2 Copyright (C) 2001-2016 Free Software Foundation, Inc.
3 Contributed by Alexandre Oliva <aoliva@redhat.com>
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
12 GCC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
23 #include "coretypes.h"
30 #include "tree-pass.h"
33 #include "tree-pretty-print.h"
34 #include "diagnostic-core.h"
35 #include "gimple-predict.h"
36 #include "fold-const.h"
37 #include "stor-layout.h"
39 #include "tree-inline.h"
40 #include "langhooks.h"
42 #include "tree-iterator.h"
44 #include "gimple-fold.h"
47 #include "gimple-iterator.h"
48 #include "gimplify-me.h"
49 #include "gimple-walk.h"
51 #include "tree-into-ssa.h"
56 #include "value-prof.h"
59 #include "tree-chkp.h"
62 /* I'm not real happy about this, but we need to handle gimple and
65 /* Inlining, Cloning, Versioning, Parallelization
67 Inlining: a function body is duplicated, but the PARM_DECLs are
68 remapped into VAR_DECLs, and non-void RETURN_EXPRs become
69 MODIFY_EXPRs that store to a dedicated returned-value variable.
70 The duplicated eh_region info of the copy will later be appended
71 to the info for the caller; the eh_region info in copied throwing
72 statements and RESX statements are adjusted accordingly.
74 Cloning: (only in C++) We have one body for a con/de/structor, and
75 multiple function decls, each with a unique parameter list.
76 Duplicate the body, using the given splay tree; some parameters
77 will become constants (like 0 or 1).
79 Versioning: a function body is duplicated and the result is a new
80 function rather than into blocks of an existing function as with
81 inlining. Some parameters will become constants.
83 Parallelization: a region of a function is duplicated resulting in
84 a new function. Variables may be replaced with complex expressions
85 to enable shared variable semantics.
87 All of these will simultaneously lookup any callgraph edges. If
88 we're going to inline the duplicated function body, and the given
89 function has some cloned callgraph nodes (one for each place this
90 function will be inlined) those callgraph edges will be duplicated.
91 If we're cloning the body, those callgraph edges will be
92 updated to point into the new body. (Note that the original
93 callgraph node and edge list will not be altered.)
95 See the CALL_EXPR handling case in copy_tree_body_r (). */
99 o In order to make inlining-on-trees work, we pessimized
100 function-local static constants. In particular, they are now
101 always output, even when not addressed. Fix this by treating
102 function-local static constants just like global static
103 constants; the back-end already knows not to output them if they
106 o Provide heuristics to clamp inlining of recursive template
110 /* Weights that estimate_num_insns uses to estimate the size of the
113 eni_weights eni_size_weights
;
115 /* Weights that estimate_num_insns uses to estimate the time necessary
116 to execute the produced code. */
118 eni_weights eni_time_weights
;
122 static tree
declare_return_variable (copy_body_data
*, tree
, tree
, tree
,
124 static void remap_block (tree
*, copy_body_data
*);
125 static void copy_bind_expr (tree
*, int *, copy_body_data
*);
126 static void declare_inline_vars (tree
, tree
);
127 static void remap_save_expr (tree
*, hash_map
<tree
, tree
> *, int *);
128 static void prepend_lexical_block (tree current_block
, tree new_block
);
129 static tree
copy_decl_to_var (tree
, copy_body_data
*);
130 static tree
copy_result_decl_to_var (tree
, copy_body_data
*);
131 static tree
copy_decl_maybe_to_var (tree
, copy_body_data
*);
132 static gimple_seq
remap_gimple_stmt (gimple
*, copy_body_data
*);
133 static bool delete_unreachable_blocks_update_callgraph (copy_body_data
*id
);
134 static void insert_init_stmt (copy_body_data
*, basic_block
, gimple
*);
136 /* Insert a tree->tree mapping for ID. Despite the name suggests
137 that the trees should be variables, it is used for more than that. */
140 insert_decl_map (copy_body_data
*id
, tree key
, tree value
)
142 id
->decl_map
->put (key
, value
);
144 /* Always insert an identity map as well. If we see this same new
145 node again, we won't want to duplicate it a second time. */
147 id
->decl_map
->put (value
, value
);
150 /* Insert a tree->tree mapping for ID. This is only used for
154 insert_debug_decl_map (copy_body_data
*id
, tree key
, tree value
)
156 if (!gimple_in_ssa_p (id
->src_cfun
))
159 if (!opt_for_fn (id
->dst_fn
, flag_var_tracking_assignments
))
162 if (!target_for_debug_bind (key
))
165 gcc_assert (TREE_CODE (key
) == PARM_DECL
);
166 gcc_assert (VAR_P (value
));
169 id
->debug_map
= new hash_map
<tree
, tree
>;
171 id
->debug_map
->put (key
, value
);
174 /* If nonzero, we're remapping the contents of inlined debug
175 statements. If negative, an error has occurred, such as a
176 reference to a variable that isn't available in the inlined
178 static int processing_debug_stmt
= 0;
180 /* Construct new SSA name for old NAME. ID is the inline context. */
183 remap_ssa_name (tree name
, copy_body_data
*id
)
188 gcc_assert (TREE_CODE (name
) == SSA_NAME
);
190 n
= id
->decl_map
->get (name
);
192 return unshare_expr (*n
);
194 if (processing_debug_stmt
)
196 if (SSA_NAME_IS_DEFAULT_DEF (name
)
197 && TREE_CODE (SSA_NAME_VAR (name
)) == PARM_DECL
198 && id
->entry_bb
== NULL
199 && single_succ_p (ENTRY_BLOCK_PTR_FOR_FN (cfun
)))
201 tree vexpr
= make_node (DEBUG_EXPR_DECL
);
203 gimple_stmt_iterator gsi
;
204 tree val
= SSA_NAME_VAR (name
);
206 n
= id
->decl_map
->get (val
);
209 if (TREE_CODE (val
) != PARM_DECL
)
211 processing_debug_stmt
= -1;
214 def_temp
= gimple_build_debug_source_bind (vexpr
, val
, NULL
);
215 DECL_ARTIFICIAL (vexpr
) = 1;
216 TREE_TYPE (vexpr
) = TREE_TYPE (name
);
217 DECL_MODE (vexpr
) = DECL_MODE (SSA_NAME_VAR (name
));
218 gsi
= gsi_after_labels (single_succ (ENTRY_BLOCK_PTR_FOR_FN (cfun
)));
219 gsi_insert_before (&gsi
, def_temp
, GSI_SAME_STMT
);
223 processing_debug_stmt
= -1;
227 /* Remap anonymous SSA names or SSA names of anonymous decls. */
228 var
= SSA_NAME_VAR (name
);
230 || (!SSA_NAME_IS_DEFAULT_DEF (name
)
232 && !VAR_DECL_IS_VIRTUAL_OPERAND (var
)
233 && DECL_ARTIFICIAL (var
)
234 && DECL_IGNORED_P (var
)
235 && !DECL_NAME (var
)))
237 struct ptr_info_def
*pi
;
238 new_tree
= make_ssa_name (remap_type (TREE_TYPE (name
), id
));
239 if (!var
&& SSA_NAME_IDENTIFIER (name
))
240 SET_SSA_NAME_VAR_OR_IDENTIFIER (new_tree
, SSA_NAME_IDENTIFIER (name
));
241 insert_decl_map (id
, name
, new_tree
);
242 SSA_NAME_OCCURS_IN_ABNORMAL_PHI (new_tree
)
243 = SSA_NAME_OCCURS_IN_ABNORMAL_PHI (name
);
244 /* At least IPA points-to info can be directly transferred. */
245 if (id
->src_cfun
->gimple_df
246 && id
->src_cfun
->gimple_df
->ipa_pta
247 && POINTER_TYPE_P (TREE_TYPE (name
))
248 && (pi
= SSA_NAME_PTR_INFO (name
))
251 struct ptr_info_def
*new_pi
= get_ptr_info (new_tree
);
257 /* Do not set DEF_STMT yet as statement is not copied yet. We do that
259 new_tree
= remap_decl (var
, id
);
261 /* We might've substituted constant or another SSA_NAME for
264 Replace the SSA name representing RESULT_DECL by variable during
265 inlining: this saves us from need to introduce PHI node in a case
266 return value is just partly initialized. */
267 if ((VAR_P (new_tree
) || TREE_CODE (new_tree
) == PARM_DECL
)
268 && (!SSA_NAME_VAR (name
)
269 || TREE_CODE (SSA_NAME_VAR (name
)) != RESULT_DECL
270 || !id
->transform_return_to_modify
))
272 struct ptr_info_def
*pi
;
273 new_tree
= make_ssa_name (new_tree
);
274 insert_decl_map (id
, name
, new_tree
);
275 SSA_NAME_OCCURS_IN_ABNORMAL_PHI (new_tree
)
276 = SSA_NAME_OCCURS_IN_ABNORMAL_PHI (name
);
277 /* At least IPA points-to info can be directly transferred. */
278 if (id
->src_cfun
->gimple_df
279 && id
->src_cfun
->gimple_df
->ipa_pta
280 && POINTER_TYPE_P (TREE_TYPE (name
))
281 && (pi
= SSA_NAME_PTR_INFO (name
))
284 struct ptr_info_def
*new_pi
= get_ptr_info (new_tree
);
287 if (SSA_NAME_IS_DEFAULT_DEF (name
))
289 /* By inlining function having uninitialized variable, we might
290 extend the lifetime (variable might get reused). This cause
291 ICE in the case we end up extending lifetime of SSA name across
292 abnormal edge, but also increase register pressure.
294 We simply initialize all uninitialized vars by 0 except
295 for case we are inlining to very first BB. We can avoid
296 this for all BBs that are not inside strongly connected
297 regions of the CFG, but this is expensive to test. */
299 && SSA_NAME_OCCURS_IN_ABNORMAL_PHI (name
)
300 && (!SSA_NAME_VAR (name
)
301 || TREE_CODE (SSA_NAME_VAR (name
)) != PARM_DECL
)
302 && (id
->entry_bb
!= EDGE_SUCC (ENTRY_BLOCK_PTR_FOR_FN (cfun
),
304 || EDGE_COUNT (id
->entry_bb
->preds
) != 1))
306 gimple_stmt_iterator gsi
= gsi_last_bb (id
->entry_bb
);
308 tree zero
= build_zero_cst (TREE_TYPE (new_tree
));
310 init_stmt
= gimple_build_assign (new_tree
, zero
);
311 gsi_insert_after (&gsi
, init_stmt
, GSI_NEW_STMT
);
312 SSA_NAME_IS_DEFAULT_DEF (new_tree
) = 0;
316 SSA_NAME_DEF_STMT (new_tree
) = gimple_build_nop ();
317 set_ssa_default_def (cfun
, SSA_NAME_VAR (new_tree
), new_tree
);
322 insert_decl_map (id
, name
, new_tree
);
326 /* Remap DECL during the copying of the BLOCK tree for the function. */
329 remap_decl (tree decl
, copy_body_data
*id
)
333 /* We only remap local variables in the current function. */
335 /* See if we have remapped this declaration. */
337 n
= id
->decl_map
->get (decl
);
339 if (!n
&& processing_debug_stmt
)
341 processing_debug_stmt
= -1;
345 /* When remapping a type within copy_gimple_seq_and_replace_locals, all
346 necessary DECLs have already been remapped and we do not want to duplicate
347 a decl coming from outside of the sequence we are copying. */
349 && id
->prevent_decl_creation_for_types
350 && id
->remapping_type_depth
> 0
351 && (VAR_P (decl
) || TREE_CODE (decl
) == PARM_DECL
))
354 /* If we didn't already have an equivalent for this declaration, create one
358 /* Make a copy of the variable or label. */
359 tree t
= id
->copy_decl (decl
, id
);
361 /* Remember it, so that if we encounter this local entity again
362 we can reuse this copy. Do this early because remap_type may
363 need this decl for TYPE_STUB_DECL. */
364 insert_decl_map (id
, decl
, t
);
369 /* Remap types, if necessary. */
370 TREE_TYPE (t
) = remap_type (TREE_TYPE (t
), id
);
371 if (TREE_CODE (t
) == TYPE_DECL
)
373 DECL_ORIGINAL_TYPE (t
) = remap_type (DECL_ORIGINAL_TYPE (t
), id
);
375 /* Preserve the invariant that DECL_ORIGINAL_TYPE != TREE_TYPE,
376 which is enforced in gen_typedef_die when DECL_ABSTRACT_ORIGIN
377 is not set on the TYPE_DECL, for example in LTO mode. */
378 if (DECL_ORIGINAL_TYPE (t
) == TREE_TYPE (t
))
380 tree x
= build_variant_type_copy (TREE_TYPE (t
));
381 TYPE_STUB_DECL (x
) = TYPE_STUB_DECL (TREE_TYPE (t
));
382 TYPE_NAME (x
) = TYPE_NAME (TREE_TYPE (t
));
383 DECL_ORIGINAL_TYPE (t
) = x
;
387 /* Remap sizes as necessary. */
388 walk_tree (&DECL_SIZE (t
), copy_tree_body_r
, id
, NULL
);
389 walk_tree (&DECL_SIZE_UNIT (t
), copy_tree_body_r
, id
, NULL
);
391 /* If fields, do likewise for offset and qualifier. */
392 if (TREE_CODE (t
) == FIELD_DECL
)
394 walk_tree (&DECL_FIELD_OFFSET (t
), copy_tree_body_r
, id
, NULL
);
395 if (TREE_CODE (DECL_CONTEXT (t
)) == QUAL_UNION_TYPE
)
396 walk_tree (&DECL_QUALIFIER (t
), copy_tree_body_r
, id
, NULL
);
402 if (id
->do_not_unshare
)
405 return unshare_expr (*n
);
409 remap_type_1 (tree type
, copy_body_data
*id
)
413 /* We do need a copy. build and register it now. If this is a pointer or
414 reference type, remap the designated type and make a new pointer or
416 if (TREE_CODE (type
) == POINTER_TYPE
)
418 new_tree
= build_pointer_type_for_mode (remap_type (TREE_TYPE (type
), id
),
420 TYPE_REF_CAN_ALIAS_ALL (type
));
421 if (TYPE_ATTRIBUTES (type
) || TYPE_QUALS (type
))
422 new_tree
= build_type_attribute_qual_variant (new_tree
,
423 TYPE_ATTRIBUTES (type
),
425 insert_decl_map (id
, type
, new_tree
);
428 else if (TREE_CODE (type
) == REFERENCE_TYPE
)
430 new_tree
= build_reference_type_for_mode (remap_type (TREE_TYPE (type
), id
),
432 TYPE_REF_CAN_ALIAS_ALL (type
));
433 if (TYPE_ATTRIBUTES (type
) || TYPE_QUALS (type
))
434 new_tree
= build_type_attribute_qual_variant (new_tree
,
435 TYPE_ATTRIBUTES (type
),
437 insert_decl_map (id
, type
, new_tree
);
441 new_tree
= copy_node (type
);
443 insert_decl_map (id
, type
, new_tree
);
445 /* This is a new type, not a copy of an old type. Need to reassociate
446 variants. We can handle everything except the main variant lazily. */
447 t
= TYPE_MAIN_VARIANT (type
);
450 t
= remap_type (t
, id
);
451 TYPE_MAIN_VARIANT (new_tree
) = t
;
452 TYPE_NEXT_VARIANT (new_tree
) = TYPE_NEXT_VARIANT (t
);
453 TYPE_NEXT_VARIANT (t
) = new_tree
;
457 TYPE_MAIN_VARIANT (new_tree
) = new_tree
;
458 TYPE_NEXT_VARIANT (new_tree
) = NULL
;
461 if (TYPE_STUB_DECL (type
))
462 TYPE_STUB_DECL (new_tree
) = remap_decl (TYPE_STUB_DECL (type
), id
);
464 /* Lazily create pointer and reference types. */
465 TYPE_POINTER_TO (new_tree
) = NULL
;
466 TYPE_REFERENCE_TO (new_tree
) = NULL
;
468 /* Copy all types that may contain references to local variables; be sure to
469 preserve sharing in between type and its main variant when possible. */
470 switch (TREE_CODE (new_tree
))
474 case FIXED_POINT_TYPE
:
477 if (TYPE_MAIN_VARIANT (new_tree
) != new_tree
)
479 gcc_checking_assert (TYPE_MIN_VALUE (type
) == TYPE_MIN_VALUE (TYPE_MAIN_VARIANT (type
)));
480 gcc_checking_assert (TYPE_MAX_VALUE (type
) == TYPE_MAX_VALUE (TYPE_MAIN_VARIANT (type
)));
482 TYPE_MIN_VALUE (new_tree
) = TYPE_MIN_VALUE (TYPE_MAIN_VARIANT (new_tree
));
483 TYPE_MAX_VALUE (new_tree
) = TYPE_MAX_VALUE (TYPE_MAIN_VARIANT (new_tree
));
487 t
= TYPE_MIN_VALUE (new_tree
);
488 if (t
&& TREE_CODE (t
) != INTEGER_CST
)
489 walk_tree (&TYPE_MIN_VALUE (new_tree
), copy_tree_body_r
, id
, NULL
);
491 t
= TYPE_MAX_VALUE (new_tree
);
492 if (t
&& TREE_CODE (t
) != INTEGER_CST
)
493 walk_tree (&TYPE_MAX_VALUE (new_tree
), copy_tree_body_r
, id
, NULL
);
498 if (TYPE_MAIN_VARIANT (new_tree
) != new_tree
499 && TREE_TYPE (type
) == TREE_TYPE (TYPE_MAIN_VARIANT (type
)))
500 TREE_TYPE (new_tree
) = TREE_TYPE (TYPE_MAIN_VARIANT (new_tree
));
502 TREE_TYPE (new_tree
) = remap_type (TREE_TYPE (new_tree
), id
);
503 if (TYPE_MAIN_VARIANT (new_tree
) != new_tree
504 && TYPE_ARG_TYPES (type
) == TYPE_ARG_TYPES (TYPE_MAIN_VARIANT (type
)))
505 TYPE_ARG_TYPES (new_tree
) = TYPE_ARG_TYPES (TYPE_MAIN_VARIANT (new_tree
));
507 walk_tree (&TYPE_ARG_TYPES (new_tree
), copy_tree_body_r
, id
, NULL
);
511 if (TYPE_MAIN_VARIANT (new_tree
) != new_tree
512 && TREE_TYPE (type
) == TREE_TYPE (TYPE_MAIN_VARIANT (type
)))
513 TREE_TYPE (new_tree
) = TREE_TYPE (TYPE_MAIN_VARIANT (new_tree
));
515 TREE_TYPE (new_tree
) = remap_type (TREE_TYPE (new_tree
), id
);
517 if (TYPE_MAIN_VARIANT (new_tree
) != new_tree
)
519 gcc_checking_assert (TYPE_DOMAIN (type
) == TYPE_DOMAIN (TYPE_MAIN_VARIANT (type
)));
520 TYPE_DOMAIN (new_tree
) = TYPE_DOMAIN (TYPE_MAIN_VARIANT (new_tree
));
523 TYPE_DOMAIN (new_tree
) = remap_type (TYPE_DOMAIN (new_tree
), id
);
528 case QUAL_UNION_TYPE
:
529 if (TYPE_MAIN_VARIANT (type
) != type
530 && TYPE_FIELDS (type
) == TYPE_FIELDS (TYPE_MAIN_VARIANT (type
)))
531 TYPE_FIELDS (new_tree
) = TYPE_FIELDS (TYPE_MAIN_VARIANT (new_tree
));
536 for (f
= TYPE_FIELDS (new_tree
); f
; f
= DECL_CHAIN (f
))
538 t
= remap_decl (f
, id
);
539 DECL_CONTEXT (t
) = new_tree
;
543 TYPE_FIELDS (new_tree
) = nreverse (nf
);
549 /* Shouldn't have been thought variable sized. */
553 /* All variants of type share the same size, so use the already remaped data. */
554 if (TYPE_MAIN_VARIANT (new_tree
) != new_tree
)
556 gcc_checking_assert (TYPE_SIZE (type
) == TYPE_SIZE (TYPE_MAIN_VARIANT (type
)));
557 gcc_checking_assert (TYPE_SIZE_UNIT (type
) == TYPE_SIZE_UNIT (TYPE_MAIN_VARIANT (type
)));
559 TYPE_SIZE (new_tree
) = TYPE_SIZE (TYPE_MAIN_VARIANT (new_tree
));
560 TYPE_SIZE_UNIT (new_tree
) = TYPE_SIZE_UNIT (TYPE_MAIN_VARIANT (new_tree
));
564 walk_tree (&TYPE_SIZE (new_tree
), copy_tree_body_r
, id
, NULL
);
565 walk_tree (&TYPE_SIZE_UNIT (new_tree
), copy_tree_body_r
, id
, NULL
);
572 remap_type (tree type
, copy_body_data
*id
)
580 /* See if we have remapped this type. */
581 node
= id
->decl_map
->get (type
);
585 /* The type only needs remapping if it's variably modified. */
586 if (! variably_modified_type_p (type
, id
->src_fn
))
588 insert_decl_map (id
, type
, type
);
592 id
->remapping_type_depth
++;
593 tmp
= remap_type_1 (type
, id
);
594 id
->remapping_type_depth
--;
599 /* Decide if DECL can be put into BLOCK_NONLOCAL_VARs. */
602 can_be_nonlocal (tree decl
, copy_body_data
*id
)
604 /* We can not duplicate function decls. */
605 if (TREE_CODE (decl
) == FUNCTION_DECL
)
608 /* Local static vars must be non-local or we get multiple declaration
610 if (VAR_P (decl
) && !auto_var_in_fn_p (decl
, id
->src_fn
))
617 remap_decls (tree decls
, vec
<tree
, va_gc
> **nonlocalized_list
,
621 tree new_decls
= NULL_TREE
;
623 /* Remap its variables. */
624 for (old_var
= decls
; old_var
; old_var
= DECL_CHAIN (old_var
))
628 if (can_be_nonlocal (old_var
, id
))
630 /* We need to add this variable to the local decls as otherwise
631 nothing else will do so. */
632 if (VAR_P (old_var
) && ! DECL_EXTERNAL (old_var
) && cfun
)
633 add_local_decl (cfun
, old_var
);
634 if ((!optimize
|| debug_info_level
> DINFO_LEVEL_TERSE
)
635 && !DECL_IGNORED_P (old_var
)
636 && nonlocalized_list
)
637 vec_safe_push (*nonlocalized_list
, old_var
);
641 /* Remap the variable. */
642 new_var
= remap_decl (old_var
, id
);
644 /* If we didn't remap this variable, we can't mess with its
645 TREE_CHAIN. If we remapped this variable to the return slot, it's
646 already declared somewhere else, so don't declare it here. */
648 if (new_var
== id
->retvar
)
652 if ((!optimize
|| debug_info_level
> DINFO_LEVEL_TERSE
)
653 && !DECL_IGNORED_P (old_var
)
654 && nonlocalized_list
)
655 vec_safe_push (*nonlocalized_list
, old_var
);
659 gcc_assert (DECL_P (new_var
));
660 DECL_CHAIN (new_var
) = new_decls
;
663 /* Also copy value-expressions. */
664 if (VAR_P (new_var
) && DECL_HAS_VALUE_EXPR_P (new_var
))
666 tree tem
= DECL_VALUE_EXPR (new_var
);
667 bool old_regimplify
= id
->regimplify
;
668 id
->remapping_type_depth
++;
669 walk_tree (&tem
, copy_tree_body_r
, id
, NULL
);
670 id
->remapping_type_depth
--;
671 id
->regimplify
= old_regimplify
;
672 SET_DECL_VALUE_EXPR (new_var
, tem
);
677 return nreverse (new_decls
);
680 /* Copy the BLOCK to contain remapped versions of the variables
681 therein. And hook the new block into the block-tree. */
684 remap_block (tree
*block
, copy_body_data
*id
)
689 /* Make the new block. */
691 new_block
= make_node (BLOCK
);
692 TREE_USED (new_block
) = TREE_USED (old_block
);
693 BLOCK_ABSTRACT_ORIGIN (new_block
) = old_block
;
694 BLOCK_SOURCE_LOCATION (new_block
) = BLOCK_SOURCE_LOCATION (old_block
);
695 BLOCK_NONLOCALIZED_VARS (new_block
)
696 = vec_safe_copy (BLOCK_NONLOCALIZED_VARS (old_block
));
699 /* Remap its variables. */
700 BLOCK_VARS (new_block
) = remap_decls (BLOCK_VARS (old_block
),
701 &BLOCK_NONLOCALIZED_VARS (new_block
),
704 if (id
->transform_lang_insert_block
)
705 id
->transform_lang_insert_block (new_block
);
707 /* Remember the remapped block. */
708 insert_decl_map (id
, old_block
, new_block
);
711 /* Copy the whole block tree and root it in id->block. */
713 remap_blocks (tree block
, copy_body_data
*id
)
716 tree new_tree
= block
;
721 remap_block (&new_tree
, id
);
722 gcc_assert (new_tree
!= block
);
723 for (t
= BLOCK_SUBBLOCKS (block
); t
; t
= BLOCK_CHAIN (t
))
724 prepend_lexical_block (new_tree
, remap_blocks (t
, id
));
725 /* Blocks are in arbitrary order, but make things slightly prettier and do
726 not swap order when producing a copy. */
727 BLOCK_SUBBLOCKS (new_tree
) = blocks_nreverse (BLOCK_SUBBLOCKS (new_tree
));
731 /* Remap the block tree rooted at BLOCK to nothing. */
733 remap_blocks_to_null (tree block
, copy_body_data
*id
)
736 insert_decl_map (id
, block
, NULL_TREE
);
737 for (t
= BLOCK_SUBBLOCKS (block
); t
; t
= BLOCK_CHAIN (t
))
738 remap_blocks_to_null (t
, id
);
742 copy_statement_list (tree
*tp
)
744 tree_stmt_iterator oi
, ni
;
747 new_tree
= alloc_stmt_list ();
748 ni
= tsi_start (new_tree
);
749 oi
= tsi_start (*tp
);
750 TREE_TYPE (new_tree
) = TREE_TYPE (*tp
);
753 for (; !tsi_end_p (oi
); tsi_next (&oi
))
755 tree stmt
= tsi_stmt (oi
);
756 if (TREE_CODE (stmt
) == STATEMENT_LIST
)
757 /* This copy is not redundant; tsi_link_after will smash this
758 STATEMENT_LIST into the end of the one we're building, and we
759 don't want to do that with the original. */
760 copy_statement_list (&stmt
);
761 tsi_link_after (&ni
, stmt
, TSI_CONTINUE_LINKING
);
766 copy_bind_expr (tree
*tp
, int *walk_subtrees
, copy_body_data
*id
)
768 tree block
= BIND_EXPR_BLOCK (*tp
);
769 /* Copy (and replace) the statement. */
770 copy_tree_r (tp
, walk_subtrees
, NULL
);
773 remap_block (&block
, id
);
774 BIND_EXPR_BLOCK (*tp
) = block
;
777 if (BIND_EXPR_VARS (*tp
))
778 /* This will remap a lot of the same decls again, but this should be
780 BIND_EXPR_VARS (*tp
) = remap_decls (BIND_EXPR_VARS (*tp
), NULL
, id
);
784 /* Create a new gimple_seq by remapping all the statements in BODY
785 using the inlining information in ID. */
788 remap_gimple_seq (gimple_seq body
, copy_body_data
*id
)
790 gimple_stmt_iterator si
;
791 gimple_seq new_body
= NULL
;
793 for (si
= gsi_start (body
); !gsi_end_p (si
); gsi_next (&si
))
795 gimple_seq new_stmts
= remap_gimple_stmt (gsi_stmt (si
), id
);
796 gimple_seq_add_seq (&new_body
, new_stmts
);
803 /* Copy a GIMPLE_BIND statement STMT, remapping all the symbols in its
804 block using the mapping information in ID. */
807 copy_gimple_bind (gbind
*stmt
, copy_body_data
*id
)
810 tree new_block
, new_vars
;
811 gimple_seq body
, new_body
;
813 /* Copy the statement. Note that we purposely don't use copy_stmt
814 here because we need to remap statements as we copy. */
815 body
= gimple_bind_body (stmt
);
816 new_body
= remap_gimple_seq (body
, id
);
818 new_block
= gimple_bind_block (stmt
);
820 remap_block (&new_block
, id
);
822 /* This will remap a lot of the same decls again, but this should be
824 new_vars
= gimple_bind_vars (stmt
);
826 new_vars
= remap_decls (new_vars
, NULL
, id
);
828 new_bind
= gimple_build_bind (new_vars
, new_body
, new_block
);
833 /* Return true if DECL is a parameter or a SSA_NAME for a parameter. */
838 if (TREE_CODE (decl
) == SSA_NAME
)
840 decl
= SSA_NAME_VAR (decl
);
845 return (TREE_CODE (decl
) == PARM_DECL
);
848 /* Remap the dependence CLIQUE from the source to the destination function
849 as specified in ID. */
851 static unsigned short
852 remap_dependence_clique (copy_body_data
*id
, unsigned short clique
)
854 if (clique
== 0 || processing_debug_stmt
)
856 if (!id
->dependence_map
)
857 id
->dependence_map
= new hash_map
<dependence_hash
, unsigned short>;
859 unsigned short &newc
= id
->dependence_map
->get_or_insert (clique
, &existed
);
861 newc
= ++cfun
->last_clique
;
865 /* Remap the GIMPLE operand pointed to by *TP. DATA is really a
866 'struct walk_stmt_info *'. DATA->INFO is a 'copy_body_data *'.
