[Patch AArch64 1/3] Enable CRC by default for armv8.1-a
[official-gcc.git] / gcc / cgraphclones.c
blob07ceb1a80d49dcf3c940f2b0f265996f7b072e00
1 /* Callgraph clones
2 Copyright (C) 2003-2016 Free Software Foundation, Inc.
3 Contributed by Jan Hubicka
5 This file is part of GCC.
7 GCC is free software; you can redistribute it and/or modify it under
8 the terms of the GNU General Public License as published by the Free
9 Software Foundation; either version 3, or (at your option) any later
10 version.
12 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
13 WARRANTY; without even the implied warranty of MERCHANTABILITY or
14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
15 for more details.
17 You should have received a copy of the GNU General Public License
18 along with GCC; see the file COPYING3. If not see
19 <http://www.gnu.org/licenses/>. */
21 /* This module provide facilities for clonning functions. I.e. creating
22 new functions based on existing functions with simple modifications,
23 such as replacement of parameters.
25 To allow whole program optimization without actual presence of function
26 bodies, an additional infrastructure is provided for so-called virtual
27 clones
29 A virtual clone in the callgraph is a function that has no
30 associated body, just a description of how to create its body based
31 on a different function (which itself may be a virtual clone).
33 The description of function modifications includes adjustments to
34 the function's signature (which allows, for example, removing or
35 adding function arguments), substitutions to perform on the
36 function body, and, for inlined functions, a pointer to the
37 function that it will be inlined into.
39 It is also possible to redirect any edge of the callgraph from a
40 function to its virtual clone. This implies updating of the call
41 site to adjust for the new function signature.
43 Most of the transformations performed by inter-procedural
44 optimizations can be represented via virtual clones. For
45 instance, a constant propagation pass can produce a virtual clone
46 of the function which replaces one of its arguments by a
47 constant. The inliner can represent its decisions by producing a
48 clone of a function whose body will be later integrated into
49 a given function.
51 Using virtual clones, the program can be easily updated
52 during the Execute stage, solving most of pass interactions
53 problems that would otherwise occur during Transform.
55 Virtual clones are later materialized in the LTRANS stage and
56 turned into real functions. Passes executed after the virtual
57 clone were introduced also perform their Transform stage
58 on new functions, so for a pass there is no significant
59 difference between operating on a real function or a virtual
60 clone introduced before its Execute stage.
62 Optimization passes then work on virtual clones introduced before
63 their Execute stage as if they were real functions. The
64 only difference is that clones are not visible during the
65 Generate Summary stage. */
67 #include "config.h"
68 #include "system.h"
69 #include "coretypes.h"
70 #include "backend.h"
71 #include "target.h"
72 #include "rtl.h"
73 #include "tree.h"
74 #include "gimple.h"
75 #include "stringpool.h"
76 #include "cgraph.h"
77 #include "lto-streamer.h"
78 #include "tree-eh.h"
79 #include "tree-cfg.h"
80 #include "tree-inline.h"
81 #include "tree-dump.h"
82 #include "gimple-pretty-print.h"
84 /* Create clone of edge in the node N represented by CALL_EXPR
85 the callgraph. */
87 cgraph_edge *
88 cgraph_edge::clone (cgraph_node *n, gcall *call_stmt, unsigned stmt_uid,
89 gcov_type count_scale, int freq_scale, bool update_original)
91 cgraph_edge *new_edge;
92 gcov_type gcov_count = apply_probability (count, count_scale);
93 gcov_type freq;
95 /* We do not want to ignore loop nest after frequency drops to 0. */
96 if (!freq_scale)
97 freq_scale = 1;
98 freq = frequency * (gcov_type) freq_scale / CGRAPH_FREQ_BASE;
99 if (freq > CGRAPH_FREQ_MAX)
100 freq = CGRAPH_FREQ_MAX;
102 if (indirect_unknown_callee)
104 tree decl;
106 if (call_stmt && (decl = gimple_call_fndecl (call_stmt))
107 /* When the call is speculative, we need to resolve it
108 via cgraph_resolve_speculation and not here. */
109 && !speculative)
111 cgraph_node *callee = cgraph_node::get (decl);
112 gcc_checking_assert (callee);
113 new_edge = n->create_edge (callee, call_stmt, gcov_count, freq);
115 else
117 new_edge = n->create_indirect_edge (call_stmt,
118 indirect_info->ecf_flags,
119 count, freq, false);
120 *new_edge->indirect_info = *indirect_info;
123 else
125 new_edge = n->create_edge (callee, call_stmt, gcov_count, freq);
126 if (indirect_info)
128 new_edge->indirect_info
129 = ggc_cleared_alloc<cgraph_indirect_call_info> ();
130 *new_edge->indirect_info = *indirect_info;
134 new_edge->inline_failed = inline_failed;
135 new_edge->indirect_inlining_edge = indirect_inlining_edge;
136 new_edge->lto_stmt_uid = stmt_uid;
137 /* Clone flags that depend on call_stmt availability manually. */
138 new_edge->can_throw_external = can_throw_external;
139 new_edge->call_stmt_cannot_inline_p = call_stmt_cannot_inline_p;
140 new_edge->speculative = speculative;
141 new_edge->in_polymorphic_cdtor = in_polymorphic_cdtor;
142 if (update_original)
144 count -= new_edge->count;
145 if (count < 0)
146 count = 0;
148 symtab->call_edge_duplication_hooks (this, new_edge);
149 return new_edge;
152 /* Build variant of function type ORIG_TYPE skipping ARGS_TO_SKIP and the
153 return value if SKIP_RETURN is true. */
155 static tree
156 build_function_type_skip_args (tree orig_type, bitmap args_to_skip,
157 bool skip_return)
159 tree new_type = NULL;
160 tree args, new_args = NULL;
161 tree new_reversed;
162 int i = 0;
164 for (args = TYPE_ARG_TYPES (orig_type); args && args != void_list_node;
165 args = TREE_CHAIN (args), i++)
166 if (!args_to_skip || !bitmap_bit_p (args_to_skip, i))
167 new_args = tree_cons (NULL_TREE, TREE_VALUE (args), new_args);
169 new_reversed = nreverse (new_args);
170 if (args)
172 if (new_reversed)
173 TREE_CHAIN (new_args) = void_list_node;
174 else
175 new_reversed = void_list_node;
178 /* Use copy_node to preserve as much as possible from original type
179 (debug info, attribute lists etc.)
