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1 /* Scalar Replacement of Aggregates (SRA) converts some structure
2 references into scalar references, exposing them to the scalar
3 optimizers.
4 Copyright (C) 2003, 2004, 2005 Free Software Foundation, Inc.
5 Contributed by Diego Novillo <dnovillo@redhat.com>
7 This file is part of GCC.
9 GCC is free software; you can redistribute it and/or modify it
10 under the terms of the GNU General Public License as published by the
11 Free Software Foundation; either version 2, or (at your option) any
12 later version.
14 GCC is distributed in the hope that it will be useful, but WITHOUT
15 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
16 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
17 for more details.
19 You should have received a copy of the GNU General Public License
20 along with GCC; see the file COPYING. If not, write to the Free
21 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
22 02111-1307, USA. */
24 #include "config.h"
25 #include "system.h"
26 #include "coretypes.h"
27 #include "tm.h"
28 #include "errors.h"
29 #include "ggc.h"
30 #include "tree.h"
32 /* These RTL headers are needed for basic-block.h. */
33 #include "rtl.h"
34 #include "tm_p.h"
35 #include "hard-reg-set.h"
36 #include "basic-block.h"
37 #include "diagnostic.h"
38 #include "langhooks.h"
39 #include "tree-inline.h"
40 #include "tree-flow.h"
41 #include "tree-gimple.h"
42 #include "tree-dump.h"
43 #include "tree-pass.h"
44 #include "timevar.h"
45 #include "flags.h"
46 #include "bitmap.h"
47 #include "obstack.h"
48 #include "target.h"
49 /* expr.h is needed for MOVE_RATIO. */
50 #include "expr.h"
51 #include "params.h"
54 /* This object of this pass is to replace a non-addressable aggregate with a
55 set of independent variables. Most of the time, all of these variables
56 will be scalars. But a secondary objective is to break up larger
57 aggregates into smaller aggregates. In the process we may find that some
58 bits of the larger aggregate can be deleted as unreferenced.
60 This substitution is done globally. More localized substitutions would
61 be the purvey of a load-store motion pass.
63 The optimization proceeds in phases:
65 (1) Identify variables that have types that are candidates for
66 decomposition.
68 (2) Scan the function looking for the ways these variables are used.
69 In particular we're interested in the number of times a variable
70 (or member) is needed as a complete unit, and the number of times
71 a variable (or member) is copied.
73 (3) Based on the usage profile, instantiate substitution variables.
75 (4) Scan the function making replacements.
79 /* The set of aggregate variables that are candidates for scalarization. */
80 static bitmap sra_candidates;
82 /* Set of scalarizable PARM_DECLs that need copy-in operations at the
83 beginning of the function. */
84 static bitmap needs_copy_in;
86 /* Sets of bit pairs that cache type decomposition and instantiation. */
87 static bitmap sra_type_decomp_cache;
88 static bitmap sra_type_inst_cache;
90 /* One of these structures is created for each candidate aggregate
91 and each (accessed) member of such an aggregate. */
92 struct sra_elt
94 /* A tree of the elements. Used when we want to traverse everything. */
95 struct sra_elt *parent;
96 struct sra_elt *children;
97 struct sra_elt *sibling;
99 /* If this element is a root, then this is the VAR_DECL. If this is
100 a sub-element, this is some token used to identify the reference.
101 In the case of COMPONENT_REF, this is the FIELD_DECL. In the case
102 of an ARRAY_REF, this is the (constant) index. In the case of a
103 complex number, this is a zero or one. */
104 tree element;
106 /* The type of the element. */
107 tree type;
109 /* A VAR_DECL, for any sub-element we've decided to replace. */
110 tree replacement;
112 /* The number of times the element is referenced as a whole. I.e.
113 given "a.b.c", this would be incremented for C, but not for A or B. */
114 unsigned int n_uses;
116 /* The number of times the element is copied to or from another
117 scalarizable element. */
118 unsigned int n_copies;
120 /* True if TYPE is scalar. */
121 bool is_scalar;
123 /* True if we saw something about this element that prevents scalarization,
124 such as non-constant indexing. */
125 bool cannot_scalarize;
127 /* True if we've decided that structure-to-structure assignment
128 should happen via memcpy and not per-element. */
129 bool use_block_copy;
131 /* A flag for use with/after random access traversals. */
132 bool visited;
135 /* Random access to the child of a parent is performed by hashing.
136 This prevents quadratic behavior, and allows SRA to function
137 reasonably on larger records. */
138 static htab_t sra_map;
140 /* All structures are allocated out of the following obstack. */
141 static struct obstack sra_obstack;
143 /* Debugging functions. */
144 static void dump_sra_elt_name (FILE *, struct sra_elt *);
145 extern void debug_sra_elt_name (struct sra_elt *);
147 /* Forward declarations. */
148 static tree generate_element_ref (struct sra_elt *);
150 /* Return true if DECL is an SRA candidate. */
152 static bool
153 is_sra_candidate_decl (tree decl)
155 return DECL_P (decl) && bitmap_bit_p (sra_candidates, var_ann (decl)->uid);
158 /* Return true if TYPE is a scalar type. */
160 static bool
161 is_sra_scalar_type (tree type)
163 enum tree_code code = TREE_CODE (type);
164 return (code == INTEGER_TYPE || code == REAL_TYPE || code == VECTOR_TYPE
165 || code == ENUMERAL_TYPE || code == BOOLEAN_TYPE
166 || code == CHAR_TYPE || code == POINTER_TYPE || code == OFFSET_TYPE
167 || code == REFERENCE_TYPE);
170 /* Return true if TYPE can be decomposed into a set of independent variables.
172 Note that this doesn't imply that all elements of TYPE can be
173 instantiated, just that if we decide to break up the type into
174 separate pieces that it can be done. */
176 static bool
177 type_can_be_decomposed_p (tree type)
179 unsigned int cache = TYPE_UID (TYPE_MAIN_VARIANT (type)) * 2;
180 tree t;
182 /* Avoid searching the same type twice. */
183 if (bitmap_bit_p (sra_type_decomp_cache, cache+0))
184 return true;
185 if (bitmap_bit_p (sra_type_decomp_cache, cache+1))
186 return false;
188 /* The type must have a definite nonzero size. */
189 if (TYPE_SIZE (type) == NULL || TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST
190 || integer_zerop (TYPE_SIZE (type)))
191 goto fail;
193 /* The type must be a non-union aggregate. */
194 switch (TREE_CODE (type))
196 case RECORD_TYPE:
198 bool saw_one_field = false;
200 for (t = TYPE_FIELDS (type); t ; t = TREE_CHAIN (t))
201 if (TREE_CODE (t) == FIELD_DECL)
203 /* Reject incorrectly represented bit fields. */
204 if (DECL_BIT_FIELD (t)
205 && (tree_low_cst (DECL_SIZE (t), 1)
206 != TYPE_PRECISION (TREE_TYPE (t))))
207 goto fail;
209 saw_one_field = true;