867 WALK_SUBTREES is used to indicate walk_gimple_op whether to keep
868 recursing into the children nodes of *TP. */
871 remap_gimple_op_r (tree
*tp
, int *walk_subtrees
, void *data
)
873 struct walk_stmt_info
*wi_p
= (struct walk_stmt_info
*) data
;
874 copy_body_data
*id
= (copy_body_data
*) wi_p
->info
;
875 tree fn
= id
->src_fn
;
877 /* For recursive invocations this is no longer the LHS itself. */
878 bool is_lhs
= wi_p
->is_lhs
;
879 wi_p
->is_lhs
= false;
881 if (TREE_CODE (*tp
) == SSA_NAME
)
883 *tp
= remap_ssa_name (*tp
, id
);
886 SSA_NAME_DEF_STMT (*tp
) = wi_p
->stmt
;
889 else if (auto_var_in_fn_p (*tp
, fn
))
891 /* Local variables and labels need to be replaced by equivalent
892 variables. We don't want to copy static variables; there's
893 only one of those, no matter how many times we inline the
894 containing function. Similarly for globals from an outer
898 /* Remap the declaration. */
899 new_decl
= remap_decl (*tp
, id
);
900 gcc_assert (new_decl
);
901 /* Replace this variable with the copy. */
902 STRIP_TYPE_NOPS (new_decl
);
903 /* ??? The C++ frontend uses void * pointer zero to initialize
904 any other type. This confuses the middle-end type verification.
905 As cloned bodies do not go through gimplification again the fixup
906 there doesn't trigger. */
907 if (TREE_CODE (new_decl
) == INTEGER_CST
908 && !useless_type_conversion_p (TREE_TYPE (*tp
), TREE_TYPE (new_decl
)))
909 new_decl
= fold_convert (TREE_TYPE (*tp
), new_decl
);
913 else if (TREE_CODE (*tp
) == STATEMENT_LIST
)
915 else if (TREE_CODE (*tp
) == SAVE_EXPR
)
917 else if (TREE_CODE (*tp
) == LABEL_DECL
918 && (!DECL_CONTEXT (*tp
)
919 || decl_function_context (*tp
) == id
->src_fn
))
920 /* These may need to be remapped for EH handling. */
921 *tp
= remap_decl (*tp
, id
);
922 else if (TREE_CODE (*tp
) == FIELD_DECL
)
924 /* If the enclosing record type is variably_modified_type_p, the field
925 has already been remapped. Otherwise, it need not be. */
926 tree
*n
= id
->decl_map
->get (*tp
);
931 else if (TYPE_P (*tp
))
932 /* Types may need remapping as well. */
933 *tp
= remap_type (*tp
, id
);
934 else if (CONSTANT_CLASS_P (*tp
))
936 /* If this is a constant, we have to copy the node iff the type
937 will be remapped. copy_tree_r will not copy a constant. */
938 tree new_type
= remap_type (TREE_TYPE (*tp
), id
);
940 if (new_type
== TREE_TYPE (*tp
))
943 else if (TREE_CODE (*tp
) == INTEGER_CST
)
944 *tp
= wide_int_to_tree (new_type
, *tp
);
947 *tp
= copy_node (*tp
);
948 TREE_TYPE (*tp
) = new_type
;
953 /* Otherwise, just copy the node. Note that copy_tree_r already
954 knows not to copy VAR_DECLs, etc., so this is safe. */
956 if (TREE_CODE (*tp
) == MEM_REF
)
958 /* We need to re-canonicalize MEM_REFs from inline substitutions
959 that can happen when a pointer argument is an ADDR_EXPR.
960 Recurse here manually to allow that. */
961 tree ptr
= TREE_OPERAND (*tp
, 0);
962 tree type
= remap_type (TREE_TYPE (*tp
), id
);
964 walk_tree (&ptr
, remap_gimple_op_r
, data
, NULL
);
965 *tp
= fold_build2 (MEM_REF
, type
, ptr
, TREE_OPERAND (*tp
, 1));
966 TREE_THIS_VOLATILE (*tp
) = TREE_THIS_VOLATILE (old
);
967 TREE_SIDE_EFFECTS (*tp
) = TREE_SIDE_EFFECTS (old
);
968 TREE_NO_WARNING (*tp
) = TREE_NO_WARNING (old
);
969 if (MR_DEPENDENCE_CLIQUE (old
) != 0)
971 MR_DEPENDENCE_CLIQUE (*tp
)
972 = remap_dependence_clique (id
, MR_DEPENDENCE_CLIQUE (old
));
973 MR_DEPENDENCE_BASE (*tp
) = MR_DEPENDENCE_BASE (old
);
975 /* We cannot propagate the TREE_THIS_NOTRAP flag if we have
976 remapped a parameter as the property might be valid only
977 for the parameter itself. */
978 if (TREE_THIS_NOTRAP (old
)
979 && (!is_parm (TREE_OPERAND (old
, 0))
980 || (!id
->transform_parameter
&& is_parm (ptr
))))
981 TREE_THIS_NOTRAP (*tp
) = 1;
982 REF_REVERSE_STORAGE_ORDER (*tp
) = REF_REVERSE_STORAGE_ORDER (old
);
987 /* Here is the "usual case". Copy this tree node, and then
988 tweak some special cases. */
989 copy_tree_r (tp
, walk_subtrees
, NULL
);
991 if (TREE_CODE (*tp
) != OMP_CLAUSE
)
992 TREE_TYPE (*tp
) = remap_type (TREE_TYPE (*tp
), id
);
994 if (TREE_CODE (*tp
) == TARGET_EXPR
&& TREE_OPERAND (*tp
, 3))
996 /* The copied TARGET_EXPR has never been expanded, even if the
997 original node was expanded already. */
998 TREE_OPERAND (*tp
, 1) = TREE_OPERAND (*tp
, 3);
999 TREE_OPERAND (*tp
, 3) = NULL_TREE
;
1001 else if (TREE_CODE (*tp
) == ADDR_EXPR
)
1003 /* Variable substitution need not be simple. In particular,
1004 the MEM_REF substitution above. Make sure that
1005 TREE_CONSTANT and friends are up-to-date. */
1006 int invariant
= is_gimple_min_invariant (*tp
);
1007 walk_tree (&TREE_OPERAND (*tp
, 0), remap_gimple_op_r
, data
, NULL
);
1008 recompute_tree_invariant_for_addr_expr (*tp
);
1010 /* If this used to be invariant, but is not any longer,
1011 then regimplification is probably needed. */
1012 if (invariant
&& !is_gimple_min_invariant (*tp
))
1013 id
->regimplify
= true;
1019 /* Update the TREE_BLOCK for the cloned expr. */
1022 tree new_block
= id
->remapping_type_depth
== 0 ? id
->block
: NULL
;
1023 tree old_block
= TREE_BLOCK (*tp
);
1027 n
= id
->decl_map
->get (TREE_BLOCK (*tp
));
1031 TREE_SET_BLOCK (*tp
, new_block
);
1034 /* Keep iterating. */
1039 /* Called from copy_body_id via walk_tree. DATA is really a
1040 `copy_body_data *'. */
1043 copy_tree_body_r (tree
*tp
, int *walk_subtrees
, void *data
)
1045 copy_body_data
*id
= (copy_body_data
*) data
;
1046 tree fn
= id
->src_fn
;
1049 /* Begin by recognizing trees that we'll completely rewrite for the
1050 inlining context. Our output for these trees is completely
1051 different from out input (e.g. RETURN_EXPR is deleted, and morphs
1052 into an edge). Further down, we'll handle trees that get
1053 duplicated and/or tweaked. */
1055 /* When requested, RETURN_EXPRs should be transformed to just the
1056 contained MODIFY_EXPR. The branch semantics of the return will
1057 be handled elsewhere by manipulating the CFG rather than a statement. */
1058 if (TREE_CODE (*tp
) == RETURN_EXPR
&& id
->transform_return_to_modify
)
1060 tree assignment
= TREE_OPERAND (*tp
, 0);
1062 /* If we're returning something, just turn that into an
1063 assignment into the equivalent of the original RESULT_DECL.
1064 If the "assignment" is just the result decl, the result
1065 decl has already been set (e.g. a recent "foo (&result_decl,
1066 ...)"); just toss the entire RETURN_EXPR. */
1067 if (assignment
&& TREE_CODE (assignment
) == MODIFY_EXPR
)
1069 /* Replace the RETURN_EXPR with (a copy of) the
1070 MODIFY_EXPR hanging underneath. */
1071 *tp
= copy_node (assignment
);
1073 else /* Else the RETURN_EXPR returns no value. */
1076 return (tree
) (void *)1;
1079 else if (TREE_CODE (*tp
) == SSA_NAME
)
1081 *tp
= remap_ssa_name (*tp
, id
);
1086 /* Local variables and labels need to be replaced by equivalent
1087 variables. We don't want to copy static variables; there's only
1088 one of those, no matter how many times we inline the containing
1089 function. Similarly for globals from an outer function. */
1090 else if (auto_var_in_fn_p (*tp
, fn
))
1094 /* Remap the declaration. */
1095 new_decl
= remap_decl (*tp
, id
);
1096 gcc_assert (new_decl
);
1097 /* Replace this variable with the copy. */
1098 STRIP_TYPE_NOPS (new_decl
);
1102 else if (TREE_CODE (*tp
) == STATEMENT_LIST
)
1103 copy_statement_list (tp
);
1104 else if (TREE_CODE (*tp
) == SAVE_EXPR
1105 || TREE_CODE (*tp
) == TARGET_EXPR
)
1106 remap_save_expr (tp
, id
->decl_map
, walk_subtrees
);
1107 else if (TREE_CODE (*tp
) == LABEL_DECL
1108 && (! DECL_CONTEXT (*tp
)
1109 || decl_function_context (*tp
) == id
->src_fn
))
1110 /* These may need to be remapped for EH handling. */
1111 *tp
= remap_decl (*tp
, id
);
1112 else if (TREE_CODE (*tp
) == BIND_EXPR
)
1113 copy_bind_expr (tp
, walk_subtrees
, id
);
1114 /* Types may need remapping as well. */
1115 else if (TYPE_P (*tp
))
1116 *tp
= remap_type (*tp
, id
);
1118 /* If this is a constant, we have to copy the node iff the type will be
1119 remapped. copy_tree_r will not copy a constant. */
1120 else if (CONSTANT_CLASS_P (*tp
))
1122 tree new_type
= remap_type (TREE_TYPE (*tp
), id
);
1124 if (new_type
== TREE_TYPE (*tp
))
1127 else if (TREE_CODE (*tp
) == INTEGER_CST
)
1128 *tp
= wide_int_to_tree (new_type
, *tp
);
1131 *tp
= copy_node (*tp
);
1132 TREE_TYPE (*tp
) = new_type
;
1136 /* Otherwise, just copy the node. Note that copy_tree_r already
1137 knows not to copy VAR_DECLs, etc., so this is safe. */
1140 /* Here we handle trees that are not completely rewritten.
1141 First we detect some inlining-induced bogosities for
1143 if (TREE_CODE (*tp
) == MODIFY_EXPR
1144 && TREE_OPERAND (*tp
, 0) == TREE_OPERAND (*tp
, 1)
1145 && (auto_var_in_fn_p (TREE_OPERAND (*tp
, 0), fn
)))
1147 /* Some assignments VAR = VAR; don't generate any rtl code
1148 and thus don't count as variable modification. Avoid
1149 keeping bogosities like 0 = 0. */
1150 tree decl
= TREE_OPERAND (*tp
, 0), value
;
1153 n
= id
->decl_map
->get (decl
);
1157 STRIP_TYPE_NOPS (value
);
1158 if (TREE_CONSTANT (value
) || TREE_READONLY (value
))
1160 *tp
= build_empty_stmt (EXPR_LOCATION (*tp
));
1161 return copy_tree_body_r (tp
, walk_subtrees
, data
);
1165 else if (TREE_CODE (*tp
) == INDIRECT_REF
)
1167 /* Get rid of *& from inline substitutions that can happen when a
1168 pointer argument is an ADDR_EXPR. */
1169 tree decl
= TREE_OPERAND (*tp
, 0);
1170 tree
*n
= id
->decl_map
->get (decl
);
1173 /* If we happen to get an ADDR_EXPR in n->value, strip
1174 it manually here as we'll eventually get ADDR_EXPRs
1175 which lie about their types pointed to. In this case
1176 build_fold_indirect_ref wouldn't strip the INDIRECT_REF,
1177 but we absolutely rely on that. As fold_indirect_ref
1178 does other useful transformations, try that first, though. */
1179 tree type
= TREE_TYPE (*tp
);
1180 tree ptr
= id
->do_not_unshare
? *n
: unshare_expr (*n
);
1182 *tp
= gimple_fold_indirect_ref (ptr
);
1185 if (TREE_CODE (ptr
) == ADDR_EXPR
)
1188 = fold_indirect_ref_1 (EXPR_LOCATION (ptr
), type
, ptr
);
1189 /* ??? We should either assert here or build
1190 a VIEW_CONVERT_EXPR instead of blindly leaking
1191 incompatible types to our IL. */
1193 *tp
= TREE_OPERAND (ptr
, 0);
1197 *tp
= build1 (INDIRECT_REF
, type
, ptr
);
1198 TREE_THIS_VOLATILE (*tp
) = TREE_THIS_VOLATILE (old
);
1199 TREE_SIDE_EFFECTS (*tp
) = TREE_SIDE_EFFECTS (old
);
1200 TREE_READONLY (*tp
) = TREE_READONLY (old
);
1201 /* We cannot propagate the TREE_THIS_NOTRAP flag if we
1202 have remapped a parameter as the property might be
1203 valid only for the parameter itself. */
1204 if (TREE_THIS_NOTRAP (old
)
1205 && (!is_parm (TREE_OPERAND (old
, 0))
1206 || (!id
->transform_parameter
&& is_parm (ptr
))))
1207 TREE_THIS_NOTRAP (*tp
) = 1;
1214 else if (TREE_CODE (*tp
) == MEM_REF
)
1216 /* We need to re-canonicalize MEM_REFs from inline substitutions
1217 that can happen when a pointer argument is an ADDR_EXPR.
1218 Recurse here manually to allow that. */
1219 tree ptr
= TREE_OPERAND (*tp
, 0);
1220 tree type
= remap_type (TREE_TYPE (*tp
), id
);
1222 walk_tree (&ptr
, copy_tree_body_r
, data
, NULL
);
1223 *tp
= fold_build2 (MEM_REF
, type
, ptr
, TREE_OPERAND (*tp
, 1));
1224 TREE_THIS_VOLATILE (*tp
) = TREE_THIS_VOLATILE (old
);
1225 TREE_SIDE_EFFECTS (*tp
) = TREE_SIDE_EFFECTS (old
);
1226 TREE_NO_WARNING (*tp
) = TREE_NO_WARNING (old
);
1227 if (MR_DEPENDENCE_CLIQUE (old
) != 0)
1229 MR_DEPENDENCE_CLIQUE (*tp
)
1230 = remap_dependence_clique (id
, MR_DEPENDENCE_CLIQUE (old
));
1231 MR_DEPENDENCE_BASE (*tp
) = MR_DEPENDENCE_BASE (old
);
1233 /* We cannot propagate the TREE_THIS_NOTRAP flag if we have
1234 remapped a parameter as the property might be valid only
1235 for the parameter itself. */
1236 if (TREE_THIS_NOTRAP (old
)
1237 && (!is_parm (TREE_OPERAND (old
, 0))
1238 || (!id
->transform_parameter
&& is_parm (ptr
))))
1239 TREE_THIS_NOTRAP (*tp
) = 1;
1240 REF_REVERSE_STORAGE_ORDER (*tp
) = REF_REVERSE_STORAGE_ORDER (old
);
1245 /* Here is the "usual case". Copy this tree node, and then
1246 tweak some special cases. */
1247 copy_tree_r (tp
, walk_subtrees
, NULL
);
1249 /* If EXPR has block defined, map it to newly constructed block.
1250 When inlining we want EXPRs without block appear in the block
1251 of function call if we are not remapping a type. */
1254 new_block
= id
->remapping_type_depth
== 0 ? id
->block
: NULL
;
1255 if (TREE_BLOCK (*tp
))
1258 n
= id
->decl_map
->get (TREE_BLOCK (*tp
));
1262 TREE_SET_BLOCK (*tp
, new_block
);
1265 if (TREE_CODE (*tp
) != OMP_CLAUSE
)
1266 TREE_TYPE (*tp
) = remap_type (TREE_TYPE (*tp
), id
);
1268 /* The copied TARGET_EXPR has never been expanded, even if the
1269 original node was expanded already. */
1270 if (TREE_CODE (*tp
) == TARGET_EXPR
&& TREE_OPERAND (*tp
, 3))
1272 TREE_OPERAND (*tp
, 1) = TREE_OPERAND (*tp
, 3);
1273 TREE_OPERAND (*tp
, 3) = NULL_TREE
;
1276 /* Variable substitution need not be simple. In particular, the
1277 INDIRECT_REF substitution above. Make sure that TREE_CONSTANT
1278 and friends are up-to-date. */
1279 else if (TREE_CODE (*tp
) == ADDR_EXPR
)
1281 int invariant
= is_gimple_min_invariant (*tp
);
1282 walk_tree (&TREE_OPERAND (*tp
, 0), copy_tree_body_r
, id
, NULL
);
1284 /* Handle the case where we substituted an INDIRECT_REF
1285 into the operand of the ADDR_EXPR. */
1286 if (TREE_CODE (TREE_OPERAND (*tp
, 0)) == INDIRECT_REF
)
1288 tree t
= TREE_OPERAND (TREE_OPERAND (*tp
, 0), 0);
1289 if (TREE_TYPE (t
) != TREE_TYPE (*tp
))
1290 t
= fold_convert (remap_type (TREE_TYPE (*tp
), id
), t
);
1294 recompute_tree_invariant_for_addr_expr (*tp
);
1296 /* If this used to be invariant, but is not any longer,
1297 then regimplification is probably needed. */
1298 if (invariant
&& !is_gimple_min_invariant (*tp
))
1299 id
->regimplify
= true;
1305 /* Keep iterating. */
1309 /* Helper for remap_gimple_stmt. Given an EH region number for the
1310 source function, map that to the duplicate EH region number in
1311 the destination function. */
1314 remap_eh_region_nr (int old_nr
, copy_body_data
*id
)
1316 eh_region old_r
, new_r
;
1318 old_r
= get_eh_region_from_number_fn (id
->src_cfun
, old_nr
);
1319 new_r
= static_cast<eh_region
> (*id
->eh_map
->get (old_r
));
1321 return new_r
->index
;
1324 /* Similar, but operate on INTEGER_CSTs. */
1327 remap_eh_region_tree_nr (tree old_t_nr
, copy_body_data
*id
)
1331 old_nr
= tree_to_shwi (old_t_nr
);
1332 new_nr
= remap_eh_region_nr (old_nr
, id
);
1334 return build_int_cst (integer_type_node
, new_nr
);
1337 /* Helper for copy_bb. Remap statement STMT using the inlining
1338 information in ID. Return the new statement copy. */
1341 remap_gimple_stmt (gimple
*stmt
, copy_body_data
*id
)
1343 gimple
*copy
= NULL
;
1344 struct walk_stmt_info wi
;
1345 bool skip_first
= false;
1346 gimple_seq stmts
= NULL
;
1348 if (is_gimple_debug (stmt
)
1349 && !opt_for_fn (id
->dst_fn
, flag_var_tracking_assignments
))
1352 /* Begin by recognizing trees that we'll completely rewrite for the
1353 inlining context. Our output for these trees is completely
1354 different from out input (e.g. RETURN_EXPR is deleted, and morphs
1355 into an edge). Further down, we'll handle trees that get
1356 duplicated and/or tweaked. */
1358 /* When requested, GIMPLE_RETURNs should be transformed to just the
1359 contained GIMPLE_ASSIGN. The branch semantics of the return will
1360 be handled elsewhere by manipulating the CFG rather than the
1362 if (gimple_code (stmt
) == GIMPLE_RETURN
&& id
->transform_return_to_modify
)
1364 tree retval
= gimple_return_retval (as_a
<greturn
*> (stmt
));
1365 tree retbnd
= gimple_return_retbnd (stmt
);
1366 tree bndslot
= id
->retbnd
;
1368 if (retbnd
&& bndslot
)
1370 gimple
*bndcopy
= gimple_build_assign (bndslot
, retbnd
);
1371 memset (&wi
, 0, sizeof (wi
));
1373 walk_gimple_op (bndcopy
, remap_gimple_op_r
, &wi
);
1374 gimple_seq_add_stmt (&stmts
, bndcopy
);
1377 /* If we're returning something, just turn that into an
1378 assignment into the equivalent of the original RESULT_DECL.
1379 If RETVAL is just the result decl, the result decl has
1380 already been set (e.g. a recent "foo (&result_decl, ...)");
1381 just toss the entire GIMPLE_RETURN. */
1383 && (TREE_CODE (retval
) != RESULT_DECL
1384 && (TREE_CODE (retval
) != SSA_NAME
1385 || ! SSA_NAME_VAR (retval
)
1386 || TREE_CODE (SSA_NAME_VAR (retval
)) != RESULT_DECL
)))
1388 copy
= gimple_build_assign (id
->do_not_unshare
1389 ? id
->retvar
: unshare_expr (id
->retvar
),
1391 /* id->retvar is already substituted. Skip it on later remapping. */
1394 /* We need to copy bounds if return structure with pointers into
1395 instrumented function. */
1396 if (chkp_function_instrumented_p (id
->dst_fn
)
1398 && !BOUNDED_P (id
->retvar
)
1399 && chkp_type_has_pointer (TREE_TYPE (id
->retvar
)))
1400 id
->assign_stmts
.safe_push (copy
);
1406 else if (gimple_has_substatements (stmt
))
1410 /* When cloning bodies from the C++ front end, we will be handed bodies
1411 in High GIMPLE form. Handle here all the High GIMPLE statements that
1412 have embedded statements. */
1413 switch (gimple_code (stmt
))
1416 copy
= copy_gimple_bind (as_a
<gbind
*> (stmt
), id
);
1421 gcatch
*catch_stmt
= as_a
<gcatch
*> (stmt
);
1422 s1
= remap_gimple_seq (gimple_catch_handler (catch_stmt
), id
);
1423 copy
= gimple_build_catch (gimple_catch_types (catch_stmt
), s1
);
1427 case GIMPLE_EH_FILTER
:
1428 s1
= remap_gimple_seq (gimple_eh_filter_failure (stmt
), id
);
1429 copy
= gimple_build_eh_filter (gimple_eh_filter_types (stmt
), s1
);
1433 s1
= remap_gimple_seq (gimple_try_eval (stmt
), id
);
1434 s2
= remap_gimple_seq (gimple_try_cleanup (stmt
), id
);
1435 copy
= gimple_build_try (s1
, s2
, gimple_try_kind (stmt
));
1438 case GIMPLE_WITH_CLEANUP_EXPR
:
1439 s1
= remap_gimple_seq (gimple_wce_cleanup (stmt
), id
);
1440 copy
= gimple_build_wce (s1
);
1443 case GIMPLE_OMP_PARALLEL
:
1445 gomp_parallel
*omp_par_stmt
= as_a
<gomp_parallel
*> (stmt
);
1446 s1
= remap_gimple_seq (gimple_omp_body (omp_par_stmt
), id
);
1447 copy
= gimple_build_omp_parallel
1449 gimple_omp_parallel_clauses (omp_par_stmt
),
1450 gimple_omp_parallel_child_fn (omp_par_stmt
),
1451 gimple_omp_parallel_data_arg (omp_par_stmt
));
1455 case GIMPLE_OMP_TASK
:
1456 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1457 copy
= gimple_build_omp_task
1459 gimple_omp_task_clauses (stmt
),
1460 gimple_omp_task_child_fn (stmt
),
1461 gimple_omp_task_data_arg (stmt
),
1462 gimple_omp_task_copy_fn (stmt
),
1463 gimple_omp_task_arg_size (stmt
),
1464 gimple_omp_task_arg_align (stmt
));
1467 case GIMPLE_OMP_FOR
:
1468 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1469 s2
= remap_gimple_seq (gimple_omp_for_pre_body (stmt
), id
);
1470 copy
= gimple_build_omp_for (s1
, gimple_omp_for_kind (stmt
),
1471 gimple_omp_for_clauses (stmt
),
1472 gimple_omp_for_collapse (stmt
), s2
);
1475 for (i
= 0; i
< gimple_omp_for_collapse (stmt
); i
++)
1477 gimple_omp_for_set_index (copy
, i
,
1478 gimple_omp_for_index (stmt
, i
));
1479 gimple_omp_for_set_initial (copy
, i
,
1480 gimple_omp_for_initial (stmt
, i
));
1481 gimple_omp_for_set_final (copy
, i
,
1482 gimple_omp_for_final (stmt
, i
));
1483 gimple_omp_for_set_incr (copy
, i
,
1484 gimple_omp_for_incr (stmt
, i
));
1485 gimple_omp_for_set_cond (copy
, i
,
1486 gimple_omp_for_cond (stmt
, i
));
1491 case GIMPLE_OMP_MASTER
:
1492 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1493 copy
= gimple_build_omp_master (s1
);
1496 case GIMPLE_OMP_TASKGROUP
:
1497 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1498 copy
= gimple_build_omp_taskgroup (s1
);
1501 case GIMPLE_OMP_ORDERED
:
1502 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1503 copy
= gimple_build_omp_ordered
1505 gimple_omp_ordered_clauses (as_a
<gomp_ordered
*> (stmt
)));
1508 case GIMPLE_OMP_SECTION
:
1509 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1510 copy
= gimple_build_omp_section (s1
);
1513 case GIMPLE_OMP_SECTIONS
:
1514 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1515 copy
= gimple_build_omp_sections
1516 (s1
, gimple_omp_sections_clauses (stmt
));
1519 case GIMPLE_OMP_SINGLE
:
1520 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1521 copy
= gimple_build_omp_single
1522 (s1
, gimple_omp_single_clauses (stmt
));
1525 case GIMPLE_OMP_TARGET
:
1526 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1527 copy
= gimple_build_omp_target
1528 (s1
, gimple_omp_target_kind (stmt
),
1529 gimple_omp_target_clauses (stmt
));
1532 case GIMPLE_OMP_TEAMS
:
1533 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1534 copy
= gimple_build_omp_teams
1535 (s1
, gimple_omp_teams_clauses (stmt
));
1538 case GIMPLE_OMP_CRITICAL
:
1539 s1
= remap_gimple_seq (gimple_omp_body (stmt
), id
);
1540 copy
= gimple_build_omp_critical (s1
,
1541 gimple_omp_critical_name
1542 (as_a
<gomp_critical
*> (stmt
)),
1543 gimple_omp_critical_clauses
1544 (as_a
<gomp_critical
*> (stmt
)));
1547 case GIMPLE_TRANSACTION
:
1549 gtransaction
*old_trans_stmt
= as_a
<gtransaction
*> (stmt
);
1550 gtransaction
*new_trans_stmt
;
1551 s1
= remap_gimple_seq (gimple_transaction_body (old_trans_stmt
),
1553 copy
= new_trans_stmt
= gimple_build_transaction (s1
);
1554 gimple_transaction_set_subcode (new_trans_stmt
,
1555 gimple_transaction_subcode (old_trans_stmt
));
1556 gimple_transaction_set_label_norm (new_trans_stmt
,
1557 gimple_transaction_label_norm (old_trans_stmt
));
1558 gimple_transaction_set_label_uninst (new_trans_stmt
,
1559 gimple_transaction_label_uninst (old_trans_stmt
));
1560 gimple_transaction_set_label_over (new_trans_stmt
,
1561 gimple_transaction_label_over (old_trans_stmt
));
1571 if (gimple_assign_copy_p (stmt
)
1572 && gimple_assign_lhs (stmt
) == gimple_assign_rhs1 (stmt
)
1573 && auto_var_in_fn_p (gimple_assign_lhs (stmt
), id
->src_fn
))
1575 /* Here we handle statements that are not completely rewritten.
