expr))
11796 gimple_set_location (try_, EXPR_LOCATION (save_expr));
11797 else if (LOCATION_LOCUS (saved_location) != UNKNOWN_LOCATION)
11798 gimple_set_location (try_, saved_location);
11799 if (TREE_CODE (*expr_p) == TRY_CATCH_EXPR)
11800 gimple_try_set_catch_is_cleanup (try_,
11801 TRY_CATCH_IS_CLEANUP (*expr_p));
11802 gimplify_seq_add_stmt (pre_p, try_);
11803 ret = GS_ALL_DONE;
11804 break;
11807 case CLEANUP_POINT_EXPR:
11808 ret = gimplify_cleanup_point_expr (expr_p, pre_p);
11809 break;
11811 case TARGET_EXPR:
11812 ret = gimplify_target_expr (expr_p, pre_p, post_p);
11813 break;
11815 case CATCH_EXPR:
11817 gimple *c;
11818 gimple_seq handler = NULL;
11819 gimplify_and_add (CATCH_BODY (*expr_p), &handler);
11820 c = gimple_build_catch (CATCH_TYPES (*expr_p), handler);
11821 gimplify_seq_add_stmt (pre_p, c);
11822 ret = GS_ALL_DONE;
11823 break;
11826 case EH_FILTER_EXPR:
11828 gimple *ehf;
11829 gimple_seq failure = NULL;
11831 gimplify_and_add (EH_FILTER_FAILURE (*expr_p), &failure);
11832 ehf = gimple_build_eh_filter (EH_FILTER_TYPES (*expr_p), failure);
11833 gimple_set_no_warning (ehf, TREE_NO_WARNING (*expr_p));
11834 gimplify_seq_add_stmt (pre_p, ehf);
11835 ret = GS_ALL_DONE;
11836 break;
11839 case OBJ_TYPE_REF:
11841 enum gimplify_status r0, r1;
11842 r0 = gimplify_expr (&OBJ_TYPE_REF_OBJECT (*expr_p), pre_p,
11843 post_p, is_gimple_val, fb_rvalue);
11844 r1 = gimplify_expr (&OBJ_TYPE_REF_EXPR (*expr_p), pre_p,
11845 post_p, is_gimple_val, fb_rvalue);
11846 TREE_SIDE_EFFECTS (*expr_p) = 0;
11847 ret = MIN (r0, r1);
11849 break;
11851 case LABEL_DECL:
11852 /* We get here when taking the address of a label. We mark
11853 the label as "forced"; meaning it can never be removed and
11854 it is a potential target for any computed goto. */
11855 FORCED_LABEL (*expr_p) = 1;
11856 ret = GS_ALL_DONE;
11857 break;
11859 case STATEMENT_LIST:
11860 ret = gimplify_statement_list (expr_p, pre_p);
11861 break;
11863 case WITH_SIZE_EXPR:
11865 gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
11866 post_p == &internal_post ? NULL : post_p,
11867 gimple_test_f, fallback);
11868 gimplify_expr (&TREE_OPERAND (*expr_p, 1), pre_p, post_p,
11869 is_gimple_val, fb_rvalue);
11870 ret = GS_ALL_DONE;
11872 break;
11874 case VAR_DECL:
11875 case PARM_DECL:
11876 ret = gimplify_var_or_parm_decl (expr_p);
11877 break;
11879 case RESULT_DECL:
11880 /* When within an OMP context, notice uses of variables. */
11881 if (gimplify_omp_ctxp)
11882 omp_notice_variable (gimplify_omp_ctxp, *expr_p, true);
11883 ret = GS_ALL_DONE;
11884 break;
11886 case DEBUG_EXPR_DECL:
11887 gcc_unreachable ();
11889 case DEBUG_BEGIN_STMT:
11890 gimplify_seq_add_stmt (pre_p,
11891 gimple_build_debug_begin_stmt
11892 (TREE_BLOCK (*expr_p),
11893 EXPR_LOCATION (*expr_p)));
11894 ret = GS_ALL_DONE;
11895 *expr_p = NULL;
11896 break;
11898 case SSA_NAME:
11899 /* Allow callbacks into the gimplifier during optimization. */
11900 ret = GS_ALL_DONE;
11901 break;
11903 case OMP_PARALLEL:
11904 gimplify_omp_parallel (expr_p, pre_p);
11905 ret = GS_ALL_DONE;
11906 break;
11908 case OMP_TASK:
11909 gimplify_omp_task (expr_p, pre_p);
11910 ret = GS_ALL_DONE;
11911 break;
11913 case OMP_FOR:
11914 case OMP_SIMD:
11915 case OMP_DISTRIBUTE:
11916 case OMP_TASKLOOP:
11917 case OACC_LOOP:
11918 ret = gimplify_omp_for (expr_p, pre_p);
11919 break;
11921 case OACC_CACHE:
11922 gimplify_oacc_cache (expr_p, pre_p);
11923 ret = GS_ALL_DONE;
11924 break;
11926 case OACC_DECLARE:
11927 gimplify_oacc_declare (expr_p, pre_p);
11928 ret = GS_ALL_DONE;
11929 break;
11931 case OACC_HOST_DATA:
11932 case OACC_DATA:
11933 case OACC_KERNELS:
11934 case OACC_PARALLEL:
11935 case OMP_SECTIONS:
11936 case OMP_SINGLE:
11937 case OMP_TARGET:
11938 case OMP_TARGET_DATA:
11939 case OMP_TEAMS:
11940 gimplify_omp_workshare (expr_p, pre_p);
11941 ret = GS_ALL_DONE;
11942 break;
11944 case OACC_ENTER_DATA:
11945 case OACC_EXIT_DATA:
11946 case OACC_UPDATE:
11947 case OMP_TARGET_UPDATE:
11948 case OMP_TARGET_ENTER_DATA:
11949 case OMP_TARGET_EXIT_DATA:
11950 gimplify_omp_target_update (expr_p, pre_p);
11951 ret = GS_ALL_DONE;
11952 break;
11954 case OMP_SECTION:
11955 case OMP_MASTER:
11956 case OMP_TASKGROUP:
11957 case OMP_ORDERED:
11958 case OMP_CRITICAL:
11960 gimple_seq body = NULL;
11961 gimple *g;