212 /* Record types must have at least one field. */
213 if (!saw_one_field)
214 goto fail;
216 break;
218 case ARRAY_TYPE:
219 /* Array types must have a fixed lower and upper bound. */
220 t = TYPE_DOMAIN (type);
221 if (t == NULL)
222 goto fail;
223 if (TYPE_MIN_VALUE (t) == NULL || !TREE_CONSTANT (TYPE_MIN_VALUE (t)))
224 goto fail;
225 if (TYPE_MAX_VALUE (t) == NULL || !TREE_CONSTANT (TYPE_MAX_VALUE (t)))
226 goto fail;
227 break;
229 case COMPLEX_TYPE:
230 break;
232 default:
233 goto fail;
236 bitmap_set_bit (sra_type_decomp_cache, cache+0);
237 return true;
239 fail:
240 bitmap_set_bit (sra_type_decomp_cache, cache+1);
241 return false;
244 /* Return true if DECL can be decomposed into a set of independent
245 (though not necessarily scalar) variables. */
247 static bool
248 decl_can_be_decomposed_p (tree var)
250 /* Early out for scalars. */
251 if (is_sra_scalar_type (TREE_TYPE (var)))
252 return false;
254 /* The variable must not be aliased. */
255 if (!is_gimple_non_addressable (var))
257 if (dump_file && (dump_flags & TDF_DETAILS))
259 fprintf (dump_file, "Cannot scalarize variable ");
260 print_generic_expr (dump_file, var, dump_flags);
261 fprintf (dump_file, " because it must live in memory\n");
263 return false;
266 /* The variable must not be volatile. */
267 if (TREE_THIS_VOLATILE (var))
269 if (dump_file && (dump_flags & TDF_DETAILS))
271 fprintf (dump_file, "Cannot scalarize variable ");
272 print_generic_expr (dump_file, var, dump_flags);
273 fprintf (dump_file, " because it is declared volatile\n");
275 return false;
278 /* We must be able to decompose the variable's type. */
279 if (!type_can_be_decomposed_p (TREE_TYPE (var)))
281 if (dump_file && (dump_flags & TDF_DETAILS))
283 fprintf (dump_file, "Cannot scalarize variable ");
284 print_generic_expr (dump_file, var, dump_flags);
285 fprintf (dump_file, " because its type cannot be decomposed\n");
287 return false;
290 return true;
293 /* Return true if TYPE can be *completely* decomposed into scalars. */
295 static bool
296 type_can_instantiate_all_elements (tree type)
298 if (is_sra_scalar_type (type))
299 return true;
300 if (!type_can_be_decomposed_p (type))
301 return false;
303 switch (TREE_CODE (type))
305 case RECORD_TYPE:
307 unsigned int cache = TYPE_UID (TYPE_MAIN_VARIANT (type)) * 2;
308 tree f;
310 if (bitmap_bit_p (sra_type_inst_cache, cache+0))
311 return true;
312 if (bitmap_bit_p (sra_type_inst_cache, cache+1))
313 return false;
315 for (f = TYPE_FIELDS (type); f ; f = TREE_CHAIN (f))
316 if (TREE_CODE (f) == FIELD_DECL)
318 if (!type_can_instantiate_all_elements (TREE_TYPE (f)))
320 bitmap_set_bit (sra_type_inst_cache, cache+1);
321 return false;
325 bitmap_set_bit (sra_type_inst_cache, cache+0);
326 return true;
329 case ARRAY_TYPE:
330 return type_can_instantiate_all_elements (TREE_TYPE (type));
332 case COMPLEX_TYPE:
333 return true;
335 default:
336 gcc_unreachable ();
340 /* Test whether ELT or some sub-element cannot be scalarized. */
342 static bool
343 can_completely_scalarize_p (struct sra_elt *elt)
345 struct sra_elt *c;
347 if (elt->cannot_scalarize)
348 return false;
350 for (c = elt->children; c ; c = c->sibling)
351 if (!can_completely_scalarize_p (c))
352 return false;
354 return true;
358 /* A simplified tree hashing algorithm that only handles the types of
359 trees we expect to find in sra_elt->element. */
361 static hashval_t
362 sra_hash_tree (tree t)
364 hashval_t h;
366 switch (TREE_CODE (t))
368 case VAR_DECL:
369 case PARM_DECL:
370 case RESULT_DECL:
371 h = DECL_UID (t);
372 break;
374 case INTEGER_CST:
375 h = TREE_INT_CST_LOW (t) ^ TREE_INT_CST_HIGH (t);
376 break;
378 case FIELD_DECL:
379 /* We can have types that are compatible, but have different member
380 lists, so we can't hash fields by ID. Use offsets instead. */
381 h = iterative_hash_expr (DECL_FIELD_OFFSET (t), 0);
382 h = iterative_hash_expr (DECL_FIELD_BIT_OFFSET (t), h);
383 break;
385 default:
386 gcc_unreachable ();
389 return h;
392 /* Hash function for type SRA_PAIR. */
394 static hashval_t
395 sra_elt_hash (const void *x)
397 const struct sra_elt *e = x;
398 const struct sra_elt *p;
399 hashval_t h;
401 h = sra_hash_tree (e->element);
403 /* Take into account everything back up the chain. Given that chain
404 lengths are rarely very long, this should be acceptable. If we
405 truly identify this as a performance problem, it should work to
406 hash the pointer value "e->parent". */
407 for (p = e->parent; p ; p = p->parent)
408 h = (h * 65521) ^ sra_hash_tree (p->element);
410 return h;
413 /* Equality function for type SRA_PAIR. */
415 static int
416 sra_elt_eq (const void *x, const void *y)
418 const struct sra_elt *a = x;
419 const struct sra_elt *b = y;
420 tree ae, be;
422 if (a->parent != b->parent)
423 return false;
425 ae = a->element;
426 be = b->element;
428 if (ae == be)
429 return true;
430 if (TREE_CODE (ae) != TREE_CODE (be))
431 return false;
433 switch (TREE_CODE (ae))
435 case VAR_DECL:
436 case PARM_DECL:
437 case RESULT_DECL:
438 /* These are all pointer unique. */
439 return false;
441 case INTEGER_CST:
442 /* Integers are not pointer unique, so compare their values. */
443 return tree_int_cst_equal (ae, be);
445 case FIELD_DECL:
446 /* Fields are unique within a record, but not between
447 compatible records. */
448 if (DECL_FIELD_CONTEXT (ae) == DECL_FIELD_CONTEXT (be))
449 return false;
450 return fields_compatible_p (ae, be);
452 default:
453 gcc_unreachable ();
457 /* Create or return the SRA_ELT structure for CHILD in PARENT. PARENT
458 may be null, in which case CHILD must be a DECL. */
460 static struct sra_elt *
461 lookup_element (struct sra_elt *parent, tree child, tree type,
462 enum insert_option insert)
464 struct sra_elt dummy;
465 struct sra_elt **slot;
466 struct sra_elt *elt;
468 dummy.parent = parent;
469 dummy.element = child;
471 slot = (struct sra_elt **) htab_find_slot (sra_map, &dummy, insert);
472 if (!slot && insert == NO_INSERT)
473 return NULL;
475 elt = *slot;
476 if (!elt && insert == INSERT)
478 *slot = elt = obstack_alloc (&sra_obstack, sizeof (*elt));
479 memset (elt, 0, sizeof (*elt));
481 elt->parent = parent;
482 elt->element = child;
483 elt->type = type;
484 elt->is_scalar = is_sra_scalar_type (type);
486 if (parent)
488 elt->sibling = parent->children;
489 parent->children = elt;
492 /* If this is a parameter, then if we want to scalarize, we have
493 one copy from the true function parameter. Count it now. */
494 if (TREE_CODE (child) == PARM_DECL)
496 elt->n_copies = 1;
497 bitmap_set_bit (needs_copy_in, var_ann (child)->uid);
501 return elt;
504 /* Return true if the ARRAY_REF in EXPR is a constant, in bounds access. */
506 static bool
507 is_valid_const_index (tree expr)
509 tree dom, t, index = TREE_OPERAND (expr, 1);
511 if (TREE_CODE (index) != INTEGER_CST)
512 return false;
514 /* Watch out for stupid user tricks, indexing outside the array.