180 Exception is METHOD_TYPEs must have THIS argument.
181 When we are asked to remove it, we need to build new FUNCTION_TYPE
182 instead. */
183 if (TREE_CODE (orig_type) != METHOD_TYPE
184 || !args_to_skip
185 || !bitmap_bit_p (args_to_skip, 0))
187 new_type = build_distinct_type_copy (orig_type);
188 TYPE_ARG_TYPES (new_type) = new_reversed;
190 else
192 new_type
193 = build_distinct_type_copy (build_function_type (TREE_TYPE (orig_type),
194 new_reversed));
195 TYPE_CONTEXT (new_type) = TYPE_CONTEXT (orig_type);
198 if (skip_return)
199 TREE_TYPE (new_type) = void_type_node;
201 return new_type;
204 /* Build variant of function decl ORIG_DECL skipping ARGS_TO_SKIP and the
205 return value if SKIP_RETURN is true.
207 Arguments from DECL_ARGUMENTS list can't be removed now, since they are
208 linked by TREE_CHAIN directly. The caller is responsible for eliminating
209 them when they are being duplicated (i.e. copy_arguments_for_versioning). */
211 static tree
212 build_function_decl_skip_args (tree orig_decl, bitmap args_to_skip,
213 bool skip_return)
215 tree new_decl = copy_node (orig_decl);
216 tree new_type;
218 new_type = TREE_TYPE (orig_decl);
219 if (prototype_p (new_type)
220 || (skip_return && !VOID_TYPE_P (TREE_TYPE (new_type))))
221 new_type
222 = build_function_type_skip_args (new_type, args_to_skip, skip_return);
223 TREE_TYPE (new_decl) = new_type;
225 /* For declarations setting DECL_VINDEX (i.e. methods)
226 we expect first argument to be THIS pointer. */
227 if (args_to_skip && bitmap_bit_p (args_to_skip, 0))
228 DECL_VINDEX (new_decl) = NULL_TREE;
230 /* When signature changes, we need to clear builtin info. */
231 if (DECL_BUILT_IN (new_decl)
232 && args_to_skip
233 && !bitmap_empty_p (args_to_skip))
235 DECL_BUILT_IN_CLASS (new_decl) = NOT_BUILT_IN;
236 DECL_FUNCTION_CODE (new_decl) = (enum built_in_function) 0;
238 /* The FE might have information and assumptions about the other
239 arguments. */
240 DECL_LANG_SPECIFIC (new_decl) = NULL;
241 return new_decl;
244 /* Set flags of NEW_NODE and its decl. NEW_NODE is a newly created private
245 clone or its thunk. */
247 static void
248 set_new_clone_decl_and_node_flags (cgraph_node *new_node)
250 DECL_EXTERNAL (new_node->decl) = 0;
251 TREE_PUBLIC (new_node->decl) = 0;
252 DECL_COMDAT (new_node->decl) = 0;
253 DECL_WEAK (new_node->decl) = 0;
254 DECL_VIRTUAL_P (new_node->decl) = 0;
255 DECL_STATIC_CONSTRUCTOR (new_node->decl) = 0;
256 DECL_STATIC_DESTRUCTOR (new_node->decl) = 0;
258 new_node->externally_visible = 0;
259 new_node->local.local = 1;
260 new_node->lowered = true;
263 /* Duplicate thunk THUNK if necessary but make it to refer to NODE.