11963 gimplify_and_add (OMP_BODY (*expr_p), &body);
11964 switch (TREE_CODE (*expr_p))
11966 case OMP_SECTION:
11967 g = gimple_build_omp_section (body);
11968 break;
11969 case OMP_MASTER:
11970 g = gimple_build_omp_master (body);
11971 break;
11972 case OMP_TASKGROUP:
11974 gimple_seq cleanup = NULL;
11975 tree fn
11976 = builtin_decl_explicit (BUILT_IN_GOMP_TASKGROUP_END);
11977 g = gimple_build_call (fn, 0);
11978 gimple_seq_add_stmt (&cleanup, g);
11979 g = gimple_build_try (body, cleanup, GIMPLE_TRY_FINALLY);
11980 body = NULL;
11981 gimple_seq_add_stmt (&body, g);
11982 g = gimple_build_omp_taskgroup (body);
11984 break;
11985 case OMP_ORDERED:
11986 g = gimplify_omp_ordered (*expr_p, body);
11987 break;
11988 case OMP_CRITICAL:
11989 gimplify_scan_omp_clauses (&OMP_CRITICAL_CLAUSES (*expr_p),
11990 pre_p, ORT_WORKSHARE, OMP_CRITICAL);
11991 gimplify_adjust_omp_clauses (pre_p, body,
11992 &OMP_CRITICAL_CLAUSES (*expr_p),
11993 OMP_CRITICAL);
11994 g = gimple_build_omp_critical (body,
11995 OMP_CRITICAL_NAME (*expr_p),
11996 OMP_CRITICAL_CLAUSES (*expr_p));
11997 break;
11998 default:
11999 gcc_unreachable ();
12001 gimplify_seq_add_stmt (pre_p, g);
12002 ret = GS_ALL_DONE;
12003 break;
12006 case OMP_ATOMIC:
12007 case OMP_ATOMIC_READ:
12008 case OMP_ATOMIC_CAPTURE_OLD:
12009 case OMP_ATOMIC_CAPTURE_NEW:
12010 ret = gimplify_omp_atomic (expr_p, pre_p);
12011 break;
12013 case TRANSACTION_EXPR:
12014 ret = gimplify_transaction (expr_p, pre_p);
12015 break;
12017 case TRUTH_AND_EXPR:
12018 case TRUTH_OR_EXPR:
12019 case TRUTH_XOR_EXPR:
12021 tree orig_type = TREE_TYPE (*expr_p);
12022 tree new_type, xop0, xop1;
12023 *expr_p = gimple_boolify (*expr_p);
12024 new_type = TREE_TYPE (*expr_p);
12025 if (!useless_type_conversion_p (orig_type, new_type))
12027 *expr_p = fold_convert_loc (input_location, orig_type, *expr_p);
12028 ret = GS_OK;
12029 break;
12032 /* Boolified binary truth expressions are semantically equivalent
12033 to bitwise binary expressions. Canonicalize them to the
12034 bitwise variant. */
12035 switch (TREE_CODE (*expr_p))
12037 case TRUTH_AND_EXPR:
12038 TREE_SET_CODE (*expr_p, BIT_AND_EXPR);
12039 break;
12040 case TRUTH_OR_EXPR:
12041 TREE_SET_CODE (*expr_p, BIT_IOR_EXPR);
12042 break;
12043 case TRUTH_XOR_EXPR:
12044 TREE_SET_CODE (*expr_p, BIT_XOR_EXPR);
12045 break;
12046 default:
12047 break;
12049 /* Now make sure that operands have compatible type to
12050 expression's new_type. */
12051 xop0 = TREE_OPERAND (*expr_p, 0);
12052 xop1 = TREE_OPERAND (*expr_p, 1);
12053 if (!useless_type_conversion_p (new_type, TREE_TYPE (xop0)))
12054 TREE_OPERAND (*expr_p, 0) = fold_convert_loc (input_location,
12055 new_type,
12056 xop0);
12057 if (!useless_type_conversion_p (new_type, TREE_TYPE (xop1)))
12058 TREE_OPERAND (*expr_p, 1) = fold_convert_loc (input_location,
12059 new_type,
12060 xop1);
12061 /* Continue classified as tcc_binary. */
12062 goto expr_2;
12065 case VEC_COND_EXPR:
12067 enum gimplify_status r0, r1, r2;
12069 r0 = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
12070 post_p, is_gimple_condexpr, fb_rvalue);
12071 r1 = gimplify_expr (&TREE_OPERAND (*expr_p, 1), pre_p,
12072 post_p, is_gimple_val, fb_rvalue);
12073 r2 = gimplify_expr (&TREE_OPERAND (*expr_p, 2), pre_p,
12074 post_p, is_gimple_val, fb_rvalue);
12076 ret = MIN (MIN (r0, r1), r2);
12077 recalculate_side_effects (*expr_p);
12079 break;
12081 case FMA_EXPR:
12082 case VEC_PERM_EXPR:
12083 /* Classified as tcc_expression. */
12084 goto expr_3;
12086 case BIT_INSERT_EXPR:
12087 /* Argument 3 is a constant. */
12088 goto expr_2;
12090 case POINTER_PLUS_EXPR:
12092 enum gimplify_status r0, r1;
12093 r0 = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
12094 post_p, is_gimple_val, fb_rvalue);
12095 r1 = gimplify_expr (&TREE_OPERAND (*expr_p, 1), pre_p,
12096 post_p, is_gimple_val, fb_rvalue);
12097 recalculate_side_effects (*expr_p);
12098 ret = MIN (r0, r1);
12099 break;
12102 default:
12103 switch (TREE_CODE_CLASS (TREE_CODE (*expr_p)))
12105 case tcc_comparison:
12106 /* Handle comparison of objects of non scalar mode aggregates
12107 with a call to memcmp. It would be nice to only have to do
12108 this for variable-sized objects, but then we'd have to allow
12109 the same nest of reference nodes we allow for MODIFY_EXPR and
12110 that's too complex.