516 Careful, we're not called only on scalarizable types, so do not
517 assume constant array bounds. We needn't do anything with such
518 cases, since they'll be referring to objects that we should have
519 already rejected for scalarization, so returning false is fine. */
521 dom = TYPE_DOMAIN (TREE_TYPE (TREE_OPERAND (expr, 0)));
522 if (dom == NULL)
523 return false;
525 t = TYPE_MIN_VALUE (dom);
526 if (!t || TREE_CODE (t) != INTEGER_CST)
527 return false;
528 if (tree_int_cst_lt (index, t))
529 return false;
531 t = TYPE_MAX_VALUE (dom);
532 if (!t || TREE_CODE (t) != INTEGER_CST)
533 return false;
534 if (tree_int_cst_lt (t, index))
535 return false;
537 return true;
540 /* Create or return the SRA_ELT structure for EXPR if the expression
541 refers to a scalarizable variable. */
543 static struct sra_elt *
544 maybe_lookup_element_for_expr (tree expr)
546 struct sra_elt *elt;
547 tree child;
549 switch (TREE_CODE (expr))
551 case VAR_DECL:
552 case PARM_DECL:
553 case RESULT_DECL:
554 if (is_sra_candidate_decl (expr))
555 return lookup_element (NULL, expr, TREE_TYPE (expr), INSERT);
556 return NULL;
558 case ARRAY_REF:
559 /* We can't scalarize variable array indicies. */
560 if (is_valid_const_index (expr))
561 child = TREE_OPERAND (expr, 1);
562 else
563 return NULL;
564 break;
566 case COMPONENT_REF:
567 /* Don't look through unions. */
568 if (TREE_CODE (TREE_TYPE (TREE_OPERAND (expr, 0))) != RECORD_TYPE)
569 return NULL;
570 child = TREE_OPERAND (expr, 1);
571 break;
573 case REALPART_EXPR:
574 child = integer_zero_node;
575 break;
576 case IMAGPART_EXPR:
577 child = integer_one_node;
578 break;
580 default:
581 return NULL;
584 elt = maybe_lookup_element_for_expr (TREE_OPERAND (expr, 0));
585 if (elt)
586 return lookup_element (elt, child, TREE_TYPE (expr), INSERT);
587 return NULL;
591 /* Functions to walk just enough of the tree to see all scalarizable
592 references, and categorize them. */
594 /* A set of callbacks for phases 2 and 4. They'll be invoked for the
595 various kinds of references seen. In all cases, *BSI is an iterator
596 pointing to the statement being processed. */
597 struct sra_walk_fns
599 /* Invoked when ELT is required as a unit. Note that ELT might refer to
600 a leaf node, in which case this is a simple scalar reference. *EXPR_P
601 points to the location of the expression. IS_OUTPUT is true if this
602 is a left-hand-side reference. */
603 void (*use) (struct sra_elt *elt, tree *expr_p,
604 block_stmt_iterator *bsi, bool is_output);
606 /* Invoked when we have a copy between two scalarizable references. */
607 void (*copy) (struct sra_elt *lhs_elt, struct sra_elt *rhs_elt,
608 block_stmt_iterator *bsi);
610 /* Invoked when ELT is initialized from a constant. VALUE may be NULL,
611 in which case it should be treated as an empty CONSTRUCTOR. */
612 void (*init) (struct sra_elt *elt, tree value, block_stmt_iterator *bsi);
614 /* Invoked when we have a copy between one scalarizable reference ELT
615 and one non-scalarizable reference OTHER. IS_OUTPUT is true if ELT
616 is on the left-hand side. */
617 void (*ldst) (struct sra_elt *elt, tree other,
618 block_stmt_iterator *bsi, bool is_output);
620 /* True during phase 2, false during phase 4. */
621 /* ??? This is a hack. */
622 bool initial_scan;
625 #ifdef ENABLE_CHECKING
626 /* Invoked via walk_tree, if *TP contains a candidate decl, return it. */
628 static tree
629 sra_find_candidate_decl (tree *tp, int *walk_subtrees,
630 void *data ATTRIBUTE_UNUSED)
632 tree t = *tp;
633 enum tree_code code = TREE_CODE (t);
635 if (code == VAR_DECL || code == PARM_DECL || code == RESULT_DECL)
637 *walk_subtrees = 0;
638 if (is_sra_candidate_decl (t))
639 return t;
641 else if (TYPE_P (t))
642 *walk_subtrees = 0;
644 return NULL;
646 #endif
648 /* Walk most expressions looking for a scalarizable aggregate.
649 If we find one, invoke FNS->USE. */
651 static void
652 sra_walk_expr (tree *expr_p, block_stmt_iterator *bsi, bool is_output,
653 const struct sra_walk_fns *fns)
655 tree expr = *expr_p;
656 tree inner = expr;
657 bool disable_scalarization = false;
659 /* We're looking to collect a reference expression between EXPR and INNER,
660 such that INNER is a scalarizable decl and all other nodes through EXPR
661 are references that we can scalarize. If we come across something that
662 we can't scalarize, we reset EXPR. This has the effect of making it
663 appear that we're referring to the larger expression as a whole. */
665 while (1)
666 switch (TREE_CODE (inner))
668 case VAR_DECL:
669 case PARM_DECL:
670 case RESULT_DECL:
671 /* If there is a scalarizable decl at the bottom, then process it. */
672 if (is_sra_candidate_decl (inner))
674 struct sra_elt *elt = maybe_lookup_element_for_expr (expr);
675 if (disable_scalarization)
676 elt->cannot_scalarize = true;
677 else
678 fns->use (elt, expr_p, bsi, is_output);
680 return;
682 case ARRAY_REF:
683 /* Non-constant index means any member may be accessed. Prevent the
684 expression from being scalarized. If we were to treat this as a
685 reference to the whole array, we can wind up with a single dynamic
686 index reference inside a loop being overridden by several constant
687 index references during loop setup. It's possible that this could
688 be avoided by using dynamic usage counts based on BB trip counts
689 (based on loop analysis or profiling), but that hardly seems worth
690 the effort. */
691 /* ??? Hack. Figure out how to push this into the scan routines
692 without duplicating too much code. */
693 if (!is_valid_const_index (inner))
695 disable_scalarization = true;
696 goto use_all;
698 /* ??? Are we assured that non-constant bounds and stride will have
699 the same value everywhere? I don't think Fortran will... */
700 if (TREE_OPERAND (inner, 2) || TREE_OPERAND (inner, 3))
701 goto use_all;
702 inner = TREE_OPERAND (inner, 0);
703 break;
705 case COMPONENT_REF:
706 /* A reference to a union member constitutes a reference to the
707 entire union. */
708 if (TREE_CODE (TREE_TYPE (TREE_OPERAND (inner, 0))) != RECORD_TYPE)
709 goto use_all;
710 /* ??? See above re non-constant stride. */
711 if (TREE_OPERAND (inner, 2))
712 goto use_all;
713 inner = TREE_OPERAND (inner, 0);
714 break;
716 case REALPART_EXPR:
717 case IMAGPART_EXPR:
718 inner = TREE_OPERAND (inner, 0);
719 break;
721 case BIT_FIELD_REF:
722 /* A bit field reference (access to *multiple* fields simultaneously)
723 is not currently scalarized. Consider this an access to the
724 complete outer element, to which walk_tree will bring us next. */
725 goto use_all;
727 case ARRAY_RANGE_REF:
728 /* Similarly, an subrange reference is used to modify indexing. Which
729 means that the canonical element names that we have won't work. */
730 goto use_all;
732 case VIEW_CONVERT_EXPR:
733 case NOP_EXPR:
734 /* Similarly, a view/nop explicitly wants to look at an object in a
735 type other than the one we've scalarized. */
736 goto use_all;
738 case WITH_SIZE_EXPR:
739 /* This is a transparent wrapper. The entire inner expression really
740 is being used. */
741 goto use_all;
743 use_all:
744 expr_p = &TREE_OPERAND (inner, 0);
745 inner = expr = *expr_p;
746 break;
748 default:
749 #ifdef ENABLE_CHECKING
750 /* Validate that we're not missing any references. */
751 gcc_assert (!walk_tree (&inner, sra_find_candidate_decl, NULL, NULL));
752 #endif
753 return;
757 /* Walk a TREE_LIST of values looking for scalarizable aggregates.
758 If we find one, invoke FNS->USE. */
760 static void
761 sra_walk_tree_list (tree list, block_stmt_iterator *bsi, bool is_output,
762 const struct sra_walk_fns *fns)
764 tree op;
765 for (op = list; op ; op = TREE_CHAIN (op))
766 sra_walk_expr (&TREE_VALUE (op), bsi, is_output, fns);
769 /* Walk the arguments of a CALL_EXPR looking for scalarizable aggregates.