264 ARGS_TO_SKIP, if non-NULL, determines which parameters should be omitted.
265 Function can return NODE if no thunk is necessary, which can happen when
266 thunk is this_adjusting but we are removing this parameter. */
268 static cgraph_node *
269 duplicate_thunk_for_node (cgraph_node *thunk, cgraph_node *node)
271 cgraph_node *new_thunk, *thunk_of;
272 thunk_of = thunk->callees->callee->ultimate_alias_target ();
274 if (thunk_of->thunk.thunk_p)
275 node = duplicate_thunk_for_node (thunk_of, node);
277 if (!DECL_ARGUMENTS (thunk->decl))
278 thunk->get_untransformed_body ();
280 cgraph_edge *cs;
281 for (cs = node->callers; cs; cs = cs->next_caller)
282 if (cs->caller->thunk.thunk_p
283 && cs->caller->thunk.this_adjusting == thunk->thunk.this_adjusting
284 && cs->caller->thunk.fixed_offset == thunk->thunk.fixed_offset
285 && cs->caller->thunk.virtual_offset_p == thunk->thunk.virtual_offset_p
286 && cs->caller->thunk.virtual_value == thunk->thunk.virtual_value)
287 return cs->caller;
289 tree new_decl;
290 if (!node->clone.args_to_skip)
291 new_decl = copy_node (thunk->decl);
292 else
294 /* We do not need to duplicate this_adjusting thunks if we have removed
295 this. */
296 if (thunk->thunk.this_adjusting
297 && bitmap_bit_p (node->clone.args_to_skip, 0))
298 return node;
300 new_decl = build_function_decl_skip_args (thunk->decl,
301 node->clone.args_to_skip,
302 false);
305 tree *link = &DECL_ARGUMENTS (new_decl);
306 int i = 0;
307 for (tree pd = DECL_ARGUMENTS (thunk->decl); pd; pd = DECL_CHAIN (pd), i++)
309 if (!node->clone.args_to_skip
310 || !bitmap_bit_p (node->clone.args_to_skip, i))
312 tree nd = copy_node (pd);
313 DECL_CONTEXT (nd) = new_decl;
314 *link = nd;
315 link = &DECL_CHAIN (nd);
318 *link = NULL_TREE;
320 gcc_checking_assert (!DECL_STRUCT_FUNCTION (new_decl));
321 gcc_checking_assert (!DECL_INITIAL (new_decl));
322 gcc_checking_assert (!DECL_RESULT (new_decl));
323 gcc_checking_assert (!DECL_RTL_SET_P (new_decl));
325 DECL_NAME (new_decl) = clone_function_name (thunk->decl, "artificial_thunk");
326 SET_DECL_ASSEMBLER_NAME (new_decl, DECL_NAME (new_decl));
328 new_thunk = cgraph_node::create (new_decl);
329 set_new_clone_decl_and_node_flags (new_thunk);
330 new_thunk->definition = true;
331 new_thunk->local.can_change_signature = node->local.can_change_signature;
332 new_thunk->thunk = thunk->thunk;
333 new_thunk->unique_name = in_lto_p;
334 new_thunk->former_clone_of = thunk->decl;
335 new_thunk->clone.args_to_skip = node->clone.args_to_skip;
336 new_thunk->clone.combined_args_to_skip = node->clone.combined_args_to_skip;
338 cgraph_edge *e = new_thunk->create_edge (node, NULL, 0,
339 CGRAPH_FREQ_BASE);
340 e->call_stmt_cannot_inline_p = true;
341 symtab->call_edge_duplication_hooks (thunk->callees, e);
342 symtab->call_cgraph_duplication_hooks (thunk, new_thunk);
343 return new_thunk;
346 /* If E does not lead to a thunk, simply redirect it to N. Otherwise create
347 one or more equivalent thunks for N and redirect E to the first in the
348 chain. Note that it is then necessary to call
349 n->expand_all_artificial_thunks once all callers are redirected. */
351 void
352 cgraph_edge::redirect_callee_duplicating_thunks (cgraph_node *n)
354 cgraph_node *orig_to = callee->ultimate_alias_target ();
355 if (orig_to->thunk.thunk_p)
356 n = duplicate_thunk_for_node (orig_to, n);
358 redirect_callee (n);
361 /* Call expand_thunk on all callers that are thunks and if analyze those nodes
362 that were expanded. */
364 void
365 cgraph_node::expand_all_artificial_thunks ()
367 cgraph_edge *e;
368 for (e = callers; e;)
369 if (e->caller->thunk.thunk_p)
371 cgraph_node *thunk = e->caller;
373 e = e->next_caller;
374 if (thunk->expand_thunk (false, false))
376 thunk->thunk.thunk_p = false;
377 thunk->analyze ();
379 thunk->expand_all_artificial_thunks ();
381 else
382 e = e->next_caller;
385 /* Create node representing clone of N executed COUNT times. Decrease
386 the execution counts from original node too.
387 The new clone will have decl set to DECL that may or may not be the same
388 as decl of N.
390 When UPDATE_ORIGINAL is true, the counts are subtracted from the original
391 function's profile to reflect the fact that part of execution is handled
392 by node.
393 When CALL_DUPLICATOIN_HOOK is true, the ipa passes are acknowledged about
394 the new clone. Otherwise the caller is responsible for doing so later.