12112 Compare scalar mode aggregates as scalar mode values. Using
12113 memcmp for them would be very inefficient at best, and is
12114 plain wrong if bitfields are involved. */
12116 tree type = TREE_TYPE (TREE_OPERAND (*expr_p, 1));
12118 /* Vector comparisons need no boolification. */
12119 if (TREE_CODE (type) == VECTOR_TYPE)
12120 goto expr_2;
12121 else if (!AGGREGATE_TYPE_P (type))
12123 tree org_type = TREE_TYPE (*expr_p);
12124 *expr_p = gimple_boolify (*expr_p);
12125 if (!useless_type_conversion_p (org_type,
12126 TREE_TYPE (*expr_p)))
12128 *expr_p = fold_convert_loc (input_location,
12129 org_type, *expr_p);
12130 ret = GS_OK;
12132 else
12133 goto expr_2;
12135 else if (TYPE_MODE (type) != BLKmode)
12136 ret = gimplify_scalar_mode_aggregate_compare (expr_p);
12137 else
12138 ret = gimplify_variable_sized_compare (expr_p);
12140 break;
12143 /* If *EXPR_P does not need to be special-cased, handle it
12144 according to its class. */
12145 case tcc_unary:
12146 ret = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
12147 post_p, is_gimple_val, fb_rvalue);
12148 break;
12150 case tcc_binary:
12151 expr_2:
12153 enum gimplify_status r0, r1;
12155 r0 = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
12156 post_p, is_gimple_val, fb_rvalue);
12157 r1 = gimplify_expr (&TREE_OPERAND (*expr_p, 1), pre_p,
12158 post_p, is_gimple_val, fb_rvalue);
12160 ret = MIN (r0, r1);
12161 break;
12164 expr_3:
12166 enum gimplify_status r0, r1, r2;
12168 r0 = gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p,
12169 post_p, is_gimple_val, fb_rvalue);
12170 r1 = gimplify_expr (&TREE_OPERAND (*expr_p, 1), pre_p,
12171 post_p, is_gimple_val, fb_rvalue);
12172 r2 = gimplify_expr (&TREE_OPERAND (*expr_p, 2), pre_p,
12173 post_p, is_gimple_val, fb_rvalue);
12175 ret = MIN (MIN (r0, r1), r2);
12176 break;
12179 case tcc_declaration:
12180 case tcc_constant:
12181 ret = GS_ALL_DONE;
12182 goto dont_recalculate;
12184 default:
12185 gcc_unreachable ();
12188 recalculate_side_effects (*expr_p);
12190 dont_recalculate:
12191 break;
12194 gcc_assert (*expr_p || ret != GS_OK);
12196 while (ret == GS_OK);
12198 /* If we encountered an error_mark somewhere nested inside, either
12199 stub out the statement or propagate the error back out. */
12200 if (ret == GS_ERROR)
12202 if (is_statement)
12203 *expr_p = NULL;
12204 goto out;
12207 /* This was only valid as a return value from the langhook, which
12208 we handled. Make sure it doesn't escape from any other context. */
12209 gcc_assert (ret != GS_UNHANDLED);
12211 if (fallback == fb_none && *expr_p && !is_gimple_stmt (*expr_p))
12213 /* We aren't looking for a value, and we don't have a valid
12214 statement. If it doesn't have side-effects, throw it away.
12215 We can also get here with code such as "*&&L;", where L is
12216 a LABEL_DECL that is marked as FORCED_LABEL. */
12217 if (TREE_CODE (*expr_p) == LABEL_DECL
12218 || !TREE_SIDE_EFFECTS (*expr_p))
12219 *expr_p = NULL;
12220 else if (!TREE_THIS_VOLATILE (*expr_p))
12222 /* This is probably a _REF that contains something nested that
12223 has side effects. Recurse through the operands to find it. */
12224 enum tree_code code = TREE_CODE (*expr_p);
12226 switch (code)
12228 case COMPONENT_REF:
12229 case REALPART_EXPR:
12230 case IMAGPART_EXPR:
12231 case VIEW_CONVERT_EXPR:
12232 gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p, post_p,
12233 gimple_test_f, fallback);
12234 break;
12236 case ARRAY_REF:
12237 case ARRAY_RANGE_REF:
12238 gimplify_expr (&TREE_OPERAND (*expr_p, 0), pre_p, post_p,
12239 gimple_test_f, fallback);
12240 gimplify_expr (&TREE_OPERAND (*expr_p, 1), pre_p, post_p,
12241 gimple_test_f, fallback);
12242 break;
12244 default:
12245 /* Anything else with side-effects must be converted to
12246 a valid statement before we get here. */
12247 gcc_unreachable ();
12250 *expr_p = NULL;
12252 else if (COMPLETE_TYPE_P (TREE_TYPE (*expr_p))
12253 && TYPE_MODE (TREE_TYPE (*expr_p)) != BLKmode)
12255 /* Historically, the compiler has treated a bare reference
12256 to a non-BLKmode volatile lvalue as forcing a load. */
12257 tree type = TYPE_MAIN_VARIANT (TREE_TYPE (*expr_p));
12259 /* Normally, we do not want to create a temporary for a
12260 TREE_ADDRESSABLE type because such a type should not be
12261 copied by bitwise-assignment. However, we make an
12262 exception here, as all we are doing here is ensuring that
12263 we read the bytes that make up the type. We use
12264 create_tmp_var_raw because create_tmp_var will abort when
12265 given a TREE_ADDRESSABLE type. */
12266 tree tmp = create_tmp_var_raw (type, "vol");
12267 gimple_add_tmp_var (tmp);
12268 gimplify_assign (tmp, *expr_p, pre_p);
12269 *expr_p = NULL;