770 If we find one, invoke FNS->USE. */
772 static void
773 sra_walk_call_expr (tree expr, block_stmt_iterator *bsi,
774 const struct sra_walk_fns *fns)
776 sra_walk_tree_list (TREE_OPERAND (expr, 1), bsi, false, fns);
779 /* Walk the inputs and outputs of an ASM_EXPR looking for scalarizable
780 aggregates. If we find one, invoke FNS->USE. */
782 static void
783 sra_walk_asm_expr (tree expr, block_stmt_iterator *bsi,
784 const struct sra_walk_fns *fns)
786 sra_walk_tree_list (ASM_INPUTS (expr), bsi, false, fns);
787 sra_walk_tree_list (ASM_OUTPUTS (expr), bsi, true, fns);
790 /* Walk a MODIFY_EXPR and categorize the assignment appropriately. */
792 static void
793 sra_walk_modify_expr (tree expr, block_stmt_iterator *bsi,
794 const struct sra_walk_fns *fns)
796 struct sra_elt *lhs_elt, *rhs_elt;
797 tree lhs, rhs;
799 lhs = TREE_OPERAND (expr, 0);
800 rhs = TREE_OPERAND (expr, 1);
801 lhs_elt = maybe_lookup_element_for_expr (lhs);
802 rhs_elt = maybe_lookup_element_for_expr (rhs);
804 /* If both sides are scalarizable, this is a COPY operation. */
805 if (lhs_elt && rhs_elt)
807 fns->copy (lhs_elt, rhs_elt, bsi);
808 return;
811 /* If the RHS is scalarizable, handle it. There are only two cases. */
812 if (rhs_elt)
814 if (!rhs_elt->is_scalar)
815 fns->ldst (rhs_elt, lhs, bsi, false);
816 else
817 fns->use (rhs_elt, &TREE_OPERAND (expr, 1), bsi, false);
820 /* If it isn't scalarizable, there may be scalarizable variables within, so
821 check for a call or else walk the RHS to see if we need to do any
822 copy-in operations. We need to do it before the LHS is scalarized so
823 that the statements get inserted in the proper place, before any
824 copy-out operations. */
825 else
827 tree call = get_call_expr_in (rhs);
828 if (call)
829 sra_walk_call_expr (call, bsi, fns);
830 else
831 sra_walk_expr (&TREE_OPERAND (expr, 1), bsi, false, fns);
834 /* Likewise, handle the LHS being scalarizable. We have cases similar
835 to those above, but also want to handle RHS being constant. */
836 if (lhs_elt)
838 /* If this is an assignment from a constant, or constructor, then
839 we have access to all of the elements individually. Invoke INIT. */
840 if (TREE_CODE (rhs) == COMPLEX_EXPR
841 || TREE_CODE (rhs) == COMPLEX_CST
842 || TREE_CODE (rhs) == CONSTRUCTOR)
843 fns->init (lhs_elt, rhs, bsi);
845 /* If this is an assignment from read-only memory, treat this as if
846 we'd been passed the constructor directly. Invoke INIT. */
847 else if (TREE_CODE (rhs) == VAR_DECL
848 && TREE_STATIC (rhs)
849 && TREE_READONLY (rhs)
850 && targetm.binds_local_p (rhs))
851 fns->init (lhs_elt, DECL_INITIAL (rhs), bsi);
853 /* If this is a copy from a non-scalarizable lvalue, invoke LDST.
854 The lvalue requirement prevents us from trying to directly scalarize
855 the result of a function call. Which would result in trying to call
856 the function multiple times, and other evil things. */
857 else if (!lhs_elt->is_scalar && is_gimple_addressable (rhs))
858 fns->ldst (lhs_elt, rhs, bsi, true);
860 /* Otherwise we're being used in some context that requires the
861 aggregate to be seen as a whole. Invoke USE. */
862 else
863 fns->use (lhs_elt, &TREE_OPERAND (expr, 0), bsi, true);
866 /* Similarly to above, LHS_ELT being null only means that the LHS as a
867 whole is not a scalarizable reference. There may be occurrences of
868 scalarizable variables within, which implies a USE. */
869 else
870 sra_walk_expr (&TREE_OPERAND (expr, 0), bsi, true, fns);
873 /* Entry point to the walk functions. Search the entire function,
874 invoking the callbacks in FNS on each of the references to
875 scalarizable variables. */
877 static void
878 sra_walk_function (const struct sra_walk_fns *fns)
880 basic_block bb;
881 block_stmt_iterator si, ni;
883 /* ??? Phase 4 could derive some benefit to walking the function in
884 dominator tree order. */
886 FOR_EACH_BB (bb)
887 for (si = bsi_start (bb); !bsi_end_p (si); si = ni)
889 tree stmt, t;
890 stmt_ann_t ann;
892 stmt = bsi_stmt (si);
893 ann = stmt_ann (stmt);
895 ni = si;
896 bsi_next (&ni);
898 /* If the statement has no virtual operands, then it doesn't
899 make any structure references that we care about. */
900 if (NUM_V_MAY_DEFS (V_MAY_DEF_OPS (ann)) == 0
901 && NUM_VUSES (VUSE_OPS (ann)) == 0
902 && NUM_V_MUST_DEFS (V_MUST_DEF_OPS (ann)) == 0)
903 continue;
905 switch (TREE_CODE (stmt))
907 case RETURN_EXPR:
908 /* If we have "return <retval>" then the return value is
909 already exposed for our pleasure. Walk it as a USE to
910 force all the components back in place for the return.
912 If we have an embedded assignment, then <retval> is of
913 a type that gets returned in registers in this ABI, and
914 we do not wish to extend their lifetimes. Treat this
915 as a USE of the variable on the RHS of this assignment. */
917 t = TREE_OPERAND (stmt, 0);
918 if (TREE_CODE (t) == MODIFY_EXPR)
919 sra_walk_expr (&TREE_OPERAND (t, 1), &si, false, fns);
920 else
921 sra_walk_expr (&TREE_OPERAND (stmt, 0), &si, false, fns);
922 break;
924 case MODIFY_EXPR:
925 sra_walk_modify_expr (stmt, &si, fns);
926 break;
927 case CALL_EXPR:
928 sra_walk_call_expr (stmt, &si, fns);
929 break;
930 case ASM_EXPR:
931 sra_walk_asm_expr (stmt, &si, fns);
932 break;
934 default:
935 break;
940 /* Phase One: Scan all referenced variables in the program looking for
941 structures that could be decomposed. */
943 static bool
944 find_candidates_for_sra (void)
946 size_t i;
947 bool any_set = false;
949 for (i = 0; i < num_referenced_vars; i++)
951 tree var = referenced_var (i);
952 if (decl_can_be_decomposed_p (var))
954 bitmap_set_bit (sra_candidates, var_ann (var)->uid);
955 any_set = true;
959 return any_set;
963 /* Phase Two: Scan all references to scalarizable variables. Count the
964 number of times they are used or copied respectively. */
966 /* Callbacks to fill in SRA_WALK_FNS. Everything but USE is
967 considered a copy, because we can decompose the reference such that
968 the sub-elements needn't be contiguous. */
970 static void
971 scan_use (struct sra_elt *elt, tree *expr_p ATTRIBUTE_UNUSED,
972 block_stmt_iterator *bsi ATTRIBUTE_UNUSED,
973 bool is_output ATTRIBUTE_UNUSED)
975 elt->n_uses += 1;
978 static void
979 scan_copy (struct sra_elt *lhs_elt, struct sra_elt *rhs_elt,
980 block_stmt_iterator *bsi ATTRIBUTE_UNUSED)
982 lhs_elt->n_copies += 1;
983 rhs_elt->n_copies += 1;
986 static void
987 scan_init (struct sra_elt *lhs_elt, tree rhs ATTRIBUTE_UNUSED,
988 block_stmt_iterator *bsi ATTRIBUTE_UNUSED)
990 lhs_elt->n_copies += 1;
993 static void
994 scan_ldst (struct sra_elt *elt, tree other ATTRIBUTE_UNUSED,
995 block_stmt_iterator *bsi ATTRIBUTE_UNUSED,
996 bool is_output ATTRIBUTE_UNUSED)
998 elt->n_copies += 1;
1001 /* Dump the values we collected during the scanning phase. */
1003 static void
1004 scan_dump (struct sra_elt *elt)
1006 struct sra_elt *c;
1008 dump_sra_elt_name (dump_file, elt);
1009 fprintf (dump_file, ": n_uses=%u n_copies=%u\n", elt->n_uses, elt->n_copies);
1011 for (c = elt->children; c ; c = c->sibling)
1012 scan_dump (c);
1015 /* Entry point to phase 2. Scan the entire function, building up
1016 scalarization data structures, recording copies and uses. */
1018 static void
1019 scan_function (void)
1021 static const struct sra_walk_fns fns = {
1022 scan_use, scan_copy, scan_init, scan_ldst, true
1024 bitmap_iterator bi;
1026 sra_walk_function (&fns);
1028 if (dump_file && (dump_flags & TDF_DETAILS))
1030 unsigned i;
1032 fputs ("\nScan results:\n", dump_file);
1033 EXECUTE_IF_SET_IN_BITMAP (sra_candidates, 0, i, bi)
1035 tree var = referenced_var (i);
1036 struct sra_elt *elt = lookup_element (NULL, var, NULL, NO_INSERT);
1037 if (elt)
1038 scan_dump (elt);
1040 fputc ('\n', dump_file);
1044 /* Phase Three: Make decisions about which variables to scalarize, if any.