396 If the new node is being inlined into another one, NEW_INLINED_TO should be
397 the outline function the new one is (even indirectly) inlined to. All hooks
398 will see this in node's global.inlined_to, when invoked. Can be NULL if the
399 node is not inlined. */
401 cgraph_node *
402 cgraph_node::create_clone (tree new_decl, gcov_type gcov_count, int freq,
403 bool update_original,
404 vec<cgraph_edge *> redirect_callers,
405 bool call_duplication_hook,
406 cgraph_node *new_inlined_to,
407 bitmap args_to_skip)
409 cgraph_node *new_node = symtab->create_empty ();
410 cgraph_edge *e;
411 gcov_type count_scale;
412 unsigned i;
414 new_node->decl = new_decl;
415 new_node->register_symbol ();
416 new_node->origin = origin;
417 new_node->lto_file_data = lto_file_data;
418 if (new_node->origin)
420 new_node->next_nested = new_node->origin->nested;
421 new_node->origin->nested = new_node;
423 new_node->analyzed = analyzed;
424 new_node->definition = definition;
425 new_node->local = local;
426 new_node->externally_visible = false;
427 new_node->no_reorder = no_reorder;
428 new_node->local.local = true;
429 new_node->global = global;
430 new_node->global.inlined_to = new_inlined_to;
431 new_node->rtl = rtl;
432 new_node->count = count;
433 new_node->frequency = frequency;
434 new_node->tp_first_run = tp_first_run;
435 new_node->tm_clone = tm_clone;
436 new_node->icf_merged = icf_merged;
437 new_node->merged_comdat = merged_comdat;
439 new_node->clone.tree_map = NULL;
440 new_node->clone.args_to_skip = args_to_skip;
441 new_node->split_part = split_part;
442 if (!args_to_skip)
443 new_node->clone.combined_args_to_skip = clone.combined_args_to_skip;
444 else if (clone.combined_args_to_skip)
446 new_node->clone.combined_args_to_skip = BITMAP_GGC_ALLOC ();
447 bitmap_ior (new_node->clone.combined_args_to_skip,
448 clone.combined_args_to_skip, args_to_skip);
450 else
451 new_node->clone.combined_args_to_skip = args_to_skip;
453 if (count)
455 if (new_node->count > count)
456 count_scale = REG_BR_PROB_BASE;
457 else
458 count_scale = GCOV_COMPUTE_SCALE (new_node->count, count);
460 else
461 count_scale = 0;
462 if (update_original)
464 count -= gcov_count;
465 if (count < 0)
466 count = 0;
469 FOR_EACH_VEC_ELT (redirect_callers, i, e)
471 /* Redirect calls to the old version node to point to its new
472 version. The only exception is when the edge was proved to
473 be unreachable during the clonning procedure. */
474 if (!e->callee
475 || DECL_BUILT_IN_CLASS (e->callee->decl) != BUILT_IN_NORMAL
476 || DECL_FUNCTION_CODE (e->callee->decl) != BUILT_IN_UNREACHABLE)
477 e->redirect_callee_duplicating_thunks (new_node);
479 new_node->expand_all_artificial_thunks ();
481 for (e = callees;e; e=e->next_callee)
482 e->clone (new_node, e->call_stmt, e->lto_stmt_uid, count_scale,
483 freq, update_original);
485 for (e = indirect_calls; e; e = e->next_callee)
486 e->clone (new_node, e->call_stmt, e->lto_stmt_uid,
487 count_scale, freq, update_original);
488 new_node->clone_references (this);
490 new_node->next_sibling_clone = clones;
491 if (clones)
492 clones->prev_sibling_clone = new_node;
493 clones = new_node;
494 new_node->clone_of = this;
496 if (call_duplication_hook)
497 symtab->call_cgraph_duplication_hooks (this, new_node);
498 return new_node;
501 static GTY(()) unsigned int clone_fn_id_num;
503 /* Return a new assembler name for a clone with SUFFIX of a decl named
504 NAME. */
506 tree
507 clone_function_name_1 (const char *name, const char *suffix)
509 size_t len = strlen (name);
510 char *tmp_name, *prefix;
512 prefix = XALLOCAVEC (char, len + strlen (suffix) + 2);
513 memcpy (prefix, name, len);
514 strcpy (prefix + len + 1, suffix);
515 prefix[len] = symbol_table::symbol_suffix_separator ();
516 ASM_FORMAT_PRIVATE_NAME (tmp_name, prefix, clone_fn_id_num++);
517 return get_identifier (tmp_name);
520 /* Return a new assembler name for a clone of DECL with SUFFIX. */
522 tree
523 clone_function_name (tree decl, const char *suffix)
525 tree name = DECL_ASSEMBLER_NAME (decl);
526 return clone_function_name_1 (IDENTIFIER_POINTER (name), suffix);
530 /* Create callgraph node clone with new declaration. The actual body will
531 be copied later at compilation stage.
533 TODO: after merging in ipa-sra use function call notes instead of args_to_skip
534 bitmap interface.