12271 else
12272 /* We can't do anything useful with a volatile reference to
12273 an incomplete type, so just throw it away. Likewise for
12274 a BLKmode type, since any implicit inner load should
12275 already have been turned into an explicit one by the
12276 gimplification process. */
12277 *expr_p = NULL;
12280 /* If we are gimplifying at the statement level, we're done. Tack
12281 everything together and return. */
12282 if (fallback == fb_none || is_statement)
12284 /* Since *EXPR_P has been converted into a GIMPLE tuple, clear
12285 it out for GC to reclaim it. */
12286 *expr_p = NULL_TREE;
12288 if (!gimple_seq_empty_p (internal_pre)
12289 || !gimple_seq_empty_p (internal_post))
12291 gimplify_seq_add_seq (&internal_pre, internal_post);
12292 gimplify_seq_add_seq (pre_p, internal_pre);
12295 /* The result of gimplifying *EXPR_P is going to be the last few
12296 statements in *PRE_P and *POST_P. Add location information
12297 to all the statements that were added by the gimplification
12298 helpers. */
12299 if (!gimple_seq_empty_p (*pre_p))
12300 annotate_all_with_location_after (*pre_p, pre_last_gsi, input_location);
12302 if (!gimple_seq_empty_p (*post_p))
12303 annotate_all_with_location_after (*post_p, post_last_gsi,
12304 input_location);
12306 goto out;
12309 #ifdef ENABLE_GIMPLE_CHECKING
12310 if (*expr_p)
12312 enum tree_code code = TREE_CODE (*expr_p);
12313 /* These expressions should already be in gimple IR form. */
12314 gcc_assert (code != MODIFY_EXPR
12315 && code != ASM_EXPR
12316 && code != BIND_EXPR
12317 && code != CATCH_EXPR
12318 && (code != COND_EXPR || gimplify_ctxp->allow_rhs_cond_expr)
12319 && code != EH_FILTER_EXPR
12320 && code != GOTO_EXPR
12321 && code != LABEL_EXPR
12322 && code != LOOP_EXPR
12323 && code != SWITCH_EXPR
12324 && code != TRY_FINALLY_EXPR
12325 && code != OACC_PARALLEL
12326 && code != OACC_KERNELS
12327 && code != OACC_DATA
12328 && code != OACC_HOST_DATA
12329 && code != OACC_DECLARE
12330 && code != OACC_UPDATE
12331 && code != OACC_ENTER_DATA
12332 && code != OACC_EXIT_DATA
12333 && code != OACC_CACHE
12334 && code != OMP_CRITICAL
12335 && code != OMP_FOR
12336 && code != OACC_LOOP
12337 && code != OMP_MASTER
12338 && code != OMP_TASKGROUP
12339 && code != OMP_ORDERED
12340 && code != OMP_PARALLEL
12341 && code != OMP_SECTIONS
12342 && code != OMP_SECTION
12343 && code != OMP_SINGLE);
12345 #endif
12347 /* Otherwise we're gimplifying a subexpression, so the resulting
12348 value is interesting. If it's a valid operand that matches
12349 GIMPLE_TEST_F, we're done. Unless we are handling some
12350 post-effects internally; if that's the case, we need to copy into
12351 a temporary before adding the post-effects to POST_P. */
12352 if (gimple_seq_empty_p (internal_post) && (*gimple_test_f) (*expr_p))
12353 goto out;
12355 /* Otherwise, we need to create a new temporary for the gimplified
12356 expression. */
12358 /* We can't return an lvalue if we have an internal postqueue. The
12359 object the lvalue refers to would (probably) be modified by the
12360 postqueue; we need to copy the value out first, which means an
12361 rvalue. */
12362 if ((fallback & fb_lvalue)
12363 && gimple_seq_empty_p (internal_post)
12364 && is_gimple_addressable (*expr_p))
12366 /* An lvalue will do. Take the address of the expression, store it
12367 in a temporary, and replace the expression with an INDIRECT_REF of
12368 that temporary. */
12369 tmp = build_fold_addr_expr_loc (input_location, *expr_p);
12370 gimplify_expr (&tmp, pre_p, post_p, is_gimple_reg, fb_rvalue);
12371 *expr_p = build_simple_mem_ref (tmp);
12373 else if ((fallback & fb_rvalue) && is_gimple_reg_rhs_or_call (*expr_p))
12375 /* An rvalue will do. Assign the gimplified expression into a
12376 new temporary TMP and replace the original expression with
12377 TMP. First, make sure that the expression has a type so that
12378 it can be assigned into a temporary. */
12379 gcc_assert (!VOID_TYPE_P (TREE_TYPE (*expr_p)));
12380 *expr_p = get_formal_tmp_var (*expr_p, pre_p);
12382 else
12384 #ifdef ENABLE_GIMPLE_CHECKING
12385 if (!(fallback & fb_mayfail))
12387 fprintf (stderr, "gimplification failed:\n");
12388 print_generic_expr (stderr, *expr_p);
12389 debug_tree (*expr_p);
12390 internal_error ("gimplification failed");
12392 #endif
12393 gcc_assert (fallback & fb_mayfail);
12395 /* If this is an asm statement, and the user asked for the
12396 impossible, don't die. Fail and let gimplify_asm_expr
12397 issue an error. */
12398 ret = GS_ERROR;
12399 goto out;
12402 /* Make sure the temporary matches our predicate. */
12403 gcc_assert ((*gimple_test_f) (*expr_p));
12405 if (!gimple_seq_empty_p (internal_post))
