* config/nvptx/nvptx.c (nvptx_process_pars): Fix whitespace.
[official-gcc.git] / gcc / tree-vectorizer.h
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1 /* Vectorizer
2 Copyright (C) 2003-2015 Free Software Foundation, Inc.
3 Contributed by Dorit Naishlos <dorit@il.ibm.com>
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 #ifndef GCC_TREE_VECTORIZER_H
22 #define GCC_TREE_VECTORIZER_H
24 #include "tree-data-ref.h"
25 #include "target.h"
27 /* Used for naming of new temporaries. */
28 enum vect_var_kind {
29 vect_simple_var,
30 vect_pointer_var,
31 vect_scalar_var,
32 vect_mask_var
35 /* Defines type of operation. */
36 enum operation_type {
37 unary_op = 1,
38 binary_op,
39 ternary_op
42 /* Define type of available alignment support. */
43 enum dr_alignment_support {
44 dr_unaligned_unsupported,
45 dr_unaligned_supported,
46 dr_explicit_realign,
47 dr_explicit_realign_optimized,
48 dr_aligned
51 /* Define type of def-use cross-iteration cycle. */
52 enum vect_def_type {
53 vect_uninitialized_def = 0,
54 vect_constant_def = 1,
55 vect_external_def,
56 vect_internal_def,
57 vect_induction_def,
58 vect_reduction_def,
59 vect_double_reduction_def,
60 vect_nested_cycle,
61 vect_unknown_def_type
64 /* Define type of reduction. */
65 enum vect_reduction_type {
66 TREE_CODE_REDUCTION,
67 COND_REDUCTION,
68 INTEGER_INDUC_COND_REDUCTION
71 #define VECTORIZABLE_CYCLE_DEF(D) (((D) == vect_reduction_def) \
72 || ((D) == vect_double_reduction_def) \
73 || ((D) == vect_nested_cycle))
75 /* Structure to encapsulate information about a group of like
76 instructions to be presented to the target cost model. */
77 struct stmt_info_for_cost {
78 int count;
79 enum vect_cost_for_stmt kind;
80 gimple *stmt;
81 int misalign;
84 typedef vec<stmt_info_for_cost> stmt_vector_for_cost;
86 /************************************************************************
87 SLP
88 ************************************************************************/
89 typedef struct _slp_tree *slp_tree;
91 /* A computation tree of an SLP instance. Each node corresponds to a group of
92 stmts to be packed in a SIMD stmt. */
93 struct _slp_tree {
94 /* Nodes that contain def-stmts of this node statements operands. */
95 vec<slp_tree> children;
96 /* A group of scalar stmts to be vectorized together. */
97 vec<gimple *> stmts;
98 /* Load permutation relative to the stores, NULL if there is no
99 permutation. */
100 vec<unsigned> load_permutation;
101 /* Vectorized stmt/s. */
102 vec<gimple *> vec_stmts;
103 /* Number of vector stmts that are created to replace the group of scalar
104 stmts. It is calculated during the transformation phase as the number of
105 scalar elements in one scalar iteration (GROUP_SIZE) multiplied by VF
106 divided by vector size. */
107 unsigned int vec_stmts_size;
108 /* Whether the scalar computations use two different operators. */
109 bool two_operators;
113 /* SLP instance is a sequence of stmts in a loop that can be packed into
114 SIMD stmts. */
115 typedef struct _slp_instance {
116 /* The root of SLP tree. */
117 slp_tree root;
119 /* Size of groups of scalar stmts that will be replaced by SIMD stmt/s. */
120 unsigned int group_size;
122 /* The unrolling factor required to vectorized this SLP instance. */
123 unsigned int unrolling_factor;
125 /* The group of nodes that contain loads of this SLP instance. */
126 vec<slp_tree> loads;
127 } *slp_instance;
130 /* Access Functions. */
131 #define SLP_INSTANCE_TREE(S) (S)->root
132 #define SLP_INSTANCE_GROUP_SIZE(S) (S)->group_size
133 #define SLP_INSTANCE_UNROLLING_FACTOR(S) (S)->unrolling_factor
134 #define SLP_INSTANCE_LOADS(S) (S)->loads
136 #define SLP_TREE_CHILDREN(S) (S)->children
137 #define SLP_TREE_SCALAR_STMTS(S) (S)->stmts
138 #define SLP_TREE_VEC_STMTS(S) (S)->vec_stmts
139 #define SLP_TREE_NUMBER_OF_VEC_STMTS(S) (S)->vec_stmts_size
140 #define SLP_TREE_LOAD_PERMUTATION(S) (S)->load_permutation
141 #define SLP_TREE_TWO_OPERATORS(S) (S)->two_operators
145 /* This struct is used to store the information of a data reference,
146 including the data ref itself, the access offset (calculated by summing its
147 offset and init) and the segment length for aliasing checks.