1576 First we detect some inlining-induced bogosities for
1579 /* Some assignments VAR = VAR; don't generate any rtl code
1580 and thus don't count as variable modification. Avoid
1581 keeping bogosities like 0 = 0. */
1582 tree decl
= gimple_assign_lhs (stmt
), value
;
1585 n
= id
->decl_map
->get (decl
);
1589 STRIP_TYPE_NOPS (value
);
1590 if (TREE_CONSTANT (value
) || TREE_READONLY (value
))
1595 /* For *ptr_N ={v} {CLOBBER}, if ptr_N is SSA_NAME defined
1596 in a block that we aren't copying during tree_function_versioning,
1597 just drop the clobber stmt. */
1598 if (id
->blocks_to_copy
&& gimple_clobber_p (stmt
))
1600 tree lhs
= gimple_assign_lhs (stmt
);
1601 if (TREE_CODE (lhs
) == MEM_REF
1602 && TREE_CODE (TREE_OPERAND (lhs
, 0)) == SSA_NAME
)
1604 gimple
*def_stmt
= SSA_NAME_DEF_STMT (TREE_OPERAND (lhs
, 0));
1605 if (gimple_bb (def_stmt
)
1606 && !bitmap_bit_p (id
->blocks_to_copy
,
1607 gimple_bb (def_stmt
)->index
))
1612 if (gimple_debug_bind_p (stmt
))
1615 = gimple_build_debug_bind (gimple_debug_bind_get_var (stmt
),
1616 gimple_debug_bind_get_value (stmt
),
1618 id
->debug_stmts
.safe_push (copy
);
1619 gimple_seq_add_stmt (&stmts
, copy
);
1622 if (gimple_debug_source_bind_p (stmt
))
1624 gdebug
*copy
= gimple_build_debug_source_bind
1625 (gimple_debug_source_bind_get_var (stmt
),
1626 gimple_debug_source_bind_get_value (stmt
),
1628 id
->debug_stmts
.safe_push (copy
);
1629 gimple_seq_add_stmt (&stmts
, copy
);
1633 /* Create a new deep copy of the statement. */
1634 copy
= gimple_copy (stmt
);
1636 /* Clear flags that need revisiting. */
1637 if (gcall
*call_stmt
= dyn_cast
<gcall
*> (copy
))
1639 if (gimple_call_tail_p (call_stmt
))
1640 gimple_call_set_tail (call_stmt
, false);
1641 if (gimple_call_from_thunk_p (call_stmt
))
1642 gimple_call_set_from_thunk (call_stmt
, false);
1643 if (gimple_call_internal_p (call_stmt
))
1644 switch (gimple_call_internal_fn (call_stmt
))
1646 case IFN_GOMP_SIMD_LANE
:
1647 case IFN_GOMP_SIMD_VF
:
1648 case IFN_GOMP_SIMD_LAST_LANE
:
1649 case IFN_GOMP_SIMD_ORDERED_START
:
1650 case IFN_GOMP_SIMD_ORDERED_END
:
1651 DECL_STRUCT_FUNCTION (id
->dst_fn
)->has_simduid_loops
= true;
1658 /* Remap the region numbers for __builtin_eh_{pointer,filter},
1659 RESX and EH_DISPATCH. */
1661 switch (gimple_code (copy
))
1665 tree r
, fndecl
= gimple_call_fndecl (copy
);
1666 if (fndecl
&& DECL_BUILT_IN_CLASS (fndecl
) == BUILT_IN_NORMAL
)
1667 switch (DECL_FUNCTION_CODE (fndecl
))
1669 case BUILT_IN_EH_COPY_VALUES
:
1670 r
= gimple_call_arg (copy
, 1);
1671 r
= remap_eh_region_tree_nr (r
, id
);
1672 gimple_call_set_arg (copy
, 1, r
);
1675 case BUILT_IN_EH_POINTER
:
1676 case BUILT_IN_EH_FILTER
:
1677 r
= gimple_call_arg (copy
, 0);
1678 r
= remap_eh_region_tree_nr (r
, id
);
1679 gimple_call_set_arg (copy
, 0, r
);
1686 /* Reset alias info if we didn't apply measures to
1687 keep it valid over inlining by setting DECL_PT_UID. */
1688 if (!id
->src_cfun
->gimple_df
1689 || !id
->src_cfun
->gimple_df
->ipa_pta
)
1690 gimple_call_reset_alias_info (as_a
<gcall
*> (copy
));
1696 gresx
*resx_stmt
= as_a
<gresx
*> (copy
);
1697 int r
= gimple_resx_region (resx_stmt
);
1698 r
= remap_eh_region_nr (r
, id
);
1699 gimple_resx_set_region (resx_stmt
, r
);
1703 case GIMPLE_EH_DISPATCH
:
1705 geh_dispatch
*eh_dispatch
= as_a
<geh_dispatch
*> (copy
);
1706 int r
= gimple_eh_dispatch_region (eh_dispatch
);
1707 r
= remap_eh_region_nr (r
, id
);
1708 gimple_eh_dispatch_set_region (eh_dispatch
, r
);
1717 /* If STMT has a block defined, map it to the newly constructed
1719 if (gimple_block (copy
))
1722 n
= id
->decl_map
->get (gimple_block (copy
));
1724 gimple_set_block (copy
, *n
);
1727 if (gimple_debug_bind_p (copy
) || gimple_debug_source_bind_p (copy
))
1729 gimple_seq_add_stmt (&stmts
, copy
);
1733 /* Remap all the operands in COPY. */
1734 memset (&wi
, 0, sizeof (wi
));
1737 walk_tree (gimple_op_ptr (copy
, 1), remap_gimple_op_r
, &wi
, NULL
);
1739 walk_gimple_op (copy
, remap_gimple_op_r
, &wi
);
1741 /* Clear the copied virtual operands. We are not remapping them here
1742 but are going to recreate them from scratch. */
1743 if (gimple_has_mem_ops (copy
))
1745 gimple_set_vdef (copy
, NULL_TREE
);
1746 gimple_set_vuse (copy
, NULL_TREE
);
1749 gimple_seq_add_stmt (&stmts
, copy
);
1754 /* Copy basic block, scale profile accordingly. Edges will be taken care of
1758 copy_bb (copy_body_data
*id
, basic_block bb
, int frequency_scale
,
1759 gcov_type count_scale
)
1761 gimple_stmt_iterator gsi
, copy_gsi
, seq_gsi
;
1762 basic_block copy_basic_block
;
1767 /* Search for previous copied basic block. */
1770 prev
= prev
->prev_bb
;
1772 /* create_basic_block() will append every new block to
1773 basic_block_info automatically. */
1774 copy_basic_block
= create_basic_block (NULL
, (basic_block
) prev
->aux
);
1775 copy_basic_block
->count
= apply_scale (bb
->count
, count_scale
);
1777 /* We are going to rebuild frequencies from scratch. These values
1778 have just small importance to drive canonicalize_loop_headers. */
1779 freq
= apply_scale ((gcov_type
)bb
->frequency
, frequency_scale
);
1781 /* We recompute frequencies after inlining, so this is quite safe. */
1782 if (freq
> BB_FREQ_MAX
)
1784 copy_basic_block
->frequency
= freq
;
1786 copy_gsi
= gsi_start_bb (copy_basic_block
);
1788 for (gsi
= gsi_start_bb (bb
); !gsi_end_p (gsi
); gsi_next (&gsi
))
1791 gimple
*stmt
= gsi_stmt (gsi
);
1792 gimple
*orig_stmt
= stmt
;
1793 gimple_stmt_iterator stmts_gsi
;
1794 bool stmt_added
= false;
1796 id
->regimplify
= false;
1797 stmts
= remap_gimple_stmt (stmt
, id
);
1799 if (gimple_seq_empty_p (stmts
))
1804 for (stmts_gsi
= gsi_start (stmts
);
1805 !gsi_end_p (stmts_gsi
); )
1807 stmt
= gsi_stmt (stmts_gsi
);
1809 /* Advance iterator now before stmt is moved to seq_gsi. */
1810 gsi_next (&stmts_gsi
);
1812 if (gimple_nop_p (stmt
))
1815 gimple_duplicate_stmt_histograms (cfun
, stmt
, id
->src_cfun
,
1818 /* With return slot optimization we can end up with
1819 non-gimple (foo *)&this->m, fix that here. */
1820 if (is_gimple_assign (stmt
)
1821 && CONVERT_EXPR_CODE_P (gimple_assign_rhs_code (stmt
))
1822 && !is_gimple_val (gimple_assign_rhs1 (stmt
)))
1825 new_rhs
= force_gimple_operand_gsi (&seq_gsi
,
1826 gimple_assign_rhs1 (stmt
),
1828 GSI_CONTINUE_LINKING
);
1829 gimple_assign_set_rhs1 (stmt
, new_rhs
);
1830 id
->regimplify
= false;
1833 gsi_insert_after (&seq_gsi
, stmt
, GSI_NEW_STMT
);
1836 gimple_regimplify_operands (stmt
, &seq_gsi
);
1844 /* If copy_basic_block has been empty at the start of this iteration,
1845 call gsi_start_bb again to get at the newly added statements. */
1846 if (gsi_end_p (copy_gsi
))
1847 copy_gsi
= gsi_start_bb (copy_basic_block
);
1849 gsi_next (©_gsi
);
1851 /* Process the new statement. The call to gimple_regimplify_operands
1852 possibly turned the statement into multiple statements, we
1853 need to process all of them. */
1859 stmt
= gsi_stmt (copy_gsi
);
1860 call_stmt
= dyn_cast
<gcall
*> (stmt
);
1862 && gimple_call_va_arg_pack_p (call_stmt
)
1865 /* __builtin_va_arg_pack () should be replaced by
1866 all arguments corresponding to ... in the caller. */
1870 size_t nargs
= gimple_call_num_args (id
->call_stmt
);
1871 size_t n
, i
, nargs_to_copy
;
1872 bool remove_bounds
= false;
1874 for (p
= DECL_ARGUMENTS (id
->src_fn
); p
; p
= DECL_CHAIN (p
))
1877 /* Bounds should be removed from arg pack in case
1878 we handle not instrumented call in instrumented
1880 nargs_to_copy
= nargs
;
1881 if (gimple_call_with_bounds_p (id
->call_stmt
)
1882 && !gimple_call_with_bounds_p (stmt
))
1884 for (i
= gimple_call_num_args (id
->call_stmt
) - nargs
;
1885 i
< gimple_call_num_args (id
->call_stmt
);
1887 if (POINTER_BOUNDS_P (gimple_call_arg (id
->call_stmt
, i
)))
1889 remove_bounds
= true;
1892 /* Create the new array of arguments. */
1893 n
= nargs_to_copy
+ gimple_call_num_args (call_stmt
);
1894 argarray
.create (n
);
1895 argarray
.safe_grow_cleared (n
);
1897 /* Copy all the arguments before '...' */
1898 memcpy (argarray
.address (),
1899 gimple_call_arg_ptr (call_stmt
, 0),
1900 gimple_call_num_args (call_stmt
) * sizeof (tree
));
1904 /* Append the rest of arguments removing bounds. */
1905 unsigned cur
= gimple_call_num_args (call_stmt
);
1906 i
= gimple_call_num_args (id
->call_stmt
) - nargs
;
1907 for (i
= gimple_call_num_args (id
->call_stmt
) - nargs
;
1908 i
< gimple_call_num_args (id
->call_stmt
);
1910 if (!POINTER_BOUNDS_P (gimple_call_arg (id
->call_stmt
, i
)))
1911 argarray
[cur
++] = gimple_call_arg (id
->call_stmt
, i
);
1912 gcc_assert (cur
== n
);
1916 /* Append the arguments passed in '...' */
1917 memcpy (argarray
.address () + gimple_call_num_args (call_stmt
),
1918 gimple_call_arg_ptr (id
->call_stmt
, 0)
1919 + (gimple_call_num_args (id
->call_stmt
) - nargs
),
1920 nargs
* sizeof (tree
));
1923 new_call
= gimple_build_call_vec (gimple_call_fn (call_stmt
),
1926 argarray
.release ();
1928 /* Copy all GIMPLE_CALL flags, location and block, except
1929 GF_CALL_VA_ARG_PACK. */
1930 gimple_call_copy_flags (new_call
, call_stmt
);
1931 gimple_call_set_va_arg_pack (new_call
, false);
1932 gimple_set_location (new_call
, gimple_location (stmt
));
1933 gimple_set_block (new_call
, gimple_block (stmt
));
1934 gimple_call_set_lhs (new_call
, gimple_call_lhs (call_stmt
));
1936 gsi_replace (©_gsi
, new_call
, false);
1941 && (decl
= gimple_call_fndecl (stmt
))
1942 && DECL_BUILT_IN_CLASS (decl
) == BUILT_IN_NORMAL
1943 && DECL_FUNCTION_CODE (decl
) == BUILT_IN_VA_ARG_PACK_LEN
)
1945 /* __builtin_va_arg_pack_len () should be replaced by
1946 the number of anonymous arguments. */
1947 size_t nargs
= gimple_call_num_args (id
->call_stmt
), i
;
1951 for (p
= DECL_ARGUMENTS (id
->src_fn
); p
; p
= DECL_CHAIN (p
))
1954 /* For instrumented calls we should ignore bounds. */
1955 for (i
= gimple_call_num_args (id
->call_stmt
) - nargs
;
1956 i
< gimple_call_num_args (id
->call_stmt
);
1958 if (POINTER_BOUNDS_P (gimple_call_arg (id
->call_stmt
, i
)))
1961 count
= build_int_cst (integer_type_node
, nargs
);
1962 new_stmt
= gimple_build_assign (gimple_call_lhs (stmt
), count
);
1963 gsi_replace (©_gsi
, new_stmt
, false);
1968 && gimple_call_internal_p (stmt
)
1969 && gimple_call_internal_fn (stmt
) == IFN_TSAN_FUNC_EXIT
)
1971 /* Drop TSAN_FUNC_EXIT () internal calls during inlining. */
1972 gsi_remove (©_gsi
, false);
1976 /* Statements produced by inlining can be unfolded, especially
1977 when we constant propagated some operands. We can't fold
1978 them right now for two reasons:
1979 1) folding require SSA_NAME_DEF_STMTs to be correct
1980 2) we can't change function calls to builtins.
1981 So we just mark statement for later folding. We mark
1982 all new statements, instead just statements that has changed
1983 by some nontrivial substitution so even statements made
1984 foldable indirectly are updated. If this turns out to be
1985 expensive, copy_body can be told to watch for nontrivial
1987 if (id
->statements_to_fold
)
1988 id
->statements_to_fold
->add (stmt
);
1990 /* We're duplicating a CALL_EXPR. Find any corresponding
1991 callgraph edges and update or duplicate them. */
1992 if (gcall
*call_stmt
= dyn_cast
<gcall
*> (stmt
))
1994 struct cgraph_edge
*edge
;
1996 switch (id
->transform_call_graph_edges
)
1998 case CB_CGE_DUPLICATE
:
1999 edge
= id
->src_node
->get_edge (orig_stmt
);
2002 int edge_freq
= edge
->frequency
;
2004 struct cgraph_edge
*old_edge
= edge
;
2005 edge
= edge
->clone (id
->dst_node
, call_stmt
,
2007 REG_BR_PROB_BASE
, CGRAPH_FREQ_BASE
,
2009 /* We could also just rescale the frequency, but
2010 doing so would introduce roundoff errors and make
2011 verifier unhappy. */
2012 new_freq
= compute_call_stmt_bb_frequency (id
->dst_node
->decl
,
2015 /* Speculative calls consist of two edges - direct and indirect.
2016 Duplicate the whole thing and distribute frequencies accordingly. */
2017 if (edge
->speculative
)
2019 struct cgraph_edge
*direct
, *indirect
;
2020 struct ipa_ref
*ref
;
2022 gcc_assert (!edge
->indirect_unknown_callee
);
2023 old_edge
->speculative_call_info (direct
, indirect
, ref
);
2024 indirect
= indirect
->clone (id
->dst_node
, call_stmt
,
2026 REG_BR_PROB_BASE
, CGRAPH_FREQ_BASE
,
2028 if (old_edge
->frequency
+ indirect
->frequency
)
2030 edge
->frequency
= MIN (RDIV ((gcov_type
)new_freq
* old_edge
->frequency
,
2031 (old_edge
->frequency
+ indirect
->frequency
)),
2033 indirect
->frequency
= MIN (RDIV ((gcov_type
)new_freq
* indirect
->frequency
,
2034 (old_edge
->frequency
+ indirect
->frequency
)),
2037 id
->dst_node
->clone_reference (ref
, stmt
);
2041 edge
->frequency
= new_freq
;
2043 && profile_status_for_fn (cfun
) != PROFILE_ABSENT
2044 && (edge_freq
> edge
->frequency
+ 10
2045 || edge_freq
< edge
->frequency
- 10))
2047 fprintf (dump_file
, "Edge frequency estimated by "
2048 "cgraph %i diverge from inliner's estimate %i\n",
2052 "Orig bb: %i, orig bb freq %i, new bb freq %i\n",
2055 copy_basic_block
->frequency
);
2061 case CB_CGE_MOVE_CLONES
:
2062 id
->dst_node
->set_call_stmt_including_clones (orig_stmt
,
2064 edge
= id
->dst_node
->get_edge (stmt
);
2068 edge
= id
->dst_node
->get_edge (orig_stmt
);
2070 edge
->set_call_stmt (call_stmt
);
2077 /* Constant propagation on argument done during inlining
2078 may create new direct call. Produce an edge for it. */
2080 || (edge
->indirect_inlining_edge
2081 && id
->transform_call_graph_edges
== CB_CGE_MOVE_CLONES
))
2082 && id
->dst_node
->definition
2083 && (fn
= gimple_call_fndecl (stmt
)) != NULL
)
2085 struct cgraph_node
*dest
= cgraph_node::get_create (fn
);
2087 /* We have missing edge in the callgraph. This can happen
2088 when previous inlining turned an indirect call into a
2089 direct call by constant propagating arguments or we are
2090 producing dead clone (for further cloning). In all
2091 other cases we hit a bug (incorrect node sharing is the
2092 most common reason for missing edges). */
2093 gcc_assert (!dest
->definition
2094 || dest
->address_taken
2095 || !id
->src_node
->definition
2096 || !id
->dst_node
->definition
);
2097 if (id
->transform_call_graph_edges
== CB_CGE_MOVE_CLONES
)
2098 id
->dst_node
->create_edge_including_clones
2099 (dest
, orig_stmt
, call_stmt
, bb
->count
,
2100 compute_call_stmt_bb_frequency (id
->dst_node
->decl
,
2102 CIF_ORIGINALLY_INDIRECT_CALL
);
2104 id
->dst_node
->create_edge (dest
, call_stmt
,
2106 compute_call_stmt_bb_frequency
2107 (id
->dst_node
->decl
,
2108 copy_basic_block
))->inline_failed
2109 = CIF_ORIGINALLY_INDIRECT_CALL
;
2112 fprintf (dump_file
, "Created new direct edge to %s\n",
2117 notice_special_calls (as_a
<gcall
*> (stmt
));
2120 maybe_duplicate_eh_stmt_fn (cfun
, stmt
, id
->src_cfun
, orig_stmt
,
2121 id
->eh_map
, id
->eh_lp_nr
);
2123 gsi_next (©_gsi
);
2125 while (!gsi_end_p (copy_gsi
));
2127 copy_gsi
= gsi_last_bb (copy_basic_block
);
2130 return copy_basic_block
;
2133 /* Inserting Single Entry Multiple Exit region in SSA form into code in SSA
2134 form is quite easy, since dominator relationship for old basic blocks does
2137 There is however exception where inlining might change dominator relation
2138 across EH edges from basic block within inlined functions destinating
2139 to landing pads in function we inline into.
2141 The function fills in PHI_RESULTs of such PHI nodes if they refer
2142 to gimple regs. Otherwise, the function mark PHI_RESULT of such
2143 PHI nodes for renaming. For non-gimple regs, renaming is safe: the
2144 EH edges are abnormal and SSA_NAME_OCCURS_IN_ABNORMAL_PHI must be
2145 set, and this means that there will be no overlapping live ranges
2146 for the underlying symbol.
2148 This might change in future if we allow redirecting of EH edges and
2149 we might want to change way build CFG pre-inlining to include
2150 all the possible edges then. */
2152 update_ssa_across_abnormal_edges (basic_block bb
, basic_block ret_bb
,
2153 bool can_throw
, bool nonlocal_goto
)
2158 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
2160 || ((basic_block
)e
->dest
->aux
)->index
== ENTRY_BLOCK
)
2166 gcc_assert (e
->flags
& EDGE_EH
);
2169 gcc_assert (!(e
->flags
& EDGE_EH
));
2171 for (si
= gsi_start_phis (e
->dest
); !gsi_end_p (si
); gsi_next (&si
))
2177 /* For abnormal goto/call edges the receiver can be the
2178 ENTRY_BLOCK. Do not assert this cannot happen. */
2180 gcc_assert ((e
->flags
& EDGE_EH
)
2181 || SSA_NAME_OCCURS_IN_ABNORMAL_PHI (PHI_RESULT (phi
)));
2183 re
= find_edge (ret_bb
, e
->dest
);
2184 gcc_checking_assert (re
);
2185 gcc_assert ((re
->flags
& (EDGE_EH
| EDGE_ABNORMAL
))
2186 == (e
->flags
& (EDGE_EH
| EDGE_ABNORMAL
)));
2188 SET_USE (PHI_ARG_DEF_PTR_FROM_EDGE (phi
, e
),
2189 USE_FROM_PTR (PHI_ARG_DEF_PTR_FROM_EDGE (phi
, re
)));
2195 /* Copy edges from BB into its copy constructed earlier, scale profile
2196 accordingly. Edges will be taken care of later. Assume aux
2197 pointers to point to the copies of each BB. Return true if any
2198 debug stmts are left after a statement that must end the basic block. */
2201 copy_edges_for_bb (basic_block bb
, gcov_type count_scale
, basic_block ret_bb
,
2202 basic_block abnormal_goto_dest
)
2204 basic_block new_bb
= (basic_block
) bb
->aux
;
2207 gimple_stmt_iterator si
;
2209 bool need_debug_cleanup
= false;
2211 /* Use the indices from the original blocks to create edges for the
2213 FOR_EACH_EDGE (old_edge
, ei
, bb
->succs
)
2214 if (!(old_edge
->flags
& EDGE_EH
))
2218 flags
= old_edge
->flags
;
2220 /* Return edges do get a FALLTHRU flag when the get inlined. */
2221 if (old_edge
->dest
->index
== EXIT_BLOCK
2222 && !(old_edge
->flags
& (EDGE_TRUE_VALUE
|EDGE_FALSE_VALUE
|EDGE_FAKE
))
2223 && old_edge
->dest
->aux
!= EXIT_BLOCK_PTR_FOR_FN (cfun
))
2224 flags
|= EDGE_FALLTHRU
;
2225 new_edge
= make_edge (new_bb
, (basic_block
) old_edge
->dest
->aux
, flags
);
2226 new_edge
->count
= apply_scale (old_edge
->count
, count_scale
);
2227 new_edge
->probability
= old_edge
->probability
;
2230 if (bb
->index
== ENTRY_BLOCK
|| bb
->index
== EXIT_BLOCK
)
2233 for (si
= gsi_start_bb (new_bb
); !gsi_end_p (si
);)
2236 bool can_throw
, nonlocal_goto
;
2238 copy_stmt
= gsi_stmt (si
);
2239 if (!is_gimple_debug (copy_stmt
))
2240 update_stmt (copy_stmt
);
2242 /* Do this before the possible split_block. */
2245 /* If this tree could throw an exception, there are two
2246 cases where we need to add abnormal edge(s): the
2247 tree wasn't in a region and there is a "current
2248 region" in the caller; or the original tree had
2249 EH edges. In both cases split the block after the tree,
2250 and add abnormal edge(s) as needed; we need both
2251 those from the callee and the caller.
2252 We check whether the copy can throw, because the const
2253 propagation can change an INDIRECT_REF which throws
2254 into a COMPONENT_REF which doesn't. If the copy
2255 can throw, the original could also throw. */
2256 can_throw
= stmt_can_throw_internal (copy_stmt
);
2258 = (stmt_can_make_abnormal_goto (copy_stmt
)
2259 && !computed_goto_p (copy_stmt
));
2261 if (can_throw
|| nonlocal_goto
)
2263 if (!gsi_end_p (si
))
2265 while (!gsi_end_p (si
) && is_gimple_debug (gsi_stmt (si
)))
2268 need_debug_cleanup
= true;
2270 if (!gsi_end_p (si
))
2271 /* Note that bb's predecessor edges aren't necessarily
2272 right at this point; split_block doesn't care. */
2274 edge e
= split_block (new_bb
, copy_stmt
);
2277 new_bb
->aux
= e
->src
->aux
;
2278 si
= gsi_start_bb (new_bb
);
2282 if (gimple_code (copy_stmt
) == GIMPLE_EH_DISPATCH
)
2283 make_eh_dispatch_edges (as_a
<geh_dispatch
*> (copy_stmt
));
2285 make_eh_edges (copy_stmt
);
2287 /* If the call we inline cannot make abnormal goto do not add
2288 additional abnormal edges but only retain those already present
2289 in the original function body. */
2290 if (abnormal_goto_dest
== NULL
)
2291 nonlocal_goto
= false;
2294 basic_block copy_stmt_bb
= gimple_bb (copy_stmt
);
2296 if (get_abnormal_succ_dispatcher (copy_stmt_bb
))
2297 nonlocal_goto
= false;
2298 /* ABNORMAL_DISPATCHER (1) is for longjmp/setjmp or nonlocal gotos
2299 in OpenMP regions which aren't allowed to be left abnormally.
2300 So, no need to add abnormal edge in that case. */
2301 else if (is_gimple_call (copy_stmt
)
2302 && gimple_call_internal_p (copy_stmt
)
2303 && (gimple_call_internal_fn (copy_stmt
)
2304 == IFN_ABNORMAL_DISPATCHER
)
2305 && gimple_call_arg (copy_stmt
, 0) == boolean_true_node
)
2306 nonlocal_goto
= false;
2308 make_edge (copy_stmt_bb
, abnormal_goto_dest
, EDGE_ABNORMAL
);
2311 if ((can_throw
|| nonlocal_goto
)
2312 && gimple_in_ssa_p (cfun
))
2313 update_ssa_across_abnormal_edges (gimple_bb (copy_stmt
), ret_bb
,
2314 can_throw
, nonlocal_goto
);
2316 return need_debug_cleanup
;
2319 /* Copy the PHIs. All blocks and edges are copied, some blocks
2320 was possibly split and new outgoing EH edges inserted.
