20090811-1.c: Skip for incompatible options, do not override other options.
[official-gcc.git] / gcc / tree-vectorizer.h
blobb87452ab080cfb7d84bdc99b73a4e310bedbceab
1 /* Vectorizer
2 Copyright (C) 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
3 Free Software Foundation, Inc.
4 Contributed by Dorit Naishlos <dorit@il.ibm.com>
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 3, or (at your option) any later
11 version.
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING3. If not see
20 <http://www.gnu.org/licenses/>. */
22 #ifndef GCC_TREE_VECTORIZER_H
23 #define GCC_TREE_VECTORIZER_H
25 #include "tree-data-ref.h"
27 typedef source_location LOC;
28 #define UNKNOWN_LOC UNKNOWN_LOCATION
29 #define EXPR_LOC(e) EXPR_LOCATION(e)
30 #define LOC_FILE(l) LOCATION_FILE (l)
31 #define LOC_LINE(l) LOCATION_LINE (l)
33 /* Used for naming of new temporaries. */
34 enum vect_var_kind {
35 vect_simple_var,
36 vect_pointer_var,
37 vect_scalar_var
40 /* Defines type of operation. */
41 enum operation_type {
42 unary_op = 1,
43 binary_op,
44 ternary_op
47 /* Define type of available alignment support. */
48 enum dr_alignment_support {
49 dr_unaligned_unsupported,
50 dr_unaligned_supported,
51 dr_explicit_realign,
52 dr_explicit_realign_optimized,
53 dr_aligned
56 /* Define type of def-use cross-iteration cycle. */
57 enum vect_def_type {
58 vect_uninitialized_def = 0,
59 vect_constant_def = 1,
60 vect_external_def,
61 vect_internal_def,
62 vect_induction_def,
63 vect_reduction_def,
64 vect_double_reduction_def,
65 vect_nested_cycle,
66 vect_unknown_def_type
69 #define VECTORIZABLE_CYCLE_DEF(D) (((D) == vect_reduction_def) \
70 || ((D) == vect_double_reduction_def) \
71 || ((D) == vect_nested_cycle))
73 /************************************************************************
74 SLP
75 ************************************************************************/
77 /* A computation tree of an SLP instance. Each node corresponds to a group of
78 stmts to be packed in a SIMD stmt. */
79 typedef struct _slp_tree {
80 /* Only binary and unary operations are supported. LEFT child corresponds to
81 the first operand and RIGHT child to the second if the operation is
82 binary. */
83 struct _slp_tree *left;
84 struct _slp_tree *right;
85 /* A group of scalar stmts to be vectorized together. */
86 VEC (gimple, heap) *stmts;
87 /* Vectorized stmt/s. */
88 VEC (gimple, heap) *vec_stmts;
89 /* Number of vector stmts that are created to replace the group of scalar
90 stmts. It is calculated during the transformation phase as the number of
91 scalar elements in one scalar iteration (GROUP_SIZE) multiplied by VF
92 divided by vector size. */
93 unsigned int vec_stmts_size;
94 /* Vectorization costs associated with SLP node. */
95 struct
97 int outside_of_loop; /* Statements generated outside loop. */
98 int inside_of_loop; /* Statements generated inside loop. */
99 } cost;
100 } *slp_tree;
102 DEF_VEC_P(slp_tree);
103 DEF_VEC_ALLOC_P(slp_tree, heap);
105 /* SLP instance is a sequence of stmts in a loop that can be packed into
106 SIMD stmts. */
107 typedef struct _slp_instance {
108 /* The root of SLP tree. */
109 slp_tree root;
111 /* Size of groups of scalar stmts that will be replaced by SIMD stmt/s. */
112 unsigned int group_size;
114 /* The unrolling factor required to vectorized this SLP instance. */
115 unsigned int unrolling_factor;
117 /* Vectorization costs associated with SLP instance. */
118 struct
120 int outside_of_loop; /* Statements generated outside loop. */
121 int inside_of_loop; /* Statements generated inside loop. */
122 } cost;
124 /* Loads permutation relatively to the stores, NULL if there is no
125 permutation. */
126 VEC (int, heap) *load_permutation;
128 /* The group of nodes that contain loads of this SLP instance. */
129 VEC (slp_tree, heap) *loads;
131 /* The first scalar load of the instance. The created vector loads will be
132 inserted before this statement. */
133 gimple first_load;
134 } *slp_instance;
136 DEF_VEC_P(slp_instance);
137 DEF_VEC_ALLOC_P(slp_instance, heap);
139 /* Access Functions. */
140 #define SLP_INSTANCE_TREE(S) (S)->root
141 #define SLP_INSTANCE_GROUP_SIZE(S) (S)->group_size
142 #define SLP_INSTANCE_UNROLLING_FACTOR(S) (S)->unrolling_factor
143 #define SLP_INSTANCE_OUTSIDE_OF_LOOP_COST(S) (S)->cost.outside_of_loop
144 #define SLP_INSTANCE_INSIDE_OF_LOOP_COST(S) (S)->cost.inside_of_loop
145 #define SLP_INSTANCE_LOAD_PERMUTATION(S) (S)->load_permutation