1045 All elements to be scalarized have replacement variables made for them. */
1047 /* A subroutine of build_element_name. Recursively build the element
1048 name on the obstack. */
1050 static void
1051 build_element_name_1 (struct sra_elt *elt)
1053 tree t;
1054 char buffer[32];
1056 if (elt->parent)
1058 build_element_name_1 (elt->parent);
1059 obstack_1grow (&sra_obstack, '$');
1061 if (TREE_CODE (elt->parent->type) == COMPLEX_TYPE)
1063 if (elt->element == integer_zero_node)
1064 obstack_grow (&sra_obstack, "real", 4);
1065 else
1066 obstack_grow (&sra_obstack, "imag", 4);
1067 return;
1071 t = elt->element;
1072 if (TREE_CODE (t) == INTEGER_CST)
1074 /* ??? Eh. Don't bother doing double-wide printing. */
1075 sprintf (buffer, HOST_WIDE_INT_PRINT_DEC, TREE_INT_CST_LOW (t));
1076 obstack_grow (&sra_obstack, buffer, strlen (buffer));
1078 else
1080 tree name = DECL_NAME (t);
1081 if (name)
1082 obstack_grow (&sra_obstack, IDENTIFIER_POINTER (name),
1083 IDENTIFIER_LENGTH (name));
1084 else
1086 sprintf (buffer, "D%u", DECL_UID (t));
1087 obstack_grow (&sra_obstack, buffer, strlen (buffer));
1092 /* Construct a pretty variable name for an element's replacement variable.
1093 The name is built on the obstack. */
1095 static char *
1096 build_element_name (struct sra_elt *elt)
1098 build_element_name_1 (elt);
1099 obstack_1grow (&sra_obstack, '\0');
1100 return obstack_finish (&sra_obstack);
1103 /* Instantiate an element as an independent variable. */
1105 static void
1106 instantiate_element (struct sra_elt *elt)
1108 struct sra_elt *base_elt;
1109 tree var, base;
1111 for (base_elt = elt; base_elt->parent; base_elt = base_elt->parent)
1112 continue;
1113 base = base_elt->element;
1115 elt->replacement = var = make_rename_temp (elt->type, "SR");
1116 DECL_SOURCE_LOCATION (var) = DECL_SOURCE_LOCATION (base);
1117 DECL_ARTIFICIAL (var) = 1;
1119 if (DECL_NAME (base) && !DECL_IGNORED_P (base))
1121 char *pretty_name = build_element_name (elt);
1122 DECL_NAME (var) = get_identifier (pretty_name);
1123 obstack_free (&sra_obstack, pretty_name);
1125 DECL_DEBUG_EXPR (var) = generate_element_ref (elt);
1126 DECL_DEBUG_EXPR_IS_FROM (var) = 1;
1128 DECL_IGNORED_P (var) = 0;
1129 TREE_NO_WARNING (var) = TREE_NO_WARNING (base);
1131 else
1133 DECL_IGNORED_P (var) = 1;
1134 /* ??? We can't generate any warning that would be meaningful. */
1135 TREE_NO_WARNING (var) = 1;
1138 if (dump_file)
1140 fputs (" ", dump_file);
1141 dump_sra_elt_name (dump_file, elt);
1142 fputs (" -> ", dump_file);
1143 print_generic_expr (dump_file, var, dump_flags);
1144 fputc ('\n', dump_file);
1148 /* Make one pass across an element tree deciding whether or not it's
1149 profitable to instantiate individual leaf scalars.
1151 PARENT_USES and PARENT_COPIES are the sum of the N_USES and N_COPIES
1152 fields all the way up the tree. */
1154 static void
1155 decide_instantiation_1 (struct sra_elt *elt, unsigned int parent_uses,
1156 unsigned int parent_copies)
1158 if (dump_file && !elt->parent)
1160 fputs ("Initial instantiation for ", dump_file);
1161 dump_sra_elt_name (dump_file, elt);
1162 fputc ('\n', dump_file);
1165 if (elt->cannot_scalarize)
1166 return;
1168 if (elt->is_scalar)
1170 /* The decision is simple: instantiate if we're used more frequently
1171 than the parent needs to be seen as a complete unit. */
1172 if (elt->n_uses + elt->n_copies + parent_copies > parent_uses)
1173 instantiate_element (elt);
1175 else
1177 struct sra_elt *c;
1178 unsigned int this_uses = elt->n_uses + parent_uses;
1179 unsigned int this_copies = elt->n_copies + parent_copies;
1181 for (c = elt->children; c ; c = c->sibling)
1182 decide_instantiation_1 (c, this_uses, this_copies);
1186 /* Compute the size and number of all instantiated elements below ELT.
1187 We will only care about this if the size of the complete structure
1188 fits in a HOST_WIDE_INT, so we don't have to worry about overflow. */
1190 static unsigned int
1191 sum_instantiated_sizes (struct sra_elt *elt, unsigned HOST_WIDE_INT *sizep)
1193 if (elt->replacement)
1195 *sizep += TREE_INT_CST_LOW (TYPE_SIZE_UNIT (elt->type));
1196 return 1;
1198 else
1200 struct sra_elt *c;
1201 unsigned int count = 0;
1203 for (c = elt->children; c ; c = c->sibling)
1204 count += sum_instantiated_sizes (c, sizep);
1206 return count;
1210 /* Instantiate fields in ELT->TYPE that are not currently present as
1211 children of ELT. */
1213 static void instantiate_missing_elements (struct sra_elt *elt);
1215 static void
1216 instantiate_missing_elements_1 (struct sra_elt *elt, tree child, tree type)
1218 struct sra_elt *sub = lookup_element (elt, child, type, INSERT);
1219 if (sub->is_scalar)
1221 if (sub->replacement == NULL)
1222 instantiate_element (sub);
1224 else
1225 instantiate_missing_elements (sub);
1228 static void
1229 instantiate_missing_elements (struct sra_elt *elt)
1231 tree type = elt->type;
1233 switch (TREE_CODE (type))
1235 case RECORD_TYPE:
1237 tree f;
1238 for (f = TYPE_FIELDS (type); f ; f = TREE_CHAIN (f))
1239 if (TREE_CODE (f) == FIELD_DECL)
1240 instantiate_missing_elements_1 (elt, f, TREE_TYPE (f));
1241 break;
1244 case ARRAY_TYPE:
1246 tree i, max, subtype;
1248 i = TYPE_MIN_VALUE (TYPE_DOMAIN (type));
1249 max = TYPE_MAX_VALUE (TYPE_DOMAIN (type));
1250 subtype = TREE_TYPE (type);
1252 while (1)
1254 instantiate_missing_elements_1 (elt, i, subtype);
1255 if (tree_int_cst_equal (i, max))
1256 break;
1257 i = int_const_binop (PLUS_EXPR, i, integer_one_node, true);
1260 break;
1263 case COMPLEX_TYPE:
1264 type = TREE_TYPE (type);
1265 instantiate_missing_elements_1 (elt, integer_zero_node, type);
1266 instantiate_missing_elements_1 (elt, integer_one_node, type);
1267 break;
1269 default:
1270 gcc_unreachable ();
1274 /* Make one pass across an element tree deciding whether to perform block
1275 or element copies. If we decide on element copies, instantiate all
1276 elements. Return true if there are any instantiated sub-elements. */
1278 static bool
1279 decide_block_copy (struct sra_elt *elt)
1281 struct sra_elt *c;
1282 bool any_inst;
1284 /* If scalarization is disabled, respect it. */
1285 if (elt->cannot_scalarize)
1287 elt->use_block_copy = 1;
1289 if (dump_file)
1291 fputs ("Scalarization disabled for ", dump_file);
1292 dump_sra_elt_name (dump_file, elt);
1293 fputc ('\n', dump_file);
1296 return false;
1299 /* Don't decide if we've no uses. */
1300 if (elt->n_uses == 0 && elt->n_copies == 0)
1303 else if (!elt->is_scalar)
1305 tree size_tree = TYPE_SIZE_UNIT (elt->type);
1306 bool use_block_copy = true;
1308 /* Tradeoffs for COMPLEX types pretty much always make it better
1309 to go ahead and split the components. */
1310 if (TREE_CODE (elt->type) == COMPLEX_TYPE)
1311 use_block_copy = false;
1313 /* Don't bother trying to figure out the rest if the structure is
1314 so large we can't do easy arithmetic. This also forces block
1315 copies for variable sized structures. */
1316 else if (host_integerp (size_tree, 1))
1318 unsigned HOST_WIDE_INT full_size, inst_size = 0;
1319 unsigned int inst_count;
1320 unsigned int max_size;
1322 /* If the sra-max-structure-size parameter is 0, then the
1323 user has not overridden the parameter and we can choose a
1324 sensible default. */
1325 max_size = SRA_MAX_STRUCTURE_SIZE
1326 ? SRA_MAX_STRUCTURE_SIZE
1327 : MOVE_RATIO * UNITS_PER_WORD;
1329 full_size = tree_low_cst (size_tree, 1);
1331 /* ??? What to do here. If there are two fields, and we've only
1332 instantiated one, then instantiating the other is clearly a win.