148 This is used to merge alias checks. */
150 struct dr_with_seg_len
152 dr_with_seg_len (data_reference_p d, tree len)
153 : dr (d),
154 offset (size_binop (PLUS_EXPR, DR_OFFSET (d), DR_INIT (d))),
155 seg_len (len) {}
157 data_reference_p dr;
158 tree offset;
159 tree seg_len;
162 /* This struct contains two dr_with_seg_len objects with aliasing data
163 refs. Two comparisons are generated from them. */
165 struct dr_with_seg_len_pair_t
167 dr_with_seg_len_pair_t (const dr_with_seg_len& d1,
168 const dr_with_seg_len& d2)
169 : first (d1), second (d2) {}
171 dr_with_seg_len first;
172 dr_with_seg_len second;
177 /* Vectorizer state common between loop and basic-block vectorization. */
178 struct vec_info {
179 enum { bb, loop } kind;
181 /* All SLP instances. */
182 vec<slp_instance> slp_instances;
184 /* All data references. */
185 vec<data_reference_p> datarefs;
187 /* All data dependences. */
188 vec<ddr_p> ddrs;
190 /* All interleaving chains of stores, represented by the first
191 stmt in the chain. */
192 vec<gimple *> grouped_stores;
194 /* Cost data used by the target cost model. */
195 void *target_cost_data;
198 struct _loop_vec_info;
199 struct _bb_vec_info;
201 template<>
202 template<>
203 inline bool
204 is_a_helper <_loop_vec_info *>::test (vec_info *i)
206 return i->kind == vec_info::loop;
209 template<>
210 template<>
211 inline bool
212 is_a_helper <_bb_vec_info *>::test (vec_info *i)
214 return i->kind == vec_info::bb;
218 /*-----------------------------------------------------------------*/
219 /* Info on vectorized loops. */
220 /*-----------------------------------------------------------------*/
221 typedef struct _loop_vec_info : public vec_info {
223 /* The loop to which this info struct refers to. */
224 struct loop *loop;
226 /* The loop basic blocks. */
227 basic_block *bbs;
229 /* Number of latch executions. */
230 tree num_itersm1;
231 /* Number of iterations. */
232 tree num_iters;
233 /* Number of iterations of the original loop. */
234 tree num_iters_unchanged;
236 /* Threshold of number of iterations below which vectorzation will not be
237 performed. It is calculated from MIN_PROFITABLE_ITERS and
238 PARAM_MIN_VECT_LOOP_BOUND. */
239 unsigned int th;
241 /* Is the loop vectorizable? */
242 bool vectorizable;
244 /* Unrolling factor */
245 int vectorization_factor;
247 /* Unknown DRs according to which loop was peeled. */
248 struct data_reference *unaligned_dr;
250 /* peeling_for_alignment indicates whether peeling for alignment will take
251 place, and what the peeling factor should be:
252 peeling_for_alignment = X means:
253 If X=0: Peeling for alignment will not be applied.
254 If X>0: Peel first X iterations.
255 If X=-1: Generate a runtime test to calculate the number of iterations
256 to be peeled, using the dataref recorded in the field
257 unaligned_dr. */
258 int peeling_for_alignment;
260 /* The mask used to check the alignment of pointers or arrays. */
261 int ptr_mask;
263 /* The loop nest in which the data dependences are computed. */
264 vec<loop_p> loop_nest;
266 /* Data Dependence Relations defining address ranges that are candidates
267 for a run-time aliasing check. */
268 vec<ddr_p> may_alias_ddrs;
270 /* Data Dependence Relations defining address ranges together with segment
271 lengths from which the run-time aliasing check is built. */
272 vec<dr_with_seg_len_pair_t> comp_alias_ddrs;
274 /* Statements in the loop that have data references that are candidates for a
275 runtime (loop versioning) misalignment check. */
276 vec<gimple *> may_misalign_stmts;
278 /* The unrolling factor needed to SLP the loop. In case of that pure SLP is
279 applied to the loop, i.e., no unrolling is needed, this is 1. */
280 unsigned slp_unrolling_factor;
282 /* Reduction cycles detected in the loop. Used in loop-aware SLP. */
283 vec<gimple *> reductions;
285 /* All reduction chains in the loop, represented by the first
286 stmt in the chain. */
287 vec<gimple *> reduction_chains;
289 /* Cost vector for a single scalar iteration. */
290 vec<stmt_info_for_cost> scalar_cost_vec;
292 /* Cost of a single scalar iteration. */
293 int single_scalar_iteration_cost;
295 /* When we have grouped data accesses with gaps, we may introduce invalid
296 memory accesses. We peel the last iteration of the loop to prevent
297 this. */
298 bool peeling_for_gaps;
300 /* When the number of iterations is not a multiple of the vector size
301 we need to peel off iterations at the end to form an epilogue loop. */
302 bool peeling_for_niter;
304 /* Reductions are canonicalized so that the last operand is the reduction
305 operand. If this places a constant into RHS1, this decanonicalizes
306 GIMPLE for other phases, so we must track when this has occurred and
307 fix it up. */
308 bool operands_swapped;
310 /* True if there are no loop carried data dependencies in the loop.
311 If loop->safelen <= 1, then this is always true, either the loop
312 didn't have any loop carried data dependencies, or the loop is being
313 vectorized guarded with some runtime alias checks, or couldn't
314 be vectorized at all, but then this field shouldn't be used.