146 #define SLP_INSTANCE_LOADS(S) (S)->loads
147 #define SLP_INSTANCE_FIRST_LOAD_STMT(S) (S)->first_load
149 #define SLP_TREE_LEFT(S) (S)->left
150 #define SLP_TREE_RIGHT(S) (S)->right
151 #define SLP_TREE_SCALAR_STMTS(S) (S)->stmts
152 #define SLP_TREE_VEC_STMTS(S) (S)->vec_stmts
153 #define SLP_TREE_NUMBER_OF_VEC_STMTS(S) (S)->vec_stmts_size
154 #define SLP_TREE_OUTSIDE_OF_LOOP_COST(S) (S)->cost.outside_of_loop
155 #define SLP_TREE_INSIDE_OF_LOOP_COST(S) (S)->cost.inside_of_loop
158 typedef struct _vect_peel_info
160 int npeel;
161 struct data_reference *dr;
162 unsigned int count;
163 } *vect_peel_info;
165 typedef struct _vect_peel_extended_info
167 struct _vect_peel_info peel_info;
168 unsigned int inside_cost;
169 unsigned int outside_cost;
170 } *vect_peel_extended_info;
172 /*-----------------------------------------------------------------*/
173 /* Info on vectorized loops. */
174 /*-----------------------------------------------------------------*/
175 typedef struct _loop_vec_info {
177 /* The loop to which this info struct refers to. */
178 struct loop *loop;
180 /* The loop basic blocks. */
181 basic_block *bbs;
183 /* Number of iterations. */
184 tree num_iters;
185 tree num_iters_unchanged;
187 /* Minimum number of iterations below which vectorization is expected to
188 not be profitable (as estimated by the cost model).
189 -1 indicates that vectorization will not be profitable.
190 FORNOW: This field is an int. Will be a tree in the future, to represent
191 values unknown at compile time. */
192 int min_profitable_iters;
194 /* Is the loop vectorizable? */
195 bool vectorizable;
197 /* Unrolling factor */
198 int vectorization_factor;
200 /* The loop location in the source. */
201 LOC loop_line_number;
203 /* Unknown DRs according to which loop was peeled. */
204 struct data_reference *unaligned_dr;
206 /* peeling_for_alignment indicates whether peeling for alignment will take
207 place, and what the peeling factor should be:
208 peeling_for_alignment = X means:
209 If X=0: Peeling for alignment will not be applied.
210 If X>0: Peel first X iterations.
211 If X=-1: Generate a runtime test to calculate the number of iterations
212 to be peeled, using the dataref recorded in the field
213 unaligned_dr. */
214 int peeling_for_alignment;
216 /* The mask used to check the alignment of pointers or arrays. */
217 int ptr_mask;
219 /* The loop nest in which the data dependences are computed. */
220 VEC (loop_p, heap) *loop_nest;
222 /* All data references in the loop. */
223 VEC (data_reference_p, heap) *datarefs;
225 /* All data dependences in the loop. */
226 VEC (ddr_p, heap) *ddrs;
228 /* Data Dependence Relations defining address ranges that are candidates
229 for a run-time aliasing check. */
230 VEC (ddr_p, heap) *may_alias_ddrs;
232 /* Statements in the loop that have data references that are candidates for a
233 runtime (loop versioning) misalignment check. */
234 VEC(gimple,heap) *may_misalign_stmts;
236 /* All interleaving chains of stores in the loop, represented by the first
237 stmt in the chain. */
238 VEC(gimple, heap) *strided_stores;
240 /* All SLP instances in the loop. This is a subset of the set of STRIDED_STORES
241 of the loop. */
242 VEC(slp_instance, heap) *slp_instances;
244 /* The unrolling factor needed to SLP the loop. In case of that pure SLP is
245 applied to the loop, i.e., no unrolling is needed, this is 1. */
246 unsigned slp_unrolling_factor;
248 /* Reduction cycles detected in the loop. Used in loop-aware SLP. */
249 VEC (gimple, heap) *reductions;
251 /* All reduction chains in the loop, represented by the first
252 stmt in the chain. */
253 VEC (gimple, heap) *reduction_chains;
255 /* Hash table used to choose the best peeling option. */
256 htab_t peeling_htab;
258 /* When we have strided data accesses with gaps, we may introduce invalid
259 memory accesses. We peel the last iteration of the loop to prevent
260 this. */
261 bool peeling_for_gaps;
263 } *loop_vec_info;
265 /* Access Functions. */
266 #define LOOP_VINFO_LOOP(L) (L)->loop
267 #define LOOP_VINFO_BBS(L) (L)->bbs
268 #define LOOP_VINFO_NITERS(L) (L)->num_iters
269 /* Since LOOP_VINFO_NITERS can change after prologue peeling
270 retain total unchanged scalar loop iterations for cost model. */
271 #define LOOP_VINFO_NITERS_UNCHANGED(L) (L)->num_iters_unchanged
272 #define LOOP_VINFO_COST_MODEL_MIN_ITERS(L) (L)->min_profitable_iters
273 #define LOOP_VINFO_VECTORIZABLE_P(L) (L)->vectorizable