2321 BB points to the block of original function and AUX pointers links
2322 the original and newly copied blocks. */
2325 copy_phis_for_bb (basic_block bb
, copy_body_data
*id
)
2327 basic_block
const new_bb
= (basic_block
) bb
->aux
;
2332 bool inserted
= false;
2334 for (si
= gsi_start_phis (bb
); !gsi_end_p (si
); gsi_next (&si
))
2340 res
= PHI_RESULT (phi
);
2342 if (!virtual_operand_p (res
))
2344 walk_tree (&new_res
, copy_tree_body_r
, id
, NULL
);
2345 new_phi
= create_phi_node (new_res
, new_bb
);
2346 FOR_EACH_EDGE (new_edge
, ei
, new_bb
->preds
)
2348 edge old_edge
= find_edge ((basic_block
) new_edge
->src
->aux
, bb
);
2354 /* When doing partial cloning, we allow PHIs on the entry block
2355 as long as all the arguments are the same. Find any input
2356 edge to see argument to copy. */
2358 FOR_EACH_EDGE (old_edge
, ei2
, bb
->preds
)
2359 if (!old_edge
->src
->aux
)
2362 arg
= PHI_ARG_DEF_FROM_EDGE (phi
, old_edge
);
2364 walk_tree (&new_arg
, copy_tree_body_r
, id
, NULL
);
2365 gcc_assert (new_arg
);
2366 /* With return slot optimization we can end up with
2367 non-gimple (foo *)&this->m, fix that here. */
2368 if (TREE_CODE (new_arg
) != SSA_NAME
2369 && TREE_CODE (new_arg
) != FUNCTION_DECL
2370 && !is_gimple_val (new_arg
))
2372 gimple_seq stmts
= NULL
;
2373 new_arg
= force_gimple_operand (new_arg
, &stmts
, true, NULL
);
2374 gsi_insert_seq_on_edge (new_edge
, stmts
);
2377 locus
= gimple_phi_arg_location_from_edge (phi
, old_edge
);
2378 if (LOCATION_BLOCK (locus
))
2381 n
= id
->decl_map
->get (LOCATION_BLOCK (locus
));
2383 locus
= set_block (locus
, *n
);
2386 locus
= LOCATION_LOCUS (locus
);
2388 add_phi_arg (new_phi
, new_arg
, new_edge
, locus
);
2393 /* Commit the delayed edge insertions. */
2395 FOR_EACH_EDGE (new_edge
, ei
, new_bb
->preds
)
2396 gsi_commit_one_edge_insert (new_edge
, NULL
);
2400 /* Wrapper for remap_decl so it can be used as a callback. */
2403 remap_decl_1 (tree decl
, void *data
)
2405 return remap_decl (decl
, (copy_body_data
*) data
);
2408 /* Build struct function and associated datastructures for the new clone
2409 NEW_FNDECL to be build. CALLEE_FNDECL is the original. Function changes
2410 the cfun to the function of new_fndecl (and current_function_decl too). */
2413 initialize_cfun (tree new_fndecl
, tree callee_fndecl
, gcov_type count
)
2415 struct function
*src_cfun
= DECL_STRUCT_FUNCTION (callee_fndecl
);
2416 gcov_type count_scale
;
2418 if (!DECL_ARGUMENTS (new_fndecl
))
2419 DECL_ARGUMENTS (new_fndecl
) = DECL_ARGUMENTS (callee_fndecl
);
2420 if (!DECL_RESULT (new_fndecl
))
2421 DECL_RESULT (new_fndecl
) = DECL_RESULT (callee_fndecl
);
2423 if (ENTRY_BLOCK_PTR_FOR_FN (src_cfun
)->count
)
2425 = GCOV_COMPUTE_SCALE (count
,
2426 ENTRY_BLOCK_PTR_FOR_FN (src_cfun
)->count
);
2428 count_scale
= REG_BR_PROB_BASE
;
2430 /* Register specific tree functions. */
2431 gimple_register_cfg_hooks ();
2433 /* Get clean struct function. */
2434 push_struct_function (new_fndecl
);
2436 /* We will rebuild these, so just sanity check that they are empty. */
2437 gcc_assert (VALUE_HISTOGRAMS (cfun
) == NULL
);
2438 gcc_assert (cfun
->local_decls
== NULL
);
2439 gcc_assert (cfun
->cfg
== NULL
);
2440 gcc_assert (cfun
->decl
== new_fndecl
);
2442 /* Copy items we preserve during cloning. */
2443 cfun
->static_chain_decl
= src_cfun
->static_chain_decl
;
2444 cfun
->nonlocal_goto_save_area
= src_cfun
->nonlocal_goto_save_area
;
2445 cfun
->function_end_locus
= src_cfun
->function_end_locus
;
2446 cfun
->curr_properties
= src_cfun
->curr_properties
;
2447 cfun
->last_verified
= src_cfun
->last_verified
;
2448 cfun
->va_list_gpr_size
= src_cfun
->va_list_gpr_size
;
2449 cfun
->va_list_fpr_size
= src_cfun
->va_list_fpr_size
;
2450 cfun
->has_nonlocal_label
= src_cfun
->has_nonlocal_label
;
2451 cfun
->stdarg
= src_cfun
->stdarg
;
2452 cfun
->after_inlining
= src_cfun
->after_inlining
;
2453 cfun
->can_throw_non_call_exceptions
2454 = src_cfun
->can_throw_non_call_exceptions
;
2455 cfun
->can_delete_dead_exceptions
= src_cfun
->can_delete_dead_exceptions
;
2456 cfun
->returns_struct
= src_cfun
->returns_struct
;
2457 cfun
->returns_pcc_struct
= src_cfun
->returns_pcc_struct
;
2459 init_empty_tree_cfg ();
2461 profile_status_for_fn (cfun
) = profile_status_for_fn (src_cfun
);
2462 ENTRY_BLOCK_PTR_FOR_FN (cfun
)->count
=
2463 (ENTRY_BLOCK_PTR_FOR_FN (src_cfun
)->count
* count_scale
/
2465 ENTRY_BLOCK_PTR_FOR_FN (cfun
)->frequency
2466 = ENTRY_BLOCK_PTR_FOR_FN (src_cfun
)->frequency
;
2467 EXIT_BLOCK_PTR_FOR_FN (cfun
)->count
=
2468 (EXIT_BLOCK_PTR_FOR_FN (src_cfun
)->count
* count_scale
/
2470 EXIT_BLOCK_PTR_FOR_FN (cfun
)->frequency
=
2471 EXIT_BLOCK_PTR_FOR_FN (src_cfun
)->frequency
;
2473 init_eh_for_function ();
2475 if (src_cfun
->gimple_df
)
2477 init_tree_ssa (cfun
);
2478 cfun
->gimple_df
->in_ssa_p
= src_cfun
->gimple_df
->in_ssa_p
;
2479 if (cfun
->gimple_df
->in_ssa_p
)
2480 init_ssa_operands (cfun
);
2484 /* Helper function for copy_cfg_body. Move debug stmts from the end
2485 of NEW_BB to the beginning of successor basic blocks when needed. If the
2486 successor has multiple predecessors, reset them, otherwise keep
2490 maybe_move_debug_stmts_to_successors (copy_body_data
*id
, basic_block new_bb
)
2494 gimple_stmt_iterator si
= gsi_last_nondebug_bb (new_bb
);
2497 || gsi_one_before_end_p (si
)
2498 || !(stmt_can_throw_internal (gsi_stmt (si
))
2499 || stmt_can_make_abnormal_goto (gsi_stmt (si
))))
2502 FOR_EACH_EDGE (e
, ei
, new_bb
->succs
)
2504 gimple_stmt_iterator ssi
= gsi_last_bb (new_bb
);
2505 gimple_stmt_iterator dsi
= gsi_after_labels (e
->dest
);
2506 while (is_gimple_debug (gsi_stmt (ssi
)))
2508 gimple
*stmt
= gsi_stmt (ssi
);
2513 /* For the last edge move the debug stmts instead of copying
2515 if (ei_one_before_end_p (ei
))
2519 if (!single_pred_p (e
->dest
) && gimple_debug_bind_p (stmt
))
2520 gimple_debug_bind_reset_value (stmt
);
2521 gsi_remove (&si
, false);
2522 gsi_insert_before (&dsi
, stmt
, GSI_SAME_STMT
);
2526 if (gimple_debug_bind_p (stmt
))
2528 var
= gimple_debug_bind_get_var (stmt
);
2529 if (single_pred_p (e
->dest
))
2531 value
= gimple_debug_bind_get_value (stmt
);
2532 value
= unshare_expr (value
);
2536 new_stmt
= gimple_build_debug_bind (var
, value
, stmt
);
2538 else if (gimple_debug_source_bind_p (stmt
))
2540 var
= gimple_debug_source_bind_get_var (stmt
);
2541 value
= gimple_debug_source_bind_get_value (stmt
);
2542 new_stmt
= gimple_build_debug_source_bind (var
, value
, stmt
);
2546 gsi_insert_before (&dsi
, new_stmt
, GSI_SAME_STMT
);
2547 id
->debug_stmts
.safe_push (new_stmt
);
2553 /* Make a copy of the sub-loops of SRC_PARENT and place them
2554 as siblings of DEST_PARENT. */
2557 copy_loops (copy_body_data
*id
,
2558 struct loop
*dest_parent
, struct loop
*src_parent
)
2560 struct loop
*src_loop
= src_parent
->inner
;
2563 if (!id
->blocks_to_copy
2564 || bitmap_bit_p (id
->blocks_to_copy
, src_loop
->header
->index
))
2566 struct loop
*dest_loop
= alloc_loop ();
2568 /* Assign the new loop its header and latch and associate
2569 those with the new loop. */
2570 dest_loop
->header
= (basic_block
)src_loop
->header
->aux
;
2571 dest_loop
->header
->loop_father
= dest_loop
;
2572 if (src_loop
->latch
!= NULL
)
2574 dest_loop
->latch
= (basic_block
)src_loop
->latch
->aux
;
2575 dest_loop
->latch
->loop_father
= dest_loop
;
2578 /* Copy loop meta-data. */
2579 copy_loop_info (src_loop
, dest_loop
);
2581 /* Finally place it into the loop array and the loop tree. */
2582 place_new_loop (cfun
, dest_loop
);
2583 flow_loop_tree_node_add (dest_parent
, dest_loop
);
2585 dest_loop
->safelen
= src_loop
->safelen
;
2586 dest_loop
->dont_vectorize
= src_loop
->dont_vectorize
;
2587 if (src_loop
->force_vectorize
)
2589 dest_loop
->force_vectorize
= true;
2590 cfun
->has_force_vectorize_loops
= true;
2592 if (src_loop
->simduid
)
2594 dest_loop
->simduid
= remap_decl (src_loop
->simduid
, id
);
2595 cfun
->has_simduid_loops
= true;
2599 copy_loops (id
, dest_loop
, src_loop
);
2601 src_loop
= src_loop
->next
;
2605 /* Call cgraph_redirect_edge_call_stmt_to_callee on all calls in BB */
2608 redirect_all_calls (copy_body_data
* id
, basic_block bb
)
2610 gimple_stmt_iterator si
;
2611 gimple
*last
= last_stmt (bb
);
2612 for (si
= gsi_start_bb (bb
); !gsi_end_p (si
); gsi_next (&si
))
2614 gimple
*stmt
= gsi_stmt (si
);
2615 if (is_gimple_call (stmt
))
2617 struct cgraph_edge
*edge
= id
->dst_node
->get_edge (stmt
);
2620 edge
->redirect_call_stmt_to_callee ();
2621 if (stmt
== last
&& id
->call_stmt
&& maybe_clean_eh_stmt (stmt
))
2622 gimple_purge_dead_eh_edges (bb
);
2628 /* Convert estimated frequencies into counts for NODE, scaling COUNT
2629 with each bb's frequency. Used when NODE has a 0-weight entry
2630 but we are about to inline it into a non-zero count call bb.
2631 See the comments for handle_missing_profiles() in predict.c for
2632 when this can happen for COMDATs. */
2635 freqs_to_counts (struct cgraph_node
*node
, gcov_type count
)
2640 struct function
*fn
= DECL_STRUCT_FUNCTION (node
->decl
);
2642 FOR_ALL_BB_FN(bb
, fn
)
2644 bb
->count
= apply_scale (count
,
2645 GCOV_COMPUTE_SCALE (bb
->frequency
, BB_FREQ_MAX
));
2646 FOR_EACH_EDGE (e
, ei
, bb
->succs
)
2647 e
->count
= apply_probability (e
->src
->count
, e
->probability
);
2651 /* Make a copy of the body of FN so that it can be inserted inline in
2652 another function. Walks FN via CFG, returns new fndecl. */
2655 copy_cfg_body (copy_body_data
* id
, gcov_type count
, int frequency_scale
,
2656 basic_block entry_block_map
, basic_block exit_block_map
,
2657 basic_block new_entry
)
2659 tree callee_fndecl
= id
->src_fn
;
2660 /* Original cfun for the callee, doesn't change. */
2661 struct function
*src_cfun
= DECL_STRUCT_FUNCTION (callee_fndecl
);
2662 struct function
*cfun_to_copy
;
2664 tree new_fndecl
= NULL
;
2665 bool need_debug_cleanup
= false;
2666 gcov_type count_scale
;
2668 int incoming_frequency
= 0;
2669 gcov_type incoming_count
= 0;
2671 /* This can happen for COMDAT routines that end up with 0 counts
2672 despite being called (see the comments for handle_missing_profiles()
2673 in predict.c as to why). Apply counts to the blocks in the callee
2674 before inlining, using the guessed edge frequencies, so that we don't
2675 end up with a 0-count inline body which can confuse downstream
2676 optimizations such as function splitting. */
2677 if (!ENTRY_BLOCK_PTR_FOR_FN (src_cfun
)->count
&& count
)
2679 /* Apply the larger of the call bb count and the total incoming
2680 call edge count to the callee. */
2681 gcov_type in_count
= 0;
2682 struct cgraph_edge
*in_edge
;
2683 for (in_edge
= id
->src_node
->callers
; in_edge
;
2684 in_edge
= in_edge
->next_caller
)
2685 in_count
+= in_edge
->count
;
2686 freqs_to_counts (id
->src_node
, count
> in_count
? count
: in_count
);
2689 if (ENTRY_BLOCK_PTR_FOR_FN (src_cfun
)->count
)
2691 = GCOV_COMPUTE_SCALE (count
,
2692 ENTRY_BLOCK_PTR_FOR_FN (src_cfun
)->count
);
2694 count_scale
= REG_BR_PROB_BASE
;
2696 /* Register specific tree functions. */
2697 gimple_register_cfg_hooks ();
2699 /* If we are inlining just region of the function, make sure to connect
2700 new entry to ENTRY_BLOCK_PTR_FOR_FN (cfun). Since new entry can be
2701 part of loop, we must compute frequency and probability of
2702 ENTRY_BLOCK_PTR_FOR_FN (cfun) based on the frequencies and
2703 probabilities of edges incoming from nonduplicated region. */
2709 FOR_EACH_EDGE (e
, ei
, new_entry
->preds
)
2712 incoming_frequency
+= EDGE_FREQUENCY (e
);
2713 incoming_count
+= e
->count
;
2715 incoming_count
= apply_scale (incoming_count
, count_scale
);
2717 = apply_scale ((gcov_type
)incoming_frequency
, frequency_scale
);
2718 ENTRY_BLOCK_PTR_FOR_FN (cfun
)->count
= incoming_count
;
2719 ENTRY_BLOCK_PTR_FOR_FN (cfun
)->frequency
= incoming_frequency
;
2722 /* Must have a CFG here at this point. */
2723 gcc_assert (ENTRY_BLOCK_PTR_FOR_FN
2724 (DECL_STRUCT_FUNCTION (callee_fndecl
)));
2726 cfun_to_copy
= id
->src_cfun
= DECL_STRUCT_FUNCTION (callee_fndecl
);
2728 ENTRY_BLOCK_PTR_FOR_FN (cfun_to_copy
)->aux
= entry_block_map
;
2729 EXIT_BLOCK_PTR_FOR_FN (cfun_to_copy
)->aux
= exit_block_map
;
2730 entry_block_map
->aux
= ENTRY_BLOCK_PTR_FOR_FN (cfun_to_copy
);
2731 exit_block_map
->aux
= EXIT_BLOCK_PTR_FOR_FN (cfun_to_copy
);
2733 /* Duplicate any exception-handling regions. */
2735 id
->eh_map
= duplicate_eh_regions (cfun_to_copy
, NULL
, id
->eh_lp_nr
,
2738 /* Use aux pointers to map the original blocks to copy. */
2739 FOR_EACH_BB_FN (bb
, cfun_to_copy
)
2740 if (!id
->blocks_to_copy
|| bitmap_bit_p (id
->blocks_to_copy
, bb
->index
))
2742 basic_block new_bb
= copy_bb (id
, bb
, frequency_scale
, count_scale
);
2745 new_bb
->loop_father
= entry_block_map
->loop_father
;
2748 last
= last_basic_block_for_fn (cfun
);
2750 /* Now that we've duplicated the blocks, duplicate their edges. */
2751 basic_block abnormal_goto_dest
= NULL
;
2753 && stmt_can_make_abnormal_goto (id
->call_stmt
))
2755 gimple_stmt_iterator gsi
= gsi_for_stmt (id
->call_stmt
);
2757 bb
= gimple_bb (id
->call_stmt
);
2759 if (gsi_end_p (gsi
))
2760 abnormal_goto_dest
= get_abnormal_succ_dispatcher (bb
);
2762 FOR_ALL_BB_FN (bb
, cfun_to_copy
)
2763 if (!id
->blocks_to_copy
2764 || (bb
->index
> 0 && bitmap_bit_p (id
->blocks_to_copy
, bb
->index
)))
2765 need_debug_cleanup
|= copy_edges_for_bb (bb
, count_scale
, exit_block_map
,
2766 abnormal_goto_dest
);
2770 edge e
= make_edge (entry_block_map
, (basic_block
)new_entry
->aux
, EDGE_FALLTHRU
);
2771 e
->probability
= REG_BR_PROB_BASE
;
2772 e
->count
= incoming_count
;
2775 /* Duplicate the loop tree, if available and wanted. */
2776 if (loops_for_fn (src_cfun
) != NULL
2777 && current_loops
!= NULL
)
2779 copy_loops (id
, entry_block_map
->loop_father
,
2780 get_loop (src_cfun
, 0));
2781 /* Defer to cfgcleanup to update loop-father fields of basic-blocks. */
2782 loops_state_set (LOOPS_NEED_FIXUP
);
2785 /* If the loop tree in the source function needed fixup, mark the
2786 destination loop tree for fixup, too. */
2787 if (loops_for_fn (src_cfun
)->state
& LOOPS_NEED_FIXUP
)
2788 loops_state_set (LOOPS_NEED_FIXUP
);
2790 if (gimple_in_ssa_p (cfun
))
2791 FOR_ALL_BB_FN (bb
, cfun_to_copy
)
2792 if (!id
->blocks_to_copy
2793 || (bb
->index
> 0 && bitmap_bit_p (id
->blocks_to_copy
, bb
->index
)))
2794 copy_phis_for_bb (bb
, id
);
2796 FOR_ALL_BB_FN (bb
, cfun_to_copy
)
2799 if (need_debug_cleanup
2800 && bb
->index
!= ENTRY_BLOCK
2801 && bb
->index
!= EXIT_BLOCK
)
2802 maybe_move_debug_stmts_to_successors (id
, (basic_block
) bb
->aux
);
2803 /* Update call edge destinations. This can not be done before loop
2804 info is updated, because we may split basic blocks. */
2805 if (id
->transform_call_graph_edges
== CB_CGE_DUPLICATE
2806 && bb
->index
!= ENTRY_BLOCK
2807 && bb
->index
!= EXIT_BLOCK
)
2808 redirect_all_calls (id
, (basic_block
)bb
->aux
);
2809 ((basic_block
)bb
->aux
)->aux
= NULL
;
2813 /* Zero out AUX fields of newly created block during EH edge
2815 for (; last
< last_basic_block_for_fn (cfun
); last
++)
2817 if (need_debug_cleanup
)
2818 maybe_move_debug_stmts_to_successors (id
,
2819 BASIC_BLOCK_FOR_FN (cfun
, last
));
2820 BASIC_BLOCK_FOR_FN (cfun
, last
)->aux
= NULL
;
2821 /* Update call edge destinations. This can not be done before loop
2822 info is updated, because we may split basic blocks. */
2823 if (id
->transform_call_graph_edges
== CB_CGE_DUPLICATE
)
2824 redirect_all_calls (id
, BASIC_BLOCK_FOR_FN (cfun
, last
));
2826 entry_block_map
->aux
= NULL
;
2827 exit_block_map
->aux
= NULL
;
2834 if (id
->dependence_map
)
2836 delete id
->dependence_map
;
2837 id
->dependence_map
= NULL
;
2843 /* Copy the debug STMT using ID. We deal with these statements in a
2844 special way: if any variable in their VALUE expression wasn't
2845 remapped yet, we won't remap it, because that would get decl uids
2846 out of sync, causing codegen differences between -g and -g0. If
2847 this arises, we drop the VALUE expression altogether. */
2850 copy_debug_stmt (gdebug
*stmt
, copy_body_data
*id
)
2853 struct walk_stmt_info wi
;
2855 if (gimple_block (stmt
))
2857 n
= id
->decl_map
->get (gimple_block (stmt
));
2858 gimple_set_block (stmt
, n
? *n
: id
->block
);
2861 /* Remap all the operands in COPY. */
2862 memset (&wi
, 0, sizeof (wi
));
2865 processing_debug_stmt
= 1;
2867 if (gimple_debug_source_bind_p (stmt
))
2868 t
= gimple_debug_source_bind_get_var (stmt
);
2870 t
= gimple_debug_bind_get_var (stmt
);
2872 if (TREE_CODE (t
) == PARM_DECL
&& id
->debug_map
2873 && (n
= id
->debug_map
->get (t
)))
2875 gcc_assert (VAR_P (*n
));
2878 else if (VAR_P (t
) && !is_global_var (t
) && !id
->decl_map
->get (t
))
2879 /* T is a non-localized variable. */;
2881 walk_tree (&t
, remap_gimple_op_r
, &wi
, NULL
);
2883 if (gimple_debug_bind_p (stmt
))
2885 gimple_debug_bind_set_var (stmt
, t
);
2887 if (gimple_debug_bind_has_value_p (stmt
))
2888 walk_tree (gimple_debug_bind_get_value_ptr (stmt
),
2889 remap_gimple_op_r
, &wi
, NULL
);
2891 /* Punt if any decl couldn't be remapped. */
2892 if (processing_debug_stmt
< 0)
2893 gimple_debug_bind_reset_value (stmt
);
2895 else if (gimple_debug_source_bind_p (stmt
))
2897 gimple_debug_source_bind_set_var (stmt
, t
);
2898 /* When inlining and source bind refers to one of the optimized
2899 away parameters, change the source bind into normal debug bind
2900 referring to the corresponding DEBUG_EXPR_DECL that should have
2901 been bound before the call stmt. */
2902 t
= gimple_debug_source_bind_get_value (stmt
);
2904 && TREE_CODE (t
) == PARM_DECL
2907 vec
<tree
, va_gc
> **debug_args
= decl_debug_args_lookup (id
->src_fn
);
2909 if (debug_args
!= NULL
)
2911 for (i
= 0; i
< vec_safe_length (*debug_args
); i
+= 2)
2912 if ((**debug_args
)[i
] == DECL_ORIGIN (t
)
2913 && TREE_CODE ((**debug_args
)[i
+ 1]) == DEBUG_EXPR_DECL
)
2915 t
= (**debug_args
)[i
+ 1];
2916 stmt
->subcode
= GIMPLE_DEBUG_BIND
;
2917 gimple_debug_bind_set_value (stmt
, t
);
2922 if (gimple_debug_source_bind_p (stmt
))
2923 walk_tree (gimple_debug_source_bind_get_value_ptr (stmt
),
2924 remap_gimple_op_r
, &wi
, NULL
);
2927 processing_debug_stmt
= 0;
2932 /* Process deferred debug stmts. In order to give values better odds
2933 of being successfully remapped, we delay the processing of debug
2934 stmts until all other stmts that might require remapping are
2938 copy_debug_stmts (copy_body_data
*id
)
2943 if (!id
->debug_stmts
.exists ())
2946 FOR_EACH_VEC_ELT (id
->debug_stmts
, i
, stmt
)
2947 copy_debug_stmt (stmt
, id
);
2949 id
->debug_stmts
.release ();
2952 /* Make a copy of the body of SRC_FN so that it can be inserted inline in
2953 another function. */
2956 copy_tree_body (copy_body_data
*id
)
2958 tree fndecl
= id
->src_fn
;
2959 tree body
= DECL_SAVED_TREE (fndecl
);
2961 walk_tree (&body
, copy_tree_body_r
, id
, NULL
);
2966 /* Make a copy of the body of FN so that it can be inserted inline in
2967 another function. */
2970 copy_body (copy_body_data
*id
, gcov_type count
, int frequency_scale
,
2971 basic_block entry_block_map
, basic_block exit_block_map
,
2972 basic_block new_entry
)
2974 tree fndecl
= id
->src_fn
;
2977 /* If this body has a CFG, walk CFG and copy. */
2978 gcc_assert (ENTRY_BLOCK_PTR_FOR_FN (DECL_STRUCT_FUNCTION (fndecl
)));
2979 body
= copy_cfg_body (id
, count
, frequency_scale
, entry_block_map
, exit_block_map
,
2981 copy_debug_stmts (id
);
2986 /* Return true if VALUE is an ADDR_EXPR of an automatic variable
2987 defined in function FN, or of a data member thereof. */
2990 self_inlining_addr_expr (tree value
, tree fn
)
2994 if (TREE_CODE (value
) != ADDR_EXPR
)
2997 var
= get_base_address (TREE_OPERAND (value
, 0));
2999 return var
&& auto_var_in_fn_p (var
, fn
);
3002 /* Append to BB a debug annotation that binds VAR to VALUE, inheriting
3003 lexical block and line number information from base_stmt, if given,
3004 or from the last stmt of the block otherwise. */
3007 insert_init_debug_bind (copy_body_data
*id
,
3008 basic_block bb
, tree var
, tree value
,
3012 gimple_stmt_iterator gsi
;
3015 if (!gimple_in_ssa_p (id
->src_cfun
))
3018 if (!opt_for_fn (id
->dst_fn
, flag_var_tracking_assignments
))
3021 tracked_var
= target_for_debug_bind (var
);
3027 gsi
= gsi_last_bb (bb
);
3028 if (!base_stmt
&& !gsi_end_p (gsi
))
3029 base_stmt
= gsi_stmt (gsi
);
3032 note
= gimple_build_debug_bind (tracked_var
, unshare_expr (value
), base_stmt
);
3036 if (!gsi_end_p (gsi
))
3037 gsi_insert_after (&gsi
, note
, GSI_SAME_STMT
);
3039 gsi_insert_before (&gsi
, note
, GSI_SAME_STMT
);
3046 insert_init_stmt (copy_body_data
*id
, basic_block bb
, gimple
*init_stmt
)
3048 /* If VAR represents a zero-sized variable, it's possible that the
3049 assignment statement may result in no gimple statements. */
3052 gimple_stmt_iterator si
= gsi_last_bb (bb
);
3054 /* We can end up with init statements that store to a non-register
3055 from a rhs with a conversion. Handle that here by forcing the
3056 rhs into a temporary. gimple_regimplify_operands is not
3057 prepared to do this for us. */
3058 if (!is_gimple_debug (init_stmt
)
3059 && !is_gimple_reg (gimple_assign_lhs (init_stmt
))
3060 && is_gimple_reg_type (TREE_TYPE (gimple_assign_lhs (init_stmt
)))
3061 && gimple_assign_rhs_class (init_stmt
) == GIMPLE_UNARY_RHS
)
3063 tree rhs
= build1 (gimple_assign_rhs_code (init_stmt
),
3064 gimple_expr_type (init_stmt
),
3065 gimple_assign_rhs1 (init_stmt
));
3066 rhs
= force_gimple_operand_gsi (&si
, rhs
, true, NULL_TREE
, false,
3068 gimple_assign_set_rhs_code (init_stmt
, TREE_CODE (rhs
));
3069 gimple_assign_set_rhs1 (init_stmt
, rhs
);
3071 gsi_insert_after (&si
, init_stmt
, GSI_NEW_STMT
);
3072 gimple_regimplify_operands (init_stmt
, &si
);
3074 if (!is_gimple_debug (init_stmt
))
3076 tree def
= gimple_assign_lhs (init_stmt
);
3077 insert_init_debug_bind (id
, bb
, def
, def
, init_stmt
);
3082 /* Initialize parameter P with VALUE. If needed, produce init statement
3083 at the end of BB. When BB is NULL, we return init statement to be
3086 setup_one_parameter (copy_body_data
*id
, tree p
, tree value
, tree fn
,
3087 basic_block bb
, tree
*vars
)
3089 gimple
*init_stmt
= NULL
;
3092 tree def
= (gimple_in_ssa_p (cfun
)
3093 ? ssa_default_def (id
->src_cfun
, p
) : NULL
);
3096 && value
!= error_mark_node
3097 && !useless_type_conversion_p (TREE_TYPE (p
), TREE_TYPE (value
)))
3099 /* If we can match up types by promotion/demotion do so. */
3100 if (fold_convertible_p (TREE_TYPE (p
), value
))
3101 rhs
= fold_convert (TREE_TYPE (p
), value
);
3104 /* ??? For valid programs we should not end up here.