536 cgraph_node *
537 cgraph_node::create_virtual_clone (vec<cgraph_edge *> redirect_callers,
538 vec<ipa_replace_map *, va_gc> *tree_map,
539 bitmap args_to_skip, const char * suffix)
541 tree old_decl = decl;
542 cgraph_node *new_node = NULL;
543 tree new_decl;
544 size_t len, i;
545 ipa_replace_map *map;
546 char *name;
548 gcc_checking_assert (local.versionable);
549 gcc_assert (local.can_change_signature || !args_to_skip);
551 /* Make a new FUNCTION_DECL tree node */
552 if (!args_to_skip)
553 new_decl = copy_node (old_decl);
554 else
555 new_decl = build_function_decl_skip_args (old_decl, args_to_skip, false);
557 /* These pointers represent function body and will be populated only when clone
558 is materialized. */
559 gcc_assert (new_decl != old_decl);
560 DECL_STRUCT_FUNCTION (new_decl) = NULL;
561 DECL_ARGUMENTS (new_decl) = NULL;
562 DECL_INITIAL (new_decl) = NULL;
563 DECL_RESULT (new_decl) = NULL;
564 /* We can not do DECL_RESULT (new_decl) = NULL; here because of LTO partitioning
565 sometimes storing only clone decl instead of original. */
567 /* Generate a new name for the new version. */
568 len = IDENTIFIER_LENGTH (DECL_NAME (old_decl));
569 name = XALLOCAVEC (char, len + strlen (suffix) + 2);
570 memcpy (name, IDENTIFIER_POINTER (DECL_NAME (old_decl)), len);
571 strcpy (name + len + 1, suffix);
572 name[len] = '.';
573 DECL_NAME (new_decl) = get_identifier (name);
574 SET_DECL_ASSEMBLER_NAME (new_decl, clone_function_name (old_decl, suffix));
575 SET_DECL_RTL (new_decl, NULL);
577 new_node = create_clone (new_decl, count, CGRAPH_FREQ_BASE, false,
578 redirect_callers, false, NULL, args_to_skip);
580 /* Update the properties.
581 Make clone visible only within this translation unit. Make sure
582 that is not weak also.
583 ??? We cannot use COMDAT linkage because there is no
584 ABI support for this. */
585 set_new_clone_decl_and_node_flags (new_node);
586 new_node->clone.tree_map = tree_map;
587 if (!implicit_section)
588 new_node->set_section (get_section ());
590 /* Clones of global symbols or symbols with unique names are unique. */
591 if ((TREE_PUBLIC (old_decl)
592 && !DECL_EXTERNAL (old_decl)
593 && !DECL_WEAK (old_decl)
594 && !DECL_COMDAT (old_decl))
595 || in_lto_p)
596 new_node->unique_name = true;
597 FOR_EACH_VEC_SAFE_ELT (tree_map, i, map)
598 new_node->maybe_create_reference (map->new_tree, IPA_REF_ADDR, NULL);
600 if (ipa_transforms_to_apply.exists ())
601 new_node->ipa_transforms_to_apply
602 = ipa_transforms_to_apply.copy ();
604 symtab->call_cgraph_duplication_hooks (this, new_node);
606 return new_node;
609 /* callgraph node being removed from symbol table; see if its entry can be
610 replaced by other inline clone. */
611 cgraph_node *
612 cgraph_node::find_replacement (void)
614 cgraph_node *next_inline_clone, *replacement;
616 for (next_inline_clone = clones;
617 next_inline_clone
618 && next_inline_clone->decl != decl;
619 next_inline_clone = next_inline_clone->next_sibling_clone)
622 /* If there is inline clone of the node being removed, we need
623 to put it into the position of removed node and reorganize all
624 other clones to be based on it. */
625 if (next_inline_clone)
627 cgraph_node *n;
628 cgraph_node *new_clones;
630 replacement = next_inline_clone;
632 /* Unlink inline clone from the list of clones of removed node. */
633 if (next_inline_clone->next_sibling_clone)
634 next_inline_clone->next_sibling_clone->prev_sibling_clone
635 = next_inline_clone->prev_sibling_clone;
636 if (next_inline_clone->prev_sibling_clone)
638 gcc_assert (clones != next_inline_clone);
639 next_inline_clone->prev_sibling_clone->next_sibling_clone
640 = next_inline_clone->next_sibling_clone;
642 else
644 gcc_assert (clones == next_inline_clone);
645 clones = next_inline_clone->next_sibling_clone;
648 new_clones = clones;
649 clones = NULL;
651 /* Copy clone info. */
652 next_inline_clone->clone = clone;
654 /* Now place it into clone tree at same level at NODE. */
655 next_inline_clone->clone_of = clone_of;
656 next_inline_clone->prev_sibling_clone = NULL;
657 next_inline_clone->next_sibling_clone = NULL;
658 if (clone_of)
660 if (clone_of->clones)
661 clone_of->clones->prev_sibling_clone = next_inline_clone;
662 next_inline_clone->next_sibling_clone = clone_of->clones;
663 clone_of->clones = next_inline_clone;
666 /* Merge the clone list. */
667 if (new_clones)
669 if (!next_inline_clone->clones)
670 next_inline_clone->clones = new_clones;
671 else
673 n = next_inline_clone->clones;
674 while (n->next_sibling_clone)
675 n = n->next_sibling_clone;
676 n->next_sibling_clone = new_clones;
677 new_clones->prev_sibling_clone = n;
681 /* Update clone_of pointers. */
682 n = new_clones;
683 while (n)
685 n->clone_of = next_inline_clone;
686 n = n->next_sibling_clone;
688 return replacement;
690 else
691 return NULL;
694 /* Like cgraph_set_call_stmt but walk the clone tree and update all
695 clones sharing the same function body.