274 #define LOOP_VINFO_VECT_FACTOR(L) (L)->vectorization_factor
275 #define LOOP_VINFO_PTR_MASK(L) (L)->ptr_mask
276 #define LOOP_VINFO_LOOP_NEST(L) (L)->loop_nest
277 #define LOOP_VINFO_DATAREFS(L) (L)->datarefs
278 #define LOOP_VINFO_DDRS(L) (L)->ddrs
279 #define LOOP_VINFO_INT_NITERS(L) (TREE_INT_CST_LOW ((L)->num_iters))
280 #define LOOP_PEELING_FOR_ALIGNMENT(L) (L)->peeling_for_alignment
281 #define LOOP_VINFO_UNALIGNED_DR(L) (L)->unaligned_dr
282 #define LOOP_VINFO_MAY_MISALIGN_STMTS(L) (L)->may_misalign_stmts
283 #define LOOP_VINFO_LOC(L) (L)->loop_line_number
284 #define LOOP_VINFO_MAY_ALIAS_DDRS(L) (L)->may_alias_ddrs
285 #define LOOP_VINFO_STRIDED_STORES(L) (L)->strided_stores
286 #define LOOP_VINFO_SLP_INSTANCES(L) (L)->slp_instances
287 #define LOOP_VINFO_SLP_UNROLLING_FACTOR(L) (L)->slp_unrolling_factor
288 #define LOOP_VINFO_REDUCTIONS(L) (L)->reductions
289 #define LOOP_VINFO_REDUCTION_CHAINS(L) (L)->reduction_chains
290 #define LOOP_VINFO_PEELING_HTAB(L) (L)->peeling_htab
291 #define LOOP_VINFO_PEELING_FOR_GAPS(L) (L)->peeling_for_gaps
293 #define LOOP_REQUIRES_VERSIONING_FOR_ALIGNMENT(L) \
294 VEC_length (gimple, (L)->may_misalign_stmts) > 0
295 #define LOOP_REQUIRES_VERSIONING_FOR_ALIAS(L) \
296 VEC_length (ddr_p, (L)->may_alias_ddrs) > 0
298 #define NITERS_KNOWN_P(n) \
299 (host_integerp ((n),0) \
300 && TREE_INT_CST_LOW ((n)) > 0)
302 #define LOOP_VINFO_NITERS_KNOWN_P(L) \
303 NITERS_KNOWN_P((L)->num_iters)
305 static inline loop_vec_info
306 loop_vec_info_for_loop (struct loop *loop)
308 return (loop_vec_info) loop->aux;
311 static inline bool
312 nested_in_vect_loop_p (struct loop *loop, gimple stmt)
314 return (loop->inner
315 && (loop->inner == (gimple_bb (stmt))->loop_father));
318 typedef struct _bb_vec_info {
320 basic_block bb;
321 /* All interleaving chains of stores in the basic block, represented by the
322 first stmt in the chain. */
323 VEC(gimple, heap) *strided_stores;
325 /* All SLP instances in the basic block. This is a subset of the set of
326 STRIDED_STORES of the basic block. */
327 VEC(slp_instance, heap) *slp_instances;
329 /* All data references in the basic block. */
330 VEC (data_reference_p, heap) *datarefs;
332 /* All data dependences in the basic block. */
333 VEC (ddr_p, heap) *ddrs;
334 } *bb_vec_info;
336 #define BB_VINFO_BB(B) (B)->bb
337 #define BB_VINFO_STRIDED_STORES(B) (B)->strided_stores
338 #define BB_VINFO_SLP_INSTANCES(B) (B)->slp_instances
339 #define BB_VINFO_DATAREFS(B) (B)->datarefs
340 #define BB_VINFO_DDRS(B) (B)->ddrs
342 static inline bb_vec_info
343 vec_info_for_bb (basic_block bb)
345 return (bb_vec_info) bb->aux;
348 /*-----------------------------------------------------------------*/
349 /* Info on vectorized defs. */
350 /*-----------------------------------------------------------------*/
351 enum stmt_vec_info_type {
352 undef_vec_info_type = 0,
353 load_vec_info_type,
354 store_vec_info_type,
355 shift_vec_info_type,
356 op_vec_info_type,
357 call_vec_info_type,
358 assignment_vec_info_type,
359 condition_vec_info_type,
360 reduc_vec_info_type,
361 induc_vec_info_type,
362 type_promotion_vec_info_type,
363 type_demotion_vec_info_type,
364 type_conversion_vec_info_type,
365 loop_exit_ctrl_vec_info_type
368 /* Indicates whether/how a variable is used in the scope of loop/basic
369 block. */
370 enum vect_relevant {
371 vect_unused_in_scope = 0,
372 /* The def is in the inner loop, and the use is in the outer loop, and the
373 use is a reduction stmt. */
374 vect_used_in_outer_by_reduction,
375 /* The def is in the inner loop, and the use is in the outer loop (and is
376 not part of reduction). */
377 vect_used_in_outer,
379 /* defs that feed computations that end up (only) in a reduction. These
380 defs may be used by non-reduction stmts, but eventually, any
381 computations/values that are affected by these defs are used to compute
382 a reduction (i.e. don't get stored to memory, for example). We use this
383 to identify computations that we can change the order in which they are
384 computed. */
385 vect_used_by_reduction,
387 vect_used_in_scope
390 /* The type of vectorization that can be applied to the stmt: regular loop-based
391 vectorization; pure SLP - the stmt is a part of SLP instances and does not
392 have uses outside SLP instances; or hybrid SLP and loop-based - the stmt is
393 a part of SLP instance and also must be loop-based vectorized, since it has
394 uses outside SLP sequences.