12407 annotate_all_with_location (internal_post, input_location);
12408 gimplify_seq_add_seq (pre_p, internal_post);
12411 out:
12412 input_location = saved_location;
12413 return ret;
12416 /* Like gimplify_expr but make sure the gimplified result is not itself
12417 a SSA name (but a decl if it were). Temporaries required by
12418 evaluating *EXPR_P may be still SSA names. */
12420 static enum gimplify_status
12421 gimplify_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p,
12422 bool (*gimple_test_f) (tree), fallback_t fallback,
12423 bool allow_ssa)
12425 bool was_ssa_name_p = TREE_CODE (*expr_p) == SSA_NAME;
12426 enum gimplify_status ret = gimplify_expr (expr_p, pre_p, post_p,
12427 gimple_test_f, fallback);
12428 if (! allow_ssa
12429 && TREE_CODE (*expr_p) == SSA_NAME)
12431 tree name = *expr_p;
12432 if (was_ssa_name_p)
12433 *expr_p = get_initialized_tmp_var (*expr_p, pre_p, NULL, false);
12434 else
12436 /* Avoid the extra copy if possible. */
12437 *expr_p = create_tmp_reg (TREE_TYPE (name));
12438 gimple_set_lhs (SSA_NAME_DEF_STMT (name), *expr_p);
12439 release_ssa_name (name);
12442 return ret;
12445 /* Look through TYPE for variable-sized objects and gimplify each such
12446 size that we find. Add to LIST_P any statements generated. */
12448 void
12449 gimplify_type_sizes (tree type, gimple_seq *list_p)
12451 tree field, t;
12453 if (type == NULL || type == error_mark_node)
12454 return;
12456 /* We first do the main variant, then copy into any other variants. */
12457 type = TYPE_MAIN_VARIANT (type);
12459 /* Avoid infinite recursion. */
12460 if (TYPE_SIZES_GIMPLIFIED (type))
12461 return;
12463 TYPE_SIZES_GIMPLIFIED (type) = 1;
12465 switch (TREE_CODE (type))
12467 case INTEGER_TYPE:
12468 case ENUMERAL_TYPE:
12469 case BOOLEAN_TYPE:
12470 case REAL_TYPE:
12471 case FIXED_POINT_TYPE:
12472 gimplify_one_sizepos (&TYPE_MIN_VALUE (type), list_p);
12473 gimplify_one_sizepos (&TYPE_MAX_VALUE (type), list_p);
12475 for (t = TYPE_NEXT_VARIANT (type); t; t = TYPE_NEXT_VARIANT (t))
12477 TYPE_MIN_VALUE (t) = TYPE_MIN_VALUE (type);
12478 TYPE_MAX_VALUE (t) = TYPE_MAX_VALUE (type);
12480 break;
12482 case ARRAY_TYPE:
12483 /* These types may not have declarations, so handle them here. */
12484 gimplify_type_sizes (TREE_TYPE (type), list_p);
12485 gimplify_type_sizes (TYPE_DOMAIN (type), list_p);
12486 /* Ensure VLA bounds aren't removed, for -O0 they should be variables
12487 with assigned stack slots, for -O1+ -g they should be tracked
12488 by VTA. */
12489 if (!(TYPE_NAME (type)
12490 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
12491 && DECL_IGNORED_P (TYPE_NAME (type)))
12492 && TYPE_DOMAIN (type)
12493 && INTEGRAL_TYPE_P (TYPE_DOMAIN (type)))
12495 t = TYPE_MIN_VALUE (TYPE_DOMAIN (type));
12496 if (t && VAR_P (t) && DECL_ARTIFICIAL (t))
12497 DECL_IGNORED_P (t) = 0;
12498 t = TYPE_MAX_VALUE (TYPE_DOMAIN (type));
12499 if (t && VAR_P (t) && DECL_ARTIFICIAL (t))
12500 DECL_IGNORED_P (t) = 0;
12502 break;
12504 case RECORD_TYPE:
12505 case UNION_TYPE:
12506 case QUAL_UNION_TYPE:
12507 for (field = TYPE_FIELDS (type); field; field = DECL_CHAIN (field))
12508 if (TREE_CODE (field) == FIELD_DECL)
12510 gimplify_one_sizepos (&DECL_FIELD_OFFSET (field), list_p);
12511 gimplify_one_sizepos (&DECL_SIZE (field), list_p);
12512 gimplify_one_sizepos (&DECL_SIZE_UNIT (field), list_p);
12513 gimplify_type_sizes (TREE_TYPE (field), list_p);
12515 break;
12517 case POINTER_TYPE:
12518 case REFERENCE_TYPE:
12519 /* We used to recurse on the pointed-to type here, which turned out to
12520 be incorrect because its definition might refer to variables not
12521 yet initialized at this point if a forward declaration is involved.
12523 It was actually useful for anonymous pointed-to types to ensure
12524 that the sizes evaluation dominates every possible later use of the
12525 values. Restricting to such types here would be safe since there
12526 is no possible forward declaration around, but would introduce an
12527 undesirable middle-end semantic to anonymity. We then defer to
12528 front-ends the responsibility of ensuring that the sizes are
12529 evaluated both early and late enough, e.g. by attaching artificial
12530 type declarations to the tree. */
12531 break;
12533 default:
12534 break;
12537 gimplify_one_sizepos (&TYPE_SIZE (type), list_p);
12538 gimplify_one_sizepos (&TYPE_SIZE_UNIT (type), list_p);
12540 for (t = TYPE_NEXT_VARIANT (type); t; t = TYPE_NEXT_VARIANT (t))
12542 TYPE_SIZE (t) = TYPE_SIZE (type);
12543 TYPE_SIZE_UNIT (t) = TYPE_SIZE_UNIT (type);
12544 TYPE_SIZES_GIMPLIFIED (t) = 1;
12548 /* A subroutine of gimplify_type_sizes to make sure that *EXPR_P,
12549 a size or position, has had all of its SAVE_EXPRs evaluated.