315 For loop->safelen >= 2, the user has asserted that there are no
316 backward dependencies, but there still could be loop carried forward
317 dependencies in such loops. This flag will be false if normal
318 vectorizer data dependency analysis would fail or require versioning
319 for alias, but because of loop->safelen >= 2 it has been vectorized
320 even without versioning for alias. E.g. in:
321 #pragma omp simd
322 for (int i = 0; i < m; i++)
323 a[i] = a[i + k] * c;
324 (or #pragma simd or #pragma ivdep) we can vectorize this and it will
325 DTRT even for k > 0 && k < m, but without safelen we would not
326 vectorize this, so this field would be false. */
327 bool no_data_dependencies;
329 /* If if-conversion versioned this loop before conversion, this is the
330 loop version without if-conversion. */
331 struct loop *scalar_loop;
333 } *loop_vec_info;
335 /* Access Functions. */
336 #define LOOP_VINFO_LOOP(L) (L)->loop
337 #define LOOP_VINFO_BBS(L) (L)->bbs
338 #define LOOP_VINFO_NITERSM1(L) (L)->num_itersm1
339 #define LOOP_VINFO_NITERS(L) (L)->num_iters
340 /* Since LOOP_VINFO_NITERS and LOOP_VINFO_NITERSM1 can change after
341 prologue peeling retain total unchanged scalar loop iterations for
342 cost model. */
343 #define LOOP_VINFO_NITERS_UNCHANGED(L) (L)->num_iters_unchanged
344 #define LOOP_VINFO_COST_MODEL_THRESHOLD(L) (L)->th
345 #define LOOP_VINFO_VECTORIZABLE_P(L) (L)->vectorizable
346 #define LOOP_VINFO_VECT_FACTOR(L) (L)->vectorization_factor
347 #define LOOP_VINFO_PTR_MASK(L) (L)->ptr_mask
348 #define LOOP_VINFO_LOOP_NEST(L) (L)->loop_nest
349 #define LOOP_VINFO_DATAREFS(L) (L)->datarefs
350 #define LOOP_VINFO_DDRS(L) (L)->ddrs
351 #define LOOP_VINFO_INT_NITERS(L) (TREE_INT_CST_LOW ((L)->num_iters))
352 #define LOOP_VINFO_PEELING_FOR_ALIGNMENT(L) (L)->peeling_for_alignment
353 #define LOOP_VINFO_UNALIGNED_DR(L) (L)->unaligned_dr
354 #define LOOP_VINFO_MAY_MISALIGN_STMTS(L) (L)->may_misalign_stmts
355 #define LOOP_VINFO_MAY_ALIAS_DDRS(L) (L)->may_alias_ddrs
356 #define LOOP_VINFO_COMP_ALIAS_DDRS(L) (L)->comp_alias_ddrs
357 #define LOOP_VINFO_GROUPED_STORES(L) (L)->grouped_stores
358 #define LOOP_VINFO_SLP_INSTANCES(L) (L)->slp_instances
359 #define LOOP_VINFO_SLP_UNROLLING_FACTOR(L) (L)->slp_unrolling_factor
360 #define LOOP_VINFO_REDUCTIONS(L) (L)->reductions
361 #define LOOP_VINFO_REDUCTION_CHAINS(L) (L)->reduction_chains
362 #define LOOP_VINFO_TARGET_COST_DATA(L) (L)->target_cost_data
363 #define LOOP_VINFO_PEELING_FOR_GAPS(L) (L)->peeling_for_gaps
364 #define LOOP_VINFO_OPERANDS_SWAPPED(L) (L)->operands_swapped
365 #define LOOP_VINFO_PEELING_FOR_NITER(L) (L)->peeling_for_niter
366 #define LOOP_VINFO_NO_DATA_DEPENDENCIES(L) (L)->no_data_dependencies
367 #define LOOP_VINFO_SCALAR_LOOP(L) (L)->scalar_loop
368 #define LOOP_VINFO_SCALAR_ITERATION_COST(L) (L)->scalar_cost_vec
369 #define LOOP_VINFO_SINGLE_SCALAR_ITERATION_COST(L) (L)->single_scalar_iteration_cost
371 #define LOOP_REQUIRES_VERSIONING_FOR_ALIGNMENT(L) \
372 ((L)->may_misalign_stmts.length () > 0)
373 #define LOOP_REQUIRES_VERSIONING_FOR_ALIAS(L) \
374 ((L)->may_alias_ddrs.length () > 0)
376 #define LOOP_VINFO_NITERS_KNOWN_P(L) \
377 (tree_fits_shwi_p ((L)->num_iters) && tree_to_shwi ((L)->num_iters) > 0)
379 static inline loop_vec_info
380 loop_vec_info_for_loop (struct loop *loop)
382 return (loop_vec_info) loop->aux;
385 static inline bool
386 nested_in_vect_loop_p (struct loop *loop, gimple *stmt)
388 return (loop->inner
389 && (loop->inner == (gimple_bb (stmt))->loop_father));
392 typedef struct _bb_vec_info : public vec_info
394 basic_block bb;
395 gimple_stmt_iterator region_begin;
396 gimple_stmt_iterator region_end;
397 } *bb_vec_info;
399 #define BB_VINFO_BB(B) (B)->bb
400 #define BB_VINFO_GROUPED_STORES(B) (B)->grouped_stores
401 #define BB_VINFO_SLP_INSTANCES(B) (B)->slp_instances
402 #define BB_VINFO_DATAREFS(B) (B)->datarefs
403 #define BB_VINFO_DDRS(B) (B)->ddrs
404 #define BB_VINFO_TARGET_COST_DATA(B) (B)->target_cost_data
406 static inline bb_vec_info
407 vec_info_for_bb (basic_block bb)
409 return (bb_vec_info) bb->aux;
412 /*-----------------------------------------------------------------*/
413 /* Info on vectorized defs. */
414 /*-----------------------------------------------------------------*/
415 enum stmt_vec_info_type {
416 undef_vec_info_type = 0,
417 load_vec_info_type,
418 store_vec_info_type,
419 shift_vec_info_type,
420 op_vec_info_type,
421 call_vec_info_type,
422 call_simd_clone_vec_info_type,
423 assignment_vec_info_type,
424 condition_vec_info_type,
425 comparison_vec_info_type,
426 reduc_vec_info_type,
427 induc_vec_info_type,
428 type_promotion_vec_info_type,
429 type_demotion_vec_info_type,
430 type_conversion_vec_info_type,
431 loop_exit_ctrl_vec_info_type
434 /* Indicates whether/how a variable is used in the scope of loop/basic
435 block. */
436 enum vect_relevant {
437 vect_unused_in_scope = 0,
438 /* The def is in the inner loop, and the use is in the outer loop, and the
439 use is a reduction stmt. */
440 vect_used_in_outer_by_reduction,
441 /* The def is in the inner loop, and the use is in the outer loop (and is
442 not part of reduction). */
443 vect_used_in_outer,
445 /* defs that feed computations that end up (only) in a reduction. These
446 defs may be used by non-reduction stmts, but eventually, any
447 computations/values that are affected by these defs are used to compute
448 a reduction (i.e. don't get stored to memory, for example). We use this
449 to identify computations that we can change the order in which they are
450 computed. */
451 vect_used_by_reduction,
453 vect_used_in_scope
456 /* The type of vectorization that can be applied to the stmt: regular loop-based
457 vectorization; pure SLP - the stmt is a part of SLP instances and does not
458 have uses outside SLP instances; or hybrid SLP and loop-based - the stmt is
459 a part of SLP instance and also must be loop-based vectorized, since it has
460 uses outside SLP sequences.