3105 Still if we end up with truly mismatched types here, fall back
3106 to using a VIEW_CONVERT_EXPR or a literal zero to not leak invalid
3107 GIMPLE to the following passes. */
3108 if (!is_gimple_reg_type (TREE_TYPE (value
))
3109 || TYPE_SIZE (TREE_TYPE (p
)) == TYPE_SIZE (TREE_TYPE (value
)))
3110 rhs
= fold_build1 (VIEW_CONVERT_EXPR
, TREE_TYPE (p
), value
);
3112 rhs
= build_zero_cst (TREE_TYPE (p
));
3116 /* Make an equivalent VAR_DECL. Note that we must NOT remap the type
3117 here since the type of this decl must be visible to the calling
3119 var
= copy_decl_to_var (p
, id
);
3121 /* Declare this new variable. */
3122 DECL_CHAIN (var
) = *vars
;
3125 /* Make gimplifier happy about this variable. */
3126 DECL_SEEN_IN_BIND_EXPR_P (var
) = 1;
3128 /* If the parameter is never assigned to, has no SSA_NAMEs created,
3129 we would not need to create a new variable here at all, if it
3130 weren't for debug info. Still, we can just use the argument
3132 if (TREE_READONLY (p
)
3133 && !TREE_ADDRESSABLE (p
)
3134 && value
&& !TREE_SIDE_EFFECTS (value
)
3137 /* We may produce non-gimple trees by adding NOPs or introduce
3138 invalid sharing when operand is not really constant.
3139 It is not big deal to prohibit constant propagation here as
3140 we will constant propagate in DOM1 pass anyway. */
3141 if (is_gimple_min_invariant (value
)
3142 && useless_type_conversion_p (TREE_TYPE (p
),
3144 /* We have to be very careful about ADDR_EXPR. Make sure
3145 the base variable isn't a local variable of the inlined
3146 function, e.g., when doing recursive inlining, direct or
3147 mutually-recursive or whatever, which is why we don't
3148 just test whether fn == current_function_decl. */
3149 && ! self_inlining_addr_expr (value
, fn
))
3151 insert_decl_map (id
, p
, value
);
3152 insert_debug_decl_map (id
, p
, var
);
3153 return insert_init_debug_bind (id
, bb
, var
, value
, NULL
);
3157 /* Register the VAR_DECL as the equivalent for the PARM_DECL;
3158 that way, when the PARM_DECL is encountered, it will be
3159 automatically replaced by the VAR_DECL. */
3160 insert_decl_map (id
, p
, var
);
3162 /* Even if P was TREE_READONLY, the new VAR should not be.
3163 In the original code, we would have constructed a
3164 temporary, and then the function body would have never
3165 changed the value of P. However, now, we will be
3166 constructing VAR directly. The constructor body may
3167 change its value multiple times as it is being
3168 constructed. Therefore, it must not be TREE_READONLY;
3169 the back-end assumes that TREE_READONLY variable is
3170 assigned to only once. */
3171 if (TYPE_NEEDS_CONSTRUCTING (TREE_TYPE (p
)))
3172 TREE_READONLY (var
) = 0;
3174 /* If there is no setup required and we are in SSA, take the easy route
3175 replacing all SSA names representing the function parameter by the
3176 SSA name passed to function.
3178 We need to construct map for the variable anyway as it might be used
3179 in different SSA names when parameter is set in function.
3181 Do replacement at -O0 for const arguments replaced by constant.
3182 This is important for builtin_constant_p and other construct requiring
3183 constant argument to be visible in inlined function body. */
3184 if (gimple_in_ssa_p (cfun
) && rhs
&& def
&& is_gimple_reg (p
)
3186 || (TREE_READONLY (p
)
3187 && is_gimple_min_invariant (rhs
)))
3188 && (TREE_CODE (rhs
) == SSA_NAME
3189 || is_gimple_min_invariant (rhs
))
3190 && !SSA_NAME_OCCURS_IN_ABNORMAL_PHI (def
))
3192 insert_decl_map (id
, def
, rhs
);
3193 return insert_init_debug_bind (id
, bb
, var
, rhs
, NULL
);
3196 /* If the value of argument is never used, don't care about initializing
3198 if (optimize
&& gimple_in_ssa_p (cfun
) && !def
&& is_gimple_reg (p
))
3200 gcc_assert (!value
|| !TREE_SIDE_EFFECTS (value
));
3201 return insert_init_debug_bind (id
, bb
, var
, rhs
, NULL
);
3204 /* Initialize this VAR_DECL from the equivalent argument. Convert
3205 the argument to the proper type in case it was promoted. */
3208 if (rhs
== error_mark_node
)
3210 insert_decl_map (id
, p
, var
);
3211 return insert_init_debug_bind (id
, bb
, var
, rhs
, NULL
);
3214 STRIP_USELESS_TYPE_CONVERSION (rhs
);
3216 /* If we are in SSA form properly remap the default definition
3217 or assign to a dummy SSA name if the parameter is unused and
3218 we are not optimizing. */
3219 if (gimple_in_ssa_p (cfun
) && is_gimple_reg (p
))
3223 def
= remap_ssa_name (def
, id
);
3224 init_stmt
= gimple_build_assign (def
, rhs
);
3225 SSA_NAME_IS_DEFAULT_DEF (def
) = 0;
3226 set_ssa_default_def (cfun
, var
, NULL
);
3230 def
= make_ssa_name (var
);
3231 init_stmt
= gimple_build_assign (def
, rhs
);
3235 init_stmt
= gimple_build_assign (var
, rhs
);
3237 if (bb
&& init_stmt
)
3238 insert_init_stmt (id
, bb
, init_stmt
);
3243 /* Generate code to initialize the parameters of the function at the
3244 top of the stack in ID from the GIMPLE_CALL STMT. */
3247 initialize_inlined_parameters (copy_body_data
*id
, gimple
*stmt
,
3248 tree fn
, basic_block bb
)
3253 tree vars
= NULL_TREE
;
3254 tree static_chain
= gimple_call_chain (stmt
);
3256 /* Figure out what the parameters are. */
3257 parms
= DECL_ARGUMENTS (fn
);
3259 /* Loop through the parameter declarations, replacing each with an
3260 equivalent VAR_DECL, appropriately initialized. */
3261 for (p
= parms
, i
= 0; p
; p
= DECL_CHAIN (p
), i
++)
3264 val
= i
< gimple_call_num_args (stmt
) ? gimple_call_arg (stmt
, i
) : NULL
;
3265 setup_one_parameter (id
, p
, val
, fn
, bb
, &vars
);
3267 /* After remapping parameters remap their types. This has to be done
3268 in a second loop over all parameters to appropriately remap
3269 variable sized arrays when the size is specified in a
3270 parameter following the array. */
3271 for (p
= parms
, i
= 0; p
; p
= DECL_CHAIN (p
), i
++)
3273 tree
*varp
= id
->decl_map
->get (p
);
3274 if (varp
&& VAR_P (*varp
))
3276 tree def
= (gimple_in_ssa_p (cfun
) && is_gimple_reg (p
)
3277 ? ssa_default_def (id
->src_cfun
, p
) : NULL
);
3279 TREE_TYPE (var
) = remap_type (TREE_TYPE (var
), id
);
3280 /* Also remap the default definition if it was remapped
3281 to the default definition of the parameter replacement
3282 by the parameter setup. */
3285 tree
*defp
= id
->decl_map
->get (def
);
3287 && TREE_CODE (*defp
) == SSA_NAME
3288 && SSA_NAME_VAR (*defp
) == var
)
3289 TREE_TYPE (*defp
) = TREE_TYPE (var
);
3294 /* Initialize the static chain. */
3295 p
= DECL_STRUCT_FUNCTION (fn
)->static_chain_decl
;
3296 gcc_assert (fn
!= current_function_decl
);
3299 /* No static chain? Seems like a bug in tree-nested.c. */
3300 gcc_assert (static_chain
);
3302 setup_one_parameter (id
, p
, static_chain
, fn
, bb
, &vars
);
3305 declare_inline_vars (id
->block
, vars
);
3309 /* Declare a return variable to replace the RESULT_DECL for the
3310 function we are calling. An appropriate DECL_STMT is returned.
3311 The USE_STMT is filled to contain a use of the declaration to
3312 indicate the return value of the function.
3314 RETURN_SLOT, if non-null is place where to store the result. It
3315 is set only for CALL_EXPR_RETURN_SLOT_OPT. MODIFY_DEST, if non-null,
3316 was the LHS of the MODIFY_EXPR to which this call is the RHS.
3318 RETURN_BOUNDS holds a destination for returned bounds.
3320 The return value is a (possibly null) value that holds the result
3321 as seen by the caller. */
3324 declare_return_variable (copy_body_data
*id
, tree return_slot
, tree modify_dest
,
3325 tree return_bounds
, basic_block entry_bb
)
3327 tree callee
= id
->src_fn
;
3328 tree result
= DECL_RESULT (callee
);
3329 tree callee_type
= TREE_TYPE (result
);
3333 /* Handle type-mismatches in the function declaration return type
3334 vs. the call expression. */
3336 caller_type
= TREE_TYPE (modify_dest
);
3338 caller_type
= TREE_TYPE (TREE_TYPE (callee
));
3340 /* We don't need to do anything for functions that don't return anything. */
3341 if (VOID_TYPE_P (callee_type
))
3344 /* If there was a return slot, then the return value is the
3345 dereferenced address of that object. */
3348 /* The front end shouldn't have used both return_slot and
3349 a modify expression. */
3350 gcc_assert (!modify_dest
);
3351 if (DECL_BY_REFERENCE (result
))
3353 tree return_slot_addr
= build_fold_addr_expr (return_slot
);
3354 STRIP_USELESS_TYPE_CONVERSION (return_slot_addr
);
3356 /* We are going to construct *&return_slot and we can't do that
3357 for variables believed to be not addressable.
3359 FIXME: This check possibly can match, because values returned
3360 via return slot optimization are not believed to have address
3361 taken by alias analysis. */
3362 gcc_assert (TREE_CODE (return_slot
) != SSA_NAME
);
3363 var
= return_slot_addr
;
3368 gcc_assert (TREE_CODE (var
) != SSA_NAME
);
3369 if (TREE_ADDRESSABLE (result
))
3370 mark_addressable (var
);
3372 if ((TREE_CODE (TREE_TYPE (result
)) == COMPLEX_TYPE
3373 || TREE_CODE (TREE_TYPE (result
)) == VECTOR_TYPE
)
3374 && !DECL_GIMPLE_REG_P (result
)
3376 DECL_GIMPLE_REG_P (var
) = 0;
3381 /* All types requiring non-trivial constructors should have been handled. */
3382 gcc_assert (!TREE_ADDRESSABLE (callee_type
));
3384 /* Attempt to avoid creating a new temporary variable. */
3386 && TREE_CODE (modify_dest
) != SSA_NAME
)
3388 bool use_it
= false;
3390 /* We can't use MODIFY_DEST if there's type promotion involved. */
3391 if (!useless_type_conversion_p (callee_type
, caller_type
))
3394 /* ??? If we're assigning to a variable sized type, then we must
3395 reuse the destination variable, because we've no good way to
3396 create variable sized temporaries at this point. */
3397 else if (TREE_CODE (TYPE_SIZE_UNIT (caller_type
)) != INTEGER_CST
)
3400 /* If the callee cannot possibly modify MODIFY_DEST, then we can
3401 reuse it as the result of the call directly. Don't do this if
3402 it would promote MODIFY_DEST to addressable. */
3403 else if (TREE_ADDRESSABLE (result
))
3407 tree base_m
= get_base_address (modify_dest
);
3409 /* If the base isn't a decl, then it's a pointer, and we don't
3410 know where that's going to go. */
3411 if (!DECL_P (base_m
))
3413 else if (is_global_var (base_m
))
3415 else if ((TREE_CODE (TREE_TYPE (result
)) == COMPLEX_TYPE
3416 || TREE_CODE (TREE_TYPE (result
)) == VECTOR_TYPE
)
3417 && !DECL_GIMPLE_REG_P (result
)
3418 && DECL_GIMPLE_REG_P (base_m
))
3420 else if (!TREE_ADDRESSABLE (base_m
))
3432 gcc_assert (TREE_CODE (TYPE_SIZE_UNIT (callee_type
)) == INTEGER_CST
);
3434 var
= copy_result_decl_to_var (result
, id
);
3435 DECL_SEEN_IN_BIND_EXPR_P (var
) = 1;
3437 /* Do not have the rest of GCC warn about this variable as it should
3438 not be visible to the user. */
3439 TREE_NO_WARNING (var
) = 1;
3441 declare_inline_vars (id
->block
, var
);
3443 /* Build the use expr. If the return type of the function was
3444 promoted, convert it back to the expected type. */
3446 if (!useless_type_conversion_p (caller_type
, TREE_TYPE (var
)))
3448 /* If we can match up types by promotion/demotion do so. */
3449 if (fold_convertible_p (caller_type
, var
))
3450 use
= fold_convert (caller_type
, var
);
3453 /* ??? For valid programs we should not end up here.
3454 Still if we end up with truly mismatched types here, fall back
3455 to using a MEM_REF to not leak invalid GIMPLE to the following
3457 /* Prevent var from being written into SSA form. */
3458 if (TREE_CODE (TREE_TYPE (var
)) == VECTOR_TYPE
3459 || TREE_CODE (TREE_TYPE (var
)) == COMPLEX_TYPE
)
3460 DECL_GIMPLE_REG_P (var
) = false;
3461 else if (is_gimple_reg_type (TREE_TYPE (var
)))
3462 TREE_ADDRESSABLE (var
) = true;
3463 use
= fold_build2 (MEM_REF
, caller_type
,
3464 build_fold_addr_expr (var
),
3465 build_int_cst (ptr_type_node
, 0));
3469 STRIP_USELESS_TYPE_CONVERSION (use
);
3471 if (DECL_BY_REFERENCE (result
))
3473 TREE_ADDRESSABLE (var
) = 1;
3474 var
= build_fold_addr_expr (var
);
3478 /* Register the VAR_DECL as the equivalent for the RESULT_DECL; that
3479 way, when the RESULT_DECL is encountered, it will be
3480 automatically replaced by the VAR_DECL.
3482 When returning by reference, ensure that RESULT_DECL remaps to
3484 if (DECL_BY_REFERENCE (result
)
3485 && !is_gimple_val (var
))
3487 tree temp
= create_tmp_var (TREE_TYPE (result
), "retvalptr");
3488 insert_decl_map (id
, result
, temp
);
3489 /* When RESULT_DECL is in SSA form, we need to remap and initialize
3490 it's default_def SSA_NAME. */
3491 if (gimple_in_ssa_p (id
->src_cfun
)
3492 && is_gimple_reg (result
))
3494 temp
= make_ssa_name (temp
);
3495 insert_decl_map (id
, ssa_default_def (id
->src_cfun
, result
), temp
);
3497 insert_init_stmt (id
, entry_bb
, gimple_build_assign (temp
, var
));
3500 insert_decl_map (id
, result
, var
);
3502 /* Remember this so we can ignore it in remap_decls. */
3505 /* If returned bounds are used, then make var for them. */
3508 tree bndtemp
= create_tmp_var (pointer_bounds_type_node
, "retbnd");
3509 DECL_SEEN_IN_BIND_EXPR_P (bndtemp
) = 1;
3510 TREE_NO_WARNING (bndtemp
) = 1;
3511 declare_inline_vars (id
->block
, bndtemp
);
3513 id
->retbnd
= bndtemp
;
3514 insert_init_stmt (id
, entry_bb
,
3515 gimple_build_assign (bndtemp
, chkp_get_zero_bounds_var ()));
3521 /* Determine if the function can be copied. If so return NULL. If
3522 not return a string describng the reason for failure. */
3525 copy_forbidden (struct function
*fun
)
3527 const char *reason
= fun
->cannot_be_copied_reason
;
3529 /* Only examine the function once. */
3530 if (fun
->cannot_be_copied_set
)
3533 /* We cannot copy a function that receives a non-local goto
3534 because we cannot remap the destination label used in the
3535 function that is performing the non-local goto. */
3536 /* ??? Actually, this should be possible, if we work at it.
3537 No doubt there's just a handful of places that simply
3538 assume it doesn't happen and don't substitute properly. */
3539 if (fun
->has_nonlocal_label
)
3541 reason
= G_("function %q+F can never be copied "
3542 "because it receives a non-local goto");
3546 if (fun
->has_forced_label_in_static
)
3548 reason
= G_("function %q+F can never be copied because it saves "
3549 "address of local label in a static variable");
3554 fun
->cannot_be_copied_reason
= reason
;
3555 fun
->cannot_be_copied_set
= true;
3560 static const char *inline_forbidden_reason
;
3562 /* A callback for walk_gimple_seq to handle statements. Returns non-null
3563 iff a function can not be inlined. Also sets the reason why. */
3566 inline_forbidden_p_stmt (gimple_stmt_iterator
*gsi
, bool *handled_ops_p
,
3567 struct walk_stmt_info
*wip
)
3569 tree fn
= (tree
) wip
->info
;
3571 gimple
*stmt
= gsi_stmt (*gsi
);
3573 switch (gimple_code (stmt
))
3576 /* Refuse to inline alloca call unless user explicitly forced so as
3577 this may change program's memory overhead drastically when the
3578 function using alloca is called in loop. In GCC present in
3579 SPEC2000 inlining into schedule_block cause it to require 2GB of
3580 RAM instead of 256MB. Don't do so for alloca calls emitted for
3581 VLA objects as those can't cause unbounded growth (they're always
3582 wrapped inside stack_save/stack_restore regions. */
3583 if (gimple_maybe_alloca_call_p (stmt
)
3584 && !gimple_call_alloca_for_var_p (as_a
<gcall
*> (stmt
))
3585 && !lookup_attribute ("always_inline", DECL_ATTRIBUTES (fn
)))
3587 inline_forbidden_reason
3588 = G_("function %q+F can never be inlined because it uses "
3589 "alloca (override using the always_inline attribute)");
3590 *handled_ops_p
= true;
3594 t
= gimple_call_fndecl (stmt
);
3598 /* We cannot inline functions that call setjmp. */
3599 if (setjmp_call_p (t
))
3601 inline_forbidden_reason
3602 = G_("function %q+F can never be inlined because it uses setjmp");
3603 *handled_ops_p
= true;
3607 if (DECL_BUILT_IN_CLASS (t
) == BUILT_IN_NORMAL
)
3608 switch (DECL_FUNCTION_CODE (t
))
3610 /* We cannot inline functions that take a variable number of
3612 case BUILT_IN_VA_START
:
3613 case BUILT_IN_NEXT_ARG
:
3614 case BUILT_IN_VA_END
:
3615 inline_forbidden_reason
3616 = G_("function %q+F can never be inlined because it "
3617 "uses variable argument lists");
3618 *handled_ops_p
= true;
3621 case BUILT_IN_LONGJMP
:
3622 /* We can't inline functions that call __builtin_longjmp at
3623 all. The non-local goto machinery really requires the
3624 destination be in a different function. If we allow the
3625 function calling __builtin_longjmp to be inlined into the
3626 function calling __builtin_setjmp, Things will Go Awry. */
3627 inline_forbidden_reason
3628 = G_("function %q+F can never be inlined because "
3629 "it uses setjmp-longjmp exception handling");
3630 *handled_ops_p
= true;
3633 case BUILT_IN_NONLOCAL_GOTO
:
3635 inline_forbidden_reason
3636 = G_("function %q+F can never be inlined because "
3637 "it uses non-local goto");
3638 *handled_ops_p
= true;
3641 case BUILT_IN_RETURN
:
3642 case BUILT_IN_APPLY_ARGS
:
3643 /* If a __builtin_apply_args caller would be inlined,
3644 it would be saving arguments of the function it has
3645 been inlined into. Similarly __builtin_return would
3646 return from the function the inline has been inlined into. */
3647 inline_forbidden_reason
3648 = G_("function %q+F can never be inlined because "
3649 "it uses __builtin_return or __builtin_apply_args");
3650 *handled_ops_p
= true;
3659 t
= gimple_goto_dest (stmt
);
3661 /* We will not inline a function which uses computed goto. The
3662 addresses of its local labels, which may be tucked into
3663 global storage, are of course not constant across
3664 instantiations, which causes unexpected behavior. */
3665 if (TREE_CODE (t
) != LABEL_DECL
)
3667 inline_forbidden_reason
3668 = G_("function %q+F can never be inlined "
3669 "because it contains a computed goto");
3670 *handled_ops_p
= true;
3679 *handled_ops_p
= false;
3683 /* Return true if FNDECL is a function that cannot be inlined into
3687 inline_forbidden_p (tree fndecl
)
3689 struct function
*fun
= DECL_STRUCT_FUNCTION (fndecl
);
3690 struct walk_stmt_info wi
;
3692 bool forbidden_p
= false;
3694 /* First check for shared reasons not to copy the code. */
3695 inline_forbidden_reason
= copy_forbidden (fun
);
3696 if (inline_forbidden_reason
!= NULL
)
3699 /* Next, walk the statements of the function looking for
3700 constraucts we can't handle, or are non-optimal for inlining. */
3701 hash_set
<tree
> visited_nodes
;
3702 memset (&wi
, 0, sizeof (wi
));
3703 wi
.info
= (void *) fndecl
;
3704 wi
.pset
= &visited_nodes
;
3706 FOR_EACH_BB_FN (bb
, fun
)
3709 gimple_seq seq
= bb_seq (bb
);
3710 ret
= walk_gimple_seq (seq
, inline_forbidden_p_stmt
, NULL
, &wi
);
3711 forbidden_p
= (ret
!= NULL
);
3719 /* Return false if the function FNDECL cannot be inlined on account of its
3720 attributes, true otherwise. */
3722 function_attribute_inlinable_p (const_tree fndecl
)
3724 if (targetm
.attribute_table
)
3728 for (a
= DECL_ATTRIBUTES (fndecl
); a
; a
= TREE_CHAIN (a
))
3730 const_tree name
= TREE_PURPOSE (a
);
3733 for (i
= 0; targetm
.attribute_table
[i
].name
!= NULL
; i
++)
3734 if (is_attribute_p (targetm
.attribute_table
[i
].name
, name
))
3735 return targetm
.function_attribute_inlinable_p (fndecl
);
3742 /* Returns nonzero if FN is a function that does not have any
3743 fundamental inline blocking properties. */
3746 tree_inlinable_function_p (tree fn
)
3748 bool inlinable
= true;
3752 /* If we've already decided this function shouldn't be inlined,
3753 there's no need to check again. */
3754 if (DECL_UNINLINABLE (fn
))
3757 /* We only warn for functions declared `inline' by the user. */
3758 do_warning
= (warn_inline
3759 && DECL_DECLARED_INLINE_P (fn
)
3760 && !DECL_NO_INLINE_WARNING_P (fn
)
3761 && !DECL_IN_SYSTEM_HEADER (fn
));
3763 always_inline
= lookup_attribute ("always_inline", DECL_ATTRIBUTES (fn
));
3766 && always_inline
== NULL
)
3769 warning (OPT_Winline
, "function %q+F can never be inlined because it "
3770 "is suppressed using -fno-inline", fn
);
3774 else if (!function_attribute_inlinable_p (fn
))
3777 warning (OPT_Winline
, "function %q+F can never be inlined because it "
3778 "uses attributes conflicting with inlining", fn
);
3782 else if (inline_forbidden_p (fn
))
3784 /* See if we should warn about uninlinable functions. Previously,
3785 some of these warnings would be issued while trying to expand
3786 the function inline, but that would cause multiple warnings
3787 about functions that would for example call alloca. But since
3788 this a property of the function, just one warning is enough.
3789 As a bonus we can now give more details about the reason why a
3790 function is not inlinable. */
3792 error (inline_forbidden_reason
, fn
);
3793 else if (do_warning
)
3794 warning (OPT_Winline
, inline_forbidden_reason
, fn
);
3799 /* Squirrel away the result so that we don't have to check again. */
3800 DECL_UNINLINABLE (fn
) = !inlinable
;
3805 /* Estimate the cost of a memory move of type TYPE. Use machine dependent
3806 word size and take possible memcpy call into account and return
3807 cost based on whether optimizing for size or speed according to SPEED_P. */
3810 estimate_move_cost (tree type
, bool ARG_UNUSED (speed_p
))
3814 gcc_assert (!VOID_TYPE_P (type
));
3816 if (TREE_CODE (type
) == VECTOR_TYPE
)
3818 machine_mode inner
= TYPE_MODE (TREE_TYPE (type
));
3820 = targetm
.vectorize
.preferred_simd_mode (inner
);
3821 int simd_mode_size
= GET_MODE_SIZE (simd
);
3822 return ((GET_MODE_SIZE (TYPE_MODE (type
)) + simd_mode_size
- 1)
3826 size
= int_size_in_bytes (type
);
3828 if (size
< 0 || size
> MOVE_MAX_PIECES
* MOVE_RATIO (speed_p
))
3829 /* Cost of a memcpy call, 3 arguments and the call. */
3832 return ((size
+ MOVE_MAX_PIECES
- 1) / MOVE_MAX_PIECES
);
3835 /* Returns cost of operation CODE, according to WEIGHTS */
3838 estimate_operator_cost (enum tree_code code
, eni_weights
*weights
,
3839 tree op1 ATTRIBUTE_UNUSED
, tree op2
)
3843 /* These are "free" conversions, or their presumed cost
3844 is folded into other operations. */
3849 case VIEW_CONVERT_EXPR
:
3852 /* Assign cost of 1 to usual operations.