396 In the loop context the meanings of pure and hybrid SLP are slightly
397 different. By saying that pure SLP is applied to the loop, we mean that we
398 exploit only intra-iteration parallelism in the loop; i.e., the loop can be
399 vectorized without doing any conceptual unrolling, cause we don't pack
400 together stmts from different iterations, only within a single iteration.
401 Loop hybrid SLP means that we exploit both intra-iteration and
402 inter-iteration parallelism (e.g., number of elements in the vector is 4
403 and the slp-group-size is 2, in which case we don't have enough parallelism
404 within an iteration, so we obtain the rest of the parallelism from subsequent
405 iterations by unrolling the loop by 2). */
406 enum slp_vect_type {
407 loop_vect = 0,
408 pure_slp,
409 hybrid
413 typedef struct data_reference *dr_p;
414 DEF_VEC_P(dr_p);
415 DEF_VEC_ALLOC_P(dr_p,heap);
417 typedef struct _stmt_vec_info {
419 enum stmt_vec_info_type type;
421 /* Indicates whether this stmts is part of a computation whose result is
422 used outside the loop. */
423 bool live;
425 /* Stmt is part of some pattern (computation idiom) */
426 bool in_pattern_p;
428 /* For loads only, if there is a store with the same location, this field is
429 TRUE. */
430 bool read_write_dep;
432 /* The stmt to which this info struct refers to. */
433 gimple stmt;
435 /* The loop_vec_info with respect to which STMT is vectorized. */
436 loop_vec_info loop_vinfo;
438 /* The vector type to be used for the LHS of this statement. */
439 tree vectype;
441 /* The vectorized version of the stmt. */
442 gimple vectorized_stmt;
445 /** The following is relevant only for stmts that contain a non-scalar
446 data-ref (array/pointer/struct access). A GIMPLE stmt is expected to have
447 at most one such data-ref. **/
449 /* Information about the data-ref (access function, etc),
450 relative to the inner-most containing loop. */
451 struct data_reference *data_ref_info;
453 /* Information about the data-ref relative to this loop
454 nest (the loop that is being considered for vectorization). */
455 tree dr_base_address;
456 tree dr_init;
457 tree dr_offset;
458 tree dr_step;
459 tree dr_aligned_to;
461 /* Used for various bookkeeping purposes, generally holding a pointer to
462 some other stmt S that is in some way "related" to this stmt.