696 When WHOLE_SPECULATIVE_EDGES is true, all three components of
697 speculative edge gets updated. Otherwise we update only direct
698 call. */
700 void
701 cgraph_node::set_call_stmt_including_clones (gimple *old_stmt,
702 gcall *new_stmt,
703 bool update_speculative)
705 cgraph_node *node;
706 cgraph_edge *edge = get_edge (old_stmt);
708 if (edge)
709 edge->set_call_stmt (new_stmt, update_speculative);
711 node = clones;
712 if (node)
713 while (node != this)
715 cgraph_edge *edge = node->get_edge (old_stmt);
716 if (edge)
718 edge->set_call_stmt (new_stmt, update_speculative);
719 /* If UPDATE_SPECULATIVE is false, it means that we are turning
720 speculative call into a real code sequence. Update the
721 callgraph edges. */
722 if (edge->speculative && !update_speculative)
724 cgraph_edge *direct, *indirect;
725 ipa_ref *ref;
727 gcc_assert (!edge->indirect_unknown_callee);
728 edge->speculative_call_info (direct, indirect, ref);
729 direct->speculative = false;
730 indirect->speculative = false;
731 ref->speculative = false;
734 if (node->clones)
735 node = node->clones;
736 else if (node->next_sibling_clone)
737 node = node->next_sibling_clone;
738 else
740 while (node != this && !node->next_sibling_clone)
741 node = node->clone_of;
742 if (node != this)
743 node = node->next_sibling_clone;
748 /* Like cgraph_create_edge walk the clone tree and update all clones sharing
749 same function body. If clones already have edge for OLD_STMT; only
750 update the edge same way as cgraph_set_call_stmt_including_clones does.
752 TODO: COUNT and LOOP_DEPTH should be properly distributed based on relative
753 frequencies of the clones. */
755 void
756 cgraph_node::create_edge_including_clones (cgraph_node *callee,
757 gimple *old_stmt, gcall *stmt,
758 gcov_type count,
759 int freq,
760 cgraph_inline_failed_t reason)
762 cgraph_node *node;
763 cgraph_edge *edge;
765 if (!get_edge (stmt))
767 edge = create_edge (callee, stmt, count, freq);
768 edge->inline_failed = reason;
771 node = clones;
772 if (node)
773 while (node != this)
775 cgraph_edge *edge = node->get_edge (old_stmt);
777 /* It is possible that clones already contain the edge while
778 master didn't. Either we promoted indirect call into direct
779 call in the clone or we are processing clones of unreachable
780 master where edges has been removed. */
781 if (edge)
782 edge->set_call_stmt (stmt);
783 else if (! node->get_edge (stmt))
785 edge = node->create_edge (callee, stmt, count, freq);
786 edge->inline_failed = reason;
789 if (node->clones)
790 node = node->clones;
791 else if (node->next_sibling_clone)
792 node = node->next_sibling_clone;
793 else
795 while (node != this && !node->next_sibling_clone)
796 node = node->clone_of;
797 if (node != this)
798 node = node->next_sibling_clone;
803 /* Remove the node from cgraph and all inline clones inlined into it.
804 Skip however removal of FORBIDDEN_NODE and return true if it needs to be
805 removed. This allows to call the function from outer loop walking clone
806 tree. */
808 bool
809 cgraph_node::remove_symbol_and_inline_clones (cgraph_node *forbidden_node)
811 cgraph_edge *e, *next;
812 bool found = false;
814 if (this == forbidden_node)
816 callers->remove ();
817 return true;
819 for (e = callees; e; e = next)
821 next = e->next_callee;
822 if (!e->inline_failed)
823 found |= e->callee->remove_symbol_and_inline_clones (forbidden_node);
825 remove ();
826 return found;
829 /* The edges representing the callers of the NEW_VERSION node were
830 fixed by cgraph_function_versioning (), now the call_expr in their
831 respective tree code should be updated to call the NEW_VERSION. */
833 static void
834 update_call_expr (cgraph_node *new_version)
836 cgraph_edge *e;
838 gcc_assert (new_version);
840 /* Update the call expr on the edges to call the new version. */
841 for (e = new_version->callers; e; e = e->next_caller)
843 function *inner_function = DECL_STRUCT_FUNCTION (e->caller->decl);
844 gimple_call_set_fndecl (e->call_stmt, new_version->decl);
845 maybe_clean_eh_stmt_fn (inner_function, e->call_stmt);
850 /* Create a new cgraph node which is the new version of
851 callgraph node. REDIRECT_CALLERS holds the callers
852 edges which should be redirected to point to
853 NEW_VERSION. ALL the callees edges of the node
854 are cloned to the new version node. Return the new
855 version node.