1333 If there are a large number of fields then the size of the copy
1334 is much more of a factor. */
1336 /* If the structure is small, and we've made copies, go ahead
1337 and instantiate, hoping that the copies will go away. */
1338 if (full_size <= max_size
1339 && elt->n_copies > elt->n_uses)
1340 use_block_copy = false;
1341 else
1343 inst_count = sum_instantiated_sizes (elt, &inst_size);
1345 if (inst_size * 100 >= full_size * SRA_FIELD_STRUCTURE_RATIO)
1346 use_block_copy = false;
1349 /* In order to avoid block copy, we have to be able to instantiate
1350 all elements of the type. See if this is possible. */
1351 if (!use_block_copy
1352 && (!can_completely_scalarize_p (elt)
1353 || !type_can_instantiate_all_elements (elt->type)))
1354 use_block_copy = true;
1356 elt->use_block_copy = use_block_copy;
1358 if (dump_file)
1360 fprintf (dump_file, "Using %s for ",
1361 use_block_copy ? "block-copy" : "element-copy");
1362 dump_sra_elt_name (dump_file, elt);
1363 fputc ('\n', dump_file);
1366 if (!use_block_copy)
1368 instantiate_missing_elements (elt);
1369 return true;
1373 any_inst = elt->replacement != NULL;
1375 for (c = elt->children; c ; c = c->sibling)
1376 any_inst |= decide_block_copy (c);
1378 return any_inst;
1381 /* Entry point to phase 3. Instantiate scalar replacement variables. */
1383 static void
1384 decide_instantiations (void)
1386 unsigned int i;
1387 bool cleared_any;
1388 bitmap_head done_head;
1389 bitmap_iterator bi;
1391 /* We cannot clear bits from a bitmap we're iterating over,
1392 so save up all the bits to clear until the end. */
1393 bitmap_initialize (&done_head, &bitmap_default_obstack);
1394 cleared_any = false;
1396 EXECUTE_IF_SET_IN_BITMAP (sra_candidates, 0, i, bi)
1398 tree var = referenced_var (i);
1399 struct sra_elt *elt = lookup_element (NULL, var, NULL, NO_INSERT);
1400 if (elt)
1402 decide_instantiation_1 (elt, 0, 0);
1403 if (!decide_block_copy (elt))
1404 elt = NULL;
1406 if (!elt)
1408 bitmap_set_bit (&done_head, i);
1409 cleared_any = true;
1413 if (cleared_any)
1415 bitmap_and_compl_into (sra_candidates, &done_head);
1416 bitmap_and_compl_into (needs_copy_in, &done_head);
1418 bitmap_clear (&done_head);
1420 if (dump_file)
1421 fputc ('\n', dump_file);
1425 /* Phase Four: Update the function to match the replacements created. */
1427 /* Mark all the variables in V_MAY_DEF or V_MUST_DEF operands for STMT for
1428 renaming. This becomes necessary when we modify all of a non-scalar. */
1430 static void
1431 mark_all_v_defs (tree stmt)
1433 tree sym;
1434 ssa_op_iter iter;
1436 get_stmt_operands (stmt);
1438 FOR_EACH_SSA_TREE_OPERAND (sym, stmt, iter, SSA_OP_ALL_VIRTUALS)
1440 if (TREE_CODE (sym) == SSA_NAME)
1441 sym = SSA_NAME_VAR (sym);
1442 bitmap_set_bit (vars_to_rename, var_ann (sym)->uid);
1446 /* Build a single level component reference to ELT rooted at BASE. */
1448 static tree
1449 generate_one_element_ref (struct sra_elt *elt, tree base)
1451 switch (TREE_CODE (TREE_TYPE (base)))
1453 case RECORD_TYPE:
1455 tree field = elt->element;
1457 /* Watch out for compatible records with differing field lists. */
1458 if (DECL_FIELD_CONTEXT (field) != TYPE_MAIN_VARIANT (TREE_TYPE (base)))
1459 field = find_compatible_field (TREE_TYPE (base), field);
1461 return build (COMPONENT_REF, elt->type, base, field, NULL);
1464 case ARRAY_TYPE:
1465 return build (ARRAY_REF, elt->type, base, elt->element, NULL, NULL);
1467 case COMPLEX_TYPE:
1468 if (elt->element == integer_zero_node)
1469 return build (REALPART_EXPR, elt->type, base);
1470 else
1471 return build (IMAGPART_EXPR, elt->type, base);
1473 default:
1474 gcc_unreachable ();
1478 /* Build a full component reference to ELT rooted at its native variable. */
1480 static tree
1481 generate_element_ref (struct sra_elt *elt)
1483 if (elt->parent)
1484 return generate_one_element_ref (elt, generate_element_ref (elt->parent));
1485 else
1486 return elt->element;
1489 /* Generate a set of assignment statements in *LIST_P to copy all
1490 instantiated elements under ELT to or from the equivalent structure
1491 rooted at EXPR. COPY_OUT controls the direction of the copy, with
1492 true meaning to copy out of EXPR into ELT. */
1494 static void
1495 generate_copy_inout (struct sra_elt *elt, bool copy_out, tree expr,
1496 tree *list_p)
1498 struct sra_elt *c;
1499 tree t;
1501 if (elt->replacement)
1503 if (copy_out)
1504 t = build (MODIFY_EXPR, void_type_node, elt->replacement, expr);
1505 else
1506 t = build (MODIFY_EXPR, void_type_node, expr, elt->replacement);
1507 append_to_statement_list (t, list_p);
1509 else
1511 for (c = elt->children; c ; c = c->sibling)
1513 t = generate_one_element_ref (c, unshare_expr (expr));
1514 generate_copy_inout (c, copy_out, t, list_p);
1519 /* Generate a set of assignment statements in *LIST_P to copy all instantiated
1520 elements under SRC to their counterparts under DST. There must be a 1-1
1521 correspondence of instantiated elements. */
1523 static void
1524 generate_element_copy (struct sra_elt *dst, struct sra_elt *src, tree *list_p)
1526 struct sra_elt *dc, *sc;
1528 for (dc = dst->children; dc ; dc = dc->sibling)
1530 sc = lookup_element (src, dc->element, NULL, NO_INSERT);
1531 gcc_assert (sc);
1532 generate_element_copy (dc, sc, list_p);
1535 if (dst->replacement)
1537 tree t;
1539 gcc_assert (src->replacement);
1541 t = build (MODIFY_EXPR, void_type_node, dst->replacement,
1542 src->replacement);
1543 append_to_statement_list (t, list_p);
1547 /* Generate a set of assignment statements in *LIST_P to zero all instantiated
1548 elements under ELT. In addition, do not assign to elements that have been
1549 marked VISITED but do reset the visited flag; this allows easy coordination
1550 with generate_element_init. */
1552 static void
1553 generate_element_zero (struct sra_elt *elt, tree *list_p)
1555 struct sra_elt *c;
1557 if (elt->visited)
1559 elt->visited = false;
1560 return;
1563 for (c = elt->children; c ; c = c->sibling)
1564 generate_element_zero (c, list_p);
1566 if (elt->replacement)
1568 tree t;
1570 gcc_assert (elt->is_scalar);
1571 t = fold_convert (elt->type, integer_zero_node);
1573 t = build (MODIFY_EXPR, void_type_node, elt->replacement, t);
1574 append_to_statement_list (t, list_p);
1578 /* Generate an assignment VAR = INIT, where INIT may need gimplification.