12550 We add any required statements to *STMT_P. */
12552 void
12553 gimplify_one_sizepos (tree *expr_p, gimple_seq *stmt_p)
12555 tree expr = *expr_p;
12557 /* We don't do anything if the value isn't there, is constant, or contains
12558 A PLACEHOLDER_EXPR. We also don't want to do anything if it's already
12559 a VAR_DECL. If it's a VAR_DECL from another function, the gimplifier
12560 will want to replace it with a new variable, but that will cause problems
12561 if this type is from outside the function. It's OK to have that here. */
12562 if (expr == NULL_TREE
12563 || is_gimple_constant (expr)
12564 || TREE_CODE (expr) == VAR_DECL
12565 || CONTAINS_PLACEHOLDER_P (expr))
12566 return;
12568 *expr_p = unshare_expr (expr);
12570 /* SSA names in decl/type fields are a bad idea - they'll get reclaimed
12571 if the def vanishes. */
12572 gimplify_expr (expr_p, stmt_p, NULL, is_gimple_val, fb_rvalue, false);
12574 /* If expr wasn't already is_gimple_sizepos or is_gimple_constant from the
12575 FE, ensure that it is a VAR_DECL, otherwise we might handle some decls
12576 as gimplify_vla_decl even when they would have all sizes INTEGER_CSTs. */
12577 if (is_gimple_constant (*expr_p))
12578 *expr_p = get_initialized_tmp_var (*expr_p, stmt_p, NULL, false);
12581 /* Gimplify the body of statements of FNDECL and return a GIMPLE_BIND node
12582 containing the sequence of corresponding GIMPLE statements. If DO_PARMS
12583 is true, also gimplify the parameters. */
12585 gbind *
12586 gimplify_body (tree fndecl, bool do_parms)
12588 location_t saved_location = input_location;
12589 gimple_seq parm_stmts, parm_cleanup = NULL, seq;
12590 gimple *outer_stmt;
12591 gbind *outer_bind;
12592 struct cgraph_node *cgn;
12594 timevar_push (TV_TREE_GIMPLIFY);
12596 init_tree_ssa (cfun);
12598 /* Initialize for optimize_insn_for_s{ize,peed}_p possibly called during
12599 gimplification. */
12600 default_rtl_profile ();
12602 gcc_assert (gimplify_ctxp == NULL);
12603 push_gimplify_context (true);
12605 if (flag_openacc || flag_openmp)
12607 gcc_assert (gimplify_omp_ctxp == NULL);
12608 if (lookup_attribute ("omp declare target", DECL_ATTRIBUTES (fndecl)))
12609 gimplify_omp_ctxp = new_omp_context (ORT_TARGET);
12612 /* Unshare most shared trees in the body and in that of any nested functions.
12613 It would seem we don't have to do this for nested functions because
12614 they are supposed to be output and then the outer function gimplified
12615 first, but the g++ front end doesn't always do it that way. */
12616 unshare_body (fndecl);
12617 unvisit_body (fndecl);
12619 cgn = cgraph_node::get (fndecl);
12620 if (cgn && cgn->origin)
12621 nonlocal_vlas = new hash_set<tree>;
12623 /* Make sure input_location isn't set to something weird. */
12624 input_location = DECL_SOURCE_LOCATION (fndecl);
12626 /* Resolve callee-copies. This has to be done before processing
12627 the body so that DECL_VALUE_EXPR gets processed correctly. */
12628 parm_stmts = do_parms ? gimplify_parameters (&parm_cleanup) : NULL;
12630 /* Gimplify the function's body. */
12631 seq = NULL;
12632 gimplify_stmt (&DECL_SAVED_TREE (fndecl), &seq);
12633 outer_stmt = gimple_seq_first_stmt (seq);
12634 if (!outer_stmt)
12636 outer_stmt = gimple_build_nop ();
12637 gimplify_seq_add_stmt (&seq, outer_stmt);
12640 /* The body must contain exactly one statement, a GIMPLE_BIND. If this is
12641 not the case, wrap everything in a GIMPLE_BIND to make it so. */
12642 if (gimple_code (outer_stmt) == GIMPLE_BIND
12643 && gimple_seq_first (seq) == gimple_seq_last (seq))
12644 outer_bind = as_a <gbind *> (outer_stmt);
12645 else
12646 outer_bind = gimple_build_bind (NULL_TREE, seq, NULL);
12648 DECL_SAVED_TREE (fndecl) = NULL_TREE;
12650 /* If we had callee-copies statements, insert them at the beginning
12651 of the function and clear DECL_VALUE_EXPR_P on the parameters. */
12652 if (!gimple_seq_empty_p (parm_stmts))
12654 tree parm;
12656 gimplify_seq_add_seq (&parm_stmts, gimple_bind_body (outer_bind));
12657 if (parm_cleanup)
12659 gtry *g = gimple_build_try (parm_stmts, parm_cleanup,
12660 GIMPLE_TRY_FINALLY);
12661 parm_stmts = NULL;
12662 gimple_seq_add_stmt (&parm_stmts, g);
12664 gimple_bind_set_body (outer_bind, parm_stmts);
12666 for (parm = DECL_ARGUMENTS (current_function_decl);
12667 parm; parm = DECL_CHAIN (parm))
12668 if (DECL_HAS_VALUE_EXPR_P (parm))
12670 DECL_HAS_VALUE_EXPR_P (parm) = 0;
12671 DECL_IGNORED_P (parm) = 0;
12675 if (nonlocal_vlas)
12677 if (nonlocal_vla_vars)
12679 /* tree-nested.c may later on call declare_vars (..., true);
12680 which relies on BLOCK_VARS chain to be the tail of the
12681 gimple_bind_vars chain. Ensure we don't violate that
12682 assumption. */
12683 if (gimple_bind_block (outer_bind)
12684 == DECL_INITIAL (current_function_decl))
12685 declare_vars (nonlocal_vla_vars, outer_bind, true);
12686 else
12687 BLOCK_VARS (DECL_INITIAL (current_function_decl))
12688 = chainon (BLOCK_VARS (DECL_INITIAL (current_function_decl)),
12689 nonlocal_vla_vars);
12690 nonlocal_vla_vars = NULL_TREE;
12692 delete nonlocal_vlas;
12693 nonlocal_vlas = NULL;
12696 if ((flag_openacc || flag_openmp || flag_openmp_simd)
12697 && gimplify_omp_ctxp)
12699 delete_omp_context (gimplify_omp_ctxp);
12700 gimplify_omp_ctxp = NULL;
12703 pop_gimplify_context (outer_bind);
12704 gcc_assert (gimplify_ctxp == NULL);
12706 if (flag_checking && !seen_error ())
12707 verify_gimple_in_seq (gimple_bind_body (outer_bind));
12709 timevar_pop (TV_TREE_GIMPLIFY);
12710 input_location = saved_location;
12712 return outer_bind;
12715 typedef char *char_p; /* For DEF_VEC_P. */
12717 /* Return whether we should exclude FNDECL from instrumentation. */
12719 static bool
12720 flag_instrument_functions_exclude_p (tree fndecl)
12722 vec<char_p> *v;
12724 v = (vec<char_p> *) flag_instrument_functions_exclude_functions;
12725 if (v && v->length () > 0)
12727 const char *name;
12728 int i;
12729 char *s;
12731 name = lang_hooks.decl_printable_name (fndecl, 0);
12732 FOR_EACH_VEC_ELT (*v, i, s)
12733 if (strstr (name, s) != NULL)
12734 return true;
12737 v = (vec<char_p> *) flag_instrument_functions_exclude_files;
12738 if (v && v->length () > 0)
12740 const char *name;
12741 int i;
12742 char *s;
12744 name = DECL_SOURCE_FILE (fndecl);
12745 FOR_EACH_VEC_ELT (*v, i, s)
12746 if (strstr (name, s) != NULL)
12747 return true;
12750 return false;
12753 /* Entry point to the gimplification pass. FNDECL is the FUNCTION_DECL
12754 node for the function we want to gimplify.