857 If non-NULL BLOCK_TO_COPY determine what basic blocks
858 was copied to prevent duplications of calls that are dead
859 in the clone. */
861 cgraph_node *
862 cgraph_node::create_version_clone (tree new_decl,
863 vec<cgraph_edge *> redirect_callers,
864 bitmap bbs_to_copy)
866 cgraph_node *new_version;
867 cgraph_edge *e;
868 unsigned i;
870 new_version = cgraph_node::create (new_decl);
872 new_version->analyzed = analyzed;
873 new_version->definition = definition;
874 new_version->local = local;
875 new_version->externally_visible = false;
876 new_version->no_reorder = no_reorder;
877 new_version->local.local = new_version->definition;
878 new_version->global = global;
879 new_version->rtl = rtl;
880 new_version->count = count;
882 for (e = callees; e; e=e->next_callee)
883 if (!bbs_to_copy
884 || bitmap_bit_p (bbs_to_copy, gimple_bb (e->call_stmt)->index))
885 e->clone (new_version, e->call_stmt,
886 e->lto_stmt_uid, REG_BR_PROB_BASE,
887 CGRAPH_FREQ_BASE,
888 true);
889 for (e = indirect_calls; e; e=e->next_callee)
890 if (!bbs_to_copy
891 || bitmap_bit_p (bbs_to_copy, gimple_bb (e->call_stmt)->index))
892 e->clone (new_version, e->call_stmt,
893 e->lto_stmt_uid, REG_BR_PROB_BASE,
894 CGRAPH_FREQ_BASE,
895 true);
896 FOR_EACH_VEC_ELT (redirect_callers, i, e)
898 /* Redirect calls to the old version node to point to its new
899 version. */
900 e->redirect_callee (new_version);
903 symtab->call_cgraph_duplication_hooks (this, new_version);
905 return new_version;
908 /* Perform function versioning.
909 Function versioning includes copying of the tree and
910 a callgraph update (creating a new cgraph node and updating
911 its callees and callers).
913 REDIRECT_CALLERS varray includes the edges to be redirected
914 to the new version.
916 TREE_MAP is a mapping of tree nodes we want to replace with
917 new ones (according to results of prior analysis).
919 If non-NULL ARGS_TO_SKIP determine function parameters to remove
920 from new version.
921 If SKIP_RETURN is true, the new version will return void.
922 If non-NULL BLOCK_TO_COPY determine what basic blocks to copy.
923 If non_NULL NEW_ENTRY determine new entry BB of the clone.
925 Return the new version's cgraph node. */
927 cgraph_node *
928 cgraph_node::create_version_clone_with_body
929 (vec<cgraph_edge *> redirect_callers,
930 vec<ipa_replace_map *, va_gc> *tree_map, bitmap args_to_skip,
931 bool skip_return, bitmap bbs_to_copy, basic_block new_entry_block,
932 const char *clone_name)
934 tree old_decl = decl;
935 cgraph_node *new_version_node = NULL;
936 tree new_decl;
938 if (!tree_versionable_function_p (old_decl))
939 return NULL;
941 gcc_assert (local.can_change_signature || !args_to_skip);
943 /* Make a new FUNCTION_DECL tree node for the new version. */
944 if (!args_to_skip && !skip_return)
945 new_decl = copy_node (old_decl);
946 else
947 new_decl
948 = build_function_decl_skip_args (old_decl, args_to_skip, skip_return);
950 /* Generate a new name for the new version. */
951 DECL_NAME (new_decl) = clone_function_name (old_decl, clone_name);
952 SET_DECL_ASSEMBLER_NAME (new_decl, DECL_NAME (new_decl));
953 SET_DECL_RTL (new_decl, NULL);
955 /* When the old decl was a con-/destructor make sure the clone isn't. */
956 DECL_STATIC_CONSTRUCTOR (new_decl) = 0;
957 DECL_STATIC_DESTRUCTOR (new_decl) = 0;
959 /* Create the new version's call-graph node.
960 and update the edges of the new node. */
961 new_version_node = create_version_clone (new_decl, redirect_callers,
962 bbs_to_copy);
964 if (ipa_transforms_to_apply.exists ())
965 new_version_node->ipa_transforms_to_apply
966 = ipa_transforms_to_apply.copy ();
967 /* Copy the OLD_VERSION_NODE function tree to the new version. */
968 tree_function_versioning (old_decl, new_decl, tree_map, false, args_to_skip,
969 skip_return, bbs_to_copy, new_entry_block);
971 /* Update the new version's properties.
972 Make The new version visible only within this translation unit. Make sure
973 that is not weak also.