1579 Add the result to *LIST_P. */
1581 static void
1582 generate_one_element_init (tree var, tree init, tree *list_p)
1584 /* The replacement can be almost arbitrarily complex. Gimplify. */
1585 tree stmt = build (MODIFY_EXPR, void_type_node, var, init);
1586 gimplify_and_add (stmt, list_p);
1589 /* Generate a set of assignment statements in *LIST_P to set all instantiated
1590 elements under ELT with the contents of the initializer INIT. In addition,
1591 mark all assigned elements VISITED; this allows easy coordination with
1592 generate_element_zero. Return false if we found a case we couldn't
1593 handle. */
1595 static bool
1596 generate_element_init_1 (struct sra_elt *elt, tree init, tree *list_p)
1598 bool result = true;
1599 enum tree_code init_code;
1600 struct sra_elt *sub;
1601 tree t;
1603 /* We can be passed DECL_INITIAL of a static variable. It might have a
1604 conversion, which we strip off here. */
1605 STRIP_USELESS_TYPE_CONVERSION (init);
1606 init_code = TREE_CODE (init);
1608 if (elt->is_scalar)
1610 if (elt->replacement)
1612 generate_one_element_init (elt->replacement, init, list_p);
1613 elt->visited = true;
1615 return result;
1618 switch (init_code)
1620 case COMPLEX_CST:
1621 case COMPLEX_EXPR:
1622 for (sub = elt->children; sub ; sub = sub->sibling)
1624 if (sub->element == integer_zero_node)
1625 t = (init_code == COMPLEX_EXPR
1626 ? TREE_OPERAND (init, 0) : TREE_REALPART (init));
1627 else
1628 t = (init_code == COMPLEX_EXPR
1629 ? TREE_OPERAND (init, 1) : TREE_IMAGPART (init));
1630 result &= generate_element_init_1 (sub, t, list_p);
1632 break;
1634 case CONSTRUCTOR:
1635 for (t = CONSTRUCTOR_ELTS (init); t ; t = TREE_CHAIN (t))
1637 sub = lookup_element (elt, TREE_PURPOSE (t), NULL, NO_INSERT);
1638 if (sub == NULL)
1639 continue;
1640 result &= generate_element_init_1 (sub, TREE_VALUE (t), list_p);
1642 break;
1644 default:
1645 elt->visited = true;
1646 result = false;
1649 return result;
1652 /* A wrapper function for generate_element_init_1 that handles cleanup after
1653 gimplification. */
1655 static bool
1656 generate_element_init (struct sra_elt *elt, tree init, tree *list_p)
1658 bool ret;
1660 push_gimplify_context ();
1661 ret = generate_element_init_1 (elt, init, list_p);
1662 pop_gimplify_context (NULL);
1664 /* The replacement can expose previously unreferenced variables. */
1665 if (ret && *list_p)
1667 tree_stmt_iterator i;
1668 size_t old, new, j;
1670 old = num_referenced_vars;
1672 for (i = tsi_start (*list_p); !tsi_end_p (i); tsi_next (&i))
1673 find_new_referenced_vars (tsi_stmt_ptr (i));
1675 new = num_referenced_vars;
1676 for (j = old; j < new; ++j)
1677 bitmap_set_bit (vars_to_rename, j);
1680 return ret;
1683 /* Insert STMT on all the outgoing edges out of BB. Note that if BB
1684 has more than one edge, STMT will be replicated for each edge. Also,
1685 abnormal edges will be ignored. */
1687 void
1688 insert_edge_copies (tree stmt, basic_block bb)
1690 edge e;
1691 edge_iterator ei;
1692 bool first_copy;
1694 first_copy = true;
1695 FOR_EACH_EDGE (e, ei, bb->succs)
1697 /* We don't need to insert copies on abnormal edges. The
1698 value of the scalar replacement is not guaranteed to
1699 be valid through an abnormal edge. */
1700 if (!(e->flags & EDGE_ABNORMAL))
1702 if (first_copy)
1704 bsi_insert_on_edge (e, stmt);
1705 first_copy = false;
1707 else
1708 bsi_insert_on_edge (e, unsave_expr_now (stmt));
1713 /* Helper function to insert LIST before BSI, and set up line number info. */
1715 static void
1716 sra_insert_before (block_stmt_iterator *bsi, tree list)
1718 tree stmt = bsi_stmt (*bsi);
1720 if (EXPR_HAS_LOCATION (stmt))
1721 annotate_all_with_locus (&list, EXPR_LOCATION (stmt));
1722 bsi_insert_before (bsi, list, BSI_SAME_STMT);
1725 /* Similarly, but insert after BSI. Handles insertion onto edges as well. */
1727 static void
1728 sra_insert_after (block_stmt_iterator *bsi, tree list)
1730 tree stmt = bsi_stmt (*bsi);
1732 if (EXPR_HAS_LOCATION (stmt))
1733 annotate_all_with_locus (&list, EXPR_LOCATION (stmt));
1735 if (stmt_ends_bb_p (stmt))
1736 insert_edge_copies (list, bsi->bb);
1737 else
1738 bsi_insert_after (bsi, list, BSI_SAME_STMT);
1741 /* Similarly, but replace the statement at BSI. */
1743 static void
1744 sra_replace (block_stmt_iterator *bsi, tree list)
1746 sra_insert_before (bsi, list);
1747 bsi_remove (bsi);
1748 if (bsi_end_p (*bsi))
1749 *bsi = bsi_last (bsi->bb);
1750 else
1751 bsi_prev (bsi);
1754 /* Scalarize a USE. To recap, this is either a simple reference to ELT,
1755 if elt is scalar, or some occurrence of ELT that requires a complete
1756 aggregate. IS_OUTPUT is true if ELT is being modified. */
1758 static void
1759 scalarize_use (struct sra_elt *elt, tree *expr_p, block_stmt_iterator *bsi,
1760 bool is_output)
1762 tree list = NULL, stmt = bsi_stmt (*bsi);
1764 if (elt->replacement)
1766 /* If we have a replacement, then updating the reference is as
1767 simple as modifying the existing statement in place. */
1768 if (is_output)
1769 mark_all_v_defs (stmt);
1770 *expr_p = elt->replacement;
1771 modify_stmt (stmt);
1773 else
1775 /* Otherwise we need some copies. If ELT is being read, then we want
1776 to store all (modified) sub-elements back into the structure before
1777 the reference takes place. If ELT is being written, then we want to
1778 load the changed values back into our shadow variables. */
1779 /* ??? We don't check modified for reads, we just always write all of
1780 the values. We should be able to record the SSA number of the VOP
1781 for which the values were last read. If that number matches the
1782 SSA number of the VOP in the current statement, then we needn't
1783 emit an assignment. This would also eliminate double writes when
1784 a structure is passed as more than one argument to a function call.
1785 This optimization would be most effective if sra_walk_function
1786 processed the blocks in dominator order. */
1788 generate_copy_inout (elt, is_output, generate_element_ref (elt), &list);
1789 if (list == NULL)
1790 return;
1791 mark_all_v_defs (expr_first (list));
1792 if (is_output)
1793 sra_insert_after (bsi, list);
1794 else
1795 sra_insert_before (bsi, list);
1799 /* Scalarize a COPY. To recap, this is an assignment statement between
1800 two scalarizable references, LHS_ELT and RHS_ELT. */
1802 static void
1803 scalarize_copy (struct sra_elt *lhs_elt, struct sra_elt *rhs_elt,
1804 block_stmt_iterator *bsi)
1806 tree list, stmt;
1808 if (lhs_elt->replacement && rhs_elt->replacement)
1810 /* If we have two scalar operands, modify the existing statement. */
1811 stmt = bsi_stmt (*bsi);
1813 /* See the commentary in sra_walk_function concerning
1814 RETURN_EXPR, and why we should never see one here. */
1815 gcc_assert (TREE_CODE (stmt) == MODIFY_EXPR);
1817 TREE_OPERAND (stmt, 0) = lhs_elt->replacement;
1818 TREE_OPERAND (stmt, 1) = rhs_elt->replacement;
1819 modify_stmt (stmt);
1821 else if (lhs_elt->use_block_copy || rhs_elt->use_block_copy)
1823 /* If either side requires a block copy, then sync the RHS back
1824 to the original structure, leave the original assignment
1825 statement (which will perform the block copy), then load the
1826 LHS values out of its now-updated original structure. */
1827 /* ??? Could perform a modified pair-wise element copy. That
1828 would at least allow those elements that are instantiated in
1829 both structures to be optimized well. */
1831 list = NULL;
1832 generate_copy_inout (rhs_elt, false,
1833 generate_element_ref (rhs_elt), &list);
1834 if (list)
1836 mark_all_v_defs (expr_first (list));
1837 sra_insert_before (bsi, list);
1840 list = NULL;
1841 generate_copy_inout (lhs_elt, true,