12756 Return the sequence of GIMPLE statements corresponding to the body
12757 of FNDECL. */
12759 void
12760 gimplify_function_tree (tree fndecl)
12762 tree parm, ret;
12763 gimple_seq seq;
12764 gbind *bind;
12766 gcc_assert (!gimple_body (fndecl));
12768 if (DECL_STRUCT_FUNCTION (fndecl))
12769 push_cfun (DECL_STRUCT_FUNCTION (fndecl));
12770 else
12771 push_struct_function (fndecl);
12773 /* Tentatively set PROP_gimple_lva here, and reset it in gimplify_va_arg_expr
12774 if necessary. */
12775 cfun->curr_properties |= PROP_gimple_lva;
12777 for (parm = DECL_ARGUMENTS (fndecl); parm ; parm = DECL_CHAIN (parm))
12779 /* Preliminarily mark non-addressed complex variables as eligible
12780 for promotion to gimple registers. We'll transform their uses
12781 as we find them. */
12782 if ((TREE_CODE (TREE_TYPE (parm)) == COMPLEX_TYPE
12783 || TREE_CODE (TREE_TYPE (parm)) == VECTOR_TYPE)
12784 && !TREE_THIS_VOLATILE (parm)
12785 && !needs_to_live_in_memory (parm))
12786 DECL_GIMPLE_REG_P (parm) = 1;
12789 ret = DECL_RESULT (fndecl);
12790 if ((TREE_CODE (TREE_TYPE (ret)) == COMPLEX_TYPE
12791 || TREE_CODE (TREE_TYPE (ret)) == VECTOR_TYPE)
12792 && !needs_to_live_in_memory (ret))
12793 DECL_GIMPLE_REG_P (ret) = 1;
12795 if (asan_sanitize_use_after_scope () && sanitize_flags_p (SANITIZE_ADDRESS))
12796 asan_poisoned_variables = new hash_set<tree> ();
12797 bind = gimplify_body (fndecl, true);
12798 if (asan_poisoned_variables)
12800 delete asan_poisoned_variables;
12801 asan_poisoned_variables = NULL;
12804 /* The tree body of the function is no longer needed, replace it
12805 with the new GIMPLE body. */
12806 seq = NULL;
12807 gimple_seq_add_stmt (&seq, bind);
12808 gimple_set_body (fndecl, seq);
12810 /* If we're instrumenting function entry/exit, then prepend the call to
12811 the entry hook and wrap the whole function in a TRY_FINALLY_EXPR to
12812 catch the exit hook. */
12813 /* ??? Add some way to ignore exceptions for this TFE. */
12814 if (flag_instrument_function_entry_exit
12815 && !DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (fndecl)
12816 /* Do not instrument extern inline functions. */
12817 && !(DECL_DECLARED_INLINE_P (fndecl)
12818 && DECL_EXTERNAL (fndecl)
12819 && DECL_DISREGARD_INLINE_LIMITS (fndecl))
12820 && !flag_instrument_functions_exclude_p (fndecl))
12822 tree x;
12823 gbind *new_bind;
12824 gimple *tf;
12825 gimple_seq cleanup = NULL, body = NULL;
12826 tree tmp_var;
12827 gcall *call;
12829 x = builtin_decl_implicit (BUILT_IN_RETURN_ADDRESS);
12830 call = gimple_build_call (x, 1, integer_zero_node);
12831 tmp_var = create_tmp_var (ptr_type_node, "return_addr");
12832 gimple_call_set_lhs (call, tmp_var);
12833 gimplify_seq_add_stmt (&cleanup, call);
12834 x = builtin_decl_implicit (BUILT_IN_PROFILE_FUNC_EXIT);
12835 call = gimple_build_call (x, 2,
12836 build_fold_addr_expr (current_function_decl),
12837 tmp_var);
12838 gimplify_seq_add_stmt (&cleanup, call);
12839 tf = gimple_build_try (seq, cleanup, GIMPLE_TRY_FINALLY);
12841 x = builtin_decl_implicit (BUILT_IN_RETURN_ADDRESS);
12842 call = gimple_build_call (x, 1, integer_zero_node);
12843 tmp_var = create_tmp_var (ptr_type_node, "return_addr");
12844 gimple_call_set_lhs (call, tmp_var);
12845 gimplify_seq_add_stmt (&body, call);
12846 x = builtin_decl_implicit (BUILT_IN_PROFILE_FUNC_ENTER);
12847 call = gimple_build_call (x, 2,
12848 build_fold_addr_expr (current_function_decl),
12849 tmp_var);
12850 gimplify_seq_add_stmt (&body, call);
12851 gimplify_seq_add_stmt (&body, tf);
12852 new_bind = gimple_build_bind (NULL, body, NULL);
12854 /* Replace the current function body with the body
12855 wrapped in the try/finally TF. */
12856 seq = NULL;
12857 gimple_seq_add_stmt (&seq, new_bind);
12858 gimple_set_body (fndecl, seq);
12859 bind = new_bind;
12862 if (sanitize_flags_p (SANITIZE_THREAD))
12864 gcall *call = gimple_build_call_internal (IFN_TSAN_FUNC_EXIT, 0);
12865 gimple *tf = gimple_build_try (seq, call, GIMPLE_TRY_FINALLY);
12866 gbind *new_bind = gimple_build_bind (NULL, tf, NULL);
12867 /* Replace the current function body with the body
12868 wrapped in the try/finally TF. */
12869 seq = NULL;
12870 gimple_seq_add_stmt (&seq, new_bind);
12871 gimple_set_body (fndecl, seq);
12874 DECL_SAVED_TREE (fndecl) = NULL_TREE;
12875 cfun->curr_properties |= PROP_gimple_any;
12877 pop_cfun ();
12879 dump_function (TDI_gimple, fndecl);
12882 /* Return a dummy expression of type TYPE in order to keep going after an