3853 ??? We may consider mapping RTL costs to this. */
3859 case POINTER_PLUS_EXPR
:
3862 case MULT_HIGHPART_EXPR
:
3865 case ADDR_SPACE_CONVERT_EXPR
:
3866 case FIXED_CONVERT_EXPR
:
3867 case FIX_TRUNC_EXPR
:
3885 case TRUTH_ANDIF_EXPR
:
3886 case TRUTH_ORIF_EXPR
:
3887 case TRUTH_AND_EXPR
:
3889 case TRUTH_XOR_EXPR
:
3890 case TRUTH_NOT_EXPR
:
3899 case UNORDERED_EXPR
:
3910 case PREDECREMENT_EXPR
:
3911 case PREINCREMENT_EXPR
:
3912 case POSTDECREMENT_EXPR
:
3913 case POSTINCREMENT_EXPR
:
3915 case REALIGN_LOAD_EXPR
:
3917 case REDUC_MAX_EXPR
:
3918 case REDUC_MIN_EXPR
:
3919 case REDUC_PLUS_EXPR
:
3920 case WIDEN_SUM_EXPR
:
3921 case WIDEN_MULT_EXPR
:
3924 case WIDEN_MULT_PLUS_EXPR
:
3925 case WIDEN_MULT_MINUS_EXPR
:
3926 case WIDEN_LSHIFT_EXPR
:
3928 case VEC_WIDEN_MULT_HI_EXPR
:
3929 case VEC_WIDEN_MULT_LO_EXPR
:
3930 case VEC_WIDEN_MULT_EVEN_EXPR
:
3931 case VEC_WIDEN_MULT_ODD_EXPR
:
3932 case VEC_UNPACK_HI_EXPR
:
3933 case VEC_UNPACK_LO_EXPR
:
3934 case VEC_UNPACK_FLOAT_HI_EXPR
:
3935 case VEC_UNPACK_FLOAT_LO_EXPR
:
3936 case VEC_PACK_TRUNC_EXPR
:
3937 case VEC_PACK_SAT_EXPR
:
3938 case VEC_PACK_FIX_TRUNC_EXPR
:
3939 case VEC_WIDEN_LSHIFT_HI_EXPR
:
3940 case VEC_WIDEN_LSHIFT_LO_EXPR
:
3944 /* Few special cases of expensive operations. This is useful
3945 to avoid inlining on functions having too many of these. */
3946 case TRUNC_DIV_EXPR
:
3948 case FLOOR_DIV_EXPR
:
3949 case ROUND_DIV_EXPR
:
3950 case EXACT_DIV_EXPR
:
3951 case TRUNC_MOD_EXPR
:
3953 case FLOOR_MOD_EXPR
:
3954 case ROUND_MOD_EXPR
:
3956 if (TREE_CODE (op2
) != INTEGER_CST
)
3957 return weights
->div_mod_cost
;
3960 /* Bit-field insertion needs several shift and mask operations. */
3961 case BIT_INSERT_EXPR
:
3965 /* We expect a copy assignment with no operator. */
3966 gcc_assert (get_gimple_rhs_class (code
) == GIMPLE_SINGLE_RHS
);
3972 /* Estimate number of instructions that will be created by expanding
3973 the statements in the statement sequence STMTS.
3974 WEIGHTS contains weights attributed to various constructs. */
3977 estimate_num_insns_seq (gimple_seq stmts
, eni_weights
*weights
)
3980 gimple_stmt_iterator gsi
;
3983 for (gsi
= gsi_start (stmts
); !gsi_end_p (gsi
); gsi_next (&gsi
))
3984 cost
+= estimate_num_insns (gsi_stmt (gsi
), weights
);
3990 /* Estimate number of instructions that will be created by expanding STMT.
3991 WEIGHTS contains weights attributed to various constructs. */
3994 estimate_num_insns (gimple
*stmt
, eni_weights
*weights
)
3997 enum gimple_code code
= gimple_code (stmt
);
4004 /* Try to estimate the cost of assignments. We have three cases to
4006 1) Simple assignments to registers;
4007 2) Stores to things that must live in memory. This includes
4008 "normal" stores to scalars, but also assignments of large
4009 structures, or constructors of big arrays;
4011 Let us look at the first two cases, assuming we have "a = b + C":
4012 <GIMPLE_ASSIGN <var_decl "a">
4013 <plus_expr <var_decl "b"> <constant C>>
4014 If "a" is a GIMPLE register, the assignment to it is free on almost
4015 any target, because "a" usually ends up in a real register. Hence
4016 the only cost of this expression comes from the PLUS_EXPR, and we
4017 can ignore the GIMPLE_ASSIGN.
4018 If "a" is not a GIMPLE register, the assignment to "a" will most
4019 likely be a real store, so the cost of the GIMPLE_ASSIGN is the cost
4020 of moving something into "a", which we compute using the function
4021 estimate_move_cost. */
4022 if (gimple_clobber_p (stmt
))
4023 return 0; /* ={v} {CLOBBER} stmt expands to nothing. */
4025 lhs
= gimple_assign_lhs (stmt
);
4026 rhs
= gimple_assign_rhs1 (stmt
);
4030 /* Account for the cost of moving to / from memory. */
4031 if (gimple_store_p (stmt
))
4032 cost
+= estimate_move_cost (TREE_TYPE (lhs
), weights
->time_based
);
4033 if (gimple_assign_load_p (stmt
))
4034 cost
+= estimate_move_cost (TREE_TYPE (rhs
), weights
->time_based
);
4036 cost
+= estimate_operator_cost (gimple_assign_rhs_code (stmt
), weights
,
4037 gimple_assign_rhs1 (stmt
),
4038 get_gimple_rhs_class (gimple_assign_rhs_code (stmt
))
4039 == GIMPLE_BINARY_RHS
4040 ? gimple_assign_rhs2 (stmt
) : NULL
);
4044 cost
= 1 + estimate_operator_cost (gimple_cond_code (stmt
), weights
,
4045 gimple_op (stmt
, 0),
4046 gimple_op (stmt
, 1));
4051 gswitch
*switch_stmt
= as_a
<gswitch
*> (stmt
);
4052 /* Take into account cost of the switch + guess 2 conditional jumps for
4055 TODO: once the switch expansion logic is sufficiently separated, we can
4056 do better job on estimating cost of the switch. */
4057 if (weights
->time_based
)
4058 cost
= floor_log2 (gimple_switch_num_labels (switch_stmt
)) * 2;
4060 cost
= gimple_switch_num_labels (switch_stmt
) * 2;
4068 if (gimple_call_internal_p (stmt
))
4070 else if ((decl
= gimple_call_fndecl (stmt
))
4071 && DECL_BUILT_IN (decl
))
4073 /* Do not special case builtins where we see the body.
4074 This just confuse inliner. */
4075 struct cgraph_node
*node
;
4076 if (!(node
= cgraph_node::get (decl
))
4077 || node
->definition
)
4079 /* For buitins that are likely expanded to nothing or
4080 inlined do not account operand costs. */
4081 else if (is_simple_builtin (decl
))
4083 else if (is_inexpensive_builtin (decl
))
4084 return weights
->target_builtin_call_cost
;
4085 else if (gimple_call_builtin_p (stmt
, BUILT_IN_NORMAL
))
4087 /* We canonicalize x * x to pow (x, 2.0) with -ffast-math, so
4088 specialize the cheap expansion we do here.
4089 ??? This asks for a more general solution. */
4090 switch (DECL_FUNCTION_CODE (decl
))
4095 if (TREE_CODE (gimple_call_arg (stmt
, 1)) == REAL_CST
4097 (&TREE_REAL_CST (gimple_call_arg (stmt
, 1)),
4099 return estimate_operator_cost
4100 (MULT_EXPR
, weights
, gimple_call_arg (stmt
, 0),
4101 gimple_call_arg (stmt
, 0));
4110 cost
= decl
? weights
->call_cost
: weights
->indirect_call_cost
;
4111 if (gimple_call_lhs (stmt
))
4112 cost
+= estimate_move_cost (TREE_TYPE (gimple_call_lhs (stmt
)),
4113 weights
->time_based
);
4114 for (i
= 0; i
< gimple_call_num_args (stmt
); i
++)
4116 tree arg
= gimple_call_arg (stmt
, i
);
4117 cost
+= estimate_move_cost (TREE_TYPE (arg
),
4118 weights
->time_based
);
4124 return weights
->return_cost
;
4130 case GIMPLE_PREDICT
:
4136 int count
= asm_str_count (gimple_asm_string (as_a
<gasm
*> (stmt
)));
4137 /* 1000 means infinity. This avoids overflows later
4138 with very long asm statements. */
4145 /* This is either going to be an external function call with one
4146 argument, or two register copy statements plus a goto. */
4149 case GIMPLE_EH_DISPATCH
:
4150 /* ??? This is going to turn into a switch statement. Ideally
4151 we'd have a look at the eh region and estimate the number of
4156 return estimate_num_insns_seq (
4157 gimple_bind_body (as_a
<gbind
*> (stmt
)),
4160 case GIMPLE_EH_FILTER
:
4161 return estimate_num_insns_seq (gimple_eh_filter_failure (stmt
), weights
);
4164 return estimate_num_insns_seq (gimple_catch_handler (
4165 as_a
<gcatch
*> (stmt
)),
4169 return (estimate_num_insns_seq (gimple_try_eval (stmt
), weights
)
4170 + estimate_num_insns_seq (gimple_try_cleanup (stmt
), weights
));
4172 /* OMP directives are generally very expensive. */
4174 case GIMPLE_OMP_RETURN
:
4175 case GIMPLE_OMP_SECTIONS_SWITCH
:
4176 case GIMPLE_OMP_ATOMIC_STORE
:
4177 case GIMPLE_OMP_CONTINUE
:
4178 /* ...except these, which are cheap. */
4181 case GIMPLE_OMP_ATOMIC_LOAD
:
4182 return weights
->omp_cost
;
4184 case GIMPLE_OMP_FOR
:
4185 return (weights
->omp_cost
4186 + estimate_num_insns_seq (gimple_omp_body (stmt
), weights
)
4187 + estimate_num_insns_seq (gimple_omp_for_pre_body (stmt
), weights
));
4189 case GIMPLE_OMP_PARALLEL
:
4190 case GIMPLE_OMP_TASK
:
4191 case GIMPLE_OMP_CRITICAL
:
4192 case GIMPLE_OMP_MASTER
:
4193 case GIMPLE_OMP_TASKGROUP
:
4194 case GIMPLE_OMP_ORDERED
:
4195 case GIMPLE_OMP_SECTION
:
4196 case GIMPLE_OMP_SECTIONS
:
4197 case GIMPLE_OMP_SINGLE
:
4198 case GIMPLE_OMP_TARGET
:
4199 case GIMPLE_OMP_TEAMS
:
4200 return (weights
->omp_cost
4201 + estimate_num_insns_seq (gimple_omp_body (stmt
), weights
));
4203 case GIMPLE_TRANSACTION
:
4204 return (weights
->tm_cost
4205 + estimate_num_insns_seq (gimple_transaction_body (
4206 as_a
<gtransaction
*> (stmt
)),
4216 /* Estimate number of instructions that will be created by expanding
4217 function FNDECL. WEIGHTS contains weights attributed to various
4221 estimate_num_insns_fn (tree fndecl
, eni_weights
*weights
)
4223 struct function
*my_function
= DECL_STRUCT_FUNCTION (fndecl
);
4224 gimple_stmt_iterator bsi
;
4228 gcc_assert (my_function
&& my_function
->cfg
);
4229 FOR_EACH_BB_FN (bb
, my_function
)
4231 for (bsi
= gsi_start_bb (bb
); !gsi_end_p (bsi
); gsi_next (&bsi
))
4232 n
+= estimate_num_insns (gsi_stmt (bsi
), weights
);
4239 /* Initializes weights used by estimate_num_insns. */
4242 init_inline_once (void)
4244 eni_size_weights
.call_cost
= 1;
4245 eni_size_weights
.indirect_call_cost
= 3;
4246 eni_size_weights
.target_builtin_call_cost
= 1;
4247 eni_size_weights
.div_mod_cost
= 1;
4248 eni_size_weights
.omp_cost
= 40;
4249 eni_size_weights
.tm_cost
= 10;
4250 eni_size_weights
.time_based
= false;
4251 eni_size_weights
.return_cost
= 1;
4253 /* Estimating time for call is difficult, since we have no idea what the
4254 called function does. In the current uses of eni_time_weights,
4255 underestimating the cost does less harm than overestimating it, so
4256 we choose a rather small value here. */
4257 eni_time_weights
.call_cost
= 10;
4258 eni_time_weights
.indirect_call_cost
= 15;
4259 eni_time_weights
.target_builtin_call_cost
= 1;
4260 eni_time_weights
.div_mod_cost
= 10;
4261 eni_time_weights
.omp_cost
= 40;
4262 eni_time_weights
.tm_cost
= 40;
4263 eni_time_weights
.time_based
= true;
4264 eni_time_weights
.return_cost
= 2;
4268 /* Install new lexical TREE_BLOCK underneath 'current_block'. */
4271 prepend_lexical_block (tree current_block
, tree new_block
)
4273 BLOCK_CHAIN (new_block
) = BLOCK_SUBBLOCKS (current_block
);
4274 BLOCK_SUBBLOCKS (current_block
) = new_block
;
4275 BLOCK_SUPERCONTEXT (new_block
) = current_block
;
4278 /* Add local variables from CALLEE to CALLER. */
4281 add_local_variables (struct function
*callee
, struct function
*caller
,
4287 FOR_EACH_LOCAL_DECL (callee
, ix
, var
)
4288 if (!can_be_nonlocal (var
, id
))
4290 tree new_var
= remap_decl (var
, id
);
4292 /* Remap debug-expressions. */
4294 && DECL_HAS_DEBUG_EXPR_P (var
)
4297 tree tem
= DECL_DEBUG_EXPR (var
);
4298 bool old_regimplify
= id
->regimplify
;
4299 id
->remapping_type_depth
++;
4300 walk_tree (&tem
, copy_tree_body_r
, id
, NULL
);
4301 id
->remapping_type_depth
--;
4302 id
->regimplify
= old_regimplify
;
4303 SET_DECL_DEBUG_EXPR (new_var
, tem
);
4304 DECL_HAS_DEBUG_EXPR_P (new_var
) = 1;
4306 add_local_decl (caller
, new_var
);
4310 /* Add to BINDINGS a debug stmt resetting SRCVAR if inlining might
4311 have brought in or introduced any debug stmts for SRCVAR. */
4314 reset_debug_binding (copy_body_data
*id
, tree srcvar
, gimple_seq
*bindings
)
4316 tree
*remappedvarp
= id
->decl_map
->get (srcvar
);
4321 if (!VAR_P (*remappedvarp
))
4324 if (*remappedvarp
== id
->retvar
|| *remappedvarp
== id
->retbnd
)
4327 tree tvar
= target_for_debug_bind (*remappedvarp
);
4331 gdebug
*stmt
= gimple_build_debug_bind (tvar
, NULL_TREE
,
4333 gimple_seq_add_stmt (bindings
, stmt
);
4336 /* For each inlined variable for which we may have debug bind stmts,
4337 add before GSI a final debug stmt resetting it, marking the end of
4338 its life, so that var-tracking knows it doesn't have to compute
4339 further locations for it. */
4342 reset_debug_bindings (copy_body_data
*id
, gimple_stmt_iterator gsi
)
4346 gimple_seq bindings
= NULL
;
4348 if (!gimple_in_ssa_p (id
->src_cfun
))
4351 if (!opt_for_fn (id
->dst_fn
, flag_var_tracking_assignments
))
4354 for (var
= DECL_ARGUMENTS (id
->src_fn
);
4355 var
; var
= DECL_CHAIN (var
))
4356 reset_debug_binding (id
, var
, &bindings
);
4358 FOR_EACH_LOCAL_DECL (id
->src_cfun
, ix
, var
)
4359 reset_debug_binding (id
, var
, &bindings
);
4361 gsi_insert_seq_before_without_update (&gsi
, bindings
, GSI_SAME_STMT
);
4364 /* If STMT is a GIMPLE_CALL, replace it with its inline expansion. */
4367 expand_call_inline (basic_block bb
, gimple
*stmt
, copy_body_data
*id
)
4371 hash_map
<tree
, tree
> *dst
;
4372 hash_map
<tree
, tree
> *st
= NULL
;
4375 tree return_bounds
= NULL
;
4376 struct cgraph_edge
*cg_edge
;
4377 cgraph_inline_failed_t reason
;
4378 basic_block return_block
;
4380 gimple_stmt_iterator gsi
, stmt_gsi
;
4381 bool successfully_inlined
= false;
4382 bool purge_dead_abnormal_edges
;
4386 /* The gimplifier uses input_location in too many places, such as
4387 internal_get_tmp_var (). */
4388 location_t saved_location
= input_location
;
4389 input_location
= gimple_location (stmt
);
4391 /* From here on, we're only interested in CALL_EXPRs. */
4392 call_stmt
= dyn_cast
<gcall
*> (stmt
);
4396 cg_edge
= id
->dst_node
->get_edge (stmt
);
4397 gcc_checking_assert (cg_edge
);
4398 /* First, see if we can figure out what function is being called.
4399 If we cannot, then there is no hope of inlining the function. */
4400 if (cg_edge
->indirect_unknown_callee
)
4402 fn
= cg_edge
->callee
->decl
;
4403 gcc_checking_assert (fn
);
4405 /* If FN is a declaration of a function in a nested scope that was
4406 globally declared inline, we don't set its DECL_INITIAL.
4407 However, we can't blindly follow DECL_ABSTRACT_ORIGIN because the
4408 C++ front-end uses it for cdtors to refer to their internal
4409 declarations, that are not real functions. Fortunately those
4410 don't have trees to be saved, so we can tell by checking their
4412 if (!DECL_INITIAL (fn
)
4413 && DECL_ABSTRACT_ORIGIN (fn
)
4414 && gimple_has_body_p (DECL_ABSTRACT_ORIGIN (fn
)))
4415 fn
= DECL_ABSTRACT_ORIGIN (fn
);
4417 /* Don't try to inline functions that are not well-suited to inlining. */
4418 if (cg_edge
->inline_failed
)
4420 reason
= cg_edge
->inline_failed
;
4421 /* If this call was originally indirect, we do not want to emit any
4422 inlining related warnings or sorry messages because there are no
4423 guarantees regarding those. */
4424 if (cg_edge
->indirect_inlining_edge
)
4427 if (lookup_attribute ("always_inline", DECL_ATTRIBUTES (fn
))
4428 /* For extern inline functions that get redefined we always
4429 silently ignored always_inline flag. Better behavior would
4430 be to be able to keep both bodies and use extern inline body
4431 for inlining, but we can't do that because frontends overwrite
4433 && !cg_edge
->callee
->local
.redefined_extern_inline
4434 /* During early inline pass, report only when optimization is
4436 && (symtab
->global_info_ready
4438 || cgraph_inline_failed_type (reason
) == CIF_FINAL_ERROR
)
4439 /* PR 20090218-1_0.c. Body can be provided by another module. */
4440 && (reason
!= CIF_BODY_NOT_AVAILABLE
|| !flag_generate_lto
))
4442 error ("inlining failed in call to always_inline %q+F: %s", fn
,
4443 cgraph_inline_failed_string (reason
));
4444 if (gimple_location (stmt
) != UNKNOWN_LOCATION
)
4445 inform (gimple_location (stmt
), "called from here");
4446 else if (DECL_SOURCE_LOCATION (cfun
->decl
) != UNKNOWN_LOCATION
)
4447 inform (DECL_SOURCE_LOCATION (cfun
->decl
),
4448 "called from this function");
4450 else if (warn_inline
4451 && DECL_DECLARED_INLINE_P (fn
)
4452 && !DECL_NO_INLINE_WARNING_P (fn
)
4453 && !DECL_IN_SYSTEM_HEADER (fn
)
4454 && reason
!= CIF_UNSPECIFIED
4455 && !lookup_attribute ("noinline", DECL_ATTRIBUTES (fn
))
4456 /* Do not warn about not inlined recursive calls. */
4457 && !cg_edge
->recursive_p ()
4458 /* Avoid warnings during early inline pass. */
4459 && symtab
->global_info_ready
)
4461 if (warning (OPT_Winline
, "inlining failed in call to %q+F: %s",
4462 fn
, _(cgraph_inline_failed_string (reason
))))
4464 if (gimple_location (stmt
) != UNKNOWN_LOCATION
)
4465 inform (gimple_location (stmt
), "called from here");
4466 else if (DECL_SOURCE_LOCATION (cfun
->decl
) != UNKNOWN_LOCATION
)
4467 inform (DECL_SOURCE_LOCATION (cfun
->decl
),
4468 "called from this function");
4473 id
->src_node
= cg_edge
->callee
;
4475 /* If callee is thunk, all we need is to adjust the THIS pointer
4476 and redirect to function being thunked. */
4477 if (id
->src_node
->thunk
.thunk_p
)
4480 tree virtual_offset
= NULL
;
4481 int freq
= cg_edge
->frequency
;
4482 gcov_type count
= cg_edge
->count
;
4484 gimple_stmt_iterator iter
= gsi_for_stmt (stmt
);
4487 edge
= id
->src_node
->callees
->clone (id
->dst_node
, call_stmt
,
4489 REG_BR_PROB_BASE
, CGRAPH_FREQ_BASE
,
4491 edge
->frequency
= freq
;
4492 edge
->count
= count
;
4493 if (id
->src_node
->thunk
.virtual_offset_p
)
4494 virtual_offset
= size_int (id
->src_node
->thunk
.virtual_value
);
4495 op
= create_tmp_reg_fn (cfun
, TREE_TYPE (gimple_call_arg (stmt
, 0)),
4497 gsi_insert_before (&iter
, gimple_build_assign (op
,
4498 gimple_call_arg (stmt
, 0)),
4500 gcc_assert (id
->src_node
->thunk
.this_adjusting
);
4501 op
= thunk_adjust (&iter
, op
, 1, id
->src_node
->thunk
.fixed_offset
,
4504 gimple_call_set_arg (stmt
, 0, op
);
4505 gimple_call_set_fndecl (stmt
, edge
->callee
->decl
);
4507 id
->src_node
->remove ();
4508 expand_call_inline (bb
, stmt
, id
);
4509 maybe_remove_unused_call_args (cfun
, stmt
);
4512 fn
= cg_edge
->callee
->decl
;
4513 cg_edge
->callee
->get_untransformed_body ();
4515 if (flag_checking
&& cg_edge
->callee
->decl
!= id
->dst_node
->decl
)
4516 cg_edge
->callee
->verify ();
4518 /* We will be inlining this callee. */
4519 id
->eh_lp_nr
= lookup_stmt_eh_lp (stmt
);
4520 id
->assign_stmts
.create (0);
4522 /* Update the callers EH personality. */
4523 if (DECL_FUNCTION_PERSONALITY (cg_edge
->callee
->decl
))
4524 DECL_FUNCTION_PERSONALITY (cg_edge
->caller
->decl
)
4525 = DECL_FUNCTION_PERSONALITY (cg_edge
->callee
->decl
);
4527 /* Split the block holding the GIMPLE_CALL. */
4528 e
= split_block (bb
, stmt
);
4530 return_block
= e
->dest
;
4533 /* split_block splits after the statement; work around this by
4534 moving the call into the second block manually. Not pretty,
4535 but seems easier than doing the CFG manipulation by hand
4536 when the GIMPLE_CALL is in the last statement of BB. */
4537 stmt_gsi
= gsi_last_bb (bb
);
4538 gsi_remove (&stmt_gsi
, false);
4540 /* If the GIMPLE_CALL was in the last statement of BB, it may have
4541 been the source of abnormal edges. In this case, schedule
4542 the removal of dead abnormal edges. */
4543 gsi
= gsi_start_bb (return_block
);
4544 if (gsi_end_p (gsi
))
4546 gsi_insert_after (&gsi
, stmt
, GSI_NEW_STMT
);
4547 purge_dead_abnormal_edges
= true;
4551 gsi_insert_before (&gsi
, stmt
, GSI_NEW_STMT
);
4552 purge_dead_abnormal_edges
= false;
4555 stmt_gsi
= gsi_start_bb (return_block
);
4557 /* Build a block containing code to initialize the arguments, the
4558 actual inline expansion of the body, and a label for the return
4559 statements within the function to jump to. The type of the
4560 statement expression is the return type of the function call.