462 In the loop context the meanings of pure and hybrid SLP are slightly
463 different. By saying that pure SLP is applied to the loop, we mean that we
464 exploit only intra-iteration parallelism in the loop; i.e., the loop can be
465 vectorized without doing any conceptual unrolling, cause we don't pack
466 together stmts from different iterations, only within a single iteration.
467 Loop hybrid SLP means that we exploit both intra-iteration and
468 inter-iteration parallelism (e.g., number of elements in the vector is 4
469 and the slp-group-size is 2, in which case we don't have enough parallelism
470 within an iteration, so we obtain the rest of the parallelism from subsequent
471 iterations by unrolling the loop by 2). */
472 enum slp_vect_type {
473 loop_vect = 0,
474 pure_slp,
475 hybrid
479 typedef struct data_reference *dr_p;
481 typedef struct _stmt_vec_info {
483 enum stmt_vec_info_type type;
485 /* Indicates whether this stmts is part of a computation whose result is
486 used outside the loop. */
487 bool live;
489 /* Stmt is part of some pattern (computation idiom) */
490 bool in_pattern_p;
492 /* The stmt to which this info struct refers to. */
493 gimple *stmt;
495 /* The vec_info with respect to which STMT is vectorized. */
496 vec_info *vinfo;
498 /* The vector type to be used for the LHS of this statement. */
499 tree vectype;
501 /* The vectorized version of the stmt. */
502 gimple *vectorized_stmt;
505 /** The following is relevant only for stmts that contain a non-scalar
506 data-ref (array/pointer/struct access). A GIMPLE stmt is expected to have
507 at most one such data-ref. **/
509 /* Information about the data-ref (access function, etc),
510 relative to the inner-most containing loop. */
511 struct data_reference *data_ref_info;
513 /* Information about the data-ref relative to this loop
514 nest (the loop that is being considered for vectorization). */
515 tree dr_base_address;
516 tree dr_init;
517 tree dr_offset;
518 tree dr_step;
519 tree dr_aligned_to;
521 /* For loop PHI nodes, the evolution part of it. This makes sure
522 this information is still available in vect_update_ivs_after_vectorizer
523 where we may not be able to re-analyze the PHI nodes evolution as
524 peeling for the prologue loop can make it unanalyzable. The evolution
525 part is still correct though. */
526 tree loop_phi_evolution_part;
528 /* Used for various bookkeeping purposes, generally holding a pointer to
529 some other stmt S that is in some way "related" to this stmt.
530 Current use of this field is:
531 If this stmt is part of a pattern (i.e. the field 'in_pattern_p' is
532 true): S is the "pattern stmt" that represents (and replaces) the
533 sequence of stmts that constitutes the pattern. Similarly, the
534 related_stmt of the "pattern stmt" points back to this stmt (which is
535 the last stmt in the original sequence of stmts that constitutes the
536 pattern). */
537 gimple *related_stmt;
539 /* Used to keep a sequence of def stmts of a pattern stmt if such exists. */
540 gimple_seq pattern_def_seq;
542 /* List of datarefs that are known to have the same alignment as the dataref
543 of this stmt. */
544 vec<dr_p> same_align_refs;
546 /* Selected SIMD clone's function info. First vector element
547 is SIMD clone's function decl, followed by a pair of trees (base + step)
548 for linear arguments (pair of NULLs for other arguments). */
549 vec<tree> simd_clone_info;
551 /* Classify the def of this stmt. */
552 enum vect_def_type def_type;
554 /* Whether the stmt is SLPed, loop-based vectorized, or both. */
555 enum slp_vect_type slp_type;
557 /* Interleaving and reduction chains info. */
558 /* First element in the group. */
559 gimple *first_element;
560 /* Pointer to the next element in the group. */
561 gimple *next_element;
562 /* For data-refs, in case that two or more stmts share data-ref, this is the
563 pointer to the previously detected stmt with the same dr. */
564 gimple *same_dr_stmt;
565 /* The size of the group. */
566 unsigned int size;
567 /* For stores, number of stores from this group seen. We vectorize the last
568 one. */
569 unsigned int store_count;
570 /* For loads only, the gap from the previous load. For consecutive loads, GAP
571 is 1. */
572 unsigned int gap;
574 /* The minimum negative dependence distance this stmt participates in
575 or zero if none. */
576 unsigned int min_neg_dist;
578 /* Not all stmts in the loop need to be vectorized. e.g, the increment
579 of the loop induction variable and computation of array indexes. relevant