12883 error. */
12885 static tree
12886 dummy_object (tree type)
12888 tree t = build_int_cst (build_pointer_type (type), 0);
12889 return build2 (MEM_REF, type, t, t);
12892 /* Gimplify __builtin_va_arg, aka VA_ARG_EXPR, which is not really a
12893 builtin function, but a very special sort of operator. */
12895 enum gimplify_status
12896 gimplify_va_arg_expr (tree *expr_p, gimple_seq *pre_p,
12897 gimple_seq *post_p ATTRIBUTE_UNUSED)
12899 tree promoted_type, have_va_type;
12900 tree valist = TREE_OPERAND (*expr_p, 0);
12901 tree type = TREE_TYPE (*expr_p);
12902 tree t, tag, aptag;
12903 location_t loc = EXPR_LOCATION (*expr_p);
12905 /* Verify that valist is of the proper type. */
12906 have_va_type = TREE_TYPE (valist);
12907 if (have_va_type == error_mark_node)
12908 return GS_ERROR;
12909 have_va_type = targetm.canonical_va_list_type (have_va_type);
12910 if (have_va_type == NULL_TREE
12911 && POINTER_TYPE_P (TREE_TYPE (valist)))
12912 /* Handle 'Case 1: Not an array type' from c-common.c/build_va_arg. */
12913 have_va_type
12914 = targetm.canonical_va_list_type (TREE_TYPE (TREE_TYPE (valist)));
12915 gcc_assert (have_va_type != NULL_TREE);
12917 /* Generate a diagnostic for requesting data of a type that cannot
12918 be passed through `...' due to type promotion at the call site. */
12919 if ((promoted_type = lang_hooks.types.type_promotes_to (type))
12920 != type)
12922 static bool gave_help;
12923 bool warned;
12924 /* Use the expansion point to handle cases such as passing bool (defined
12925 in a system header) through `...'. */
12926 source_location xloc
12927 = expansion_point_location_if_in_system_header (loc);
12929 /* Unfortunately, this is merely undefined, rather than a constraint
12930 violation, so we cannot make this an error. If this call is never
12931 executed, the program is still strictly conforming. */
12932 warned = warning_at (xloc, 0,
12933 "%qT is promoted to %qT when passed through %<...%>",
12934 type, promoted_type);
12935 if (!gave_help && warned)
12937 gave_help = true;
12938 inform (xloc, "(so you should pass %qT not %qT to %<va_arg%>)",
12939 promoted_type, type);
12942 /* We can, however, treat "undefined" any way we please.
12943 Call abort to encourage the user to fix the program. */
12944 if (warned)
12945 inform (xloc, "if this code is reached, the program will abort");
12946 /* Before the abort, allow the evaluation of the va_list
12947 expression to exit or longjmp. */
12948 gimplify_and_add (valist, pre_p);
12949 t = build_call_expr_loc (loc,
12950 builtin_decl_implicit (BUILT_IN_TRAP), 0);
12951 gimplify_and_add (t, pre_p);
12953 /* This is dead code, but go ahead and finish so that the
12954 mode of the result comes out right. */
12955 *expr_p = dummy_object (type);
12956 return GS_ALL_DONE;
12959 tag = build_int_cst (build_pointer_type (type), 0);
12960 aptag = build_int_cst (TREE_TYPE (valist), 0);
12962 *expr_p = build_call_expr_internal_loc (loc, IFN_VA_ARG, type, 3,
12963 valist, tag, aptag);
12965 /* Clear the tentatively set PROP_gimple_lva, to indicate that IFN_VA_ARG
12966 needs to be expanded. */
12967 cfun->curr_properties &= ~PROP_gimple_lva;
12969 return GS_OK;
12972 /* Build a new GIMPLE_ASSIGN tuple and append it to the end of *SEQ_P.
12974 DST/SRC are the destination and source respectively. You can pass
12975 ungimplified trees in DST or SRC, in which case they will be
12976 converted to a gimple operand if necessary.
12978 This function returns the newly created GIMPLE_ASSIGN tuple. */
12980 gimple *
12981 gimplify_assign (tree dst, tree src, gimple_seq *seq_p)
12983 tree t = build2 (MODIFY_EXPR, TREE_TYPE (dst), dst, src);
12984 gimplify_and_add (t, seq_p);
12985 ggc_free (t);
12986 return gimple_seq_last_stmt (*seq_p);
12989 inline hashval_t
12990 gimplify_hasher::hash (const elt_t *p)
12992 tree t = p->val;
12993 return iterative_hash_expr (t, 0);
12996 inline bool
12997 gimplify_hasher::equal (const elt_t *p1, const elt_t *p2)
12999 tree t1 = p1->val;
13000 tree t2 = p2->val;
13001 enum tree_code code = TREE_CODE (t1);
13003 if (TREE_CODE (t2) != code
13004 || TREE_TYPE (t1) != TREE_TYPE (t2))
13005 return false;
13007 if (!operand_equal_p (t1, t2, 0))
13008 return false;
13010 /* Only allow them to compare equal if they also hash equal; otherwise
13011 results are nondeterminate, and we fail bootstrap comparison. */
13012 gcc_checking_assert (hash (p1) == hash (p2));
13014 return true;