1842 generate_element_ref (lhs_elt), &list);
1843 if (list)
1844 sra_insert_after (bsi, list);
1846 else
1848 /* Otherwise both sides must be fully instantiated. In which
1849 case perform pair-wise element assignments and replace the
1850 original block copy statement. */
1852 stmt = bsi_stmt (*bsi);
1853 mark_all_v_defs (stmt);
1855 list = NULL;
1856 generate_element_copy (lhs_elt, rhs_elt, &list);
1857 gcc_assert (list);
1858 sra_replace (bsi, list);
1862 /* Scalarize an INIT. To recap, this is an assignment to a scalarizable
1863 reference from some form of constructor: CONSTRUCTOR, COMPLEX_CST or
1864 COMPLEX_EXPR. If RHS is NULL, it should be treated as an empty
1865 CONSTRUCTOR. */
1867 static void
1868 scalarize_init (struct sra_elt *lhs_elt, tree rhs, block_stmt_iterator *bsi)
1870 bool result = true;
1871 tree list = NULL;
1873 /* Generate initialization statements for all members extant in the RHS. */
1874 if (rhs)
1876 /* Unshare the expression just in case this is from a decl's initial. */
1877 rhs = unshare_expr (rhs);
1878 result = generate_element_init (lhs_elt, rhs, &list);
1881 /* CONSTRUCTOR is defined such that any member not mentioned is assigned
1882 a zero value. Initialize the rest of the instantiated elements. */
1883 generate_element_zero (lhs_elt, &list);
1885 if (!result)
1887 /* If we failed to convert the entire initializer, then we must
1888 leave the structure assignment in place and must load values
1889 from the structure into the slots for which we did not find
1890 constants. The easiest way to do this is to generate a complete
1891 copy-out, and then follow that with the constant assignments
1892 that we were able to build. DCE will clean things up. */
1893 tree list0 = NULL;
1894 generate_copy_inout (lhs_elt, true, generate_element_ref (lhs_elt),
1895 &list0);
1896 append_to_statement_list (list, &list0);
1897 list = list0;
1900 if (lhs_elt->use_block_copy || !result)
1902 /* Since LHS is not fully instantiated, we must leave the structure
1903 assignment in place. Treating this case differently from a USE
1904 exposes constants to later optimizations. */
1905 if (list)
1907 mark_all_v_defs (expr_first (list));
1908 sra_insert_after (bsi, list);
1911 else
1913 /* The LHS is fully instantiated. The list of initializations
1914 replaces the original structure assignment. */
1915 gcc_assert (list);
1916 mark_all_v_defs (bsi_stmt (*bsi));
1917 sra_replace (bsi, list);
1921 /* A subroutine of scalarize_ldst called via walk_tree. Set TREE_NO_TRAP
1922 on all INDIRECT_REFs. */
1924 static tree
1925 mark_notrap (tree *tp, int *walk_subtrees, void *data ATTRIBUTE_UNUSED)
1927 tree t = *tp;
1929 if (TREE_CODE (t) == INDIRECT_REF)
1931 TREE_THIS_NOTRAP (t) = 1;
1932 *walk_subtrees = 0;
1934 else if (IS_TYPE_OR_DECL_P (t))
1935 *walk_subtrees = 0;
1937 return NULL;
1940 /* Scalarize a LDST. To recap, this is an assignment between one scalarizable
1941 reference ELT and one non-scalarizable reference OTHER. IS_OUTPUT is true
1942 if ELT is on the left-hand side. */
1944 static void
1945 scalarize_ldst (struct sra_elt *elt, tree other,
1946 block_stmt_iterator *bsi, bool is_output)
1948 /* Shouldn't have gotten called for a scalar. */
1949 gcc_assert (!elt->replacement);
1951 if (elt->use_block_copy)
1953 /* Since ELT is not fully instantiated, we have to leave the
1954 block copy in place. Treat this as a USE. */
1955 scalarize_use (elt, NULL, bsi, is_output);
1957 else
1959 /* The interesting case is when ELT is fully instantiated. In this
1960 case we can have each element stored/loaded directly to/from the
1961 corresponding slot in OTHER. This avoids a block copy. */
1963 tree list = NULL, stmt = bsi_stmt (*bsi);
1965 mark_all_v_defs (stmt);
1966 generate_copy_inout (elt, is_output, other, &list);
1967 gcc_assert (list);
1969 /* Preserve EH semantics. */
1970 if (stmt_ends_bb_p (stmt))
1972 tree_stmt_iterator tsi;
1973 tree first;
1975 /* Extract the first statement from LIST. */
1976 tsi = tsi_start (list);
1977 first = tsi_stmt (tsi);
1978 tsi_delink (&tsi);
1980 /* Replace the old statement with this new representative. */
1981 bsi_replace (bsi, first, true);
1983 if (!tsi_end_p (tsi))
1985 /* If any reference would trap, then they all would. And more
1986 to the point, the first would. Therefore none of the rest
1987 will trap since the first didn't. Indicate this by
1988 iterating over the remaining statements and set
1989 TREE_THIS_NOTRAP in all INDIRECT_REFs. */
1992 walk_tree (tsi_stmt_ptr (tsi), mark_notrap, NULL, NULL);
1993 tsi_next (&tsi);
1995 while (!tsi_end_p (tsi));
1997 insert_edge_copies (list, bsi->bb);
2000 else
2001 sra_replace (bsi, list);
2005 /* Generate initializations for all scalarizable parameters. */
2007 static void
2008 scalarize_parms (void)
2010 tree list = NULL;
2011 unsigned i;
2012 bitmap_iterator bi;
2014 EXECUTE_IF_SET_IN_BITMAP (needs_copy_in, 0, i, bi)
2016 tree var = referenced_var (i);
2017 struct sra_elt *elt = lookup_element (NULL, var, NULL, NO_INSERT);
2018 generate_copy_inout (elt, true, var, &list);
2021 if (list)
2022 insert_edge_copies (list, ENTRY_BLOCK_PTR);
2025 /* Entry point to phase 4. Update the function to match replacements. */
2027 static void
2028 scalarize_function (void)
2030 static const struct sra_walk_fns fns = {
2031 scalarize_use, scalarize_copy, scalarize_init, scalarize_ldst, false
2034 sra_walk_function (&fns);
2035 scalarize_parms ();
2036 bsi_commit_edge_inserts ();
2040 /* Debug helper function. Print ELT in a nice human-readable format. */
2042 static void
2043 dump_sra_elt_name (FILE *f, struct sra_elt *elt)
2045 if (elt->parent && TREE_CODE (elt->parent->type) == COMPLEX_TYPE)
2047 fputs (elt->element == integer_zero_node ? "__real__ " : "__imag__ ", f);
2048 dump_sra_elt_name (f, elt->parent);
2050 else
2052 if (elt->parent)
2053 dump_sra_elt_name (f, elt->parent);
2054 if (DECL_P (elt->element))
2056 if (TREE_CODE (elt->element) == FIELD_DECL)
2057 fputc ('.', f);
2058 print_generic_expr (f, elt->element, dump_flags);
2060 else
2061 fprintf (f, "[" HOST_WIDE_INT_PRINT_DEC "]",
2062 TREE_INT_CST_LOW (elt->element));
2066 /* Likewise, but callable from the debugger. */
2068 void
2069 debug_sra_elt_name (struct sra_elt *elt)
2071 dump_sra_elt_name (stderr, elt);
2072 fputc ('\n', stderr);
2075 /* Main entry point. */
2077 static void
2078 tree_sra (void)
2080 /* Initialize local variables. */
2081 gcc_obstack_init (&sra_obstack);
2082 sra_candidates = BITMAP_XMALLOC ();
2083 needs_copy_in = BITMAP_XMALLOC ();
2084 sra_type_decomp_cache = BITMAP_XMALLOC ();
2085 sra_type_inst_cache = BITMAP_XMALLOC ();
2086 sra_map = htab_create (101, sra_elt_hash, sra_elt_eq, NULL);
2088 /* Scan. If we find anything, instantiate and scalarize. */
2089 if (find_candidates_for_sra ())
2091 scan_function ();
2092 decide_instantiations ();
2093 scalarize_function ();
2096 /* Free allocated memory. */
2097 htab_delete (sra_map);
2098 sra_map = NULL;
2099 BITMAP_XFREE (sra_candidates);
2100 BITMAP_XFREE (needs_copy_in);
2101 BITMAP_XFREE (sra_type_decomp_cache);
2102 BITMAP_XFREE (sra_type_inst_cache);
2103 obstack_free (&sra_obstack, NULL);
2106 static bool
2107 gate_sra (void)
2109 return flag_tree_sra != 0;
2112 struct tree_opt_pass pass_sra =
2114 "sra", /* name */
2115 gate_sra, /* gate */
2116 tree_sra, /* execute */
2117 NULL, /* sub */
2118 NULL, /* next */
2119 0, /* static_pass_number */
2120 TV_TREE_SRA, /* tv_id */
2121 PROP_cfg | PROP_ssa | PROP_alias, /* properties_required */
2122 0, /* properties_provided */
2123 0, /* properties_destroyed */
2124 0, /* todo_flags_start */
2125 TODO_dump_func | TODO_rename_vars
2126 | TODO_ggc_collect | TODO_verify_ssa, /* todo_flags_finish */
2127 0 /* letter */