463 Current use of this field is:
464 If this stmt is part of a pattern (i.e. the field 'in_pattern_p' is
465 true): S is the "pattern stmt" that represents (and replaces) the
466 sequence of stmts that constitutes the pattern. Similarly, the
467 related_stmt of the "pattern stmt" points back to this stmt (which is
468 the last stmt in the original sequence of stmts that constitutes the
469 pattern). */
470 gimple related_stmt;
472 /* List of datarefs that are known to have the same alignment as the dataref
473 of this stmt. */
474 VEC(dr_p,heap) *same_align_refs;
476 /* Classify the def of this stmt. */
477 enum vect_def_type def_type;
479 /* Whether the stmt is SLPed, loop-based vectorized, or both. */
480 enum slp_vect_type slp_type;
482 /* Interleaving and reduction chains info. */
483 /* First element in the group. */
484 gimple first_element;
485 /* Pointer to the next element in the group. */
486 gimple next_element;
487 /* For data-refs, in case that two or more stmts share data-ref, this is the
488 pointer to the previously detected stmt with the same dr. */
489 gimple same_dr_stmt;
490 /* The size of the group. */
491 unsigned int size;
492 /* For stores, number of stores from this group seen. We vectorize the last
493 one. */
494 unsigned int store_count;
495 /* For loads only, the gap from the previous load. For consecutive loads, GAP
496 is 1. */
497 unsigned int gap;
499 /* Not all stmts in the loop need to be vectorized. e.g, the increment
500 of the loop induction variable and computation of array indexes. relevant
501 indicates whether the stmt needs to be vectorized. */
502 enum vect_relevant relevant;
504 /* Vectorization costs associated with statement. */
505 struct
507 int outside_of_loop; /* Statements generated outside loop. */
508 int inside_of_loop; /* Statements generated inside loop. */
509 } cost;
511 /* The bb_vec_info with respect to which STMT is vectorized. */
512 bb_vec_info bb_vinfo;
514 /* Is this statement vectorizable or should it be skipped in (partial)
515 vectorization. */
516 bool vectorizable;
517 } *stmt_vec_info;
519 /* Access Functions. */
520 #define STMT_VINFO_TYPE(S) (S)->type
521 #define STMT_VINFO_STMT(S) (S)->stmt
522 #define STMT_VINFO_LOOP_VINFO(S) (S)->loop_vinfo
523 #define STMT_VINFO_BB_VINFO(S) (S)->bb_vinfo
524 #define STMT_VINFO_RELEVANT(S) (S)->relevant
525 #define STMT_VINFO_LIVE_P(S) (S)->live
526 #define STMT_VINFO_VECTYPE(S) (S)->vectype
527 #define STMT_VINFO_VEC_STMT(S) (S)->vectorized_stmt
528 #define STMT_VINFO_VECTORIZABLE(S) (S)->vectorizable
529 #define STMT_VINFO_DATA_REF(S) (S)->data_ref_info
531 #define STMT_VINFO_DR_BASE_ADDRESS(S) (S)->dr_base_address
532 #define STMT_VINFO_DR_INIT(S) (S)->dr_init
533 #define STMT_VINFO_DR_OFFSET(S) (S)->dr_offset
534 #define STMT_VINFO_DR_STEP(S) (S)->dr_step
535 #define STMT_VINFO_DR_ALIGNED_TO(S) (S)->dr_aligned_to
537 #define STMT_VINFO_IN_PATTERN_P(S) (S)->in_pattern_p
538 #define STMT_VINFO_RELATED_STMT(S) (S)->related_stmt
539 #define STMT_VINFO_SAME_ALIGN_REFS(S) (S)->same_align_refs
540 #define STMT_VINFO_DEF_TYPE(S) (S)->def_type
541 #define STMT_VINFO_GROUP_FIRST_ELEMENT(S) (S)->first_element
542 #define STMT_VINFO_GROUP_NEXT_ELEMENT(S) (S)->next_element
543 #define STMT_VINFO_GROUP_SIZE(S) (S)->size
544 #define STMT_VINFO_GROUP_STORE_COUNT(S) (S)->store_count
545 #define STMT_VINFO_GROUP_GAP(S) (S)->gap
546 #define STMT_VINFO_GROUP_SAME_DR_STMT(S) (S)->same_dr_stmt
547 #define STMT_VINFO_GROUP_READ_WRITE_DEPENDENCE(S) (S)->read_write_dep
548 #define STMT_VINFO_STRIDED_ACCESS(S) ((S)->first_element != NULL && (S)->data_ref_info)
550 #define GROUP_FIRST_ELEMENT(S) (S)->first_element
551 #define GROUP_NEXT_ELEMENT(S) (S)->next_element
552 #define GROUP_SIZE(S) (S)->size
553 #define GROUP_STORE_COUNT(S) (S)->store_count
554 #define GROUP_GAP(S) (S)->gap
555 #define GROUP_SAME_DR_STMT(S) (S)->same_dr_stmt
556 #define GROUP_READ_WRITE_DEPENDENCE(S) (S)->read_write_dep
558 #define STMT_VINFO_RELEVANT_P(S) ((S)->relevant != vect_unused_in_scope)
559 #define STMT_VINFO_OUTSIDE_OF_LOOP_COST(S) (S)->cost.outside_of_loop
560 #define STMT_VINFO_INSIDE_OF_LOOP_COST(S) (S)->cost.inside_of_loop