4561 ??? If the call does not have an associated block then we will
4562 remap all callee blocks to NULL, effectively dropping most of
4563 its debug information. This should only happen for calls to
4564 artificial decls inserted by the compiler itself. We need to
4565 either link the inlined blocks into the caller block tree or
4566 not refer to them in any way to not break GC for locations. */
4567 if (gimple_block (stmt
))
4569 id
->block
= make_node (BLOCK
);
4570 BLOCK_ABSTRACT_ORIGIN (id
->block
) = fn
;
4571 BLOCK_SOURCE_LOCATION (id
->block
)
4572 = LOCATION_LOCUS (gimple_location (stmt
));
4573 prepend_lexical_block (gimple_block (stmt
), id
->block
);
4576 /* Local declarations will be replaced by their equivalents in this
4579 id
->decl_map
= new hash_map
<tree
, tree
>;
4580 dst
= id
->debug_map
;
4581 id
->debug_map
= NULL
;
4583 /* Record the function we are about to inline. */
4585 id
->src_cfun
= DECL_STRUCT_FUNCTION (fn
);
4586 id
->call_stmt
= stmt
;
4588 /* If the src function contains an IFN_VA_ARG, then so will the dst
4589 function after inlining. */
4590 if ((id
->src_cfun
->curr_properties
& PROP_gimple_lva
) == 0)
4592 struct function
*dst_cfun
= DECL_STRUCT_FUNCTION (id
->dst_fn
);
4593 dst_cfun
->curr_properties
&= ~PROP_gimple_lva
;
4596 gcc_assert (!id
->src_cfun
->after_inlining
);
4599 if (lookup_attribute ("cold", DECL_ATTRIBUTES (fn
)))
4601 gimple_stmt_iterator si
= gsi_last_bb (bb
);
4602 gsi_insert_after (&si
, gimple_build_predict (PRED_COLD_FUNCTION
,
4606 initialize_inlined_parameters (id
, stmt
, fn
, bb
);
4608 if (DECL_INITIAL (fn
))
4610 if (gimple_block (stmt
))
4614 prepend_lexical_block (id
->block
,
4615 remap_blocks (DECL_INITIAL (fn
), id
));
4616 gcc_checking_assert (BLOCK_SUBBLOCKS (id
->block
)
4617 && (BLOCK_CHAIN (BLOCK_SUBBLOCKS (id
->block
))
4619 /* Move vars for PARM_DECLs from DECL_INITIAL block to id->block,
4620 otherwise for DWARF DW_TAG_formal_parameter will not be children of
4621 DW_TAG_inlined_subroutine, but of a DW_TAG_lexical_block
4622 under it. The parameters can be then evaluated in the debugger,
4623 but don't show in backtraces. */
4624 for (var
= &BLOCK_VARS (BLOCK_SUBBLOCKS (id
->block
)); *var
; )
4625 if (TREE_CODE (DECL_ORIGIN (*var
)) == PARM_DECL
)
4628 *var
= TREE_CHAIN (v
);
4629 TREE_CHAIN (v
) = BLOCK_VARS (id
->block
);
4630 BLOCK_VARS (id
->block
) = v
;
4633 var
= &TREE_CHAIN (*var
);
4636 remap_blocks_to_null (DECL_INITIAL (fn
), id
);
4639 /* Return statements in the function body will be replaced by jumps
4640 to the RET_LABEL. */
4641 gcc_assert (DECL_INITIAL (fn
));
4642 gcc_assert (TREE_CODE (DECL_INITIAL (fn
)) == BLOCK
);
4644 /* Find the LHS to which the result of this call is assigned. */
4646 if (gimple_call_lhs (stmt
))
4648 modify_dest
= gimple_call_lhs (stmt
);
4650 /* Remember where to copy returned bounds. */
4651 if (gimple_call_with_bounds_p (stmt
)
4652 && TREE_CODE (modify_dest
) == SSA_NAME
)
4654 gcall
*retbnd
= chkp_retbnd_call_by_val (modify_dest
);
4657 return_bounds
= gimple_call_lhs (retbnd
);
4658 /* If returned bounds are not used then just
4659 remove unused call. */
4662 gimple_stmt_iterator iter
= gsi_for_stmt (retbnd
);
4663 gsi_remove (&iter
, true);
4668 /* The function which we are inlining might not return a value,
4669 in which case we should issue a warning that the function
4670 does not return a value. In that case the optimizers will
4671 see that the variable to which the value is assigned was not
4672 initialized. We do not want to issue a warning about that
4673 uninitialized variable. */
4674 if (DECL_P (modify_dest
))
4675 TREE_NO_WARNING (modify_dest
) = 1;
4677 if (gimple_call_return_slot_opt_p (call_stmt
))
4679 return_slot
= modify_dest
;
4686 /* If we are inlining a call to the C++ operator new, we don't want
4687 to use type based alias analysis on the return value. Otherwise
4688 we may get confused if the compiler sees that the inlined new
4689 function returns a pointer which was just deleted. See bug
4691 if (DECL_IS_OPERATOR_NEW (fn
))
4697 /* Declare the return variable for the function. */
4698 use_retvar
= declare_return_variable (id
, return_slot
, modify_dest
,
4701 /* Add local vars in this inlined callee to caller. */
4702 add_local_variables (id
->src_cfun
, cfun
, id
);
4704 if (dump_file
&& (dump_flags
& TDF_DETAILS
))
4706 fprintf (dump_file
, "Inlining ");
4707 print_generic_expr (dump_file
, id
->src_fn
, 0);
4708 fprintf (dump_file
, " to ");
4709 print_generic_expr (dump_file
, id
->dst_fn
, 0);
4710 fprintf (dump_file
, " with frequency %i\n", cg_edge
->frequency
);
4713 /* This is it. Duplicate the callee body. Assume callee is
4714 pre-gimplified. Note that we must not alter the caller
4715 function in any way before this point, as this CALL_EXPR may be
4716 a self-referential call; if we're calling ourselves, we need to
4717 duplicate our body before altering anything. */
4718 copy_body (id
, cg_edge
->callee
->count
,
4719 GCOV_COMPUTE_SCALE (cg_edge
->frequency
, CGRAPH_FREQ_BASE
),
4720 bb
, return_block
, NULL
);
4722 reset_debug_bindings (id
, stmt_gsi
);
4724 /* Reset the escaped solution. */
4725 if (cfun
->gimple_df
)
4726 pt_solution_reset (&cfun
->gimple_df
->escaped
);
4731 delete id
->debug_map
;
4732 id
->debug_map
= dst
;
4734 delete id
->decl_map
;
4737 /* Unlink the calls virtual operands before replacing it. */
4738 unlink_stmt_vdef (stmt
);
4739 if (gimple_vdef (stmt
)
4740 && TREE_CODE (gimple_vdef (stmt
)) == SSA_NAME
)
4741 release_ssa_name (gimple_vdef (stmt
));
4743 /* If the inlined function returns a result that we care about,
4744 substitute the GIMPLE_CALL with an assignment of the return
4745 variable to the LHS of the call. That is, if STMT was
4746 'a = foo (...)', substitute the call with 'a = USE_RETVAR'. */
4747 if (use_retvar
&& gimple_call_lhs (stmt
))
4749 gimple
*old_stmt
= stmt
;
4750 stmt
= gimple_build_assign (gimple_call_lhs (stmt
), use_retvar
);
4751 gsi_replace (&stmt_gsi
, stmt
, false);
4752 maybe_clean_or_replace_eh_stmt (old_stmt
, stmt
);
4754 /* Copy bounds if we copy structure with bounds. */
4755 if (chkp_function_instrumented_p (id
->dst_fn
)
4756 && !BOUNDED_P (use_retvar
)
4757 && chkp_type_has_pointer (TREE_TYPE (use_retvar
)))
4758 id
->assign_stmts
.safe_push (stmt
);
4762 /* Handle the case of inlining a function with no return
4763 statement, which causes the return value to become undefined. */
4764 if (gimple_call_lhs (stmt
)
4765 && TREE_CODE (gimple_call_lhs (stmt
)) == SSA_NAME
)
4767 tree name
= gimple_call_lhs (stmt
);
4768 tree var
= SSA_NAME_VAR (name
);
4769 tree def
= var
? ssa_default_def (cfun
, var
) : NULL
;
4773 /* If the variable is used undefined, make this name
4774 undefined via a move. */
4775 stmt
= gimple_build_assign (gimple_call_lhs (stmt
), def
);
4776 gsi_replace (&stmt_gsi
, stmt
, true);
4782 tree var
= create_tmp_reg_fn (cfun
, TREE_TYPE (name
), NULL
);
4783 SET_SSA_NAME_VAR_OR_IDENTIFIER (name
, var
);
4785 /* Otherwise make this variable undefined. */
4786 gsi_remove (&stmt_gsi
, true);
4787 set_ssa_default_def (cfun
, var
, name
);
4788 SSA_NAME_DEF_STMT (name
) = gimple_build_nop ();
4792 gsi_remove (&stmt_gsi
, true);
4795 /* Put returned bounds into the correct place if required. */
4798 gimple
*old_stmt
= SSA_NAME_DEF_STMT (return_bounds
);
4799 gimple
*new_stmt
= gimple_build_assign (return_bounds
, id
->retbnd
);
4800 gimple_stmt_iterator bnd_gsi
= gsi_for_stmt (old_stmt
);
4801 unlink_stmt_vdef (old_stmt
);
4802 gsi_replace (&bnd_gsi
, new_stmt
, false);
4803 maybe_clean_or_replace_eh_stmt (old_stmt
, new_stmt
);
4804 cgraph_update_edges_for_call_stmt (old_stmt
,
4805 gimple_call_fndecl (old_stmt
),
4809 if (purge_dead_abnormal_edges
)
4811 gimple_purge_dead_eh_edges (return_block
);
4812 gimple_purge_dead_abnormal_call_edges (return_block
);
4815 /* If the value of the new expression is ignored, that's OK. We
4816 don't warn about this for CALL_EXPRs, so we shouldn't warn about
4817 the equivalent inlined version either. */
4818 if (is_gimple_assign (stmt
))
4820 gcc_assert (gimple_assign_single_p (stmt
)
4821 || CONVERT_EXPR_CODE_P (gimple_assign_rhs_code (stmt
)));
4822 TREE_USED (gimple_assign_rhs1 (stmt
)) = 1;
4825 /* Copy bounds for all generated assigns that need it. */
4826 for (i
= 0; i
< id
->assign_stmts
.length (); i
++)
4827 chkp_copy_bounds_for_assign (id
->assign_stmts
[i
], cg_edge
);
4828 id
->assign_stmts
.release ();
4830 /* Output the inlining info for this abstract function, since it has been
4831 inlined. If we don't do this now, we can lose the information about the
4832 variables in the function when the blocks get blown away as soon as we
4833 remove the cgraph node. */
4834 if (gimple_block (stmt
))
4835 (*debug_hooks
->outlining_inline_function
) (cg_edge
->callee
->decl
);
4837 /* Update callgraph if needed. */
4838 cg_edge
->callee
->remove ();
4840 id
->block
= NULL_TREE
;
4841 successfully_inlined
= true;
4844 input_location
= saved_location
;
4845 return successfully_inlined
;
4848 /* Expand call statements reachable from STMT_P.
4849 We can only have CALL_EXPRs as the "toplevel" tree code or nested
4850 in a MODIFY_EXPR. */
4853 gimple_expand_calls_inline (basic_block bb
, copy_body_data
*id
)
4855 gimple_stmt_iterator gsi
;
4856 bool inlined
= false;
4858 for (gsi
= gsi_last_bb (bb
); !gsi_end_p (gsi
);)
4860 gimple
*stmt
= gsi_stmt (gsi
);
4863 if (is_gimple_call (stmt
)
4864 && !gimple_call_internal_p (stmt
))
4865 inlined
|= expand_call_inline (bb
, stmt
, id
);
4872 /* Walk all basic blocks created after FIRST and try to fold every statement
4873 in the STATEMENTS pointer set. */
4876 fold_marked_statements (int first
, hash_set
<gimple
*> *statements
)
4878 for (; first
< n_basic_blocks_for_fn (cfun
); first
++)
4879 if (BASIC_BLOCK_FOR_FN (cfun
, first
))
4881 gimple_stmt_iterator gsi
;
4883 for (gsi
= gsi_start_bb (BASIC_BLOCK_FOR_FN (cfun
, first
));
4886 if (statements
->contains (gsi_stmt (gsi
)))
4888 gimple
*old_stmt
= gsi_stmt (gsi
);
4889 tree old_decl
= is_gimple_call (old_stmt
) ? gimple_call_fndecl (old_stmt
) : 0;
4891 if (old_decl
&& DECL_BUILT_IN (old_decl
))
4893 /* Folding builtins can create multiple instructions,
4894 we need to look at all of them. */
4895 gimple_stmt_iterator i2
= gsi
;
4897 if (fold_stmt (&gsi
))
4900 /* If a builtin at the end of a bb folded into nothing,
4901 the following loop won't work. */
4902 if (gsi_end_p (gsi
))
4904 cgraph_update_edges_for_call_stmt (old_stmt
,
4909 i2
= gsi_start_bb (BASIC_BLOCK_FOR_FN (cfun
, first
));
4914 new_stmt
= gsi_stmt (i2
);
4915 update_stmt (new_stmt
);
4916 cgraph_update_edges_for_call_stmt (old_stmt
, old_decl
,
4919 if (new_stmt
== gsi_stmt (gsi
))
4921 /* It is okay to check only for the very last
4922 of these statements. If it is a throwing
4923 statement nothing will change. If it isn't
4924 this can remove EH edges. If that weren't
4925 correct then because some intermediate stmts
4926 throw, but not the last one. That would mean
4927 we'd have to split the block, which we can't
4928 here and we'd loose anyway. And as builtins
4929 probably never throw, this all
4931 if (maybe_clean_or_replace_eh_stmt (old_stmt
,
4933 gimple_purge_dead_eh_edges (
4934 BASIC_BLOCK_FOR_FN (cfun
, first
));
4941 else if (fold_stmt (&gsi
))
4943 /* Re-read the statement from GSI as fold_stmt() may
4945 gimple
*new_stmt
= gsi_stmt (gsi
);
4946 update_stmt (new_stmt
);
4948 if (is_gimple_call (old_stmt
)
4949 || is_gimple_call (new_stmt
))
4950 cgraph_update_edges_for_call_stmt (old_stmt
, old_decl
,
4953 if (maybe_clean_or_replace_eh_stmt (old_stmt
, new_stmt
))
4954 gimple_purge_dead_eh_edges (BASIC_BLOCK_FOR_FN (cfun
,
4961 /* Expand calls to inline functions in the body of FN. */
4964 optimize_inline_calls (tree fn
)
4968 int last
= n_basic_blocks_for_fn (cfun
);
4969 bool inlined_p
= false;
4972 memset (&id
, 0, sizeof (id
));
4974 id
.src_node
= id
.dst_node
= cgraph_node::get (fn
);
4975 gcc_assert (id
.dst_node
->definition
);
4977 /* Or any functions that aren't finished yet. */
4978 if (current_function_decl
)
4979 id
.dst_fn
= current_function_decl
;
4981 id
.copy_decl
= copy_decl_maybe_to_var
;
4982 id
.transform_call_graph_edges
= CB_CGE_DUPLICATE
;
4983 id
.transform_new_cfg
= false;
4984 id
.transform_return_to_modify
= true;
4985 id
.transform_parameter
= true;
4986 id
.transform_lang_insert_block
= NULL
;
4987 id
.statements_to_fold
= new hash_set
<gimple
*>;
4989 push_gimplify_context ();
4991 /* We make no attempts to keep dominance info up-to-date. */
4992 free_dominance_info (CDI_DOMINATORS
);
4993 free_dominance_info (CDI_POST_DOMINATORS
);
4995 /* Register specific gimple functions. */
4996 gimple_register_cfg_hooks ();
4998 /* Reach the trees by walking over the CFG, and note the
4999 enclosing basic-blocks in the call edges. */
5000 /* We walk the blocks going forward, because inlined function bodies
5001 will split id->current_basic_block, and the new blocks will
5002 follow it; we'll trudge through them, processing their CALL_EXPRs
5004 FOR_EACH_BB_FN (bb
, cfun
)
5005 inlined_p
|= gimple_expand_calls_inline (bb
, &id
);
5007 pop_gimplify_context (NULL
);
5011 struct cgraph_edge
*e
;
5013 id
.dst_node
->verify ();
5015 /* Double check that we inlined everything we are supposed to inline. */
5016 for (e
= id
.dst_node
->callees
; e
; e
= e
->next_callee
)
5017 gcc_assert (e
->inline_failed
);
5020 /* Fold queued statements. */
5021 fold_marked_statements (last
, id
.statements_to_fold
);
5022 delete id
.statements_to_fold
;
5024 gcc_assert (!id
.debug_stmts
.exists ());
5026 /* If we didn't inline into the function there is nothing to do. */
5030 /* Renumber the lexical scoping (non-code) blocks consecutively. */
5033 delete_unreachable_blocks_update_callgraph (&id
);
5035 id
.dst_node
->verify ();
5037 /* It would be nice to check SSA/CFG/statement consistency here, but it is
5038 not possible yet - the IPA passes might make various functions to not
5039 throw and they don't care to proactively update local EH info. This is
5040 done later in fixup_cfg pass that also execute the verification. */
5041 return (TODO_update_ssa
5043 | (gimple_in_ssa_p (cfun
) ? TODO_remove_unused_locals
: 0)
5044 | (gimple_in_ssa_p (cfun
) ? TODO_update_address_taken
: 0)
5045 | (profile_status_for_fn (cfun
) != PROFILE_ABSENT
5046 ? TODO_rebuild_frequencies
: 0));
5049 /* Passed to walk_tree. Copies the node pointed to, if appropriate. */
5052 copy_tree_r (tree
*tp
, int *walk_subtrees
, void *data ATTRIBUTE_UNUSED
)
5054 enum tree_code code
= TREE_CODE (*tp
);
5055 enum tree_code_class cl
= TREE_CODE_CLASS (code
);
5057 /* We make copies of most nodes. */
5058 if (IS_EXPR_CODE_CLASS (cl
)
5059 || code
== TREE_LIST
5061 || code
== TYPE_DECL
5062 || code
== OMP_CLAUSE
)
5064 /* Because the chain gets clobbered when we make a copy, we save it
5066 tree chain
= NULL_TREE
, new_tree
;
5068 if (CODE_CONTAINS_STRUCT (code
, TS_COMMON
))
5069 chain
= TREE_CHAIN (*tp
);
5071 /* Copy the node. */
5072 new_tree
= copy_node (*tp
);
5076 /* Now, restore the chain, if appropriate. That will cause
5077 walk_tree to walk into the chain as well. */
5078 if (code
== PARM_DECL
5079 || code
== TREE_LIST
5080 || code
== OMP_CLAUSE
)
5081 TREE_CHAIN (*tp
) = chain
;
5083 /* For now, we don't update BLOCKs when we make copies. So, we
5084 have to nullify all BIND_EXPRs. */
5085 if (TREE_CODE (*tp
) == BIND_EXPR
)
5086 BIND_EXPR_BLOCK (*tp
) = NULL_TREE
;
5088 else if (code
== CONSTRUCTOR
)
5090 /* CONSTRUCTOR nodes need special handling because
5091 we need to duplicate the vector of elements. */
5094 new_tree
= copy_node (*tp
);
5095 CONSTRUCTOR_ELTS (new_tree
) = vec_safe_copy (CONSTRUCTOR_ELTS (*tp
));
5098 else if (code
== STATEMENT_LIST
)
5099 /* We used to just abort on STATEMENT_LIST, but we can run into them
5100 with statement-expressions (c++/40975). */
5101 copy_statement_list (tp
);
5102 else if (TREE_CODE_CLASS (code
) == tcc_type
)
5104 else if (TREE_CODE_CLASS (code
) == tcc_declaration
)
5106 else if (TREE_CODE_CLASS (code
) == tcc_constant
)
5111 /* The SAVE_EXPR pointed to by TP is being copied. If ST contains
5112 information indicating to what new SAVE_EXPR this one should be mapped,
5113 use that one. Otherwise, create a new node and enter it in ST. FN is
5114 the function into which the copy will be placed. */
5117 remap_save_expr (tree
*tp
, hash_map
<tree
, tree
> *st
, int *walk_subtrees
)
5122 /* See if we already encountered this SAVE_EXPR. */
5125 /* If we didn't already remap this SAVE_EXPR, do so now. */
5128 t
= copy_node (*tp
);
5130 /* Remember this SAVE_EXPR. */
5132 /* Make sure we don't remap an already-remapped SAVE_EXPR. */
5137 /* We've already walked into this SAVE_EXPR; don't do it again. */
5142 /* Replace this SAVE_EXPR with the copy. */
5146 /* Called via walk_gimple_seq. If *GSIP points to a GIMPLE_LABEL for a local
5147 label, copies the declaration and enters it in the splay_tree in DATA (which
5148 is really a 'copy_body_data *'. */
5151 mark_local_labels_stmt (gimple_stmt_iterator
*gsip
,
5152 bool *handled_ops_p ATTRIBUTE_UNUSED
,
5153 struct walk_stmt_info
*wi
)
5155 copy_body_data
*id
= (copy_body_data
*) wi
->info
;
5156 glabel
*stmt
= dyn_cast
<glabel
*> (gsi_stmt (*gsip
));
5160 tree decl
= gimple_label_label (stmt
);
5162 /* Copy the decl and remember the copy. */
5163 insert_decl_map (id
, decl
, id
->copy_decl (decl
, id
));
5169 static gimple_seq
duplicate_remap_omp_clause_seq (gimple_seq seq
,
5170 struct walk_stmt_info
*wi
);
5172 /* Called via walk_gimple_seq by copy_gimple_seq_and_replace_local.
5173 Using the splay_tree pointed to by ST (which is really a `splay_tree'),
5174 remaps all local declarations to appropriate replacements in gimple
5178 replace_locals_op (tree
*tp
, int *walk_subtrees
, void *data
)
5180 struct walk_stmt_info
*wi
= (struct walk_stmt_info
*) data
;
5181 copy_body_data
*id
= (copy_body_data
*) wi
->info
;
5182 hash_map
<tree
, tree
> *st
= id
->decl_map
;
5186 /* For recursive invocations this is no longer the LHS itself. */
5187 bool is_lhs
= wi
->is_lhs
;
5190 if (TREE_CODE (expr
) == SSA_NAME
)
5192 *tp
= remap_ssa_name (*tp
, id
);
5195 SSA_NAME_DEF_STMT (*tp
) = gsi_stmt (wi
->gsi
);
5197 /* Only a local declaration (variable or label). */
5198 else if ((VAR_P (expr
) && !TREE_STATIC (expr
))
5199 || TREE_CODE (expr
) == LABEL_DECL
)
5201 /* Lookup the declaration. */
5204 /* If it's there, remap it. */
5209 else if (TREE_CODE (expr
) == STATEMENT_LIST
5210 || TREE_CODE (expr
) == BIND_EXPR
5211 || TREE_CODE (expr
) == SAVE_EXPR
)
5213 else if (TREE_CODE (expr
) == TARGET_EXPR
)
5215 /* Don't mess with a TARGET_EXPR that hasn't been expanded.
5216 It's OK for this to happen if it was part of a subtree that
5217 isn't immediately expanded, such as operand 2 of another
5219 if (!TREE_OPERAND (expr
, 1))
5221 TREE_OPERAND (expr
, 1) = TREE_OPERAND (expr
, 3);
5222 TREE_OPERAND (expr
, 3) = NULL_TREE
;
5225 else if (TREE_CODE (expr
) == OMP_CLAUSE
)
5227 /* Before the omplower pass completes, some OMP clauses can contain
5228 sequences that are neither copied by gimple_seq_copy nor walked by
5229 walk_gimple_seq. To make copy_gimple_seq_and_replace_locals work even
5230 in those situations, we have to copy and process them explicitely. */
5232 if (OMP_CLAUSE_CODE (expr
) == OMP_CLAUSE_LASTPRIVATE
)
5234 gimple_seq seq
= OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (expr
);
5235 seq
= duplicate_remap_omp_clause_seq (seq
, wi
);
5236 OMP_CLAUSE_LASTPRIVATE_GIMPLE_SEQ (expr
) = seq
;
5238 else if (OMP_CLAUSE_CODE (expr
) == OMP_CLAUSE_LINEAR
)
5240 gimple_seq seq
= OMP_CLAUSE_LINEAR_GIMPLE_SEQ (expr
);
5241 seq
= duplicate_remap_omp_clause_seq (seq
, wi
);
5242 OMP_CLAUSE_LINEAR_GIMPLE_SEQ (expr
) = seq
;
5244 else if (OMP_CLAUSE_CODE (expr
) == OMP_CLAUSE_REDUCTION
)
5246 gimple_seq seq
= OMP_CLAUSE_REDUCTION_GIMPLE_INIT (expr
);
5247 seq
= duplicate_remap_omp_clause_seq (seq
, wi
);
5248 OMP_CLAUSE_REDUCTION_GIMPLE_INIT (expr
) = seq
;
5249 seq
= OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (expr
);
5250 seq
= duplicate_remap_omp_clause_seq (seq
, wi
);
5251 OMP_CLAUSE_REDUCTION_GIMPLE_MERGE (expr
) = seq
;
5255 /* Keep iterating. */
5260 /* Called via walk_gimple_seq by copy_gimple_seq_and_replace_local.
5261 Using the splay_tree pointed to by ST (which is really a `splay_tree'),
5262 remaps all local declarations to appropriate replacements in gimple
5266 replace_locals_stmt (gimple_stmt_iterator
*gsip
,
5267 bool *handled_ops_p ATTRIBUTE_UNUSED
,
5268 struct walk_stmt_info
*wi
)
5270 copy_body_data
*id
= (copy_body_data
*) wi
->info
;
5271 gimple
*gs
= gsi_stmt (*gsip
);
5273 if (gbind
*stmt
= dyn_cast
<gbind
*> (gs
))
5275 tree block
= gimple_bind_block (stmt
);
5279 remap_block (&block
, id
);
5280 gimple_bind_set_block (stmt
, block
);
5283 /* This will remap a lot of the same decls again, but this should be
5285 if (gimple_bind_vars (stmt
))
5287 tree old_var
, decls
= gimple_bind_vars (stmt
);
5289 for (old_var
= decls
; old_var
; old_var
= DECL_CHAIN (old_var
))
5290 if (!can_be_nonlocal (old_var
, id
)
5291 && ! variably_modified_type_p (TREE_TYPE (old_var
), id
->src_fn
))
5292 remap_decl (old_var
, id
);
5294 gcc_checking_assert (!id
->prevent_decl_creation_for_types
);
5295 id
->prevent_decl_creation_for_types
= true;
5296 gimple_bind_set_vars (stmt
, remap_decls (decls
, NULL
, id
));
5297 id
->prevent_decl_creation_for_types
= false;
5301 /* Keep iterating. */
5305 /* Create a copy of SEQ and remap all decls in it. */
5308 duplicate_remap_omp_clause_seq (gimple_seq seq
, struct walk_stmt_info
*wi
)
5313 /* If there are any labels in OMP sequences, they can be only referred to in
5314 the sequence itself and therefore we can do both here. */
5315 walk_gimple_seq (seq
, mark_local_labels_stmt
, NULL
, wi
);
5316 gimple_seq copy
= gimple_seq_copy (seq
);
5317 walk_gimple_seq (copy
, replace_locals_stmt
, replace_locals_op
, wi
);
5321 /* Copies everything in SEQ and replaces variables and labels local to
5322 current_function_decl. */
5325 copy_gimple_seq_and_replace_locals (gimple_seq seq
)
5328 struct walk_stmt_info wi
;
5331 /* There's nothing to do for NULL_TREE. */
5336 memset (&id
, 0, sizeof (id
));
5337 id
.src_fn
= current_function_decl
;
5338 id
.dst_fn
= current_function_decl
;
5340 id
.decl_map
= new hash_map
<tree
, tree
>;
5341 id
.debug_map
= NULL
;
5343 id
.copy_decl
= copy_decl_no_change
;
5344 id
.transform_call_graph_edges
= CB_CGE_DUPLICATE
;
5345 id
.transform_new_cfg
= false;
5346 id
.transform_return_to_modify
= false;
5347 id
.transform_parameter
= false;
5348 id
.transform_lang_insert_block
= NULL
;
5350 /* Walk the tree once to find local labels. */
5351 memset (&wi
, 0, sizeof (wi
));
5352 hash_set
<tree
> visited
;
5355 walk_gimple_seq (seq
, mark_local_labels_stmt
, NULL
, &wi
);
5357 copy
= gimple_seq_copy (seq
);
5359 /* Walk the copy, remapping decls. */
5360 memset (&wi
, 0, sizeof (wi
));
5362 walk_gimple_seq (copy
, replace_locals_stmt
, replace_locals_op
, &wi
);
5367 delete id
.debug_map
;
5368 if (id
.dependence_map
)
5370 delete id
.dependence_map
;
5371 id
.dependence_map
= NULL
;
5378 /* Allow someone to determine if SEARCH is a child of TOP from gdb. */
5381 debug_find_tree_1 (tree
*tp
, int *walk_subtrees ATTRIBUTE_UNUSED
, void *data
)
5390 debug_find_tree (tree top
, tree search
)
5392 return walk_tree_without_duplicates (&top
, debug_find_tree_1
, search
) != 0;
5396 /* Declare the variables created by the inliner. Add all the variables in
5397 VARS to BIND_EXPR. */
5400 declare_inline_vars (tree block
, tree vars
)
5403 for (t
= vars
; t
; t
= DECL_CHAIN (t
))
5405 DECL_SEEN_IN_BIND_EXPR_P (t
) = 1;
5406 gcc_assert (!TREE_STATIC (t
) && !TREE_ASM_WRITTEN (t
));
5407 add_local_decl (cfun
, t
);
5411 BLOCK_VARS (block
) = chainon (BLOCK_VARS (block
), vars
);
5414 /* Copy NODE (which must be a DECL). The DECL originally was in the FROM_FN,
5415 but now it will be in the TO_FN. PARM_TO_VAR means enable PARM_DECL to
5416 VAR_DECL translation. */
5419 copy_decl_for_dup_finish (copy_body_data
*id
, tree decl
, tree copy
)
5421 /* Don't generate debug information for the copy if we wouldn't have
5422 generated it for the copy either. */
5423 DECL_ARTIFICIAL (copy
) = DECL_ARTIFICIAL (decl
);
5424 DECL_IGNORED_P (copy
) = DECL_IGNORED_P (decl
);
5426 /* Set the DECL_ABSTRACT_ORIGIN so the debugging routines know what
5427 declaration inspired this copy. */
5428 DECL_ABSTRACT_ORIGIN (copy
) = DECL_ORIGIN (decl
);
5430 /* The new variable/label has no RTL, yet. */
5431 if (CODE_CONTAINS_STRUCT (TREE_CODE (copy
), TS_DECL_WRTL
)
5432 && !TREE_STATIC (copy
) && !DECL_EXTERNAL (copy
))
5433 SET_DECL_RTL (copy
, 0);
5435 /* These args would always appear unused, if not for this. */
5436 TREE_USED (copy
) = 1;
5438 /* Set the context for the new declaration. */
5439 if (!DECL_CONTEXT (decl
))
5440 /* Globals stay global. */
5442 else if (DECL_CONTEXT (decl
) != id
->src_fn
)
5443 /* Things that weren't in the scope of the function we're inlining
5444 from aren't in the scope we're inlining to, either. */
5446 else if (TREE_STATIC (decl
))
5447 /* Function-scoped static variables should stay in the original
5451 /* Ordinary automatic local variables are now in the scope of the
5453 DECL_CONTEXT (copy
) = id
->dst_fn
;
5459 copy_decl_to_var (tree decl
, copy_body_data
*id
)
5463 gcc_assert (TREE_CODE (decl
) == PARM_DECL
5464 || TREE_CODE (decl
) == RESULT_DECL
);
5466 type
= TREE_TYPE (decl
);
5468 copy
= build_decl (DECL_SOURCE_LOCATION (id
->dst_fn
),
5469 VAR_DECL
, DECL_NAME (decl
), type
);
5470 if (DECL_PT_UID_SET_P (decl
))
5471 SET_DECL_PT_UID (copy
, DECL_PT_UID (decl
));
5472 TREE_ADDRESSABLE (copy
) = TREE_ADDRESSABLE (decl
);
5473 TREE_READONLY (copy
) = TREE_READONLY (decl
);
5474 TREE_THIS_VOLATILE (copy
) = TREE_THIS_VOLATILE (decl
);
5475 DECL_GIMPLE_REG_P (copy
) = DECL_GIMPLE_REG_P (decl
);
5477 return copy_decl_for_dup_finish (id
, decl
, copy
);
5480 /* Like copy_decl_to_var, but create a return slot object instead of a
5481 pointer variable for return by invisible reference. */
5484 copy_result_decl_to_var (tree decl
, copy_body_data
*id
)
5488 gcc_assert (TREE_CODE (decl
) == PARM_DECL
5489 || TREE_CODE (decl
) == RESULT_DECL
);
5491 type
= TREE_TYPE (decl
);
5492 if (DECL_BY_REFERENCE (decl
))
5493 type
= TREE_TYPE (type
);
5495 copy
= build_decl (DECL_SOURCE_LOCATION (id
->dst_fn
),
5496 VAR_DECL
, DECL_NAME (decl
), type
);
5497 if (DECL_PT_UID_SET_P (decl
))
5498 SET_DECL_PT_UID (copy
, DECL_PT_UID (decl
));
5499 TREE_READONLY (copy
) = TREE_READONLY (decl
);
5500 TREE_THIS_VOLATILE (copy
) = TREE_THIS_VOLATILE (decl
);
5501 if (!DECL_BY_REFERENCE (decl
))
5503 TREE_ADDRESSABLE (copy
) = TREE_ADDRESSABLE (decl
);
5504 DECL_GIMPLE_REG_P (copy
) = DECL_GIMPLE_REG_P (decl
);
5507 return copy_decl_for_dup_finish (id
, decl
, copy
);
5511 copy_decl_no_change (tree decl
, copy_body_data
*id
)
5515 copy
= copy_node (decl
);
5517 /* The COPY is not abstract; it will be generated in DST_FN. */
5518 DECL_ABSTRACT_P (copy
) = false;
5519 lang_hooks
.dup_lang_specific_decl (copy
);
5521 /* TREE_ADDRESSABLE isn't used to indicate that a label's address has
5522 been taken; it's for internal bookkeeping in expand_goto_internal. */
5523 if (TREE_CODE (copy
) == LABEL_DECL
)
5525 TREE_ADDRESSABLE (copy
) = 0;
5526 LABEL_DECL_UID (copy
) = -1;
5529 return copy_decl_for_dup_finish (id
, decl
, copy
);
5533 copy_decl_maybe_to_var (tree decl
, copy_body_data
*id
)
5535 if (TREE_CODE (decl
) == PARM_DECL
|| TREE_CODE (decl
) == RESULT_DECL
)
5536 return copy_decl_to_var (decl
, id
);
5538 return copy_decl_no_change (decl
, id
);
5541 /* Return a copy of the function's argument tree. */
5543 copy_arguments_for_versioning (tree orig_parm
, copy_body_data
* id
,
5544 bitmap args_to_skip
, tree
*vars
)
5547 tree new_parm
= NULL
;
5552 for (arg
= orig_parm
; arg
; arg
= DECL_CHAIN (arg
), i
++)
5553 if (!args_to_skip
|| !bitmap_bit_p (args_to_skip
, i
))
5555 tree new_tree
= remap_decl (arg
, id
);
5556 if (TREE_CODE (new_tree
) != PARM_DECL
)
5557 new_tree
= id
->copy_decl (arg
, id
);
5558 lang_hooks
.dup_lang_specific_decl (new_tree
);
5560 parg
= &DECL_CHAIN (new_tree
);
5562 else if (!id
->decl_map
->get (arg
))
5564 /* Make an equivalent VAR_DECL. If the argument was used
5565 as temporary variable later in function, the uses will be
5566 replaced by local variable. */
5567 tree var
= copy_decl_to_var (arg
, id
);
5568 insert_decl_map (id
, arg
, var
);
5569 /* Declare this new variable. */
5570 DECL_CHAIN (var
) = *vars
;
5576 /* Return a copy of the function's static chain. */
5578 copy_static_chain (tree static_chain
, copy_body_data
* id
)
5580 tree
*chain_copy
, *pvar
;
5582 chain_copy
= &static_chain
;
5583 for (pvar
= chain_copy
; *pvar
; pvar
= &DECL_CHAIN (*pvar
))
5585 tree new_tree
= remap_decl (*pvar
, id
);
5586 lang_hooks
.dup_lang_specific_decl (new_tree
);
5587 DECL_CHAIN (new_tree
) = DECL_CHAIN (*pvar
);
5590 return static_chain
;
5593 /* Return true if the function is allowed to be versioned.