580 indicates whether the stmt needs to be vectorized. */
581 enum vect_relevant relevant;
583 /* Is this statement vectorizable or should it be skipped in (partial)
584 vectorization. */
585 bool vectorizable;
587 /* For loads if this is a gather, for stores if this is a scatter. */
588 bool gather_scatter_p;
590 /* True if this is an access with loop-invariant stride. */
591 bool strided_p;
593 /* For both loads and stores. */
594 bool simd_lane_access_p;
596 /* For reduction loops, this is the type of reduction. */
597 enum vect_reduction_type v_reduc_type;
599 } *stmt_vec_info;
601 /* Access Functions. */
602 #define STMT_VINFO_TYPE(S) (S)->type
603 #define STMT_VINFO_STMT(S) (S)->stmt
604 inline loop_vec_info
605 STMT_VINFO_LOOP_VINFO (stmt_vec_info stmt_vinfo)
607 if (loop_vec_info loop_vinfo = dyn_cast <loop_vec_info> (stmt_vinfo->vinfo))
608 return loop_vinfo;
609 return NULL;
611 inline bb_vec_info
612 STMT_VINFO_BB_VINFO (stmt_vec_info stmt_vinfo)
614 if (bb_vec_info bb_vinfo = dyn_cast <bb_vec_info> (stmt_vinfo->vinfo))
615 return bb_vinfo;
616 return NULL;
618 #define STMT_VINFO_RELEVANT(S) (S)->relevant
619 #define STMT_VINFO_LIVE_P(S) (S)->live
620 #define STMT_VINFO_VECTYPE(S) (S)->vectype
621 #define STMT_VINFO_VEC_STMT(S) (S)->vectorized_stmt
622 #define STMT_VINFO_VECTORIZABLE(S) (S)->vectorizable
623 #define STMT_VINFO_DATA_REF(S) (S)->data_ref_info
624 #define STMT_VINFO_GATHER_SCATTER_P(S) (S)->gather_scatter_p
625 #define STMT_VINFO_STRIDED_P(S) (S)->strided_p
626 #define STMT_VINFO_SIMD_LANE_ACCESS_P(S) (S)->simd_lane_access_p
627 #define STMT_VINFO_VEC_REDUCTION_TYPE(S) (S)->v_reduc_type
629 #define STMT_VINFO_DR_BASE_ADDRESS(S) (S)->dr_base_address
630 #define STMT_VINFO_DR_INIT(S) (S)->dr_init
631 #define STMT_VINFO_DR_OFFSET(S) (S)->dr_offset
632 #define STMT_VINFO_DR_STEP(S) (S)->dr_step
633 #define STMT_VINFO_DR_ALIGNED_TO(S) (S)->dr_aligned_to
635 #define STMT_VINFO_IN_PATTERN_P(S) (S)->in_pattern_p
636 #define STMT_VINFO_RELATED_STMT(S) (S)->related_stmt
637 #define STMT_VINFO_PATTERN_DEF_SEQ(S) (S)->pattern_def_seq
638 #define STMT_VINFO_SAME_ALIGN_REFS(S) (S)->same_align_refs
639 #define STMT_VINFO_SIMD_CLONE_INFO(S) (S)->simd_clone_info
640 #define STMT_VINFO_DEF_TYPE(S) (S)->def_type
641 #define STMT_VINFO_GROUP_FIRST_ELEMENT(S) (S)->first_element
642 #define STMT_VINFO_GROUP_NEXT_ELEMENT(S) (S)->next_element
643 #define STMT_VINFO_GROUP_SIZE(S) (S)->size
644 #define STMT_VINFO_GROUP_STORE_COUNT(S) (S)->store_count
645 #define STMT_VINFO_GROUP_GAP(S) (S)->gap
646 #define STMT_VINFO_GROUP_SAME_DR_STMT(S) (S)->same_dr_stmt
647 #define STMT_VINFO_GROUPED_ACCESS(S) ((S)->first_element != NULL && (S)->data_ref_info)
648 #define STMT_VINFO_LOOP_PHI_EVOLUTION_PART(S) (S)->loop_phi_evolution_part
649 #define STMT_VINFO_MIN_NEG_DIST(S) (S)->min_neg_dist
651 #define GROUP_FIRST_ELEMENT(S) (S)->first_element
652 #define GROUP_NEXT_ELEMENT(S) (S)->next_element
653 #define GROUP_SIZE(S) (S)->size
654 #define GROUP_STORE_COUNT(S) (S)->store_count
655 #define GROUP_GAP(S) (S)->gap
656 #define GROUP_SAME_DR_STMT(S) (S)->same_dr_stmt
658 #define STMT_VINFO_RELEVANT_P(S) ((S)->relevant != vect_unused_in_scope)
660 #define HYBRID_SLP_STMT(S) ((S)->slp_type == hybrid)
661 #define PURE_SLP_STMT(S) ((S)->slp_type == pure_slp)
662 #define STMT_SLP_TYPE(S) (S)->slp_type
664 struct dataref_aux {
665 int misalignment;
666 /* If true the alignment of base_decl needs to be increased. */
667 bool base_misaligned;
668 /* If true we know the base is at least vector element alignment aligned. */
669 bool base_element_aligned;
670 tree base_decl;
673 #define DR_VECT_AUX(dr) ((dataref_aux *)(dr)->aux)
675 #define VECT_MAX_COST 1000
677 /* The maximum number of intermediate steps required in multi-step type
678 conversion. */
679 #define MAX_INTERM_CVT_STEPS 3
681 /* The maximum vectorization factor supported by any target (V64QI). */
682 #define MAX_VECTORIZATION_FACTOR 64
684 extern vec<stmt_vec_info> stmt_vec_info_vec;
686 void init_stmt_vec_info_vec (void);
687 void free_stmt_vec_info_vec (void);
689 /* Return a stmt_vec_info corresponding to STMT. */
691 static inline stmt_vec_info
692 vinfo_for_stmt (gimple *stmt)
694 unsigned int uid = gimple_uid (stmt);
695 if (uid == 0)
696 return NULL;
698 return stmt_vec_info_vec[uid - 1];
701 /* Set vectorizer information INFO for STMT. */
703 static inline void
704 set_vinfo_for_stmt (gimple *stmt, stmt_vec_info info)
706 unsigned int uid = gimple_uid (stmt);
707 if (uid == 0)
709 gcc_checking_assert (info);