562 #define HYBRID_SLP_STMT(S) ((S)->slp_type == hybrid)
563 #define PURE_SLP_STMT(S) ((S)->slp_type == pure_slp)
564 #define STMT_SLP_TYPE(S) (S)->slp_type
566 #define VECT_MAX_COST 1000
568 /* The maximum number of intermediate steps required in multi-step type
569 conversion. */
570 #define MAX_INTERM_CVT_STEPS 3
572 /* The maximum vectorization factor supported by any target (V32QI). */
573 #define MAX_VECTORIZATION_FACTOR 32
575 /* Avoid GTY(()) on stmt_vec_info. */
576 typedef void *vec_void_p;
577 DEF_VEC_P (vec_void_p);
578 DEF_VEC_ALLOC_P (vec_void_p, heap);
580 extern VEC(vec_void_p,heap) *stmt_vec_info_vec;
582 void init_stmt_vec_info_vec (void);
583 void free_stmt_vec_info_vec (void);
585 /* Return a stmt_vec_info corresponding to STMT. */
587 static inline stmt_vec_info
588 vinfo_for_stmt (gimple stmt)
590 unsigned int uid = gimple_uid (stmt);
591 if (uid == 0)
592 return NULL;
594 return (stmt_vec_info) VEC_index (vec_void_p, stmt_vec_info_vec, uid - 1);
597 /* Set vectorizer information INFO for STMT. */
599 static inline void
600 set_vinfo_for_stmt (gimple stmt, stmt_vec_info info)
602 unsigned int uid = gimple_uid (stmt);
603 if (uid == 0)
605 gcc_checking_assert (info);
606 uid = VEC_length (vec_void_p, stmt_vec_info_vec) + 1;
607 gimple_set_uid (stmt, uid);
608 VEC_safe_push (vec_void_p, heap, stmt_vec_info_vec, (vec_void_p) info);
610 else
611 VEC_replace (vec_void_p, stmt_vec_info_vec, uid - 1, (vec_void_p) info);
614 /* Return the earlier statement between STMT1 and STMT2. */
616 static inline gimple
617 get_earlier_stmt (gimple stmt1, gimple stmt2)
619 unsigned int uid1, uid2;
621 if (stmt1 == NULL)
622 return stmt2;
624 if (stmt2 == NULL)
625 return stmt1;
627 uid1 = gimple_uid (stmt1);
628 uid2 = gimple_uid (stmt2);
630 if (uid1 == 0 || uid2 == 0)
631 return NULL;
633 gcc_checking_assert (uid1 <= VEC_length (vec_void_p, stmt_vec_info_vec)
634 && uid2 <= VEC_length (vec_void_p, stmt_vec_info_vec));
636 if (uid1 < uid2)
637 return stmt1;
638 else
639 return stmt2;
642 /* Return the later statement between STMT1 and STMT2. */
644 static inline gimple
645 get_later_stmt (gimple stmt1, gimple stmt2)
647 unsigned int uid1, uid2;
649 if (stmt1 == NULL)
650 return stmt2;
652 if (stmt2 == NULL)
653 return stmt1;
655 uid1 = gimple_uid (stmt1);
656 uid2 = gimple_uid (stmt2);
658 if (uid1 == 0 || uid2 == 0)
659 return NULL;
661 gcc_assert (uid1 <= VEC_length (vec_void_p, stmt_vec_info_vec));
662 gcc_assert (uid2 <= VEC_length (vec_void_p, stmt_vec_info_vec));
664 if (uid1 > uid2)
665 return stmt1;
666 else
667 return stmt2;
670 /* Return TRUE if a statement represented by STMT_INFO is a part of a
671 pattern. */
673 static inline bool
674 is_pattern_stmt_p (stmt_vec_info stmt_info)
676 gimple related_stmt;
677 stmt_vec_info related_stmt_info;
679 related_stmt = STMT_VINFO_RELATED_STMT (stmt_info);
680 if (related_stmt
681 && (related_stmt_info = vinfo_for_stmt (related_stmt))
682 && STMT_VINFO_IN_PATTERN_P (related_stmt_info))
683 return true;
685 return false;
688 /* Return true if BB is a loop header. */
690 static inline bool
691 is_loop_header_bb_p (basic_block bb)
693 if (bb == (bb->loop_father)->header)
694 return true;
695 gcc_checking_assert (EDGE_COUNT (bb->preds) == 1);
696 return false;
699 /* Set inside loop vectorization cost. */
701 static inline void
702 stmt_vinfo_set_inside_of_loop_cost (stmt_vec_info stmt_info, slp_tree slp_node,
703 int cost)
705 if (slp_node)
706 SLP_TREE_INSIDE_OF_LOOP_COST (slp_node) = cost;
707 else
708 STMT_VINFO_INSIDE_OF_LOOP_COST (stmt_info) = cost;
711 /* Set inside loop vectorization cost. */
713 static inline void
714 stmt_vinfo_set_outside_of_loop_cost (stmt_vec_info stmt_info, slp_tree slp_node,
715 int cost)
717 if (slp_node)
718 SLP_TREE_OUTSIDE_OF_LOOP_COST (slp_node) = cost;
719 else
720 STMT_VINFO_OUTSIDE_OF_LOOP_COST (stmt_info) = cost;
723 /* Return pow2 (X). */
725 static inline int
726 vect_pow2 (int x)
728 int i, res = 1;
730 for (i = 0; i < x; i++)
731 res *= 2;
733 return res;
736 /*-----------------------------------------------------------------*/
737 /* Info on data references alignment. */