974 ??? We cannot use COMDAT linkage because there is no
975 ABI support for this. */
976 new_version_node->make_decl_local ();
977 DECL_VIRTUAL_P (new_version_node->decl) = 0;
978 new_version_node->externally_visible = 0;
979 new_version_node->local.local = 1;
980 new_version_node->lowered = true;
981 if (!implicit_section)
982 new_version_node->set_section (get_section ());
983 /* Clones of global symbols or symbols with unique names are unique. */
984 if ((TREE_PUBLIC (old_decl)
985 && !DECL_EXTERNAL (old_decl)
986 && !DECL_WEAK (old_decl)
987 && !DECL_COMDAT (old_decl))
988 || in_lto_p)
989 new_version_node->unique_name = true;
991 /* Update the call_expr on the edges to call the new version node. */
992 update_call_expr (new_version_node);
994 symtab->call_cgraph_insertion_hooks (this);
995 return new_version_node;
998 /* Given virtual clone, turn it into actual clone. */
1000 static void
1001 cgraph_materialize_clone (cgraph_node *node)
1003 bitmap_obstack_initialize (NULL);
1004 node->former_clone_of = node->clone_of->decl;
1005 if (node->clone_of->former_clone_of)
1006 node->former_clone_of = node->clone_of->former_clone_of;
1007 /* Copy the OLD_VERSION_NODE function tree to the new version. */
1008 tree_function_versioning (node->clone_of->decl, node->decl,
1009 node->clone.tree_map, true,
1010 node->clone.args_to_skip, false,
1011 NULL, NULL);
1012 if (symtab->dump_file)
1014 dump_function_to_file (node->clone_of->decl, symtab->dump_file,
1015 dump_flags);
1016 dump_function_to_file (node->decl, symtab->dump_file, dump_flags);
1019 /* Function is no longer clone. */
1020 if (node->next_sibling_clone)
1021 node->next_sibling_clone->prev_sibling_clone = node->prev_sibling_clone;
1022 if (node->prev_sibling_clone)
1023 node->prev_sibling_clone->next_sibling_clone = node->next_sibling_clone;
1024 else
1025 node->clone_of->clones = node->next_sibling_clone;
1026 node->next_sibling_clone = NULL;
1027 node->prev_sibling_clone = NULL;
1028 if (!node->clone_of->analyzed && !node->clone_of->clones)
1030 node->clone_of->release_body ();
1031 node->clone_of->remove_callees ();
1032 node->clone_of->remove_all_references ();
1034 node->clone_of = NULL;
1035 bitmap_obstack_release (NULL);
1038 /* Once all functions from compilation unit are in memory, produce all clones
1039 and update all calls. We might also do this on demand if we don't want to
1040 bring all functions to memory prior compilation, but current WHOPR
1041 implementation does that and it is a bit easier to keep everything right in
1042 this order. */
1044 void
1045 symbol_table::materialize_all_clones (void)
1047 cgraph_node *node;
1048 bool stabilized = false;
1051 if (symtab->dump_file)
1052 fprintf (symtab->dump_file, "Materializing clones\n");
1054 cgraph_node::checking_verify_cgraph_nodes ();
1056 /* We can also do topological order, but number of iterations should be
1057 bounded by number of IPA passes since single IPA pass is probably not
1058 going to create clones of clones it created itself. */
1059 while (!stabilized)
1061 stabilized = true;
1062 FOR_EACH_FUNCTION (node)
1064 if (node->clone_of && node->decl != node->clone_of->decl
1065 && !gimple_has_body_p (node->decl))
1067 if (!node->clone_of->clone_of)
1068 node->clone_of->get_untransformed_body ();
1069 if (gimple_has_body_p (node->clone_of->decl))
1071 if (symtab->dump_file)
1073 fprintf (symtab->dump_file, "cloning %s to %s\n",
1074 xstrdup_for_dump (node->clone_of->name ()),
1075 xstrdup_for_dump (node->name ()));
1076 if (node->clone.tree_map)
1078 unsigned int i;
1079 fprintf (symtab->dump_file, " replace map: ");
1080 for (i = 0;
1081 i < vec_safe_length (node->clone.tree_map);
1082 i++)
1084 ipa_replace_map *replace_info;
1085 replace_info = (*node->clone.tree_map)[i];
1086 print_generic_expr (symtab->dump_file, replace_info->old_tree, 0);
1087 fprintf (symtab->dump_file, " -> ");
1088 print_generic_expr (symtab->dump_file, replace_info->new_tree, 0);
1089 fprintf (symtab->dump_file, "%s%s;",
1090 replace_info->replace_p ? "(replace)":"",
1091 replace_info->ref_p ? "(ref)":"");
1093 fprintf (symtab->dump_file, "\n");
1095 if (node->clone.args_to_skip)
1097 fprintf (symtab->dump_file, " args_to_skip: ");
1098 dump_bitmap (symtab->dump_file,
1099 node->clone.args_to_skip);
1101 if (node->clone.args_to_skip)
1103 fprintf (symtab->dump_file, " combined_args_to_skip:");
1104 dump_bitmap (symtab->dump_file, node->clone.combined_args_to_skip);
1107 cgraph_materialize_clone (node);
1108 stabilized = false;
1113 FOR_EACH_FUNCTION (node)
1114 if (!node->analyzed && node->callees)
1116 node->remove_callees ();
1117 node->remove_all_references ();
1119 else
1120 node->clear_stmts_in_references ();
1121 if (symtab->dump_file)
1122 fprintf (symtab->dump_file, "Materialization Call site updates done.\n");
1124 cgraph_node::checking_verify_cgraph_nodes ();
1126 symtab->remove_unreachable_nodes (symtab->dump_file);
1129 #include "gt-cgraphclones.h"