710 uid = stmt_vec_info_vec.length () + 1;
711 gimple_set_uid (stmt, uid);
712 stmt_vec_info_vec.safe_push (info);
714 else
715 stmt_vec_info_vec[uid - 1] = info;
718 /* Return the earlier statement between STMT1 and STMT2. */
720 static inline gimple *
721 get_earlier_stmt (gimple *stmt1, gimple *stmt2)
723 unsigned int uid1, uid2;
725 if (stmt1 == NULL)
726 return stmt2;
728 if (stmt2 == NULL)
729 return stmt1;
731 uid1 = gimple_uid (stmt1);
732 uid2 = gimple_uid (stmt2);
734 if (uid1 == 0 || uid2 == 0)
735 return NULL;
737 gcc_checking_assert (uid1 <= stmt_vec_info_vec.length ()
738 && uid2 <= stmt_vec_info_vec.length ());
740 if (uid1 < uid2)
741 return stmt1;
742 else
743 return stmt2;
746 /* Return the later statement between STMT1 and STMT2. */
748 static inline gimple *
749 get_later_stmt (gimple *stmt1, gimple *stmt2)
751 unsigned int uid1, uid2;
753 if (stmt1 == NULL)
754 return stmt2;
756 if (stmt2 == NULL)
757 return stmt1;
759 uid1 = gimple_uid (stmt1);
760 uid2 = gimple_uid (stmt2);
762 if (uid1 == 0 || uid2 == 0)
763 return NULL;
765 gcc_assert (uid1 <= stmt_vec_info_vec.length ());
766 gcc_assert (uid2 <= stmt_vec_info_vec.length ());
768 if (uid1 > uid2)
769 return stmt1;
770 else
771 return stmt2;
774 /* Return TRUE if a statement represented by STMT_INFO is a part of a
775 pattern. */
777 static inline bool
778 is_pattern_stmt_p (stmt_vec_info stmt_info)
780 gimple *related_stmt;
781 stmt_vec_info related_stmt_info;
783 related_stmt = STMT_VINFO_RELATED_STMT (stmt_info);
784 if (related_stmt
785 && (related_stmt_info = vinfo_for_stmt (related_stmt))
786 && STMT_VINFO_IN_PATTERN_P (related_stmt_info))
787 return true;
789 return false;
792 /* Return true if BB is a loop header. */
794 static inline bool
795 is_loop_header_bb_p (basic_block bb)
797 if (bb == (bb->loop_father)->header)
798 return true;
799 gcc_checking_assert (EDGE_COUNT (bb->preds) == 1);
800 return false;
803 /* Return pow2 (X). */
805 static inline int
806 vect_pow2 (int x)
808 int i, res = 1;
810 for (i = 0; i < x; i++)
811 res *= 2;
813 return res;
816 /* Alias targetm.vectorize.builtin_vectorization_cost. */
818 static inline int
819 builtin_vectorization_cost (enum vect_cost_for_stmt type_of_cost,
820 tree vectype, int misalign)
822 return targetm.vectorize.builtin_vectorization_cost (type_of_cost,
823 vectype, misalign);
826 /* Get cost by calling cost target builtin. */
828 static inline
829 int vect_get_stmt_cost (enum vect_cost_for_stmt type_of_cost)
831 return builtin_vectorization_cost (type_of_cost, NULL, 0);
834 /* Alias targetm.vectorize.init_cost. */
836 static inline void *
837 init_cost (struct loop *loop_info)
839 return targetm.vectorize.init_cost (loop_info);
842 /* Alias targetm.vectorize.add_stmt_cost. */
844 static inline unsigned
845 add_stmt_cost (void *data, int count, enum vect_cost_for_stmt kind,
846 stmt_vec_info stmt_info, int misalign,
847 enum vect_cost_model_location where)
849 return targetm.vectorize.add_stmt_cost (data, count, kind,
850 stmt_info, misalign, where);
853 /* Alias targetm.vectorize.finish_cost. */
855 static inline void
856 finish_cost (void *data, unsigned *prologue_cost,
857 unsigned *body_cost, unsigned *epilogue_cost)
859 targetm.vectorize.finish_cost (data, prologue_cost, body_cost, epilogue_cost);
862 /* Alias targetm.vectorize.destroy_cost_data. */
864 static inline void
865 destroy_cost_data (void *data)
867 targetm.vectorize.destroy_cost_data (data);
870 /*-----------------------------------------------------------------*/
871 /* Info on data references alignment. */
872 /*-----------------------------------------------------------------*/
873 inline void
874 set_dr_misalignment (struct data_reference *dr, int val)
876 dataref_aux *data_aux = DR_VECT_AUX (dr);
878 if (!data_aux)
880 data_aux = XCNEW (dataref_aux);
881 dr->aux = data_aux;
884 data_aux->misalignment = val;
887 inline int
888 dr_misalignment (struct data_reference *dr)
890 return DR_VECT_AUX (dr)->misalignment;
893 /* Reflects actual alignment of first access in the vectorized loop,
894 taking into account peeling/versioning if applied. */
895 #define DR_MISALIGNMENT(DR) dr_misalignment (DR)
896 #define SET_DR_MISALIGNMENT(DR, VAL) set_dr_misalignment (DR, VAL)
898 /* Return TRUE if the data access is aligned, and FALSE otherwise. */
900 static inline bool
901 aligned_access_p (struct data_reference *data_ref_info)
903 return (DR_MISALIGNMENT (data_ref_info) == 0);
906 /* Return TRUE if the alignment of the data access is known, and FALSE
907 otherwise. */