738 /*-----------------------------------------------------------------*/
740 /* Reflects actual alignment of first access in the vectorized loop,
741 taking into account peeling/versioning if applied. */
742 #define DR_MISALIGNMENT(DR) ((int) (size_t) (DR)->aux)
743 #define SET_DR_MISALIGNMENT(DR, VAL) ((DR)->aux = (void *) (size_t) (VAL))
745 /* Return TRUE if the data access is aligned, and FALSE otherwise. */
747 static inline bool
748 aligned_access_p (struct data_reference *data_ref_info)
750 return (DR_MISALIGNMENT (data_ref_info) == 0);
753 /* Return TRUE if the alignment of the data access is known, and FALSE
754 otherwise. */
756 static inline bool
757 known_alignment_for_access_p (struct data_reference *data_ref_info)
759 return (DR_MISALIGNMENT (data_ref_info) != -1);
762 /* vect_dump will be set to stderr or dump_file if exist. */
763 extern FILE *vect_dump;
764 extern LOC vect_loop_location;
766 /*-----------------------------------------------------------------*/
767 /* Function prototypes. */
768 /*-----------------------------------------------------------------*/
770 /* Simple loop peeling and versioning utilities for vectorizer's purposes -
771 in tree-vect-loop-manip.c. */
772 extern void slpeel_make_loop_iterate_ntimes (struct loop *, tree);
773 extern bool slpeel_can_duplicate_loop_p (const struct loop *, const_edge);
774 extern void vect_loop_versioning (loop_vec_info, bool, tree *, gimple_seq *);
775 extern void vect_do_peeling_for_loop_bound (loop_vec_info, tree *,
776 tree, gimple_seq);
777 extern void vect_do_peeling_for_alignment (loop_vec_info);
778 extern LOC find_loop_location (struct loop *);
779 extern bool vect_can_advance_ivs_p (loop_vec_info);
781 /* In tree-vect-stmts.c. */
782 extern unsigned int current_vector_size;
783 extern tree get_vectype_for_scalar_type (tree);
784 extern tree get_same_sized_vectype (tree, tree);
785 extern bool vect_is_simple_use (tree, loop_vec_info, bb_vec_info, gimple *,
786 tree *, enum vect_def_type *);
787 extern bool vect_is_simple_use_1 (tree, loop_vec_info, bb_vec_info, gimple *,
788 tree *, enum vect_def_type *, tree *);
789 extern bool supportable_widening_operation (enum tree_code, gimple, tree, tree,
790 tree *, tree *, enum tree_code *,
791 enum tree_code *, int *,
792 VEC (tree, heap) **);
793 extern bool supportable_narrowing_operation (enum tree_code, tree, tree,
794 enum tree_code *,
795 int *, VEC (tree, heap) **);
796 extern stmt_vec_info new_stmt_vec_info (gimple stmt, loop_vec_info,
797 bb_vec_info);
798 extern void free_stmt_vec_info (gimple stmt);
799 extern tree vectorizable_function (gimple, tree, tree);
800 extern void vect_model_simple_cost (stmt_vec_info, int, enum vect_def_type *,
801 slp_tree);
802 extern void vect_model_store_cost (stmt_vec_info, int, bool,
803 enum vect_def_type, slp_tree);
804 extern void vect_model_load_cost (stmt_vec_info, int, bool, slp_tree);
805 extern void vect_finish_stmt_generation (gimple, gimple,
806 gimple_stmt_iterator *);
807 extern bool vect_mark_stmts_to_be_vectorized (loop_vec_info);
808 extern int cost_for_stmt (gimple);
809 extern tree vect_get_vec_def_for_operand (tree, gimple, tree *);
810 extern tree vect_init_vector (gimple, tree, tree,
811 gimple_stmt_iterator *);
812 extern tree vect_get_vec_def_for_stmt_copy (enum vect_def_type, tree);
813 extern bool vect_transform_stmt (gimple, gimple_stmt_iterator *,
814 bool *, slp_tree, slp_instance);
815 extern void vect_remove_stores (gimple);
816 extern bool vect_analyze_stmt (gimple, bool *, slp_tree);
817 extern bool vectorizable_condition (gimple, gimple_stmt_iterator *, gimple *,
818 tree, int);
819 extern void vect_get_load_cost (struct data_reference *, int, bool,
820 unsigned int *, unsigned int *);
821 extern void vect_get_store_cost (struct data_reference *, int, unsigned int *);
823 /* In tree-vect-data-refs.c. */
824 extern bool vect_can_force_dr_alignment_p (const_tree, unsigned int);
825 extern enum dr_alignment_support vect_supportable_dr_alignment
826 (struct data_reference *, bool);
827 extern tree vect_get_smallest_scalar_type (gimple, HOST_WIDE_INT *,
828 HOST_WIDE_INT *);
829 extern bool vect_analyze_data_ref_dependences (loop_vec_info, bb_vec_info,