5594 This is a guard for the versioning functionality. */
5597 tree_versionable_function_p (tree fndecl
)
5599 return (!lookup_attribute ("noclone", DECL_ATTRIBUTES (fndecl
))
5600 && copy_forbidden (DECL_STRUCT_FUNCTION (fndecl
)) == NULL
);
5603 /* Delete all unreachable basic blocks and update callgraph.
5604 Doing so is somewhat nontrivial because we need to update all clones and
5605 remove inline function that become unreachable. */
5608 delete_unreachable_blocks_update_callgraph (copy_body_data
*id
)
5610 bool changed
= false;
5611 basic_block b
, next_bb
;
5613 find_unreachable_blocks ();
5615 /* Delete all unreachable basic blocks. */
5617 for (b
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->next_bb
; b
5618 != EXIT_BLOCK_PTR_FOR_FN (cfun
); b
= next_bb
)
5620 next_bb
= b
->next_bb
;
5622 if (!(b
->flags
& BB_REACHABLE
))
5624 gimple_stmt_iterator bsi
;
5626 for (bsi
= gsi_start_bb (b
); !gsi_end_p (bsi
); gsi_next (&bsi
))
5628 struct cgraph_edge
*e
;
5629 struct cgraph_node
*node
;
5631 id
->dst_node
->remove_stmt_references (gsi_stmt (bsi
));
5633 if (gimple_code (gsi_stmt (bsi
)) == GIMPLE_CALL
5634 &&(e
= id
->dst_node
->get_edge (gsi_stmt (bsi
))) != NULL
)
5636 if (!e
->inline_failed
)
5637 e
->callee
->remove_symbol_and_inline_clones (id
->dst_node
);
5641 if (id
->transform_call_graph_edges
== CB_CGE_MOVE_CLONES
5642 && id
->dst_node
->clones
)
5643 for (node
= id
->dst_node
->clones
; node
!= id
->dst_node
;)
5645 node
->remove_stmt_references (gsi_stmt (bsi
));
5646 if (gimple_code (gsi_stmt (bsi
)) == GIMPLE_CALL
5647 && (e
= node
->get_edge (gsi_stmt (bsi
))) != NULL
)
5649 if (!e
->inline_failed
)
5650 e
->callee
->remove_symbol_and_inline_clones (id
->dst_node
);
5656 node
= node
->clones
;
5657 else if (node
->next_sibling_clone
)
5658 node
= node
->next_sibling_clone
;
5661 while (node
!= id
->dst_node
&& !node
->next_sibling_clone
)
5662 node
= node
->clone_of
;
5663 if (node
!= id
->dst_node
)
5664 node
= node
->next_sibling_clone
;
5668 delete_basic_block (b
);
5676 /* Update clone info after duplication. */
5679 update_clone_info (copy_body_data
* id
)
5681 struct cgraph_node
*node
;
5682 if (!id
->dst_node
->clones
)
5684 for (node
= id
->dst_node
->clones
; node
!= id
->dst_node
;)
5686 /* First update replace maps to match the new body. */
5687 if (node
->clone
.tree_map
)
5690 for (i
= 0; i
< vec_safe_length (node
->clone
.tree_map
); i
++)
5692 struct ipa_replace_map
*replace_info
;
5693 replace_info
= (*node
->clone
.tree_map
)[i
];
5694 walk_tree (&replace_info
->old_tree
, copy_tree_body_r
, id
, NULL
);
5695 walk_tree (&replace_info
->new_tree
, copy_tree_body_r
, id
, NULL
);
5699 node
= node
->clones
;
5700 else if (node
->next_sibling_clone
)
5701 node
= node
->next_sibling_clone
;
5704 while (node
!= id
->dst_node
&& !node
->next_sibling_clone
)
5705 node
= node
->clone_of
;
5706 if (node
!= id
->dst_node
)
5707 node
= node
->next_sibling_clone
;
5712 /* Create a copy of a function's tree.
5713 OLD_DECL and NEW_DECL are FUNCTION_DECL tree nodes
5714 of the original function and the new copied function
5715 respectively. In case we want to replace a DECL
5716 tree with another tree while duplicating the function's
5717 body, TREE_MAP represents the mapping between these
5718 trees. If UPDATE_CLONES is set, the call_stmt fields
5719 of edges of clones of the function will be updated.
5721 If non-NULL ARGS_TO_SKIP determine function parameters to remove
5723 If SKIP_RETURN is true, the new version will return void.
5724 If non-NULL BLOCK_TO_COPY determine what basic blocks to copy.
5725 If non_NULL NEW_ENTRY determine new entry BB of the clone.
5728 tree_function_versioning (tree old_decl
, tree new_decl
,
5729 vec
<ipa_replace_map
*, va_gc
> *tree_map
,
5730 bool update_clones
, bitmap args_to_skip
,
5731 bool skip_return
, bitmap blocks_to_copy
,
5732 basic_block new_entry
)
5734 struct cgraph_node
*old_version_node
;
5735 struct cgraph_node
*new_version_node
;
5739 struct ipa_replace_map
*replace_info
;
5740 basic_block old_entry_block
, bb
;
5741 auto_vec
<gimple
*, 10> init_stmts
;
5742 tree vars
= NULL_TREE
;
5743 bitmap debug_args_to_skip
= args_to_skip
;
5745 gcc_assert (TREE_CODE (old_decl
) == FUNCTION_DECL
5746 && TREE_CODE (new_decl
) == FUNCTION_DECL
);
5747 DECL_POSSIBLY_INLINED (old_decl
) = 1;
5749 old_version_node
= cgraph_node::get (old_decl
);
5750 gcc_checking_assert (old_version_node
);
5751 new_version_node
= cgraph_node::get (new_decl
);
5752 gcc_checking_assert (new_version_node
);
5754 /* Copy over debug args. */
5755 if (DECL_HAS_DEBUG_ARGS_P (old_decl
))
5757 vec
<tree
, va_gc
> **new_debug_args
, **old_debug_args
;
5758 gcc_checking_assert (decl_debug_args_lookup (new_decl
) == NULL
);
5759 DECL_HAS_DEBUG_ARGS_P (new_decl
) = 0;
5760 old_debug_args
= decl_debug_args_lookup (old_decl
);
5763 new_debug_args
= decl_debug_args_insert (new_decl
);
5764 *new_debug_args
= vec_safe_copy (*old_debug_args
);
5768 /* Output the inlining info for this abstract function, since it has been
5769 inlined. If we don't do this now, we can lose the information about the
5770 variables in the function when the blocks get blown away as soon as we
5771 remove the cgraph node. */
5772 (*debug_hooks
->outlining_inline_function
) (old_decl
);
5774 DECL_ARTIFICIAL (new_decl
) = 1;
5775 DECL_ABSTRACT_ORIGIN (new_decl
) = DECL_ORIGIN (old_decl
);
5776 if (DECL_ORIGIN (old_decl
) == old_decl
)
5777 old_version_node
->used_as_abstract_origin
= true;
5778 DECL_FUNCTION_PERSONALITY (new_decl
) = DECL_FUNCTION_PERSONALITY (old_decl
);
5780 /* Prepare the data structures for the tree copy. */
5781 memset (&id
, 0, sizeof (id
));
5783 /* Generate a new name for the new version. */
5784 id
.statements_to_fold
= new hash_set
<gimple
*>;
5786 id
.decl_map
= new hash_map
<tree
, tree
>;
5787 id
.debug_map
= NULL
;
5788 id
.src_fn
= old_decl
;
5789 id
.dst_fn
= new_decl
;
5790 id
.src_node
= old_version_node
;
5791 id
.dst_node
= new_version_node
;
5792 id
.src_cfun
= DECL_STRUCT_FUNCTION (old_decl
);
5793 id
.blocks_to_copy
= blocks_to_copy
;
5795 id
.copy_decl
= copy_decl_no_change
;
5796 id
.transform_call_graph_edges
5797 = update_clones
? CB_CGE_MOVE_CLONES
: CB_CGE_MOVE
;
5798 id
.transform_new_cfg
= true;
5799 id
.transform_return_to_modify
= false;
5800 id
.transform_parameter
= false;
5801 id
.transform_lang_insert_block
= NULL
;
5803 old_entry_block
= ENTRY_BLOCK_PTR_FOR_FN
5804 (DECL_STRUCT_FUNCTION (old_decl
));
5805 DECL_RESULT (new_decl
) = DECL_RESULT (old_decl
);
5806 DECL_ARGUMENTS (new_decl
) = DECL_ARGUMENTS (old_decl
);
5807 initialize_cfun (new_decl
, old_decl
,
5808 old_entry_block
->count
);
5809 if (DECL_STRUCT_FUNCTION (new_decl
)->gimple_df
)
5810 DECL_STRUCT_FUNCTION (new_decl
)->gimple_df
->ipa_pta
5811 = id
.src_cfun
->gimple_df
->ipa_pta
;
5813 /* Copy the function's static chain. */
5814 p
= DECL_STRUCT_FUNCTION (old_decl
)->static_chain_decl
;
5816 DECL_STRUCT_FUNCTION (new_decl
)->static_chain_decl
5817 = copy_static_chain (p
, &id
);
5819 /* If there's a tree_map, prepare for substitution. */
5821 for (i
= 0; i
< tree_map
->length (); i
++)
5824 replace_info
= (*tree_map
)[i
];
5825 if (replace_info
->replace_p
)
5828 if (!replace_info
->old_tree
)
5830 int p
= replace_info
->parm_num
;
5832 tree req_type
, new_type
;
5834 for (parm
= DECL_ARGUMENTS (old_decl
); p
;
5835 parm
= DECL_CHAIN (parm
))
5837 replace_info
->old_tree
= parm
;
5838 parm_num
= replace_info
->parm_num
;
5839 req_type
= TREE_TYPE (parm
);
5840 new_type
= TREE_TYPE (replace_info
->new_tree
);
5841 if (!useless_type_conversion_p (req_type
, new_type
))
5843 if (fold_convertible_p (req_type
, replace_info
->new_tree
))
5844 replace_info
->new_tree
5845 = fold_build1 (NOP_EXPR
, req_type
,
5846 replace_info
->new_tree
);
5847 else if (TYPE_SIZE (req_type
) == TYPE_SIZE (new_type
))
5848 replace_info
->new_tree
5849 = fold_build1 (VIEW_CONVERT_EXPR
, req_type
,
5850 replace_info
->new_tree
);
5855 fprintf (dump_file
, " const ");
5856 print_generic_expr (dump_file
,
5857 replace_info
->new_tree
, 0);
5859 " can't be converted to param ");
5860 print_generic_expr (dump_file
, parm
, 0);
5861 fprintf (dump_file
, "\n");
5863 replace_info
->old_tree
= NULL
;
5868 gcc_assert (TREE_CODE (replace_info
->old_tree
) == PARM_DECL
);
5869 if (replace_info
->old_tree
)
5871 init
= setup_one_parameter (&id
, replace_info
->old_tree
,
5872 replace_info
->new_tree
, id
.src_fn
,
5876 init_stmts
.safe_push (init
);
5877 if (MAY_HAVE_DEBUG_STMTS
&& args_to_skip
)
5883 for (parm
= DECL_ARGUMENTS (old_decl
), p
= 0; parm
;
5884 parm
= DECL_CHAIN (parm
), p
++)
5885 if (parm
== replace_info
->old_tree
)
5893 if (debug_args_to_skip
== args_to_skip
)
5895 debug_args_to_skip
= BITMAP_ALLOC (NULL
);
5896 bitmap_copy (debug_args_to_skip
, args_to_skip
);
5898 bitmap_clear_bit (debug_args_to_skip
, parm_num
);
5904 /* Copy the function's arguments. */
5905 if (DECL_ARGUMENTS (old_decl
) != NULL_TREE
)
5906 DECL_ARGUMENTS (new_decl
)
5907 = copy_arguments_for_versioning (DECL_ARGUMENTS (old_decl
), &id
,
5908 args_to_skip
, &vars
);
5910 DECL_INITIAL (new_decl
) = remap_blocks (DECL_INITIAL (id
.src_fn
), &id
);
5911 BLOCK_SUPERCONTEXT (DECL_INITIAL (new_decl
)) = new_decl
;
5913 declare_inline_vars (DECL_INITIAL (new_decl
), vars
);
5915 if (!vec_safe_is_empty (DECL_STRUCT_FUNCTION (old_decl
)->local_decls
))
5916 /* Add local vars. */
5917 add_local_variables (DECL_STRUCT_FUNCTION (old_decl
), cfun
, &id
);
5919 if (DECL_RESULT (old_decl
) == NULL_TREE
)
5921 else if (skip_return
&& !VOID_TYPE_P (TREE_TYPE (DECL_RESULT (old_decl
))))
5923 DECL_RESULT (new_decl
)
5924 = build_decl (DECL_SOURCE_LOCATION (DECL_RESULT (old_decl
)),
5925 RESULT_DECL
, NULL_TREE
, void_type_node
);
5926 DECL_CONTEXT (DECL_RESULT (new_decl
)) = new_decl
;
5927 cfun
->returns_struct
= 0;
5928 cfun
->returns_pcc_struct
= 0;
5933 DECL_RESULT (new_decl
) = remap_decl (DECL_RESULT (old_decl
), &id
);
5934 lang_hooks
.dup_lang_specific_decl (DECL_RESULT (new_decl
));
5935 if (gimple_in_ssa_p (id
.src_cfun
)
5936 && DECL_BY_REFERENCE (DECL_RESULT (old_decl
))
5937 && (old_name
= ssa_default_def (id
.src_cfun
, DECL_RESULT (old_decl
))))
5939 tree new_name
= make_ssa_name (DECL_RESULT (new_decl
));
5940 insert_decl_map (&id
, old_name
, new_name
);
5941 SSA_NAME_DEF_STMT (new_name
) = gimple_build_nop ();
5942 set_ssa_default_def (cfun
, DECL_RESULT (new_decl
), new_name
);
5946 /* Set up the destination functions loop tree. */
5947 if (loops_for_fn (DECL_STRUCT_FUNCTION (old_decl
)) != NULL
)
5949 cfun
->curr_properties
&= ~PROP_loops
;
5950 loop_optimizer_init (AVOID_CFG_MODIFICATIONS
);
5951 cfun
->curr_properties
|= PROP_loops
;
5954 /* Copy the Function's body. */
5955 copy_body (&id
, old_entry_block
->count
, REG_BR_PROB_BASE
,
5956 ENTRY_BLOCK_PTR_FOR_FN (cfun
), EXIT_BLOCK_PTR_FOR_FN (cfun
),
5959 /* Renumber the lexical scoping (non-code) blocks consecutively. */
5960 number_blocks (new_decl
);
5962 /* We want to create the BB unconditionally, so that the addition of
5963 debug stmts doesn't affect BB count, which may in the end cause
5964 codegen differences. */
5965 bb
= split_edge (single_succ_edge (ENTRY_BLOCK_PTR_FOR_FN (cfun
)));
5966 while (init_stmts
.length ())
5967 insert_init_stmt (&id
, bb
, init_stmts
.pop ());
5968 update_clone_info (&id
);
5970 /* Remap the nonlocal_goto_save_area, if any. */
5971 if (cfun
->nonlocal_goto_save_area
)
5973 struct walk_stmt_info wi
;
5975 memset (&wi
, 0, sizeof (wi
));
5977 walk_tree (&cfun
->nonlocal_goto_save_area
, remap_gimple_op_r
, &wi
, NULL
);
5983 delete id
.debug_map
;
5984 free_dominance_info (CDI_DOMINATORS
);
5985 free_dominance_info (CDI_POST_DOMINATORS
);
5987 fold_marked_statements (0, id
.statements_to_fold
);
5988 delete id
.statements_to_fold
;
5989 delete_unreachable_blocks_update_callgraph (&id
);
5990 if (id
.dst_node
->definition
)
5991 cgraph_edge::rebuild_references ();
5992 if (loops_state_satisfies_p (LOOPS_NEED_FIXUP
))
5994 calculate_dominance_info (CDI_DOMINATORS
);
5995 fix_loop_structure (NULL
);
5997 update_ssa (TODO_update_ssa
);
5999 /* After partial cloning we need to rescale frequencies, so they are
6000 within proper range in the cloned function. */
6003 struct cgraph_edge
*e
;
6004 rebuild_frequencies ();
6006 new_version_node
->count
= ENTRY_BLOCK_PTR_FOR_FN (cfun
)->count
;
6007 for (e
= new_version_node
->callees
; e
; e
= e
->next_callee
)
6009 basic_block bb
= gimple_bb (e
->call_stmt
);
6010 e
->frequency
= compute_call_stmt_bb_frequency (current_function_decl
,
6012 e
->count
= bb
->count
;
6014 for (e
= new_version_node
->indirect_calls
; e
; e
= e
->next_callee
)
6016 basic_block bb
= gimple_bb (e
->call_stmt
);
6017 e
->frequency
= compute_call_stmt_bb_frequency (current_function_decl
,
6019 e
->count
= bb
->count
;
6023 if (debug_args_to_skip
&& MAY_HAVE_DEBUG_STMTS
)
6026 vec
<tree
, va_gc
> **debug_args
= NULL
;
6027 unsigned int len
= 0;
6028 for (parm
= DECL_ARGUMENTS (old_decl
), i
= 0;
6029 parm
; parm
= DECL_CHAIN (parm
), i
++)
6030 if (bitmap_bit_p (debug_args_to_skip
, i
) && is_gimple_reg (parm
))
6034 if (debug_args
== NULL
)
6036 debug_args
= decl_debug_args_insert (new_decl
);
6037 len
= vec_safe_length (*debug_args
);
6039 ddecl
= make_node (DEBUG_EXPR_DECL
);
6040 DECL_ARTIFICIAL (ddecl
) = 1;
6041 TREE_TYPE (ddecl
) = TREE_TYPE (parm
);
6042 DECL_MODE (ddecl
) = DECL_MODE (parm
);
6043 vec_safe_push (*debug_args
, DECL_ORIGIN (parm
));
6044 vec_safe_push (*debug_args
, ddecl
);
6046 if (debug_args
!= NULL
)
6048 /* On the callee side, add
6051 stmts to the first bb where var is a VAR_DECL created for the
6052 optimized away parameter in DECL_INITIAL block. This hints
6053 in the debug info that var (whole DECL_ORIGIN is the parm
6054 PARM_DECL) is optimized away, but could be looked up at the
6055 call site as value of D#X there. */
6056 tree var
= vars
, vexpr
;
6057 gimple_stmt_iterator cgsi
6058 = gsi_after_labels (single_succ (ENTRY_BLOCK_PTR_FOR_FN (cfun
)));
6061 i
= vec_safe_length (*debug_args
);
6065 while (var
!= NULL_TREE
6066 && DECL_ABSTRACT_ORIGIN (var
) != (**debug_args
)[i
])
6067 var
= TREE_CHAIN (var
);
6068 if (var
== NULL_TREE
)
6070 vexpr
= make_node (DEBUG_EXPR_DECL
);
6071 parm
= (**debug_args
)[i
];
6072 DECL_ARTIFICIAL (vexpr
) = 1;
6073 TREE_TYPE (vexpr
) = TREE_TYPE (parm
);
6074 DECL_MODE (vexpr
) = DECL_MODE (parm
);
6075 def_temp
= gimple_build_debug_bind (var
, vexpr
, NULL
);
6076 gsi_insert_before (&cgsi
, def_temp
, GSI_NEW_STMT
);
6077 def_temp
= gimple_build_debug_source_bind (vexpr
, parm
, NULL
);
6078 gsi_insert_before (&cgsi
, def_temp
, GSI_NEW_STMT
);
6084 if (debug_args_to_skip
&& debug_args_to_skip
!= args_to_skip
)
6085 BITMAP_FREE (debug_args_to_skip
);
6086 free_dominance_info (CDI_DOMINATORS
);
6087 free_dominance_info (CDI_POST_DOMINATORS
);
6089 gcc_assert (!id
.debug_stmts
.exists ());
6094 /* EXP is CALL_EXPR present in a GENERIC expression tree. Try to integrate
6095 the callee and return the inlined body on success. */
6098 maybe_inline_call_in_expr (tree exp
)
6100 tree fn
= get_callee_fndecl (exp
);
6102 /* We can only try to inline "const" functions. */
6103 if (fn
&& TREE_READONLY (fn
) && DECL_SAVED_TREE (fn
))
6105 call_expr_arg_iterator iter
;
6108 hash_map
<tree
, tree
> decl_map
;
6110 /* Remap the parameters. */
6111 for (param
= DECL_ARGUMENTS (fn
), arg
= first_call_expr_arg (exp
, &iter
);
6113 param
= DECL_CHAIN (param
), arg
= next_call_expr_arg (&iter
))
6114 decl_map
.put (param
, arg
);
6116 memset (&id
, 0, sizeof (id
));
6118 id
.dst_fn
= current_function_decl
;
6119 id
.src_cfun
= DECL_STRUCT_FUNCTION (fn
);
6120 id
.decl_map
= &decl_map
;
6122 id
.copy_decl
= copy_decl_no_change
;
6123 id
.transform_call_graph_edges
= CB_CGE_DUPLICATE
;
6124 id
.transform_new_cfg
= false;
6125 id
.transform_return_to_modify
= true;
6126 id
.transform_parameter
= true;
6127 id
.transform_lang_insert_block
= NULL
;
6129 /* Make sure not to unshare trees behind the front-end's back
6130 since front-end specific mechanisms may rely on sharing. */
6131 id
.regimplify
= false;
6132 id
.do_not_unshare
= true;
6134 /* We're not inside any EH region. */
6137 t
= copy_tree_body (&id
);
6139 /* We can only return something suitable for use in a GENERIC
6141 if (TREE_CODE (t
) == MODIFY_EXPR
)
6142 return TREE_OPERAND (t
, 1);
6148 /* Duplicate a type, fields and all. */
6151 build_duplicate_type (tree type
)
6153 struct copy_body_data id
;
6155 memset (&id
, 0, sizeof (id
));
6156 id
.src_fn
= current_function_decl
;
6157 id
.dst_fn
= current_function_decl
;
6159 id
.decl_map
= new hash_map
<tree
, tree
>;
6160 id
.debug_map
= NULL
;
6161 id
.copy_decl
= copy_decl_no_change
;
6163 type
= remap_type_1 (type
, &id
);
6167 delete id
.debug_map
;
6169 TYPE_CANONICAL (type
) = type
;
6174 /* Unshare the entire DECL_SAVED_TREE of FN and return the remapped
6175 parameters and RESULT_DECL in PARMS and RESULT. Used by C++ constexpr
6179 copy_fn (tree fn
, tree
& parms
, tree
& result
)
6183 hash_map
<tree
, tree
> decl_map
;
6188 memset (&id
, 0, sizeof (id
));
6190 id
.dst_fn
= current_function_decl
;
6191 id
.src_cfun
= DECL_STRUCT_FUNCTION (fn
);
6192 id
.decl_map
= &decl_map
;
6194 id
.copy_decl
= copy_decl_no_change
;
6195 id
.transform_call_graph_edges
= CB_CGE_DUPLICATE
;
6196 id
.transform_new_cfg
= false;
6197 id
.transform_return_to_modify
= false;
6198 id
.transform_parameter
= true;
6199 id
.transform_lang_insert_block
= NULL
;
6201 /* Make sure not to unshare trees behind the front-end's back
6202 since front-end specific mechanisms may rely on sharing. */
6203 id
.regimplify
= false;
6204 id
.do_not_unshare
= true;
6206 /* We're not inside any EH region. */
6209 /* Remap the parameters and result and return them to the caller. */
6210 for (param
= DECL_ARGUMENTS (fn
);
6212 param
= DECL_CHAIN (param
))
6214 *p
= remap_decl (param
, &id
);
6215 p
= &DECL_CHAIN (*p
);
6218 if (DECL_RESULT (fn
))
6219 result
= remap_decl (DECL_RESULT (fn
), &id
);
6223 return copy_tree_body (&id
);