909 static inline bool
910 known_alignment_for_access_p (struct data_reference *data_ref_info)
912 return (DR_MISALIGNMENT (data_ref_info) != -1);
916 /* Return true if the vect cost model is unlimited. */
917 static inline bool
918 unlimited_cost_model (loop_p loop)
920 if (loop != NULL && loop->force_vectorize
921 && flag_simd_cost_model != VECT_COST_MODEL_DEFAULT)
922 return flag_simd_cost_model == VECT_COST_MODEL_UNLIMITED;
923 return (flag_vect_cost_model == VECT_COST_MODEL_UNLIMITED);
926 /* Source location */
927 extern source_location vect_location;
929 /*-----------------------------------------------------------------*/
930 /* Function prototypes. */
931 /*-----------------------------------------------------------------*/
933 /* Simple loop peeling and versioning utilities for vectorizer's purposes -
934 in tree-vect-loop-manip.c. */
935 extern void slpeel_make_loop_iterate_ntimes (struct loop *, tree);
936 extern bool slpeel_can_duplicate_loop_p (const struct loop *, const_edge);
937 struct loop *slpeel_tree_duplicate_loop_to_edge_cfg (struct loop *,
938 struct loop *, edge);
939 extern void vect_loop_versioning (loop_vec_info, unsigned int, bool);
940 extern void vect_do_peeling_for_loop_bound (loop_vec_info, tree, tree,
941 unsigned int, bool);
942 extern void vect_do_peeling_for_alignment (loop_vec_info, tree,
943 unsigned int, bool);
944 extern source_location find_loop_location (struct loop *);
945 extern bool vect_can_advance_ivs_p (loop_vec_info);
947 /* In tree-vect-stmts.c. */
948 extern unsigned int current_vector_size;
949 extern tree get_vectype_for_scalar_type (tree);
950 extern tree get_mask_type_for_scalar_type (tree);
951 extern tree get_same_sized_vectype (tree, tree);
952 extern bool vect_is_simple_use (tree, vec_info *, gimple **,
953 enum vect_def_type *);
954 extern bool vect_is_simple_use (tree, vec_info *, gimple **,
955 enum vect_def_type *, tree *);
956 extern bool supportable_widening_operation (enum tree_code, gimple *, tree,
957 tree, enum tree_code *,
958 enum tree_code *, int *,
959 vec<tree> *);
960 extern bool supportable_narrowing_operation (enum tree_code, tree, tree,
961 enum tree_code *,
962 int *, vec<tree> *);
963 extern stmt_vec_info new_stmt_vec_info (gimple *stmt, vec_info *);
964 extern void free_stmt_vec_info (gimple *stmt);
965 extern void vect_model_simple_cost (stmt_vec_info, int, enum vect_def_type *,
966 stmt_vector_for_cost *,
967 stmt_vector_for_cost *);
968 extern void vect_model_store_cost (stmt_vec_info, int, bool,
969 enum vect_def_type, slp_tree,
970 stmt_vector_for_cost *,
971 stmt_vector_for_cost *);
972 extern void vect_model_load_cost (stmt_vec_info, int, bool, slp_tree,
973 stmt_vector_for_cost *,
974 stmt_vector_for_cost *);
975 extern unsigned record_stmt_cost (stmt_vector_for_cost *, int,
976 enum vect_cost_for_stmt, stmt_vec_info,
977 int, enum vect_cost_model_location);
978 extern void vect_finish_stmt_generation (gimple *, gimple *,
979 gimple_stmt_iterator *);
980 extern bool vect_mark_stmts_to_be_vectorized (loop_vec_info);
981 extern tree vect_get_vec_def_for_operand (tree, gimple *, tree = NULL);
982 extern tree vect_init_vector (gimple *, tree, tree,
983 gimple_stmt_iterator *);
984 extern tree vect_get_vec_def_for_stmt_copy (enum vect_def_type, tree);
985 extern bool vect_transform_stmt (gimple *, gimple_stmt_iterator *,
986 bool *, slp_tree, slp_instance);
987 extern void vect_remove_stores (gimple *);
988 extern bool vect_analyze_stmt (gimple *, bool *, slp_tree);
989 extern bool vectorizable_condition (gimple *, gimple_stmt_iterator *,
990 gimple **, tree, int, slp_tree);
991 extern bool vectorizable_comparison (gimple *, gimple_stmt_iterator *,
992 gimple **, tree, int, slp_tree);
993 extern void vect_get_load_cost (struct data_reference *, int, bool,
994 unsigned int *, unsigned int *,
995 stmt_vector_for_cost *,
996 stmt_vector_for_cost *, bool);
997 extern void vect_get_store_cost (struct data_reference *, int,
998 unsigned int *, stmt_vector_for_cost *);
999 extern bool vect_supportable_shift (enum tree_code, tree);
1000 extern void vect_get_vec_defs (tree, tree, gimple *, vec<tree> *,
1001 vec<tree> *, slp_tree, int);
1002 extern tree vect_gen_perm_mask_any (tree, const unsigned char *);
1003 extern tree vect_gen_perm_mask_checked (tree, const unsigned char *);
1005 /* In tree-vect-data-refs.c. */
1006 extern bool vect_can_force_dr_alignment_p (const_tree, unsigned int);
1007 extern enum dr_alignment_support vect_supportable_dr_alignment
1008 (struct data_reference *, bool);