830 int *, bool *);
831 extern bool vect_enhance_data_refs_alignment (loop_vec_info);
832 extern bool vect_analyze_data_refs_alignment (loop_vec_info, bb_vec_info);
833 extern bool vect_verify_datarefs_alignment (loop_vec_info, bb_vec_info);
834 extern bool vect_analyze_data_ref_accesses (loop_vec_info, bb_vec_info);
835 extern bool vect_prune_runtime_alias_test_list (loop_vec_info);
836 extern bool vect_analyze_data_refs (loop_vec_info, bb_vec_info, int *);
837 extern tree vect_create_data_ref_ptr (gimple, tree, struct loop *, tree,
838 tree *, gimple_stmt_iterator *,
839 gimple *, bool, bool *);
840 extern tree bump_vector_ptr (tree, gimple, gimple_stmt_iterator *, gimple, tree);
841 extern tree vect_create_destination_var (tree, tree);
842 extern bool vect_strided_store_supported (tree, unsigned HOST_WIDE_INT);
843 extern bool vect_store_lanes_supported (tree, unsigned HOST_WIDE_INT);
844 extern bool vect_strided_load_supported (tree, unsigned HOST_WIDE_INT);
845 extern bool vect_load_lanes_supported (tree, unsigned HOST_WIDE_INT);
846 extern void vect_permute_store_chain (VEC(tree,heap) *,unsigned int, gimple,
847 gimple_stmt_iterator *, VEC(tree,heap) **);
848 extern tree vect_setup_realignment (gimple, gimple_stmt_iterator *, tree *,
849 enum dr_alignment_support, tree,
850 struct loop **);
851 extern void vect_transform_strided_load (gimple, VEC(tree,heap) *, int,
852 gimple_stmt_iterator *);
853 extern void vect_record_strided_load_vectors (gimple, VEC(tree,heap) *);
854 extern int vect_get_place_in_interleaving_chain (gimple, gimple);
855 extern tree vect_get_new_vect_var (tree, enum vect_var_kind, const char *);
856 extern tree vect_create_addr_base_for_vector_ref (gimple, gimple_seq *,
857 tree, struct loop *);
859 /* In tree-vect-loop.c. */
860 /* FORNOW: Used in tree-parloops.c. */
861 extern void destroy_loop_vec_info (loop_vec_info, bool);
862 extern gimple vect_force_simple_reduction (loop_vec_info, gimple, bool, bool *);
863 /* Drive for loop analysis stage. */
864 extern loop_vec_info vect_analyze_loop (struct loop *);
865 /* Drive for loop transformation stage. */
866 extern void vect_transform_loop (loop_vec_info);
867 extern loop_vec_info vect_analyze_loop_form (struct loop *);
868 extern bool vectorizable_live_operation (gimple, gimple_stmt_iterator *,
869 gimple *);
870 extern bool vectorizable_reduction (gimple, gimple_stmt_iterator *, gimple *,
871 slp_tree);
872 extern bool vectorizable_induction (gimple, gimple_stmt_iterator *, gimple *);
873 extern int vect_estimate_min_profitable_iters (loop_vec_info);
874 extern tree get_initial_def_for_reduction (gimple, tree, tree *);
875 extern int vect_min_worthwhile_factor (enum tree_code);
876 extern int vect_get_known_peeling_cost (loop_vec_info, int, int *, int);
877 extern int vect_get_single_scalar_iteraion_cost (loop_vec_info);
879 /* In tree-vect-slp.c. */
880 extern void vect_free_slp_instance (slp_instance);
881 extern bool vect_transform_slp_perm_load (gimple, VEC (tree, heap) *,
882 gimple_stmt_iterator *, int,
883 slp_instance, bool);
884 extern bool vect_schedule_slp (loop_vec_info, bb_vec_info);
885 extern void vect_update_slp_costs_according_to_vf (loop_vec_info);
886 extern bool vect_analyze_slp (loop_vec_info, bb_vec_info);
887 extern bool vect_make_slp_decision (loop_vec_info);
888 extern void vect_detect_hybrid_slp (loop_vec_info);
889 extern void vect_get_slp_defs (tree, tree, slp_tree, VEC (tree,heap) **,
890 VEC (tree,heap) **, int);
891 extern LOC find_bb_location (basic_block);
892 extern bb_vec_info vect_slp_analyze_bb (basic_block);
893 extern void vect_slp_transform_bb (basic_block);
895 /* In tree-vect-patterns.c. */
896 /* Pattern recognition functions.
897 Additional pattern recognition functions can (and will) be added
898 in the future. */
899 typedef gimple (* vect_recog_func_ptr) (gimple *, tree *, tree *);
900 #define NUM_PATTERNS 4
901 void vect_pattern_recog (loop_vec_info);
903 /* In tree-vectorizer.c. */
904 unsigned vectorize_loops (void);
905 /* Vectorization debug information */
906 extern bool vect_print_dump_info (enum vect_verbosity_levels);
908 #endif /* GCC_TREE_VECTORIZER_H */