1009 extern tree vect_get_smallest_scalar_type (gimple *, HOST_WIDE_INT *,
1010 HOST_WIDE_INT *);
1011 extern bool vect_analyze_data_ref_dependences (loop_vec_info, int *);
1012 extern bool vect_slp_analyze_instance_dependence (slp_instance);
1013 extern bool vect_enhance_data_refs_alignment (loop_vec_info);
1014 extern bool vect_analyze_data_refs_alignment (loop_vec_info);
1015 extern bool vect_verify_datarefs_alignment (loop_vec_info);
1016 extern bool vect_slp_analyze_and_verify_instance_alignment (slp_instance);
1017 extern bool vect_analyze_data_ref_accesses (vec_info *);
1018 extern bool vect_prune_runtime_alias_test_list (loop_vec_info);
1019 extern tree vect_check_gather_scatter (gimple *, loop_vec_info, tree *, tree *,
1020 int *);
1021 extern bool vect_analyze_data_refs (vec_info *, int *);
1022 extern tree vect_create_data_ref_ptr (gimple *, tree, struct loop *, tree,
1023 tree *, gimple_stmt_iterator *,
1024 gimple **, bool, bool *,
1025 tree = NULL_TREE);
1026 extern tree bump_vector_ptr (tree, gimple *, gimple_stmt_iterator *, gimple *,
1027 tree);
1028 extern tree vect_create_destination_var (tree, tree);
1029 extern bool vect_grouped_store_supported (tree, unsigned HOST_WIDE_INT);
1030 extern bool vect_store_lanes_supported (tree, unsigned HOST_WIDE_INT);
1031 extern bool vect_grouped_load_supported (tree, unsigned HOST_WIDE_INT);
1032 extern bool vect_load_lanes_supported (tree, unsigned HOST_WIDE_INT);
1033 extern void vect_permute_store_chain (vec<tree> ,unsigned int, gimple *,
1034 gimple_stmt_iterator *, vec<tree> *);
1035 extern tree vect_setup_realignment (gimple *, gimple_stmt_iterator *, tree *,
1036 enum dr_alignment_support, tree,
1037 struct loop **);
1038 extern void vect_transform_grouped_load (gimple *, vec<tree> , int,
1039 gimple_stmt_iterator *);
1040 extern void vect_record_grouped_load_vectors (gimple *, vec<tree> );
1041 extern tree vect_get_new_vect_var (tree, enum vect_var_kind, const char *);
1042 extern tree vect_get_new_ssa_name (tree, enum vect_var_kind,
1043 const char * = NULL);
1044 extern tree vect_create_addr_base_for_vector_ref (gimple *, gimple_seq *,
1045 tree, struct loop *,
1046 tree = NULL_TREE);
1048 /* In tree-vect-loop.c. */
1049 /* FORNOW: Used in tree-parloops.c. */
1050 extern void destroy_loop_vec_info (loop_vec_info, bool);
1051 extern gimple *vect_force_simple_reduction (loop_vec_info, gimple *, bool,
1052 bool *, bool);
1053 /* Drive for loop analysis stage. */
1054 extern loop_vec_info vect_analyze_loop (struct loop *);
1055 /* Drive for loop transformation stage. */
1056 extern void vect_transform_loop (loop_vec_info);
1057 extern loop_vec_info vect_analyze_loop_form (struct loop *);
1058 extern bool vectorizable_live_operation (gimple *, gimple_stmt_iterator *,
1059 gimple **);
1060 extern bool vectorizable_reduction (gimple *, gimple_stmt_iterator *,
1061 gimple **, slp_tree);
1062 extern bool vectorizable_induction (gimple *, gimple_stmt_iterator *, gimple **);
1063 extern tree get_initial_def_for_reduction (gimple *, tree, tree *);
1064 extern int vect_min_worthwhile_factor (enum tree_code);
1065 extern int vect_get_known_peeling_cost (loop_vec_info, int, int *,
1066 stmt_vector_for_cost *,
1067 stmt_vector_for_cost *,
1068 stmt_vector_for_cost *);
1070 /* In tree-vect-slp.c. */
1071 extern void vect_free_slp_instance (slp_instance);
1072 extern bool vect_transform_slp_perm_load (slp_tree, vec<tree> ,
1073 gimple_stmt_iterator *, int,
1074 slp_instance, bool);
1075 extern bool vect_slp_analyze_operations (vec<slp_instance> slp_instances,
1076 void *);
1077 extern bool vect_schedule_slp (vec_info *);
1078 extern bool vect_analyze_slp (vec_info *, unsigned);
1079 extern bool vect_make_slp_decision (loop_vec_info);
1080 extern void vect_detect_hybrid_slp (loop_vec_info);
1081 extern void vect_get_slp_defs (vec<tree> , slp_tree,
1082 vec<vec<tree> > *, int);
1083 extern bool vect_slp_bb (basic_block);
1084 extern gimple *vect_find_last_scalar_stmt_in_slp (slp_tree);
1086 /* In tree-vect-patterns.c. */
1087 /* Pattern recognition functions.
1088 Additional pattern recognition functions can (and will) be added
1089 in the future. */
1090 typedef gimple *(* vect_recog_func_ptr) (vec<gimple *> *, tree *, tree *);
1091 #define NUM_PATTERNS 14
1092 void vect_pattern_recog (vec_info *);
1094 /* In tree-vectorizer.c. */
1095 unsigned vectorize_loops (void);
1096 void vect_destroy_datarefs (vec_info *);
1097 bool vect_stmt_in_region_p (vec_info *, gimple *);
1099 #endif /* GCC_TREE_VECTORIZER_H */